emit_spirv_atomic.cpp 23 KB

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  1. // Copyright 2021 yuzu Emulator Project
  2. // Licensed under GPLv2 or any later version
  3. // Refer to the license.txt file included.
  4. #include "shader_recompiler/backend/spirv/emit_spirv.h"
  5. #include "shader_recompiler/backend/spirv/emit_spirv_instructions.h"
  6. #include "shader_recompiler/backend/spirv/spirv_emit_context.h"
  7. namespace Shader::Backend::SPIRV {
  8. namespace {
  9. Id SharedPointer(EmitContext& ctx, Id offset, u32 index_offset = 0) {
  10. const Id shift_id{ctx.Const(2U)};
  11. Id index{ctx.OpShiftRightArithmetic(ctx.U32[1], offset, shift_id)};
  12. if (index_offset > 0) {
  13. index = ctx.OpIAdd(ctx.U32[1], index, ctx.Const(index_offset));
  14. }
  15. return ctx.profile.support_explicit_workgroup_layout
  16. ? ctx.OpAccessChain(ctx.shared_u32, ctx.shared_memory_u32, ctx.u32_zero_value, index)
  17. : ctx.OpAccessChain(ctx.shared_u32, ctx.shared_memory_u32, index);
  18. }
  19. Id StorageIndex(EmitContext& ctx, const IR::Value& offset, size_t element_size) {
  20. if (offset.IsImmediate()) {
  21. const u32 imm_offset{static_cast<u32>(offset.U32() / element_size)};
  22. return ctx.Const(imm_offset);
  23. }
  24. const u32 shift{static_cast<u32>(std::countr_zero(element_size))};
  25. const Id index{ctx.Def(offset)};
  26. if (shift == 0) {
  27. return index;
  28. }
  29. const Id shift_id{ctx.Const(shift)};
  30. return ctx.OpShiftRightLogical(ctx.U32[1], index, shift_id);
  31. }
  32. Id StoragePointer(EmitContext& ctx, const StorageTypeDefinition& type_def,
  33. Id StorageDefinitions::*member_ptr, const IR::Value& binding,
  34. const IR::Value& offset, size_t element_size) {
  35. if (!binding.IsImmediate()) {
  36. throw NotImplementedException("Dynamic storage buffer indexing");
  37. }
  38. const Id ssbo{ctx.ssbos[binding.U32()].*member_ptr};
  39. const Id index{StorageIndex(ctx, offset, element_size)};
  40. return ctx.OpAccessChain(type_def.element, ssbo, ctx.u32_zero_value, index);
  41. }
  42. std::pair<Id, Id> AtomicArgs(EmitContext& ctx) {
  43. const Id scope{ctx.Const(static_cast<u32>(spv::Scope::Device))};
  44. const Id semantics{ctx.u32_zero_value};
  45. return {scope, semantics};
  46. }
  47. Id SharedAtomicU32(EmitContext& ctx, Id offset, Id value,
  48. Id (Sirit::Module::*atomic_func)(Id, Id, Id, Id, Id)) {
  49. const Id pointer{SharedPointer(ctx, offset)};
  50. const auto [scope, semantics]{AtomicArgs(ctx)};
  51. return (ctx.*atomic_func)(ctx.U32[1], pointer, scope, semantics, value);
  52. }
  53. Id StorageAtomicU32(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset, Id value,
  54. Id (Sirit::Module::*atomic_func)(Id, Id, Id, Id, Id)) {
  55. const Id pointer{StoragePointer(ctx, ctx.storage_types.U32, &StorageDefinitions::U32, binding,
  56. offset, sizeof(u32))};
  57. const auto [scope, semantics]{AtomicArgs(ctx)};
  58. return (ctx.*atomic_func)(ctx.U32[1], pointer, scope, semantics, value);
  59. }
  60. Id StorageAtomicU64(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset, Id value,
  61. Id (Sirit::Module::*atomic_func)(Id, Id, Id, Id, Id),
  62. Id (Sirit::Module::*non_atomic_func)(Id, Id, Id)) {
  63. if (ctx.profile.support_int64_atomics) {
  64. const Id pointer{StoragePointer(ctx, ctx.storage_types.U64, &StorageDefinitions::U64,
  65. binding, offset, sizeof(u64))};
  66. const auto [scope, semantics]{AtomicArgs(ctx)};
  67. return (ctx.*atomic_func)(ctx.U64, pointer, scope, semantics, value);
  68. }
  69. LOG_WARNING(Shader_SPIRV, "Int64 atomics not supported, fallback to non-atomic");
  70. const Id pointer{StoragePointer(ctx, ctx.storage_types.U32x2, &StorageDefinitions::U32x2,
  71. binding, offset, sizeof(u32[2]))};
  72. const Id original_value{ctx.OpBitcast(ctx.U64, ctx.OpLoad(ctx.U32[2], pointer))};
  73. const Id result{(ctx.*non_atomic_func)(ctx.U64, value, original_value)};
  74. ctx.OpStore(pointer, ctx.OpBitcast(ctx.U32[2], result));
  75. return original_value;
  76. }
  77. Id StorageAtomicU32x2(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset, Id value,
  78. Id (Sirit::Module::*non_atomic_func)(Id, Id, Id)) {
  79. LOG_WARNING(Shader_SPIRV, "Int64 atomics not supported, fallback to non-atomic");
  80. const Id pointer{StoragePointer(ctx, ctx.storage_types.U32x2, &StorageDefinitions::U32x2,
  81. binding, offset, sizeof(u32[2]))};
  82. const Id original_value{ctx.OpLoad(ctx.U32[2], pointer)};
  83. const Id result{(ctx.*non_atomic_func)(ctx.U32[2], value, original_value)};
  84. ctx.OpStore(pointer, result);
  85. return original_value;
  86. }
  87. } // Anonymous namespace
  88. Id EmitSharedAtomicIAdd32(EmitContext& ctx, Id offset, Id value) {
  89. return SharedAtomicU32(ctx, offset, value, &Sirit::Module::OpAtomicIAdd);
  90. }
  91. Id EmitSharedAtomicSMin32(EmitContext& ctx, Id offset, Id value) {
  92. return SharedAtomicU32(ctx, offset, value, &Sirit::Module::OpAtomicSMin);
  93. }
  94. Id EmitSharedAtomicUMin32(EmitContext& ctx, Id offset, Id value) {
  95. return SharedAtomicU32(ctx, offset, value, &Sirit::Module::OpAtomicUMin);
  96. }
  97. Id EmitSharedAtomicSMax32(EmitContext& ctx, Id offset, Id value) {
  98. return SharedAtomicU32(ctx, offset, value, &Sirit::Module::OpAtomicSMax);
  99. }
  100. Id EmitSharedAtomicUMax32(EmitContext& ctx, Id offset, Id value) {
  101. return SharedAtomicU32(ctx, offset, value, &Sirit::Module::OpAtomicUMax);
  102. }
  103. Id EmitSharedAtomicInc32(EmitContext& ctx, Id offset, Id value) {
  104. const Id shift_id{ctx.Const(2U)};
  105. const Id index{ctx.OpShiftRightArithmetic(ctx.U32[1], offset, shift_id)};
  106. return ctx.OpFunctionCall(ctx.U32[1], ctx.increment_cas_shared, index, value);
  107. }
  108. Id EmitSharedAtomicDec32(EmitContext& ctx, Id offset, Id value) {
  109. const Id shift_id{ctx.Const(2U)};
  110. const Id index{ctx.OpShiftRightArithmetic(ctx.U32[1], offset, shift_id)};
  111. return ctx.OpFunctionCall(ctx.U32[1], ctx.decrement_cas_shared, index, value);
  112. }
  113. Id EmitSharedAtomicAnd32(EmitContext& ctx, Id offset, Id value) {
  114. return SharedAtomicU32(ctx, offset, value, &Sirit::Module::OpAtomicAnd);
  115. }
  116. Id EmitSharedAtomicOr32(EmitContext& ctx, Id offset, Id value) {
  117. return SharedAtomicU32(ctx, offset, value, &Sirit::Module::OpAtomicOr);
  118. }
  119. Id EmitSharedAtomicXor32(EmitContext& ctx, Id offset, Id value) {
  120. return SharedAtomicU32(ctx, offset, value, &Sirit::Module::OpAtomicXor);
  121. }
  122. Id EmitSharedAtomicExchange32(EmitContext& ctx, Id offset, Id value) {
  123. return SharedAtomicU32(ctx, offset, value, &Sirit::Module::OpAtomicExchange);
  124. }
  125. Id EmitSharedAtomicExchange64(EmitContext& ctx, Id offset, Id value) {
  126. if (ctx.profile.support_int64_atomics && ctx.profile.support_explicit_workgroup_layout) {
  127. const Id shift_id{ctx.Const(3U)};
  128. const Id index{ctx.OpShiftRightArithmetic(ctx.U32[1], offset, shift_id)};
  129. const Id pointer{
  130. ctx.OpAccessChain(ctx.shared_u64, ctx.shared_memory_u64, ctx.u32_zero_value, index)};
  131. const auto [scope, semantics]{AtomicArgs(ctx)};
  132. return ctx.OpAtomicExchange(ctx.U64, pointer, scope, semantics, value);
  133. }
  134. LOG_WARNING(Shader_SPIRV, "Int64 atomics not supported, fallback to non-atomic");
  135. const Id pointer_1{SharedPointer(ctx, offset, 0)};
  136. const Id pointer_2{SharedPointer(ctx, offset, 1)};
  137. const Id value_1{ctx.OpLoad(ctx.U32[1], pointer_1)};
  138. const Id value_2{ctx.OpLoad(ctx.U32[1], pointer_2)};
  139. const Id new_vector{ctx.OpBitcast(ctx.U32[2], value)};
  140. ctx.OpStore(pointer_1, ctx.OpCompositeExtract(ctx.U32[1], new_vector, 0U));
  141. ctx.OpStore(pointer_2, ctx.OpCompositeExtract(ctx.U32[1], new_vector, 1U));
  142. return ctx.OpBitcast(ctx.U64, ctx.OpCompositeConstruct(ctx.U32[2], value_1, value_2));
  143. }
  144. Id EmitSharedAtomicExchange32x2(EmitContext& ctx, Id offset, Id value) {
  145. LOG_WARNING(Shader_SPIRV, "Int64 atomics not supported, fallback to non-atomic");
  146. const Id pointer_1{SharedPointer(ctx, offset, 0)};
  147. const Id pointer_2{SharedPointer(ctx, offset, 1)};
  148. const Id value_1{ctx.OpLoad(ctx.U32[1], pointer_1)};
  149. const Id value_2{ctx.OpLoad(ctx.U32[1], pointer_2)};
  150. const Id new_vector{ctx.OpBitcast(ctx.U32[2], value)};
  151. ctx.OpStore(pointer_1, ctx.OpCompositeExtract(ctx.U32[1], new_vector, 0U));
  152. ctx.OpStore(pointer_2, ctx.OpCompositeExtract(ctx.U32[1], new_vector, 1U));
  153. return ctx.OpCompositeConstruct(ctx.U32[2], value_1, value_2);
  154. }
  155. Id EmitStorageAtomicIAdd32(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  156. Id value) {
  157. return StorageAtomicU32(ctx, binding, offset, value, &Sirit::Module::OpAtomicIAdd);
  158. }
  159. Id EmitStorageAtomicSMin32(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  160. Id value) {
  161. return StorageAtomicU32(ctx, binding, offset, value, &Sirit::Module::OpAtomicSMin);
  162. }
  163. Id EmitStorageAtomicUMin32(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  164. Id value) {
  165. return StorageAtomicU32(ctx, binding, offset, value, &Sirit::Module::OpAtomicUMin);
  166. }
  167. Id EmitStorageAtomicSMax32(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  168. Id value) {
  169. return StorageAtomicU32(ctx, binding, offset, value, &Sirit::Module::OpAtomicSMax);
  170. }
  171. Id EmitStorageAtomicUMax32(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  172. Id value) {
  173. return StorageAtomicU32(ctx, binding, offset, value, &Sirit::Module::OpAtomicUMax);
  174. }
  175. Id EmitStorageAtomicInc32(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  176. Id value) {
  177. const Id ssbo{ctx.ssbos[binding.U32()].U32};
  178. const Id base_index{StorageIndex(ctx, offset, sizeof(u32))};
  179. return ctx.OpFunctionCall(ctx.U32[1], ctx.increment_cas_ssbo, base_index, value, ssbo);
  180. }
  181. Id EmitStorageAtomicDec32(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  182. Id value) {
  183. const Id ssbo{ctx.ssbos[binding.U32()].U32};
  184. const Id base_index{StorageIndex(ctx, offset, sizeof(u32))};
  185. return ctx.OpFunctionCall(ctx.U32[1], ctx.decrement_cas_ssbo, base_index, value, ssbo);
  186. }
  187. Id EmitStorageAtomicAnd32(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  188. Id value) {
  189. return StorageAtomicU32(ctx, binding, offset, value, &Sirit::Module::OpAtomicAnd);
  190. }
  191. Id EmitStorageAtomicOr32(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  192. Id value) {
  193. return StorageAtomicU32(ctx, binding, offset, value, &Sirit::Module::OpAtomicOr);
  194. }
  195. Id EmitStorageAtomicXor32(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  196. Id value) {
  197. return StorageAtomicU32(ctx, binding, offset, value, &Sirit::Module::OpAtomicXor);
  198. }
  199. Id EmitStorageAtomicExchange32(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  200. Id value) {
  201. return StorageAtomicU32(ctx, binding, offset, value, &Sirit::Module::OpAtomicExchange);
  202. }
  203. Id EmitStorageAtomicIAdd64(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  204. Id value) {
  205. return StorageAtomicU64(ctx, binding, offset, value, &Sirit::Module::OpAtomicIAdd,
  206. &Sirit::Module::OpIAdd);
  207. }
  208. Id EmitStorageAtomicSMin64(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  209. Id value) {
  210. return StorageAtomicU64(ctx, binding, offset, value, &Sirit::Module::OpAtomicSMin,
  211. &Sirit::Module::OpSMin);
  212. }
  213. Id EmitStorageAtomicUMin64(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  214. Id value) {
  215. return StorageAtomicU64(ctx, binding, offset, value, &Sirit::Module::OpAtomicUMin,
  216. &Sirit::Module::OpUMin);
  217. }
  218. Id EmitStorageAtomicSMax64(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  219. Id value) {
  220. return StorageAtomicU64(ctx, binding, offset, value, &Sirit::Module::OpAtomicSMax,
  221. &Sirit::Module::OpSMax);
  222. }
  223. Id EmitStorageAtomicUMax64(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  224. Id value) {
  225. return StorageAtomicU64(ctx, binding, offset, value, &Sirit::Module::OpAtomicUMax,
  226. &Sirit::Module::OpUMax);
  227. }
  228. Id EmitStorageAtomicAnd64(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  229. Id value) {
  230. return StorageAtomicU64(ctx, binding, offset, value, &Sirit::Module::OpAtomicAnd,
  231. &Sirit::Module::OpBitwiseAnd);
  232. }
  233. Id EmitStorageAtomicOr64(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  234. Id value) {
  235. return StorageAtomicU64(ctx, binding, offset, value, &Sirit::Module::OpAtomicOr,
  236. &Sirit::Module::OpBitwiseOr);
  237. }
  238. Id EmitStorageAtomicXor64(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  239. Id value) {
  240. return StorageAtomicU64(ctx, binding, offset, value, &Sirit::Module::OpAtomicXor,
  241. &Sirit::Module::OpBitwiseXor);
  242. }
  243. Id EmitStorageAtomicExchange64(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  244. Id value) {
  245. if (ctx.profile.support_int64_atomics) {
  246. const Id pointer{StoragePointer(ctx, ctx.storage_types.U64, &StorageDefinitions::U64,
  247. binding, offset, sizeof(u64))};
  248. const auto [scope, semantics]{AtomicArgs(ctx)};
  249. return ctx.OpAtomicExchange(ctx.U64, pointer, scope, semantics, value);
  250. }
  251. LOG_WARNING(Shader_SPIRV, "Int64 atomics not supported, fallback to non-atomic");
  252. const Id pointer{StoragePointer(ctx, ctx.storage_types.U32x2, &StorageDefinitions::U32x2,
  253. binding, offset, sizeof(u32[2]))};
  254. const Id original{ctx.OpBitcast(ctx.U64, ctx.OpLoad(ctx.U32[2], pointer))};
  255. ctx.OpStore(pointer, value);
  256. return original;
  257. }
  258. Id EmitStorageAtomicIAdd32x2(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  259. Id value) {
  260. return StorageAtomicU32x2(ctx, binding, offset, value, &Sirit::Module::OpIAdd);
  261. }
  262. Id EmitStorageAtomicSMin32x2(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  263. Id value) {
  264. return StorageAtomicU32x2(ctx, binding, offset, value, &Sirit::Module::OpSMin);
  265. }
  266. Id EmitStorageAtomicUMin32x2(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  267. Id value) {
  268. return StorageAtomicU32x2(ctx, binding, offset, value, &Sirit::Module::OpUMin);
  269. }
  270. Id EmitStorageAtomicSMax32x2(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  271. Id value) {
  272. return StorageAtomicU32x2(ctx, binding, offset, value, &Sirit::Module::OpSMax);
  273. }
  274. Id EmitStorageAtomicUMax32x2(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  275. Id value) {
  276. return StorageAtomicU32x2(ctx, binding, offset, value, &Sirit::Module::OpUMax);
  277. }
  278. Id EmitStorageAtomicAnd32x2(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  279. Id value) {
  280. return StorageAtomicU32x2(ctx, binding, offset, value, &Sirit::Module::OpBitwiseAnd);
  281. }
  282. Id EmitStorageAtomicOr32x2(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  283. Id value) {
  284. return StorageAtomicU32x2(ctx, binding, offset, value, &Sirit::Module::OpBitwiseOr);
  285. }
  286. Id EmitStorageAtomicXor32x2(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  287. Id value) {
  288. return StorageAtomicU32x2(ctx, binding, offset, value, &Sirit::Module::OpBitwiseXor);
  289. }
  290. Id EmitStorageAtomicExchange32x2(EmitContext& ctx, const IR::Value& binding,
  291. const IR::Value& offset, Id value) {
  292. LOG_WARNING(Shader_SPIRV, "Int64 atomics not supported, fallback to non-atomic");
  293. const Id pointer{StoragePointer(ctx, ctx.storage_types.U32x2, &StorageDefinitions::U32x2,
  294. binding, offset, sizeof(u32[2]))};
  295. const Id original{ctx.OpLoad(ctx.U32[2], pointer)};
  296. ctx.OpStore(pointer, value);
  297. return original;
  298. }
  299. Id EmitStorageAtomicAddF32(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  300. Id value) {
  301. const Id ssbo{ctx.ssbos[binding.U32()].U32};
  302. const Id base_index{StorageIndex(ctx, offset, sizeof(u32))};
  303. return ctx.OpFunctionCall(ctx.F32[1], ctx.f32_add_cas, base_index, value, ssbo);
  304. }
  305. Id EmitStorageAtomicAddF16x2(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  306. Id value) {
  307. const Id ssbo{ctx.ssbos[binding.U32()].U32};
  308. const Id base_index{StorageIndex(ctx, offset, sizeof(u32))};
  309. const Id result{ctx.OpFunctionCall(ctx.F16[2], ctx.f16x2_add_cas, base_index, value, ssbo)};
  310. return ctx.OpBitcast(ctx.U32[1], result);
  311. }
  312. Id EmitStorageAtomicAddF32x2(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  313. Id value) {
  314. const Id ssbo{ctx.ssbos[binding.U32()].U32};
  315. const Id base_index{StorageIndex(ctx, offset, sizeof(u32))};
  316. const Id result{ctx.OpFunctionCall(ctx.F32[2], ctx.f32x2_add_cas, base_index, value, ssbo)};
  317. return ctx.OpPackHalf2x16(ctx.U32[1], result);
  318. }
  319. Id EmitStorageAtomicMinF16x2(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  320. Id value) {
  321. const Id ssbo{ctx.ssbos[binding.U32()].U32};
  322. const Id base_index{StorageIndex(ctx, offset, sizeof(u32))};
  323. const Id result{ctx.OpFunctionCall(ctx.F16[2], ctx.f16x2_min_cas, base_index, value, ssbo)};
  324. return ctx.OpBitcast(ctx.U32[1], result);
  325. }
  326. Id EmitStorageAtomicMinF32x2(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  327. Id value) {
  328. const Id ssbo{ctx.ssbos[binding.U32()].U32};
  329. const Id base_index{StorageIndex(ctx, offset, sizeof(u32))};
  330. const Id result{ctx.OpFunctionCall(ctx.F32[2], ctx.f32x2_min_cas, base_index, value, ssbo)};
  331. return ctx.OpPackHalf2x16(ctx.U32[1], result);
  332. }
  333. Id EmitStorageAtomicMaxF16x2(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  334. Id value) {
  335. const Id ssbo{ctx.ssbos[binding.U32()].U32};
  336. const Id base_index{StorageIndex(ctx, offset, sizeof(u32))};
  337. const Id result{ctx.OpFunctionCall(ctx.F16[2], ctx.f16x2_max_cas, base_index, value, ssbo)};
  338. return ctx.OpBitcast(ctx.U32[1], result);
  339. }
  340. Id EmitStorageAtomicMaxF32x2(EmitContext& ctx, const IR::Value& binding, const IR::Value& offset,
  341. Id value) {
  342. const Id ssbo{ctx.ssbos[binding.U32()].U32};
  343. const Id base_index{StorageIndex(ctx, offset, sizeof(u32))};
  344. const Id result{ctx.OpFunctionCall(ctx.F32[2], ctx.f32x2_max_cas, base_index, value, ssbo)};
  345. return ctx.OpPackHalf2x16(ctx.U32[1], result);
  346. }
  347. Id EmitGlobalAtomicIAdd32(EmitContext&) {
  348. throw NotImplementedException("SPIR-V Instruction");
  349. }
  350. Id EmitGlobalAtomicSMin32(EmitContext&) {
  351. throw NotImplementedException("SPIR-V Instruction");
  352. }
  353. Id EmitGlobalAtomicUMin32(EmitContext&) {
  354. throw NotImplementedException("SPIR-V Instruction");
  355. }
  356. Id EmitGlobalAtomicSMax32(EmitContext&) {
  357. throw NotImplementedException("SPIR-V Instruction");
  358. }
  359. Id EmitGlobalAtomicUMax32(EmitContext&) {
  360. throw NotImplementedException("SPIR-V Instruction");
  361. }
  362. Id EmitGlobalAtomicInc32(EmitContext&) {
  363. throw NotImplementedException("SPIR-V Instruction");
  364. }
  365. Id EmitGlobalAtomicDec32(EmitContext&) {
  366. throw NotImplementedException("SPIR-V Instruction");
  367. }
  368. Id EmitGlobalAtomicAnd32(EmitContext&) {
  369. throw NotImplementedException("SPIR-V Instruction");
  370. }
  371. Id EmitGlobalAtomicOr32(EmitContext&) {
  372. throw NotImplementedException("SPIR-V Instruction");
  373. }
  374. Id EmitGlobalAtomicXor32(EmitContext&) {
  375. throw NotImplementedException("SPIR-V Instruction");
  376. }
  377. Id EmitGlobalAtomicExchange32(EmitContext&) {
  378. throw NotImplementedException("SPIR-V Instruction");
  379. }
  380. Id EmitGlobalAtomicIAdd64(EmitContext&) {
  381. throw NotImplementedException("SPIR-V Instruction");
  382. }
  383. Id EmitGlobalAtomicSMin64(EmitContext&) {
  384. throw NotImplementedException("SPIR-V Instruction");
  385. }
  386. Id EmitGlobalAtomicUMin64(EmitContext&) {
  387. throw NotImplementedException("SPIR-V Instruction");
  388. }
  389. Id EmitGlobalAtomicSMax64(EmitContext&) {
  390. throw NotImplementedException("SPIR-V Instruction");
  391. }
  392. Id EmitGlobalAtomicUMax64(EmitContext&) {
  393. throw NotImplementedException("SPIR-V Instruction");
  394. }
  395. Id EmitGlobalAtomicInc64(EmitContext&) {
  396. throw NotImplementedException("SPIR-V Instruction");
  397. }
  398. Id EmitGlobalAtomicDec64(EmitContext&) {
  399. throw NotImplementedException("SPIR-V Instruction");
  400. }
  401. Id EmitGlobalAtomicAnd64(EmitContext&) {
  402. throw NotImplementedException("SPIR-V Instruction");
  403. }
  404. Id EmitGlobalAtomicOr64(EmitContext&) {
  405. throw NotImplementedException("SPIR-V Instruction");
  406. }
  407. Id EmitGlobalAtomicXor64(EmitContext&) {
  408. throw NotImplementedException("SPIR-V Instruction");
  409. }
  410. Id EmitGlobalAtomicExchange64(EmitContext&) {
  411. throw NotImplementedException("SPIR-V Instruction");
  412. }
  413. Id EmitGlobalAtomicIAdd32x2(EmitContext&) {
  414. throw NotImplementedException("SPIR-V Instruction");
  415. }
  416. Id EmitGlobalAtomicSMin32x2(EmitContext&) {
  417. throw NotImplementedException("SPIR-V Instruction");
  418. }
  419. Id EmitGlobalAtomicUMin32x2(EmitContext&) {
  420. throw NotImplementedException("SPIR-V Instruction");
  421. }
  422. Id EmitGlobalAtomicSMax32x2(EmitContext&) {
  423. throw NotImplementedException("SPIR-V Instruction");
  424. }
  425. Id EmitGlobalAtomicUMax32x2(EmitContext&) {
  426. throw NotImplementedException("SPIR-V Instruction");
  427. }
  428. Id EmitGlobalAtomicInc32x2(EmitContext&) {
  429. throw NotImplementedException("SPIR-V Instruction");
  430. }
  431. Id EmitGlobalAtomicDec32x2(EmitContext&) {
  432. throw NotImplementedException("SPIR-V Instruction");
  433. }
  434. Id EmitGlobalAtomicAnd32x2(EmitContext&) {
  435. throw NotImplementedException("SPIR-V Instruction");
  436. }
  437. Id EmitGlobalAtomicOr32x2(EmitContext&) {
  438. throw NotImplementedException("SPIR-V Instruction");
  439. }
  440. Id EmitGlobalAtomicXor32x2(EmitContext&) {
  441. throw NotImplementedException("SPIR-V Instruction");
  442. }
  443. Id EmitGlobalAtomicExchange32x2(EmitContext&) {
  444. throw NotImplementedException("SPIR-V Instruction");
  445. }
  446. Id EmitGlobalAtomicAddF32(EmitContext&) {
  447. throw NotImplementedException("SPIR-V Instruction");
  448. }
  449. Id EmitGlobalAtomicAddF16x2(EmitContext&) {
  450. throw NotImplementedException("SPIR-V Instruction");
  451. }
  452. Id EmitGlobalAtomicAddF32x2(EmitContext&) {
  453. throw NotImplementedException("SPIR-V Instruction");
  454. }
  455. Id EmitGlobalAtomicMinF16x2(EmitContext&) {
  456. throw NotImplementedException("SPIR-V Instruction");
  457. }
  458. Id EmitGlobalAtomicMinF32x2(EmitContext&) {
  459. throw NotImplementedException("SPIR-V Instruction");
  460. }
  461. Id EmitGlobalAtomicMaxF16x2(EmitContext&) {
  462. throw NotImplementedException("SPIR-V Instruction");
  463. }
  464. Id EmitGlobalAtomicMaxF32x2(EmitContext&) {
  465. throw NotImplementedException("SPIR-V Instruction");
  466. }
  467. } // namespace Shader::Backend::SPIRV