macro_hle.cpp 24 KB

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  1. // SPDX-FileCopyrightText: Copyright 2023 yuzu Emulator Project
  2. // SPDX-License-Identifier: GPL-3.0-or-later
  3. #include <array>
  4. #include <vector>
  5. #include "common/assert.h"
  6. #include "common/scope_exit.h"
  7. #include "video_core/dirty_flags.h"
  8. #include "video_core/engines/draw_manager.h"
  9. #include "video_core/engines/maxwell_3d.h"
  10. #include "video_core/macro/macro.h"
  11. #include "video_core/macro/macro_hle.h"
  12. #include "video_core/memory_manager.h"
  13. #include "video_core/rasterizer_interface.h"
  14. namespace Tegra {
  15. using Maxwell3D = Engines::Maxwell3D;
  16. namespace {
  17. bool IsTopologySafe(Maxwell3D::Regs::PrimitiveTopology topology) {
  18. switch (topology) {
  19. case Maxwell3D::Regs::PrimitiveTopology::Points:
  20. case Maxwell3D::Regs::PrimitiveTopology::Lines:
  21. case Maxwell3D::Regs::PrimitiveTopology::LineLoop:
  22. case Maxwell3D::Regs::PrimitiveTopology::LineStrip:
  23. case Maxwell3D::Regs::PrimitiveTopology::Triangles:
  24. case Maxwell3D::Regs::PrimitiveTopology::TriangleStrip:
  25. case Maxwell3D::Regs::PrimitiveTopology::TriangleFan:
  26. case Maxwell3D::Regs::PrimitiveTopology::LinesAdjacency:
  27. case Maxwell3D::Regs::PrimitiveTopology::LineStripAdjacency:
  28. case Maxwell3D::Regs::PrimitiveTopology::TrianglesAdjacency:
  29. case Maxwell3D::Regs::PrimitiveTopology::TriangleStripAdjacency:
  30. case Maxwell3D::Regs::PrimitiveTopology::Patches:
  31. return true;
  32. case Maxwell3D::Regs::PrimitiveTopology::Quads:
  33. case Maxwell3D::Regs::PrimitiveTopology::QuadStrip:
  34. case Maxwell3D::Regs::PrimitiveTopology::Polygon:
  35. default:
  36. return false;
  37. }
  38. }
  39. class HLEMacroImpl : public CachedMacro {
  40. public:
  41. explicit HLEMacroImpl(Maxwell3D& maxwell3d_) : maxwell3d{maxwell3d_} {}
  42. protected:
  43. Maxwell3D& maxwell3d;
  44. };
  45. /*
  46. * @note: these macros have two versions, a normal and extended version, with the extended version
  47. * also assigning the base vertex/instance.
  48. */
  49. template <bool extended>
  50. class HLE_DrawArraysIndirect final : public HLEMacroImpl {
  51. public:
  52. explicit HLE_DrawArraysIndirect(Maxwell3D& maxwell3d_) : HLEMacroImpl(maxwell3d_) {}
  53. void Execute(const std::vector<u32>& parameters, [[maybe_unused]] u32 method) override {
  54. auto topology = static_cast<Maxwell3D::Regs::PrimitiveTopology>(parameters[0]);
  55. if (!maxwell3d.AnyParametersDirty() || !IsTopologySafe(topology)) {
  56. Fallback(parameters);
  57. return;
  58. }
  59. auto& params = maxwell3d.draw_manager->GetIndirectParams();
  60. params.is_indexed = false;
  61. params.include_count = false;
  62. params.count_start_address = 0;
  63. params.indirect_start_address = maxwell3d.GetMacroAddress(1);
  64. params.buffer_size = 4 * sizeof(u32);
  65. params.max_draw_counts = 1;
  66. params.stride = 0;
  67. if constexpr (extended) {
  68. maxwell3d.engine_state = Maxwell3D::EngineHint::OnHLEMacro;
  69. maxwell3d.SetHLEReplacementAttributeType(
  70. 0, 0x640, Maxwell3D::HLEReplacementAttributeType::BaseInstance);
  71. }
  72. maxwell3d.draw_manager->DrawArrayIndirect(topology);
  73. if constexpr (extended) {
  74. maxwell3d.engine_state = Maxwell3D::EngineHint::None;
  75. maxwell3d.replace_table.clear();
  76. }
  77. }
  78. private:
  79. void Fallback(const std::vector<u32>& parameters) {
  80. SCOPE_EXIT({
  81. if (extended) {
  82. maxwell3d.engine_state = Maxwell3D::EngineHint::None;
  83. maxwell3d.replace_table.clear();
  84. }
  85. });
  86. maxwell3d.RefreshParameters();
  87. const u32 instance_count = (maxwell3d.GetRegisterValue(0xD1B) & parameters[2]);
  88. auto topology = static_cast<Maxwell3D::Regs::PrimitiveTopology>(parameters[0]);
  89. const u32 vertex_first = parameters[3];
  90. const u32 vertex_count = parameters[1];
  91. if (!IsTopologySafe(topology) &&
  92. static_cast<size_t>(maxwell3d.GetMaxCurrentVertices()) <
  93. static_cast<size_t>(vertex_first) + static_cast<size_t>(vertex_count)) {
  94. ASSERT_MSG(false, "Faulty draw!");
  95. return;
  96. }
  97. const u32 base_instance = parameters[4];
  98. if constexpr (extended) {
  99. maxwell3d.regs.global_base_instance_index = base_instance;
  100. maxwell3d.engine_state = Maxwell3D::EngineHint::OnHLEMacro;
  101. maxwell3d.SetHLEReplacementAttributeType(
  102. 0, 0x640, Maxwell3D::HLEReplacementAttributeType::BaseInstance);
  103. }
  104. maxwell3d.draw_manager->DrawArray(topology, vertex_first, vertex_count, base_instance,
  105. instance_count);
  106. if constexpr (extended) {
  107. maxwell3d.regs.global_base_instance_index = 0;
  108. maxwell3d.engine_state = Maxwell3D::EngineHint::None;
  109. maxwell3d.replace_table.clear();
  110. }
  111. }
  112. };
  113. /*
  114. * @note: these macros have two versions, a normal and extended version, with the extended version
  115. * also assigning the base vertex/instance.
  116. */
  117. template <bool extended>
  118. class HLE_DrawIndexedIndirect final : public HLEMacroImpl {
  119. public:
  120. explicit HLE_DrawIndexedIndirect(Maxwell3D& maxwell3d_) : HLEMacroImpl(maxwell3d_) {}
  121. void Execute(const std::vector<u32>& parameters, [[maybe_unused]] u32 method) override {
  122. auto topology = static_cast<Maxwell3D::Regs::PrimitiveTopology>(parameters[0]);
  123. if (!maxwell3d.AnyParametersDirty() || !IsTopologySafe(topology)) {
  124. Fallback(parameters);
  125. return;
  126. }
  127. const u32 estimate = static_cast<u32>(maxwell3d.EstimateIndexBufferSize());
  128. const u32 element_base = parameters[4];
  129. const u32 base_instance = parameters[5];
  130. maxwell3d.regs.vertex_id_base = element_base;
  131. maxwell3d.regs.global_base_vertex_index = element_base;
  132. maxwell3d.regs.global_base_instance_index = base_instance;
  133. maxwell3d.dirty.flags[VideoCommon::Dirty::IndexBuffer] = true;
  134. if constexpr (extended) {
  135. maxwell3d.engine_state = Maxwell3D::EngineHint::OnHLEMacro;
  136. maxwell3d.SetHLEReplacementAttributeType(
  137. 0, 0x640, Maxwell3D::HLEReplacementAttributeType::BaseVertex);
  138. maxwell3d.SetHLEReplacementAttributeType(
  139. 0, 0x644, Maxwell3D::HLEReplacementAttributeType::BaseInstance);
  140. }
  141. auto& params = maxwell3d.draw_manager->GetIndirectParams();
  142. params.is_indexed = true;
  143. params.include_count = false;
  144. params.count_start_address = 0;
  145. params.indirect_start_address = maxwell3d.GetMacroAddress(1);
  146. params.buffer_size = 5 * sizeof(u32);
  147. params.max_draw_counts = 1;
  148. params.stride = 0;
  149. maxwell3d.dirty.flags[VideoCommon::Dirty::IndexBuffer] = true;
  150. maxwell3d.draw_manager->DrawIndexedIndirect(topology, 0, estimate);
  151. maxwell3d.regs.vertex_id_base = 0x0;
  152. maxwell3d.regs.global_base_vertex_index = 0x0;
  153. maxwell3d.regs.global_base_instance_index = 0x0;
  154. if constexpr (extended) {
  155. maxwell3d.engine_state = Maxwell3D::EngineHint::None;
  156. maxwell3d.replace_table.clear();
  157. }
  158. }
  159. private:
  160. void Fallback(const std::vector<u32>& parameters) {
  161. maxwell3d.RefreshParameters();
  162. const u32 instance_count = (maxwell3d.GetRegisterValue(0xD1B) & parameters[2]);
  163. const u32 element_base = parameters[4];
  164. const u32 base_instance = parameters[5];
  165. maxwell3d.regs.vertex_id_base = element_base;
  166. maxwell3d.regs.global_base_vertex_index = element_base;
  167. maxwell3d.regs.global_base_instance_index = base_instance;
  168. maxwell3d.dirty.flags[VideoCommon::Dirty::IndexBuffer] = true;
  169. if constexpr (extended) {
  170. maxwell3d.engine_state = Maxwell3D::EngineHint::OnHLEMacro;
  171. maxwell3d.SetHLEReplacementAttributeType(
  172. 0, 0x640, Maxwell3D::HLEReplacementAttributeType::BaseVertex);
  173. maxwell3d.SetHLEReplacementAttributeType(
  174. 0, 0x644, Maxwell3D::HLEReplacementAttributeType::BaseInstance);
  175. }
  176. maxwell3d.draw_manager->DrawIndex(
  177. static_cast<Tegra::Maxwell3D::Regs::PrimitiveTopology>(parameters[0]), parameters[3],
  178. parameters[1], element_base, base_instance, instance_count);
  179. maxwell3d.regs.vertex_id_base = 0x0;
  180. maxwell3d.regs.global_base_vertex_index = 0x0;
  181. maxwell3d.regs.global_base_instance_index = 0x0;
  182. if constexpr (extended) {
  183. maxwell3d.engine_state = Maxwell3D::EngineHint::None;
  184. maxwell3d.replace_table.clear();
  185. }
  186. }
  187. };
  188. class HLE_MultiLayerClear final : public HLEMacroImpl {
  189. public:
  190. explicit HLE_MultiLayerClear(Maxwell3D& maxwell3d_) : HLEMacroImpl(maxwell3d_) {}
  191. void Execute(const std::vector<u32>& parameters, [[maybe_unused]] u32 method) override {
  192. maxwell3d.RefreshParameters();
  193. ASSERT(parameters.size() == 1);
  194. const Maxwell3D::Regs::ClearSurface clear_params{parameters[0]};
  195. const u32 rt_index = clear_params.RT;
  196. const u32 num_layers = maxwell3d.regs.rt[rt_index].depth;
  197. ASSERT(clear_params.layer == 0);
  198. maxwell3d.regs.clear_surface.raw = clear_params.raw;
  199. maxwell3d.draw_manager->Clear(num_layers);
  200. }
  201. };
  202. class HLE_MultiDrawIndexedIndirectCount final : public HLEMacroImpl {
  203. public:
  204. explicit HLE_MultiDrawIndexedIndirectCount(Maxwell3D& maxwell3d_) : HLEMacroImpl(maxwell3d_) {}
  205. void Execute(const std::vector<u32>& parameters, [[maybe_unused]] u32 method) override {
  206. const auto topology = static_cast<Maxwell3D::Regs::PrimitiveTopology>(parameters[2]);
  207. if (!IsTopologySafe(topology)) {
  208. Fallback(parameters);
  209. return;
  210. }
  211. const u32 start_indirect = parameters[0];
  212. const u32 end_indirect = parameters[1];
  213. if (start_indirect >= end_indirect) {
  214. // Nothing to do.
  215. return;
  216. }
  217. const u32 padding = parameters[3]; // padding is in words
  218. // size of each indirect segment
  219. const u32 indirect_words = 5 + padding;
  220. const u32 stride = indirect_words * sizeof(u32);
  221. const std::size_t draw_count = end_indirect - start_indirect;
  222. const u32 estimate = static_cast<u32>(maxwell3d.EstimateIndexBufferSize());
  223. maxwell3d.dirty.flags[VideoCommon::Dirty::IndexBuffer] = true;
  224. auto& params = maxwell3d.draw_manager->GetIndirectParams();
  225. params.is_indexed = true;
  226. params.include_count = true;
  227. params.count_start_address = maxwell3d.GetMacroAddress(4);
  228. params.indirect_start_address = maxwell3d.GetMacroAddress(5);
  229. params.buffer_size = stride * draw_count;
  230. params.max_draw_counts = draw_count;
  231. params.stride = stride;
  232. maxwell3d.dirty.flags[VideoCommon::Dirty::IndexBuffer] = true;
  233. maxwell3d.engine_state = Maxwell3D::EngineHint::OnHLEMacro;
  234. maxwell3d.SetHLEReplacementAttributeType(
  235. 0, 0x640, Maxwell3D::HLEReplacementAttributeType::BaseVertex);
  236. maxwell3d.SetHLEReplacementAttributeType(
  237. 0, 0x644, Maxwell3D::HLEReplacementAttributeType::BaseInstance);
  238. maxwell3d.SetHLEReplacementAttributeType(0, 0x648,
  239. Maxwell3D::HLEReplacementAttributeType::DrawID);
  240. maxwell3d.draw_manager->DrawIndexedIndirect(topology, 0, estimate);
  241. maxwell3d.engine_state = Maxwell3D::EngineHint::None;
  242. maxwell3d.replace_table.clear();
  243. }
  244. private:
  245. void Fallback(const std::vector<u32>& parameters) {
  246. SCOPE_EXIT({
  247. // Clean everything.
  248. maxwell3d.regs.vertex_id_base = 0x0;
  249. maxwell3d.engine_state = Maxwell3D::EngineHint::None;
  250. maxwell3d.replace_table.clear();
  251. });
  252. maxwell3d.RefreshParameters();
  253. const u32 start_indirect = parameters[0];
  254. const u32 end_indirect = parameters[1];
  255. if (start_indirect >= end_indirect) {
  256. // Nothing to do.
  257. return;
  258. }
  259. const auto topology = static_cast<Maxwell3D::Regs::PrimitiveTopology>(parameters[2]);
  260. const u32 padding = parameters[3];
  261. const std::size_t max_draws = parameters[4];
  262. const u32 indirect_words = 5 + padding;
  263. const std::size_t first_draw = start_indirect;
  264. const std::size_t effective_draws = end_indirect - start_indirect;
  265. const std::size_t last_draw = start_indirect + std::min(effective_draws, max_draws);
  266. for (std::size_t index = first_draw; index < last_draw; index++) {
  267. const std::size_t base = index * indirect_words + 5;
  268. const u32 base_vertex = parameters[base + 3];
  269. const u32 base_instance = parameters[base + 4];
  270. maxwell3d.regs.vertex_id_base = base_vertex;
  271. maxwell3d.engine_state = Maxwell3D::EngineHint::OnHLEMacro;
  272. maxwell3d.SetHLEReplacementAttributeType(
  273. 0, 0x640, Maxwell3D::HLEReplacementAttributeType::BaseVertex);
  274. maxwell3d.SetHLEReplacementAttributeType(
  275. 0, 0x644, Maxwell3D::HLEReplacementAttributeType::BaseInstance);
  276. maxwell3d.CallMethod(0x8e3, 0x648, true);
  277. maxwell3d.CallMethod(0x8e4, static_cast<u32>(index), true);
  278. maxwell3d.dirty.flags[VideoCommon::Dirty::IndexBuffer] = true;
  279. maxwell3d.draw_manager->DrawIndex(topology, parameters[base + 2], parameters[base],
  280. base_vertex, base_instance, parameters[base + 1]);
  281. }
  282. }
  283. };
  284. class HLE_C713C83D8F63CCF3 final : public HLEMacroImpl {
  285. public:
  286. explicit HLE_C713C83D8F63CCF3(Maxwell3D& maxwell3d_) : HLEMacroImpl(maxwell3d_) {}
  287. void Execute(const std::vector<u32>& parameters, [[maybe_unused]] u32 method) override {
  288. maxwell3d.RefreshParameters();
  289. const u32 offset = (parameters[0] & 0x3FFFFFFF) << 2;
  290. const u32 address = maxwell3d.regs.shadow_scratch[24];
  291. auto& const_buffer = maxwell3d.regs.const_buffer;
  292. const_buffer.size = 0x7000;
  293. const_buffer.address_high = (address >> 24) & 0xFF;
  294. const_buffer.address_low = address << 8;
  295. const_buffer.offset = offset;
  296. }
  297. };
  298. class HLE_D7333D26E0A93EDE final : public HLEMacroImpl {
  299. public:
  300. explicit HLE_D7333D26E0A93EDE(Maxwell3D& maxwell3d_) : HLEMacroImpl(maxwell3d_) {}
  301. void Execute(const std::vector<u32>& parameters, [[maybe_unused]] u32 method) override {
  302. maxwell3d.RefreshParameters();
  303. const size_t index = parameters[0];
  304. const u32 address = maxwell3d.regs.shadow_scratch[42 + index];
  305. const u32 size = maxwell3d.regs.shadow_scratch[47 + index];
  306. auto& const_buffer = maxwell3d.regs.const_buffer;
  307. const_buffer.size = size;
  308. const_buffer.address_high = (address >> 24) & 0xFF;
  309. const_buffer.address_low = address << 8;
  310. }
  311. };
  312. class HLE_BindShader final : public HLEMacroImpl {
  313. public:
  314. explicit HLE_BindShader(Maxwell3D& maxwell3d_) : HLEMacroImpl(maxwell3d_) {}
  315. void Execute(const std::vector<u32>& parameters, [[maybe_unused]] u32 method) override {
  316. maxwell3d.RefreshParameters();
  317. auto& regs = maxwell3d.regs;
  318. const u32 index = parameters[0];
  319. if ((parameters[1] - regs.shadow_scratch[28 + index]) == 0) {
  320. return;
  321. }
  322. regs.pipelines[index & 0xF].offset = parameters[2];
  323. maxwell3d.dirty.flags[VideoCommon::Dirty::Shaders] = true;
  324. regs.shadow_scratch[28 + index] = parameters[1];
  325. regs.shadow_scratch[34 + index] = parameters[2];
  326. const u32 address = parameters[4];
  327. auto& const_buffer = regs.const_buffer;
  328. const_buffer.size = 0x10000;
  329. const_buffer.address_high = (address >> 24) & 0xFF;
  330. const_buffer.address_low = address << 8;
  331. const size_t bind_group_id = parameters[3] & 0x7F;
  332. auto& bind_group = regs.bind_groups[bind_group_id];
  333. bind_group.raw_config = 0x11;
  334. maxwell3d.ProcessCBBind(bind_group_id);
  335. }
  336. };
  337. class HLE_SetRasterBoundingBox final : public HLEMacroImpl {
  338. public:
  339. explicit HLE_SetRasterBoundingBox(Maxwell3D& maxwell3d_) : HLEMacroImpl(maxwell3d_) {}
  340. void Execute(const std::vector<u32>& parameters, [[maybe_unused]] u32 method) override {
  341. maxwell3d.RefreshParameters();
  342. const u32 raster_mode = parameters[0];
  343. auto& regs = maxwell3d.regs;
  344. const u32 raster_enabled = maxwell3d.regs.conservative_raster_enable;
  345. const u32 scratch_data = maxwell3d.regs.shadow_scratch[52];
  346. regs.raster_bounding_box.raw = raster_mode & 0xFFFFF00F;
  347. regs.raster_bounding_box.pad.Assign(scratch_data & raster_enabled);
  348. }
  349. };
  350. template <size_t base_size>
  351. class HLE_ClearConstBuffer final : public HLEMacroImpl {
  352. public:
  353. explicit HLE_ClearConstBuffer(Maxwell3D& maxwell3d_) : HLEMacroImpl(maxwell3d_) {}
  354. void Execute(const std::vector<u32>& parameters, [[maybe_unused]] u32 method) override {
  355. maxwell3d.RefreshParameters();
  356. static constexpr std::array<u32, base_size> zeroes{};
  357. auto& regs = maxwell3d.regs;
  358. regs.const_buffer.size = static_cast<u32>(base_size);
  359. regs.const_buffer.address_high = parameters[0];
  360. regs.const_buffer.address_low = parameters[1];
  361. regs.const_buffer.offset = 0;
  362. maxwell3d.ProcessCBMultiData(zeroes.data(), parameters[2] * 4);
  363. }
  364. };
  365. class HLE_ClearMemory final : public HLEMacroImpl {
  366. public:
  367. explicit HLE_ClearMemory(Maxwell3D& maxwell3d_) : HLEMacroImpl(maxwell3d_) {}
  368. void Execute(const std::vector<u32>& parameters, [[maybe_unused]] u32 method) override {
  369. maxwell3d.RefreshParameters();
  370. const u32 needed_memory = parameters[2] / sizeof(u32);
  371. if (needed_memory > zero_memory.size()) {
  372. zero_memory.resize(needed_memory, 0);
  373. }
  374. auto& regs = maxwell3d.regs;
  375. regs.upload.line_length_in = parameters[2];
  376. regs.upload.line_count = 1;
  377. regs.upload.dest.address_high = parameters[0];
  378. regs.upload.dest.address_low = parameters[1];
  379. maxwell3d.CallMethod(static_cast<size_t>(MAXWELL3D_REG_INDEX(launch_dma)), 0x1011, true);
  380. maxwell3d.CallMultiMethod(static_cast<size_t>(MAXWELL3D_REG_INDEX(inline_data)),
  381. zero_memory.data(), needed_memory, needed_memory);
  382. }
  383. private:
  384. std::vector<u32> zero_memory;
  385. };
  386. class HLE_TransformFeedbackSetup final : public HLEMacroImpl {
  387. public:
  388. explicit HLE_TransformFeedbackSetup(Maxwell3D& maxwell3d_) : HLEMacroImpl(maxwell3d_) {}
  389. void Execute(const std::vector<u32>& parameters, [[maybe_unused]] u32 method) override {
  390. maxwell3d.RefreshParameters();
  391. auto& regs = maxwell3d.regs;
  392. regs.transform_feedback_enabled = 1;
  393. regs.transform_feedback.buffers[0].start_offset = 0;
  394. regs.transform_feedback.buffers[1].start_offset = 0;
  395. regs.transform_feedback.buffers[2].start_offset = 0;
  396. regs.transform_feedback.buffers[3].start_offset = 0;
  397. regs.upload.line_length_in = 4;
  398. regs.upload.line_count = 1;
  399. regs.upload.dest.address_high = parameters[0];
  400. regs.upload.dest.address_low = parameters[1];
  401. maxwell3d.CallMethod(static_cast<size_t>(MAXWELL3D_REG_INDEX(launch_dma)), 0x1011, true);
  402. maxwell3d.CallMethod(static_cast<size_t>(MAXWELL3D_REG_INDEX(inline_data)),
  403. regs.transform_feedback.controls[0].stride, true);
  404. }
  405. };
  406. } // Anonymous namespace
  407. HLEMacro::HLEMacro(Maxwell3D& maxwell3d_) : maxwell3d{maxwell3d_} {
  408. builders.emplace(0x0D61FC9FAAC9FCADULL,
  409. std::function<std::unique_ptr<CachedMacro>(Maxwell3D&)>(
  410. [](Maxwell3D& maxwell3d__) -> std::unique_ptr<CachedMacro> {
  411. return std::make_unique<HLE_DrawArraysIndirect<false>>(maxwell3d__);
  412. }));
  413. builders.emplace(0x8A4D173EB99A8603ULL,
  414. std::function<std::unique_ptr<CachedMacro>(Maxwell3D&)>(
  415. [](Maxwell3D& maxwell3d__) -> std::unique_ptr<CachedMacro> {
  416. return std::make_unique<HLE_DrawArraysIndirect<true>>(maxwell3d__);
  417. }));
  418. builders.emplace(0x771BB18C62444DA0ULL,
  419. std::function<std::unique_ptr<CachedMacro>(Maxwell3D&)>(
  420. [](Maxwell3D& maxwell3d__) -> std::unique_ptr<CachedMacro> {
  421. return std::make_unique<HLE_DrawIndexedIndirect<false>>(maxwell3d__);
  422. }));
  423. builders.emplace(0x0217920100488FF7ULL,
  424. std::function<std::unique_ptr<CachedMacro>(Maxwell3D&)>(
  425. [](Maxwell3D& maxwell3d__) -> std::unique_ptr<CachedMacro> {
  426. return std::make_unique<HLE_DrawIndexedIndirect<true>>(maxwell3d__);
  427. }));
  428. builders.emplace(0x3F5E74B9C9A50164ULL,
  429. std::function<std::unique_ptr<CachedMacro>(Maxwell3D&)>(
  430. [](Maxwell3D& maxwell3d__) -> std::unique_ptr<CachedMacro> {
  431. return std::make_unique<HLE_MultiDrawIndexedIndirectCount>(
  432. maxwell3d__);
  433. }));
  434. builders.emplace(0xEAD26C3E2109B06BULL,
  435. std::function<std::unique_ptr<CachedMacro>(Maxwell3D&)>(
  436. [](Maxwell3D& maxwell3d__) -> std::unique_ptr<CachedMacro> {
  437. return std::make_unique<HLE_MultiLayerClear>(maxwell3d__);
  438. }));
  439. builders.emplace(0xC713C83D8F63CCF3ULL,
  440. std::function<std::unique_ptr<CachedMacro>(Maxwell3D&)>(
  441. [](Maxwell3D& maxwell3d__) -> std::unique_ptr<CachedMacro> {
  442. return std::make_unique<HLE_C713C83D8F63CCF3>(maxwell3d__);
  443. }));
  444. builders.emplace(0xD7333D26E0A93EDEULL,
  445. std::function<std::unique_ptr<CachedMacro>(Maxwell3D&)>(
  446. [](Maxwell3D& maxwell3d__) -> std::unique_ptr<CachedMacro> {
  447. return std::make_unique<HLE_D7333D26E0A93EDE>(maxwell3d__);
  448. }));
  449. builders.emplace(0xEB29B2A09AA06D38ULL,
  450. std::function<std::unique_ptr<CachedMacro>(Maxwell3D&)>(
  451. [](Maxwell3D& maxwell3d__) -> std::unique_ptr<CachedMacro> {
  452. return std::make_unique<HLE_BindShader>(maxwell3d__);
  453. }));
  454. builders.emplace(0xDB1341DBEB4C8AF7ULL,
  455. std::function<std::unique_ptr<CachedMacro>(Maxwell3D&)>(
  456. [](Maxwell3D& maxwell3d__) -> std::unique_ptr<CachedMacro> {
  457. return std::make_unique<HLE_SetRasterBoundingBox>(maxwell3d__);
  458. }));
  459. builders.emplace(0x6C97861D891EDf7EULL,
  460. std::function<std::unique_ptr<CachedMacro>(Maxwell3D&)>(
  461. [](Maxwell3D& maxwell3d__) -> std::unique_ptr<CachedMacro> {
  462. return std::make_unique<HLE_ClearConstBuffer<0x5F00>>(maxwell3d__);
  463. }));
  464. builders.emplace(0xD246FDDF3A6173D7ULL,
  465. std::function<std::unique_ptr<CachedMacro>(Maxwell3D&)>(
  466. [](Maxwell3D& maxwell3d__) -> std::unique_ptr<CachedMacro> {
  467. return std::make_unique<HLE_ClearConstBuffer<0x7000>>(maxwell3d__);
  468. }));
  469. builders.emplace(0xEE4D0004BEC8ECF4ULL,
  470. std::function<std::unique_ptr<CachedMacro>(Maxwell3D&)>(
  471. [](Maxwell3D& maxwell3d__) -> std::unique_ptr<CachedMacro> {
  472. return std::make_unique<HLE_ClearMemory>(maxwell3d__);
  473. }));
  474. builders.emplace(0xFC0CF27F5FFAA661ULL,
  475. std::function<std::unique_ptr<CachedMacro>(Maxwell3D&)>(
  476. [](Maxwell3D& maxwell3d__) -> std::unique_ptr<CachedMacro> {
  477. return std::make_unique<HLE_TransformFeedbackSetup>(maxwell3d__);
  478. }));
  479. }
  480. HLEMacro::~HLEMacro() = default;
  481. std::unique_ptr<CachedMacro> HLEMacro::GetHLEProgram(u64 hash) const {
  482. const auto it = builders.find(hash);
  483. if (it == builders.end()) {
  484. return nullptr;
  485. }
  486. return it->second(maxwell3d);
  487. }
  488. } // namespace Tegra