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Author SHA1 Message Date
lizzie 196d474e6d 2026-09-10 03:16:42
Signed-off-by: lizzie <lizzie@eden-emu.dev>
2026-09-10 03:16:42 +00:00
lizzie f839b95843 Fix license headers 2026-09-10 00:46:46 +00:00
lizzie dc3a5b331a 2026-09-10 00:46:30
Signed-off-by: lizzie <lizzie@eden-emu.dev>
2026-09-10 00:46:31 +00:00
11 changed files with 23 additions and 101 deletions
+2 -17
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@@ -14,21 +14,6 @@
#include "core/core_timing.h"
#include "core/hle/kernel/k_event.h"
// See texture_cache/util.h
template<typename T, size_t N>
#if BOOST_VERSION >= 108100 || __GNUC__ > 12
[[nodiscard]] boost::container::static_vector<T, N> FixStaticVectorADL(const boost::container::static_vector<T, N>& v) {
return v;
}
#else
[[nodiscard]] std::vector<T> FixStaticVectorADL(const boost::container::static_vector<T, N>& v) {
std::vector<T> u;
for (auto const& e : v)
u.push_back(e);
return u;
}
#endif
namespace AudioCore::AudioIn {
System::System(Core::System& system_, Kernel::KEvent* event_, const size_t session_id_)
@@ -110,7 +95,7 @@ Result System::Start() {
boost::container::static_vector<AudioBuffer, BufferCount> buffers_to_flush{};
buffers.RegisterBuffers(buffers_to_flush);
session->AppendBuffers(FixStaticVectorADL(buffers_to_flush));
session->AppendBuffers(buffers_to_flush);
session->SetRingSize(static_cast<u32>(buffers_to_flush.size()));
return ResultSuccess;
@@ -155,7 +140,7 @@ void System::RegisterBuffers() {
if (state == State::Started) {
boost::container::static_vector<AudioBuffer, BufferCount> registered_buffers{};
buffers.RegisterBuffers(registered_buffers);
session->AppendBuffers(FixStaticVectorADL(registered_buffers));
session->AppendBuffers(registered_buffers);
}
}
-16
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@@ -8,7 +8,6 @@
#include "audio_core/opus/hardware_opus.h"
#include "audio_core/opus/parameters.h"
#include "common/alignment.h"
#include "common/scope_exit.h"
#include "common/swap.h"
#include "core/core.h"
@@ -29,18 +28,10 @@ OpusDecoder::OpusDecoder(Core::System& system_, HardwareOpus& hardware_opus_)
OpusDecoder::~OpusDecoder() {
if (decode_object_initialized) {
hardware_opus.ShutdownDecodeObject(shared_buffer.data(), shared_buffer.size());
hardware_opus.UnregisterDecoder(this);
}
}
Result OpusDecoder::Initialize(const OpusParametersEx& params, Kernel::KTransferMemory* transfer_memory, u64 transfer_memory_size) {
R_TRY(hardware_opus.RegisterDecoder(this));
SCOPE_EXIT {
if (!decode_object_initialized) {
hardware_opus.UnregisterDecoder(this);
}
};
auto frame_size{params.use_large_frame_size ? 5760 : 1920};
shared_buffer.resize(transfer_memory_size);
shared_memory_mapped = true;
@@ -70,13 +61,6 @@ Result OpusDecoder::Initialize(const OpusParametersEx& params, Kernel::KTransfer
}
Result OpusDecoder::Initialize(const OpusMultiStreamParametersEx& params, Kernel::KTransferMemory* transfer_memory, u64 transfer_memory_size) {
R_TRY(hardware_opus.RegisterDecoder(this));
SCOPE_EXIT {
if (!decode_object_initialized) {
hardware_opus.UnregisterDecoder(this);
}
};
auto frame_size{params.use_large_frame_size ? 5760 : 1920};
shared_buffer.resize(transfer_memory_size, 0);
shared_memory_mapped = true;
-20
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@@ -4,7 +4,6 @@
// SPDX-FileCopyrightText: Copyright 2023 yuzu Emulator Project
// SPDX-License-Identifier: GPL-2.0-or-later
#include <algorithm>
#include <array>
#include "audio_core/audio_core.h"
@@ -46,25 +45,6 @@ HardwareOpus::HardwareOpus(Core::System& system_)
opus_decoder.SetSharedMemory(shared_memory);
}
Result HardwareOpus::RegisterDecoder(OpusDecoder* decoder) {
std::scoped_lock l{mutex};
const auto slot = std::ranges::find(decoders, nullptr);
if (slot == decoders.end()) {
R_THROW(ResultOutOfOpusDecoders);
}
*slot = decoder;
R_SUCCEED();
}
void HardwareOpus::UnregisterDecoder(OpusDecoder* decoder) {
std::scoped_lock l{mutex};
const auto slot = std::ranges::find(decoders, decoder);
if (slot == decoders.end()) {
return;
}
*slot = nullptr;
}
u32 HardwareOpus::GetWorkBufferSize(u32 channel) {
if (!opus_decoder.IsRunning()) {
return 0;
-5
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@@ -3,7 +3,6 @@
#pragma once
#include <array>
#include <mutex>
#include <opus.h>
@@ -13,12 +12,9 @@
#include "core/hle/service/audio/errors.h"
namespace AudioCore::OpusDecoder {
class OpusDecoder;
class HardwareOpus {
public:
HardwareOpus(Core::System& system);
Result RegisterDecoder(OpusDecoder* decoder);
void UnregisterDecoder(OpusDecoder* decoder);
u32 GetWorkBufferSize(u32 channel);
u32 GetWorkBufferSizeForMultiStream(u32 total_stream_count, u32 stereo_stream_count);
@@ -43,7 +39,6 @@ public:
private:
Core::System& system;
std::mutex mutex;
std::array<OpusDecoder*, 24> decoders{};
ADSP::OpusDecoder::OpusDecoder& opus_decoder;
ADSP::OpusDecoder::SharedMemory shared_memory;
};
-1
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@@ -33,7 +33,6 @@ constexpr Result ResultLibOpusInternalError{ErrorModule::HwOpus, 4};
constexpr Result ResultBufferTooSmall{ErrorModule::HwOpus, 3};
constexpr Result ResultLibOpusBadArg{ErrorModule::HwOpus, 2};
constexpr Result ResultInvalidOpusDSPReturnCode{ErrorModule::HwOpus, 259};
constexpr Result ResultOutOfOpusDecoders{ErrorModule::HwOpus, 385};
constexpr Result ResultInvalidOpusSampleRate{ErrorModule::HwOpus, 1001};
constexpr Result ResultInvalidOpusChannelCount{ErrorModule::HwOpus, 1002};
+1 -1
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@@ -1664,7 +1664,7 @@ void BufferCache<P>::JoinOverlap(BufferId new_buffer_id, BufferId overlap_id,
.size = overlap.SizeBytes(),
});
new_buffer.MarkUsage(copies[0].dst_offset, copies[0].size);
runtime.CopyBuffer(new_buffer, overlap, FixSmallVectorADL(copies), true);
runtime.CopyBuffer(new_buffer, overlap, copies, true);
#ifdef YUZU_LEGACY
if (immediately_free)
runtime.Finish();
+1 -1
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@@ -713,7 +713,7 @@ void MemoryManager::FlushCaching() {
if (accumulator.InvalidateAll([this](GPUVAddr addr, size_t size) {
GetSubmappedRangeImpl<false>(addr, size, page_stash2);
})) {
rasterizer->InnerInvalidation(VideoCommon::FixSmallVectorADL(page_stash2));
rasterizer->InnerInvalidation(page_stash2);
page_stash2.clear();
}
}
@@ -471,7 +471,7 @@ void BufferCacheRuntime::CopyBuffer(VkBuffer dst_buffer, VkBuffer src_buffer,
if (src_buffer == staging_pool.StreamBuf() && can_reorder_upload) {
scheduler.RecordWithUploadBuffer([src_buffer, dst_buffer, vk_copies](
vk::CommandBuffer, vk::CommandBuffer upload_cmdbuf) {
upload_cmdbuf.CopyBuffer(src_buffer, dst_buffer, VideoCommon::FixSmallVectorADL(vk_copies));
upload_cmdbuf.CopyBuffer(src_buffer, dst_buffer, vk_copies);
});
return;
}
@@ -482,7 +482,7 @@ void BufferCacheRuntime::CopyBuffer(VkBuffer dst_buffer, VkBuffer src_buffer,
cmdbuf.PipelineBarrier(vk::PIPELINE_STAGE_GRAPHICS_COMPUTE_TRANSFER,
VK_PIPELINE_STAGE_TRANSFER_BIT, 0, READ_BARRIER);
}
cmdbuf.CopyBuffer(src_buffer, dst_buffer, VideoCommon::FixSmallVectorADL(vk_copies));
cmdbuf.CopyBuffer(src_buffer, dst_buffer, vk_copies);
if (barrier) {
cmdbuf.PipelineBarrier(VK_PIPELINE_STAGE_TRANSFER_BIT,
vk::PIPELINE_STAGE_GRAPHICS_COMPUTE, 0, WRITE_BARRIER);
@@ -1642,7 +1642,7 @@ void TextureCacheRuntime::CopyImage(Image& dst, Image& src,
VK_PIPELINE_STAGE_TRANSFER_BIT,
0, nullptr, nullptr, pre_barriers);
cmdbuf.CopyImage(src_image, VK_IMAGE_LAYOUT_TRANSFER_SRC_OPTIMAL, dst_image,
VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL, VideoCommon::FixSmallVectorADL(vk_copies));
VK_IMAGE_LAYOUT_TRANSFER_DST_OPTIMAL, vk_copies);
cmdbuf.PipelineBarrier(
VK_PIPELINE_STAGE_TRANSFER_BIT,
VK_PIPELINE_STAGE_LATE_FRAGMENT_TESTS_BIT | VK_PIPELINE_STAGE_COMPUTE_SHADER_BIT |
@@ -2006,7 +2006,7 @@ void Image::UploadMemory(VkBuffer buffer, VkDeviceSize offset,
scheduler->Record([src_buffer, temp_vk_image, vk_aspect_mask,
vk_copies](vk::CommandBuffer cmdbuf) {
CopyBufferToImage(cmdbuf, src_buffer, temp_vk_image, vk_aspect_mask, false, VideoCommon::FixSmallVectorADL(vk_copies));
CopyBufferToImage(cmdbuf, src_buffer, temp_vk_image, vk_aspect_mask, false, vk_copies);
});
const auto [samples_x, samples_y] = VideoCommon::SamplesLog2(info.num_samples);
@@ -2060,7 +2060,7 @@ void Image::UploadMemory(VkBuffer buffer, VkDeviceSize offset,
scheduler->Record([src_buffer, vk_image, vk_aspect_mask, was_initialized,
vk_copies](vk::CommandBuffer cmdbuf) {
CopyBufferToImage(cmdbuf, src_buffer, vk_image, vk_aspect_mask, was_initialized, VideoCommon::FixSmallVectorADL(vk_copies));
CopyBufferToImage(cmdbuf, src_buffer, vk_image, vk_aspect_mask, was_initialized, vk_copies);
});
if (is_rescaled) {
+13 -13
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@@ -140,7 +140,7 @@ void TextureCache<P>::RunGarbageCollector() {
}
if (must_download) {
auto map = runtime.DownloadStagingBuffer(image.unswizzled_size_bytes);
const auto copies = FixSmallVectorADL(FullDownloadCopies(image.info));
const auto copies = FullDownloadCopies(image.info);
image.DownloadMemory(map, copies);
runtime.Finish();
SwizzleImage(*gpu_memory, image.gpu_addr, image.info, copies, map.mapped_span, swizzle_data_buffer);
@@ -629,7 +629,7 @@ void TextureCache<P>::DownloadMemory(DAddr cpu_addr, size_t size) {
for (const ImageId image_id : images) {
Image& image = slot_images[image_id];
auto map = runtime.DownloadStagingBuffer(image.unswizzled_size_bytes);
const auto copies = FixSmallVectorADL(FullDownloadCopies(image.info));
const auto copies = FullDownloadCopies(image.info);
image.DownloadMemory(map, copies);
runtime.Finish();
SwizzleImage(*gpu_memory, image.gpu_addr, image.info, copies, map.mapped_span,
@@ -893,7 +893,7 @@ void TextureCache<P>::CommitAsyncFlushes() {
for (const PendingDownload& download_info : download_ids) {
if (download_info.is_swizzle) {
Image& image = slot_images[download_info.object_id];
const auto copies = FixSmallVectorADL(FullDownloadCopies(image.info));
const auto copies = FullDownloadCopies(image.info);
image.DownloadMemory(download_map, copies);
download_map.offset += Common::AlignUp(image.unswizzled_size_bytes, 64);
}
@@ -926,7 +926,7 @@ void TextureCache<P>::PopAsyncFlushes() {
auto& download_buffer = download_map[download_info.async_buffer_id];
if (download_info.is_swizzle) {
const ImageBase& image = slot_images[download_info.object_id];
const auto copies = FixSmallVectorADL(FullDownloadCopies(image.info));
const auto copies = FullDownloadCopies(image.info);
download_buffer.offset -= Common::AlignUp(image.unswizzled_size_bytes, 64);
std::span<u8> download_span =
download_buffer.mapped_span.subspan(download_buffer.offset);
@@ -964,7 +964,7 @@ void TextureCache<P>::PopAsyncFlushes() {
continue;
}
Image& image = slot_images[download_info.object_id];
const auto copies = FixSmallVectorADL(FullDownloadCopies(image.info));
const auto copies = FullDownloadCopies(image.info);
image.DownloadMemory(download_map, copies);
download_map.offset += image.unswizzled_size_bytes;
}
@@ -977,7 +977,7 @@ void TextureCache<P>::PopAsyncFlushes() {
continue;
}
const ImageBase& image = slot_images[download_info.object_id];
const auto copies = FixSmallVectorADL(FullDownloadCopies(image.info));
const auto copies = FullDownloadCopies(image.info);
SwizzleImage(*gpu_memory, image.gpu_addr, image.info, copies, download_span, swizzle_data_buffer);
download_map.offset += image.unswizzled_size_bytes;
download_span = download_span.subspan(image.unswizzled_size_bytes);
@@ -1160,7 +1160,7 @@ void TextureCache<P>::UploadImageContents(Image& image, StagingBuffer& staging)
gpu_memory->ReadBlock(gpu_addr, mapped_span.data(), mapped_span.size_bytes(),
VideoCommon::CacheType::NoTextureCache);
const auto uploads = FullUploadSwizzles(image.info);
runtime.AccelerateImageUpload(image, staging, FixSmallVectorADL(uploads), 0, 0);
runtime.AccelerateImageUpload(image, staging, uploads, 0, 0);
return;
}
@@ -1168,11 +1168,11 @@ void TextureCache<P>::UploadImageContents(Image& image, StagingBuffer& staging)
*gpu_memory, gpu_addr, image.guest_size_bytes, &swizzle_data_buffer);
if (True(image.flags & ImageFlagBits::Converted)) {
unswizzle_data_buffer.resize_destructive(image.unswizzled_size_bytes);
auto copies = FixSmallVectorADL(UnswizzleImage(*gpu_memory, gpu_addr, image.info, swizzle_data, unswizzle_data_buffer));
auto copies = UnswizzleImage(*gpu_memory, gpu_addr, image.info, swizzle_data, unswizzle_data_buffer);
ConvertImage(unswizzle_data_buffer, image.info, mapped_span, copies);
image.UploadMemory(staging, copies);
} else {
const auto copies = FixSmallVectorADL(UnswizzleImage(*gpu_memory, gpu_addr, image.info, swizzle_data, mapped_span));
const auto copies = UnswizzleImage(*gpu_memory, gpu_addr, image.info, swizzle_data, mapped_span);
image.UploadMemory(staging, copies);
}
}
@@ -1401,7 +1401,7 @@ void TextureCache<P>::TickAsyncDecode() {
auto staging = runtime.UploadStagingBuffer(MapSizeBytes(image));
std::memcpy(staging.mapped_span.data(), async_decode->decoded_data.data(),
async_decode->decoded_data.size());
image.UploadMemory(staging, FixSmallVectorADL(async_decode->copies));
image.UploadMemory(staging, async_decode->copies);
image.flags &= ~ImageFlagBits::IsDecoding;
has_uploads = true;
i = async_decodes.erase(i);
@@ -1469,7 +1469,7 @@ void TextureCache<P>::TickAsyncUnswizzle() {
if (z_count > 0) {
const auto uploads = FullUploadSwizzles(task.info);
runtime.AccelerateImageUpload(image, task.staging_buffer, FixSmallVectorADL(uploads), z_start, z_count);
runtime.AccelerateImageUpload(image, task.staging_buffer, uploads, z_start, z_count);
task.last_submitted_offset += (static_cast<size_t>(z_count) * task.bytes_per_slice);
}
}
@@ -1730,9 +1730,9 @@ ImageId TextureCache<P>::JoinImages(const ImageInfo& info, GPUVAddr gpu_addr, DA
const u32 down_shift = can_rescale ? resolution.down_shift : 0;
auto copies = MakeShrinkImageCopies(new_info, overlap.info, base, up_scale, down_shift);
if (overlap.info.num_samples != new_image.info.num_samples) {
runtime.CopyImageMSAA(new_image, overlap, FixSmallVectorADL(copies));
runtime.CopyImageMSAA(new_image, overlap, copies);
} else {
runtime.CopyImage(new_image, overlap, FixSmallVectorADL(copies));
runtime.CopyImage(new_image, overlap, copies);
}
new_image.modification_tick = overlap.modification_tick;
}
+1 -22
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@@ -1,4 +1,4 @@
// SPDX-FileCopyrightText: Copyright 2025 Eden Emulator Project
// SPDX-FileCopyrightText: Copyright 2026 Eden Emulator Project
// SPDX-License-Identifier: GPL-3.0-or-later
// SPDX-FileCopyrightText: Copyright 2020 yuzu Emulator Project
@@ -122,25 +122,4 @@ void DeduceBlitImages(ImageInfo& dst_info, ImageInfo& src_info, const ImageBase*
[[nodiscard]] u32 MapSizeBytes(const ImageBase& image);
// TODO: Remove once Debian STABLE no longer has such outdated boost
// This is a gcc bug where ADL lookup fails for range niebloids of std::span<T>
// for any given type of the static_vector/small_vector, etc which makes a whole mess
// for anything using std::span<T> so we just do this terrible hack on older versions of
// GCC12 because people actually still use stable debian so... yeah
// One may say: "This is bad for performance" - to which I say, using GCC 12 you already know
// what kind of bs you will be dealing with anyways.
template<typename T, size_t N>
#if BOOST_VERSION >= 108100 || __GNUC__ > 12
[[nodiscard]] boost::container::small_vector<T, N> FixSmallVectorADL(const boost::container::small_vector<T, N>& v) {
return v;
}
#else
[[nodiscard]] std::vector<T> FixSmallVectorADL(const boost::container::small_vector<T, N>& v) {
std::vector<T> u;
for (auto const& e : v)
u.push_back(e);
return u;
}
#endif
} // namespace VideoCommon