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https://github.com/PabloMK7/citra
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Implements fdk_aac decoder (#4764)
* audio_core: dsp_hle: implements fdk_aac decoder * audio_core: dsp_hle: clean up and add comments * audio_core: dsp_hle: move fdk include to cpp file * audio_core: dsp_hle: detects broken fdk_aac... ... and refuses to initialize if that's the case * audio_core: dsp_hle: fdk_aac: address comments... ... and rebase commits * fdk_decoder: move fdk header to cpp file
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@ -35,6 +35,8 @@ CMAKE_DEPENDENT_OPTION(ENABLE_MF "Use Media Foundation decoder (preferred over F
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CMAKE_DEPENDENT_OPTION(COMPILE_WITH_DWARF "Add DWARF debugging information" ON "MINGW" OFF)
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CMAKE_DEPENDENT_OPTION(ENABLE_FDK "Use FDK AAC decoder" OFF "NOT ENABLE_FFMPEG_AUDIO_DECODER;NOT ENABLE_MF" OFF)
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if(NOT EXISTS ${PROJECT_SOURCE_DIR}/.git/hooks/pre-commit)
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message(STATUS "Copying pre-commit hook")
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file(COPY hooks/pre-commit
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@ -223,6 +225,12 @@ if (ENABLE_FFMPEG_VIDEO_DUMPER)
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add_definitions(-DENABLE_FFMPEG_VIDEO_DUMPER)
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endif()
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if (ENABLE_FDK)
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find_library(FDK_AAC fdk-aac DOC "The path to fdk_aac library")
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if(FDK_AAC STREQUAL "FDK_AAC-NOTFOUND")
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message(FATAL_ERROR "fdk_aac library not found.")
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endif()
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endif()
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# Platform-specific library requirements
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# ======================================
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@ -62,6 +62,13 @@ elseif(ENABLE_FFMPEG_AUDIO_DECODER)
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target_include_directories(audio_core PRIVATE ${FFMPEG_DIR}/include)
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endif()
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target_compile_definitions(audio_core PUBLIC HAVE_FFMPEG)
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elseif(ENABLE_FDK)
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target_sources(audio_core PRIVATE
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hle/fdk_decoder.cpp
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hle/fdk_decoder.h
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)
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target_link_libraries(audio_core PRIVATE ${FDK_AAC})
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target_compile_definitions(audio_core PUBLIC HAVE_FDK)
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endif()
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if(SDL2_FOUND)
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233
src/audio_core/hle/fdk_decoder.cpp
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233
src/audio_core/hle/fdk_decoder.cpp
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@ -0,0 +1,233 @@
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// Copyright 2019 Citra Emulator Project
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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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#include <fdk-aac/aacdecoder_lib.h>
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#include "audio_core/hle/fdk_decoder.h"
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namespace AudioCore::HLE {
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class FDKDecoder::Impl {
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public:
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explicit Impl(Memory::MemorySystem& memory);
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~Impl();
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std::optional<BinaryResponse> ProcessRequest(const BinaryRequest& request);
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bool IsValid() const {
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return decoder != nullptr;
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}
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private:
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std::optional<BinaryResponse> Initalize(const BinaryRequest& request);
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std::optional<BinaryResponse> Decode(const BinaryRequest& request);
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void Clear();
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Memory::MemorySystem& memory;
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HANDLE_AACDECODER decoder = nullptr;
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};
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FDKDecoder::Impl::Impl(Memory::MemorySystem& memory) : memory(memory) {
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// allocate an array of LIB_INFO structures
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// if we don't pre-fill the whole segment with zeros, when we call `aacDecoder_GetLibInfo`
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// it will segfault, upon investigation, there is some code in fdk_aac depends on your initial
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// values in this array
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LIB_INFO decoder_info[FDK_MODULE_LAST] = {};
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// get library information and fill the struct
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if (aacDecoder_GetLibInfo(decoder_info) != 0) {
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LOG_ERROR(Audio_DSP, "Failed to retrieve fdk_aac library information!");
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return;
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}
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// This segment: identify the broken fdk_aac implementation
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// and refuse to initialize if identified as broken (check for module IDs)
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// although our AAC samples do not contain SBC feature, this is a way to detect
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// watered down version of fdk_aac implementations
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if (FDKlibInfo_getCapabilities(decoder_info, FDK_SBRDEC) == 0) {
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LOG_ERROR(Audio_DSP, "Bad fdk_aac library found! Initialization aborted!");
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return;
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}
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LOG_INFO(Audio_DSP, "Using fdk_aac version {} (build date: {})", decoder_info[0].versionStr,
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decoder_info[0].build_date);
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// choose the input format when initializing: 1 layer of ADTS
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decoder = aacDecoder_Open(TRANSPORT_TYPE::TT_MP4_ADTS, 1);
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// set maximum output channel to two (stereo)
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// if the input samples have more channels, fdk_aac will perform a downmix
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AAC_DECODER_ERROR ret = aacDecoder_SetParam(decoder, AAC_PCM_MAX_OUTPUT_CHANNELS, 2);
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if (ret != AAC_DEC_OK) {
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// unable to set this parameter reflects the decoder implementation might be broken
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// we'd better shuts down everything
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aacDecoder_Close(decoder);
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decoder = nullptr;
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LOG_ERROR(Audio_DSP, "Unable to set downmix parameter: {}", ret);
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return;
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}
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}
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std::optional<BinaryResponse> FDKDecoder::Impl::Initalize(const BinaryRequest& request) {
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BinaryResponse response;
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std::memcpy(&response, &request, sizeof(response));
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response.unknown1 = 0x0;
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if (decoder) {
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LOG_INFO(Audio_DSP, "FDK Decoder initialized");
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Clear();
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} else {
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LOG_ERROR(Audio_DSP, "Decoder not initialized");
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}
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return response;
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}
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FDKDecoder::Impl::~Impl() {
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if (decoder)
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aacDecoder_Close(decoder);
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}
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void FDKDecoder::Impl::Clear() {
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s16 decoder_output[8192];
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// flush and re-sync the decoder, discarding the internal buffer
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// we actually don't care if this succeeds or not
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// FLUSH - flush internal buffer
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// INTR - treat the current internal buffer as discontinuous
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// CONCEAL - try to interpolate and smooth out the samples
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if (decoder)
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aacDecoder_DecodeFrame(decoder, decoder_output, 8192,
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AACDEC_FLUSH & AACDEC_INTR & AACDEC_CONCEAL);
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}
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std::optional<BinaryResponse> FDKDecoder::Impl::ProcessRequest(const BinaryRequest& request) {
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if (request.codec != DecoderCodec::AAC) {
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LOG_ERROR(Audio_DSP, "FDK AAC Decoder cannot handle such codec: {}",
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static_cast<u16>(request.codec));
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return {};
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}
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switch (request.cmd) {
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case DecoderCommand::Init: {
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return Initalize(request);
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}
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case DecoderCommand::Decode: {
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return Decode(request);
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}
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case DecoderCommand::Unknown: {
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BinaryResponse response;
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std::memcpy(&response, &request, sizeof(response));
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response.unknown1 = 0x0;
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return response;
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}
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default:
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LOG_ERROR(Audio_DSP, "Got unknown binary request: {}", static_cast<u16>(request.cmd));
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return {};
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}
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}
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std::optional<BinaryResponse> FDKDecoder::Impl::Decode(const BinaryRequest& request) {
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BinaryResponse response;
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response.codec = request.codec;
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response.cmd = request.cmd;
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response.size = request.size;
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if (!decoder) {
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LOG_DEBUG(Audio_DSP, "Decoder not initalized");
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// This is a hack to continue games that are not compiled with the aac codec
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response.num_channels = 2;
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response.num_samples = 1024;
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return response;
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}
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if (request.src_addr < Memory::FCRAM_PADDR ||
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request.src_addr + request.size > Memory::FCRAM_PADDR + Memory::FCRAM_SIZE) {
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LOG_ERROR(Audio_DSP, "Got out of bounds src_addr {:08x}", request.src_addr);
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return {};
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}
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u8* data = memory.GetFCRAMPointer(request.src_addr - Memory::FCRAM_PADDR);
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std::array<std::vector<s16>, 2> out_streams;
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std::size_t data_size = request.size;
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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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// 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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u32 buffer_remaining = data_size;
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// alias the data_size as an u32
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u32 input_size = data_size;
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while (buffer_remaining) {
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// queue the input buffer, fdk_aac will automatically slice out the buffer it needs
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// from the input buffer
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result = aacDecoder_Fill(decoder, &data, &input_size, &buffer_remaining);
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if (result != AAC_DEC_OK) {
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// there are some issues when queuing the input buffer
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LOG_ERROR(Audio_DSP, "Failed to enqueue the input samples");
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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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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.num_channels = stream_info->aacNumChannels;
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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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}
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}
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} else if (result == AAC_DEC_TRANSPORT_SYNC_ERROR) {
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// decoder has some synchronization problems, try again with new samples,
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// using old samples might trigger this error again
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continue;
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} else {
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LOG_ERROR(Audio_DSP, "Error decoding the sample: {}", result);
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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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}
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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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FDKDecoder::FDKDecoder(Memory::MemorySystem& memory) : impl(std::make_unique<Impl>(memory)) {}
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FDKDecoder::~FDKDecoder() = default;
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std::optional<BinaryResponse> FDKDecoder::ProcessRequest(const BinaryRequest& request) {
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return impl->ProcessRequest(request);
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}
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bool FDKDecoder::IsValid() const {
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return impl->IsValid();
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}
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} // namespace AudioCore::HLE
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23
src/audio_core/hle/fdk_decoder.h
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src/audio_core/hle/fdk_decoder.h
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// Copyright 2019 Citra Emulator Project
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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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#pragma once
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#include "audio_core/hle/decoder.h"
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namespace AudioCore::HLE {
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class FDKDecoder final : public DecoderBase {
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public:
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explicit FDKDecoder(Memory::MemorySystem& memory);
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~FDKDecoder() override;
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std::optional<BinaryResponse> ProcessRequest(const BinaryRequest& request) override;
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bool IsValid() const override;
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private:
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class Impl;
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std::unique_ptr<Impl> impl;
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};
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} // namespace AudioCore::HLE
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@ -7,6 +7,8 @@
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#include "audio_core/hle/wmf_decoder.h"
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#elif HAVE_FFMPEG
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#include "audio_core/hle/ffmpeg_decoder.h"
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#elif HAVE_FDK
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#include "audio_core/hle/fdk_decoder.h"
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#endif
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#include "audio_core/hle/common.h"
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#include "audio_core/hle/decoder.h"
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@ -97,6 +99,8 @@ DspHle::Impl::Impl(DspHle& parent_, Memory::MemorySystem& memory) : parent(paren
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decoder = std::make_unique<HLE::WMFDecoder>(memory);
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#elif defined(HAVE_FFMPEG)
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decoder = std::make_unique<HLE::FFMPEGDecoder>(memory);
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#elif defined(HAVE_FDK)
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decoder = std::make_unique<HLE::FDKDecoder>(memory);
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#else
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LOG_WARNING(Audio_DSP, "No decoder found, this could lead to missing audio");
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decoder = std::make_unique<HLE::NullDecoder>();
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