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audio_core: mf: make initialize function return smart pointer
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@ -72,8 +72,9 @@ std::optional<BinaryResponse> WMFDecoder::Impl::Initalize(const BinaryRequest& r
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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 (!MFDecoderInit(Amp(transform))) {
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if (transform == nullptr) {
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LOG_CRITICAL(Audio_DSP, "Can't init decoder");
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LOG_CRITICAL(Audio_DSP, "Can't init decoder");
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return response;
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return response;
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}
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}
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@ -116,7 +117,7 @@ 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 (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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@ -45,11 +45,12 @@ bool MFCoInit() {
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return true;
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return true;
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}
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}
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bool MFDecoderInit(IMFTransform** transform, 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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GUID category = MFT_CATEGORY_AUDIO_DECODER;
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GUID category = MFT_CATEGORY_AUDIO_DECODER;
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IMFActivate** activate;
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IMFActivate** activate;
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unique_mfptr<IMFTransform> transform;
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UINT32 num_activate;
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UINT32 num_activate;
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reg.guidMajorType = MFMediaType_Audio;
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reg.guidMajorType = MFMediaType_Audio;
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@ -61,22 +62,24 @@ bool MFDecoderInit(IMFTransform** transform, GUID audio_format) {
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if (FAILED(hr) || num_activate < 1) {
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if (FAILED(hr) || num_activate < 1) {
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ReportError("Failed to enumerate decoders", hr);
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ReportError("Failed to enumerate decoders", hr);
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CoTaskMemFree(activate);
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CoTaskMemFree(activate);
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return false;
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return nullptr;
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}
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}
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LOG_INFO(Audio_DSP, "Windows(R) Media Foundation found {} suitable decoder(s)", num_activate);
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LOG_INFO(Audio_DSP, "Windows(R) Media Foundation found {} suitable decoder(s)", num_activate);
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for (unsigned int n = 0; n < num_activate; n++) {
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for (unsigned int n = 0; n < num_activate; n++) {
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hr = activate[n]->ActivateObject(IID_IMFTransform, (void**)transform);
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hr = activate[n]->ActivateObject(
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IID_IMFTransform,
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reinterpret_cast<void**>(static_cast<IMFTransform**>(Amp(transform))));
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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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}
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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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CoTaskMemFree(activate);
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CoTaskMemFree(activate);
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return false;
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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 true;
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return std::move(transform);
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}
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}
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void MFDeInit(IMFTransform* transform) {
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void MFDeInit(IMFTransform* transform) {
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@ -60,7 +60,7 @@ void ReportError(std::string msg, HRESULT hr);
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// exported functions
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// exported functions
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bool MFCoInit();
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bool MFCoInit();
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bool MFDecoderInit(IMFTransform** transform, GUID audio_format = MFAudioFormat_AAC);
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unique_mfptr<IMFTransform> MFDecoderInit(GUID audio_format = MFAudioFormat_AAC);
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void MFDeInit(IMFTransform* transform);
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void MFDeInit(IMFTransform* transform);
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unique_mfptr<IMFSample> CreateSample(void* data, DWORD len, DWORD alignment = 1,
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unique_mfptr<IMFSample> CreateSample(void* data, DWORD len, DWORD alignment = 1,
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LONGLONG duration = 0);
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LONGLONG duration = 0);
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