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generator_conv_acc_w_bn (copy).py
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generator_conv_acc_w_bn (copy).py
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import json
import sys
import helping_functions
EOL = "\n"
para = open("parameter3.json", "r")
port_num = int(json.load(para))
def generate(generated_file_name="conv_acc_innerpp_w_bn.h"):
arr = helping_functions.read_params(sys.argv[1])
prms, prms_str = helping_functions.extraction(arr)
str1 = "#ifndef _CONV_ACC_W_BN_H_" + EOL
str1 += "#define _CONV_ACC_W_BN_H_" + EOL + EOL
str1 += "#include <iostream>" + EOL
str1 += "#include <fstream>" + EOL
str1 += '#include "activation_functions.h"' + EOL + EOL
str1 += "#if _C_DEBUG_MODE_" + EOL
str1 += "#include <algorithm>" + EOL
str1 += "#endif" + EOL + EOL
str1 += "using namespace std;" + EOL + EOL
str1 += "template <typename T, typename W, typename G, int Tm, int Tn, int Tr, int Tc, int S_max, int K_max>" + EOL
str1 += "class conv_acc_w_bn {" + EOL + EOL
str1 += "private:" + EOL
str1 += " int conv_layer_number;" + EOL + EOL
str1 += "public:" + EOL
str1 += " conv_acc_w_bn() : conv_layer_number(0) {conv_layer_number = 0;};" + EOL + EOL
str1 += " ////------------------------------C++ debugging functions---------------------------------------////" + EOL
str1 += " // Reset output buffer" + EOL
str1 += " void out_buf_reset(G buf[][Tr][Tc]){" + EOL
str1 += " for(int i = 0; i < Tm; i++){" + EOL
str1 += " for(int j = 0; j < Tr; j++){" + EOL
str1 += " for(int k = 0; k < Tc; k++){" + EOL
str1 += " buf[i][j][k] = G(0);" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " // Reset weight buffer" + EOL
str1 += " void w_buf_reset(int K, W buf[][Tm][K_max][K_max]){" + EOL
str1 += " for(int i = 0; i < Tn; i++){" + EOL
str1 += " for(int j = 0; j < Tm; j++){" + EOL
str1 += " for(int k = 0; k < K; k++){" + EOL
str1 += " for(int l = 0; l < K; l++){" + EOL
str1 += " buf[i][j][k][l] = W(0);" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
if "conv_bias_size" in prms_str:
str1 += " // Reset bias buffer" + EOL
str1 += " void b_buf_reset(W buf[]){" + EOL
str1 += " for(int i = 0; i < Tm; i++){" + EOL
str1 += " buf[i]= W(0);" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " ////-----------------------------Accelerator Functions---------------------------------------////" + EOL
if "conv_bias_size" in prms_str:
str1 += " // Load bias data" + EOL
str1 += " void b_buf_load(W buf[], W *layer_bias, int bias_offset, int m){" + EOL
str1 += " for(int i = 0; i < Tm; i++){" + EOL
str1 += "#pragma HLS UNROLL" + EOL
str1 += " buf[i] = *(layer_bias + bias_offset + i + m);" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " // Load input data" + EOL
str1 += " void in_buf_load(T buf[][(Tr-1)*S_max + K_max][(Tc-1)*S_max + K_max]"
for j in range(1,port_num + 1):
str1 += ",T " + "*in_data_" + str(j)
str1 += ", int in_offset, int n, int r, int c, int S, int K, int P, int R_IN, int C_IN, int N) {" + EOL
str1 += " for (int j = r * S - P; j < (r + Tr - 1) * S + K - P; j++) {" + EOL
str1 += " for (int k = c * S - P; k < (c + Tc - 1) * S + K - P; k++) {" + EOL
str1 += "#pragma HLS PIPELINE" + EOL
str1 += " for (int i = n; i < n + Tn; i+=" + str(port_num) + "){" + EOL
str1 += "#pragma HLS UNROLL" + EOL
for j in range(0,port_num):
str1 += " if ((n + Tn > N && i + " + str(j) + " >= N ) || j < 0 || j >= R_IN || k < 0 || k >= C_IN) {" + EOL
str1 += " buf[i + " + str(j) + " - n][j - r * S + P][k - c * S + P] = T(0);" + EOL
str1 += " } else {" + EOL
str1 += " buf[i + " + str(j) + " - n][j - r * S + P][k - c * S + P] = *(in_data_" + str(j+1) + " + in_offset + i/" + str(port_num) + " * R_IN * C_IN + j * C_IN + k);" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " // Load weights to weight buffer" + EOL
str1 += " void w_buf_load(W buf[][Tm][K_max][K_max], W *layer_weights, int weight_offset, int n, int m, int K, int N, int M){" + EOL
str1 += " for(int k1 = 0; k1 < K; k1++){" + EOL
str1 += " for(int k2 = 0; k2 < K; k2++){" + EOL
str1 += "#pragma HLS PIPELINE" + EOL
str1 += " for(int j = n; j < n+Tn; j++){" + EOL
str1 += "#pragma HLS UNROLL" + EOL
str1 += " if(N < n+Tn && j == N){" + EOL
str1 += " break;" + EOL
str1 += " }" + EOL
str1 += " for(int i = m; i < m+Tm; i++){" + EOL
str1 += "#pragma HLS UNROLL" + EOL
str1 += " if(M < m+Tm && i == M){" + EOL
str1 += " break;" + EOL
str1 += " }" + EOL
str1 += " buf[j-n][i-m][k1][k2] = *(layer_weights + weight_offset + i*N*K*K + j*K*K + k1*K + k2);" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " // Convolution computation kernel" + EOL
if "conv_bias_size" in prms_str:
str1 += " void conv_engine(T in_buf[][(Tr-1)*S_max + K_max][(Tc-1)*S_max + K_max], W w_buf[][Tm][K_max][K_max], W b_buf[], G out_buf[][Tr][Tc], int S, int n, int r, int c, int K, int R_OUT, int C_OUT){" + EOL
else:
str1 += " void conv_engine(T in_buf[][(Tr-1)*S_max + K_max][(Tc-1)*S_max + K_max], W w_buf[][Tm][K_max][K_max], G out_buf[][Tr][Tc], int S, int n, int r, int c, int K, int R_OUT, int C_OUT){" + EOL
str1 += " for(int i=0; i<K; i++){" + EOL
str1 += " for(int j=0; j<K; j++){" + EOL
str1 += " for(int tr=0; tr<Tr; tr++){" + EOL
str1 += " for(int tc=0; tc<Tc; tc++){" + EOL
str1 += "#pragma HLS PIPELINE" + EOL
str1 += " for(int tm = 0; tm < Tm; tm++){" + EOL
str1 += "#pragma HLS UNROLL" + EOL
str1 += " for(int tn=0; tn<Tn; tn++){" + EOL
str1 += "#pragma HLS UNROLL" + EOL
str1 += " if(i==0&&j==0&&tn==0&&n==0)" + EOL
if "conv_bias_size" in prms_str:
str1 += " out_buf[tm][tr][tc] = b_buf[tm] + w_buf[tn][tm][i][j]*in_buf[tn][S*(tr)+i][S*(tc)+j];" + EOL
else:
str1 += " out_buf[tm][tr][tc] = w_buf[tn][tm][i][j]*in_buf[tn][S*(tr)+i][S*(tc)+j];" + EOL
str1 += " else" + EOL
str1 += " out_buf[tm][tr][tc] = out_buf[tm][tr][tc] + w_buf[tn][tm][i][j]*in_buf[tn][S*(tr)+i][S*(tc)+j];" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " // Ouput out_buf data to output interface" + EOL
str1 += " void output_res(G out_buf[][Tr][Tc]"
for j in range(1,port_num + 1):
str1 += ",G " + "*out_data_" + str(j)
str1 += ", int out_offset, int n, int m, int r, int c, int N, int M, int R_OUT, int C_OUT, bool act" + EOL
str1 += " , W *bn_mean, W *bn_denominator, int bn_offset" + EOL
str1 += "#if _SCALE_" + EOL
str1 += " , W *scale_gamma, W *scale_beta, int scale_offset" + EOL
str1 += "#endif" + EOL
str1 += " ){" + EOL
str1 += " if (n >= N - Tn) {" + EOL
str1 += " for (int j = r; j < r + Tr && j < R_OUT; j++) {" + EOL
#str1 += " if (C_OUT < c + Tc && k == C_OUT) { break; }" + EOL
str1 += " for (int k = c; k < c + Tc && k < C_OUT; k++) {" + EOL
#str1 += " if (R_OUT < r + Tr && j == R_OUT) { break; }" + EOL
str1 += "#pragma HLS PIPELINE" + EOL
str1 += " for (int i = 0; i < Tm && i < M-m; i += " + str(port_num) + ") {" + EOL
#str1 += "#pragma HLS UNROLL" + EOL
#str1 += " if (M < m + Tm && i+m == M) { break; }" + EOL
for j in range(1,port_num + 1):
str1 += " out_buf[i + " + str(j-1) + "][j - r][k - c] = " + EOL
str1 += " (out_buf[i + " + str(j-1) + "][j - r][k - c] - *(bn_mean + bn_offset + i + m + " + str(j-1) + ")) * (*(bn_denominator + bn_offset + i + m + " + str(j-1) + "));" + EOL
str1 += "#if _SCALE_" + EOL
str1 += " out_buf[i + " + str(j-1) + "][j - r][k - c] = " + EOL
str1 += " out_buf[i + " + str(j-1) + "][j - r][k - c] * (*(scale_gamma + scale_offset + i + m + " + str(j-1) + ")) + (*(scale_beta + scale_offset + i + m + " + str(j-1) + "));" + EOL
str1 += "#endif" + EOL
str1 += " if (act) {" + EOL
for j in range(1,port_num + 1):
str1 += " if (i + " + str(j-1) + " < M-m)" + EOL
str1 += " *(out_data_" + str(j) + " + out_offset + ((i+m)/" + str(port_num) + ") * R_OUT * C_OUT + j * C_OUT + k) = relu(out_buf[i + " +\
str(j-1) + "][j - r][k - c]);" + EOL
str1 += " }" + EOL
str1 += " else {" + EOL
for j in range(1,port_num + 1):
str1 += " if (i + " + str(j-1) + " < M-m)" + EOL
str1 += " *(out_data_" + str(j) + " + out_offset + ((i+m)/" + str(port_num) + ") * R_OUT * C_OUT + j * C_OUT + k) = out_buf[i + " +\
str(j-1) + "][j - r][k - c];" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += "///////////////////////------------------conv accelerator----------------//////////////////////////" + EOL
str1 += " void conv_layer_acc_w_bn(" + EOL
str1 += " int N, //input feature number" + EOL
str1 += " int K, //input kernel size" + EOL
str1 += " int M, // output feature number" + EOL
str1 += " int R_IN, // input Row" + EOL
str1 += " int C_IN, // input column" + EOL
str1 += " int R_OUT, // output Row" + EOL
str1 += " int C_OUT,// output column" + EOL
str1 += " int S, // stride size" + EOL
str1 += " int P, // padding size" + EOL
str1 += " bool act, // activation function bit (1-- with act, 0--without act)" + EOL
str1 += " W *layer_weights, //w[M][N][K][K]" + EOL
if "conv_bias_size" in prms_str:
str1 += " W *layer_bias, // b[M]" + EOL
str1 += " W *bn_mean," + EOL
str1 += " W *bn_denominator," + EOL
str1 += " int bn_offset," + EOL
str1 += "#if _SCALE_" + EOL
str1 += " W *scale_gamma," + EOL
str1 += " W *scale_beta," + EOL
str1 += " int scale_offset," + EOL
str1 += "#endif" + EOL
str1 += " int weight_offset," + EOL
if "conv_bias_size" in prms_str:
str1 += " int bias_offset," + EOL
str1 += " int in_offset," + EOL
str1 += " int out_offset," + EOL
for j in range(1,port_num + 1):
str1 += " T *in_data_" + str(j) + "," + " // in_data[N][(R-1)*S + K][(C-1)*S + K] --> [N][(R-1)*S + K - 2*P][(C-1)*S + K - 2*P]" + EOL
for j in range(1,port_num + 1):
if j == port_num:
str1 += " G *out_data_" + str(j) + "){ // out[M][R][C]" + EOL + EOL
else:
str1 += " G *out_data_" + str(j) + "," + " // out[M][R][C]" + EOL
str1 += " /***************local data buffer******************************/" + EOL
str1 += " T in_buf_1[Tn][(Tr-1)*S_max + K_max][(Tc-1)*S_max + K_max];" + EOL
str1 += " T in_buf_0[Tn][(Tr-1)*S_max + K_max][(Tc-1)*S_max + K_max];" + EOL
str1 += " W w_buf_1[Tn][Tm][K_max][K_max];" + EOL
str1 += " W w_buf_0[Tn][Tm][K_max][K_max];" + EOL
if "conv_bias_size" in prms_str:
str1 += " W b_buf_1[Tm];" + EOL
str1 += " W b_buf_0[Tm];" + EOL
str1 += " G out_buf_1[Tm][Tr][Tc];" + EOL
str1 += " G out_buf_0[Tm][Tr][Tc];" + EOL + EOL
str1 += " /***************Ptr and buffer initialization******************************/" + EOL
str1 += " bool in_buf_0_empty = 1;" + EOL
str1 += " bool in_buf_1_empty = 1;" + EOL
str1 += " bool out_buf_0_empty = 1;" + EOL
str1 += " bool out_buf_1_empty = 1;" + EOL
str1 += " int loadbufPtr = 0;" + EOL
str1 += " int combufPtr = 0;" + EOL
str1 += " int resbufPtr = 0;" + EOL
str1 += " bool last_com = 0;" + EOL
str1 += " bool last_load = 0;" + EOL
str1 += " bool last_res = 0;" + EOL + EOL
str1 += "#if _HLS_MODE_" + EOL
str1 += "#pragma HLS ARRAY_PARTITION variable=in_buf_1 complete dim=1" + EOL
str1 += "#pragma HLS ARRAY_PARTITION variable=in_buf_0 complete dim=1" + EOL
str1 += "#pragma HLS ARRAY_PARTITION variable=w_buf_1 complete dim=1" + EOL
str1 += "#pragma HLS ARRAY_PARTITION variable=w_buf_1 complete dim=2" + EOL
str1 += "#pragma HLS ARRAY_PARTITION variable=w_buf_0 complete dim=1" + EOL
str1 += "#pragma HLS ARRAY_PARTITION variable=w_buf_0 complete dim=2" + EOL
if "conv_bias_size" in prms_str:
str1 += "#pragma HLS ARRAY_PARTITION variable=b_buf_1 complete dim=1" + EOL
str1 += "#pragma HLS ARRAY_PARTITION variable=b_buf_0 complete dim=1" + EOL
str1 += "#pragma HLS ARRAY_PARTITION variable=out_buf_1 complete dim=1" + EOL
str1 += "#pragma HLS ARRAY_PARTITION variable=out_buf_0 complete dim=1" + EOL
str1 += "#endif" + EOL + EOL
str1 += "#if _C_DEBUG_MODE_" + EOL
str1 += "#if _KERNEL_DEBUG_" + EOL
str1 += ' cout << "Starting conv_acc_innerpp layer ...." << endl;' + EOL
str1 += " //buffer local data initiallization: must do it in C++ debug!" + EOL
str1 += " out_buf_reset(out_buf_1);" + EOL
str1 += " out_buf_reset(out_buf_0);" + EOL
if "conv_bias_size" in prms_str:
str1 += " b_buf_reset(b_buf_1);" + EOL
str1 += " b_buf_reset(b_buf_0);" + EOL
str1 += " w_buf_reset(K, w_buf_1);" + EOL
str1 += " w_buf_reset(K, w_buf_0);" + EOL
str1 += "#endif" + EOL
str1 += "#endif" + EOL
str1 += " for(int r = 0; r < R_OUT; r += Tr){" + EOL
str1 += " for(int c = 0; c < C_OUT; c += Tc){" + EOL
str1 += " for(int m = 0; m < M; m += Tm){" + EOL
str1 += " for(int n = 0; n < N; n += 2*Tn){" + EOL
#str1 += "#if _HLS_MODE_" + EOL
#str1 += "#pragma HLS DATAFLOW" + EOL
#str1 += "#endif" + EOL
str1 += " //--------------------------Load input B W D in ping-pong manner-------------------------//" + EOL
str1 += " while ((in_buf_0_empty | in_buf_1_empty)&& (!last_load)) {" + EOL
str1 += " if (loadbufPtr == 1) {" + EOL
str1 += ' cout << "loading input buffer 1...." << endl;' + EOL
if "conv_bias_size" in prms_str:
str1 += " //load input bias" + EOL
str1 += " b_buf_load(b_buf_1, layer_bias, bias_offset, m);" + EOL
str1 += " // load input data" + EOL
str1 += " in_buf_load(in_buf_1"
for j in range(1,port_num + 1):
str1 += ", in_data_" + str(j)
str1 += ", in_offset, n+Tn, r, c, S, K, P, R_IN, C_IN, N);" + EOL
str1 += " // load input weights" + EOL
str1 += " w_buf_load(w_buf_1, layer_weights, weight_offset, n+Tn, m, K, N, M);" + EOL
str1 += " in_buf_1_empty = 0;" + EOL
str1 += ' cout << "buffer 1 full" << endl;' + EOL
str1 += " loadbufPtr = 0;" + EOL
str1 += " if (n+2*Tn >= N) {last_load = 1;}" + EOL
str1 += " } else {" + EOL
str1 += ' cout << "loading input buffer 0...." << endl;' + EOL
if "conv_bias_size" in prms_str:
str1 += " //load input bias" + EOL
str1 += " b_buf_load(b_buf_0, layer_bias, bias_offset, m);" + EOL
str1 += " // load input data" + EOL
str1 += " in_buf_load(in_buf_0"
for j in range(1,port_num + 1):
str1 += ", in_data_" + str(j)
str1 += ", in_offset, n, r, c, S, K, P, R_IN, C_IN, N);" + EOL
str1 += " // load input weights" + EOL
str1 += " w_buf_load(w_buf_0, layer_weights, weight_offset, n, m, K, N, M);" + EOL
str1 += " in_buf_0_empty = 0;" + EOL
str1 += ' cout << "buffer 0 full" << endl;' + EOL
str1 += " loadbufPtr = 1;" + EOL
str1 += " if (n+Tn >= N) {last_load = 1;}" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " loadbufPtr = 0;" + EOL
str1 += " last_load = 0;" + EOL
str1 += " //------------------------------compute buffered data -----------------------------------//" + EOL
str1 += " while ((!in_buf_0_empty | !in_buf_1_empty)&& (!last_com)) {" + EOL
str1 += " if (combufPtr == 1) {" + EOL
str1 += ' cout << "computing input buffer 1...." << endl;' + EOL
str1 += " if(resbufPtr == 1){" + EOL
if "conv_bias_size" in prms_str:
str1 += " conv_engine(in_buf_1, w_buf_1, b_buf_1, out_buf_1, S, n+Tn, r, c, K, R_OUT, C_OUT);" + EOL
else:
str1 += " conv_engine(in_buf_1, w_buf_1, out_buf_1, S, n+Tn, r, c, K, R_OUT, C_OUT);" + EOL
str1 += " out_buf_1_empty = 0;" + EOL
str1 += " }else{" + EOL
if "conv_bias_size" in prms_str:
str1 += " conv_engine(in_buf_1, w_buf_1, b_buf_1, out_buf_0, S, n+Tn, r, c, K, R_OUT, C_OUT);" + EOL
else:
str1 += " conv_engine(in_buf_1, w_buf_1, out_buf_0, S, n+Tn, r, c, K, R_OUT, C_OUT);" + EOL
str1 += " out_buf_0_empty = 0;" + EOL
str1 += " }" + EOL
str1 += " in_buf_1_empty = 1;" + EOL
str1 += " combufPtr = 0;" + EOL
str1 += ' cout << "buffer 1 computed" << endl;' + EOL
str1 += " if (n+2*Tn >= N) {last_com = 1;}" + EOL
str1 += " } else {" + EOL
str1 += ' cout << "computing input buffer 0...." << endl;' + EOL
str1 += " if(resbufPtr == 1){" + EOL
if "conv_bias_size" in prms_str:
str1 += " conv_engine(in_buf_0, w_buf_0, b_buf_0, out_buf_1, S, n, r, c, K, R_OUT, C_OUT);" + EOL
else:
str1 += " conv_engine(in_buf_0, w_buf_0, out_buf_1, S, n, r, c, K, R_OUT, C_OUT);" + EOL
str1 += " out_buf_1_empty = 0;" + EOL
str1 += " }else{" + EOL
if "conv_bias_size" in prms_str:
str1 += " conv_engine(in_buf_0, w_buf_0, b_buf_0, out_buf_0, S, n, r, c, K, R_OUT, C_OUT);" + EOL
else:
str1 += " conv_engine(in_buf_0, w_buf_0, out_buf_0, S, n, r, c, K, R_OUT, C_OUT);" + EOL
str1 += " out_buf_0_empty = 0;" + EOL
str1 += " }" + EOL
str1 += " in_buf_0_empty = 1;" + EOL
str1 += " combufPtr = 1;" + EOL
str1 += ' cout << "buffer 0 computed" << endl;' + EOL
str1 += " if (n+Tn >= N) {last_com = 1;}" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " combufPtr = 0;" + EOL
str1 += " last_com = 0;" + EOL
str1 += " //---------------------------transfer output data----------------------------------------//" + EOL
str1 += " while ((!out_buf_0_empty | !out_buf_1_empty)&& (!last_res)) {" + EOL
str1 += " if (resbufPtr == 1) {" + EOL
str1 += ' cout << "output buffer 1...." << endl;' + EOL
str1 += " // transfer output data" + EOL
str1 += " if (n+Tn >= N) {" + EOL
str1 += " last_res = 1;" + EOL
str1 += " resbufPtr = 0;" + EOL
str1 += " output_res(out_buf_1"
for j in range(1,port_num + 1):
str1 += ", out_data_" + str(j)
str1 += ", out_offset, n, m, r, c, N, M, R_OUT, C_OUT, act, bn_mean, bn_denominator, bn_offset" + EOL
str1 += "#if _SCALE_" + EOL
str1 += " , scale_gamma, scale_beta, scale_offset" + EOL
str1 += "#endif" + EOL
str1 += " );" + EOL
str1 += " }else if (n+2*Tn >= N) {" + EOL
str1 += " last_res = 1;" + EOL
str1 += " resbufPtr = 0;" + EOL
str1 += " output_res(out_buf_1"
for j in range(1,port_num + 1):
str1 += ", out_data_" + str(j)
str1 += ", out_offset, n+Tn, m, r, c, N, M, R_OUT, C_OUT, act, bn_mean, bn_denominator, bn_offset" + EOL
str1 += "#if _SCALE_" + EOL
str1 += " , scale_gamma, scale_beta, scale_offset" + EOL
str1 += "#endif" + EOL
str1 += " );" + EOL
str1 += " }" + EOL
str1 += " out_buf_1_empty = 1;" + EOL
str1 += ' cout << "buffer 1 res" << endl;' + EOL
str1 += " } else {" + EOL
str1 += ' cout << "output buffer 0...." << endl;' + EOL
str1 += " // transfer output data" + EOL
str1 += " if (n+Tn >= N) {" + EOL
str1 += " last_res = 1;" + EOL
str1 += " resbufPtr = 1;" + EOL
str1 += " output_res(out_buf_0"
for j in range(1,port_num + 1):
str1 += ", out_data_" + str(j)
str1 += ", out_offset, n, m, r, c, N, M, R_OUT, C_OUT, act, bn_mean, bn_denominator, bn_offset" + EOL
str1 += "#if _SCALE_" + EOL
str1 += " , scale_gamma, scale_beta, scale_offset" + EOL
str1 += "#endif" + EOL
str1 += " );" + EOL
str1 += " }else if (n+2*Tn >= N) {" + EOL
str1 += " last_res = 1;" + EOL
str1 += " resbufPtr = 1;" + EOL
str1 += " output_res(out_buf_0"
for j in range(1,port_num + 1):
str1 += ", out_data_" + str(j)
str1 += ", out_offset, n+Tn, m, r, c, N, M, R_OUT, C_OUT, act, bn_mean, bn_denominator, bn_offset" + EOL
str1 += "#if _SCALE_" + EOL
str1 += " , scale_gamma, scale_beta, scale_offset" + EOL
str1 += "#endif" + EOL
str1 += " );" + EOL
str1 += " }" + EOL
str1 += " out_buf_0_empty = 1;" + EOL
str1 += ' cout << "buffer 0 res" << endl;' + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " last_res = 0;" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += " }" + EOL
str1 += "#if _C_DEBUG_MODE_" + EOL
str1 += "#if _KERNEL_DEBUG_" + EOL
str1 += ' cout << "Finished conv_acc_innerdf_w_bn layer ...." << endl;' + EOL
str1 += " ofstream conv_out;" + EOL
str1 += ' conv_out.open("conv_w_bn_out_data.txt",ios::app);' + EOL
str1 += ' conv_out <<"conv_w_bn output: "<< endl;' + EOL
str1 += " for (int i = 0; i < M/" + str(port_num) + "; i++) {" + EOL
for j in range(1,port_num + 1):
str1 += " for (int j = 0; j < R_OUT; j++) {" + EOL
str1 += " for(int k = 0; k < C_OUT; k++){" + EOL
str1 += " conv_out << *(out_data_" + str(j) + ' + out_offset + i*R_OUT*C_OUT + j*C_OUT + k) << " ";' + EOL
str1 += " }conv_out << endl;" + EOL
str1 += " }conv_out << endl;" + EOL
str1 += " }conv_out.close();" + EOL
str1 += "#endif" + EOL
str1 += "#endif" + EOL
str1 += " }" + EOL
str1 += "};" + EOL
str1 += "#endif" + EOL
with open("../example/test_demo/inference_net/" + generated_file_name, "w") as generated_file:
generated_file.write(str1)
return str1
if __name__ == "__main__":
generate()