encoders/generic: Implement video encoding and always use frame queue
This implements video encoding for the generic encoder by using frame queue and a set lag amount (in frames). The lag amount determines for how many frames no repeated attempts at submitting or retrieving a frame should be made, and after that many frames have been submitted the generic encoder will try to retrieve packets if at all possible. If not possible, it will delay for as long as possible to show an Encoder overloaded message.
This commit is contained in:
+195
-87
@@ -47,7 +47,6 @@ extern "C" {
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#define P_MULTITHREADING "MultiThreading"
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#define P_MULTITHREADING_MODEL "MultiThreading.Model"
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#define P_MULTITHREADING_THREADCOUNT "MultiThreading.ThreadCount"
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#define P_MULTITHREADING_FRAMEQUEUE "MultiThreading.FrameQueue"
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// FFmpeg
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#define P_FFMPEG "FFmpeg"
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@@ -171,51 +170,6 @@ void encoder::generic_factory::register_encoder()
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throw;
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}
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};
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this->info.oei.encode = [](void* ptr, struct encoder_frame* frame, struct encoder_packet* packet,
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bool* received_packet) {
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try {
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return reinterpret_cast<generic*>(ptr)->encode(frame, packet, received_packet);
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} catch (std::exception const& e) {
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PLOG_ERROR("exception: %s", e.what());
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throw e;
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} catch (...) {
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PLOG_ERROR("unknown exception");
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throw;
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}
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};
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this->info.oei.get_audio_info = [](void* ptr, struct audio_convert_info* info) {
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try {
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reinterpret_cast<generic*>(ptr)->get_audio_info(info);
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} catch (std::exception const& e) {
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PLOG_ERROR("exception: %s", e.what());
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throw e;
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} catch (...) {
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PLOG_ERROR("unknown exception");
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throw;
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}
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};
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this->info.oei.get_frame_size = [](void* ptr) {
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try {
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return reinterpret_cast<generic*>(ptr)->get_frame_size();
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} catch (std::exception const& e) {
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PLOG_ERROR("exception: %s", e.what());
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throw e;
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} catch (...) {
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PLOG_ERROR("unknown exception");
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throw;
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}
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};
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this->info.oei.get_video_info = [](void* ptr, struct video_scale_info* info) {
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try {
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reinterpret_cast<generic*>(ptr)->get_video_info(info);
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} catch (std::exception const& e) {
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PLOG_ERROR("exception: %s", e.what());
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throw e;
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} catch (...) {
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PLOG_ERROR("unknown exception");
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throw;
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}
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};
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this->info.oei.get_sei_data = [](void* ptr, uint8_t** sei_data, size_t* size) {
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try {
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return reinterpret_cast<generic*>(ptr)->get_sei_data(sei_data, size);
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@@ -238,11 +192,11 @@ void encoder::generic_factory::register_encoder()
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throw;
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}
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};
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this->info.oei.encode_texture = [](void* ptr, uint32_t handle, int64_t pts, uint64_t lock_key,
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uint64_t* next_key, struct encoder_packet* packet, bool* received_packet) {
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if (this->avcodec_ptr->type == AVMediaType::AVMEDIA_TYPE_VIDEO) {
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this->info.oei.get_video_info = [](void* ptr, struct video_scale_info* info) {
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try {
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return reinterpret_cast<generic*>(ptr)->encode_texture(handle, pts, lock_key, next_key, packet,
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received_packet);
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reinterpret_cast<generic*>(ptr)->get_video_info(info);
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} catch (std::exception const& e) {
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PLOG_ERROR("exception: %s", e.what());
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throw e;
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@@ -251,6 +205,69 @@ void encoder::generic_factory::register_encoder()
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throw;
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}
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};
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this->info.oei.encode = [](void* ptr, struct encoder_frame* frame, struct encoder_packet* packet,
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bool* received_packet) {
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try {
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return reinterpret_cast<generic*>(ptr)->video_encode(frame, packet, received_packet);
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} catch (std::exception const& e) {
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PLOG_ERROR("exception: %s", e.what());
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throw e;
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} catch (...) {
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PLOG_ERROR("unknown exception");
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throw;
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}
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};
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this->info.oei.encode_texture = [](void* ptr, uint32_t handle, int64_t pts, uint64_t lock_key,
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uint64_t* next_key, struct encoder_packet* packet,
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bool* received_packet) {
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try {
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return reinterpret_cast<generic*>(ptr)->video_encode_texture(
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handle, pts, lock_key, next_key, packet, received_packet);
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} catch (std::exception const& e) {
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PLOG_ERROR("exception: %s", e.what());
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throw e;
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} catch (...) {
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PLOG_ERROR("unknown exception");
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throw;
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}
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};
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} else if (this->avcodec_ptr->type == AVMediaType::AVMEDIA_TYPE_AUDIO) {
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this->info.oei.get_audio_info = [](void* ptr, struct audio_convert_info* info) {
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try {
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reinterpret_cast<generic*>(ptr)->get_audio_info(info);
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} catch (std::exception const& e) {
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PLOG_ERROR("exception: %s", e.what());
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throw e;
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} catch (...) {
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PLOG_ERROR("unknown exception");
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throw;
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}
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};
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this->info.oei.get_frame_size = [](void* ptr) {
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try {
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return reinterpret_cast<generic*>(ptr)->get_frame_size();
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} catch (std::exception const& e) {
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PLOG_ERROR("exception: %s", e.what());
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throw e;
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} catch (...) {
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PLOG_ERROR("unknown exception");
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throw;
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}
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};
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this->info.oei.encode = [](void* ptr, struct encoder_frame* frame, struct encoder_packet* packet,
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bool* received_packet) {
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try {
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return reinterpret_cast<generic*>(ptr)->audio_encode(frame, packet, received_packet);
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} catch (std::exception const& e) {
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PLOG_ERROR("exception: %s", e.what());
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throw e;
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} catch (...) {
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PLOG_ERROR("unknown exception");
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throw;
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}
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};
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}
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// Finally store ourself as type data.
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this->info.oei.type_data = this;
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@@ -305,7 +322,6 @@ void encoder::generic_factory::get_defaults(obs_data_t* settings)
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// Threading
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obs_data_set_default_int(settings, P_MULTITHREADING_MODEL, -1);
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obs_data_set_default_bool(settings, P_MULTITHREADING_FRAMEQUEUE, true);
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obs_data_set_default_int(settings, P_MULTITHREADING_THREADCOUNT, 0);
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// FFmpeg
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@@ -490,12 +506,6 @@ void encoder::generic_factory::get_properties(obs_properties_t* props)
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std::thread::hardware_concurrency() * 4, 1);
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obs_property_set_long_description(p, TRANSLATE(DESC(P_MULTITHREADING_THREADCOUNT)));
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};
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{
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auto p = obs_properties_add_bool(prs, P_MULTITHREADING_FRAMEQUEUE,
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TRANSLATE(P_MULTITHREADING_FRAMEQUEUE));
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obs_property_set_long_description(p, TRANSLATE(DESC(P_MULTITHREADING_FRAMEQUEUE)));
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};
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obs_properties_add_group(props, P_MULTITHREADING, TRANSLATE(P_MULTITHREADING), OBS_GROUP_NORMAL, prs);
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};
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{
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@@ -574,13 +584,13 @@ encoder::generic::generic(obs_data_t* settings, obs_encoder_t* encoder) : self(e
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this->context->bit_rate = obs_data_get_int(settings, P_RATECONTROL_BITRATE);
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this->context->strict_std_compliance = obs_data_get_int(settings, P_FFMPEG_STANDARDCOMPLIANCE);
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this->context->debug = 0;
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/// Threading
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{
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int64_t tt = obs_data_get_int(settings, P_MULTITHREADING_MODEL);
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if (tt == 0) {
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this->context->thread_count = 1;
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this->context->thread_type = 0;
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this->lag_in_frames = 0;
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} else if (tt == -1) {
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if (this->codec->capabilities & AV_CODEC_CAP_SLICE_THREADS) {
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this->context->thread_type = FF_THREAD_SLICE;
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@@ -594,9 +604,11 @@ encoder::generic::generic(obs_data_t* settings, obs_encoder_t* encoder) : self(e
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}
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if (tt != 0) {
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this->context->thread_count = obs_data_get_int(settings, P_MULTITHREADING_THREADCOUNT);
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this->lag_in_frames = this->context->thread_count;
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if (!(this->codec->capabilities & AV_CODEC_CAP_AUTO_THREADS)) {
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if (this->context->thread_count == 0) {
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this->context->thread_count = std::thread::hardware_concurrency();
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this->lag_in_frames = std::thread::hardware_concurrency();
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}
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}
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}
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@@ -607,12 +619,42 @@ encoder::generic::generic(obs_data_t* settings, obs_encoder_t* encoder) : self(e
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// FFmpeg Video Settings
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auto encvideo = obs_encoder_video(this->self);
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auto voi = video_output_get_info(encvideo);
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/// Resolution and framerate.
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// Resolution
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this->context->width = voi->width;
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this->context->height = voi->height;
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this->swscale.set_source_size(this->context->width, this->context->height);
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this->swscale.set_target_size(this->context->width, this->context->height);
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// Color
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this->context->colorspace = ffmpeg::tools::obs_videocolorspace_to_avcolorspace(voi->colorspace);
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this->context->color_range = ffmpeg::tools::obs_videorangetype_to_avcolorrange(voi->range);
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this->context->field_order = AV_FIELD_PROGRESSIVE;
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this->swscale.set_source_color(this->context->color_range, this->context->colorspace);
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this->swscale.set_target_color(this->context->color_range, this->context->colorspace);
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// Pixel Format
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{
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// Due to unsupported color formats and ffmpeg not automatically converting formats from A to B,
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// we have to detect the closest format that we can still use and initialize our swscale instance
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// these formats. This has a massive cost attached unfortunately.
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AVPixelFormat source = ffmpeg::tools::obs_videoformat_to_avpixelformat(voi->format);
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AVPixelFormat target = AV_PIX_FMT_NONE;
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int loss = 0;
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target = avcodec_find_best_pix_fmt_of_list(this->codec->pix_fmts, source, false, &loss);
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this->context->pix_fmt = target;
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this->swscale.set_source_format(source);
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this->swscale.set_target_format(this->context->pix_fmt);
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}
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// Framerate
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this->context->time_base.num = voi->fps_num;
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this->context->time_base.den = voi->fps_den;
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this->context->ticks_per_frame = 1;
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/// Group of Pictures
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if (static_cast<keyframe_type>(obs_data_get_int(settings, P_RATECONTROL_KEYFRAME_TYPE))
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== keyframe_type::Frames) {
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@@ -621,11 +663,7 @@ encoder::generic::generic(obs_data_t* settings, obs_encoder_t* encoder) : self(e
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double_t real_gop = obs_data_get_double(settings, P_RATECONTROL_KEYFRAME_INTERVAL ".Seconds");
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this->context->gop_size = static_cast<int64_t>(real_gop * voi->fps_num / voi->fps_den);
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}
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/// Color, Profile
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this->context->colorspace = ffmpeg::tools::obs_videocolorspace_to_avcolorspace(voi->colorspace);
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this->context->color_range = ffmpeg::tools::obs_videorangetype_to_avcolorrange(voi->range);
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this->context->pix_fmt = ffmpeg::tools::obs_videoformat_to_avpixelformat(voi->format);
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this->context->field_order = AV_FIELD_PROGRESSIVE;
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} else if (this->codec->type == AVMEDIA_TYPE_AUDIO) {
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}
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@@ -643,12 +681,6 @@ encoder::generic::generic(obs_data_t* settings, obs_encoder_t* encoder) : self(e
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// Video/Audio exclusive setup part 2.
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if (this->codec->type == AVMEDIA_TYPE_VIDEO) {
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// Create Scaler
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swscale.set_source_size(this->context->width, this->context->height);
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swscale.set_target_size(this->context->width, this->context->height);
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swscale.set_source_format(this->context->pix_fmt);
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swscale.set_target_format(this->context->pix_fmt);
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swscale.set_source_color(this->context->color_range, this->context->colorspace);
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swscale.set_target_color(this->context->color_range, this->context->colorspace);
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if (!swscale.initialize(SWS_FAST_BILINEAR)) {
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PLOG_ERROR(
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@@ -656,26 +688,14 @@ encoder::generic::generic(obs_data_t* settings, obs_encoder_t* encoder) : self(e
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"range '%s'.",
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ffmpeg::tools::get_pixel_format_name(this->context->pix_fmt),
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ffmpeg::tools::get_color_space_name(this->context->colorspace),
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swscale.is_source_full_range() ? "Full" : "Partial");
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this->swscale.is_source_full_range() ? "Full" : "Partial");
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throw std::runtime_error("failed to initialize swscaler.");
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}
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// Create Frame queue
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frame_queue.set_pixel_format(this->context->pix_fmt);
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frame_queue.set_resolution(this->context->width, this->context->height);
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if (obs_data_get_bool(settings, P_MULTITHREADING_FRAMEQUEUE)) {
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if (this->context->thread_count > 0) {
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this->frame_queue.precache(this->context->thread_count);
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} else {
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if (this->context->thread_type != 0) {
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this->frame_queue.set_pixel_format(this->context->pix_fmt);
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this->frame_queue.set_resolution(this->context->width, this->context->height);
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this->frame_queue.precache(std::thread::hardware_concurrency());
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} else {
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this->frame_queue.precache(1);
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}
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}
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} else {
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this->frame_queue.precache(1);
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}
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} else if (this->codec->type == AVMEDIA_TYPE_AUDIO) {
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}
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@@ -706,9 +726,92 @@ bool encoder::generic::update(obs_data_t* settings)
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return false;
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}
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bool encoder::generic::encode(encoder_frame* frame, encoder_packet* packet, bool* received_packet)
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bool encoder::generic::video_encode(encoder_frame* frame, encoder_packet* packet, bool* received_packet)
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{
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int res = 0;
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bool have_pushed_frame = false;
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bool have_pulled_frame = false;
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auto loop_begin = std::chrono::high_resolution_clock::now();
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auto loop_time = std::chrono::nanoseconds(
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static_cast<int64_t>(1000.0 * this->context->time_base.den / this->context->time_base.num) * lag_in_frames);
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if ((lag_in_frames - frame_count) > 0) {
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loop_time = std::chrono::nanoseconds(1);
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}
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while (!have_pulled_frame || !have_pushed_frame) {
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if (!have_pushed_frame) {
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AVFrame* vframe = frame_queue.pop();
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vframe->pts = frame->pts;
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vframe->color_range = this->context->color_range;
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vframe->colorspace = this->context->colorspace;
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{
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res = swscale.convert(reinterpret_cast<uint8_t**>(frame->data),
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reinterpret_cast<int*>(frame->linesize), 0, this->context->height,
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vframe->data, vframe->linesize);
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if (res <= 0) {
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PLOG_ERROR("Failed to convert frame: %s (%ld).",
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ffmpeg::tools::get_error_description(res), res);
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return false;
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}
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}
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{
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res = avcodec_send_frame(this->context, vframe);
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if (res < 0) {
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PLOG_ERROR("Failed to encode frame: %s (%ld).",
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ffmpeg::tools::get_error_description(res), res);
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return false;
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}
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}
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frame_queue_used.push(vframe);
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have_pushed_frame = true;
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frame_count++;
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}
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if (!have_pulled_frame) {
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res = avcodec_receive_packet(this->context, this->current_packet);
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if (res < 0) {
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if (res == AVERROR(EAGAIN)) {
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*received_packet = false;
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have_pulled_frame = true;
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} else if (res == AVERROR(EOF)) {
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*received_packet = false;
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have_pulled_frame = true;
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} else {
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PLOG_ERROR("Failed to receive packet: %s (%ld).",
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ffmpeg::tools::get_error_description(res), res);
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return false;
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}
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} else {
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AVFrame* uframe = frame_queue_used.pop_only();
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if (uframe) {
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frame_queue.push(uframe);
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}
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packet->type = OBS_ENCODER_VIDEO;
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packet->pts = this->current_packet->pts;
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packet->dts = this->current_packet->pts;
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packet->data = this->current_packet->data;
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packet->size = this->current_packet->size;
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packet->keyframe = !!(this->current_packet->flags & AV_PKT_FLAG_KEY);
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packet->drop_priority = 0;
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*received_packet = true;
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have_pulled_frame = true;
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}
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}
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if ((std::chrono::high_resolution_clock::now() - loop_begin) >= loop_time) {
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break;
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} else {
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std::this_thread::sleep_for(std::chrono::milliseconds(1));
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}
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}
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return true;
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}
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void encoder::generic::get_audio_info(audio_convert_info* info) {}
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@@ -718,6 +821,11 @@ size_t encoder::generic::get_frame_size()
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return size_t();
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}
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bool encoder::generic::audio_encode(encoder_frame* frame, encoder_packet* packet, bool* received_packet)
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{
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return false;
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}
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void encoder::generic::get_video_info(video_scale_info* info) {}
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bool encoder::generic::get_sei_data(uint8_t** sei_data, size_t* size)
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@@ -735,7 +843,7 @@ bool encoder::generic::get_extra_data(uint8_t** extra_data, size_t* size)
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return true;
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}
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bool encoder::generic::encode_texture(uint32_t handle, int64_t pts, uint64_t lock_key, uint64_t* next_key,
|
||||
bool encoder::generic::video_encode_texture(uint32_t handle, int64_t pts, uint64_t lock_key, uint64_t* next_key,
|
||||
encoder_packet* packet, bool* received_packet)
|
||||
{
|
||||
return false;
|
||||
|
||||
@@ -64,6 +64,9 @@ namespace encoder {
|
||||
ffmpeg::swscale swscale;
|
||||
AVPacket* current_packet = nullptr;
|
||||
|
||||
int64_t lag_in_frames;
|
||||
int64_t frame_count;
|
||||
|
||||
public:
|
||||
generic(obs_data_t* settings, obs_encoder_t* encoder);
|
||||
virtual ~generic();
|
||||
@@ -74,13 +77,13 @@ namespace encoder {
|
||||
|
||||
bool update(obs_data_t* settings);
|
||||
|
||||
bool encode(struct encoder_frame* frame, struct encoder_packet* packet, bool* received_packet);
|
||||
|
||||
// Audio only
|
||||
void get_audio_info(struct audio_convert_info* info);
|
||||
|
||||
size_t get_frame_size();
|
||||
|
||||
bool audio_encode(struct encoder_frame* frame, struct encoder_packet* packet, bool* received_packet);
|
||||
|
||||
// Video only
|
||||
void get_video_info(struct video_scale_info* info);
|
||||
|
||||
@@ -88,8 +91,9 @@ namespace encoder {
|
||||
|
||||
bool get_extra_data(uint8_t** extra_data, size_t* size);
|
||||
|
||||
// GPU Video only
|
||||
bool encode_texture(uint32_t handle, int64_t pts, uint64_t lock_key, uint64_t* next_key,
|
||||
bool video_encode(struct encoder_frame* frame, struct encoder_packet* packet, bool* received_packet);
|
||||
|
||||
bool video_encode_texture(uint32_t handle, int64_t pts, uint64_t lock_key, uint64_t* next_key,
|
||||
struct encoder_packet* packet, bool* received_packet);
|
||||
};
|
||||
} // namespace encoder
|
||||
|
||||
Reference in New Issue
Block a user