Service/Audio: update audren:u service
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c3e95086b6
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@ -57,27 +57,26 @@ private:
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}
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void RequestUpdateAudioRenderer(Kernel::HLERequestContext& ctx) {
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void RequestUpdateAudioRenderer(Kernel::HLERequestContext& ctx) {
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NGLOG_DEBUG(Service_Audio, "{}", ctx.Description());
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AudioRendererConfig config;
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AudioRendererResponseData response_data{};
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auto buf = ctx.ReadBuffer();
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std::memcpy(&config, buf.data(), sizeof(AudioRendererConfig));
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response_data.section_0_size =
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AudioRendererResponse response_data{config};
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static_cast<u32>(response_data.state_entries.size() * sizeof(AudioRendererStateEntry));
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response_data.section_1_size = static_cast<u32>(response_data.section_1.size());
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response_data.section_2_size = static_cast<u32>(response_data.section_2.size());
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response_data.section_3_size = static_cast<u32>(response_data.section_3.size());
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response_data.section_4_size = static_cast<u32>(response_data.section_4.size());
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response_data.section_5_size = static_cast<u32>(response_data.section_5.size());
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response_data.total_size = sizeof(AudioRendererResponseData);
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for (unsigned i = 0; i < response_data.state_entries.size(); i++) {
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ASSERT(ctx.GetWriteBufferSize() == response_data.total_size);
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// 4 = Busy and 5 = Ready?
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response_data.state_entries[i].state = 5;
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std::vector<u8> output(response_data.total_size);
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std::memcpy(output.data(), &response_data, sizeof(AudioRendererResponse));
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std::vector<MemoryPoolEntry> memory_pool(config.memory_pools_size / 0x20);
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for (auto& entry : memory_pool) {
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entry.state = 5;
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}
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}
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std::memcpy(output.data() + sizeof(AudioRendererResponse), memory_pool.data(),
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response_data.memory_pools_size);
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ctx.WriteBuffer(&response_data, response_data.total_size);
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ctx.WriteBuffer(output);
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IPC::ResponseBuilder rb{ctx, 2};
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IPC::ResponseBuilder rb{ctx, 2};
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rb.Push(RESULT_SUCCESS);
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rb.Push(RESULT_SUCCESS);
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NGLOG_WARNING(Service_Audio, "(STUBBED) called");
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NGLOG_WARNING(Service_Audio, "(STUBBED) called");
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@ -109,43 +108,55 @@ private:
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NGLOG_WARNING(Service_Audio, "(STUBBED) called");
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NGLOG_WARNING(Service_Audio, "(STUBBED) called");
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}
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}
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struct AudioRendererStateEntry {
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struct MemoryPoolEntry {
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u32_le state;
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u32_le state;
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u32_le unknown_4;
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u32_le unknown_4;
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u32_le unknown_8;
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u32_le unknown_8;
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u32_le unknown_c;
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u32_le unknown_c;
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};
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};
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static_assert(sizeof(AudioRendererStateEntry) == 0x10,
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static_assert(sizeof(MemoryPoolEntry) == 0x10, "MemoryPoolEntry has wrong size");
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"AudioRendererStateEntry has wrong size");
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struct AudioRendererResponseData {
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struct AudioRendererConfig {
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u32_le unknown_0;
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u32 revision;
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u32_le section_5_size;
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u32 behavior_size;
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u32_le section_0_size;
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u32 memory_pools_size;
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u32_le section_1_size;
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u32 voices_size;
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u32_le unknown_10;
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u32 voice_resource_size;
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u32_le section_2_size;
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u32 effects_size;
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u32_le unknown_18;
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u32 mixes_size;
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u32_le section_3_size;
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u32 sinks_size;
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u32_le section_4_size;
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u32 performance_buffer_size;
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u32_le unknown_24;
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INSERT_PADDING_WORDS(6);
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u32_le unknown_28;
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u32 total_size;
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u32_le unknown_2c;
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u32_le unknown_30;
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u32_le unknown_34;
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u32_le unknown_38;
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u32_le total_size;
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std::array<AudioRendererStateEntry, 0x18e> state_entries;
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std::array<u8, 0x600> section_1;
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std::array<u8, 0xe0> section_2;
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std::array<u8, 0x20> section_3;
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std::array<u8, 0x10> section_4;
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std::array<u8, 0xb0> section_5;
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};
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};
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static_assert(sizeof(AudioRendererResponseData) == 0x20e0,
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static_assert(sizeof(AudioRendererConfig) == 0x40, "AudioRendererConfig has wrong size");
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"AudioRendererResponseData has wrong size");
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struct AudioRendererResponse {
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AudioRendererResponse(const AudioRendererConfig& config) {
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revision = config.revision;
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error_info_size = 0xb0;
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memory_pools_size = (config.memory_pools_size / 0x20) * 0x10;
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voices_size = (config.voices_size / 0x170) * 0x10;
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effects_size = (config.effects_size / 0xC0) * 0x10;
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sinks_size = (config.sinks_size / 0x140) * 0x20;
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performance_manager_size = 0x10;
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total_size = sizeof(AudioRendererResponse) + error_info_size + memory_pools_size +
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voices_size + effects_size + sinks_size + performance_manager_size;
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}
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u32_le revision;
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u32_le error_info_size;
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u32_le memory_pools_size;
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u32_le voices_size;
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u32_le unknown_10;
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u32_le effects_size;
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u32_le unknown_18;
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u32_le sinks_size;
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u32_le performance_manager_size;
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INSERT_PADDING_WORDS(6);
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u32_le total_size;
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};
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static_assert(sizeof(AudioRendererResponse) == 0x40, "AudioRendererResponse has wrong size");
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/// This is used to trigger the audio event callback.
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/// This is used to trigger the audio event callback.
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CoreTiming::EventType* audio_event;
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CoreTiming::EventType* audio_event;
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@ -258,7 +269,7 @@ void AudRenU::OpenAudioRenderer(Kernel::HLERequestContext& ctx) {
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void AudRenU::GetAudioRendererWorkBufferSize(Kernel::HLERequestContext& ctx) {
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void AudRenU::GetAudioRendererWorkBufferSize(Kernel::HLERequestContext& ctx) {
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IPC::RequestParser rp{ctx};
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IPC::RequestParser rp{ctx};
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auto params = rp.PopRaw<WorkerBufferParameters>();
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auto params = rp.PopRaw<AudioRendererParameters>();
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u64 buffer_sz = Common::AlignUp(4 * params.unknown8, 0x40);
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u64 buffer_sz = Common::AlignUp(4 * params.unknown8, 0x40);
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buffer_sz += params.unknownC * 1024;
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buffer_sz += params.unknownC * 1024;
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@ -22,7 +22,7 @@ private:
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void GetAudioRendererWorkBufferSize(Kernel::HLERequestContext& ctx);
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void GetAudioRendererWorkBufferSize(Kernel::HLERequestContext& ctx);
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void GetAudioDevice(Kernel::HLERequestContext& ctx);
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void GetAudioDevice(Kernel::HLERequestContext& ctx);
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struct WorkerBufferParameters {
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struct AudioRendererParameters {
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u32_le sample_rate;
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u32_le sample_rate;
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u32_le sample_count;
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u32_le sample_count;
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u32_le unknown8;
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u32_le unknown8;
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@ -38,8 +38,8 @@ private:
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u8 padding2[4];
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u8 padding2[4];
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u32_le magic;
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u32_le magic;
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};
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};
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static_assert(sizeof(WorkerBufferParameters) == 52,
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static_assert(sizeof(AudioRendererParameters) == 52,
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"WorkerBufferParameters is an invalid size");
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"AudioRendererParameters is an invalid size");
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enum class AudioFeatures : u32 {
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enum class AudioFeatures : u32 {
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Splitter,
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Splitter,
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