diff --git a/.pubnub.yml b/.pubnub.yml index 4eee8cbf..9372f0e1 100644 --- a/.pubnub.yml +++ b/.pubnub.yml @@ -1,20 +1,6 @@ --- -version: v5.0.2 +version: v5.0.0 changelog: - - - changes: - - - text: "Go mod file fix." - type: bug - date: 2021-05-26 - version: v5.0.2 - - - changes: - - - text: "Go mod file fix." - type: bug - date: 2021-05-25 - version: v5.0.1 - changes: - diff --git a/CHANGELOG.md b/CHANGELOG.md index 74b85d8d..11180c8a 100644 --- a/CHANGELOG.md +++ b/CHANGELOG.md @@ -1,15 +1,3 @@ -## [v5.0.2](https://github.com/pubnub/go/releases/tag/v5.0.2) -May-26-2021 - -#### Fixed -- Go mod file fix. - -## [v5.0.1](https://github.com/pubnub/go/releases/tag/v5.0.1) -May-25-2021 - -#### Fixed -- Go mod file fix. - ## [v5.0.0](https://github.com/pubnub/go/releases/tag/v5.0.0) May-17-2021 diff --git a/go.mod b/go.mod index b140f64d..2050ae73 100644 --- a/go.mod +++ b/go.mod @@ -8,7 +8,6 @@ require ( github.com/google/uuid v1.1.1 github.com/pmezard/go-difflib v1.0.0 // indirect github.com/stretchr/testify v1.2.2 - github.com/wadey/gocovmerge v0.0.0-20160331181800-b5bfa59ec0ad // indirect - golang.org/x/net v0.0.0-20210405180319-a5a99cb37ef4 - golang.org/x/tools v0.1.2 // indirect + golang.org/x/net v0.0.0-20190611141213-3f473d35a33a + golang.org/x/text v0.3.2 // indirect ) diff --git a/go.sum b/go.sum index cfaa9c6f..46e95cb7 100644 --- a/go.sum +++ b/go.sum @@ -8,35 +8,11 @@ github.com/pmezard/go-difflib v1.0.0 h1:4DBwDE0NGyQoBHbLQYPwSUPoCMWR5BEzIk/f1lZb github.com/pmezard/go-difflib v1.0.0/go.mod h1:iKH77koFhYxTK1pcRnkKkqfTogsbg7gZNVY4sRDYZ/4= github.com/stretchr/testify v1.2.2 h1:bSDNvY7ZPG5RlJ8otE/7V6gMiyenm9RtJ7IUVIAoJ1w= github.com/stretchr/testify v1.2.2/go.mod h1:a8OnRcib4nhh0OaRAV+Yts87kKdq0PP7pXfy6kDkUVs= -github.com/wadey/gocovmerge v0.0.0-20160331181800-b5bfa59ec0ad h1:W0LEBv82YCGEtcmPA3uNZBI33/qF//HAAs3MawDjRa0= -github.com/wadey/gocovmerge v0.0.0-20160331181800-b5bfa59ec0ad/go.mod h1:Hy8o65+MXnS6EwGElrSRjUzQDLXreJlzYLlWiHtt8hM= -github.com/yuin/goldmark v1.3.5/go.mod h1:mwnBkeHKe2W/ZEtQ+71ViKU8L12m81fl3OWwC1Zlc8k= golang.org/x/crypto v0.0.0-20190308221718-c2843e01d9a2/go.mod h1:djNgcEr1/C05ACkg1iLfiJU5Ep61QUkGW8qpdssI0+w= -golang.org/x/crypto v0.0.0-20191011191535-87dc89f01550/go.mod h1:yigFU9vqHzYiE8UmvKecakEJjdnWj3jj499lnFckfCI= -golang.org/x/mod v0.4.2/go.mod h1:s0Qsj1ACt9ePp/hMypM3fl4fZqREWJwdYDEqhRiZZUA= -golang.org/x/net v0.0.0-20190404232315-eb5bcb51f2a3/go.mod h1:t9HGtf8HONx5eT2rtn7q6eTqICYqUVnKs3thJo3Qplg= golang.org/x/net v0.0.0-20190611141213-3f473d35a33a h1:+KkCgOMgnKSgenxTBoiwkMqTiouMIy/3o8RLdmSbGoY= golang.org/x/net v0.0.0-20190611141213-3f473d35a33a/go.mod h1:z5CRVTTTmAJ677TzLLGU+0bjPO0LkuOLi4/5GtJWs/s= -golang.org/x/net v0.0.0-20190620200207-3b0461eec859/go.mod h1:z5CRVTTTmAJ677TzLLGU+0bjPO0LkuOLi4/5GtJWs/s= -golang.org/x/net v0.0.0-20210405180319-a5a99cb37ef4/go.mod h1:p54w0d4576C0XHj96bSt6lcn1PtDYWL6XObtHCRCNQM= -golang.org/x/sync v0.0.0-20190423024810-112230192c58/go.mod h1:RxMgew5VJxzue5/jJTE5uejpjVlOe/izrB70Jof72aM= -golang.org/x/sync v0.0.0-20210220032951-036812b2e83c/go.mod h1:RxMgew5VJxzue5/jJTE5uejpjVlOe/izrB70Jof72aM= golang.org/x/sys v0.0.0-20190215142949-d0b11bdaac8a/go.mod h1:STP8DvDyc/dI5b8T5hshtkjS+E42TnysNCUPdjciGhY= -golang.org/x/sys v0.0.0-20190412213103-97732733099d/go.mod h1:h1NjWce9XRLGQEsW7wpKNCjG9DtNlClVuFLEZdDNbEs= -golang.org/x/sys v0.0.0-20201119102817-f84b799fce68/go.mod h1:h1NjWce9XRLGQEsW7wpKNCjG9DtNlClVuFLEZdDNbEs= -golang.org/x/sys v0.0.0-20210330210617-4fbd30eecc44/go.mod h1:h1NjWce9XRLGQEsW7wpKNCjG9DtNlClVuFLEZdDNbEs= -golang.org/x/sys v0.0.0-20210510120138-977fb7262007/go.mod h1:oPkhp1MJrh7nUepCBck5+mAzfO9JrbApNNgaTdGDITg= -golang.org/x/term v0.0.0-20201126162022-7de9c90e9dd1/go.mod h1:bj7SfCRtBDWHUb9snDiAeCFNEtKQo2Wmx5Cou7ajbmo= golang.org/x/text v0.3.0/go.mod h1:NqM8EUOU14njkJ3fqMW+pc6Ldnwhi/IjpwHt7yyuwOQ= golang.org/x/text v0.3.2 h1:tW2bmiBqwgJj/UpqtC8EpXEZVYOwU0yG4iWbprSVAcs= golang.org/x/text v0.3.2/go.mod h1:bEr9sfX3Q8Zfm5fL9x+3itogRgK3+ptLWKqgva+5dAk= -golang.org/x/text v0.3.3/go.mod h1:5Zoc/QRtKVWzQhOtBMvqHzDpF6irO9z98xDceosuGiQ= golang.org/x/tools v0.0.0-20180917221912-90fa682c2a6e/go.mod h1:n7NCudcB/nEzxVGmLbDWY5pfWTLqBcC2KZ6jyYvM4mQ= -golang.org/x/tools v0.0.0-20191119224855-298f0cb1881e/go.mod h1:b+2E5dAYhXwXZwtnZ6UAqBI28+e2cm9otk0dWdXHAEo= -golang.org/x/tools v0.1.1 h1:wGiQel/hW0NnEkJUk8lbzkX2gFJU6PFxf1v5OlCfuOs= -golang.org/x/tools v0.1.1/go.mod h1:o0xws9oXOQQZyjljx8fwUC0k7L1pTE6eaCbjGeHmOkk= -golang.org/x/tools v0.1.2 h1:kRBLX7v7Af8W7Gdbbc908OJcdgtK8bOz9Uaj8/F1ACA= -golang.org/x/tools v0.1.2/go.mod h1:o0xws9oXOQQZyjljx8fwUC0k7L1pTE6eaCbjGeHmOkk= -golang.org/x/xerrors v0.0.0-20190717185122-a985d3407aa7/go.mod h1:I/5z698sn9Ka8TeJc9MKroUUfqBBauWjQqLJ2OPfmY0= -golang.org/x/xerrors v0.0.0-20191011141410-1b5146add898/go.mod h1:I/5z698sn9Ka8TeJc9MKroUUfqBBauWjQqLJ2OPfmY0= -golang.org/x/xerrors v0.0.0-20200804184101-5ec99f83aff1/go.mod h1:I/5z698sn9Ka8TeJc9MKroUUfqBBauWjQqLJ2OPfmY0= diff --git a/pubnub.go b/pubnub.go index 91f5706d..0fd38ee6 100644 --- a/pubnub.go +++ b/pubnub.go @@ -12,7 +12,7 @@ import ( // Default constants const ( // Version :the version of the SDK - Version = "5.0.2" + Version = "5.0.0" // MaxSequence for publish messages MaxSequence = 65535 ) diff --git a/vendor/github.com/brianolson/cbor_go/LICENSE b/vendor/github.com/brianolson/cbor_go/LICENSE deleted file mode 100644 index 6286cbbb..00000000 --- a/vendor/github.com/brianolson/cbor_go/LICENSE +++ /dev/null @@ -1,13 +0,0 @@ -Copyright 2014-2015 Brian Olson - -Licensed under the Apache License, Version 2.0 (the "License"); -you may not use this file except in compliance with the License. -You may obtain a copy of the License at - - http://www.apache.org/licenses/LICENSE-2.0 - -Unless required by applicable law or agreed to in writing, software -distributed under the License is distributed on an "AS IS" BASIS, -WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. -See the License for the specific language governing permissions and -limitations under the License. diff --git a/vendor/github.com/brianolson/cbor_go/Makefile b/vendor/github.com/brianolson/cbor_go/Makefile deleted file mode 100644 index 5330af63..00000000 --- a/vendor/github.com/brianolson/cbor_go/Makefile +++ /dev/null @@ -1,12 +0,0 @@ -#PATH:=${HOME}/psrc/golang/go/bin:${PATH} -#PATH += ${HOME}/psrc/golang/go/bin -GOROOT=${HOME}/psrc/golang/go -GOPATH=${HOME}/psrc/gopath - -GO=${GOROOT}/bin/go - -all: - ${GO} build - -test: - ${GO} test diff --git a/vendor/github.com/brianolson/cbor_go/README.md b/vendor/github.com/brianolson/cbor_go/README.md deleted file mode 100644 index 5e8b3751..00000000 --- a/vendor/github.com/brianolson/cbor_go/README.md +++ /dev/null @@ -1,13 +0,0 @@ -Concise Binary Object Representation (CBOR) is a superset of JSON's schema that's faster and more compact. - -* http://tools.ietf.org/html/rfc7049 -* http://cbor.io/ - -import cbor "github.com/brianolson/cbor_go" - -This implementation attempts to do serialization to/from struct types using reflection, but doesn't do 100% of cases like that right. It _should_ do everything fine serializing `map[string]interface{}` and `[]interface{}` and other basic types. It passes the test of decoding 100% of CBOR common appendix test strings. - ---- - -For Python implementation see: -https://github.com/brianolson/cbor_py \ No newline at end of file diff --git a/vendor/github.com/brianolson/cbor_go/cbor.go b/vendor/github.com/brianolson/cbor_go/cbor.go deleted file mode 100644 index 04de278c..00000000 --- a/vendor/github.com/brianolson/cbor_go/cbor.go +++ /dev/null @@ -1,1155 +0,0 @@ -// Should be roughly like encoding/gob -// encoding/json has an inferior interface that only works on whole messages to/from whole blobs at once. Reader/Writer based interfaces are better. - -package cbor - - -import "bytes" -import "errors" -import "fmt" -import "io" -import "log" -import "math" -import "math/big" -import "reflect" -import "strings" - -var typeMask byte = 0xE0 -var infoBits byte = 0x1F - -/* type values */ -var cborUint byte = 0x00 -var cborNegint byte = 0x20 -var cborBytes byte = 0x40 -var cborText byte = 0x60 -var cborArray byte = 0x80 -var cborMap byte = 0xA0 -var cborTag byte = 0xC0 -var cbor7 byte = 0xE0 - -/* cbor7 values */ -const ( - cborFalse byte = 20 - cborTrue byte = 21 - cborNull byte = 22 -) - -/* info bits */ -var int8Follows byte = 24 -var int16Follows byte = 25 -var int32Follows byte = 26 -var int64Follows byte = 27 -var varFollows byte = 31 - -/* tag values */ -var tagBignum uint64 = 2 -var tagNegBignum uint64 = 3 -var tagDecimal uint64 = 4 -var tagBigfloat uint64 = 5 - -// TODO: honor encoding.BinaryMarshaler interface and encapsulate blob returned from that. - -// Load one object into v -func Loads(blob []byte, v interface{}) error { - dec := NewDecoder(bytes.NewReader(blob)) - return dec.Decode(v) -} - -type TagDecoder interface { - // Handle things which match this. - // - // Setup like this: - // var dec Decoder - // var myTagDec TagDecoder - // dec.TagDecoders[myTagDec.GetTag()] = myTagDec - GetTag() uint64 - - // Sub-object will be decoded onto the returned object. - DecodeTarget() interface{} - - // Run after decode onto DecodeTarget has happened. - // The return value from this is returned in place of the - // raw decoded object. - PostDecode(interface{}) (interface{}, error) -} - -type Decoder struct { - rin io.Reader - - // tag byte - c []byte - - // many values fit within the next 8 bytes - b8 []byte - - // Extra processing for CBOR TAG objects. - TagDecoders map[uint64]TagDecoder -} - -func NewDecoder(r io.Reader) *Decoder { - return &Decoder{ - r, - make([]byte, 1), - make([]byte, 8), - make(map[uint64]TagDecoder), - } -} -func (dec *Decoder) Decode(v interface{}) error { - rv := reflect.ValueOf(v) - - return dec.reflectDecode(rv) -} -func (dec *Decoder) reflectDecode(rv reflect.Value) error { - var didread int - var err error - - didread, err = io.ReadFull(dec.rin, dec.c) - - if didread == 1 { - /* log.Printf("got one %x\n", dec.c[0]) */ - } - - if err != nil { - return err - } - - if (!rv.CanSet()) && (rv.Kind() != reflect.Ptr || rv.IsNil()) { - return &InvalidUnmarshalError{rv.Type()} - } - return dec.innerDecodeC(rv, dec.c[0]) -} - -func (dec *Decoder) handleInfoBits(cborInfo byte) (uint64, error) { - var aux uint64 - - if (cborInfo <= 23) { - aux = uint64(cborInfo) - return aux, nil - } else if (cborInfo == int8Follows) { - didread, err := io.ReadFull(dec.rin, dec.b8[:1]) - if didread == 1 { - aux = uint64(dec.b8[0]) - } - return aux, err - } else if (cborInfo == int16Follows) { - didread, err := io.ReadFull(dec.rin, dec.b8[:2]) - if didread == 2 { - aux = (uint64(dec.b8[0]) << 8) | uint64(dec.b8[1]) - } - return aux, err - } else if (cborInfo == int32Follows) { - didread, err := io.ReadFull(dec.rin, dec.b8[:4]) - if didread == 4 { - aux = (uint64(dec.b8[0]) << 24) | - (uint64(dec.b8[1]) << 16) | - (uint64(dec.b8[2]) << 8) | - uint64(dec.b8[3]) - } - return aux, err - } else if (cborInfo == int64Follows) { - didread, err := io.ReadFull(dec.rin, dec.b8) - if didread == 8 { - var shift uint = 56 - i := 0 - aux = uint64(dec.b8[i]) << shift - for i < 7 { - i += 1 - shift -= 8 - aux |= uint64(dec.b8[i]) << shift - } - } - return aux, err - } - return 0, nil -} - -func (dec *Decoder) innerDecodeC(rv reflect.Value, c byte) error { - cborType := c & typeMask - cborInfo := c & infoBits - - aux, err := dec.handleInfoBits(cborInfo) - if err != nil { - log.Printf("error in handleInfoBits: %v", err) - return err - } - //log.Printf("cborType %x cborInfo %d aux %x", cborType, cborInfo, aux) - - if cborType == cborUint { - return setUint(rv, aux) - } else if cborType == cborNegint { - if aux > 0x7fffffffffffffff { - //return errors.New(fmt.Sprintf("cannot represent -%d", aux)) - bigU := &big.Int{} - bigU.SetUint64(aux) - minusOne := big.NewInt(-1) - bn := &big.Int{} - bn.Sub(minusOne, bigU) - //log.Printf("built big negint: %v", bn) - return setBignum(rv, bn) - } - return setInt(rv, -1 - int64(aux)) - } else if cborType == cborBytes { - //log.Printf("cborType %x bytes cborInfo %d aux %x", cborType, cborInfo, aux) - if cborInfo == varFollows { - parts := make([][]byte, 0, 1) - allsize := 0 - subc := []byte{0} - for true { - _, err = io.ReadFull(dec.rin, subc) - if err != nil { - log.Printf("error reading next byte for bar bytes") - return err - } - if subc[0] == 0xff { - // done - var out []byte = nil - if len(parts) == 0 { - out = make([]byte,0) - } else { - pos := 0 - out = make([]byte,allsize) - for _, p := range(parts) { - pos += copy(out[pos:], p) - } - } - return setBytes(rv, out) - } else { - var subb []byte = nil - if (subc[0] & typeMask) != cborBytes { - return fmt.Errorf("sub of var bytes is type %x, wanted %x", subc[0], cborBytes) - } - err = dec.innerDecodeC(reflect.ValueOf(&subb), subc[0]) - if err != nil { - log.Printf("error decoding sub bytes") - return err - } - allsize += len(subb) - parts = append(parts, subb) - } - } - } else { - val := make([]byte, aux) - _, err = io.ReadFull(dec.rin, val) - if err != nil { - return err - } - // Don't really care about count, ReadFull will make it all or none and we can just fall out with whatever error - return setBytes(rv, val) - /*if (rv.Kind() == reflect.Slice) && (rv.Type().Elem().Kind() == reflect.Uint8) { - rv.SetBytes(val) - } else { - return fmt.Errorf("cannot write []byte to k=%s %s", rv.Kind().String(), rv.Type().String()) - }*/ - } - } else if cborType == cborText { - return dec.decodeText(rv, cborInfo, aux) - } else if cborType == cborArray { - return dec.decodeArray(rv, cborInfo, aux) - } else if cborType == cborMap { - return dec.decodeMap(rv, cborInfo, aux) - } else if cborType == cborTag { - /*var innerOb interface{}*/ - ic := []byte{0} - _, err = io.ReadFull(dec.rin, ic) - if err != nil { - return err - } - if aux == tagBignum { - bn, err := dec.decodeBignum(ic[0]) - if err != nil { - return err - } - return setBignum(rv, bn) - } else if aux == tagNegBignum { - bn, err := dec.decodeBignum(ic[0]) - if err != nil { - return err - } - minusOne := big.NewInt(-1) - bnOut := &big.Int{} - bnOut.Sub(minusOne, bn) - return setBignum(rv, bnOut) - } else if aux == tagDecimal { - log.Printf("TODO: directly read bytes into decimal") - } else if aux == tagBigfloat { - log.Printf("TODO: directly read bytes into bigfloat") - } else { - decoder, ok := dec.TagDecoders[aux] - if ok { - target := decoder.DecodeTarget() - trv := reflect.ValueOf(target) - err = dec.innerDecodeC(trv, ic[0]) - if err != nil { - return err - } - target, err = decoder.PostDecode(target) - if err != nil { - return err - } - reflect.Indirect(rv).Set(reflect.ValueOf(target)) - return nil - } else { - target := CBORTag{} - target.Tag = aux - err = dec.innerDecodeC(reflect.ValueOf(&target.WrappedObject), ic[0]) - if err != nil { - return err - } - reflect.Indirect(rv).Set(reflect.ValueOf(target)) - return nil - } - } - return nil - } else if cborType == cbor7 { - if cborInfo == int16Follows { - exp := (aux >> 10) & 0x01f - mant := aux & 0x03ff - var val float64 - if exp == 0 { - val = math.Ldexp(float64(mant), -24) - } else if exp != 31 { - val = math.Ldexp(float64(mant + 1024), int(exp - 25)) - } else if mant == 0 { - val = math.Inf(1) - } else { - val = math.NaN() - } - if (aux & 0x08000) != 0 { - val = -val; - } - return setFloat64(rv, val) - } else if cborInfo == int32Follows { - f := math.Float32frombits(uint32(aux)) - return setFloat32(rv, f) - } else if cborInfo == int64Follows { - d := math.Float64frombits(aux) - return setFloat64(rv, d) - } else if cborInfo == cborFalse { - reflect.Indirect(rv).Set(reflect.ValueOf(false)) - } else if cborInfo == cborTrue { - reflect.Indirect(rv).Set(reflect.ValueOf(true)) - } else if cborInfo == cborNull { - return setNil(rv) - } - } - - - return err -} - -func (dec *Decoder) decodeText(rv reflect.Value, cborInfo byte, aux uint64) error { - var err error - if cborInfo == varFollows { - parts := make([]string, 0, 1) - subc := []byte{0} - for true { - _, err = io.ReadFull(dec.rin, subc) - if err != nil { - log.Printf("error reading next byte for var text") - return err - } - if subc[0] == 0xff { - // done - joined := strings.Join(parts, "") - dtStringSet(rv, joined) - //reflect.Indirect(rv).Set(reflect.ValueOf(joined)) - return nil - } else { - var subtext interface{} - err = dec.innerDecodeC(reflect.ValueOf(&subtext), subc[0]) - if err != nil { - log.Printf("error decoding subtext") - return err - } - st, ok := subtext.(string) - if ok { - parts = append(parts, st) - } else { - return fmt.Errorf("var text sub element not text but %T", subtext) - } - } - } - } else { - raw := make([]byte, aux) - _, err = io.ReadFull(dec.rin, raw) - xs := string(raw) - dtStringSet(rv, xs) - return nil - } - return errors.New("internal error in decodeText, shouldn't get here") -} -func dtStringSet(rv reflect.Value, xs string) { - // handle either concrete string or string* to nil - deref := reflect.Indirect(rv) - if !deref.CanSet() { - rv.Set(reflect.ValueOf(&xs)) - } else { - deref.Set(reflect.ValueOf(xs)) - } -} - -type mapAssignable interface { - ReflectValueForKey(key interface{}) (*reflect.Value, bool) - SetReflectValueForKey(key interface{}, value reflect.Value) error -} - -type mapReflectValue struct { - reflect.Value -} - -func (irv *mapReflectValue) ReflectValueForKey(key interface{}) (*reflect.Value, bool) { - //var x interface{} - //rv := reflect.ValueOf(&x) - rv := reflect.New(irv.Type().Elem()) - return &rv, true -} -func (irv *mapReflectValue) SetReflectValueForKey(key interface{}, value reflect.Value) error { - //log.Printf("k T %T v%#v, v T %s v %#v", key, key, value.Type().String(), value.Interface()) - krv := reflect.Indirect(reflect.ValueOf(key)) - vrv := reflect.Indirect(value) - //log.Printf("irv T %s v %#v", irv.Type().String(), irv.Interface()) - //log.Printf("k T %s v %#v, v T %s v %#v", krv.Type().String(), krv.Interface(), vrv.Type().String(), vrv.Interface()) - if krv.Kind() == reflect.Interface { - krv = krv.Elem() - //log.Printf("ke T %s v %#v", krv.Type().String(), krv.Interface()) - } - if (krv.Kind() == reflect.Slice) || (krv.Kind() == reflect.Array) { - //log.Printf("key is slice or array") - if krv.Type().Elem().Kind() == reflect.Uint8 { - //log.Printf("key is []uint8") - ks := string(krv.Bytes()) - krv = reflect.ValueOf(ks) - } - } - irv.SetMapIndex(krv, vrv) - return nil -} - - -type structAssigner struct { - Srv reflect.Value - - //keyType reflect.Type -} - -func (sa *structAssigner) ReflectValueForKey(key interface{}) (*reflect.Value, bool) { - var skey string - switch tkey := key.(type) { - case string: - skey = tkey - case *string: - skey= *tkey - default: - log.Printf("rvfk key is not string, got %T", key) - return nil, false - } - - ft := sa.Srv.Type() - numFields := ft.NumField() - for i := 0; i < numFields; i++ { - sf := ft.Field(i) - fieldname, ok := fieldname(sf) - if !ok { continue } - if (fieldname == skey) || strings.EqualFold(fieldname, skey) { - fieldVal := sa.Srv.FieldByName(sf.Name) - if !fieldVal.CanSet() { - log.Printf("cannot set field %s for key %s", sf.Name, skey) - return nil, false - } - return &fieldVal, true - } - } - return nil, false -} -func (sa *structAssigner) SetReflectValueForKey(key interface{}, value reflect.Value) error { - return nil -} - - -func (dec *Decoder) setMapKV(krv reflect.Value, ma mapAssignable) error { - var err error - val, ok := ma.ReflectValueForKey(krv.Interface()) - if !ok { - var throwaway interface{} - err = dec.Decode(&throwaway) - if err != nil { - return err - } - return nil - } - err = dec.reflectDecode(*val) - if err != nil { - log.Printf("error decoding map val: T %T v %#v v.T %s", val, val, val.Type().String()) - return err - } - err = ma.SetReflectValueForKey(krv.Interface(), *val) - if err != nil { - log.Printf("error setting value") - return err - } - - return nil -} - - -func (dec *Decoder) decodeMap(rv reflect.Value, cborInfo byte, aux uint64) error { - //log.Print("decode map into ", rv.Type().String()) - // dereferenced reflect value - var drv reflect.Value - if rv.Kind() == reflect.Ptr { - drv = reflect.Indirect(rv) - } else { - drv = rv - } - //log.Print("decode map into d ", drv.Type().String()) - - // inner reflect value - var irv reflect.Value - var ma mapAssignable - - var keyType reflect.Type - - switch drv.Kind() { - case reflect.Interface: - //log.Print("decode map into interface ", drv.Type().String()) - // TODO: maybe I should make this map[string]interface{} - nob := make(map[interface{}]interface{}) - irv = reflect.ValueOf(nob) - ma = &mapReflectValue{irv} - keyType = irv.Type().Key() - case reflect.Struct: - //log.Print("decode map into struct ", drv.Type().String()) - ma = &structAssigner{drv} - keyType = reflect.TypeOf("") - case reflect.Map: - //log.Print("decode map into map ", drv.Type().String()) - if drv.IsNil() { - if drv.CanSet() { - drv.Set(reflect.MakeMap(drv.Type())) - } else { - return fmt.Errorf("target map is nil and not settable") - } - } - keyType = drv.Type().Key() - ma = &mapReflectValue{drv} - default: - return fmt.Errorf("can't read map into %s", rv.Type().String()) - } - - var err error - - if cborInfo == varFollows { - subc := []byte{0} - for true { - _, err = io.ReadFull(dec.rin, subc) - if err != nil { - log.Printf("error reading next byte for var text") - return err - } - if subc[0] == 0xff { - // Done - break - } else { - //var key interface{} - krv := reflect.New(keyType) - //var val interface{} - err = dec.innerDecodeC(krv, subc[0]) - if err != nil { - log.Printf("error decoding map key V, %s", err) - return err - } - - err = dec.setMapKV(krv, ma) - if err != nil { - return err - } - } - } - } else { - var i uint64 - for i = 0; i < aux; i++ { - //var key interface{} - krv := reflect.New(keyType) - //var val interface{} - //err = dec.Decode(&key) - err = dec.reflectDecode(krv) - if err != nil { - log.Printf("error decoding map key #, %s", err) - return err - } - err = dec.setMapKV(krv, ma) - if err != nil { - return err - } - } - } - - if drv.Kind() == reflect.Interface { - drv.Set(irv) - } - return nil -} - -func (dec *Decoder) decodeArray(rv reflect.Value, cborInfo byte, aux uint64) error { - if rv.Kind() == reflect.Ptr { - rv = reflect.Indirect(rv) - } - - var makeLength int = 0 - if cborInfo == varFollows { - // no special capacity to allocate the slice to - } else { - makeLength = int(aux) - } - - // inner reflect value - var irv reflect.Value - var elemType reflect.Type - - switch rv.Kind() { - case reflect.Interface: - // make a slice - nob := make([]interface{}, 0, makeLength) - irv = reflect.ValueOf(nob) - elemType = irv.Type().Elem() - case reflect.Slice: - // we have a slice - irv = rv - elemType = irv.Type().Elem() - case reflect.Array: - // no irv, no elemType - default: - return fmt.Errorf("can't read array into %s", rv.Type().String()) - } - - var err error - - if cborInfo == varFollows { - var arrayPos int = 0 - //log.Printf("var array") - subc := []byte{0} - for true { - _, err = io.ReadFull(dec.rin, subc) - if err != nil { - log.Printf("error reading next byte for var text") - return err - } - if subc[0] == 0xff { - // Done - break - } else if rv.Kind() == reflect.Array { - err := dec.innerDecodeC(rv.Index(arrayPos), subc[0]) - if err != nil { - log.Printf("error decoding array subob") - return err - } - arrayPos++ - } else { - subrv := reflect.New(elemType) - err := dec.innerDecodeC(subrv, subc[0]) - if err != nil { - log.Printf("error decoding array subob") - return err - } - irv = reflect.Append(irv, reflect.Indirect(subrv)) - } - } - } else { - var i uint64 - for i = 0; i < aux; i++ { - if rv.Kind() == reflect.Array { - err := dec.reflectDecode(rv.Index(int(i))) - if err != nil { - log.Printf("error decoding array subob") - return err - } - } else { - subrv := reflect.New(elemType) - err := dec.reflectDecode(subrv) - if err != nil { - log.Printf("error decoding array subob") - return err - } - irv = reflect.Append(irv, reflect.Indirect(subrv)) - } - } - } - - if rv.Kind() != reflect.Array { - rv.Set(irv) - } - - return nil -} - -func (dec *Decoder) decodeBignum(c byte) (*big.Int, error) { - cborType := c & typeMask - cborInfo := c & infoBits - - aux, err := dec.handleInfoBits(cborInfo) - if err != nil { - log.Printf("error in bignum handleInfoBits: %v", err) - return nil, err - } - //log.Printf("bignum cborType %x cborInfo %d aux %x", cborType, cborInfo, aux) - - if cborType != cborBytes { - return nil, fmt.Errorf("attempting to decode bignum but sub object is not bytes but type %x", cborType) - } - - rawbytes := make([]byte, aux) - _, err = io.ReadFull(dec.rin, rawbytes) - if err != nil { - return nil, err - } - - bn := big.NewInt(0) - littleBig := &big.Int{} - d := &big.Int{} - for _, bv := range(rawbytes) { - d.Lsh(bn, 8) - littleBig.SetUint64(uint64(bv)) - bn.Or(d, littleBig) - } - - return bn, nil -} - - -func setBignum(rv reflect.Value, x *big.Int) error { - switch rv.Kind() { - case reflect.Ptr: - return setBignum(reflect.Indirect(rv), x) - case reflect.Interface: - rv.Set(reflect.ValueOf(*x)) - return nil - case reflect.Int32: - if x.BitLen() < 32 { - rv.SetInt(x.Int64()) - return nil - } else { - return fmt.Errorf("int too big for int32 target") - } - case reflect.Int, reflect.Int64: - if x.BitLen() < 64 { - rv.SetInt(x.Int64()) - return nil - } else { - return fmt.Errorf("int too big for int64 target") - } - default: - return fmt.Errorf("cannot assign bignum into Kind=%s Type=%s %#v", rv.Kind().String(), rv.Type().String(), rv) - } -} - -func setBytes(rv reflect.Value, buf []byte) error { - switch rv.Kind() { - case reflect.Ptr: - return setBytes(reflect.Indirect(rv), buf) - case reflect.Interface: - rv.Set(reflect.ValueOf(buf)) - return nil - case reflect.Slice: - if rv.Type().Elem().Kind() == reflect.Uint8 { - rv.SetBytes(buf) - return nil - } else { - return fmt.Errorf("cannot write []byte to k=%s %s", rv.Kind().String(), rv.Type().String()) - } - case reflect.String: - rv.Set(reflect.ValueOf(string(buf))) - return nil - default: - return fmt.Errorf("cannot assign []byte into Kind=%s Type=%s %#v", rv.Kind().String(), ""/*rv.Type().String()*/, rv) - } -} - -func setUint(rv reflect.Value, u uint64) error { - switch rv.Kind() { - case reflect.Ptr: - if rv.IsNil() { - if rv.CanSet() { - rv.Set(reflect.New(rv.Type().Elem())) - // fall through to set indirect below - } else { - return fmt.Errorf("trying to put uint into unsettable nil ptr") - } - } - return setUint(reflect.Indirect(rv), u) - case reflect.Uint, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64: - if rv.OverflowUint(u) { - return fmt.Errorf("value %d does not fit into target of type %s", u, rv.Kind().String()) - } - rv.SetUint(u) - return nil - case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64: - if (u == 0xffffffffffffffff) || rv.OverflowInt(int64(u)) { - return fmt.Errorf("value %d does not fit into target of type %s", u, rv.Kind().String()) - } - rv.SetInt(int64(u)) - return nil - case reflect.Interface: - rv.Set(reflect.ValueOf(u)) - return nil - default: - return fmt.Errorf("cannot assign uint into Kind=%s Type=%#v %#v", rv.Kind().String(), rv.Type(), rv) - } -} -func setInt(rv reflect.Value, i int64) error { - switch rv.Kind() { - case reflect.Ptr: - return setInt(reflect.Indirect(rv), i) - case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64: - if rv.OverflowInt(i) { - return fmt.Errorf("value %d does not fit into target of type %s", i, rv.Kind().String()) - } - rv.SetInt(i) - return nil - case reflect.Interface: - rv.Set(reflect.ValueOf(i)) - return nil - default: - return fmt.Errorf("cannot assign int into Kind=%s Type=%#v %#v", rv.Kind().String(), rv.Type(), rv) - } -} -func setFloat32(rv reflect.Value, f float32) error { - switch rv.Kind() { - case reflect.Ptr: - return setFloat32(reflect.Indirect(rv), f) - case reflect.Float32, reflect.Float64: - rv.SetFloat(float64(f)) - return nil - case reflect.Interface: - rv.Set(reflect.ValueOf(f)) - return nil - default: - return fmt.Errorf("cannot assign float32 into Kind=%s Type=%#v %#v", rv.Kind().String(), rv.Type(), rv) - } -} -func setFloat64(rv reflect.Value, d float64) error { - switch rv.Kind() { - case reflect.Ptr: - return setFloat64(reflect.Indirect(rv), d) - case reflect.Float32, reflect.Float64: - rv.SetFloat(d) - return nil - case reflect.Interface: - rv.Set(reflect.ValueOf(d)) - return nil - default: - return fmt.Errorf("cannot assign float64 into Kind=%s Type=%#v %#v", rv.Kind().String(), rv.Type(), rv) - } -} -func setNil(rv reflect.Value) error { - switch rv.Kind() { - case reflect.Ptr: - //return setNil(reflect.Indirect(rv)) - rv.Set(reflect.Zero(rv.Type())) - case reflect.Interface: - if rv.IsNil() { - // already nil, okay! - return nil - } - rv.Set(reflect.Zero(rv.Type())) - default: - log.Printf("setNil wat %s", rv.Type()) - rv.Set(reflect.Zero(rv.Type())) - } - return nil -} - - -// copied from encoding/json/decode.go -// An InvalidUnmarshalError describes an invalid argument passed to Unmarshal. -// (The argument to Unmarshal must be a non-nil pointer.) -type InvalidUnmarshalError struct { - Type reflect.Type -} - -func (e *InvalidUnmarshalError) Error() string { - if e.Type == nil { - return "json: Unmarshal(nil)" - } - - if e.Type.Kind() != reflect.Ptr { - return "json: Unmarshal(non-pointer " + e.Type.String() + ")" - } - return "json: Unmarshal(nil " + e.Type.String() + ")" -} - - -type CBORTag struct { - Tag uint64 - WrappedObject interface{} -} - - -type Encoder struct { - out io.Writer - - scratch []byte -} - -// parse StructField.Tag.Get("json" or "cbor") -func fieldTagName(xinfo string) (string, bool) { - if len(xinfo) != 0 { - // e.g. `json:"field_name,omitempty"`, or same for cbor - // TODO: honor 'omitempty' option - jiparts := strings.Split(xinfo, ",") - if len(jiparts) > 0 { - fieldName := jiparts[0] - if len(fieldName) > 0 { - return fieldName, true - } - } - } - return "", false -} - -// Return fieldname, bool; if bool is false, don't use this field -func fieldname(fieldinfo reflect.StructField) (string, bool) { - if fieldinfo.PkgPath != "" { - // has path to private package. don't export - return "", false - } - fieldname, ok := fieldTagName(fieldinfo.Tag.Get("cbor")) - if !ok { - fieldname, ok = fieldTagName(fieldinfo.Tag.Get("json")) - } - if ok { - if fieldname == "" { - return fieldinfo.Name, true - } - if fieldname == "-" { - return "", false - } - return fieldname, true - } - return fieldinfo.Name, true -} - -// Write out an object to an io.Writer -func Encode(out io.Writer, ob interface{}) error { - return NewEncoder(out).Encode(ob) -} - -// Write out an object to a new byte slice -func Dumps(ob interface{}) ([]byte, error) { - writeTarget := &bytes.Buffer{} - writeTarget.Grow(20000) - err := Encode(writeTarget, ob) - if err != nil { - return nil, err - } - return writeTarget.Bytes(), nil -} - -// Return new Encoder object for writing to supplied io.Writer. -// -// TODO: set options on Encoder object. -func NewEncoder(out io.Writer) *Encoder { - return &Encoder{out, make([]byte, 9)} -} - - -func (enc *Encoder) Encode(ob interface{}) error { - switch x := ob.(type) { - case int: - return enc.writeInt(int64(x)) - case int8: - return enc.writeInt(int64(x)) - case int16: - return enc.writeInt(int64(x)) - case int32: - return enc.writeInt(int64(x)) - case int64: - return enc.writeInt(x) - case uint: - return enc.tagAuxOut(cborUint, uint64(x)) - case uint8: /* aka byte */ - return enc.tagAuxOut(cborUint, uint64(x)) - case uint16: - return enc.tagAuxOut(cborUint, uint64(x)) - case uint32: - return enc.tagAuxOut(cborUint, uint64(x)) - case uint64: - return enc.tagAuxOut(cborUint, x) - case float32: - return enc.writeFloat(float64(x)) - case float64: - return enc.writeFloat(x) - case string: - return enc.writeText(x) - case []byte: - return enc.writeBytes(x) - case bool: - return enc.writeBool(x) - case nil: - return enc.tagAuxOut(cbor7, uint64(cborNull)) - case big.Int: - return fmt.Errorf("TODO: encode big.Int") - } - - // If none of the simple types work, try reflection - return enc.writeReflection(reflect.ValueOf(ob)) -} - -func (enc *Encoder) writeReflection(rv reflect.Value) error { - var err error - switch rv.Kind() { - case reflect.Int, reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64: - return enc.writeInt(rv.Int()) - case reflect.Uint, reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64: - return enc.tagAuxOut(cborUint, rv.Uint()) - case reflect.Float32, reflect.Float64: - return enc.writeFloat(rv.Float()) - case reflect.Bool: - return enc.writeBool(rv.Bool()) - case reflect.String: - return enc.writeText(rv.String()) - case reflect.Slice, reflect.Array: - elemType := rv.Type().Elem() - if elemType.Kind() == reflect.Uint8 { - // special case, write out []byte - return enc.writeBytes(rv.Bytes()) - } - alen := rv.Len() - err = enc.tagAuxOut(cborArray, uint64(alen)) - for i := 0; i < alen; i++ { - err = enc.writeReflection(rv.Index(i)) - if err != nil { - log.Printf("error at array elem %d", i) - return err - } - } - return nil - case reflect.Map: - err = enc.tagAuxOut(cborMap, uint64(rv.Len())) - keys := rv.MapKeys() - for _, krv := range(keys) { - vrv := rv.MapIndex(krv) - err = enc.writeReflection(krv) - if err != nil { - log.Printf("error encoding map key") - return err - } - err = enc.writeReflection(vrv) - if err != nil { - log.Printf("error encoding map val") - return err - } - } - return nil - case reflect.Struct: - // TODO: check for big.Int ? - numfields := rv.NumField() - structType := rv.Type() - usableFields := 0 - for i := 0; i < numfields; i++ { - fieldinfo := structType.Field(i) - _, ok := fieldname(fieldinfo) - if !ok { continue } - usableFields++ - } - err = enc.tagAuxOut(cborMap, uint64(usableFields)) - if err != nil { - return err - } - for i := 0; i < numfields; i++ { - fieldinfo := structType.Field(i) - fieldname, ok := fieldname(fieldinfo) - if !ok { continue } - err = enc.writeText(fieldname) - if err != nil { - return err - } - err = enc.writeReflection(rv.Field(i)) - if err != nil { - return err - } - } - return nil - case reflect.Interface: - //return fmt.Errorf("TODO: serialize interface{} k=%s T=%s", rv.Kind().String(), rv.Type().String()) - return enc.Encode(rv.Interface()) - case reflect.Ptr: - if rv.IsNil() { - return enc.tagAuxOut(cbor7, uint64(cborNull)) - } - return enc.writeReflection(reflect.Indirect(rv)) - } - - return fmt.Errorf("don't know how to CBOR serialize k=%s t=%s", rv.Kind().String(), rv.Type().String()) -} - -func (enc *Encoder) writeInt(x int64) error { - if (x < 0) { - return enc.tagAuxOut(cborNegint, uint64(-1 - x)) - } - return enc.tagAuxOut(cborUint, uint64(x)) -} - -func (enc *Encoder) tagAuxOut(tag byte, x uint64) error { - var err error - if x <= 23 { - // tiny literal - enc.scratch[0] = tag | byte(x) - _, err = enc.out.Write(enc.scratch[:1]) - } else if x < 0x0ff { - enc.scratch[0] = tag | int8Follows - enc.scratch[1] = byte(x & 0x0ff) - _, err = enc.out.Write(enc.scratch[:2]) - } else if x < 0x0ffff { - enc.scratch[0] = tag | int16Follows - enc.scratch[1] = byte((x >> 8) & 0x0ff) - enc.scratch[2] = byte(x & 0x0ff) - _, err = enc.out.Write(enc.scratch[:3]) - } else if x < 0x0ffffffff { - enc.scratch[0] = tag | int32Follows - enc.scratch[1] = byte((x >> 24) & 0x0ff) - enc.scratch[2] = byte((x >> 16) & 0x0ff) - enc.scratch[3] = byte((x >> 8) & 0x0ff) - enc.scratch[4] = byte(x & 0x0ff) - _, err = enc.out.Write(enc.scratch[:5]) - } else { - err = enc.tagAux64(tag, x) - } - return err -} -func (enc *Encoder) tagAux64(tag byte, x uint64) error { - enc.scratch[0] = tag | int64Follows - enc.scratch[1] = byte((x >> 56) & 0x0ff) - enc.scratch[2] = byte((x >> 48) & 0x0ff) - enc.scratch[3] = byte((x >> 40) & 0x0ff) - enc.scratch[4] = byte((x >> 32) & 0x0ff) - enc.scratch[5] = byte((x >> 24) & 0x0ff) - enc.scratch[6] = byte((x >> 16) & 0x0ff) - enc.scratch[7] = byte((x >> 8) & 0x0ff) - enc.scratch[8] = byte(x & 0x0ff) - _, err := enc.out.Write(enc.scratch[:9]) - return err -} - -func (enc *Encoder) writeText(x string) error { - enc.tagAuxOut(cborText, uint64(len(x))) - _, err := io.WriteString(enc.out, x) - return err -} - -func (enc *Encoder) writeBytes(x []byte) error { - enc.tagAuxOut(cborBytes, uint64(len(x))) - _, err := enc.out.Write(x) - return err -} - -func (enc *Encoder) writeFloat(x float64) error { - return enc.tagAux64(cbor7, math.Float64bits(x)) -} - -func (enc *Encoder) writeBool(x bool) error { - if x { - return enc.tagAuxOut(cbor7, uint64(cborTrue)) - } else { - return enc.tagAuxOut(cbor7, uint64(cborFalse)) - } -} diff --git a/vendor/github.com/brianolson/cbor_go/cbor_test.go b/vendor/github.com/brianolson/cbor_go/cbor_test.go deleted file mode 100644 index 30044bbe..00000000 --- a/vendor/github.com/brianolson/cbor_go/cbor_test.go +++ /dev/null @@ -1,587 +0,0 @@ -package cbor - -import "bytes" -import "encoding/base64" -import "encoding/hex" -import "encoding/json" -import "fmt" -import "log" -import "math" -import "math/big" -import "os" -import "reflect" -import "strings" -import "testing" - -type testVector struct { - Cbor string - Hex string - Roundtrip bool - Decoded interface{} - Diagnostic string -} - -var errpath string = "../test-vectors/appendix_a.json" - -func readVectors(t *testing.T) ([]testVector, error) { - fin, err := os.Open(errpath) - if err != nil { - t.Error("could not open test vectors at: ", errpath) - return nil, err - } - jd := json.NewDecoder(fin) - jd.UseNumber() - they := new([]testVector) - err = jd.Decode(they) - return *they, err -} - - -func jeq(jsonv, cborv interface{}, t *testing.T) bool { - switch i := cborv.(type) { - case uint64: - switch jv := jsonv.(type) { - case int: - return (jv >= 0) && (uint64(jv) == i) - case uint64: - return i == jv - case float64: - return math.Abs(float64(i) - jv) < math.Max(math.Abs(jv / 1000000000.0), 1.0/1000000000.0) - case json.Number: - return jv.String() == fmt.Sprintf("%d", i) - default: - t.Errorf("wat types cbor %T json %T", cborv, jsonv); - return false - } - case big.Int: - switch jv := jsonv.(type) { - case json.Number: - return jv.String() == i.String() - default: - t.Errorf("wat types cbor %T json %T", cborv, jsonv); - return false - } - case int64: - switch jv := jsonv.(type) { - case int: - return int64(jv) == i - case json.Number: - return jv.String() == fmt.Sprintf("%d", i) - default: - t.Errorf("wat types cbor %T json %T", cborv, jsonv); - return false - } - case float32: - switch jv := jsonv.(type) { - case json.Number: - //return jv.String() == fmt.Sprintf("%f", i) - fv, err := jv.Float64() - if err != nil { - t.Errorf("error getting json float: %s", err) - return false; - } - return fv == float64(i) - default: - t.Errorf("wat types cbor %T json %T", cborv, jsonv); - return false - } - case float64: - switch jv := jsonv.(type) { - case json.Number: - //return jv.String() == fmt.Sprintf("%f", i) - fv, err := jv.Float64() - if err != nil { - t.Errorf("error getting json float: %s", err) - return false; - } - return fv == i - default: - t.Errorf("wat types cbor %T json %T", cborv, jsonv); - return false - } - case bool: - switch jv := jsonv.(type) { - case bool: - return jv == i - default: - t.Errorf("wat types cbor %T json %T", cborv, jsonv); - return false - } - case string: - switch jv := jsonv.(type) { - case string: - return jv == i - default: - t.Errorf("wat types cbor %T json %T", cborv, jsonv); - return false - } - case []interface{}: - switch jv := jsonv.(type) { - case []interface{}: - if len(i) != len(jv) { - return false - } - for cai, cav := range(i) { - if !jeq(jv[cai], cav, t) { - t.Errorf("array mismatch at [%d]: json=%#v cbor=%#v", cai, jv[cai], cav) - return false - } -/* - if fmt.Sprintf("%v", cav) != fmt.Sprintf("%v", jv[cai]) { - return false - } -*/ - } - return true - default: - if reflect.DeepEqual(cborv, jsonv) { - return true - } - t.Errorf("wat types cbor %T json %T", cborv, jsonv); - return false - } - case nil: - switch jv := jsonv.(type) { - case nil: - return true; - default: - t.Errorf("wat types cbor %T json %T", cborv, jv); - return false - } - case map[interface{}]interface{}: - switch jv := jsonv.(type) { - case map[string]interface{}: - for jmk, jmv := range(jv) { - cmv, ok := i[jmk] - if !ok { - t.Errorf("json key %v missing from cbor", jmk) - return false - } - if !jeq(jmv, cmv, t) { - t.Errorf("map key=%#v values: json=%#v cbor=%#v", jmk, jmv, cmv) - return false - } -/* - if !reflect.DeepEqual(cmv, jmv) { - t.Errorf("map key=%#v values: json=%#v cbor=%#v", jmk, jmv, cmv) - return false - } -*/ - } - return true - default: - t.Errorf("wat types cbor %T json %T", cborv, jv); - return false - } - case []byte: - switch jv := jsonv.(type) { - case []byte: - return bytes.Equal(i, jv) - default: - t.Errorf("wat types cbor %T json %T", cborv, jv); - return false - } - default: - eq := reflect.DeepEqual(jsonv, cborv) - if ! eq { - log.Printf("unexpected cbor type %T = %#v", cborv, cborv) - t.Errorf("unexpected cbor type %T = %#v", cborv, cborv) - } - return eq - //return fmt.Sprintf("%v", jsonv) == fmt.Sprintf("%v", cborv) - //return jsonv == cborv - } -} - - -func TestDecodeVectors(t *testing.T) { - //t.Parallel() - - t.Log("test standard decode vectors") - they, err := readVectors(t) - if err != nil { - t.Fatal("could not load test vectors:", err) - return - } - t.Logf("got %d test vectors", len(they)) - if len(they) <= 0 { - t.Fatal("got no test vectors") - return - } - for i, testv := range(they) { - if testv.Decoded != nil && len(testv.Cbor) > 0 { - //log.Printf("hex %s", testv.Hex) - t.Logf("hex %s", testv.Hex) - bin, err := base64.StdEncoding.DecodeString(testv.Cbor) - if err != nil { - t.Logf("test[%d] %#v", i, testv) - t.Logf("decoding [%d] %#v ...\n", i, testv.Cbor) - t.Fatal("could not decode test vector b64") - return - } - ring := NewDecoder(bytes.NewReader(bin)) - var cborObject interface{} - err = ring.Decode(&cborObject) - if err != nil { - t.Logf("test[%d] %#v", i, testv) - t.Logf("decoding [%d] %#v ...\n", i, testv.Cbor) - t.Fatalf("error decoding cbor: %v", err) - return - } - if !jeq(testv.Decoded, cborObject, t) { - //t.Logf("test[%d] %#v", i, testv) - t.Logf("decoding [%d] %#v ...\n", i, testv.Cbor) - t.Errorf("json %T %#v != cbor %T %#v", testv.Decoded, testv.Decoded, cborObject, cborObject) - t.Logf("------") - } - } - } -} - - -type RefTestOb struct { - AString string - BInt int - CUint uint64 - DFloat float64 - EIntArray []int - FStrIntMap map[string]int - GBool bool -} - -type privateTestOb struct { - privateInt int - PubInt int - PubSkip int `cbor:"-"` -} - - -func checkObOne(ob RefTestOb, t *testing.T) bool { - ok := true - if ob.AString != "astring val" { - t.Errorf("AString wanted \"astring val\" but got %#v", ob.AString) - ok = false - } - if ob.BInt != -33 { - t.Errorf("BInt wanted -33 but got %#v", ob.BInt) - ok = false - } - if ob.CUint != 42 { - t.Errorf("CUint wanted 42 but got %#v", ob.CUint) - ok = false - } - if ob.DFloat != 0.25 { - t.Errorf("DFloat wanted 02.5 but got %#v", ob.DFloat) - ok = false - } - return ok -} - - -const ( - reflexObOneJson = "{\"astring\": \"astring val\", \"bint\": -33, \"cuint\": 42, \"dfloat\": 0.25, \"eintarray\": [1,2,3], \"fstrintmap\":{\"a\":13, \"b\":14}, \"gbool\": false}" - reflexObOneCborB64 = "p2dhc3RyaW5na2FzdHJpbmcgdmFsamZzdHJpbnRtYXCiYWENYWIOZWdib29s9GRiaW50OCBpZWludGFycmF5gwECA2VjdWludBgqZmRmbG9hdPs/0AAAAAAAAA==" -) - -var referenceObOne RefTestOb = RefTestOb{ - "astring val", -33, 42, 0.25, []int{1,2,3}, - map[string]int{"a":13, "b": 14}, false} - -/* -#python -import json -import cbor -import base64 -# copy in the above json string literal here: -jsonstr = -print base64.b64encode(cbor.dumps(json.loads(jsonstr))) -*/ - -func TestDecodeReflectivelyOne(t *testing.T) { - //t.Parallel() - t.Log("test decode reflectively one") - - var err error - - jd := json.NewDecoder(strings.NewReader(reflexObOneJson)) - jd.UseNumber() - they := RefTestOb{} - err = jd.Decode(&they) - if err != nil { - t.Fatal("could not decode json", err) - return - } - - t.Log("check json") - if !checkObOne(they, t) { - return - } - - bin, err := base64.StdEncoding.DecodeString(reflexObOneCborB64) - if err != nil { - t.Fatal("error decoding cbor b64", err) - return - } - ring := NewDecoder(bytes.NewReader(bin)) - cob := RefTestOb{} - err = ring.Decode(&cob) - if err != nil { - t.Fatal("error decoding cbor", err) - return - } - t.Log("check cbor") - if !checkObOne(they, t) { - return - } -} - -func TestEncodeWithPrivate(t *testing.T) { - //t.Parallel() - t.Log("test encode with private") - - var err error - ob := privateTestOb{1,2,3} - - writeTarget := &bytes.Buffer{} - writeTarget.Grow(20000) - err = Encode(writeTarget, ob) - if err != nil { - t.Errorf("failed on encode: %s", err) - return - } - - { - destmap := make(map[string]interface{}) - scratch := writeTarget.Bytes() - dec := NewDecoder(bytes.NewReader(scratch)) - err = dec.Decode(&destmap) - if err != nil { - t.Errorf("failed on decode: %s", err) - return - } - pi, ok := destmap["privateInt"] - if ok { - t.Errorf("destmap shouldn't have privateInt %v: %#v", pi, destmap) - } - pubskip, ok := destmap["PubSkip"] - if ok { - t.Errorf("destmap shouldn't have PubSkip %v: %#v", pubskip, destmap) - } - } - - xo := privateTestOb{-1,-1,-1} - scratch := writeTarget.Bytes() - dec := NewDecoder(bytes.NewReader(scratch)) - err = dec.Decode(&xo) - if err != nil { - t.Errorf("failed on decode: %s", err) - return - } - if xo.privateInt != -1 { - t.Errorf("privateInt is %d, wanted -1", xo.privateInt) - } - if xo.PubSkip != -1 { - t.Errorf("PubSkip is %d, wanted -1", xo.PubSkip) - } -} - -func objectSerializedObject(t *testing.T, ob interface{}) { - out := reflect.Indirect(reflect.New(reflect.TypeOf(ob))).Interface() - //t.Logf("oso ob T %T %#v, out T %T %#v", ob, ob, out, out) - objectSerializedTargetObject(t, ob, &out) - if !jeq(ob, out, t) { - // - t.Errorf("%#v != %#v", ob, out) - } -} -func objectSerializedTargetObject(t *testing.T, ob interface{}, out interface{}) { - t.Logf("oso ob T %T %#v", ob, ob) - t.Logf(" out T %T %#v", out, out) - //scratch := make([]byte, 0) - //writeTarget := bytes.NewBuffer(scratch) - writeTarget := &bytes.Buffer{} - writeTarget.Grow(20000) - err := Encode(writeTarget, ob) - if err != nil { - t.Errorf("failed on encode: %s", err) - return - } - - scratch := writeTarget.Bytes() - dec := NewDecoder(bytes.NewReader(scratch)) - err = dec.Decode(out) - - t.Logf("oso ob T %T %#v", ob, ob) - t.Logf(" out T %T %#v", out, out) - - t.Log(hex.EncodeToString(scratch)) - if err != nil { - t.Errorf("failed on decode: %s", err) - return - } -} - -func TestOSO(t *testing.T) { - t.Log("test OSO") - objectSerializedObject(t, 0) - objectSerializedObject(t, 1) - objectSerializedObject(t, 2) - objectSerializedObject(t, -1) - objectSerializedObject(t, true) - objectSerializedObject(t, false) - // TODO: some of these don't quite work yet - //objectSerializedObject(t, nil) - objectSerializedObject(t, []interface{}{}) - //objectSerializedObject(t, []int{}) - //objectSerializedObject(t, []int{1,2,3}) - objectSerializedObject(t, "hello") - objectSerializedObject(t, []byte{1,3,2}) - //objectSerializedObject(t, RefTestOb{"hi", -1000, 137, 0.5, nil, nil, true}) -// objectSerializedObject(t, ) -} - - -func TestRefStruct(t *testing.T) { - t.Log("test hard") - trto := RefTestOb{} - objectSerializedTargetObject(t, referenceObOne, &trto) - checkObOne(trto, t) -} - - -func TestArrays(t *testing.T) { - t.Log("test arrays") - - // okay, sooo, slices - ia := []int{1,2,3} - tia := []int{} - objectSerializedTargetObject(t, ia, &tia) - if ! reflect.DeepEqual(ia, tia) { - t.Errorf("int array %#v != %#v", ia, tia) - } - - // actual arrays - xa := [3]int{4,5,6} - txa := [3]int{} - objectSerializedTargetObject(t, xa, &txa) - if ! reflect.DeepEqual(xa, txa) { - t.Errorf("int array %#v != %#v", xa, txa) - } - - oa := [3]interface{}{"hi", 2, -3.14} - toa := [3]interface{}{} - objectSerializedTargetObject(t, oa, &toa) - if toa[0] != "hi" { - t.Errorf("[3]interface{} [0] wanted \"hi\" got %#v", toa[0]) - } - if toa[1] != uint64(2) { - t.Errorf("[3]interface{} [0] wanted 2 got %#v", toa[1]) - } - if toa[2] != -3.14 { - t.Errorf("[3]interface{} [0] wanted -3.14 got %#v", toa[2]) - } -} - -type TaggedStruct struct { - One string `json:"m_one_s"` - Two int `json:"bunnies,omitempty"` - Three float64 `json:"htree_json" cbor:"three_cbor"` -} - -func PracticalInt64(xi interface{}) (int64, bool) { - switch i := xi.(type) { - //case int, int8, int16, int32, int64, uint8, uint16, uint32: - //oi, ok := i.(int64) - //return oi, ok - case int: - return int64(i), true - case int64: - return int64(i), true - case uint64: - if i < 0x7fffffffffffffff { - return int64(i), true - } - return 0, false - } - return 0, false -} - -func ms(d map[string]interface{}, k string, t *testing.T) (string, bool) { - if d == nil { - t.Error("nil map") - return "", false - } - ob, ok := d[k] - if !ok { - t.Errorf("map missing key %v", k) - return "", false - } - xs, ok := ob.(string) - return xs, ok -} -// I wish go had templates! -func mi(d map[string]interface{}, k string, t *testing.T) (int64, bool) { - if d == nil { - t.Error("nil map") - return 0, false - } - ob, ok := d[k] - if !ok { - t.Errorf("map missing key %v", k) - return 0, false - } - //xs, ok := ob.(int) - xs, ok := PracticalInt64(ob) - return xs, ok -} -func mf64(d map[string]interface{}, k string, t *testing.T) (float64, bool) { - if d == nil { - t.Error("nil map") - return 0, false - } - ob, ok := d[k] - if !ok { - t.Errorf("map missing key %v", k) - return 0, false - } - xs, ok := ob.(float64) - return xs, ok -} - -func TestStructTags(t *testing.T) { - t.Log("StructTags") - - ob := TaggedStruct{"hello", 42, 6.28} - - blob, err := Dumps(ob) - if err != nil { - t.Error(err) - } - - mapo := make(map[string]interface{}) - err = Loads(blob, &mapo) - if err != nil { - t.Error(err) - } - xs, ok := ms(mapo, "m_one_s", t) - if (!ok) || (xs != "hello") { - t.Errorf("failed to get m_one_s from %#v", mapo) - } - xi, ok := mi(mapo, "bunnies", t) - if (!ok) || (xi != 42) { - t.Errorf("failed to get bunnies from %#v", mapo) - } - xf, ok := mf64(mapo, "three_cbor", t) - if (!ok) || (xf != 6.28) { - t.Errorf("failed to get three_cbor from %#v", mapo) - } - - ob2 := TaggedStruct{} - err = Loads(blob, &ob2) - if err != nil { - t.Error(err) - } - if ob != ob2 { - t.Errorf("a!=b %#v != %#v", ob, ob2) - } -} diff --git a/vendor/github.com/brianolson/cbor_go/doc.go b/vendor/github.com/brianolson/cbor_go/doc.go deleted file mode 100644 index b0eaf8ba..00000000 --- a/vendor/github.com/brianolson/cbor_go/doc.go +++ /dev/null @@ -1,26 +0,0 @@ -/* -CBOR is IETF RFC 7049, the "Concise Binary Object Representation" -http://tools.ietf.org/html/rfc7049 - -In can be thought of as "binary JSON" but is a superset and somewhat richer representation than JSON. - -import cbor "bitbucket.org/bodhisnarkva/cbor/go" - -Other implementations and more information can also be found at: -http://cbor.io/ - -Serialization and deserialization of structs uses the same tag format as the encoding/json package. If different json and cbor serialization names are needed, a tag `cbor:"fieldName"` can be specified. Example: - - type DemoStruct struct { - FieldNeedsDifferentName string `json:"serialization_name"` - FieldNeedsJsonVsCborName int `json:"json_name" cbor:"cbor_name"` - } - -This might generate json: -{"serialization_name":"foo", "json_name":2} - -And CBOR equivalent to: -{"serialization_name":"foo", "cbor_name":2} - -*/ -package cbor diff --git a/vendor/github.com/davecgh/go-spew/.gitignore b/vendor/github.com/davecgh/go-spew/.gitignore deleted file mode 100644 index 00268614..00000000 --- a/vendor/github.com/davecgh/go-spew/.gitignore +++ /dev/null @@ -1,22 +0,0 @@ -# Compiled Object files, Static and Dynamic libs (Shared Objects) -*.o -*.a -*.so - -# Folders -_obj -_test - -# Architecture specific extensions/prefixes -*.[568vq] -[568vq].out - -*.cgo1.go -*.cgo2.c -_cgo_defun.c -_cgo_gotypes.go -_cgo_export.* - -_testmain.go - -*.exe diff --git a/vendor/github.com/davecgh/go-spew/.travis.yml b/vendor/github.com/davecgh/go-spew/.travis.yml deleted file mode 100644 index 1f4cbf54..00000000 --- a/vendor/github.com/davecgh/go-spew/.travis.yml +++ /dev/null @@ -1,28 +0,0 @@ -language: go -go_import_path: github.com/davecgh/go-spew -go: - - 1.6.x - - 1.7.x - - 1.8.x - - 1.9.x - - 1.10.x - - tip -sudo: false -install: - - go get -v github.com/alecthomas/gometalinter - - gometalinter --install -script: - - export PATH=$PATH:$HOME/gopath/bin - - export GORACE="halt_on_error=1" - - test -z "$(gometalinter --disable-all - --enable=gofmt - --enable=golint - --enable=vet - --enable=gosimple - --enable=unconvert - --deadline=4m ./spew | tee /dev/stderr)" - - go test -v -race -tags safe ./spew - - go test -v -race -tags testcgo ./spew -covermode=atomic -coverprofile=profile.cov -after_success: - - go get -v github.com/mattn/goveralls - - goveralls -coverprofile=profile.cov -service=travis-ci diff --git a/vendor/github.com/davecgh/go-spew/LICENSE b/vendor/github.com/davecgh/go-spew/LICENSE deleted file mode 100644 index bc52e96f..00000000 --- a/vendor/github.com/davecgh/go-spew/LICENSE +++ /dev/null @@ -1,15 +0,0 @@ -ISC License - -Copyright (c) 2012-2016 Dave Collins - -Permission to use, copy, modify, and/or distribute this software for any -purpose with or without fee is hereby granted, provided that the above -copyright notice and this permission notice appear in all copies. - -THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES -WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF -MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR -ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES -WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN -ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF -OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. diff --git a/vendor/github.com/davecgh/go-spew/README.md b/vendor/github.com/davecgh/go-spew/README.md deleted file mode 100644 index f6ed02c3..00000000 --- a/vendor/github.com/davecgh/go-spew/README.md +++ /dev/null @@ -1,201 +0,0 @@ -go-spew -======= - -[![Build Status](https://img.shields.io/travis/davecgh/go-spew.svg)](https://travis-ci.org/davecgh/go-spew) -[![ISC License](http://img.shields.io/badge/license-ISC-blue.svg)](http://copyfree.org) -[![Coverage Status](https://img.shields.io/coveralls/davecgh/go-spew.svg)](https://coveralls.io/r/davecgh/go-spew?branch=master) - -Go-spew implements a deep pretty printer for Go data structures to aid in -debugging. A comprehensive suite of tests with 100% test coverage is provided -to ensure proper functionality. See `test_coverage.txt` for the gocov coverage -report. Go-spew is licensed under the liberal ISC license, so it may be used in -open source or commercial projects. - -If you're interested in reading about how this package came to life and some -of the challenges involved in providing a deep pretty printer, there is a blog -post about it -[here](https://web.archive.org/web/20160304013555/https://blog.cyphertite.com/go-spew-a-journey-into-dumping-go-data-structures/). - -## Documentation - -[![GoDoc](https://img.shields.io/badge/godoc-reference-blue.svg)](http://godoc.org/github.com/davecgh/go-spew/spew) - -Full `go doc` style documentation for the project can be viewed online without -installing this package by using the excellent GoDoc site here: -http://godoc.org/github.com/davecgh/go-spew/spew - -You can also view the documentation locally once the package is installed with -the `godoc` tool by running `godoc -http=":6060"` and pointing your browser to -http://localhost:6060/pkg/github.com/davecgh/go-spew/spew - -## Installation - -```bash -$ go get -u github.com/davecgh/go-spew/spew -``` - -## Quick Start - -Add this import line to the file you're working in: - -```Go -import "github.com/davecgh/go-spew/spew" -``` - -To dump a variable with full newlines, indentation, type, and pointer -information use Dump, Fdump, or Sdump: - -```Go -spew.Dump(myVar1, myVar2, ...) -spew.Fdump(someWriter, myVar1, myVar2, ...) -str := spew.Sdump(myVar1, myVar2, ...) -``` - -Alternatively, if you would prefer to use format strings with a compacted inline -printing style, use the convenience wrappers Printf, Fprintf, etc with %v (most -compact), %+v (adds pointer addresses), %#v (adds types), or %#+v (adds types -and pointer addresses): - -```Go -spew.Printf("myVar1: %v -- myVar2: %+v", myVar1, myVar2) -spew.Printf("myVar3: %#v -- myVar4: %#+v", myVar3, myVar4) -spew.Fprintf(someWriter, "myVar1: %v -- myVar2: %+v", myVar1, myVar2) -spew.Fprintf(someWriter, "myVar3: %#v -- myVar4: %#+v", myVar3, myVar4) -``` - -## Debugging a Web Application Example - -Here is an example of how you can use `spew.Sdump()` to help debug a web application. Please be sure to wrap your output using the `html.EscapeString()` function for safety reasons. You should also only use this debugging technique in a development environment, never in production. - -```Go -package main - -import ( - "fmt" - "html" - "net/http" - - "github.com/davecgh/go-spew/spew" -) - -func handler(w http.ResponseWriter, r *http.Request) { - w.Header().Set("Content-Type", "text/html") - fmt.Fprintf(w, "Hi there, %s!", r.URL.Path[1:]) - fmt.Fprintf(w, "") -} - -func main() { - http.HandleFunc("/", handler) - http.ListenAndServe(":8080", nil) -} -``` - -## Sample Dump Output - -``` -(main.Foo) { - unexportedField: (*main.Bar)(0xf84002e210)({ - flag: (main.Flag) flagTwo, - data: (uintptr) - }), - ExportedField: (map[interface {}]interface {}) { - (string) "one": (bool) true - } -} -([]uint8) { - 00000000 11 12 13 14 15 16 17 18 19 1a 1b 1c 1d 1e 1f 20 |............... | - 00000010 21 22 23 24 25 26 27 28 29 2a 2b 2c 2d 2e 2f 30 |!"#$%&'()*+,-./0| - 00000020 31 32 |12| -} -``` - -## Sample Formatter Output - -Double pointer to a uint8: -``` - %v: <**>5 - %+v: <**>(0xf8400420d0->0xf8400420c8)5 - %#v: (**uint8)5 - %#+v: (**uint8)(0xf8400420d0->0xf8400420c8)5 -``` - -Pointer to circular struct with a uint8 field and a pointer to itself: -``` - %v: <*>{1 <*>} - %+v: <*>(0xf84003e260){ui8:1 c:<*>(0xf84003e260)} - %#v: (*main.circular){ui8:(uint8)1 c:(*main.circular)} - %#+v: (*main.circular)(0xf84003e260){ui8:(uint8)1 c:(*main.circular)(0xf84003e260)} -``` - -## Configuration Options - -Configuration of spew is handled by fields in the ConfigState type. For -convenience, all of the top-level functions use a global state available via the -spew.Config global. - -It is also possible to create a ConfigState instance that provides methods -equivalent to the top-level functions. This allows concurrent configuration -options. See the ConfigState documentation for more details. - -``` -* Indent - String to use for each indentation level for Dump functions. - It is a single space by default. A popular alternative is "\t". - -* MaxDepth - Maximum number of levels to descend into nested data structures. - There is no limit by default. - -* DisableMethods - Disables invocation of error and Stringer interface methods. - Method invocation is enabled by default. - -* DisablePointerMethods - Disables invocation of error and Stringer interface methods on types - which only accept pointer receivers from non-pointer variables. This option - relies on access to the unsafe package, so it will not have any effect when - running in environments without access to the unsafe package such as Google - App Engine or with the "safe" build tag specified. - Pointer method invocation is enabled by default. - -* DisablePointerAddresses - DisablePointerAddresses specifies whether to disable the printing of - pointer addresses. This is useful when diffing data structures in tests. - -* DisableCapacities - DisableCapacities specifies whether to disable the printing of capacities - for arrays, slices, maps and channels. This is useful when diffing data - structures in tests. - -* ContinueOnMethod - Enables recursion into types after invoking error and Stringer interface - methods. Recursion after method invocation is disabled by default. - -* SortKeys - Specifies map keys should be sorted before being printed. Use - this to have a more deterministic, diffable output. Note that - only native types (bool, int, uint, floats, uintptr and string) - and types which implement error or Stringer interfaces are supported, - with other types sorted according to the reflect.Value.String() output - which guarantees display stability. Natural map order is used by - default. - -* SpewKeys - SpewKeys specifies that, as a last resort attempt, map keys should be - spewed to strings and sorted by those strings. This is only considered - if SortKeys is true. - -``` - -## Unsafe Package Dependency - -This package relies on the unsafe package to perform some of the more advanced -features, however it also supports a "limited" mode which allows it to work in -environments where the unsafe package is not available. By default, it will -operate in this mode on Google App Engine and when compiled with GopherJS. The -"safe" build tag may also be specified to force the package to build without -using the unsafe package. - -## License - -Go-spew is licensed under the [copyfree](http://copyfree.org) ISC License. diff --git a/vendor/github.com/davecgh/go-spew/cov_report.sh b/vendor/github.com/davecgh/go-spew/cov_report.sh deleted file mode 100644 index 9579497e..00000000 --- a/vendor/github.com/davecgh/go-spew/cov_report.sh +++ /dev/null @@ -1,22 +0,0 @@ -#!/bin/sh - -# This script uses gocov to generate a test coverage report. -# The gocov tool my be obtained with the following command: -# go get github.com/axw/gocov/gocov -# -# It will be installed to $GOPATH/bin, so ensure that location is in your $PATH. - -# Check for gocov. -if ! type gocov >/dev/null 2>&1; then - echo >&2 "This script requires the gocov tool." - echo >&2 "You may obtain it with the following command:" - echo >&2 "go get github.com/axw/gocov/gocov" - exit 1 -fi - -# Only run the cgo tests if gcc is installed. -if type gcc >/dev/null 2>&1; then - (cd spew && gocov test -tags testcgo | gocov report) -else - (cd spew && gocov test | gocov report) -fi diff --git a/vendor/github.com/davecgh/go-spew/spew/bypass.go b/vendor/github.com/davecgh/go-spew/spew/bypass.go deleted file mode 100644 index 79299478..00000000 --- a/vendor/github.com/davecgh/go-spew/spew/bypass.go +++ /dev/null @@ -1,145 +0,0 @@ -// Copyright (c) 2015-2016 Dave Collins -// -// Permission to use, copy, modify, and distribute this software for any -// purpose with or without fee is hereby granted, provided that the above -// copyright notice and this permission notice appear in all copies. -// -// THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES -// WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF -// MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR -// ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES -// WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN -// ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF -// OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. - -// NOTE: Due to the following build constraints, this file will only be compiled -// when the code is not running on Google App Engine, compiled by GopherJS, and -// "-tags safe" is not added to the go build command line. The "disableunsafe" -// tag is deprecated and thus should not be used. -// Go versions prior to 1.4 are disabled because they use a different layout -// for interfaces which make the implementation of unsafeReflectValue more complex. -// +build !js,!appengine,!safe,!disableunsafe,go1.4 - -package spew - -import ( - "reflect" - "unsafe" -) - -const ( - // UnsafeDisabled is a build-time constant which specifies whether or - // not access to the unsafe package is available. - UnsafeDisabled = false - - // ptrSize is the size of a pointer on the current arch. - ptrSize = unsafe.Sizeof((*byte)(nil)) -) - -type flag uintptr - -var ( - // flagRO indicates whether the value field of a reflect.Value - // is read-only. - flagRO flag - - // flagAddr indicates whether the address of the reflect.Value's - // value may be taken. - flagAddr flag -) - -// flagKindMask holds the bits that make up the kind -// part of the flags field. In all the supported versions, -// it is in the lower 5 bits. -const flagKindMask = flag(0x1f) - -// Different versions of Go have used different -// bit layouts for the flags type. This table -// records the known combinations. -var okFlags = []struct { - ro, addr flag -}{{ - // From Go 1.4 to 1.5 - ro: 1 << 5, - addr: 1 << 7, -}, { - // Up to Go tip. - ro: 1<<5 | 1<<6, - addr: 1 << 8, -}} - -var flagValOffset = func() uintptr { - field, ok := reflect.TypeOf(reflect.Value{}).FieldByName("flag") - if !ok { - panic("reflect.Value has no flag field") - } - return field.Offset -}() - -// flagField returns a pointer to the flag field of a reflect.Value. -func flagField(v *reflect.Value) *flag { - return (*flag)(unsafe.Pointer(uintptr(unsafe.Pointer(v)) + flagValOffset)) -} - -// unsafeReflectValue converts the passed reflect.Value into a one that bypasses -// the typical safety restrictions preventing access to unaddressable and -// unexported data. It works by digging the raw pointer to the underlying -// value out of the protected value and generating a new unprotected (unsafe) -// reflect.Value to it. -// -// This allows us to check for implementations of the Stringer and error -// interfaces to be used for pretty printing ordinarily unaddressable and -// inaccessible values such as unexported struct fields. -func unsafeReflectValue(v reflect.Value) reflect.Value { - if !v.IsValid() || (v.CanInterface() && v.CanAddr()) { - return v - } - flagFieldPtr := flagField(&v) - *flagFieldPtr &^= flagRO - *flagFieldPtr |= flagAddr - return v -} - -// Sanity checks against future reflect package changes -// to the type or semantics of the Value.flag field. -func init() { - field, ok := reflect.TypeOf(reflect.Value{}).FieldByName("flag") - if !ok { - panic("reflect.Value has no flag field") - } - if field.Type.Kind() != reflect.TypeOf(flag(0)).Kind() { - panic("reflect.Value flag field has changed kind") - } - type t0 int - var t struct { - A t0 - // t0 will have flagEmbedRO set. - t0 - // a will have flagStickyRO set - a t0 - } - vA := reflect.ValueOf(t).FieldByName("A") - va := reflect.ValueOf(t).FieldByName("a") - vt0 := reflect.ValueOf(t).FieldByName("t0") - - // Infer flagRO from the difference between the flags - // for the (otherwise identical) fields in t. - flagPublic := *flagField(&vA) - flagWithRO := *flagField(&va) | *flagField(&vt0) - flagRO = flagPublic ^ flagWithRO - - // Infer flagAddr from the difference between a value - // taken from a pointer and not. - vPtrA := reflect.ValueOf(&t).Elem().FieldByName("A") - flagNoPtr := *flagField(&vA) - flagPtr := *flagField(&vPtrA) - flagAddr = flagNoPtr ^ flagPtr - - // Check that the inferred flags tally with one of the known versions. - for _, f := range okFlags { - if flagRO == f.ro && flagAddr == f.addr { - return - } - } - panic("reflect.Value read-only flag has changed semantics") -} diff --git a/vendor/github.com/davecgh/go-spew/spew/bypasssafe.go b/vendor/github.com/davecgh/go-spew/spew/bypasssafe.go deleted file mode 100644 index 205c28d6..00000000 --- a/vendor/github.com/davecgh/go-spew/spew/bypasssafe.go +++ /dev/null @@ -1,38 +0,0 @@ -// Copyright (c) 2015-2016 Dave Collins -// -// Permission to use, copy, modify, and distribute this software for any -// purpose with or without fee is hereby granted, provided that the above -// copyright notice and this permission notice appear in all copies. -// -// THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES -// WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF -// MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR -// ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES -// WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN -// ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF -// OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. - -// NOTE: Due to the following build constraints, this file will only be compiled -// when the code is running on Google App Engine, compiled by GopherJS, or -// "-tags safe" is added to the go build command line. The "disableunsafe" -// tag is deprecated and thus should not be used. -// +build js appengine safe disableunsafe !go1.4 - -package spew - -import "reflect" - -const ( - // UnsafeDisabled is a build-time constant which specifies whether or - // not access to the unsafe package is available. - UnsafeDisabled = true -) - -// unsafeReflectValue typically converts the passed reflect.Value into a one -// that bypasses the typical safety restrictions preventing access to -// unaddressable and unexported data. However, doing this relies on access to -// the unsafe package. This is a stub version which simply returns the passed -// reflect.Value when the unsafe package is not available. -func unsafeReflectValue(v reflect.Value) reflect.Value { - return v -} diff --git a/vendor/github.com/davecgh/go-spew/spew/common.go b/vendor/github.com/davecgh/go-spew/spew/common.go deleted file mode 100644 index 1be8ce94..00000000 --- a/vendor/github.com/davecgh/go-spew/spew/common.go +++ /dev/null @@ -1,341 +0,0 @@ -/* - * Copyright (c) 2013-2016 Dave Collins - * - * Permission to use, copy, modify, and distribute this software for any - * purpose with or without fee is hereby granted, provided that the above - * copyright notice and this permission notice appear in all copies. - * - * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES - * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF - * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR - * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES - * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN - * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF - * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. - */ - -package spew - -import ( - "bytes" - "fmt" - "io" - "reflect" - "sort" - "strconv" -) - -// Some constants in the form of bytes to avoid string overhead. This mirrors -// the technique used in the fmt package. -var ( - panicBytes = []byte("(PANIC=") - plusBytes = []byte("+") - iBytes = []byte("i") - trueBytes = []byte("true") - falseBytes = []byte("false") - interfaceBytes = []byte("(interface {})") - commaNewlineBytes = []byte(",\n") - newlineBytes = []byte("\n") - openBraceBytes = []byte("{") - openBraceNewlineBytes = []byte("{\n") - closeBraceBytes = []byte("}") - asteriskBytes = []byte("*") - colonBytes = []byte(":") - colonSpaceBytes = []byte(": ") - openParenBytes = []byte("(") - closeParenBytes = []byte(")") - spaceBytes = []byte(" ") - pointerChainBytes = []byte("->") - nilAngleBytes = []byte("") - maxNewlineBytes = []byte("\n") - maxShortBytes = []byte("") - circularBytes = []byte("") - circularShortBytes = []byte("") - invalidAngleBytes = []byte("") - openBracketBytes = []byte("[") - closeBracketBytes = []byte("]") - percentBytes = []byte("%") - precisionBytes = []byte(".") - openAngleBytes = []byte("<") - closeAngleBytes = []byte(">") - openMapBytes = []byte("map[") - closeMapBytes = []byte("]") - lenEqualsBytes = []byte("len=") - capEqualsBytes = []byte("cap=") -) - -// hexDigits is used to map a decimal value to a hex digit. -var hexDigits = "0123456789abcdef" - -// catchPanic handles any panics that might occur during the handleMethods -// calls. -func catchPanic(w io.Writer, v reflect.Value) { - if err := recover(); err != nil { - w.Write(panicBytes) - fmt.Fprintf(w, "%v", err) - w.Write(closeParenBytes) - } -} - -// handleMethods attempts to call the Error and String methods on the underlying -// type the passed reflect.Value represents and outputes the result to Writer w. -// -// It handles panics in any called methods by catching and displaying the error -// as the formatted value. -func handleMethods(cs *ConfigState, w io.Writer, v reflect.Value) (handled bool) { - // We need an interface to check if the type implements the error or - // Stringer interface. However, the reflect package won't give us an - // interface on certain things like unexported struct fields in order - // to enforce visibility rules. We use unsafe, when it's available, - // to bypass these restrictions since this package does not mutate the - // values. - if !v.CanInterface() { - if UnsafeDisabled { - return false - } - - v = unsafeReflectValue(v) - } - - // Choose whether or not to do error and Stringer interface lookups against - // the base type or a pointer to the base type depending on settings. - // Technically calling one of these methods with a pointer receiver can - // mutate the value, however, types which choose to satisify an error or - // Stringer interface with a pointer receiver should not be mutating their - // state inside these interface methods. - if !cs.DisablePointerMethods && !UnsafeDisabled && !v.CanAddr() { - v = unsafeReflectValue(v) - } - if v.CanAddr() { - v = v.Addr() - } - - // Is it an error or Stringer? - switch iface := v.Interface().(type) { - case error: - defer catchPanic(w, v) - if cs.ContinueOnMethod { - w.Write(openParenBytes) - w.Write([]byte(iface.Error())) - w.Write(closeParenBytes) - w.Write(spaceBytes) - return false - } - - w.Write([]byte(iface.Error())) - return true - - case fmt.Stringer: - defer catchPanic(w, v) - if cs.ContinueOnMethod { - w.Write(openParenBytes) - w.Write([]byte(iface.String())) - w.Write(closeParenBytes) - w.Write(spaceBytes) - return false - } - w.Write([]byte(iface.String())) - return true - } - return false -} - -// printBool outputs a boolean value as true or false to Writer w. -func printBool(w io.Writer, val bool) { - if val { - w.Write(trueBytes) - } else { - w.Write(falseBytes) - } -} - -// printInt outputs a signed integer value to Writer w. -func printInt(w io.Writer, val int64, base int) { - w.Write([]byte(strconv.FormatInt(val, base))) -} - -// printUint outputs an unsigned integer value to Writer w. -func printUint(w io.Writer, val uint64, base int) { - w.Write([]byte(strconv.FormatUint(val, base))) -} - -// printFloat outputs a floating point value using the specified precision, -// which is expected to be 32 or 64bit, to Writer w. -func printFloat(w io.Writer, val float64, precision int) { - w.Write([]byte(strconv.FormatFloat(val, 'g', -1, precision))) -} - -// printComplex outputs a complex value using the specified float precision -// for the real and imaginary parts to Writer w. -func printComplex(w io.Writer, c complex128, floatPrecision int) { - r := real(c) - w.Write(openParenBytes) - w.Write([]byte(strconv.FormatFloat(r, 'g', -1, floatPrecision))) - i := imag(c) - if i >= 0 { - w.Write(plusBytes) - } - w.Write([]byte(strconv.FormatFloat(i, 'g', -1, floatPrecision))) - w.Write(iBytes) - w.Write(closeParenBytes) -} - -// printHexPtr outputs a uintptr formatted as hexadecimal with a leading '0x' -// prefix to Writer w. -func printHexPtr(w io.Writer, p uintptr) { - // Null pointer. - num := uint64(p) - if num == 0 { - w.Write(nilAngleBytes) - return - } - - // Max uint64 is 16 bytes in hex + 2 bytes for '0x' prefix - buf := make([]byte, 18) - - // It's simpler to construct the hex string right to left. - base := uint64(16) - i := len(buf) - 1 - for num >= base { - buf[i] = hexDigits[num%base] - num /= base - i-- - } - buf[i] = hexDigits[num] - - // Add '0x' prefix. - i-- - buf[i] = 'x' - i-- - buf[i] = '0' - - // Strip unused leading bytes. - buf = buf[i:] - w.Write(buf) -} - -// valuesSorter implements sort.Interface to allow a slice of reflect.Value -// elements to be sorted. -type valuesSorter struct { - values []reflect.Value - strings []string // either nil or same len and values - cs *ConfigState -} - -// newValuesSorter initializes a valuesSorter instance, which holds a set of -// surrogate keys on which the data should be sorted. It uses flags in -// ConfigState to decide if and how to populate those surrogate keys. -func newValuesSorter(values []reflect.Value, cs *ConfigState) sort.Interface { - vs := &valuesSorter{values: values, cs: cs} - if canSortSimply(vs.values[0].Kind()) { - return vs - } - if !cs.DisableMethods { - vs.strings = make([]string, len(values)) - for i := range vs.values { - b := bytes.Buffer{} - if !handleMethods(cs, &b, vs.values[i]) { - vs.strings = nil - break - } - vs.strings[i] = b.String() - } - } - if vs.strings == nil && cs.SpewKeys { - vs.strings = make([]string, len(values)) - for i := range vs.values { - vs.strings[i] = Sprintf("%#v", vs.values[i].Interface()) - } - } - return vs -} - -// canSortSimply tests whether a reflect.Kind is a primitive that can be sorted -// directly, or whether it should be considered for sorting by surrogate keys -// (if the ConfigState allows it). -func canSortSimply(kind reflect.Kind) bool { - // This switch parallels valueSortLess, except for the default case. - switch kind { - case reflect.Bool: - return true - case reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64, reflect.Int: - return true - case reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64, reflect.Uint: - return true - case reflect.Float32, reflect.Float64: - return true - case reflect.String: - return true - case reflect.Uintptr: - return true - case reflect.Array: - return true - } - return false -} - -// Len returns the number of values in the slice. It is part of the -// sort.Interface implementation. -func (s *valuesSorter) Len() int { - return len(s.values) -} - -// Swap swaps the values at the passed indices. It is part of the -// sort.Interface implementation. -func (s *valuesSorter) Swap(i, j int) { - s.values[i], s.values[j] = s.values[j], s.values[i] - if s.strings != nil { - s.strings[i], s.strings[j] = s.strings[j], s.strings[i] - } -} - -// valueSortLess returns whether the first value should sort before the second -// value. It is used by valueSorter.Less as part of the sort.Interface -// implementation. -func valueSortLess(a, b reflect.Value) bool { - switch a.Kind() { - case reflect.Bool: - return !a.Bool() && b.Bool() - case reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64, reflect.Int: - return a.Int() < b.Int() - case reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64, reflect.Uint: - return a.Uint() < b.Uint() - case reflect.Float32, reflect.Float64: - return a.Float() < b.Float() - case reflect.String: - return a.String() < b.String() - case reflect.Uintptr: - return a.Uint() < b.Uint() - case reflect.Array: - // Compare the contents of both arrays. - l := a.Len() - for i := 0; i < l; i++ { - av := a.Index(i) - bv := b.Index(i) - if av.Interface() == bv.Interface() { - continue - } - return valueSortLess(av, bv) - } - } - return a.String() < b.String() -} - -// Less returns whether the value at index i should sort before the -// value at index j. It is part of the sort.Interface implementation. -func (s *valuesSorter) Less(i, j int) bool { - if s.strings == nil { - return valueSortLess(s.values[i], s.values[j]) - } - return s.strings[i] < s.strings[j] -} - -// sortValues is a sort function that handles both native types and any type that -// can be converted to error or Stringer. Other inputs are sorted according to -// their Value.String() value to ensure display stability. -func sortValues(values []reflect.Value, cs *ConfigState) { - if len(values) == 0 { - return - } - sort.Sort(newValuesSorter(values, cs)) -} diff --git a/vendor/github.com/davecgh/go-spew/spew/common_test.go b/vendor/github.com/davecgh/go-spew/spew/common_test.go deleted file mode 100644 index 0f5ce47d..00000000 --- a/vendor/github.com/davecgh/go-spew/spew/common_test.go +++ /dev/null @@ -1,298 +0,0 @@ -/* - * Copyright (c) 2013-2016 Dave Collins - * - * Permission to use, copy, modify, and distribute this software for any - * purpose with or without fee is hereby granted, provided that the above - * copyright notice and this permission notice appear in all copies. - * - * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES - * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF - * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR - * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES - * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN - * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF - * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. - */ - -package spew_test - -import ( - "fmt" - "reflect" - "testing" - - "github.com/davecgh/go-spew/spew" -) - -// custom type to test Stinger interface on non-pointer receiver. -type stringer string - -// String implements the Stringer interface for testing invocation of custom -// stringers on types with non-pointer receivers. -func (s stringer) String() string { - return "stringer " + string(s) -} - -// custom type to test Stinger interface on pointer receiver. -type pstringer string - -// String implements the Stringer interface for testing invocation of custom -// stringers on types with only pointer receivers. -func (s *pstringer) String() string { - return "stringer " + string(*s) -} - -// xref1 and xref2 are cross referencing structs for testing circular reference -// detection. -type xref1 struct { - ps2 *xref2 -} -type xref2 struct { - ps1 *xref1 -} - -// indirCir1, indirCir2, and indirCir3 are used to generate an indirect circular -// reference for testing detection. -type indirCir1 struct { - ps2 *indirCir2 -} -type indirCir2 struct { - ps3 *indirCir3 -} -type indirCir3 struct { - ps1 *indirCir1 -} - -// embed is used to test embedded structures. -type embed struct { - a string -} - -// embedwrap is used to test embedded structures. -type embedwrap struct { - *embed - e *embed -} - -// panicer is used to intentionally cause a panic for testing spew properly -// handles them -type panicer int - -func (p panicer) String() string { - panic("test panic") -} - -// customError is used to test custom error interface invocation. -type customError int - -func (e customError) Error() string { - return fmt.Sprintf("error: %d", int(e)) -} - -// stringizeWants converts a slice of wanted test output into a format suitable -// for a test error message. -func stringizeWants(wants []string) string { - s := "" - for i, want := range wants { - if i > 0 { - s += fmt.Sprintf("want%d: %s", i+1, want) - } else { - s += "want: " + want - } - } - return s -} - -// testFailed returns whether or not a test failed by checking if the result -// of the test is in the slice of wanted strings. -func testFailed(result string, wants []string) bool { - for _, want := range wants { - if result == want { - return false - } - } - return true -} - -type sortableStruct struct { - x int -} - -func (ss sortableStruct) String() string { - return fmt.Sprintf("ss.%d", ss.x) -} - -type unsortableStruct struct { - x int -} - -type sortTestCase struct { - input []reflect.Value - expected []reflect.Value -} - -func helpTestSortValues(tests []sortTestCase, cs *spew.ConfigState, t *testing.T) { - getInterfaces := func(values []reflect.Value) []interface{} { - interfaces := []interface{}{} - for _, v := range values { - interfaces = append(interfaces, v.Interface()) - } - return interfaces - } - - for _, test := range tests { - spew.SortValues(test.input, cs) - // reflect.DeepEqual cannot really make sense of reflect.Value, - // probably because of all the pointer tricks. For instance, - // v(2.0) != v(2.0) on a 32-bits system. Turn them into interface{} - // instead. - input := getInterfaces(test.input) - expected := getInterfaces(test.expected) - if !reflect.DeepEqual(input, expected) { - t.Errorf("Sort mismatch:\n %v != %v", input, expected) - } - } -} - -// TestSortValues ensures the sort functionality for relect.Value based sorting -// works as intended. -func TestSortValues(t *testing.T) { - v := reflect.ValueOf - - a := v("a") - b := v("b") - c := v("c") - embedA := v(embed{"a"}) - embedB := v(embed{"b"}) - embedC := v(embed{"c"}) - tests := []sortTestCase{ - // No values. - { - []reflect.Value{}, - []reflect.Value{}, - }, - // Bools. - { - []reflect.Value{v(false), v(true), v(false)}, - []reflect.Value{v(false), v(false), v(true)}, - }, - // Ints. - { - []reflect.Value{v(2), v(1), v(3)}, - []reflect.Value{v(1), v(2), v(3)}, - }, - // Uints. - { - []reflect.Value{v(uint8(2)), v(uint8(1)), v(uint8(3))}, - []reflect.Value{v(uint8(1)), v(uint8(2)), v(uint8(3))}, - }, - // Floats. - { - []reflect.Value{v(2.0), v(1.0), v(3.0)}, - []reflect.Value{v(1.0), v(2.0), v(3.0)}, - }, - // Strings. - { - []reflect.Value{b, a, c}, - []reflect.Value{a, b, c}, - }, - // Array - { - []reflect.Value{v([3]int{3, 2, 1}), v([3]int{1, 3, 2}), v([3]int{1, 2, 3})}, - []reflect.Value{v([3]int{1, 2, 3}), v([3]int{1, 3, 2}), v([3]int{3, 2, 1})}, - }, - // Uintptrs. - { - []reflect.Value{v(uintptr(2)), v(uintptr(1)), v(uintptr(3))}, - []reflect.Value{v(uintptr(1)), v(uintptr(2)), v(uintptr(3))}, - }, - // SortableStructs. - { - // Note: not sorted - DisableMethods is set. - []reflect.Value{v(sortableStruct{2}), v(sortableStruct{1}), v(sortableStruct{3})}, - []reflect.Value{v(sortableStruct{2}), v(sortableStruct{1}), v(sortableStruct{3})}, - }, - // UnsortableStructs. - { - // Note: not sorted - SpewKeys is false. - []reflect.Value{v(unsortableStruct{2}), v(unsortableStruct{1}), v(unsortableStruct{3})}, - []reflect.Value{v(unsortableStruct{2}), v(unsortableStruct{1}), v(unsortableStruct{3})}, - }, - // Invalid. - { - []reflect.Value{embedB, embedA, embedC}, - []reflect.Value{embedB, embedA, embedC}, - }, - } - cs := spew.ConfigState{DisableMethods: true, SpewKeys: false} - helpTestSortValues(tests, &cs, t) -} - -// TestSortValuesWithMethods ensures the sort functionality for relect.Value -// based sorting works as intended when using string methods. -func TestSortValuesWithMethods(t *testing.T) { - v := reflect.ValueOf - - a := v("a") - b := v("b") - c := v("c") - tests := []sortTestCase{ - // Ints. - { - []reflect.Value{v(2), v(1), v(3)}, - []reflect.Value{v(1), v(2), v(3)}, - }, - // Strings. - { - []reflect.Value{b, a, c}, - []reflect.Value{a, b, c}, - }, - // SortableStructs. - { - []reflect.Value{v(sortableStruct{2}), v(sortableStruct{1}), v(sortableStruct{3})}, - []reflect.Value{v(sortableStruct{1}), v(sortableStruct{2}), v(sortableStruct{3})}, - }, - // UnsortableStructs. - { - // Note: not sorted - SpewKeys is false. - []reflect.Value{v(unsortableStruct{2}), v(unsortableStruct{1}), v(unsortableStruct{3})}, - []reflect.Value{v(unsortableStruct{2}), v(unsortableStruct{1}), v(unsortableStruct{3})}, - }, - } - cs := spew.ConfigState{DisableMethods: false, SpewKeys: false} - helpTestSortValues(tests, &cs, t) -} - -// TestSortValuesWithSpew ensures the sort functionality for relect.Value -// based sorting works as intended when using spew to stringify keys. -func TestSortValuesWithSpew(t *testing.T) { - v := reflect.ValueOf - - a := v("a") - b := v("b") - c := v("c") - tests := []sortTestCase{ - // Ints. - { - []reflect.Value{v(2), v(1), v(3)}, - []reflect.Value{v(1), v(2), v(3)}, - }, - // Strings. - { - []reflect.Value{b, a, c}, - []reflect.Value{a, b, c}, - }, - // SortableStructs. - { - []reflect.Value{v(sortableStruct{2}), v(sortableStruct{1}), v(sortableStruct{3})}, - []reflect.Value{v(sortableStruct{1}), v(sortableStruct{2}), v(sortableStruct{3})}, - }, - // UnsortableStructs. - { - []reflect.Value{v(unsortableStruct{2}), v(unsortableStruct{1}), v(unsortableStruct{3})}, - []reflect.Value{v(unsortableStruct{1}), v(unsortableStruct{2}), v(unsortableStruct{3})}, - }, - } - cs := spew.ConfigState{DisableMethods: true, SpewKeys: true} - helpTestSortValues(tests, &cs, t) -} diff --git a/vendor/github.com/davecgh/go-spew/spew/config.go b/vendor/github.com/davecgh/go-spew/spew/config.go deleted file mode 100644 index 2e3d22f3..00000000 --- a/vendor/github.com/davecgh/go-spew/spew/config.go +++ /dev/null @@ -1,306 +0,0 @@ -/* - * Copyright (c) 2013-2016 Dave Collins - * - * Permission to use, copy, modify, and distribute this software for any - * purpose with or without fee is hereby granted, provided that the above - * copyright notice and this permission notice appear in all copies. - * - * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES - * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF - * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR - * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES - * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN - * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF - * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. - */ - -package spew - -import ( - "bytes" - "fmt" - "io" - "os" -) - -// ConfigState houses the configuration options used by spew to format and -// display values. There is a global instance, Config, that is used to control -// all top-level Formatter and Dump functionality. Each ConfigState instance -// provides methods equivalent to the top-level functions. -// -// The zero value for ConfigState provides no indentation. You would typically -// want to set it to a space or a tab. -// -// Alternatively, you can use NewDefaultConfig to get a ConfigState instance -// with default settings. See the documentation of NewDefaultConfig for default -// values. -type ConfigState struct { - // Indent specifies the string to use for each indentation level. The - // global config instance that all top-level functions use set this to a - // single space by default. If you would like more indentation, you might - // set this to a tab with "\t" or perhaps two spaces with " ". - Indent string - - // MaxDepth controls the maximum number of levels to descend into nested - // data structures. The default, 0, means there is no limit. - // - // NOTE: Circular data structures are properly detected, so it is not - // necessary to set this value unless you specifically want to limit deeply - // nested data structures. - MaxDepth int - - // DisableMethods specifies whether or not error and Stringer interfaces are - // invoked for types that implement them. - DisableMethods bool - - // DisablePointerMethods specifies whether or not to check for and invoke - // error and Stringer interfaces on types which only accept a pointer - // receiver when the current type is not a pointer. - // - // NOTE: This might be an unsafe action since calling one of these methods - // with a pointer receiver could technically mutate the value, however, - // in practice, types which choose to satisify an error or Stringer - // interface with a pointer receiver should not be mutating their state - // inside these interface methods. As a result, this option relies on - // access to the unsafe package, so it will not have any effect when - // running in environments without access to the unsafe package such as - // Google App Engine or with the "safe" build tag specified. - DisablePointerMethods bool - - // DisablePointerAddresses specifies whether to disable the printing of - // pointer addresses. This is useful when diffing data structures in tests. - DisablePointerAddresses bool - - // DisableCapacities specifies whether to disable the printing of capacities - // for arrays, slices, maps and channels. This is useful when diffing - // data structures in tests. - DisableCapacities bool - - // ContinueOnMethod specifies whether or not recursion should continue once - // a custom error or Stringer interface is invoked. The default, false, - // means it will print the results of invoking the custom error or Stringer - // interface and return immediately instead of continuing to recurse into - // the internals of the data type. - // - // NOTE: This flag does not have any effect if method invocation is disabled - // via the DisableMethods or DisablePointerMethods options. - ContinueOnMethod bool - - // SortKeys specifies map keys should be sorted before being printed. Use - // this to have a more deterministic, diffable output. Note that only - // native types (bool, int, uint, floats, uintptr and string) and types - // that support the error or Stringer interfaces (if methods are - // enabled) are supported, with other types sorted according to the - // reflect.Value.String() output which guarantees display stability. - SortKeys bool - - // SpewKeys specifies that, as a last resort attempt, map keys should - // be spewed to strings and sorted by those strings. This is only - // considered if SortKeys is true. - SpewKeys bool -} - -// Config is the active configuration of the top-level functions. -// The configuration can be changed by modifying the contents of spew.Config. -var Config = ConfigState{Indent: " "} - -// Errorf is a wrapper for fmt.Errorf that treats each argument as if it were -// passed with a Formatter interface returned by c.NewFormatter. It returns -// the formatted string as a value that satisfies error. See NewFormatter -// for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Errorf(format, c.NewFormatter(a), c.NewFormatter(b)) -func (c *ConfigState) Errorf(format string, a ...interface{}) (err error) { - return fmt.Errorf(format, c.convertArgs(a)...) -} - -// Fprint is a wrapper for fmt.Fprint that treats each argument as if it were -// passed with a Formatter interface returned by c.NewFormatter. It returns -// the number of bytes written and any write error encountered. See -// NewFormatter for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Fprint(w, c.NewFormatter(a), c.NewFormatter(b)) -func (c *ConfigState) Fprint(w io.Writer, a ...interface{}) (n int, err error) { - return fmt.Fprint(w, c.convertArgs(a)...) -} - -// Fprintf is a wrapper for fmt.Fprintf that treats each argument as if it were -// passed with a Formatter interface returned by c.NewFormatter. It returns -// the number of bytes written and any write error encountered. See -// NewFormatter for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Fprintf(w, format, c.NewFormatter(a), c.NewFormatter(b)) -func (c *ConfigState) Fprintf(w io.Writer, format string, a ...interface{}) (n int, err error) { - return fmt.Fprintf(w, format, c.convertArgs(a)...) -} - -// Fprintln is a wrapper for fmt.Fprintln that treats each argument as if it -// passed with a Formatter interface returned by c.NewFormatter. See -// NewFormatter for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Fprintln(w, c.NewFormatter(a), c.NewFormatter(b)) -func (c *ConfigState) Fprintln(w io.Writer, a ...interface{}) (n int, err error) { - return fmt.Fprintln(w, c.convertArgs(a)...) -} - -// Print is a wrapper for fmt.Print that treats each argument as if it were -// passed with a Formatter interface returned by c.NewFormatter. It returns -// the number of bytes written and any write error encountered. See -// NewFormatter for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Print(c.NewFormatter(a), c.NewFormatter(b)) -func (c *ConfigState) Print(a ...interface{}) (n int, err error) { - return fmt.Print(c.convertArgs(a)...) -} - -// Printf is a wrapper for fmt.Printf that treats each argument as if it were -// passed with a Formatter interface returned by c.NewFormatter. It returns -// the number of bytes written and any write error encountered. See -// NewFormatter for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Printf(format, c.NewFormatter(a), c.NewFormatter(b)) -func (c *ConfigState) Printf(format string, a ...interface{}) (n int, err error) { - return fmt.Printf(format, c.convertArgs(a)...) -} - -// Println is a wrapper for fmt.Println that treats each argument as if it were -// passed with a Formatter interface returned by c.NewFormatter. It returns -// the number of bytes written and any write error encountered. See -// NewFormatter for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Println(c.NewFormatter(a), c.NewFormatter(b)) -func (c *ConfigState) Println(a ...interface{}) (n int, err error) { - return fmt.Println(c.convertArgs(a)...) -} - -// Sprint is a wrapper for fmt.Sprint that treats each argument as if it were -// passed with a Formatter interface returned by c.NewFormatter. It returns -// the resulting string. See NewFormatter for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Sprint(c.NewFormatter(a), c.NewFormatter(b)) -func (c *ConfigState) Sprint(a ...interface{}) string { - return fmt.Sprint(c.convertArgs(a)...) -} - -// Sprintf is a wrapper for fmt.Sprintf that treats each argument as if it were -// passed with a Formatter interface returned by c.NewFormatter. It returns -// the resulting string. See NewFormatter for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Sprintf(format, c.NewFormatter(a), c.NewFormatter(b)) -func (c *ConfigState) Sprintf(format string, a ...interface{}) string { - return fmt.Sprintf(format, c.convertArgs(a)...) -} - -// Sprintln is a wrapper for fmt.Sprintln that treats each argument as if it -// were passed with a Formatter interface returned by c.NewFormatter. It -// returns the resulting string. See NewFormatter for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Sprintln(c.NewFormatter(a), c.NewFormatter(b)) -func (c *ConfigState) Sprintln(a ...interface{}) string { - return fmt.Sprintln(c.convertArgs(a)...) -} - -/* -NewFormatter returns a custom formatter that satisfies the fmt.Formatter -interface. As a result, it integrates cleanly with standard fmt package -printing functions. The formatter is useful for inline printing of smaller data -types similar to the standard %v format specifier. - -The custom formatter only responds to the %v (most compact), %+v (adds pointer -addresses), %#v (adds types), and %#+v (adds types and pointer addresses) verb -combinations. Any other verbs such as %x and %q will be sent to the the -standard fmt package for formatting. In addition, the custom formatter ignores -the width and precision arguments (however they will still work on the format -specifiers not handled by the custom formatter). - -Typically this function shouldn't be called directly. It is much easier to make -use of the custom formatter by calling one of the convenience functions such as -c.Printf, c.Println, or c.Printf. -*/ -func (c *ConfigState) NewFormatter(v interface{}) fmt.Formatter { - return newFormatter(c, v) -} - -// Fdump formats and displays the passed arguments to io.Writer w. It formats -// exactly the same as Dump. -func (c *ConfigState) Fdump(w io.Writer, a ...interface{}) { - fdump(c, w, a...) -} - -/* -Dump displays the passed parameters to standard out with newlines, customizable -indentation, and additional debug information such as complete types and all -pointer addresses used to indirect to the final value. It provides the -following features over the built-in printing facilities provided by the fmt -package: - - * Pointers are dereferenced and followed - * Circular data structures are detected and handled properly - * Custom Stringer/error interfaces are optionally invoked, including - on unexported types - * Custom types which only implement the Stringer/error interfaces via - a pointer receiver are optionally invoked when passing non-pointer - variables - * Byte arrays and slices are dumped like the hexdump -C command which - includes offsets, byte values in hex, and ASCII output - -The configuration options are controlled by modifying the public members -of c. See ConfigState for options documentation. - -See Fdump if you would prefer dumping to an arbitrary io.Writer or Sdump to -get the formatted result as a string. -*/ -func (c *ConfigState) Dump(a ...interface{}) { - fdump(c, os.Stdout, a...) -} - -// Sdump returns a string with the passed arguments formatted exactly the same -// as Dump. -func (c *ConfigState) Sdump(a ...interface{}) string { - var buf bytes.Buffer - fdump(c, &buf, a...) - return buf.String() -} - -// convertArgs accepts a slice of arguments and returns a slice of the same -// length with each argument converted to a spew Formatter interface using -// the ConfigState associated with s. -func (c *ConfigState) convertArgs(args []interface{}) (formatters []interface{}) { - formatters = make([]interface{}, len(args)) - for index, arg := range args { - formatters[index] = newFormatter(c, arg) - } - return formatters -} - -// NewDefaultConfig returns a ConfigState with the following default settings. -// -// Indent: " " -// MaxDepth: 0 -// DisableMethods: false -// DisablePointerMethods: false -// ContinueOnMethod: false -// SortKeys: false -func NewDefaultConfig() *ConfigState { - return &ConfigState{Indent: " "} -} diff --git a/vendor/github.com/davecgh/go-spew/spew/doc.go b/vendor/github.com/davecgh/go-spew/spew/doc.go deleted file mode 100644 index aacaac6f..00000000 --- a/vendor/github.com/davecgh/go-spew/spew/doc.go +++ /dev/null @@ -1,211 +0,0 @@ -/* - * Copyright (c) 2013-2016 Dave Collins - * - * Permission to use, copy, modify, and distribute this software for any - * purpose with or without fee is hereby granted, provided that the above - * copyright notice and this permission notice appear in all copies. - * - * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES - * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF - * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR - * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES - * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN - * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF - * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. - */ - -/* -Package spew implements a deep pretty printer for Go data structures to aid in -debugging. - -A quick overview of the additional features spew provides over the built-in -printing facilities for Go data types are as follows: - - * Pointers are dereferenced and followed - * Circular data structures are detected and handled properly - * Custom Stringer/error interfaces are optionally invoked, including - on unexported types - * Custom types which only implement the Stringer/error interfaces via - a pointer receiver are optionally invoked when passing non-pointer - variables - * Byte arrays and slices are dumped like the hexdump -C command which - includes offsets, byte values in hex, and ASCII output (only when using - Dump style) - -There are two different approaches spew allows for dumping Go data structures: - - * Dump style which prints with newlines, customizable indentation, - and additional debug information such as types and all pointer addresses - used to indirect to the final value - * A custom Formatter interface that integrates cleanly with the standard fmt - package and replaces %v, %+v, %#v, and %#+v to provide inline printing - similar to the default %v while providing the additional functionality - outlined above and passing unsupported format verbs such as %x and %q - along to fmt - -Quick Start - -This section demonstrates how to quickly get started with spew. See the -sections below for further details on formatting and configuration options. - -To dump a variable with full newlines, indentation, type, and pointer -information use Dump, Fdump, or Sdump: - spew.Dump(myVar1, myVar2, ...) - spew.Fdump(someWriter, myVar1, myVar2, ...) - str := spew.Sdump(myVar1, myVar2, ...) - -Alternatively, if you would prefer to use format strings with a compacted inline -printing style, use the convenience wrappers Printf, Fprintf, etc with -%v (most compact), %+v (adds pointer addresses), %#v (adds types), or -%#+v (adds types and pointer addresses): - spew.Printf("myVar1: %v -- myVar2: %+v", myVar1, myVar2) - spew.Printf("myVar3: %#v -- myVar4: %#+v", myVar3, myVar4) - spew.Fprintf(someWriter, "myVar1: %v -- myVar2: %+v", myVar1, myVar2) - spew.Fprintf(someWriter, "myVar3: %#v -- myVar4: %#+v", myVar3, myVar4) - -Configuration Options - -Configuration of spew is handled by fields in the ConfigState type. For -convenience, all of the top-level functions use a global state available -via the spew.Config global. - -It is also possible to create a ConfigState instance that provides methods -equivalent to the top-level functions. This allows concurrent configuration -options. See the ConfigState documentation for more details. - -The following configuration options are available: - * Indent - String to use for each indentation level for Dump functions. - It is a single space by default. A popular alternative is "\t". - - * MaxDepth - Maximum number of levels to descend into nested data structures. - There is no limit by default. - - * DisableMethods - Disables invocation of error and Stringer interface methods. - Method invocation is enabled by default. - - * DisablePointerMethods - Disables invocation of error and Stringer interface methods on types - which only accept pointer receivers from non-pointer variables. - Pointer method invocation is enabled by default. - - * DisablePointerAddresses - DisablePointerAddresses specifies whether to disable the printing of - pointer addresses. This is useful when diffing data structures in tests. - - * DisableCapacities - DisableCapacities specifies whether to disable the printing of - capacities for arrays, slices, maps and channels. This is useful when - diffing data structures in tests. - - * ContinueOnMethod - Enables recursion into types after invoking error and Stringer interface - methods. Recursion after method invocation is disabled by default. - - * SortKeys - Specifies map keys should be sorted before being printed. Use - this to have a more deterministic, diffable output. Note that - only native types (bool, int, uint, floats, uintptr and string) - and types which implement error or Stringer interfaces are - supported with other types sorted according to the - reflect.Value.String() output which guarantees display - stability. Natural map order is used by default. - - * SpewKeys - Specifies that, as a last resort attempt, map keys should be - spewed to strings and sorted by those strings. This is only - considered if SortKeys is true. - -Dump Usage - -Simply call spew.Dump with a list of variables you want to dump: - - spew.Dump(myVar1, myVar2, ...) - -You may also call spew.Fdump if you would prefer to output to an arbitrary -io.Writer. For example, to dump to standard error: - - spew.Fdump(os.Stderr, myVar1, myVar2, ...) - -A third option is to call spew.Sdump to get the formatted output as a string: - - str := spew.Sdump(myVar1, myVar2, ...) - -Sample Dump Output - -See the Dump example for details on the setup of the types and variables being -shown here. - - (main.Foo) { - unexportedField: (*main.Bar)(0xf84002e210)({ - flag: (main.Flag) flagTwo, - data: (uintptr) - }), - ExportedField: (map[interface {}]interface {}) (len=1) { - (string) (len=3) "one": (bool) true - } - } - -Byte (and uint8) arrays and slices are displayed uniquely like the hexdump -C -command as shown. - ([]uint8) (len=32 cap=32) { - 00000000 11 12 13 14 15 16 17 18 19 1a 1b 1c 1d 1e 1f 20 |............... | - 00000010 21 22 23 24 25 26 27 28 29 2a 2b 2c 2d 2e 2f 30 |!"#$%&'()*+,-./0| - 00000020 31 32 |12| - } - -Custom Formatter - -Spew provides a custom formatter that implements the fmt.Formatter interface -so that it integrates cleanly with standard fmt package printing functions. The -formatter is useful for inline printing of smaller data types similar to the -standard %v format specifier. - -The custom formatter only responds to the %v (most compact), %+v (adds pointer -addresses), %#v (adds types), or %#+v (adds types and pointer addresses) verb -combinations. Any other verbs such as %x and %q will be sent to the the -standard fmt package for formatting. In addition, the custom formatter ignores -the width and precision arguments (however they will still work on the format -specifiers not handled by the custom formatter). - -Custom Formatter Usage - -The simplest way to make use of the spew custom formatter is to call one of the -convenience functions such as spew.Printf, spew.Println, or spew.Printf. The -functions have syntax you are most likely already familiar with: - - spew.Printf("myVar1: %v -- myVar2: %+v", myVar1, myVar2) - spew.Printf("myVar3: %#v -- myVar4: %#+v", myVar3, myVar4) - spew.Println(myVar, myVar2) - spew.Fprintf(os.Stderr, "myVar1: %v -- myVar2: %+v", myVar1, myVar2) - spew.Fprintf(os.Stderr, "myVar3: %#v -- myVar4: %#+v", myVar3, myVar4) - -See the Index for the full list convenience functions. - -Sample Formatter Output - -Double pointer to a uint8: - %v: <**>5 - %+v: <**>(0xf8400420d0->0xf8400420c8)5 - %#v: (**uint8)5 - %#+v: (**uint8)(0xf8400420d0->0xf8400420c8)5 - -Pointer to circular struct with a uint8 field and a pointer to itself: - %v: <*>{1 <*>} - %+v: <*>(0xf84003e260){ui8:1 c:<*>(0xf84003e260)} - %#v: (*main.circular){ui8:(uint8)1 c:(*main.circular)} - %#+v: (*main.circular)(0xf84003e260){ui8:(uint8)1 c:(*main.circular)(0xf84003e260)} - -See the Printf example for details on the setup of variables being shown -here. - -Errors - -Since it is possible for custom Stringer/error interfaces to panic, spew -detects them and handles them internally by printing the panic information -inline with the output. Since spew is intended to provide deep pretty printing -capabilities on structures, it intentionally does not return any errors. -*/ -package spew diff --git a/vendor/github.com/davecgh/go-spew/spew/dump.go b/vendor/github.com/davecgh/go-spew/spew/dump.go deleted file mode 100644 index f78d89fc..00000000 --- a/vendor/github.com/davecgh/go-spew/spew/dump.go +++ /dev/null @@ -1,509 +0,0 @@ -/* - * Copyright (c) 2013-2016 Dave Collins - * - * Permission to use, copy, modify, and distribute this software for any - * purpose with or without fee is hereby granted, provided that the above - * copyright notice and this permission notice appear in all copies. - * - * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES - * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF - * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR - * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES - * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN - * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF - * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. - */ - -package spew - -import ( - "bytes" - "encoding/hex" - "fmt" - "io" - "os" - "reflect" - "regexp" - "strconv" - "strings" -) - -var ( - // uint8Type is a reflect.Type representing a uint8. It is used to - // convert cgo types to uint8 slices for hexdumping. - uint8Type = reflect.TypeOf(uint8(0)) - - // cCharRE is a regular expression that matches a cgo char. - // It is used to detect character arrays to hexdump them. - cCharRE = regexp.MustCompile(`^.*\._Ctype_char$`) - - // cUnsignedCharRE is a regular expression that matches a cgo unsigned - // char. It is used to detect unsigned character arrays to hexdump - // them. - cUnsignedCharRE = regexp.MustCompile(`^.*\._Ctype_unsignedchar$`) - - // cUint8tCharRE is a regular expression that matches a cgo uint8_t. - // It is used to detect uint8_t arrays to hexdump them. - cUint8tCharRE = regexp.MustCompile(`^.*\._Ctype_uint8_t$`) -) - -// dumpState contains information about the state of a dump operation. -type dumpState struct { - w io.Writer - depth int - pointers map[uintptr]int - ignoreNextType bool - ignoreNextIndent bool - cs *ConfigState -} - -// indent performs indentation according to the depth level and cs.Indent -// option. -func (d *dumpState) indent() { - if d.ignoreNextIndent { - d.ignoreNextIndent = false - return - } - d.w.Write(bytes.Repeat([]byte(d.cs.Indent), d.depth)) -} - -// unpackValue returns values inside of non-nil interfaces when possible. -// This is useful for data types like structs, arrays, slices, and maps which -// can contain varying types packed inside an interface. -func (d *dumpState) unpackValue(v reflect.Value) reflect.Value { - if v.Kind() == reflect.Interface && !v.IsNil() { - v = v.Elem() - } - return v -} - -// dumpPtr handles formatting of pointers by indirecting them as necessary. -func (d *dumpState) dumpPtr(v reflect.Value) { - // Remove pointers at or below the current depth from map used to detect - // circular refs. - for k, depth := range d.pointers { - if depth >= d.depth { - delete(d.pointers, k) - } - } - - // Keep list of all dereferenced pointers to show later. - pointerChain := make([]uintptr, 0) - - // Figure out how many levels of indirection there are by dereferencing - // pointers and unpacking interfaces down the chain while detecting circular - // references. - nilFound := false - cycleFound := false - indirects := 0 - ve := v - for ve.Kind() == reflect.Ptr { - if ve.IsNil() { - nilFound = true - break - } - indirects++ - addr := ve.Pointer() - pointerChain = append(pointerChain, addr) - if pd, ok := d.pointers[addr]; ok && pd < d.depth { - cycleFound = true - indirects-- - break - } - d.pointers[addr] = d.depth - - ve = ve.Elem() - if ve.Kind() == reflect.Interface { - if ve.IsNil() { - nilFound = true - break - } - ve = ve.Elem() - } - } - - // Display type information. - d.w.Write(openParenBytes) - d.w.Write(bytes.Repeat(asteriskBytes, indirects)) - d.w.Write([]byte(ve.Type().String())) - d.w.Write(closeParenBytes) - - // Display pointer information. - if !d.cs.DisablePointerAddresses && len(pointerChain) > 0 { - d.w.Write(openParenBytes) - for i, addr := range pointerChain { - if i > 0 { - d.w.Write(pointerChainBytes) - } - printHexPtr(d.w, addr) - } - d.w.Write(closeParenBytes) - } - - // Display dereferenced value. - d.w.Write(openParenBytes) - switch { - case nilFound: - d.w.Write(nilAngleBytes) - - case cycleFound: - d.w.Write(circularBytes) - - default: - d.ignoreNextType = true - d.dump(ve) - } - d.w.Write(closeParenBytes) -} - -// dumpSlice handles formatting of arrays and slices. Byte (uint8 under -// reflection) arrays and slices are dumped in hexdump -C fashion. -func (d *dumpState) dumpSlice(v reflect.Value) { - // Determine whether this type should be hex dumped or not. Also, - // for types which should be hexdumped, try to use the underlying data - // first, then fall back to trying to convert them to a uint8 slice. - var buf []uint8 - doConvert := false - doHexDump := false - numEntries := v.Len() - if numEntries > 0 { - vt := v.Index(0).Type() - vts := vt.String() - switch { - // C types that need to be converted. - case cCharRE.MatchString(vts): - fallthrough - case cUnsignedCharRE.MatchString(vts): - fallthrough - case cUint8tCharRE.MatchString(vts): - doConvert = true - - // Try to use existing uint8 slices and fall back to converting - // and copying if that fails. - case vt.Kind() == reflect.Uint8: - // We need an addressable interface to convert the type - // to a byte slice. However, the reflect package won't - // give us an interface on certain things like - // unexported struct fields in order to enforce - // visibility rules. We use unsafe, when available, to - // bypass these restrictions since this package does not - // mutate the values. - vs := v - if !vs.CanInterface() || !vs.CanAddr() { - vs = unsafeReflectValue(vs) - } - if !UnsafeDisabled { - vs = vs.Slice(0, numEntries) - - // Use the existing uint8 slice if it can be - // type asserted. - iface := vs.Interface() - if slice, ok := iface.([]uint8); ok { - buf = slice - doHexDump = true - break - } - } - - // The underlying data needs to be converted if it can't - // be type asserted to a uint8 slice. - doConvert = true - } - - // Copy and convert the underlying type if needed. - if doConvert && vt.ConvertibleTo(uint8Type) { - // Convert and copy each element into a uint8 byte - // slice. - buf = make([]uint8, numEntries) - for i := 0; i < numEntries; i++ { - vv := v.Index(i) - buf[i] = uint8(vv.Convert(uint8Type).Uint()) - } - doHexDump = true - } - } - - // Hexdump the entire slice as needed. - if doHexDump { - indent := strings.Repeat(d.cs.Indent, d.depth) - str := indent + hex.Dump(buf) - str = strings.Replace(str, "\n", "\n"+indent, -1) - str = strings.TrimRight(str, d.cs.Indent) - d.w.Write([]byte(str)) - return - } - - // Recursively call dump for each item. - for i := 0; i < numEntries; i++ { - d.dump(d.unpackValue(v.Index(i))) - if i < (numEntries - 1) { - d.w.Write(commaNewlineBytes) - } else { - d.w.Write(newlineBytes) - } - } -} - -// dump is the main workhorse for dumping a value. It uses the passed reflect -// value to figure out what kind of object we are dealing with and formats it -// appropriately. It is a recursive function, however circular data structures -// are detected and handled properly. -func (d *dumpState) dump(v reflect.Value) { - // Handle invalid reflect values immediately. - kind := v.Kind() - if kind == reflect.Invalid { - d.w.Write(invalidAngleBytes) - return - } - - // Handle pointers specially. - if kind == reflect.Ptr { - d.indent() - d.dumpPtr(v) - return - } - - // Print type information unless already handled elsewhere. - if !d.ignoreNextType { - d.indent() - d.w.Write(openParenBytes) - d.w.Write([]byte(v.Type().String())) - d.w.Write(closeParenBytes) - d.w.Write(spaceBytes) - } - d.ignoreNextType = false - - // Display length and capacity if the built-in len and cap functions - // work with the value's kind and the len/cap itself is non-zero. - valueLen, valueCap := 0, 0 - switch v.Kind() { - case reflect.Array, reflect.Slice, reflect.Chan: - valueLen, valueCap = v.Len(), v.Cap() - case reflect.Map, reflect.String: - valueLen = v.Len() - } - if valueLen != 0 || !d.cs.DisableCapacities && valueCap != 0 { - d.w.Write(openParenBytes) - if valueLen != 0 { - d.w.Write(lenEqualsBytes) - printInt(d.w, int64(valueLen), 10) - } - if !d.cs.DisableCapacities && valueCap != 0 { - if valueLen != 0 { - d.w.Write(spaceBytes) - } - d.w.Write(capEqualsBytes) - printInt(d.w, int64(valueCap), 10) - } - d.w.Write(closeParenBytes) - d.w.Write(spaceBytes) - } - - // Call Stringer/error interfaces if they exist and the handle methods flag - // is enabled - if !d.cs.DisableMethods { - if (kind != reflect.Invalid) && (kind != reflect.Interface) { - if handled := handleMethods(d.cs, d.w, v); handled { - return - } - } - } - - switch kind { - case reflect.Invalid: - // Do nothing. We should never get here since invalid has already - // been handled above. - - case reflect.Bool: - printBool(d.w, v.Bool()) - - case reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64, reflect.Int: - printInt(d.w, v.Int(), 10) - - case reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64, reflect.Uint: - printUint(d.w, v.Uint(), 10) - - case reflect.Float32: - printFloat(d.w, v.Float(), 32) - - case reflect.Float64: - printFloat(d.w, v.Float(), 64) - - case reflect.Complex64: - printComplex(d.w, v.Complex(), 32) - - case reflect.Complex128: - printComplex(d.w, v.Complex(), 64) - - case reflect.Slice: - if v.IsNil() { - d.w.Write(nilAngleBytes) - break - } - fallthrough - - case reflect.Array: - d.w.Write(openBraceNewlineBytes) - d.depth++ - if (d.cs.MaxDepth != 0) && (d.depth > d.cs.MaxDepth) { - d.indent() - d.w.Write(maxNewlineBytes) - } else { - d.dumpSlice(v) - } - d.depth-- - d.indent() - d.w.Write(closeBraceBytes) - - case reflect.String: - d.w.Write([]byte(strconv.Quote(v.String()))) - - case reflect.Interface: - // The only time we should get here is for nil interfaces due to - // unpackValue calls. - if v.IsNil() { - d.w.Write(nilAngleBytes) - } - - case reflect.Ptr: - // Do nothing. We should never get here since pointers have already - // been handled above. - - case reflect.Map: - // nil maps should be indicated as different than empty maps - if v.IsNil() { - d.w.Write(nilAngleBytes) - break - } - - d.w.Write(openBraceNewlineBytes) - d.depth++ - if (d.cs.MaxDepth != 0) && (d.depth > d.cs.MaxDepth) { - d.indent() - d.w.Write(maxNewlineBytes) - } else { - numEntries := v.Len() - keys := v.MapKeys() - if d.cs.SortKeys { - sortValues(keys, d.cs) - } - for i, key := range keys { - d.dump(d.unpackValue(key)) - d.w.Write(colonSpaceBytes) - d.ignoreNextIndent = true - d.dump(d.unpackValue(v.MapIndex(key))) - if i < (numEntries - 1) { - d.w.Write(commaNewlineBytes) - } else { - d.w.Write(newlineBytes) - } - } - } - d.depth-- - d.indent() - d.w.Write(closeBraceBytes) - - case reflect.Struct: - d.w.Write(openBraceNewlineBytes) - d.depth++ - if (d.cs.MaxDepth != 0) && (d.depth > d.cs.MaxDepth) { - d.indent() - d.w.Write(maxNewlineBytes) - } else { - vt := v.Type() - numFields := v.NumField() - for i := 0; i < numFields; i++ { - d.indent() - vtf := vt.Field(i) - d.w.Write([]byte(vtf.Name)) - d.w.Write(colonSpaceBytes) - d.ignoreNextIndent = true - d.dump(d.unpackValue(v.Field(i))) - if i < (numFields - 1) { - d.w.Write(commaNewlineBytes) - } else { - d.w.Write(newlineBytes) - } - } - } - d.depth-- - d.indent() - d.w.Write(closeBraceBytes) - - case reflect.Uintptr: - printHexPtr(d.w, uintptr(v.Uint())) - - case reflect.UnsafePointer, reflect.Chan, reflect.Func: - printHexPtr(d.w, v.Pointer()) - - // There were not any other types at the time this code was written, but - // fall back to letting the default fmt package handle it in case any new - // types are added. - default: - if v.CanInterface() { - fmt.Fprintf(d.w, "%v", v.Interface()) - } else { - fmt.Fprintf(d.w, "%v", v.String()) - } - } -} - -// fdump is a helper function to consolidate the logic from the various public -// methods which take varying writers and config states. -func fdump(cs *ConfigState, w io.Writer, a ...interface{}) { - for _, arg := range a { - if arg == nil { - w.Write(interfaceBytes) - w.Write(spaceBytes) - w.Write(nilAngleBytes) - w.Write(newlineBytes) - continue - } - - d := dumpState{w: w, cs: cs} - d.pointers = make(map[uintptr]int) - d.dump(reflect.ValueOf(arg)) - d.w.Write(newlineBytes) - } -} - -// Fdump formats and displays the passed arguments to io.Writer w. It formats -// exactly the same as Dump. -func Fdump(w io.Writer, a ...interface{}) { - fdump(&Config, w, a...) -} - -// Sdump returns a string with the passed arguments formatted exactly the same -// as Dump. -func Sdump(a ...interface{}) string { - var buf bytes.Buffer - fdump(&Config, &buf, a...) - return buf.String() -} - -/* -Dump displays the passed parameters to standard out with newlines, customizable -indentation, and additional debug information such as complete types and all -pointer addresses used to indirect to the final value. It provides the -following features over the built-in printing facilities provided by the fmt -package: - - * Pointers are dereferenced and followed - * Circular data structures are detected and handled properly - * Custom Stringer/error interfaces are optionally invoked, including - on unexported types - * Custom types which only implement the Stringer/error interfaces via - a pointer receiver are optionally invoked when passing non-pointer - variables - * Byte arrays and slices are dumped like the hexdump -C command which - includes offsets, byte values in hex, and ASCII output - -The configuration options are controlled by an exported package global, -spew.Config. See ConfigState for options documentation. - -See Fdump if you would prefer dumping to an arbitrary io.Writer or Sdump to -get the formatted result as a string. -*/ -func Dump(a ...interface{}) { - fdump(&Config, os.Stdout, a...) -} diff --git a/vendor/github.com/davecgh/go-spew/spew/dump_test.go b/vendor/github.com/davecgh/go-spew/spew/dump_test.go deleted file mode 100644 index 4a31a2ee..00000000 --- a/vendor/github.com/davecgh/go-spew/spew/dump_test.go +++ /dev/null @@ -1,1042 +0,0 @@ -/* - * Copyright (c) 2013-2016 Dave Collins - * - * Permission to use, copy, modify, and distribute this software for any - * purpose with or without fee is hereby granted, provided that the above - * copyright notice and this permission notice appear in all copies. - * - * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES - * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF - * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR - * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES - * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN - * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF - * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. - */ - -/* -Test Summary: -NOTE: For each test, a nil pointer, a single pointer and double pointer to the -base test element are also tested to ensure proper indirection across all types. - -- Max int8, int16, int32, int64, int -- Max uint8, uint16, uint32, uint64, uint -- Boolean true and false -- Standard complex64 and complex128 -- Array containing standard ints -- Array containing type with custom formatter on pointer receiver only -- Array containing interfaces -- Array containing bytes -- Slice containing standard float32 values -- Slice containing type with custom formatter on pointer receiver only -- Slice containing interfaces -- Slice containing bytes -- Nil slice -- Standard string -- Nil interface -- Sub-interface -- Map with string keys and int vals -- Map with custom formatter type on pointer receiver only keys and vals -- Map with interface keys and values -- Map with nil interface value -- Struct with primitives -- Struct that contains another struct -- Struct that contains custom type with Stringer pointer interface via both - exported and unexported fields -- Struct that contains embedded struct and field to same struct -- Uintptr to 0 (null pointer) -- Uintptr address of real variable -- Unsafe.Pointer to 0 (null pointer) -- Unsafe.Pointer to address of real variable -- Nil channel -- Standard int channel -- Function with no params and no returns -- Function with param and no returns -- Function with multiple params and multiple returns -- Struct that is circular through self referencing -- Structs that are circular through cross referencing -- Structs that are indirectly circular -- Type that panics in its Stringer interface -*/ - -package spew_test - -import ( - "bytes" - "fmt" - "testing" - "unsafe" - - "github.com/davecgh/go-spew/spew" -) - -// dumpTest is used to describe a test to be performed against the Dump method. -type dumpTest struct { - in interface{} - wants []string -} - -// dumpTests houses all of the tests to be performed against the Dump method. -var dumpTests = make([]dumpTest, 0) - -// addDumpTest is a helper method to append the passed input and desired result -// to dumpTests -func addDumpTest(in interface{}, wants ...string) { - test := dumpTest{in, wants} - dumpTests = append(dumpTests, test) -} - -func addIntDumpTests() { - // Max int8. - v := int8(127) - nv := (*int8)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "int8" - vs := "127" - addDumpTest(v, "("+vt+") "+vs+"\n") - addDumpTest(pv, "(*"+vt+")("+vAddr+")("+vs+")\n") - addDumpTest(&pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")("+vs+")\n") - addDumpTest(nv, "(*"+vt+")()\n") - - // Max int16. - v2 := int16(32767) - nv2 := (*int16)(nil) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "int16" - v2s := "32767" - addDumpTest(v2, "("+v2t+") "+v2s+"\n") - addDumpTest(pv2, "(*"+v2t+")("+v2Addr+")("+v2s+")\n") - addDumpTest(&pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")("+v2s+")\n") - addDumpTest(nv2, "(*"+v2t+")()\n") - - // Max int32. - v3 := int32(2147483647) - nv3 := (*int32)(nil) - pv3 := &v3 - v3Addr := fmt.Sprintf("%p", pv3) - pv3Addr := fmt.Sprintf("%p", &pv3) - v3t := "int32" - v3s := "2147483647" - addDumpTest(v3, "("+v3t+") "+v3s+"\n") - addDumpTest(pv3, "(*"+v3t+")("+v3Addr+")("+v3s+")\n") - addDumpTest(&pv3, "(**"+v3t+")("+pv3Addr+"->"+v3Addr+")("+v3s+")\n") - addDumpTest(nv3, "(*"+v3t+")()\n") - - // Max int64. - v4 := int64(9223372036854775807) - nv4 := (*int64)(nil) - pv4 := &v4 - v4Addr := fmt.Sprintf("%p", pv4) - pv4Addr := fmt.Sprintf("%p", &pv4) - v4t := "int64" - v4s := "9223372036854775807" - addDumpTest(v4, "("+v4t+") "+v4s+"\n") - addDumpTest(pv4, "(*"+v4t+")("+v4Addr+")("+v4s+")\n") - addDumpTest(&pv4, "(**"+v4t+")("+pv4Addr+"->"+v4Addr+")("+v4s+")\n") - addDumpTest(nv4, "(*"+v4t+")()\n") - - // Max int. - v5 := int(2147483647) - nv5 := (*int)(nil) - pv5 := &v5 - v5Addr := fmt.Sprintf("%p", pv5) - pv5Addr := fmt.Sprintf("%p", &pv5) - v5t := "int" - v5s := "2147483647" - addDumpTest(v5, "("+v5t+") "+v5s+"\n") - addDumpTest(pv5, "(*"+v5t+")("+v5Addr+")("+v5s+")\n") - addDumpTest(&pv5, "(**"+v5t+")("+pv5Addr+"->"+v5Addr+")("+v5s+")\n") - addDumpTest(nv5, "(*"+v5t+")()\n") -} - -func addUintDumpTests() { - // Max uint8. - v := uint8(255) - nv := (*uint8)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "uint8" - vs := "255" - addDumpTest(v, "("+vt+") "+vs+"\n") - addDumpTest(pv, "(*"+vt+")("+vAddr+")("+vs+")\n") - addDumpTest(&pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")("+vs+")\n") - addDumpTest(nv, "(*"+vt+")()\n") - - // Max uint16. - v2 := uint16(65535) - nv2 := (*uint16)(nil) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "uint16" - v2s := "65535" - addDumpTest(v2, "("+v2t+") "+v2s+"\n") - addDumpTest(pv2, "(*"+v2t+")("+v2Addr+")("+v2s+")\n") - addDumpTest(&pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")("+v2s+")\n") - addDumpTest(nv2, "(*"+v2t+")()\n") - - // Max uint32. - v3 := uint32(4294967295) - nv3 := (*uint32)(nil) - pv3 := &v3 - v3Addr := fmt.Sprintf("%p", pv3) - pv3Addr := fmt.Sprintf("%p", &pv3) - v3t := "uint32" - v3s := "4294967295" - addDumpTest(v3, "("+v3t+") "+v3s+"\n") - addDumpTest(pv3, "(*"+v3t+")("+v3Addr+")("+v3s+")\n") - addDumpTest(&pv3, "(**"+v3t+")("+pv3Addr+"->"+v3Addr+")("+v3s+")\n") - addDumpTest(nv3, "(*"+v3t+")()\n") - - // Max uint64. - v4 := uint64(18446744073709551615) - nv4 := (*uint64)(nil) - pv4 := &v4 - v4Addr := fmt.Sprintf("%p", pv4) - pv4Addr := fmt.Sprintf("%p", &pv4) - v4t := "uint64" - v4s := "18446744073709551615" - addDumpTest(v4, "("+v4t+") "+v4s+"\n") - addDumpTest(pv4, "(*"+v4t+")("+v4Addr+")("+v4s+")\n") - addDumpTest(&pv4, "(**"+v4t+")("+pv4Addr+"->"+v4Addr+")("+v4s+")\n") - addDumpTest(nv4, "(*"+v4t+")()\n") - - // Max uint. - v5 := uint(4294967295) - nv5 := (*uint)(nil) - pv5 := &v5 - v5Addr := fmt.Sprintf("%p", pv5) - pv5Addr := fmt.Sprintf("%p", &pv5) - v5t := "uint" - v5s := "4294967295" - addDumpTest(v5, "("+v5t+") "+v5s+"\n") - addDumpTest(pv5, "(*"+v5t+")("+v5Addr+")("+v5s+")\n") - addDumpTest(&pv5, "(**"+v5t+")("+pv5Addr+"->"+v5Addr+")("+v5s+")\n") - addDumpTest(nv5, "(*"+v5t+")()\n") -} - -func addBoolDumpTests() { - // Boolean true. - v := bool(true) - nv := (*bool)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "bool" - vs := "true" - addDumpTest(v, "("+vt+") "+vs+"\n") - addDumpTest(pv, "(*"+vt+")("+vAddr+")("+vs+")\n") - addDumpTest(&pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")("+vs+")\n") - addDumpTest(nv, "(*"+vt+")()\n") - - // Boolean false. - v2 := bool(false) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "bool" - v2s := "false" - addDumpTest(v2, "("+v2t+") "+v2s+"\n") - addDumpTest(pv2, "(*"+v2t+")("+v2Addr+")("+v2s+")\n") - addDumpTest(&pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")("+v2s+")\n") -} - -func addFloatDumpTests() { - // Standard float32. - v := float32(3.1415) - nv := (*float32)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "float32" - vs := "3.1415" - addDumpTest(v, "("+vt+") "+vs+"\n") - addDumpTest(pv, "(*"+vt+")("+vAddr+")("+vs+")\n") - addDumpTest(&pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")("+vs+")\n") - addDumpTest(nv, "(*"+vt+")()\n") - - // Standard float64. - v2 := float64(3.1415926) - nv2 := (*float64)(nil) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "float64" - v2s := "3.1415926" - addDumpTest(v2, "("+v2t+") "+v2s+"\n") - addDumpTest(pv2, "(*"+v2t+")("+v2Addr+")("+v2s+")\n") - addDumpTest(&pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")("+v2s+")\n") - addDumpTest(nv2, "(*"+v2t+")()\n") -} - -func addComplexDumpTests() { - // Standard complex64. - v := complex(float32(6), -2) - nv := (*complex64)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "complex64" - vs := "(6-2i)" - addDumpTest(v, "("+vt+") "+vs+"\n") - addDumpTest(pv, "(*"+vt+")("+vAddr+")("+vs+")\n") - addDumpTest(&pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")("+vs+")\n") - addDumpTest(nv, "(*"+vt+")()\n") - - // Standard complex128. - v2 := complex(float64(-6), 2) - nv2 := (*complex128)(nil) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "complex128" - v2s := "(-6+2i)" - addDumpTest(v2, "("+v2t+") "+v2s+"\n") - addDumpTest(pv2, "(*"+v2t+")("+v2Addr+")("+v2s+")\n") - addDumpTest(&pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")("+v2s+")\n") - addDumpTest(nv2, "(*"+v2t+")()\n") -} - -func addArrayDumpTests() { - // Array containing standard ints. - v := [3]int{1, 2, 3} - vLen := fmt.Sprintf("%d", len(v)) - vCap := fmt.Sprintf("%d", cap(v)) - nv := (*[3]int)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "int" - vs := "(len=" + vLen + " cap=" + vCap + ") {\n (" + vt + ") 1,\n (" + - vt + ") 2,\n (" + vt + ") 3\n}" - addDumpTest(v, "([3]"+vt+") "+vs+"\n") - addDumpTest(pv, "(*[3]"+vt+")("+vAddr+")("+vs+")\n") - addDumpTest(&pv, "(**[3]"+vt+")("+pvAddr+"->"+vAddr+")("+vs+")\n") - addDumpTest(nv, "(*[3]"+vt+")()\n") - - // Array containing type with custom formatter on pointer receiver only. - v2i0 := pstringer("1") - v2i1 := pstringer("2") - v2i2 := pstringer("3") - v2 := [3]pstringer{v2i0, v2i1, v2i2} - v2i0Len := fmt.Sprintf("%d", len(v2i0)) - v2i1Len := fmt.Sprintf("%d", len(v2i1)) - v2i2Len := fmt.Sprintf("%d", len(v2i2)) - v2Len := fmt.Sprintf("%d", len(v2)) - v2Cap := fmt.Sprintf("%d", cap(v2)) - nv2 := (*[3]pstringer)(nil) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "spew_test.pstringer" - v2sp := "(len=" + v2Len + " cap=" + v2Cap + ") {\n (" + v2t + - ") (len=" + v2i0Len + ") stringer 1,\n (" + v2t + - ") (len=" + v2i1Len + ") stringer 2,\n (" + v2t + - ") (len=" + v2i2Len + ") " + "stringer 3\n}" - v2s := v2sp - if spew.UnsafeDisabled { - v2s = "(len=" + v2Len + " cap=" + v2Cap + ") {\n (" + v2t + - ") (len=" + v2i0Len + ") \"1\",\n (" + v2t + ") (len=" + - v2i1Len + ") \"2\",\n (" + v2t + ") (len=" + v2i2Len + - ") " + "\"3\"\n}" - } - addDumpTest(v2, "([3]"+v2t+") "+v2s+"\n") - addDumpTest(pv2, "(*[3]"+v2t+")("+v2Addr+")("+v2sp+")\n") - addDumpTest(&pv2, "(**[3]"+v2t+")("+pv2Addr+"->"+v2Addr+")("+v2sp+")\n") - addDumpTest(nv2, "(*[3]"+v2t+")()\n") - - // Array containing interfaces. - v3i0 := "one" - v3 := [3]interface{}{v3i0, int(2), uint(3)} - v3i0Len := fmt.Sprintf("%d", len(v3i0)) - v3Len := fmt.Sprintf("%d", len(v3)) - v3Cap := fmt.Sprintf("%d", cap(v3)) - nv3 := (*[3]interface{})(nil) - pv3 := &v3 - v3Addr := fmt.Sprintf("%p", pv3) - pv3Addr := fmt.Sprintf("%p", &pv3) - v3t := "[3]interface {}" - v3t2 := "string" - v3t3 := "int" - v3t4 := "uint" - v3s := "(len=" + v3Len + " cap=" + v3Cap + ") {\n (" + v3t2 + ") " + - "(len=" + v3i0Len + ") \"one\",\n (" + v3t3 + ") 2,\n (" + - v3t4 + ") 3\n}" - addDumpTest(v3, "("+v3t+") "+v3s+"\n") - addDumpTest(pv3, "(*"+v3t+")("+v3Addr+")("+v3s+")\n") - addDumpTest(&pv3, "(**"+v3t+")("+pv3Addr+"->"+v3Addr+")("+v3s+")\n") - addDumpTest(nv3, "(*"+v3t+")()\n") - - // Array containing bytes. - v4 := [34]byte{ - 0x11, 0x12, 0x13, 0x14, 0x15, 0x16, 0x17, 0x18, - 0x19, 0x1a, 0x1b, 0x1c, 0x1d, 0x1e, 0x1f, 0x20, - 0x21, 0x22, 0x23, 0x24, 0x25, 0x26, 0x27, 0x28, - 0x29, 0x2a, 0x2b, 0x2c, 0x2d, 0x2e, 0x2f, 0x30, - 0x31, 0x32, - } - v4Len := fmt.Sprintf("%d", len(v4)) - v4Cap := fmt.Sprintf("%d", cap(v4)) - nv4 := (*[34]byte)(nil) - pv4 := &v4 - v4Addr := fmt.Sprintf("%p", pv4) - pv4Addr := fmt.Sprintf("%p", &pv4) - v4t := "[34]uint8" - v4s := "(len=" + v4Len + " cap=" + v4Cap + ") " + - "{\n 00000000 11 12 13 14 15 16 17 18 19 1a 1b 1c 1d 1e 1f 20" + - " |............... |\n" + - " 00000010 21 22 23 24 25 26 27 28 29 2a 2b 2c 2d 2e 2f 30" + - " |!\"#$%&'()*+,-./0|\n" + - " 00000020 31 32 " + - " |12|\n}" - addDumpTest(v4, "("+v4t+") "+v4s+"\n") - addDumpTest(pv4, "(*"+v4t+")("+v4Addr+")("+v4s+")\n") - addDumpTest(&pv4, "(**"+v4t+")("+pv4Addr+"->"+v4Addr+")("+v4s+")\n") - addDumpTest(nv4, "(*"+v4t+")()\n") -} - -func addSliceDumpTests() { - // Slice containing standard float32 values. - v := []float32{3.14, 6.28, 12.56} - vLen := fmt.Sprintf("%d", len(v)) - vCap := fmt.Sprintf("%d", cap(v)) - nv := (*[]float32)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "float32" - vs := "(len=" + vLen + " cap=" + vCap + ") {\n (" + vt + ") 3.14,\n (" + - vt + ") 6.28,\n (" + vt + ") 12.56\n}" - addDumpTest(v, "([]"+vt+") "+vs+"\n") - addDumpTest(pv, "(*[]"+vt+")("+vAddr+")("+vs+")\n") - addDumpTest(&pv, "(**[]"+vt+")("+pvAddr+"->"+vAddr+")("+vs+")\n") - addDumpTest(nv, "(*[]"+vt+")()\n") - - // Slice containing type with custom formatter on pointer receiver only. - v2i0 := pstringer("1") - v2i1 := pstringer("2") - v2i2 := pstringer("3") - v2 := []pstringer{v2i0, v2i1, v2i2} - v2i0Len := fmt.Sprintf("%d", len(v2i0)) - v2i1Len := fmt.Sprintf("%d", len(v2i1)) - v2i2Len := fmt.Sprintf("%d", len(v2i2)) - v2Len := fmt.Sprintf("%d", len(v2)) - v2Cap := fmt.Sprintf("%d", cap(v2)) - nv2 := (*[]pstringer)(nil) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "spew_test.pstringer" - v2s := "(len=" + v2Len + " cap=" + v2Cap + ") {\n (" + v2t + ") (len=" + - v2i0Len + ") stringer 1,\n (" + v2t + ") (len=" + v2i1Len + - ") stringer 2,\n (" + v2t + ") (len=" + v2i2Len + ") " + - "stringer 3\n}" - addDumpTest(v2, "([]"+v2t+") "+v2s+"\n") - addDumpTest(pv2, "(*[]"+v2t+")("+v2Addr+")("+v2s+")\n") - addDumpTest(&pv2, "(**[]"+v2t+")("+pv2Addr+"->"+v2Addr+")("+v2s+")\n") - addDumpTest(nv2, "(*[]"+v2t+")()\n") - - // Slice containing interfaces. - v3i0 := "one" - v3 := []interface{}{v3i0, int(2), uint(3), nil} - v3i0Len := fmt.Sprintf("%d", len(v3i0)) - v3Len := fmt.Sprintf("%d", len(v3)) - v3Cap := fmt.Sprintf("%d", cap(v3)) - nv3 := (*[]interface{})(nil) - pv3 := &v3 - v3Addr := fmt.Sprintf("%p", pv3) - pv3Addr := fmt.Sprintf("%p", &pv3) - v3t := "[]interface {}" - v3t2 := "string" - v3t3 := "int" - v3t4 := "uint" - v3t5 := "interface {}" - v3s := "(len=" + v3Len + " cap=" + v3Cap + ") {\n (" + v3t2 + ") " + - "(len=" + v3i0Len + ") \"one\",\n (" + v3t3 + ") 2,\n (" + - v3t4 + ") 3,\n (" + v3t5 + ") \n}" - addDumpTest(v3, "("+v3t+") "+v3s+"\n") - addDumpTest(pv3, "(*"+v3t+")("+v3Addr+")("+v3s+")\n") - addDumpTest(&pv3, "(**"+v3t+")("+pv3Addr+"->"+v3Addr+")("+v3s+")\n") - addDumpTest(nv3, "(*"+v3t+")()\n") - - // Slice containing bytes. - v4 := []byte{ - 0x11, 0x12, 0x13, 0x14, 0x15, 0x16, 0x17, 0x18, - 0x19, 0x1a, 0x1b, 0x1c, 0x1d, 0x1e, 0x1f, 0x20, - 0x21, 0x22, 0x23, 0x24, 0x25, 0x26, 0x27, 0x28, - 0x29, 0x2a, 0x2b, 0x2c, 0x2d, 0x2e, 0x2f, 0x30, - 0x31, 0x32, - } - v4Len := fmt.Sprintf("%d", len(v4)) - v4Cap := fmt.Sprintf("%d", cap(v4)) - nv4 := (*[]byte)(nil) - pv4 := &v4 - v4Addr := fmt.Sprintf("%p", pv4) - pv4Addr := fmt.Sprintf("%p", &pv4) - v4t := "[]uint8" - v4s := "(len=" + v4Len + " cap=" + v4Cap + ") " + - "{\n 00000000 11 12 13 14 15 16 17 18 19 1a 1b 1c 1d 1e 1f 20" + - " |............... |\n" + - " 00000010 21 22 23 24 25 26 27 28 29 2a 2b 2c 2d 2e 2f 30" + - " |!\"#$%&'()*+,-./0|\n" + - " 00000020 31 32 " + - " |12|\n}" - addDumpTest(v4, "("+v4t+") "+v4s+"\n") - addDumpTest(pv4, "(*"+v4t+")("+v4Addr+")("+v4s+")\n") - addDumpTest(&pv4, "(**"+v4t+")("+pv4Addr+"->"+v4Addr+")("+v4s+")\n") - addDumpTest(nv4, "(*"+v4t+")()\n") - - // Nil slice. - v5 := []int(nil) - nv5 := (*[]int)(nil) - pv5 := &v5 - v5Addr := fmt.Sprintf("%p", pv5) - pv5Addr := fmt.Sprintf("%p", &pv5) - v5t := "[]int" - v5s := "" - addDumpTest(v5, "("+v5t+") "+v5s+"\n") - addDumpTest(pv5, "(*"+v5t+")("+v5Addr+")("+v5s+")\n") - addDumpTest(&pv5, "(**"+v5t+")("+pv5Addr+"->"+v5Addr+")("+v5s+")\n") - addDumpTest(nv5, "(*"+v5t+")()\n") -} - -func addStringDumpTests() { - // Standard string. - v := "test" - vLen := fmt.Sprintf("%d", len(v)) - nv := (*string)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "string" - vs := "(len=" + vLen + ") \"test\"" - addDumpTest(v, "("+vt+") "+vs+"\n") - addDumpTest(pv, "(*"+vt+")("+vAddr+")("+vs+")\n") - addDumpTest(&pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")("+vs+")\n") - addDumpTest(nv, "(*"+vt+")()\n") -} - -func addInterfaceDumpTests() { - // Nil interface. - var v interface{} - nv := (*interface{})(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "interface {}" - vs := "" - addDumpTest(v, "("+vt+") "+vs+"\n") - addDumpTest(pv, "(*"+vt+")("+vAddr+")("+vs+")\n") - addDumpTest(&pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")("+vs+")\n") - addDumpTest(nv, "(*"+vt+")()\n") - - // Sub-interface. - v2 := interface{}(uint16(65535)) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "uint16" - v2s := "65535" - addDumpTest(v2, "("+v2t+") "+v2s+"\n") - addDumpTest(pv2, "(*"+v2t+")("+v2Addr+")("+v2s+")\n") - addDumpTest(&pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")("+v2s+")\n") -} - -func addMapDumpTests() { - // Map with string keys and int vals. - k := "one" - kk := "two" - m := map[string]int{k: 1, kk: 2} - klen := fmt.Sprintf("%d", len(k)) // not kLen to shut golint up - kkLen := fmt.Sprintf("%d", len(kk)) - mLen := fmt.Sprintf("%d", len(m)) - nilMap := map[string]int(nil) - nm := (*map[string]int)(nil) - pm := &m - mAddr := fmt.Sprintf("%p", pm) - pmAddr := fmt.Sprintf("%p", &pm) - mt := "map[string]int" - mt1 := "string" - mt2 := "int" - ms := "(len=" + mLen + ") {\n (" + mt1 + ") (len=" + klen + ") " + - "\"one\": (" + mt2 + ") 1,\n (" + mt1 + ") (len=" + kkLen + - ") \"two\": (" + mt2 + ") 2\n}" - ms2 := "(len=" + mLen + ") {\n (" + mt1 + ") (len=" + kkLen + ") " + - "\"two\": (" + mt2 + ") 2,\n (" + mt1 + ") (len=" + klen + - ") \"one\": (" + mt2 + ") 1\n}" - addDumpTest(m, "("+mt+") "+ms+"\n", "("+mt+") "+ms2+"\n") - addDumpTest(pm, "(*"+mt+")("+mAddr+")("+ms+")\n", - "(*"+mt+")("+mAddr+")("+ms2+")\n") - addDumpTest(&pm, "(**"+mt+")("+pmAddr+"->"+mAddr+")("+ms+")\n", - "(**"+mt+")("+pmAddr+"->"+mAddr+")("+ms2+")\n") - addDumpTest(nm, "(*"+mt+")()\n") - addDumpTest(nilMap, "("+mt+") \n") - - // Map with custom formatter type on pointer receiver only keys and vals. - k2 := pstringer("one") - v2 := pstringer("1") - m2 := map[pstringer]pstringer{k2: v2} - k2Len := fmt.Sprintf("%d", len(k2)) - v2Len := fmt.Sprintf("%d", len(v2)) - m2Len := fmt.Sprintf("%d", len(m2)) - nilMap2 := map[pstringer]pstringer(nil) - nm2 := (*map[pstringer]pstringer)(nil) - pm2 := &m2 - m2Addr := fmt.Sprintf("%p", pm2) - pm2Addr := fmt.Sprintf("%p", &pm2) - m2t := "map[spew_test.pstringer]spew_test.pstringer" - m2t1 := "spew_test.pstringer" - m2t2 := "spew_test.pstringer" - m2s := "(len=" + m2Len + ") {\n (" + m2t1 + ") (len=" + k2Len + ") " + - "stringer one: (" + m2t2 + ") (len=" + v2Len + ") stringer 1\n}" - if spew.UnsafeDisabled { - m2s = "(len=" + m2Len + ") {\n (" + m2t1 + ") (len=" + k2Len + - ") " + "\"one\": (" + m2t2 + ") (len=" + v2Len + - ") \"1\"\n}" - } - addDumpTest(m2, "("+m2t+") "+m2s+"\n") - addDumpTest(pm2, "(*"+m2t+")("+m2Addr+")("+m2s+")\n") - addDumpTest(&pm2, "(**"+m2t+")("+pm2Addr+"->"+m2Addr+")("+m2s+")\n") - addDumpTest(nm2, "(*"+m2t+")()\n") - addDumpTest(nilMap2, "("+m2t+") \n") - - // Map with interface keys and values. - k3 := "one" - k3Len := fmt.Sprintf("%d", len(k3)) - m3 := map[interface{}]interface{}{k3: 1} - m3Len := fmt.Sprintf("%d", len(m3)) - nilMap3 := map[interface{}]interface{}(nil) - nm3 := (*map[interface{}]interface{})(nil) - pm3 := &m3 - m3Addr := fmt.Sprintf("%p", pm3) - pm3Addr := fmt.Sprintf("%p", &pm3) - m3t := "map[interface {}]interface {}" - m3t1 := "string" - m3t2 := "int" - m3s := "(len=" + m3Len + ") {\n (" + m3t1 + ") (len=" + k3Len + ") " + - "\"one\": (" + m3t2 + ") 1\n}" - addDumpTest(m3, "("+m3t+") "+m3s+"\n") - addDumpTest(pm3, "(*"+m3t+")("+m3Addr+")("+m3s+")\n") - addDumpTest(&pm3, "(**"+m3t+")("+pm3Addr+"->"+m3Addr+")("+m3s+")\n") - addDumpTest(nm3, "(*"+m3t+")()\n") - addDumpTest(nilMap3, "("+m3t+") \n") - - // Map with nil interface value. - k4 := "nil" - k4Len := fmt.Sprintf("%d", len(k4)) - m4 := map[string]interface{}{k4: nil} - m4Len := fmt.Sprintf("%d", len(m4)) - nilMap4 := map[string]interface{}(nil) - nm4 := (*map[string]interface{})(nil) - pm4 := &m4 - m4Addr := fmt.Sprintf("%p", pm4) - pm4Addr := fmt.Sprintf("%p", &pm4) - m4t := "map[string]interface {}" - m4t1 := "string" - m4t2 := "interface {}" - m4s := "(len=" + m4Len + ") {\n (" + m4t1 + ") (len=" + k4Len + ")" + - " \"nil\": (" + m4t2 + ") \n}" - addDumpTest(m4, "("+m4t+") "+m4s+"\n") - addDumpTest(pm4, "(*"+m4t+")("+m4Addr+")("+m4s+")\n") - addDumpTest(&pm4, "(**"+m4t+")("+pm4Addr+"->"+m4Addr+")("+m4s+")\n") - addDumpTest(nm4, "(*"+m4t+")()\n") - addDumpTest(nilMap4, "("+m4t+") \n") -} - -func addStructDumpTests() { - // Struct with primitives. - type s1 struct { - a int8 - b uint8 - } - v := s1{127, 255} - nv := (*s1)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "spew_test.s1" - vt2 := "int8" - vt3 := "uint8" - vs := "{\n a: (" + vt2 + ") 127,\n b: (" + vt3 + ") 255\n}" - addDumpTest(v, "("+vt+") "+vs+"\n") - addDumpTest(pv, "(*"+vt+")("+vAddr+")("+vs+")\n") - addDumpTest(&pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")("+vs+")\n") - addDumpTest(nv, "(*"+vt+")()\n") - - // Struct that contains another struct. - type s2 struct { - s1 s1 - b bool - } - v2 := s2{s1{127, 255}, true} - nv2 := (*s2)(nil) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "spew_test.s2" - v2t2 := "spew_test.s1" - v2t3 := "int8" - v2t4 := "uint8" - v2t5 := "bool" - v2s := "{\n s1: (" + v2t2 + ") {\n a: (" + v2t3 + ") 127,\n b: (" + - v2t4 + ") 255\n },\n b: (" + v2t5 + ") true\n}" - addDumpTest(v2, "("+v2t+") "+v2s+"\n") - addDumpTest(pv2, "(*"+v2t+")("+v2Addr+")("+v2s+")\n") - addDumpTest(&pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")("+v2s+")\n") - addDumpTest(nv2, "(*"+v2t+")()\n") - - // Struct that contains custom type with Stringer pointer interface via both - // exported and unexported fields. - type s3 struct { - s pstringer - S pstringer - } - v3 := s3{"test", "test2"} - nv3 := (*s3)(nil) - pv3 := &v3 - v3Addr := fmt.Sprintf("%p", pv3) - pv3Addr := fmt.Sprintf("%p", &pv3) - v3t := "spew_test.s3" - v3t2 := "spew_test.pstringer" - v3s := "{\n s: (" + v3t2 + ") (len=4) stringer test,\n S: (" + v3t2 + - ") (len=5) stringer test2\n}" - v3sp := v3s - if spew.UnsafeDisabled { - v3s = "{\n s: (" + v3t2 + ") (len=4) \"test\",\n S: (" + - v3t2 + ") (len=5) \"test2\"\n}" - v3sp = "{\n s: (" + v3t2 + ") (len=4) \"test\",\n S: (" + - v3t2 + ") (len=5) stringer test2\n}" - } - addDumpTest(v3, "("+v3t+") "+v3s+"\n") - addDumpTest(pv3, "(*"+v3t+")("+v3Addr+")("+v3sp+")\n") - addDumpTest(&pv3, "(**"+v3t+")("+pv3Addr+"->"+v3Addr+")("+v3sp+")\n") - addDumpTest(nv3, "(*"+v3t+")()\n") - - // Struct that contains embedded struct and field to same struct. - e := embed{"embedstr"} - eLen := fmt.Sprintf("%d", len("embedstr")) - v4 := embedwrap{embed: &e, e: &e} - nv4 := (*embedwrap)(nil) - pv4 := &v4 - eAddr := fmt.Sprintf("%p", &e) - v4Addr := fmt.Sprintf("%p", pv4) - pv4Addr := fmt.Sprintf("%p", &pv4) - v4t := "spew_test.embedwrap" - v4t2 := "spew_test.embed" - v4t3 := "string" - v4s := "{\n embed: (*" + v4t2 + ")(" + eAddr + ")({\n a: (" + v4t3 + - ") (len=" + eLen + ") \"embedstr\"\n }),\n e: (*" + v4t2 + - ")(" + eAddr + ")({\n a: (" + v4t3 + ") (len=" + eLen + ")" + - " \"embedstr\"\n })\n}" - addDumpTest(v4, "("+v4t+") "+v4s+"\n") - addDumpTest(pv4, "(*"+v4t+")("+v4Addr+")("+v4s+")\n") - addDumpTest(&pv4, "(**"+v4t+")("+pv4Addr+"->"+v4Addr+")("+v4s+")\n") - addDumpTest(nv4, "(*"+v4t+")()\n") -} - -func addUintptrDumpTests() { - // Null pointer. - v := uintptr(0) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "uintptr" - vs := "" - addDumpTest(v, "("+vt+") "+vs+"\n") - addDumpTest(pv, "(*"+vt+")("+vAddr+")("+vs+")\n") - addDumpTest(&pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")("+vs+")\n") - - // Address of real variable. - i := 1 - v2 := uintptr(unsafe.Pointer(&i)) - nv2 := (*uintptr)(nil) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "uintptr" - v2s := fmt.Sprintf("%p", &i) - addDumpTest(v2, "("+v2t+") "+v2s+"\n") - addDumpTest(pv2, "(*"+v2t+")("+v2Addr+")("+v2s+")\n") - addDumpTest(&pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")("+v2s+")\n") - addDumpTest(nv2, "(*"+v2t+")()\n") -} - -func addUnsafePointerDumpTests() { - // Null pointer. - v := unsafe.Pointer(nil) - nv := (*unsafe.Pointer)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "unsafe.Pointer" - vs := "" - addDumpTest(v, "("+vt+") "+vs+"\n") - addDumpTest(pv, "(*"+vt+")("+vAddr+")("+vs+")\n") - addDumpTest(&pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")("+vs+")\n") - addDumpTest(nv, "(*"+vt+")()\n") - - // Address of real variable. - i := 1 - v2 := unsafe.Pointer(&i) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "unsafe.Pointer" - v2s := fmt.Sprintf("%p", &i) - addDumpTest(v2, "("+v2t+") "+v2s+"\n") - addDumpTest(pv2, "(*"+v2t+")("+v2Addr+")("+v2s+")\n") - addDumpTest(&pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")("+v2s+")\n") - addDumpTest(nv, "(*"+vt+")()\n") -} - -func addChanDumpTests() { - // Nil channel. - var v chan int - pv := &v - nv := (*chan int)(nil) - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "chan int" - vs := "" - addDumpTest(v, "("+vt+") "+vs+"\n") - addDumpTest(pv, "(*"+vt+")("+vAddr+")("+vs+")\n") - addDumpTest(&pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")("+vs+")\n") - addDumpTest(nv, "(*"+vt+")()\n") - - // Real channel. - v2 := make(chan int) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "chan int" - v2s := fmt.Sprintf("%p", v2) - addDumpTest(v2, "("+v2t+") "+v2s+"\n") - addDumpTest(pv2, "(*"+v2t+")("+v2Addr+")("+v2s+")\n") - addDumpTest(&pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")("+v2s+")\n") -} - -func addFuncDumpTests() { - // Function with no params and no returns. - v := addIntDumpTests - nv := (*func())(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "func()" - vs := fmt.Sprintf("%p", v) - addDumpTest(v, "("+vt+") "+vs+"\n") - addDumpTest(pv, "(*"+vt+")("+vAddr+")("+vs+")\n") - addDumpTest(&pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")("+vs+")\n") - addDumpTest(nv, "(*"+vt+")()\n") - - // Function with param and no returns. - v2 := TestDump - nv2 := (*func(*testing.T))(nil) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "func(*testing.T)" - v2s := fmt.Sprintf("%p", v2) - addDumpTest(v2, "("+v2t+") "+v2s+"\n") - addDumpTest(pv2, "(*"+v2t+")("+v2Addr+")("+v2s+")\n") - addDumpTest(&pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")("+v2s+")\n") - addDumpTest(nv2, "(*"+v2t+")()\n") - - // Function with multiple params and multiple returns. - var v3 = func(i int, s string) (b bool, err error) { - return true, nil - } - nv3 := (*func(int, string) (bool, error))(nil) - pv3 := &v3 - v3Addr := fmt.Sprintf("%p", pv3) - pv3Addr := fmt.Sprintf("%p", &pv3) - v3t := "func(int, string) (bool, error)" - v3s := fmt.Sprintf("%p", v3) - addDumpTest(v3, "("+v3t+") "+v3s+"\n") - addDumpTest(pv3, "(*"+v3t+")("+v3Addr+")("+v3s+")\n") - addDumpTest(&pv3, "(**"+v3t+")("+pv3Addr+"->"+v3Addr+")("+v3s+")\n") - addDumpTest(nv3, "(*"+v3t+")()\n") -} - -func addCircularDumpTests() { - // Struct that is circular through self referencing. - type circular struct { - c *circular - } - v := circular{nil} - v.c = &v - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "spew_test.circular" - vs := "{\n c: (*" + vt + ")(" + vAddr + ")({\n c: (*" + vt + ")(" + - vAddr + ")()\n })\n}" - vs2 := "{\n c: (*" + vt + ")(" + vAddr + ")()\n}" - addDumpTest(v, "("+vt+") "+vs+"\n") - addDumpTest(pv, "(*"+vt+")("+vAddr+")("+vs2+")\n") - addDumpTest(&pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")("+vs2+")\n") - - // Structs that are circular through cross referencing. - v2 := xref1{nil} - ts2 := xref2{&v2} - v2.ps2 = &ts2 - pv2 := &v2 - ts2Addr := fmt.Sprintf("%p", &ts2) - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "spew_test.xref1" - v2t2 := "spew_test.xref2" - v2s := "{\n ps2: (*" + v2t2 + ")(" + ts2Addr + ")({\n ps1: (*" + v2t + - ")(" + v2Addr + ")({\n ps2: (*" + v2t2 + ")(" + ts2Addr + - ")()\n })\n })\n}" - v2s2 := "{\n ps2: (*" + v2t2 + ")(" + ts2Addr + ")({\n ps1: (*" + v2t + - ")(" + v2Addr + ")()\n })\n}" - addDumpTest(v2, "("+v2t+") "+v2s+"\n") - addDumpTest(pv2, "(*"+v2t+")("+v2Addr+")("+v2s2+")\n") - addDumpTest(&pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")("+v2s2+")\n") - - // Structs that are indirectly circular. - v3 := indirCir1{nil} - tic2 := indirCir2{nil} - tic3 := indirCir3{&v3} - tic2.ps3 = &tic3 - v3.ps2 = &tic2 - pv3 := &v3 - tic2Addr := fmt.Sprintf("%p", &tic2) - tic3Addr := fmt.Sprintf("%p", &tic3) - v3Addr := fmt.Sprintf("%p", pv3) - pv3Addr := fmt.Sprintf("%p", &pv3) - v3t := "spew_test.indirCir1" - v3t2 := "spew_test.indirCir2" - v3t3 := "spew_test.indirCir3" - v3s := "{\n ps2: (*" + v3t2 + ")(" + tic2Addr + ")({\n ps3: (*" + v3t3 + - ")(" + tic3Addr + ")({\n ps1: (*" + v3t + ")(" + v3Addr + - ")({\n ps2: (*" + v3t2 + ")(" + tic2Addr + - ")()\n })\n })\n })\n}" - v3s2 := "{\n ps2: (*" + v3t2 + ")(" + tic2Addr + ")({\n ps3: (*" + v3t3 + - ")(" + tic3Addr + ")({\n ps1: (*" + v3t + ")(" + v3Addr + - ")()\n })\n })\n}" - addDumpTest(v3, "("+v3t+") "+v3s+"\n") - addDumpTest(pv3, "(*"+v3t+")("+v3Addr+")("+v3s2+")\n") - addDumpTest(&pv3, "(**"+v3t+")("+pv3Addr+"->"+v3Addr+")("+v3s2+")\n") -} - -func addPanicDumpTests() { - // Type that panics in its Stringer interface. - v := panicer(127) - nv := (*panicer)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "spew_test.panicer" - vs := "(PANIC=test panic)127" - addDumpTest(v, "("+vt+") "+vs+"\n") - addDumpTest(pv, "(*"+vt+")("+vAddr+")("+vs+")\n") - addDumpTest(&pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")("+vs+")\n") - addDumpTest(nv, "(*"+vt+")()\n") -} - -func addErrorDumpTests() { - // Type that has a custom Error interface. - v := customError(127) - nv := (*customError)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "spew_test.customError" - vs := "error: 127" - addDumpTest(v, "("+vt+") "+vs+"\n") - addDumpTest(pv, "(*"+vt+")("+vAddr+")("+vs+")\n") - addDumpTest(&pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")("+vs+")\n") - addDumpTest(nv, "(*"+vt+")()\n") -} - -// TestDump executes all of the tests described by dumpTests. -func TestDump(t *testing.T) { - // Setup tests. - addIntDumpTests() - addUintDumpTests() - addBoolDumpTests() - addFloatDumpTests() - addComplexDumpTests() - addArrayDumpTests() - addSliceDumpTests() - addStringDumpTests() - addInterfaceDumpTests() - addMapDumpTests() - addStructDumpTests() - addUintptrDumpTests() - addUnsafePointerDumpTests() - addChanDumpTests() - addFuncDumpTests() - addCircularDumpTests() - addPanicDumpTests() - addErrorDumpTests() - addCgoDumpTests() - - t.Logf("Running %d tests", len(dumpTests)) - for i, test := range dumpTests { - buf := new(bytes.Buffer) - spew.Fdump(buf, test.in) - s := buf.String() - if testFailed(s, test.wants) { - t.Errorf("Dump #%d\n got: %s %s", i, s, stringizeWants(test.wants)) - continue - } - } -} - -func TestDumpSortedKeys(t *testing.T) { - cfg := spew.ConfigState{SortKeys: true} - s := cfg.Sdump(map[int]string{1: "1", 3: "3", 2: "2"}) - expected := "(map[int]string) (len=3) {\n(int) 1: (string) (len=1) " + - "\"1\",\n(int) 2: (string) (len=1) \"2\",\n(int) 3: (string) " + - "(len=1) \"3\"\n" + - "}\n" - if s != expected { - t.Errorf("Sorted keys mismatch:\n %v %v", s, expected) - } - - s = cfg.Sdump(map[stringer]int{"1": 1, "3": 3, "2": 2}) - expected = "(map[spew_test.stringer]int) (len=3) {\n" + - "(spew_test.stringer) (len=1) stringer 1: (int) 1,\n" + - "(spew_test.stringer) (len=1) stringer 2: (int) 2,\n" + - "(spew_test.stringer) (len=1) stringer 3: (int) 3\n" + - "}\n" - if s != expected { - t.Errorf("Sorted keys mismatch:\n %v %v", s, expected) - } - - s = cfg.Sdump(map[pstringer]int{pstringer("1"): 1, pstringer("3"): 3, pstringer("2"): 2}) - expected = "(map[spew_test.pstringer]int) (len=3) {\n" + - "(spew_test.pstringer) (len=1) stringer 1: (int) 1,\n" + - "(spew_test.pstringer) (len=1) stringer 2: (int) 2,\n" + - "(spew_test.pstringer) (len=1) stringer 3: (int) 3\n" + - "}\n" - if spew.UnsafeDisabled { - expected = "(map[spew_test.pstringer]int) (len=3) {\n" + - "(spew_test.pstringer) (len=1) \"1\": (int) 1,\n" + - "(spew_test.pstringer) (len=1) \"2\": (int) 2,\n" + - "(spew_test.pstringer) (len=1) \"3\": (int) 3\n" + - "}\n" - } - if s != expected { - t.Errorf("Sorted keys mismatch:\n %v %v", s, expected) - } - - s = cfg.Sdump(map[customError]int{customError(1): 1, customError(3): 3, customError(2): 2}) - expected = "(map[spew_test.customError]int) (len=3) {\n" + - "(spew_test.customError) error: 1: (int) 1,\n" + - "(spew_test.customError) error: 2: (int) 2,\n" + - "(spew_test.customError) error: 3: (int) 3\n" + - "}\n" - if s != expected { - t.Errorf("Sorted keys mismatch:\n %v %v", s, expected) - } - -} diff --git a/vendor/github.com/davecgh/go-spew/spew/dumpcgo_test.go b/vendor/github.com/davecgh/go-spew/spew/dumpcgo_test.go deleted file mode 100644 index 108baa55..00000000 --- a/vendor/github.com/davecgh/go-spew/spew/dumpcgo_test.go +++ /dev/null @@ -1,101 +0,0 @@ -// Copyright (c) 2013-2016 Dave Collins -// -// Permission to use, copy, modify, and distribute this software for any -// purpose with or without fee is hereby granted, provided that the above -// copyright notice and this permission notice appear in all copies. -// -// THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES -// WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF -// MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR -// ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES -// WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN -// ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF -// OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. - -// NOTE: Due to the following build constraints, this file will only be compiled -// when both cgo is supported and "-tags testcgo" is added to the go test -// command line. This means the cgo tests are only added (and hence run) when -// specifially requested. This configuration is used because spew itself -// does not require cgo to run even though it does handle certain cgo types -// specially. Rather than forcing all clients to require cgo and an external -// C compiler just to run the tests, this scheme makes them optional. -// +build cgo,testcgo - -package spew_test - -import ( - "fmt" - - "github.com/davecgh/go-spew/spew/testdata" -) - -func addCgoDumpTests() { - // C char pointer. - v := testdata.GetCgoCharPointer() - nv := testdata.GetCgoNullCharPointer() - pv := &v - vcAddr := fmt.Sprintf("%p", v) - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "*testdata._Ctype_char" - vs := "116" - addDumpTest(v, "("+vt+")("+vcAddr+")("+vs+")\n") - addDumpTest(pv, "(*"+vt+")("+vAddr+"->"+vcAddr+")("+vs+")\n") - addDumpTest(&pv, "(**"+vt+")("+pvAddr+"->"+vAddr+"->"+vcAddr+")("+vs+")\n") - addDumpTest(nv, "("+vt+")()\n") - - // C char array. - v2, v2l, v2c := testdata.GetCgoCharArray() - v2Len := fmt.Sprintf("%d", v2l) - v2Cap := fmt.Sprintf("%d", v2c) - v2t := "[6]testdata._Ctype_char" - v2s := "(len=" + v2Len + " cap=" + v2Cap + ") " + - "{\n 00000000 74 65 73 74 32 00 " + - " |test2.|\n}" - addDumpTest(v2, "("+v2t+") "+v2s+"\n") - - // C unsigned char array. - v3, v3l, v3c := testdata.GetCgoUnsignedCharArray() - v3Len := fmt.Sprintf("%d", v3l) - v3Cap := fmt.Sprintf("%d", v3c) - v3t := "[6]testdata._Ctype_unsignedchar" - v3t2 := "[6]testdata._Ctype_uchar" - v3s := "(len=" + v3Len + " cap=" + v3Cap + ") " + - "{\n 00000000 74 65 73 74 33 00 " + - " |test3.|\n}" - addDumpTest(v3, "("+v3t+") "+v3s+"\n", "("+v3t2+") "+v3s+"\n") - - // C signed char array. - v4, v4l, v4c := testdata.GetCgoSignedCharArray() - v4Len := fmt.Sprintf("%d", v4l) - v4Cap := fmt.Sprintf("%d", v4c) - v4t := "[6]testdata._Ctype_schar" - v4t2 := "testdata._Ctype_schar" - v4s := "(len=" + v4Len + " cap=" + v4Cap + ") " + - "{\n (" + v4t2 + ") 116,\n (" + v4t2 + ") 101,\n (" + v4t2 + - ") 115,\n (" + v4t2 + ") 116,\n (" + v4t2 + ") 52,\n (" + v4t2 + - ") 0\n}" - addDumpTest(v4, "("+v4t+") "+v4s+"\n") - - // C uint8_t array. - v5, v5l, v5c := testdata.GetCgoUint8tArray() - v5Len := fmt.Sprintf("%d", v5l) - v5Cap := fmt.Sprintf("%d", v5c) - v5t := "[6]testdata._Ctype_uint8_t" - v5t2 := "[6]testdata._Ctype_uchar" - v5s := "(len=" + v5Len + " cap=" + v5Cap + ") " + - "{\n 00000000 74 65 73 74 35 00 " + - " |test5.|\n}" - addDumpTest(v5, "("+v5t+") "+v5s+"\n", "("+v5t2+") "+v5s+"\n") - - // C typedefed unsigned char array. - v6, v6l, v6c := testdata.GetCgoTypdefedUnsignedCharArray() - v6Len := fmt.Sprintf("%d", v6l) - v6Cap := fmt.Sprintf("%d", v6c) - v6t := "[6]testdata._Ctype_custom_uchar_t" - v6t2 := "[6]testdata._Ctype_uchar" - v6s := "(len=" + v6Len + " cap=" + v6Cap + ") " + - "{\n 00000000 74 65 73 74 36 00 " + - " |test6.|\n}" - addDumpTest(v6, "("+v6t+") "+v6s+"\n", "("+v6t2+") "+v6s+"\n") -} diff --git a/vendor/github.com/davecgh/go-spew/spew/dumpnocgo_test.go b/vendor/github.com/davecgh/go-spew/spew/dumpnocgo_test.go deleted file mode 100644 index 52a0971f..00000000 --- a/vendor/github.com/davecgh/go-spew/spew/dumpnocgo_test.go +++ /dev/null @@ -1,26 +0,0 @@ -// Copyright (c) 2013 Dave Collins -// -// Permission to use, copy, modify, and distribute this software for any -// purpose with or without fee is hereby granted, provided that the above -// copyright notice and this permission notice appear in all copies. -// -// THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES -// WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF -// MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR -// ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES -// WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN -// ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF -// OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. - -// NOTE: Due to the following build constraints, this file will only be compiled -// when either cgo is not supported or "-tags testcgo" is not added to the go -// test command line. This file intentionally does not setup any cgo tests in -// this scenario. -// +build !cgo !testcgo - -package spew_test - -func addCgoDumpTests() { - // Don't add any tests for cgo since this file is only compiled when - // there should not be any cgo tests. -} diff --git a/vendor/github.com/davecgh/go-spew/spew/example_test.go b/vendor/github.com/davecgh/go-spew/spew/example_test.go deleted file mode 100644 index c6ec8c6d..00000000 --- a/vendor/github.com/davecgh/go-spew/spew/example_test.go +++ /dev/null @@ -1,226 +0,0 @@ -/* - * Copyright (c) 2013-2016 Dave Collins - * - * Permission to use, copy, modify, and distribute this software for any - * purpose with or without fee is hereby granted, provided that the above - * copyright notice and this permission notice appear in all copies. - * - * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES - * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF - * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR - * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES - * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN - * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF - * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. - */ - -package spew_test - -import ( - "fmt" - - "github.com/davecgh/go-spew/spew" -) - -type Flag int - -const ( - flagOne Flag = iota - flagTwo -) - -var flagStrings = map[Flag]string{ - flagOne: "flagOne", - flagTwo: "flagTwo", -} - -func (f Flag) String() string { - if s, ok := flagStrings[f]; ok { - return s - } - return fmt.Sprintf("Unknown flag (%d)", int(f)) -} - -type Bar struct { - data uintptr -} - -type Foo struct { - unexportedField Bar - ExportedField map[interface{}]interface{} -} - -// This example demonstrates how to use Dump to dump variables to stdout. -func ExampleDump() { - // The following package level declarations are assumed for this example: - /* - type Flag int - - const ( - flagOne Flag = iota - flagTwo - ) - - var flagStrings = map[Flag]string{ - flagOne: "flagOne", - flagTwo: "flagTwo", - } - - func (f Flag) String() string { - if s, ok := flagStrings[f]; ok { - return s - } - return fmt.Sprintf("Unknown flag (%d)", int(f)) - } - - type Bar struct { - data uintptr - } - - type Foo struct { - unexportedField Bar - ExportedField map[interface{}]interface{} - } - */ - - // Setup some sample data structures for the example. - bar := Bar{uintptr(0)} - s1 := Foo{bar, map[interface{}]interface{}{"one": true}} - f := Flag(5) - b := []byte{ - 0x11, 0x12, 0x13, 0x14, 0x15, 0x16, 0x17, 0x18, - 0x19, 0x1a, 0x1b, 0x1c, 0x1d, 0x1e, 0x1f, 0x20, - 0x21, 0x22, 0x23, 0x24, 0x25, 0x26, 0x27, 0x28, - 0x29, 0x2a, 0x2b, 0x2c, 0x2d, 0x2e, 0x2f, 0x30, - 0x31, 0x32, - } - - // Dump! - spew.Dump(s1, f, b) - - // Output: - // (spew_test.Foo) { - // unexportedField: (spew_test.Bar) { - // data: (uintptr) - // }, - // ExportedField: (map[interface {}]interface {}) (len=1) { - // (string) (len=3) "one": (bool) true - // } - // } - // (spew_test.Flag) Unknown flag (5) - // ([]uint8) (len=34 cap=34) { - // 00000000 11 12 13 14 15 16 17 18 19 1a 1b 1c 1d 1e 1f 20 |............... | - // 00000010 21 22 23 24 25 26 27 28 29 2a 2b 2c 2d 2e 2f 30 |!"#$%&'()*+,-./0| - // 00000020 31 32 |12| - // } - // -} - -// This example demonstrates how to use Printf to display a variable with a -// format string and inline formatting. -func ExamplePrintf() { - // Create a double pointer to a uint 8. - ui8 := uint8(5) - pui8 := &ui8 - ppui8 := &pui8 - - // Create a circular data type. - type circular struct { - ui8 uint8 - c *circular - } - c := circular{ui8: 1} - c.c = &c - - // Print! - spew.Printf("ppui8: %v\n", ppui8) - spew.Printf("circular: %v\n", c) - - // Output: - // ppui8: <**>5 - // circular: {1 <*>{1 <*>}} -} - -// This example demonstrates how to use a ConfigState. -func ExampleConfigState() { - // Modify the indent level of the ConfigState only. The global - // configuration is not modified. - scs := spew.ConfigState{Indent: "\t"} - - // Output using the ConfigState instance. - v := map[string]int{"one": 1} - scs.Printf("v: %v\n", v) - scs.Dump(v) - - // Output: - // v: map[one:1] - // (map[string]int) (len=1) { - // (string) (len=3) "one": (int) 1 - // } -} - -// This example demonstrates how to use ConfigState.Dump to dump variables to -// stdout -func ExampleConfigState_Dump() { - // See the top-level Dump example for details on the types used in this - // example. - - // Create two ConfigState instances with different indentation. - scs := spew.ConfigState{Indent: "\t"} - scs2 := spew.ConfigState{Indent: " "} - - // Setup some sample data structures for the example. - bar := Bar{uintptr(0)} - s1 := Foo{bar, map[interface{}]interface{}{"one": true}} - - // Dump using the ConfigState instances. - scs.Dump(s1) - scs2.Dump(s1) - - // Output: - // (spew_test.Foo) { - // unexportedField: (spew_test.Bar) { - // data: (uintptr) - // }, - // ExportedField: (map[interface {}]interface {}) (len=1) { - // (string) (len=3) "one": (bool) true - // } - // } - // (spew_test.Foo) { - // unexportedField: (spew_test.Bar) { - // data: (uintptr) - // }, - // ExportedField: (map[interface {}]interface {}) (len=1) { - // (string) (len=3) "one": (bool) true - // } - // } - // -} - -// This example demonstrates how to use ConfigState.Printf to display a variable -// with a format string and inline formatting. -func ExampleConfigState_Printf() { - // See the top-level Dump example for details on the types used in this - // example. - - // Create two ConfigState instances and modify the method handling of the - // first ConfigState only. - scs := spew.NewDefaultConfig() - scs2 := spew.NewDefaultConfig() - scs.DisableMethods = true - - // Alternatively - // scs := spew.ConfigState{Indent: " ", DisableMethods: true} - // scs2 := spew.ConfigState{Indent: " "} - - // This is of type Flag which implements a Stringer and has raw value 1. - f := flagTwo - - // Dump using the ConfigState instances. - scs.Printf("f: %v\n", f) - scs2.Printf("f: %v\n", f) - - // Output: - // f: 1 - // f: flagTwo -} diff --git a/vendor/github.com/davecgh/go-spew/spew/format.go b/vendor/github.com/davecgh/go-spew/spew/format.go deleted file mode 100644 index b04edb7d..00000000 --- a/vendor/github.com/davecgh/go-spew/spew/format.go +++ /dev/null @@ -1,419 +0,0 @@ -/* - * Copyright (c) 2013-2016 Dave Collins - * - * Permission to use, copy, modify, and distribute this software for any - * purpose with or without fee is hereby granted, provided that the above - * copyright notice and this permission notice appear in all copies. - * - * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES - * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF - * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR - * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES - * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN - * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF - * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. - */ - -package spew - -import ( - "bytes" - "fmt" - "reflect" - "strconv" - "strings" -) - -// supportedFlags is a list of all the character flags supported by fmt package. -const supportedFlags = "0-+# " - -// formatState implements the fmt.Formatter interface and contains information -// about the state of a formatting operation. The NewFormatter function can -// be used to get a new Formatter which can be used directly as arguments -// in standard fmt package printing calls. -type formatState struct { - value interface{} - fs fmt.State - depth int - pointers map[uintptr]int - ignoreNextType bool - cs *ConfigState -} - -// buildDefaultFormat recreates the original format string without precision -// and width information to pass in to fmt.Sprintf in the case of an -// unrecognized type. Unless new types are added to the language, this -// function won't ever be called. -func (f *formatState) buildDefaultFormat() (format string) { - buf := bytes.NewBuffer(percentBytes) - - for _, flag := range supportedFlags { - if f.fs.Flag(int(flag)) { - buf.WriteRune(flag) - } - } - - buf.WriteRune('v') - - format = buf.String() - return format -} - -// constructOrigFormat recreates the original format string including precision -// and width information to pass along to the standard fmt package. This allows -// automatic deferral of all format strings this package doesn't support. -func (f *formatState) constructOrigFormat(verb rune) (format string) { - buf := bytes.NewBuffer(percentBytes) - - for _, flag := range supportedFlags { - if f.fs.Flag(int(flag)) { - buf.WriteRune(flag) - } - } - - if width, ok := f.fs.Width(); ok { - buf.WriteString(strconv.Itoa(width)) - } - - if precision, ok := f.fs.Precision(); ok { - buf.Write(precisionBytes) - buf.WriteString(strconv.Itoa(precision)) - } - - buf.WriteRune(verb) - - format = buf.String() - return format -} - -// unpackValue returns values inside of non-nil interfaces when possible and -// ensures that types for values which have been unpacked from an interface -// are displayed when the show types flag is also set. -// This is useful for data types like structs, arrays, slices, and maps which -// can contain varying types packed inside an interface. -func (f *formatState) unpackValue(v reflect.Value) reflect.Value { - if v.Kind() == reflect.Interface { - f.ignoreNextType = false - if !v.IsNil() { - v = v.Elem() - } - } - return v -} - -// formatPtr handles formatting of pointers by indirecting them as necessary. -func (f *formatState) formatPtr(v reflect.Value) { - // Display nil if top level pointer is nil. - showTypes := f.fs.Flag('#') - if v.IsNil() && (!showTypes || f.ignoreNextType) { - f.fs.Write(nilAngleBytes) - return - } - - // Remove pointers at or below the current depth from map used to detect - // circular refs. - for k, depth := range f.pointers { - if depth >= f.depth { - delete(f.pointers, k) - } - } - - // Keep list of all dereferenced pointers to possibly show later. - pointerChain := make([]uintptr, 0) - - // Figure out how many levels of indirection there are by derferencing - // pointers and unpacking interfaces down the chain while detecting circular - // references. - nilFound := false - cycleFound := false - indirects := 0 - ve := v - for ve.Kind() == reflect.Ptr { - if ve.IsNil() { - nilFound = true - break - } - indirects++ - addr := ve.Pointer() - pointerChain = append(pointerChain, addr) - if pd, ok := f.pointers[addr]; ok && pd < f.depth { - cycleFound = true - indirects-- - break - } - f.pointers[addr] = f.depth - - ve = ve.Elem() - if ve.Kind() == reflect.Interface { - if ve.IsNil() { - nilFound = true - break - } - ve = ve.Elem() - } - } - - // Display type or indirection level depending on flags. - if showTypes && !f.ignoreNextType { - f.fs.Write(openParenBytes) - f.fs.Write(bytes.Repeat(asteriskBytes, indirects)) - f.fs.Write([]byte(ve.Type().String())) - f.fs.Write(closeParenBytes) - } else { - if nilFound || cycleFound { - indirects += strings.Count(ve.Type().String(), "*") - } - f.fs.Write(openAngleBytes) - f.fs.Write([]byte(strings.Repeat("*", indirects))) - f.fs.Write(closeAngleBytes) - } - - // Display pointer information depending on flags. - if f.fs.Flag('+') && (len(pointerChain) > 0) { - f.fs.Write(openParenBytes) - for i, addr := range pointerChain { - if i > 0 { - f.fs.Write(pointerChainBytes) - } - printHexPtr(f.fs, addr) - } - f.fs.Write(closeParenBytes) - } - - // Display dereferenced value. - switch { - case nilFound: - f.fs.Write(nilAngleBytes) - - case cycleFound: - f.fs.Write(circularShortBytes) - - default: - f.ignoreNextType = true - f.format(ve) - } -} - -// format is the main workhorse for providing the Formatter interface. It -// uses the passed reflect value to figure out what kind of object we are -// dealing with and formats it appropriately. It is a recursive function, -// however circular data structures are detected and handled properly. -func (f *formatState) format(v reflect.Value) { - // Handle invalid reflect values immediately. - kind := v.Kind() - if kind == reflect.Invalid { - f.fs.Write(invalidAngleBytes) - return - } - - // Handle pointers specially. - if kind == reflect.Ptr { - f.formatPtr(v) - return - } - - // Print type information unless already handled elsewhere. - if !f.ignoreNextType && f.fs.Flag('#') { - f.fs.Write(openParenBytes) - f.fs.Write([]byte(v.Type().String())) - f.fs.Write(closeParenBytes) - } - f.ignoreNextType = false - - // Call Stringer/error interfaces if they exist and the handle methods - // flag is enabled. - if !f.cs.DisableMethods { - if (kind != reflect.Invalid) && (kind != reflect.Interface) { - if handled := handleMethods(f.cs, f.fs, v); handled { - return - } - } - } - - switch kind { - case reflect.Invalid: - // Do nothing. We should never get here since invalid has already - // been handled above. - - case reflect.Bool: - printBool(f.fs, v.Bool()) - - case reflect.Int8, reflect.Int16, reflect.Int32, reflect.Int64, reflect.Int: - printInt(f.fs, v.Int(), 10) - - case reflect.Uint8, reflect.Uint16, reflect.Uint32, reflect.Uint64, reflect.Uint: - printUint(f.fs, v.Uint(), 10) - - case reflect.Float32: - printFloat(f.fs, v.Float(), 32) - - case reflect.Float64: - printFloat(f.fs, v.Float(), 64) - - case reflect.Complex64: - printComplex(f.fs, v.Complex(), 32) - - case reflect.Complex128: - printComplex(f.fs, v.Complex(), 64) - - case reflect.Slice: - if v.IsNil() { - f.fs.Write(nilAngleBytes) - break - } - fallthrough - - case reflect.Array: - f.fs.Write(openBracketBytes) - f.depth++ - if (f.cs.MaxDepth != 0) && (f.depth > f.cs.MaxDepth) { - f.fs.Write(maxShortBytes) - } else { - numEntries := v.Len() - for i := 0; i < numEntries; i++ { - if i > 0 { - f.fs.Write(spaceBytes) - } - f.ignoreNextType = true - f.format(f.unpackValue(v.Index(i))) - } - } - f.depth-- - f.fs.Write(closeBracketBytes) - - case reflect.String: - f.fs.Write([]byte(v.String())) - - case reflect.Interface: - // The only time we should get here is for nil interfaces due to - // unpackValue calls. - if v.IsNil() { - f.fs.Write(nilAngleBytes) - } - - case reflect.Ptr: - // Do nothing. We should never get here since pointers have already - // been handled above. - - case reflect.Map: - // nil maps should be indicated as different than empty maps - if v.IsNil() { - f.fs.Write(nilAngleBytes) - break - } - - f.fs.Write(openMapBytes) - f.depth++ - if (f.cs.MaxDepth != 0) && (f.depth > f.cs.MaxDepth) { - f.fs.Write(maxShortBytes) - } else { - keys := v.MapKeys() - if f.cs.SortKeys { - sortValues(keys, f.cs) - } - for i, key := range keys { - if i > 0 { - f.fs.Write(spaceBytes) - } - f.ignoreNextType = true - f.format(f.unpackValue(key)) - f.fs.Write(colonBytes) - f.ignoreNextType = true - f.format(f.unpackValue(v.MapIndex(key))) - } - } - f.depth-- - f.fs.Write(closeMapBytes) - - case reflect.Struct: - numFields := v.NumField() - f.fs.Write(openBraceBytes) - f.depth++ - if (f.cs.MaxDepth != 0) && (f.depth > f.cs.MaxDepth) { - f.fs.Write(maxShortBytes) - } else { - vt := v.Type() - for i := 0; i < numFields; i++ { - if i > 0 { - f.fs.Write(spaceBytes) - } - vtf := vt.Field(i) - if f.fs.Flag('+') || f.fs.Flag('#') { - f.fs.Write([]byte(vtf.Name)) - f.fs.Write(colonBytes) - } - f.format(f.unpackValue(v.Field(i))) - } - } - f.depth-- - f.fs.Write(closeBraceBytes) - - case reflect.Uintptr: - printHexPtr(f.fs, uintptr(v.Uint())) - - case reflect.UnsafePointer, reflect.Chan, reflect.Func: - printHexPtr(f.fs, v.Pointer()) - - // There were not any other types at the time this code was written, but - // fall back to letting the default fmt package handle it if any get added. - default: - format := f.buildDefaultFormat() - if v.CanInterface() { - fmt.Fprintf(f.fs, format, v.Interface()) - } else { - fmt.Fprintf(f.fs, format, v.String()) - } - } -} - -// Format satisfies the fmt.Formatter interface. See NewFormatter for usage -// details. -func (f *formatState) Format(fs fmt.State, verb rune) { - f.fs = fs - - // Use standard formatting for verbs that are not v. - if verb != 'v' { - format := f.constructOrigFormat(verb) - fmt.Fprintf(fs, format, f.value) - return - } - - if f.value == nil { - if fs.Flag('#') { - fs.Write(interfaceBytes) - } - fs.Write(nilAngleBytes) - return - } - - f.format(reflect.ValueOf(f.value)) -} - -// newFormatter is a helper function to consolidate the logic from the various -// public methods which take varying config states. -func newFormatter(cs *ConfigState, v interface{}) fmt.Formatter { - fs := &formatState{value: v, cs: cs} - fs.pointers = make(map[uintptr]int) - return fs -} - -/* -NewFormatter returns a custom formatter that satisfies the fmt.Formatter -interface. As a result, it integrates cleanly with standard fmt package -printing functions. The formatter is useful for inline printing of smaller data -types similar to the standard %v format specifier. - -The custom formatter only responds to the %v (most compact), %+v (adds pointer -addresses), %#v (adds types), or %#+v (adds types and pointer addresses) verb -combinations. Any other verbs such as %x and %q will be sent to the the -standard fmt package for formatting. In addition, the custom formatter ignores -the width and precision arguments (however they will still work on the format -specifiers not handled by the custom formatter). - -Typically this function shouldn't be called directly. It is much easier to make -use of the custom formatter by calling one of the convenience functions such as -Printf, Println, or Fprintf. -*/ -func NewFormatter(v interface{}) fmt.Formatter { - return newFormatter(&Config, v) -} diff --git a/vendor/github.com/davecgh/go-spew/spew/format_test.go b/vendor/github.com/davecgh/go-spew/spew/format_test.go deleted file mode 100644 index 87ee9651..00000000 --- a/vendor/github.com/davecgh/go-spew/spew/format_test.go +++ /dev/null @@ -1,1558 +0,0 @@ -/* - * Copyright (c) 2013-2016 Dave Collins - * - * Permission to use, copy, modify, and distribute this software for any - * purpose with or without fee is hereby granted, provided that the above - * copyright notice and this permission notice appear in all copies. - * - * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES - * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF - * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR - * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES - * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN - * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF - * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. - */ - -/* -Test Summary: -NOTE: For each test, a nil pointer, a single pointer and double pointer to the -base test element are also tested to ensure proper indirection across all types. - -- Max int8, int16, int32, int64, int -- Max uint8, uint16, uint32, uint64, uint -- Boolean true and false -- Standard complex64 and complex128 -- Array containing standard ints -- Array containing type with custom formatter on pointer receiver only -- Array containing interfaces -- Slice containing standard float32 values -- Slice containing type with custom formatter on pointer receiver only -- Slice containing interfaces -- Nil slice -- Standard string -- Nil interface -- Sub-interface -- Map with string keys and int vals -- Map with custom formatter type on pointer receiver only keys and vals -- Map with interface keys and values -- Map with nil interface value -- Struct with primitives -- Struct that contains another struct -- Struct that contains custom type with Stringer pointer interface via both - exported and unexported fields -- Struct that contains embedded struct and field to same struct -- Uintptr to 0 (null pointer) -- Uintptr address of real variable -- Unsafe.Pointer to 0 (null pointer) -- Unsafe.Pointer to address of real variable -- Nil channel -- Standard int channel -- Function with no params and no returns -- Function with param and no returns -- Function with multiple params and multiple returns -- Struct that is circular through self referencing -- Structs that are circular through cross referencing -- Structs that are indirectly circular -- Type that panics in its Stringer interface -- Type that has a custom Error interface -- %x passthrough with uint -- %#x passthrough with uint -- %f passthrough with precision -- %f passthrough with width and precision -- %d passthrough with width -- %q passthrough with string -*/ - -package spew_test - -import ( - "bytes" - "fmt" - "testing" - "unsafe" - - "github.com/davecgh/go-spew/spew" -) - -// formatterTest is used to describe a test to be performed against NewFormatter. -type formatterTest struct { - format string - in interface{} - wants []string -} - -// formatterTests houses all of the tests to be performed against NewFormatter. -var formatterTests = make([]formatterTest, 0) - -// addFormatterTest is a helper method to append the passed input and desired -// result to formatterTests. -func addFormatterTest(format string, in interface{}, wants ...string) { - test := formatterTest{format, in, wants} - formatterTests = append(formatterTests, test) -} - -func addIntFormatterTests() { - // Max int8. - v := int8(127) - nv := (*int8)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "int8" - vs := "127" - addFormatterTest("%v", v, vs) - addFormatterTest("%v", pv, "<*>"+vs) - addFormatterTest("%v", &pv, "<**>"+vs) - addFormatterTest("%v", nv, "") - addFormatterTest("%+v", v, vs) - addFormatterTest("%+v", pv, "<*>("+vAddr+")"+vs) - addFormatterTest("%+v", &pv, "<**>("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%#v", v, "("+vt+")"+vs) - addFormatterTest("%#v", pv, "(*"+vt+")"+vs) - addFormatterTest("%#v", &pv, "(**"+vt+")"+vs) - addFormatterTest("%#v", nv, "(*"+vt+")"+"") - addFormatterTest("%#+v", v, "("+vt+")"+vs) - addFormatterTest("%#+v", pv, "(*"+vt+")("+vAddr+")"+vs) - addFormatterTest("%#+v", &pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%#+v", nv, "(*"+vt+")"+"") - - // Max int16. - v2 := int16(32767) - nv2 := (*int16)(nil) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "int16" - v2s := "32767" - addFormatterTest("%v", v2, v2s) - addFormatterTest("%v", pv2, "<*>"+v2s) - addFormatterTest("%v", &pv2, "<**>"+v2s) - addFormatterTest("%v", nv2, "") - addFormatterTest("%+v", v2, v2s) - addFormatterTest("%+v", pv2, "<*>("+v2Addr+")"+v2s) - addFormatterTest("%+v", &pv2, "<**>("+pv2Addr+"->"+v2Addr+")"+v2s) - addFormatterTest("%+v", nv2, "") - addFormatterTest("%#v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#v", pv2, "(*"+v2t+")"+v2s) - addFormatterTest("%#v", &pv2, "(**"+v2t+")"+v2s) - addFormatterTest("%#v", nv2, "(*"+v2t+")"+"") - addFormatterTest("%#+v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#+v", pv2, "(*"+v2t+")("+v2Addr+")"+v2s) - addFormatterTest("%#+v", &pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")"+v2s) - addFormatterTest("%#+v", nv2, "(*"+v2t+")"+"") - - // Max int32. - v3 := int32(2147483647) - nv3 := (*int32)(nil) - pv3 := &v3 - v3Addr := fmt.Sprintf("%p", pv3) - pv3Addr := fmt.Sprintf("%p", &pv3) - v3t := "int32" - v3s := "2147483647" - addFormatterTest("%v", v3, v3s) - addFormatterTest("%v", pv3, "<*>"+v3s) - addFormatterTest("%v", &pv3, "<**>"+v3s) - addFormatterTest("%v", nv3, "") - addFormatterTest("%+v", v3, v3s) - addFormatterTest("%+v", pv3, "<*>("+v3Addr+")"+v3s) - addFormatterTest("%+v", &pv3, "<**>("+pv3Addr+"->"+v3Addr+")"+v3s) - addFormatterTest("%+v", nv3, "") - addFormatterTest("%#v", v3, "("+v3t+")"+v3s) - addFormatterTest("%#v", pv3, "(*"+v3t+")"+v3s) - addFormatterTest("%#v", &pv3, "(**"+v3t+")"+v3s) - addFormatterTest("%#v", nv3, "(*"+v3t+")"+"") - addFormatterTest("%#+v", v3, "("+v3t+")"+v3s) - addFormatterTest("%#+v", pv3, "(*"+v3t+")("+v3Addr+")"+v3s) - addFormatterTest("%#+v", &pv3, "(**"+v3t+")("+pv3Addr+"->"+v3Addr+")"+v3s) - addFormatterTest("%#v", nv3, "(*"+v3t+")"+"") - - // Max int64. - v4 := int64(9223372036854775807) - nv4 := (*int64)(nil) - pv4 := &v4 - v4Addr := fmt.Sprintf("%p", pv4) - pv4Addr := fmt.Sprintf("%p", &pv4) - v4t := "int64" - v4s := "9223372036854775807" - addFormatterTest("%v", v4, v4s) - addFormatterTest("%v", pv4, "<*>"+v4s) - addFormatterTest("%v", &pv4, "<**>"+v4s) - addFormatterTest("%v", nv4, "") - addFormatterTest("%+v", v4, v4s) - addFormatterTest("%+v", pv4, "<*>("+v4Addr+")"+v4s) - addFormatterTest("%+v", &pv4, "<**>("+pv4Addr+"->"+v4Addr+")"+v4s) - addFormatterTest("%+v", nv4, "") - addFormatterTest("%#v", v4, "("+v4t+")"+v4s) - addFormatterTest("%#v", pv4, "(*"+v4t+")"+v4s) - addFormatterTest("%#v", &pv4, "(**"+v4t+")"+v4s) - addFormatterTest("%#v", nv4, "(*"+v4t+")"+"") - addFormatterTest("%#+v", v4, "("+v4t+")"+v4s) - addFormatterTest("%#+v", pv4, "(*"+v4t+")("+v4Addr+")"+v4s) - addFormatterTest("%#+v", &pv4, "(**"+v4t+")("+pv4Addr+"->"+v4Addr+")"+v4s) - addFormatterTest("%#+v", nv4, "(*"+v4t+")"+"") - - // Max int. - v5 := int(2147483647) - nv5 := (*int)(nil) - pv5 := &v5 - v5Addr := fmt.Sprintf("%p", pv5) - pv5Addr := fmt.Sprintf("%p", &pv5) - v5t := "int" - v5s := "2147483647" - addFormatterTest("%v", v5, v5s) - addFormatterTest("%v", pv5, "<*>"+v5s) - addFormatterTest("%v", &pv5, "<**>"+v5s) - addFormatterTest("%v", nv5, "") - addFormatterTest("%+v", v5, v5s) - addFormatterTest("%+v", pv5, "<*>("+v5Addr+")"+v5s) - addFormatterTest("%+v", &pv5, "<**>("+pv5Addr+"->"+v5Addr+")"+v5s) - addFormatterTest("%+v", nv5, "") - addFormatterTest("%#v", v5, "("+v5t+")"+v5s) - addFormatterTest("%#v", pv5, "(*"+v5t+")"+v5s) - addFormatterTest("%#v", &pv5, "(**"+v5t+")"+v5s) - addFormatterTest("%#v", nv5, "(*"+v5t+")"+"") - addFormatterTest("%#+v", v5, "("+v5t+")"+v5s) - addFormatterTest("%#+v", pv5, "(*"+v5t+")("+v5Addr+")"+v5s) - addFormatterTest("%#+v", &pv5, "(**"+v5t+")("+pv5Addr+"->"+v5Addr+")"+v5s) - addFormatterTest("%#+v", nv5, "(*"+v5t+")"+"") -} - -func addUintFormatterTests() { - // Max uint8. - v := uint8(255) - nv := (*uint8)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "uint8" - vs := "255" - addFormatterTest("%v", v, vs) - addFormatterTest("%v", pv, "<*>"+vs) - addFormatterTest("%v", &pv, "<**>"+vs) - addFormatterTest("%v", nv, "") - addFormatterTest("%+v", v, vs) - addFormatterTest("%+v", pv, "<*>("+vAddr+")"+vs) - addFormatterTest("%+v", &pv, "<**>("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%#v", v, "("+vt+")"+vs) - addFormatterTest("%#v", pv, "(*"+vt+")"+vs) - addFormatterTest("%#v", &pv, "(**"+vt+")"+vs) - addFormatterTest("%#v", nv, "(*"+vt+")"+"") - addFormatterTest("%#+v", v, "("+vt+")"+vs) - addFormatterTest("%#+v", pv, "(*"+vt+")("+vAddr+")"+vs) - addFormatterTest("%#+v", &pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%#+v", nv, "(*"+vt+")"+"") - - // Max uint16. - v2 := uint16(65535) - nv2 := (*uint16)(nil) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "uint16" - v2s := "65535" - addFormatterTest("%v", v2, v2s) - addFormatterTest("%v", pv2, "<*>"+v2s) - addFormatterTest("%v", &pv2, "<**>"+v2s) - addFormatterTest("%v", nv2, "") - addFormatterTest("%+v", v2, v2s) - addFormatterTest("%+v", pv2, "<*>("+v2Addr+")"+v2s) - addFormatterTest("%+v", &pv2, "<**>("+pv2Addr+"->"+v2Addr+")"+v2s) - addFormatterTest("%+v", nv2, "") - addFormatterTest("%#v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#v", pv2, "(*"+v2t+")"+v2s) - addFormatterTest("%#v", &pv2, "(**"+v2t+")"+v2s) - addFormatterTest("%#v", nv2, "(*"+v2t+")"+"") - addFormatterTest("%#+v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#+v", pv2, "(*"+v2t+")("+v2Addr+")"+v2s) - addFormatterTest("%#+v", &pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")"+v2s) - addFormatterTest("%#+v", nv2, "(*"+v2t+")"+"") - - // Max uint32. - v3 := uint32(4294967295) - nv3 := (*uint32)(nil) - pv3 := &v3 - v3Addr := fmt.Sprintf("%p", pv3) - pv3Addr := fmt.Sprintf("%p", &pv3) - v3t := "uint32" - v3s := "4294967295" - addFormatterTest("%v", v3, v3s) - addFormatterTest("%v", pv3, "<*>"+v3s) - addFormatterTest("%v", &pv3, "<**>"+v3s) - addFormatterTest("%v", nv3, "") - addFormatterTest("%+v", v3, v3s) - addFormatterTest("%+v", pv3, "<*>("+v3Addr+")"+v3s) - addFormatterTest("%+v", &pv3, "<**>("+pv3Addr+"->"+v3Addr+")"+v3s) - addFormatterTest("%+v", nv3, "") - addFormatterTest("%#v", v3, "("+v3t+")"+v3s) - addFormatterTest("%#v", pv3, "(*"+v3t+")"+v3s) - addFormatterTest("%#v", &pv3, "(**"+v3t+")"+v3s) - addFormatterTest("%#v", nv3, "(*"+v3t+")"+"") - addFormatterTest("%#+v", v3, "("+v3t+")"+v3s) - addFormatterTest("%#+v", pv3, "(*"+v3t+")("+v3Addr+")"+v3s) - addFormatterTest("%#+v", &pv3, "(**"+v3t+")("+pv3Addr+"->"+v3Addr+")"+v3s) - addFormatterTest("%#v", nv3, "(*"+v3t+")"+"") - - // Max uint64. - v4 := uint64(18446744073709551615) - nv4 := (*uint64)(nil) - pv4 := &v4 - v4Addr := fmt.Sprintf("%p", pv4) - pv4Addr := fmt.Sprintf("%p", &pv4) - v4t := "uint64" - v4s := "18446744073709551615" - addFormatterTest("%v", v4, v4s) - addFormatterTest("%v", pv4, "<*>"+v4s) - addFormatterTest("%v", &pv4, "<**>"+v4s) - addFormatterTest("%v", nv4, "") - addFormatterTest("%+v", v4, v4s) - addFormatterTest("%+v", pv4, "<*>("+v4Addr+")"+v4s) - addFormatterTest("%+v", &pv4, "<**>("+pv4Addr+"->"+v4Addr+")"+v4s) - addFormatterTest("%+v", nv4, "") - addFormatterTest("%#v", v4, "("+v4t+")"+v4s) - addFormatterTest("%#v", pv4, "(*"+v4t+")"+v4s) - addFormatterTest("%#v", &pv4, "(**"+v4t+")"+v4s) - addFormatterTest("%#v", nv4, "(*"+v4t+")"+"") - addFormatterTest("%#+v", v4, "("+v4t+")"+v4s) - addFormatterTest("%#+v", pv4, "(*"+v4t+")("+v4Addr+")"+v4s) - addFormatterTest("%#+v", &pv4, "(**"+v4t+")("+pv4Addr+"->"+v4Addr+")"+v4s) - addFormatterTest("%#+v", nv4, "(*"+v4t+")"+"") - - // Max uint. - v5 := uint(4294967295) - nv5 := (*uint)(nil) - pv5 := &v5 - v5Addr := fmt.Sprintf("%p", pv5) - pv5Addr := fmt.Sprintf("%p", &pv5) - v5t := "uint" - v5s := "4294967295" - addFormatterTest("%v", v5, v5s) - addFormatterTest("%v", pv5, "<*>"+v5s) - addFormatterTest("%v", &pv5, "<**>"+v5s) - addFormatterTest("%v", nv5, "") - addFormatterTest("%+v", v5, v5s) - addFormatterTest("%+v", pv5, "<*>("+v5Addr+")"+v5s) - addFormatterTest("%+v", &pv5, "<**>("+pv5Addr+"->"+v5Addr+")"+v5s) - addFormatterTest("%+v", nv5, "") - addFormatterTest("%#v", v5, "("+v5t+")"+v5s) - addFormatterTest("%#v", pv5, "(*"+v5t+")"+v5s) - addFormatterTest("%#v", &pv5, "(**"+v5t+")"+v5s) - addFormatterTest("%#v", nv5, "(*"+v5t+")"+"") - addFormatterTest("%#+v", v5, "("+v5t+")"+v5s) - addFormatterTest("%#+v", pv5, "(*"+v5t+")("+v5Addr+")"+v5s) - addFormatterTest("%#+v", &pv5, "(**"+v5t+")("+pv5Addr+"->"+v5Addr+")"+v5s) - addFormatterTest("%#v", nv5, "(*"+v5t+")"+"") -} - -func addBoolFormatterTests() { - // Boolean true. - v := bool(true) - nv := (*bool)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "bool" - vs := "true" - addFormatterTest("%v", v, vs) - addFormatterTest("%v", pv, "<*>"+vs) - addFormatterTest("%v", &pv, "<**>"+vs) - addFormatterTest("%v", nv, "") - addFormatterTest("%+v", v, vs) - addFormatterTest("%+v", pv, "<*>("+vAddr+")"+vs) - addFormatterTest("%+v", &pv, "<**>("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%#v", v, "("+vt+")"+vs) - addFormatterTest("%#v", pv, "(*"+vt+")"+vs) - addFormatterTest("%#v", &pv, "(**"+vt+")"+vs) - addFormatterTest("%#v", nv, "(*"+vt+")"+"") - addFormatterTest("%#+v", v, "("+vt+")"+vs) - addFormatterTest("%#+v", pv, "(*"+vt+")("+vAddr+")"+vs) - addFormatterTest("%#+v", &pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%#+v", nv, "(*"+vt+")"+"") - - // Boolean false. - v2 := bool(false) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "bool" - v2s := "false" - addFormatterTest("%v", v2, v2s) - addFormatterTest("%v", pv2, "<*>"+v2s) - addFormatterTest("%v", &pv2, "<**>"+v2s) - addFormatterTest("%+v", v2, v2s) - addFormatterTest("%+v", pv2, "<*>("+v2Addr+")"+v2s) - addFormatterTest("%+v", &pv2, "<**>("+pv2Addr+"->"+v2Addr+")"+v2s) - addFormatterTest("%#v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#v", pv2, "(*"+v2t+")"+v2s) - addFormatterTest("%#v", &pv2, "(**"+v2t+")"+v2s) - addFormatterTest("%#+v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#+v", pv2, "(*"+v2t+")("+v2Addr+")"+v2s) - addFormatterTest("%#+v", &pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")"+v2s) -} - -func addFloatFormatterTests() { - // Standard float32. - v := float32(3.1415) - nv := (*float32)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "float32" - vs := "3.1415" - addFormatterTest("%v", v, vs) - addFormatterTest("%v", pv, "<*>"+vs) - addFormatterTest("%v", &pv, "<**>"+vs) - addFormatterTest("%v", nv, "") - addFormatterTest("%+v", v, vs) - addFormatterTest("%+v", pv, "<*>("+vAddr+")"+vs) - addFormatterTest("%+v", &pv, "<**>("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%#v", v, "("+vt+")"+vs) - addFormatterTest("%#v", pv, "(*"+vt+")"+vs) - addFormatterTest("%#v", &pv, "(**"+vt+")"+vs) - addFormatterTest("%#v", nv, "(*"+vt+")"+"") - addFormatterTest("%#+v", v, "("+vt+")"+vs) - addFormatterTest("%#+v", pv, "(*"+vt+")("+vAddr+")"+vs) - addFormatterTest("%#+v", &pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%#+v", nv, "(*"+vt+")"+"") - - // Standard float64. - v2 := float64(3.1415926) - nv2 := (*float64)(nil) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "float64" - v2s := "3.1415926" - addFormatterTest("%v", v2, v2s) - addFormatterTest("%v", pv2, "<*>"+v2s) - addFormatterTest("%v", &pv2, "<**>"+v2s) - addFormatterTest("%+v", nv2, "") - addFormatterTest("%+v", v2, v2s) - addFormatterTest("%+v", pv2, "<*>("+v2Addr+")"+v2s) - addFormatterTest("%+v", &pv2, "<**>("+pv2Addr+"->"+v2Addr+")"+v2s) - addFormatterTest("%+v", nv2, "") - addFormatterTest("%#v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#v", pv2, "(*"+v2t+")"+v2s) - addFormatterTest("%#v", &pv2, "(**"+v2t+")"+v2s) - addFormatterTest("%#v", nv2, "(*"+v2t+")"+"") - addFormatterTest("%#+v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#+v", pv2, "(*"+v2t+")("+v2Addr+")"+v2s) - addFormatterTest("%#+v", &pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")"+v2s) - addFormatterTest("%#+v", nv2, "(*"+v2t+")"+"") -} - -func addComplexFormatterTests() { - // Standard complex64. - v := complex(float32(6), -2) - nv := (*complex64)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "complex64" - vs := "(6-2i)" - addFormatterTest("%v", v, vs) - addFormatterTest("%v", pv, "<*>"+vs) - addFormatterTest("%v", &pv, "<**>"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%+v", v, vs) - addFormatterTest("%+v", pv, "<*>("+vAddr+")"+vs) - addFormatterTest("%+v", &pv, "<**>("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%#v", v, "("+vt+")"+vs) - addFormatterTest("%#v", pv, "(*"+vt+")"+vs) - addFormatterTest("%#v", &pv, "(**"+vt+")"+vs) - addFormatterTest("%#v", nv, "(*"+vt+")"+"") - addFormatterTest("%#+v", v, "("+vt+")"+vs) - addFormatterTest("%#+v", pv, "(*"+vt+")("+vAddr+")"+vs) - addFormatterTest("%#+v", &pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%#+v", nv, "(*"+vt+")"+"") - - // Standard complex128. - v2 := complex(float64(-6), 2) - nv2 := (*complex128)(nil) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "complex128" - v2s := "(-6+2i)" - addFormatterTest("%v", v2, v2s) - addFormatterTest("%v", pv2, "<*>"+v2s) - addFormatterTest("%v", &pv2, "<**>"+v2s) - addFormatterTest("%+v", nv2, "") - addFormatterTest("%+v", v2, v2s) - addFormatterTest("%+v", pv2, "<*>("+v2Addr+")"+v2s) - addFormatterTest("%+v", &pv2, "<**>("+pv2Addr+"->"+v2Addr+")"+v2s) - addFormatterTest("%+v", nv2, "") - addFormatterTest("%#v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#v", pv2, "(*"+v2t+")"+v2s) - addFormatterTest("%#v", &pv2, "(**"+v2t+")"+v2s) - addFormatterTest("%#v", nv2, "(*"+v2t+")"+"") - addFormatterTest("%#+v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#+v", pv2, "(*"+v2t+")("+v2Addr+")"+v2s) - addFormatterTest("%#+v", &pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")"+v2s) - addFormatterTest("%#+v", nv2, "(*"+v2t+")"+"") -} - -func addArrayFormatterTests() { - // Array containing standard ints. - v := [3]int{1, 2, 3} - nv := (*[3]int)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "[3]int" - vs := "[1 2 3]" - addFormatterTest("%v", v, vs) - addFormatterTest("%v", pv, "<*>"+vs) - addFormatterTest("%v", &pv, "<**>"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%+v", v, vs) - addFormatterTest("%+v", pv, "<*>("+vAddr+")"+vs) - addFormatterTest("%+v", &pv, "<**>("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%#v", v, "("+vt+")"+vs) - addFormatterTest("%#v", pv, "(*"+vt+")"+vs) - addFormatterTest("%#v", &pv, "(**"+vt+")"+vs) - addFormatterTest("%#v", nv, "(*"+vt+")"+"") - addFormatterTest("%#+v", v, "("+vt+")"+vs) - addFormatterTest("%#+v", pv, "(*"+vt+")("+vAddr+")"+vs) - addFormatterTest("%#+v", &pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%#+v", nv, "(*"+vt+")"+"") - - // Array containing type with custom formatter on pointer receiver only. - v2 := [3]pstringer{"1", "2", "3"} - nv2 := (*[3]pstringer)(nil) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "[3]spew_test.pstringer" - v2sp := "[stringer 1 stringer 2 stringer 3]" - v2s := v2sp - if spew.UnsafeDisabled { - v2s = "[1 2 3]" - } - addFormatterTest("%v", v2, v2s) - addFormatterTest("%v", pv2, "<*>"+v2sp) - addFormatterTest("%v", &pv2, "<**>"+v2sp) - addFormatterTest("%+v", nv2, "") - addFormatterTest("%+v", v2, v2s) - addFormatterTest("%+v", pv2, "<*>("+v2Addr+")"+v2sp) - addFormatterTest("%+v", &pv2, "<**>("+pv2Addr+"->"+v2Addr+")"+v2sp) - addFormatterTest("%+v", nv2, "") - addFormatterTest("%#v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#v", pv2, "(*"+v2t+")"+v2sp) - addFormatterTest("%#v", &pv2, "(**"+v2t+")"+v2sp) - addFormatterTest("%#v", nv2, "(*"+v2t+")"+"") - addFormatterTest("%#+v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#+v", pv2, "(*"+v2t+")("+v2Addr+")"+v2sp) - addFormatterTest("%#+v", &pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")"+v2sp) - addFormatterTest("%#+v", nv2, "(*"+v2t+")"+"") - - // Array containing interfaces. - v3 := [3]interface{}{"one", int(2), uint(3)} - nv3 := (*[3]interface{})(nil) - pv3 := &v3 - v3Addr := fmt.Sprintf("%p", pv3) - pv3Addr := fmt.Sprintf("%p", &pv3) - v3t := "[3]interface {}" - v3t2 := "string" - v3t3 := "int" - v3t4 := "uint" - v3s := "[one 2 3]" - v3s2 := "[(" + v3t2 + ")one (" + v3t3 + ")2 (" + v3t4 + ")3]" - addFormatterTest("%v", v3, v3s) - addFormatterTest("%v", pv3, "<*>"+v3s) - addFormatterTest("%v", &pv3, "<**>"+v3s) - addFormatterTest("%+v", nv3, "") - addFormatterTest("%+v", v3, v3s) - addFormatterTest("%+v", pv3, "<*>("+v3Addr+")"+v3s) - addFormatterTest("%+v", &pv3, "<**>("+pv3Addr+"->"+v3Addr+")"+v3s) - addFormatterTest("%+v", nv3, "") - addFormatterTest("%#v", v3, "("+v3t+")"+v3s2) - addFormatterTest("%#v", pv3, "(*"+v3t+")"+v3s2) - addFormatterTest("%#v", &pv3, "(**"+v3t+")"+v3s2) - addFormatterTest("%#v", nv3, "(*"+v3t+")"+"") - addFormatterTest("%#+v", v3, "("+v3t+")"+v3s2) - addFormatterTest("%#+v", pv3, "(*"+v3t+")("+v3Addr+")"+v3s2) - addFormatterTest("%#+v", &pv3, "(**"+v3t+")("+pv3Addr+"->"+v3Addr+")"+v3s2) - addFormatterTest("%#+v", nv3, "(*"+v3t+")"+"") -} - -func addSliceFormatterTests() { - // Slice containing standard float32 values. - v := []float32{3.14, 6.28, 12.56} - nv := (*[]float32)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "[]float32" - vs := "[3.14 6.28 12.56]" - addFormatterTest("%v", v, vs) - addFormatterTest("%v", pv, "<*>"+vs) - addFormatterTest("%v", &pv, "<**>"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%+v", v, vs) - addFormatterTest("%+v", pv, "<*>("+vAddr+")"+vs) - addFormatterTest("%+v", &pv, "<**>("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%#v", v, "("+vt+")"+vs) - addFormatterTest("%#v", pv, "(*"+vt+")"+vs) - addFormatterTest("%#v", &pv, "(**"+vt+")"+vs) - addFormatterTest("%#v", nv, "(*"+vt+")"+"") - addFormatterTest("%#+v", v, "("+vt+")"+vs) - addFormatterTest("%#+v", pv, "(*"+vt+")("+vAddr+")"+vs) - addFormatterTest("%#+v", &pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%#+v", nv, "(*"+vt+")"+"") - - // Slice containing type with custom formatter on pointer receiver only. - v2 := []pstringer{"1", "2", "3"} - nv2 := (*[]pstringer)(nil) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "[]spew_test.pstringer" - v2s := "[stringer 1 stringer 2 stringer 3]" - addFormatterTest("%v", v2, v2s) - addFormatterTest("%v", pv2, "<*>"+v2s) - addFormatterTest("%v", &pv2, "<**>"+v2s) - addFormatterTest("%+v", nv2, "") - addFormatterTest("%+v", v2, v2s) - addFormatterTest("%+v", pv2, "<*>("+v2Addr+")"+v2s) - addFormatterTest("%+v", &pv2, "<**>("+pv2Addr+"->"+v2Addr+")"+v2s) - addFormatterTest("%+v", nv2, "") - addFormatterTest("%#v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#v", pv2, "(*"+v2t+")"+v2s) - addFormatterTest("%#v", &pv2, "(**"+v2t+")"+v2s) - addFormatterTest("%#v", nv2, "(*"+v2t+")"+"") - addFormatterTest("%#+v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#+v", pv2, "(*"+v2t+")("+v2Addr+")"+v2s) - addFormatterTest("%#+v", &pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")"+v2s) - addFormatterTest("%#+v", nv2, "(*"+v2t+")"+"") - - // Slice containing interfaces. - v3 := []interface{}{"one", int(2), uint(3), nil} - nv3 := (*[]interface{})(nil) - pv3 := &v3 - v3Addr := fmt.Sprintf("%p", pv3) - pv3Addr := fmt.Sprintf("%p", &pv3) - v3t := "[]interface {}" - v3t2 := "string" - v3t3 := "int" - v3t4 := "uint" - v3t5 := "interface {}" - v3s := "[one 2 3 ]" - v3s2 := "[(" + v3t2 + ")one (" + v3t3 + ")2 (" + v3t4 + ")3 (" + v3t5 + - ")]" - addFormatterTest("%v", v3, v3s) - addFormatterTest("%v", pv3, "<*>"+v3s) - addFormatterTest("%v", &pv3, "<**>"+v3s) - addFormatterTest("%+v", nv3, "") - addFormatterTest("%+v", v3, v3s) - addFormatterTest("%+v", pv3, "<*>("+v3Addr+")"+v3s) - addFormatterTest("%+v", &pv3, "<**>("+pv3Addr+"->"+v3Addr+")"+v3s) - addFormatterTest("%+v", nv3, "") - addFormatterTest("%#v", v3, "("+v3t+")"+v3s2) - addFormatterTest("%#v", pv3, "(*"+v3t+")"+v3s2) - addFormatterTest("%#v", &pv3, "(**"+v3t+")"+v3s2) - addFormatterTest("%#v", nv3, "(*"+v3t+")"+"") - addFormatterTest("%#+v", v3, "("+v3t+")"+v3s2) - addFormatterTest("%#+v", pv3, "(*"+v3t+")("+v3Addr+")"+v3s2) - addFormatterTest("%#+v", &pv3, "(**"+v3t+")("+pv3Addr+"->"+v3Addr+")"+v3s2) - addFormatterTest("%#+v", nv3, "(*"+v3t+")"+"") - - // Nil slice. - var v4 []int - nv4 := (*[]int)(nil) - pv4 := &v4 - v4Addr := fmt.Sprintf("%p", pv4) - pv4Addr := fmt.Sprintf("%p", &pv4) - v4t := "[]int" - v4s := "" - addFormatterTest("%v", v4, v4s) - addFormatterTest("%v", pv4, "<*>"+v4s) - addFormatterTest("%v", &pv4, "<**>"+v4s) - addFormatterTest("%+v", nv4, "") - addFormatterTest("%+v", v4, v4s) - addFormatterTest("%+v", pv4, "<*>("+v4Addr+")"+v4s) - addFormatterTest("%+v", &pv4, "<**>("+pv4Addr+"->"+v4Addr+")"+v4s) - addFormatterTest("%+v", nv4, "") - addFormatterTest("%#v", v4, "("+v4t+")"+v4s) - addFormatterTest("%#v", pv4, "(*"+v4t+")"+v4s) - addFormatterTest("%#v", &pv4, "(**"+v4t+")"+v4s) - addFormatterTest("%#v", nv4, "(*"+v4t+")"+"") - addFormatterTest("%#+v", v4, "("+v4t+")"+v4s) - addFormatterTest("%#+v", pv4, "(*"+v4t+")("+v4Addr+")"+v4s) - addFormatterTest("%#+v", &pv4, "(**"+v4t+")("+pv4Addr+"->"+v4Addr+")"+v4s) - addFormatterTest("%#+v", nv4, "(*"+v4t+")"+"") -} - -func addStringFormatterTests() { - // Standard string. - v := "test" - nv := (*string)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "string" - vs := "test" - addFormatterTest("%v", v, vs) - addFormatterTest("%v", pv, "<*>"+vs) - addFormatterTest("%v", &pv, "<**>"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%+v", v, vs) - addFormatterTest("%+v", pv, "<*>("+vAddr+")"+vs) - addFormatterTest("%+v", &pv, "<**>("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%#v", v, "("+vt+")"+vs) - addFormatterTest("%#v", pv, "(*"+vt+")"+vs) - addFormatterTest("%#v", &pv, "(**"+vt+")"+vs) - addFormatterTest("%#v", nv, "(*"+vt+")"+"") - addFormatterTest("%#+v", v, "("+vt+")"+vs) - addFormatterTest("%#+v", pv, "(*"+vt+")("+vAddr+")"+vs) - addFormatterTest("%#+v", &pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%#+v", nv, "(*"+vt+")"+"") -} - -func addInterfaceFormatterTests() { - // Nil interface. - var v interface{} - nv := (*interface{})(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "interface {}" - vs := "" - addFormatterTest("%v", v, vs) - addFormatterTest("%v", pv, "<*>"+vs) - addFormatterTest("%v", &pv, "<**>"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%+v", v, vs) - addFormatterTest("%+v", pv, "<*>("+vAddr+")"+vs) - addFormatterTest("%+v", &pv, "<**>("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%#v", v, "("+vt+")"+vs) - addFormatterTest("%#v", pv, "(*"+vt+")"+vs) - addFormatterTest("%#v", &pv, "(**"+vt+")"+vs) - addFormatterTest("%#v", nv, "(*"+vt+")"+"") - addFormatterTest("%#+v", v, "("+vt+")"+vs) - addFormatterTest("%#+v", pv, "(*"+vt+")("+vAddr+")"+vs) - addFormatterTest("%#+v", &pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%#+v", nv, "(*"+vt+")"+"") - - // Sub-interface. - v2 := interface{}(uint16(65535)) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "uint16" - v2s := "65535" - addFormatterTest("%v", v2, v2s) - addFormatterTest("%v", pv2, "<*>"+v2s) - addFormatterTest("%v", &pv2, "<**>"+v2s) - addFormatterTest("%+v", v2, v2s) - addFormatterTest("%+v", pv2, "<*>("+v2Addr+")"+v2s) - addFormatterTest("%+v", &pv2, "<**>("+pv2Addr+"->"+v2Addr+")"+v2s) - addFormatterTest("%#v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#v", pv2, "(*"+v2t+")"+v2s) - addFormatterTest("%#v", &pv2, "(**"+v2t+")"+v2s) - addFormatterTest("%#+v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#+v", pv2, "(*"+v2t+")("+v2Addr+")"+v2s) - addFormatterTest("%#+v", &pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")"+v2s) -} - -func addMapFormatterTests() { - // Map with string keys and int vals. - v := map[string]int{"one": 1, "two": 2} - nilMap := map[string]int(nil) - nv := (*map[string]int)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "map[string]int" - vs := "map[one:1 two:2]" - vs2 := "map[two:2 one:1]" - addFormatterTest("%v", v, vs, vs2) - addFormatterTest("%v", pv, "<*>"+vs, "<*>"+vs2) - addFormatterTest("%v", &pv, "<**>"+vs, "<**>"+vs2) - addFormatterTest("%+v", nilMap, "") - addFormatterTest("%+v", nv, "") - addFormatterTest("%+v", v, vs, vs2) - addFormatterTest("%+v", pv, "<*>("+vAddr+")"+vs, "<*>("+vAddr+")"+vs2) - addFormatterTest("%+v", &pv, "<**>("+pvAddr+"->"+vAddr+")"+vs, - "<**>("+pvAddr+"->"+vAddr+")"+vs2) - addFormatterTest("%+v", nilMap, "") - addFormatterTest("%+v", nv, "") - addFormatterTest("%#v", v, "("+vt+")"+vs, "("+vt+")"+vs2) - addFormatterTest("%#v", pv, "(*"+vt+")"+vs, "(*"+vt+")"+vs2) - addFormatterTest("%#v", &pv, "(**"+vt+")"+vs, "(**"+vt+")"+vs2) - addFormatterTest("%#v", nilMap, "("+vt+")"+"") - addFormatterTest("%#v", nv, "(*"+vt+")"+"") - addFormatterTest("%#+v", v, "("+vt+")"+vs, "("+vt+")"+vs2) - addFormatterTest("%#+v", pv, "(*"+vt+")("+vAddr+")"+vs, - "(*"+vt+")("+vAddr+")"+vs2) - addFormatterTest("%#+v", &pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")"+vs, - "(**"+vt+")("+pvAddr+"->"+vAddr+")"+vs2) - addFormatterTest("%#+v", nilMap, "("+vt+")"+"") - addFormatterTest("%#+v", nv, "(*"+vt+")"+"") - - // Map with custom formatter type on pointer receiver only keys and vals. - v2 := map[pstringer]pstringer{"one": "1"} - nv2 := (*map[pstringer]pstringer)(nil) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "map[spew_test.pstringer]spew_test.pstringer" - v2s := "map[stringer one:stringer 1]" - if spew.UnsafeDisabled { - v2s = "map[one:1]" - } - addFormatterTest("%v", v2, v2s) - addFormatterTest("%v", pv2, "<*>"+v2s) - addFormatterTest("%v", &pv2, "<**>"+v2s) - addFormatterTest("%+v", nv2, "") - addFormatterTest("%+v", v2, v2s) - addFormatterTest("%+v", pv2, "<*>("+v2Addr+")"+v2s) - addFormatterTest("%+v", &pv2, "<**>("+pv2Addr+"->"+v2Addr+")"+v2s) - addFormatterTest("%+v", nv2, "") - addFormatterTest("%#v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#v", pv2, "(*"+v2t+")"+v2s) - addFormatterTest("%#v", &pv2, "(**"+v2t+")"+v2s) - addFormatterTest("%#v", nv2, "(*"+v2t+")"+"") - addFormatterTest("%#+v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#+v", pv2, "(*"+v2t+")("+v2Addr+")"+v2s) - addFormatterTest("%#+v", &pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")"+v2s) - addFormatterTest("%#+v", nv2, "(*"+v2t+")"+"") - - // Map with interface keys and values. - v3 := map[interface{}]interface{}{"one": 1} - nv3 := (*map[interface{}]interface{})(nil) - pv3 := &v3 - v3Addr := fmt.Sprintf("%p", pv3) - pv3Addr := fmt.Sprintf("%p", &pv3) - v3t := "map[interface {}]interface {}" - v3t1 := "string" - v3t2 := "int" - v3s := "map[one:1]" - v3s2 := "map[(" + v3t1 + ")one:(" + v3t2 + ")1]" - addFormatterTest("%v", v3, v3s) - addFormatterTest("%v", pv3, "<*>"+v3s) - addFormatterTest("%v", &pv3, "<**>"+v3s) - addFormatterTest("%+v", nv3, "") - addFormatterTest("%+v", v3, v3s) - addFormatterTest("%+v", pv3, "<*>("+v3Addr+")"+v3s) - addFormatterTest("%+v", &pv3, "<**>("+pv3Addr+"->"+v3Addr+")"+v3s) - addFormatterTest("%+v", nv3, "") - addFormatterTest("%#v", v3, "("+v3t+")"+v3s2) - addFormatterTest("%#v", pv3, "(*"+v3t+")"+v3s2) - addFormatterTest("%#v", &pv3, "(**"+v3t+")"+v3s2) - addFormatterTest("%#v", nv3, "(*"+v3t+")"+"") - addFormatterTest("%#+v", v3, "("+v3t+")"+v3s2) - addFormatterTest("%#+v", pv3, "(*"+v3t+")("+v3Addr+")"+v3s2) - addFormatterTest("%#+v", &pv3, "(**"+v3t+")("+pv3Addr+"->"+v3Addr+")"+v3s2) - addFormatterTest("%#+v", nv3, "(*"+v3t+")"+"") - - // Map with nil interface value - v4 := map[string]interface{}{"nil": nil} - nv4 := (*map[string]interface{})(nil) - pv4 := &v4 - v4Addr := fmt.Sprintf("%p", pv4) - pv4Addr := fmt.Sprintf("%p", &pv4) - v4t := "map[string]interface {}" - v4t1 := "interface {}" - v4s := "map[nil:]" - v4s2 := "map[nil:(" + v4t1 + ")]" - addFormatterTest("%v", v4, v4s) - addFormatterTest("%v", pv4, "<*>"+v4s) - addFormatterTest("%v", &pv4, "<**>"+v4s) - addFormatterTest("%+v", nv4, "") - addFormatterTest("%+v", v4, v4s) - addFormatterTest("%+v", pv4, "<*>("+v4Addr+")"+v4s) - addFormatterTest("%+v", &pv4, "<**>("+pv4Addr+"->"+v4Addr+")"+v4s) - addFormatterTest("%+v", nv4, "") - addFormatterTest("%#v", v4, "("+v4t+")"+v4s2) - addFormatterTest("%#v", pv4, "(*"+v4t+")"+v4s2) - addFormatterTest("%#v", &pv4, "(**"+v4t+")"+v4s2) - addFormatterTest("%#v", nv4, "(*"+v4t+")"+"") - addFormatterTest("%#+v", v4, "("+v4t+")"+v4s2) - addFormatterTest("%#+v", pv4, "(*"+v4t+")("+v4Addr+")"+v4s2) - addFormatterTest("%#+v", &pv4, "(**"+v4t+")("+pv4Addr+"->"+v4Addr+")"+v4s2) - addFormatterTest("%#+v", nv4, "(*"+v4t+")"+"") -} - -func addStructFormatterTests() { - // Struct with primitives. - type s1 struct { - a int8 - b uint8 - } - v := s1{127, 255} - nv := (*s1)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "spew_test.s1" - vt2 := "int8" - vt3 := "uint8" - vs := "{127 255}" - vs2 := "{a:127 b:255}" - vs3 := "{a:(" + vt2 + ")127 b:(" + vt3 + ")255}" - addFormatterTest("%v", v, vs) - addFormatterTest("%v", pv, "<*>"+vs) - addFormatterTest("%v", &pv, "<**>"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%+v", v, vs2) - addFormatterTest("%+v", pv, "<*>("+vAddr+")"+vs2) - addFormatterTest("%+v", &pv, "<**>("+pvAddr+"->"+vAddr+")"+vs2) - addFormatterTest("%+v", nv, "") - addFormatterTest("%#v", v, "("+vt+")"+vs3) - addFormatterTest("%#v", pv, "(*"+vt+")"+vs3) - addFormatterTest("%#v", &pv, "(**"+vt+")"+vs3) - addFormatterTest("%#v", nv, "(*"+vt+")"+"") - addFormatterTest("%#+v", v, "("+vt+")"+vs3) - addFormatterTest("%#+v", pv, "(*"+vt+")("+vAddr+")"+vs3) - addFormatterTest("%#+v", &pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")"+vs3) - addFormatterTest("%#+v", nv, "(*"+vt+")"+"") - - // Struct that contains another struct. - type s2 struct { - s1 s1 - b bool - } - v2 := s2{s1{127, 255}, true} - nv2 := (*s2)(nil) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "spew_test.s2" - v2t2 := "spew_test.s1" - v2t3 := "int8" - v2t4 := "uint8" - v2t5 := "bool" - v2s := "{{127 255} true}" - v2s2 := "{s1:{a:127 b:255} b:true}" - v2s3 := "{s1:(" + v2t2 + "){a:(" + v2t3 + ")127 b:(" + v2t4 + ")255} b:(" + - v2t5 + ")true}" - addFormatterTest("%v", v2, v2s) - addFormatterTest("%v", pv2, "<*>"+v2s) - addFormatterTest("%v", &pv2, "<**>"+v2s) - addFormatterTest("%+v", nv2, "") - addFormatterTest("%+v", v2, v2s2) - addFormatterTest("%+v", pv2, "<*>("+v2Addr+")"+v2s2) - addFormatterTest("%+v", &pv2, "<**>("+pv2Addr+"->"+v2Addr+")"+v2s2) - addFormatterTest("%+v", nv2, "") - addFormatterTest("%#v", v2, "("+v2t+")"+v2s3) - addFormatterTest("%#v", pv2, "(*"+v2t+")"+v2s3) - addFormatterTest("%#v", &pv2, "(**"+v2t+")"+v2s3) - addFormatterTest("%#v", nv2, "(*"+v2t+")"+"") - addFormatterTest("%#+v", v2, "("+v2t+")"+v2s3) - addFormatterTest("%#+v", pv2, "(*"+v2t+")("+v2Addr+")"+v2s3) - addFormatterTest("%#+v", &pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")"+v2s3) - addFormatterTest("%#+v", nv2, "(*"+v2t+")"+"") - - // Struct that contains custom type with Stringer pointer interface via both - // exported and unexported fields. - type s3 struct { - s pstringer - S pstringer - } - v3 := s3{"test", "test2"} - nv3 := (*s3)(nil) - pv3 := &v3 - v3Addr := fmt.Sprintf("%p", pv3) - pv3Addr := fmt.Sprintf("%p", &pv3) - v3t := "spew_test.s3" - v3t2 := "spew_test.pstringer" - v3s := "{stringer test stringer test2}" - v3sp := v3s - v3s2 := "{s:stringer test S:stringer test2}" - v3s2p := v3s2 - v3s3 := "{s:(" + v3t2 + ")stringer test S:(" + v3t2 + ")stringer test2}" - v3s3p := v3s3 - if spew.UnsafeDisabled { - v3s = "{test test2}" - v3sp = "{test stringer test2}" - v3s2 = "{s:test S:test2}" - v3s2p = "{s:test S:stringer test2}" - v3s3 = "{s:(" + v3t2 + ")test S:(" + v3t2 + ")test2}" - v3s3p = "{s:(" + v3t2 + ")test S:(" + v3t2 + ")stringer test2}" - } - addFormatterTest("%v", v3, v3s) - addFormatterTest("%v", pv3, "<*>"+v3sp) - addFormatterTest("%v", &pv3, "<**>"+v3sp) - addFormatterTest("%+v", nv3, "") - addFormatterTest("%+v", v3, v3s2) - addFormatterTest("%+v", pv3, "<*>("+v3Addr+")"+v3s2p) - addFormatterTest("%+v", &pv3, "<**>("+pv3Addr+"->"+v3Addr+")"+v3s2p) - addFormatterTest("%+v", nv3, "") - addFormatterTest("%#v", v3, "("+v3t+")"+v3s3) - addFormatterTest("%#v", pv3, "(*"+v3t+")"+v3s3p) - addFormatterTest("%#v", &pv3, "(**"+v3t+")"+v3s3p) - addFormatterTest("%#v", nv3, "(*"+v3t+")"+"") - addFormatterTest("%#+v", v3, "("+v3t+")"+v3s3) - addFormatterTest("%#+v", pv3, "(*"+v3t+")("+v3Addr+")"+v3s3p) - addFormatterTest("%#+v", &pv3, "(**"+v3t+")("+pv3Addr+"->"+v3Addr+")"+v3s3p) - addFormatterTest("%#+v", nv3, "(*"+v3t+")"+"") - - // Struct that contains embedded struct and field to same struct. - e := embed{"embedstr"} - v4 := embedwrap{embed: &e, e: &e} - nv4 := (*embedwrap)(nil) - pv4 := &v4 - eAddr := fmt.Sprintf("%p", &e) - v4Addr := fmt.Sprintf("%p", pv4) - pv4Addr := fmt.Sprintf("%p", &pv4) - v4t := "spew_test.embedwrap" - v4t2 := "spew_test.embed" - v4t3 := "string" - v4s := "{<*>{embedstr} <*>{embedstr}}" - v4s2 := "{embed:<*>(" + eAddr + "){a:embedstr} e:<*>(" + eAddr + - "){a:embedstr}}" - v4s3 := "{embed:(*" + v4t2 + "){a:(" + v4t3 + ")embedstr} e:(*" + v4t2 + - "){a:(" + v4t3 + ")embedstr}}" - v4s4 := "{embed:(*" + v4t2 + ")(" + eAddr + "){a:(" + v4t3 + - ")embedstr} e:(*" + v4t2 + ")(" + eAddr + "){a:(" + v4t3 + ")embedstr}}" - addFormatterTest("%v", v4, v4s) - addFormatterTest("%v", pv4, "<*>"+v4s) - addFormatterTest("%v", &pv4, "<**>"+v4s) - addFormatterTest("%+v", nv4, "") - addFormatterTest("%+v", v4, v4s2) - addFormatterTest("%+v", pv4, "<*>("+v4Addr+")"+v4s2) - addFormatterTest("%+v", &pv4, "<**>("+pv4Addr+"->"+v4Addr+")"+v4s2) - addFormatterTest("%+v", nv4, "") - addFormatterTest("%#v", v4, "("+v4t+")"+v4s3) - addFormatterTest("%#v", pv4, "(*"+v4t+")"+v4s3) - addFormatterTest("%#v", &pv4, "(**"+v4t+")"+v4s3) - addFormatterTest("%#v", nv4, "(*"+v4t+")"+"") - addFormatterTest("%#+v", v4, "("+v4t+")"+v4s4) - addFormatterTest("%#+v", pv4, "(*"+v4t+")("+v4Addr+")"+v4s4) - addFormatterTest("%#+v", &pv4, "(**"+v4t+")("+pv4Addr+"->"+v4Addr+")"+v4s4) - addFormatterTest("%#+v", nv4, "(*"+v4t+")"+"") -} - -func addUintptrFormatterTests() { - // Null pointer. - v := uintptr(0) - nv := (*uintptr)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "uintptr" - vs := "" - addFormatterTest("%v", v, vs) - addFormatterTest("%v", pv, "<*>"+vs) - addFormatterTest("%v", &pv, "<**>"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%+v", v, vs) - addFormatterTest("%+v", pv, "<*>("+vAddr+")"+vs) - addFormatterTest("%+v", &pv, "<**>("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%#v", v, "("+vt+")"+vs) - addFormatterTest("%#v", pv, "(*"+vt+")"+vs) - addFormatterTest("%#v", &pv, "(**"+vt+")"+vs) - addFormatterTest("%#v", nv, "(*"+vt+")"+"") - addFormatterTest("%#+v", v, "("+vt+")"+vs) - addFormatterTest("%#+v", pv, "(*"+vt+")("+vAddr+")"+vs) - addFormatterTest("%#+v", &pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%#+v", nv, "(*"+vt+")"+"") - - // Address of real variable. - i := 1 - v2 := uintptr(unsafe.Pointer(&i)) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "uintptr" - v2s := fmt.Sprintf("%p", &i) - addFormatterTest("%v", v2, v2s) - addFormatterTest("%v", pv2, "<*>"+v2s) - addFormatterTest("%v", &pv2, "<**>"+v2s) - addFormatterTest("%+v", v2, v2s) - addFormatterTest("%+v", pv2, "<*>("+v2Addr+")"+v2s) - addFormatterTest("%+v", &pv2, "<**>("+pv2Addr+"->"+v2Addr+")"+v2s) - addFormatterTest("%#v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#v", pv2, "(*"+v2t+")"+v2s) - addFormatterTest("%#v", &pv2, "(**"+v2t+")"+v2s) - addFormatterTest("%#+v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#+v", pv2, "(*"+v2t+")("+v2Addr+")"+v2s) - addFormatterTest("%#+v", &pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")"+v2s) -} - -func addUnsafePointerFormatterTests() { - // Null pointer. - v := unsafe.Pointer(nil) - nv := (*unsafe.Pointer)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "unsafe.Pointer" - vs := "" - addFormatterTest("%v", v, vs) - addFormatterTest("%v", pv, "<*>"+vs) - addFormatterTest("%v", &pv, "<**>"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%+v", v, vs) - addFormatterTest("%+v", pv, "<*>("+vAddr+")"+vs) - addFormatterTest("%+v", &pv, "<**>("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%#v", v, "("+vt+")"+vs) - addFormatterTest("%#v", pv, "(*"+vt+")"+vs) - addFormatterTest("%#v", &pv, "(**"+vt+")"+vs) - addFormatterTest("%#v", nv, "(*"+vt+")"+"") - addFormatterTest("%#+v", v, "("+vt+")"+vs) - addFormatterTest("%#+v", pv, "(*"+vt+")("+vAddr+")"+vs) - addFormatterTest("%#+v", &pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%#+v", nv, "(*"+vt+")"+"") - - // Address of real variable. - i := 1 - v2 := unsafe.Pointer(&i) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "unsafe.Pointer" - v2s := fmt.Sprintf("%p", &i) - addFormatterTest("%v", v2, v2s) - addFormatterTest("%v", pv2, "<*>"+v2s) - addFormatterTest("%v", &pv2, "<**>"+v2s) - addFormatterTest("%+v", v2, v2s) - addFormatterTest("%+v", pv2, "<*>("+v2Addr+")"+v2s) - addFormatterTest("%+v", &pv2, "<**>("+pv2Addr+"->"+v2Addr+")"+v2s) - addFormatterTest("%#v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#v", pv2, "(*"+v2t+")"+v2s) - addFormatterTest("%#v", &pv2, "(**"+v2t+")"+v2s) - addFormatterTest("%#+v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#+v", pv2, "(*"+v2t+")("+v2Addr+")"+v2s) - addFormatterTest("%#+v", &pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")"+v2s) -} - -func addChanFormatterTests() { - // Nil channel. - var v chan int - pv := &v - nv := (*chan int)(nil) - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "chan int" - vs := "" - addFormatterTest("%v", v, vs) - addFormatterTest("%v", pv, "<*>"+vs) - addFormatterTest("%v", &pv, "<**>"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%+v", v, vs) - addFormatterTest("%+v", pv, "<*>("+vAddr+")"+vs) - addFormatterTest("%+v", &pv, "<**>("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%#v", v, "("+vt+")"+vs) - addFormatterTest("%#v", pv, "(*"+vt+")"+vs) - addFormatterTest("%#v", &pv, "(**"+vt+")"+vs) - addFormatterTest("%#v", nv, "(*"+vt+")"+"") - addFormatterTest("%#+v", v, "("+vt+")"+vs) - addFormatterTest("%#+v", pv, "(*"+vt+")("+vAddr+")"+vs) - addFormatterTest("%#+v", &pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%#+v", nv, "(*"+vt+")"+"") - - // Real channel. - v2 := make(chan int) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "chan int" - v2s := fmt.Sprintf("%p", v2) - addFormatterTest("%v", v2, v2s) - addFormatterTest("%v", pv2, "<*>"+v2s) - addFormatterTest("%v", &pv2, "<**>"+v2s) - addFormatterTest("%+v", v2, v2s) - addFormatterTest("%+v", pv2, "<*>("+v2Addr+")"+v2s) - addFormatterTest("%+v", &pv2, "<**>("+pv2Addr+"->"+v2Addr+")"+v2s) - addFormatterTest("%#v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#v", pv2, "(*"+v2t+")"+v2s) - addFormatterTest("%#v", &pv2, "(**"+v2t+")"+v2s) - addFormatterTest("%#+v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#+v", pv2, "(*"+v2t+")("+v2Addr+")"+v2s) - addFormatterTest("%#+v", &pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")"+v2s) -} - -func addFuncFormatterTests() { - // Function with no params and no returns. - v := addIntFormatterTests - nv := (*func())(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "func()" - vs := fmt.Sprintf("%p", v) - addFormatterTest("%v", v, vs) - addFormatterTest("%v", pv, "<*>"+vs) - addFormatterTest("%v", &pv, "<**>"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%+v", v, vs) - addFormatterTest("%+v", pv, "<*>("+vAddr+")"+vs) - addFormatterTest("%+v", &pv, "<**>("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%#v", v, "("+vt+")"+vs) - addFormatterTest("%#v", pv, "(*"+vt+")"+vs) - addFormatterTest("%#v", &pv, "(**"+vt+")"+vs) - addFormatterTest("%#v", nv, "(*"+vt+")"+"") - addFormatterTest("%#+v", v, "("+vt+")"+vs) - addFormatterTest("%#+v", pv, "(*"+vt+")("+vAddr+")"+vs) - addFormatterTest("%#+v", &pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%#+v", nv, "(*"+vt+")"+"") - - // Function with param and no returns. - v2 := TestFormatter - nv2 := (*func(*testing.T))(nil) - pv2 := &v2 - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "func(*testing.T)" - v2s := fmt.Sprintf("%p", v2) - addFormatterTest("%v", v2, v2s) - addFormatterTest("%v", pv2, "<*>"+v2s) - addFormatterTest("%v", &pv2, "<**>"+v2s) - addFormatterTest("%+v", nv2, "") - addFormatterTest("%+v", v2, v2s) - addFormatterTest("%+v", pv2, "<*>("+v2Addr+")"+v2s) - addFormatterTest("%+v", &pv2, "<**>("+pv2Addr+"->"+v2Addr+")"+v2s) - addFormatterTest("%+v", nv2, "") - addFormatterTest("%#v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#v", pv2, "(*"+v2t+")"+v2s) - addFormatterTest("%#v", &pv2, "(**"+v2t+")"+v2s) - addFormatterTest("%#v", nv2, "(*"+v2t+")"+"") - addFormatterTest("%#+v", v2, "("+v2t+")"+v2s) - addFormatterTest("%#+v", pv2, "(*"+v2t+")("+v2Addr+")"+v2s) - addFormatterTest("%#+v", &pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")"+v2s) - addFormatterTest("%#+v", nv2, "(*"+v2t+")"+"") - - // Function with multiple params and multiple returns. - var v3 = func(i int, s string) (b bool, err error) { - return true, nil - } - nv3 := (*func(int, string) (bool, error))(nil) - pv3 := &v3 - v3Addr := fmt.Sprintf("%p", pv3) - pv3Addr := fmt.Sprintf("%p", &pv3) - v3t := "func(int, string) (bool, error)" - v3s := fmt.Sprintf("%p", v3) - addFormatterTest("%v", v3, v3s) - addFormatterTest("%v", pv3, "<*>"+v3s) - addFormatterTest("%v", &pv3, "<**>"+v3s) - addFormatterTest("%+v", nv3, "") - addFormatterTest("%+v", v3, v3s) - addFormatterTest("%+v", pv3, "<*>("+v3Addr+")"+v3s) - addFormatterTest("%+v", &pv3, "<**>("+pv3Addr+"->"+v3Addr+")"+v3s) - addFormatterTest("%+v", nv3, "") - addFormatterTest("%#v", v3, "("+v3t+")"+v3s) - addFormatterTest("%#v", pv3, "(*"+v3t+")"+v3s) - addFormatterTest("%#v", &pv3, "(**"+v3t+")"+v3s) - addFormatterTest("%#v", nv3, "(*"+v3t+")"+"") - addFormatterTest("%#+v", v3, "("+v3t+")"+v3s) - addFormatterTest("%#+v", pv3, "(*"+v3t+")("+v3Addr+")"+v3s) - addFormatterTest("%#+v", &pv3, "(**"+v3t+")("+pv3Addr+"->"+v3Addr+")"+v3s) - addFormatterTest("%#+v", nv3, "(*"+v3t+")"+"") -} - -func addCircularFormatterTests() { - // Struct that is circular through self referencing. - type circular struct { - c *circular - } - v := circular{nil} - v.c = &v - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "spew_test.circular" - vs := "{<*>{<*>}}" - vs2 := "{<*>}" - vs3 := "{c:<*>(" + vAddr + "){c:<*>(" + vAddr + ")}}" - vs4 := "{c:<*>(" + vAddr + ")}" - vs5 := "{c:(*" + vt + "){c:(*" + vt + ")}}" - vs6 := "{c:(*" + vt + ")}" - vs7 := "{c:(*" + vt + ")(" + vAddr + "){c:(*" + vt + ")(" + vAddr + - ")}}" - vs8 := "{c:(*" + vt + ")(" + vAddr + ")}" - addFormatterTest("%v", v, vs) - addFormatterTest("%v", pv, "<*>"+vs2) - addFormatterTest("%v", &pv, "<**>"+vs2) - addFormatterTest("%+v", v, vs3) - addFormatterTest("%+v", pv, "<*>("+vAddr+")"+vs4) - addFormatterTest("%+v", &pv, "<**>("+pvAddr+"->"+vAddr+")"+vs4) - addFormatterTest("%#v", v, "("+vt+")"+vs5) - addFormatterTest("%#v", pv, "(*"+vt+")"+vs6) - addFormatterTest("%#v", &pv, "(**"+vt+")"+vs6) - addFormatterTest("%#+v", v, "("+vt+")"+vs7) - addFormatterTest("%#+v", pv, "(*"+vt+")("+vAddr+")"+vs8) - addFormatterTest("%#+v", &pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")"+vs8) - - // Structs that are circular through cross referencing. - v2 := xref1{nil} - ts2 := xref2{&v2} - v2.ps2 = &ts2 - pv2 := &v2 - ts2Addr := fmt.Sprintf("%p", &ts2) - v2Addr := fmt.Sprintf("%p", pv2) - pv2Addr := fmt.Sprintf("%p", &pv2) - v2t := "spew_test.xref1" - v2t2 := "spew_test.xref2" - v2s := "{<*>{<*>{<*>}}}" - v2s2 := "{<*>{<*>}}" - v2s3 := "{ps2:<*>(" + ts2Addr + "){ps1:<*>(" + v2Addr + "){ps2:<*>(" + - ts2Addr + ")}}}" - v2s4 := "{ps2:<*>(" + ts2Addr + "){ps1:<*>(" + v2Addr + ")}}" - v2s5 := "{ps2:(*" + v2t2 + "){ps1:(*" + v2t + "){ps2:(*" + v2t2 + - ")}}}" - v2s6 := "{ps2:(*" + v2t2 + "){ps1:(*" + v2t + ")}}" - v2s7 := "{ps2:(*" + v2t2 + ")(" + ts2Addr + "){ps1:(*" + v2t + - ")(" + v2Addr + "){ps2:(*" + v2t2 + ")(" + ts2Addr + - ")}}}" - v2s8 := "{ps2:(*" + v2t2 + ")(" + ts2Addr + "){ps1:(*" + v2t + - ")(" + v2Addr + ")}}" - addFormatterTest("%v", v2, v2s) - addFormatterTest("%v", pv2, "<*>"+v2s2) - addFormatterTest("%v", &pv2, "<**>"+v2s2) - addFormatterTest("%+v", v2, v2s3) - addFormatterTest("%+v", pv2, "<*>("+v2Addr+")"+v2s4) - addFormatterTest("%+v", &pv2, "<**>("+pv2Addr+"->"+v2Addr+")"+v2s4) - addFormatterTest("%#v", v2, "("+v2t+")"+v2s5) - addFormatterTest("%#v", pv2, "(*"+v2t+")"+v2s6) - addFormatterTest("%#v", &pv2, "(**"+v2t+")"+v2s6) - addFormatterTest("%#+v", v2, "("+v2t+")"+v2s7) - addFormatterTest("%#+v", pv2, "(*"+v2t+")("+v2Addr+")"+v2s8) - addFormatterTest("%#+v", &pv2, "(**"+v2t+")("+pv2Addr+"->"+v2Addr+")"+v2s8) - - // Structs that are indirectly circular. - v3 := indirCir1{nil} - tic2 := indirCir2{nil} - tic3 := indirCir3{&v3} - tic2.ps3 = &tic3 - v3.ps2 = &tic2 - pv3 := &v3 - tic2Addr := fmt.Sprintf("%p", &tic2) - tic3Addr := fmt.Sprintf("%p", &tic3) - v3Addr := fmt.Sprintf("%p", pv3) - pv3Addr := fmt.Sprintf("%p", &pv3) - v3t := "spew_test.indirCir1" - v3t2 := "spew_test.indirCir2" - v3t3 := "spew_test.indirCir3" - v3s := "{<*>{<*>{<*>{<*>}}}}" - v3s2 := "{<*>{<*>{<*>}}}" - v3s3 := "{ps2:<*>(" + tic2Addr + "){ps3:<*>(" + tic3Addr + "){ps1:<*>(" + - v3Addr + "){ps2:<*>(" + tic2Addr + ")}}}}" - v3s4 := "{ps2:<*>(" + tic2Addr + "){ps3:<*>(" + tic3Addr + "){ps1:<*>(" + - v3Addr + ")}}}" - v3s5 := "{ps2:(*" + v3t2 + "){ps3:(*" + v3t3 + "){ps1:(*" + v3t + - "){ps2:(*" + v3t2 + ")}}}}" - v3s6 := "{ps2:(*" + v3t2 + "){ps3:(*" + v3t3 + "){ps1:(*" + v3t + - ")}}}" - v3s7 := "{ps2:(*" + v3t2 + ")(" + tic2Addr + "){ps3:(*" + v3t3 + ")(" + - tic3Addr + "){ps1:(*" + v3t + ")(" + v3Addr + "){ps2:(*" + v3t2 + - ")(" + tic2Addr + ")}}}}" - v3s8 := "{ps2:(*" + v3t2 + ")(" + tic2Addr + "){ps3:(*" + v3t3 + ")(" + - tic3Addr + "){ps1:(*" + v3t + ")(" + v3Addr + ")}}}" - addFormatterTest("%v", v3, v3s) - addFormatterTest("%v", pv3, "<*>"+v3s2) - addFormatterTest("%v", &pv3, "<**>"+v3s2) - addFormatterTest("%+v", v3, v3s3) - addFormatterTest("%+v", pv3, "<*>("+v3Addr+")"+v3s4) - addFormatterTest("%+v", &pv3, "<**>("+pv3Addr+"->"+v3Addr+")"+v3s4) - addFormatterTest("%#v", v3, "("+v3t+")"+v3s5) - addFormatterTest("%#v", pv3, "(*"+v3t+")"+v3s6) - addFormatterTest("%#v", &pv3, "(**"+v3t+")"+v3s6) - addFormatterTest("%#+v", v3, "("+v3t+")"+v3s7) - addFormatterTest("%#+v", pv3, "(*"+v3t+")("+v3Addr+")"+v3s8) - addFormatterTest("%#+v", &pv3, "(**"+v3t+")("+pv3Addr+"->"+v3Addr+")"+v3s8) -} - -func addPanicFormatterTests() { - // Type that panics in its Stringer interface. - v := panicer(127) - nv := (*panicer)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "spew_test.panicer" - vs := "(PANIC=test panic)127" - addFormatterTest("%v", v, vs) - addFormatterTest("%v", pv, "<*>"+vs) - addFormatterTest("%v", &pv, "<**>"+vs) - addFormatterTest("%v", nv, "") - addFormatterTest("%+v", v, vs) - addFormatterTest("%+v", pv, "<*>("+vAddr+")"+vs) - addFormatterTest("%+v", &pv, "<**>("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%#v", v, "("+vt+")"+vs) - addFormatterTest("%#v", pv, "(*"+vt+")"+vs) - addFormatterTest("%#v", &pv, "(**"+vt+")"+vs) - addFormatterTest("%#v", nv, "(*"+vt+")"+"") - addFormatterTest("%#+v", v, "("+vt+")"+vs) - addFormatterTest("%#+v", pv, "(*"+vt+")("+vAddr+")"+vs) - addFormatterTest("%#+v", &pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%#+v", nv, "(*"+vt+")"+"") -} - -func addErrorFormatterTests() { - // Type that has a custom Error interface. - v := customError(127) - nv := (*customError)(nil) - pv := &v - vAddr := fmt.Sprintf("%p", pv) - pvAddr := fmt.Sprintf("%p", &pv) - vt := "spew_test.customError" - vs := "error: 127" - addFormatterTest("%v", v, vs) - addFormatterTest("%v", pv, "<*>"+vs) - addFormatterTest("%v", &pv, "<**>"+vs) - addFormatterTest("%v", nv, "") - addFormatterTest("%+v", v, vs) - addFormatterTest("%+v", pv, "<*>("+vAddr+")"+vs) - addFormatterTest("%+v", &pv, "<**>("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%+v", nv, "") - addFormatterTest("%#v", v, "("+vt+")"+vs) - addFormatterTest("%#v", pv, "(*"+vt+")"+vs) - addFormatterTest("%#v", &pv, "(**"+vt+")"+vs) - addFormatterTest("%#v", nv, "(*"+vt+")"+"") - addFormatterTest("%#+v", v, "("+vt+")"+vs) - addFormatterTest("%#+v", pv, "(*"+vt+")("+vAddr+")"+vs) - addFormatterTest("%#+v", &pv, "(**"+vt+")("+pvAddr+"->"+vAddr+")"+vs) - addFormatterTest("%#+v", nv, "(*"+vt+")"+"") -} - -func addPassthroughFormatterTests() { - // %x passthrough with uint. - v := uint(4294967295) - pv := &v - vAddr := fmt.Sprintf("%x", pv) - pvAddr := fmt.Sprintf("%x", &pv) - vs := "ffffffff" - addFormatterTest("%x", v, vs) - addFormatterTest("%x", pv, vAddr) - addFormatterTest("%x", &pv, pvAddr) - - // %#x passthrough with uint. - v2 := int(2147483647) - pv2 := &v2 - v2Addr := fmt.Sprintf("%#x", pv2) - pv2Addr := fmt.Sprintf("%#x", &pv2) - v2s := "0x7fffffff" - addFormatterTest("%#x", v2, v2s) - addFormatterTest("%#x", pv2, v2Addr) - addFormatterTest("%#x", &pv2, pv2Addr) - - // %f passthrough with precision. - addFormatterTest("%.2f", 3.1415, "3.14") - addFormatterTest("%.3f", 3.1415, "3.142") - addFormatterTest("%.4f", 3.1415, "3.1415") - - // %f passthrough with width and precision. - addFormatterTest("%5.2f", 3.1415, " 3.14") - addFormatterTest("%6.3f", 3.1415, " 3.142") - addFormatterTest("%7.4f", 3.1415, " 3.1415") - - // %d passthrough with width. - addFormatterTest("%3d", 127, "127") - addFormatterTest("%4d", 127, " 127") - addFormatterTest("%5d", 127, " 127") - - // %q passthrough with string. - addFormatterTest("%q", "test", "\"test\"") -} - -// TestFormatter executes all of the tests described by formatterTests. -func TestFormatter(t *testing.T) { - // Setup tests. - addIntFormatterTests() - addUintFormatterTests() - addBoolFormatterTests() - addFloatFormatterTests() - addComplexFormatterTests() - addArrayFormatterTests() - addSliceFormatterTests() - addStringFormatterTests() - addInterfaceFormatterTests() - addMapFormatterTests() - addStructFormatterTests() - addUintptrFormatterTests() - addUnsafePointerFormatterTests() - addChanFormatterTests() - addFuncFormatterTests() - addCircularFormatterTests() - addPanicFormatterTests() - addErrorFormatterTests() - addPassthroughFormatterTests() - - t.Logf("Running %d tests", len(formatterTests)) - for i, test := range formatterTests { - buf := new(bytes.Buffer) - spew.Fprintf(buf, test.format, test.in) - s := buf.String() - if testFailed(s, test.wants) { - t.Errorf("Formatter #%d format: %s got: %s %s", i, test.format, s, - stringizeWants(test.wants)) - continue - } - } -} - -type testStruct struct { - x int -} - -func (ts testStruct) String() string { - return fmt.Sprintf("ts.%d", ts.x) -} - -type testStructP struct { - x int -} - -func (ts *testStructP) String() string { - return fmt.Sprintf("ts.%d", ts.x) -} - -func TestPrintSortedKeys(t *testing.T) { - cfg := spew.ConfigState{SortKeys: true} - s := cfg.Sprint(map[int]string{1: "1", 3: "3", 2: "2"}) - expected := "map[1:1 2:2 3:3]" - if s != expected { - t.Errorf("Sorted keys mismatch 1:\n %v %v", s, expected) - } - - s = cfg.Sprint(map[stringer]int{"1": 1, "3": 3, "2": 2}) - expected = "map[stringer 1:1 stringer 2:2 stringer 3:3]" - if s != expected { - t.Errorf("Sorted keys mismatch 2:\n %v %v", s, expected) - } - - s = cfg.Sprint(map[pstringer]int{pstringer("1"): 1, pstringer("3"): 3, pstringer("2"): 2}) - expected = "map[stringer 1:1 stringer 2:2 stringer 3:3]" - if spew.UnsafeDisabled { - expected = "map[1:1 2:2 3:3]" - } - if s != expected { - t.Errorf("Sorted keys mismatch 3:\n %v %v", s, expected) - } - - s = cfg.Sprint(map[testStruct]int{{1}: 1, {3}: 3, {2}: 2}) - expected = "map[ts.1:1 ts.2:2 ts.3:3]" - if s != expected { - t.Errorf("Sorted keys mismatch 4:\n %v %v", s, expected) - } - - if !spew.UnsafeDisabled { - s = cfg.Sprint(map[testStructP]int{{1}: 1, {3}: 3, {2}: 2}) - expected = "map[ts.1:1 ts.2:2 ts.3:3]" - if s != expected { - t.Errorf("Sorted keys mismatch 5:\n %v %v", s, expected) - } - } - - s = cfg.Sprint(map[customError]int{customError(1): 1, customError(3): 3, customError(2): 2}) - expected = "map[error: 1:1 error: 2:2 error: 3:3]" - if s != expected { - t.Errorf("Sorted keys mismatch 6:\n %v %v", s, expected) - } -} diff --git a/vendor/github.com/davecgh/go-spew/spew/internal_test.go b/vendor/github.com/davecgh/go-spew/spew/internal_test.go deleted file mode 100644 index e312b4fa..00000000 --- a/vendor/github.com/davecgh/go-spew/spew/internal_test.go +++ /dev/null @@ -1,84 +0,0 @@ -/* - * Copyright (c) 2013-2016 Dave Collins - * - * Permission to use, copy, modify, and distribute this software for any - * purpose with or without fee is hereby granted, provided that the above - * copyright notice and this permission notice appear in all copies. - * - * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES - * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF - * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR - * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES - * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN - * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF - * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. - */ - -/* -This test file is part of the spew package rather than than the spew_test -package because it needs access to internals to properly test certain cases -which are not possible via the public interface since they should never happen. -*/ - -package spew - -import ( - "bytes" - "reflect" - "testing" -) - -// dummyFmtState implements a fake fmt.State to use for testing invalid -// reflect.Value handling. This is necessary because the fmt package catches -// invalid values before invoking the formatter on them. -type dummyFmtState struct { - bytes.Buffer -} - -func (dfs *dummyFmtState) Flag(f int) bool { - return f == int('+') -} - -func (dfs *dummyFmtState) Precision() (int, bool) { - return 0, false -} - -func (dfs *dummyFmtState) Width() (int, bool) { - return 0, false -} - -// TestInvalidReflectValue ensures the dump and formatter code handles an -// invalid reflect value properly. This needs access to internal state since it -// should never happen in real code and therefore can't be tested via the public -// API. -func TestInvalidReflectValue(t *testing.T) { - i := 1 - - // Dump invalid reflect value. - v := new(reflect.Value) - buf := new(bytes.Buffer) - d := dumpState{w: buf, cs: &Config} - d.dump(*v) - s := buf.String() - want := "" - if s != want { - t.Errorf("InvalidReflectValue #%d\n got: %s want: %s", i, s, want) - } - i++ - - // Formatter invalid reflect value. - buf2 := new(dummyFmtState) - f := formatState{value: *v, cs: &Config, fs: buf2} - f.format(*v) - s = buf2.String() - want = "" - if s != want { - t.Errorf("InvalidReflectValue #%d got: %s want: %s", i, s, want) - } -} - -// SortValues makes the internal sortValues function available to the test -// package. -func SortValues(values []reflect.Value, cs *ConfigState) { - sortValues(values, cs) -} diff --git a/vendor/github.com/davecgh/go-spew/spew/internalunsafe_test.go b/vendor/github.com/davecgh/go-spew/spew/internalunsafe_test.go deleted file mode 100644 index 80dc2217..00000000 --- a/vendor/github.com/davecgh/go-spew/spew/internalunsafe_test.go +++ /dev/null @@ -1,101 +0,0 @@ -// Copyright (c) 2013-2016 Dave Collins - -// Permission to use, copy, modify, and distribute this software for any -// purpose with or without fee is hereby granted, provided that the above -// copyright notice and this permission notice appear in all copies. - -// THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES -// WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF -// MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR -// ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES -// WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN -// ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF -// OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. - -// NOTE: Due to the following build constraints, this file will only be compiled -// when the code is not running on Google App Engine, compiled by GopherJS, and -// "-tags safe" is not added to the go build command line. The "disableunsafe" -// tag is deprecated and thus should not be used. -// +build !js,!appengine,!safe,!disableunsafe,go1.4 - -/* -This test file is part of the spew package rather than than the spew_test -package because it needs access to internals to properly test certain cases -which are not possible via the public interface since they should never happen. -*/ - -package spew - -import ( - "bytes" - "reflect" - "testing" -) - -// changeKind uses unsafe to intentionally change the kind of a reflect.Value to -// the maximum kind value which does not exist. This is needed to test the -// fallback code which punts to the standard fmt library for new types that -// might get added to the language. -func changeKind(v *reflect.Value, readOnly bool) { - flags := flagField(v) - if readOnly { - *flags |= flagRO - } else { - *flags &^= flagRO - } - *flags |= flagKindMask -} - -// TestAddedReflectValue tests functionaly of the dump and formatter code which -// falls back to the standard fmt library for new types that might get added to -// the language. -func TestAddedReflectValue(t *testing.T) { - i := 1 - - // Dump using a reflect.Value that is exported. - v := reflect.ValueOf(int8(5)) - changeKind(&v, false) - buf := new(bytes.Buffer) - d := dumpState{w: buf, cs: &Config} - d.dump(v) - s := buf.String() - want := "(int8) 5" - if s != want { - t.Errorf("TestAddedReflectValue #%d\n got: %s want: %s", i, s, want) - } - i++ - - // Dump using a reflect.Value that is not exported. - changeKind(&v, true) - buf.Reset() - d.dump(v) - s = buf.String() - want = "(int8) " - if s != want { - t.Errorf("TestAddedReflectValue #%d\n got: %s want: %s", i, s, want) - } - i++ - - // Formatter using a reflect.Value that is exported. - changeKind(&v, false) - buf2 := new(dummyFmtState) - f := formatState{value: v, cs: &Config, fs: buf2} - f.format(v) - s = buf2.String() - want = "5" - if s != want { - t.Errorf("TestAddedReflectValue #%d got: %s want: %s", i, s, want) - } - i++ - - // Formatter using a reflect.Value that is not exported. - changeKind(&v, true) - buf2.Reset() - f = formatState{value: v, cs: &Config, fs: buf2} - f.format(v) - s = buf2.String() - want = "" - if s != want { - t.Errorf("TestAddedReflectValue #%d got: %s want: %s", i, s, want) - } -} diff --git a/vendor/github.com/davecgh/go-spew/spew/spew.go b/vendor/github.com/davecgh/go-spew/spew/spew.go deleted file mode 100644 index 32c0e338..00000000 --- a/vendor/github.com/davecgh/go-spew/spew/spew.go +++ /dev/null @@ -1,148 +0,0 @@ -/* - * Copyright (c) 2013-2016 Dave Collins - * - * Permission to use, copy, modify, and distribute this software for any - * purpose with or without fee is hereby granted, provided that the above - * copyright notice and this permission notice appear in all copies. - * - * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES - * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF - * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR - * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES - * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN - * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF - * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. - */ - -package spew - -import ( - "fmt" - "io" -) - -// Errorf is a wrapper for fmt.Errorf that treats each argument as if it were -// passed with a default Formatter interface returned by NewFormatter. It -// returns the formatted string as a value that satisfies error. See -// NewFormatter for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Errorf(format, spew.NewFormatter(a), spew.NewFormatter(b)) -func Errorf(format string, a ...interface{}) (err error) { - return fmt.Errorf(format, convertArgs(a)...) -} - -// Fprint is a wrapper for fmt.Fprint that treats each argument as if it were -// passed with a default Formatter interface returned by NewFormatter. It -// returns the number of bytes written and any write error encountered. See -// NewFormatter for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Fprint(w, spew.NewFormatter(a), spew.NewFormatter(b)) -func Fprint(w io.Writer, a ...interface{}) (n int, err error) { - return fmt.Fprint(w, convertArgs(a)...) -} - -// Fprintf is a wrapper for fmt.Fprintf that treats each argument as if it were -// passed with a default Formatter interface returned by NewFormatter. It -// returns the number of bytes written and any write error encountered. See -// NewFormatter for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Fprintf(w, format, spew.NewFormatter(a), spew.NewFormatter(b)) -func Fprintf(w io.Writer, format string, a ...interface{}) (n int, err error) { - return fmt.Fprintf(w, format, convertArgs(a)...) -} - -// Fprintln is a wrapper for fmt.Fprintln that treats each argument as if it -// passed with a default Formatter interface returned by NewFormatter. See -// NewFormatter for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Fprintln(w, spew.NewFormatter(a), spew.NewFormatter(b)) -func Fprintln(w io.Writer, a ...interface{}) (n int, err error) { - return fmt.Fprintln(w, convertArgs(a)...) -} - -// Print is a wrapper for fmt.Print that treats each argument as if it were -// passed with a default Formatter interface returned by NewFormatter. It -// returns the number of bytes written and any write error encountered. See -// NewFormatter for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Print(spew.NewFormatter(a), spew.NewFormatter(b)) -func Print(a ...interface{}) (n int, err error) { - return fmt.Print(convertArgs(a)...) -} - -// Printf is a wrapper for fmt.Printf that treats each argument as if it were -// passed with a default Formatter interface returned by NewFormatter. It -// returns the number of bytes written and any write error encountered. See -// NewFormatter for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Printf(format, spew.NewFormatter(a), spew.NewFormatter(b)) -func Printf(format string, a ...interface{}) (n int, err error) { - return fmt.Printf(format, convertArgs(a)...) -} - -// Println is a wrapper for fmt.Println that treats each argument as if it were -// passed with a default Formatter interface returned by NewFormatter. It -// returns the number of bytes written and any write error encountered. See -// NewFormatter for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Println(spew.NewFormatter(a), spew.NewFormatter(b)) -func Println(a ...interface{}) (n int, err error) { - return fmt.Println(convertArgs(a)...) -} - -// Sprint is a wrapper for fmt.Sprint that treats each argument as if it were -// passed with a default Formatter interface returned by NewFormatter. It -// returns the resulting string. See NewFormatter for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Sprint(spew.NewFormatter(a), spew.NewFormatter(b)) -func Sprint(a ...interface{}) string { - return fmt.Sprint(convertArgs(a)...) -} - -// Sprintf is a wrapper for fmt.Sprintf that treats each argument as if it were -// passed with a default Formatter interface returned by NewFormatter. It -// returns the resulting string. See NewFormatter for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Sprintf(format, spew.NewFormatter(a), spew.NewFormatter(b)) -func Sprintf(format string, a ...interface{}) string { - return fmt.Sprintf(format, convertArgs(a)...) -} - -// Sprintln is a wrapper for fmt.Sprintln that treats each argument as if it -// were passed with a default Formatter interface returned by NewFormatter. It -// returns the resulting string. See NewFormatter for formatting details. -// -// This function is shorthand for the following syntax: -// -// fmt.Sprintln(spew.NewFormatter(a), spew.NewFormatter(b)) -func Sprintln(a ...interface{}) string { - return fmt.Sprintln(convertArgs(a)...) -} - -// convertArgs accepts a slice of arguments and returns a slice of the same -// length with each argument converted to a default spew Formatter interface. -func convertArgs(args []interface{}) (formatters []interface{}) { - formatters = make([]interface{}, len(args)) - for index, arg := range args { - formatters[index] = NewFormatter(arg) - } - return formatters -} diff --git a/vendor/github.com/davecgh/go-spew/spew/spew_test.go b/vendor/github.com/davecgh/go-spew/spew/spew_test.go deleted file mode 100644 index b70466c6..00000000 --- a/vendor/github.com/davecgh/go-spew/spew/spew_test.go +++ /dev/null @@ -1,320 +0,0 @@ -/* - * Copyright (c) 2013-2016 Dave Collins - * - * Permission to use, copy, modify, and distribute this software for any - * purpose with or without fee is hereby granted, provided that the above - * copyright notice and this permission notice appear in all copies. - * - * THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES - * WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF - * MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR - * ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES - * WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN - * ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF - * OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. - */ - -package spew_test - -import ( - "bytes" - "fmt" - "io/ioutil" - "os" - "testing" - - "github.com/davecgh/go-spew/spew" -) - -// spewFunc is used to identify which public function of the spew package or -// ConfigState a test applies to. -type spewFunc int - -const ( - fCSFdump spewFunc = iota - fCSFprint - fCSFprintf - fCSFprintln - fCSPrint - fCSPrintln - fCSSdump - fCSSprint - fCSSprintf - fCSSprintln - fCSErrorf - fCSNewFormatter - fErrorf - fFprint - fFprintln - fPrint - fPrintln - fSdump - fSprint - fSprintf - fSprintln -) - -// Map of spewFunc values to names for pretty printing. -var spewFuncStrings = map[spewFunc]string{ - fCSFdump: "ConfigState.Fdump", - fCSFprint: "ConfigState.Fprint", - fCSFprintf: "ConfigState.Fprintf", - fCSFprintln: "ConfigState.Fprintln", - fCSSdump: "ConfigState.Sdump", - fCSPrint: "ConfigState.Print", - fCSPrintln: "ConfigState.Println", - fCSSprint: "ConfigState.Sprint", - fCSSprintf: "ConfigState.Sprintf", - fCSSprintln: "ConfigState.Sprintln", - fCSErrorf: "ConfigState.Errorf", - fCSNewFormatter: "ConfigState.NewFormatter", - fErrorf: "spew.Errorf", - fFprint: "spew.Fprint", - fFprintln: "spew.Fprintln", - fPrint: "spew.Print", - fPrintln: "spew.Println", - fSdump: "spew.Sdump", - fSprint: "spew.Sprint", - fSprintf: "spew.Sprintf", - fSprintln: "spew.Sprintln", -} - -func (f spewFunc) String() string { - if s, ok := spewFuncStrings[f]; ok { - return s - } - return fmt.Sprintf("Unknown spewFunc (%d)", int(f)) -} - -// spewTest is used to describe a test to be performed against the public -// functions of the spew package or ConfigState. -type spewTest struct { - cs *spew.ConfigState - f spewFunc - format string - in interface{} - want string -} - -// spewTests houses the tests to be performed against the public functions of -// the spew package and ConfigState. -// -// These tests are only intended to ensure the public functions are exercised -// and are intentionally not exhaustive of types. The exhaustive type -// tests are handled in the dump and format tests. -var spewTests []spewTest - -// redirStdout is a helper function to return the standard output from f as a -// byte slice. -func redirStdout(f func()) ([]byte, error) { - tempFile, err := ioutil.TempFile("", "ss-test") - if err != nil { - return nil, err - } - fileName := tempFile.Name() - defer os.Remove(fileName) // Ignore error - - origStdout := os.Stdout - os.Stdout = tempFile - f() - os.Stdout = origStdout - tempFile.Close() - - return ioutil.ReadFile(fileName) -} - -func initSpewTests() { - // Config states with various settings. - scsDefault := spew.NewDefaultConfig() - scsNoMethods := &spew.ConfigState{Indent: " ", DisableMethods: true} - scsNoPmethods := &spew.ConfigState{Indent: " ", DisablePointerMethods: true} - scsMaxDepth := &spew.ConfigState{Indent: " ", MaxDepth: 1} - scsContinue := &spew.ConfigState{Indent: " ", ContinueOnMethod: true} - scsNoPtrAddr := &spew.ConfigState{DisablePointerAddresses: true} - scsNoCap := &spew.ConfigState{DisableCapacities: true} - - // Variables for tests on types which implement Stringer interface with and - // without a pointer receiver. - ts := stringer("test") - tps := pstringer("test") - - type ptrTester struct { - s *struct{} - } - tptr := &ptrTester{s: &struct{}{}} - - // depthTester is used to test max depth handling for structs, array, slices - // and maps. - type depthTester struct { - ic indirCir1 - arr [1]string - slice []string - m map[string]int - } - dt := depthTester{indirCir1{nil}, [1]string{"arr"}, []string{"slice"}, - map[string]int{"one": 1}} - - // Variable for tests on types which implement error interface. - te := customError(10) - - spewTests = []spewTest{ - {scsDefault, fCSFdump, "", int8(127), "(int8) 127\n"}, - {scsDefault, fCSFprint, "", int16(32767), "32767"}, - {scsDefault, fCSFprintf, "%v", int32(2147483647), "2147483647"}, - {scsDefault, fCSFprintln, "", int(2147483647), "2147483647\n"}, - {scsDefault, fCSPrint, "", int64(9223372036854775807), "9223372036854775807"}, - {scsDefault, fCSPrintln, "", uint8(255), "255\n"}, - {scsDefault, fCSSdump, "", uint8(64), "(uint8) 64\n"}, - {scsDefault, fCSSprint, "", complex(1, 2), "(1+2i)"}, - {scsDefault, fCSSprintf, "%v", complex(float32(3), 4), "(3+4i)"}, - {scsDefault, fCSSprintln, "", complex(float64(5), 6), "(5+6i)\n"}, - {scsDefault, fCSErrorf, "%#v", uint16(65535), "(uint16)65535"}, - {scsDefault, fCSNewFormatter, "%v", uint32(4294967295), "4294967295"}, - {scsDefault, fErrorf, "%v", uint64(18446744073709551615), "18446744073709551615"}, - {scsDefault, fFprint, "", float32(3.14), "3.14"}, - {scsDefault, fFprintln, "", float64(6.28), "6.28\n"}, - {scsDefault, fPrint, "", true, "true"}, - {scsDefault, fPrintln, "", false, "false\n"}, - {scsDefault, fSdump, "", complex(-10, -20), "(complex128) (-10-20i)\n"}, - {scsDefault, fSprint, "", complex(-1, -2), "(-1-2i)"}, - {scsDefault, fSprintf, "%v", complex(float32(-3), -4), "(-3-4i)"}, - {scsDefault, fSprintln, "", complex(float64(-5), -6), "(-5-6i)\n"}, - {scsNoMethods, fCSFprint, "", ts, "test"}, - {scsNoMethods, fCSFprint, "", &ts, "<*>test"}, - {scsNoMethods, fCSFprint, "", tps, "test"}, - {scsNoMethods, fCSFprint, "", &tps, "<*>test"}, - {scsNoPmethods, fCSFprint, "", ts, "stringer test"}, - {scsNoPmethods, fCSFprint, "", &ts, "<*>stringer test"}, - {scsNoPmethods, fCSFprint, "", tps, "test"}, - {scsNoPmethods, fCSFprint, "", &tps, "<*>stringer test"}, - {scsMaxDepth, fCSFprint, "", dt, "{{} [] [] map[]}"}, - {scsMaxDepth, fCSFdump, "", dt, "(spew_test.depthTester) {\n" + - " ic: (spew_test.indirCir1) {\n \n },\n" + - " arr: ([1]string) (len=1 cap=1) {\n \n },\n" + - " slice: ([]string) (len=1 cap=1) {\n \n },\n" + - " m: (map[string]int) (len=1) {\n \n }\n}\n"}, - {scsContinue, fCSFprint, "", ts, "(stringer test) test"}, - {scsContinue, fCSFdump, "", ts, "(spew_test.stringer) " + - "(len=4) (stringer test) \"test\"\n"}, - {scsContinue, fCSFprint, "", te, "(error: 10) 10"}, - {scsContinue, fCSFdump, "", te, "(spew_test.customError) " + - "(error: 10) 10\n"}, - {scsNoPtrAddr, fCSFprint, "", tptr, "<*>{<*>{}}"}, - {scsNoPtrAddr, fCSSdump, "", tptr, "(*spew_test.ptrTester)({\ns: (*struct {})({\n})\n})\n"}, - {scsNoCap, fCSSdump, "", make([]string, 0, 10), "([]string) {\n}\n"}, - {scsNoCap, fCSSdump, "", make([]string, 1, 10), "([]string) (len=1) {\n(string) \"\"\n}\n"}, - } -} - -// TestSpew executes all of the tests described by spewTests. -func TestSpew(t *testing.T) { - initSpewTests() - - t.Logf("Running %d tests", len(spewTests)) - for i, test := range spewTests { - buf := new(bytes.Buffer) - switch test.f { - case fCSFdump: - test.cs.Fdump(buf, test.in) - - case fCSFprint: - test.cs.Fprint(buf, test.in) - - case fCSFprintf: - test.cs.Fprintf(buf, test.format, test.in) - - case fCSFprintln: - test.cs.Fprintln(buf, test.in) - - case fCSPrint: - b, err := redirStdout(func() { test.cs.Print(test.in) }) - if err != nil { - t.Errorf("%v #%d %v", test.f, i, err) - continue - } - buf.Write(b) - - case fCSPrintln: - b, err := redirStdout(func() { test.cs.Println(test.in) }) - if err != nil { - t.Errorf("%v #%d %v", test.f, i, err) - continue - } - buf.Write(b) - - case fCSSdump: - str := test.cs.Sdump(test.in) - buf.WriteString(str) - - case fCSSprint: - str := test.cs.Sprint(test.in) - buf.WriteString(str) - - case fCSSprintf: - str := test.cs.Sprintf(test.format, test.in) - buf.WriteString(str) - - case fCSSprintln: - str := test.cs.Sprintln(test.in) - buf.WriteString(str) - - case fCSErrorf: - err := test.cs.Errorf(test.format, test.in) - buf.WriteString(err.Error()) - - case fCSNewFormatter: - fmt.Fprintf(buf, test.format, test.cs.NewFormatter(test.in)) - - case fErrorf: - err := spew.Errorf(test.format, test.in) - buf.WriteString(err.Error()) - - case fFprint: - spew.Fprint(buf, test.in) - - case fFprintln: - spew.Fprintln(buf, test.in) - - case fPrint: - b, err := redirStdout(func() { spew.Print(test.in) }) - if err != nil { - t.Errorf("%v #%d %v", test.f, i, err) - continue - } - buf.Write(b) - - case fPrintln: - b, err := redirStdout(func() { spew.Println(test.in) }) - if err != nil { - t.Errorf("%v #%d %v", test.f, i, err) - continue - } - buf.Write(b) - - case fSdump: - str := spew.Sdump(test.in) - buf.WriteString(str) - - case fSprint: - str := spew.Sprint(test.in) - buf.WriteString(str) - - case fSprintf: - str := spew.Sprintf(test.format, test.in) - buf.WriteString(str) - - case fSprintln: - str := spew.Sprintln(test.in) - buf.WriteString(str) - - default: - t.Errorf("%v #%d unrecognized function", test.f, i) - continue - } - s := buf.String() - if test.want != s { - t.Errorf("ConfigState #%d\n got: %s want: %s", i, s, test.want) - continue - } - } -} diff --git a/vendor/github.com/davecgh/go-spew/spew/testdata/dumpcgo.go b/vendor/github.com/davecgh/go-spew/spew/testdata/dumpcgo.go deleted file mode 100644 index 5c87dd45..00000000 --- a/vendor/github.com/davecgh/go-spew/spew/testdata/dumpcgo.go +++ /dev/null @@ -1,82 +0,0 @@ -// Copyright (c) 2013 Dave Collins -// -// Permission to use, copy, modify, and distribute this software for any -// purpose with or without fee is hereby granted, provided that the above -// copyright notice and this permission notice appear in all copies. -// -// THE SOFTWARE IS PROVIDED "AS IS" AND THE AUTHOR DISCLAIMS ALL WARRANTIES -// WITH REGARD TO THIS SOFTWARE INCLUDING ALL IMPLIED WARRANTIES OF -// MERCHANTABILITY AND FITNESS. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR -// ANY SPECIAL, DIRECT, INDIRECT, OR CONSEQUENTIAL DAMAGES OR ANY DAMAGES -// WHATSOEVER RESULTING FROM LOSS OF USE, DATA OR PROFITS, WHETHER IN AN -// ACTION OF CONTRACT, NEGLIGENCE OR OTHER TORTIOUS ACTION, ARISING OUT OF -// OR IN CONNECTION WITH THE USE OR PERFORMANCE OF THIS SOFTWARE. - -// NOTE: Due to the following build constraints, this file will only be compiled -// when both cgo is supported and "-tags testcgo" is added to the go test -// command line. This code should really only be in the dumpcgo_test.go file, -// but unfortunately Go will not allow cgo in test files, so this is a -// workaround to allow cgo types to be tested. This configuration is used -// because spew itself does not require cgo to run even though it does handle -// certain cgo types specially. Rather than forcing all clients to require cgo -// and an external C compiler just to run the tests, this scheme makes them -// optional. -// +build cgo,testcgo - -package testdata - -/* -#include -typedef unsigned char custom_uchar_t; - -char *ncp = 0; -char *cp = "test"; -char ca[6] = {'t', 'e', 's', 't', '2', '\0'}; -unsigned char uca[6] = {'t', 'e', 's', 't', '3', '\0'}; -signed char sca[6] = {'t', 'e', 's', 't', '4', '\0'}; -uint8_t ui8ta[6] = {'t', 'e', 's', 't', '5', '\0'}; -custom_uchar_t tuca[6] = {'t', 'e', 's', 't', '6', '\0'}; -*/ -import "C" - -// GetCgoNullCharPointer returns a null char pointer via cgo. This is only -// used for tests. -func GetCgoNullCharPointer() interface{} { - return C.ncp -} - -// GetCgoCharPointer returns a char pointer via cgo. This is only used for -// tests. -func GetCgoCharPointer() interface{} { - return C.cp -} - -// GetCgoCharArray returns a char array via cgo and the array's len and cap. -// This is only used for tests. -func GetCgoCharArray() (interface{}, int, int) { - return C.ca, len(C.ca), cap(C.ca) -} - -// GetCgoUnsignedCharArray returns an unsigned char array via cgo and the -// array's len and cap. This is only used for tests. -func GetCgoUnsignedCharArray() (interface{}, int, int) { - return C.uca, len(C.uca), cap(C.uca) -} - -// GetCgoSignedCharArray returns a signed char array via cgo and the array's len -// and cap. This is only used for tests. -func GetCgoSignedCharArray() (interface{}, int, int) { - return C.sca, len(C.sca), cap(C.sca) -} - -// GetCgoUint8tArray returns a uint8_t array via cgo and the array's len and -// cap. This is only used for tests. -func GetCgoUint8tArray() (interface{}, int, int) { - return C.ui8ta, len(C.ui8ta), cap(C.ui8ta) -} - -// GetCgoTypdefedUnsignedCharArray returns a typedefed unsigned char array via -// cgo and the array's len and cap. This is only used for tests. -func GetCgoTypdefedUnsignedCharArray() (interface{}, int, int) { - return C.tuca, len(C.tuca), cap(C.tuca) -} diff --git a/vendor/github.com/davecgh/go-spew/test_coverage.txt b/vendor/github.com/davecgh/go-spew/test_coverage.txt deleted file mode 100644 index 2cd087a2..00000000 --- a/vendor/github.com/davecgh/go-spew/test_coverage.txt +++ /dev/null @@ -1,61 +0,0 @@ - -github.com/davecgh/go-spew/spew/dump.go dumpState.dump 100.00% (88/88) -github.com/davecgh/go-spew/spew/format.go formatState.format 100.00% (82/82) -github.com/davecgh/go-spew/spew/format.go formatState.formatPtr 100.00% (52/52) -github.com/davecgh/go-spew/spew/dump.go dumpState.dumpPtr 100.00% (44/44) -github.com/davecgh/go-spew/spew/dump.go dumpState.dumpSlice 100.00% (39/39) -github.com/davecgh/go-spew/spew/common.go handleMethods 100.00% (30/30) -github.com/davecgh/go-spew/spew/common.go printHexPtr 100.00% (18/18) -github.com/davecgh/go-spew/spew/common.go unsafeReflectValue 100.00% (13/13) -github.com/davecgh/go-spew/spew/format.go formatState.constructOrigFormat 100.00% (12/12) -github.com/davecgh/go-spew/spew/dump.go fdump 100.00% (11/11) -github.com/davecgh/go-spew/spew/format.go formatState.Format 100.00% (11/11) -github.com/davecgh/go-spew/spew/common.go init 100.00% (10/10) -github.com/davecgh/go-spew/spew/common.go printComplex 100.00% (9/9) -github.com/davecgh/go-spew/spew/common.go valuesSorter.Less 100.00% (8/8) -github.com/davecgh/go-spew/spew/format.go formatState.buildDefaultFormat 100.00% (7/7) -github.com/davecgh/go-spew/spew/format.go formatState.unpackValue 100.00% (5/5) -github.com/davecgh/go-spew/spew/dump.go dumpState.indent 100.00% (4/4) -github.com/davecgh/go-spew/spew/common.go catchPanic 100.00% (4/4) -github.com/davecgh/go-spew/spew/config.go ConfigState.convertArgs 100.00% (4/4) -github.com/davecgh/go-spew/spew/spew.go convertArgs 100.00% (4/4) -github.com/davecgh/go-spew/spew/format.go newFormatter 100.00% (3/3) -github.com/davecgh/go-spew/spew/dump.go Sdump 100.00% (3/3) -github.com/davecgh/go-spew/spew/common.go printBool 100.00% (3/3) -github.com/davecgh/go-spew/spew/common.go sortValues 100.00% (3/3) -github.com/davecgh/go-spew/spew/config.go ConfigState.Sdump 100.00% (3/3) -github.com/davecgh/go-spew/spew/dump.go dumpState.unpackValue 100.00% (3/3) -github.com/davecgh/go-spew/spew/spew.go Printf 100.00% (1/1) -github.com/davecgh/go-spew/spew/spew.go Println 100.00% (1/1) -github.com/davecgh/go-spew/spew/spew.go Sprint 100.00% (1/1) -github.com/davecgh/go-spew/spew/spew.go Sprintf 100.00% (1/1) -github.com/davecgh/go-spew/spew/spew.go Sprintln 100.00% (1/1) -github.com/davecgh/go-spew/spew/common.go printFloat 100.00% (1/1) -github.com/davecgh/go-spew/spew/config.go NewDefaultConfig 100.00% (1/1) -github.com/davecgh/go-spew/spew/common.go printInt 100.00% (1/1) -github.com/davecgh/go-spew/spew/common.go printUint 100.00% (1/1) -github.com/davecgh/go-spew/spew/common.go valuesSorter.Len 100.00% (1/1) -github.com/davecgh/go-spew/spew/common.go valuesSorter.Swap 100.00% (1/1) -github.com/davecgh/go-spew/spew/config.go ConfigState.Errorf 100.00% (1/1) -github.com/davecgh/go-spew/spew/config.go ConfigState.Fprint 100.00% (1/1) -github.com/davecgh/go-spew/spew/config.go ConfigState.Fprintf 100.00% (1/1) -github.com/davecgh/go-spew/spew/config.go ConfigState.Fprintln 100.00% (1/1) -github.com/davecgh/go-spew/spew/config.go ConfigState.Print 100.00% (1/1) -github.com/davecgh/go-spew/spew/config.go ConfigState.Printf 100.00% (1/1) -github.com/davecgh/go-spew/spew/config.go ConfigState.Println 100.00% (1/1) -github.com/davecgh/go-spew/spew/config.go ConfigState.Sprint 100.00% (1/1) -github.com/davecgh/go-spew/spew/config.go ConfigState.Sprintf 100.00% (1/1) -github.com/davecgh/go-spew/spew/config.go ConfigState.Sprintln 100.00% (1/1) -github.com/davecgh/go-spew/spew/config.go ConfigState.NewFormatter 100.00% (1/1) -github.com/davecgh/go-spew/spew/config.go ConfigState.Fdump 100.00% (1/1) -github.com/davecgh/go-spew/spew/config.go ConfigState.Dump 100.00% (1/1) -github.com/davecgh/go-spew/spew/dump.go Fdump 100.00% (1/1) -github.com/davecgh/go-spew/spew/dump.go Dump 100.00% (1/1) -github.com/davecgh/go-spew/spew/spew.go Fprintln 100.00% (1/1) -github.com/davecgh/go-spew/spew/format.go NewFormatter 100.00% (1/1) -github.com/davecgh/go-spew/spew/spew.go Errorf 100.00% (1/1) -github.com/davecgh/go-spew/spew/spew.go Fprint 100.00% (1/1) -github.com/davecgh/go-spew/spew/spew.go Fprintf 100.00% (1/1) -github.com/davecgh/go-spew/spew/spew.go Print 100.00% (1/1) -github.com/davecgh/go-spew/spew ------------------------------- 100.00% (505/505) - diff --git a/vendor/github.com/google/uuid/.travis.yml b/vendor/github.com/google/uuid/.travis.yml deleted file mode 100644 index d8156a60..00000000 --- a/vendor/github.com/google/uuid/.travis.yml +++ /dev/null @@ -1,9 +0,0 @@ -language: go - -go: - - 1.4.3 - - 1.5.3 - - tip - -script: - - go test -v ./... diff --git a/vendor/github.com/google/uuid/CONTRIBUTING.md b/vendor/github.com/google/uuid/CONTRIBUTING.md deleted file mode 100644 index 04fdf09f..00000000 --- a/vendor/github.com/google/uuid/CONTRIBUTING.md +++ /dev/null @@ -1,10 +0,0 @@ -# How to contribute - -We definitely welcome patches and contribution to this project! - -### Legal requirements - -In order to protect both you and ourselves, you will need to sign the -[Contributor License Agreement](https://cla.developers.google.com/clas). - -You may have already signed it for other Google projects. diff --git a/vendor/github.com/google/uuid/CONTRIBUTORS b/vendor/github.com/google/uuid/CONTRIBUTORS deleted file mode 100644 index b4bb97f6..00000000 --- a/vendor/github.com/google/uuid/CONTRIBUTORS +++ /dev/null @@ -1,9 +0,0 @@ -Paul Borman -bmatsuo -shawnps -theory -jboverfelt -dsymonds -cd1 -wallclockbuilder -dansouza diff --git a/vendor/github.com/google/uuid/LICENSE b/vendor/github.com/google/uuid/LICENSE deleted file mode 100644 index 5dc68268..00000000 --- a/vendor/github.com/google/uuid/LICENSE +++ /dev/null @@ -1,27 +0,0 @@ -Copyright (c) 2009,2014 Google Inc. All rights reserved. - -Redistribution and use in source and binary forms, with or without -modification, are permitted provided that the following conditions are -met: - - * Redistributions of source code must retain the above copyright -notice, this list of conditions and the following disclaimer. - * Redistributions in binary form must reproduce the above -copyright notice, this list of conditions and the following disclaimer -in the documentation and/or other materials provided with the -distribution. - * Neither the name of Google Inc. nor the names of its -contributors may be used to endorse or promote products derived from -this software without specific prior written permission. - -THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS -"AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT -LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR -A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT -LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, -DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY -THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT -(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE -OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. diff --git a/vendor/github.com/google/uuid/README.md b/vendor/github.com/google/uuid/README.md deleted file mode 100644 index 9d92c11f..00000000 --- a/vendor/github.com/google/uuid/README.md +++ /dev/null @@ -1,19 +0,0 @@ -# uuid ![build status](https://travis-ci.org/google/uuid.svg?branch=master) -The uuid package generates and inspects UUIDs based on -[RFC 4122](http://tools.ietf.org/html/rfc4122) -and DCE 1.1: Authentication and Security Services. - -This package is based on the github.com/pborman/uuid package (previously named -code.google.com/p/go-uuid). It differs from these earlier packages in that -a UUID is a 16 byte array rather than a byte slice. One loss due to this -change is the ability to represent an invalid UUID (vs a NIL UUID). - -###### Install -`go get github.com/google/uuid` - -###### Documentation -[![GoDoc](https://godoc.org/github.com/google/uuid?status.svg)](http://godoc.org/github.com/google/uuid) - -Full `go doc` style documentation for the package can be viewed online without -installing this package by using the GoDoc site here: -http://godoc.org/github.com/google/uuid diff --git a/vendor/github.com/google/uuid/dce.go b/vendor/github.com/google/uuid/dce.go deleted file mode 100644 index fa820b9d..00000000 --- a/vendor/github.com/google/uuid/dce.go +++ /dev/null @@ -1,80 +0,0 @@ -// Copyright 2016 Google Inc. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package uuid - -import ( - "encoding/binary" - "fmt" - "os" -) - -// A Domain represents a Version 2 domain -type Domain byte - -// Domain constants for DCE Security (Version 2) UUIDs. -const ( - Person = Domain(0) - Group = Domain(1) - Org = Domain(2) -) - -// NewDCESecurity returns a DCE Security (Version 2) UUID. -// -// The domain should be one of Person, Group or Org. -// On a POSIX system the id should be the users UID for the Person -// domain and the users GID for the Group. The meaning of id for -// the domain Org or on non-POSIX systems is site defined. -// -// For a given domain/id pair the same token may be returned for up to -// 7 minutes and 10 seconds. -func NewDCESecurity(domain Domain, id uint32) (UUID, error) { - uuid, err := NewUUID() - if err == nil { - uuid[6] = (uuid[6] & 0x0f) | 0x20 // Version 2 - uuid[9] = byte(domain) - binary.BigEndian.PutUint32(uuid[0:], id) - } - return uuid, err -} - -// NewDCEPerson returns a DCE Security (Version 2) UUID in the person -// domain with the id returned by os.Getuid. -// -// NewDCESecurity(Person, uint32(os.Getuid())) -func NewDCEPerson() (UUID, error) { - return NewDCESecurity(Person, uint32(os.Getuid())) -} - -// NewDCEGroup returns a DCE Security (Version 2) UUID in the group -// domain with the id returned by os.Getgid. -// -// NewDCESecurity(Group, uint32(os.Getgid())) -func NewDCEGroup() (UUID, error) { - return NewDCESecurity(Group, uint32(os.Getgid())) -} - -// Domain returns the domain for a Version 2 UUID. Domains are only defined -// for Version 2 UUIDs. -func (uuid UUID) Domain() Domain { - return Domain(uuid[9]) -} - -// ID returns the id for a Version 2 UUID. IDs are only defined for Version 2 -// UUIDs. -func (uuid UUID) ID() uint32 { - return binary.BigEndian.Uint32(uuid[0:4]) -} - -func (d Domain) String() string { - switch d { - case Person: - return "Person" - case Group: - return "Group" - case Org: - return "Org" - } - return fmt.Sprintf("Domain%d", int(d)) -} diff --git a/vendor/github.com/google/uuid/doc.go b/vendor/github.com/google/uuid/doc.go deleted file mode 100644 index 5b8a4b9a..00000000 --- a/vendor/github.com/google/uuid/doc.go +++ /dev/null @@ -1,12 +0,0 @@ -// Copyright 2016 Google Inc. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// Package uuid generates and inspects UUIDs. -// -// UUIDs are based on RFC 4122 and DCE 1.1: Authentication and Security -// Services. -// -// A UUID is a 16 byte (128 bit) array. UUIDs may be used as keys to -// maps or compared directly. -package uuid diff --git a/vendor/github.com/google/uuid/go.mod b/vendor/github.com/google/uuid/go.mod deleted file mode 100644 index fc84cd79..00000000 --- a/vendor/github.com/google/uuid/go.mod +++ /dev/null @@ -1 +0,0 @@ -module github.com/google/uuid diff --git a/vendor/github.com/google/uuid/hash.go b/vendor/github.com/google/uuid/hash.go deleted file mode 100644 index b1746163..00000000 --- a/vendor/github.com/google/uuid/hash.go +++ /dev/null @@ -1,53 +0,0 @@ -// Copyright 2016 Google Inc. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package uuid - -import ( - "crypto/md5" - "crypto/sha1" - "hash" -) - -// Well known namespace IDs and UUIDs -var ( - NameSpaceDNS = Must(Parse("6ba7b810-9dad-11d1-80b4-00c04fd430c8")) - NameSpaceURL = Must(Parse("6ba7b811-9dad-11d1-80b4-00c04fd430c8")) - NameSpaceOID = Must(Parse("6ba7b812-9dad-11d1-80b4-00c04fd430c8")) - NameSpaceX500 = Must(Parse("6ba7b814-9dad-11d1-80b4-00c04fd430c8")) - Nil UUID // empty UUID, all zeros -) - -// NewHash returns a new UUID derived from the hash of space concatenated with -// data generated by h. The hash should be at least 16 byte in length. The -// first 16 bytes of the hash are used to form the UUID. The version of the -// UUID will be the lower 4 bits of version. NewHash is used to implement -// NewMD5 and NewSHA1. -func NewHash(h hash.Hash, space UUID, data []byte, version int) UUID { - h.Reset() - h.Write(space[:]) - h.Write(data) - s := h.Sum(nil) - var uuid UUID - copy(uuid[:], s) - uuid[6] = (uuid[6] & 0x0f) | uint8((version&0xf)<<4) - uuid[8] = (uuid[8] & 0x3f) | 0x80 // RFC 4122 variant - return uuid -} - -// NewMD5 returns a new MD5 (Version 3) UUID based on the -// supplied name space and data. It is the same as calling: -// -// NewHash(md5.New(), space, data, 3) -func NewMD5(space UUID, data []byte) UUID { - return NewHash(md5.New(), space, data, 3) -} - -// NewSHA1 returns a new SHA1 (Version 5) UUID based on the -// supplied name space and data. It is the same as calling: -// -// NewHash(sha1.New(), space, data, 5) -func NewSHA1(space UUID, data []byte) UUID { - return NewHash(sha1.New(), space, data, 5) -} diff --git a/vendor/github.com/google/uuid/json_test.go b/vendor/github.com/google/uuid/json_test.go deleted file mode 100644 index 245f91ed..00000000 --- a/vendor/github.com/google/uuid/json_test.go +++ /dev/null @@ -1,62 +0,0 @@ -// Copyright 2016 Google Inc. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package uuid - -import ( - "encoding/json" - "reflect" - "testing" -) - -var testUUID = Must(Parse("f47ac10b-58cc-0372-8567-0e02b2c3d479")) - -func TestJSON(t *testing.T) { - type S struct { - ID1 UUID - ID2 UUID - } - s1 := S{ID1: testUUID} - data, err := json.Marshal(&s1) - if err != nil { - t.Fatal(err) - } - var s2 S - if err := json.Unmarshal(data, &s2); err != nil { - t.Fatal(err) - } - if !reflect.DeepEqual(&s1, &s2) { - t.Errorf("got %#v, want %#v", s2, s1) - } -} - -func BenchmarkUUID_MarshalJSON(b *testing.B) { - x := &struct { - UUID UUID `json:"uuid"` - }{} - var err error - x.UUID, err = Parse("f47ac10b-58cc-0372-8567-0e02b2c3d479") - if err != nil { - b.Fatal(err) - } - for i := 0; i < b.N; i++ { - js, err := json.Marshal(x) - if err != nil { - b.Fatalf("marshal json: %#v (%v)", js, err) - } - } -} - -func BenchmarkUUID_UnmarshalJSON(b *testing.B) { - js := []byte(`{"uuid":"f47ac10b-58cc-0372-8567-0e02b2c3d479"}`) - var x *struct { - UUID UUID `json:"uuid"` - } - for i := 0; i < b.N; i++ { - err := json.Unmarshal(js, &x) - if err != nil { - b.Fatalf("marshal json: %#v (%v)", js, err) - } - } -} diff --git a/vendor/github.com/google/uuid/marshal.go b/vendor/github.com/google/uuid/marshal.go deleted file mode 100644 index 7f9e0c6c..00000000 --- a/vendor/github.com/google/uuid/marshal.go +++ /dev/null @@ -1,37 +0,0 @@ -// Copyright 2016 Google Inc. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package uuid - -import "fmt" - -// MarshalText implements encoding.TextMarshaler. -func (uuid UUID) MarshalText() ([]byte, error) { - var js [36]byte - encodeHex(js[:], uuid) - return js[:], nil -} - -// UnmarshalText implements encoding.TextUnmarshaler. -func (uuid *UUID) UnmarshalText(data []byte) error { - id, err := ParseBytes(data) - if err == nil { - *uuid = id - } - return err -} - -// MarshalBinary implements encoding.BinaryMarshaler. -func (uuid UUID) MarshalBinary() ([]byte, error) { - return uuid[:], nil -} - -// UnmarshalBinary implements encoding.BinaryUnmarshaler. -func (uuid *UUID) UnmarshalBinary(data []byte) error { - if len(data) != 16 { - return fmt.Errorf("invalid UUID (got %d bytes)", len(data)) - } - copy(uuid[:], data) - return nil -} diff --git a/vendor/github.com/google/uuid/node.go b/vendor/github.com/google/uuid/node.go deleted file mode 100644 index d651a2b0..00000000 --- a/vendor/github.com/google/uuid/node.go +++ /dev/null @@ -1,90 +0,0 @@ -// Copyright 2016 Google Inc. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package uuid - -import ( - "sync" -) - -var ( - nodeMu sync.Mutex - ifname string // name of interface being used - nodeID [6]byte // hardware for version 1 UUIDs - zeroID [6]byte // nodeID with only 0's -) - -// NodeInterface returns the name of the interface from which the NodeID was -// derived. The interface "user" is returned if the NodeID was set by -// SetNodeID. -func NodeInterface() string { - defer nodeMu.Unlock() - nodeMu.Lock() - return ifname -} - -// SetNodeInterface selects the hardware address to be used for Version 1 UUIDs. -// If name is "" then the first usable interface found will be used or a random -// Node ID will be generated. If a named interface cannot be found then false -// is returned. -// -// SetNodeInterface never fails when name is "". -func SetNodeInterface(name string) bool { - defer nodeMu.Unlock() - nodeMu.Lock() - return setNodeInterface(name) -} - -func setNodeInterface(name string) bool { - iname, addr := getHardwareInterface(name) // null implementation for js - if iname != "" && addr != nil { - ifname = iname - copy(nodeID[:], addr) - return true - } - - // We found no interfaces with a valid hardware address. If name - // does not specify a specific interface generate a random Node ID - // (section 4.1.6) - if name == "" { - ifname = "random" - randomBits(nodeID[:]) - return true - } - return false -} - -// NodeID returns a slice of a copy of the current Node ID, setting the Node ID -// if not already set. -func NodeID() []byte { - defer nodeMu.Unlock() - nodeMu.Lock() - if nodeID == zeroID { - setNodeInterface("") - } - nid := nodeID - return nid[:] -} - -// SetNodeID sets the Node ID to be used for Version 1 UUIDs. The first 6 bytes -// of id are used. If id is less than 6 bytes then false is returned and the -// Node ID is not set. -func SetNodeID(id []byte) bool { - if len(id) < 6 { - return false - } - defer nodeMu.Unlock() - nodeMu.Lock() - copy(nodeID[:], id) - ifname = "user" - return true -} - -// NodeID returns the 6 byte node id encoded in uuid. It returns nil if uuid is -// not valid. The NodeID is only well defined for version 1 and 2 UUIDs. -func (uuid UUID) NodeID() []byte { - var node [6]byte - copy(node[:], uuid[10:]) - return node[:] -} diff --git a/vendor/github.com/google/uuid/node_js.go b/vendor/github.com/google/uuid/node_js.go deleted file mode 100644 index 24b78edc..00000000 --- a/vendor/github.com/google/uuid/node_js.go +++ /dev/null @@ -1,12 +0,0 @@ -// Copyright 2017 Google Inc. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build js - -package uuid - -// getHardwareInterface returns nil values for the JS version of the code. -// This remvoves the "net" dependency, because it is not used in the browser. -// Using the "net" library inflates the size of the transpiled JS code by 673k bytes. -func getHardwareInterface(name string) (string, []byte) { return "", nil } diff --git a/vendor/github.com/google/uuid/node_net.go b/vendor/github.com/google/uuid/node_net.go deleted file mode 100644 index 0cbbcddb..00000000 --- a/vendor/github.com/google/uuid/node_net.go +++ /dev/null @@ -1,33 +0,0 @@ -// Copyright 2017 Google Inc. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -// +build !js - -package uuid - -import "net" - -var interfaces []net.Interface // cached list of interfaces - -// getHardwareInterface returns the name and hardware address of interface name. -// If name is "" then the name and hardware address of one of the system's -// interfaces is returned. If no interfaces are found (name does not exist or -// there are no interfaces) then "", nil is returned. -// -// Only addresses of at least 6 bytes are returned. -func getHardwareInterface(name string) (string, []byte) { - if interfaces == nil { - var err error - interfaces, err = net.Interfaces() - if err != nil { - return "", nil - } - } - for _, ifs := range interfaces { - if len(ifs.HardwareAddr) >= 6 && (name == "" || name == ifs.Name) { - return ifs.Name, ifs.HardwareAddr - } - } - return "", nil -} diff --git a/vendor/github.com/google/uuid/seq_test.go b/vendor/github.com/google/uuid/seq_test.go deleted file mode 100644 index 4f6c5491..00000000 --- a/vendor/github.com/google/uuid/seq_test.go +++ /dev/null @@ -1,66 +0,0 @@ -// Copyright 2016 Google Inc. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package uuid - -import ( - "flag" - "runtime" - "testing" - "time" -) - -// This test is only run when --regressions is passed on the go test line. -var regressions = flag.Bool("regressions", false, "run uuid regression tests") - -// TestClockSeqRace tests for a particular race condition of returning two -// identical Version1 UUIDs. The duration of 1 minute was chosen as the race -// condition, before being fixed, nearly always occurred in under 30 seconds. -func TestClockSeqRace(t *testing.T) { - if !*regressions { - t.Skip("skipping regression tests") - } - duration := time.Minute - - done := make(chan struct{}) - defer close(done) - - ch := make(chan UUID, 10000) - ncpu := runtime.NumCPU() - switch ncpu { - case 0, 1: - // We can't run the test effectively. - t.Skip("skipping race test, only one CPU detected") - return - default: - runtime.GOMAXPROCS(ncpu) - } - for i := 0; i < ncpu; i++ { - go func() { - for { - select { - case <-done: - return - case ch <- Must(NewUUID()): - } - } - }() - } - - uuids := make(map[string]bool) - cnt := 0 - start := time.Now() - for u := range ch { - s := u.String() - if uuids[s] { - t.Errorf("duplicate uuid after %d in %v: %s", cnt, time.Since(start), s) - return - } - uuids[s] = true - if time.Since(start) > duration { - return - } - cnt++ - } -} diff --git a/vendor/github.com/google/uuid/sql.go b/vendor/github.com/google/uuid/sql.go deleted file mode 100644 index f326b54d..00000000 --- a/vendor/github.com/google/uuid/sql.go +++ /dev/null @@ -1,59 +0,0 @@ -// Copyright 2016 Google Inc. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package uuid - -import ( - "database/sql/driver" - "fmt" -) - -// Scan implements sql.Scanner so UUIDs can be read from databases transparently -// Currently, database types that map to string and []byte are supported. Please -// consult database-specific driver documentation for matching types. -func (uuid *UUID) Scan(src interface{}) error { - switch src := src.(type) { - case nil: - return nil - - case string: - // if an empty UUID comes from a table, we return a null UUID - if src == "" { - return nil - } - - // see Parse for required string format - u, err := Parse(src) - if err != nil { - return fmt.Errorf("Scan: %v", err) - } - - *uuid = u - - case []byte: - // if an empty UUID comes from a table, we return a null UUID - if len(src) == 0 { - return nil - } - - // assumes a simple slice of bytes if 16 bytes - // otherwise attempts to parse - if len(src) != 16 { - return uuid.Scan(string(src)) - } - copy((*uuid)[:], src) - - default: - return fmt.Errorf("Scan: unable to scan type %T into UUID", src) - } - - return nil -} - -// Value implements sql.Valuer so that UUIDs can be written to databases -// transparently. Currently, UUIDs map to strings. Please consult -// database-specific driver documentation for matching types. -func (uuid UUID) Value() (driver.Value, error) { - return uuid.String(), nil -} diff --git a/vendor/github.com/google/uuid/sql_test.go b/vendor/github.com/google/uuid/sql_test.go deleted file mode 100644 index 1803dfd8..00000000 --- a/vendor/github.com/google/uuid/sql_test.go +++ /dev/null @@ -1,113 +0,0 @@ -// Copyright 2016 Google Inc. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package uuid - -import ( - "strings" - "testing" -) - -func TestScan(t *testing.T) { - stringTest := "f47ac10b-58cc-0372-8567-0e02b2c3d479" - badTypeTest := 6 - invalidTest := "f47ac10b-58cc-0372-8567-0e02b2c3d4" - - byteTest := make([]byte, 16) - byteTestUUID := Must(Parse(stringTest)) - copy(byteTest, byteTestUUID[:]) - - // sunny day tests - - var uuid UUID - err := (&uuid).Scan(stringTest) - if err != nil { - t.Fatal(err) - } - - err = (&uuid).Scan([]byte(stringTest)) - if err != nil { - t.Fatal(err) - } - - err = (&uuid).Scan(byteTest) - if err != nil { - t.Fatal(err) - } - - // bad type tests - - err = (&uuid).Scan(badTypeTest) - if err == nil { - t.Error("int correctly parsed and shouldn't have") - } - if !strings.Contains(err.Error(), "unable to scan type") { - t.Error("attempting to parse an int returned an incorrect error message") - } - - // invalid/incomplete uuids - - err = (&uuid).Scan(invalidTest) - if err == nil { - t.Error("invalid uuid was parsed without error") - } - if !strings.Contains(err.Error(), "invalid UUID") { - t.Error("attempting to parse an invalid UUID returned an incorrect error message") - } - - err = (&uuid).Scan(byteTest[:len(byteTest)-2]) - if err == nil { - t.Error("invalid byte uuid was parsed without error") - } - if !strings.Contains(err.Error(), "invalid UUID") { - t.Error("attempting to parse an invalid byte UUID returned an incorrect error message") - } - - // empty tests - - uuid = UUID{} - var emptySlice []byte - err = (&uuid).Scan(emptySlice) - if err != nil { - t.Fatal(err) - } - - for _, v := range uuid { - if v != 0 { - t.Error("UUID was not nil after scanning empty byte slice") - } - } - - uuid = UUID{} - var emptyString string - err = (&uuid).Scan(emptyString) - if err != nil { - t.Fatal(err) - } - for _, v := range uuid { - if v != 0 { - t.Error("UUID was not nil after scanning empty byte slice") - } - } - - uuid = UUID{} - err = (&uuid).Scan(nil) - if err != nil { - t.Fatal(err) - } - for _, v := range uuid { - if v != 0 { - t.Error("UUID was not nil after scanning nil") - } - } -} - -func TestValue(t *testing.T) { - stringTest := "f47ac10b-58cc-0372-8567-0e02b2c3d479" - uuid := Must(Parse(stringTest)) - val, _ := uuid.Value() - if val != stringTest { - t.Error("Value() did not return expected string") - } -} diff --git a/vendor/github.com/google/uuid/time.go b/vendor/github.com/google/uuid/time.go deleted file mode 100644 index e6ef06cd..00000000 --- a/vendor/github.com/google/uuid/time.go +++ /dev/null @@ -1,123 +0,0 @@ -// Copyright 2016 Google Inc. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package uuid - -import ( - "encoding/binary" - "sync" - "time" -) - -// A Time represents a time as the number of 100's of nanoseconds since 15 Oct -// 1582. -type Time int64 - -const ( - lillian = 2299160 // Julian day of 15 Oct 1582 - unix = 2440587 // Julian day of 1 Jan 1970 - epoch = unix - lillian // Days between epochs - g1582 = epoch * 86400 // seconds between epochs - g1582ns100 = g1582 * 10000000 // 100s of a nanoseconds between epochs -) - -var ( - timeMu sync.Mutex - lasttime uint64 // last time we returned - clockSeq uint16 // clock sequence for this run - - timeNow = time.Now // for testing -) - -// UnixTime converts t the number of seconds and nanoseconds using the Unix -// epoch of 1 Jan 1970. -func (t Time) UnixTime() (sec, nsec int64) { - sec = int64(t - g1582ns100) - nsec = (sec % 10000000) * 100 - sec /= 10000000 - return sec, nsec -} - -// GetTime returns the current Time (100s of nanoseconds since 15 Oct 1582) and -// clock sequence as well as adjusting the clock sequence as needed. An error -// is returned if the current time cannot be determined. -func GetTime() (Time, uint16, error) { - defer timeMu.Unlock() - timeMu.Lock() - return getTime() -} - -func getTime() (Time, uint16, error) { - t := timeNow() - - // If we don't have a clock sequence already, set one. - if clockSeq == 0 { - setClockSequence(-1) - } - now := uint64(t.UnixNano()/100) + g1582ns100 - - // If time has gone backwards with this clock sequence then we - // increment the clock sequence - if now <= lasttime { - clockSeq = ((clockSeq + 1) & 0x3fff) | 0x8000 - } - lasttime = now - return Time(now), clockSeq, nil -} - -// ClockSequence returns the current clock sequence, generating one if not -// already set. The clock sequence is only used for Version 1 UUIDs. -// -// The uuid package does not use global static storage for the clock sequence or -// the last time a UUID was generated. Unless SetClockSequence is used, a new -// random clock sequence is generated the first time a clock sequence is -// requested by ClockSequence, GetTime, or NewUUID. (section 4.2.1.1) -func ClockSequence() int { - defer timeMu.Unlock() - timeMu.Lock() - return clockSequence() -} - -func clockSequence() int { - if clockSeq == 0 { - setClockSequence(-1) - } - return int(clockSeq & 0x3fff) -} - -// SetClockSequence sets the clock sequence to the lower 14 bits of seq. Setting to -// -1 causes a new sequence to be generated. -func SetClockSequence(seq int) { - defer timeMu.Unlock() - timeMu.Lock() - setClockSequence(seq) -} - -func setClockSequence(seq int) { - if seq == -1 { - var b [2]byte - randomBits(b[:]) // clock sequence - seq = int(b[0])<<8 | int(b[1]) - } - oldSeq := clockSeq - clockSeq = uint16(seq&0x3fff) | 0x8000 // Set our variant - if oldSeq != clockSeq { - lasttime = 0 - } -} - -// Time returns the time in 100s of nanoseconds since 15 Oct 1582 encoded in -// uuid. The time is only defined for version 1 and 2 UUIDs. -func (uuid UUID) Time() Time { - time := int64(binary.BigEndian.Uint32(uuid[0:4])) - time |= int64(binary.BigEndian.Uint16(uuid[4:6])) << 32 - time |= int64(binary.BigEndian.Uint16(uuid[6:8])&0xfff) << 48 - return Time(time) -} - -// ClockSequence returns the clock sequence encoded in uuid. -// The clock sequence is only well defined for version 1 and 2 UUIDs. -func (uuid UUID) ClockSequence() int { - return int(binary.BigEndian.Uint16(uuid[8:10])) & 0x3fff -} diff --git a/vendor/github.com/google/uuid/util.go b/vendor/github.com/google/uuid/util.go deleted file mode 100644 index 5ea6c737..00000000 --- a/vendor/github.com/google/uuid/util.go +++ /dev/null @@ -1,43 +0,0 @@ -// Copyright 2016 Google Inc. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package uuid - -import ( - "io" -) - -// randomBits completely fills slice b with random data. -func randomBits(b []byte) { - if _, err := io.ReadFull(rander, b); err != nil { - panic(err.Error()) // rand should never fail - } -} - -// xvalues returns the value of a byte as a hexadecimal digit or 255. -var xvalues = [256]byte{ - 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, - 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, - 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, - 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 255, 255, 255, 255, 255, 255, - 255, 10, 11, 12, 13, 14, 15, 255, 255, 255, 255, 255, 255, 255, 255, 255, - 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, - 255, 10, 11, 12, 13, 14, 15, 255, 255, 255, 255, 255, 255, 255, 255, 255, - 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, - 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, - 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, - 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, - 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, - 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, - 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, - 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, - 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, 255, -} - -// xtob converts hex characters x1 and x2 into a byte. -func xtob(x1, x2 byte) (byte, bool) { - b1 := xvalues[x1] - b2 := xvalues[x2] - return (b1 << 4) | b2, b1 != 255 && b2 != 255 -} diff --git a/vendor/github.com/google/uuid/uuid.go b/vendor/github.com/google/uuid/uuid.go deleted file mode 100644 index 524404cc..00000000 --- a/vendor/github.com/google/uuid/uuid.go +++ /dev/null @@ -1,245 +0,0 @@ -// Copyright 2018 Google Inc. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package uuid - -import ( - "bytes" - "crypto/rand" - "encoding/hex" - "errors" - "fmt" - "io" - "strings" -) - -// A UUID is a 128 bit (16 byte) Universal Unique IDentifier as defined in RFC -// 4122. -type UUID [16]byte - -// A Version represents a UUID's version. -type Version byte - -// A Variant represents a UUID's variant. -type Variant byte - -// Constants returned by Variant. -const ( - Invalid = Variant(iota) // Invalid UUID - RFC4122 // The variant specified in RFC4122 - Reserved // Reserved, NCS backward compatibility. - Microsoft // Reserved, Microsoft Corporation backward compatibility. - Future // Reserved for future definition. -) - -var rander = rand.Reader // random function - -// Parse decodes s into a UUID or returns an error. Both the standard UUID -// forms of xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx and -// urn:uuid:xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx are decoded as well as the -// Microsoft encoding {xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx} and the raw hex -// encoding: xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx. -func Parse(s string) (UUID, error) { - var uuid UUID - switch len(s) { - // xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx - case 36: - - // urn:uuid:xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx - case 36 + 9: - if strings.ToLower(s[:9]) != "urn:uuid:" { - return uuid, fmt.Errorf("invalid urn prefix: %q", s[:9]) - } - s = s[9:] - - // {xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx} - case 36 + 2: - s = s[1:] - - // xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx - case 32: - var ok bool - for i := range uuid { - uuid[i], ok = xtob(s[i*2], s[i*2+1]) - if !ok { - return uuid, errors.New("invalid UUID format") - } - } - return uuid, nil - default: - return uuid, fmt.Errorf("invalid UUID length: %d", len(s)) - } - // s is now at least 36 bytes long - // it must be of the form xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx - if s[8] != '-' || s[13] != '-' || s[18] != '-' || s[23] != '-' { - return uuid, errors.New("invalid UUID format") - } - for i, x := range [16]int{ - 0, 2, 4, 6, - 9, 11, - 14, 16, - 19, 21, - 24, 26, 28, 30, 32, 34} { - v, ok := xtob(s[x], s[x+1]) - if !ok { - return uuid, errors.New("invalid UUID format") - } - uuid[i] = v - } - return uuid, nil -} - -// ParseBytes is like Parse, except it parses a byte slice instead of a string. -func ParseBytes(b []byte) (UUID, error) { - var uuid UUID - switch len(b) { - case 36: // xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx - case 36 + 9: // urn:uuid:xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx - if !bytes.Equal(bytes.ToLower(b[:9]), []byte("urn:uuid:")) { - return uuid, fmt.Errorf("invalid urn prefix: %q", b[:9]) - } - b = b[9:] - case 36 + 2: // {xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx} - b = b[1:] - case 32: // xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx - var ok bool - for i := 0; i < 32; i += 2 { - uuid[i/2], ok = xtob(b[i], b[i+1]) - if !ok { - return uuid, errors.New("invalid UUID format") - } - } - return uuid, nil - default: - return uuid, fmt.Errorf("invalid UUID length: %d", len(b)) - } - // s is now at least 36 bytes long - // it must be of the form xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx - if b[8] != '-' || b[13] != '-' || b[18] != '-' || b[23] != '-' { - return uuid, errors.New("invalid UUID format") - } - for i, x := range [16]int{ - 0, 2, 4, 6, - 9, 11, - 14, 16, - 19, 21, - 24, 26, 28, 30, 32, 34} { - v, ok := xtob(b[x], b[x+1]) - if !ok { - return uuid, errors.New("invalid UUID format") - } - uuid[i] = v - } - return uuid, nil -} - -// MustParse is like Parse but panics if the string cannot be parsed. -// It simplifies safe initialization of global variables holding compiled UUIDs. -func MustParse(s string) UUID { - uuid, err := Parse(s) - if err != nil { - panic(`uuid: Parse(` + s + `): ` + err.Error()) - } - return uuid -} - -// FromBytes creates a new UUID from a byte slice. Returns an error if the slice -// does not have a length of 16. The bytes are copied from the slice. -func FromBytes(b []byte) (uuid UUID, err error) { - err = uuid.UnmarshalBinary(b) - return uuid, err -} - -// Must returns uuid if err is nil and panics otherwise. -func Must(uuid UUID, err error) UUID { - if err != nil { - panic(err) - } - return uuid -} - -// String returns the string form of uuid, xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx -// , or "" if uuid is invalid. -func (uuid UUID) String() string { - var buf [36]byte - encodeHex(buf[:], uuid) - return string(buf[:]) -} - -// URN returns the RFC 2141 URN form of uuid, -// urn:uuid:xxxxxxxx-xxxx-xxxx-xxxx-xxxxxxxxxxxx, or "" if uuid is invalid. -func (uuid UUID) URN() string { - var buf [36 + 9]byte - copy(buf[:], "urn:uuid:") - encodeHex(buf[9:], uuid) - return string(buf[:]) -} - -func encodeHex(dst []byte, uuid UUID) { - hex.Encode(dst, uuid[:4]) - dst[8] = '-' - hex.Encode(dst[9:13], uuid[4:6]) - dst[13] = '-' - hex.Encode(dst[14:18], uuid[6:8]) - dst[18] = '-' - hex.Encode(dst[19:23], uuid[8:10]) - dst[23] = '-' - hex.Encode(dst[24:], uuid[10:]) -} - -// Variant returns the variant encoded in uuid. -func (uuid UUID) Variant() Variant { - switch { - case (uuid[8] & 0xc0) == 0x80: - return RFC4122 - case (uuid[8] & 0xe0) == 0xc0: - return Microsoft - case (uuid[8] & 0xe0) == 0xe0: - return Future - default: - return Reserved - } -} - -// Version returns the version of uuid. -func (uuid UUID) Version() Version { - return Version(uuid[6] >> 4) -} - -func (v Version) String() string { - if v > 15 { - return fmt.Sprintf("BAD_VERSION_%d", v) - } - return fmt.Sprintf("VERSION_%d", v) -} - -func (v Variant) String() string { - switch v { - case RFC4122: - return "RFC4122" - case Reserved: - return "Reserved" - case Microsoft: - return "Microsoft" - case Future: - return "Future" - case Invalid: - return "Invalid" - } - return fmt.Sprintf("BadVariant%d", int(v)) -} - -// SetRand sets the random number generator to r, which implements io.Reader. -// If r.Read returns an error when the package requests random data then -// a panic will be issued. -// -// Calling SetRand with nil sets the random number generator to the default -// generator. -func SetRand(r io.Reader) { - if r == nil { - rander = rand.Reader - return - } - rander = r -} diff --git a/vendor/github.com/google/uuid/uuid_test.go b/vendor/github.com/google/uuid/uuid_test.go deleted file mode 100644 index e7876f15..00000000 --- a/vendor/github.com/google/uuid/uuid_test.go +++ /dev/null @@ -1,559 +0,0 @@ -// Copyright 2016 Google Inc. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package uuid - -import ( - "bytes" - "fmt" - "os" - "runtime" - "strings" - "testing" - "time" - "unsafe" -) - -type test struct { - in string - version Version - variant Variant - isuuid bool -} - -var tests = []test{ - {"f47ac10b-58cc-0372-8567-0e02b2c3d479", 0, RFC4122, true}, - {"f47ac10b-58cc-1372-8567-0e02b2c3d479", 1, RFC4122, true}, - {"f47ac10b-58cc-2372-8567-0e02b2c3d479", 2, RFC4122, true}, - {"f47ac10b-58cc-3372-8567-0e02b2c3d479", 3, RFC4122, true}, - {"f47ac10b-58cc-4372-8567-0e02b2c3d479", 4, RFC4122, true}, - {"f47ac10b-58cc-5372-8567-0e02b2c3d479", 5, RFC4122, true}, - {"f47ac10b-58cc-6372-8567-0e02b2c3d479", 6, RFC4122, true}, - {"f47ac10b-58cc-7372-8567-0e02b2c3d479", 7, RFC4122, true}, - {"f47ac10b-58cc-8372-8567-0e02b2c3d479", 8, RFC4122, true}, - {"f47ac10b-58cc-9372-8567-0e02b2c3d479", 9, RFC4122, true}, - {"f47ac10b-58cc-a372-8567-0e02b2c3d479", 10, RFC4122, true}, - {"f47ac10b-58cc-b372-8567-0e02b2c3d479", 11, RFC4122, true}, - {"f47ac10b-58cc-c372-8567-0e02b2c3d479", 12, RFC4122, true}, - {"f47ac10b-58cc-d372-8567-0e02b2c3d479", 13, RFC4122, true}, - {"f47ac10b-58cc-e372-8567-0e02b2c3d479", 14, RFC4122, true}, - {"f47ac10b-58cc-f372-8567-0e02b2c3d479", 15, RFC4122, true}, - - {"urn:uuid:f47ac10b-58cc-4372-0567-0e02b2c3d479", 4, Reserved, true}, - {"URN:UUID:f47ac10b-58cc-4372-0567-0e02b2c3d479", 4, Reserved, true}, - {"f47ac10b-58cc-4372-0567-0e02b2c3d479", 4, Reserved, true}, - {"f47ac10b-58cc-4372-1567-0e02b2c3d479", 4, Reserved, true}, - {"f47ac10b-58cc-4372-2567-0e02b2c3d479", 4, Reserved, true}, - {"f47ac10b-58cc-4372-3567-0e02b2c3d479", 4, Reserved, true}, - {"f47ac10b-58cc-4372-4567-0e02b2c3d479", 4, Reserved, true}, - {"f47ac10b-58cc-4372-5567-0e02b2c3d479", 4, Reserved, true}, - {"f47ac10b-58cc-4372-6567-0e02b2c3d479", 4, Reserved, true}, - {"f47ac10b-58cc-4372-7567-0e02b2c3d479", 4, Reserved, true}, - {"f47ac10b-58cc-4372-8567-0e02b2c3d479", 4, RFC4122, true}, - {"f47ac10b-58cc-4372-9567-0e02b2c3d479", 4, RFC4122, true}, - {"f47ac10b-58cc-4372-a567-0e02b2c3d479", 4, RFC4122, true}, - {"f47ac10b-58cc-4372-b567-0e02b2c3d479", 4, RFC4122, true}, - {"f47ac10b-58cc-4372-c567-0e02b2c3d479", 4, Microsoft, true}, - {"f47ac10b-58cc-4372-d567-0e02b2c3d479", 4, Microsoft, true}, - {"f47ac10b-58cc-4372-e567-0e02b2c3d479", 4, Future, true}, - {"f47ac10b-58cc-4372-f567-0e02b2c3d479", 4, Future, true}, - - - {"f47ac10b158cc-5372-a567-0e02b2c3d479", 0, Invalid, false}, - {"f47ac10b-58cc25372-a567-0e02b2c3d479", 0, Invalid, false}, - {"f47ac10b-58cc-53723a567-0e02b2c3d479", 0, Invalid, false}, - {"f47ac10b-58cc-5372-a56740e02b2c3d479", 0, Invalid, false}, - {"f47ac10b-58cc-5372-a567-0e02-2c3d479", 0, Invalid, false}, - {"g47ac10b-58cc-4372-a567-0e02b2c3d479", 0, Invalid, false}, - - - {"{f47ac10b-58cc-0372-8567-0e02b2c3d479}", 0, RFC4122, true}, - {"{f47ac10b-58cc-0372-8567-0e02b2c3d479", 0, Invalid, false}, - {"f47ac10b-58cc-0372-8567-0e02b2c3d479}", 0, Invalid, false}, - - {"f47ac10b58cc037285670e02b2c3d479", 0, RFC4122, true}, - {"f47ac10b58cc037285670e02b2c3d4790", 0, Invalid, false}, - {"f47ac10b58cc037285670e02b2c3d47", 0, Invalid, false}, -} - -var constants = []struct { - c interface{} - name string -}{ - {Person, "Person"}, - {Group, "Group"}, - {Org, "Org"}, - {Invalid, "Invalid"}, - {RFC4122, "RFC4122"}, - {Reserved, "Reserved"}, - {Microsoft, "Microsoft"}, - {Future, "Future"}, - {Domain(17), "Domain17"}, - {Variant(42), "BadVariant42"}, -} - -func testTest(t *testing.T, in string, tt test) { - uuid, err := Parse(in) - if ok := (err == nil); ok != tt.isuuid { - t.Errorf("Parse(%s) got %v expected %v\b", in, ok, tt.isuuid) - } - if err != nil { - return - } - - if v := uuid.Variant(); v != tt.variant { - t.Errorf("Variant(%s) got %d expected %d\b", in, v, tt.variant) - } - if v := uuid.Version(); v != tt.version { - t.Errorf("Version(%s) got %d expected %d\b", in, v, tt.version) - } -} - -func testBytes(t *testing.T, in []byte, tt test) { - uuid, err := ParseBytes(in) - if ok := (err == nil); ok != tt.isuuid { - t.Errorf("ParseBytes(%s) got %v expected %v\b", in, ok, tt.isuuid) - } - if err != nil { - return - } - suuid, _ := Parse(string(in)) - if uuid != suuid { - t.Errorf("ParseBytes(%s) got %v expected %v\b", in, uuid, suuid) - } -} - -func TestUUID(t *testing.T) { - for _, tt := range tests { - testTest(t, tt.in, tt) - testTest(t, strings.ToUpper(tt.in), tt) - testBytes(t, []byte(tt.in), tt) - } -} - -func TestFromBytes(t *testing.T) { - b := []byte{ - 0x7d, 0x44, 0x48, 0x40, - 0x9d, 0xc0, - 0x11, 0xd1, - 0xb2, 0x45, - 0x5f, 0xfd, 0xce, 0x74, 0xfa, 0xd2, - } - uuid, err := FromBytes(b) - if err != nil { - t.Fatalf("%s", err) - } - for i := 0; i < len(uuid); i++ { - if b[i] != uuid[i] { - t.Fatalf("FromBytes() got %v expected %v\b", uuid[:], b) - } - } -} - -func TestConstants(t *testing.T) { - for x, tt := range constants { - v, ok := tt.c.(fmt.Stringer) - if !ok { - t.Errorf("%x: %v: not a stringer", x, v) - } else if s := v.String(); s != tt.name { - v, _ := tt.c.(int) - t.Errorf("%x: Constant %T:%d gives %q, expected %q", x, tt.c, v, s, tt.name) - } - } -} - -func TestRandomUUID(t *testing.T) { - m := make(map[string]bool) - for x := 1; x < 32; x++ { - uuid := New() - s := uuid.String() - if m[s] { - t.Errorf("NewRandom returned duplicated UUID %s", s) - } - m[s] = true - if v := uuid.Version(); v != 4 { - t.Errorf("Random UUID of version %s", v) - } - if uuid.Variant() != RFC4122 { - t.Errorf("Random UUID is variant %d", uuid.Variant()) - } - } -} - -func TestNew(t *testing.T) { - m := make(map[UUID]bool) - for x := 1; x < 32; x++ { - s := New() - if m[s] { - t.Errorf("New returned duplicated UUID %s", s) - } - m[s] = true - uuid, err := Parse(s.String()) - if err != nil { - t.Errorf("New.String() returned %q which does not decode", s) - continue - } - if v := uuid.Version(); v != 4 { - t.Errorf("Random UUID of version %s", v) - } - if uuid.Variant() != RFC4122 { - t.Errorf("Random UUID is variant %d", uuid.Variant()) - } - } -} - -func TestClockSeq(t *testing.T) { - // Fake time.Now for this test to return a monotonically advancing time; restore it at end. - defer func(orig func() time.Time) { timeNow = orig }(timeNow) - monTime := time.Now() - timeNow = func() time.Time { - monTime = monTime.Add(1 * time.Second) - return monTime - } - - SetClockSequence(-1) - uuid1, err := NewUUID() - if err != nil { - t.Fatalf("could not create UUID: %v", err) - } - uuid2, err := NewUUID() - if err != nil { - t.Fatalf("could not create UUID: %v", err) - } - - if s1, s2 := uuid1.ClockSequence(), uuid2.ClockSequence(); s1 != s2 { - t.Errorf("clock sequence %d != %d", s1, s2) - } - - SetClockSequence(-1) - uuid2, err = NewUUID() - if err != nil { - t.Fatalf("could not create UUID: %v", err) - } - - // Just on the very off chance we generated the same sequence - // two times we try again. - if uuid1.ClockSequence() == uuid2.ClockSequence() { - SetClockSequence(-1) - uuid2, err = NewUUID() - if err != nil { - t.Fatalf("could not create UUID: %v", err) - } - } - if s1, s2 := uuid1.ClockSequence(), uuid2.ClockSequence(); s1 == s2 { - t.Errorf("Duplicate clock sequence %d", s1) - } - - SetClockSequence(0x1234) - uuid1, err = NewUUID() - if err != nil { - t.Fatalf("could not create UUID: %v", err) - } - if seq := uuid1.ClockSequence(); seq != 0x1234 { - t.Errorf("%s: expected seq 0x1234 got 0x%04x", uuid1, seq) - } -} - -func TestCoding(t *testing.T) { - text := "7d444840-9dc0-11d1-b245-5ffdce74fad2" - urn := "urn:uuid:7d444840-9dc0-11d1-b245-5ffdce74fad2" - data := UUID{ - 0x7d, 0x44, 0x48, 0x40, - 0x9d, 0xc0, - 0x11, 0xd1, - 0xb2, 0x45, - 0x5f, 0xfd, 0xce, 0x74, 0xfa, 0xd2, - } - if v := data.String(); v != text { - t.Errorf("%x: encoded to %s, expected %s", data, v, text) - } - if v := data.URN(); v != urn { - t.Errorf("%x: urn is %s, expected %s", data, v, urn) - } - - uuid, err := Parse(text) - if err != nil { - t.Errorf("Parse returned unexpected error %v", err) - } - if data != uuid { - t.Errorf("%s: decoded to %s, expected %s", text, uuid, data) - } -} - -func TestVersion1(t *testing.T) { - uuid1, err := NewUUID() - if err != nil { - t.Fatalf("could not create UUID: %v", err) - } - uuid2, err := NewUUID() - if err != nil { - t.Fatalf("could not create UUID: %v", err) - } - - if uuid1 == uuid2 { - t.Errorf("%s:duplicate uuid", uuid1) - } - if v := uuid1.Version(); v != 1 { - t.Errorf("%s: version %s expected 1", uuid1, v) - } - if v := uuid2.Version(); v != 1 { - t.Errorf("%s: version %s expected 1", uuid2, v) - } - n1 := uuid1.NodeID() - n2 := uuid2.NodeID() - if !bytes.Equal(n1, n2) { - t.Errorf("Different nodes %x != %x", n1, n2) - } - t1 := uuid1.Time() - t2 := uuid2.Time() - q1 := uuid1.ClockSequence() - q2 := uuid2.ClockSequence() - - switch { - case t1 == t2 && q1 == q2: - t.Error("time stopped") - case t1 > t2 && q1 == q2: - t.Error("time reversed") - case t1 < t2 && q1 != q2: - t.Error("clock sequence changed unexpectedly") - } -} - -func TestNode(t *testing.T) { - // This test is mostly to make sure we don't leave nodeMu locked. - ifname = "" - if ni := NodeInterface(); ni != "" { - t.Errorf("NodeInterface got %q, want %q", ni, "") - } - if SetNodeInterface("xyzzy") { - t.Error("SetNodeInterface succeeded on a bad interface name") - } - if !SetNodeInterface("") { - t.Error("SetNodeInterface failed") - } - if runtime.GOARCH != "js" { - if ni := NodeInterface(); ni == "" { - t.Error("NodeInterface returned an empty string") - } - } - - ni := NodeID() - if len(ni) != 6 { - t.Errorf("ni got %d bytes, want 6", len(ni)) - } - hasData := false - for _, b := range ni { - if b != 0 { - hasData = true - } - } - if !hasData { - t.Error("nodeid is all zeros") - } - - id := []byte{1, 2, 3, 4, 5, 6, 7, 8} - SetNodeID(id) - ni = NodeID() - if !bytes.Equal(ni, id[:6]) { - t.Errorf("got nodeid %v, want %v", ni, id[:6]) - } - - if ni := NodeInterface(); ni != "user" { - t.Errorf("got interface %q, want %q", ni, "user") - } -} - -func TestNodeAndTime(t *testing.T) { - // Time is February 5, 1998 12:30:23.136364800 AM GMT - - uuid, err := Parse("7d444840-9dc0-11d1-b245-5ffdce74fad2") - if err != nil { - t.Fatalf("Parser returned unexpected error %v", err) - } - node := []byte{0x5f, 0xfd, 0xce, 0x74, 0xfa, 0xd2} - - ts := uuid.Time() - c := time.Unix(ts.UnixTime()) - want := time.Date(1998, 2, 5, 0, 30, 23, 136364800, time.UTC) - if !c.Equal(want) { - t.Errorf("Got time %v, want %v", c, want) - } - if !bytes.Equal(node, uuid.NodeID()) { - t.Errorf("Expected node %v got %v", node, uuid.NodeID()) - } -} - -func TestMD5(t *testing.T) { - uuid := NewMD5(NameSpaceDNS, []byte("python.org")).String() - want := "6fa459ea-ee8a-3ca4-894e-db77e160355e" - if uuid != want { - t.Errorf("MD5: got %q expected %q", uuid, want) - } -} - -func TestSHA1(t *testing.T) { - uuid := NewSHA1(NameSpaceDNS, []byte("python.org")).String() - want := "886313e1-3b8a-5372-9b90-0c9aee199e5d" - if uuid != want { - t.Errorf("SHA1: got %q expected %q", uuid, want) - } -} - -func TestNodeID(t *testing.T) { - nid := []byte{1, 2, 3, 4, 5, 6} - SetNodeInterface("") - s := NodeInterface() - if runtime.GOARCH != "js" { - if s == "" || s == "user" { - t.Errorf("NodeInterface %q after SetInterface", s) - } - } - node1 := NodeID() - if node1 == nil { - t.Error("NodeID nil after SetNodeInterface", s) - } - SetNodeID(nid) - s = NodeInterface() - if s != "user" { - t.Errorf("Expected NodeInterface %q got %q", "user", s) - } - node2 := NodeID() - if node2 == nil { - t.Error("NodeID nil after SetNodeID", s) - } - if bytes.Equal(node1, node2) { - t.Error("NodeID not changed after SetNodeID", s) - } else if !bytes.Equal(nid, node2) { - t.Errorf("NodeID is %x, expected %x", node2, nid) - } -} - -func testDCE(t *testing.T, name string, uuid UUID, err error, domain Domain, id uint32) { - if err != nil { - t.Errorf("%s failed: %v", name, err) - return - } - if v := uuid.Version(); v != 2 { - t.Errorf("%s: %s: expected version 2, got %s", name, uuid, v) - return - } - if v := uuid.Domain(); v != domain { - t.Errorf("%s: %s: expected domain %d, got %d", name, uuid, domain, v) - } - if v := uuid.ID(); v != id { - t.Errorf("%s: %s: expected id %d, got %d", name, uuid, id, v) - } -} - -func TestDCE(t *testing.T) { - uuid, err := NewDCESecurity(42, 12345678) - testDCE(t, "NewDCESecurity", uuid, err, 42, 12345678) - uuid, err = NewDCEPerson() - testDCE(t, "NewDCEPerson", uuid, err, Person, uint32(os.Getuid())) - uuid, err = NewDCEGroup() - testDCE(t, "NewDCEGroup", uuid, err, Group, uint32(os.Getgid())) -} - -type badRand struct{} - -func (r badRand) Read(buf []byte) (int, error) { - for i := range buf { - buf[i] = byte(i) - } - return len(buf), nil -} - -func TestBadRand(t *testing.T) { - SetRand(badRand{}) - uuid1 := New() - uuid2 := New() - if uuid1 != uuid2 { - t.Errorf("expected duplicates, got %q and %q", uuid1, uuid2) - } - SetRand(nil) - uuid1 = New() - uuid2 = New() - if uuid1 == uuid2 { - t.Errorf("unexpected duplicates, got %q", uuid1) - } -} - -var asString = "f47ac10b-58cc-0372-8567-0e02b2c3d479" -var asBytes = []byte(asString) - -func BenchmarkParse(b *testing.B) { - for i := 0; i < b.N; i++ { - _, err := Parse(asString) - if err != nil { - b.Fatal(err) - } - } -} - -func BenchmarkParseBytes(b *testing.B) { - for i := 0; i < b.N; i++ { - _, err := ParseBytes(asBytes) - if err != nil { - b.Fatal(err) - } - } -} - -// parseBytesUnsafe is to benchmark using unsafe. -func parseBytesUnsafe(b []byte) (UUID, error) { - return Parse(*(*string)(unsafe.Pointer(&b))) -} - -func BenchmarkParseBytesUnsafe(b *testing.B) { - for i := 0; i < b.N; i++ { - _, err := parseBytesUnsafe(asBytes) - if err != nil { - b.Fatal(err) - } - } -} - -// parseBytesCopy is to benchmark not using unsafe. -func parseBytesCopy(b []byte) (UUID, error) { - return Parse(string(b)) -} - -func BenchmarkParseBytesCopy(b *testing.B) { - for i := 0; i < b.N; i++ { - _, err := parseBytesCopy(asBytes) - if err != nil { - b.Fatal(err) - } - } -} - -func BenchmarkNew(b *testing.B) { - for i := 0; i < b.N; i++ { - New() - } -} - -func BenchmarkUUID_String(b *testing.B) { - uuid, err := Parse("f47ac10b-58cc-0372-8567-0e02b2c3d479") - if err != nil { - b.Fatal(err) - } - for i := 0; i < b.N; i++ { - if uuid.String() == "" { - b.Fatal("invalid uuid") - } - } -} - -func BenchmarkUUID_URN(b *testing.B) { - uuid, err := Parse("f47ac10b-58cc-0372-8567-0e02b2c3d479") - if err != nil { - b.Fatal(err) - } - for i := 0; i < b.N; i++ { - if uuid.URN() == "" { - b.Fatal("invalid uuid") - } - } -} diff --git a/vendor/github.com/google/uuid/version1.go b/vendor/github.com/google/uuid/version1.go deleted file mode 100644 index 199a1ac6..00000000 --- a/vendor/github.com/google/uuid/version1.go +++ /dev/null @@ -1,44 +0,0 @@ -// Copyright 2016 Google Inc. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package uuid - -import ( - "encoding/binary" -) - -// NewUUID returns a Version 1 UUID based on the current NodeID and clock -// sequence, and the current time. If the NodeID has not been set by SetNodeID -// or SetNodeInterface then it will be set automatically. If the NodeID cannot -// be set NewUUID returns nil. If clock sequence has not been set by -// SetClockSequence then it will be set automatically. If GetTime fails to -// return the current NewUUID returns nil and an error. -// -// In most cases, New should be used. -func NewUUID() (UUID, error) { - nodeMu.Lock() - if nodeID == zeroID { - setNodeInterface("") - } - nodeMu.Unlock() - - var uuid UUID - now, seq, err := GetTime() - if err != nil { - return uuid, err - } - - timeLow := uint32(now & 0xffffffff) - timeMid := uint16((now >> 32) & 0xffff) - timeHi := uint16((now >> 48) & 0x0fff) - timeHi |= 0x1000 // Version 1 - - binary.BigEndian.PutUint32(uuid[0:], timeLow) - binary.BigEndian.PutUint16(uuid[4:], timeMid) - binary.BigEndian.PutUint16(uuid[6:], timeHi) - binary.BigEndian.PutUint16(uuid[8:], seq) - copy(uuid[10:], nodeID[:]) - - return uuid, nil -} diff --git a/vendor/github.com/google/uuid/version4.go b/vendor/github.com/google/uuid/version4.go deleted file mode 100644 index 84af91c9..00000000 --- a/vendor/github.com/google/uuid/version4.go +++ /dev/null @@ -1,38 +0,0 @@ -// Copyright 2016 Google Inc. All rights reserved. -// Use of this source code is governed by a BSD-style -// license that can be found in the LICENSE file. - -package uuid - -import "io" - -// New creates a new random UUID or panics. New is equivalent to -// the expression -// -// uuid.Must(uuid.NewRandom()) -func New() UUID { - return Must(NewRandom()) -} - -// NewRandom returns a Random (Version 4) UUID. -// -// The strength of the UUIDs is based on the strength of the crypto/rand -// package. -// -// A note about uniqueness derived from the UUID Wikipedia entry: -// -// Randomly generated UUIDs have 122 random bits. One's annual risk of being -// hit by a meteorite is estimated to be one chance in 17 billion, that -// means the probability is about 0.00000000006 (6 × 10−11), -// equivalent to the odds of creating a few tens of trillions of UUIDs in a -// year and having one duplicate. -func NewRandom() (UUID, error) { - var uuid UUID - _, err := io.ReadFull(rander, uuid[:]) - if err != nil { - return Nil, err - } - uuid[6] = (uuid[6] & 0x0f) | 0x40 // Version 4 - uuid[8] = (uuid[8] & 0x3f) | 0x80 // Variant is 10 - return uuid, nil -} diff --git a/vendor/github.com/pmezard/go-difflib/.travis.yml b/vendor/github.com/pmezard/go-difflib/.travis.yml deleted file mode 100644 index 90c9c6f9..00000000 --- a/vendor/github.com/pmezard/go-difflib/.travis.yml +++ /dev/null @@ -1,5 +0,0 @@ -language: go -go: - - 1.5 - - tip - diff --git a/vendor/github.com/pmezard/go-difflib/LICENSE b/vendor/github.com/pmezard/go-difflib/LICENSE deleted file mode 100644 index c67dad61..00000000 --- a/vendor/github.com/pmezard/go-difflib/LICENSE +++ /dev/null @@ -1,27 +0,0 @@ -Copyright (c) 2013, Patrick Mezard -All rights reserved. - -Redistribution and use in source and binary forms, with or without -modification, are permitted provided that the following conditions are -met: - - Redistributions of source code must retain the above copyright -notice, this list of conditions and the following disclaimer. - Redistributions in binary form must reproduce the above copyright -notice, this list of conditions and the following disclaimer in the -documentation and/or other materials provided with the distribution. - The names of its contributors may not be used to endorse or promote -products derived from this software without specific prior written -permission. - -THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS -IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED -TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A -PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT -HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, -SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED -TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR -PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF -LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING -NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS -SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. diff --git a/vendor/github.com/pmezard/go-difflib/README.md b/vendor/github.com/pmezard/go-difflib/README.md deleted file mode 100644 index e87f307e..00000000 --- a/vendor/github.com/pmezard/go-difflib/README.md +++ /dev/null @@ -1,50 +0,0 @@ -go-difflib -========== - -[![Build Status](https://travis-ci.org/pmezard/go-difflib.png?branch=master)](https://travis-ci.org/pmezard/go-difflib) -[![GoDoc](https://godoc.org/github.com/pmezard/go-difflib/difflib?status.svg)](https://godoc.org/github.com/pmezard/go-difflib/difflib) - -Go-difflib is a partial port of python 3 difflib package. Its main goal -was to make unified and context diff available in pure Go, mostly for -testing purposes. - -The following class and functions (and related tests) have be ported: - -* `SequenceMatcher` -* `unified_diff()` -* `context_diff()` - -## Installation - -```bash -$ go get github.com/pmezard/go-difflib/difflib -``` - -### Quick Start - -Diffs are configured with Unified (or ContextDiff) structures, and can -be output to an io.Writer or returned as a string. - -```Go -diff := UnifiedDiff{ - A: difflib.SplitLines("foo\nbar\n"), - B: difflib.SplitLines("foo\nbaz\n"), - FromFile: "Original", - ToFile: "Current", - Context: 3, -} -text, _ := GetUnifiedDiffString(diff) -fmt.Printf(text) -``` - -would output: - -``` ---- Original -+++ Current -@@ -1,3 +1,3 @@ - foo --bar -+baz -``` - diff --git a/vendor/github.com/pmezard/go-difflib/difflib/difflib.go b/vendor/github.com/pmezard/go-difflib/difflib/difflib.go deleted file mode 100644 index 003e99fa..00000000 --- a/vendor/github.com/pmezard/go-difflib/difflib/difflib.go +++ /dev/null @@ -1,772 +0,0 @@ -// Package difflib is a partial port of Python difflib module. -// -// It provides tools to compare sequences of strings and generate textual diffs. -// -// The following class and functions have been ported: -// -// - SequenceMatcher -// -// - unified_diff -// -// - context_diff -// -// Getting unified diffs was the main goal of the port. Keep in mind this code -// is mostly suitable to output text differences in a human friendly way, there -// are no guarantees generated diffs are consumable by patch(1). -package difflib - -import ( - "bufio" - "bytes" - "fmt" - "io" - "strings" -) - -func min(a, b int) int { - if a < b { - return a - } - return b -} - -func max(a, b int) int { - if a > b { - return a - } - return b -} - -func calculateRatio(matches, length int) float64 { - if length > 0 { - return 2.0 * float64(matches) / float64(length) - } - return 1.0 -} - -type Match struct { - A int - B int - Size int -} - -type OpCode struct { - Tag byte - I1 int - I2 int - J1 int - J2 int -} - -// SequenceMatcher compares sequence of strings. The basic -// algorithm predates, and is a little fancier than, an algorithm -// published in the late 1980's by Ratcliff and Obershelp under the -// hyperbolic name "gestalt pattern matching". The basic idea is to find -// the longest contiguous matching subsequence that contains no "junk" -// elements (R-O doesn't address junk). The same idea is then applied -// recursively to the pieces of the sequences to the left and to the right -// of the matching subsequence. This does not yield minimal edit -// sequences, but does tend to yield matches that "look right" to people. -// -// SequenceMatcher tries to compute a "human-friendly diff" between two -// sequences. Unlike e.g. UNIX(tm) diff, the fundamental notion is the -// longest *contiguous* & junk-free matching subsequence. That's what -// catches peoples' eyes. The Windows(tm) windiff has another interesting -// notion, pairing up elements that appear uniquely in each sequence. -// That, and the method here, appear to yield more intuitive difference -// reports than does diff. This method appears to be the least vulnerable -// to synching up on blocks of "junk lines", though (like blank lines in -// ordinary text files, or maybe "

" lines in HTML files). That may be -// because this is the only method of the 3 that has a *concept* of -// "junk" . -// -// Timing: Basic R-O is cubic time worst case and quadratic time expected -// case. SequenceMatcher is quadratic time for the worst case and has -// expected-case behavior dependent in a complicated way on how many -// elements the sequences have in common; best case time is linear. -type SequenceMatcher struct { - a []string - b []string - b2j map[string][]int - IsJunk func(string) bool - autoJunk bool - bJunk map[string]struct{} - matchingBlocks []Match - fullBCount map[string]int - bPopular map[string]struct{} - opCodes []OpCode -} - -func NewMatcher(a, b []string) *SequenceMatcher { - m := SequenceMatcher{autoJunk: true} - m.SetSeqs(a, b) - return &m -} - -func NewMatcherWithJunk(a, b []string, autoJunk bool, - isJunk func(string) bool) *SequenceMatcher { - - m := SequenceMatcher{IsJunk: isJunk, autoJunk: autoJunk} - m.SetSeqs(a, b) - return &m -} - -// Set two sequences to be compared. -func (m *SequenceMatcher) SetSeqs(a, b []string) { - m.SetSeq1(a) - m.SetSeq2(b) -} - -// Set the first sequence to be compared. The second sequence to be compared is -// not changed. -// -// SequenceMatcher computes and caches detailed information about the second -// sequence, so if you want to compare one sequence S against many sequences, -// use .SetSeq2(s) once and call .SetSeq1(x) repeatedly for each of the other -// sequences. -// -// See also SetSeqs() and SetSeq2(). -func (m *SequenceMatcher) SetSeq1(a []string) { - if &a == &m.a { - return - } - m.a = a - m.matchingBlocks = nil - m.opCodes = nil -} - -// Set the second sequence to be compared. The first sequence to be compared is -// not changed. -func (m *SequenceMatcher) SetSeq2(b []string) { - if &b == &m.b { - return - } - m.b = b - m.matchingBlocks = nil - m.opCodes = nil - m.fullBCount = nil - m.chainB() -} - -func (m *SequenceMatcher) chainB() { - // Populate line -> index mapping - b2j := map[string][]int{} - for i, s := range m.b { - indices := b2j[s] - indices = append(indices, i) - b2j[s] = indices - } - - // Purge junk elements - m.bJunk = map[string]struct{}{} - if m.IsJunk != nil { - junk := m.bJunk - for s, _ := range b2j { - if m.IsJunk(s) { - junk[s] = struct{}{} - } - } - for s, _ := range junk { - delete(b2j, s) - } - } - - // Purge remaining popular elements - popular := map[string]struct{}{} - n := len(m.b) - if m.autoJunk && n >= 200 { - ntest := n/100 + 1 - for s, indices := range b2j { - if len(indices) > ntest { - popular[s] = struct{}{} - } - } - for s, _ := range popular { - delete(b2j, s) - } - } - m.bPopular = popular - m.b2j = b2j -} - -func (m *SequenceMatcher) isBJunk(s string) bool { - _, ok := m.bJunk[s] - return ok -} - -// Find longest matching block in a[alo:ahi] and b[blo:bhi]. -// -// If IsJunk is not defined: -// -// Return (i,j,k) such that a[i:i+k] is equal to b[j:j+k], where -// alo <= i <= i+k <= ahi -// blo <= j <= j+k <= bhi -// and for all (i',j',k') meeting those conditions, -// k >= k' -// i <= i' -// and if i == i', j <= j' -// -// In other words, of all maximal matching blocks, return one that -// starts earliest in a, and of all those maximal matching blocks that -// start earliest in a, return the one that starts earliest in b. -// -// If IsJunk is defined, first the longest matching block is -// determined as above, but with the additional restriction that no -// junk element appears in the block. Then that block is extended as -// far as possible by matching (only) junk elements on both sides. So -// the resulting block never matches on junk except as identical junk -// happens to be adjacent to an "interesting" match. -// -// If no blocks match, return (alo, blo, 0). -func (m *SequenceMatcher) findLongestMatch(alo, ahi, blo, bhi int) Match { - // CAUTION: stripping common prefix or suffix would be incorrect. - // E.g., - // ab - // acab - // Longest matching block is "ab", but if common prefix is - // stripped, it's "a" (tied with "b"). UNIX(tm) diff does so - // strip, so ends up claiming that ab is changed to acab by - // inserting "ca" in the middle. That's minimal but unintuitive: - // "it's obvious" that someone inserted "ac" at the front. - // Windiff ends up at the same place as diff, but by pairing up - // the unique 'b's and then matching the first two 'a's. - besti, bestj, bestsize := alo, blo, 0 - - // find longest junk-free match - // during an iteration of the loop, j2len[j] = length of longest - // junk-free match ending with a[i-1] and b[j] - j2len := map[int]int{} - for i := alo; i != ahi; i++ { - // look at all instances of a[i] in b; note that because - // b2j has no junk keys, the loop is skipped if a[i] is junk - newj2len := map[int]int{} - for _, j := range m.b2j[m.a[i]] { - // a[i] matches b[j] - if j < blo { - continue - } - if j >= bhi { - break - } - k := j2len[j-1] + 1 - newj2len[j] = k - if k > bestsize { - besti, bestj, bestsize = i-k+1, j-k+1, k - } - } - j2len = newj2len - } - - // Extend the best by non-junk elements on each end. In particular, - // "popular" non-junk elements aren't in b2j, which greatly speeds - // the inner loop above, but also means "the best" match so far - // doesn't contain any junk *or* popular non-junk elements. - for besti > alo && bestj > blo && !m.isBJunk(m.b[bestj-1]) && - m.a[besti-1] == m.b[bestj-1] { - besti, bestj, bestsize = besti-1, bestj-1, bestsize+1 - } - for besti+bestsize < ahi && bestj+bestsize < bhi && - !m.isBJunk(m.b[bestj+bestsize]) && - m.a[besti+bestsize] == m.b[bestj+bestsize] { - bestsize += 1 - } - - // Now that we have a wholly interesting match (albeit possibly - // empty!), we may as well suck up the matching junk on each - // side of it too. Can't think of a good reason not to, and it - // saves post-processing the (possibly considerable) expense of - // figuring out what to do with it. In the case of an empty - // interesting match, this is clearly the right thing to do, - // because no other kind of match is possible in the regions. - for besti > alo && bestj > blo && m.isBJunk(m.b[bestj-1]) && - m.a[besti-1] == m.b[bestj-1] { - besti, bestj, bestsize = besti-1, bestj-1, bestsize+1 - } - for besti+bestsize < ahi && bestj+bestsize < bhi && - m.isBJunk(m.b[bestj+bestsize]) && - m.a[besti+bestsize] == m.b[bestj+bestsize] { - bestsize += 1 - } - - return Match{A: besti, B: bestj, Size: bestsize} -} - -// Return list of triples describing matching subsequences. -// -// Each triple is of the form (i, j, n), and means that -// a[i:i+n] == b[j:j+n]. The triples are monotonically increasing in -// i and in j. It's also guaranteed that if (i, j, n) and (i', j', n') are -// adjacent triples in the list, and the second is not the last triple in the -// list, then i+n != i' or j+n != j'. IOW, adjacent triples never describe -// adjacent equal blocks. -// -// The last triple is a dummy, (len(a), len(b), 0), and is the only -// triple with n==0. -func (m *SequenceMatcher) GetMatchingBlocks() []Match { - if m.matchingBlocks != nil { - return m.matchingBlocks - } - - var matchBlocks func(alo, ahi, blo, bhi int, matched []Match) []Match - matchBlocks = func(alo, ahi, blo, bhi int, matched []Match) []Match { - match := m.findLongestMatch(alo, ahi, blo, bhi) - i, j, k := match.A, match.B, match.Size - if match.Size > 0 { - if alo < i && blo < j { - matched = matchBlocks(alo, i, blo, j, matched) - } - matched = append(matched, match) - if i+k < ahi && j+k < bhi { - matched = matchBlocks(i+k, ahi, j+k, bhi, matched) - } - } - return matched - } - matched := matchBlocks(0, len(m.a), 0, len(m.b), nil) - - // It's possible that we have adjacent equal blocks in the - // matching_blocks list now. - nonAdjacent := []Match{} - i1, j1, k1 := 0, 0, 0 - for _, b := range matched { - // Is this block adjacent to i1, j1, k1? - i2, j2, k2 := b.A, b.B, b.Size - if i1+k1 == i2 && j1+k1 == j2 { - // Yes, so collapse them -- this just increases the length of - // the first block by the length of the second, and the first - // block so lengthened remains the block to compare against. - k1 += k2 - } else { - // Not adjacent. Remember the first block (k1==0 means it's - // the dummy we started with), and make the second block the - // new block to compare against. - if k1 > 0 { - nonAdjacent = append(nonAdjacent, Match{i1, j1, k1}) - } - i1, j1, k1 = i2, j2, k2 - } - } - if k1 > 0 { - nonAdjacent = append(nonAdjacent, Match{i1, j1, k1}) - } - - nonAdjacent = append(nonAdjacent, Match{len(m.a), len(m.b), 0}) - m.matchingBlocks = nonAdjacent - return m.matchingBlocks -} - -// Return list of 5-tuples describing how to turn a into b. -// -// Each tuple is of the form (tag, i1, i2, j1, j2). The first tuple -// has i1 == j1 == 0, and remaining tuples have i1 == the i2 from the -// tuple preceding it, and likewise for j1 == the previous j2. -// -// The tags are characters, with these meanings: -// -// 'r' (replace): a[i1:i2] should be replaced by b[j1:j2] -// -// 'd' (delete): a[i1:i2] should be deleted, j1==j2 in this case. -// -// 'i' (insert): b[j1:j2] should be inserted at a[i1:i1], i1==i2 in this case. -// -// 'e' (equal): a[i1:i2] == b[j1:j2] -func (m *SequenceMatcher) GetOpCodes() []OpCode { - if m.opCodes != nil { - return m.opCodes - } - i, j := 0, 0 - matching := m.GetMatchingBlocks() - opCodes := make([]OpCode, 0, len(matching)) - for _, m := range matching { - // invariant: we've pumped out correct diffs to change - // a[:i] into b[:j], and the next matching block is - // a[ai:ai+size] == b[bj:bj+size]. So we need to pump - // out a diff to change a[i:ai] into b[j:bj], pump out - // the matching block, and move (i,j) beyond the match - ai, bj, size := m.A, m.B, m.Size - tag := byte(0) - if i < ai && j < bj { - tag = 'r' - } else if i < ai { - tag = 'd' - } else if j < bj { - tag = 'i' - } - if tag > 0 { - opCodes = append(opCodes, OpCode{tag, i, ai, j, bj}) - } - i, j = ai+size, bj+size - // the list of matching blocks is terminated by a - // sentinel with size 0 - if size > 0 { - opCodes = append(opCodes, OpCode{'e', ai, i, bj, j}) - } - } - m.opCodes = opCodes - return m.opCodes -} - -// Isolate change clusters by eliminating ranges with no changes. -// -// Return a generator of groups with up to n lines of context. -// Each group is in the same format as returned by GetOpCodes(). -func (m *SequenceMatcher) GetGroupedOpCodes(n int) [][]OpCode { - if n < 0 { - n = 3 - } - codes := m.GetOpCodes() - if len(codes) == 0 { - codes = []OpCode{OpCode{'e', 0, 1, 0, 1}} - } - // Fixup leading and trailing groups if they show no changes. - if codes[0].Tag == 'e' { - c := codes[0] - i1, i2, j1, j2 := c.I1, c.I2, c.J1, c.J2 - codes[0] = OpCode{c.Tag, max(i1, i2-n), i2, max(j1, j2-n), j2} - } - if codes[len(codes)-1].Tag == 'e' { - c := codes[len(codes)-1] - i1, i2, j1, j2 := c.I1, c.I2, c.J1, c.J2 - codes[len(codes)-1] = OpCode{c.Tag, i1, min(i2, i1+n), j1, min(j2, j1+n)} - } - nn := n + n - groups := [][]OpCode{} - group := []OpCode{} - for _, c := range codes { - i1, i2, j1, j2 := c.I1, c.I2, c.J1, c.J2 - // End the current group and start a new one whenever - // there is a large range with no changes. - if c.Tag == 'e' && i2-i1 > nn { - group = append(group, OpCode{c.Tag, i1, min(i2, i1+n), - j1, min(j2, j1+n)}) - groups = append(groups, group) - group = []OpCode{} - i1, j1 = max(i1, i2-n), max(j1, j2-n) - } - group = append(group, OpCode{c.Tag, i1, i2, j1, j2}) - } - if len(group) > 0 && !(len(group) == 1 && group[0].Tag == 'e') { - groups = append(groups, group) - } - return groups -} - -// Return a measure of the sequences' similarity (float in [0,1]). -// -// Where T is the total number of elements in both sequences, and -// M is the number of matches, this is 2.0*M / T. -// Note that this is 1 if the sequences are identical, and 0 if -// they have nothing in common. -// -// .Ratio() is expensive to compute if you haven't already computed -// .GetMatchingBlocks() or .GetOpCodes(), in which case you may -// want to try .QuickRatio() or .RealQuickRation() first to get an -// upper bound. -func (m *SequenceMatcher) Ratio() float64 { - matches := 0 - for _, m := range m.GetMatchingBlocks() { - matches += m.Size - } - return calculateRatio(matches, len(m.a)+len(m.b)) -} - -// Return an upper bound on ratio() relatively quickly. -// -// This isn't defined beyond that it is an upper bound on .Ratio(), and -// is faster to compute. -func (m *SequenceMatcher) QuickRatio() float64 { - // viewing a and b as multisets, set matches to the cardinality - // of their intersection; this counts the number of matches - // without regard to order, so is clearly an upper bound - if m.fullBCount == nil { - m.fullBCount = map[string]int{} - for _, s := range m.b { - m.fullBCount[s] = m.fullBCount[s] + 1 - } - } - - // avail[x] is the number of times x appears in 'b' less the - // number of times we've seen it in 'a' so far ... kinda - avail := map[string]int{} - matches := 0 - for _, s := range m.a { - n, ok := avail[s] - if !ok { - n = m.fullBCount[s] - } - avail[s] = n - 1 - if n > 0 { - matches += 1 - } - } - return calculateRatio(matches, len(m.a)+len(m.b)) -} - -// Return an upper bound on ratio() very quickly. -// -// This isn't defined beyond that it is an upper bound on .Ratio(), and -// is faster to compute than either .Ratio() or .QuickRatio(). -func (m *SequenceMatcher) RealQuickRatio() float64 { - la, lb := len(m.a), len(m.b) - return calculateRatio(min(la, lb), la+lb) -} - -// Convert range to the "ed" format -func formatRangeUnified(start, stop int) string { - // Per the diff spec at http://www.unix.org/single_unix_specification/ - beginning := start + 1 // lines start numbering with one - length := stop - start - if length == 1 { - return fmt.Sprintf("%d", beginning) - } - if length == 0 { - beginning -= 1 // empty ranges begin at line just before the range - } - return fmt.Sprintf("%d,%d", beginning, length) -} - -// Unified diff parameters -type UnifiedDiff struct { - A []string // First sequence lines - FromFile string // First file name - FromDate string // First file time - B []string // Second sequence lines - ToFile string // Second file name - ToDate string // Second file time - Eol string // Headers end of line, defaults to LF - Context int // Number of context lines -} - -// Compare two sequences of lines; generate the delta as a unified diff. -// -// Unified diffs are a compact way of showing line changes and a few -// lines of context. The number of context lines is set by 'n' which -// defaults to three. -// -// By default, the diff control lines (those with ---, +++, or @@) are -// created with a trailing newline. This is helpful so that inputs -// created from file.readlines() result in diffs that are suitable for -// file.writelines() since both the inputs and outputs have trailing -// newlines. -// -// For inputs that do not have trailing newlines, set the lineterm -// argument to "" so that the output will be uniformly newline free. -// -// The unidiff format normally has a header for filenames and modification -// times. Any or all of these may be specified using strings for -// 'fromfile', 'tofile', 'fromfiledate', and 'tofiledate'. -// The modification times are normally expressed in the ISO 8601 format. -func WriteUnifiedDiff(writer io.Writer, diff UnifiedDiff) error { - buf := bufio.NewWriter(writer) - defer buf.Flush() - wf := func(format string, args ...interface{}) error { - _, err := buf.WriteString(fmt.Sprintf(format, args...)) - return err - } - ws := func(s string) error { - _, err := buf.WriteString(s) - return err - } - - if len(diff.Eol) == 0 { - diff.Eol = "\n" - } - - started := false - m := NewMatcher(diff.A, diff.B) - for _, g := range m.GetGroupedOpCodes(diff.Context) { - if !started { - started = true - fromDate := "" - if len(diff.FromDate) > 0 { - fromDate = "\t" + diff.FromDate - } - toDate := "" - if len(diff.ToDate) > 0 { - toDate = "\t" + diff.ToDate - } - if diff.FromFile != "" || diff.ToFile != "" { - err := wf("--- %s%s%s", diff.FromFile, fromDate, diff.Eol) - if err != nil { - return err - } - err = wf("+++ %s%s%s", diff.ToFile, toDate, diff.Eol) - if err != nil { - return err - } - } - } - first, last := g[0], g[len(g)-1] - range1 := formatRangeUnified(first.I1, last.I2) - range2 := formatRangeUnified(first.J1, last.J2) - if err := wf("@@ -%s +%s @@%s", range1, range2, diff.Eol); err != nil { - return err - } - for _, c := range g { - i1, i2, j1, j2 := c.I1, c.I2, c.J1, c.J2 - if c.Tag == 'e' { - for _, line := range diff.A[i1:i2] { - if err := ws(" " + line); err != nil { - return err - } - } - continue - } - if c.Tag == 'r' || c.Tag == 'd' { - for _, line := range diff.A[i1:i2] { - if err := ws("-" + line); err != nil { - return err - } - } - } - if c.Tag == 'r' || c.Tag == 'i' { - for _, line := range diff.B[j1:j2] { - if err := ws("+" + line); err != nil { - return err - } - } - } - } - } - return nil -} - -// Like WriteUnifiedDiff but returns the diff a string. -func GetUnifiedDiffString(diff UnifiedDiff) (string, error) { - w := &bytes.Buffer{} - err := WriteUnifiedDiff(w, diff) - return string(w.Bytes()), err -} - -// Convert range to the "ed" format. -func formatRangeContext(start, stop int) string { - // Per the diff spec at http://www.unix.org/single_unix_specification/ - beginning := start + 1 // lines start numbering with one - length := stop - start - if length == 0 { - beginning -= 1 // empty ranges begin at line just before the range - } - if length <= 1 { - return fmt.Sprintf("%d", beginning) - } - return fmt.Sprintf("%d,%d", beginning, beginning+length-1) -} - -type ContextDiff UnifiedDiff - -// Compare two sequences of lines; generate the delta as a context diff. -// -// Context diffs are a compact way of showing line changes and a few -// lines of context. The number of context lines is set by diff.Context -// which defaults to three. -// -// By default, the diff control lines (those with *** or ---) are -// created with a trailing newline. -// -// For inputs that do not have trailing newlines, set the diff.Eol -// argument to "" so that the output will be uniformly newline free. -// -// The context diff format normally has a header for filenames and -// modification times. Any or all of these may be specified using -// strings for diff.FromFile, diff.ToFile, diff.FromDate, diff.ToDate. -// The modification times are normally expressed in the ISO 8601 format. -// If not specified, the strings default to blanks. -func WriteContextDiff(writer io.Writer, diff ContextDiff) error { - buf := bufio.NewWriter(writer) - defer buf.Flush() - var diffErr error - wf := func(format string, args ...interface{}) { - _, err := buf.WriteString(fmt.Sprintf(format, args...)) - if diffErr == nil && err != nil { - diffErr = err - } - } - ws := func(s string) { - _, err := buf.WriteString(s) - if diffErr == nil && err != nil { - diffErr = err - } - } - - if len(diff.Eol) == 0 { - diff.Eol = "\n" - } - - prefix := map[byte]string{ - 'i': "+ ", - 'd': "- ", - 'r': "! ", - 'e': " ", - } - - started := false - m := NewMatcher(diff.A, diff.B) - for _, g := range m.GetGroupedOpCodes(diff.Context) { - if !started { - started = true - fromDate := "" - if len(diff.FromDate) > 0 { - fromDate = "\t" + diff.FromDate - } - toDate := "" - if len(diff.ToDate) > 0 { - toDate = "\t" + diff.ToDate - } - if diff.FromFile != "" || diff.ToFile != "" { - wf("*** %s%s%s", diff.FromFile, fromDate, diff.Eol) - wf("--- %s%s%s", diff.ToFile, toDate, diff.Eol) - } - } - - first, last := g[0], g[len(g)-1] - ws("***************" + diff.Eol) - - range1 := formatRangeContext(first.I1, last.I2) - wf("*** %s ****%s", range1, diff.Eol) - for _, c := range g { - if c.Tag == 'r' || c.Tag == 'd' { - for _, cc := range g { - if cc.Tag == 'i' { - continue - } - for _, line := range diff.A[cc.I1:cc.I2] { - ws(prefix[cc.Tag] + line) - } - } - break - } - } - - range2 := formatRangeContext(first.J1, last.J2) - wf("--- %s ----%s", range2, diff.Eol) - for _, c := range g { - if c.Tag == 'r' || c.Tag == 'i' { - for _, cc := range g { - if cc.Tag == 'd' { - continue - } - for _, line := range diff.B[cc.J1:cc.J2] { - ws(prefix[cc.Tag] + line) - } - } - break - } - } - } - return diffErr -} - -// Like WriteContextDiff but returns the diff a string. -func GetContextDiffString(diff ContextDiff) (string, error) { - w := &bytes.Buffer{} - err := WriteContextDiff(w, diff) - return string(w.Bytes()), err -} - -// Split a string on "\n" while preserving them. The output can be used -// as input for UnifiedDiff and ContextDiff structures. -func SplitLines(s string) []string { - lines := strings.SplitAfter(s, "\n") - lines[len(lines)-1] += "\n" - return lines -} diff --git a/vendor/github.com/pmezard/go-difflib/difflib/difflib_test.go b/vendor/github.com/pmezard/go-difflib/difflib/difflib_test.go deleted file mode 100644 index d7251196..00000000 --- a/vendor/github.com/pmezard/go-difflib/difflib/difflib_test.go +++ /dev/null @@ -1,426 +0,0 @@ -package difflib - -import ( - "bytes" - "fmt" - "math" - "reflect" - "strings" - "testing" -) - -func assertAlmostEqual(t *testing.T, a, b float64, places int) { - if math.Abs(a-b) > math.Pow10(-places) { - t.Errorf("%.7f != %.7f", a, b) - } -} - -func assertEqual(t *testing.T, a, b interface{}) { - if !reflect.DeepEqual(a, b) { - t.Errorf("%v != %v", a, b) - } -} - -func splitChars(s string) []string { - chars := make([]string, 0, len(s)) - // Assume ASCII inputs - for i := 0; i != len(s); i++ { - chars = append(chars, string(s[i])) - } - return chars -} - -func TestSequenceMatcherRatio(t *testing.T) { - s := NewMatcher(splitChars("abcd"), splitChars("bcde")) - assertEqual(t, s.Ratio(), 0.75) - assertEqual(t, s.QuickRatio(), 0.75) - assertEqual(t, s.RealQuickRatio(), 1.0) -} - -func TestGetOptCodes(t *testing.T) { - a := "qabxcd" - b := "abycdf" - s := NewMatcher(splitChars(a), splitChars(b)) - w := &bytes.Buffer{} - for _, op := range s.GetOpCodes() { - fmt.Fprintf(w, "%s a[%d:%d], (%s) b[%d:%d] (%s)\n", string(op.Tag), - op.I1, op.I2, a[op.I1:op.I2], op.J1, op.J2, b[op.J1:op.J2]) - } - result := string(w.Bytes()) - expected := `d a[0:1], (q) b[0:0] () -e a[1:3], (ab) b[0:2] (ab) -r a[3:4], (x) b[2:3] (y) -e a[4:6], (cd) b[3:5] (cd) -i a[6:6], () b[5:6] (f) -` - if expected != result { - t.Errorf("unexpected op codes: \n%s", result) - } -} - -func TestGroupedOpCodes(t *testing.T) { - a := []string{} - for i := 0; i != 39; i++ { - a = append(a, fmt.Sprintf("%02d", i)) - } - b := []string{} - b = append(b, a[:8]...) - b = append(b, " i") - b = append(b, a[8:19]...) - b = append(b, " x") - b = append(b, a[20:22]...) - b = append(b, a[27:34]...) - b = append(b, " y") - b = append(b, a[35:]...) - s := NewMatcher(a, b) - w := &bytes.Buffer{} - for _, g := range s.GetGroupedOpCodes(-1) { - fmt.Fprintf(w, "group\n") - for _, op := range g { - fmt.Fprintf(w, " %s, %d, %d, %d, %d\n", string(op.Tag), - op.I1, op.I2, op.J1, op.J2) - } - } - result := string(w.Bytes()) - expected := `group - e, 5, 8, 5, 8 - i, 8, 8, 8, 9 - e, 8, 11, 9, 12 -group - e, 16, 19, 17, 20 - r, 19, 20, 20, 21 - e, 20, 22, 21, 23 - d, 22, 27, 23, 23 - e, 27, 30, 23, 26 -group - e, 31, 34, 27, 30 - r, 34, 35, 30, 31 - e, 35, 38, 31, 34 -` - if expected != result { - t.Errorf("unexpected op codes: \n%s", result) - } -} - -func ExampleGetUnifiedDiffCode() { - a := `one -two -three -four -fmt.Printf("%s,%T",a,b)` - b := `zero -one -three -four` - diff := UnifiedDiff{ - A: SplitLines(a), - B: SplitLines(b), - FromFile: "Original", - FromDate: "2005-01-26 23:30:50", - ToFile: "Current", - ToDate: "2010-04-02 10:20:52", - Context: 3, - } - result, _ := GetUnifiedDiffString(diff) - fmt.Println(strings.Replace(result, "\t", " ", -1)) - // Output: - // --- Original 2005-01-26 23:30:50 - // +++ Current 2010-04-02 10:20:52 - // @@ -1,5 +1,4 @@ - // +zero - // one - // -two - // three - // four - // -fmt.Printf("%s,%T",a,b) -} - -func ExampleGetContextDiffCode() { - a := `one -two -three -four -fmt.Printf("%s,%T",a,b)` - b := `zero -one -tree -four` - diff := ContextDiff{ - A: SplitLines(a), - B: SplitLines(b), - FromFile: "Original", - ToFile: "Current", - Context: 3, - Eol: "\n", - } - result, _ := GetContextDiffString(diff) - fmt.Print(strings.Replace(result, "\t", " ", -1)) - // Output: - // *** Original - // --- Current - // *************** - // *** 1,5 **** - // one - // ! two - // ! three - // four - // - fmt.Printf("%s,%T",a,b) - // --- 1,4 ---- - // + zero - // one - // ! tree - // four -} - -func ExampleGetContextDiffString() { - a := `one -two -three -four` - b := `zero -one -tree -four` - diff := ContextDiff{ - A: SplitLines(a), - B: SplitLines(b), - FromFile: "Original", - ToFile: "Current", - Context: 3, - Eol: "\n", - } - result, _ := GetContextDiffString(diff) - fmt.Printf(strings.Replace(result, "\t", " ", -1)) - // Output: - // *** Original - // --- Current - // *************** - // *** 1,4 **** - // one - // ! two - // ! three - // four - // --- 1,4 ---- - // + zero - // one - // ! tree - // four -} - -func rep(s string, count int) string { - return strings.Repeat(s, count) -} - -func TestWithAsciiOneInsert(t *testing.T) { - sm := NewMatcher(splitChars(rep("b", 100)), - splitChars("a"+rep("b", 100))) - assertAlmostEqual(t, sm.Ratio(), 0.995, 3) - assertEqual(t, sm.GetOpCodes(), - []OpCode{{'i', 0, 0, 0, 1}, {'e', 0, 100, 1, 101}}) - assertEqual(t, len(sm.bPopular), 0) - - sm = NewMatcher(splitChars(rep("b", 100)), - splitChars(rep("b", 50)+"a"+rep("b", 50))) - assertAlmostEqual(t, sm.Ratio(), 0.995, 3) - assertEqual(t, sm.GetOpCodes(), - []OpCode{{'e', 0, 50, 0, 50}, {'i', 50, 50, 50, 51}, {'e', 50, 100, 51, 101}}) - assertEqual(t, len(sm.bPopular), 0) -} - -func TestWithAsciiOnDelete(t *testing.T) { - sm := NewMatcher(splitChars(rep("a", 40)+"c"+rep("b", 40)), - splitChars(rep("a", 40)+rep("b", 40))) - assertAlmostEqual(t, sm.Ratio(), 0.994, 3) - assertEqual(t, sm.GetOpCodes(), - []OpCode{{'e', 0, 40, 0, 40}, {'d', 40, 41, 40, 40}, {'e', 41, 81, 40, 80}}) -} - -func TestWithAsciiBJunk(t *testing.T) { - isJunk := func(s string) bool { - return s == " " - } - sm := NewMatcherWithJunk(splitChars(rep("a", 40)+rep("b", 40)), - splitChars(rep("a", 44)+rep("b", 40)), true, isJunk) - assertEqual(t, sm.bJunk, map[string]struct{}{}) - - sm = NewMatcherWithJunk(splitChars(rep("a", 40)+rep("b", 40)), - splitChars(rep("a", 44)+rep("b", 40)+rep(" ", 20)), false, isJunk) - assertEqual(t, sm.bJunk, map[string]struct{}{" ": struct{}{}}) - - isJunk = func(s string) bool { - return s == " " || s == "b" - } - sm = NewMatcherWithJunk(splitChars(rep("a", 40)+rep("b", 40)), - splitChars(rep("a", 44)+rep("b", 40)+rep(" ", 20)), false, isJunk) - assertEqual(t, sm.bJunk, map[string]struct{}{" ": struct{}{}, "b": struct{}{}}) -} - -func TestSFBugsRatioForNullSeqn(t *testing.T) { - sm := NewMatcher(nil, nil) - assertEqual(t, sm.Ratio(), 1.0) - assertEqual(t, sm.QuickRatio(), 1.0) - assertEqual(t, sm.RealQuickRatio(), 1.0) -} - -func TestSFBugsComparingEmptyLists(t *testing.T) { - groups := NewMatcher(nil, nil).GetGroupedOpCodes(-1) - assertEqual(t, len(groups), 0) - diff := UnifiedDiff{ - FromFile: "Original", - ToFile: "Current", - Context: 3, - } - result, err := GetUnifiedDiffString(diff) - assertEqual(t, err, nil) - assertEqual(t, result, "") -} - -func TestOutputFormatRangeFormatUnified(t *testing.T) { - // Per the diff spec at http://www.unix.org/single_unix_specification/ - // - // Each field shall be of the form: - // %1d", if the range contains exactly one line, - // and: - // "%1d,%1d", , otherwise. - // If a range is empty, its beginning line number shall be the number of - // the line just before the range, or 0 if the empty range starts the file. - fm := formatRangeUnified - assertEqual(t, fm(3, 3), "3,0") - assertEqual(t, fm(3, 4), "4") - assertEqual(t, fm(3, 5), "4,2") - assertEqual(t, fm(3, 6), "4,3") - assertEqual(t, fm(0, 0), "0,0") -} - -func TestOutputFormatRangeFormatContext(t *testing.T) { - // Per the diff spec at http://www.unix.org/single_unix_specification/ - // - // The range of lines in file1 shall be written in the following format - // if the range contains two or more lines: - // "*** %d,%d ****\n", , - // and the following format otherwise: - // "*** %d ****\n", - // The ending line number of an empty range shall be the number of the preceding line, - // or 0 if the range is at the start of the file. - // - // Next, the range of lines in file2 shall be written in the following format - // if the range contains two or more lines: - // "--- %d,%d ----\n", , - // and the following format otherwise: - // "--- %d ----\n", - fm := formatRangeContext - assertEqual(t, fm(3, 3), "3") - assertEqual(t, fm(3, 4), "4") - assertEqual(t, fm(3, 5), "4,5") - assertEqual(t, fm(3, 6), "4,6") - assertEqual(t, fm(0, 0), "0") -} - -func TestOutputFormatTabDelimiter(t *testing.T) { - diff := UnifiedDiff{ - A: splitChars("one"), - B: splitChars("two"), - FromFile: "Original", - FromDate: "2005-01-26 23:30:50", - ToFile: "Current", - ToDate: "2010-04-12 10:20:52", - Eol: "\n", - } - ud, err := GetUnifiedDiffString(diff) - assertEqual(t, err, nil) - assertEqual(t, SplitLines(ud)[:2], []string{ - "--- Original\t2005-01-26 23:30:50\n", - "+++ Current\t2010-04-12 10:20:52\n", - }) - cd, err := GetContextDiffString(ContextDiff(diff)) - assertEqual(t, err, nil) - assertEqual(t, SplitLines(cd)[:2], []string{ - "*** Original\t2005-01-26 23:30:50\n", - "--- Current\t2010-04-12 10:20:52\n", - }) -} - -func TestOutputFormatNoTrailingTabOnEmptyFiledate(t *testing.T) { - diff := UnifiedDiff{ - A: splitChars("one"), - B: splitChars("two"), - FromFile: "Original", - ToFile: "Current", - Eol: "\n", - } - ud, err := GetUnifiedDiffString(diff) - assertEqual(t, err, nil) - assertEqual(t, SplitLines(ud)[:2], []string{"--- Original\n", "+++ Current\n"}) - - cd, err := GetContextDiffString(ContextDiff(diff)) - assertEqual(t, err, nil) - assertEqual(t, SplitLines(cd)[:2], []string{"*** Original\n", "--- Current\n"}) -} - -func TestOmitFilenames(t *testing.T) { - diff := UnifiedDiff{ - A: SplitLines("o\nn\ne\n"), - B: SplitLines("t\nw\no\n"), - Eol: "\n", - } - ud, err := GetUnifiedDiffString(diff) - assertEqual(t, err, nil) - assertEqual(t, SplitLines(ud), []string{ - "@@ -0,0 +1,2 @@\n", - "+t\n", - "+w\n", - "@@ -2,2 +3,0 @@\n", - "-n\n", - "-e\n", - "\n", - }) - - cd, err := GetContextDiffString(ContextDiff(diff)) - assertEqual(t, err, nil) - assertEqual(t, SplitLines(cd), []string{ - "***************\n", - "*** 0 ****\n", - "--- 1,2 ----\n", - "+ t\n", - "+ w\n", - "***************\n", - "*** 2,3 ****\n", - "- n\n", - "- e\n", - "--- 3 ----\n", - "\n", - }) -} - -func TestSplitLines(t *testing.T) { - allTests := []struct { - input string - want []string - }{ - {"foo", []string{"foo\n"}}, - {"foo\nbar", []string{"foo\n", "bar\n"}}, - {"foo\nbar\n", []string{"foo\n", "bar\n", "\n"}}, - } - for _, test := range allTests { - assertEqual(t, SplitLines(test.input), test.want) - } -} - -func benchmarkSplitLines(b *testing.B, count int) { - str := strings.Repeat("foo\n", count) - - b.ResetTimer() - - n := 0 - for i := 0; i < b.N; i++ { - n += len(SplitLines(str)) - } -} - -func BenchmarkSplitLines100(b *testing.B) { - benchmarkSplitLines(b, 100) -} - -func BenchmarkSplitLines10000(b *testing.B) { - benchmarkSplitLines(b, 10000) -} diff --git a/vendor/github.com/stretchr/testify/.gitignore b/vendor/github.com/stretchr/testify/.gitignore deleted file mode 100644 index 5aacdb7c..00000000 --- a/vendor/github.com/stretchr/testify/.gitignore +++ /dev/null @@ -1,24 +0,0 @@ -# Compiled Object files, Static and Dynamic libs (Shared Objects) -*.o -*.a -*.so - -# Folders -_obj -_test - -# Architecture specific extensions/prefixes -*.[568vq] -[568vq].out - -*.cgo1.go -*.cgo2.c -_cgo_defun.c -_cgo_gotypes.go -_cgo_export.* - -_testmain.go - -*.exe - -.DS_Store diff --git a/vendor/github.com/stretchr/testify/.travis.gofmt.sh b/vendor/github.com/stretchr/testify/.travis.gofmt.sh deleted file mode 100755 index bfffdca8..00000000 --- a/vendor/github.com/stretchr/testify/.travis.gofmt.sh +++ /dev/null @@ -1,7 +0,0 @@ -#!/bin/bash - -if [ -n "$(gofmt -l .)" ]; then - echo "Go code is not formatted:" - gofmt -d . - exit 1 -fi diff --git a/vendor/github.com/stretchr/testify/.travis.gogenerate.sh b/vendor/github.com/stretchr/testify/.travis.gogenerate.sh deleted file mode 100755 index 161b449c..00000000 --- a/vendor/github.com/stretchr/testify/.travis.gogenerate.sh +++ /dev/null @@ -1,13 +0,0 @@ -#!/bin/bash - -if [[ "$TRAVIS_GO_VERSION" =~ ^1\.[45](\..*)?$ ]]; then - exit 0 -fi - -go get github.com/ernesto-jimenez/gogen/imports -go generate ./... -if [ -n "$(git diff)" ]; then - echo "Go generate had not been run" - git diff - exit 1 -fi diff --git a/vendor/github.com/stretchr/testify/.travis.govet.sh b/vendor/github.com/stretchr/testify/.travis.govet.sh deleted file mode 100755 index f8fbba7a..00000000 --- a/vendor/github.com/stretchr/testify/.travis.govet.sh +++ /dev/null @@ -1,10 +0,0 @@ -#!/bin/bash - -cd "$(dirname $0)" -DIRS=". assert require mock _codegen" -set -e -for subdir in $DIRS; do - pushd $subdir - go vet - popd -done diff --git a/vendor/github.com/stretchr/testify/.travis.yml b/vendor/github.com/stretchr/testify/.travis.yml deleted file mode 100644 index f408b4cc..00000000 --- a/vendor/github.com/stretchr/testify/.travis.yml +++ /dev/null @@ -1,15 +0,0 @@ -language: go - -sudo: false - -go: - - "1.8" - - "1.9" - - "1.10" - - tip - -script: - - ./.travis.gogenerate.sh - - ./.travis.gofmt.sh - - ./.travis.govet.sh - - go test -v -race $(go list ./... | grep -v vendor) diff --git a/vendor/github.com/stretchr/testify/Gopkg.lock b/vendor/github.com/stretchr/testify/Gopkg.lock deleted file mode 100644 index 294cda09..00000000 --- a/vendor/github.com/stretchr/testify/Gopkg.lock +++ /dev/null @@ -1,27 +0,0 @@ -# This file is autogenerated, do not edit; changes may be undone by the next 'dep ensure'. - - -[[projects]] - name = "github.com/davecgh/go-spew" - packages = ["spew"] - revision = "346938d642f2ec3594ed81d874461961cd0faa76" - version = "v1.1.0" - -[[projects]] - name = "github.com/pmezard/go-difflib" - packages = ["difflib"] - revision = "792786c7400a136282c1664665ae0a8db921c6c2" - version = "v1.0.0" - -[[projects]] - name = "github.com/stretchr/objx" - packages = ["."] - revision = "facf9a85c22f48d2f52f2380e4efce1768749a89" - version = "v0.1" - -[solve-meta] - analyzer-name = "dep" - analyzer-version = 1 - inputs-digest = "448ddae4702c6aded2555faafd390c537789bb1c483f70b0431e6634f73f2090" - solver-name = "gps-cdcl" - solver-version = 1 diff --git a/vendor/github.com/stretchr/testify/Gopkg.toml b/vendor/github.com/stretchr/testify/Gopkg.toml deleted file mode 100644 index a16374c8..00000000 --- a/vendor/github.com/stretchr/testify/Gopkg.toml +++ /dev/null @@ -1,16 +0,0 @@ -[prune] - unused-packages = true - non-go = true - go-tests = true - -[[constraint]] - name = "github.com/davecgh/go-spew" - version = "~1.1.0" - -[[constraint]] - name = "github.com/pmezard/go-difflib" - version = "~1.0.0" - -[[constraint]] - name = "github.com/stretchr/objx" - version = "~0.1.0" diff --git a/vendor/github.com/stretchr/testify/LICENSE b/vendor/github.com/stretchr/testify/LICENSE deleted file mode 100644 index 473b670a..00000000 --- a/vendor/github.com/stretchr/testify/LICENSE +++ /dev/null @@ -1,22 +0,0 @@ -Copyright (c) 2012 - 2013 Mat Ryer and Tyler Bunnell - -Please consider promoting this project if you find it useful. - -Permission is hereby granted, free of charge, to any person -obtaining a copy of this software and associated documentation -files (the "Software"), to deal in the Software without restriction, -including without limitation the rights to use, copy, modify, merge, -publish, distribute, sublicense, and/or sell copies of the Software, -and to permit persons to whom the Software is furnished to do so, -subject to the following conditions: - -The above copyright notice and this permission notice shall be included -in all copies or substantial portions of the Software. - -THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, -EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES -OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. -IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, -DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT -OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE -OR THE USE OR OTHER DEALINGS IN THE SOFTWARE. diff --git a/vendor/github.com/stretchr/testify/README.md b/vendor/github.com/stretchr/testify/README.md deleted file mode 100644 index 51b6df34..00000000 --- a/vendor/github.com/stretchr/testify/README.md +++ /dev/null @@ -1,331 +0,0 @@ -Testify - Thou Shalt Write Tests -================================ - -[![Build Status](https://travis-ci.org/stretchr/testify.svg)](https://travis-ci.org/stretchr/testify) [![Go Report Card](https://goreportcard.com/badge/github.com/stretchr/testify)](https://goreportcard.com/report/github.com/stretchr/testify) [![GoDoc](https://godoc.org/github.com/stretchr/testify?status.svg)](https://godoc.org/github.com/stretchr/testify) - -Go code (golang) set of packages that provide many tools for testifying that your code will behave as you intend. - -Features include: - - * [Easy assertions](#assert-package) - * [Mocking](#mock-package) - * [Testing suite interfaces and functions](#suite-package) - -Get started: - - * Install testify with [one line of code](#installation), or [update it with another](#staying-up-to-date) - * For an introduction to writing test code in Go, see http://golang.org/doc/code.html#Testing - * Check out the API Documentation http://godoc.org/github.com/stretchr/testify - * To make your testing life easier, check out our other project, [gorc](http://github.com/stretchr/gorc) - * A little about [Test-Driven Development (TDD)](http://en.wikipedia.org/wiki/Test-driven_development) - - - -[`assert`](http://godoc.org/github.com/stretchr/testify/assert "API documentation") package -------------------------------------------------------------------------------------------- - -The `assert` package provides some helpful methods that allow you to write better test code in Go. - - * Prints friendly, easy to read failure descriptions - * Allows for very readable code - * Optionally annotate each assertion with a message - -See it in action: - -```go -package yours - -import ( - "testing" - "github.com/stretchr/testify/assert" -) - -func TestSomething(t *testing.T) { - - // assert equality - assert.Equal(t, 123, 123, "they should be equal") - - // assert inequality - assert.NotEqual(t, 123, 456, "they should not be equal") - - // assert for nil (good for errors) - assert.Nil(t, object) - - // assert for not nil (good when you expect something) - if assert.NotNil(t, object) { - - // now we know that object isn't nil, we are safe to make - // further assertions without causing any errors - assert.Equal(t, "Something", object.Value) - - } - -} -``` - - * Every assert func takes the `testing.T` object as the first argument. This is how it writes the errors out through the normal `go test` capabilities. - * Every assert func returns a bool indicating whether the assertion was successful or not, this is useful for if you want to go on making further assertions under certain conditions. - -if you assert many times, use the below: - -```go -package yours - -import ( - "testing" - "github.com/stretchr/testify/assert" -) - -func TestSomething(t *testing.T) { - assert := assert.New(t) - - // assert equality - assert.Equal(123, 123, "they should be equal") - - // assert inequality - assert.NotEqual(123, 456, "they should not be equal") - - // assert for nil (good for errors) - assert.Nil(object) - - // assert for not nil (good when you expect something) - if assert.NotNil(object) { - - // now we know that object isn't nil, we are safe to make - // further assertions without causing any errors - assert.Equal("Something", object.Value) - } -} -``` - -[`require`](http://godoc.org/github.com/stretchr/testify/require "API documentation") package ---------------------------------------------------------------------------------------------- - -The `require` package provides same global functions as the `assert` package, but instead of returning a boolean result they terminate current test. - -See [t.FailNow](http://golang.org/pkg/testing/#T.FailNow) for details. - -[`mock`](http://godoc.org/github.com/stretchr/testify/mock "API documentation") package ----------------------------------------------------------------------------------------- - -The `mock` package provides a mechanism for easily writing mock objects that can be used in place of real objects when writing test code. - -An example test function that tests a piece of code that relies on an external object `testObj`, can setup expectations (testify) and assert that they indeed happened: - -```go -package yours - -import ( - "testing" - "github.com/stretchr/testify/mock" -) - -/* - Test objects -*/ - -// MyMockedObject is a mocked object that implements an interface -// that describes an object that the code I am testing relies on. -type MyMockedObject struct{ - mock.Mock -} - -// DoSomething is a method on MyMockedObject that implements some interface -// and just records the activity, and returns what the Mock object tells it to. -// -// In the real object, this method would do something useful, but since this -// is a mocked object - we're just going to stub it out. -// -// NOTE: This method is not being tested here, code that uses this object is. -func (m *MyMockedObject) DoSomething(number int) (bool, error) { - - args := m.Called(number) - return args.Bool(0), args.Error(1) - -} - -/* - Actual test functions -*/ - -// TestSomething is an example of how to use our test object to -// make assertions about some target code we are testing. -func TestSomething(t *testing.T) { - - // create an instance of our test object - testObj := new(MyMockedObject) - - // setup expectations - testObj.On("DoSomething", 123).Return(true, nil) - - // call the code we are testing - targetFuncThatDoesSomethingWithObj(testObj) - - // assert that the expectations were met - testObj.AssertExpectations(t) - - -} - -// TestSomethingElse is a second example of how to use our test object to -// make assertions about some target code we are testing. -// This time using a placeholder. Placeholders might be used when the -// data being passed in is normally dynamically generated and cannot be -// predicted beforehand (eg. containing hashes that are time sensitive) -func TestSomethingElse(t *testing.T) { - - // create an instance of our test object - testObj := new(MyMockedObject) - - // setup expectations with a placeholder in the argument list - testObj.On("DoSomething", mock.Anything).Return(true, nil) - - // call the code we are testing - targetFuncThatDoesSomethingWithObj(testObj) - - // assert that the expectations were met - testObj.AssertExpectations(t) - - -} -``` - -For more information on how to write mock code, check out the [API documentation for the `mock` package](http://godoc.org/github.com/stretchr/testify/mock). - -You can use the [mockery tool](http://github.com/vektra/mockery) to autogenerate the mock code against an interface as well, making using mocks much quicker. - -[`suite`](http://godoc.org/github.com/stretchr/testify/suite "API documentation") package ------------------------------------------------------------------------------------------ - -The `suite` package provides functionality that you might be used to from more common object oriented languages. With it, you can build a testing suite as a struct, build setup/teardown methods and testing methods on your struct, and run them with 'go test' as per normal. - -An example suite is shown below: - -```go -// Basic imports -import ( - "testing" - "github.com/stretchr/testify/assert" - "github.com/stretchr/testify/suite" -) - -// Define the suite, and absorb the built-in basic suite -// functionality from testify - including a T() method which -// returns the current testing context -type ExampleTestSuite struct { - suite.Suite - VariableThatShouldStartAtFive int -} - -// Make sure that VariableThatShouldStartAtFive is set to five -// before each test -func (suite *ExampleTestSuite) SetupTest() { - suite.VariableThatShouldStartAtFive = 5 -} - -// All methods that begin with "Test" are run as tests within a -// suite. -func (suite *ExampleTestSuite) TestExample() { - assert.Equal(suite.T(), 5, suite.VariableThatShouldStartAtFive) -} - -// In order for 'go test' to run this suite, we need to create -// a normal test function and pass our suite to suite.Run -func TestExampleTestSuite(t *testing.T) { - suite.Run(t, new(ExampleTestSuite)) -} -``` - -For a more complete example, using all of the functionality provided by the suite package, look at our [example testing suite](https://github.com/stretchr/testify/blob/master/suite/suite_test.go) - -For more information on writing suites, check out the [API documentation for the `suite` package](http://godoc.org/github.com/stretchr/testify/suite). - -`Suite` object has assertion methods: - -```go -// Basic imports -import ( - "testing" - "github.com/stretchr/testify/suite" -) - -// Define the suite, and absorb the built-in basic suite -// functionality from testify - including assertion methods. -type ExampleTestSuite struct { - suite.Suite - VariableThatShouldStartAtFive int -} - -// Make sure that VariableThatShouldStartAtFive is set to five -// before each test -func (suite *ExampleTestSuite) SetupTest() { - suite.VariableThatShouldStartAtFive = 5 -} - -// All methods that begin with "Test" are run as tests within a -// suite. -func (suite *ExampleTestSuite) TestExample() { - suite.Equal(suite.VariableThatShouldStartAtFive, 5) -} - -// In order for 'go test' to run this suite, we need to create -// a normal test function and pass our suite to suite.Run -func TestExampleTestSuite(t *testing.T) { - suite.Run(t, new(ExampleTestSuite)) -} -``` - ------- - -Installation -============ - -To install Testify, use `go get`: - - go get github.com/stretchr/testify - -This will then make the following packages available to you: - - github.com/stretchr/testify/assert - github.com/stretchr/testify/mock - github.com/stretchr/testify/http - -Import the `testify/assert` package into your code using this template: - -```go -package yours - -import ( - "testing" - "github.com/stretchr/testify/assert" -) - -func TestSomething(t *testing.T) { - - assert.True(t, true, "True is true!") - -} -``` - ------- - -Staying up to date -================== - -To update Testify to the latest version, use `go get -u github.com/stretchr/testify`. - ------- - -Supported go versions -================== - -We support the three major Go versions, which are 1.8, 1.9 and 1.10 at the moment. - ------- - -Contributing -============ - -Please feel free to submit issues, fork the repository and send pull requests! - -When submitting an issue, we ask that you please include a complete test function that demonstrates the issue. Extra credit for those using Testify to write the test code that demonstrates it. diff --git a/vendor/github.com/stretchr/testify/_codegen/main.go b/vendor/github.com/stretchr/testify/_codegen/main.go deleted file mode 100644 index 2e5e8124..00000000 --- a/vendor/github.com/stretchr/testify/_codegen/main.go +++ /dev/null @@ -1,316 +0,0 @@ -// This program reads all assertion functions from the assert package and -// automatically generates the corresponding requires and forwarded assertions - -package main - -import ( - "bytes" - "flag" - "fmt" - "go/ast" - "go/build" - "go/doc" - "go/format" - "go/importer" - "go/parser" - "go/token" - "go/types" - "io" - "io/ioutil" - "log" - "os" - "path" - "regexp" - "strings" - "text/template" - - "github.com/ernesto-jimenez/gogen/imports" -) - -var ( - pkg = flag.String("assert-path", "github.com/stretchr/testify/assert", "Path to the assert package") - includeF = flag.Bool("include-format-funcs", false, "include format functions such as Errorf and Equalf") - outputPkg = flag.String("output-package", "", "package for the resulting code") - tmplFile = flag.String("template", "", "What file to load the function template from") - out = flag.String("out", "", "What file to write the source code to") -) - -func main() { - flag.Parse() - - scope, docs, err := parsePackageSource(*pkg) - if err != nil { - log.Fatal(err) - } - - importer, funcs, err := analyzeCode(scope, docs) - if err != nil { - log.Fatal(err) - } - - if err := generateCode(importer, funcs); err != nil { - log.Fatal(err) - } -} - -func generateCode(importer imports.Importer, funcs []testFunc) error { - buff := bytes.NewBuffer(nil) - - tmplHead, tmplFunc, err := parseTemplates() - if err != nil { - return err - } - - // Generate header - if err := tmplHead.Execute(buff, struct { - Name string - Imports map[string]string - }{ - *outputPkg, - importer.Imports(), - }); err != nil { - return err - } - - // Generate funcs - for _, fn := range funcs { - buff.Write([]byte("\n\n")) - if err := tmplFunc.Execute(buff, &fn); err != nil { - return err - } - } - - code, err := format.Source(buff.Bytes()) - if err != nil { - return err - } - - // Write file - output, err := outputFile() - if err != nil { - return err - } - defer output.Close() - _, err = io.Copy(output, bytes.NewReader(code)) - return err -} - -func parseTemplates() (*template.Template, *template.Template, error) { - tmplHead, err := template.New("header").Parse(headerTemplate) - if err != nil { - return nil, nil, err - } - if *tmplFile != "" { - f, err := ioutil.ReadFile(*tmplFile) - if err != nil { - return nil, nil, err - } - funcTemplate = string(f) - } - tmpl, err := template.New("function").Parse(funcTemplate) - if err != nil { - return nil, nil, err - } - return tmplHead, tmpl, nil -} - -func outputFile() (*os.File, error) { - filename := *out - if filename == "-" || (filename == "" && *tmplFile == "") { - return os.Stdout, nil - } - if filename == "" { - filename = strings.TrimSuffix(strings.TrimSuffix(*tmplFile, ".tmpl"), ".go") + ".go" - } - return os.Create(filename) -} - -// analyzeCode takes the types scope and the docs and returns the import -// information and information about all the assertion functions. -func analyzeCode(scope *types.Scope, docs *doc.Package) (imports.Importer, []testFunc, error) { - testingT := scope.Lookup("TestingT").Type().Underlying().(*types.Interface) - - importer := imports.New(*outputPkg) - var funcs []testFunc - // Go through all the top level functions - for _, fdocs := range docs.Funcs { - // Find the function - obj := scope.Lookup(fdocs.Name) - - fn, ok := obj.(*types.Func) - if !ok { - continue - } - // Check function signature has at least two arguments - sig := fn.Type().(*types.Signature) - if sig.Params().Len() < 2 { - continue - } - // Check first argument is of type testingT - first, ok := sig.Params().At(0).Type().(*types.Named) - if !ok { - continue - } - firstType, ok := first.Underlying().(*types.Interface) - if !ok { - continue - } - if !types.Implements(firstType, testingT) { - continue - } - - // Skip functions ending with f - if strings.HasSuffix(fdocs.Name, "f") && !*includeF { - continue - } - - funcs = append(funcs, testFunc{*outputPkg, fdocs, fn}) - importer.AddImportsFrom(sig.Params()) - } - return importer, funcs, nil -} - -// parsePackageSource returns the types scope and the package documentation from the package -func parsePackageSource(pkg string) (*types.Scope, *doc.Package, error) { - pd, err := build.Import(pkg, ".", 0) - if err != nil { - return nil, nil, err - } - - fset := token.NewFileSet() - files := make(map[string]*ast.File) - fileList := make([]*ast.File, len(pd.GoFiles)) - for i, fname := range pd.GoFiles { - src, err := ioutil.ReadFile(path.Join(pd.SrcRoot, pd.ImportPath, fname)) - if err != nil { - return nil, nil, err - } - f, err := parser.ParseFile(fset, fname, src, parser.ParseComments|parser.AllErrors) - if err != nil { - return nil, nil, err - } - files[fname] = f - fileList[i] = f - } - - cfg := types.Config{ - Importer: importer.Default(), - } - info := types.Info{ - Defs: make(map[*ast.Ident]types.Object), - } - tp, err := cfg.Check(pkg, fset, fileList, &info) - if err != nil { - return nil, nil, err - } - - scope := tp.Scope() - - ap, _ := ast.NewPackage(fset, files, nil, nil) - docs := doc.New(ap, pkg, 0) - - return scope, docs, nil -} - -type testFunc struct { - CurrentPkg string - DocInfo *doc.Func - TypeInfo *types.Func -} - -func (f *testFunc) Qualifier(p *types.Package) string { - if p == nil || p.Name() == f.CurrentPkg { - return "" - } - return p.Name() -} - -func (f *testFunc) Params() string { - sig := f.TypeInfo.Type().(*types.Signature) - params := sig.Params() - p := "" - comma := "" - to := params.Len() - var i int - - if sig.Variadic() { - to-- - } - for i = 1; i < to; i++ { - param := params.At(i) - p += fmt.Sprintf("%s%s %s", comma, param.Name(), types.TypeString(param.Type(), f.Qualifier)) - comma = ", " - } - if sig.Variadic() { - param := params.At(params.Len() - 1) - p += fmt.Sprintf("%s%s ...%s", comma, param.Name(), types.TypeString(param.Type().(*types.Slice).Elem(), f.Qualifier)) - } - return p -} - -func (f *testFunc) ForwardedParams() string { - sig := f.TypeInfo.Type().(*types.Signature) - params := sig.Params() - p := "" - comma := "" - to := params.Len() - var i int - - if sig.Variadic() { - to-- - } - for i = 1; i < to; i++ { - param := params.At(i) - p += fmt.Sprintf("%s%s", comma, param.Name()) - comma = ", " - } - if sig.Variadic() { - param := params.At(params.Len() - 1) - p += fmt.Sprintf("%s%s...", comma, param.Name()) - } - return p -} - -func (f *testFunc) ParamsFormat() string { - return strings.Replace(f.Params(), "msgAndArgs", "msg string, args", 1) -} - -func (f *testFunc) ForwardedParamsFormat() string { - return strings.Replace(f.ForwardedParams(), "msgAndArgs", "append([]interface{}{msg}, args...)", 1) -} - -func (f *testFunc) Comment() string { - return "// " + strings.Replace(strings.TrimSpace(f.DocInfo.Doc), "\n", "\n// ", -1) -} - -func (f *testFunc) CommentFormat() string { - search := fmt.Sprintf("%s", f.DocInfo.Name) - replace := fmt.Sprintf("%sf", f.DocInfo.Name) - comment := strings.Replace(f.Comment(), search, replace, -1) - exp := regexp.MustCompile(replace + `\(((\(\)|[^)])+)\)`) - return exp.ReplaceAllString(comment, replace+`($1, "error message %s", "formatted")`) -} - -func (f *testFunc) CommentWithoutT(receiver string) string { - search := fmt.Sprintf("assert.%s(t, ", f.DocInfo.Name) - replace := fmt.Sprintf("%s.%s(", receiver, f.DocInfo.Name) - return strings.Replace(f.Comment(), search, replace, -1) -} - -var headerTemplate = `/* -* CODE GENERATED AUTOMATICALLY WITH github.com/stretchr/testify/_codegen -* THIS FILE MUST NOT BE EDITED BY HAND -*/ - -package {{.Name}} - -import ( -{{range $path, $name := .Imports}} - {{$name}} "{{$path}}"{{end}} -) -` - -var funcTemplate = `{{.Comment}} -func (fwd *AssertionsForwarder) {{.DocInfo.Name}}({{.Params}}) bool { - return assert.{{.DocInfo.Name}}({{.ForwardedParams}}) -}` diff --git a/vendor/github.com/stretchr/testify/assert/assertion_format.go b/vendor/github.com/stretchr/testify/assert/assertion_format.go deleted file mode 100644 index aa1c2b95..00000000 --- a/vendor/github.com/stretchr/testify/assert/assertion_format.go +++ /dev/null @@ -1,484 +0,0 @@ -/* -* CODE GENERATED AUTOMATICALLY WITH github.com/stretchr/testify/_codegen -* THIS FILE MUST NOT BE EDITED BY HAND - */ - -package assert - -import ( - http "net/http" - url "net/url" - time "time" -) - -// Conditionf uses a Comparison to assert a complex condition. -func Conditionf(t TestingT, comp Comparison, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return Condition(t, comp, append([]interface{}{msg}, args...)...) -} - -// Containsf asserts that the specified string, list(array, slice...) or map contains the -// specified substring or element. -// -// assert.Containsf(t, "Hello World", "World", "error message %s", "formatted") -// assert.Containsf(t, ["Hello", "World"], "World", "error message %s", "formatted") -// assert.Containsf(t, {"Hello": "World"}, "Hello", "error message %s", "formatted") -func Containsf(t TestingT, s interface{}, contains interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return Contains(t, s, contains, append([]interface{}{msg}, args...)...) -} - -// DirExistsf checks whether a directory exists in the given path. It also fails if the path is a file rather a directory or there is an error checking whether it exists. -func DirExistsf(t TestingT, path string, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return DirExists(t, path, append([]interface{}{msg}, args...)...) -} - -// ElementsMatchf asserts that the specified listA(array, slice...) is equal to specified -// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, -// the number of appearances of each of them in both lists should match. -// -// assert.ElementsMatchf(t, [1, 3, 2, 3], [1, 3, 3, 2], "error message %s", "formatted") -func ElementsMatchf(t TestingT, listA interface{}, listB interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return ElementsMatch(t, listA, listB, append([]interface{}{msg}, args...)...) -} - -// Emptyf asserts that the specified object is empty. I.e. nil, "", false, 0 or either -// a slice or a channel with len == 0. -// -// assert.Emptyf(t, obj, "error message %s", "formatted") -func Emptyf(t TestingT, object interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return Empty(t, object, append([]interface{}{msg}, args...)...) -} - -// Equalf asserts that two objects are equal. -// -// assert.Equalf(t, 123, 123, "error message %s", "formatted") -// -// Pointer variable equality is determined based on the equality of the -// referenced values (as opposed to the memory addresses). Function equality -// cannot be determined and will always fail. -func Equalf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return Equal(t, expected, actual, append([]interface{}{msg}, args...)...) -} - -// EqualErrorf asserts that a function returned an error (i.e. not `nil`) -// and that it is equal to the provided error. -// -// actualObj, err := SomeFunction() -// assert.EqualErrorf(t, err, expectedErrorString, "error message %s", "formatted") -func EqualErrorf(t TestingT, theError error, errString string, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return EqualError(t, theError, errString, append([]interface{}{msg}, args...)...) -} - -// EqualValuesf asserts that two objects are equal or convertable to the same types -// and equal. -// -// assert.EqualValuesf(t, uint32(123, "error message %s", "formatted"), int32(123)) -func EqualValuesf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return EqualValues(t, expected, actual, append([]interface{}{msg}, args...)...) -} - -// Errorf asserts that a function returned an error (i.e. not `nil`). -// -// actualObj, err := SomeFunction() -// if assert.Errorf(t, err, "error message %s", "formatted") { -// assert.Equal(t, expectedErrorf, err) -// } -func Errorf(t TestingT, err error, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return Error(t, err, append([]interface{}{msg}, args...)...) -} - -// Exactlyf asserts that two objects are equal in value and type. -// -// assert.Exactlyf(t, int32(123, "error message %s", "formatted"), int64(123)) -func Exactlyf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return Exactly(t, expected, actual, append([]interface{}{msg}, args...)...) -} - -// Failf reports a failure through -func Failf(t TestingT, failureMessage string, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return Fail(t, failureMessage, append([]interface{}{msg}, args...)...) -} - -// FailNowf fails test -func FailNowf(t TestingT, failureMessage string, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return FailNow(t, failureMessage, append([]interface{}{msg}, args...)...) -} - -// Falsef asserts that the specified value is false. -// -// assert.Falsef(t, myBool, "error message %s", "formatted") -func Falsef(t TestingT, value bool, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return False(t, value, append([]interface{}{msg}, args...)...) -} - -// FileExistsf checks whether a file exists in the given path. It also fails if the path points to a directory or there is an error when trying to check the file. -func FileExistsf(t TestingT, path string, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return FileExists(t, path, append([]interface{}{msg}, args...)...) -} - -// HTTPBodyContainsf asserts that a specified handler returns a -// body that contains a string. -// -// assert.HTTPBodyContainsf(t, myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky", "error message %s", "formatted") -// -// Returns whether the assertion was successful (true) or not (false). -func HTTPBodyContainsf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return HTTPBodyContains(t, handler, method, url, values, str, append([]interface{}{msg}, args...)...) -} - -// HTTPBodyNotContainsf asserts that a specified handler returns a -// body that does not contain a string. -// -// assert.HTTPBodyNotContainsf(t, myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky", "error message %s", "formatted") -// -// Returns whether the assertion was successful (true) or not (false). -func HTTPBodyNotContainsf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return HTTPBodyNotContains(t, handler, method, url, values, str, append([]interface{}{msg}, args...)...) -} - -// HTTPErrorf asserts that a specified handler returns an error status code. -// -// assert.HTTPErrorf(t, myHandler, "POST", "/a/b/c", url.Values{"a": []string{"b", "c"}} -// -// Returns whether the assertion was successful (true, "error message %s", "formatted") or not (false). -func HTTPErrorf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return HTTPError(t, handler, method, url, values, append([]interface{}{msg}, args...)...) -} - -// HTTPRedirectf asserts that a specified handler returns a redirect status code. -// -// assert.HTTPRedirectf(t, myHandler, "GET", "/a/b/c", url.Values{"a": []string{"b", "c"}} -// -// Returns whether the assertion was successful (true, "error message %s", "formatted") or not (false). -func HTTPRedirectf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return HTTPRedirect(t, handler, method, url, values, append([]interface{}{msg}, args...)...) -} - -// HTTPSuccessf asserts that a specified handler returns a success status code. -// -// assert.HTTPSuccessf(t, myHandler, "POST", "http://www.google.com", nil, "error message %s", "formatted") -// -// Returns whether the assertion was successful (true) or not (false). -func HTTPSuccessf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return HTTPSuccess(t, handler, method, url, values, append([]interface{}{msg}, args...)...) -} - -// Implementsf asserts that an object is implemented by the specified interface. -// -// assert.Implementsf(t, (*MyInterface, "error message %s", "formatted")(nil), new(MyObject)) -func Implementsf(t TestingT, interfaceObject interface{}, object interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return Implements(t, interfaceObject, object, append([]interface{}{msg}, args...)...) -} - -// InDeltaf asserts that the two numerals are within delta of each other. -// -// assert.InDeltaf(t, math.Pi, (22 / 7.0, "error message %s", "formatted"), 0.01) -func InDeltaf(t TestingT, expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return InDelta(t, expected, actual, delta, append([]interface{}{msg}, args...)...) -} - -// InDeltaMapValuesf is the same as InDelta, but it compares all values between two maps. Both maps must have exactly the same keys. -func InDeltaMapValuesf(t TestingT, expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return InDeltaMapValues(t, expected, actual, delta, append([]interface{}{msg}, args...)...) -} - -// InDeltaSlicef is the same as InDelta, except it compares two slices. -func InDeltaSlicef(t TestingT, expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return InDeltaSlice(t, expected, actual, delta, append([]interface{}{msg}, args...)...) -} - -// InEpsilonf asserts that expected and actual have a relative error less than epsilon -func InEpsilonf(t TestingT, expected interface{}, actual interface{}, epsilon float64, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return InEpsilon(t, expected, actual, epsilon, append([]interface{}{msg}, args...)...) -} - -// InEpsilonSlicef is the same as InEpsilon, except it compares each value from two slices. -func InEpsilonSlicef(t TestingT, expected interface{}, actual interface{}, epsilon float64, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return InEpsilonSlice(t, expected, actual, epsilon, append([]interface{}{msg}, args...)...) -} - -// IsTypef asserts that the specified objects are of the same type. -func IsTypef(t TestingT, expectedType interface{}, object interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return IsType(t, expectedType, object, append([]interface{}{msg}, args...)...) -} - -// JSONEqf asserts that two JSON strings are equivalent. -// -// assert.JSONEqf(t, `{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`, "error message %s", "formatted") -func JSONEqf(t TestingT, expected string, actual string, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return JSONEq(t, expected, actual, append([]interface{}{msg}, args...)...) -} - -// Lenf asserts that the specified object has specific length. -// Lenf also fails if the object has a type that len() not accept. -// -// assert.Lenf(t, mySlice, 3, "error message %s", "formatted") -func Lenf(t TestingT, object interface{}, length int, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return Len(t, object, length, append([]interface{}{msg}, args...)...) -} - -// Nilf asserts that the specified object is nil. -// -// assert.Nilf(t, err, "error message %s", "formatted") -func Nilf(t TestingT, object interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return Nil(t, object, append([]interface{}{msg}, args...)...) -} - -// NoErrorf asserts that a function returned no error (i.e. `nil`). -// -// actualObj, err := SomeFunction() -// if assert.NoErrorf(t, err, "error message %s", "formatted") { -// assert.Equal(t, expectedObj, actualObj) -// } -func NoErrorf(t TestingT, err error, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return NoError(t, err, append([]interface{}{msg}, args...)...) -} - -// NotContainsf asserts that the specified string, list(array, slice...) or map does NOT contain the -// specified substring or element. -// -// assert.NotContainsf(t, "Hello World", "Earth", "error message %s", "formatted") -// assert.NotContainsf(t, ["Hello", "World"], "Earth", "error message %s", "formatted") -// assert.NotContainsf(t, {"Hello": "World"}, "Earth", "error message %s", "formatted") -func NotContainsf(t TestingT, s interface{}, contains interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return NotContains(t, s, contains, append([]interface{}{msg}, args...)...) -} - -// NotEmptyf asserts that the specified object is NOT empty. I.e. not nil, "", false, 0 or either -// a slice or a channel with len == 0. -// -// if assert.NotEmptyf(t, obj, "error message %s", "formatted") { -// assert.Equal(t, "two", obj[1]) -// } -func NotEmptyf(t TestingT, object interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return NotEmpty(t, object, append([]interface{}{msg}, args...)...) -} - -// NotEqualf asserts that the specified values are NOT equal. -// -// assert.NotEqualf(t, obj1, obj2, "error message %s", "formatted") -// -// Pointer variable equality is determined based on the equality of the -// referenced values (as opposed to the memory addresses). -func NotEqualf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return NotEqual(t, expected, actual, append([]interface{}{msg}, args...)...) -} - -// NotNilf asserts that the specified object is not nil. -// -// assert.NotNilf(t, err, "error message %s", "formatted") -func NotNilf(t TestingT, object interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return NotNil(t, object, append([]interface{}{msg}, args...)...) -} - -// NotPanicsf asserts that the code inside the specified PanicTestFunc does NOT panic. -// -// assert.NotPanicsf(t, func(){ RemainCalm() }, "error message %s", "formatted") -func NotPanicsf(t TestingT, f PanicTestFunc, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return NotPanics(t, f, append([]interface{}{msg}, args...)...) -} - -// NotRegexpf asserts that a specified regexp does not match a string. -// -// assert.NotRegexpf(t, regexp.MustCompile("starts", "error message %s", "formatted"), "it's starting") -// assert.NotRegexpf(t, "^start", "it's not starting", "error message %s", "formatted") -func NotRegexpf(t TestingT, rx interface{}, str interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return NotRegexp(t, rx, str, append([]interface{}{msg}, args...)...) -} - -// NotSubsetf asserts that the specified list(array, slice...) contains not all -// elements given in the specified subset(array, slice...). -// -// assert.NotSubsetf(t, [1, 3, 4], [1, 2], "But [1, 3, 4] does not contain [1, 2]", "error message %s", "formatted") -func NotSubsetf(t TestingT, list interface{}, subset interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return NotSubset(t, list, subset, append([]interface{}{msg}, args...)...) -} - -// NotZerof asserts that i is not the zero value for its type. -func NotZerof(t TestingT, i interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return NotZero(t, i, append([]interface{}{msg}, args...)...) -} - -// Panicsf asserts that the code inside the specified PanicTestFunc panics. -// -// assert.Panicsf(t, func(){ GoCrazy() }, "error message %s", "formatted") -func Panicsf(t TestingT, f PanicTestFunc, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return Panics(t, f, append([]interface{}{msg}, args...)...) -} - -// PanicsWithValuef asserts that the code inside the specified PanicTestFunc panics, and that -// the recovered panic value equals the expected panic value. -// -// assert.PanicsWithValuef(t, "crazy error", func(){ GoCrazy() }, "error message %s", "formatted") -func PanicsWithValuef(t TestingT, expected interface{}, f PanicTestFunc, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return PanicsWithValue(t, expected, f, append([]interface{}{msg}, args...)...) -} - -// Regexpf asserts that a specified regexp matches a string. -// -// assert.Regexpf(t, regexp.MustCompile("start", "error message %s", "formatted"), "it's starting") -// assert.Regexpf(t, "start...$", "it's not starting", "error message %s", "formatted") -func Regexpf(t TestingT, rx interface{}, str interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return Regexp(t, rx, str, append([]interface{}{msg}, args...)...) -} - -// Subsetf asserts that the specified list(array, slice...) contains all -// elements given in the specified subset(array, slice...). -// -// assert.Subsetf(t, [1, 2, 3], [1, 2], "But [1, 2, 3] does contain [1, 2]", "error message %s", "formatted") -func Subsetf(t TestingT, list interface{}, subset interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return Subset(t, list, subset, append([]interface{}{msg}, args...)...) -} - -// Truef asserts that the specified value is true. -// -// assert.Truef(t, myBool, "error message %s", "formatted") -func Truef(t TestingT, value bool, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return True(t, value, append([]interface{}{msg}, args...)...) -} - -// WithinDurationf asserts that the two times are within duration delta of each other. -// -// assert.WithinDurationf(t, time.Now(), time.Now(), 10*time.Second, "error message %s", "formatted") -func WithinDurationf(t TestingT, expected time.Time, actual time.Time, delta time.Duration, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return WithinDuration(t, expected, actual, delta, append([]interface{}{msg}, args...)...) -} - -// Zerof asserts that i is the zero value for its type. -func Zerof(t TestingT, i interface{}, msg string, args ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - return Zero(t, i, append([]interface{}{msg}, args...)...) -} diff --git a/vendor/github.com/stretchr/testify/assert/assertion_format.go.tmpl b/vendor/github.com/stretchr/testify/assert/assertion_format.go.tmpl deleted file mode 100644 index d2bb0b81..00000000 --- a/vendor/github.com/stretchr/testify/assert/assertion_format.go.tmpl +++ /dev/null @@ -1,5 +0,0 @@ -{{.CommentFormat}} -func {{.DocInfo.Name}}f(t TestingT, {{.ParamsFormat}}) bool { - if h, ok := t.(tHelper); ok { h.Helper() } - return {{.DocInfo.Name}}(t, {{.ForwardedParamsFormat}}) -} diff --git a/vendor/github.com/stretchr/testify/assert/assertion_forward.go b/vendor/github.com/stretchr/testify/assert/assertion_forward.go deleted file mode 100644 index de39f794..00000000 --- a/vendor/github.com/stretchr/testify/assert/assertion_forward.go +++ /dev/null @@ -1,956 +0,0 @@ -/* -* CODE GENERATED AUTOMATICALLY WITH github.com/stretchr/testify/_codegen -* THIS FILE MUST NOT BE EDITED BY HAND - */ - -package assert - -import ( - http "net/http" - url "net/url" - time "time" -) - -// Condition uses a Comparison to assert a complex condition. -func (a *Assertions) Condition(comp Comparison, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Condition(a.t, comp, msgAndArgs...) -} - -// Conditionf uses a Comparison to assert a complex condition. -func (a *Assertions) Conditionf(comp Comparison, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Conditionf(a.t, comp, msg, args...) -} - -// Contains asserts that the specified string, list(array, slice...) or map contains the -// specified substring or element. -// -// a.Contains("Hello World", "World") -// a.Contains(["Hello", "World"], "World") -// a.Contains({"Hello": "World"}, "Hello") -func (a *Assertions) Contains(s interface{}, contains interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Contains(a.t, s, contains, msgAndArgs...) -} - -// Containsf asserts that the specified string, list(array, slice...) or map contains the -// specified substring or element. -// -// a.Containsf("Hello World", "World", "error message %s", "formatted") -// a.Containsf(["Hello", "World"], "World", "error message %s", "formatted") -// a.Containsf({"Hello": "World"}, "Hello", "error message %s", "formatted") -func (a *Assertions) Containsf(s interface{}, contains interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Containsf(a.t, s, contains, msg, args...) -} - -// DirExists checks whether a directory exists in the given path. It also fails if the path is a file rather a directory or there is an error checking whether it exists. -func (a *Assertions) DirExists(path string, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return DirExists(a.t, path, msgAndArgs...) -} - -// DirExistsf checks whether a directory exists in the given path. It also fails if the path is a file rather a directory or there is an error checking whether it exists. -func (a *Assertions) DirExistsf(path string, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return DirExistsf(a.t, path, msg, args...) -} - -// ElementsMatch asserts that the specified listA(array, slice...) is equal to specified -// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, -// the number of appearances of each of them in both lists should match. -// -// a.ElementsMatch([1, 3, 2, 3], [1, 3, 3, 2]) -func (a *Assertions) ElementsMatch(listA interface{}, listB interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return ElementsMatch(a.t, listA, listB, msgAndArgs...) -} - -// ElementsMatchf asserts that the specified listA(array, slice...) is equal to specified -// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, -// the number of appearances of each of them in both lists should match. -// -// a.ElementsMatchf([1, 3, 2, 3], [1, 3, 3, 2], "error message %s", "formatted") -func (a *Assertions) ElementsMatchf(listA interface{}, listB interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return ElementsMatchf(a.t, listA, listB, msg, args...) -} - -// Empty asserts that the specified object is empty. I.e. nil, "", false, 0 or either -// a slice or a channel with len == 0. -// -// a.Empty(obj) -func (a *Assertions) Empty(object interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Empty(a.t, object, msgAndArgs...) -} - -// Emptyf asserts that the specified object is empty. I.e. nil, "", false, 0 or either -// a slice or a channel with len == 0. -// -// a.Emptyf(obj, "error message %s", "formatted") -func (a *Assertions) Emptyf(object interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Emptyf(a.t, object, msg, args...) -} - -// Equal asserts that two objects are equal. -// -// a.Equal(123, 123) -// -// Pointer variable equality is determined based on the equality of the -// referenced values (as opposed to the memory addresses). Function equality -// cannot be determined and will always fail. -func (a *Assertions) Equal(expected interface{}, actual interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Equal(a.t, expected, actual, msgAndArgs...) -} - -// EqualError asserts that a function returned an error (i.e. not `nil`) -// and that it is equal to the provided error. -// -// actualObj, err := SomeFunction() -// a.EqualError(err, expectedErrorString) -func (a *Assertions) EqualError(theError error, errString string, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return EqualError(a.t, theError, errString, msgAndArgs...) -} - -// EqualErrorf asserts that a function returned an error (i.e. not `nil`) -// and that it is equal to the provided error. -// -// actualObj, err := SomeFunction() -// a.EqualErrorf(err, expectedErrorString, "error message %s", "formatted") -func (a *Assertions) EqualErrorf(theError error, errString string, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return EqualErrorf(a.t, theError, errString, msg, args...) -} - -// EqualValues asserts that two objects are equal or convertable to the same types -// and equal. -// -// a.EqualValues(uint32(123), int32(123)) -func (a *Assertions) EqualValues(expected interface{}, actual interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return EqualValues(a.t, expected, actual, msgAndArgs...) -} - -// EqualValuesf asserts that two objects are equal or convertable to the same types -// and equal. -// -// a.EqualValuesf(uint32(123, "error message %s", "formatted"), int32(123)) -func (a *Assertions) EqualValuesf(expected interface{}, actual interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return EqualValuesf(a.t, expected, actual, msg, args...) -} - -// Equalf asserts that two objects are equal. -// -// a.Equalf(123, 123, "error message %s", "formatted") -// -// Pointer variable equality is determined based on the equality of the -// referenced values (as opposed to the memory addresses). Function equality -// cannot be determined and will always fail. -func (a *Assertions) Equalf(expected interface{}, actual interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Equalf(a.t, expected, actual, msg, args...) -} - -// Error asserts that a function returned an error (i.e. not `nil`). -// -// actualObj, err := SomeFunction() -// if a.Error(err) { -// assert.Equal(t, expectedError, err) -// } -func (a *Assertions) Error(err error, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Error(a.t, err, msgAndArgs...) -} - -// Errorf asserts that a function returned an error (i.e. not `nil`). -// -// actualObj, err := SomeFunction() -// if a.Errorf(err, "error message %s", "formatted") { -// assert.Equal(t, expectedErrorf, err) -// } -func (a *Assertions) Errorf(err error, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Errorf(a.t, err, msg, args...) -} - -// Exactly asserts that two objects are equal in value and type. -// -// a.Exactly(int32(123), int64(123)) -func (a *Assertions) Exactly(expected interface{}, actual interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Exactly(a.t, expected, actual, msgAndArgs...) -} - -// Exactlyf asserts that two objects are equal in value and type. -// -// a.Exactlyf(int32(123, "error message %s", "formatted"), int64(123)) -func (a *Assertions) Exactlyf(expected interface{}, actual interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Exactlyf(a.t, expected, actual, msg, args...) -} - -// Fail reports a failure through -func (a *Assertions) Fail(failureMessage string, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Fail(a.t, failureMessage, msgAndArgs...) -} - -// FailNow fails test -func (a *Assertions) FailNow(failureMessage string, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return FailNow(a.t, failureMessage, msgAndArgs...) -} - -// FailNowf fails test -func (a *Assertions) FailNowf(failureMessage string, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return FailNowf(a.t, failureMessage, msg, args...) -} - -// Failf reports a failure through -func (a *Assertions) Failf(failureMessage string, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Failf(a.t, failureMessage, msg, args...) -} - -// False asserts that the specified value is false. -// -// a.False(myBool) -func (a *Assertions) False(value bool, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return False(a.t, value, msgAndArgs...) -} - -// Falsef asserts that the specified value is false. -// -// a.Falsef(myBool, "error message %s", "formatted") -func (a *Assertions) Falsef(value bool, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Falsef(a.t, value, msg, args...) -} - -// FileExists checks whether a file exists in the given path. It also fails if the path points to a directory or there is an error when trying to check the file. -func (a *Assertions) FileExists(path string, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return FileExists(a.t, path, msgAndArgs...) -} - -// FileExistsf checks whether a file exists in the given path. It also fails if the path points to a directory or there is an error when trying to check the file. -func (a *Assertions) FileExistsf(path string, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return FileExistsf(a.t, path, msg, args...) -} - -// HTTPBodyContains asserts that a specified handler returns a -// body that contains a string. -// -// a.HTTPBodyContains(myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky") -// -// Returns whether the assertion was successful (true) or not (false). -func (a *Assertions) HTTPBodyContains(handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return HTTPBodyContains(a.t, handler, method, url, values, str, msgAndArgs...) -} - -// HTTPBodyContainsf asserts that a specified handler returns a -// body that contains a string. -// -// a.HTTPBodyContainsf(myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky", "error message %s", "formatted") -// -// Returns whether the assertion was successful (true) or not (false). -func (a *Assertions) HTTPBodyContainsf(handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return HTTPBodyContainsf(a.t, handler, method, url, values, str, msg, args...) -} - -// HTTPBodyNotContains asserts that a specified handler returns a -// body that does not contain a string. -// -// a.HTTPBodyNotContains(myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky") -// -// Returns whether the assertion was successful (true) or not (false). -func (a *Assertions) HTTPBodyNotContains(handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return HTTPBodyNotContains(a.t, handler, method, url, values, str, msgAndArgs...) -} - -// HTTPBodyNotContainsf asserts that a specified handler returns a -// body that does not contain a string. -// -// a.HTTPBodyNotContainsf(myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky", "error message %s", "formatted") -// -// Returns whether the assertion was successful (true) or not (false). -func (a *Assertions) HTTPBodyNotContainsf(handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return HTTPBodyNotContainsf(a.t, handler, method, url, values, str, msg, args...) -} - -// HTTPError asserts that a specified handler returns an error status code. -// -// a.HTTPError(myHandler, "POST", "/a/b/c", url.Values{"a": []string{"b", "c"}} -// -// Returns whether the assertion was successful (true) or not (false). -func (a *Assertions) HTTPError(handler http.HandlerFunc, method string, url string, values url.Values, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return HTTPError(a.t, handler, method, url, values, msgAndArgs...) -} - -// HTTPErrorf asserts that a specified handler returns an error status code. -// -// a.HTTPErrorf(myHandler, "POST", "/a/b/c", url.Values{"a": []string{"b", "c"}} -// -// Returns whether the assertion was successful (true, "error message %s", "formatted") or not (false). -func (a *Assertions) HTTPErrorf(handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return HTTPErrorf(a.t, handler, method, url, values, msg, args...) -} - -// HTTPRedirect asserts that a specified handler returns a redirect status code. -// -// a.HTTPRedirect(myHandler, "GET", "/a/b/c", url.Values{"a": []string{"b", "c"}} -// -// Returns whether the assertion was successful (true) or not (false). -func (a *Assertions) HTTPRedirect(handler http.HandlerFunc, method string, url string, values url.Values, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return HTTPRedirect(a.t, handler, method, url, values, msgAndArgs...) -} - -// HTTPRedirectf asserts that a specified handler returns a redirect status code. -// -// a.HTTPRedirectf(myHandler, "GET", "/a/b/c", url.Values{"a": []string{"b", "c"}} -// -// Returns whether the assertion was successful (true, "error message %s", "formatted") or not (false). -func (a *Assertions) HTTPRedirectf(handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return HTTPRedirectf(a.t, handler, method, url, values, msg, args...) -} - -// HTTPSuccess asserts that a specified handler returns a success status code. -// -// a.HTTPSuccess(myHandler, "POST", "http://www.google.com", nil) -// -// Returns whether the assertion was successful (true) or not (false). -func (a *Assertions) HTTPSuccess(handler http.HandlerFunc, method string, url string, values url.Values, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return HTTPSuccess(a.t, handler, method, url, values, msgAndArgs...) -} - -// HTTPSuccessf asserts that a specified handler returns a success status code. -// -// a.HTTPSuccessf(myHandler, "POST", "http://www.google.com", nil, "error message %s", "formatted") -// -// Returns whether the assertion was successful (true) or not (false). -func (a *Assertions) HTTPSuccessf(handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return HTTPSuccessf(a.t, handler, method, url, values, msg, args...) -} - -// Implements asserts that an object is implemented by the specified interface. -// -// a.Implements((*MyInterface)(nil), new(MyObject)) -func (a *Assertions) Implements(interfaceObject interface{}, object interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Implements(a.t, interfaceObject, object, msgAndArgs...) -} - -// Implementsf asserts that an object is implemented by the specified interface. -// -// a.Implementsf((*MyInterface, "error message %s", "formatted")(nil), new(MyObject)) -func (a *Assertions) Implementsf(interfaceObject interface{}, object interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Implementsf(a.t, interfaceObject, object, msg, args...) -} - -// InDelta asserts that the two numerals are within delta of each other. -// -// a.InDelta(math.Pi, (22 / 7.0), 0.01) -func (a *Assertions) InDelta(expected interface{}, actual interface{}, delta float64, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return InDelta(a.t, expected, actual, delta, msgAndArgs...) -} - -// InDeltaMapValues is the same as InDelta, but it compares all values between two maps. Both maps must have exactly the same keys. -func (a *Assertions) InDeltaMapValues(expected interface{}, actual interface{}, delta float64, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return InDeltaMapValues(a.t, expected, actual, delta, msgAndArgs...) -} - -// InDeltaMapValuesf is the same as InDelta, but it compares all values between two maps. Both maps must have exactly the same keys. -func (a *Assertions) InDeltaMapValuesf(expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return InDeltaMapValuesf(a.t, expected, actual, delta, msg, args...) -} - -// InDeltaSlice is the same as InDelta, except it compares two slices. -func (a *Assertions) InDeltaSlice(expected interface{}, actual interface{}, delta float64, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return InDeltaSlice(a.t, expected, actual, delta, msgAndArgs...) -} - -// InDeltaSlicef is the same as InDelta, except it compares two slices. -func (a *Assertions) InDeltaSlicef(expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return InDeltaSlicef(a.t, expected, actual, delta, msg, args...) -} - -// InDeltaf asserts that the two numerals are within delta of each other. -// -// a.InDeltaf(math.Pi, (22 / 7.0, "error message %s", "formatted"), 0.01) -func (a *Assertions) InDeltaf(expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return InDeltaf(a.t, expected, actual, delta, msg, args...) -} - -// InEpsilon asserts that expected and actual have a relative error less than epsilon -func (a *Assertions) InEpsilon(expected interface{}, actual interface{}, epsilon float64, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return InEpsilon(a.t, expected, actual, epsilon, msgAndArgs...) -} - -// InEpsilonSlice is the same as InEpsilon, except it compares each value from two slices. -func (a *Assertions) InEpsilonSlice(expected interface{}, actual interface{}, epsilon float64, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return InEpsilonSlice(a.t, expected, actual, epsilon, msgAndArgs...) -} - -// InEpsilonSlicef is the same as InEpsilon, except it compares each value from two slices. -func (a *Assertions) InEpsilonSlicef(expected interface{}, actual interface{}, epsilon float64, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return InEpsilonSlicef(a.t, expected, actual, epsilon, msg, args...) -} - -// InEpsilonf asserts that expected and actual have a relative error less than epsilon -func (a *Assertions) InEpsilonf(expected interface{}, actual interface{}, epsilon float64, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return InEpsilonf(a.t, expected, actual, epsilon, msg, args...) -} - -// IsType asserts that the specified objects are of the same type. -func (a *Assertions) IsType(expectedType interface{}, object interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return IsType(a.t, expectedType, object, msgAndArgs...) -} - -// IsTypef asserts that the specified objects are of the same type. -func (a *Assertions) IsTypef(expectedType interface{}, object interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return IsTypef(a.t, expectedType, object, msg, args...) -} - -// JSONEq asserts that two JSON strings are equivalent. -// -// a.JSONEq(`{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`) -func (a *Assertions) JSONEq(expected string, actual string, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return JSONEq(a.t, expected, actual, msgAndArgs...) -} - -// JSONEqf asserts that two JSON strings are equivalent. -// -// a.JSONEqf(`{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`, "error message %s", "formatted") -func (a *Assertions) JSONEqf(expected string, actual string, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return JSONEqf(a.t, expected, actual, msg, args...) -} - -// Len asserts that the specified object has specific length. -// Len also fails if the object has a type that len() not accept. -// -// a.Len(mySlice, 3) -func (a *Assertions) Len(object interface{}, length int, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Len(a.t, object, length, msgAndArgs...) -} - -// Lenf asserts that the specified object has specific length. -// Lenf also fails if the object has a type that len() not accept. -// -// a.Lenf(mySlice, 3, "error message %s", "formatted") -func (a *Assertions) Lenf(object interface{}, length int, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Lenf(a.t, object, length, msg, args...) -} - -// Nil asserts that the specified object is nil. -// -// a.Nil(err) -func (a *Assertions) Nil(object interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Nil(a.t, object, msgAndArgs...) -} - -// Nilf asserts that the specified object is nil. -// -// a.Nilf(err, "error message %s", "formatted") -func (a *Assertions) Nilf(object interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Nilf(a.t, object, msg, args...) -} - -// NoError asserts that a function returned no error (i.e. `nil`). -// -// actualObj, err := SomeFunction() -// if a.NoError(err) { -// assert.Equal(t, expectedObj, actualObj) -// } -func (a *Assertions) NoError(err error, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return NoError(a.t, err, msgAndArgs...) -} - -// NoErrorf asserts that a function returned no error (i.e. `nil`). -// -// actualObj, err := SomeFunction() -// if a.NoErrorf(err, "error message %s", "formatted") { -// assert.Equal(t, expectedObj, actualObj) -// } -func (a *Assertions) NoErrorf(err error, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return NoErrorf(a.t, err, msg, args...) -} - -// NotContains asserts that the specified string, list(array, slice...) or map does NOT contain the -// specified substring or element. -// -// a.NotContains("Hello World", "Earth") -// a.NotContains(["Hello", "World"], "Earth") -// a.NotContains({"Hello": "World"}, "Earth") -func (a *Assertions) NotContains(s interface{}, contains interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return NotContains(a.t, s, contains, msgAndArgs...) -} - -// NotContainsf asserts that the specified string, list(array, slice...) or map does NOT contain the -// specified substring or element. -// -// a.NotContainsf("Hello World", "Earth", "error message %s", "formatted") -// a.NotContainsf(["Hello", "World"], "Earth", "error message %s", "formatted") -// a.NotContainsf({"Hello": "World"}, "Earth", "error message %s", "formatted") -func (a *Assertions) NotContainsf(s interface{}, contains interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return NotContainsf(a.t, s, contains, msg, args...) -} - -// NotEmpty asserts that the specified object is NOT empty. I.e. not nil, "", false, 0 or either -// a slice or a channel with len == 0. -// -// if a.NotEmpty(obj) { -// assert.Equal(t, "two", obj[1]) -// } -func (a *Assertions) NotEmpty(object interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return NotEmpty(a.t, object, msgAndArgs...) -} - -// NotEmptyf asserts that the specified object is NOT empty. I.e. not nil, "", false, 0 or either -// a slice or a channel with len == 0. -// -// if a.NotEmptyf(obj, "error message %s", "formatted") { -// assert.Equal(t, "two", obj[1]) -// } -func (a *Assertions) NotEmptyf(object interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return NotEmptyf(a.t, object, msg, args...) -} - -// NotEqual asserts that the specified values are NOT equal. -// -// a.NotEqual(obj1, obj2) -// -// Pointer variable equality is determined based on the equality of the -// referenced values (as opposed to the memory addresses). -func (a *Assertions) NotEqual(expected interface{}, actual interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return NotEqual(a.t, expected, actual, msgAndArgs...) -} - -// NotEqualf asserts that the specified values are NOT equal. -// -// a.NotEqualf(obj1, obj2, "error message %s", "formatted") -// -// Pointer variable equality is determined based on the equality of the -// referenced values (as opposed to the memory addresses). -func (a *Assertions) NotEqualf(expected interface{}, actual interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return NotEqualf(a.t, expected, actual, msg, args...) -} - -// NotNil asserts that the specified object is not nil. -// -// a.NotNil(err) -func (a *Assertions) NotNil(object interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return NotNil(a.t, object, msgAndArgs...) -} - -// NotNilf asserts that the specified object is not nil. -// -// a.NotNilf(err, "error message %s", "formatted") -func (a *Assertions) NotNilf(object interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return NotNilf(a.t, object, msg, args...) -} - -// NotPanics asserts that the code inside the specified PanicTestFunc does NOT panic. -// -// a.NotPanics(func(){ RemainCalm() }) -func (a *Assertions) NotPanics(f PanicTestFunc, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return NotPanics(a.t, f, msgAndArgs...) -} - -// NotPanicsf asserts that the code inside the specified PanicTestFunc does NOT panic. -// -// a.NotPanicsf(func(){ RemainCalm() }, "error message %s", "formatted") -func (a *Assertions) NotPanicsf(f PanicTestFunc, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return NotPanicsf(a.t, f, msg, args...) -} - -// NotRegexp asserts that a specified regexp does not match a string. -// -// a.NotRegexp(regexp.MustCompile("starts"), "it's starting") -// a.NotRegexp("^start", "it's not starting") -func (a *Assertions) NotRegexp(rx interface{}, str interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return NotRegexp(a.t, rx, str, msgAndArgs...) -} - -// NotRegexpf asserts that a specified regexp does not match a string. -// -// a.NotRegexpf(regexp.MustCompile("starts", "error message %s", "formatted"), "it's starting") -// a.NotRegexpf("^start", "it's not starting", "error message %s", "formatted") -func (a *Assertions) NotRegexpf(rx interface{}, str interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return NotRegexpf(a.t, rx, str, msg, args...) -} - -// NotSubset asserts that the specified list(array, slice...) contains not all -// elements given in the specified subset(array, slice...). -// -// a.NotSubset([1, 3, 4], [1, 2], "But [1, 3, 4] does not contain [1, 2]") -func (a *Assertions) NotSubset(list interface{}, subset interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return NotSubset(a.t, list, subset, msgAndArgs...) -} - -// NotSubsetf asserts that the specified list(array, slice...) contains not all -// elements given in the specified subset(array, slice...). -// -// a.NotSubsetf([1, 3, 4], [1, 2], "But [1, 3, 4] does not contain [1, 2]", "error message %s", "formatted") -func (a *Assertions) NotSubsetf(list interface{}, subset interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return NotSubsetf(a.t, list, subset, msg, args...) -} - -// NotZero asserts that i is not the zero value for its type. -func (a *Assertions) NotZero(i interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return NotZero(a.t, i, msgAndArgs...) -} - -// NotZerof asserts that i is not the zero value for its type. -func (a *Assertions) NotZerof(i interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return NotZerof(a.t, i, msg, args...) -} - -// Panics asserts that the code inside the specified PanicTestFunc panics. -// -// a.Panics(func(){ GoCrazy() }) -func (a *Assertions) Panics(f PanicTestFunc, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Panics(a.t, f, msgAndArgs...) -} - -// PanicsWithValue asserts that the code inside the specified PanicTestFunc panics, and that -// the recovered panic value equals the expected panic value. -// -// a.PanicsWithValue("crazy error", func(){ GoCrazy() }) -func (a *Assertions) PanicsWithValue(expected interface{}, f PanicTestFunc, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return PanicsWithValue(a.t, expected, f, msgAndArgs...) -} - -// PanicsWithValuef asserts that the code inside the specified PanicTestFunc panics, and that -// the recovered panic value equals the expected panic value. -// -// a.PanicsWithValuef("crazy error", func(){ GoCrazy() }, "error message %s", "formatted") -func (a *Assertions) PanicsWithValuef(expected interface{}, f PanicTestFunc, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return PanicsWithValuef(a.t, expected, f, msg, args...) -} - -// Panicsf asserts that the code inside the specified PanicTestFunc panics. -// -// a.Panicsf(func(){ GoCrazy() }, "error message %s", "formatted") -func (a *Assertions) Panicsf(f PanicTestFunc, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Panicsf(a.t, f, msg, args...) -} - -// Regexp asserts that a specified regexp matches a string. -// -// a.Regexp(regexp.MustCompile("start"), "it's starting") -// a.Regexp("start...$", "it's not starting") -func (a *Assertions) Regexp(rx interface{}, str interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Regexp(a.t, rx, str, msgAndArgs...) -} - -// Regexpf asserts that a specified regexp matches a string. -// -// a.Regexpf(regexp.MustCompile("start", "error message %s", "formatted"), "it's starting") -// a.Regexpf("start...$", "it's not starting", "error message %s", "formatted") -func (a *Assertions) Regexpf(rx interface{}, str interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Regexpf(a.t, rx, str, msg, args...) -} - -// Subset asserts that the specified list(array, slice...) contains all -// elements given in the specified subset(array, slice...). -// -// a.Subset([1, 2, 3], [1, 2], "But [1, 2, 3] does contain [1, 2]") -func (a *Assertions) Subset(list interface{}, subset interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Subset(a.t, list, subset, msgAndArgs...) -} - -// Subsetf asserts that the specified list(array, slice...) contains all -// elements given in the specified subset(array, slice...). -// -// a.Subsetf([1, 2, 3], [1, 2], "But [1, 2, 3] does contain [1, 2]", "error message %s", "formatted") -func (a *Assertions) Subsetf(list interface{}, subset interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Subsetf(a.t, list, subset, msg, args...) -} - -// True asserts that the specified value is true. -// -// a.True(myBool) -func (a *Assertions) True(value bool, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return True(a.t, value, msgAndArgs...) -} - -// Truef asserts that the specified value is true. -// -// a.Truef(myBool, "error message %s", "formatted") -func (a *Assertions) Truef(value bool, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Truef(a.t, value, msg, args...) -} - -// WithinDuration asserts that the two times are within duration delta of each other. -// -// a.WithinDuration(time.Now(), time.Now(), 10*time.Second) -func (a *Assertions) WithinDuration(expected time.Time, actual time.Time, delta time.Duration, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return WithinDuration(a.t, expected, actual, delta, msgAndArgs...) -} - -// WithinDurationf asserts that the two times are within duration delta of each other. -// -// a.WithinDurationf(time.Now(), time.Now(), 10*time.Second, "error message %s", "formatted") -func (a *Assertions) WithinDurationf(expected time.Time, actual time.Time, delta time.Duration, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return WithinDurationf(a.t, expected, actual, delta, msg, args...) -} - -// Zero asserts that i is the zero value for its type. -func (a *Assertions) Zero(i interface{}, msgAndArgs ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Zero(a.t, i, msgAndArgs...) -} - -// Zerof asserts that i is the zero value for its type. -func (a *Assertions) Zerof(i interface{}, msg string, args ...interface{}) bool { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - return Zerof(a.t, i, msg, args...) -} diff --git a/vendor/github.com/stretchr/testify/assert/assertion_forward.go.tmpl b/vendor/github.com/stretchr/testify/assert/assertion_forward.go.tmpl deleted file mode 100644 index 188bb9e1..00000000 --- a/vendor/github.com/stretchr/testify/assert/assertion_forward.go.tmpl +++ /dev/null @@ -1,5 +0,0 @@ -{{.CommentWithoutT "a"}} -func (a *Assertions) {{.DocInfo.Name}}({{.Params}}) bool { - if h, ok := a.t.(tHelper); ok { h.Helper() } - return {{.DocInfo.Name}}(a.t, {{.ForwardedParams}}) -} diff --git a/vendor/github.com/stretchr/testify/assert/assertions.go b/vendor/github.com/stretchr/testify/assert/assertions.go deleted file mode 100644 index 5bdec56c..00000000 --- a/vendor/github.com/stretchr/testify/assert/assertions.go +++ /dev/null @@ -1,1394 +0,0 @@ -package assert - -import ( - "bufio" - "bytes" - "encoding/json" - "errors" - "fmt" - "math" - "os" - "reflect" - "regexp" - "runtime" - "strings" - "time" - "unicode" - "unicode/utf8" - - "github.com/davecgh/go-spew/spew" - "github.com/pmezard/go-difflib/difflib" -) - -//go:generate go run ../_codegen/main.go -output-package=assert -template=assertion_format.go.tmpl - -// TestingT is an interface wrapper around *testing.T -type TestingT interface { - Errorf(format string, args ...interface{}) -} - -// ComparisonAssertionFunc is a common function prototype when comparing two values. Can be useful -// for table driven tests. -type ComparisonAssertionFunc func(TestingT, interface{}, interface{}, ...interface{}) bool - -// ValueAssertionFunc is a common function prototype when validating a single value. Can be useful -// for table driven tests. -type ValueAssertionFunc func(TestingT, interface{}, ...interface{}) bool - -// BoolAssertionFunc is a common function prototype when validating a bool value. Can be useful -// for table driven tests. -type BoolAssertionFunc func(TestingT, bool, ...interface{}) bool - -// ValuesAssertionFunc is a common function prototype when validating an error value. Can be useful -// for table driven tests. -type ErrorAssertionFunc func(TestingT, error, ...interface{}) bool - -// Comparison a custom function that returns true on success and false on failure -type Comparison func() (success bool) - -/* - Helper functions -*/ - -// ObjectsAreEqual determines if two objects are considered equal. -// -// This function does no assertion of any kind. -func ObjectsAreEqual(expected, actual interface{}) bool { - if expected == nil || actual == nil { - return expected == actual - } - - exp, ok := expected.([]byte) - if !ok { - return reflect.DeepEqual(expected, actual) - } - - act, ok := actual.([]byte) - if !ok { - return false - } - if exp == nil || act == nil { - return exp == nil && act == nil - } - return bytes.Equal(exp, act) -} - -// ObjectsAreEqualValues gets whether two objects are equal, or if their -// values are equal. -func ObjectsAreEqualValues(expected, actual interface{}) bool { - if ObjectsAreEqual(expected, actual) { - return true - } - - actualType := reflect.TypeOf(actual) - if actualType == nil { - return false - } - expectedValue := reflect.ValueOf(expected) - if expectedValue.IsValid() && expectedValue.Type().ConvertibleTo(actualType) { - // Attempt comparison after type conversion - return reflect.DeepEqual(expectedValue.Convert(actualType).Interface(), actual) - } - - return false -} - -/* CallerInfo is necessary because the assert functions use the testing object -internally, causing it to print the file:line of the assert method, rather than where -the problem actually occurred in calling code.*/ - -// CallerInfo returns an array of strings containing the file and line number -// of each stack frame leading from the current test to the assert call that -// failed. -func CallerInfo() []string { - - pc := uintptr(0) - file := "" - line := 0 - ok := false - name := "" - - callers := []string{} - for i := 0; ; i++ { - pc, file, line, ok = runtime.Caller(i) - if !ok { - // The breaks below failed to terminate the loop, and we ran off the - // end of the call stack. - break - } - - // This is a huge edge case, but it will panic if this is the case, see #180 - if file == "" { - break - } - - f := runtime.FuncForPC(pc) - if f == nil { - break - } - name = f.Name() - - // testing.tRunner is the standard library function that calls - // tests. Subtests are called directly by tRunner, without going through - // the Test/Benchmark/Example function that contains the t.Run calls, so - // with subtests we should break when we hit tRunner, without adding it - // to the list of callers. - if name == "testing.tRunner" { - break - } - - parts := strings.Split(file, "/") - file = parts[len(parts)-1] - if len(parts) > 1 { - dir := parts[len(parts)-2] - if (dir != "assert" && dir != "mock" && dir != "require") || file == "mock_test.go" { - callers = append(callers, fmt.Sprintf("%s:%d", file, line)) - } - } - - // Drop the package - segments := strings.Split(name, ".") - name = segments[len(segments)-1] - if isTest(name, "Test") || - isTest(name, "Benchmark") || - isTest(name, "Example") { - break - } - } - - return callers -} - -// Stolen from the `go test` tool. -// isTest tells whether name looks like a test (or benchmark, according to prefix). -// It is a Test (say) if there is a character after Test that is not a lower-case letter. -// We don't want TesticularCancer. -func isTest(name, prefix string) bool { - if !strings.HasPrefix(name, prefix) { - return false - } - if len(name) == len(prefix) { // "Test" is ok - return true - } - rune, _ := utf8.DecodeRuneInString(name[len(prefix):]) - return !unicode.IsLower(rune) -} - -func messageFromMsgAndArgs(msgAndArgs ...interface{}) string { - if len(msgAndArgs) == 0 || msgAndArgs == nil { - return "" - } - if len(msgAndArgs) == 1 { - return msgAndArgs[0].(string) - } - if len(msgAndArgs) > 1 { - return fmt.Sprintf(msgAndArgs[0].(string), msgAndArgs[1:]...) - } - return "" -} - -// Aligns the provided message so that all lines after the first line start at the same location as the first line. -// Assumes that the first line starts at the correct location (after carriage return, tab, label, spacer and tab). -// The longestLabelLen parameter specifies the length of the longest label in the output (required becaues this is the -// basis on which the alignment occurs). -func indentMessageLines(message string, longestLabelLen int) string { - outBuf := new(bytes.Buffer) - - for i, scanner := 0, bufio.NewScanner(strings.NewReader(message)); scanner.Scan(); i++ { - // no need to align first line because it starts at the correct location (after the label) - if i != 0 { - // append alignLen+1 spaces to align with "{{longestLabel}}:" before adding tab - outBuf.WriteString("\n\t" + strings.Repeat(" ", longestLabelLen+1) + "\t") - } - outBuf.WriteString(scanner.Text()) - } - - return outBuf.String() -} - -type failNower interface { - FailNow() -} - -// FailNow fails test -func FailNow(t TestingT, failureMessage string, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - Fail(t, failureMessage, msgAndArgs...) - - // We cannot extend TestingT with FailNow() and - // maintain backwards compatibility, so we fallback - // to panicking when FailNow is not available in - // TestingT. - // See issue #263 - - if t, ok := t.(failNower); ok { - t.FailNow() - } else { - panic("test failed and t is missing `FailNow()`") - } - return false -} - -// Fail reports a failure through -func Fail(t TestingT, failureMessage string, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - content := []labeledContent{ - {"Error Trace", strings.Join(CallerInfo(), "\n\t\t\t")}, - {"Error", failureMessage}, - } - - // Add test name if the Go version supports it - if n, ok := t.(interface { - Name() string - }); ok { - content = append(content, labeledContent{"Test", n.Name()}) - } - - message := messageFromMsgAndArgs(msgAndArgs...) - if len(message) > 0 { - content = append(content, labeledContent{"Messages", message}) - } - - t.Errorf("\n%s", ""+labeledOutput(content...)) - - return false -} - -type labeledContent struct { - label string - content string -} - -// labeledOutput returns a string consisting of the provided labeledContent. Each labeled output is appended in the following manner: -// -// \t{{label}}:{{align_spaces}}\t{{content}}\n -// -// The initial carriage return is required to undo/erase any padding added by testing.T.Errorf. The "\t{{label}}:" is for the label. -// If a label is shorter than the longest label provided, padding spaces are added to make all the labels match in length. Once this -// alignment is achieved, "\t{{content}}\n" is added for the output. -// -// If the content of the labeledOutput contains line breaks, the subsequent lines are aligned so that they start at the same location as the first line. -func labeledOutput(content ...labeledContent) string { - longestLabel := 0 - for _, v := range content { - if len(v.label) > longestLabel { - longestLabel = len(v.label) - } - } - var output string - for _, v := range content { - output += "\t" + v.label + ":" + strings.Repeat(" ", longestLabel-len(v.label)) + "\t" + indentMessageLines(v.content, longestLabel) + "\n" - } - return output -} - -// Implements asserts that an object is implemented by the specified interface. -// -// assert.Implements(t, (*MyInterface)(nil), new(MyObject)) -func Implements(t TestingT, interfaceObject interface{}, object interface{}, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - interfaceType := reflect.TypeOf(interfaceObject).Elem() - - if object == nil { - return Fail(t, fmt.Sprintf("Cannot check if nil implements %v", interfaceType), msgAndArgs...) - } - if !reflect.TypeOf(object).Implements(interfaceType) { - return Fail(t, fmt.Sprintf("%T must implement %v", object, interfaceType), msgAndArgs...) - } - - return true -} - -// IsType asserts that the specified objects are of the same type. -func IsType(t TestingT, expectedType interface{}, object interface{}, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - - if !ObjectsAreEqual(reflect.TypeOf(object), reflect.TypeOf(expectedType)) { - return Fail(t, fmt.Sprintf("Object expected to be of type %v, but was %v", reflect.TypeOf(expectedType), reflect.TypeOf(object)), msgAndArgs...) - } - - return true -} - -// Equal asserts that two objects are equal. -// -// assert.Equal(t, 123, 123) -// -// Pointer variable equality is determined based on the equality of the -// referenced values (as opposed to the memory addresses). Function equality -// cannot be determined and will always fail. -func Equal(t TestingT, expected, actual interface{}, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - if err := validateEqualArgs(expected, actual); err != nil { - return Fail(t, fmt.Sprintf("Invalid operation: %#v == %#v (%s)", - expected, actual, err), msgAndArgs...) - } - - if !ObjectsAreEqual(expected, actual) { - diff := diff(expected, actual) - expected, actual = formatUnequalValues(expected, actual) - return Fail(t, fmt.Sprintf("Not equal: \n"+ - "expected: %s\n"+ - "actual : %s%s", expected, actual, diff), msgAndArgs...) - } - - return true - -} - -// formatUnequalValues takes two values of arbitrary types and returns string -// representations appropriate to be presented to the user. -// -// If the values are not of like type, the returned strings will be prefixed -// with the type name, and the value will be enclosed in parenthesis similar -// to a type conversion in the Go grammar. -func formatUnequalValues(expected, actual interface{}) (e string, a string) { - if reflect.TypeOf(expected) != reflect.TypeOf(actual) { - return fmt.Sprintf("%T(%#v)", expected, expected), - fmt.Sprintf("%T(%#v)", actual, actual) - } - - return fmt.Sprintf("%#v", expected), - fmt.Sprintf("%#v", actual) -} - -// EqualValues asserts that two objects are equal or convertable to the same types -// and equal. -// -// assert.EqualValues(t, uint32(123), int32(123)) -func EqualValues(t TestingT, expected, actual interface{}, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - - if !ObjectsAreEqualValues(expected, actual) { - diff := diff(expected, actual) - expected, actual = formatUnequalValues(expected, actual) - return Fail(t, fmt.Sprintf("Not equal: \n"+ - "expected: %s\n"+ - "actual : %s%s", expected, actual, diff), msgAndArgs...) - } - - return true - -} - -// Exactly asserts that two objects are equal in value and type. -// -// assert.Exactly(t, int32(123), int64(123)) -func Exactly(t TestingT, expected, actual interface{}, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - - aType := reflect.TypeOf(expected) - bType := reflect.TypeOf(actual) - - if aType != bType { - return Fail(t, fmt.Sprintf("Types expected to match exactly\n\t%v != %v", aType, bType), msgAndArgs...) - } - - return Equal(t, expected, actual, msgAndArgs...) - -} - -// NotNil asserts that the specified object is not nil. -// -// assert.NotNil(t, err) -func NotNil(t TestingT, object interface{}, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - if !isNil(object) { - return true - } - return Fail(t, "Expected value not to be nil.", msgAndArgs...) -} - -// isNil checks if a specified object is nil or not, without Failing. -func isNil(object interface{}) bool { - if object == nil { - return true - } - - value := reflect.ValueOf(object) - kind := value.Kind() - if kind >= reflect.Chan && kind <= reflect.Slice && value.IsNil() { - return true - } - - return false -} - -// Nil asserts that the specified object is nil. -// -// assert.Nil(t, err) -func Nil(t TestingT, object interface{}, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - if isNil(object) { - return true - } - return Fail(t, fmt.Sprintf("Expected nil, but got: %#v", object), msgAndArgs...) -} - -// isEmpty gets whether the specified object is considered empty or not. -func isEmpty(object interface{}) bool { - - // get nil case out of the way - if object == nil { - return true - } - - objValue := reflect.ValueOf(object) - - switch objValue.Kind() { - // collection types are empty when they have no element - case reflect.Array, reflect.Chan, reflect.Map, reflect.Slice: - return objValue.Len() == 0 - // pointers are empty if nil or if the value they point to is empty - case reflect.Ptr: - if objValue.IsNil() { - return true - } - deref := objValue.Elem().Interface() - return isEmpty(deref) - // for all other types, compare against the zero value - default: - zero := reflect.Zero(objValue.Type()) - return reflect.DeepEqual(object, zero.Interface()) - } -} - -// Empty asserts that the specified object is empty. I.e. nil, "", false, 0 or either -// a slice or a channel with len == 0. -// -// assert.Empty(t, obj) -func Empty(t TestingT, object interface{}, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - - pass := isEmpty(object) - if !pass { - Fail(t, fmt.Sprintf("Should be empty, but was %v", object), msgAndArgs...) - } - - return pass - -} - -// NotEmpty asserts that the specified object is NOT empty. I.e. not nil, "", false, 0 or either -// a slice or a channel with len == 0. -// -// if assert.NotEmpty(t, obj) { -// assert.Equal(t, "two", obj[1]) -// } -func NotEmpty(t TestingT, object interface{}, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - - pass := !isEmpty(object) - if !pass { - Fail(t, fmt.Sprintf("Should NOT be empty, but was %v", object), msgAndArgs...) - } - - return pass - -} - -// getLen try to get length of object. -// return (false, 0) if impossible. -func getLen(x interface{}) (ok bool, length int) { - v := reflect.ValueOf(x) - defer func() { - if e := recover(); e != nil { - ok = false - } - }() - return true, v.Len() -} - -// Len asserts that the specified object has specific length. -// Len also fails if the object has a type that len() not accept. -// -// assert.Len(t, mySlice, 3) -func Len(t TestingT, object interface{}, length int, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - ok, l := getLen(object) - if !ok { - return Fail(t, fmt.Sprintf("\"%s\" could not be applied builtin len()", object), msgAndArgs...) - } - - if l != length { - return Fail(t, fmt.Sprintf("\"%s\" should have %d item(s), but has %d", object, length, l), msgAndArgs...) - } - return true -} - -// True asserts that the specified value is true. -// -// assert.True(t, myBool) -func True(t TestingT, value bool, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - if h, ok := t.(interface { - Helper() - }); ok { - h.Helper() - } - - if value != true { - return Fail(t, "Should be true", msgAndArgs...) - } - - return true - -} - -// False asserts that the specified value is false. -// -// assert.False(t, myBool) -func False(t TestingT, value bool, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - - if value != false { - return Fail(t, "Should be false", msgAndArgs...) - } - - return true - -} - -// NotEqual asserts that the specified values are NOT equal. -// -// assert.NotEqual(t, obj1, obj2) -// -// Pointer variable equality is determined based on the equality of the -// referenced values (as opposed to the memory addresses). -func NotEqual(t TestingT, expected, actual interface{}, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - if err := validateEqualArgs(expected, actual); err != nil { - return Fail(t, fmt.Sprintf("Invalid operation: %#v != %#v (%s)", - expected, actual, err), msgAndArgs...) - } - - if ObjectsAreEqual(expected, actual) { - return Fail(t, fmt.Sprintf("Should not be: %#v\n", actual), msgAndArgs...) - } - - return true - -} - -// containsElement try loop over the list check if the list includes the element. -// return (false, false) if impossible. -// return (true, false) if element was not found. -// return (true, true) if element was found. -func includeElement(list interface{}, element interface{}) (ok, found bool) { - - listValue := reflect.ValueOf(list) - elementValue := reflect.ValueOf(element) - defer func() { - if e := recover(); e != nil { - ok = false - found = false - } - }() - - if reflect.TypeOf(list).Kind() == reflect.String { - return true, strings.Contains(listValue.String(), elementValue.String()) - } - - if reflect.TypeOf(list).Kind() == reflect.Map { - mapKeys := listValue.MapKeys() - for i := 0; i < len(mapKeys); i++ { - if ObjectsAreEqual(mapKeys[i].Interface(), element) { - return true, true - } - } - return true, false - } - - for i := 0; i < listValue.Len(); i++ { - if ObjectsAreEqual(listValue.Index(i).Interface(), element) { - return true, true - } - } - return true, false - -} - -// Contains asserts that the specified string, list(array, slice...) or map contains the -// specified substring or element. -// -// assert.Contains(t, "Hello World", "World") -// assert.Contains(t, ["Hello", "World"], "World") -// assert.Contains(t, {"Hello": "World"}, "Hello") -func Contains(t TestingT, s, contains interface{}, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - - ok, found := includeElement(s, contains) - if !ok { - return Fail(t, fmt.Sprintf("\"%s\" could not be applied builtin len()", s), msgAndArgs...) - } - if !found { - return Fail(t, fmt.Sprintf("\"%s\" does not contain \"%s\"", s, contains), msgAndArgs...) - } - - return true - -} - -// NotContains asserts that the specified string, list(array, slice...) or map does NOT contain the -// specified substring or element. -// -// assert.NotContains(t, "Hello World", "Earth") -// assert.NotContains(t, ["Hello", "World"], "Earth") -// assert.NotContains(t, {"Hello": "World"}, "Earth") -func NotContains(t TestingT, s, contains interface{}, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - - ok, found := includeElement(s, contains) - if !ok { - return Fail(t, fmt.Sprintf("\"%s\" could not be applied builtin len()", s), msgAndArgs...) - } - if found { - return Fail(t, fmt.Sprintf("\"%s\" should not contain \"%s\"", s, contains), msgAndArgs...) - } - - return true - -} - -// Subset asserts that the specified list(array, slice...) contains all -// elements given in the specified subset(array, slice...). -// -// assert.Subset(t, [1, 2, 3], [1, 2], "But [1, 2, 3] does contain [1, 2]") -func Subset(t TestingT, list, subset interface{}, msgAndArgs ...interface{}) (ok bool) { - if h, ok := t.(tHelper); ok { - h.Helper() - } - if subset == nil { - return true // we consider nil to be equal to the nil set - } - - subsetValue := reflect.ValueOf(subset) - defer func() { - if e := recover(); e != nil { - ok = false - } - }() - - listKind := reflect.TypeOf(list).Kind() - subsetKind := reflect.TypeOf(subset).Kind() - - if listKind != reflect.Array && listKind != reflect.Slice { - return Fail(t, fmt.Sprintf("%q has an unsupported type %s", list, listKind), msgAndArgs...) - } - - if subsetKind != reflect.Array && subsetKind != reflect.Slice { - return Fail(t, fmt.Sprintf("%q has an unsupported type %s", subset, subsetKind), msgAndArgs...) - } - - for i := 0; i < subsetValue.Len(); i++ { - element := subsetValue.Index(i).Interface() - ok, found := includeElement(list, element) - if !ok { - return Fail(t, fmt.Sprintf("\"%s\" could not be applied builtin len()", list), msgAndArgs...) - } - if !found { - return Fail(t, fmt.Sprintf("\"%s\" does not contain \"%s\"", list, element), msgAndArgs...) - } - } - - return true -} - -// NotSubset asserts that the specified list(array, slice...) contains not all -// elements given in the specified subset(array, slice...). -// -// assert.NotSubset(t, [1, 3, 4], [1, 2], "But [1, 3, 4] does not contain [1, 2]") -func NotSubset(t TestingT, list, subset interface{}, msgAndArgs ...interface{}) (ok bool) { - if h, ok := t.(tHelper); ok { - h.Helper() - } - if subset == nil { - return Fail(t, fmt.Sprintf("nil is the empty set which is a subset of every set"), msgAndArgs...) - } - - subsetValue := reflect.ValueOf(subset) - defer func() { - if e := recover(); e != nil { - ok = false - } - }() - - listKind := reflect.TypeOf(list).Kind() - subsetKind := reflect.TypeOf(subset).Kind() - - if listKind != reflect.Array && listKind != reflect.Slice { - return Fail(t, fmt.Sprintf("%q has an unsupported type %s", list, listKind), msgAndArgs...) - } - - if subsetKind != reflect.Array && subsetKind != reflect.Slice { - return Fail(t, fmt.Sprintf("%q has an unsupported type %s", subset, subsetKind), msgAndArgs...) - } - - for i := 0; i < subsetValue.Len(); i++ { - element := subsetValue.Index(i).Interface() - ok, found := includeElement(list, element) - if !ok { - return Fail(t, fmt.Sprintf("\"%s\" could not be applied builtin len()", list), msgAndArgs...) - } - if !found { - return true - } - } - - return Fail(t, fmt.Sprintf("%q is a subset of %q", subset, list), msgAndArgs...) -} - -// ElementsMatch asserts that the specified listA(array, slice...) is equal to specified -// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, -// the number of appearances of each of them in both lists should match. -// -// assert.ElementsMatch(t, [1, 3, 2, 3], [1, 3, 3, 2]) -func ElementsMatch(t TestingT, listA, listB interface{}, msgAndArgs ...interface{}) (ok bool) { - if h, ok := t.(tHelper); ok { - h.Helper() - } - if isEmpty(listA) && isEmpty(listB) { - return true - } - - aKind := reflect.TypeOf(listA).Kind() - bKind := reflect.TypeOf(listB).Kind() - - if aKind != reflect.Array && aKind != reflect.Slice { - return Fail(t, fmt.Sprintf("%q has an unsupported type %s", listA, aKind), msgAndArgs...) - } - - if bKind != reflect.Array && bKind != reflect.Slice { - return Fail(t, fmt.Sprintf("%q has an unsupported type %s", listB, bKind), msgAndArgs...) - } - - aValue := reflect.ValueOf(listA) - bValue := reflect.ValueOf(listB) - - aLen := aValue.Len() - bLen := bValue.Len() - - if aLen != bLen { - return Fail(t, fmt.Sprintf("lengths don't match: %d != %d", aLen, bLen), msgAndArgs...) - } - - // Mark indexes in bValue that we already used - visited := make([]bool, bLen) - for i := 0; i < aLen; i++ { - element := aValue.Index(i).Interface() - found := false - for j := 0; j < bLen; j++ { - if visited[j] { - continue - } - if ObjectsAreEqual(bValue.Index(j).Interface(), element) { - visited[j] = true - found = true - break - } - } - if !found { - return Fail(t, fmt.Sprintf("element %s appears more times in %s than in %s", element, aValue, bValue), msgAndArgs...) - } - } - - return true -} - -// Condition uses a Comparison to assert a complex condition. -func Condition(t TestingT, comp Comparison, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - result := comp() - if !result { - Fail(t, "Condition failed!", msgAndArgs...) - } - return result -} - -// PanicTestFunc defines a func that should be passed to the assert.Panics and assert.NotPanics -// methods, and represents a simple func that takes no arguments, and returns nothing. -type PanicTestFunc func() - -// didPanic returns true if the function passed to it panics. Otherwise, it returns false. -func didPanic(f PanicTestFunc) (bool, interface{}) { - - didPanic := false - var message interface{} - func() { - - defer func() { - if message = recover(); message != nil { - didPanic = true - } - }() - - // call the target function - f() - - }() - - return didPanic, message - -} - -// Panics asserts that the code inside the specified PanicTestFunc panics. -// -// assert.Panics(t, func(){ GoCrazy() }) -func Panics(t TestingT, f PanicTestFunc, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - - if funcDidPanic, panicValue := didPanic(f); !funcDidPanic { - return Fail(t, fmt.Sprintf("func %#v should panic\n\tPanic value:\t%#v", f, panicValue), msgAndArgs...) - } - - return true -} - -// PanicsWithValue asserts that the code inside the specified PanicTestFunc panics, and that -// the recovered panic value equals the expected panic value. -// -// assert.PanicsWithValue(t, "crazy error", func(){ GoCrazy() }) -func PanicsWithValue(t TestingT, expected interface{}, f PanicTestFunc, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - - funcDidPanic, panicValue := didPanic(f) - if !funcDidPanic { - return Fail(t, fmt.Sprintf("func %#v should panic\n\tPanic value:\t%#v", f, panicValue), msgAndArgs...) - } - if panicValue != expected { - return Fail(t, fmt.Sprintf("func %#v should panic with value:\t%#v\n\tPanic value:\t%#v", f, expected, panicValue), msgAndArgs...) - } - - return true -} - -// NotPanics asserts that the code inside the specified PanicTestFunc does NOT panic. -// -// assert.NotPanics(t, func(){ RemainCalm() }) -func NotPanics(t TestingT, f PanicTestFunc, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - - if funcDidPanic, panicValue := didPanic(f); funcDidPanic { - return Fail(t, fmt.Sprintf("func %#v should not panic\n\tPanic value:\t%v", f, panicValue), msgAndArgs...) - } - - return true -} - -// WithinDuration asserts that the two times are within duration delta of each other. -// -// assert.WithinDuration(t, time.Now(), time.Now(), 10*time.Second) -func WithinDuration(t TestingT, expected, actual time.Time, delta time.Duration, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - - dt := expected.Sub(actual) - if dt < -delta || dt > delta { - return Fail(t, fmt.Sprintf("Max difference between %v and %v allowed is %v, but difference was %v", expected, actual, delta, dt), msgAndArgs...) - } - - return true -} - -func toFloat(x interface{}) (float64, bool) { - var xf float64 - xok := true - - switch xn := x.(type) { - case uint8: - xf = float64(xn) - case uint16: - xf = float64(xn) - case uint32: - xf = float64(xn) - case uint64: - xf = float64(xn) - case int: - xf = float64(xn) - case int8: - xf = float64(xn) - case int16: - xf = float64(xn) - case int32: - xf = float64(xn) - case int64: - xf = float64(xn) - case float32: - xf = float64(xn) - case float64: - xf = float64(xn) - case time.Duration: - xf = float64(xn) - default: - xok = false - } - - return xf, xok -} - -// InDelta asserts that the two numerals are within delta of each other. -// -// assert.InDelta(t, math.Pi, (22 / 7.0), 0.01) -func InDelta(t TestingT, expected, actual interface{}, delta float64, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - - af, aok := toFloat(expected) - bf, bok := toFloat(actual) - - if !aok || !bok { - return Fail(t, fmt.Sprintf("Parameters must be numerical"), msgAndArgs...) - } - - if math.IsNaN(af) { - return Fail(t, fmt.Sprintf("Expected must not be NaN"), msgAndArgs...) - } - - if math.IsNaN(bf) { - return Fail(t, fmt.Sprintf("Expected %v with delta %v, but was NaN", expected, delta), msgAndArgs...) - } - - dt := af - bf - if dt < -delta || dt > delta { - return Fail(t, fmt.Sprintf("Max difference between %v and %v allowed is %v, but difference was %v", expected, actual, delta, dt), msgAndArgs...) - } - - return true -} - -// InDeltaSlice is the same as InDelta, except it compares two slices. -func InDeltaSlice(t TestingT, expected, actual interface{}, delta float64, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - if expected == nil || actual == nil || - reflect.TypeOf(actual).Kind() != reflect.Slice || - reflect.TypeOf(expected).Kind() != reflect.Slice { - return Fail(t, fmt.Sprintf("Parameters must be slice"), msgAndArgs...) - } - - actualSlice := reflect.ValueOf(actual) - expectedSlice := reflect.ValueOf(expected) - - for i := 0; i < actualSlice.Len(); i++ { - result := InDelta(t, actualSlice.Index(i).Interface(), expectedSlice.Index(i).Interface(), delta, msgAndArgs...) - if !result { - return result - } - } - - return true -} - -// InDeltaMapValues is the same as InDelta, but it compares all values between two maps. Both maps must have exactly the same keys. -func InDeltaMapValues(t TestingT, expected, actual interface{}, delta float64, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - if expected == nil || actual == nil || - reflect.TypeOf(actual).Kind() != reflect.Map || - reflect.TypeOf(expected).Kind() != reflect.Map { - return Fail(t, "Arguments must be maps", msgAndArgs...) - } - - expectedMap := reflect.ValueOf(expected) - actualMap := reflect.ValueOf(actual) - - if expectedMap.Len() != actualMap.Len() { - return Fail(t, "Arguments must have the same number of keys", msgAndArgs...) - } - - for _, k := range expectedMap.MapKeys() { - ev := expectedMap.MapIndex(k) - av := actualMap.MapIndex(k) - - if !ev.IsValid() { - return Fail(t, fmt.Sprintf("missing key %q in expected map", k), msgAndArgs...) - } - - if !av.IsValid() { - return Fail(t, fmt.Sprintf("missing key %q in actual map", k), msgAndArgs...) - } - - if !InDelta( - t, - ev.Interface(), - av.Interface(), - delta, - msgAndArgs..., - ) { - return false - } - } - - return true -} - -func calcRelativeError(expected, actual interface{}) (float64, error) { - af, aok := toFloat(expected) - if !aok { - return 0, fmt.Errorf("expected value %q cannot be converted to float", expected) - } - if af == 0 { - return 0, fmt.Errorf("expected value must have a value other than zero to calculate the relative error") - } - bf, bok := toFloat(actual) - if !bok { - return 0, fmt.Errorf("actual value %q cannot be converted to float", actual) - } - - return math.Abs(af-bf) / math.Abs(af), nil -} - -// InEpsilon asserts that expected and actual have a relative error less than epsilon -func InEpsilon(t TestingT, expected, actual interface{}, epsilon float64, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - actualEpsilon, err := calcRelativeError(expected, actual) - if err != nil { - return Fail(t, err.Error(), msgAndArgs...) - } - if actualEpsilon > epsilon { - return Fail(t, fmt.Sprintf("Relative error is too high: %#v (expected)\n"+ - " < %#v (actual)", epsilon, actualEpsilon), msgAndArgs...) - } - - return true -} - -// InEpsilonSlice is the same as InEpsilon, except it compares each value from two slices. -func InEpsilonSlice(t TestingT, expected, actual interface{}, epsilon float64, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - if expected == nil || actual == nil || - reflect.TypeOf(actual).Kind() != reflect.Slice || - reflect.TypeOf(expected).Kind() != reflect.Slice { - return Fail(t, fmt.Sprintf("Parameters must be slice"), msgAndArgs...) - } - - actualSlice := reflect.ValueOf(actual) - expectedSlice := reflect.ValueOf(expected) - - for i := 0; i < actualSlice.Len(); i++ { - result := InEpsilon(t, actualSlice.Index(i).Interface(), expectedSlice.Index(i).Interface(), epsilon) - if !result { - return result - } - } - - return true -} - -/* - Errors -*/ - -// NoError asserts that a function returned no error (i.e. `nil`). -// -// actualObj, err := SomeFunction() -// if assert.NoError(t, err) { -// assert.Equal(t, expectedObj, actualObj) -// } -func NoError(t TestingT, err error, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - if err != nil { - return Fail(t, fmt.Sprintf("Received unexpected error:\n%+v", err), msgAndArgs...) - } - - return true -} - -// Error asserts that a function returned an error (i.e. not `nil`). -// -// actualObj, err := SomeFunction() -// if assert.Error(t, err) { -// assert.Equal(t, expectedError, err) -// } -func Error(t TestingT, err error, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - - if err == nil { - return Fail(t, "An error is expected but got nil.", msgAndArgs...) - } - - return true -} - -// EqualError asserts that a function returned an error (i.e. not `nil`) -// and that it is equal to the provided error. -// -// actualObj, err := SomeFunction() -// assert.EqualError(t, err, expectedErrorString) -func EqualError(t TestingT, theError error, errString string, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - if !Error(t, theError, msgAndArgs...) { - return false - } - expected := errString - actual := theError.Error() - // don't need to use deep equals here, we know they are both strings - if expected != actual { - return Fail(t, fmt.Sprintf("Error message not equal:\n"+ - "expected: %q\n"+ - "actual : %q", expected, actual), msgAndArgs...) - } - return true -} - -// matchRegexp return true if a specified regexp matches a string. -func matchRegexp(rx interface{}, str interface{}) bool { - - var r *regexp.Regexp - if rr, ok := rx.(*regexp.Regexp); ok { - r = rr - } else { - r = regexp.MustCompile(fmt.Sprint(rx)) - } - - return (r.FindStringIndex(fmt.Sprint(str)) != nil) - -} - -// Regexp asserts that a specified regexp matches a string. -// -// assert.Regexp(t, regexp.MustCompile("start"), "it's starting") -// assert.Regexp(t, "start...$", "it's not starting") -func Regexp(t TestingT, rx interface{}, str interface{}, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - - match := matchRegexp(rx, str) - - if !match { - Fail(t, fmt.Sprintf("Expect \"%v\" to match \"%v\"", str, rx), msgAndArgs...) - } - - return match -} - -// NotRegexp asserts that a specified regexp does not match a string. -// -// assert.NotRegexp(t, regexp.MustCompile("starts"), "it's starting") -// assert.NotRegexp(t, "^start", "it's not starting") -func NotRegexp(t TestingT, rx interface{}, str interface{}, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - match := matchRegexp(rx, str) - - if match { - Fail(t, fmt.Sprintf("Expect \"%v\" to NOT match \"%v\"", str, rx), msgAndArgs...) - } - - return !match - -} - -// Zero asserts that i is the zero value for its type. -func Zero(t TestingT, i interface{}, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - if i != nil && !reflect.DeepEqual(i, reflect.Zero(reflect.TypeOf(i)).Interface()) { - return Fail(t, fmt.Sprintf("Should be zero, but was %v", i), msgAndArgs...) - } - return true -} - -// NotZero asserts that i is not the zero value for its type. -func NotZero(t TestingT, i interface{}, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - if i == nil || reflect.DeepEqual(i, reflect.Zero(reflect.TypeOf(i)).Interface()) { - return Fail(t, fmt.Sprintf("Should not be zero, but was %v", i), msgAndArgs...) - } - return true -} - -// FileExists checks whether a file exists in the given path. It also fails if the path points to a directory or there is an error when trying to check the file. -func FileExists(t TestingT, path string, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - info, err := os.Lstat(path) - if err != nil { - if os.IsNotExist(err) { - return Fail(t, fmt.Sprintf("unable to find file %q", path), msgAndArgs...) - } - return Fail(t, fmt.Sprintf("error when running os.Lstat(%q): %s", path, err), msgAndArgs...) - } - if info.IsDir() { - return Fail(t, fmt.Sprintf("%q is a directory", path), msgAndArgs...) - } - return true -} - -// DirExists checks whether a directory exists in the given path. It also fails if the path is a file rather a directory or there is an error checking whether it exists. -func DirExists(t TestingT, path string, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - info, err := os.Lstat(path) - if err != nil { - if os.IsNotExist(err) { - return Fail(t, fmt.Sprintf("unable to find file %q", path), msgAndArgs...) - } - return Fail(t, fmt.Sprintf("error when running os.Lstat(%q): %s", path, err), msgAndArgs...) - } - if !info.IsDir() { - return Fail(t, fmt.Sprintf("%q is a file", path), msgAndArgs...) - } - return true -} - -// JSONEq asserts that two JSON strings are equivalent. -// -// assert.JSONEq(t, `{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`) -func JSONEq(t TestingT, expected string, actual string, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - var expectedJSONAsInterface, actualJSONAsInterface interface{} - - if err := json.Unmarshal([]byte(expected), &expectedJSONAsInterface); err != nil { - return Fail(t, fmt.Sprintf("Expected value ('%s') is not valid json.\nJSON parsing error: '%s'", expected, err.Error()), msgAndArgs...) - } - - if err := json.Unmarshal([]byte(actual), &actualJSONAsInterface); err != nil { - return Fail(t, fmt.Sprintf("Input ('%s') needs to be valid json.\nJSON parsing error: '%s'", actual, err.Error()), msgAndArgs...) - } - - return Equal(t, expectedJSONAsInterface, actualJSONAsInterface, msgAndArgs...) -} - -func typeAndKind(v interface{}) (reflect.Type, reflect.Kind) { - t := reflect.TypeOf(v) - k := t.Kind() - - if k == reflect.Ptr { - t = t.Elem() - k = t.Kind() - } - return t, k -} - -// diff returns a diff of both values as long as both are of the same type and -// are a struct, map, slice or array. Otherwise it returns an empty string. -func diff(expected interface{}, actual interface{}) string { - if expected == nil || actual == nil { - return "" - } - - et, ek := typeAndKind(expected) - at, _ := typeAndKind(actual) - - if et != at { - return "" - } - - if ek != reflect.Struct && ek != reflect.Map && ek != reflect.Slice && ek != reflect.Array && ek != reflect.String { - return "" - } - - var e, a string - if ek != reflect.String { - e = spewConfig.Sdump(expected) - a = spewConfig.Sdump(actual) - } else { - e = expected.(string) - a = actual.(string) - } - - diff, _ := difflib.GetUnifiedDiffString(difflib.UnifiedDiff{ - A: difflib.SplitLines(e), - B: difflib.SplitLines(a), - FromFile: "Expected", - FromDate: "", - ToFile: "Actual", - ToDate: "", - Context: 1, - }) - - return "\n\nDiff:\n" + diff -} - -// validateEqualArgs checks whether provided arguments can be safely used in the -// Equal/NotEqual functions. -func validateEqualArgs(expected, actual interface{}) error { - if isFunction(expected) || isFunction(actual) { - return errors.New("cannot take func type as argument") - } - return nil -} - -func isFunction(arg interface{}) bool { - if arg == nil { - return false - } - return reflect.TypeOf(arg).Kind() == reflect.Func -} - -var spewConfig = spew.ConfigState{ - Indent: " ", - DisablePointerAddresses: true, - DisableCapacities: true, - SortKeys: true, -} - -type tHelper interface { - Helper() -} diff --git a/vendor/github.com/stretchr/testify/assert/assertions_test.go b/vendor/github.com/stretchr/testify/assert/assertions_test.go deleted file mode 100644 index 91b5ee91..00000000 --- a/vendor/github.com/stretchr/testify/assert/assertions_test.go +++ /dev/null @@ -1,1793 +0,0 @@ -package assert - -import ( - "bytes" - "encoding/json" - "errors" - "fmt" - "io" - "math" - "os" - "reflect" - "regexp" - "runtime" - "strings" - "testing" - "time" -) - -var ( - i interface{} - zeros = []interface{}{ - false, - byte(0), - complex64(0), - complex128(0), - float32(0), - float64(0), - int(0), - int8(0), - int16(0), - int32(0), - int64(0), - rune(0), - uint(0), - uint8(0), - uint16(0), - uint32(0), - uint64(0), - uintptr(0), - "", - [0]interface{}{}, - []interface{}(nil), - struct{ x int }{}, - (*interface{})(nil), - (func())(nil), - nil, - interface{}(nil), - map[interface{}]interface{}(nil), - (chan interface{})(nil), - (<-chan interface{})(nil), - (chan<- interface{})(nil), - } - nonZeros = []interface{}{ - true, - byte(1), - complex64(1), - complex128(1), - float32(1), - float64(1), - int(1), - int8(1), - int16(1), - int32(1), - int64(1), - rune(1), - uint(1), - uint8(1), - uint16(1), - uint32(1), - uint64(1), - uintptr(1), - "s", - [1]interface{}{1}, - []interface{}{}, - struct{ x int }{1}, - (*interface{})(&i), - (func())(func() {}), - interface{}(1), - map[interface{}]interface{}{}, - (chan interface{})(make(chan interface{})), - (<-chan interface{})(make(chan interface{})), - (chan<- interface{})(make(chan interface{})), - } -) - -// AssertionTesterInterface defines an interface to be used for testing assertion methods -type AssertionTesterInterface interface { - TestMethod() -} - -// AssertionTesterConformingObject is an object that conforms to the AssertionTesterInterface interface -type AssertionTesterConformingObject struct { -} - -func (a *AssertionTesterConformingObject) TestMethod() { -} - -// AssertionTesterNonConformingObject is an object that does not conform to the AssertionTesterInterface interface -type AssertionTesterNonConformingObject struct { -} - -func TestObjectsAreEqual(t *testing.T) { - - if !ObjectsAreEqual("Hello World", "Hello World") { - t.Error("objectsAreEqual should return true") - } - if !ObjectsAreEqual(123, 123) { - t.Error("objectsAreEqual should return true") - } - if !ObjectsAreEqual(123.5, 123.5) { - t.Error("objectsAreEqual should return true") - } - if !ObjectsAreEqual([]byte("Hello World"), []byte("Hello World")) { - t.Error("objectsAreEqual should return true") - } - if !ObjectsAreEqual(nil, nil) { - t.Error("objectsAreEqual should return true") - } - if ObjectsAreEqual(map[int]int{5: 10}, map[int]int{10: 20}) { - t.Error("objectsAreEqual should return false") - } - if ObjectsAreEqual('x', "x") { - t.Error("objectsAreEqual should return false") - } - if ObjectsAreEqual("x", 'x') { - t.Error("objectsAreEqual should return false") - } - if ObjectsAreEqual(0, 0.1) { - t.Error("objectsAreEqual should return false") - } - if ObjectsAreEqual(0.1, 0) { - t.Error("objectsAreEqual should return false") - } - if ObjectsAreEqual(uint32(10), int32(10)) { - t.Error("objectsAreEqual should return false") - } - if !ObjectsAreEqualValues(uint32(10), int32(10)) { - t.Error("ObjectsAreEqualValues should return true") - } - if ObjectsAreEqualValues(0, nil) { - t.Fail() - } - if ObjectsAreEqualValues(nil, 0) { - t.Fail() - } - -} - -func TestImplements(t *testing.T) { - - mockT := new(testing.T) - - if !Implements(mockT, (*AssertionTesterInterface)(nil), new(AssertionTesterConformingObject)) { - t.Error("Implements method should return true: AssertionTesterConformingObject implements AssertionTesterInterface") - } - if Implements(mockT, (*AssertionTesterInterface)(nil), new(AssertionTesterNonConformingObject)) { - t.Error("Implements method should return false: AssertionTesterNonConformingObject does not implements AssertionTesterInterface") - } - if Implements(mockT, (*AssertionTesterInterface)(nil), nil) { - t.Error("Implements method should return false: nil does not implement AssertionTesterInterface") - } - -} - -func TestIsType(t *testing.T) { - - mockT := new(testing.T) - - if !IsType(mockT, new(AssertionTesterConformingObject), new(AssertionTesterConformingObject)) { - t.Error("IsType should return true: AssertionTesterConformingObject is the same type as AssertionTesterConformingObject") - } - if IsType(mockT, new(AssertionTesterConformingObject), new(AssertionTesterNonConformingObject)) { - t.Error("IsType should return false: AssertionTesterConformingObject is not the same type as AssertionTesterNonConformingObject") - } - -} - -func TestEqual(t *testing.T) { - - mockT := new(testing.T) - - if !Equal(mockT, "Hello World", "Hello World") { - t.Error("Equal should return true") - } - if !Equal(mockT, 123, 123) { - t.Error("Equal should return true") - } - if !Equal(mockT, 123.5, 123.5) { - t.Error("Equal should return true") - } - if !Equal(mockT, []byte("Hello World"), []byte("Hello World")) { - t.Error("Equal should return true") - } - if !Equal(mockT, nil, nil) { - t.Error("Equal should return true") - } - if !Equal(mockT, int32(123), int32(123)) { - t.Error("Equal should return true") - } - if !Equal(mockT, uint64(123), uint64(123)) { - t.Error("Equal should return true") - } - if !Equal(mockT, &struct{}{}, &struct{}{}) { - t.Error("Equal should return true (pointer equality is based on equality of underlying value)") - } - var m map[string]interface{} - if Equal(mockT, m["bar"], "something") { - t.Error("Equal should return false") - } -} - -// bufferT implements TestingT. Its implementation of Errorf writes the output that would be produced by -// testing.T.Errorf to an internal bytes.Buffer. -type bufferT struct { - buf bytes.Buffer -} - -func (t *bufferT) Errorf(format string, args ...interface{}) { - // implementation of decorate is copied from testing.T - decorate := func(s string) string { - _, file, line, ok := runtime.Caller(3) // decorate + log + public function. - if ok { - // Truncate file name at last file name separator. - if index := strings.LastIndex(file, "/"); index >= 0 { - file = file[index+1:] - } else if index = strings.LastIndex(file, "\\"); index >= 0 { - file = file[index+1:] - } - } else { - file = "???" - line = 1 - } - buf := new(bytes.Buffer) - // Every line is indented at least one tab. - buf.WriteByte('\t') - fmt.Fprintf(buf, "%s:%d: ", file, line) - lines := strings.Split(s, "\n") - if l := len(lines); l > 1 && lines[l-1] == "" { - lines = lines[:l-1] - } - for i, line := range lines { - if i > 0 { - // Second and subsequent lines are indented an extra tab. - buf.WriteString("\n\t\t") - } - buf.WriteString(line) - } - buf.WriteByte('\n') - return buf.String() - } - t.buf.WriteString(decorate(fmt.Sprintf(format, args...))) -} - -func TestStringEqual(t *testing.T) { - for i, currCase := range []struct { - equalWant string - equalGot string - msgAndArgs []interface{} - want string - }{ - {equalWant: "hi, \nmy name is", equalGot: "what,\nmy name is", want: "\tassertions.go:\\d+: \n\t+Error Trace:\t\n\t+Error:\\s+Not equal:\\s+\n\\s+expected: \"hi, \\\\nmy name is\"\n\\s+actual\\s+: \"what,\\\\nmy name is\"\n\\s+Diff:\n\\s+-+ Expected\n\\s+\\++ Actual\n\\s+@@ -1,2 \\+1,2 @@\n\\s+-hi, \n\\s+\\+what,\n\\s+my name is"}, - } { - mockT := &bufferT{} - Equal(mockT, currCase.equalWant, currCase.equalGot, currCase.msgAndArgs...) - Regexp(t, regexp.MustCompile(currCase.want), mockT.buf.String(), "Case %d", i) - } -} - -func TestEqualFormatting(t *testing.T) { - for i, currCase := range []struct { - equalWant string - equalGot string - msgAndArgs []interface{} - want string - }{ - {equalWant: "want", equalGot: "got", want: "\tassertions.go:\\d+: \n\t+Error Trace:\t\n\t+Error:\\s+Not equal:\\s+\n\\s+expected: \"want\"\n\\s+actual\\s+: \"got\"\n\\s+Diff:\n\\s+-+ Expected\n\\s+\\++ Actual\n\\s+@@ -1 \\+1 @@\n\\s+-want\n\\s+\\+got\n"}, - {equalWant: "want", equalGot: "got", msgAndArgs: []interface{}{"hello, %v!", "world"}, want: "\tassertions.go:[0-9]+: \n\t+Error Trace:\t\n\t+Error:\\s+Not equal:\\s+\n\\s+expected: \"want\"\n\\s+actual\\s+: \"got\"\n\\s+Diff:\n\\s+-+ Expected\n\\s+\\++ Actual\n\\s+@@ -1 \\+1 @@\n\\s+-want\n\\s+\\+got\n\\s+Messages:\\s+hello, world!\n"}, - } { - mockT := &bufferT{} - Equal(mockT, currCase.equalWant, currCase.equalGot, currCase.msgAndArgs...) - Regexp(t, regexp.MustCompile(currCase.want), mockT.buf.String(), "Case %d", i) - } -} - -func TestFormatUnequalValues(t *testing.T) { - expected, actual := formatUnequalValues("foo", "bar") - Equal(t, `"foo"`, expected, "value should not include type") - Equal(t, `"bar"`, actual, "value should not include type") - - expected, actual = formatUnequalValues(123, 123) - Equal(t, `123`, expected, "value should not include type") - Equal(t, `123`, actual, "value should not include type") - - expected, actual = formatUnequalValues(int64(123), int32(123)) - Equal(t, `int64(123)`, expected, "value should include type") - Equal(t, `int32(123)`, actual, "value should include type") - - expected, actual = formatUnequalValues(int64(123), nil) - Equal(t, `int64(123)`, expected, "value should include type") - Equal(t, `()`, actual, "value should include type") - - type testStructType struct { - Val string - } - - expected, actual = formatUnequalValues(&testStructType{Val: "test"}, &testStructType{Val: "test"}) - Equal(t, `&assert.testStructType{Val:"test"}`, expected, "value should not include type annotation") - Equal(t, `&assert.testStructType{Val:"test"}`, actual, "value should not include type annotation") -} - -func TestNotNil(t *testing.T) { - - mockT := new(testing.T) - - if !NotNil(mockT, new(AssertionTesterConformingObject)) { - t.Error("NotNil should return true: object is not nil") - } - if NotNil(mockT, nil) { - t.Error("NotNil should return false: object is nil") - } - if NotNil(mockT, (*struct{})(nil)) { - t.Error("NotNil should return false: object is (*struct{})(nil)") - } - -} - -func TestNil(t *testing.T) { - - mockT := new(testing.T) - - if !Nil(mockT, nil) { - t.Error("Nil should return true: object is nil") - } - if !Nil(mockT, (*struct{})(nil)) { - t.Error("Nil should return true: object is (*struct{})(nil)") - } - if Nil(mockT, new(AssertionTesterConformingObject)) { - t.Error("Nil should return false: object is not nil") - } - -} - -func TestTrue(t *testing.T) { - - mockT := new(testing.T) - - if !True(mockT, true) { - t.Error("True should return true") - } - if True(mockT, false) { - t.Error("True should return false") - } - -} - -func TestFalse(t *testing.T) { - - mockT := new(testing.T) - - if !False(mockT, false) { - t.Error("False should return true") - } - if False(mockT, true) { - t.Error("False should return false") - } - -} - -func TestExactly(t *testing.T) { - - mockT := new(testing.T) - - a := float32(1) - b := float64(1) - c := float32(1) - d := float32(2) - - if Exactly(mockT, a, b) { - t.Error("Exactly should return false") - } - if Exactly(mockT, a, d) { - t.Error("Exactly should return false") - } - if !Exactly(mockT, a, c) { - t.Error("Exactly should return true") - } - - if Exactly(mockT, nil, a) { - t.Error("Exactly should return false") - } - if Exactly(mockT, a, nil) { - t.Error("Exactly should return false") - } - -} - -func TestNotEqual(t *testing.T) { - - mockT := new(testing.T) - - if !NotEqual(mockT, "Hello World", "Hello World!") { - t.Error("NotEqual should return true") - } - if !NotEqual(mockT, 123, 1234) { - t.Error("NotEqual should return true") - } - if !NotEqual(mockT, 123.5, 123.55) { - t.Error("NotEqual should return true") - } - if !NotEqual(mockT, []byte("Hello World"), []byte("Hello World!")) { - t.Error("NotEqual should return true") - } - if !NotEqual(mockT, nil, new(AssertionTesterConformingObject)) { - t.Error("NotEqual should return true") - } - funcA := func() int { return 23 } - funcB := func() int { return 42 } - if NotEqual(mockT, funcA, funcB) { - t.Error("NotEqual should return false") - } - - if NotEqual(mockT, "Hello World", "Hello World") { - t.Error("NotEqual should return false") - } - if NotEqual(mockT, 123, 123) { - t.Error("NotEqual should return false") - } - if NotEqual(mockT, 123.5, 123.5) { - t.Error("NotEqual should return false") - } - if NotEqual(mockT, []byte("Hello World"), []byte("Hello World")) { - t.Error("NotEqual should return false") - } - if NotEqual(mockT, new(AssertionTesterConformingObject), new(AssertionTesterConformingObject)) { - t.Error("NotEqual should return false") - } - if NotEqual(mockT, &struct{}{}, &struct{}{}) { - t.Error("NotEqual should return false") - } -} - -type A struct { - Name, Value string -} - -func TestContains(t *testing.T) { - - mockT := new(testing.T) - list := []string{"Foo", "Bar"} - complexList := []*A{ - {"b", "c"}, - {"d", "e"}, - {"g", "h"}, - {"j", "k"}, - } - simpleMap := map[interface{}]interface{}{"Foo": "Bar"} - - if !Contains(mockT, "Hello World", "Hello") { - t.Error("Contains should return true: \"Hello World\" contains \"Hello\"") - } - if Contains(mockT, "Hello World", "Salut") { - t.Error("Contains should return false: \"Hello World\" does not contain \"Salut\"") - } - - if !Contains(mockT, list, "Bar") { - t.Error("Contains should return true: \"[\"Foo\", \"Bar\"]\" contains \"Bar\"") - } - if Contains(mockT, list, "Salut") { - t.Error("Contains should return false: \"[\"Foo\", \"Bar\"]\" does not contain \"Salut\"") - } - if !Contains(mockT, complexList, &A{"g", "h"}) { - t.Error("Contains should return true: complexList contains {\"g\", \"h\"}") - } - if Contains(mockT, complexList, &A{"g", "e"}) { - t.Error("Contains should return false: complexList contains {\"g\", \"e\"}") - } - if Contains(mockT, complexList, &A{"g", "e"}) { - t.Error("Contains should return false: complexList contains {\"g\", \"e\"}") - } - if !Contains(mockT, simpleMap, "Foo") { - t.Error("Contains should return true: \"{\"Foo\": \"Bar\"}\" contains \"Foo\"") - } - if Contains(mockT, simpleMap, "Bar") { - t.Error("Contains should return false: \"{\"Foo\": \"Bar\"}\" does not contains \"Bar\"") - } -} - -func TestNotContains(t *testing.T) { - - mockT := new(testing.T) - list := []string{"Foo", "Bar"} - simpleMap := map[interface{}]interface{}{"Foo": "Bar"} - - if !NotContains(mockT, "Hello World", "Hello!") { - t.Error("NotContains should return true: \"Hello World\" does not contain \"Hello!\"") - } - if NotContains(mockT, "Hello World", "Hello") { - t.Error("NotContains should return false: \"Hello World\" contains \"Hello\"") - } - - if !NotContains(mockT, list, "Foo!") { - t.Error("NotContains should return true: \"[\"Foo\", \"Bar\"]\" does not contain \"Foo!\"") - } - if NotContains(mockT, list, "Foo") { - t.Error("NotContains should return false: \"[\"Foo\", \"Bar\"]\" contains \"Foo\"") - } - if NotContains(mockT, simpleMap, "Foo") { - t.Error("Contains should return true: \"{\"Foo\": \"Bar\"}\" contains \"Foo\"") - } - if !NotContains(mockT, simpleMap, "Bar") { - t.Error("Contains should return false: \"{\"Foo\": \"Bar\"}\" does not contains \"Bar\"") - } -} - -func TestSubset(t *testing.T) { - mockT := new(testing.T) - - if !Subset(mockT, []int{1, 2, 3}, nil) { - t.Error("Subset should return true: given subset is nil") - } - if !Subset(mockT, []int{1, 2, 3}, []int{}) { - t.Error("Subset should return true: any set contains the nil set") - } - if !Subset(mockT, []int{1, 2, 3}, []int{1, 2}) { - t.Error("Subset should return true: [1, 2, 3] contains [1, 2]") - } - if !Subset(mockT, []int{1, 2, 3}, []int{1, 2, 3}) { - t.Error("Subset should return true: [1, 2, 3] contains [1, 2, 3]") - } - if !Subset(mockT, []string{"hello", "world"}, []string{"hello"}) { - t.Error("Subset should return true: [\"hello\", \"world\"] contains [\"hello\"]") - } - - if Subset(mockT, []string{"hello", "world"}, []string{"hello", "testify"}) { - t.Error("Subset should return false: [\"hello\", \"world\"] does not contain [\"hello\", \"testify\"]") - } - if Subset(mockT, []int{1, 2, 3}, []int{4, 5}) { - t.Error("Subset should return false: [1, 2, 3] does not contain [4, 5]") - } - if Subset(mockT, []int{1, 2, 3}, []int{1, 5}) { - t.Error("Subset should return false: [1, 2, 3] does not contain [1, 5]") - } -} - -func TestNotSubset(t *testing.T) { - mockT := new(testing.T) - - if NotSubset(mockT, []int{1, 2, 3}, nil) { - t.Error("NotSubset should return false: given subset is nil") - } - if NotSubset(mockT, []int{1, 2, 3}, []int{}) { - t.Error("NotSubset should return false: any set contains the nil set") - } - if NotSubset(mockT, []int{1, 2, 3}, []int{1, 2}) { - t.Error("NotSubset should return false: [1, 2, 3] contains [1, 2]") - } - if NotSubset(mockT, []int{1, 2, 3}, []int{1, 2, 3}) { - t.Error("NotSubset should return false: [1, 2, 3] contains [1, 2, 3]") - } - if NotSubset(mockT, []string{"hello", "world"}, []string{"hello"}) { - t.Error("NotSubset should return false: [\"hello\", \"world\"] contains [\"hello\"]") - } - - if !NotSubset(mockT, []string{"hello", "world"}, []string{"hello", "testify"}) { - t.Error("NotSubset should return true: [\"hello\", \"world\"] does not contain [\"hello\", \"testify\"]") - } - if !NotSubset(mockT, []int{1, 2, 3}, []int{4, 5}) { - t.Error("NotSubset should return true: [1, 2, 3] does not contain [4, 5]") - } - if !NotSubset(mockT, []int{1, 2, 3}, []int{1, 5}) { - t.Error("NotSubset should return true: [1, 2, 3] does not contain [1, 5]") - } -} - -func TestNotSubsetNil(t *testing.T) { - mockT := new(testing.T) - NotSubset(mockT, []string{"foo"}, nil) - if !mockT.Failed() { - t.Error("NotSubset on nil set should have failed the test") - } -} - -func Test_includeElement(t *testing.T) { - - list1 := []string{"Foo", "Bar"} - list2 := []int{1, 2} - simpleMap := map[interface{}]interface{}{"Foo": "Bar"} - - ok, found := includeElement("Hello World", "World") - True(t, ok) - True(t, found) - - ok, found = includeElement(list1, "Foo") - True(t, ok) - True(t, found) - - ok, found = includeElement(list1, "Bar") - True(t, ok) - True(t, found) - - ok, found = includeElement(list2, 1) - True(t, ok) - True(t, found) - - ok, found = includeElement(list2, 2) - True(t, ok) - True(t, found) - - ok, found = includeElement(list1, "Foo!") - True(t, ok) - False(t, found) - - ok, found = includeElement(list2, 3) - True(t, ok) - False(t, found) - - ok, found = includeElement(list2, "1") - True(t, ok) - False(t, found) - - ok, found = includeElement(simpleMap, "Foo") - True(t, ok) - True(t, found) - - ok, found = includeElement(simpleMap, "Bar") - True(t, ok) - False(t, found) - - ok, found = includeElement(1433, "1") - False(t, ok) - False(t, found) -} - -func TestElementsMatch(t *testing.T) { - mockT := new(testing.T) - - if !ElementsMatch(mockT, nil, nil) { - t.Error("ElementsMatch should return true") - } - if !ElementsMatch(mockT, []int{}, []int{}) { - t.Error("ElementsMatch should return true") - } - if !ElementsMatch(mockT, []int{1}, []int{1}) { - t.Error("ElementsMatch should return true") - } - if !ElementsMatch(mockT, []int{1, 1}, []int{1, 1}) { - t.Error("ElementsMatch should return true") - } - if !ElementsMatch(mockT, []int{1, 2}, []int{1, 2}) { - t.Error("ElementsMatch should return true") - } - if !ElementsMatch(mockT, []int{1, 2}, []int{2, 1}) { - t.Error("ElementsMatch should return true") - } - if !ElementsMatch(mockT, [2]int{1, 2}, [2]int{2, 1}) { - t.Error("ElementsMatch should return true") - } - if !ElementsMatch(mockT, []string{"hello", "world"}, []string{"world", "hello"}) { - t.Error("ElementsMatch should return true") - } - if !ElementsMatch(mockT, []string{"hello", "hello"}, []string{"hello", "hello"}) { - t.Error("ElementsMatch should return true") - } - if !ElementsMatch(mockT, []string{"hello", "hello", "world"}, []string{"hello", "world", "hello"}) { - t.Error("ElementsMatch should return true") - } - if !ElementsMatch(mockT, [3]string{"hello", "hello", "world"}, [3]string{"hello", "world", "hello"}) { - t.Error("ElementsMatch should return true") - } - if !ElementsMatch(mockT, []int{}, nil) { - t.Error("ElementsMatch should return true") - } - - if ElementsMatch(mockT, []int{1}, []int{1, 1}) { - t.Error("ElementsMatch should return false") - } - if ElementsMatch(mockT, []int{1, 2}, []int{2, 2}) { - t.Error("ElementsMatch should return false") - } - if ElementsMatch(mockT, []string{"hello", "hello"}, []string{"hello"}) { - t.Error("ElementsMatch should return false") - } -} - -func TestCondition(t *testing.T) { - mockT := new(testing.T) - - if !Condition(mockT, func() bool { return true }, "Truth") { - t.Error("Condition should return true") - } - - if Condition(mockT, func() bool { return false }, "Lie") { - t.Error("Condition should return false") - } - -} - -func TestDidPanic(t *testing.T) { - - if funcDidPanic, _ := didPanic(func() { - panic("Panic!") - }); !funcDidPanic { - t.Error("didPanic should return true") - } - - if funcDidPanic, _ := didPanic(func() { - }); funcDidPanic { - t.Error("didPanic should return false") - } - -} - -func TestPanics(t *testing.T) { - - mockT := new(testing.T) - - if !Panics(mockT, func() { - panic("Panic!") - }) { - t.Error("Panics should return true") - } - - if Panics(mockT, func() { - }) { - t.Error("Panics should return false") - } - -} - -func TestPanicsWithValue(t *testing.T) { - - mockT := new(testing.T) - - if !PanicsWithValue(mockT, "Panic!", func() { - panic("Panic!") - }) { - t.Error("PanicsWithValue should return true") - } - - if PanicsWithValue(mockT, "Panic!", func() { - }) { - t.Error("PanicsWithValue should return false") - } - - if PanicsWithValue(mockT, "at the disco", func() { - panic("Panic!") - }) { - t.Error("PanicsWithValue should return false") - } -} - -func TestNotPanics(t *testing.T) { - - mockT := new(testing.T) - - if !NotPanics(mockT, func() { - }) { - t.Error("NotPanics should return true") - } - - if NotPanics(mockT, func() { - panic("Panic!") - }) { - t.Error("NotPanics should return false") - } - -} - -func TestNoError(t *testing.T) { - - mockT := new(testing.T) - - // start with a nil error - var err error - - True(t, NoError(mockT, err), "NoError should return True for nil arg") - - // now set an error - err = errors.New("some error") - - False(t, NoError(mockT, err), "NoError with error should return False") - - // returning an empty error interface - err = func() error { - var err *customError - if err != nil { - t.Fatal("err should be nil here") - } - return err - }() - - if err == nil { // err is not nil here! - t.Errorf("Error should be nil due to empty interface: %s", err) - } - - False(t, NoError(mockT, err), "NoError should fail with empty error interface") -} - -type customError struct{} - -func (*customError) Error() string { return "fail" } - -func TestError(t *testing.T) { - - mockT := new(testing.T) - - // start with a nil error - var err error - - False(t, Error(mockT, err), "Error should return False for nil arg") - - // now set an error - err = errors.New("some error") - - True(t, Error(mockT, err), "Error with error should return True") - - // go vet check - True(t, Errorf(mockT, err, "example with %s", "formatted message"), "Errorf with error should rturn True") - - // returning an empty error interface - err = func() error { - var err *customError - if err != nil { - t.Fatal("err should be nil here") - } - return err - }() - - if err == nil { // err is not nil here! - t.Errorf("Error should be nil due to empty interface: %s", err) - } - - True(t, Error(mockT, err), "Error should pass with empty error interface") -} - -func TestEqualError(t *testing.T) { - mockT := new(testing.T) - - // start with a nil error - var err error - False(t, EqualError(mockT, err, ""), - "EqualError should return false for nil arg") - - // now set an error - err = errors.New("some error") - False(t, EqualError(mockT, err, "Not some error"), - "EqualError should return false for different error string") - True(t, EqualError(mockT, err, "some error"), - "EqualError should return true") -} - -func Test_isEmpty(t *testing.T) { - - chWithValue := make(chan struct{}, 1) - chWithValue <- struct{}{} - - True(t, isEmpty("")) - True(t, isEmpty(nil)) - True(t, isEmpty([]string{})) - True(t, isEmpty(0)) - True(t, isEmpty(int32(0))) - True(t, isEmpty(int64(0))) - True(t, isEmpty(false)) - True(t, isEmpty(map[string]string{})) - True(t, isEmpty(new(time.Time))) - True(t, isEmpty(time.Time{})) - True(t, isEmpty(make(chan struct{}))) - False(t, isEmpty("something")) - False(t, isEmpty(errors.New("something"))) - False(t, isEmpty([]string{"something"})) - False(t, isEmpty(1)) - False(t, isEmpty(true)) - False(t, isEmpty(map[string]string{"Hello": "World"})) - False(t, isEmpty(chWithValue)) - -} - -func TestEmpty(t *testing.T) { - - mockT := new(testing.T) - chWithValue := make(chan struct{}, 1) - chWithValue <- struct{}{} - var tiP *time.Time - var tiNP time.Time - var s *string - var f *os.File - sP := &s - x := 1 - xP := &x - - type TString string - type TStruct struct { - x int - s []int - } - - True(t, Empty(mockT, ""), "Empty string is empty") - True(t, Empty(mockT, nil), "Nil is empty") - True(t, Empty(mockT, []string{}), "Empty string array is empty") - True(t, Empty(mockT, 0), "Zero int value is empty") - True(t, Empty(mockT, false), "False value is empty") - True(t, Empty(mockT, make(chan struct{})), "Channel without values is empty") - True(t, Empty(mockT, s), "Nil string pointer is empty") - True(t, Empty(mockT, f), "Nil os.File pointer is empty") - True(t, Empty(mockT, tiP), "Nil time.Time pointer is empty") - True(t, Empty(mockT, tiNP), "time.Time is empty") - True(t, Empty(mockT, TStruct{}), "struct with zero values is empty") - True(t, Empty(mockT, TString("")), "empty aliased string is empty") - True(t, Empty(mockT, sP), "ptr to nil value is empty") - - False(t, Empty(mockT, "something"), "Non Empty string is not empty") - False(t, Empty(mockT, errors.New("something")), "Non nil object is not empty") - False(t, Empty(mockT, []string{"something"}), "Non empty string array is not empty") - False(t, Empty(mockT, 1), "Non-zero int value is not empty") - False(t, Empty(mockT, true), "True value is not empty") - False(t, Empty(mockT, chWithValue), "Channel with values is not empty") - False(t, Empty(mockT, TStruct{x: 1}), "struct with initialized values is empty") - False(t, Empty(mockT, TString("abc")), "non-empty aliased string is empty") - False(t, Empty(mockT, xP), "ptr to non-nil value is not empty") -} - -func TestNotEmpty(t *testing.T) { - - mockT := new(testing.T) - chWithValue := make(chan struct{}, 1) - chWithValue <- struct{}{} - - False(t, NotEmpty(mockT, ""), "Empty string is empty") - False(t, NotEmpty(mockT, nil), "Nil is empty") - False(t, NotEmpty(mockT, []string{}), "Empty string array is empty") - False(t, NotEmpty(mockT, 0), "Zero int value is empty") - False(t, NotEmpty(mockT, false), "False value is empty") - False(t, NotEmpty(mockT, make(chan struct{})), "Channel without values is empty") - - True(t, NotEmpty(mockT, "something"), "Non Empty string is not empty") - True(t, NotEmpty(mockT, errors.New("something")), "Non nil object is not empty") - True(t, NotEmpty(mockT, []string{"something"}), "Non empty string array is not empty") - True(t, NotEmpty(mockT, 1), "Non-zero int value is not empty") - True(t, NotEmpty(mockT, true), "True value is not empty") - True(t, NotEmpty(mockT, chWithValue), "Channel with values is not empty") -} - -func Test_getLen(t *testing.T) { - falseCases := []interface{}{ - nil, - 0, - true, - false, - 'A', - struct{}{}, - } - for _, v := range falseCases { - ok, l := getLen(v) - False(t, ok, "Expected getLen fail to get length of %#v", v) - Equal(t, 0, l, "getLen should return 0 for %#v", v) - } - - ch := make(chan int, 5) - ch <- 1 - ch <- 2 - ch <- 3 - trueCases := []struct { - v interface{} - l int - }{ - {[]int{1, 2, 3}, 3}, - {[...]int{1, 2, 3}, 3}, - {"ABC", 3}, - {map[int]int{1: 2, 2: 4, 3: 6}, 3}, - {ch, 3}, - - {[]int{}, 0}, - {map[int]int{}, 0}, - {make(chan int), 0}, - - {[]int(nil), 0}, - {map[int]int(nil), 0}, - {(chan int)(nil), 0}, - } - - for _, c := range trueCases { - ok, l := getLen(c.v) - True(t, ok, "Expected getLen success to get length of %#v", c.v) - Equal(t, c.l, l) - } -} - -func TestLen(t *testing.T) { - mockT := new(testing.T) - - False(t, Len(mockT, nil, 0), "nil does not have length") - False(t, Len(mockT, 0, 0), "int does not have length") - False(t, Len(mockT, true, 0), "true does not have length") - False(t, Len(mockT, false, 0), "false does not have length") - False(t, Len(mockT, 'A', 0), "Rune does not have length") - False(t, Len(mockT, struct{}{}, 0), "Struct does not have length") - - ch := make(chan int, 5) - ch <- 1 - ch <- 2 - ch <- 3 - - cases := []struct { - v interface{} - l int - }{ - {[]int{1, 2, 3}, 3}, - {[...]int{1, 2, 3}, 3}, - {"ABC", 3}, - {map[int]int{1: 2, 2: 4, 3: 6}, 3}, - {ch, 3}, - - {[]int{}, 0}, - {map[int]int{}, 0}, - {make(chan int), 0}, - - {[]int(nil), 0}, - {map[int]int(nil), 0}, - {(chan int)(nil), 0}, - } - - for _, c := range cases { - True(t, Len(mockT, c.v, c.l), "%#v have %d items", c.v, c.l) - } - - cases = []struct { - v interface{} - l int - }{ - {[]int{1, 2, 3}, 4}, - {[...]int{1, 2, 3}, 2}, - {"ABC", 2}, - {map[int]int{1: 2, 2: 4, 3: 6}, 4}, - {ch, 2}, - - {[]int{}, 1}, - {map[int]int{}, 1}, - {make(chan int), 1}, - - {[]int(nil), 1}, - {map[int]int(nil), 1}, - {(chan int)(nil), 1}, - } - - for _, c := range cases { - False(t, Len(mockT, c.v, c.l), "%#v have %d items", c.v, c.l) - } -} - -func TestWithinDuration(t *testing.T) { - - mockT := new(testing.T) - a := time.Now() - b := a.Add(10 * time.Second) - - True(t, WithinDuration(mockT, a, b, 10*time.Second), "A 10s difference is within a 10s time difference") - True(t, WithinDuration(mockT, b, a, 10*time.Second), "A 10s difference is within a 10s time difference") - - False(t, WithinDuration(mockT, a, b, 9*time.Second), "A 10s difference is not within a 9s time difference") - False(t, WithinDuration(mockT, b, a, 9*time.Second), "A 10s difference is not within a 9s time difference") - - False(t, WithinDuration(mockT, a, b, -9*time.Second), "A 10s difference is not within a 9s time difference") - False(t, WithinDuration(mockT, b, a, -9*time.Second), "A 10s difference is not within a 9s time difference") - - False(t, WithinDuration(mockT, a, b, -11*time.Second), "A 10s difference is not within a 9s time difference") - False(t, WithinDuration(mockT, b, a, -11*time.Second), "A 10s difference is not within a 9s time difference") -} - -func TestInDelta(t *testing.T) { - mockT := new(testing.T) - - True(t, InDelta(mockT, 1.001, 1, 0.01), "|1.001 - 1| <= 0.01") - True(t, InDelta(mockT, 1, 1.001, 0.01), "|1 - 1.001| <= 0.01") - True(t, InDelta(mockT, 1, 2, 1), "|1 - 2| <= 1") - False(t, InDelta(mockT, 1, 2, 0.5), "Expected |1 - 2| <= 0.5 to fail") - False(t, InDelta(mockT, 2, 1, 0.5), "Expected |2 - 1| <= 0.5 to fail") - False(t, InDelta(mockT, "", nil, 1), "Expected non numerals to fail") - False(t, InDelta(mockT, 42, math.NaN(), 0.01), "Expected NaN for actual to fail") - False(t, InDelta(mockT, math.NaN(), 42, 0.01), "Expected NaN for expected to fail") - - cases := []struct { - a, b interface{} - delta float64 - }{ - {uint8(2), uint8(1), 1}, - {uint16(2), uint16(1), 1}, - {uint32(2), uint32(1), 1}, - {uint64(2), uint64(1), 1}, - - {int(2), int(1), 1}, - {int8(2), int8(1), 1}, - {int16(2), int16(1), 1}, - {int32(2), int32(1), 1}, - {int64(2), int64(1), 1}, - - {float32(2), float32(1), 1}, - {float64(2), float64(1), 1}, - } - - for _, tc := range cases { - True(t, InDelta(mockT, tc.a, tc.b, tc.delta), "Expected |%V - %V| <= %v", tc.a, tc.b, tc.delta) - } -} - -func TestInDeltaSlice(t *testing.T) { - mockT := new(testing.T) - - True(t, InDeltaSlice(mockT, - []float64{1.001, 0.999}, - []float64{1, 1}, - 0.1), "{1.001, 0.009} is element-wise close to {1, 1} in delta=0.1") - - True(t, InDeltaSlice(mockT, - []float64{1, 2}, - []float64{0, 3}, - 1), "{1, 2} is element-wise close to {0, 3} in delta=1") - - False(t, InDeltaSlice(mockT, - []float64{1, 2}, - []float64{0, 3}, - 0.1), "{1, 2} is not element-wise close to {0, 3} in delta=0.1") - - False(t, InDeltaSlice(mockT, "", nil, 1), "Expected non numeral slices to fail") -} - -func TestInDeltaMapValues(t *testing.T) { - mockT := new(testing.T) - - for _, tc := range []struct { - title string - expect interface{} - actual interface{} - f func(TestingT, bool, ...interface{}) bool - delta float64 - }{ - { - title: "Within delta", - expect: map[string]float64{ - "foo": 1.0, - "bar": 2.0, - }, - actual: map[string]float64{ - "foo": 1.01, - "bar": 1.99, - }, - delta: 0.1, - f: True, - }, - { - title: "Within delta", - expect: map[int]float64{ - 1: 1.0, - 2: 2.0, - }, - actual: map[int]float64{ - 1: 1.0, - 2: 1.99, - }, - delta: 0.1, - f: True, - }, - { - title: "Different number of keys", - expect: map[int]float64{ - 1: 1.0, - 2: 2.0, - }, - actual: map[int]float64{ - 1: 1.0, - }, - delta: 0.1, - f: False, - }, - { - title: "Within delta with zero value", - expect: map[string]float64{ - "zero": 0.0, - }, - actual: map[string]float64{ - "zero": 0.0, - }, - delta: 0.1, - f: True, - }, - { - title: "With missing key with zero value", - expect: map[string]float64{ - "zero": 0.0, - "foo": 0.0, - }, - actual: map[string]float64{ - "zero": 0.0, - "bar": 0.0, - }, - f: False, - }, - } { - tc.f(t, InDeltaMapValues(mockT, tc.expect, tc.actual, tc.delta), tc.title+"\n"+diff(tc.expect, tc.actual)) - } -} - -func TestInEpsilon(t *testing.T) { - mockT := new(testing.T) - - cases := []struct { - a, b interface{} - epsilon float64 - }{ - {uint8(2), uint16(2), .001}, - {2.1, 2.2, 0.1}, - {2.2, 2.1, 0.1}, - {-2.1, -2.2, 0.1}, - {-2.2, -2.1, 0.1}, - {uint64(100), uint8(101), 0.01}, - {0.1, -0.1, 2}, - {0.1, 0, 2}, - {time.Second, time.Second + time.Millisecond, 0.002}, - } - - for _, tc := range cases { - True(t, InEpsilon(t, tc.a, tc.b, tc.epsilon, "Expected %V and %V to have a relative difference of %v", tc.a, tc.b, tc.epsilon), "test: %q", tc) - } - - cases = []struct { - a, b interface{} - epsilon float64 - }{ - {uint8(2), int16(-2), .001}, - {uint64(100), uint8(102), 0.01}, - {2.1, 2.2, 0.001}, - {2.2, 2.1, 0.001}, - {2.1, -2.2, 1}, - {2.1, "bla-bla", 0}, - {0.1, -0.1, 1.99}, - {0, 0.1, 2}, // expected must be different to zero - {time.Second, time.Second + 10*time.Millisecond, 0.002}, - } - - for _, tc := range cases { - False(t, InEpsilon(mockT, tc.a, tc.b, tc.epsilon, "Expected %V and %V to have a relative difference of %v", tc.a, tc.b, tc.epsilon)) - } - -} - -func TestInEpsilonSlice(t *testing.T) { - mockT := new(testing.T) - - True(t, InEpsilonSlice(mockT, - []float64{2.2, 2.0}, - []float64{2.1, 2.1}, - 0.06), "{2.2, 2.0} is element-wise close to {2.1, 2.1} in espilon=0.06") - - False(t, InEpsilonSlice(mockT, - []float64{2.2, 2.0}, - []float64{2.1, 2.1}, - 0.04), "{2.2, 2.0} is not element-wise close to {2.1, 2.1} in espilon=0.04") - - False(t, InEpsilonSlice(mockT, "", nil, 1), "Expected non numeral slices to fail") -} - -func TestRegexp(t *testing.T) { - mockT := new(testing.T) - - cases := []struct { - rx, str string - }{ - {"^start", "start of the line"}, - {"end$", "in the end"}, - {"[0-9]{3}[.-]?[0-9]{2}[.-]?[0-9]{2}", "My phone number is 650.12.34"}, - } - - for _, tc := range cases { - True(t, Regexp(mockT, tc.rx, tc.str)) - True(t, Regexp(mockT, regexp.MustCompile(tc.rx), tc.str)) - False(t, NotRegexp(mockT, tc.rx, tc.str)) - False(t, NotRegexp(mockT, regexp.MustCompile(tc.rx), tc.str)) - } - - cases = []struct { - rx, str string - }{ - {"^asdfastart", "Not the start of the line"}, - {"end$", "in the end."}, - {"[0-9]{3}[.-]?[0-9]{2}[.-]?[0-9]{2}", "My phone number is 650.12a.34"}, - } - - for _, tc := range cases { - False(t, Regexp(mockT, tc.rx, tc.str), "Expected \"%s\" to not match \"%s\"", tc.rx, tc.str) - False(t, Regexp(mockT, regexp.MustCompile(tc.rx), tc.str)) - True(t, NotRegexp(mockT, tc.rx, tc.str)) - True(t, NotRegexp(mockT, regexp.MustCompile(tc.rx), tc.str)) - } -} - -func testAutogeneratedFunction() { - defer func() { - if err := recover(); err == nil { - panic("did not panic") - } - CallerInfo() - }() - t := struct { - io.Closer - }{} - var c io.Closer - c = t - c.Close() -} - -func TestCallerInfoWithAutogeneratedFunctions(t *testing.T) { - NotPanics(t, func() { - testAutogeneratedFunction() - }) -} - -func TestZero(t *testing.T) { - mockT := new(testing.T) - - for _, test := range zeros { - True(t, Zero(mockT, test, "%#v is not the %v zero value", test, reflect.TypeOf(test))) - } - - for _, test := range nonZeros { - False(t, Zero(mockT, test, "%#v is not the %v zero value", test, reflect.TypeOf(test))) - } -} - -func TestNotZero(t *testing.T) { - mockT := new(testing.T) - - for _, test := range zeros { - False(t, NotZero(mockT, test, "%#v is not the %v zero value", test, reflect.TypeOf(test))) - } - - for _, test := range nonZeros { - True(t, NotZero(mockT, test, "%#v is not the %v zero value", test, reflect.TypeOf(test))) - } -} - -func TestFileExists(t *testing.T) { - mockT := new(testing.T) - True(t, FileExists(mockT, "assertions.go")) - - mockT = new(testing.T) - False(t, FileExists(mockT, "random_file")) - - mockT = new(testing.T) - False(t, FileExists(mockT, "../_codegen")) -} - -func TestDirExists(t *testing.T) { - mockT := new(testing.T) - False(t, DirExists(mockT, "assertions.go")) - - mockT = new(testing.T) - False(t, DirExists(mockT, "random_dir")) - - mockT = new(testing.T) - True(t, DirExists(mockT, "../_codegen")) -} - -func TestJSONEq_EqualSONString(t *testing.T) { - mockT := new(testing.T) - True(t, JSONEq(mockT, `{"hello": "world", "foo": "bar"}`, `{"hello": "world", "foo": "bar"}`)) -} - -func TestJSONEq_EquivalentButNotEqual(t *testing.T) { - mockT := new(testing.T) - True(t, JSONEq(mockT, `{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`)) -} - -func TestJSONEq_HashOfArraysAndHashes(t *testing.T) { - mockT := new(testing.T) - True(t, JSONEq(mockT, "{\r\n\t\"numeric\": 1.5,\r\n\t\"array\": [{\"foo\": \"bar\"}, 1, \"string\", [\"nested\", \"array\", 5.5]],\r\n\t\"hash\": {\"nested\": \"hash\", \"nested_slice\": [\"this\", \"is\", \"nested\"]},\r\n\t\"string\": \"foo\"\r\n}", - "{\r\n\t\"numeric\": 1.5,\r\n\t\"hash\": {\"nested\": \"hash\", \"nested_slice\": [\"this\", \"is\", \"nested\"]},\r\n\t\"string\": \"foo\",\r\n\t\"array\": [{\"foo\": \"bar\"}, 1, \"string\", [\"nested\", \"array\", 5.5]]\r\n}")) -} - -func TestJSONEq_Array(t *testing.T) { - mockT := new(testing.T) - True(t, JSONEq(mockT, `["foo", {"hello": "world", "nested": "hash"}]`, `["foo", {"nested": "hash", "hello": "world"}]`)) -} - -func TestJSONEq_HashAndArrayNotEquivalent(t *testing.T) { - mockT := new(testing.T) - False(t, JSONEq(mockT, `["foo", {"hello": "world", "nested": "hash"}]`, `{"foo": "bar", {"nested": "hash", "hello": "world"}}`)) -} - -func TestJSONEq_HashesNotEquivalent(t *testing.T) { - mockT := new(testing.T) - False(t, JSONEq(mockT, `{"foo": "bar"}`, `{"foo": "bar", "hello": "world"}`)) -} - -func TestJSONEq_ActualIsNotJSON(t *testing.T) { - mockT := new(testing.T) - False(t, JSONEq(mockT, `{"foo": "bar"}`, "Not JSON")) -} - -func TestJSONEq_ExpectedIsNotJSON(t *testing.T) { - mockT := new(testing.T) - False(t, JSONEq(mockT, "Not JSON", `{"foo": "bar", "hello": "world"}`)) -} - -func TestJSONEq_ExpectedAndActualNotJSON(t *testing.T) { - mockT := new(testing.T) - False(t, JSONEq(mockT, "Not JSON", "Not JSON")) -} - -func TestJSONEq_ArraysOfDifferentOrder(t *testing.T) { - mockT := new(testing.T) - False(t, JSONEq(mockT, `["foo", {"hello": "world", "nested": "hash"}]`, `[{ "hello": "world", "nested": "hash"}, "foo"]`)) -} - -func TestDiff(t *testing.T) { - expected := ` - -Diff: ---- Expected -+++ Actual -@@ -1,3 +1,3 @@ - (struct { foo string }) { -- foo: (string) (len=5) "hello" -+ foo: (string) (len=3) "bar" - } -` - actual := diff( - struct{ foo string }{"hello"}, - struct{ foo string }{"bar"}, - ) - Equal(t, expected, actual) - - expected = ` - -Diff: ---- Expected -+++ Actual -@@ -2,5 +2,5 @@ - (int) 1, -- (int) 2, - (int) 3, -- (int) 4 -+ (int) 5, -+ (int) 7 - } -` - actual = diff( - []int{1, 2, 3, 4}, - []int{1, 3, 5, 7}, - ) - Equal(t, expected, actual) - - expected = ` - -Diff: ---- Expected -+++ Actual -@@ -2,4 +2,4 @@ - (int) 1, -- (int) 2, -- (int) 3 -+ (int) 3, -+ (int) 5 - } -` - actual = diff( - []int{1, 2, 3, 4}[0:3], - []int{1, 3, 5, 7}[0:3], - ) - Equal(t, expected, actual) - - expected = ` - -Diff: ---- Expected -+++ Actual -@@ -1,6 +1,6 @@ - (map[string]int) (len=4) { -- (string) (len=4) "four": (int) 4, -+ (string) (len=4) "five": (int) 5, - (string) (len=3) "one": (int) 1, -- (string) (len=5) "three": (int) 3, -- (string) (len=3) "two": (int) 2 -+ (string) (len=5) "seven": (int) 7, -+ (string) (len=5) "three": (int) 3 - } -` - - actual = diff( - map[string]int{"one": 1, "two": 2, "three": 3, "four": 4}, - map[string]int{"one": 1, "three": 3, "five": 5, "seven": 7}, - ) - Equal(t, expected, actual) -} - -func TestDiffEmptyCases(t *testing.T) { - Equal(t, "", diff(nil, nil)) - Equal(t, "", diff(struct{ foo string }{}, nil)) - Equal(t, "", diff(nil, struct{ foo string }{})) - Equal(t, "", diff(1, 2)) - Equal(t, "", diff(1, 2)) - Equal(t, "", diff([]int{1}, []bool{true})) -} - -// Ensure there are no data races -func TestDiffRace(t *testing.T) { - t.Parallel() - - expected := map[string]string{ - "a": "A", - "b": "B", - "c": "C", - } - - actual := map[string]string{ - "d": "D", - "e": "E", - "f": "F", - } - - // run diffs in parallel simulating tests with t.Parallel() - numRoutines := 10 - rChans := make([]chan string, numRoutines) - for idx := range rChans { - rChans[idx] = make(chan string) - go func(ch chan string) { - defer close(ch) - ch <- diff(expected, actual) - }(rChans[idx]) - } - - for _, ch := range rChans { - for msg := range ch { - NotZero(t, msg) // dummy assert - } - } -} - -type mockTestingT struct { -} - -func (m *mockTestingT) Errorf(format string, args ...interface{}) {} - -func TestFailNowWithPlainTestingT(t *testing.T) { - mockT := &mockTestingT{} - - Panics(t, func() { - FailNow(mockT, "failed") - }, "should panic since mockT is missing FailNow()") -} - -type mockFailNowTestingT struct { -} - -func (m *mockFailNowTestingT) Errorf(format string, args ...interface{}) {} - -func (m *mockFailNowTestingT) FailNow() {} - -func TestFailNowWithFullTestingT(t *testing.T) { - mockT := &mockFailNowTestingT{} - - NotPanics(t, func() { - FailNow(mockT, "failed") - }, "should call mockT.FailNow() rather than panicking") -} - -func TestBytesEqual(t *testing.T) { - var cases = []struct { - a, b []byte - }{ - {make([]byte, 2), make([]byte, 2)}, - {make([]byte, 2), make([]byte, 2, 3)}, - {nil, make([]byte, 0)}, - } - for i, c := range cases { - Equal(t, reflect.DeepEqual(c.a, c.b), ObjectsAreEqual(c.a, c.b), "case %d failed", i+1) - } -} - -func BenchmarkBytesEqual(b *testing.B) { - const size = 1024 * 8 - s := make([]byte, size) - for i := range s { - s[i] = byte(i % 255) - } - s2 := make([]byte, size) - copy(s2, s) - - mockT := &mockFailNowTestingT{} - b.ResetTimer() - for i := 0; i < b.N; i++ { - Equal(mockT, s, s2) - } -} - -func TestEqualArgsValidation(t *testing.T) { - err := validateEqualArgs(time.Now, time.Now) - EqualError(t, err, "cannot take func type as argument") -} - -func ExampleComparisonAssertionFunc() { - t := &testing.T{} // provided by test - - adder := func(x, y int) int { - return x + y - } - - type args struct { - x int - y int - } - - tests := []struct { - name string - args args - expect int - assertion ComparisonAssertionFunc - }{ - {"2+2=4", args{2, 2}, 4, Equal}, - {"2+2!=5", args{2, 2}, 5, NotEqual}, - {"2+3==5", args{2, 3}, 5, Exactly}, - } - - for _, tt := range tests { - t.Run(tt.name, func(t *testing.T) { - tt.assertion(t, tt.expect, adder(tt.args.x, tt.args.y)) - }) - } -} - -func TestComparisonAssertionFunc(t *testing.T) { - type iface interface { - Name() string - } - - tests := []struct { - name string - expect interface{} - got interface{} - assertion ComparisonAssertionFunc - }{ - {"implements", (*iface)(nil), t, Implements}, - {"isType", (*testing.T)(nil), t, IsType}, - {"equal", t, t, Equal}, - {"equalValues", t, t, EqualValues}, - {"exactly", t, t, Exactly}, - {"notEqual", t, nil, NotEqual}, - {"notContains", []int{1, 2, 3}, 4, NotContains}, - {"subset", []int{1, 2, 3, 4}, []int{2, 3}, Subset}, - {"notSubset", []int{1, 2, 3, 4}, []int{0, 3}, NotSubset}, - {"elementsMatch", []byte("abc"), []byte("bac"), ElementsMatch}, - {"regexp", "^t.*y$", "testify", Regexp}, - {"notRegexp", "^t.*y$", "Testify", NotRegexp}, - } - - for _, tt := range tests { - t.Run(tt.name, func(t *testing.T) { - tt.assertion(t, tt.expect, tt.got) - }) - } -} - -func ExampleValueAssertionFunc() { - t := &testing.T{} // provided by test - - dumbParse := func(input string) interface{} { - var x interface{} - json.Unmarshal([]byte(input), &x) - return x - } - - tests := []struct { - name string - arg string - assertion ValueAssertionFunc - }{ - {"true is not nil", "true", NotNil}, - {"empty string is nil", "", Nil}, - {"zero is not nil", "0", NotNil}, - {"zero is zero", "0", Zero}, - {"false is zero", "false", Zero}, - } - - for _, tt := range tests { - t.Run(tt.name, func(t *testing.T) { - tt.assertion(t, dumbParse(tt.arg)) - }) - } -} - -func TestValueAssertionFunc(t *testing.T) { - tests := []struct { - name string - value interface{} - assertion ValueAssertionFunc - }{ - {"notNil", true, NotNil}, - {"nil", nil, Nil}, - {"empty", []int{}, Empty}, - {"notEmpty", []int{1}, NotEmpty}, - {"zero", false, Zero}, - {"notZero", 42, NotZero}, - } - - for _, tt := range tests { - t.Run(tt.name, func(t *testing.T) { - tt.assertion(t, tt.value) - }) - } -} - -func ExampleBoolAssertionFunc() { - t := &testing.T{} // provided by test - - isOkay := func(x int) bool { - return x >= 42 - } - - tests := []struct { - name string - arg int - assertion BoolAssertionFunc - }{ - {"-1 is bad", -1, False}, - {"42 is good", 42, True}, - {"41 is bad", 41, False}, - {"45 is cool", 45, True}, - } - - for _, tt := range tests { - t.Run(tt.name, func(t *testing.T) { - tt.assertion(t, isOkay(tt.arg)) - }) - } -} - -func TestBoolAssertionFunc(t *testing.T) { - tests := []struct { - name string - value bool - assertion BoolAssertionFunc - }{ - {"true", true, True}, - {"false", false, False}, - } - - for _, tt := range tests { - t.Run(tt.name, func(t *testing.T) { - tt.assertion(t, tt.value) - }) - } -} - -func ExampleErrorAssertionFunc() { - t := &testing.T{} // provided by test - - dumbParseNum := func(input string, v interface{}) error { - return json.Unmarshal([]byte(input), v) - } - - tests := []struct { - name string - arg string - assertion ErrorAssertionFunc - }{ - {"1.2 is number", "1.2", NoError}, - {"1.2.3 not number", "1.2.3", Error}, - {"true is not number", "true", Error}, - {"3 is number", "3", NoError}, - } - - for _, tt := range tests { - t.Run(tt.name, func(t *testing.T) { - var x float64 - tt.assertion(t, dumbParseNum(tt.arg, &x)) - }) - } -} - -func TestErrorAssertionFunc(t *testing.T) { - tests := []struct { - name string - err error - assertion ErrorAssertionFunc - }{ - {"noError", nil, NoError}, - {"error", errors.New("whoops"), Error}, - } - - for _, tt := range tests { - t.Run(tt.name, func(t *testing.T) { - tt.assertion(t, tt.err) - }) - } -} diff --git a/vendor/github.com/stretchr/testify/assert/doc.go b/vendor/github.com/stretchr/testify/assert/doc.go deleted file mode 100644 index c9dccc4d..00000000 --- a/vendor/github.com/stretchr/testify/assert/doc.go +++ /dev/null @@ -1,45 +0,0 @@ -// Package assert provides a set of comprehensive testing tools for use with the normal Go testing system. -// -// Example Usage -// -// The following is a complete example using assert in a standard test function: -// import ( -// "testing" -// "github.com/stretchr/testify/assert" -// ) -// -// func TestSomething(t *testing.T) { -// -// var a string = "Hello" -// var b string = "Hello" -// -// assert.Equal(t, a, b, "The two words should be the same.") -// -// } -// -// if you assert many times, use the format below: -// -// import ( -// "testing" -// "github.com/stretchr/testify/assert" -// ) -// -// func TestSomething(t *testing.T) { -// assert := assert.New(t) -// -// var a string = "Hello" -// var b string = "Hello" -// -// assert.Equal(a, b, "The two words should be the same.") -// } -// -// Assertions -// -// Assertions allow you to easily write test code, and are global funcs in the `assert` package. -// All assertion functions take, as the first argument, the `*testing.T` object provided by the -// testing framework. This allows the assertion funcs to write the failings and other details to -// the correct place. -// -// Every assertion function also takes an optional string message as the final argument, -// allowing custom error messages to be appended to the message the assertion method outputs. -package assert diff --git a/vendor/github.com/stretchr/testify/assert/errors.go b/vendor/github.com/stretchr/testify/assert/errors.go deleted file mode 100644 index ac9dc9d1..00000000 --- a/vendor/github.com/stretchr/testify/assert/errors.go +++ /dev/null @@ -1,10 +0,0 @@ -package assert - -import ( - "errors" -) - -// AnError is an error instance useful for testing. If the code does not care -// about error specifics, and only needs to return the error for example, this -// error should be used to make the test code more readable. -var AnError = errors.New("assert.AnError general error for testing") diff --git a/vendor/github.com/stretchr/testify/assert/forward_assertions.go b/vendor/github.com/stretchr/testify/assert/forward_assertions.go deleted file mode 100644 index 9ad56851..00000000 --- a/vendor/github.com/stretchr/testify/assert/forward_assertions.go +++ /dev/null @@ -1,16 +0,0 @@ -package assert - -// Assertions provides assertion methods around the -// TestingT interface. -type Assertions struct { - t TestingT -} - -// New makes a new Assertions object for the specified TestingT. -func New(t TestingT) *Assertions { - return &Assertions{ - t: t, - } -} - -//go:generate go run ../_codegen/main.go -output-package=assert -template=assertion_forward.go.tmpl -include-format-funcs diff --git a/vendor/github.com/stretchr/testify/assert/forward_assertions_test.go b/vendor/github.com/stretchr/testify/assert/forward_assertions_test.go deleted file mode 100644 index 22e1df1d..00000000 --- a/vendor/github.com/stretchr/testify/assert/forward_assertions_test.go +++ /dev/null @@ -1,611 +0,0 @@ -package assert - -import ( - "errors" - "regexp" - "testing" - "time" -) - -func TestImplementsWrapper(t *testing.T) { - assert := New(new(testing.T)) - - if !assert.Implements((*AssertionTesterInterface)(nil), new(AssertionTesterConformingObject)) { - t.Error("Implements method should return true: AssertionTesterConformingObject implements AssertionTesterInterface") - } - if assert.Implements((*AssertionTesterInterface)(nil), new(AssertionTesterNonConformingObject)) { - t.Error("Implements method should return false: AssertionTesterNonConformingObject does not implements AssertionTesterInterface") - } -} - -func TestIsTypeWrapper(t *testing.T) { - assert := New(new(testing.T)) - - if !assert.IsType(new(AssertionTesterConformingObject), new(AssertionTesterConformingObject)) { - t.Error("IsType should return true: AssertionTesterConformingObject is the same type as AssertionTesterConformingObject") - } - if assert.IsType(new(AssertionTesterConformingObject), new(AssertionTesterNonConformingObject)) { - t.Error("IsType should return false: AssertionTesterConformingObject is not the same type as AssertionTesterNonConformingObject") - } - -} - -func TestEqualWrapper(t *testing.T) { - assert := New(new(testing.T)) - - if !assert.Equal("Hello World", "Hello World") { - t.Error("Equal should return true") - } - if !assert.Equal(123, 123) { - t.Error("Equal should return true") - } - if !assert.Equal(123.5, 123.5) { - t.Error("Equal should return true") - } - if !assert.Equal([]byte("Hello World"), []byte("Hello World")) { - t.Error("Equal should return true") - } - if !assert.Equal(nil, nil) { - t.Error("Equal should return true") - } -} - -func TestEqualValuesWrapper(t *testing.T) { - assert := New(new(testing.T)) - - if !assert.EqualValues(uint32(10), int32(10)) { - t.Error("EqualValues should return true") - } -} - -func TestNotNilWrapper(t *testing.T) { - assert := New(new(testing.T)) - - if !assert.NotNil(new(AssertionTesterConformingObject)) { - t.Error("NotNil should return true: object is not nil") - } - if assert.NotNil(nil) { - t.Error("NotNil should return false: object is nil") - } - -} - -func TestNilWrapper(t *testing.T) { - assert := New(new(testing.T)) - - if !assert.Nil(nil) { - t.Error("Nil should return true: object is nil") - } - if assert.Nil(new(AssertionTesterConformingObject)) { - t.Error("Nil should return false: object is not nil") - } - -} - -func TestTrueWrapper(t *testing.T) { - assert := New(new(testing.T)) - - if !assert.True(true) { - t.Error("True should return true") - } - if assert.True(false) { - t.Error("True should return false") - } - -} - -func TestFalseWrapper(t *testing.T) { - assert := New(new(testing.T)) - - if !assert.False(false) { - t.Error("False should return true") - } - if assert.False(true) { - t.Error("False should return false") - } - -} - -func TestExactlyWrapper(t *testing.T) { - assert := New(new(testing.T)) - - a := float32(1) - b := float64(1) - c := float32(1) - d := float32(2) - - if assert.Exactly(a, b) { - t.Error("Exactly should return false") - } - if assert.Exactly(a, d) { - t.Error("Exactly should return false") - } - if !assert.Exactly(a, c) { - t.Error("Exactly should return true") - } - - if assert.Exactly(nil, a) { - t.Error("Exactly should return false") - } - if assert.Exactly(a, nil) { - t.Error("Exactly should return false") - } - -} - -func TestNotEqualWrapper(t *testing.T) { - - assert := New(new(testing.T)) - - if !assert.NotEqual("Hello World", "Hello World!") { - t.Error("NotEqual should return true") - } - if !assert.NotEqual(123, 1234) { - t.Error("NotEqual should return true") - } - if !assert.NotEqual(123.5, 123.55) { - t.Error("NotEqual should return true") - } - if !assert.NotEqual([]byte("Hello World"), []byte("Hello World!")) { - t.Error("NotEqual should return true") - } - if !assert.NotEqual(nil, new(AssertionTesterConformingObject)) { - t.Error("NotEqual should return true") - } -} - -func TestContainsWrapper(t *testing.T) { - - assert := New(new(testing.T)) - list := []string{"Foo", "Bar"} - - if !assert.Contains("Hello World", "Hello") { - t.Error("Contains should return true: \"Hello World\" contains \"Hello\"") - } - if assert.Contains("Hello World", "Salut") { - t.Error("Contains should return false: \"Hello World\" does not contain \"Salut\"") - } - - if !assert.Contains(list, "Foo") { - t.Error("Contains should return true: \"[\"Foo\", \"Bar\"]\" contains \"Foo\"") - } - if assert.Contains(list, "Salut") { - t.Error("Contains should return false: \"[\"Foo\", \"Bar\"]\" does not contain \"Salut\"") - } - -} - -func TestNotContainsWrapper(t *testing.T) { - - assert := New(new(testing.T)) - list := []string{"Foo", "Bar"} - - if !assert.NotContains("Hello World", "Hello!") { - t.Error("NotContains should return true: \"Hello World\" does not contain \"Hello!\"") - } - if assert.NotContains("Hello World", "Hello") { - t.Error("NotContains should return false: \"Hello World\" contains \"Hello\"") - } - - if !assert.NotContains(list, "Foo!") { - t.Error("NotContains should return true: \"[\"Foo\", \"Bar\"]\" does not contain \"Foo!\"") - } - if assert.NotContains(list, "Foo") { - t.Error("NotContains should return false: \"[\"Foo\", \"Bar\"]\" contains \"Foo\"") - } - -} - -func TestConditionWrapper(t *testing.T) { - - assert := New(new(testing.T)) - - if !assert.Condition(func() bool { return true }, "Truth") { - t.Error("Condition should return true") - } - - if assert.Condition(func() bool { return false }, "Lie") { - t.Error("Condition should return false") - } - -} - -func TestDidPanicWrapper(t *testing.T) { - - if funcDidPanic, _ := didPanic(func() { - panic("Panic!") - }); !funcDidPanic { - t.Error("didPanic should return true") - } - - if funcDidPanic, _ := didPanic(func() { - }); funcDidPanic { - t.Error("didPanic should return false") - } - -} - -func TestPanicsWrapper(t *testing.T) { - - assert := New(new(testing.T)) - - if !assert.Panics(func() { - panic("Panic!") - }) { - t.Error("Panics should return true") - } - - if assert.Panics(func() { - }) { - t.Error("Panics should return false") - } - -} - -func TestNotPanicsWrapper(t *testing.T) { - - assert := New(new(testing.T)) - - if !assert.NotPanics(func() { - }) { - t.Error("NotPanics should return true") - } - - if assert.NotPanics(func() { - panic("Panic!") - }) { - t.Error("NotPanics should return false") - } - -} - -func TestNoErrorWrapper(t *testing.T) { - assert := New(t) - mockAssert := New(new(testing.T)) - - // start with a nil error - var err error - - assert.True(mockAssert.NoError(err), "NoError should return True for nil arg") - - // now set an error - err = errors.New("Some error") - - assert.False(mockAssert.NoError(err), "NoError with error should return False") - -} - -func TestErrorWrapper(t *testing.T) { - assert := New(t) - mockAssert := New(new(testing.T)) - - // start with a nil error - var err error - - assert.False(mockAssert.Error(err), "Error should return False for nil arg") - - // now set an error - err = errors.New("Some error") - - assert.True(mockAssert.Error(err), "Error with error should return True") - -} - -func TestEqualErrorWrapper(t *testing.T) { - assert := New(t) - mockAssert := New(new(testing.T)) - - // start with a nil error - var err error - assert.False(mockAssert.EqualError(err, ""), - "EqualError should return false for nil arg") - - // now set an error - err = errors.New("some error") - assert.False(mockAssert.EqualError(err, "Not some error"), - "EqualError should return false for different error string") - assert.True(mockAssert.EqualError(err, "some error"), - "EqualError should return true") -} - -func TestEmptyWrapper(t *testing.T) { - assert := New(t) - mockAssert := New(new(testing.T)) - - assert.True(mockAssert.Empty(""), "Empty string is empty") - assert.True(mockAssert.Empty(nil), "Nil is empty") - assert.True(mockAssert.Empty([]string{}), "Empty string array is empty") - assert.True(mockAssert.Empty(0), "Zero int value is empty") - assert.True(mockAssert.Empty(false), "False value is empty") - - assert.False(mockAssert.Empty("something"), "Non Empty string is not empty") - assert.False(mockAssert.Empty(errors.New("something")), "Non nil object is not empty") - assert.False(mockAssert.Empty([]string{"something"}), "Non empty string array is not empty") - assert.False(mockAssert.Empty(1), "Non-zero int value is not empty") - assert.False(mockAssert.Empty(true), "True value is not empty") - -} - -func TestNotEmptyWrapper(t *testing.T) { - assert := New(t) - mockAssert := New(new(testing.T)) - - assert.False(mockAssert.NotEmpty(""), "Empty string is empty") - assert.False(mockAssert.NotEmpty(nil), "Nil is empty") - assert.False(mockAssert.NotEmpty([]string{}), "Empty string array is empty") - assert.False(mockAssert.NotEmpty(0), "Zero int value is empty") - assert.False(mockAssert.NotEmpty(false), "False value is empty") - - assert.True(mockAssert.NotEmpty("something"), "Non Empty string is not empty") - assert.True(mockAssert.NotEmpty(errors.New("something")), "Non nil object is not empty") - assert.True(mockAssert.NotEmpty([]string{"something"}), "Non empty string array is not empty") - assert.True(mockAssert.NotEmpty(1), "Non-zero int value is not empty") - assert.True(mockAssert.NotEmpty(true), "True value is not empty") - -} - -func TestLenWrapper(t *testing.T) { - assert := New(t) - mockAssert := New(new(testing.T)) - - assert.False(mockAssert.Len(nil, 0), "nil does not have length") - assert.False(mockAssert.Len(0, 0), "int does not have length") - assert.False(mockAssert.Len(true, 0), "true does not have length") - assert.False(mockAssert.Len(false, 0), "false does not have length") - assert.False(mockAssert.Len('A', 0), "Rune does not have length") - assert.False(mockAssert.Len(struct{}{}, 0), "Struct does not have length") - - ch := make(chan int, 5) - ch <- 1 - ch <- 2 - ch <- 3 - - cases := []struct { - v interface{} - l int - }{ - {[]int{1, 2, 3}, 3}, - {[...]int{1, 2, 3}, 3}, - {"ABC", 3}, - {map[int]int{1: 2, 2: 4, 3: 6}, 3}, - {ch, 3}, - - {[]int{}, 0}, - {map[int]int{}, 0}, - {make(chan int), 0}, - - {[]int(nil), 0}, - {map[int]int(nil), 0}, - {(chan int)(nil), 0}, - } - - for _, c := range cases { - assert.True(mockAssert.Len(c.v, c.l), "%#v have %d items", c.v, c.l) - } -} - -func TestWithinDurationWrapper(t *testing.T) { - assert := New(t) - mockAssert := New(new(testing.T)) - a := time.Now() - b := a.Add(10 * time.Second) - - assert.True(mockAssert.WithinDuration(a, b, 10*time.Second), "A 10s difference is within a 10s time difference") - assert.True(mockAssert.WithinDuration(b, a, 10*time.Second), "A 10s difference is within a 10s time difference") - - assert.False(mockAssert.WithinDuration(a, b, 9*time.Second), "A 10s difference is not within a 9s time difference") - assert.False(mockAssert.WithinDuration(b, a, 9*time.Second), "A 10s difference is not within a 9s time difference") - - assert.False(mockAssert.WithinDuration(a, b, -9*time.Second), "A 10s difference is not within a 9s time difference") - assert.False(mockAssert.WithinDuration(b, a, -9*time.Second), "A 10s difference is not within a 9s time difference") - - assert.False(mockAssert.WithinDuration(a, b, -11*time.Second), "A 10s difference is not within a 9s time difference") - assert.False(mockAssert.WithinDuration(b, a, -11*time.Second), "A 10s difference is not within a 9s time difference") -} - -func TestInDeltaWrapper(t *testing.T) { - assert := New(new(testing.T)) - - True(t, assert.InDelta(1.001, 1, 0.01), "|1.001 - 1| <= 0.01") - True(t, assert.InDelta(1, 1.001, 0.01), "|1 - 1.001| <= 0.01") - True(t, assert.InDelta(1, 2, 1), "|1 - 2| <= 1") - False(t, assert.InDelta(1, 2, 0.5), "Expected |1 - 2| <= 0.5 to fail") - False(t, assert.InDelta(2, 1, 0.5), "Expected |2 - 1| <= 0.5 to fail") - False(t, assert.InDelta("", nil, 1), "Expected non numerals to fail") - - cases := []struct { - a, b interface{} - delta float64 - }{ - {uint8(2), uint8(1), 1}, - {uint16(2), uint16(1), 1}, - {uint32(2), uint32(1), 1}, - {uint64(2), uint64(1), 1}, - - {int(2), int(1), 1}, - {int8(2), int8(1), 1}, - {int16(2), int16(1), 1}, - {int32(2), int32(1), 1}, - {int64(2), int64(1), 1}, - - {float32(2), float32(1), 1}, - {float64(2), float64(1), 1}, - } - - for _, tc := range cases { - True(t, assert.InDelta(tc.a, tc.b, tc.delta), "Expected |%V - %V| <= %v", tc.a, tc.b, tc.delta) - } -} - -func TestInEpsilonWrapper(t *testing.T) { - assert := New(new(testing.T)) - - cases := []struct { - a, b interface{} - epsilon float64 - }{ - {uint8(2), uint16(2), .001}, - {2.1, 2.2, 0.1}, - {2.2, 2.1, 0.1}, - {-2.1, -2.2, 0.1}, - {-2.2, -2.1, 0.1}, - {uint64(100), uint8(101), 0.01}, - {0.1, -0.1, 2}, - } - - for _, tc := range cases { - True(t, assert.InEpsilon(tc.a, tc.b, tc.epsilon, "Expected %V and %V to have a relative difference of %v", tc.a, tc.b, tc.epsilon)) - } - - cases = []struct { - a, b interface{} - epsilon float64 - }{ - {uint8(2), int16(-2), .001}, - {uint64(100), uint8(102), 0.01}, - {2.1, 2.2, 0.001}, - {2.2, 2.1, 0.001}, - {2.1, -2.2, 1}, - {2.1, "bla-bla", 0}, - {0.1, -0.1, 1.99}, - } - - for _, tc := range cases { - False(t, assert.InEpsilon(tc.a, tc.b, tc.epsilon, "Expected %V and %V to have a relative difference of %v", tc.a, tc.b, tc.epsilon)) - } -} - -func TestRegexpWrapper(t *testing.T) { - - assert := New(new(testing.T)) - - cases := []struct { - rx, str string - }{ - {"^start", "start of the line"}, - {"end$", "in the end"}, - {"[0-9]{3}[.-]?[0-9]{2}[.-]?[0-9]{2}", "My phone number is 650.12.34"}, - } - - for _, tc := range cases { - True(t, assert.Regexp(tc.rx, tc.str)) - True(t, assert.Regexp(regexp.MustCompile(tc.rx), tc.str)) - False(t, assert.NotRegexp(tc.rx, tc.str)) - False(t, assert.NotRegexp(regexp.MustCompile(tc.rx), tc.str)) - } - - cases = []struct { - rx, str string - }{ - {"^asdfastart", "Not the start of the line"}, - {"end$", "in the end."}, - {"[0-9]{3}[.-]?[0-9]{2}[.-]?[0-9]{2}", "My phone number is 650.12a.34"}, - } - - for _, tc := range cases { - False(t, assert.Regexp(tc.rx, tc.str), "Expected \"%s\" to not match \"%s\"", tc.rx, tc.str) - False(t, assert.Regexp(regexp.MustCompile(tc.rx), tc.str)) - True(t, assert.NotRegexp(tc.rx, tc.str)) - True(t, assert.NotRegexp(regexp.MustCompile(tc.rx), tc.str)) - } -} - -func TestZeroWrapper(t *testing.T) { - assert := New(t) - mockAssert := New(new(testing.T)) - - for _, test := range zeros { - assert.True(mockAssert.Zero(test), "Zero should return true for %v", test) - } - - for _, test := range nonZeros { - assert.False(mockAssert.Zero(test), "Zero should return false for %v", test) - } -} - -func TestNotZeroWrapper(t *testing.T) { - assert := New(t) - mockAssert := New(new(testing.T)) - - for _, test := range zeros { - assert.False(mockAssert.NotZero(test), "Zero should return true for %v", test) - } - - for _, test := range nonZeros { - assert.True(mockAssert.NotZero(test), "Zero should return false for %v", test) - } -} - -func TestJSONEqWrapper_EqualSONString(t *testing.T) { - assert := New(new(testing.T)) - if !assert.JSONEq(`{"hello": "world", "foo": "bar"}`, `{"hello": "world", "foo": "bar"}`) { - t.Error("JSONEq should return true") - } - -} - -func TestJSONEqWrapper_EquivalentButNotEqual(t *testing.T) { - assert := New(new(testing.T)) - if !assert.JSONEq(`{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`) { - t.Error("JSONEq should return true") - } - -} - -func TestJSONEqWrapper_HashOfArraysAndHashes(t *testing.T) { - assert := New(new(testing.T)) - if !assert.JSONEq("{\r\n\t\"numeric\": 1.5,\r\n\t\"array\": [{\"foo\": \"bar\"}, 1, \"string\", [\"nested\", \"array\", 5.5]],\r\n\t\"hash\": {\"nested\": \"hash\", \"nested_slice\": [\"this\", \"is\", \"nested\"]},\r\n\t\"string\": \"foo\"\r\n}", - "{\r\n\t\"numeric\": 1.5,\r\n\t\"hash\": {\"nested\": \"hash\", \"nested_slice\": [\"this\", \"is\", \"nested\"]},\r\n\t\"string\": \"foo\",\r\n\t\"array\": [{\"foo\": \"bar\"}, 1, \"string\", [\"nested\", \"array\", 5.5]]\r\n}") { - t.Error("JSONEq should return true") - } -} - -func TestJSONEqWrapper_Array(t *testing.T) { - assert := New(new(testing.T)) - if !assert.JSONEq(`["foo", {"hello": "world", "nested": "hash"}]`, `["foo", {"nested": "hash", "hello": "world"}]`) { - t.Error("JSONEq should return true") - } - -} - -func TestJSONEqWrapper_HashAndArrayNotEquivalent(t *testing.T) { - assert := New(new(testing.T)) - if assert.JSONEq(`["foo", {"hello": "world", "nested": "hash"}]`, `{"foo": "bar", {"nested": "hash", "hello": "world"}}`) { - t.Error("JSONEq should return false") - } -} - -func TestJSONEqWrapper_HashesNotEquivalent(t *testing.T) { - assert := New(new(testing.T)) - if assert.JSONEq(`{"foo": "bar"}`, `{"foo": "bar", "hello": "world"}`) { - t.Error("JSONEq should return false") - } -} - -func TestJSONEqWrapper_ActualIsNotJSON(t *testing.T) { - assert := New(new(testing.T)) - if assert.JSONEq(`{"foo": "bar"}`, "Not JSON") { - t.Error("JSONEq should return false") - } -} - -func TestJSONEqWrapper_ExpectedIsNotJSON(t *testing.T) { - assert := New(new(testing.T)) - if assert.JSONEq("Not JSON", `{"foo": "bar", "hello": "world"}`) { - t.Error("JSONEq should return false") - } -} - -func TestJSONEqWrapper_ExpectedAndActualNotJSON(t *testing.T) { - assert := New(new(testing.T)) - if assert.JSONEq("Not JSON", "Not JSON") { - t.Error("JSONEq should return false") - } -} - -func TestJSONEqWrapper_ArraysOfDifferentOrder(t *testing.T) { - assert := New(new(testing.T)) - if assert.JSONEq(`["foo", {"hello": "world", "nested": "hash"}]`, `[{ "hello": "world", "nested": "hash"}, "foo"]`) { - t.Error("JSONEq should return false") - } -} diff --git a/vendor/github.com/stretchr/testify/assert/http_assertions.go b/vendor/github.com/stretchr/testify/assert/http_assertions.go deleted file mode 100644 index df46fa77..00000000 --- a/vendor/github.com/stretchr/testify/assert/http_assertions.go +++ /dev/null @@ -1,143 +0,0 @@ -package assert - -import ( - "fmt" - "net/http" - "net/http/httptest" - "net/url" - "strings" -) - -// httpCode is a helper that returns HTTP code of the response. It returns -1 and -// an error if building a new request fails. -func httpCode(handler http.HandlerFunc, method, url string, values url.Values) (int, error) { - w := httptest.NewRecorder() - req, err := http.NewRequest(method, url, nil) - if err != nil { - return -1, err - } - req.URL.RawQuery = values.Encode() - handler(w, req) - return w.Code, nil -} - -// HTTPSuccess asserts that a specified handler returns a success status code. -// -// assert.HTTPSuccess(t, myHandler, "POST", "http://www.google.com", nil) -// -// Returns whether the assertion was successful (true) or not (false). -func HTTPSuccess(t TestingT, handler http.HandlerFunc, method, url string, values url.Values, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - code, err := httpCode(handler, method, url, values) - if err != nil { - Fail(t, fmt.Sprintf("Failed to build test request, got error: %s", err)) - return false - } - - isSuccessCode := code >= http.StatusOK && code <= http.StatusPartialContent - if !isSuccessCode { - Fail(t, fmt.Sprintf("Expected HTTP success status code for %q but received %d", url+"?"+values.Encode(), code)) - } - - return isSuccessCode -} - -// HTTPRedirect asserts that a specified handler returns a redirect status code. -// -// assert.HTTPRedirect(t, myHandler, "GET", "/a/b/c", url.Values{"a": []string{"b", "c"}} -// -// Returns whether the assertion was successful (true) or not (false). -func HTTPRedirect(t TestingT, handler http.HandlerFunc, method, url string, values url.Values, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - code, err := httpCode(handler, method, url, values) - if err != nil { - Fail(t, fmt.Sprintf("Failed to build test request, got error: %s", err)) - return false - } - - isRedirectCode := code >= http.StatusMultipleChoices && code <= http.StatusTemporaryRedirect - if !isRedirectCode { - Fail(t, fmt.Sprintf("Expected HTTP redirect status code for %q but received %d", url+"?"+values.Encode(), code)) - } - - return isRedirectCode -} - -// HTTPError asserts that a specified handler returns an error status code. -// -// assert.HTTPError(t, myHandler, "POST", "/a/b/c", url.Values{"a": []string{"b", "c"}} -// -// Returns whether the assertion was successful (true) or not (false). -func HTTPError(t TestingT, handler http.HandlerFunc, method, url string, values url.Values, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - code, err := httpCode(handler, method, url, values) - if err != nil { - Fail(t, fmt.Sprintf("Failed to build test request, got error: %s", err)) - return false - } - - isErrorCode := code >= http.StatusBadRequest - if !isErrorCode { - Fail(t, fmt.Sprintf("Expected HTTP error status code for %q but received %d", url+"?"+values.Encode(), code)) - } - - return isErrorCode -} - -// HTTPBody is a helper that returns HTTP body of the response. It returns -// empty string if building a new request fails. -func HTTPBody(handler http.HandlerFunc, method, url string, values url.Values) string { - w := httptest.NewRecorder() - req, err := http.NewRequest(method, url+"?"+values.Encode(), nil) - if err != nil { - return "" - } - handler(w, req) - return w.Body.String() -} - -// HTTPBodyContains asserts that a specified handler returns a -// body that contains a string. -// -// assert.HTTPBodyContains(t, myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky") -// -// Returns whether the assertion was successful (true) or not (false). -func HTTPBodyContains(t TestingT, handler http.HandlerFunc, method, url string, values url.Values, str interface{}, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - body := HTTPBody(handler, method, url, values) - - contains := strings.Contains(body, fmt.Sprint(str)) - if !contains { - Fail(t, fmt.Sprintf("Expected response body for \"%s\" to contain \"%s\" but found \"%s\"", url+"?"+values.Encode(), str, body)) - } - - return contains -} - -// HTTPBodyNotContains asserts that a specified handler returns a -// body that does not contain a string. -// -// assert.HTTPBodyNotContains(t, myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky") -// -// Returns whether the assertion was successful (true) or not (false). -func HTTPBodyNotContains(t TestingT, handler http.HandlerFunc, method, url string, values url.Values, str interface{}, msgAndArgs ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - body := HTTPBody(handler, method, url, values) - - contains := strings.Contains(body, fmt.Sprint(str)) - if contains { - Fail(t, fmt.Sprintf("Expected response body for \"%s\" to NOT contain \"%s\" but found \"%s\"", url+"?"+values.Encode(), str, body)) - } - - return !contains -} diff --git a/vendor/github.com/stretchr/testify/assert/http_assertions_test.go b/vendor/github.com/stretchr/testify/assert/http_assertions_test.go deleted file mode 100644 index 112beaf6..00000000 --- a/vendor/github.com/stretchr/testify/assert/http_assertions_test.go +++ /dev/null @@ -1,146 +0,0 @@ -package assert - -import ( - "fmt" - "net/http" - "net/url" - "testing" -) - -func httpOK(w http.ResponseWriter, r *http.Request) { - w.WriteHeader(http.StatusOK) -} - -func httpRedirect(w http.ResponseWriter, r *http.Request) { - w.WriteHeader(http.StatusTemporaryRedirect) -} - -func httpError(w http.ResponseWriter, r *http.Request) { - w.WriteHeader(http.StatusInternalServerError) -} - -func TestHTTPSuccess(t *testing.T) { - assert := New(t) - - mockT1 := new(testing.T) - assert.Equal(HTTPSuccess(mockT1, httpOK, "GET", "/", nil), true) - assert.False(mockT1.Failed()) - - mockT2 := new(testing.T) - assert.Equal(HTTPSuccess(mockT2, httpRedirect, "GET", "/", nil), false) - assert.True(mockT2.Failed()) - - mockT3 := new(testing.T) - assert.Equal(HTTPSuccess(mockT3, httpError, "GET", "/", nil), false) - assert.True(mockT3.Failed()) -} - -func TestHTTPRedirect(t *testing.T) { - assert := New(t) - - mockT1 := new(testing.T) - assert.Equal(HTTPRedirect(mockT1, httpOK, "GET", "/", nil), false) - assert.True(mockT1.Failed()) - - mockT2 := new(testing.T) - assert.Equal(HTTPRedirect(mockT2, httpRedirect, "GET", "/", nil), true) - assert.False(mockT2.Failed()) - - mockT3 := new(testing.T) - assert.Equal(HTTPRedirect(mockT3, httpError, "GET", "/", nil), false) - assert.True(mockT3.Failed()) -} - -func TestHTTPError(t *testing.T) { - assert := New(t) - - mockT1 := new(testing.T) - assert.Equal(HTTPError(mockT1, httpOK, "GET", "/", nil), false) - assert.True(mockT1.Failed()) - - mockT2 := new(testing.T) - assert.Equal(HTTPError(mockT2, httpRedirect, "GET", "/", nil), false) - assert.True(mockT2.Failed()) - - mockT3 := new(testing.T) - assert.Equal(HTTPError(mockT3, httpError, "GET", "/", nil), true) - assert.False(mockT3.Failed()) -} - -func TestHTTPStatusesWrapper(t *testing.T) { - assert := New(t) - mockAssert := New(new(testing.T)) - - assert.Equal(mockAssert.HTTPSuccess(httpOK, "GET", "/", nil), true) - assert.Equal(mockAssert.HTTPSuccess(httpRedirect, "GET", "/", nil), false) - assert.Equal(mockAssert.HTTPSuccess(httpError, "GET", "/", nil), false) - - assert.Equal(mockAssert.HTTPRedirect(httpOK, "GET", "/", nil), false) - assert.Equal(mockAssert.HTTPRedirect(httpRedirect, "GET", "/", nil), true) - assert.Equal(mockAssert.HTTPRedirect(httpError, "GET", "/", nil), false) - - assert.Equal(mockAssert.HTTPError(httpOK, "GET", "/", nil), false) - assert.Equal(mockAssert.HTTPError(httpRedirect, "GET", "/", nil), false) - assert.Equal(mockAssert.HTTPError(httpError, "GET", "/", nil), true) -} - -func httpHelloName(w http.ResponseWriter, r *http.Request) { - name := r.FormValue("name") - w.Write([]byte(fmt.Sprintf("Hello, %s!", name))) -} - -func TestHTTPRequestWithNoParams(t *testing.T) { - var got *http.Request - handler := func(w http.ResponseWriter, r *http.Request) { - got = r - w.WriteHeader(http.StatusOK) - } - - True(t, HTTPSuccess(t, handler, "GET", "/url", nil)) - - Empty(t, got.URL.Query()) - Equal(t, "/url", got.URL.RequestURI()) -} - -func TestHTTPRequestWithParams(t *testing.T) { - var got *http.Request - handler := func(w http.ResponseWriter, r *http.Request) { - got = r - w.WriteHeader(http.StatusOK) - } - params := url.Values{} - params.Add("id", "12345") - - True(t, HTTPSuccess(t, handler, "GET", "/url", params)) - - Equal(t, url.Values{"id": []string{"12345"}}, got.URL.Query()) - Equal(t, "/url?id=12345", got.URL.String()) - Equal(t, "/url?id=12345", got.URL.RequestURI()) -} - -func TestHttpBody(t *testing.T) { - assert := New(t) - mockT := new(testing.T) - - assert.True(HTTPBodyContains(mockT, httpHelloName, "GET", "/", url.Values{"name": []string{"World"}}, "Hello, World!")) - assert.True(HTTPBodyContains(mockT, httpHelloName, "GET", "/", url.Values{"name": []string{"World"}}, "World")) - assert.False(HTTPBodyContains(mockT, httpHelloName, "GET", "/", url.Values{"name": []string{"World"}}, "world")) - - assert.False(HTTPBodyNotContains(mockT, httpHelloName, "GET", "/", url.Values{"name": []string{"World"}}, "Hello, World!")) - assert.False(HTTPBodyNotContains(mockT, httpHelloName, "GET", "/", url.Values{"name": []string{"World"}}, "World")) - assert.True(HTTPBodyNotContains(mockT, httpHelloName, "GET", "/", url.Values{"name": []string{"World"}}, "world")) -} - -func TestHttpBodyWrappers(t *testing.T) { - assert := New(t) - mockAssert := New(new(testing.T)) - - assert.True(mockAssert.HTTPBodyContains(httpHelloName, "GET", "/", url.Values{"name": []string{"World"}}, "Hello, World!")) - assert.True(mockAssert.HTTPBodyContains(httpHelloName, "GET", "/", url.Values{"name": []string{"World"}}, "World")) - assert.False(mockAssert.HTTPBodyContains(httpHelloName, "GET", "/", url.Values{"name": []string{"World"}}, "world")) - - assert.False(mockAssert.HTTPBodyNotContains(httpHelloName, "GET", "/", url.Values{"name": []string{"World"}}, "Hello, World!")) - assert.False(mockAssert.HTTPBodyNotContains(httpHelloName, "GET", "/", url.Values{"name": []string{"World"}}, "World")) - assert.True(mockAssert.HTTPBodyNotContains(httpHelloName, "GET", "/", url.Values{"name": []string{"World"}}, "world")) - -} diff --git a/vendor/github.com/stretchr/testify/doc.go b/vendor/github.com/stretchr/testify/doc.go deleted file mode 100644 index 377d5cc5..00000000 --- a/vendor/github.com/stretchr/testify/doc.go +++ /dev/null @@ -1,22 +0,0 @@ -// Package testify is a set of packages that provide many tools for testifying that your code will behave as you intend. -// -// testify contains the following packages: -// -// The assert package provides a comprehensive set of assertion functions that tie in to the Go testing system. -// -// The http package contains tools to make it easier to test http activity using the Go testing system. -// -// The mock package provides a system by which it is possible to mock your objects and verify calls are happening as expected. -// -// The suite package provides a basic structure for using structs as testing suites, and methods on those structs as tests. It includes setup/teardown functionality in the way of interfaces. -package testify - -// blank imports help docs. -import ( - // assert package - _ "github.com/stretchr/testify/assert" - // http package - _ "github.com/stretchr/testify/http" - // mock package - _ "github.com/stretchr/testify/mock" -) diff --git a/vendor/github.com/stretchr/testify/http/doc.go b/vendor/github.com/stretchr/testify/http/doc.go deleted file mode 100644 index 695167c6..00000000 --- a/vendor/github.com/stretchr/testify/http/doc.go +++ /dev/null @@ -1,2 +0,0 @@ -// Package http DEPRECATED USE net/http/httptest -package http diff --git a/vendor/github.com/stretchr/testify/http/test_response_writer.go b/vendor/github.com/stretchr/testify/http/test_response_writer.go deleted file mode 100644 index 5c3f813f..00000000 --- a/vendor/github.com/stretchr/testify/http/test_response_writer.go +++ /dev/null @@ -1,49 +0,0 @@ -package http - -import ( - "net/http" -) - -// TestResponseWriter DEPRECATED: We recommend you use http://golang.org/pkg/net/http/httptest instead. -type TestResponseWriter struct { - - // StatusCode is the last int written by the call to WriteHeader(int) - StatusCode int - - // Output is a string containing the written bytes using the Write([]byte) func. - Output string - - // header is the internal storage of the http.Header object - header http.Header -} - -// Header DEPRECATED: We recommend you use http://golang.org/pkg/net/http/httptest instead. -func (rw *TestResponseWriter) Header() http.Header { - - if rw.header == nil { - rw.header = make(http.Header) - } - - return rw.header -} - -// Write DEPRECATED: We recommend you use http://golang.org/pkg/net/http/httptest instead. -func (rw *TestResponseWriter) Write(bytes []byte) (int, error) { - - // assume 200 success if no header has been set - if rw.StatusCode == 0 { - rw.WriteHeader(200) - } - - // add these bytes to the output string - rw.Output = rw.Output + string(bytes) - - // return normal values - return 0, nil - -} - -// WriteHeader DEPRECATED: We recommend you use http://golang.org/pkg/net/http/httptest instead. -func (rw *TestResponseWriter) WriteHeader(i int) { - rw.StatusCode = i -} diff --git a/vendor/github.com/stretchr/testify/http/test_round_tripper.go b/vendor/github.com/stretchr/testify/http/test_round_tripper.go deleted file mode 100644 index b1e32f1d..00000000 --- a/vendor/github.com/stretchr/testify/http/test_round_tripper.go +++ /dev/null @@ -1,17 +0,0 @@ -package http - -import ( - "github.com/stretchr/testify/mock" - "net/http" -) - -// TestRoundTripper DEPRECATED USE net/http/httptest -type TestRoundTripper struct { - mock.Mock -} - -// RoundTrip DEPRECATED USE net/http/httptest -func (t *TestRoundTripper) RoundTrip(req *http.Request) (*http.Response, error) { - args := t.Called(req) - return args.Get(0).(*http.Response), args.Error(1) -} diff --git a/vendor/github.com/stretchr/testify/mock/doc.go b/vendor/github.com/stretchr/testify/mock/doc.go deleted file mode 100644 index 7324128e..00000000 --- a/vendor/github.com/stretchr/testify/mock/doc.go +++ /dev/null @@ -1,44 +0,0 @@ -// Package mock provides a system by which it is possible to mock your objects -// and verify calls are happening as expected. -// -// Example Usage -// -// The mock package provides an object, Mock, that tracks activity on another object. It is usually -// embedded into a test object as shown below: -// -// type MyTestObject struct { -// // add a Mock object instance -// mock.Mock -// -// // other fields go here as normal -// } -// -// When implementing the methods of an interface, you wire your functions up -// to call the Mock.Called(args...) method, and return the appropriate values. -// -// For example, to mock a method that saves the name and age of a person and returns -// the year of their birth or an error, you might write this: -// -// func (o *MyTestObject) SavePersonDetails(firstname, lastname string, age int) (int, error) { -// args := o.Called(firstname, lastname, age) -// return args.Int(0), args.Error(1) -// } -// -// The Int, Error and Bool methods are examples of strongly typed getters that take the argument -// index position. Given this argument list: -// -// (12, true, "Something") -// -// You could read them out strongly typed like this: -// -// args.Int(0) -// args.Bool(1) -// args.String(2) -// -// For objects of your own type, use the generic Arguments.Get(index) method and make a type assertion: -// -// return args.Get(0).(*MyObject), args.Get(1).(*AnotherObjectOfMine) -// -// This may cause a panic if the object you are getting is nil (the type assertion will fail), in those -// cases you should check for nil first. -package mock diff --git a/vendor/github.com/stretchr/testify/mock/mock.go b/vendor/github.com/stretchr/testify/mock/mock.go deleted file mode 100644 index cc4f642b..00000000 --- a/vendor/github.com/stretchr/testify/mock/mock.go +++ /dev/null @@ -1,885 +0,0 @@ -package mock - -import ( - "errors" - "fmt" - "reflect" - "regexp" - "runtime" - "strings" - "sync" - "time" - - "github.com/davecgh/go-spew/spew" - "github.com/pmezard/go-difflib/difflib" - "github.com/stretchr/objx" - "github.com/stretchr/testify/assert" -) - -// TestingT is an interface wrapper around *testing.T -type TestingT interface { - Logf(format string, args ...interface{}) - Errorf(format string, args ...interface{}) - FailNow() -} - -/* - Call -*/ - -// Call represents a method call and is used for setting expectations, -// as well as recording activity. -type Call struct { - Parent *Mock - - // The name of the method that was or will be called. - Method string - - // Holds the arguments of the method. - Arguments Arguments - - // Holds the arguments that should be returned when - // this method is called. - ReturnArguments Arguments - - // Holds the caller info for the On() call - callerInfo []string - - // The number of times to return the return arguments when setting - // expectations. 0 means to always return the value. - Repeatability int - - // Amount of times this call has been called - totalCalls int - - // Call to this method can be optional - optional bool - - // Holds a channel that will be used to block the Return until it either - // receives a message or is closed. nil means it returns immediately. - WaitFor <-chan time.Time - - waitTime time.Duration - - // Holds a handler used to manipulate arguments content that are passed by - // reference. It's useful when mocking methods such as unmarshalers or - // decoders. - RunFn func(Arguments) -} - -func newCall(parent *Mock, methodName string, callerInfo []string, methodArguments ...interface{}) *Call { - return &Call{ - Parent: parent, - Method: methodName, - Arguments: methodArguments, - ReturnArguments: make([]interface{}, 0), - callerInfo: callerInfo, - Repeatability: 0, - WaitFor: nil, - RunFn: nil, - } -} - -func (c *Call) lock() { - c.Parent.mutex.Lock() -} - -func (c *Call) unlock() { - c.Parent.mutex.Unlock() -} - -// Return specifies the return arguments for the expectation. -// -// Mock.On("DoSomething").Return(errors.New("failed")) -func (c *Call) Return(returnArguments ...interface{}) *Call { - c.lock() - defer c.unlock() - - c.ReturnArguments = returnArguments - - return c -} - -// Once indicates that that the mock should only return the value once. -// -// Mock.On("MyMethod", arg1, arg2).Return(returnArg1, returnArg2).Once() -func (c *Call) Once() *Call { - return c.Times(1) -} - -// Twice indicates that that the mock should only return the value twice. -// -// Mock.On("MyMethod", arg1, arg2).Return(returnArg1, returnArg2).Twice() -func (c *Call) Twice() *Call { - return c.Times(2) -} - -// Times indicates that that the mock should only return the indicated number -// of times. -// -// Mock.On("MyMethod", arg1, arg2).Return(returnArg1, returnArg2).Times(5) -func (c *Call) Times(i int) *Call { - c.lock() - defer c.unlock() - c.Repeatability = i - return c -} - -// WaitUntil sets the channel that will block the mock's return until its closed -// or a message is received. -// -// Mock.On("MyMethod", arg1, arg2).WaitUntil(time.After(time.Second)) -func (c *Call) WaitUntil(w <-chan time.Time) *Call { - c.lock() - defer c.unlock() - c.WaitFor = w - return c -} - -// After sets how long to block until the call returns -// -// Mock.On("MyMethod", arg1, arg2).After(time.Second) -func (c *Call) After(d time.Duration) *Call { - c.lock() - defer c.unlock() - c.waitTime = d - return c -} - -// Run sets a handler to be called before returning. It can be used when -// mocking a method such as unmarshalers that takes a pointer to a struct and -// sets properties in such struct -// -// Mock.On("Unmarshal", AnythingOfType("*map[string]interface{}").Return().Run(func(args Arguments) { -// arg := args.Get(0).(*map[string]interface{}) -// arg["foo"] = "bar" -// }) -func (c *Call) Run(fn func(args Arguments)) *Call { - c.lock() - defer c.unlock() - c.RunFn = fn - return c -} - -// Maybe allows the method call to be optional. Not calling an optional method -// will not cause an error while asserting expectations -func (c *Call) Maybe() *Call { - c.lock() - defer c.unlock() - c.optional = true - return c -} - -// On chains a new expectation description onto the mocked interface. This -// allows syntax like. -// -// Mock. -// On("MyMethod", 1).Return(nil). -// On("MyOtherMethod", 'a', 'b', 'c').Return(errors.New("Some Error")) -func (c *Call) On(methodName string, arguments ...interface{}) *Call { - return c.Parent.On(methodName, arguments...) -} - -// Mock is the workhorse used to track activity on another object. -// For an example of its usage, refer to the "Example Usage" section at the top -// of this document. -type Mock struct { - // Represents the calls that are expected of - // an object. - ExpectedCalls []*Call - - // Holds the calls that were made to this mocked object. - Calls []Call - - // test is An optional variable that holds the test struct, to be used when an - // invalid mock call was made. - test TestingT - - // TestData holds any data that might be useful for testing. Testify ignores - // this data completely allowing you to do whatever you like with it. - testData objx.Map - - mutex sync.Mutex -} - -// TestData holds any data that might be useful for testing. Testify ignores -// this data completely allowing you to do whatever you like with it. -func (m *Mock) TestData() objx.Map { - - if m.testData == nil { - m.testData = make(objx.Map) - } - - return m.testData -} - -/* - Setting expectations -*/ - -// Test sets the test struct variable of the mock object -func (m *Mock) Test(t TestingT) { - m.mutex.Lock() - defer m.mutex.Unlock() - m.test = t -} - -// fail fails the current test with the given formatted format and args. -// In case that a test was defined, it uses the test APIs for failing a test, -// otherwise it uses panic. -func (m *Mock) fail(format string, args ...interface{}) { - m.mutex.Lock() - defer m.mutex.Unlock() - - if m.test == nil { - panic(fmt.Sprintf(format, args...)) - } - m.test.Errorf(format, args...) - m.test.FailNow() -} - -// On starts a description of an expectation of the specified method -// being called. -// -// Mock.On("MyMethod", arg1, arg2) -func (m *Mock) On(methodName string, arguments ...interface{}) *Call { - for _, arg := range arguments { - if v := reflect.ValueOf(arg); v.Kind() == reflect.Func { - panic(fmt.Sprintf("cannot use Func in expectations. Use mock.AnythingOfType(\"%T\")", arg)) - } - } - - m.mutex.Lock() - defer m.mutex.Unlock() - c := newCall(m, methodName, assert.CallerInfo(), arguments...) - m.ExpectedCalls = append(m.ExpectedCalls, c) - return c -} - -// /* -// Recording and responding to activity -// */ - -func (m *Mock) findExpectedCall(method string, arguments ...interface{}) (int, *Call) { - for i, call := range m.ExpectedCalls { - if call.Method == method && call.Repeatability > -1 { - - _, diffCount := call.Arguments.Diff(arguments) - if diffCount == 0 { - return i, call - } - - } - } - return -1, nil -} - -func (m *Mock) findClosestCall(method string, arguments ...interface{}) (*Call, string) { - var diffCount int - var closestCall *Call - var err string - - for _, call := range m.expectedCalls() { - if call.Method == method { - - errInfo, tempDiffCount := call.Arguments.Diff(arguments) - if tempDiffCount < diffCount || diffCount == 0 { - diffCount = tempDiffCount - closestCall = call - err = errInfo - } - - } - } - - return closestCall, err -} - -func callString(method string, arguments Arguments, includeArgumentValues bool) string { - - var argValsString string - if includeArgumentValues { - var argVals []string - for argIndex, arg := range arguments { - argVals = append(argVals, fmt.Sprintf("%d: %#v", argIndex, arg)) - } - argValsString = fmt.Sprintf("\n\t\t%s", strings.Join(argVals, "\n\t\t")) - } - - return fmt.Sprintf("%s(%s)%s", method, arguments.String(), argValsString) -} - -// Called tells the mock object that a method has been called, and gets an array -// of arguments to return. Panics if the call is unexpected (i.e. not preceded by -// appropriate .On .Return() calls) -// If Call.WaitFor is set, blocks until the channel is closed or receives a message. -func (m *Mock) Called(arguments ...interface{}) Arguments { - // get the calling function's name - pc, _, _, ok := runtime.Caller(1) - if !ok { - panic("Couldn't get the caller information") - } - functionPath := runtime.FuncForPC(pc).Name() - //Next four lines are required to use GCCGO function naming conventions. - //For Ex: github_com_docker_libkv_store_mock.WatchTree.pN39_github_com_docker_libkv_store_mock.Mock - //uses interface information unlike golang github.com/docker/libkv/store/mock.(*Mock).WatchTree - //With GCCGO we need to remove interface information starting from pN

. - re := regexp.MustCompile("\\.pN\\d+_") - if re.MatchString(functionPath) { - functionPath = re.Split(functionPath, -1)[0] - } - parts := strings.Split(functionPath, ".") - functionName := parts[len(parts)-1] - return m.MethodCalled(functionName, arguments...) -} - -// MethodCalled tells the mock object that the given method has been called, and gets -// an array of arguments to return. Panics if the call is unexpected (i.e. not preceded -// by appropriate .On .Return() calls) -// If Call.WaitFor is set, blocks until the channel is closed or receives a message. -func (m *Mock) MethodCalled(methodName string, arguments ...interface{}) Arguments { - m.mutex.Lock() - //TODO: could combine expected and closes in single loop - found, call := m.findExpectedCall(methodName, arguments...) - - if found < 0 { - // we have to fail here - because we don't know what to do - // as the return arguments. This is because: - // - // a) this is a totally unexpected call to this method, - // b) the arguments are not what was expected, or - // c) the developer has forgotten to add an accompanying On...Return pair. - - closestCall, mismatch := m.findClosestCall(methodName, arguments...) - m.mutex.Unlock() - - if closestCall != nil { - m.fail("\n\nmock: Unexpected Method Call\n-----------------------------\n\n%s\n\nThe closest call I have is: \n\n%s\n\n%s\nDiff: %s", - callString(methodName, arguments, true), - callString(methodName, closestCall.Arguments, true), - diffArguments(closestCall.Arguments, arguments), - strings.TrimSpace(mismatch), - ) - } else { - m.fail("\nassert: mock: I don't know what to return because the method call was unexpected.\n\tEither do Mock.On(\"%s\").Return(...) first, or remove the %s() call.\n\tThis method was unexpected:\n\t\t%s\n\tat: %s", methodName, methodName, callString(methodName, arguments, true), assert.CallerInfo()) - } - } - - if call.Repeatability == 1 { - call.Repeatability = -1 - } else if call.Repeatability > 1 { - call.Repeatability-- - } - call.totalCalls++ - - // add the call - m.Calls = append(m.Calls, *newCall(m, methodName, assert.CallerInfo(), arguments...)) - m.mutex.Unlock() - - // block if specified - if call.WaitFor != nil { - <-call.WaitFor - } else { - time.Sleep(call.waitTime) - } - - m.mutex.Lock() - runFn := call.RunFn - m.mutex.Unlock() - - if runFn != nil { - runFn(arguments) - } - - m.mutex.Lock() - returnArgs := call.ReturnArguments - m.mutex.Unlock() - - return returnArgs -} - -/* - Assertions -*/ - -type assertExpectationser interface { - AssertExpectations(TestingT) bool -} - -// AssertExpectationsForObjects asserts that everything specified with On and Return -// of the specified objects was in fact called as expected. -// -// Calls may have occurred in any order. -func AssertExpectationsForObjects(t TestingT, testObjects ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - for _, obj := range testObjects { - if m, ok := obj.(Mock); ok { - t.Logf("Deprecated mock.AssertExpectationsForObjects(myMock.Mock) use mock.AssertExpectationsForObjects(myMock)") - obj = &m - } - m := obj.(assertExpectationser) - if !m.AssertExpectations(t) { - t.Logf("Expectations didn't match for Mock: %+v", reflect.TypeOf(m)) - return false - } - } - return true -} - -// AssertExpectations asserts that everything specified with On and Return was -// in fact called as expected. Calls may have occurred in any order. -func (m *Mock) AssertExpectations(t TestingT) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - m.mutex.Lock() - defer m.mutex.Unlock() - var somethingMissing bool - var failedExpectations int - - // iterate through each expectation - expectedCalls := m.expectedCalls() - for _, expectedCall := range expectedCalls { - if !expectedCall.optional && !m.methodWasCalled(expectedCall.Method, expectedCall.Arguments) && expectedCall.totalCalls == 0 { - somethingMissing = true - failedExpectations++ - t.Logf("FAIL:\t%s(%s)\n\t\tat: %s", expectedCall.Method, expectedCall.Arguments.String(), expectedCall.callerInfo) - } else { - if expectedCall.Repeatability > 0 { - somethingMissing = true - failedExpectations++ - t.Logf("FAIL:\t%s(%s)\n\t\tat: %s", expectedCall.Method, expectedCall.Arguments.String(), expectedCall.callerInfo) - } else { - t.Logf("PASS:\t%s(%s)", expectedCall.Method, expectedCall.Arguments.String()) - } - } - } - - if somethingMissing { - t.Errorf("FAIL: %d out of %d expectation(s) were met.\n\tThe code you are testing needs to make %d more call(s).\n\tat: %s", len(expectedCalls)-failedExpectations, len(expectedCalls), failedExpectations, assert.CallerInfo()) - } - - return !somethingMissing -} - -// AssertNumberOfCalls asserts that the method was called expectedCalls times. -func (m *Mock) AssertNumberOfCalls(t TestingT, methodName string, expectedCalls int) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - m.mutex.Lock() - defer m.mutex.Unlock() - var actualCalls int - for _, call := range m.calls() { - if call.Method == methodName { - actualCalls++ - } - } - return assert.Equal(t, expectedCalls, actualCalls, fmt.Sprintf("Expected number of calls (%d) does not match the actual number of calls (%d).", expectedCalls, actualCalls)) -} - -// AssertCalled asserts that the method was called. -// It can produce a false result when an argument is a pointer type and the underlying value changed after calling the mocked method. -func (m *Mock) AssertCalled(t TestingT, methodName string, arguments ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - m.mutex.Lock() - defer m.mutex.Unlock() - if !m.methodWasCalled(methodName, arguments) { - var calledWithArgs []string - for _, call := range m.calls() { - calledWithArgs = append(calledWithArgs, fmt.Sprintf("%v", call.Arguments)) - } - if len(calledWithArgs) == 0 { - return assert.Fail(t, "Should have called with given arguments", - fmt.Sprintf("Expected %q to have been called with:\n%v\nbut no actual calls happened", methodName, arguments)) - } - return assert.Fail(t, "Should have called with given arguments", - fmt.Sprintf("Expected %q to have been called with:\n%v\nbut actual calls were:\n %v", methodName, arguments, strings.Join(calledWithArgs, "\n"))) - } - return true -} - -// AssertNotCalled asserts that the method was not called. -// It can produce a false result when an argument is a pointer type and the underlying value changed after calling the mocked method. -func (m *Mock) AssertNotCalled(t TestingT, methodName string, arguments ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - m.mutex.Lock() - defer m.mutex.Unlock() - if m.methodWasCalled(methodName, arguments) { - return assert.Fail(t, "Should not have called with given arguments", - fmt.Sprintf("Expected %q to not have been called with:\n%v\nbut actually it was.", methodName, arguments)) - } - return true -} - -func (m *Mock) methodWasCalled(methodName string, expected []interface{}) bool { - for _, call := range m.calls() { - if call.Method == methodName { - - _, differences := Arguments(expected).Diff(call.Arguments) - - if differences == 0 { - // found the expected call - return true - } - - } - } - // we didn't find the expected call - return false -} - -func (m *Mock) expectedCalls() []*Call { - return append([]*Call{}, m.ExpectedCalls...) -} - -func (m *Mock) calls() []Call { - return append([]Call{}, m.Calls...) -} - -/* - Arguments -*/ - -// Arguments holds an array of method arguments or return values. -type Arguments []interface{} - -const ( - // Anything is used in Diff and Assert when the argument being tested - // shouldn't be taken into consideration. - Anything = "mock.Anything" -) - -// AnythingOfTypeArgument is a string that contains the type of an argument -// for use when type checking. Used in Diff and Assert. -type AnythingOfTypeArgument string - -// AnythingOfType returns an AnythingOfTypeArgument object containing the -// name of the type to check for. Used in Diff and Assert. -// -// For example: -// Assert(t, AnythingOfType("string"), AnythingOfType("int")) -func AnythingOfType(t string) AnythingOfTypeArgument { - return AnythingOfTypeArgument(t) -} - -// argumentMatcher performs custom argument matching, returning whether or -// not the argument is matched by the expectation fixture function. -type argumentMatcher struct { - // fn is a function which accepts one argument, and returns a bool. - fn reflect.Value -} - -func (f argumentMatcher) Matches(argument interface{}) bool { - expectType := f.fn.Type().In(0) - expectTypeNilSupported := false - switch expectType.Kind() { - case reflect.Interface, reflect.Chan, reflect.Func, reflect.Map, reflect.Slice, reflect.Ptr: - expectTypeNilSupported = true - } - - argType := reflect.TypeOf(argument) - var arg reflect.Value - if argType == nil { - arg = reflect.New(expectType).Elem() - } else { - arg = reflect.ValueOf(argument) - } - - if argType == nil && !expectTypeNilSupported { - panic(errors.New("attempting to call matcher with nil for non-nil expected type")) - } - if argType == nil || argType.AssignableTo(expectType) { - result := f.fn.Call([]reflect.Value{arg}) - return result[0].Bool() - } - return false -} - -func (f argumentMatcher) String() string { - return fmt.Sprintf("func(%s) bool", f.fn.Type().In(0).Name()) -} - -// MatchedBy can be used to match a mock call based on only certain properties -// from a complex struct or some calculation. It takes a function that will be -// evaluated with the called argument and will return true when there's a match -// and false otherwise. -// -// Example: -// m.On("Do", MatchedBy(func(req *http.Request) bool { return req.Host == "example.com" })) -// -// |fn|, must be a function accepting a single argument (of the expected type) -// which returns a bool. If |fn| doesn't match the required signature, -// MatchedBy() panics. -func MatchedBy(fn interface{}) argumentMatcher { - fnType := reflect.TypeOf(fn) - - if fnType.Kind() != reflect.Func { - panic(fmt.Sprintf("assert: arguments: %s is not a func", fn)) - } - if fnType.NumIn() != 1 { - panic(fmt.Sprintf("assert: arguments: %s does not take exactly one argument", fn)) - } - if fnType.NumOut() != 1 || fnType.Out(0).Kind() != reflect.Bool { - panic(fmt.Sprintf("assert: arguments: %s does not return a bool", fn)) - } - - return argumentMatcher{fn: reflect.ValueOf(fn)} -} - -// Get Returns the argument at the specified index. -func (args Arguments) Get(index int) interface{} { - if index+1 > len(args) { - panic(fmt.Sprintf("assert: arguments: Cannot call Get(%d) because there are %d argument(s).", index, len(args))) - } - return args[index] -} - -// Is gets whether the objects match the arguments specified. -func (args Arguments) Is(objects ...interface{}) bool { - for i, obj := range args { - if obj != objects[i] { - return false - } - } - return true -} - -// Diff gets a string describing the differences between the arguments -// and the specified objects. -// -// Returns the diff string and number of differences found. -func (args Arguments) Diff(objects []interface{}) (string, int) { - //TODO: could return string as error and nil for No difference - - var output = "\n" - var differences int - - var maxArgCount = len(args) - if len(objects) > maxArgCount { - maxArgCount = len(objects) - } - - for i := 0; i < maxArgCount; i++ { - var actual, expected interface{} - var actualFmt, expectedFmt string - - if len(objects) <= i { - actual = "(Missing)" - actualFmt = "(Missing)" - } else { - actual = objects[i] - actualFmt = fmt.Sprintf("(%[1]T=%[1]v)", actual) - } - - if len(args) <= i { - expected = "(Missing)" - expectedFmt = "(Missing)" - } else { - expected = args[i] - expectedFmt = fmt.Sprintf("(%[1]T=%[1]v)", expected) - } - - if matcher, ok := expected.(argumentMatcher); ok { - if matcher.Matches(actual) { - output = fmt.Sprintf("%s\t%d: PASS: %s matched by %s\n", output, i, actualFmt, matcher) - } else { - differences++ - output = fmt.Sprintf("%s\t%d: PASS: %s not matched by %s\n", output, i, actualFmt, matcher) - } - } else if reflect.TypeOf(expected) == reflect.TypeOf((*AnythingOfTypeArgument)(nil)).Elem() { - - // type checking - if reflect.TypeOf(actual).Name() != string(expected.(AnythingOfTypeArgument)) && reflect.TypeOf(actual).String() != string(expected.(AnythingOfTypeArgument)) { - // not match - differences++ - output = fmt.Sprintf("%s\t%d: FAIL: type %s != type %s - %s\n", output, i, expected, reflect.TypeOf(actual).Name(), actualFmt) - } - - } else { - - // normal checking - - if assert.ObjectsAreEqual(expected, Anything) || assert.ObjectsAreEqual(actual, Anything) || assert.ObjectsAreEqual(actual, expected) { - // match - output = fmt.Sprintf("%s\t%d: PASS: %s == %s\n", output, i, actualFmt, expectedFmt) - } else { - // not match - differences++ - output = fmt.Sprintf("%s\t%d: FAIL: %s != %s\n", output, i, actualFmt, expectedFmt) - } - } - - } - - if differences == 0 { - return "No differences.", differences - } - - return output, differences - -} - -// Assert compares the arguments with the specified objects and fails if -// they do not exactly match. -func (args Arguments) Assert(t TestingT, objects ...interface{}) bool { - if h, ok := t.(tHelper); ok { - h.Helper() - } - - // get the differences - diff, diffCount := args.Diff(objects) - - if diffCount == 0 { - return true - } - - // there are differences... report them... - t.Logf(diff) - t.Errorf("%sArguments do not match.", assert.CallerInfo()) - - return false - -} - -// String gets the argument at the specified index. Panics if there is no argument, or -// if the argument is of the wrong type. -// -// If no index is provided, String() returns a complete string representation -// of the arguments. -func (args Arguments) String(indexOrNil ...int) string { - - if len(indexOrNil) == 0 { - // normal String() method - return a string representation of the args - var argsStr []string - for _, arg := range args { - argsStr = append(argsStr, fmt.Sprintf("%s", reflect.TypeOf(arg))) - } - return strings.Join(argsStr, ",") - } else if len(indexOrNil) == 1 { - // Index has been specified - get the argument at that index - var index = indexOrNil[0] - var s string - var ok bool - if s, ok = args.Get(index).(string); !ok { - panic(fmt.Sprintf("assert: arguments: String(%d) failed because object wasn't correct type: %s", index, args.Get(index))) - } - return s - } - - panic(fmt.Sprintf("assert: arguments: Wrong number of arguments passed to String. Must be 0 or 1, not %d", len(indexOrNil))) - -} - -// Int gets the argument at the specified index. Panics if there is no argument, or -// if the argument is of the wrong type. -func (args Arguments) Int(index int) int { - var s int - var ok bool - if s, ok = args.Get(index).(int); !ok { - panic(fmt.Sprintf("assert: arguments: Int(%d) failed because object wasn't correct type: %v", index, args.Get(index))) - } - return s -} - -// Error gets the argument at the specified index. Panics if there is no argument, or -// if the argument is of the wrong type. -func (args Arguments) Error(index int) error { - obj := args.Get(index) - var s error - var ok bool - if obj == nil { - return nil - } - if s, ok = obj.(error); !ok { - panic(fmt.Sprintf("assert: arguments: Error(%d) failed because object wasn't correct type: %v", index, args.Get(index))) - } - return s -} - -// Bool gets the argument at the specified index. Panics if there is no argument, or -// if the argument is of the wrong type. -func (args Arguments) Bool(index int) bool { - var s bool - var ok bool - if s, ok = args.Get(index).(bool); !ok { - panic(fmt.Sprintf("assert: arguments: Bool(%d) failed because object wasn't correct type: %v", index, args.Get(index))) - } - return s -} - -func typeAndKind(v interface{}) (reflect.Type, reflect.Kind) { - t := reflect.TypeOf(v) - k := t.Kind() - - if k == reflect.Ptr { - t = t.Elem() - k = t.Kind() - } - return t, k -} - -func diffArguments(expected Arguments, actual Arguments) string { - if len(expected) != len(actual) { - return fmt.Sprintf("Provided %v arguments, mocked for %v arguments", len(expected), len(actual)) - } - - for x := range expected { - if diffString := diff(expected[x], actual[x]); diffString != "" { - return fmt.Sprintf("Difference found in argument %v:\n\n%s", x, diffString) - } - } - - return "" -} - -// diff returns a diff of both values as long as both are of the same type and -// are a struct, map, slice or array. Otherwise it returns an empty string. -func diff(expected interface{}, actual interface{}) string { - if expected == nil || actual == nil { - return "" - } - - et, ek := typeAndKind(expected) - at, _ := typeAndKind(actual) - - if et != at { - return "" - } - - if ek != reflect.Struct && ek != reflect.Map && ek != reflect.Slice && ek != reflect.Array { - return "" - } - - e := spewConfig.Sdump(expected) - a := spewConfig.Sdump(actual) - - diff, _ := difflib.GetUnifiedDiffString(difflib.UnifiedDiff{ - A: difflib.SplitLines(e), - B: difflib.SplitLines(a), - FromFile: "Expected", - FromDate: "", - ToFile: "Actual", - ToDate: "", - Context: 1, - }) - - return diff -} - -var spewConfig = spew.ConfigState{ - Indent: " ", - DisablePointerAddresses: true, - DisableCapacities: true, - SortKeys: true, -} - -type tHelper interface { - Helper() -} diff --git a/vendor/github.com/stretchr/testify/mock/mock_test.go b/vendor/github.com/stretchr/testify/mock/mock_test.go deleted file mode 100644 index 978eae26..00000000 --- a/vendor/github.com/stretchr/testify/mock/mock_test.go +++ /dev/null @@ -1,1497 +0,0 @@ -package mock - -import ( - "errors" - "fmt" - "regexp" - "runtime" - "sync" - "testing" - "time" - - "github.com/stretchr/testify/assert" - "github.com/stretchr/testify/require" -) - -/* - Test objects -*/ - -// ExampleInterface represents an example interface. -type ExampleInterface interface { - TheExampleMethod(a, b, c int) (int, error) -} - -// TestExampleImplementation is a test implementation of ExampleInterface -type TestExampleImplementation struct { - Mock -} - -func (i *TestExampleImplementation) TheExampleMethod(a, b, c int) (int, error) { - args := i.Called(a, b, c) - return args.Int(0), errors.New("Whoops") -} - -func (i *TestExampleImplementation) TheExampleMethod2(yesorno bool) { - i.Called(yesorno) -} - -type ExampleType struct { - ran bool -} - -func (i *TestExampleImplementation) TheExampleMethod3(et *ExampleType) error { - args := i.Called(et) - return args.Error(0) -} - -func (i *TestExampleImplementation) TheExampleMethod4(v ExampleInterface) error { - args := i.Called(v) - return args.Error(0) -} - -func (i *TestExampleImplementation) TheExampleMethod5(ch chan struct{}) error { - args := i.Called(ch) - return args.Error(0) -} - -func (i *TestExampleImplementation) TheExampleMethod6(m map[string]bool) error { - args := i.Called(m) - return args.Error(0) -} - -func (i *TestExampleImplementation) TheExampleMethod7(slice []bool) error { - args := i.Called(slice) - return args.Error(0) -} - -func (i *TestExampleImplementation) TheExampleMethodFunc(fn func(string) error) error { - args := i.Called(fn) - return args.Error(0) -} - -func (i *TestExampleImplementation) TheExampleMethodVariadic(a ...int) error { - args := i.Called(a) - return args.Error(0) -} - -func (i *TestExampleImplementation) TheExampleMethodVariadicInterface(a ...interface{}) error { - args := i.Called(a) - return args.Error(0) -} - -func (i *TestExampleImplementation) TheExampleMethodMixedVariadic(a int, b ...int) error { - args := i.Called(a, b) - return args.Error(0) -} - -type ExampleFuncType func(string) error - -func (i *TestExampleImplementation) TheExampleMethodFuncType(fn ExampleFuncType) error { - args := i.Called(fn) - return args.Error(0) -} - -// MockTestingT mocks a test struct -type MockTestingT struct { - logfCount, errorfCount, failNowCount int -} - -const mockTestingTFailNowCalled = "FailNow was called" - -func (m *MockTestingT) Logf(string, ...interface{}) { - m.logfCount++ -} - -func (m *MockTestingT) Errorf(string, ...interface{}) { - m.errorfCount++ -} - -// FailNow mocks the FailNow call. -// It panics in order to mimic the FailNow behavior in the sense that -// the execution stops. -// When expecting this method, the call that invokes it should use the following code: -// -// assert.PanicsWithValue(t, mockTestingTFailNowCalled, func() {...}) -func (m *MockTestingT) FailNow() { - m.failNowCount++ - - // this function should panic now to stop the execution as expected - panic(mockTestingTFailNowCalled) -} - -/* - Mock -*/ - -func Test_Mock_TestData(t *testing.T) { - - var mockedService = new(TestExampleImplementation) - - if assert.NotNil(t, mockedService.TestData()) { - - mockedService.TestData().Set("something", 123) - assert.Equal(t, 123, mockedService.TestData().Get("something").Data()) - } -} - -func Test_Mock_On(t *testing.T) { - - // make a test impl object - var mockedService = new(TestExampleImplementation) - - c := mockedService.On("TheExampleMethod") - assert.Equal(t, []*Call{c}, mockedService.ExpectedCalls) - assert.Equal(t, "TheExampleMethod", c.Method) -} - -func Test_Mock_Chained_On(t *testing.T) { - // make a test impl object - var mockedService = new(TestExampleImplementation) - - // determine our current line number so we can assert the expected calls callerInfo properly - _, _, line, _ := runtime.Caller(0) - mockedService. - On("TheExampleMethod", 1, 2, 3). - Return(0). - On("TheExampleMethod3", AnythingOfType("*mock.ExampleType")). - Return(nil) - - expectedCalls := []*Call{ - { - Parent: &mockedService.Mock, - Method: "TheExampleMethod", - Arguments: []interface{}{1, 2, 3}, - ReturnArguments: []interface{}{0}, - callerInfo: []string{fmt.Sprintf("mock_test.go:%d", line+2)}, - }, - { - Parent: &mockedService.Mock, - Method: "TheExampleMethod3", - Arguments: []interface{}{AnythingOfType("*mock.ExampleType")}, - ReturnArguments: []interface{}{nil}, - callerInfo: []string{fmt.Sprintf("mock_test.go:%d", line+4)}, - }, - } - assert.Equal(t, expectedCalls, mockedService.ExpectedCalls) -} - -func Test_Mock_On_WithArgs(t *testing.T) { - - // make a test impl object - var mockedService = new(TestExampleImplementation) - - c := mockedService.On("TheExampleMethod", 1, 2, 3, 4) - - assert.Equal(t, []*Call{c}, mockedService.ExpectedCalls) - assert.Equal(t, "TheExampleMethod", c.Method) - assert.Equal(t, Arguments{1, 2, 3, 4}, c.Arguments) -} - -func Test_Mock_On_WithFuncArg(t *testing.T) { - - // make a test impl object - var mockedService = new(TestExampleImplementation) - - c := mockedService. - On("TheExampleMethodFunc", AnythingOfType("func(string) error")). - Return(nil) - - assert.Equal(t, []*Call{c}, mockedService.ExpectedCalls) - assert.Equal(t, "TheExampleMethodFunc", c.Method) - assert.Equal(t, 1, len(c.Arguments)) - assert.Equal(t, AnythingOfType("func(string) error"), c.Arguments[0]) - - fn := func(string) error { return nil } - - assert.NotPanics(t, func() { - mockedService.TheExampleMethodFunc(fn) - }) -} - -func Test_Mock_On_WithIntArgMatcher(t *testing.T) { - var mockedService TestExampleImplementation - - mockedService.On("TheExampleMethod", - MatchedBy(func(a int) bool { - return a == 1 - }), MatchedBy(func(b int) bool { - return b == 2 - }), MatchedBy(func(c int) bool { - return c == 3 - })).Return(0, nil) - - assert.Panics(t, func() { - mockedService.TheExampleMethod(1, 2, 4) - }) - assert.Panics(t, func() { - mockedService.TheExampleMethod(2, 2, 3) - }) - assert.NotPanics(t, func() { - mockedService.TheExampleMethod(1, 2, 3) - }) -} - -func TestMock_WithTest(t *testing.T) { - var ( - mockedService TestExampleImplementation - mockedTest MockTestingT - ) - - mockedService.Test(&mockedTest) - mockedService.On("TheExampleMethod", 1, 2, 3).Return(0, nil) - - // Test that on an expected call, the test was not failed - - mockedService.TheExampleMethod(1, 2, 3) - - // Assert that Errorf and FailNow were not called - assert.Equal(t, 0, mockedTest.errorfCount) - assert.Equal(t, 0, mockedTest.failNowCount) - - // Test that on unexpected call, the mocked test was called to fail the test - - assert.PanicsWithValue(t, mockTestingTFailNowCalled, func() { - mockedService.TheExampleMethod(1, 1, 1) - }) - - // Assert that Errorf and FailNow were called once - assert.Equal(t, 1, mockedTest.errorfCount) - assert.Equal(t, 1, mockedTest.failNowCount) -} - -func Test_Mock_On_WithPtrArgMatcher(t *testing.T) { - var mockedService TestExampleImplementation - - mockedService.On("TheExampleMethod3", - MatchedBy(func(a *ExampleType) bool { return a != nil && a.ran == true }), - ).Return(nil) - - mockedService.On("TheExampleMethod3", - MatchedBy(func(a *ExampleType) bool { return a != nil && a.ran == false }), - ).Return(errors.New("error")) - - mockedService.On("TheExampleMethod3", - MatchedBy(func(a *ExampleType) bool { return a == nil }), - ).Return(errors.New("error2")) - - assert.Equal(t, mockedService.TheExampleMethod3(&ExampleType{true}), nil) - assert.EqualError(t, mockedService.TheExampleMethod3(&ExampleType{false}), "error") - assert.EqualError(t, mockedService.TheExampleMethod3(nil), "error2") -} - -func Test_Mock_On_WithFuncArgMatcher(t *testing.T) { - var mockedService TestExampleImplementation - - fixture1, fixture2 := errors.New("fixture1"), errors.New("fixture2") - - mockedService.On("TheExampleMethodFunc", - MatchedBy(func(a func(string) error) bool { return a != nil && a("string") == fixture1 }), - ).Return(errors.New("fixture1")) - - mockedService.On("TheExampleMethodFunc", - MatchedBy(func(a func(string) error) bool { return a != nil && a("string") == fixture2 }), - ).Return(errors.New("fixture2")) - - mockedService.On("TheExampleMethodFunc", - MatchedBy(func(a func(string) error) bool { return a == nil }), - ).Return(errors.New("fixture3")) - - assert.EqualError(t, mockedService.TheExampleMethodFunc( - func(string) error { return fixture1 }), "fixture1") - assert.EqualError(t, mockedService.TheExampleMethodFunc( - func(string) error { return fixture2 }), "fixture2") - assert.EqualError(t, mockedService.TheExampleMethodFunc(nil), "fixture3") -} - -func Test_Mock_On_WithInterfaceArgMatcher(t *testing.T) { - var mockedService TestExampleImplementation - - mockedService.On("TheExampleMethod4", - MatchedBy(func(a ExampleInterface) bool { return a == nil }), - ).Return(errors.New("fixture1")) - - assert.EqualError(t, mockedService.TheExampleMethod4(nil), "fixture1") -} - -func Test_Mock_On_WithChannelArgMatcher(t *testing.T) { - var mockedService TestExampleImplementation - - mockedService.On("TheExampleMethod5", - MatchedBy(func(ch chan struct{}) bool { return ch == nil }), - ).Return(errors.New("fixture1")) - - assert.EqualError(t, mockedService.TheExampleMethod5(nil), "fixture1") -} - -func Test_Mock_On_WithMapArgMatcher(t *testing.T) { - var mockedService TestExampleImplementation - - mockedService.On("TheExampleMethod6", - MatchedBy(func(m map[string]bool) bool { return m == nil }), - ).Return(errors.New("fixture1")) - - assert.EqualError(t, mockedService.TheExampleMethod6(nil), "fixture1") -} - -func Test_Mock_On_WithSliceArgMatcher(t *testing.T) { - var mockedService TestExampleImplementation - - mockedService.On("TheExampleMethod7", - MatchedBy(func(slice []bool) bool { return slice == nil }), - ).Return(errors.New("fixture1")) - - assert.EqualError(t, mockedService.TheExampleMethod7(nil), "fixture1") -} - -func Test_Mock_On_WithVariadicFunc(t *testing.T) { - - // make a test impl object - var mockedService = new(TestExampleImplementation) - - c := mockedService. - On("TheExampleMethodVariadic", []int{1, 2, 3}). - Return(nil) - - assert.Equal(t, []*Call{c}, mockedService.ExpectedCalls) - assert.Equal(t, 1, len(c.Arguments)) - assert.Equal(t, []int{1, 2, 3}, c.Arguments[0]) - - assert.NotPanics(t, func() { - mockedService.TheExampleMethodVariadic(1, 2, 3) - }) - assert.Panics(t, func() { - mockedService.TheExampleMethodVariadic(1, 2) - }) - -} - -func Test_Mock_On_WithMixedVariadicFunc(t *testing.T) { - - // make a test impl object - var mockedService = new(TestExampleImplementation) - - c := mockedService. - On("TheExampleMethodMixedVariadic", 1, []int{2, 3, 4}). - Return(nil) - - assert.Equal(t, []*Call{c}, mockedService.ExpectedCalls) - assert.Equal(t, 2, len(c.Arguments)) - assert.Equal(t, 1, c.Arguments[0]) - assert.Equal(t, []int{2, 3, 4}, c.Arguments[1]) - - assert.NotPanics(t, func() { - mockedService.TheExampleMethodMixedVariadic(1, 2, 3, 4) - }) - assert.Panics(t, func() { - mockedService.TheExampleMethodMixedVariadic(1, 2, 3, 5) - }) - -} - -func Test_Mock_On_WithVariadicFuncWithInterface(t *testing.T) { - - // make a test impl object - var mockedService = new(TestExampleImplementation) - - c := mockedService.On("TheExampleMethodVariadicInterface", []interface{}{1, 2, 3}). - Return(nil) - - assert.Equal(t, []*Call{c}, mockedService.ExpectedCalls) - assert.Equal(t, 1, len(c.Arguments)) - assert.Equal(t, []interface{}{1, 2, 3}, c.Arguments[0]) - - assert.NotPanics(t, func() { - mockedService.TheExampleMethodVariadicInterface(1, 2, 3) - }) - assert.Panics(t, func() { - mockedService.TheExampleMethodVariadicInterface(1, 2) - }) - -} - -func Test_Mock_On_WithVariadicFuncWithEmptyInterfaceArray(t *testing.T) { - - // make a test impl object - var mockedService = new(TestExampleImplementation) - - var expected []interface{} - c := mockedService. - On("TheExampleMethodVariadicInterface", expected). - Return(nil) - - assert.Equal(t, []*Call{c}, mockedService.ExpectedCalls) - assert.Equal(t, 1, len(c.Arguments)) - assert.Equal(t, expected, c.Arguments[0]) - - assert.NotPanics(t, func() { - mockedService.TheExampleMethodVariadicInterface() - }) - assert.Panics(t, func() { - mockedService.TheExampleMethodVariadicInterface(1, 2) - }) - -} - -func Test_Mock_On_WithFuncPanics(t *testing.T) { - // make a test impl object - var mockedService = new(TestExampleImplementation) - - assert.Panics(t, func() { - mockedService.On("TheExampleMethodFunc", func(string) error { return nil }) - }) -} - -func Test_Mock_On_WithFuncTypeArg(t *testing.T) { - - // make a test impl object - var mockedService = new(TestExampleImplementation) - - c := mockedService. - On("TheExampleMethodFuncType", AnythingOfType("mock.ExampleFuncType")). - Return(nil) - - assert.Equal(t, []*Call{c}, mockedService.ExpectedCalls) - assert.Equal(t, 1, len(c.Arguments)) - assert.Equal(t, AnythingOfType("mock.ExampleFuncType"), c.Arguments[0]) - - fn := func(string) error { return nil } - assert.NotPanics(t, func() { - mockedService.TheExampleMethodFuncType(fn) - }) -} - -func Test_Mock_Return(t *testing.T) { - - // make a test impl object - var mockedService = new(TestExampleImplementation) - - c := mockedService. - On("TheExampleMethod", "A", "B", true). - Return(1, "two", true) - - require.Equal(t, []*Call{c}, mockedService.ExpectedCalls) - - call := mockedService.ExpectedCalls[0] - - assert.Equal(t, "TheExampleMethod", call.Method) - assert.Equal(t, "A", call.Arguments[0]) - assert.Equal(t, "B", call.Arguments[1]) - assert.Equal(t, true, call.Arguments[2]) - assert.Equal(t, 1, call.ReturnArguments[0]) - assert.Equal(t, "two", call.ReturnArguments[1]) - assert.Equal(t, true, call.ReturnArguments[2]) - assert.Equal(t, 0, call.Repeatability) - assert.Nil(t, call.WaitFor) -} - -func Test_Mock_Return_WaitUntil(t *testing.T) { - - // make a test impl object - var mockedService = new(TestExampleImplementation) - ch := time.After(time.Second) - - c := mockedService.Mock. - On("TheExampleMethod", "A", "B", true). - WaitUntil(ch). - Return(1, "two", true) - - // assert that the call was created - require.Equal(t, []*Call{c}, mockedService.ExpectedCalls) - - call := mockedService.ExpectedCalls[0] - - assert.Equal(t, "TheExampleMethod", call.Method) - assert.Equal(t, "A", call.Arguments[0]) - assert.Equal(t, "B", call.Arguments[1]) - assert.Equal(t, true, call.Arguments[2]) - assert.Equal(t, 1, call.ReturnArguments[0]) - assert.Equal(t, "two", call.ReturnArguments[1]) - assert.Equal(t, true, call.ReturnArguments[2]) - assert.Equal(t, 0, call.Repeatability) - assert.Equal(t, ch, call.WaitFor) -} - -func Test_Mock_Return_After(t *testing.T) { - - // make a test impl object - var mockedService = new(TestExampleImplementation) - - c := mockedService.Mock. - On("TheExampleMethod", "A", "B", true). - Return(1, "two", true). - After(time.Second) - - require.Equal(t, []*Call{c}, mockedService.ExpectedCalls) - - call := mockedService.Mock.ExpectedCalls[0] - - assert.Equal(t, "TheExampleMethod", call.Method) - assert.Equal(t, "A", call.Arguments[0]) - assert.Equal(t, "B", call.Arguments[1]) - assert.Equal(t, true, call.Arguments[2]) - assert.Equal(t, 1, call.ReturnArguments[0]) - assert.Equal(t, "two", call.ReturnArguments[1]) - assert.Equal(t, true, call.ReturnArguments[2]) - assert.Equal(t, 0, call.Repeatability) - assert.NotEqual(t, nil, call.WaitFor) - -} - -func Test_Mock_Return_Run(t *testing.T) { - - // make a test impl object - var mockedService = new(TestExampleImplementation) - - fn := func(args Arguments) { - arg := args.Get(0).(*ExampleType) - arg.ran = true - } - - c := mockedService.Mock. - On("TheExampleMethod3", AnythingOfType("*mock.ExampleType")). - Return(nil). - Run(fn) - - require.Equal(t, []*Call{c}, mockedService.ExpectedCalls) - - call := mockedService.Mock.ExpectedCalls[0] - - assert.Equal(t, "TheExampleMethod3", call.Method) - assert.Equal(t, AnythingOfType("*mock.ExampleType"), call.Arguments[0]) - assert.Equal(t, nil, call.ReturnArguments[0]) - assert.Equal(t, 0, call.Repeatability) - assert.NotEqual(t, nil, call.WaitFor) - assert.NotNil(t, call.Run) - - et := ExampleType{} - assert.Equal(t, false, et.ran) - mockedService.TheExampleMethod3(&et) - assert.Equal(t, true, et.ran) -} - -func Test_Mock_Return_Run_Out_Of_Order(t *testing.T) { - // make a test impl object - var mockedService = new(TestExampleImplementation) - f := func(args Arguments) { - arg := args.Get(0).(*ExampleType) - arg.ran = true - } - - c := mockedService.Mock. - On("TheExampleMethod3", AnythingOfType("*mock.ExampleType")). - Run(f). - Return(nil) - - require.Equal(t, []*Call{c}, mockedService.ExpectedCalls) - - call := mockedService.Mock.ExpectedCalls[0] - - assert.Equal(t, "TheExampleMethod3", call.Method) - assert.Equal(t, AnythingOfType("*mock.ExampleType"), call.Arguments[0]) - assert.Equal(t, nil, call.ReturnArguments[0]) - assert.Equal(t, 0, call.Repeatability) - assert.NotEqual(t, nil, call.WaitFor) - assert.NotNil(t, call.Run) -} - -func Test_Mock_Return_Once(t *testing.T) { - - // make a test impl object - var mockedService = new(TestExampleImplementation) - - c := mockedService.On("TheExampleMethod", "A", "B", true). - Return(1, "two", true). - Once() - - require.Equal(t, []*Call{c}, mockedService.ExpectedCalls) - - call := mockedService.ExpectedCalls[0] - - assert.Equal(t, "TheExampleMethod", call.Method) - assert.Equal(t, "A", call.Arguments[0]) - assert.Equal(t, "B", call.Arguments[1]) - assert.Equal(t, true, call.Arguments[2]) - assert.Equal(t, 1, call.ReturnArguments[0]) - assert.Equal(t, "two", call.ReturnArguments[1]) - assert.Equal(t, true, call.ReturnArguments[2]) - assert.Equal(t, 1, call.Repeatability) - assert.Nil(t, call.WaitFor) -} - -func Test_Mock_Return_Twice(t *testing.T) { - - // make a test impl object - var mockedService = new(TestExampleImplementation) - - c := mockedService. - On("TheExampleMethod", "A", "B", true). - Return(1, "two", true). - Twice() - - require.Equal(t, []*Call{c}, mockedService.ExpectedCalls) - - call := mockedService.ExpectedCalls[0] - - assert.Equal(t, "TheExampleMethod", call.Method) - assert.Equal(t, "A", call.Arguments[0]) - assert.Equal(t, "B", call.Arguments[1]) - assert.Equal(t, true, call.Arguments[2]) - assert.Equal(t, 1, call.ReturnArguments[0]) - assert.Equal(t, "two", call.ReturnArguments[1]) - assert.Equal(t, true, call.ReturnArguments[2]) - assert.Equal(t, 2, call.Repeatability) - assert.Nil(t, call.WaitFor) -} - -func Test_Mock_Return_Times(t *testing.T) { - - // make a test impl object - var mockedService = new(TestExampleImplementation) - - c := mockedService. - On("TheExampleMethod", "A", "B", true). - Return(1, "two", true). - Times(5) - - require.Equal(t, []*Call{c}, mockedService.ExpectedCalls) - - call := mockedService.ExpectedCalls[0] - - assert.Equal(t, "TheExampleMethod", call.Method) - assert.Equal(t, "A", call.Arguments[0]) - assert.Equal(t, "B", call.Arguments[1]) - assert.Equal(t, true, call.Arguments[2]) - assert.Equal(t, 1, call.ReturnArguments[0]) - assert.Equal(t, "two", call.ReturnArguments[1]) - assert.Equal(t, true, call.ReturnArguments[2]) - assert.Equal(t, 5, call.Repeatability) - assert.Nil(t, call.WaitFor) -} - -func Test_Mock_Return_Nothing(t *testing.T) { - - // make a test impl object - var mockedService = new(TestExampleImplementation) - - c := mockedService. - On("TheExampleMethod", "A", "B", true). - Return() - - require.Equal(t, []*Call{c}, mockedService.ExpectedCalls) - - call := mockedService.ExpectedCalls[0] - - assert.Equal(t, "TheExampleMethod", call.Method) - assert.Equal(t, "A", call.Arguments[0]) - assert.Equal(t, "B", call.Arguments[1]) - assert.Equal(t, true, call.Arguments[2]) - assert.Equal(t, 0, len(call.ReturnArguments)) -} - -func Test_Mock_findExpectedCall(t *testing.T) { - - m := new(Mock) - m.On("One", 1).Return("one") - m.On("Two", 2).Return("two") - m.On("Two", 3).Return("three") - - f, c := m.findExpectedCall("Two", 3) - - if assert.Equal(t, 2, f) { - if assert.NotNil(t, c) { - assert.Equal(t, "Two", c.Method) - assert.Equal(t, 3, c.Arguments[0]) - assert.Equal(t, "three", c.ReturnArguments[0]) - } - } - -} - -func Test_Mock_findExpectedCall_For_Unknown_Method(t *testing.T) { - - m := new(Mock) - m.On("One", 1).Return("one") - m.On("Two", 2).Return("two") - m.On("Two", 3).Return("three") - - f, _ := m.findExpectedCall("Two") - - assert.Equal(t, -1, f) - -} - -func Test_Mock_findExpectedCall_Respects_Repeatability(t *testing.T) { - - m := new(Mock) - m.On("One", 1).Return("one") - m.On("Two", 2).Return("two").Once() - m.On("Two", 3).Return("three").Twice() - m.On("Two", 3).Return("three").Times(8) - - f, c := m.findExpectedCall("Two", 3) - - if assert.Equal(t, 2, f) { - if assert.NotNil(t, c) { - assert.Equal(t, "Two", c.Method) - assert.Equal(t, 3, c.Arguments[0]) - assert.Equal(t, "three", c.ReturnArguments[0]) - } - } - -} - -func Test_callString(t *testing.T) { - - assert.Equal(t, `Method(int,bool,string)`, callString("Method", []interface{}{1, true, "something"}, false)) - -} - -func Test_Mock_Called(t *testing.T) { - - var mockedService = new(TestExampleImplementation) - - mockedService.On("Test_Mock_Called", 1, 2, 3).Return(5, "6", true) - - returnArguments := mockedService.Called(1, 2, 3) - - if assert.Equal(t, 1, len(mockedService.Calls)) { - assert.Equal(t, "Test_Mock_Called", mockedService.Calls[0].Method) - assert.Equal(t, 1, mockedService.Calls[0].Arguments[0]) - assert.Equal(t, 2, mockedService.Calls[0].Arguments[1]) - assert.Equal(t, 3, mockedService.Calls[0].Arguments[2]) - } - - if assert.Equal(t, 3, len(returnArguments)) { - assert.Equal(t, 5, returnArguments[0]) - assert.Equal(t, "6", returnArguments[1]) - assert.Equal(t, true, returnArguments[2]) - } - -} - -func asyncCall(m *Mock, ch chan Arguments) { - ch <- m.Called(1, 2, 3) -} - -func Test_Mock_Called_blocks(t *testing.T) { - - var mockedService = new(TestExampleImplementation) - - mockedService.Mock.On("asyncCall", 1, 2, 3).Return(5, "6", true).After(2 * time.Millisecond) - - ch := make(chan Arguments) - - go asyncCall(&mockedService.Mock, ch) - - select { - case <-ch: - t.Fatal("should have waited") - case <-time.After(1 * time.Millisecond): - } - - returnArguments := <-ch - - if assert.Equal(t, 1, len(mockedService.Mock.Calls)) { - assert.Equal(t, "asyncCall", mockedService.Mock.Calls[0].Method) - assert.Equal(t, 1, mockedService.Mock.Calls[0].Arguments[0]) - assert.Equal(t, 2, mockedService.Mock.Calls[0].Arguments[1]) - assert.Equal(t, 3, mockedService.Mock.Calls[0].Arguments[2]) - } - - if assert.Equal(t, 3, len(returnArguments)) { - assert.Equal(t, 5, returnArguments[0]) - assert.Equal(t, "6", returnArguments[1]) - assert.Equal(t, true, returnArguments[2]) - } - -} - -func Test_Mock_Called_For_Bounded_Repeatability(t *testing.T) { - - var mockedService = new(TestExampleImplementation) - - mockedService. - On("Test_Mock_Called_For_Bounded_Repeatability", 1, 2, 3). - Return(5, "6", true). - Once() - mockedService. - On("Test_Mock_Called_For_Bounded_Repeatability", 1, 2, 3). - Return(-1, "hi", false) - - returnArguments1 := mockedService.Called(1, 2, 3) - returnArguments2 := mockedService.Called(1, 2, 3) - - if assert.Equal(t, 2, len(mockedService.Calls)) { - assert.Equal(t, "Test_Mock_Called_For_Bounded_Repeatability", mockedService.Calls[0].Method) - assert.Equal(t, 1, mockedService.Calls[0].Arguments[0]) - assert.Equal(t, 2, mockedService.Calls[0].Arguments[1]) - assert.Equal(t, 3, mockedService.Calls[0].Arguments[2]) - - assert.Equal(t, "Test_Mock_Called_For_Bounded_Repeatability", mockedService.Calls[1].Method) - assert.Equal(t, 1, mockedService.Calls[1].Arguments[0]) - assert.Equal(t, 2, mockedService.Calls[1].Arguments[1]) - assert.Equal(t, 3, mockedService.Calls[1].Arguments[2]) - } - - if assert.Equal(t, 3, len(returnArguments1)) { - assert.Equal(t, 5, returnArguments1[0]) - assert.Equal(t, "6", returnArguments1[1]) - assert.Equal(t, true, returnArguments1[2]) - } - - if assert.Equal(t, 3, len(returnArguments2)) { - assert.Equal(t, -1, returnArguments2[0]) - assert.Equal(t, "hi", returnArguments2[1]) - assert.Equal(t, false, returnArguments2[2]) - } - -} - -func Test_Mock_Called_For_SetTime_Expectation(t *testing.T) { - - var mockedService = new(TestExampleImplementation) - - mockedService.On("TheExampleMethod", 1, 2, 3).Return(5, "6", true).Times(4) - - mockedService.TheExampleMethod(1, 2, 3) - mockedService.TheExampleMethod(1, 2, 3) - mockedService.TheExampleMethod(1, 2, 3) - mockedService.TheExampleMethod(1, 2, 3) - assert.Panics(t, func() { - mockedService.TheExampleMethod(1, 2, 3) - }) - -} - -func Test_Mock_Called_Unexpected(t *testing.T) { - - var mockedService = new(TestExampleImplementation) - - // make sure it panics if no expectation was made - assert.Panics(t, func() { - mockedService.Called(1, 2, 3) - }, "Calling unexpected method should panic") - -} - -func Test_AssertExpectationsForObjects_Helper(t *testing.T) { - - var mockedService1 = new(TestExampleImplementation) - var mockedService2 = new(TestExampleImplementation) - var mockedService3 = new(TestExampleImplementation) - - mockedService1.On("Test_AssertExpectationsForObjects_Helper", 1).Return() - mockedService2.On("Test_AssertExpectationsForObjects_Helper", 2).Return() - mockedService3.On("Test_AssertExpectationsForObjects_Helper", 3).Return() - - mockedService1.Called(1) - mockedService2.Called(2) - mockedService3.Called(3) - - assert.True(t, AssertExpectationsForObjects(t, &mockedService1.Mock, &mockedService2.Mock, &mockedService3.Mock)) - assert.True(t, AssertExpectationsForObjects(t, mockedService1, mockedService2, mockedService3)) - -} - -func Test_AssertExpectationsForObjects_Helper_Failed(t *testing.T) { - - var mockedService1 = new(TestExampleImplementation) - var mockedService2 = new(TestExampleImplementation) - var mockedService3 = new(TestExampleImplementation) - - mockedService1.On("Test_AssertExpectationsForObjects_Helper_Failed", 1).Return() - mockedService2.On("Test_AssertExpectationsForObjects_Helper_Failed", 2).Return() - mockedService3.On("Test_AssertExpectationsForObjects_Helper_Failed", 3).Return() - - mockedService1.Called(1) - mockedService3.Called(3) - - tt := new(testing.T) - assert.False(t, AssertExpectationsForObjects(tt, &mockedService1.Mock, &mockedService2.Mock, &mockedService3.Mock)) - assert.False(t, AssertExpectationsForObjects(tt, mockedService1, mockedService2, mockedService3)) - -} - -func Test_Mock_AssertExpectations(t *testing.T) { - - var mockedService = new(TestExampleImplementation) - - mockedService.On("Test_Mock_AssertExpectations", 1, 2, 3).Return(5, 6, 7) - - tt := new(testing.T) - assert.False(t, mockedService.AssertExpectations(tt)) - - // make the call now - mockedService.Called(1, 2, 3) - - // now assert expectations - assert.True(t, mockedService.AssertExpectations(tt)) - -} - -func Test_Mock_AssertExpectations_Placeholder_NoArgs(t *testing.T) { - - var mockedService = new(TestExampleImplementation) - - mockedService.On("Test_Mock_AssertExpectations_Placeholder_NoArgs").Return(5, 6, 7).Once() - mockedService.On("Test_Mock_AssertExpectations_Placeholder_NoArgs").Return(7, 6, 5) - - tt := new(testing.T) - assert.False(t, mockedService.AssertExpectations(tt)) - - // make the call now - mockedService.Called() - - // now assert expectations - assert.True(t, mockedService.AssertExpectations(tt)) - -} - -func Test_Mock_AssertExpectations_Placeholder(t *testing.T) { - - var mockedService = new(TestExampleImplementation) - - mockedService.On("Test_Mock_AssertExpectations_Placeholder", 1, 2, 3).Return(5, 6, 7).Once() - mockedService.On("Test_Mock_AssertExpectations_Placeholder", 3, 2, 1).Return(7, 6, 5) - - tt := new(testing.T) - assert.False(t, mockedService.AssertExpectations(tt)) - - // make the call now - mockedService.Called(1, 2, 3) - - // now assert expectations - assert.False(t, mockedService.AssertExpectations(tt)) - - // make call to the second expectation - mockedService.Called(3, 2, 1) - - // now assert expectations again - assert.True(t, mockedService.AssertExpectations(tt)) -} - -func Test_Mock_AssertExpectations_With_Pointers(t *testing.T) { - - var mockedService = new(TestExampleImplementation) - - mockedService.On("Test_Mock_AssertExpectations_With_Pointers", &struct{ Foo int }{1}).Return(1) - mockedService.On("Test_Mock_AssertExpectations_With_Pointers", &struct{ Foo int }{2}).Return(2) - - tt := new(testing.T) - assert.False(t, mockedService.AssertExpectations(tt)) - - s := struct{ Foo int }{1} - // make the calls now - mockedService.Called(&s) - s.Foo = 2 - mockedService.Called(&s) - - // now assert expectations - assert.True(t, mockedService.AssertExpectations(tt)) - -} - -func Test_Mock_AssertExpectationsCustomType(t *testing.T) { - - var mockedService = new(TestExampleImplementation) - - mockedService.On("TheExampleMethod3", AnythingOfType("*mock.ExampleType")).Return(nil).Once() - - tt := new(testing.T) - assert.False(t, mockedService.AssertExpectations(tt)) - - // make the call now - mockedService.TheExampleMethod3(&ExampleType{}) - - // now assert expectations - assert.True(t, mockedService.AssertExpectations(tt)) - -} - -func Test_Mock_AssertExpectations_With_Repeatability(t *testing.T) { - - var mockedService = new(TestExampleImplementation) - - mockedService.On("Test_Mock_AssertExpectations_With_Repeatability", 1, 2, 3).Return(5, 6, 7).Twice() - - tt := new(testing.T) - assert.False(t, mockedService.AssertExpectations(tt)) - - // make the call now - mockedService.Called(1, 2, 3) - - assert.False(t, mockedService.AssertExpectations(tt)) - - mockedService.Called(1, 2, 3) - - // now assert expectations - assert.True(t, mockedService.AssertExpectations(tt)) - -} - -func Test_Mock_TwoCallsWithDifferentArguments(t *testing.T) { - - var mockedService = new(TestExampleImplementation) - - mockedService.On("Test_Mock_TwoCallsWithDifferentArguments", 1, 2, 3).Return(5, 6, 7) - mockedService.On("Test_Mock_TwoCallsWithDifferentArguments", 4, 5, 6).Return(5, 6, 7) - - args1 := mockedService.Called(1, 2, 3) - assert.Equal(t, 5, args1.Int(0)) - assert.Equal(t, 6, args1.Int(1)) - assert.Equal(t, 7, args1.Int(2)) - - args2 := mockedService.Called(4, 5, 6) - assert.Equal(t, 5, args2.Int(0)) - assert.Equal(t, 6, args2.Int(1)) - assert.Equal(t, 7, args2.Int(2)) - -} - -func Test_Mock_AssertNumberOfCalls(t *testing.T) { - - var mockedService = new(TestExampleImplementation) - - mockedService.On("Test_Mock_AssertNumberOfCalls", 1, 2, 3).Return(5, 6, 7) - - mockedService.Called(1, 2, 3) - assert.True(t, mockedService.AssertNumberOfCalls(t, "Test_Mock_AssertNumberOfCalls", 1)) - - mockedService.Called(1, 2, 3) - assert.True(t, mockedService.AssertNumberOfCalls(t, "Test_Mock_AssertNumberOfCalls", 2)) - -} - -func Test_Mock_AssertCalled(t *testing.T) { - - var mockedService = new(TestExampleImplementation) - - mockedService.On("Test_Mock_AssertCalled", 1, 2, 3).Return(5, 6, 7) - - mockedService.Called(1, 2, 3) - - assert.True(t, mockedService.AssertCalled(t, "Test_Mock_AssertCalled", 1, 2, 3)) - -} - -func Test_Mock_AssertCalled_WithAnythingOfTypeArgument(t *testing.T) { - - var mockedService = new(TestExampleImplementation) - - mockedService. - On("Test_Mock_AssertCalled_WithAnythingOfTypeArgument", Anything, Anything, Anything). - Return() - - mockedService.Called(1, "two", []uint8("three")) - - assert.True(t, mockedService.AssertCalled(t, "Test_Mock_AssertCalled_WithAnythingOfTypeArgument", AnythingOfType("int"), AnythingOfType("string"), AnythingOfType("[]uint8"))) - -} - -func Test_Mock_AssertCalled_WithArguments(t *testing.T) { - - var mockedService = new(TestExampleImplementation) - - mockedService.On("Test_Mock_AssertCalled_WithArguments", 1, 2, 3).Return(5, 6, 7) - - mockedService.Called(1, 2, 3) - - tt := new(testing.T) - assert.True(t, mockedService.AssertCalled(tt, "Test_Mock_AssertCalled_WithArguments", 1, 2, 3)) - assert.False(t, mockedService.AssertCalled(tt, "Test_Mock_AssertCalled_WithArguments", 2, 3, 4)) - -} - -func Test_Mock_AssertCalled_WithArguments_With_Repeatability(t *testing.T) { - - var mockedService = new(TestExampleImplementation) - - mockedService.On("Test_Mock_AssertCalled_WithArguments_With_Repeatability", 1, 2, 3).Return(5, 6, 7).Once() - mockedService.On("Test_Mock_AssertCalled_WithArguments_With_Repeatability", 2, 3, 4).Return(5, 6, 7).Once() - - mockedService.Called(1, 2, 3) - mockedService.Called(2, 3, 4) - - tt := new(testing.T) - assert.True(t, mockedService.AssertCalled(tt, "Test_Mock_AssertCalled_WithArguments_With_Repeatability", 1, 2, 3)) - assert.True(t, mockedService.AssertCalled(tt, "Test_Mock_AssertCalled_WithArguments_With_Repeatability", 2, 3, 4)) - assert.False(t, mockedService.AssertCalled(tt, "Test_Mock_AssertCalled_WithArguments_With_Repeatability", 3, 4, 5)) - -} - -func Test_Mock_AssertNotCalled(t *testing.T) { - - var mockedService = new(TestExampleImplementation) - - mockedService.On("Test_Mock_AssertNotCalled", 1, 2, 3).Return(5, 6, 7) - - mockedService.Called(1, 2, 3) - - assert.True(t, mockedService.AssertNotCalled(t, "Test_Mock_NotCalled")) - -} - -func Test_Mock_AssertOptional(t *testing.T) { - // Optional called - var ms1 = new(TestExampleImplementation) - ms1.On("TheExampleMethod", 1, 2, 3).Maybe().Return(4, nil) - ms1.TheExampleMethod(1, 2, 3) - - tt1 := new(testing.T) - assert.Equal(t, true, ms1.AssertExpectations(tt1)) - - // Optional not called - var ms2 = new(TestExampleImplementation) - ms2.On("TheExampleMethod", 1, 2, 3).Maybe().Return(4, nil) - - tt2 := new(testing.T) - assert.Equal(t, true, ms2.AssertExpectations(tt2)) - - // Non-optional called - var ms3 = new(TestExampleImplementation) - ms3.On("TheExampleMethod", 1, 2, 3).Return(4, nil) - ms3.TheExampleMethod(1, 2, 3) - - tt3 := new(testing.T) - assert.Equal(t, true, ms3.AssertExpectations(tt3)) -} - -/* - Arguments helper methods -*/ -func Test_Arguments_Get(t *testing.T) { - - var args = Arguments([]interface{}{"string", 123, true}) - - assert.Equal(t, "string", args.Get(0).(string)) - assert.Equal(t, 123, args.Get(1).(int)) - assert.Equal(t, true, args.Get(2).(bool)) - -} - -func Test_Arguments_Is(t *testing.T) { - - var args = Arguments([]interface{}{"string", 123, true}) - - assert.True(t, args.Is("string", 123, true)) - assert.False(t, args.Is("wrong", 456, false)) - -} - -func Test_Arguments_Diff(t *testing.T) { - - var args = Arguments([]interface{}{"Hello World", 123, true}) - var diff string - var count int - diff, count = args.Diff([]interface{}{"Hello World", 456, "false"}) - - assert.Equal(t, 2, count) - assert.Contains(t, diff, `(int=456) != (int=123)`) - assert.Contains(t, diff, `(string=false) != (bool=true)`) - -} - -func Test_Arguments_Diff_DifferentNumberOfArgs(t *testing.T) { - - var args = Arguments([]interface{}{"string", 123, true}) - var diff string - var count int - diff, count = args.Diff([]interface{}{"string", 456, "false", "extra"}) - - assert.Equal(t, 3, count) - assert.Contains(t, diff, `(string=extra) != (Missing)`) - -} - -func Test_Arguments_Diff_WithAnythingArgument(t *testing.T) { - - var args = Arguments([]interface{}{"string", 123, true}) - var count int - _, count = args.Diff([]interface{}{"string", Anything, true}) - - assert.Equal(t, 0, count) - -} - -func Test_Arguments_Diff_WithAnythingArgument_InActualToo(t *testing.T) { - - var args = Arguments([]interface{}{"string", Anything, true}) - var count int - _, count = args.Diff([]interface{}{"string", 123, true}) - - assert.Equal(t, 0, count) - -} - -func Test_Arguments_Diff_WithAnythingOfTypeArgument(t *testing.T) { - - var args = Arguments([]interface{}{"string", AnythingOfType("int"), true}) - var count int - _, count = args.Diff([]interface{}{"string", 123, true}) - - assert.Equal(t, 0, count) - -} - -func Test_Arguments_Diff_WithAnythingOfTypeArgument_Failing(t *testing.T) { - - var args = Arguments([]interface{}{"string", AnythingOfType("string"), true}) - var count int - var diff string - diff, count = args.Diff([]interface{}{"string", 123, true}) - - assert.Equal(t, 1, count) - assert.Contains(t, diff, `string != type int - (int=123)`) - -} - -func Test_Arguments_Diff_WithArgMatcher(t *testing.T) { - matchFn := func(a int) bool { - return a == 123 - } - var args = Arguments([]interface{}{"string", MatchedBy(matchFn), true}) - - diff, count := args.Diff([]interface{}{"string", 124, true}) - assert.Equal(t, 1, count) - assert.Contains(t, diff, `(int=124) not matched by func(int) bool`) - - diff, count = args.Diff([]interface{}{"string", false, true}) - assert.Equal(t, 1, count) - assert.Contains(t, diff, `(bool=false) not matched by func(int) bool`) - - diff, count = args.Diff([]interface{}{"string", 123, false}) - assert.Contains(t, diff, `(int=123) matched by func(int) bool`) - - diff, count = args.Diff([]interface{}{"string", 123, true}) - assert.Equal(t, 0, count) - assert.Contains(t, diff, `No differences.`) -} - -func Test_Arguments_Assert(t *testing.T) { - - var args = Arguments([]interface{}{"string", 123, true}) - - assert.True(t, args.Assert(t, "string", 123, true)) - -} - -func Test_Arguments_String_Representation(t *testing.T) { - - var args = Arguments([]interface{}{"string", 123, true}) - assert.Equal(t, `string,int,bool`, args.String()) - -} - -func Test_Arguments_String(t *testing.T) { - - var args = Arguments([]interface{}{"string", 123, true}) - assert.Equal(t, "string", args.String(0)) - -} - -func Test_Arguments_Error(t *testing.T) { - - var err = errors.New("An Error") - var args = Arguments([]interface{}{"string", 123, true, err}) - assert.Equal(t, err, args.Error(3)) - -} - -func Test_Arguments_Error_Nil(t *testing.T) { - - var args = Arguments([]interface{}{"string", 123, true, nil}) - assert.Equal(t, nil, args.Error(3)) - -} - -func Test_Arguments_Int(t *testing.T) { - - var args = Arguments([]interface{}{"string", 123, true}) - assert.Equal(t, 123, args.Int(1)) - -} - -func Test_Arguments_Bool(t *testing.T) { - - var args = Arguments([]interface{}{"string", 123, true}) - assert.Equal(t, true, args.Bool(2)) - -} - -func Test_WaitUntil_Parallel(t *testing.T) { - - // make a test impl object - var mockedService = new(TestExampleImplementation) - - ch1 := make(chan time.Time) - ch2 := make(chan time.Time) - - mockedService.Mock.On("TheExampleMethod2", true).Return().WaitUntil(ch2).Run(func(args Arguments) { - ch1 <- time.Now() - }) - - mockedService.Mock.On("TheExampleMethod2", false).Return().WaitUntil(ch1) - - // Lock both goroutines on the .WaitUntil method - go func() { - mockedService.TheExampleMethod2(false) - }() - go func() { - mockedService.TheExampleMethod2(true) - }() - - // Allow the first call to execute, so the second one executes afterwards - ch2 <- time.Now() -} - -func Test_MockMethodCalled(t *testing.T) { - m := new(Mock) - m.On("foo", "hello").Return("world") - - retArgs := m.MethodCalled("foo", "hello") - require.True(t, len(retArgs) == 1) - require.Equal(t, "world", retArgs[0]) - m.AssertExpectations(t) -} - -// Test to validate fix for racy concurrent call access in MethodCalled() -func Test_MockReturnAndCalledConcurrent(t *testing.T) { - iterations := 1000 - m := &Mock{} - call := m.On("ConcurrencyTestMethod") - - wg := sync.WaitGroup{} - wg.Add(2) - - go func() { - for i := 0; i < iterations; i++ { - call.Return(10) - } - wg.Done() - }() - go func() { - for i := 0; i < iterations; i++ { - ConcurrencyTestMethod(m) - } - wg.Done() - }() - wg.Wait() -} - -type timer struct{ Mock } - -func (s *timer) GetTime(i int) string { - return s.Called(i).Get(0).(string) -} - -type tCustomLogger struct { - *testing.T - logs []string - errs []string -} - -func (tc *tCustomLogger) Logf(format string, args ...interface{}) { - tc.T.Logf(format, args...) - tc.logs = append(tc.logs, fmt.Sprintf(format, args...)) -} - -func (tc *tCustomLogger) Errorf(format string, args ...interface{}) { - tc.errs = append(tc.errs, fmt.Sprintf(format, args...)) -} - -func (tc *tCustomLogger) FailNow() {} - -func TestLoggingAssertExpectations(t *testing.T) { - m := new(timer) - m.On("GetTime", 0).Return("") - tcl := &tCustomLogger{t, []string{}, []string{}} - - AssertExpectationsForObjects(tcl, m, new(TestExampleImplementation)) - - require.Equal(t, 1, len(tcl.errs)) - assert.Regexp(t, regexp.MustCompile("(?s)FAIL: 0 out of 1 expectation\\(s\\) were met.*The code you are testing needs to make 1 more call\\(s\\).*"), tcl.errs[0]) - require.Equal(t, 2, len(tcl.logs)) - assert.Regexp(t, regexp.MustCompile("(?s)FAIL:\tGetTime\\(int\\).*"), tcl.logs[0]) - require.Equal(t, "Expectations didn't match for Mock: *mock.timer", tcl.logs[1]) -} - -func TestAfterTotalWaitTimeWhileExecution(t *testing.T) { - waitDuration := 1 - total, waitMs := 5, time.Millisecond*time.Duration(waitDuration) - aTimer := new(timer) - for i := 0; i < total; i++ { - aTimer.On("GetTime", i).After(waitMs).Return(fmt.Sprintf("Time%d", i)).Once() - } - time.Sleep(waitMs) - start := time.Now() - var results []string - - for i := 0; i < total; i++ { - results = append(results, aTimer.GetTime(i)) - } - - end := time.Now() - elapsedTime := end.Sub(start) - assert.True(t, elapsedTime > waitMs, fmt.Sprintf("Total elapsed time:%v should be atleast greater than %v", elapsedTime, waitMs)) - assert.Equal(t, total, len(results)) - for i := range results { - assert.Equal(t, fmt.Sprintf("Time%d", i), results[i], "Return value of method should be same") - } -} - -func TestArgumentMatcherToPrintMismatch(t *testing.T) { - defer func() { - if r := recover(); r != nil { - matchingExp := regexp.MustCompile( - `\s+mock: Unexpected Method Call\s+-*\s+GetTime\(int\)\s+0: 1\s+The closest call I have is:\s+GetTime\(mock.argumentMatcher\)\s+0: mock.argumentMatcher\{.*?\}\s+Diff:.*\(int=1\) not matched by func\(int\) bool`) - assert.Regexp(t, matchingExp, r) - } - }() - - m := new(timer) - m.On("GetTime", MatchedBy(func(i int) bool { return false })).Return("SomeTime").Once() - - res := m.GetTime(1) - require.Equal(t, "SomeTime", res) - m.AssertExpectations(t) -} - -func TestClosestCallMismatchedArgumentInformationShowsTheClosest(t *testing.T) { - defer func() { - if r := recover(); r != nil { - matchingExp := regexp.MustCompile(unexpectedCallRegex(`TheExampleMethod(int,int,int)`, `0: 1\s+1: 1\s+2: 2`, `0: 1\s+1: 1\s+2: 1`, `0: PASS: \(int=1\) == \(int=1\)\s+1: PASS: \(int=1\) == \(int=1\)\s+2: FAIL: \(int=2\) != \(int=1\)`)) - assert.Regexp(t, matchingExp, r) - } - }() - - m := new(TestExampleImplementation) - m.On("TheExampleMethod", 1, 1, 1).Return(1, nil).Once() - m.On("TheExampleMethod", 2, 2, 2).Return(2, nil).Once() - - m.TheExampleMethod(1, 1, 2) -} - -func TestClosestCallMismatchedArgumentValueInformation(t *testing.T) { - defer func() { - if r := recover(); r != nil { - matchingExp := regexp.MustCompile(unexpectedCallRegex(`GetTime(int)`, "0: 1", "0: 999", `0: FAIL: \(int=1\) != \(int=999\)`)) - assert.Regexp(t, matchingExp, r) - } - }() - - m := new(timer) - m.On("GetTime", 999).Return("SomeTime").Once() - - _ = m.GetTime(1) -} - -func unexpectedCallRegex(method, calledArg, expectedArg, diff string) string { - rMethod := regexp.QuoteMeta(method) - return fmt.Sprintf(`\s+mock: Unexpected Method Call\s+-*\s+%s\s+%s\s+The closest call I have is:\s+%s\s+%s\s+Diff: %s`, - rMethod, calledArg, rMethod, expectedArg, diff) -} - -func ConcurrencyTestMethod(m *Mock) { - m.Called() -} diff --git a/vendor/github.com/stretchr/testify/package_test.go b/vendor/github.com/stretchr/testify/package_test.go deleted file mode 100644 index 7ac5d6d8..00000000 --- a/vendor/github.com/stretchr/testify/package_test.go +++ /dev/null @@ -1,12 +0,0 @@ -package testify - -import ( - "github.com/stretchr/testify/assert" - "testing" -) - -func TestImports(t *testing.T) { - if assert.Equal(t, 1, 1) != true { - t.Error("Something is wrong.") - } -} diff --git a/vendor/github.com/stretchr/testify/require/doc.go b/vendor/github.com/stretchr/testify/require/doc.go deleted file mode 100644 index 169de392..00000000 --- a/vendor/github.com/stretchr/testify/require/doc.go +++ /dev/null @@ -1,28 +0,0 @@ -// Package require implements the same assertions as the `assert` package but -// stops test execution when a test fails. -// -// Example Usage -// -// The following is a complete example using require in a standard test function: -// import ( -// "testing" -// "github.com/stretchr/testify/require" -// ) -// -// func TestSomething(t *testing.T) { -// -// var a string = "Hello" -// var b string = "Hello" -// -// require.Equal(t, a, b, "The two words should be the same.") -// -// } -// -// Assertions -// -// The `require` package have same global functions as in the `assert` package, -// but instead of returning a boolean result they call `t.FailNow()`. -// -// Every assertion function also takes an optional string message as the final argument, -// allowing custom error messages to be appended to the message the assertion method outputs. -package require diff --git a/vendor/github.com/stretchr/testify/require/forward_requirements.go b/vendor/github.com/stretchr/testify/require/forward_requirements.go deleted file mode 100644 index ac71d405..00000000 --- a/vendor/github.com/stretchr/testify/require/forward_requirements.go +++ /dev/null @@ -1,16 +0,0 @@ -package require - -// Assertions provides assertion methods around the -// TestingT interface. -type Assertions struct { - t TestingT -} - -// New makes a new Assertions object for the specified TestingT. -func New(t TestingT) *Assertions { - return &Assertions{ - t: t, - } -} - -//go:generate go run ../_codegen/main.go -output-package=require -template=require_forward.go.tmpl -include-format-funcs diff --git a/vendor/github.com/stretchr/testify/require/forward_requirements_test.go b/vendor/github.com/stretchr/testify/require/forward_requirements_test.go deleted file mode 100644 index b120ae3b..00000000 --- a/vendor/github.com/stretchr/testify/require/forward_requirements_test.go +++ /dev/null @@ -1,385 +0,0 @@ -package require - -import ( - "errors" - "testing" - "time" -) - -func TestImplementsWrapper(t *testing.T) { - require := New(t) - - require.Implements((*AssertionTesterInterface)(nil), new(AssertionTesterConformingObject)) - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.Implements((*AssertionTesterInterface)(nil), new(AssertionTesterNonConformingObject)) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestIsTypeWrapper(t *testing.T) { - require := New(t) - require.IsType(new(AssertionTesterConformingObject), new(AssertionTesterConformingObject)) - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.IsType(new(AssertionTesterConformingObject), new(AssertionTesterNonConformingObject)) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestEqualWrapper(t *testing.T) { - require := New(t) - require.Equal(1, 1) - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.Equal(1, 2) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestNotEqualWrapper(t *testing.T) { - require := New(t) - require.NotEqual(1, 2) - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.NotEqual(2, 2) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestExactlyWrapper(t *testing.T) { - require := New(t) - - a := float32(1) - b := float32(1) - c := float64(1) - - require.Exactly(a, b) - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.Exactly(a, c) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestNotNilWrapper(t *testing.T) { - require := New(t) - require.NotNil(t, new(AssertionTesterConformingObject)) - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.NotNil(nil) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestNilWrapper(t *testing.T) { - require := New(t) - require.Nil(nil) - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.Nil(new(AssertionTesterConformingObject)) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestTrueWrapper(t *testing.T) { - require := New(t) - require.True(true) - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.True(false) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestFalseWrapper(t *testing.T) { - require := New(t) - require.False(false) - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.False(true) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestContainsWrapper(t *testing.T) { - require := New(t) - require.Contains("Hello World", "Hello") - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.Contains("Hello World", "Salut") - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestNotContainsWrapper(t *testing.T) { - require := New(t) - require.NotContains("Hello World", "Hello!") - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.NotContains("Hello World", "Hello") - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestPanicsWrapper(t *testing.T) { - require := New(t) - require.Panics(func() { - panic("Panic!") - }) - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.Panics(func() {}) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestNotPanicsWrapper(t *testing.T) { - require := New(t) - require.NotPanics(func() {}) - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.NotPanics(func() { - panic("Panic!") - }) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestNoErrorWrapper(t *testing.T) { - require := New(t) - require.NoError(nil) - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.NoError(errors.New("some error")) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestErrorWrapper(t *testing.T) { - require := New(t) - require.Error(errors.New("some error")) - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.Error(nil) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestEqualErrorWrapper(t *testing.T) { - require := New(t) - require.EqualError(errors.New("some error"), "some error") - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.EqualError(errors.New("some error"), "Not some error") - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestEmptyWrapper(t *testing.T) { - require := New(t) - require.Empty("") - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.Empty("x") - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestNotEmptyWrapper(t *testing.T) { - require := New(t) - require.NotEmpty("x") - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.NotEmpty("") - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestWithinDurationWrapper(t *testing.T) { - require := New(t) - a := time.Now() - b := a.Add(10 * time.Second) - - require.WithinDuration(a, b, 15*time.Second) - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.WithinDuration(a, b, 5*time.Second) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestInDeltaWrapper(t *testing.T) { - require := New(t) - require.InDelta(1.001, 1, 0.01) - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.InDelta(1, 2, 0.5) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestZeroWrapper(t *testing.T) { - require := New(t) - require.Zero(0) - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.Zero(1) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestNotZeroWrapper(t *testing.T) { - require := New(t) - require.NotZero(1) - - mockT := new(MockT) - mockRequire := New(mockT) - mockRequire.NotZero(0) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestJSONEqWrapper_EqualSONString(t *testing.T) { - mockT := new(MockT) - mockRequire := New(mockT) - - mockRequire.JSONEq(`{"hello": "world", "foo": "bar"}`, `{"hello": "world", "foo": "bar"}`) - if mockT.Failed { - t.Error("Check should pass") - } -} - -func TestJSONEqWrapper_EquivalentButNotEqual(t *testing.T) { - mockT := new(MockT) - mockRequire := New(mockT) - - mockRequire.JSONEq(`{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`) - if mockT.Failed { - t.Error("Check should pass") - } -} - -func TestJSONEqWrapper_HashOfArraysAndHashes(t *testing.T) { - mockT := new(MockT) - mockRequire := New(mockT) - - mockRequire.JSONEq("{\r\n\t\"numeric\": 1.5,\r\n\t\"array\": [{\"foo\": \"bar\"}, 1, \"string\", [\"nested\", \"array\", 5.5]],\r\n\t\"hash\": {\"nested\": \"hash\", \"nested_slice\": [\"this\", \"is\", \"nested\"]},\r\n\t\"string\": \"foo\"\r\n}", - "{\r\n\t\"numeric\": 1.5,\r\n\t\"hash\": {\"nested\": \"hash\", \"nested_slice\": [\"this\", \"is\", \"nested\"]},\r\n\t\"string\": \"foo\",\r\n\t\"array\": [{\"foo\": \"bar\"}, 1, \"string\", [\"nested\", \"array\", 5.5]]\r\n}") - if mockT.Failed { - t.Error("Check should pass") - } -} - -func TestJSONEqWrapper_Array(t *testing.T) { - mockT := new(MockT) - mockRequire := New(mockT) - - mockRequire.JSONEq(`["foo", {"hello": "world", "nested": "hash"}]`, `["foo", {"nested": "hash", "hello": "world"}]`) - if mockT.Failed { - t.Error("Check should pass") - } -} - -func TestJSONEqWrapper_HashAndArrayNotEquivalent(t *testing.T) { - mockT := new(MockT) - mockRequire := New(mockT) - - mockRequire.JSONEq(`["foo", {"hello": "world", "nested": "hash"}]`, `{"foo": "bar", {"nested": "hash", "hello": "world"}}`) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestJSONEqWrapper_HashesNotEquivalent(t *testing.T) { - mockT := new(MockT) - mockRequire := New(mockT) - - mockRequire.JSONEq(`{"foo": "bar"}`, `{"foo": "bar", "hello": "world"}`) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestJSONEqWrapper_ActualIsNotJSON(t *testing.T) { - mockT := new(MockT) - mockRequire := New(mockT) - - mockRequire.JSONEq(`{"foo": "bar"}`, "Not JSON") - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestJSONEqWrapper_ExpectedIsNotJSON(t *testing.T) { - mockT := new(MockT) - mockRequire := New(mockT) - - mockRequire.JSONEq("Not JSON", `{"foo": "bar", "hello": "world"}`) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestJSONEqWrapper_ExpectedAndActualNotJSON(t *testing.T) { - mockT := new(MockT) - mockRequire := New(mockT) - - mockRequire.JSONEq("Not JSON", "Not JSON") - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestJSONEqWrapper_ArraysOfDifferentOrder(t *testing.T) { - mockT := new(MockT) - mockRequire := New(mockT) - - mockRequire.JSONEq(`["foo", {"hello": "world", "nested": "hash"}]`, `[{ "hello": "world", "nested": "hash"}, "foo"]`) - if !mockT.Failed { - t.Error("Check should fail") - } -} diff --git a/vendor/github.com/stretchr/testify/require/require.go b/vendor/github.com/stretchr/testify/require/require.go deleted file mode 100644 index 535f2934..00000000 --- a/vendor/github.com/stretchr/testify/require/require.go +++ /dev/null @@ -1,1227 +0,0 @@ -/* -* CODE GENERATED AUTOMATICALLY WITH github.com/stretchr/testify/_codegen -* THIS FILE MUST NOT BE EDITED BY HAND - */ - -package require - -import ( - assert "github.com/stretchr/testify/assert" - http "net/http" - url "net/url" - time "time" -) - -// Condition uses a Comparison to assert a complex condition. -func Condition(t TestingT, comp assert.Comparison, msgAndArgs ...interface{}) { - if assert.Condition(t, comp, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Conditionf uses a Comparison to assert a complex condition. -func Conditionf(t TestingT, comp assert.Comparison, msg string, args ...interface{}) { - if assert.Conditionf(t, comp, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Contains asserts that the specified string, list(array, slice...) or map contains the -// specified substring or element. -// -// assert.Contains(t, "Hello World", "World") -// assert.Contains(t, ["Hello", "World"], "World") -// assert.Contains(t, {"Hello": "World"}, "Hello") -func Contains(t TestingT, s interface{}, contains interface{}, msgAndArgs ...interface{}) { - if assert.Contains(t, s, contains, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Containsf asserts that the specified string, list(array, slice...) or map contains the -// specified substring or element. -// -// assert.Containsf(t, "Hello World", "World", "error message %s", "formatted") -// assert.Containsf(t, ["Hello", "World"], "World", "error message %s", "formatted") -// assert.Containsf(t, {"Hello": "World"}, "Hello", "error message %s", "formatted") -func Containsf(t TestingT, s interface{}, contains interface{}, msg string, args ...interface{}) { - if assert.Containsf(t, s, contains, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// DirExists checks whether a directory exists in the given path. It also fails if the path is a file rather a directory or there is an error checking whether it exists. -func DirExists(t TestingT, path string, msgAndArgs ...interface{}) { - if assert.DirExists(t, path, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// DirExistsf checks whether a directory exists in the given path. It also fails if the path is a file rather a directory or there is an error checking whether it exists. -func DirExistsf(t TestingT, path string, msg string, args ...interface{}) { - if assert.DirExistsf(t, path, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// ElementsMatch asserts that the specified listA(array, slice...) is equal to specified -// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, -// the number of appearances of each of them in both lists should match. -// -// assert.ElementsMatch(t, [1, 3, 2, 3], [1, 3, 3, 2]) -func ElementsMatch(t TestingT, listA interface{}, listB interface{}, msgAndArgs ...interface{}) { - if assert.ElementsMatch(t, listA, listB, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// ElementsMatchf asserts that the specified listA(array, slice...) is equal to specified -// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, -// the number of appearances of each of them in both lists should match. -// -// assert.ElementsMatchf(t, [1, 3, 2, 3], [1, 3, 3, 2], "error message %s", "formatted") -func ElementsMatchf(t TestingT, listA interface{}, listB interface{}, msg string, args ...interface{}) { - if assert.ElementsMatchf(t, listA, listB, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Empty asserts that the specified object is empty. I.e. nil, "", false, 0 or either -// a slice or a channel with len == 0. -// -// assert.Empty(t, obj) -func Empty(t TestingT, object interface{}, msgAndArgs ...interface{}) { - if assert.Empty(t, object, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Emptyf asserts that the specified object is empty. I.e. nil, "", false, 0 or either -// a slice or a channel with len == 0. -// -// assert.Emptyf(t, obj, "error message %s", "formatted") -func Emptyf(t TestingT, object interface{}, msg string, args ...interface{}) { - if assert.Emptyf(t, object, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Equal asserts that two objects are equal. -// -// assert.Equal(t, 123, 123) -// -// Pointer variable equality is determined based on the equality of the -// referenced values (as opposed to the memory addresses). Function equality -// cannot be determined and will always fail. -func Equal(t TestingT, expected interface{}, actual interface{}, msgAndArgs ...interface{}) { - if assert.Equal(t, expected, actual, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// EqualError asserts that a function returned an error (i.e. not `nil`) -// and that it is equal to the provided error. -// -// actualObj, err := SomeFunction() -// assert.EqualError(t, err, expectedErrorString) -func EqualError(t TestingT, theError error, errString string, msgAndArgs ...interface{}) { - if assert.EqualError(t, theError, errString, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// EqualErrorf asserts that a function returned an error (i.e. not `nil`) -// and that it is equal to the provided error. -// -// actualObj, err := SomeFunction() -// assert.EqualErrorf(t, err, expectedErrorString, "error message %s", "formatted") -func EqualErrorf(t TestingT, theError error, errString string, msg string, args ...interface{}) { - if assert.EqualErrorf(t, theError, errString, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// EqualValues asserts that two objects are equal or convertable to the same types -// and equal. -// -// assert.EqualValues(t, uint32(123), int32(123)) -func EqualValues(t TestingT, expected interface{}, actual interface{}, msgAndArgs ...interface{}) { - if assert.EqualValues(t, expected, actual, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// EqualValuesf asserts that two objects are equal or convertable to the same types -// and equal. -// -// assert.EqualValuesf(t, uint32(123, "error message %s", "formatted"), int32(123)) -func EqualValuesf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) { - if assert.EqualValuesf(t, expected, actual, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Equalf asserts that two objects are equal. -// -// assert.Equalf(t, 123, 123, "error message %s", "formatted") -// -// Pointer variable equality is determined based on the equality of the -// referenced values (as opposed to the memory addresses). Function equality -// cannot be determined and will always fail. -func Equalf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) { - if assert.Equalf(t, expected, actual, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Error asserts that a function returned an error (i.e. not `nil`). -// -// actualObj, err := SomeFunction() -// if assert.Error(t, err) { -// assert.Equal(t, expectedError, err) -// } -func Error(t TestingT, err error, msgAndArgs ...interface{}) { - if assert.Error(t, err, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Errorf asserts that a function returned an error (i.e. not `nil`). -// -// actualObj, err := SomeFunction() -// if assert.Errorf(t, err, "error message %s", "formatted") { -// assert.Equal(t, expectedErrorf, err) -// } -func Errorf(t TestingT, err error, msg string, args ...interface{}) { - if assert.Errorf(t, err, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Exactly asserts that two objects are equal in value and type. -// -// assert.Exactly(t, int32(123), int64(123)) -func Exactly(t TestingT, expected interface{}, actual interface{}, msgAndArgs ...interface{}) { - if assert.Exactly(t, expected, actual, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Exactlyf asserts that two objects are equal in value and type. -// -// assert.Exactlyf(t, int32(123, "error message %s", "formatted"), int64(123)) -func Exactlyf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) { - if assert.Exactlyf(t, expected, actual, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Fail reports a failure through -func Fail(t TestingT, failureMessage string, msgAndArgs ...interface{}) { - if assert.Fail(t, failureMessage, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// FailNow fails test -func FailNow(t TestingT, failureMessage string, msgAndArgs ...interface{}) { - if assert.FailNow(t, failureMessage, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// FailNowf fails test -func FailNowf(t TestingT, failureMessage string, msg string, args ...interface{}) { - if assert.FailNowf(t, failureMessage, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Failf reports a failure through -func Failf(t TestingT, failureMessage string, msg string, args ...interface{}) { - if assert.Failf(t, failureMessage, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// False asserts that the specified value is false. -// -// assert.False(t, myBool) -func False(t TestingT, value bool, msgAndArgs ...interface{}) { - if assert.False(t, value, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Falsef asserts that the specified value is false. -// -// assert.Falsef(t, myBool, "error message %s", "formatted") -func Falsef(t TestingT, value bool, msg string, args ...interface{}) { - if assert.Falsef(t, value, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// FileExists checks whether a file exists in the given path. It also fails if the path points to a directory or there is an error when trying to check the file. -func FileExists(t TestingT, path string, msgAndArgs ...interface{}) { - if assert.FileExists(t, path, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// FileExistsf checks whether a file exists in the given path. It also fails if the path points to a directory or there is an error when trying to check the file. -func FileExistsf(t TestingT, path string, msg string, args ...interface{}) { - if assert.FileExistsf(t, path, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// HTTPBodyContains asserts that a specified handler returns a -// body that contains a string. -// -// assert.HTTPBodyContains(t, myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky") -// -// Returns whether the assertion was successful (true) or not (false). -func HTTPBodyContains(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msgAndArgs ...interface{}) { - if assert.HTTPBodyContains(t, handler, method, url, values, str, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// HTTPBodyContainsf asserts that a specified handler returns a -// body that contains a string. -// -// assert.HTTPBodyContainsf(t, myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky", "error message %s", "formatted") -// -// Returns whether the assertion was successful (true) or not (false). -func HTTPBodyContainsf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msg string, args ...interface{}) { - if assert.HTTPBodyContainsf(t, handler, method, url, values, str, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// HTTPBodyNotContains asserts that a specified handler returns a -// body that does not contain a string. -// -// assert.HTTPBodyNotContains(t, myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky") -// -// Returns whether the assertion was successful (true) or not (false). -func HTTPBodyNotContains(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msgAndArgs ...interface{}) { - if assert.HTTPBodyNotContains(t, handler, method, url, values, str, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// HTTPBodyNotContainsf asserts that a specified handler returns a -// body that does not contain a string. -// -// assert.HTTPBodyNotContainsf(t, myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky", "error message %s", "formatted") -// -// Returns whether the assertion was successful (true) or not (false). -func HTTPBodyNotContainsf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msg string, args ...interface{}) { - if assert.HTTPBodyNotContainsf(t, handler, method, url, values, str, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// HTTPError asserts that a specified handler returns an error status code. -// -// assert.HTTPError(t, myHandler, "POST", "/a/b/c", url.Values{"a": []string{"b", "c"}} -// -// Returns whether the assertion was successful (true) or not (false). -func HTTPError(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msgAndArgs ...interface{}) { - if assert.HTTPError(t, handler, method, url, values, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// HTTPErrorf asserts that a specified handler returns an error status code. -// -// assert.HTTPErrorf(t, myHandler, "POST", "/a/b/c", url.Values{"a": []string{"b", "c"}} -// -// Returns whether the assertion was successful (true, "error message %s", "formatted") or not (false). -func HTTPErrorf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) { - if assert.HTTPErrorf(t, handler, method, url, values, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// HTTPRedirect asserts that a specified handler returns a redirect status code. -// -// assert.HTTPRedirect(t, myHandler, "GET", "/a/b/c", url.Values{"a": []string{"b", "c"}} -// -// Returns whether the assertion was successful (true) or not (false). -func HTTPRedirect(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msgAndArgs ...interface{}) { - if assert.HTTPRedirect(t, handler, method, url, values, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// HTTPRedirectf asserts that a specified handler returns a redirect status code. -// -// assert.HTTPRedirectf(t, myHandler, "GET", "/a/b/c", url.Values{"a": []string{"b", "c"}} -// -// Returns whether the assertion was successful (true, "error message %s", "formatted") or not (false). -func HTTPRedirectf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) { - if assert.HTTPRedirectf(t, handler, method, url, values, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// HTTPSuccess asserts that a specified handler returns a success status code. -// -// assert.HTTPSuccess(t, myHandler, "POST", "http://www.google.com", nil) -// -// Returns whether the assertion was successful (true) or not (false). -func HTTPSuccess(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msgAndArgs ...interface{}) { - if assert.HTTPSuccess(t, handler, method, url, values, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// HTTPSuccessf asserts that a specified handler returns a success status code. -// -// assert.HTTPSuccessf(t, myHandler, "POST", "http://www.google.com", nil, "error message %s", "formatted") -// -// Returns whether the assertion was successful (true) or not (false). -func HTTPSuccessf(t TestingT, handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) { - if assert.HTTPSuccessf(t, handler, method, url, values, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Implements asserts that an object is implemented by the specified interface. -// -// assert.Implements(t, (*MyInterface)(nil), new(MyObject)) -func Implements(t TestingT, interfaceObject interface{}, object interface{}, msgAndArgs ...interface{}) { - if assert.Implements(t, interfaceObject, object, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Implementsf asserts that an object is implemented by the specified interface. -// -// assert.Implementsf(t, (*MyInterface, "error message %s", "formatted")(nil), new(MyObject)) -func Implementsf(t TestingT, interfaceObject interface{}, object interface{}, msg string, args ...interface{}) { - if assert.Implementsf(t, interfaceObject, object, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// InDelta asserts that the two numerals are within delta of each other. -// -// assert.InDelta(t, math.Pi, (22 / 7.0), 0.01) -func InDelta(t TestingT, expected interface{}, actual interface{}, delta float64, msgAndArgs ...interface{}) { - if assert.InDelta(t, expected, actual, delta, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// InDeltaMapValues is the same as InDelta, but it compares all values between two maps. Both maps must have exactly the same keys. -func InDeltaMapValues(t TestingT, expected interface{}, actual interface{}, delta float64, msgAndArgs ...interface{}) { - if assert.InDeltaMapValues(t, expected, actual, delta, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// InDeltaMapValuesf is the same as InDelta, but it compares all values between two maps. Both maps must have exactly the same keys. -func InDeltaMapValuesf(t TestingT, expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) { - if assert.InDeltaMapValuesf(t, expected, actual, delta, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// InDeltaSlice is the same as InDelta, except it compares two slices. -func InDeltaSlice(t TestingT, expected interface{}, actual interface{}, delta float64, msgAndArgs ...interface{}) { - if assert.InDeltaSlice(t, expected, actual, delta, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// InDeltaSlicef is the same as InDelta, except it compares two slices. -func InDeltaSlicef(t TestingT, expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) { - if assert.InDeltaSlicef(t, expected, actual, delta, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// InDeltaf asserts that the two numerals are within delta of each other. -// -// assert.InDeltaf(t, math.Pi, (22 / 7.0, "error message %s", "formatted"), 0.01) -func InDeltaf(t TestingT, expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) { - if assert.InDeltaf(t, expected, actual, delta, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// InEpsilon asserts that expected and actual have a relative error less than epsilon -func InEpsilon(t TestingT, expected interface{}, actual interface{}, epsilon float64, msgAndArgs ...interface{}) { - if assert.InEpsilon(t, expected, actual, epsilon, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// InEpsilonSlice is the same as InEpsilon, except it compares each value from two slices. -func InEpsilonSlice(t TestingT, expected interface{}, actual interface{}, epsilon float64, msgAndArgs ...interface{}) { - if assert.InEpsilonSlice(t, expected, actual, epsilon, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// InEpsilonSlicef is the same as InEpsilon, except it compares each value from two slices. -func InEpsilonSlicef(t TestingT, expected interface{}, actual interface{}, epsilon float64, msg string, args ...interface{}) { - if assert.InEpsilonSlicef(t, expected, actual, epsilon, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// InEpsilonf asserts that expected and actual have a relative error less than epsilon -func InEpsilonf(t TestingT, expected interface{}, actual interface{}, epsilon float64, msg string, args ...interface{}) { - if assert.InEpsilonf(t, expected, actual, epsilon, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// IsType asserts that the specified objects are of the same type. -func IsType(t TestingT, expectedType interface{}, object interface{}, msgAndArgs ...interface{}) { - if assert.IsType(t, expectedType, object, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// IsTypef asserts that the specified objects are of the same type. -func IsTypef(t TestingT, expectedType interface{}, object interface{}, msg string, args ...interface{}) { - if assert.IsTypef(t, expectedType, object, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// JSONEq asserts that two JSON strings are equivalent. -// -// assert.JSONEq(t, `{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`) -func JSONEq(t TestingT, expected string, actual string, msgAndArgs ...interface{}) { - if assert.JSONEq(t, expected, actual, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// JSONEqf asserts that two JSON strings are equivalent. -// -// assert.JSONEqf(t, `{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`, "error message %s", "formatted") -func JSONEqf(t TestingT, expected string, actual string, msg string, args ...interface{}) { - if assert.JSONEqf(t, expected, actual, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Len asserts that the specified object has specific length. -// Len also fails if the object has a type that len() not accept. -// -// assert.Len(t, mySlice, 3) -func Len(t TestingT, object interface{}, length int, msgAndArgs ...interface{}) { - if assert.Len(t, object, length, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Lenf asserts that the specified object has specific length. -// Lenf also fails if the object has a type that len() not accept. -// -// assert.Lenf(t, mySlice, 3, "error message %s", "formatted") -func Lenf(t TestingT, object interface{}, length int, msg string, args ...interface{}) { - if assert.Lenf(t, object, length, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Nil asserts that the specified object is nil. -// -// assert.Nil(t, err) -func Nil(t TestingT, object interface{}, msgAndArgs ...interface{}) { - if assert.Nil(t, object, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Nilf asserts that the specified object is nil. -// -// assert.Nilf(t, err, "error message %s", "formatted") -func Nilf(t TestingT, object interface{}, msg string, args ...interface{}) { - if assert.Nilf(t, object, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// NoError asserts that a function returned no error (i.e. `nil`). -// -// actualObj, err := SomeFunction() -// if assert.NoError(t, err) { -// assert.Equal(t, expectedObj, actualObj) -// } -func NoError(t TestingT, err error, msgAndArgs ...interface{}) { - if assert.NoError(t, err, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// NoErrorf asserts that a function returned no error (i.e. `nil`). -// -// actualObj, err := SomeFunction() -// if assert.NoErrorf(t, err, "error message %s", "formatted") { -// assert.Equal(t, expectedObj, actualObj) -// } -func NoErrorf(t TestingT, err error, msg string, args ...interface{}) { - if assert.NoErrorf(t, err, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// NotContains asserts that the specified string, list(array, slice...) or map does NOT contain the -// specified substring or element. -// -// assert.NotContains(t, "Hello World", "Earth") -// assert.NotContains(t, ["Hello", "World"], "Earth") -// assert.NotContains(t, {"Hello": "World"}, "Earth") -func NotContains(t TestingT, s interface{}, contains interface{}, msgAndArgs ...interface{}) { - if assert.NotContains(t, s, contains, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// NotContainsf asserts that the specified string, list(array, slice...) or map does NOT contain the -// specified substring or element. -// -// assert.NotContainsf(t, "Hello World", "Earth", "error message %s", "formatted") -// assert.NotContainsf(t, ["Hello", "World"], "Earth", "error message %s", "formatted") -// assert.NotContainsf(t, {"Hello": "World"}, "Earth", "error message %s", "formatted") -func NotContainsf(t TestingT, s interface{}, contains interface{}, msg string, args ...interface{}) { - if assert.NotContainsf(t, s, contains, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// NotEmpty asserts that the specified object is NOT empty. I.e. not nil, "", false, 0 or either -// a slice or a channel with len == 0. -// -// if assert.NotEmpty(t, obj) { -// assert.Equal(t, "two", obj[1]) -// } -func NotEmpty(t TestingT, object interface{}, msgAndArgs ...interface{}) { - if assert.NotEmpty(t, object, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// NotEmptyf asserts that the specified object is NOT empty. I.e. not nil, "", false, 0 or either -// a slice or a channel with len == 0. -// -// if assert.NotEmptyf(t, obj, "error message %s", "formatted") { -// assert.Equal(t, "two", obj[1]) -// } -func NotEmptyf(t TestingT, object interface{}, msg string, args ...interface{}) { - if assert.NotEmptyf(t, object, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// NotEqual asserts that the specified values are NOT equal. -// -// assert.NotEqual(t, obj1, obj2) -// -// Pointer variable equality is determined based on the equality of the -// referenced values (as opposed to the memory addresses). -func NotEqual(t TestingT, expected interface{}, actual interface{}, msgAndArgs ...interface{}) { - if assert.NotEqual(t, expected, actual, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// NotEqualf asserts that the specified values are NOT equal. -// -// assert.NotEqualf(t, obj1, obj2, "error message %s", "formatted") -// -// Pointer variable equality is determined based on the equality of the -// referenced values (as opposed to the memory addresses). -func NotEqualf(t TestingT, expected interface{}, actual interface{}, msg string, args ...interface{}) { - if assert.NotEqualf(t, expected, actual, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// NotNil asserts that the specified object is not nil. -// -// assert.NotNil(t, err) -func NotNil(t TestingT, object interface{}, msgAndArgs ...interface{}) { - if assert.NotNil(t, object, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// NotNilf asserts that the specified object is not nil. -// -// assert.NotNilf(t, err, "error message %s", "formatted") -func NotNilf(t TestingT, object interface{}, msg string, args ...interface{}) { - if assert.NotNilf(t, object, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// NotPanics asserts that the code inside the specified PanicTestFunc does NOT panic. -// -// assert.NotPanics(t, func(){ RemainCalm() }) -func NotPanics(t TestingT, f assert.PanicTestFunc, msgAndArgs ...interface{}) { - if assert.NotPanics(t, f, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// NotPanicsf asserts that the code inside the specified PanicTestFunc does NOT panic. -// -// assert.NotPanicsf(t, func(){ RemainCalm() }, "error message %s", "formatted") -func NotPanicsf(t TestingT, f assert.PanicTestFunc, msg string, args ...interface{}) { - if assert.NotPanicsf(t, f, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// NotRegexp asserts that a specified regexp does not match a string. -// -// assert.NotRegexp(t, regexp.MustCompile("starts"), "it's starting") -// assert.NotRegexp(t, "^start", "it's not starting") -func NotRegexp(t TestingT, rx interface{}, str interface{}, msgAndArgs ...interface{}) { - if assert.NotRegexp(t, rx, str, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// NotRegexpf asserts that a specified regexp does not match a string. -// -// assert.NotRegexpf(t, regexp.MustCompile("starts", "error message %s", "formatted"), "it's starting") -// assert.NotRegexpf(t, "^start", "it's not starting", "error message %s", "formatted") -func NotRegexpf(t TestingT, rx interface{}, str interface{}, msg string, args ...interface{}) { - if assert.NotRegexpf(t, rx, str, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// NotSubset asserts that the specified list(array, slice...) contains not all -// elements given in the specified subset(array, slice...). -// -// assert.NotSubset(t, [1, 3, 4], [1, 2], "But [1, 3, 4] does not contain [1, 2]") -func NotSubset(t TestingT, list interface{}, subset interface{}, msgAndArgs ...interface{}) { - if assert.NotSubset(t, list, subset, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// NotSubsetf asserts that the specified list(array, slice...) contains not all -// elements given in the specified subset(array, slice...). -// -// assert.NotSubsetf(t, [1, 3, 4], [1, 2], "But [1, 3, 4] does not contain [1, 2]", "error message %s", "formatted") -func NotSubsetf(t TestingT, list interface{}, subset interface{}, msg string, args ...interface{}) { - if assert.NotSubsetf(t, list, subset, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// NotZero asserts that i is not the zero value for its type. -func NotZero(t TestingT, i interface{}, msgAndArgs ...interface{}) { - if assert.NotZero(t, i, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// NotZerof asserts that i is not the zero value for its type. -func NotZerof(t TestingT, i interface{}, msg string, args ...interface{}) { - if assert.NotZerof(t, i, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Panics asserts that the code inside the specified PanicTestFunc panics. -// -// assert.Panics(t, func(){ GoCrazy() }) -func Panics(t TestingT, f assert.PanicTestFunc, msgAndArgs ...interface{}) { - if assert.Panics(t, f, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// PanicsWithValue asserts that the code inside the specified PanicTestFunc panics, and that -// the recovered panic value equals the expected panic value. -// -// assert.PanicsWithValue(t, "crazy error", func(){ GoCrazy() }) -func PanicsWithValue(t TestingT, expected interface{}, f assert.PanicTestFunc, msgAndArgs ...interface{}) { - if assert.PanicsWithValue(t, expected, f, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// PanicsWithValuef asserts that the code inside the specified PanicTestFunc panics, and that -// the recovered panic value equals the expected panic value. -// -// assert.PanicsWithValuef(t, "crazy error", func(){ GoCrazy() }, "error message %s", "formatted") -func PanicsWithValuef(t TestingT, expected interface{}, f assert.PanicTestFunc, msg string, args ...interface{}) { - if assert.PanicsWithValuef(t, expected, f, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Panicsf asserts that the code inside the specified PanicTestFunc panics. -// -// assert.Panicsf(t, func(){ GoCrazy() }, "error message %s", "formatted") -func Panicsf(t TestingT, f assert.PanicTestFunc, msg string, args ...interface{}) { - if assert.Panicsf(t, f, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Regexp asserts that a specified regexp matches a string. -// -// assert.Regexp(t, regexp.MustCompile("start"), "it's starting") -// assert.Regexp(t, "start...$", "it's not starting") -func Regexp(t TestingT, rx interface{}, str interface{}, msgAndArgs ...interface{}) { - if assert.Regexp(t, rx, str, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Regexpf asserts that a specified regexp matches a string. -// -// assert.Regexpf(t, regexp.MustCompile("start", "error message %s", "formatted"), "it's starting") -// assert.Regexpf(t, "start...$", "it's not starting", "error message %s", "formatted") -func Regexpf(t TestingT, rx interface{}, str interface{}, msg string, args ...interface{}) { - if assert.Regexpf(t, rx, str, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Subset asserts that the specified list(array, slice...) contains all -// elements given in the specified subset(array, slice...). -// -// assert.Subset(t, [1, 2, 3], [1, 2], "But [1, 2, 3] does contain [1, 2]") -func Subset(t TestingT, list interface{}, subset interface{}, msgAndArgs ...interface{}) { - if assert.Subset(t, list, subset, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Subsetf asserts that the specified list(array, slice...) contains all -// elements given in the specified subset(array, slice...). -// -// assert.Subsetf(t, [1, 2, 3], [1, 2], "But [1, 2, 3] does contain [1, 2]", "error message %s", "formatted") -func Subsetf(t TestingT, list interface{}, subset interface{}, msg string, args ...interface{}) { - if assert.Subsetf(t, list, subset, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// True asserts that the specified value is true. -// -// assert.True(t, myBool) -func True(t TestingT, value bool, msgAndArgs ...interface{}) { - if assert.True(t, value, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Truef asserts that the specified value is true. -// -// assert.Truef(t, myBool, "error message %s", "formatted") -func Truef(t TestingT, value bool, msg string, args ...interface{}) { - if assert.Truef(t, value, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// WithinDuration asserts that the two times are within duration delta of each other. -// -// assert.WithinDuration(t, time.Now(), time.Now(), 10*time.Second) -func WithinDuration(t TestingT, expected time.Time, actual time.Time, delta time.Duration, msgAndArgs ...interface{}) { - if assert.WithinDuration(t, expected, actual, delta, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// WithinDurationf asserts that the two times are within duration delta of each other. -// -// assert.WithinDurationf(t, time.Now(), time.Now(), 10*time.Second, "error message %s", "formatted") -func WithinDurationf(t TestingT, expected time.Time, actual time.Time, delta time.Duration, msg string, args ...interface{}) { - if assert.WithinDurationf(t, expected, actual, delta, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Zero asserts that i is the zero value for its type. -func Zero(t TestingT, i interface{}, msgAndArgs ...interface{}) { - if assert.Zero(t, i, msgAndArgs...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} - -// Zerof asserts that i is the zero value for its type. -func Zerof(t TestingT, i interface{}, msg string, args ...interface{}) { - if assert.Zerof(t, i, msg, args...) { - return - } - if h, ok := t.(tHelper); ok { - h.Helper() - } - t.FailNow() -} diff --git a/vendor/github.com/stretchr/testify/require/require.go.tmpl b/vendor/github.com/stretchr/testify/require/require.go.tmpl deleted file mode 100644 index 6ffc751b..00000000 --- a/vendor/github.com/stretchr/testify/require/require.go.tmpl +++ /dev/null @@ -1,6 +0,0 @@ -{{.Comment}} -func {{.DocInfo.Name}}(t TestingT, {{.Params}}) { - if assert.{{.DocInfo.Name}}(t, {{.ForwardedParams}}) { return } - if h, ok := t.(tHelper); ok { h.Helper() } - t.FailNow() -} diff --git a/vendor/github.com/stretchr/testify/require/require_forward.go b/vendor/github.com/stretchr/testify/require/require_forward.go deleted file mode 100644 index 9fe41dbd..00000000 --- a/vendor/github.com/stretchr/testify/require/require_forward.go +++ /dev/null @@ -1,957 +0,0 @@ -/* -* CODE GENERATED AUTOMATICALLY WITH github.com/stretchr/testify/_codegen -* THIS FILE MUST NOT BE EDITED BY HAND - */ - -package require - -import ( - assert "github.com/stretchr/testify/assert" - http "net/http" - url "net/url" - time "time" -) - -// Condition uses a Comparison to assert a complex condition. -func (a *Assertions) Condition(comp assert.Comparison, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Condition(a.t, comp, msgAndArgs...) -} - -// Conditionf uses a Comparison to assert a complex condition. -func (a *Assertions) Conditionf(comp assert.Comparison, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Conditionf(a.t, comp, msg, args...) -} - -// Contains asserts that the specified string, list(array, slice...) or map contains the -// specified substring or element. -// -// a.Contains("Hello World", "World") -// a.Contains(["Hello", "World"], "World") -// a.Contains({"Hello": "World"}, "Hello") -func (a *Assertions) Contains(s interface{}, contains interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Contains(a.t, s, contains, msgAndArgs...) -} - -// Containsf asserts that the specified string, list(array, slice...) or map contains the -// specified substring or element. -// -// a.Containsf("Hello World", "World", "error message %s", "formatted") -// a.Containsf(["Hello", "World"], "World", "error message %s", "formatted") -// a.Containsf({"Hello": "World"}, "Hello", "error message %s", "formatted") -func (a *Assertions) Containsf(s interface{}, contains interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Containsf(a.t, s, contains, msg, args...) -} - -// DirExists checks whether a directory exists in the given path. It also fails if the path is a file rather a directory or there is an error checking whether it exists. -func (a *Assertions) DirExists(path string, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - DirExists(a.t, path, msgAndArgs...) -} - -// DirExistsf checks whether a directory exists in the given path. It also fails if the path is a file rather a directory or there is an error checking whether it exists. -func (a *Assertions) DirExistsf(path string, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - DirExistsf(a.t, path, msg, args...) -} - -// ElementsMatch asserts that the specified listA(array, slice...) is equal to specified -// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, -// the number of appearances of each of them in both lists should match. -// -// a.ElementsMatch([1, 3, 2, 3], [1, 3, 3, 2]) -func (a *Assertions) ElementsMatch(listA interface{}, listB interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - ElementsMatch(a.t, listA, listB, msgAndArgs...) -} - -// ElementsMatchf asserts that the specified listA(array, slice...) is equal to specified -// listB(array, slice...) ignoring the order of the elements. If there are duplicate elements, -// the number of appearances of each of them in both lists should match. -// -// a.ElementsMatchf([1, 3, 2, 3], [1, 3, 3, 2], "error message %s", "formatted") -func (a *Assertions) ElementsMatchf(listA interface{}, listB interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - ElementsMatchf(a.t, listA, listB, msg, args...) -} - -// Empty asserts that the specified object is empty. I.e. nil, "", false, 0 or either -// a slice or a channel with len == 0. -// -// a.Empty(obj) -func (a *Assertions) Empty(object interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Empty(a.t, object, msgAndArgs...) -} - -// Emptyf asserts that the specified object is empty. I.e. nil, "", false, 0 or either -// a slice or a channel with len == 0. -// -// a.Emptyf(obj, "error message %s", "formatted") -func (a *Assertions) Emptyf(object interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Emptyf(a.t, object, msg, args...) -} - -// Equal asserts that two objects are equal. -// -// a.Equal(123, 123) -// -// Pointer variable equality is determined based on the equality of the -// referenced values (as opposed to the memory addresses). Function equality -// cannot be determined and will always fail. -func (a *Assertions) Equal(expected interface{}, actual interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Equal(a.t, expected, actual, msgAndArgs...) -} - -// EqualError asserts that a function returned an error (i.e. not `nil`) -// and that it is equal to the provided error. -// -// actualObj, err := SomeFunction() -// a.EqualError(err, expectedErrorString) -func (a *Assertions) EqualError(theError error, errString string, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - EqualError(a.t, theError, errString, msgAndArgs...) -} - -// EqualErrorf asserts that a function returned an error (i.e. not `nil`) -// and that it is equal to the provided error. -// -// actualObj, err := SomeFunction() -// a.EqualErrorf(err, expectedErrorString, "error message %s", "formatted") -func (a *Assertions) EqualErrorf(theError error, errString string, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - EqualErrorf(a.t, theError, errString, msg, args...) -} - -// EqualValues asserts that two objects are equal or convertable to the same types -// and equal. -// -// a.EqualValues(uint32(123), int32(123)) -func (a *Assertions) EqualValues(expected interface{}, actual interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - EqualValues(a.t, expected, actual, msgAndArgs...) -} - -// EqualValuesf asserts that two objects are equal or convertable to the same types -// and equal. -// -// a.EqualValuesf(uint32(123, "error message %s", "formatted"), int32(123)) -func (a *Assertions) EqualValuesf(expected interface{}, actual interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - EqualValuesf(a.t, expected, actual, msg, args...) -} - -// Equalf asserts that two objects are equal. -// -// a.Equalf(123, 123, "error message %s", "formatted") -// -// Pointer variable equality is determined based on the equality of the -// referenced values (as opposed to the memory addresses). Function equality -// cannot be determined and will always fail. -func (a *Assertions) Equalf(expected interface{}, actual interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Equalf(a.t, expected, actual, msg, args...) -} - -// Error asserts that a function returned an error (i.e. not `nil`). -// -// actualObj, err := SomeFunction() -// if a.Error(err) { -// assert.Equal(t, expectedError, err) -// } -func (a *Assertions) Error(err error, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Error(a.t, err, msgAndArgs...) -} - -// Errorf asserts that a function returned an error (i.e. not `nil`). -// -// actualObj, err := SomeFunction() -// if a.Errorf(err, "error message %s", "formatted") { -// assert.Equal(t, expectedErrorf, err) -// } -func (a *Assertions) Errorf(err error, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Errorf(a.t, err, msg, args...) -} - -// Exactly asserts that two objects are equal in value and type. -// -// a.Exactly(int32(123), int64(123)) -func (a *Assertions) Exactly(expected interface{}, actual interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Exactly(a.t, expected, actual, msgAndArgs...) -} - -// Exactlyf asserts that two objects are equal in value and type. -// -// a.Exactlyf(int32(123, "error message %s", "formatted"), int64(123)) -func (a *Assertions) Exactlyf(expected interface{}, actual interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Exactlyf(a.t, expected, actual, msg, args...) -} - -// Fail reports a failure through -func (a *Assertions) Fail(failureMessage string, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Fail(a.t, failureMessage, msgAndArgs...) -} - -// FailNow fails test -func (a *Assertions) FailNow(failureMessage string, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - FailNow(a.t, failureMessage, msgAndArgs...) -} - -// FailNowf fails test -func (a *Assertions) FailNowf(failureMessage string, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - FailNowf(a.t, failureMessage, msg, args...) -} - -// Failf reports a failure through -func (a *Assertions) Failf(failureMessage string, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Failf(a.t, failureMessage, msg, args...) -} - -// False asserts that the specified value is false. -// -// a.False(myBool) -func (a *Assertions) False(value bool, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - False(a.t, value, msgAndArgs...) -} - -// Falsef asserts that the specified value is false. -// -// a.Falsef(myBool, "error message %s", "formatted") -func (a *Assertions) Falsef(value bool, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Falsef(a.t, value, msg, args...) -} - -// FileExists checks whether a file exists in the given path. It also fails if the path points to a directory or there is an error when trying to check the file. -func (a *Assertions) FileExists(path string, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - FileExists(a.t, path, msgAndArgs...) -} - -// FileExistsf checks whether a file exists in the given path. It also fails if the path points to a directory or there is an error when trying to check the file. -func (a *Assertions) FileExistsf(path string, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - FileExistsf(a.t, path, msg, args...) -} - -// HTTPBodyContains asserts that a specified handler returns a -// body that contains a string. -// -// a.HTTPBodyContains(myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky") -// -// Returns whether the assertion was successful (true) or not (false). -func (a *Assertions) HTTPBodyContains(handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - HTTPBodyContains(a.t, handler, method, url, values, str, msgAndArgs...) -} - -// HTTPBodyContainsf asserts that a specified handler returns a -// body that contains a string. -// -// a.HTTPBodyContainsf(myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky", "error message %s", "formatted") -// -// Returns whether the assertion was successful (true) or not (false). -func (a *Assertions) HTTPBodyContainsf(handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - HTTPBodyContainsf(a.t, handler, method, url, values, str, msg, args...) -} - -// HTTPBodyNotContains asserts that a specified handler returns a -// body that does not contain a string. -// -// a.HTTPBodyNotContains(myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky") -// -// Returns whether the assertion was successful (true) or not (false). -func (a *Assertions) HTTPBodyNotContains(handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - HTTPBodyNotContains(a.t, handler, method, url, values, str, msgAndArgs...) -} - -// HTTPBodyNotContainsf asserts that a specified handler returns a -// body that does not contain a string. -// -// a.HTTPBodyNotContainsf(myHandler, "GET", "www.google.com", nil, "I'm Feeling Lucky", "error message %s", "formatted") -// -// Returns whether the assertion was successful (true) or not (false). -func (a *Assertions) HTTPBodyNotContainsf(handler http.HandlerFunc, method string, url string, values url.Values, str interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - HTTPBodyNotContainsf(a.t, handler, method, url, values, str, msg, args...) -} - -// HTTPError asserts that a specified handler returns an error status code. -// -// a.HTTPError(myHandler, "POST", "/a/b/c", url.Values{"a": []string{"b", "c"}} -// -// Returns whether the assertion was successful (true) or not (false). -func (a *Assertions) HTTPError(handler http.HandlerFunc, method string, url string, values url.Values, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - HTTPError(a.t, handler, method, url, values, msgAndArgs...) -} - -// HTTPErrorf asserts that a specified handler returns an error status code. -// -// a.HTTPErrorf(myHandler, "POST", "/a/b/c", url.Values{"a": []string{"b", "c"}} -// -// Returns whether the assertion was successful (true, "error message %s", "formatted") or not (false). -func (a *Assertions) HTTPErrorf(handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - HTTPErrorf(a.t, handler, method, url, values, msg, args...) -} - -// HTTPRedirect asserts that a specified handler returns a redirect status code. -// -// a.HTTPRedirect(myHandler, "GET", "/a/b/c", url.Values{"a": []string{"b", "c"}} -// -// Returns whether the assertion was successful (true) or not (false). -func (a *Assertions) HTTPRedirect(handler http.HandlerFunc, method string, url string, values url.Values, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - HTTPRedirect(a.t, handler, method, url, values, msgAndArgs...) -} - -// HTTPRedirectf asserts that a specified handler returns a redirect status code. -// -// a.HTTPRedirectf(myHandler, "GET", "/a/b/c", url.Values{"a": []string{"b", "c"}} -// -// Returns whether the assertion was successful (true, "error message %s", "formatted") or not (false). -func (a *Assertions) HTTPRedirectf(handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - HTTPRedirectf(a.t, handler, method, url, values, msg, args...) -} - -// HTTPSuccess asserts that a specified handler returns a success status code. -// -// a.HTTPSuccess(myHandler, "POST", "http://www.google.com", nil) -// -// Returns whether the assertion was successful (true) or not (false). -func (a *Assertions) HTTPSuccess(handler http.HandlerFunc, method string, url string, values url.Values, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - HTTPSuccess(a.t, handler, method, url, values, msgAndArgs...) -} - -// HTTPSuccessf asserts that a specified handler returns a success status code. -// -// a.HTTPSuccessf(myHandler, "POST", "http://www.google.com", nil, "error message %s", "formatted") -// -// Returns whether the assertion was successful (true) or not (false). -func (a *Assertions) HTTPSuccessf(handler http.HandlerFunc, method string, url string, values url.Values, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - HTTPSuccessf(a.t, handler, method, url, values, msg, args...) -} - -// Implements asserts that an object is implemented by the specified interface. -// -// a.Implements((*MyInterface)(nil), new(MyObject)) -func (a *Assertions) Implements(interfaceObject interface{}, object interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Implements(a.t, interfaceObject, object, msgAndArgs...) -} - -// Implementsf asserts that an object is implemented by the specified interface. -// -// a.Implementsf((*MyInterface, "error message %s", "formatted")(nil), new(MyObject)) -func (a *Assertions) Implementsf(interfaceObject interface{}, object interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Implementsf(a.t, interfaceObject, object, msg, args...) -} - -// InDelta asserts that the two numerals are within delta of each other. -// -// a.InDelta(math.Pi, (22 / 7.0), 0.01) -func (a *Assertions) InDelta(expected interface{}, actual interface{}, delta float64, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - InDelta(a.t, expected, actual, delta, msgAndArgs...) -} - -// InDeltaMapValues is the same as InDelta, but it compares all values between two maps. Both maps must have exactly the same keys. -func (a *Assertions) InDeltaMapValues(expected interface{}, actual interface{}, delta float64, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - InDeltaMapValues(a.t, expected, actual, delta, msgAndArgs...) -} - -// InDeltaMapValuesf is the same as InDelta, but it compares all values between two maps. Both maps must have exactly the same keys. -func (a *Assertions) InDeltaMapValuesf(expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - InDeltaMapValuesf(a.t, expected, actual, delta, msg, args...) -} - -// InDeltaSlice is the same as InDelta, except it compares two slices. -func (a *Assertions) InDeltaSlice(expected interface{}, actual interface{}, delta float64, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - InDeltaSlice(a.t, expected, actual, delta, msgAndArgs...) -} - -// InDeltaSlicef is the same as InDelta, except it compares two slices. -func (a *Assertions) InDeltaSlicef(expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - InDeltaSlicef(a.t, expected, actual, delta, msg, args...) -} - -// InDeltaf asserts that the two numerals are within delta of each other. -// -// a.InDeltaf(math.Pi, (22 / 7.0, "error message %s", "formatted"), 0.01) -func (a *Assertions) InDeltaf(expected interface{}, actual interface{}, delta float64, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - InDeltaf(a.t, expected, actual, delta, msg, args...) -} - -// InEpsilon asserts that expected and actual have a relative error less than epsilon -func (a *Assertions) InEpsilon(expected interface{}, actual interface{}, epsilon float64, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - InEpsilon(a.t, expected, actual, epsilon, msgAndArgs...) -} - -// InEpsilonSlice is the same as InEpsilon, except it compares each value from two slices. -func (a *Assertions) InEpsilonSlice(expected interface{}, actual interface{}, epsilon float64, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - InEpsilonSlice(a.t, expected, actual, epsilon, msgAndArgs...) -} - -// InEpsilonSlicef is the same as InEpsilon, except it compares each value from two slices. -func (a *Assertions) InEpsilonSlicef(expected interface{}, actual interface{}, epsilon float64, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - InEpsilonSlicef(a.t, expected, actual, epsilon, msg, args...) -} - -// InEpsilonf asserts that expected and actual have a relative error less than epsilon -func (a *Assertions) InEpsilonf(expected interface{}, actual interface{}, epsilon float64, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - InEpsilonf(a.t, expected, actual, epsilon, msg, args...) -} - -// IsType asserts that the specified objects are of the same type. -func (a *Assertions) IsType(expectedType interface{}, object interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - IsType(a.t, expectedType, object, msgAndArgs...) -} - -// IsTypef asserts that the specified objects are of the same type. -func (a *Assertions) IsTypef(expectedType interface{}, object interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - IsTypef(a.t, expectedType, object, msg, args...) -} - -// JSONEq asserts that two JSON strings are equivalent. -// -// a.JSONEq(`{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`) -func (a *Assertions) JSONEq(expected string, actual string, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - JSONEq(a.t, expected, actual, msgAndArgs...) -} - -// JSONEqf asserts that two JSON strings are equivalent. -// -// a.JSONEqf(`{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`, "error message %s", "formatted") -func (a *Assertions) JSONEqf(expected string, actual string, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - JSONEqf(a.t, expected, actual, msg, args...) -} - -// Len asserts that the specified object has specific length. -// Len also fails if the object has a type that len() not accept. -// -// a.Len(mySlice, 3) -func (a *Assertions) Len(object interface{}, length int, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Len(a.t, object, length, msgAndArgs...) -} - -// Lenf asserts that the specified object has specific length. -// Lenf also fails if the object has a type that len() not accept. -// -// a.Lenf(mySlice, 3, "error message %s", "formatted") -func (a *Assertions) Lenf(object interface{}, length int, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Lenf(a.t, object, length, msg, args...) -} - -// Nil asserts that the specified object is nil. -// -// a.Nil(err) -func (a *Assertions) Nil(object interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Nil(a.t, object, msgAndArgs...) -} - -// Nilf asserts that the specified object is nil. -// -// a.Nilf(err, "error message %s", "formatted") -func (a *Assertions) Nilf(object interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Nilf(a.t, object, msg, args...) -} - -// NoError asserts that a function returned no error (i.e. `nil`). -// -// actualObj, err := SomeFunction() -// if a.NoError(err) { -// assert.Equal(t, expectedObj, actualObj) -// } -func (a *Assertions) NoError(err error, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - NoError(a.t, err, msgAndArgs...) -} - -// NoErrorf asserts that a function returned no error (i.e. `nil`). -// -// actualObj, err := SomeFunction() -// if a.NoErrorf(err, "error message %s", "formatted") { -// assert.Equal(t, expectedObj, actualObj) -// } -func (a *Assertions) NoErrorf(err error, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - NoErrorf(a.t, err, msg, args...) -} - -// NotContains asserts that the specified string, list(array, slice...) or map does NOT contain the -// specified substring or element. -// -// a.NotContains("Hello World", "Earth") -// a.NotContains(["Hello", "World"], "Earth") -// a.NotContains({"Hello": "World"}, "Earth") -func (a *Assertions) NotContains(s interface{}, contains interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - NotContains(a.t, s, contains, msgAndArgs...) -} - -// NotContainsf asserts that the specified string, list(array, slice...) or map does NOT contain the -// specified substring or element. -// -// a.NotContainsf("Hello World", "Earth", "error message %s", "formatted") -// a.NotContainsf(["Hello", "World"], "Earth", "error message %s", "formatted") -// a.NotContainsf({"Hello": "World"}, "Earth", "error message %s", "formatted") -func (a *Assertions) NotContainsf(s interface{}, contains interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - NotContainsf(a.t, s, contains, msg, args...) -} - -// NotEmpty asserts that the specified object is NOT empty. I.e. not nil, "", false, 0 or either -// a slice or a channel with len == 0. -// -// if a.NotEmpty(obj) { -// assert.Equal(t, "two", obj[1]) -// } -func (a *Assertions) NotEmpty(object interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - NotEmpty(a.t, object, msgAndArgs...) -} - -// NotEmptyf asserts that the specified object is NOT empty. I.e. not nil, "", false, 0 or either -// a slice or a channel with len == 0. -// -// if a.NotEmptyf(obj, "error message %s", "formatted") { -// assert.Equal(t, "two", obj[1]) -// } -func (a *Assertions) NotEmptyf(object interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - NotEmptyf(a.t, object, msg, args...) -} - -// NotEqual asserts that the specified values are NOT equal. -// -// a.NotEqual(obj1, obj2) -// -// Pointer variable equality is determined based on the equality of the -// referenced values (as opposed to the memory addresses). -func (a *Assertions) NotEqual(expected interface{}, actual interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - NotEqual(a.t, expected, actual, msgAndArgs...) -} - -// NotEqualf asserts that the specified values are NOT equal. -// -// a.NotEqualf(obj1, obj2, "error message %s", "formatted") -// -// Pointer variable equality is determined based on the equality of the -// referenced values (as opposed to the memory addresses). -func (a *Assertions) NotEqualf(expected interface{}, actual interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - NotEqualf(a.t, expected, actual, msg, args...) -} - -// NotNil asserts that the specified object is not nil. -// -// a.NotNil(err) -func (a *Assertions) NotNil(object interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - NotNil(a.t, object, msgAndArgs...) -} - -// NotNilf asserts that the specified object is not nil. -// -// a.NotNilf(err, "error message %s", "formatted") -func (a *Assertions) NotNilf(object interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - NotNilf(a.t, object, msg, args...) -} - -// NotPanics asserts that the code inside the specified PanicTestFunc does NOT panic. -// -// a.NotPanics(func(){ RemainCalm() }) -func (a *Assertions) NotPanics(f assert.PanicTestFunc, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - NotPanics(a.t, f, msgAndArgs...) -} - -// NotPanicsf asserts that the code inside the specified PanicTestFunc does NOT panic. -// -// a.NotPanicsf(func(){ RemainCalm() }, "error message %s", "formatted") -func (a *Assertions) NotPanicsf(f assert.PanicTestFunc, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - NotPanicsf(a.t, f, msg, args...) -} - -// NotRegexp asserts that a specified regexp does not match a string. -// -// a.NotRegexp(regexp.MustCompile("starts"), "it's starting") -// a.NotRegexp("^start", "it's not starting") -func (a *Assertions) NotRegexp(rx interface{}, str interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - NotRegexp(a.t, rx, str, msgAndArgs...) -} - -// NotRegexpf asserts that a specified regexp does not match a string. -// -// a.NotRegexpf(regexp.MustCompile("starts", "error message %s", "formatted"), "it's starting") -// a.NotRegexpf("^start", "it's not starting", "error message %s", "formatted") -func (a *Assertions) NotRegexpf(rx interface{}, str interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - NotRegexpf(a.t, rx, str, msg, args...) -} - -// NotSubset asserts that the specified list(array, slice...) contains not all -// elements given in the specified subset(array, slice...). -// -// a.NotSubset([1, 3, 4], [1, 2], "But [1, 3, 4] does not contain [1, 2]") -func (a *Assertions) NotSubset(list interface{}, subset interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - NotSubset(a.t, list, subset, msgAndArgs...) -} - -// NotSubsetf asserts that the specified list(array, slice...) contains not all -// elements given in the specified subset(array, slice...). -// -// a.NotSubsetf([1, 3, 4], [1, 2], "But [1, 3, 4] does not contain [1, 2]", "error message %s", "formatted") -func (a *Assertions) NotSubsetf(list interface{}, subset interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - NotSubsetf(a.t, list, subset, msg, args...) -} - -// NotZero asserts that i is not the zero value for its type. -func (a *Assertions) NotZero(i interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - NotZero(a.t, i, msgAndArgs...) -} - -// NotZerof asserts that i is not the zero value for its type. -func (a *Assertions) NotZerof(i interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - NotZerof(a.t, i, msg, args...) -} - -// Panics asserts that the code inside the specified PanicTestFunc panics. -// -// a.Panics(func(){ GoCrazy() }) -func (a *Assertions) Panics(f assert.PanicTestFunc, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Panics(a.t, f, msgAndArgs...) -} - -// PanicsWithValue asserts that the code inside the specified PanicTestFunc panics, and that -// the recovered panic value equals the expected panic value. -// -// a.PanicsWithValue("crazy error", func(){ GoCrazy() }) -func (a *Assertions) PanicsWithValue(expected interface{}, f assert.PanicTestFunc, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - PanicsWithValue(a.t, expected, f, msgAndArgs...) -} - -// PanicsWithValuef asserts that the code inside the specified PanicTestFunc panics, and that -// the recovered panic value equals the expected panic value. -// -// a.PanicsWithValuef("crazy error", func(){ GoCrazy() }, "error message %s", "formatted") -func (a *Assertions) PanicsWithValuef(expected interface{}, f assert.PanicTestFunc, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - PanicsWithValuef(a.t, expected, f, msg, args...) -} - -// Panicsf asserts that the code inside the specified PanicTestFunc panics. -// -// a.Panicsf(func(){ GoCrazy() }, "error message %s", "formatted") -func (a *Assertions) Panicsf(f assert.PanicTestFunc, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Panicsf(a.t, f, msg, args...) -} - -// Regexp asserts that a specified regexp matches a string. -// -// a.Regexp(regexp.MustCompile("start"), "it's starting") -// a.Regexp("start...$", "it's not starting") -func (a *Assertions) Regexp(rx interface{}, str interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Regexp(a.t, rx, str, msgAndArgs...) -} - -// Regexpf asserts that a specified regexp matches a string. -// -// a.Regexpf(regexp.MustCompile("start", "error message %s", "formatted"), "it's starting") -// a.Regexpf("start...$", "it's not starting", "error message %s", "formatted") -func (a *Assertions) Regexpf(rx interface{}, str interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Regexpf(a.t, rx, str, msg, args...) -} - -// Subset asserts that the specified list(array, slice...) contains all -// elements given in the specified subset(array, slice...). -// -// a.Subset([1, 2, 3], [1, 2], "But [1, 2, 3] does contain [1, 2]") -func (a *Assertions) Subset(list interface{}, subset interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Subset(a.t, list, subset, msgAndArgs...) -} - -// Subsetf asserts that the specified list(array, slice...) contains all -// elements given in the specified subset(array, slice...). -// -// a.Subsetf([1, 2, 3], [1, 2], "But [1, 2, 3] does contain [1, 2]", "error message %s", "formatted") -func (a *Assertions) Subsetf(list interface{}, subset interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Subsetf(a.t, list, subset, msg, args...) -} - -// True asserts that the specified value is true. -// -// a.True(myBool) -func (a *Assertions) True(value bool, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - True(a.t, value, msgAndArgs...) -} - -// Truef asserts that the specified value is true. -// -// a.Truef(myBool, "error message %s", "formatted") -func (a *Assertions) Truef(value bool, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Truef(a.t, value, msg, args...) -} - -// WithinDuration asserts that the two times are within duration delta of each other. -// -// a.WithinDuration(time.Now(), time.Now(), 10*time.Second) -func (a *Assertions) WithinDuration(expected time.Time, actual time.Time, delta time.Duration, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - WithinDuration(a.t, expected, actual, delta, msgAndArgs...) -} - -// WithinDurationf asserts that the two times are within duration delta of each other. -// -// a.WithinDurationf(time.Now(), time.Now(), 10*time.Second, "error message %s", "formatted") -func (a *Assertions) WithinDurationf(expected time.Time, actual time.Time, delta time.Duration, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - WithinDurationf(a.t, expected, actual, delta, msg, args...) -} - -// Zero asserts that i is the zero value for its type. -func (a *Assertions) Zero(i interface{}, msgAndArgs ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Zero(a.t, i, msgAndArgs...) -} - -// Zerof asserts that i is the zero value for its type. -func (a *Assertions) Zerof(i interface{}, msg string, args ...interface{}) { - if h, ok := a.t.(tHelper); ok { - h.Helper() - } - Zerof(a.t, i, msg, args...) -} diff --git a/vendor/github.com/stretchr/testify/require/require_forward.go.tmpl b/vendor/github.com/stretchr/testify/require/require_forward.go.tmpl deleted file mode 100644 index 54124df1..00000000 --- a/vendor/github.com/stretchr/testify/require/require_forward.go.tmpl +++ /dev/null @@ -1,5 +0,0 @@ -{{.CommentWithoutT "a"}} -func (a *Assertions) {{.DocInfo.Name}}({{.Params}}) { - if h, ok := a.t.(tHelper); ok { h.Helper() } - {{.DocInfo.Name}}(a.t, {{.ForwardedParams}}) -} diff --git a/vendor/github.com/stretchr/testify/require/requirements.go b/vendor/github.com/stretchr/testify/require/requirements.go deleted file mode 100644 index 690583a8..00000000 --- a/vendor/github.com/stretchr/testify/require/requirements.go +++ /dev/null @@ -1,29 +0,0 @@ -package require - -// TestingT is an interface wrapper around *testing.T -type TestingT interface { - Errorf(format string, args ...interface{}) - FailNow() -} - -type tHelper interface { - Helper() -} - -// ComparisonAssertionFunc is a common function prototype when comparing two values. Can be useful -// for table driven tests. -type ComparisonAssertionFunc func(TestingT, interface{}, interface{}, ...interface{}) - -// ValueAssertionFunc is a common function prototype when validating a single value. Can be useful -// for table driven tests. -type ValueAssertionFunc func(TestingT, interface{}, ...interface{}) - -// BoolAssertionFunc is a common function prototype when validating a bool value. Can be useful -// for table driven tests. -type BoolAssertionFunc func(TestingT, bool, ...interface{}) - -// ValuesAssertionFunc is a common function prototype when validating an error value. Can be useful -// for table driven tests. -type ErrorAssertionFunc func(TestingT, error, ...interface{}) - -//go:generate go run ../_codegen/main.go -output-package=require -template=require.go.tmpl -include-format-funcs diff --git a/vendor/github.com/stretchr/testify/require/requirements_test.go b/vendor/github.com/stretchr/testify/require/requirements_test.go deleted file mode 100644 index 39467d9a..00000000 --- a/vendor/github.com/stretchr/testify/require/requirements_test.go +++ /dev/null @@ -1,566 +0,0 @@ -package require - -import ( - "encoding/json" - "errors" - "testing" - "time" -) - -// AssertionTesterInterface defines an interface to be used for testing assertion methods -type AssertionTesterInterface interface { - TestMethod() -} - -// AssertionTesterConformingObject is an object that conforms to the AssertionTesterInterface interface -type AssertionTesterConformingObject struct { -} - -func (a *AssertionTesterConformingObject) TestMethod() { -} - -// AssertionTesterNonConformingObject is an object that does not conform to the AssertionTesterInterface interface -type AssertionTesterNonConformingObject struct { -} - -type MockT struct { - Failed bool -} - -func (t *MockT) FailNow() { - t.Failed = true -} - -func (t *MockT) Errorf(format string, args ...interface{}) { - _, _ = format, args -} - -func TestImplements(t *testing.T) { - - Implements(t, (*AssertionTesterInterface)(nil), new(AssertionTesterConformingObject)) - - mockT := new(MockT) - Implements(mockT, (*AssertionTesterInterface)(nil), new(AssertionTesterNonConformingObject)) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestIsType(t *testing.T) { - - IsType(t, new(AssertionTesterConformingObject), new(AssertionTesterConformingObject)) - - mockT := new(MockT) - IsType(mockT, new(AssertionTesterConformingObject), new(AssertionTesterNonConformingObject)) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestEqual(t *testing.T) { - - Equal(t, 1, 1) - - mockT := new(MockT) - Equal(mockT, 1, 2) - if !mockT.Failed { - t.Error("Check should fail") - } - -} - -func TestNotEqual(t *testing.T) { - - NotEqual(t, 1, 2) - mockT := new(MockT) - NotEqual(mockT, 2, 2) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestExactly(t *testing.T) { - - a := float32(1) - b := float32(1) - c := float64(1) - - Exactly(t, a, b) - - mockT := new(MockT) - Exactly(mockT, a, c) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestNotNil(t *testing.T) { - - NotNil(t, new(AssertionTesterConformingObject)) - - mockT := new(MockT) - NotNil(mockT, nil) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestNil(t *testing.T) { - - Nil(t, nil) - - mockT := new(MockT) - Nil(mockT, new(AssertionTesterConformingObject)) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestTrue(t *testing.T) { - - True(t, true) - - mockT := new(MockT) - True(mockT, false) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestFalse(t *testing.T) { - - False(t, false) - - mockT := new(MockT) - False(mockT, true) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestContains(t *testing.T) { - - Contains(t, "Hello World", "Hello") - - mockT := new(MockT) - Contains(mockT, "Hello World", "Salut") - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestNotContains(t *testing.T) { - - NotContains(t, "Hello World", "Hello!") - - mockT := new(MockT) - NotContains(mockT, "Hello World", "Hello") - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestPanics(t *testing.T) { - - Panics(t, func() { - panic("Panic!") - }) - - mockT := new(MockT) - Panics(mockT, func() {}) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestNotPanics(t *testing.T) { - - NotPanics(t, func() {}) - - mockT := new(MockT) - NotPanics(mockT, func() { - panic("Panic!") - }) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestNoError(t *testing.T) { - - NoError(t, nil) - - mockT := new(MockT) - NoError(mockT, errors.New("some error")) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestError(t *testing.T) { - - Error(t, errors.New("some error")) - - mockT := new(MockT) - Error(mockT, nil) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestEqualError(t *testing.T) { - - EqualError(t, errors.New("some error"), "some error") - - mockT := new(MockT) - EqualError(mockT, errors.New("some error"), "Not some error") - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestEmpty(t *testing.T) { - - Empty(t, "") - - mockT := new(MockT) - Empty(mockT, "x") - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestNotEmpty(t *testing.T) { - - NotEmpty(t, "x") - - mockT := new(MockT) - NotEmpty(mockT, "") - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestWithinDuration(t *testing.T) { - - a := time.Now() - b := a.Add(10 * time.Second) - - WithinDuration(t, a, b, 15*time.Second) - - mockT := new(MockT) - WithinDuration(mockT, a, b, 5*time.Second) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestInDelta(t *testing.T) { - - InDelta(t, 1.001, 1, 0.01) - - mockT := new(MockT) - InDelta(mockT, 1, 2, 0.5) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestZero(t *testing.T) { - - Zero(t, "") - - mockT := new(MockT) - Zero(mockT, "x") - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestNotZero(t *testing.T) { - - NotZero(t, "x") - - mockT := new(MockT) - NotZero(mockT, "") - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestJSONEq_EqualSONString(t *testing.T) { - mockT := new(MockT) - JSONEq(mockT, `{"hello": "world", "foo": "bar"}`, `{"hello": "world", "foo": "bar"}`) - if mockT.Failed { - t.Error("Check should pass") - } -} - -func TestJSONEq_EquivalentButNotEqual(t *testing.T) { - mockT := new(MockT) - JSONEq(mockT, `{"hello": "world", "foo": "bar"}`, `{"foo": "bar", "hello": "world"}`) - if mockT.Failed { - t.Error("Check should pass") - } -} - -func TestJSONEq_HashOfArraysAndHashes(t *testing.T) { - mockT := new(MockT) - JSONEq(mockT, "{\r\n\t\"numeric\": 1.5,\r\n\t\"array\": [{\"foo\": \"bar\"}, 1, \"string\", [\"nested\", \"array\", 5.5]],\r\n\t\"hash\": {\"nested\": \"hash\", \"nested_slice\": [\"this\", \"is\", \"nested\"]},\r\n\t\"string\": \"foo\"\r\n}", - "{\r\n\t\"numeric\": 1.5,\r\n\t\"hash\": {\"nested\": \"hash\", \"nested_slice\": [\"this\", \"is\", \"nested\"]},\r\n\t\"string\": \"foo\",\r\n\t\"array\": [{\"foo\": \"bar\"}, 1, \"string\", [\"nested\", \"array\", 5.5]]\r\n}") - if mockT.Failed { - t.Error("Check should pass") - } -} - -func TestJSONEq_Array(t *testing.T) { - mockT := new(MockT) - JSONEq(mockT, `["foo", {"hello": "world", "nested": "hash"}]`, `["foo", {"nested": "hash", "hello": "world"}]`) - if mockT.Failed { - t.Error("Check should pass") - } -} - -func TestJSONEq_HashAndArrayNotEquivalent(t *testing.T) { - mockT := new(MockT) - JSONEq(mockT, `["foo", {"hello": "world", "nested": "hash"}]`, `{"foo": "bar", {"nested": "hash", "hello": "world"}}`) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestJSONEq_HashesNotEquivalent(t *testing.T) { - mockT := new(MockT) - JSONEq(mockT, `{"foo": "bar"}`, `{"foo": "bar", "hello": "world"}`) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestJSONEq_ActualIsNotJSON(t *testing.T) { - mockT := new(MockT) - JSONEq(mockT, `{"foo": "bar"}`, "Not JSON") - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestJSONEq_ExpectedIsNotJSON(t *testing.T) { - mockT := new(MockT) - JSONEq(mockT, "Not JSON", `{"foo": "bar", "hello": "world"}`) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestJSONEq_ExpectedAndActualNotJSON(t *testing.T) { - mockT := new(MockT) - JSONEq(mockT, "Not JSON", "Not JSON") - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func TestJSONEq_ArraysOfDifferentOrder(t *testing.T) { - mockT := new(MockT) - JSONEq(mockT, `["foo", {"hello": "world", "nested": "hash"}]`, `[{ "hello": "world", "nested": "hash"}, "foo"]`) - if !mockT.Failed { - t.Error("Check should fail") - } -} - -func ExampleComparisonAssertionFunc() { - t := &testing.T{} // provided by test - - adder := func(x, y int) int { - return x + y - } - - type args struct { - x int - y int - } - - tests := []struct { - name string - args args - expect int - assertion ComparisonAssertionFunc - }{ - {"2+2=4", args{2, 2}, 4, Equal}, - {"2+2!=5", args{2, 2}, 5, NotEqual}, - {"2+3==5", args{2, 3}, 5, Exactly}, - } - - for _, tt := range tests { - t.Run(tt.name, func(t *testing.T) { - tt.assertion(t, tt.expect, adder(tt.args.x, tt.args.y)) - }) - } -} - -func TestComparisonAssertionFunc(t *testing.T) { - type iface interface { - Name() string - } - - tests := []struct { - name string - expect interface{} - got interface{} - assertion ComparisonAssertionFunc - }{ - {"implements", (*iface)(nil), t, Implements}, - {"isType", (*testing.T)(nil), t, IsType}, - {"equal", t, t, Equal}, - {"equalValues", t, t, EqualValues}, - {"exactly", t, t, Exactly}, - {"notEqual", t, nil, NotEqual}, - {"notContains", []int{1, 2, 3}, 4, NotContains}, - {"subset", []int{1, 2, 3, 4}, []int{2, 3}, Subset}, - {"notSubset", []int{1, 2, 3, 4}, []int{0, 3}, NotSubset}, - {"elementsMatch", []byte("abc"), []byte("bac"), ElementsMatch}, - {"regexp", "^t.*y$", "testify", Regexp}, - {"notRegexp", "^t.*y$", "Testify", NotRegexp}, - } - - for _, tt := range tests { - t.Run(tt.name, func(t *testing.T) { - tt.assertion(t, tt.expect, tt.got) - }) - } -} - -func ExampleValueAssertionFunc() { - t := &testing.T{} // provided by test - - dumbParse := func(input string) interface{} { - var x interface{} - json.Unmarshal([]byte(input), &x) - return x - } - - tests := []struct { - name string - arg string - assertion ValueAssertionFunc - }{ - {"true is not nil", "true", NotNil}, - {"empty string is nil", "", Nil}, - {"zero is not nil", "0", NotNil}, - {"zero is zero", "0", Zero}, - {"false is zero", "false", Zero}, - } - - for _, tt := range tests { - t.Run(tt.name, func(t *testing.T) { - tt.assertion(t, dumbParse(tt.arg)) - }) - } -} - -func TestValueAssertionFunc(t *testing.T) { - tests := []struct { - name string - value interface{} - assertion ValueAssertionFunc - }{ - {"notNil", true, NotNil}, - {"nil", nil, Nil}, - {"empty", []int{}, Empty}, - {"notEmpty", []int{1}, NotEmpty}, - {"zero", false, Zero}, - {"notZero", 42, NotZero}, - } - - for _, tt := range tests { - t.Run(tt.name, func(t *testing.T) { - tt.assertion(t, tt.value) - }) - } -} - -func ExampleBoolAssertionFunc() { - t := &testing.T{} // provided by test - - isOkay := func(x int) bool { - return x >= 42 - } - - tests := []struct { - name string - arg int - assertion BoolAssertionFunc - }{ - {"-1 is bad", -1, False}, - {"42 is good", 42, True}, - {"41 is bad", 41, False}, - {"45 is cool", 45, True}, - } - - for _, tt := range tests { - t.Run(tt.name, func(t *testing.T) { - tt.assertion(t, isOkay(tt.arg)) - }) - } -} - -func TestBoolAssertionFunc(t *testing.T) { - tests := []struct { - name string - value bool - assertion BoolAssertionFunc - }{ - {"true", true, True}, - {"false", false, False}, - } - - for _, tt := range tests { - t.Run(tt.name, func(t *testing.T) { - tt.assertion(t, tt.value) - }) - } -} - -func ExampleErrorAssertionFunc() { - t := &testing.T{} // provided by test - - dumbParseNum := func(input string, v interface{}) error { - return json.Unmarshal([]byte(input), v) - } - - tests := []struct { - name string - arg string - assertion ErrorAssertionFunc - }{ - {"1.2 is number", "1.2", NoError}, - {"1.2.3 not number", "1.2.3", Error}, - {"true is not number", "true", Error}, - {"3 is number", "3", NoError}, - } - - for _, tt := range tests { - t.Run(tt.name, func(t *testing.T) { - var x float64 - tt.assertion(t, dumbParseNum(tt.arg, &x)) - }) - } -} - -func TestErrorAssertionFunc(t *testing.T) { - tests := []struct { - name string - err error - assertion ErrorAssertionFunc - }{ - {"noError", nil, NoError}, - {"error", errors.New("whoops"), Error}, - } - - for _, tt := range tests { - t.Run(tt.name, func(t *testing.T) { - tt.assertion(t, tt.err) - }) - } -} diff --git a/vendor/github.com/stretchr/testify/suite/doc.go b/vendor/github.com/stretchr/testify/suite/doc.go deleted file mode 100644 index f91a245d..00000000 --- a/vendor/github.com/stretchr/testify/suite/doc.go +++ /dev/null @@ -1,65 +0,0 @@ -// Package suite contains logic for creating testing suite structs -// and running the methods on those structs as tests. The most useful -// piece of this package is that you can create setup/teardown methods -// on your testing suites, which will run before/after the whole suite -// or individual tests (depending on which interface(s) you -// implement). -// -// A testing suite is usually built by first extending the built-in -// suite functionality from suite.Suite in testify. Alternatively, -// you could reproduce that logic on your own if you wanted (you -// just need to implement the TestingSuite interface from -// suite/interfaces.go). -// -// After that, you can implement any of the interfaces in -// suite/interfaces.go to add setup/teardown functionality to your -// suite, and add any methods that start with "Test" to add tests. -// Methods that do not match any suite interfaces and do not begin -// with "Test" will not be run by testify, and can safely be used as -// helper methods. -// -// Once you've built your testing suite, you need to run the suite -// (using suite.Run from testify) inside any function that matches the -// identity that "go test" is already looking for (i.e. -// func(*testing.T)). -// -// Regular expression to select test suites specified command-line -// argument "-run". Regular expression to select the methods -// of test suites specified command-line argument "-m". -// Suite object has assertion methods. -// -// A crude example: -// // Basic imports -// import ( -// "testing" -// "github.com/stretchr/testify/assert" -// "github.com/stretchr/testify/suite" -// ) -// -// // Define the suite, and absorb the built-in basic suite -// // functionality from testify - including a T() method which -// // returns the current testing context -// type ExampleTestSuite struct { -// suite.Suite -// VariableThatShouldStartAtFive int -// } -// -// // Make sure that VariableThatShouldStartAtFive is set to five -// // before each test -// func (suite *ExampleTestSuite) SetupTest() { -// suite.VariableThatShouldStartAtFive = 5 -// } -// -// // All methods that begin with "Test" are run as tests within a -// // suite. -// func (suite *ExampleTestSuite) TestExample() { -// assert.Equal(suite.T(), 5, suite.VariableThatShouldStartAtFive) -// suite.Equal(5, suite.VariableThatShouldStartAtFive) -// } -// -// // In order for 'go test' to run this suite, we need to create -// // a normal test function and pass our suite to suite.Run -// func TestExampleTestSuite(t *testing.T) { -// suite.Run(t, new(ExampleTestSuite)) -// } -package suite diff --git a/vendor/github.com/stretchr/testify/suite/interfaces.go b/vendor/github.com/stretchr/testify/suite/interfaces.go deleted file mode 100644 index b37cb040..00000000 --- a/vendor/github.com/stretchr/testify/suite/interfaces.go +++ /dev/null @@ -1,46 +0,0 @@ -package suite - -import "testing" - -// TestingSuite can store and return the current *testing.T context -// generated by 'go test'. -type TestingSuite interface { - T() *testing.T - SetT(*testing.T) -} - -// SetupAllSuite has a SetupSuite method, which will run before the -// tests in the suite are run. -type SetupAllSuite interface { - SetupSuite() -} - -// SetupTestSuite has a SetupTest method, which will run before each -// test in the suite. -type SetupTestSuite interface { - SetupTest() -} - -// TearDownAllSuite has a TearDownSuite method, which will run after -// all the tests in the suite have been run. -type TearDownAllSuite interface { - TearDownSuite() -} - -// TearDownTestSuite has a TearDownTest method, which will run after -// each test in the suite. -type TearDownTestSuite interface { - TearDownTest() -} - -// BeforeTest has a function to be executed right before the test -// starts and receives the suite and test names as input -type BeforeTest interface { - BeforeTest(suiteName, testName string) -} - -// AfterTest has a function to be executed right after the test -// finishes and receives the suite and test names as input -type AfterTest interface { - AfterTest(suiteName, testName string) -} diff --git a/vendor/github.com/stretchr/testify/suite/suite.go b/vendor/github.com/stretchr/testify/suite/suite.go deleted file mode 100644 index e20afbc2..00000000 --- a/vendor/github.com/stretchr/testify/suite/suite.go +++ /dev/null @@ -1,136 +0,0 @@ -package suite - -import ( - "flag" - "fmt" - "os" - "reflect" - "regexp" - "testing" - - "github.com/stretchr/testify/assert" - "github.com/stretchr/testify/require" -) - -var allTestsFilter = func(_, _ string) (bool, error) { return true, nil } -var matchMethod = flag.String("testify.m", "", "regular expression to select tests of the testify suite to run") - -// Suite is a basic testing suite with methods for storing and -// retrieving the current *testing.T context. -type Suite struct { - *assert.Assertions - require *require.Assertions - t *testing.T -} - -// T retrieves the current *testing.T context. -func (suite *Suite) T() *testing.T { - return suite.t -} - -// SetT sets the current *testing.T context. -func (suite *Suite) SetT(t *testing.T) { - suite.t = t - suite.Assertions = assert.New(t) - suite.require = require.New(t) -} - -// Require returns a require context for suite. -func (suite *Suite) Require() *require.Assertions { - if suite.require == nil { - suite.require = require.New(suite.T()) - } - return suite.require -} - -// Assert returns an assert context for suite. Normally, you can call -// `suite.NoError(expected, actual)`, but for situations where the embedded -// methods are overridden (for example, you might want to override -// assert.Assertions with require.Assertions), this method is provided so you -// can call `suite.Assert().NoError()`. -func (suite *Suite) Assert() *assert.Assertions { - if suite.Assertions == nil { - suite.Assertions = assert.New(suite.T()) - } - return suite.Assertions -} - -// Run takes a testing suite and runs all of the tests attached -// to it. -func Run(t *testing.T, suite TestingSuite) { - suite.SetT(t) - - if setupAllSuite, ok := suite.(SetupAllSuite); ok { - setupAllSuite.SetupSuite() - } - defer func() { - if tearDownAllSuite, ok := suite.(TearDownAllSuite); ok { - tearDownAllSuite.TearDownSuite() - } - }() - - methodFinder := reflect.TypeOf(suite) - tests := []testing.InternalTest{} - for index := 0; index < methodFinder.NumMethod(); index++ { - method := methodFinder.Method(index) - ok, err := methodFilter(method.Name) - if err != nil { - fmt.Fprintf(os.Stderr, "testify: invalid regexp for -m: %s\n", err) - os.Exit(1) - } - if ok { - test := testing.InternalTest{ - Name: method.Name, - F: func(t *testing.T) { - parentT := suite.T() - suite.SetT(t) - if setupTestSuite, ok := suite.(SetupTestSuite); ok { - setupTestSuite.SetupTest() - } - if beforeTestSuite, ok := suite.(BeforeTest); ok { - beforeTestSuite.BeforeTest(methodFinder.Elem().Name(), method.Name) - } - defer func() { - if afterTestSuite, ok := suite.(AfterTest); ok { - afterTestSuite.AfterTest(methodFinder.Elem().Name(), method.Name) - } - if tearDownTestSuite, ok := suite.(TearDownTestSuite); ok { - tearDownTestSuite.TearDownTest() - } - suite.SetT(parentT) - }() - method.Func.Call([]reflect.Value{reflect.ValueOf(suite)}) - }, - } - tests = append(tests, test) - } - } - runTests(t, tests) -} - -func runTests(t testing.TB, tests []testing.InternalTest) { - r, ok := t.(runner) - if !ok { // backwards compatibility with Go 1.6 and below - if !testing.RunTests(allTestsFilter, tests) { - t.Fail() - } - return - } - - for _, test := range tests { - r.Run(test.Name, test.F) - } -} - -// Filtering method according to set regular expression -// specified command-line argument -m -func methodFilter(name string) (bool, error) { - if ok, _ := regexp.MatchString("^Test", name); !ok { - return false, nil - } - return regexp.MatchString(*matchMethod, name) -} - -type runner interface { - Run(name string, f func(t *testing.T)) bool -} diff --git a/vendor/github.com/stretchr/testify/suite/suite_test.go b/vendor/github.com/stretchr/testify/suite/suite_test.go deleted file mode 100644 index b75fa4ac..00000000 --- a/vendor/github.com/stretchr/testify/suite/suite_test.go +++ /dev/null @@ -1,294 +0,0 @@ -package suite - -import ( - "errors" - "io/ioutil" - "os" - "testing" - "time" - - "github.com/stretchr/testify/assert" - "github.com/stretchr/testify/require" -) - -// SuiteRequireTwice is intended to test the usage of suite.Require in two -// different tests -type SuiteRequireTwice struct{ Suite } - -// TestSuiteRequireTwice checks for regressions of issue #149 where -// suite.requirements was not initialised in suite.SetT() -// A regression would result on these tests panicking rather than failing. -func TestSuiteRequireTwice(t *testing.T) { - ok := testing.RunTests( - allTestsFilter, - []testing.InternalTest{{ - Name: "TestSuiteRequireTwice", - F: func(t *testing.T) { - suite := new(SuiteRequireTwice) - Run(t, suite) - }, - }}, - ) - assert.Equal(t, false, ok) -} - -func (s *SuiteRequireTwice) TestRequireOne() { - r := s.Require() - r.Equal(1, 2) -} - -func (s *SuiteRequireTwice) TestRequireTwo() { - r := s.Require() - r.Equal(1, 2) -} - -// This suite is intended to store values to make sure that only -// testing-suite-related methods are run. It's also a fully -// functional example of a testing suite, using setup/teardown methods -// and a helper method that is ignored by testify. To make this look -// more like a real world example, all tests in the suite perform some -// type of assertion. -type SuiteTester struct { - // Include our basic suite logic. - Suite - - // Keep counts of how many times each method is run. - SetupSuiteRunCount int - TearDownSuiteRunCount int - SetupTestRunCount int - TearDownTestRunCount int - TestOneRunCount int - TestTwoRunCount int - NonTestMethodRunCount int - - SuiteNameBefore []string - TestNameBefore []string - - SuiteNameAfter []string - TestNameAfter []string - - TimeBefore []time.Time - TimeAfter []time.Time -} - -type SuiteSkipTester struct { - // Include our basic suite logic. - Suite - - // Keep counts of how many times each method is run. - SetupSuiteRunCount int - TearDownSuiteRunCount int -} - -// The SetupSuite method will be run by testify once, at the very -// start of the testing suite, before any tests are run. -func (suite *SuiteTester) SetupSuite() { - suite.SetupSuiteRunCount++ -} - -func (suite *SuiteTester) BeforeTest(suiteName, testName string) { - suite.SuiteNameBefore = append(suite.SuiteNameBefore, suiteName) - suite.TestNameBefore = append(suite.TestNameBefore, testName) - suite.TimeBefore = append(suite.TimeBefore, time.Now()) -} - -func (suite *SuiteTester) AfterTest(suiteName, testName string) { - suite.SuiteNameAfter = append(suite.SuiteNameAfter, suiteName) - suite.TestNameAfter = append(suite.TestNameAfter, testName) - suite.TimeAfter = append(suite.TimeAfter, time.Now()) -} - -func (suite *SuiteSkipTester) SetupSuite() { - suite.SetupSuiteRunCount++ - suite.T().Skip() -} - -// The TearDownSuite method will be run by testify once, at the very -// end of the testing suite, after all tests have been run. -func (suite *SuiteTester) TearDownSuite() { - suite.TearDownSuiteRunCount++ -} - -func (suite *SuiteSkipTester) TearDownSuite() { - suite.TearDownSuiteRunCount++ -} - -// The SetupTest method will be run before every test in the suite. -func (suite *SuiteTester) SetupTest() { - suite.SetupTestRunCount++ -} - -// The TearDownTest method will be run after every test in the suite. -func (suite *SuiteTester) TearDownTest() { - suite.TearDownTestRunCount++ -} - -// Every method in a testing suite that begins with "Test" will be run -// as a test. TestOne is an example of a test. For the purposes of -// this example, we've included assertions in the tests, since most -// tests will issue assertions. -func (suite *SuiteTester) TestOne() { - beforeCount := suite.TestOneRunCount - suite.TestOneRunCount++ - assert.Equal(suite.T(), suite.TestOneRunCount, beforeCount+1) - suite.Equal(suite.TestOneRunCount, beforeCount+1) -} - -// TestTwo is another example of a test. -func (suite *SuiteTester) TestTwo() { - beforeCount := suite.TestTwoRunCount - suite.TestTwoRunCount++ - assert.NotEqual(suite.T(), suite.TestTwoRunCount, beforeCount) - suite.NotEqual(suite.TestTwoRunCount, beforeCount) -} - -func (suite *SuiteTester) TestSkip() { - suite.T().Skip() -} - -// NonTestMethod does not begin with "Test", so it will not be run by -// testify as a test in the suite. This is useful for creating helper -// methods for your tests. -func (suite *SuiteTester) NonTestMethod() { - suite.NonTestMethodRunCount++ -} - -// TestRunSuite will be run by the 'go test' command, so within it, we -// can run our suite using the Run(*testing.T, TestingSuite) function. -func TestRunSuite(t *testing.T) { - suiteTester := new(SuiteTester) - Run(t, suiteTester) - - // Normally, the test would end here. The following are simply - // some assertions to ensure that the Run function is working as - // intended - they are not part of the example. - - // The suite was only run once, so the SetupSuite and TearDownSuite - // methods should have each been run only once. - assert.Equal(t, suiteTester.SetupSuiteRunCount, 1) - assert.Equal(t, suiteTester.TearDownSuiteRunCount, 1) - - assert.Equal(t, len(suiteTester.SuiteNameAfter), 3) - assert.Equal(t, len(suiteTester.SuiteNameBefore), 3) - assert.Equal(t, len(suiteTester.TestNameAfter), 3) - assert.Equal(t, len(suiteTester.TestNameBefore), 3) - - assert.Contains(t, suiteTester.TestNameAfter, "TestOne") - assert.Contains(t, suiteTester.TestNameAfter, "TestTwo") - assert.Contains(t, suiteTester.TestNameAfter, "TestSkip") - - assert.Contains(t, suiteTester.TestNameBefore, "TestOne") - assert.Contains(t, suiteTester.TestNameBefore, "TestTwo") - assert.Contains(t, suiteTester.TestNameBefore, "TestSkip") - - for _, suiteName := range suiteTester.SuiteNameAfter { - assert.Equal(t, "SuiteTester", suiteName) - } - - for _, suiteName := range suiteTester.SuiteNameBefore { - assert.Equal(t, "SuiteTester", suiteName) - } - - for _, when := range suiteTester.TimeAfter { - assert.False(t, when.IsZero()) - } - - for _, when := range suiteTester.TimeBefore { - assert.False(t, when.IsZero()) - } - - // There are three test methods (TestOne, TestTwo, and TestSkip), so - // the SetupTest and TearDownTest methods (which should be run once for - // each test) should have been run three times. - assert.Equal(t, suiteTester.SetupTestRunCount, 3) - assert.Equal(t, suiteTester.TearDownTestRunCount, 3) - - // Each test should have been run once. - assert.Equal(t, suiteTester.TestOneRunCount, 1) - assert.Equal(t, suiteTester.TestTwoRunCount, 1) - - // Methods that don't match the test method identifier shouldn't - // have been run at all. - assert.Equal(t, suiteTester.NonTestMethodRunCount, 0) - - suiteSkipTester := new(SuiteSkipTester) - Run(t, suiteSkipTester) - - // The suite was only run once, so the SetupSuite and TearDownSuite - // methods should have each been run only once, even though SetupSuite - // called Skip() - assert.Equal(t, suiteSkipTester.SetupSuiteRunCount, 1) - assert.Equal(t, suiteSkipTester.TearDownSuiteRunCount, 1) - -} - -func TestSuiteGetters(t *testing.T) { - suite := new(SuiteTester) - suite.SetT(t) - assert.NotNil(t, suite.Assert()) - assert.Equal(t, suite.Assertions, suite.Assert()) - assert.NotNil(t, suite.Require()) - assert.Equal(t, suite.require, suite.Require()) -} - -type SuiteLoggingTester struct { - Suite -} - -func (s *SuiteLoggingTester) TestLoggingPass() { - s.T().Log("TESTLOGPASS") -} - -func (s *SuiteLoggingTester) TestLoggingFail() { - s.T().Log("TESTLOGFAIL") - assert.NotNil(s.T(), nil) // expected to fail -} - -type StdoutCapture struct { - oldStdout *os.File - readPipe *os.File -} - -func (sc *StdoutCapture) StartCapture() { - sc.oldStdout = os.Stdout - sc.readPipe, os.Stdout, _ = os.Pipe() -} - -func (sc *StdoutCapture) StopCapture() (string, error) { - if sc.oldStdout == nil || sc.readPipe == nil { - return "", errors.New("StartCapture not called before StopCapture") - } - os.Stdout.Close() - os.Stdout = sc.oldStdout - bytes, err := ioutil.ReadAll(sc.readPipe) - if err != nil { - return "", err - } - return string(bytes), nil -} - -func TestSuiteLogging(t *testing.T) { - suiteLoggingTester := new(SuiteLoggingTester) - capture := StdoutCapture{} - internalTest := testing.InternalTest{ - Name: "SomeTest", - F: func(subT *testing.T) { - Run(subT, suiteLoggingTester) - }, - } - capture.StartCapture() - testing.RunTests(allTestsFilter, []testing.InternalTest{internalTest}) - output, err := capture.StopCapture() - require.NoError(t, err, "Got an error trying to capture stdout and stderr!") - require.NotEmpty(t, output, "output content must not be empty") - - // Failed tests' output is always printed - assert.Contains(t, output, "TESTLOGFAIL") - - if testing.Verbose() { - // In verbose mode, output from successful tests is also printed - assert.Contains(t, output, "TESTLOGPASS") - } else { - assert.NotContains(t, output, "TESTLOGPASS") - } -}