mirror of
https://github.com/rofafor/vdr-plugin-satip.git
synced 2023-10-10 13:37:42 +02:00
564 lines
18 KiB
C
564 lines
18 KiB
C
/*
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* tuner.c: SAT>IP plugin for the Video Disk Recorder
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*
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* See the README file for copyright information and how to reach the author.
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*
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*/
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#include "common.h"
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#include "config.h"
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#include "discover.h"
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#include "tuner.h"
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cSatipTuner::cSatipTuner(cSatipDeviceIf &deviceP, unsigned int packetLenP)
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: cThread("SAT>IP tuner"),
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sleepM(),
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deviceM(&deviceP),
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packetBufferLenM(packetLenP),
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rtpSocketM(new cSatipSocket()),
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rtcpSocketM(new cSatipSocket()),
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streamAddrM(""),
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streamParamM(""),
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currentServerM(NULL),
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nextServerM(NULL),
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mutexM(),
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handleM(NULL),
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headerListM(NULL),
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keepAliveM(),
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pidUpdateCacheM(),
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sessionM(""),
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timeoutM(eMinKeepAliveIntervalMs),
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openedM(false),
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tunedM(false),
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hasLockM(false),
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signalStrengthM(-1),
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signalQualityM(-1),
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streamIdM(-1),
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addPidsM(),
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delPidsM(),
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pidsM()
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{
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debug("cSatipTuner::%s(%d) [device %d]", __FUNCTION__, packetBufferLenM, deviceM->GetId());
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// Allocate packet buffer
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packetBufferM = MALLOC(unsigned char, packetBufferLenM);
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if (packetBufferM)
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memset(packetBufferM, 0, packetBufferLenM);
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else
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error("MALLOC() failed for packet buffer [device %d]", deviceM->GetId());
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// Start thread
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Start();
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}
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cSatipTuner::~cSatipTuner()
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{
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debug("cSatipTuner::%s() [device %d]", __FUNCTION__, deviceM->GetId());
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// Stop thread
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sleepM.Signal();
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if (Running())
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Cancel(3);
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Close();
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// Free allocated memory
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free(packetBufferM);
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DELETENULL(rtcpSocketM);
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DELETENULL(rtpSocketM);
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}
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size_t cSatipTuner::HeaderCallback(void *ptrP, size_t sizeP, size_t nmembP, void *dataP)
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{
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cSatipTuner *obj = reinterpret_cast<cSatipTuner *>(dataP);
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size_t len = sizeP * nmembP;
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//debug("cSatipTuner::%s(%zu)", __FUNCTION__, len);
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char *s, *p = (char *)ptrP;
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char *r = strtok_r(p, "\r\n", &s);
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while (obj && r) {
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//debug("cSatipTuner::%s(%zu): %s", __FUNCTION__, len, r);
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r = skipspace(r);
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if (strstr(r, "com.ses.streamID")) {
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int streamid = -1;
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if (sscanf(r, "com.ses.streamID:%11d", &streamid) == 1)
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obj->SetStreamId(streamid);
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}
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else if (strstr(r, "Session:")) {
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int timeout = -1;
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char *session = NULL;
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if (sscanf(r, "Session:%m[^;];timeout=%11d", &session, &timeout) == 2)
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obj->SetSessionTimeout(skipspace(session), timeout * 1000);
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else if (sscanf(r, "Session:%m[^;]", &session) == 1)
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obj->SetSessionTimeout(skipspace(session));
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FREE_POINTER(session);
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}
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r = strtok_r(NULL, "\r\n", &s);
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}
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return len;
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}
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void cSatipTuner::Action(void)
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{
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debug("cSatipTuner::%s(): entering [device %d]", __FUNCTION__, deviceM->GetId());
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cTimeMs timeout(eReConnectTimeoutMs);
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// Increase priority
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SetPriority(-1);
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// Do the thread loop
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while (packetBufferM && Running()) {
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int length = -1;
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unsigned int size = min(deviceM->CheckData(), packetBufferLenM);
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if (tunedM && (size > 0)) {
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// Update pids
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UpdatePids();
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// Remember the heart beat
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KeepAlive();
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// Read reception statistics
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if (rtcpSocketM && rtcpSocketM->IsOpen()) {
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unsigned char buf[1450];
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memset(buf, 0, sizeof(buf));
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if (rtcpSocketM->ReadApplication(buf, sizeof(buf)) > 0) {
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ParseReceptionParameters((const char *)buf);
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timeout.Set(eReConnectTimeoutMs);
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}
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}
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// Quirk for devices without valid reception data
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if (currentServerM && currentServerM->Quirk(cSatipServer::eSatipQuirkForceLock)) {
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hasLockM = true;
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signalStrengthM = eDefaultSignalStrength;
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signalQualityM = eDefaultSignalQuality;
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}
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// Read data
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if (rtpSocketM && rtpSocketM->IsOpen())
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length = rtpSocketM->ReadVideo(packetBufferM, size);
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}
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if (length > 0) {
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AddTunerStatistic(length);
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deviceM->WriteData(packetBufferM, length);
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timeout.Set(eReConnectTimeoutMs);
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}
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else {
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// Reconnect if necessary
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if (openedM && timeout.TimedOut()) {
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Disconnect();
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Connect();
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timeout.Set(eReConnectTimeoutMs);
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}
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sleepM.Wait(10); // to avoid busy loop and reduce cpu load
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}
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}
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debug("cSatipTuner::%s(): exiting [device %d]", __FUNCTION__, deviceM->GetId());
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}
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bool cSatipTuner::Open(void)
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{
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debug("cSatipTuner::%s() [device %d]", __FUNCTION__, deviceM->GetId());
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if (Connect()) {
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openedM = true;
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return true;
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}
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return false;
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}
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bool cSatipTuner::Close(void)
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{
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debug("cSatipTuner::%s() [device %d]", __FUNCTION__, deviceM->GetId());
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openedM = false;
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Disconnect();
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return true;
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}
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bool cSatipTuner::Connect(void)
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{
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cMutexLock MutexLock(&mutexM);
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debug("cSatipTuner::%s() [device %d]", __FUNCTION__, deviceM->GetId());
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// Initialize the curl session
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if (!handleM)
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handleM = curl_easy_init();
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if (handleM && !isempty(*streamAddrM)) {
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cString uri, control, transport, range;
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CURLcode res = CURLE_OK;
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// Just retune
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if (tunedM && (streamIdM >= 0)) {
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debug("cSatipTuner::%s(): retune [device %d]", __FUNCTION__, deviceM->GetId());
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keepAliveM.Set(0);
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KeepAlive();
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// Flush any old content
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if (rtpSocketM)
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rtpSocketM->Flush();
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return true;
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}
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#ifdef DEBUG
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// Verbose output
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SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_VERBOSE, 1L);
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#endif
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// No progress meter and no signaling
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SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_NOPROGRESS, 1L);
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SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_NOSIGNAL, 1L);
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// Set timeouts
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SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_TIMEOUT_MS, (long)eConnectTimeoutMs);
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SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_CONNECTTIMEOUT_MS, (long)eConnectTimeoutMs);
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// Set user-agent
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SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_USERAGENT, *cString::sprintf("vdr-%s/%s (device %d)", PLUGIN_NAME_I18N, VERSION, deviceM->GetId()));
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// Set URL
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char *p = curl_easy_unescape(handleM, *streamAddrM, 0, NULL);
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streamAddrM = p;
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curl_free(p);
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uri = cString::sprintf("rtsp://%s/", *streamAddrM);
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SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_URL, *uri);
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// Open sockets
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int i = 100;
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while (i-- > 0) {
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if (rtpSocketM->Open() && rtcpSocketM->Open(rtpSocketM->Port() + 1))
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break;
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rtpSocketM->Close();
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rtcpSocketM->Close();
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}
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if ((rtpSocketM->Port() <= 0) || (rtcpSocketM->Port() <= 0)) {
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error("Cannot open required RTP/RTCP ports [device %d]", deviceM->GetId());
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return false;
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}
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// Request server options
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keepAliveM.Set(timeoutM);
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SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_RTSP_STREAM_URI, *uri);
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SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_RTSP_REQUEST, (long)CURL_RTSPREQ_OPTIONS);
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SATIP_CURL_EASY_PERFORM(handleM);
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if (!ValidateLatestResponse())
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return false;
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// Setup media stream: "&pids=all" for the whole mux
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uri = cString::sprintf("rtsp://%s/?%s", *streamAddrM, *streamParamM);
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SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_RTSP_STREAM_URI, *uri);
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transport = cString::sprintf("RTP/AVP;unicast;client_port=%d-%d", rtpSocketM->Port(), rtcpSocketM->Port());
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SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_RTSP_TRANSPORT, *transport);
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SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_RTSP_REQUEST, (long)CURL_RTSPREQ_SETUP);
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// Set header callback for catching the session and timeout
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SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_HEADERFUNCTION, cSatipTuner::HeaderCallback);
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SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_WRITEHEADER, this);
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SATIP_CURL_EASY_PERFORM(handleM);
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// Session id is now known - disable header parsing
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SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_HEADERFUNCTION, NULL);
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SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_WRITEHEADER, NULL);
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if (nextServerM && nextServerM->Quirk(cSatipServer::eSatipQuirkSessionId) && !isempty(*sessionM) && startswith(*sessionM, "0")) {
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debug("cSatipTuner::%s(): session id quirk [device %d]", __FUNCTION__, deviceM->GetId());
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SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_RTSP_SESSION_ID, SkipZeroes(*sessionM));
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}
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if (!ValidateLatestResponse())
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return false;
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// Start playing
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tunedM = true;
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if (!pidsM.Size()) {
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SetPid(0, 5, true);
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if (nextServerM && nextServerM->Quirk(cSatipServer::eSatipQuirkPlayPids))
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SetPid(eDummyPid, 5, true);
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}
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UpdatePids(true);
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if (nextServerM) {
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cSatipDiscover::GetInstance()->UseServer(nextServerM, true);
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currentServerM = nextServerM;
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nextServerM = NULL;
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}
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return true;
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}
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return false;
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}
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bool cSatipTuner::Disconnect(void)
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{
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cMutexLock MutexLock(&mutexM);
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debug("cSatipTuner::%s() [device %d]", __FUNCTION__, deviceM->GetId());
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// Terminate curl session
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if (handleM) {
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// Teardown rtsp session
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if (!isempty(*streamAddrM) && streamIdM >= 0) {
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CURLcode res = CURLE_OK;
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cString uri = cString::sprintf("rtsp://%s/stream=%d", *streamAddrM, streamIdM);
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SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_RTSP_STREAM_URI, *uri);
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SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_RTSP_REQUEST, (long)CURL_RTSPREQ_TEARDOWN);
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SATIP_CURL_EASY_PERFORM(handleM);
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ValidateLatestResponse();
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}
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// Cleanup curl stuff
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if (headerListM) {
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curl_slist_free_all(headerListM);
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headerListM = NULL;
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}
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curl_easy_cleanup(handleM);
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handleM = NULL;
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}
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// Close the listening sockets
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rtpSocketM->Close();
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rtcpSocketM->Close();
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// Reset signal parameters
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hasLockM = false;
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signalStrengthM = -1;
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signalQualityM = -1;
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if (currentServerM)
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cSatipDiscover::GetInstance()->UseServer(currentServerM, false);
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tunedM = false;
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timeoutM = eMinKeepAliveIntervalMs;
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addPidsM.Clear();
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delPidsM.Clear();
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return true;
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}
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bool cSatipTuner::ValidateLatestResponse(void)
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{
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//debug("cSatipTuner::%s() [device %d]", __FUNCTION__, deviceM->GetId());
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if (handleM) {
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long rc = 0;
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CURLcode res = CURLE_OK;
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SATIP_CURL_EASY_GETINFO(handleM, CURLINFO_RESPONSE_CODE, &rc);
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if (rc == 200)
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return true;
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else if (rc != 0)
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error("Tuner detected invalid status code %ld [device %d]", rc, deviceM->GetId());
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}
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return false;
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}
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void cSatipTuner::ParseReceptionParameters(const char *paramP)
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{
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//debug("cSatipTuner::%s(%s) [device %d]", __FUNCTION__, paramP, deviceM->GetId());
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// DVB-S2:
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// ver=<major>.<minor>;src=<srcID>;tuner=<feID>,<level>,<lock>,<quality>,<frequency>,<polarisation>,<system>,<type>,<pilots>,<roll_off>,<symbol_rate>,<fec_inner>;pids=<pid0>,...,<pidn>
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// DVB-T2:
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// ver=1.1;tuner=<feID>,<level>,<lock>,<quality>,<freq>,<bw>,<msys>,<tmode>,<mtype>,<gi>,<fec>,<plp>,<t2id>,<sm>;pids=<pid0>,...,<pidn>
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if (!isempty(paramP)) {
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char *s = strdup(paramP);
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char *c = strstr(s, ";tuner=");
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if (c) {
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int value;
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// level:
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// Numerical value between 0 and 255
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// An incoming L-band satellite signal of
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// -25dBm corresponds to 224
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// -65dBm corresponds to 32
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// No signal corresponds to 0
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c = strstr(c, ",");
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value = atoi(++c);
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// Scale value to 0-100
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signalStrengthM = (value >= 0) ? (value * 100 / 255) : -1;
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// lock:
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// lock Set to one of the following values:
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// "0" the frontend is not locked
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// "1" the frontend is locked
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c = strstr(c, ",");
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hasLockM = atoi(++c);
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// quality:
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// Numerical value between 0 and 15
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// Lowest value corresponds to highest error rate
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// The value 15 shall correspond to
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// -a BER lower than 2x10-4 after Viterbi for DVB-S
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// -a PER lower than 10-7 for DVB-S2
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c = strstr(c, ",");
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value = atoi(++c);
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// Scale value to 0-100
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signalQualityM = (hasLockM && (value >= 0)) ? (value * 100 / 15) : 0;
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}
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free(s);
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}
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}
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void cSatipTuner::SetStreamId(int streamIdP)
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{
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cMutexLock MutexLock(&mutexM);
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debug("cSatipTuner::%s(%d) [device %d]", __FUNCTION__, streamIdP, deviceM->GetId());
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streamIdM = streamIdP;
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}
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void cSatipTuner::SetSessionTimeout(const char *sessionP, int timeoutP)
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{
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cMutexLock MutexLock(&mutexM);
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debug("cSatipTuner::%s(%s, %d) [device %d]", __FUNCTION__, sessionP, timeoutP, deviceM->GetId());
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sessionM = sessionP;
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timeoutM = (timeoutP > eMinKeepAliveIntervalMs) ? timeoutP : eMinKeepAliveIntervalMs;
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}
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bool cSatipTuner::SetSource(cSatipServer *serverP, const char *parameterP, const int indexP)
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{
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debug("cSatipTuner::%s(%s, %d) [device %d]", __FUNCTION__, parameterP, indexP, deviceM->GetId());
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cMutexLock MutexLock(&mutexM);
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if (serverP) {
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nextServerM = cSatipDiscover::GetInstance()->GetServer(serverP);
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if (nextServerM && !isempty(nextServerM->Address()) && !isempty(parameterP)) {
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// Update stream address and parameter
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streamAddrM = nextServerM->Address();
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streamParamM = parameterP;
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// Reconnect
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Connect();
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}
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}
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else
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Disconnect();
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return true;
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}
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bool cSatipTuner::SetPid(int pidP, int typeP, bool onP)
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{
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//debug("cSatipTuner::%s(%d, %d, %d) [device %d]", __FUNCTION__, pidP, typeP, onP, deviceM->GetId());
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cMutexLock MutexLock(&mutexM);
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bool found = false;
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for (int i = 0; i < pidsM.Size(); ++i) {
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if (pidsM[i] == pidP) {
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found = true;
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if (!onP)
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pidsM.Remove(i);
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break;
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}
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}
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if (onP && !found)
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pidsM.Append(pidP);
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// Generate deltas
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found = false;
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if (onP) {
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for (int i = 0; i < addPidsM.Size(); ++i) {
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if (addPidsM[i] == pidP) {
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found = true;
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break;
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}
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}
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if (!found)
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addPidsM.Append(pidP);
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for (int i = 0; i < delPidsM.Size(); ++i) {
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if (delPidsM[i] == pidP) {
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delPidsM.Remove(i);
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break;
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}
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}
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}
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else {
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for (int i = 0; i < delPidsM.Size(); ++i) {
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if (delPidsM[i] == pidP) {
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found = true;
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break;
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}
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}
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if (!found)
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delPidsM.Append(pidP);
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for (int i = 0; i < addPidsM.Size(); ++i) {
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if (addPidsM[i] == pidP) {
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addPidsM.Remove(i);
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break;
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}
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}
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}
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pidUpdateCacheM.Set(ePidUpdateIntervalMs);
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return true;
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}
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bool cSatipTuner::UpdatePids(bool forceP)
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{
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cMutexLock MutexLock(&mutexM);
|
|
if (((forceP && pidsM.Size()) || (pidUpdateCacheM.TimedOut() && (addPidsM.Size() || delPidsM.Size()))) &&
|
|
tunedM && handleM && !isempty(*streamAddrM) && (streamIdM > 0)) {
|
|
CURLcode res = CURLE_OK;
|
|
cString uri = cString::sprintf("rtsp://%s/stream=%d", *streamAddrM, streamIdM);
|
|
if (forceP || (currentServerM && currentServerM->Quirk(cSatipServer::eSatipQuirkPlayPids))) {
|
|
if (pidsM.Size()) {
|
|
uri = cString::sprintf("%s?pids=", *uri);
|
|
for (int i = 0; i < pidsM.Size(); ++i)
|
|
uri = cString::sprintf("%s%d%s", *uri, pidsM[i], (i == (pidsM.Size() - 1)) ? "" : ",");
|
|
}
|
|
}
|
|
else {
|
|
if (addPidsM.Size()) {
|
|
uri = cString::sprintf("%s?addpids=", *uri);
|
|
for (int i = 0; i < addPidsM.Size(); ++i)
|
|
uri = cString::sprintf("%s%d%s", *uri, addPidsM[i], (i == (addPidsM.Size() - 1)) ? "" : ",");
|
|
}
|
|
if (delPidsM.Size()) {
|
|
uri = cString::sprintf("%s%sdelpids=", *uri, addPidsM.Size() ? "&" : "?");
|
|
for (int i = 0; i < delPidsM.Size(); ++i)
|
|
uri = cString::sprintf("%s%d%s", *uri, delPidsM[i], (i == (delPidsM.Size() - 1)) ? "" : ",");
|
|
}
|
|
}
|
|
//debug("cSatipTuner::%s(): %s [device %d]", __FUNCTION__, *uri, deviceM->GetId());
|
|
SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_RTSP_STREAM_URI, *uri);
|
|
SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_RTSP_REQUEST, (long)CURL_RTSPREQ_PLAY);
|
|
SATIP_CURL_EASY_PERFORM(handleM);
|
|
if (ValidateLatestResponse()) {
|
|
addPidsM.Clear();
|
|
delPidsM.Clear();
|
|
}
|
|
else
|
|
Disconnect();
|
|
|
|
return true;
|
|
}
|
|
|
|
return false;
|
|
}
|
|
|
|
bool cSatipTuner::KeepAlive(void)
|
|
{
|
|
cMutexLock MutexLock(&mutexM);
|
|
if (tunedM && handleM && keepAliveM.TimedOut()) {
|
|
debug("cSatipTuner::%s() [device %d]", __FUNCTION__, deviceM->GetId());
|
|
CURLcode res = CURLE_OK;
|
|
cString uri = cString::sprintf("rtsp://%s/stream=%d", *streamAddrM, streamIdM);
|
|
|
|
SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_RTSP_STREAM_URI, *uri);
|
|
SATIP_CURL_EASY_SETOPT(handleM, CURLOPT_RTSP_REQUEST, (long)CURL_RTSPREQ_OPTIONS);
|
|
SATIP_CURL_EASY_PERFORM(handleM);
|
|
if (ValidateLatestResponse())
|
|
keepAliveM.Set(timeoutM);
|
|
else
|
|
Disconnect();
|
|
|
|
return true;
|
|
}
|
|
|
|
return false;
|
|
}
|
|
|
|
int cSatipTuner::SignalStrength(void)
|
|
{
|
|
//debug("cSatipTuner::%s() [device %d]", __FUNCTION__, deviceM->GetId());
|
|
return signalStrengthM;
|
|
}
|
|
|
|
int cSatipTuner::SignalQuality(void)
|
|
{
|
|
//debug("cSatipTuner::%s() [device %d]", __FUNCTION__, deviceM->GetId());
|
|
return signalQualityM;
|
|
}
|
|
|
|
bool cSatipTuner::HasLock(void)
|
|
{
|
|
//debug("cSatipTuner::%s() [device %d]", __FUNCTION__, deviceM->GetId());
|
|
return tunedM && hasLockM;
|
|
}
|
|
|
|
cString cSatipTuner::GetSignalStatus(void)
|
|
{
|
|
//debug("cSatipTuner::%s() [device %d]", __FUNCTION__, deviceM->GetId());
|
|
return cString::sprintf("lock=%d strength=%d quality=%d", HasLock(), SignalStrength(), SignalQuality());
|
|
}
|
|
|
|
cString cSatipTuner::GetInformation(void)
|
|
{
|
|
//debug("cSatipTuner::%s() [device %d]", __FUNCTION__, deviceM->GetId());
|
|
return tunedM ? cString::sprintf("rtsp://%s/?%s [stream=%d]", *streamAddrM, *streamParamM, streamIdM) : "connection failed";
|
|
}
|