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https://github.com/PabloMK7/citra.git
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Merge pull request #20 from liushuyu/dsp_aac
Media Foundation Improvement
This commit is contained in:
commit
c93df434c5
@ -20,4 +20,4 @@ ADTSData ParseADTS(const char* buffer);
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// last two bytes of MF AAC decoder user data
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// last two bytes of MF AAC decoder user data
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// see https://docs.microsoft.com/en-us/windows/desktop/medfound/aac-decoder#example-media-types
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// see https://docs.microsoft.com/en-us/windows/desktop/medfound/aac-decoder#example-media-types
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u16 MFGetAACTag(const ADTSData input);
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u16 MFGetAACTag(const ADTSData& input);
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@ -50,7 +50,7 @@ ADTSData ParseADTS(const char* buffer) {
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// Frame length flag (1 bit)
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// Frame length flag (1 bit)
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// Depends on core coder (1 bit)
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// Depends on core coder (1 bit)
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// Extension flag (1 bit)
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// Extension flag (1 bit)
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u16 MFGetAACTag(const ADTSData input) {
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u16 MFGetAACTag(const ADTSData& input) {
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u16 tag = 0;
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u16 tag = 0;
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tag |= input.profile << 11;
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tag |= input.profile << 11;
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@ -16,14 +16,12 @@ public:
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private:
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private:
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std::optional<BinaryResponse> Initalize(const BinaryRequest& request);
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std::optional<BinaryResponse> Initalize(const BinaryRequest& request);
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void Clear();
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std::optional<BinaryResponse> Decode(const BinaryRequest& request);
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std::optional<BinaryResponse> Decode(const BinaryRequest& request);
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MFOutputState DecodingLoop(ADTSData adts_header, std::array<std::vector<u8>, 2>& out_streams);
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MFOutputState DecodingLoop(ADTSData adts_header, std::array<std::vector<u8>, 2>& out_streams);
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bool initalized = false;
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bool transform_initialized = false;
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bool selected = false;
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bool format_selected = false;
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Memory::MemorySystem& memory;
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Memory::MemorySystem& memory;
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@ -33,10 +31,51 @@ private:
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};
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};
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WMFDecoder::Impl::Impl(Memory::MemorySystem& memory) : memory(memory) {
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WMFDecoder::Impl::Impl(Memory::MemorySystem& memory) : memory(memory) {
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MFCoInit();
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HRESULT hr = S_OK;
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hr = CoInitialize(NULL);
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// S_FALSE will be returned when COM has already been initialized
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if (hr != S_OK && hr != S_FALSE) {
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ReportError("Failed to start COM components", hr);
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}
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// lite startup is faster and all what we need is included
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hr = MFStartup(MF_VERSION, MFSTARTUP_LITE);
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if (hr != S_OK) {
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// Do you know you can't initialize MF in test mode or safe mode?
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ReportError("Failed to initialize Media Foundation", hr);
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}
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LOG_INFO(Audio_DSP, "Media Foundation activated");
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// initialize transform
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transform = MFDecoderInit();
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if (transform == nullptr) {
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LOG_CRITICAL(Audio_DSP, "Can't initialize decoder");
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return;
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}
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hr = transform->GetStreamIDs(1, &in_stream_id, 1, &out_stream_id);
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if (hr == E_NOTIMPL) {
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// if not implemented, it means this MFT does not assign stream ID for you
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in_stream_id = 0;
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out_stream_id = 0;
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} else if (FAILED(hr)) {
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ReportError("Decoder failed to initialize the stream ID", hr);
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return;
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}
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transform_initialized = true;
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}
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}
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WMFDecoder::Impl::~Impl() = default;
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WMFDecoder::Impl::~Impl() {
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if (transform_initialized) {
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MFFlush(transform.get());
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// delete the transform object before shutting down MF
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// otherwise access violation will occur
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transform.reset();
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}
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MFShutdown();
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CoUninitialize();
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}
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std::optional<BinaryResponse> WMFDecoder::Impl::ProcessRequest(const BinaryRequest& request) {
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std::optional<BinaryResponse> WMFDecoder::Impl::ProcessRequest(const BinaryRequest& request) {
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if (request.codec != DecoderCodec::AAC) {
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if (request.codec != DecoderCodec::AAC) {
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@ -65,43 +104,14 @@ std::optional<BinaryResponse> WMFDecoder::Impl::ProcessRequest(const BinaryReque
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}
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}
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std::optional<BinaryResponse> WMFDecoder::Impl::Initalize(const BinaryRequest& request) {
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std::optional<BinaryResponse> WMFDecoder::Impl::Initalize(const BinaryRequest& request) {
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if (initalized) {
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Clear();
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}
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BinaryResponse response;
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BinaryResponse response;
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std::memcpy(&response, &request, sizeof(response));
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std::memcpy(&response, &request, sizeof(response));
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response.unknown1 = 0x0;
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response.unknown1 = 0x0;
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transform = MFDecoderInit();
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if (transform == nullptr) {
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format_selected = false; // select format again if application request initialize the DSP
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LOG_CRITICAL(Audio_DSP, "Can't init decoder");
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return response;
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}
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HRESULT hr = transform->GetStreamIDs(1, &in_stream_id, 1, &out_stream_id);
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if (hr == E_NOTIMPL) {
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// if not implemented, it means this MFT does not assign stream ID for you
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in_stream_id = 0;
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out_stream_id = 0;
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} else if (FAILED(hr)) {
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ReportError("Decoder failed to initialize the stream ID", hr);
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return response;
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}
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initalized = true;
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return response;
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return response;
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}
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}
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void WMFDecoder::Impl::Clear() {
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if (initalized) {
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MFFlush(transform.get());
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MFDeInit(transform.get());
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}
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initalized = false;
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selected = false;
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}
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MFOutputState WMFDecoder::Impl::DecodingLoop(ADTSData adts_header,
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MFOutputState WMFDecoder::Impl::DecodingLoop(ADTSData adts_header,
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std::array<std::vector<u8>, 2>& out_streams) {
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std::array<std::vector<u8>, 2>& out_streams) {
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MFOutputState output_status = MFOutputState::OK;
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MFOutputState output_status = MFOutputState::OK;
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@ -117,7 +127,7 @@ MFOutputState WMFDecoder::Impl::DecodingLoop(ADTSData adts_header,
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// the following was taken from ffmpeg version of the decoder
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// the following was taken from ffmpeg version of the decoder
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f32 val_f32;
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f32 val_f32;
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for (size_t i = 0; i < output_buffer->size();) {
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for (std::size_t i = 0; i < output_buffer->size();) {
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for (std::size_t channel = 0; channel < adts_header.channels; channel++) {
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for (std::size_t channel = 0; channel < adts_header.channels; channel++) {
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val_f32 = output_buffer->at(i);
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val_f32 = output_buffer->at(i);
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s16 val = static_cast<s16>(0x7FFF * val_f32);
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s16 val = static_cast<s16>(0x7FFF * val_f32);
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@ -135,8 +145,8 @@ MFOutputState WMFDecoder::Impl::DecodingLoop(ADTSData adts_header,
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// for status = 2, reset MF
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// for status = 2, reset MF
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if (output_status == MFOutputState::NeedReconfig) {
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if (output_status == MFOutputState::NeedReconfig) {
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Clear();
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format_selected = false;
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return MFOutputState::FatalError;
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return MFOutputState::NeedReconfig;
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}
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}
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// for status = 3, try again with new buffer
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// for status = 3, try again with new buffer
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@ -161,8 +171,8 @@ std::optional<BinaryResponse> WMFDecoder::Impl::Decode(const BinaryRequest& requ
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response.num_channels = 2;
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response.num_channels = 2;
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response.num_samples = 1024;
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response.num_samples = 1024;
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if (!initalized) {
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if (!transform_initialized) {
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LOG_DEBUG(Audio_DSP, "Decoder not initalized");
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LOG_DEBUG(Audio_DSP, "Decoder not initialized");
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// This is a hack to continue games when decoder failed to initialize
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// This is a hack to continue games when decoder failed to initialize
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return response;
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return response;
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}
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}
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@ -177,6 +187,7 @@ std::optional<BinaryResponse> WMFDecoder::Impl::Decode(const BinaryRequest& requ
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std::array<std::vector<u8>, 2> out_streams;
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std::array<std::vector<u8>, 2> out_streams;
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unique_mfptr<IMFSample> sample;
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unique_mfptr<IMFSample> sample;
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MFInputState input_status = MFInputState::OK;
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MFInputState input_status = MFInputState::OK;
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MFOutputState output_status = MFOutputState::OK;
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std::optional<ADTSMeta> adts_meta = DetectMediaType((char*)data, request.size);
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std::optional<ADTSMeta> adts_meta = DetectMediaType((char*)data, request.size);
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if (!adts_meta) {
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if (!adts_meta) {
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@ -186,7 +197,7 @@ std::optional<BinaryResponse> WMFDecoder::Impl::Decode(const BinaryRequest& requ
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response.num_channels = adts_meta->ADTSHeader.channels;
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response.num_channels = adts_meta->ADTSHeader.channels;
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if (!selected) {
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if (!format_selected) {
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LOG_DEBUG(Audio_DSP, "New ADTS stream: channels = {}, sample rate = {}",
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LOG_DEBUG(Audio_DSP, "New ADTS stream: channels = {}, sample rate = {}",
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adts_meta->ADTSHeader.channels, adts_meta->ADTSHeader.samplerate);
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adts_meta->ADTSHeader.channels, adts_meta->ADTSHeader.samplerate);
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SelectInputMediaType(transform.get(), in_stream_id, adts_meta->ADTSHeader,
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SelectInputMediaType(transform.get(), in_stream_id, adts_meta->ADTSHeader,
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@ -196,7 +207,7 @@ std::optional<BinaryResponse> WMFDecoder::Impl::Decode(const BinaryRequest& requ
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// cache the result from detect_mediatype and call select_*_mediatype only once
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// cache the result from detect_mediatype and call select_*_mediatype only once
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// This could increase performance very slightly
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// This could increase performance very slightly
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transform->ProcessMessage(MFT_MESSAGE_NOTIFY_BEGIN_STREAMING, 0);
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transform->ProcessMessage(MFT_MESSAGE_NOTIFY_BEGIN_STREAMING, 0);
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selected = true;
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format_selected = true;
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}
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}
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sample = CreateSample((void*)data, request.size, 1, 0);
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sample = CreateSample((void*)data, request.size, 1, 0);
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@ -204,8 +215,9 @@ std::optional<BinaryResponse> WMFDecoder::Impl::Decode(const BinaryRequest& requ
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while (true) {
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while (true) {
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input_status = SendSample(transform.get(), in_stream_id, sample.get());
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input_status = SendSample(transform.get(), in_stream_id, sample.get());
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output_status = DecodingLoop(adts_meta->ADTSHeader, out_streams);
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if (DecodingLoop(adts_meta->ADTSHeader, out_streams) == MFOutputState::FatalError) {
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if (output_status == MFOutputState::FatalError) {
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// if the decode issues are caused by MFT not accepting new samples, try again
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// if the decode issues are caused by MFT not accepting new samples, try again
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// NOTICE: you are required to check the output even if you already knew/guessed
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// NOTICE: you are required to check the output even if you already knew/guessed
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// MFT didn't accept the input sample
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// MFT didn't accept the input sample
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@ -216,6 +228,11 @@ std::optional<BinaryResponse> WMFDecoder::Impl::Decode(const BinaryRequest& requ
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LOG_ERROR(Audio_DSP, "Errors occurred when receiving output");
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LOG_ERROR(Audio_DSP, "Errors occurred when receiving output");
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return response;
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return response;
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} else if (output_status == MFOutputState::NeedReconfig) {
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// flush the transform
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MFFlush(transform.get());
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// decode again
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return this->Decode(request);
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}
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}
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break; // jump out of the loop if at least we don't have obvious issues
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break; // jump out of the loop if at least we don't have obvious issues
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@ -2,6 +2,7 @@
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// Licensed under GPLv2 or any later version
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// Licensed under GPLv2 or any later version
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// Refer to the license.txt file included.
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// Refer to the license.txt file included.
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#include "common/logging/log.h"
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#include "common/logging/log.h"
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#include "common/string_util.h"
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#include "wmf_decoder_utils.h"
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#include "wmf_decoder_utils.h"
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// utility functions
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// utility functions
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@ -9,42 +10,21 @@ void ReportError(std::string msg, HRESULT hr) {
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if (SUCCEEDED(hr)) {
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if (SUCCEEDED(hr)) {
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return;
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return;
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}
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}
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LPSTR err;
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LPWSTR err;
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FormatMessage(FORMAT_MESSAGE_FROM_SYSTEM | FORMAT_MESSAGE_ALLOCATE_BUFFER |
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FormatMessageW(FORMAT_MESSAGE_FROM_SYSTEM | FORMAT_MESSAGE_ALLOCATE_BUFFER |
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FORMAT_MESSAGE_IGNORE_INSERTS,
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FORMAT_MESSAGE_IGNORE_INSERTS,
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nullptr, hr,
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nullptr, hr,
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// hardcode to use en_US because if any user had problems with this
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// hardcode to use en_US because if any user had problems with this
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// we can help them w/o translating anything
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// we can help them w/o translating anything
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// default is to use the language currently active on the operating system
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// default is to use the language currently active on the operating system
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MAKELANGID(LANG_ENGLISH, SUBLANG_ENGLISH_US), (LPSTR)&err, 0, nullptr);
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MAKELANGID(LANG_ENGLISH, SUBLANG_ENGLISH_US), (LPWSTR)&err, 0, nullptr);
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if (err != nullptr) {
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if (err != nullptr) {
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LOG_CRITICAL(Audio_DSP, "{}: {}", msg, err);
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LOG_CRITICAL(Audio_DSP, "{}: {}", msg, Common::UTF16ToUTF8(err));
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LocalFree(err);
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}
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}
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LOG_CRITICAL(Audio_DSP, "{}: {:08x}", msg, hr);
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LOG_CRITICAL(Audio_DSP, "{}: {:08x}", msg, hr);
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}
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}
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bool MFCoInit() {
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HRESULT hr = S_OK;
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hr = CoInitialize(NULL);
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// S_FALSE will be returned when COM has already been initialized
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if (hr != S_OK && hr != S_FALSE) {
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ReportError("Failed to start COM components", hr);
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return false;
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}
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// lite startup is faster and all what we need is included
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hr = MFStartup(MF_VERSION, MFSTARTUP_LITE);
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if (hr != S_OK) {
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// Do you know you can't initialize MF in test mode or safe mode?
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ReportError("Failed to initialize Media Foundation", hr);
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return false;
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}
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LOG_INFO(Audio_DSP, "Media Foundation activated");
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return true;
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}
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unique_mfptr<IMFTransform> MFDecoderInit(GUID audio_format) {
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unique_mfptr<IMFTransform> MFDecoderInit(GUID audio_format) {
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HRESULT hr = S_OK;
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HRESULT hr = S_OK;
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MFT_REGISTER_TYPE_INFO reg = {0};
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MFT_REGISTER_TYPE_INFO reg = {0};
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@ -72,6 +52,8 @@ unique_mfptr<IMFTransform> MFDecoderInit(GUID audio_format) {
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if (FAILED(hr))
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if (FAILED(hr))
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transform = nullptr;
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transform = nullptr;
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activate[n]->Release();
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activate[n]->Release();
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if (SUCCEEDED(hr))
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break;
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}
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}
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if (transform == nullptr) {
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if (transform == nullptr) {
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ReportError("Failed to initialize MFT", hr);
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ReportError("Failed to initialize MFT", hr);
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@ -79,15 +61,11 @@ unique_mfptr<IMFTransform> MFDecoderInit(GUID audio_format) {
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return nullptr;
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return nullptr;
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}
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}
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CoTaskMemFree(activate);
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CoTaskMemFree(activate);
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return std::move(transform);
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return transform;
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}
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}
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void MFDeInit(IMFTransform* transform) {
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unique_mfptr<IMFSample> CreateSample(const void* data, DWORD len, DWORD alignment,
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MFShutdownObject(transform);
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LONGLONG duration) {
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CoUninitialize();
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}
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unique_mfptr<IMFSample> CreateSample(void* data, DWORD len, DWORD alignment, LONGLONG duration) {
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HRESULT hr = S_OK;
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HRESULT hr = S_OK;
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unique_mfptr<IMFMediaBuffer> buf;
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unique_mfptr<IMFMediaBuffer> buf;
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unique_mfptr<IMFSample> sample;
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unique_mfptr<IMFSample> sample;
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@ -126,11 +104,11 @@ unique_mfptr<IMFSample> CreateSample(void* data, DWORD len, DWORD alignment, LON
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ReportError("Unable to set sample duration, but continuing anyway", hr);
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ReportError("Unable to set sample duration, but continuing anyway", hr);
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}
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}
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return std::move(sample);
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return sample;
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}
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}
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bool SelectInputMediaType(IMFTransform* transform, int in_stream_id, const ADTSData& adts,
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bool SelectInputMediaType(IMFTransform* transform, int in_stream_id, const ADTSData& adts,
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UINT8* user_data, UINT32 user_data_len, GUID audio_format) {
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const UINT8* user_data, UINT32 user_data_len, GUID audio_format) {
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HRESULT hr = S_OK;
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HRESULT hr = S_OK;
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unique_mfptr<IMFMediaType> t;
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unique_mfptr<IMFMediaType> t;
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@ -209,7 +187,7 @@ bool SelectOutputMediaType(IMFTransform* transform, int out_stream_id, GUID audi
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return false;
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return false;
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}
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}
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std::optional<ADTSMeta> DetectMediaType(char* buffer, size_t len) {
|
std::optional<ADTSMeta> DetectMediaType(char* buffer, std::size_t len) {
|
||||||
if (len < 7) {
|
if (len < 7) {
|
||||||
return std::nullopt;
|
return std::nullopt;
|
||||||
}
|
}
|
||||||
|
@ -29,6 +29,14 @@ struct MFRelease {
|
|||||||
};
|
};
|
||||||
};
|
};
|
||||||
|
|
||||||
|
template <>
|
||||||
|
struct MFRelease<IMFTransform> {
|
||||||
|
void operator()(IMFTransform* pointer) const {
|
||||||
|
MFShutdownObject(pointer);
|
||||||
|
pointer->Release();
|
||||||
|
};
|
||||||
|
};
|
||||||
|
|
||||||
// wrapper facilities for dealing with pointers
|
// wrapper facilities for dealing with pointers
|
||||||
template <typename T>
|
template <typename T>
|
||||||
using unique_mfptr = std::unique_ptr<T, MFRelease<T>>;
|
using unique_mfptr = std::unique_ptr<T, MFRelease<T>>;
|
||||||
@ -65,15 +73,13 @@ struct ADTSMeta {
|
|||||||
};
|
};
|
||||||
|
|
||||||
// exported functions
|
// exported functions
|
||||||
bool MFCoInit();
|
|
||||||
unique_mfptr<IMFTransform> MFDecoderInit(GUID audio_format = MFAudioFormat_AAC);
|
unique_mfptr<IMFTransform> MFDecoderInit(GUID audio_format = MFAudioFormat_AAC);
|
||||||
void MFDeInit(IMFTransform* transform);
|
unique_mfptr<IMFSample> CreateSample(const void* data, DWORD len, DWORD alignment = 1,
|
||||||
unique_mfptr<IMFSample> CreateSample(void* data, DWORD len, DWORD alignment = 1,
|
|
||||||
LONGLONG duration = 0);
|
LONGLONG duration = 0);
|
||||||
bool SelectInputMediaType(IMFTransform* transform, int in_stream_id, const ADTSData& adts,
|
bool SelectInputMediaType(IMFTransform* transform, int in_stream_id, const ADTSData& adts,
|
||||||
UINT8* user_data, UINT32 user_data_len,
|
const UINT8* user_data, UINT32 user_data_len,
|
||||||
GUID audio_format = MFAudioFormat_AAC);
|
GUID audio_format = MFAudioFormat_AAC);
|
||||||
std::optional<ADTSMeta> DetectMediaType(char* buffer, size_t len);
|
std::optional<ADTSMeta> DetectMediaType(char* buffer, std::size_t len);
|
||||||
bool SelectOutputMediaType(IMFTransform* transform, int out_stream_id,
|
bool SelectOutputMediaType(IMFTransform* transform, int out_stream_id,
|
||||||
GUID audio_format = MFAudioFormat_PCM);
|
GUID audio_format = MFAudioFormat_PCM);
|
||||||
void MFFlush(IMFTransform* transform);
|
void MFFlush(IMFTransform* transform);
|
||||||
|
Loading…
Reference in New Issue
Block a user