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https://git.eden-emu.dev/eden-emu/eden.git
synced 2026-08-14 21:04:41 +00:00
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1 Commits
| Author | SHA1 | Date | |
|---|---|---|---|
| 62c4ab026d |
@@ -77,14 +77,8 @@ uvec4 local_buff;
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uvec4 color_endpoint_data;
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int color_bitsread = 0;
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// Global "vector" to be pushed into when decoding
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// At most will require BLOCK_WIDTH x BLOCK_HEIGHT in single plane mode
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// At most will require BLOCK_WIDTH x BLOCK_HEIGHT x 2 in dual plane mode
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// So the maximum would be 144 (12 x 12) elements, x 2 for two planes
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#define DIVCEIL(number, divisor) (number + divisor - 1) / divisor
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#define ARRAY_NUM_ELEMENTS 144
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#define VECTOR_ARRAY_SIZE DIVCEIL(ARRAY_NUM_ELEMENTS * 2, 4)
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uint result_vector[ARRAY_NUM_ELEMENTS * 2];
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#define MAX_WEIGHT_VALUES 64
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uint result_vector[MAX_WEIGHT_VALUES];
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int result_index = 0;
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uint result_vector_max_index;
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@@ -492,7 +486,7 @@ void DecodeColorValues(uvec4 modes, uint num_partitions, uint color_data_bits, o
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A = ReplicateBitTo9((bitval & 1));
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switch (encoding) {
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case JUST_BITS:
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color_values[++out_index] = FastReplicateTo8(bitval, bitlen);
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color_values[out_index++] = FastReplicateTo8(bitval, bitlen);
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break;
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case TRIT: {
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D = QuintTritValue(val);
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@@ -571,7 +565,7 @@ void DecodeColorValues(uvec4 modes, uint num_partitions, uint color_data_bits, o
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uint T = (D * C) + B;
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T ^= A;
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T = (A & 0x80) | (T >> 2);
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color_values[++out_index] = T;
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color_values[out_index++] = T;
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}
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}
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}
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@@ -753,12 +747,12 @@ void ComputeEndpoints(out uvec4 ep1, out uvec4 ep2, uint color_endpoint_mode, ui
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#define READ_UINT_VALUES(N) \
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uvec4 V[2]; \
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for (uint i = 0; i < N; i++) { \
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V[i / 4][i % 4] = color_values[++colvals_index]; \
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V[i / 4][i % 4] = color_values[colvals_index++]; \
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}
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#define READ_INT_VALUES(N) \
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ivec4 V[2]; \
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for (uint i = 0; i < N; i++) { \
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V[i / 4][i % 4] = int(color_values[++colvals_index]); \
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V[i / 4][i % 4] = int(color_values[colvals_index++]); \
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}
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switch (color_endpoint_mode) {
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@@ -1225,6 +1219,10 @@ void DecompressBlock(ivec3 coord) {
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FillError(coord);
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return;
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}
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if (GetNumWeightValues(size_params, dual_plane) > MAX_WEIGHT_VALUES) {
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FillError(coord);
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return;
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}
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uint partition_index = 1;
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uvec4 color_endpoint_mode = uvec4(0);
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uint ced_pointer = 0;
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@@ -1239,6 +1237,10 @@ void DecompressBlock(ivec3 coord) {
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const uint base_mode = base_cem & 3;
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const uint max_weight = DecodeMaxWeight(mode);
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const uint weight_bits = GetPackedBitSize(size_params, dual_plane, max_weight);
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if (weight_bits < 24 || weight_bits > 96) {
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FillError(coord);
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return;
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}
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uint remaining_bits = 128 - weight_bits - total_bitsread;
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uint extra_cem_bits = 0;
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if (base_mode > 0) {
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@@ -1253,6 +1255,7 @@ void DecompressBlock(ivec3 coord) {
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extra_cem_bits += 8;
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break;
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default:
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FillError(coord);
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return;
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}
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}
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@@ -1262,6 +1265,7 @@ void DecompressBlock(ivec3 coord) {
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if (remaining_bits > 128) {
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// Bad data, more remaining bits than 4 bytes
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// return early
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FillError(coord);
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return;
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}
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// Read color data...
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@@ -1384,11 +1388,7 @@ void DecompressBlock(ivec3 coord) {
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p = Cf / 65535.0f;
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}
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#ifdef VULKAN
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imageStore(dest_image, coord + ivec3(i, j, 0), p.gbar);
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#else
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imageStore(dest_image, coord + ivec3(i, j, 0), clamp(p, 0.0f, 1.0f).gbar);
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#endif
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}
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}
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}
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@@ -144,11 +144,6 @@ constexpr VkBorderColor ConvertBorderColor(const std::array<float, 4>& color) {
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info.size.depth == 1;
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}
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[[nodiscard]] bool WillUseWidenedAstcFormat(const Device& device, const ImageInfo& info) {
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return WillUseAcceleratedAstcDecode(device, info) &&
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!VideoCore::Surface::IsPixelFormatSRGB(info.format);
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}
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[[nodiscard]] VkImageCreateInfo MakeImageCreateInfo(const Device& device, const ImageInfo& info,
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std::optional<VkFormat> format_override = {}) {
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auto format_info =
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@@ -269,6 +264,10 @@ constexpr VkBorderColor ConvertBorderColor(const std::array<float, 4>& color) {
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}
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}
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[[nodiscard]] bool IsLdrAstcFormat(VkFormat format) {
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return format >= VK_FORMAT_ASTC_4x4_UNORM_BLOCK && format <= VK_FORMAT_ASTC_12x12_SRGB_BLOCK;
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}
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[[nodiscard]] VkImageAspectFlags ImageViewAspectMask(const VideoCommon::ImageViewInfo& info) {
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if (info.IsRenderTarget()) {
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return ImageAspectMask(info.format);
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@@ -1780,12 +1779,7 @@ Image::Image(TextureCacheRuntime& runtime_, const ImageInfo& info_, GPUVAddr gpu
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: VideoCommon::ImageBase(info_, gpu_addr_, cpu_addr_), scheduler{&runtime_.scheduler},
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runtime{&runtime_},
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original_image(MakeImage(runtime_.device, runtime_.memory_allocator, info,
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WillUseWidenedAstcFormat(runtime_.device, info)
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? std::span<const VkFormat>{}
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: runtime->ViewFormats(info.format),
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WillUseWidenedAstcFormat(runtime_.device, info)
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? std::make_optional(VK_FORMAT_R32G32B32A32_SFLOAT)
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: std::nullopt)),
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runtime->ViewFormats(info.format))),
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aspect_mask(ImageAspectMask(info.format)) {
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if (IsPixelFormatASTC(info.format) && !runtime->device.IsOptimalAstcSupported()) {
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switch (Settings::values.accelerate_astc.GetValue()) {
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@@ -1812,13 +1806,9 @@ Image::Image(TextureCacheRuntime& runtime_, const ImageInfo& info_, GPUVAddr gpu
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}
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current_image = &Image::original_image;
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storage_image_views.resize(info.resources.levels);
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if (IsPixelFormatASTC(info.format) && !runtime->device.IsOptimalAstcSupported() &&
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Settings::values.astc_recompression.GetValue() ==
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Settings::AstcRecompression::Uncompressed) {
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if (WillUseAcceleratedAstcDecode(runtime->device, info)) {
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const auto& device = runtime->device.GetLogical();
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const VkFormat storage_format = WillUseWidenedAstcFormat(runtime->device, info)
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? VK_FORMAT_R32G32B32A32_SFLOAT
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: VK_FORMAT_A8B8G8R8_UNORM_PACK32;
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const VkFormat storage_format = VK_FORMAT_A8B8G8R8_UNORM_PACK32;
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for (s32 level = 0; level < info.resources.levels; ++level) {
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storage_image_views[level] =
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MakeStorageView(device, level, *original_image, storage_format);
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@@ -2204,9 +2194,7 @@ VkImageView Image::StorageImageView(s32 level) noexcept {
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auto format_info =
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MaxwellToVK::SurfaceFormat(runtime->device, FormatType::Optimal, true, info.format);
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if (WillUseAcceleratedAstcDecode(runtime->device, info)) {
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format_info.format = WillUseWidenedAstcFormat(runtime->device, info)
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? VK_FORMAT_R32G32B32A32_SFLOAT
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: VK_FORMAT_A8B8G8R8_UNORM_PACK32;
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format_info.format = VK_FORMAT_A8B8G8R8_UNORM_PACK32;
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}
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view = MakeStorageView(runtime->device.GetLogical(), level, *(this->*current_image),
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format_info.format);
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@@ -2382,11 +2370,7 @@ ImageView::ImageView(TextureCacheRuntime& runtime, const VideoCommon::ImageViewI
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SanitizeDepthStencilSwizzle(swizzle, device->SupportsDepthStencilSwizzleOne());
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}
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}
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uses_widened_astc_format = WillUseWidenedAstcFormat(*device, image.info);
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auto format_info = MaxwellToVK::SurfaceFormat(*device, FormatType::Optimal, true, format);
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if (uses_widened_astc_format) {
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format_info.format = VK_FORMAT_R32G32B32A32_SFLOAT;
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}
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if (device->ApiVersion() >= VK_API_VERSION_1_3) {
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const VkFormatProperties3 properties3 =
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device->GetPhysical().GetFormatProperties3(format_info.format);
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@@ -2404,9 +2388,18 @@ ImageView::ImageView(TextureCacheRuntime& runtime, const VideoCommon::ImageViewI
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.pNext = nullptr,
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.usage = clamped_view_usage,
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};
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const VkImageViewASTCDecodeModeEXT astc_decode_mode{
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.sType = VK_STRUCTURE_TYPE_IMAGE_VIEW_ASTC_DECODE_MODE_EXT,
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.pNext = &image_view_usage,
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.decodeMode = VK_FORMAT_R8G8B8A8_UNORM,
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};
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const void* view_next = &image_view_usage;
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if (device->IsExtAstcDecodeModeSupported() && IsLdrAstcFormat(format_info.format)) {
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view_next = &astc_decode_mode;
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}
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const VkImageViewCreateInfo create_info{
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.sType = VK_STRUCTURE_TYPE_IMAGE_VIEW_CREATE_INFO,
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.pNext = &image_view_usage,
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.pNext = view_next,
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.flags = 0,
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.image = image.Handle(),
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.viewType = VkImageViewType{},
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@@ -2531,9 +2524,6 @@ VkImageView ImageView::StorageView(Shader::TextureType texture_type,
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if (image_format == Shader::ImageFormat::Typeless) {
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if (!typeless_storage_view) {
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auto info = MaxwellToVK::SurfaceFormat(*device, FormatType::Optimal, true, format);
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if (uses_widened_astc_format) {
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info.format = VK_FORMAT_R32G32B32A32_SFLOAT;
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}
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typeless_storage_view = MakeView(info.format, VK_IMAGE_ASPECT_COLOR_BIT, texture_type);
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}
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return *typeless_storage_view;
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@@ -436,7 +436,6 @@ private:
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VkSampleCountFlagBits samples = VK_SAMPLE_COUNT_1_BIT;
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u32 buffer_size = 0;
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bool uses_widened_astc_format = false;
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bool supports_depth_comparison = false;
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};
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@@ -1769,6 +1769,12 @@ static void DecompressBlock(std::span<const u8, 16> inBuf, const u32 blockWidth,
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return;
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}
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if (weightParams.GetNumWeightValues() > 64) {
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assert(false && "Too many weights in the weight grid");
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FillError(outBuf, blockWidth, blockHeight);
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return;
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}
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// Read num partitions
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u32 nPartitions = strm.ReadBits<2>() + 1;
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assert(nPartitions <= 4);
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@@ -1805,6 +1811,11 @@ static void DecompressBlock(std::span<const u8, 16> inBuf, const u32 blockWidth,
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// Remaining bits are color endpoint data...
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u32 nWeightBits = weightParams.GetPackedBitSize();
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if (nWeightBits < 24 || nWeightBits > 96) {
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assert(false && "Invalid weight bit count");
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FillError(outBuf, blockWidth, blockHeight);
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return;
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}
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s32 remainingBits = 128 - nWeightBits - static_cast<int>(strm.GetBitsRead());
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// Consider extra bits prior to texel data...
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@@ -820,14 +820,13 @@ bool Device::ComputeIsOptimalAstcSupported() const {
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if (!features.features.textureCompressionASTC_LDR) {
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return false;
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}
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const auto format_feature_usage{VK_FORMAT_FEATURE_SAMPLED_IMAGE_BIT |
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VK_FORMAT_FEATURE_BLIT_SRC_BIT |
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VK_FORMAT_FEATURE_BLIT_DST_BIT |
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VK_FORMAT_FEATURE_TRANSFER_SRC_BIT |
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VK_FORMAT_FEATURE_TRANSFER_DST_BIT};
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const VkFormatFeatureFlags format_feature_usage{
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VK_FORMAT_FEATURE_SAMPLED_IMAGE_BIT | VK_FORMAT_FEATURE_SAMPLED_IMAGE_FILTER_LINEAR_BIT |
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VK_FORMAT_FEATURE_TRANSFER_SRC_BIT | VK_FORMAT_FEATURE_TRANSFER_DST_BIT};
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for (const auto format : astc_formats) {
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const auto physical_format_properties{physical.GetFormatProperties(format)};
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if ((physical_format_properties.optimalTilingFeatures & format_feature_usage) == 0) {
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if ((physical_format_properties.optimalTilingFeatures & format_feature_usage) !=
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format_feature_usage) {
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return false;
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}
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}
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@@ -72,13 +72,12 @@ VK_DEFINE_HANDLE(VmaAllocator)
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FEATURE(KHR, PipelineExecutableProperties, PIPELINE_EXECUTABLE_PROPERTIES, \
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pipeline_executable_properties) \
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FEATURE(KHR, WorkgroupMemoryExplicitLayout, WORKGROUP_MEMORY_EXPLICIT_LAYOUT, \
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workgroup_memory_explicit_layout) \
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FEATURE(EXT, TextureCompressionASTCHDR, TEXTURE_COMPRESSION_ASTC_HDR, \
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texture_compression_astc_hdr)
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workgroup_memory_explicit_layout)
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// Define miscellaneous extensions which may be used by the implementation here.
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#define FOR_EACH_VK_EXTENSION(EXTENSION) \
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EXTENSION(EXT, ASTC_DECODE_MODE, astc_decode_mode) \
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EXTENSION(EXT, CONDITIONAL_RENDERING, conditional_rendering) \
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EXTENSION(EXT, CONSERVATIVE_RASTERIZATION, conservative_rasterization) \
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EXTENSION(EXT, DEPTH_RANGE_UNRESTRICTED, depth_range_unrestricted) \
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@@ -369,8 +368,7 @@ FN_MAX_LIMIT_LIST
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}
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bool IsOptimalAstcSupported() const {
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return features.features.textureCompressionASTC_LDR &&
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features.texture_compression_astc_hdr.textureCompressionASTC_HDR;
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return is_optimal_astc_supported;
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}
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/// Returns true if BCn is natively supported.
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@@ -816,6 +814,10 @@ FN_MAX_LIMIT_LIST
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return extensions.conditional_rendering;
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}
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bool IsExtAstcDecodeModeSupported() const {
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return extensions.astc_decode_mode;
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}
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bool HasTimelineSemaphore() const;
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/// Returns true if the device supports VK_KHR_synchronization2.
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