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module-emulator-icam.c
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module-emulator-icam.c
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#define MODULE_LOG_PREFIX "emu"
#include "globals.h"
#include "oscam-net.h"
#include "oscam-chk.h"
#include "module-emulator-icam.h"
#include "oscam-ecm.h"
#include "oscam-client.h"
#include "ffdecsa/ffdecsa.h"
#ifdef WITH_EMU
#ifdef MODULE_RADEGAST
static int32_t gRadegastFd = 0;
static uint8_t gLast_ecm_paket[EMU_STREAM_SERVER_MAX_CONNECTIONS][8];
#endif
bool caid_is_icam(uint16_t caid)
{
if (caid == 0x098C || caid == 0x098D || caid == 0x09C4)
return true;
return false;
}
void icam_write_cw(ECM_REQUEST *er, int32_t connid)
{
SAFE_MUTEX_LOCK(&emu_fixed_key_data_mutex[connid]);
if (emu_fixed_key_data[connid].icam_csa_ks == NULL)
{
emu_fixed_key_data[connid].icam_csa_ks = get_key_struct();
}
bool icam = (er->ecm[2] - er->ecm[4]) == 4;
if (er->ecm[0] == 0x80)
{
if (icam)
{
set_even_control_word_ecm(emu_fixed_key_data[connid].icam_csa_ks, er->cw, er->ecm[0x15]);
}
else
{
set_even_control_word(emu_fixed_key_data[connid].icam_csa_ks, er->cw);
}
}
else if (icam)
{
set_odd_control_word_ecm(emu_fixed_key_data[connid].icam_csa_ks, er->cw + 8, er->ecm[0x15]);
}
else
{
set_odd_control_word(emu_fixed_key_data[connid].icam_csa_ks, er->cw + 8);
}
emu_fixed_key_data[connid].icam_csa_used = 1;
SAFE_MUTEX_UNLOCK(&emu_fixed_key_data_mutex[connid]);
}
#ifdef MODULE_RADEGAST
void icam_ecm(emu_stream_client_data *cdata)
{
uint16_t section_length = SCT_LEN(cdata->ecm_data);
uint16_t packet_len;
static uint8_t header_len = 2;
static uint8_t payload_static_len = 12;
if (memcmp(gLast_ecm_paket[cdata->connid], cdata->ecm_data, 8) != 0)
{
memcpy(gLast_ecm_paket[cdata->connid], cdata->ecm_data, 8);
if (gRadegastFd <= 0)
icam_connect_to_radegast();
packet_len = header_len + payload_static_len + section_length;
uint8_t outgoing_data[packet_len];
outgoing_data[0] = 1;
outgoing_data[1] = payload_static_len + section_length;
outgoing_data[2] = 10; // caid
outgoing_data[3] = 2;
outgoing_data[4] = cdata->caid >> 8;
outgoing_data[5] = cdata->caid & 0xFF;
outgoing_data[6] = 9; // srvid
outgoing_data[7] = 4;
outgoing_data[8] = cdata->srvid & 0xFF;
outgoing_data[10] = cdata->srvid >> 8;
outgoing_data[12] = 3;
outgoing_data[13] = section_length;
memcpy(outgoing_data + header_len + payload_static_len, cdata->ecm_data, section_length);
if (!icam_send_to_radegast(outgoing_data, packet_len))
{
icam_close_radegast_connection();
if (icam_connect_to_radegast())
{
icam_send_to_radegast(outgoing_data, packet_len);
}
}
}
}
bool icam_connect_to_radegast(void)
{
struct sockaddr_in cservaddr;
if (gRadegastFd == 0)
gRadegastFd = socket(AF_INET, SOCK_STREAM, 0);
if (gRadegastFd < 0)
{
gRadegastFd = 0;
return false;
}
int32_t flags = fcntl(gRadegastFd, F_GETFL);
fcntl(gRadegastFd, F_SETFL, flags | O_NONBLOCK);
bzero(&cservaddr, sizeof(cservaddr));
cservaddr.sin_family = AF_INET;
SIN_GET_ADDR(cservaddr) = cfg.rad_srvip;
cservaddr.sin_port = htons(cfg.rad_port);
connect(gRadegastFd,(struct sockaddr *)&cservaddr, sizeof(cservaddr));
return true;
}
void icam_reset(int32_t connid)
{
memset(gLast_ecm_paket[connid], 0, 8);
}
void icam_close_radegast_connection(void)
{
close(gRadegastFd);
gRadegastFd = 0;
}
bool icam_send_to_radegast(uint8_t* data, int len)
{
if (send(gRadegastFd, data, len, 0) < 0)
{
cs_log("icam_send_to_radegast: Send failure");
return false;
}
return true;
}
#endif // MODULE_RADEGAST
#endif // WITH_EMU