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audio_core: Fix FDK AAC decoding. (#6530)
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dc39eac916
commit
0768bd8ce0
2 changed files with 29 additions and 32 deletions
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@ -187,8 +187,8 @@ std::optional<BinaryResponse> AudioToolboxDecoder::Impl::Decode(const BinaryRequ
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return std::nullopt;
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}
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// 1024 samples, up to 2 channels each
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s16 decoder_output[2048];
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// Up to 2048 samples, up to 2 channels each
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s16 decoder_output[4096];
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AudioBufferList out_buffer{1,
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{{
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output_format.mChannelsPerFrame,
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@ -208,8 +208,8 @@ std::optional<BinaryResponse> AudioToolboxDecoder::Impl::Decode(const BinaryRequ
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// De-interleave samples.
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std::array<std::vector<s16>, 2> out_streams;
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auto num_frames = num_packets * output_format.mFramesPerPacket;
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for (auto frame = 0; frame < num_frames; frame++) {
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for (auto ch = 0; ch < output_format.mChannelsPerFrame; ch++) {
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for (u32 frame = 0; frame < num_frames; frame++) {
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for (u32 ch = 0; ch < output_format.mChannelsPerFrame; ch++) {
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out_streams[ch].push_back(
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decoder_output[(frame * output_format.mChannelsPerFrame) + ch]);
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}
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@ -223,16 +223,17 @@ std::optional<BinaryResponse> AudioToolboxDecoder::Impl::Decode(const BinaryRequ
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response.num_samples = num_frames;
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// transfer the decoded buffer from vector to the FCRAM
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for (auto ch = 0; ch < out_streams.size(); ch++) {
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for (std::size_t ch = 0; ch < out_streams.size(); ch++) {
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if (!out_streams[ch].empty()) {
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auto byte_size = out_streams[ch].size() * bytes_per_sample;
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auto dst = ch == 0 ? request.dst_addr_ch0 : request.dst_addr_ch1;
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if (dst < Memory::FCRAM_PADDR ||
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dst + out_streams[ch].size() > Memory::FCRAM_PADDR + Memory::FCRAM_SIZE) {
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dst + byte_size > Memory::FCRAM_PADDR + Memory::FCRAM_SIZE) {
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LOG_ERROR(Audio_DSP, "Got out of bounds dst_addr_ch{} {:08x}", ch, dst);
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return {};
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}
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std::memcpy(memory.GetFCRAMPointer(dst - Memory::FCRAM_PADDR), out_streams[ch].data(),
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out_streams[ch].size() * bytes_per_sample);
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byte_size);
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}
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}
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@ -143,8 +143,8 @@ std::optional<BinaryResponse> FDKDecoder::Impl::Decode(const BinaryRequest& requ
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// decoding loops
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AAC_DECODER_ERROR result = AAC_DEC_OK;
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// 8192 units of s16 are enough to hold one frame of AAC-LC or AAC-HE/v2 data
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s16 decoder_output[8192];
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// Up to 2048 samples, up to 2 channels each
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s16 decoder_output[4096];
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// note that we don't free this pointer as it is automatically freed by fdk_aac
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CStreamInfo* stream_info;
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// how many bytes to be queued into the decoder, decrementing from the buffer size
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@ -162,19 +162,21 @@ std::optional<BinaryResponse> FDKDecoder::Impl::Decode(const BinaryRequest& requ
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return std::nullopt;
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}
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// get output from decoder
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result = aacDecoder_DecodeFrame(decoder, decoder_output, 8192, 0);
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result = aacDecoder_DecodeFrame(decoder, decoder_output,
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sizeof(decoder_output) / sizeof(s16), 0);
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if (result == AAC_DEC_OK) {
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// get the stream information
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stream_info = aacDecoder_GetStreamInfo(decoder);
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// fill the stream information for binary response
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response.sample_rate = GetSampleRateEnum(stream_info->sampleRate);
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response.num_channels = stream_info->aacNumChannels;
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response.num_channels = stream_info->numChannels;
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response.num_samples = stream_info->frameSize;
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// fill the output
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// the sample size = frame_size * channel_counts
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for (int sample = 0; sample < (stream_info->frameSize * 2); sample++) {
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for (int ch = 0; ch < stream_info->aacNumChannels; ch++) {
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out_streams[ch].push_back(decoder_output[(sample * 2) + 1]);
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for (int sample = 0; sample < stream_info->frameSize; sample++) {
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for (int ch = 0; ch < stream_info->numChannels; ch++) {
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out_streams[ch].push_back(
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decoder_output[(sample * stream_info->numChannels) + ch]);
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}
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}
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} else if (result == AAC_DEC_TRANSPORT_SYNC_ERROR) {
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@ -186,28 +188,22 @@ std::optional<BinaryResponse> FDKDecoder::Impl::Decode(const BinaryRequest& requ
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return std::nullopt;
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}
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}
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// transfer the decoded buffer from vector to the FCRAM
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if (out_streams[0].size() != 0) {
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if (request.dst_addr_ch0 < Memory::FCRAM_PADDR ||
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request.dst_addr_ch0 + out_streams[0].size() >
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Memory::FCRAM_PADDR + Memory::FCRAM_SIZE) {
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LOG_ERROR(Audio_DSP, "Got out of bounds dst_addr_ch0 {:08x}", request.dst_addr_ch0);
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return {};
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for (std::size_t ch = 0; ch < out_streams.size(); ch++) {
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if (!out_streams[ch].empty()) {
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auto byte_size = out_streams[ch].size() * sizeof(s16);
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auto dst = ch == 0 ? request.dst_addr_ch0 : request.dst_addr_ch1;
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if (dst < Memory::FCRAM_PADDR ||
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dst + byte_size > Memory::FCRAM_PADDR + Memory::FCRAM_SIZE) {
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LOG_ERROR(Audio_DSP, "Got out of bounds dst_addr_ch{} {:08x}", ch, dst);
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return {};
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}
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std::memcpy(memory.GetFCRAMPointer(dst - Memory::FCRAM_PADDR), out_streams[ch].data(),
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byte_size);
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}
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std::memcpy(memory.GetFCRAMPointer(request.dst_addr_ch0 - Memory::FCRAM_PADDR),
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out_streams[0].data(), out_streams[0].size());
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}
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if (out_streams[1].size() != 0) {
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if (request.dst_addr_ch1 < Memory::FCRAM_PADDR ||
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request.dst_addr_ch1 + out_streams[1].size() >
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Memory::FCRAM_PADDR + Memory::FCRAM_SIZE) {
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LOG_ERROR(Audio_DSP, "Got out of bounds dst_addr_ch1 {:08x}", request.dst_addr_ch1);
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return {};
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}
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std::memcpy(memory.GetFCRAMPointer(request.dst_addr_ch1 - Memory::FCRAM_PADDR),
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out_streams[1].data(), out_streams[1].size());
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}
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return response;
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}
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