texture.h 9.0 KB

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  1. // Copyright 2018 yuzu Emulator Project
  2. // Licensed under GPLv2 or any later version
  3. // Refer to the license.txt file included.
  4. #pragma once
  5. #include <array>
  6. #include "common/assert.h"
  7. #include "common/bit_field.h"
  8. #include "common/common_types.h"
  9. namespace Tegra::Texture {
  10. enum class TextureFormat : u32 {
  11. R32_G32_B32_A32 = 0x01,
  12. R32_G32_B32 = 0x02,
  13. R16_G16_B16_A16 = 0x03,
  14. R32_G32 = 0x04,
  15. R32_B24G8 = 0x05,
  16. ETC2_RGB = 0x06,
  17. X8B8G8R8 = 0x07,
  18. A8R8G8B8 = 0x08,
  19. A2B10G10R10 = 0x09,
  20. ETC2_RGB_PTA = 0x0a,
  21. ETC2_RGBA = 0x0b,
  22. R16_G16 = 0x0c,
  23. G8R24 = 0x0d,
  24. G24R8 = 0x0e,
  25. R32 = 0x0f,
  26. BC6H_SF16 = 0x10,
  27. BC6H_UF16 = 0x11,
  28. A4B4G4R4 = 0x12,
  29. A5B5G5R1 = 0x13,
  30. A1B5G5R5 = 0x14,
  31. B5G6R5 = 0x15,
  32. B6G5R5 = 0x16,
  33. BC7U = 0x17,
  34. G8R8 = 0x18,
  35. EAC = 0x19,
  36. EACX2 = 0x1a,
  37. R16 = 0x1b,
  38. Y8_VIDEO = 0x1c,
  39. R8 = 0x1d,
  40. G4R4 = 0x1e,
  41. R1 = 0x1f,
  42. E5B9G9R9_SHAREDEXP = 0x20,
  43. BF10GF11RF11 = 0x21,
  44. G8B8G8R8 = 0x22,
  45. B8G8R8G8 = 0x23,
  46. DXT1 = 0x24,
  47. DXT23 = 0x25,
  48. DXT45 = 0x26,
  49. DXN1 = 0x27,
  50. DXN2 = 0x28,
  51. S8Z24 = 0x29,
  52. X8Z24 = 0x2a,
  53. Z24S8 = 0x2b,
  54. X4V4Z24__COV4R4V = 0x2c,
  55. X4V4Z24__COV8R8V = 0x2d,
  56. V8Z24__COV4R12V = 0x2e,
  57. ZF32 = 0x2f,
  58. ZF32_X24S8 = 0x30,
  59. X8Z24_X20V4S8__COV4R4V = 0x31,
  60. X8Z24_X20V4S8__COV8R8V = 0x32,
  61. ZF32_X20V4X8__COV4R4V = 0x33,
  62. ZF32_X20V4X8__COV8R8V = 0x34,
  63. ZF32_X20V4S8__COV4R4V = 0x35,
  64. ZF32_X20V4S8__COV8R8V = 0x36,
  65. X8Z24_X16V8S8__COV4R12V = 0x37,
  66. ZF32_X16V8X8__COV4R12V = 0x38,
  67. ZF32_X16V8S8__COV4R12V = 0x39,
  68. Z16 = 0x3a,
  69. V8Z24__COV8R24V = 0x3b,
  70. X8Z24_X16V8S8__COV8R24V = 0x3c,
  71. ZF32_X16V8X8__COV8R24V = 0x3d,
  72. ZF32_X16V8S8__COV8R24V = 0x3e,
  73. ASTC_2D_4X4 = 0x40,
  74. ASTC_2D_5X5 = 0x41,
  75. ASTC_2D_6X6 = 0x42,
  76. ASTC_2D_8X8 = 0x44,
  77. ASTC_2D_10X10 = 0x45,
  78. ASTC_2D_12X12 = 0x46,
  79. ASTC_2D_5X4 = 0x50,
  80. ASTC_2D_6X5 = 0x51,
  81. ASTC_2D_8X6 = 0x52,
  82. ASTC_2D_10X8 = 0x53,
  83. ASTC_2D_12X10 = 0x54,
  84. ASTC_2D_8X5 = 0x55,
  85. ASTC_2D_10X5 = 0x56,
  86. ASTC_2D_10X6 = 0x57,
  87. };
  88. enum class TextureType : u32 {
  89. Texture1D = 0,
  90. Texture2D = 1,
  91. Texture3D = 2,
  92. TextureCubemap = 3,
  93. Texture1DArray = 4,
  94. Texture2DArray = 5,
  95. Texture1DBuffer = 6,
  96. Texture2DNoMipmap = 7,
  97. TextureCubeArray = 8,
  98. };
  99. enum class TICHeaderVersion : u32 {
  100. OneDBuffer = 0,
  101. PitchColorKey = 1,
  102. Pitch = 2,
  103. BlockLinear = 3,
  104. BlockLinearColorKey = 4,
  105. };
  106. enum class ComponentType : u32 {
  107. SNORM = 1,
  108. UNORM = 2,
  109. SINT = 3,
  110. UINT = 4,
  111. SNORM_FORCE_FP16 = 5,
  112. UNORM_FORCE_FP16 = 6,
  113. FLOAT = 7
  114. };
  115. enum class SwizzleSource : u32 {
  116. Zero = 0,
  117. R = 2,
  118. G = 3,
  119. B = 4,
  120. A = 5,
  121. OneInt = 6,
  122. OneFloat = 7,
  123. };
  124. union TextureHandle {
  125. u32 raw;
  126. BitField<0, 20, u32> tic_id;
  127. BitField<20, 12, u32> tsc_id;
  128. };
  129. static_assert(sizeof(TextureHandle) == 4, "TextureHandle has wrong size");
  130. struct TICEntry {
  131. static constexpr u32 DefaultBlockHeight = 16;
  132. static constexpr u32 DefaultBlockDepth = 1;
  133. union {
  134. u32 raw;
  135. BitField<0, 7, TextureFormat> format;
  136. BitField<7, 3, ComponentType> r_type;
  137. BitField<10, 3, ComponentType> g_type;
  138. BitField<13, 3, ComponentType> b_type;
  139. BitField<16, 3, ComponentType> a_type;
  140. BitField<19, 3, SwizzleSource> x_source;
  141. BitField<22, 3, SwizzleSource> y_source;
  142. BitField<25, 3, SwizzleSource> z_source;
  143. BitField<28, 3, SwizzleSource> w_source;
  144. };
  145. u32 address_low;
  146. union {
  147. BitField<0, 16, u32> address_high;
  148. BitField<21, 3, TICHeaderVersion> header_version;
  149. };
  150. union {
  151. BitField<0, 3, u32> block_width;
  152. BitField<3, 3, u32> block_height;
  153. BitField<6, 3, u32> block_depth;
  154. BitField<10, 3, u32> tile_width_spacing;
  155. // High 16 bits of the pitch value
  156. BitField<0, 16, u32> pitch_high;
  157. BitField<26, 1, u32> use_header_opt_control;
  158. BitField<27, 1, u32> depth_texture;
  159. BitField<28, 4, u32> max_mip_level;
  160. BitField<0, 16, u32> buffer_high_width_minus_one;
  161. };
  162. union {
  163. BitField<0, 16, u32> width_minus_1;
  164. BitField<22, 1, u32> srgb_conversion;
  165. BitField<23, 4, TextureType> texture_type;
  166. BitField<29, 3, u32> border_size;
  167. BitField<0, 16, u32> buffer_low_width_minus_one;
  168. };
  169. union {
  170. BitField<0, 16, u32> height_minus_1;
  171. BitField<16, 14, u32> depth_minus_1;
  172. };
  173. union {
  174. BitField<6, 13, u32> mip_lod_bias;
  175. BitField<27, 3, u32> max_anisotropy;
  176. };
  177. union {
  178. BitField<0, 4, u32> res_min_mip_level;
  179. BitField<4, 4, u32> res_max_mip_level;
  180. BitField<12, 12, u32> min_lod_clamp;
  181. };
  182. GPUVAddr Address() const {
  183. return static_cast<GPUVAddr>((static_cast<GPUVAddr>(address_high) << 32) | address_low);
  184. }
  185. u32 Pitch() const {
  186. ASSERT(header_version == TICHeaderVersion::Pitch ||
  187. header_version == TICHeaderVersion::PitchColorKey);
  188. // The pitch value is 21 bits, and is 32B aligned.
  189. return pitch_high << 5;
  190. }
  191. u32 Width() const {
  192. if (header_version != TICHeaderVersion::OneDBuffer) {
  193. return width_minus_1 + 1;
  194. }
  195. return ((buffer_high_width_minus_one << 16) | buffer_low_width_minus_one) + 1;
  196. }
  197. u32 Height() const {
  198. return height_minus_1 + 1;
  199. }
  200. u32 Depth() const {
  201. return depth_minus_1 + 1;
  202. }
  203. u32 BlockWidth() const {
  204. ASSERT(IsTiled());
  205. return block_width;
  206. }
  207. u32 BlockHeight() const {
  208. ASSERT(IsTiled());
  209. return block_height;
  210. }
  211. u32 BlockDepth() const {
  212. ASSERT(IsTiled());
  213. return block_depth;
  214. }
  215. bool IsTiled() const {
  216. return header_version == TICHeaderVersion::BlockLinear ||
  217. header_version == TICHeaderVersion::BlockLinearColorKey;
  218. }
  219. bool IsLineal() const {
  220. return header_version == TICHeaderVersion::Pitch ||
  221. header_version == TICHeaderVersion::PitchColorKey;
  222. }
  223. bool IsBuffer() const {
  224. return header_version == TICHeaderVersion::OneDBuffer;
  225. }
  226. bool IsSrgbConversionEnabled() const {
  227. return srgb_conversion != 0;
  228. }
  229. };
  230. static_assert(sizeof(TICEntry) == 0x20, "TICEntry has wrong size");
  231. enum class WrapMode : u32 {
  232. Wrap = 0,
  233. Mirror = 1,
  234. ClampToEdge = 2,
  235. Border = 3,
  236. Clamp = 4,
  237. MirrorOnceClampToEdge = 5,
  238. MirrorOnceBorder = 6,
  239. MirrorOnceClampOGL = 7,
  240. };
  241. enum class DepthCompareFunc : u32 {
  242. Never = 0,
  243. Less = 1,
  244. Equal = 2,
  245. LessEqual = 3,
  246. Greater = 4,
  247. NotEqual = 5,
  248. GreaterEqual = 6,
  249. Always = 7,
  250. };
  251. enum class TextureFilter : u32 {
  252. Nearest = 1,
  253. Linear = 2,
  254. };
  255. enum class TextureMipmapFilter : u32 {
  256. None = 1,
  257. Nearest = 2,
  258. Linear = 3,
  259. };
  260. struct TSCEntry {
  261. union {
  262. struct {
  263. union {
  264. BitField<0, 3, WrapMode> wrap_u;
  265. BitField<3, 3, WrapMode> wrap_v;
  266. BitField<6, 3, WrapMode> wrap_p;
  267. BitField<9, 1, u32> depth_compare_enabled;
  268. BitField<10, 3, DepthCompareFunc> depth_compare_func;
  269. BitField<13, 1, u32> srgb_conversion;
  270. BitField<20, 3, u32> max_anisotropy;
  271. };
  272. union {
  273. BitField<0, 2, TextureFilter> mag_filter;
  274. BitField<4, 2, TextureFilter> min_filter;
  275. BitField<6, 2, TextureMipmapFilter> mipmap_filter;
  276. BitField<9, 1, u32> cubemap_interface_filtering;
  277. BitField<12, 13, u32> mip_lod_bias;
  278. };
  279. union {
  280. BitField<0, 12, u32> min_lod_clamp;
  281. BitField<12, 12, u32> max_lod_clamp;
  282. BitField<24, 8, u32> srgb_border_color_r;
  283. };
  284. union {
  285. BitField<12, 8, u32> srgb_border_color_g;
  286. BitField<20, 8, u32> srgb_border_color_b;
  287. };
  288. std::array<f32, 4> border_color;
  289. };
  290. std::array<u8, 0x20> raw;
  291. };
  292. float GetMaxAnisotropy() const {
  293. return static_cast<float>(1U << max_anisotropy);
  294. }
  295. float GetMinLod() const {
  296. return static_cast<float>(min_lod_clamp) / 256.0f;
  297. }
  298. float GetMaxLod() const {
  299. return static_cast<float>(max_lod_clamp) / 256.0f;
  300. }
  301. float GetLodBias() const {
  302. // Sign extend the 13-bit value.
  303. constexpr u32 mask = 1U << (13 - 1);
  304. return static_cast<s32>((mip_lod_bias ^ mask) - mask) / 256.0f;
  305. }
  306. std::array<float, 4> GetBorderColor() const {
  307. if (srgb_conversion) {
  308. return {srgb_border_color_r / 255.0f, srgb_border_color_g / 255.0f,
  309. srgb_border_color_b / 255.0f, border_color[3]};
  310. }
  311. return border_color;
  312. }
  313. };
  314. static_assert(sizeof(TSCEntry) == 0x20, "TSCEntry has wrong size");
  315. struct FullTextureInfo {
  316. TICEntry tic;
  317. TSCEntry tsc;
  318. };
  319. /// Returns the number of bytes per pixel of the input texture format.
  320. u32 BytesPerPixel(TextureFormat format);
  321. } // namespace Tegra::Texture