mirror of
https://github.com/cjcliffe/CubicSDR.git
synced 2024-11-22 11:49:38 -05:00
Merge branch 'vsonnier-audioVisOutputQueue_nullptr_crash_and_misc_changes'
This commit is contained in:
commit
9a16ed7adf
@ -50,7 +50,7 @@ void IOThread::setInputQueue(std::string qname, ThreadQueueBase *threadQueue) {
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this->onBindInput(qname, threadQueue);
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};
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void *IOThread::getInputQueue(std::string qname) {
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ThreadQueueBase *IOThread::getInputQueue(std::string qname) {
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return input_queues[qname];
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};
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@ -59,7 +59,7 @@ void IOThread::setOutputQueue(std::string qname, ThreadQueueBase *threadQueue) {
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this->onBindOutput(qname, threadQueue);
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};
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void *IOThread::getOutputQueue(std::string qname) {
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ThreadQueueBase *IOThread::getOutputQueue(std::string qname) {
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return output_queues[qname];
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};
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@ -20,22 +20,29 @@ struct map_string_less : public std::binary_function<std::string,std::string,boo
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class ReferenceCounter {
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public:
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mutable std::mutex m_mutex;
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void setRefCount(int rc) {
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refCount.store(rc);
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std::lock_guard < std::recursive_mutex > lock(m_mutex);
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refCount = rc;
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}
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void decRefCount() {
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refCount.store(refCount.load()-1);
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std::lock_guard < std::recursive_mutex > lock(m_mutex);
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refCount--;
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}
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int getRefCount() {
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return refCount.load();
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std::lock_guard < std::recursive_mutex > lock(m_mutex);
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return refCount;
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}
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protected:
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std::atomic_int refCount;
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//this is a basic mutex for all ReferenceCounter derivatives operations INCLUDING the counter itself for consistency !
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mutable std::recursive_mutex m_mutex;
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private:
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int refCount;
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};
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@ -50,17 +57,19 @@ public:
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}
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BufferType *getBuffer() {
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BufferType* buf = NULL;
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std::lock_guard < std::mutex > lock(m_mutex);
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BufferType* buf = nullptr;
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for (outputBuffersI = outputBuffers.begin(); outputBuffersI != outputBuffers.end(); outputBuffersI++) {
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if (!buf && (*outputBuffersI)->getRefCount() <= 0) {
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if (buf == nullptr && (*outputBuffersI)->getRefCount() <= 0) {
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buf = (*outputBuffersI);
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(*outputBuffersI)->setRefCount(0);
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buf->setRefCount(0);
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} else if ((*outputBuffersI)->getRefCount() <= 0) {
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(*outputBuffersI)->decRefCount();
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}
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}
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if (buf) {
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if (buf != nullptr) {
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if (outputBuffers.back()->getRefCount() < -REBUFFER_GC_LIMIT) {
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BufferType *ref = outputBuffers.back();
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outputBuffers.pop_back();
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@ -81,6 +90,7 @@ public:
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}
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void purge() {
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std::lock_guard < std::mutex > lock(m_mutex);
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while (!outputBuffers.empty()) {
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BufferType *ref = outputBuffers.front();
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outputBuffers.pop_front();
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@ -91,6 +101,7 @@ private:
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std::string bufferId;
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std::deque<BufferType*> outputBuffers;
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typename std::deque<BufferType*>::iterator outputBuffersI;
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mutable std::mutex m_mutex;
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};
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@ -115,9 +126,9 @@ public:
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virtual void onBindInput(std::string name, ThreadQueueBase* threadQueue);
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void setInputQueue(std::string qname, ThreadQueueBase *threadQueue);
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void *getInputQueue(std::string qname);
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ThreadQueueBase *getInputQueue(std::string qname);
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void setOutputQueue(std::string qname, ThreadQueueBase *threadQueue);
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void *getOutputQueue(std::string qname);
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ThreadQueueBase *getOutputQueue(std::string qname);
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protected:
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std::map<std::string, ThreadQueueBase *, map_string_less> input_queues;
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@ -379,8 +379,8 @@ void AudioThread::run() {
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std::cout << "Audio thread started." << std::endl;
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inputQueue = (AudioThreadInputQueue *)getInputQueue("AudioDataInput");
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threadQueueNotify = (DemodulatorThreadCommandQueue*)getOutputQueue("NotifyQueue");
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inputQueue = static_cast<AudioThreadInputQueue *>(getInputQueue("AudioDataInput"));
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threadQueueNotify = static_cast<DemodulatorThreadCommandQueue*>(getOutputQueue("NotifyQueue"));
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while (!terminated) {
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AudioThreadCommand command;
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@ -28,7 +28,7 @@ public:
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}
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~AudioThreadInput() {
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std::lock_guard < std::mutex > lock(m_mutex);
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std::lock_guard < std::recursive_mutex > lock(m_mutex);
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}
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};
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@ -90,7 +90,7 @@ public:
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}
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~DemodulatorThreadPostIQData() {
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std::lock_guard < std::mutex > lock(m_mutex);
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std::lock_guard < std::recursive_mutex > lock(m_mutex);
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}
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};
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@ -56,9 +56,9 @@ void DemodulatorPreThread::run() {
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ReBuffer<DemodulatorThreadPostIQData> buffers("DemodulatorPreThreadBuffers");
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iqInputQueue = (DemodulatorThreadInputQueue*)getInputQueue("IQDataInput");
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iqOutputQueue = (DemodulatorThreadPostInputQueue*)getOutputQueue("IQDataOutput");
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threadQueueNotify = (DemodulatorThreadCommandQueue*)getOutputQueue("NotifyQueue");
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iqInputQueue = static_cast<DemodulatorThreadInputQueue*>(getInputQueue("IQDataInput"));
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iqOutputQueue = static_cast<DemodulatorThreadPostInputQueue*>(getOutputQueue("IQDataOutput"));
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threadQueueNotify = static_cast<DemodulatorThreadCommandQueue*>(getOutputQueue("NotifyQueue"));
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std::vector<liquid_float_complex> in_buf_data;
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std::vector<liquid_float_complex> out_buf_data;
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@ -13,7 +13,9 @@
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#include <pthread.h>
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#endif
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DemodulatorThread::DemodulatorThread(DemodulatorInstance *parent) : IOThread(), outputBuffers("DemodulatorThreadBuffers"), squelchLevel(-100), signalLevel(-100), squelchEnabled(false), cModem(nullptr), cModemKit(nullptr), iqInputQueue(NULL), audioOutputQueue(NULL), audioVisOutputQueue(NULL), threadQueueControl(NULL), threadQueueNotify(NULL) {
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DemodulatorThread::DemodulatorThread(DemodulatorInstance *parent)
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: IOThread(), outputBuffers("DemodulatorThreadBuffers"), squelchLevel(-100),
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signalLevel(-100), squelchEnabled(false) {
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demodInstance = parent;
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muted.store(false);
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@ -26,7 +28,11 @@ DemodulatorThread::~DemodulatorThread() {
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void DemodulatorThread::onBindOutput(std::string name, ThreadQueueBase *threadQueue) {
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if (name == "AudioVisualOutput") {
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audioVisOutputQueue = (DemodulatorThreadOutputQueue *)threadQueue;
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//protects because it may be changed at runtime
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std::lock_guard < std::mutex > lock(m_mutexAudioVisOutputQueue);
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audioVisOutputQueue = static_cast<DemodulatorThreadOutputQueue*>(threadQueue);
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}
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}
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@ -63,10 +69,10 @@ void DemodulatorThread::run() {
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std::cout << "Demodulator thread started.." << std::endl;
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iqInputQueue = (DemodulatorThreadPostInputQueue*)getInputQueue("IQDataInput");
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audioOutputQueue = (AudioThreadInputQueue*)getOutputQueue("AudioDataOutput");
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threadQueueControl = (DemodulatorThreadControlCommandQueue *)getInputQueue("ControlQueue");
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threadQueueNotify = (DemodulatorThreadCommandQueue*)getOutputQueue("NotifyQueue");
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iqInputQueue = static_cast<DemodulatorThreadPostInputQueue*>(getInputQueue("IQDataInput"));
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audioOutputQueue = static_cast<AudioThreadInputQueue*>(getOutputQueue("AudioDataOutput"));
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threadQueueControl = static_cast<DemodulatorThreadControlCommandQueue *>(getInputQueue("ControlQueue"));
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threadQueueNotify = static_cast<DemodulatorThreadCommandQueue*>(getOutputQueue("NotifyQueue"));
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ModemIQData modemData;
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@ -119,7 +125,7 @@ void DemodulatorThread::run() {
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modemData.data.assign(inputData->begin(), inputData->end());
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modemData.setRefCount(1);
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AudioThreadInput *ati = NULL;
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AudioThreadInput *ati = nullptr;
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ModemAnalog *modemAnalog = (cModem->getType() == "analog")?((ModemAnalog *)cModem):nullptr;
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ModemDigital *modemDigital = (cModem->getType() == "digital")?((ModemDigital *)cModem):nullptr;
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@ -159,7 +165,7 @@ void DemodulatorThread::run() {
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}
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}
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if (audioOutputQueue != NULL && ati && !squelched) {
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if (audioOutputQueue != nullptr && ati && !squelched) {
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std::vector<float>::iterator data_i;
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ati->peak = 0;
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for (data_i = ati->data.begin(); data_i != ati->data.end(); data_i++) {
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@ -173,8 +179,17 @@ void DemodulatorThread::run() {
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ati = nullptr;
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}
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if (ati && audioVisOutputQueue != NULL && audioVisOutputQueue->empty()) {
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//At that point, capture the current state of audioVisOutputQueue in a local
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//variable, and works with it with now on until the next while-turn.
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DemodulatorThreadOutputQueue* localAudioVisOutputQueue = nullptr;
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{
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std::lock_guard < std::mutex > lock(m_mutexAudioVisOutputQueue);
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localAudioVisOutputQueue = audioVisOutputQueue;
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}
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if (ati && localAudioVisOutputQueue != nullptr && localAudioVisOutputQueue->empty()) {
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AudioThreadInput *ati_vis = audioVisBuffers.getBuffer();
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ati_vis->setRefCount(1);
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ati_vis->sampleRate = inp->sampleRate;
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ati_vis->inputRate = inp->sampleRate;
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@ -230,11 +245,11 @@ void DemodulatorThread::run() {
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ati_vis->type = 0;
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}
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audioVisOutputQueue->push(ati_vis);
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localAudioVisOutputQueue->push(ati_vis);
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}
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if (ati != NULL) {
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if (ati != nullptr) {
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if (!muted.load() && (!wxGetApp().getSoloMode() || (demodInstance == wxGetApp().getDemodMgr().getLastActiveDemodulator()))) {
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audioOutputQueue->push(ati);
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} else {
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@ -266,7 +281,10 @@ void DemodulatorThread::run() {
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outputBuffers.purge();
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if (audioVisOutputQueue && !audioVisOutputQueue->empty()) {
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//Guard the cleanup of audioVisOutputQueue properly.
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std::lock_guard < std::mutex > lock(m_mutexAudioVisOutputQueue);
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if (audioVisOutputQueue != nullptr && !audioVisOutputQueue->empty()) {
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AudioThreadInput *dummy_vis;
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audioVisOutputQueue->pop(dummy_vis);
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}
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@ -40,8 +40,8 @@ protected:
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float abMagnitude(double alpha, double beta, float inphase, float quadrature);
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float linearToDb(float linear);
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DemodulatorInstance *demodInstance;
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ReBuffer<AudioThreadInput> outputBuffers;
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DemodulatorInstance *demodInstance = nullptr;
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ReBuffer<AudioThreadInput> outputBuffers = nullptr;
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std::atomic_bool muted;
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@ -49,12 +49,15 @@ protected:
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std::atomic<float> signalLevel;
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bool squelchEnabled, squelchBreak;
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Modem *cModem;
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ModemKit *cModemKit;
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Modem *cModem = nullptr;
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ModemKit *cModemKit = nullptr;
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DemodulatorThreadPostInputQueue* iqInputQueue;
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AudioThreadInputQueue *audioOutputQueue;
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DemodulatorThreadOutputQueue* audioVisOutputQueue;
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DemodulatorThreadControlCommandQueue *threadQueueControl;
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DemodulatorThreadCommandQueue* threadQueueNotify;
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DemodulatorThreadPostInputQueue* iqInputQueue = nullptr;
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AudioThreadInputQueue *audioOutputQueue = nullptr;
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DemodulatorThreadOutputQueue* audioVisOutputQueue = nullptr;
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DemodulatorThreadControlCommandQueue *threadQueueControl = nullptr;
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DemodulatorThreadCommandQueue* threadQueueNotify = nullptr;
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//protects the audioVisOutputQueue dynamic binding change at runtime (in DemodulatorMgr)
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mutable std::mutex m_mutexAudioVisOutputQueue;
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};
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@ -14,8 +14,8 @@ void DemodulatorWorkerThread::run() {
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std::cout << "Demodulator worker thread started.." << std::endl;
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commandQueue = (DemodulatorThreadWorkerCommandQueue *)getInputQueue("WorkerCommandQueue");
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resultQueue = (DemodulatorThreadWorkerResultQueue *)getOutputQueue("WorkerResultQueue");
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commandQueue = static_cast<DemodulatorThreadWorkerCommandQueue *>(getInputQueue("WorkerCommandQueue"));
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resultQueue = static_cast<DemodulatorThreadWorkerResultQueue *>(getOutputQueue("WorkerResultQueue"));
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while (!terminated) {
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bool filterChanged = false;
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@ -32,7 +32,7 @@ public:
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}
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~ModemIQData() {
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std::lock_guard < std::mutex > lock(m_mutex);
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std::lock_guard < std::recursive_mutex > lock(m_mutex);
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}
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};
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@ -24,8 +24,8 @@ SpectrumVisualProcessor *FFTVisualDataThread::getProcessor() {
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}
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void FFTVisualDataThread::run() {
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DemodulatorThreadInputQueue *pipeIQDataIn = (DemodulatorThreadInputQueue *)getInputQueue("IQDataInput");
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SpectrumVisualDataQueue *pipeFFTDataOut = (SpectrumVisualDataQueue *)getOutputQueue("FFTDataOutput");
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DemodulatorThreadInputQueue *pipeIQDataIn = static_cast<DemodulatorThreadInputQueue *>(getInputQueue("IQDataInput"));
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SpectrumVisualDataQueue *pipeFFTDataOut = static_cast<SpectrumVisualDataQueue *>(getOutputQueue("FFTDataOutput"));
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fftQueue.set_max_num_items(100);
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pipeFFTDataOut->set_max_num_items(100);
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@ -161,10 +161,10 @@ void SDRPostThread::run() {
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std::cout << "SDR post-processing thread started.." << std::endl;
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iqDataInQueue = (SDRThreadIQDataQueue*)getInputQueue("IQDataInput");
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iqDataOutQueue = (DemodulatorThreadInputQueue*)getOutputQueue("IQDataOutput");
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iqVisualQueue = (DemodulatorThreadInputQueue*)getOutputQueue("IQVisualDataOutput");
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iqActiveDemodVisualQueue = (DemodulatorThreadInputQueue*)getOutputQueue("IQActiveDemodVisualDataOutput");
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iqDataInQueue = static_cast<SDRThreadIQDataQueue*>(getInputQueue("IQDataInput"));
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iqDataOutQueue = static_cast<DemodulatorThreadInputQueue*>(getOutputQueue("IQDataOutput"));
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iqVisualQueue = static_cast<DemodulatorThreadInputQueue*>(getOutputQueue("IQVisualDataOutput"));
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iqActiveDemodVisualQueue = static_cast<DemodulatorThreadInputQueue*>(getOutputQueue("IQActiveDemodVisualDataOutput"));
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iqDataInQueue->set_max_num_items(0);
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@ -216,7 +216,7 @@ void SDRThread::readStream(SDRThreadIQDataQueue* iqDataOutQueue) {
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}
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void SDRThread::readLoop() {
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SDRThreadIQDataQueue* iqDataOutQueue = (SDRThreadIQDataQueue*) getOutputQueue("IQDataOutput");
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SDRThreadIQDataQueue* iqDataOutQueue = static_cast<SDRThreadIQDataQueue*>( getOutputQueue("IQDataOutput"));
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if (iqDataOutQueue == NULL) {
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return;
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