diff options
Diffstat (limited to 'src')
| -rw-r--r-- | src/video_core/textures/decoders.cpp | 117 |
1 files changed, 66 insertions, 51 deletions
diff --git a/src/video_core/textures/decoders.cpp b/src/video_core/textures/decoders.cpp index 20ba6d4f6..3d5476e5d 100644 --- a/src/video_core/textures/decoders.cpp +++ b/src/video_core/textures/decoders.cpp | |||
| @@ -13,47 +13,20 @@ | |||
| 13 | namespace Tegra::Texture { | 13 | namespace Tegra::Texture { |
| 14 | 14 | ||
| 15 | /** | 15 | /** |
| 16 | * This table represents the internal swizzle of a gob, | ||
| 17 | * in format 16 bytes x 2 sector packing. | ||
| 16 | * Calculates the offset of an (x, y) position within a swizzled texture. | 18 | * Calculates the offset of an (x, y) position within a swizzled texture. |
| 17 | * Taken from the Tegra X1 TRM. | 19 | * Taken from the Tegra X1 Technical Reference Manual. pages 1187-1188 |
| 18 | */ | 20 | */ |
| 19 | static u32 GetSwizzleOffset(u32 x, u32 y, u32 image_width, u32 bytes_per_pixel, u32 block_height) { | 21 | template <std::size_t N, std::size_t M, u32 Align> |
| 20 | // Round up to the next gob | ||
| 21 | const u32 image_width_in_gobs{(image_width * bytes_per_pixel + 63) / 64}; | ||
| 22 | |||
| 23 | u32 GOB_address = 0 + (y / (8 * block_height)) * 512 * block_height * image_width_in_gobs + | ||
| 24 | (x * bytes_per_pixel / 64) * 512 * block_height + | ||
| 25 | (y % (8 * block_height) / 8) * 512; | ||
| 26 | x *= bytes_per_pixel; | ||
| 27 | u32 address = GOB_address + ((x % 64) / 32) * 256 + ((y % 8) / 2) * 64 + ((x % 32) / 16) * 32 + | ||
| 28 | (y % 2) * 16 + (x % 16); | ||
| 29 | |||
| 30 | return address; | ||
| 31 | } | ||
| 32 | |||
| 33 | void CopySwizzledData(u32 width, u32 height, u32 bytes_per_pixel, u32 out_bytes_per_pixel, | ||
| 34 | u8* swizzled_data, u8* unswizzled_data, bool unswizzle, u32 block_height) { | ||
| 35 | u8* data_ptrs[2]; | ||
| 36 | for (unsigned y = 0; y < height; ++y) { | ||
| 37 | for (unsigned x = 0; x < width; ++x) { | ||
| 38 | u32 swizzle_offset = GetSwizzleOffset(x, y, width, bytes_per_pixel, block_height); | ||
| 39 | u32 pixel_index = (x + y * width) * out_bytes_per_pixel; | ||
| 40 | |||
| 41 | data_ptrs[unswizzle] = swizzled_data + swizzle_offset; | ||
| 42 | data_ptrs[!unswizzle] = &unswizzled_data[pixel_index]; | ||
| 43 | |||
| 44 | std::memcpy(data_ptrs[0], data_ptrs[1], bytes_per_pixel); | ||
| 45 | } | ||
| 46 | } | ||
| 47 | } | ||
| 48 | |||
| 49 | template <std::size_t N, std::size_t M> | ||
| 50 | struct alignas(64) SwizzleTable { | 22 | struct alignas(64) SwizzleTable { |
| 23 | static_assert(M * Align == 64, "Swizzle Table does not align to GOB"); | ||
| 51 | constexpr SwizzleTable() { | 24 | constexpr SwizzleTable() { |
| 52 | for (u32 y = 0; y < N; ++y) { | 25 | for (u32 y = 0; y < N; ++y) { |
| 53 | for (u32 x = 0; x < M; ++x) { | 26 | for (u32 x = 0; x < M; ++x) { |
| 54 | const u32 x2 = x * 16; | 27 | const u32 x2 = x * Align; |
| 55 | values[y][x] = static_cast<u16>(((x2 % 64) / 32) * 256 + ((y % 8) / 2) * 64 + | 28 | values[y][x] = static_cast<u16>(((x2 % 64) / 32) * 256 + ((y % 8) / 2) * 64 + |
| 56 | ((x2 % 32) / 16) * 32 + (y % 2) * 16); | 29 | ((x2 % 32) / 16) * 32 + (y % 2) * 16 + (x2 % 16)); |
| 57 | } | 30 | } |
| 58 | } | 31 | } |
| 59 | } | 32 | } |
| @@ -63,24 +36,60 @@ struct alignas(64) SwizzleTable { | |||
| 63 | std::array<std::array<u16, M>, N> values{}; | 36 | std::array<std::array<u16, M>, N> values{}; |
| 64 | }; | 37 | }; |
| 65 | 38 | ||
| 66 | constexpr auto swizzle_table = SwizzleTable<8, 4>(); | 39 | constexpr auto legacy_swizzle_table = SwizzleTable<8, 64, 1>(); |
| 40 | constexpr auto fast_swizzle_table = SwizzleTable<8, 4, 16>(); | ||
| 67 | 41 | ||
| 68 | void FastSwizzleData(u32 width, u32 height, u32 bytes_per_pixel, u8* swizzled_data, | 42 | static void LegacySwizzleData(u32 width, u32 height, u32 bytes_per_pixel, u32 out_bytes_per_pixel, |
| 69 | u8* unswizzled_data, bool unswizzle, u32 block_height) { | 43 | u8* swizzled_data, u8* unswizzled_data, bool unswizzle, |
| 44 | u32 block_height) { | ||
| 45 | std::array<u8*, 2> data_ptrs; | ||
| 46 | const std::size_t stride = width * bytes_per_pixel; | ||
| 47 | const std::size_t gobs_in_x = 64; | ||
| 48 | const std::size_t gobs_in_y = 8; | ||
| 49 | const std::size_t gobs_size = gobs_in_x * gobs_in_y; | ||
| 50 | const std::size_t image_width_in_gobs{(stride + gobs_in_x - 1) / gobs_in_x}; | ||
| 51 | for (std::size_t y = 0; y < height; ++y) { | ||
| 52 | const std::size_t gob_y_address = | ||
| 53 | (y / (gobs_in_y * block_height)) * gobs_size * block_height * image_width_in_gobs + | ||
| 54 | (y % (gobs_in_y * block_height) / gobs_in_y) * gobs_size; | ||
| 55 | const auto& table = legacy_swizzle_table[y % gobs_in_y]; | ||
| 56 | for (std::size_t x = 0; x < width; ++x) { | ||
| 57 | const std::size_t gob_address = | ||
| 58 | gob_y_address + (x * bytes_per_pixel / gobs_in_x) * gobs_size * block_height; | ||
| 59 | const std::size_t x2 = x * bytes_per_pixel; | ||
| 60 | const std::size_t swizzle_offset = gob_address + table[x2 % gobs_in_x]; | ||
| 61 | const std::size_t pixel_index = (x + y * width) * out_bytes_per_pixel; | ||
| 62 | |||
| 63 | data_ptrs[unswizzle] = swizzled_data + swizzle_offset; | ||
| 64 | data_ptrs[!unswizzle] = unswizzled_data + pixel_index; | ||
| 65 | |||
| 66 | std::memcpy(data_ptrs[0], data_ptrs[1], bytes_per_pixel); | ||
| 67 | } | ||
| 68 | } | ||
| 69 | } | ||
| 70 | |||
| 71 | static void FastSwizzleData(u32 width, u32 height, u32 bytes_per_pixel, u32 out_bytes_per_pixel, | ||
| 72 | u8* swizzled_data, u8* unswizzled_data, bool unswizzle, | ||
| 73 | u32 block_height) { | ||
| 70 | std::array<u8*, 2> data_ptrs; | 74 | std::array<u8*, 2> data_ptrs; |
| 71 | const std::size_t stride{width * bytes_per_pixel}; | 75 | const std::size_t stride{width * bytes_per_pixel}; |
| 72 | const std::size_t image_width_in_gobs{(stride + 63) / 64}; | 76 | const std::size_t gobs_in_x = 64; |
| 77 | const std::size_t gobs_in_y = 8; | ||
| 78 | const std::size_t gobs_size = gobs_in_x * gobs_in_y; | ||
| 79 | const std::size_t image_width_in_gobs{(stride + gobs_in_x - 1) / gobs_in_x}; | ||
| 73 | const std::size_t copy_size{16}; | 80 | const std::size_t copy_size{16}; |
| 74 | for (std::size_t y = 0; y < height; ++y) { | 81 | for (std::size_t y = 0; y < height; ++y) { |
| 75 | const std::size_t initial_gob = | 82 | const std::size_t initial_gob = |
| 76 | (y / (8 * block_height)) * 512 * block_height * image_width_in_gobs + | 83 | (y / (gobs_in_y * block_height)) * gobs_size * block_height * image_width_in_gobs + |
| 77 | (y % (8 * block_height) / 8) * 512; | 84 | (y % (gobs_in_y * block_height) / gobs_in_y) * gobs_size; |
| 78 | const std::size_t pixel_base{y * width * bytes_per_pixel}; | 85 | const std::size_t pixel_base{y * width * out_bytes_per_pixel}; |
| 79 | const auto& table = swizzle_table[y % 8]; | 86 | const auto& table = fast_swizzle_table[y % gobs_in_y]; |
| 80 | for (std::size_t xb = 0; xb < stride; xb += copy_size) { | 87 | for (std::size_t xb = 0; xb < stride; xb += copy_size) { |
| 81 | const std::size_t gob_address{initial_gob + (xb / 64) * 512 * block_height}; | 88 | const std::size_t gob_address{initial_gob + |
| 89 | (xb / gobs_in_x) * gobs_size * block_height}; | ||
| 82 | const std::size_t swizzle_offset{gob_address + table[(xb / 16) % 4]}; | 90 | const std::size_t swizzle_offset{gob_address + table[(xb / 16) % 4]}; |
| 83 | const std::size_t pixel_index{xb + pixel_base}; | 91 | const std::size_t out_x = xb * out_bytes_per_pixel / bytes_per_pixel; |
| 92 | const std::size_t pixel_index{out_x + pixel_base}; | ||
| 84 | data_ptrs[unswizzle] = swizzled_data + swizzle_offset; | 93 | data_ptrs[unswizzle] = swizzled_data + swizzle_offset; |
| 85 | data_ptrs[!unswizzle] = unswizzled_data + pixel_index; | 94 | data_ptrs[!unswizzle] = unswizzled_data + pixel_index; |
| 86 | std::memcpy(data_ptrs[0], data_ptrs[1], copy_size); | 95 | std::memcpy(data_ptrs[0], data_ptrs[1], copy_size); |
| @@ -88,6 +97,17 @@ void FastSwizzleData(u32 width, u32 height, u32 bytes_per_pixel, u8* swizzled_da | |||
| 88 | } | 97 | } |
| 89 | } | 98 | } |
| 90 | 99 | ||
| 100 | void CopySwizzledData(u32 width, u32 height, u32 bytes_per_pixel, u32 out_bytes_per_pixel, | ||
| 101 | u8* swizzled_data, u8* unswizzled_data, bool unswizzle, u32 block_height) { | ||
| 102 | if (bytes_per_pixel % 3 != 0 && (width * bytes_per_pixel) % 16 == 0) { | ||
| 103 | FastSwizzleData(width, height, bytes_per_pixel, out_bytes_per_pixel, swizzled_data, | ||
| 104 | unswizzled_data, unswizzle, block_height); | ||
| 105 | } else { | ||
| 106 | LegacySwizzleData(width, height, bytes_per_pixel, out_bytes_per_pixel, swizzled_data, | ||
| 107 | unswizzled_data, unswizzle, block_height); | ||
| 108 | } | ||
| 109 | } | ||
| 110 | |||
| 91 | u32 BytesPerPixel(TextureFormat format) { | 111 | u32 BytesPerPixel(TextureFormat format) { |
| 92 | switch (format) { | 112 | switch (format) { |
| 93 | case TextureFormat::DXT1: | 113 | case TextureFormat::DXT1: |
| @@ -134,13 +154,8 @@ u32 BytesPerPixel(TextureFormat format) { | |||
| 134 | std::vector<u8> UnswizzleTexture(VAddr address, u32 tile_size, u32 bytes_per_pixel, u32 width, | 154 | std::vector<u8> UnswizzleTexture(VAddr address, u32 tile_size, u32 bytes_per_pixel, u32 width, |
| 135 | u32 height, u32 block_height) { | 155 | u32 height, u32 block_height) { |
| 136 | std::vector<u8> unswizzled_data(width * height * bytes_per_pixel); | 156 | std::vector<u8> unswizzled_data(width * height * bytes_per_pixel); |
| 137 | if (bytes_per_pixel % 3 != 0 && (width * bytes_per_pixel) % 16 == 0) { | 157 | CopySwizzledData(width / tile_size, height / tile_size, bytes_per_pixel, bytes_per_pixel, |
| 138 | FastSwizzleData(width / tile_size, height / tile_size, bytes_per_pixel, | 158 | Memory::GetPointer(address), unswizzled_data.data(), true, block_height); |
| 139 | Memory::GetPointer(address), unswizzled_data.data(), true, block_height); | ||
| 140 | } else { | ||
| 141 | CopySwizzledData(width / tile_size, height / tile_size, bytes_per_pixel, bytes_per_pixel, | ||
| 142 | Memory::GetPointer(address), unswizzled_data.data(), true, block_height); | ||
| 143 | } | ||
| 144 | return unswizzled_data; | 159 | return unswizzled_data; |
| 145 | } | 160 | } |
| 146 | 161 | ||