refactor(synthetic): complete enable_tag and support tag
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18ffd0372b
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c894ca4a4f
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@ -156,6 +156,25 @@ const struct Synthetic::stream_control_t Synthetic::getControlDateWithStream(
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return {};
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}
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std::shared_ptr<Processor> Synthetic::getProcessorWithStream(
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const Stream& stream) {
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// for (auto &&it : processors_) {
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// std::cout << it->Name();
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// for (auto it_s : it->getTargetStreams()) {
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// std::cout << it_s.stream << "----" << it_s.mode << std::endl;
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// }
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// }
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for (auto &&it : processors_) {
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for (auto it_s : it->getTargetStreams()) {
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if (it_s.stream == stream) {
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// std::cout << it_s.stream << "----" << it_s.mode << std::endl;
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return it;
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}
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}
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}
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LOG(ERROR) << "ERROR: no suited processor for stream "<< stream;
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}
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void Synthetic::setControlDateCallbackWithStream(
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const struct stream_control_t& ctr_data) {
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for (auto &&it : processors_) {
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@ -194,7 +213,7 @@ bool Synthetic::checkControlDateWithStream(const Stream& stream) const {
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}
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}
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}
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return stream == Stream::LEFT || stream == Stream::RIGHT;
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return false;
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}
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// bool Synthetic::Supports(const Stream &stream) const {
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@ -234,15 +253,15 @@ Synthetic::status_mode_t Synthetic::GetStreamStatusMode(
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bool Synthetic::Supports(const Stream &stream) const {
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return stream_supports_mode_.find(stream) != stream_supports_mode_.end();
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return checkControlDateWithStream(stream);
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}
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Synthetic::mode_t Synthetic::SupportsMode(const Stream &stream) const {
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try {
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return stream_supports_mode_.at(stream);
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} catch (const std::out_of_range &e) {
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return MODE_LAST;
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if (checkControlDateWithStream(stream)) {
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auto data = getControlDateWithStream(stream);
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return data.support_mode_;
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}
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return MODE_LAST;
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}
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void Synthetic::EnableStreamData(const Stream &stream) {
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@ -254,7 +273,12 @@ void Synthetic::DisableStreamData(const Stream &stream) {
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}
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bool Synthetic::IsStreamDataEnabled(const Stream &stream) const {
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return stream_enabled_mode_.find(stream) != stream_enabled_mode_.end();
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if (checkControlDateWithStream(stream)) {
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auto data = getControlDateWithStream(stream);
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return data.enabled_mode_ == MODE_SYNTHETIC ||
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data.enabled_mode_ == MODE_NATIVE;
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}
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return false;
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}
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void Synthetic::SetStreamCallback(
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@ -272,10 +296,11 @@ bool Synthetic::HasStreamCallback(const Stream &stream) const {
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void Synthetic::StartVideoStreaming() {
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auto &&device = api_->device();
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for (auto &&it = stream_supports_mode_.begin();
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it != stream_supports_mode_.end(); it++) {
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if (it->second == MODE_NATIVE) {
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auto &&stream = it->first;
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for (unsigned int i =0; i< processors_.size(); i++) {
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auto streams = processors_[i]->getTargetStreams();
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for (unsigned int j =0; j< streams.size(); j++) {
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if (processors_[i]->target_streams_[j].support_mode_ == MODE_NATIVE) {
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auto stream = processors_[i]->target_streams_[j].stream;
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device->SetStreamCallback(
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stream,
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[this, stream](const device::StreamData &data) {
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@ -289,15 +314,19 @@ void Synthetic::StartVideoStreaming() {
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true);
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}
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}
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}
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device->Start(Source::VIDEO_STREAMING);
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}
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void Synthetic::StopVideoStreaming() {
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auto &&device = api_->device();
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for (auto &&it = stream_supports_mode_.begin();
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it != stream_supports_mode_.end(); it++) {
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if (it->second == MODE_NATIVE) {
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device->SetStreamCallback(it->first, nullptr);
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for (unsigned int i =0; i< processors_.size(); i++) {
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auto streams = processors_[i]->getTargetStreams();
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for (unsigned int j =0; j< streams.size(); j++) {
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if (processors_[i]->target_streams_[j].support_mode_ == MODE_NATIVE) {
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auto stream = processors_[i]->target_streams_[j].stream;
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device->SetStreamCallback(stream, nullptr);
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}
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}
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}
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device->Stop(Source::VIDEO_STREAMING);
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@ -453,37 +482,42 @@ bool Synthetic::HasPlugin() const {
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void Synthetic::InitStreamSupports() {
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auto &&device = api_->device();
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if (device->Supports(Stream::LEFT) && device->Supports(Stream::RIGHT)) {
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stream_supports_mode_[Stream::LEFT] = MODE_NATIVE;
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stream_supports_mode_[Stream::RIGHT] = MODE_NATIVE;
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auto processor = getProcessorWithStream(Stream::LEFT);
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for (unsigned int i = 0; i< processor->target_streams_.size(); i++) {
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if (processor->target_streams_[i].stream == Stream::LEFT) {
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processor->target_streams_[i].support_mode_ = MODE_NATIVE;
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}
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if (processor->target_streams_[i].stream == Stream::RIGHT) {
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processor->target_streams_[i].support_mode_ = MODE_NATIVE;
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}
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}
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std::vector<Stream> stream_chain{
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Stream::LEFT_RECTIFIED, Stream::RIGHT_RECTIFIED,
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Stream::DISPARITY, Stream::DISPARITY_NORMALIZED,
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Stream::POINTS, Stream::DEPTH};
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for (auto &&stream : stream_chain) {
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auto processor = getProcessorWithStream(stream);
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for (unsigned int i = 0; i< processor->target_streams_.size(); i++) {
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if (processor->target_streams_[i].stream == stream) {
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if (device->Supports(stream)) {
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stream_supports_mode_[stream] = MODE_NATIVE;
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processor->target_streams_[i].support_mode_ = MODE_NATIVE;
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processor->target_streams_[i].enabled_mode_ = MODE_NATIVE;
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} else {
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stream_supports_mode_[stream] = MODE_SYNTHETIC;
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processor->target_streams_[i].support_mode_ = MODE_SYNTHETIC;
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}
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}
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}
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// Enabled native streams by default
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for (auto &&it = stream_supports_mode_.begin();
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it != stream_supports_mode_.end(); it++) {
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if (it->second == MODE_NATIVE) {
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stream_enabled_mode_[it->first] = MODE_NATIVE;
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}
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}
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}
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Synthetic::mode_t Synthetic::GetStreamEnabledMode(const Stream &stream) const {
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try {
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return stream_enabled_mode_.at(stream);
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} catch (const std::out_of_range &e) {
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return MODE_LAST;
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if (checkControlDateWithStream(stream)) {
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auto data = getControlDateWithStream(stream);
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return data.enabled_mode_;
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}
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return MODE_LAST;
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}
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bool Synthetic::IsStreamEnabledNative(const Stream &stream) const {
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@ -498,11 +532,17 @@ void Synthetic::EnableStreamData(const Stream &stream, std::uint32_t depth) {
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if (IsStreamDataEnabled(stream))
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return;
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// Activate processors of synthetic stream
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auto processor = getProcessorWithStream(stream);
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for (unsigned int i = 0; i< processor->target_streams_.size(); i++) {
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if (processor->target_streams_[i].stream == stream) {
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processor->target_streams_[i].enabled_mode_ = MODE_SYNTHETIC;
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}
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}
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switch (stream) {
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case Stream::LEFT_RECTIFIED: {
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if (!IsStreamDataEnabled(Stream::LEFT))
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break;
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stream_enabled_mode_[stream] = MODE_SYNTHETIC;
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if (calib_model_ == CalibrationModel::PINHOLE) {
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CHECK(ActivateProcessor<RectifyProcessorOCV>());
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#ifdef WITH_CAM_MODELS
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@ -518,7 +558,6 @@ void Synthetic::EnableStreamData(const Stream &stream, std::uint32_t depth) {
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case Stream::RIGHT_RECTIFIED: {
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if (!IsStreamDataEnabled(Stream::RIGHT))
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break;
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stream_enabled_mode_[stream] = MODE_SYNTHETIC;
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if (calib_model_ == CalibrationModel::PINHOLE) {
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CHECK(ActivateProcessor<RectifyProcessorOCV>());
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#ifdef WITH_CAM_MODELS
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@ -532,18 +571,15 @@ void Synthetic::EnableStreamData(const Stream &stream, std::uint32_t depth) {
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}
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} return;
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case Stream::DISPARITY: {
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stream_enabled_mode_[stream] = MODE_SYNTHETIC;
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EnableStreamData(Stream::LEFT_RECTIFIED, depth + 1);
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EnableStreamData(Stream::RIGHT_RECTIFIED, depth + 1);
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CHECK(ActivateProcessor<DisparityProcessor>());
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} return;
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case Stream::DISPARITY_NORMALIZED: {
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stream_enabled_mode_[stream] = MODE_SYNTHETIC;
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EnableStreamData(Stream::DISPARITY, depth + 1);
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CHECK(ActivateProcessor<DisparityNormalizedProcessor>());
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} return;
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case Stream::POINTS: {
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stream_enabled_mode_[stream] = MODE_SYNTHETIC;
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if (calib_model_ == CalibrationModel::PINHOLE) {
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EnableStreamData(Stream::DISPARITY, depth + 1);
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CHECK(ActivateProcessor<PointsProcessorOCV>());
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@ -558,7 +594,6 @@ void Synthetic::EnableStreamData(const Stream &stream, std::uint32_t depth) {
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}
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} return;
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case Stream::DEPTH: {
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stream_enabled_mode_[stream] = MODE_SYNTHETIC;
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if (calib_model_ == CalibrationModel::PINHOLE) {
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EnableStreamData(Stream::POINTS, depth + 1);
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CHECK(ActivateProcessor<DepthProcessorOCV>());
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@ -583,8 +618,9 @@ void Synthetic::DisableStreamData(const Stream &stream, std::uint32_t depth) {
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if (!IsStreamDataEnabled(stream))
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return;
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// Deactivate processors of synthetic stream
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if (stream_enabled_mode_[stream] != MODE_NATIVE) {
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stream_enabled_mode_.erase(stream);
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auto data = getControlDateWithStream(stream);
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if (data.enabled_mode_ != MODE_NATIVE) {
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data.enabled_mode_ = MODE_LAST;
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switch (stream) {
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case Stream::LEFT_RECTIFIED: {
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if (IsStreamEnabledSynthetic(Stream::DISPARITY)) {
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@ -750,18 +786,18 @@ void Synthetic::InitProcessors() {
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} else {
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depth_processor = std::make_shared<DepthProcessorOCV>(DEPTH_PROC_PERIOD);
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}
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auto root_processor =
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std::make_shared<RootProcessor>(RECTIFY_PROC_PERIOD);
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root_processor->AddChild(rectify_processor);
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rectify_processor->addTargetStreams({Stream::LEFT_RECTIFIED, StatusMode::MODE_STATUS_LAST, Mode::MODE_LAST, Mode::MODE_LAST, nullptr});
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rectify_processor->addTargetStreams({Stream::RIGHT_RECTIFIED, StatusMode::MODE_STATUS_LAST, Mode::MODE_LAST, Mode::MODE_LAST, nullptr});
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disparity_processor->addTargetStreams({Stream::DISPARITY, StatusMode::MODE_STATUS_LAST, Mode::MODE_LAST, Mode::MODE_LAST, nullptr});
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disparitynormalized_processor->addTargetStreams({Stream::DISPARITY_NORMALIZED, StatusMode::MODE_STATUS_LAST, Mode::MODE_LAST, Mode::MODE_LAST, nullptr});
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points_processor->addTargetStreams({Stream::POINTS, StatusMode::MODE_STATUS_LAST, Mode::MODE_LAST, Mode::MODE_LAST, nullptr});
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depth_processor->addTargetStreams({Stream::DEPTH, StatusMode::MODE_STATUS_LAST, Mode::MODE_LAST, Mode::MODE_LAST, nullptr});
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auto root_processor =
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std::make_shared<RootProcessor>(RECTIFY_PROC_PERIOD);
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root_processor->addTargetStreams({Stream::LEFT, StatusMode::MODE_STATUS_LAST, Mode::MODE_LAST, Mode::MODE_LAST, nullptr});
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root_processor->addTargetStreams({Stream::RIGHT, StatusMode::MODE_STATUS_LAST, Mode::MODE_LAST, Mode::MODE_LAST, nullptr});
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root_processor->AddChild(rectify_processor);
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root_processor->addTargetStreams({Stream::LEFT, StatusMode::MODE_STATUS_LAST, Mode::MODE_NATIVE, Mode::MODE_NATIVE, nullptr});
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root_processor->addTargetStreams({Stream::RIGHT, StatusMode::MODE_STATUS_LAST, Mode::MODE_NATIVE, Mode::MODE_NATIVE, nullptr});
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processors_.push_back(root_processor);
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processors_.push_back(rectify_processor);
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@ -87,6 +87,7 @@ class Synthetic {
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void setControlDateModeWithStream(const struct stream_control_t& ctr_data);
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bool checkControlDateWithStream(const Stream& stream) const;
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status_mode_t GetStreamStatusMode(const Stream &stream) const;
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std::shared_ptr<Processor> getProcessorWithStream(const Stream& stream);
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private:
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void InitCalibInfo();
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@ -132,9 +133,6 @@ class Synthetic {
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API *api_;
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std::map<Stream, mode_t> stream_supports_mode_;
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std::map<Stream, mode_t> stream_enabled_mode_;
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std::map<Stream, stream_callback_t> stream_callbacks_;
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std::shared_ptr<Processor> processor_;
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