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audio_core: Clean up AAC decoder infrastructure. (#7310)
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@ -4,11 +4,11 @@ add_library(audio_core STATIC
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codec.h
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dsp_interface.cpp
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dsp_interface.h
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hle/aac_decoder.cpp
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hle/aac_decoder.h
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hle/common.h
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hle/decoder.cpp
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hle/decoder.h
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hle/faad2_decoder.cpp
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hle/faad2_decoder.h
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hle/filter.cpp
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hle/filter.h
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hle/hle.cpp
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@ -3,30 +3,11 @@
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// Refer to the license.txt file included.
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#include <neaacdec.h>
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#include "audio_core/hle/faad2_decoder.h"
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#include "audio_core/hle/aac_decoder.h"
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namespace AudioCore::HLE {
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class FAAD2Decoder::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<BinaryMessage> ProcessRequest(const BinaryMessage& 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<BinaryMessage> Initalize(const BinaryMessage& request);
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std::optional<BinaryMessage> Decode(const BinaryMessage& request);
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Memory::MemorySystem& memory;
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NeAACDecHandle decoder = nullptr;
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};
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FAAD2Decoder::Impl::Impl(Memory::MemorySystem& memory) : memory(memory) {
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AACDecoder::AACDecoder(Memory::MemorySystem& memory) : memory(memory) {
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decoder = NeAACDecOpen();
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if (decoder == nullptr) {
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LOG_CRITICAL(Audio_DSP, "Could not open FAAD2 decoder.");
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@ -46,7 +27,7 @@ FAAD2Decoder::Impl::Impl(Memory::MemorySystem& memory) : memory(memory) {
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LOG_INFO(Audio_DSP, "Created FAAD2 AAC decoder.");
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}
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FAAD2Decoder::Impl::~Impl() {
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AACDecoder::~AACDecoder() {
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if (decoder) {
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NeAACDecClose(decoder);
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decoder = nullptr;
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@ -55,16 +36,23 @@ FAAD2Decoder::Impl::~Impl() {
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}
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}
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std::optional<BinaryMessage> FAAD2Decoder::Impl::ProcessRequest(const BinaryMessage& request) {
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BinaryMessage AACDecoder::ProcessRequest(const BinaryMessage& request) {
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if (request.header.codec != DecoderCodec::DecodeAAC) {
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LOG_ERROR(Audio_DSP, "FAAD2 AAC Decoder cannot handle such codec: {}",
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LOG_ERROR(Audio_DSP, "AAC decoder received unsupported codec: {}",
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static_cast<u16>(request.header.codec));
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return {};
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return {
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.header =
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{
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.result = ResultStatus::Error,
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},
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};
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}
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switch (request.header.cmd) {
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case DecoderCommand::Init: {
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return Initalize(request);
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BinaryMessage response = request;
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response.header.result = ResultStatus::Success;
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return response;
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}
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case DecoderCommand::EncodeDecode: {
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return Decode(request);
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@ -72,26 +60,25 @@ std::optional<BinaryMessage> FAAD2Decoder::Impl::ProcessRequest(const BinaryMess
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case DecoderCommand::Shutdown:
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case DecoderCommand::SaveState:
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case DecoderCommand::LoadState: {
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LOG_WARNING(Audio_DSP, "Got unimplemented binary request: {}",
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LOG_WARNING(Audio_DSP, "Got unimplemented AAC binary request: {}",
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static_cast<u16>(request.header.cmd));
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BinaryMessage response = request;
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response.header.result = ResultStatus::Success;
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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: {}",
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LOG_ERROR(Audio_DSP, "Got unknown AAC binary request: {}",
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static_cast<u16>(request.header.cmd));
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return {};
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return {
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.header =
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{
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.result = ResultStatus::Error,
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},
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};
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}
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}
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std::optional<BinaryMessage> FAAD2Decoder::Impl::Initalize(const BinaryMessage& request) {
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BinaryMessage response = request;
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response.header.result = ResultStatus::Success;
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return response;
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}
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std::optional<BinaryMessage> FAAD2Decoder::Impl::Decode(const BinaryMessage& request) {
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BinaryMessage AACDecoder::Decode(const BinaryMessage& request) {
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BinaryMessage response{};
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response.header.codec = request.header.codec;
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response.header.cmd = request.header.cmd;
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@ -101,6 +88,10 @@ std::optional<BinaryMessage> FAAD2Decoder::Impl::Decode(const BinaryMessage& req
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response.decode_aac_response.num_channels = 2;
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response.decode_aac_response.num_samples = 1024;
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if (decoder == nullptr) {
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return response;
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}
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if (request.decode_aac_request.src_addr < Memory::FCRAM_PADDR ||
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request.decode_aac_request.src_addr + request.decode_aac_request.size >
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Memory::FCRAM_PADDR + Memory::FCRAM_SIZE) {
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@ -171,16 +162,4 @@ std::optional<BinaryMessage> FAAD2Decoder::Impl::Decode(const BinaryMessage& req
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return response;
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}
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FAAD2Decoder::FAAD2Decoder(Memory::MemorySystem& memory) : impl(std::make_unique<Impl>(memory)) {}
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FAAD2Decoder::~FAAD2Decoder() = default;
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std::optional<BinaryMessage> FAAD2Decoder::ProcessRequest(const BinaryMessage& request) {
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return impl->ProcessRequest(request);
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}
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bool FAAD2Decoder::IsValid() const {
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return impl->IsValid();
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}
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} // namespace AudioCore::HLE
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26
src/audio_core/hle/aac_decoder.h
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26
src/audio_core/hle/aac_decoder.h
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@ -0,0 +1,26 @@
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// Copyright 2023 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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using NeAACDecHandle = void*;
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class AACDecoder final : public DecoderBase {
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public:
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explicit AACDecoder(Memory::MemorySystem& memory);
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~AACDecoder() override;
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BinaryMessage ProcessRequest(const BinaryMessage& request) override;
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private:
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BinaryMessage Decode(const BinaryMessage& request);
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Memory::MemorySystem& memory;
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NeAACDecHandle decoder = nullptr;
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};
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} // namespace AudioCore::HLE
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@ -32,34 +32,4 @@ DecoderSampleRate GetSampleRateEnum(u32 sample_rate) {
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}
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}
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DecoderBase::~DecoderBase(){};
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NullDecoder::NullDecoder() = default;
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NullDecoder::~NullDecoder() = default;
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std::optional<BinaryMessage> NullDecoder::ProcessRequest(const BinaryMessage& request) {
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BinaryMessage response{};
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switch (request.header.cmd) {
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case DecoderCommand::Init:
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case DecoderCommand::Shutdown:
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case DecoderCommand::SaveState:
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case DecoderCommand::LoadState:
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response = request;
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response.header.result = ResultStatus::Success;
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return response;
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case DecoderCommand::EncodeDecode:
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response.header.codec = request.header.codec;
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response.header.cmd = request.header.cmd;
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response.header.result = ResultStatus::Success;
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response.decode_aac_response.num_channels = 2; // Just assume stereo here
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response.decode_aac_response.size = request.decode_aac_request.size;
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response.decode_aac_response.num_samples = 1024; // Just assume 1024 here
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return response;
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default:
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LOG_ERROR(Audio_DSP, "Got unknown binary request: {}",
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static_cast<u16>(request.header.cmd));
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return std::nullopt;
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}
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};
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} // namespace AudioCore::HLE
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@ -135,21 +135,8 @@ enum_le<DecoderSampleRate> GetSampleRateEnum(u32 sample_rate);
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class DecoderBase {
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public:
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virtual ~DecoderBase();
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virtual std::optional<BinaryMessage> ProcessRequest(const BinaryMessage& request) = 0;
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/// Return true if this Decoder can be loaded. Return false if the system cannot create the
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/// decoder
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virtual bool IsValid() const = 0;
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};
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class NullDecoder final : public DecoderBase {
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public:
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NullDecoder();
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~NullDecoder() override;
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std::optional<BinaryMessage> ProcessRequest(const BinaryMessage& request) override;
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bool IsValid() const override {
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return true;
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}
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virtual ~DecoderBase() = default;
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virtual BinaryMessage ProcessRequest(const BinaryMessage& request) = 0;
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};
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} // namespace AudioCore::HLE
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@ -1,23 +0,0 @@
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// Copyright 2023 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 FAAD2Decoder final : public DecoderBase {
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public:
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explicit FAAD2Decoder(Memory::MemorySystem& memory);
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~FAAD2Decoder() override;
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std::optional<BinaryMessage> ProcessRequest(const BinaryMessage& 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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@ -8,9 +8,9 @@
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#include <boost/serialization/vector.hpp>
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#include <boost/serialization/weak_ptr.hpp>
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#include "audio_core/audio_types.h"
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#include "audio_core/hle/aac_decoder.h"
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#include "audio_core/hle/common.h"
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#include "audio_core/hle/decoder.h"
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#include "audio_core/hle/faad2_decoder.h"
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#include "audio_core/hle/hle.h"
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#include "audio_core/hle/mixers.h"
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#include "audio_core/hle/shared_memory.h"
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@ -98,7 +98,7 @@ private:
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Core::Timing& core_timing;
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Core::TimingEventType* tick_event{};
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std::unique_ptr<HLE::DecoderBase> decoder{};
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std::unique_ptr<HLE::DecoderBase> aac_decoder{};
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std::function<void(Service::DSP::InterruptType type, DspPipe pipe)> interrupt_handler{};
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@ -114,13 +114,6 @@ private:
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friend class boost::serialization::access;
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};
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static std::vector<std::function<std::unique_ptr<HLE::DecoderBase>(Memory::MemorySystem&)>>
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decoder_backends = {
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[](Memory::MemorySystem& memory) -> std::unique_ptr<HLE::DecoderBase> {
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return std::make_unique<HLE::FAAD2Decoder>(memory);
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},
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};
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DspHle::Impl::Impl(DspHle& parent_, Memory::MemorySystem& memory, Core::Timing& timing)
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: parent(parent_), core_timing(timing) {
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dsp_memory.raw_memory.fill(0);
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@ -129,19 +122,7 @@ DspHle::Impl::Impl(DspHle& parent_, Memory::MemorySystem& memory, Core::Timing&
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source.SetMemory(memory);
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}
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for (auto& factory : decoder_backends) {
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decoder = factory(memory);
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if (decoder && decoder->IsValid()) {
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break;
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}
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}
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if (!decoder || !decoder->IsValid()) {
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LOG_WARNING(Audio_DSP,
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"Unable to load any decoders, this could cause missing audio in some games");
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decoder = std::make_unique<HLE::NullDecoder>();
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}
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aac_decoder = std::make_unique<HLE::AACDecoder>(memory);
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tick_event =
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core_timing.RegisterEvent("AudioCore::DspHle::tick_event", [this](u64, s64 cycles_late) {
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this->AudioTickCallback(cycles_late);
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@ -291,12 +272,9 @@ void DspHle::Impl::PipeWrite(DspPipe pipe_number, std::span<const u8> buffer) {
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UNIMPLEMENTED();
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return;
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}
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std::optional<HLE::BinaryMessage> response = decoder->ProcessRequest(request);
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if (response) {
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const HLE::BinaryMessage& value = *response;
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pipe_data[static_cast<u32>(pipe_number)].resize(sizeof(value));
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std::memcpy(pipe_data[static_cast<u32>(pipe_number)].data(), &value, sizeof(value));
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}
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const HLE::BinaryMessage response = aac_decoder->ProcessRequest(request);
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pipe_data[static_cast<u32>(pipe_number)].resize(sizeof(response));
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std::memcpy(pipe_data[static_cast<u32>(pipe_number)].data(), &response, sizeof(response));
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interrupt_handler(InterruptType::Pipe, DspPipe::Binary);
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break;
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