buffer_cache.h 22 KB

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  1. // Copyright 2019 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 <list>
  7. #include <memory>
  8. #include <mutex>
  9. #include <unordered_map>
  10. #include <unordered_set>
  11. #include <utility>
  12. #include <vector>
  13. #include <boost/icl/interval_map.hpp>
  14. #include <boost/icl/interval_set.hpp>
  15. #include <boost/range/iterator_range.hpp>
  16. #include "common/alignment.h"
  17. #include "common/common_types.h"
  18. #include "common/logging/log.h"
  19. #include "core/core.h"
  20. #include "core/memory.h"
  21. #include "core/settings.h"
  22. #include "video_core/buffer_cache/buffer_block.h"
  23. #include "video_core/buffer_cache/map_interval.h"
  24. #include "video_core/memory_manager.h"
  25. #include "video_core/rasterizer_interface.h"
  26. namespace VideoCommon {
  27. using MapInterval = std::shared_ptr<MapIntervalBase>;
  28. template <typename OwnerBuffer, typename BufferType, typename StreamBuffer>
  29. class BufferCache {
  30. public:
  31. using BufferInfo = std::pair<BufferType, u64>;
  32. BufferInfo UploadMemory(GPUVAddr gpu_addr, std::size_t size, std::size_t alignment = 4,
  33. bool is_written = false, bool use_fast_cbuf = false) {
  34. std::lock_guard lock{mutex};
  35. const std::optional<VAddr> cpu_addr_opt =
  36. system.GPU().MemoryManager().GpuToCpuAddress(gpu_addr);
  37. if (!cpu_addr_opt) {
  38. return {GetEmptyBuffer(size), 0};
  39. }
  40. VAddr cpu_addr = *cpu_addr_opt;
  41. // Cache management is a big overhead, so only cache entries with a given size.
  42. // TODO: Figure out which size is the best for given games.
  43. constexpr std::size_t max_stream_size = 0x800;
  44. if (use_fast_cbuf || size < max_stream_size) {
  45. if (!is_written && !IsRegionWritten(cpu_addr, cpu_addr + size - 1)) {
  46. auto& memory_manager = system.GPU().MemoryManager();
  47. if (use_fast_cbuf) {
  48. if (memory_manager.IsGranularRange(gpu_addr, size)) {
  49. const auto host_ptr = memory_manager.GetPointer(gpu_addr);
  50. return ConstBufferUpload(host_ptr, size);
  51. } else {
  52. staging_buffer.resize(size);
  53. memory_manager.ReadBlockUnsafe(gpu_addr, staging_buffer.data(), size);
  54. return ConstBufferUpload(staging_buffer.data(), size);
  55. }
  56. } else {
  57. if (memory_manager.IsGranularRange(gpu_addr, size)) {
  58. const auto host_ptr = memory_manager.GetPointer(gpu_addr);
  59. return StreamBufferUpload(host_ptr, size, alignment);
  60. } else {
  61. staging_buffer.resize(size);
  62. memory_manager.ReadBlockUnsafe(gpu_addr, staging_buffer.data(), size);
  63. return StreamBufferUpload(staging_buffer.data(), size, alignment);
  64. }
  65. }
  66. }
  67. }
  68. auto block = GetBlock(cpu_addr, size);
  69. auto map = MapAddress(block, gpu_addr, cpu_addr, size);
  70. if (is_written) {
  71. map->MarkAsModified(true, GetModifiedTicks());
  72. if (Settings::IsGPULevelHigh() && Settings::values.use_asynchronous_gpu_emulation) {
  73. MarkForAsyncFlush(map);
  74. }
  75. if (!map->IsWritten()) {
  76. map->MarkAsWritten(true);
  77. MarkRegionAsWritten(map->GetStart(), map->GetEnd() - 1);
  78. }
  79. } else {
  80. if (map->IsWritten()) {
  81. WriteBarrier();
  82. }
  83. }
  84. return {ToHandle(block), static_cast<u64>(block->GetOffset(cpu_addr))};
  85. }
  86. /// Uploads from a host memory. Returns the OpenGL buffer where it's located and its offset.
  87. BufferInfo UploadHostMemory(const void* raw_pointer, std::size_t size,
  88. std::size_t alignment = 4) {
  89. std::lock_guard lock{mutex};
  90. return StreamBufferUpload(raw_pointer, size, alignment);
  91. }
  92. void Map(std::size_t max_size) {
  93. std::lock_guard lock{mutex};
  94. std::tie(buffer_ptr, buffer_offset_base, invalidated) = stream_buffer->Map(max_size, 4);
  95. buffer_offset = buffer_offset_base;
  96. }
  97. /// Finishes the upload stream, returns true on bindings invalidation.
  98. bool Unmap() {
  99. std::lock_guard lock{mutex};
  100. stream_buffer->Unmap(buffer_offset - buffer_offset_base);
  101. return std::exchange(invalidated, false);
  102. }
  103. void TickFrame() {
  104. ++epoch;
  105. while (!pending_destruction.empty()) {
  106. // Delay at least 4 frames before destruction.
  107. // This is due to triple buffering happening on some drivers.
  108. static constexpr u64 epochs_to_destroy = 5;
  109. if (pending_destruction.front()->GetEpoch() + epochs_to_destroy > epoch) {
  110. break;
  111. }
  112. pending_destruction.pop_front();
  113. }
  114. }
  115. /// Write any cached resources overlapping the specified region back to memory
  116. void FlushRegion(VAddr addr, std::size_t size) {
  117. std::lock_guard lock{mutex};
  118. std::vector<MapInterval> objects = GetMapsInRange(addr, size);
  119. std::sort(objects.begin(), objects.end(), [](const MapInterval& a, const MapInterval& b) {
  120. return a->GetModificationTick() < b->GetModificationTick();
  121. });
  122. for (auto& object : objects) {
  123. if (object->IsModified() && object->IsRegistered()) {
  124. mutex.unlock();
  125. FlushMap(object);
  126. mutex.lock();
  127. }
  128. }
  129. }
  130. bool MustFlushRegion(VAddr addr, std::size_t size) {
  131. std::lock_guard lock{mutex};
  132. std::vector<MapInterval> objects = GetMapsInRange(addr, size);
  133. return std::any_of(objects.begin(), objects.end(), [](const MapInterval& map) {
  134. return map->IsModified() && map->IsRegistered();
  135. });
  136. }
  137. /// Mark the specified region as being invalidated
  138. void InvalidateRegion(VAddr addr, u64 size) {
  139. std::lock_guard lock{mutex};
  140. std::vector<MapInterval> objects = GetMapsInRange(addr, size);
  141. for (auto& object : objects) {
  142. if (object->IsRegistered()) {
  143. Unregister(object);
  144. }
  145. }
  146. }
  147. void OnCPUWrite(VAddr addr, std::size_t size) {
  148. std::lock_guard lock{mutex};
  149. for (const auto& object : GetMapsInRange(addr, size)) {
  150. if (object->IsMemoryMarked() && object->IsRegistered()) {
  151. Unmark(object);
  152. object->SetSyncPending(true);
  153. marked_for_unregister.emplace_back(object);
  154. }
  155. }
  156. }
  157. void SyncGuestHost() {
  158. std::lock_guard lock{mutex};
  159. for (const auto& object : marked_for_unregister) {
  160. if (object->IsRegistered()) {
  161. object->SetSyncPending(false);
  162. Unregister(object);
  163. }
  164. }
  165. marked_for_unregister.clear();
  166. }
  167. void CommitAsyncFlushes() {
  168. if (uncommitted_flushes) {
  169. auto commit_list = std::make_shared<std::list<MapInterval>>();
  170. for (auto& map : *uncommitted_flushes) {
  171. if (map->IsRegistered() && map->IsModified()) {
  172. // TODO(Blinkhawk): Implement backend asynchronous flushing
  173. // AsyncFlushMap(map)
  174. commit_list->push_back(map);
  175. }
  176. }
  177. if (!commit_list->empty()) {
  178. committed_flushes.push_back(commit_list);
  179. } else {
  180. committed_flushes.emplace_back();
  181. }
  182. } else {
  183. committed_flushes.emplace_back();
  184. }
  185. uncommitted_flushes.reset();
  186. }
  187. bool ShouldWaitAsyncFlushes() const {
  188. if (committed_flushes.empty()) {
  189. return false;
  190. }
  191. return committed_flushes.front() != nullptr;
  192. }
  193. bool HasUncommittedFlushes() const {
  194. return uncommitted_flushes != nullptr;
  195. }
  196. void PopAsyncFlushes() {
  197. if (committed_flushes.empty()) {
  198. return;
  199. }
  200. auto& flush_list = committed_flushes.front();
  201. if (!flush_list) {
  202. committed_flushes.pop_front();
  203. return;
  204. }
  205. for (MapInterval& map : *flush_list) {
  206. if (map->IsRegistered()) {
  207. // TODO(Blinkhawk): Replace this for reading the asynchronous flush
  208. FlushMap(map);
  209. }
  210. }
  211. committed_flushes.pop_front();
  212. }
  213. virtual BufferType GetEmptyBuffer(std::size_t size) = 0;
  214. protected:
  215. explicit BufferCache(VideoCore::RasterizerInterface& rasterizer, Core::System& system,
  216. std::unique_ptr<StreamBuffer> stream_buffer)
  217. : rasterizer{rasterizer}, system{system}, stream_buffer{std::move(stream_buffer)},
  218. stream_buffer_handle{this->stream_buffer->GetHandle()} {}
  219. ~BufferCache() = default;
  220. virtual BufferType ToHandle(const OwnerBuffer& storage) = 0;
  221. virtual void WriteBarrier() = 0;
  222. virtual OwnerBuffer CreateBlock(VAddr cpu_addr, std::size_t size) = 0;
  223. virtual void UploadBlockData(const OwnerBuffer& buffer, std::size_t offset, std::size_t size,
  224. const u8* data) = 0;
  225. virtual void DownloadBlockData(const OwnerBuffer& buffer, std::size_t offset, std::size_t size,
  226. u8* data) = 0;
  227. virtual void CopyBlock(const OwnerBuffer& src, const OwnerBuffer& dst, std::size_t src_offset,
  228. std::size_t dst_offset, std::size_t size) = 0;
  229. virtual BufferInfo ConstBufferUpload(const void* raw_pointer, std::size_t size) {
  230. return {};
  231. }
  232. /// Register an object into the cache
  233. void Register(const MapInterval& new_map, bool inherit_written = false) {
  234. const VAddr cpu_addr = new_map->GetStart();
  235. if (!cpu_addr) {
  236. LOG_CRITICAL(HW_GPU, "Failed to register buffer with unmapped gpu_address 0x{:016x}",
  237. new_map->GetGpuAddress());
  238. return;
  239. }
  240. const std::size_t size = new_map->GetEnd() - new_map->GetStart();
  241. new_map->MarkAsRegistered(true);
  242. const IntervalType interval{new_map->GetStart(), new_map->GetEnd()};
  243. mapped_addresses.insert({interval, new_map});
  244. rasterizer.UpdatePagesCachedCount(cpu_addr, size, 1);
  245. new_map->SetMemoryMarked(true);
  246. if (inherit_written) {
  247. MarkRegionAsWritten(new_map->GetStart(), new_map->GetEnd() - 1);
  248. new_map->MarkAsWritten(true);
  249. }
  250. }
  251. void Unmark(const MapInterval& map) {
  252. if (!map->IsMemoryMarked()) {
  253. return;
  254. }
  255. const std::size_t size = map->GetEnd() - map->GetStart();
  256. rasterizer.UpdatePagesCachedCount(map->GetStart(), size, -1);
  257. map->SetMemoryMarked(false);
  258. }
  259. /// Unregisters an object from the cache
  260. void Unregister(const MapInterval& map) {
  261. Unmark(map);
  262. map->MarkAsRegistered(false);
  263. if (map->IsSyncPending()) {
  264. marked_for_unregister.remove(map);
  265. map->SetSyncPending(false);
  266. }
  267. if (map->IsWritten()) {
  268. UnmarkRegionAsWritten(map->GetStart(), map->GetEnd() - 1);
  269. }
  270. const IntervalType delete_interval{map->GetStart(), map->GetEnd()};
  271. mapped_addresses.erase(delete_interval);
  272. }
  273. private:
  274. MapInterval CreateMap(const VAddr start, const VAddr end, const GPUVAddr gpu_addr) {
  275. return std::make_shared<MapIntervalBase>(start, end, gpu_addr);
  276. }
  277. MapInterval MapAddress(const OwnerBuffer& block, const GPUVAddr gpu_addr, const VAddr cpu_addr,
  278. const std::size_t size) {
  279. std::vector<MapInterval> overlaps = GetMapsInRange(cpu_addr, size);
  280. if (overlaps.empty()) {
  281. auto& memory_manager = system.GPU().MemoryManager();
  282. const VAddr cpu_addr_end = cpu_addr + size;
  283. MapInterval new_map = CreateMap(cpu_addr, cpu_addr_end, gpu_addr);
  284. if (memory_manager.IsGranularRange(gpu_addr, size)) {
  285. u8* host_ptr = memory_manager.GetPointer(gpu_addr);
  286. UploadBlockData(block, block->GetOffset(cpu_addr), size, host_ptr);
  287. } else {
  288. staging_buffer.resize(size);
  289. memory_manager.ReadBlockUnsafe(gpu_addr, staging_buffer.data(), size);
  290. UploadBlockData(block, block->GetOffset(cpu_addr), size, staging_buffer.data());
  291. }
  292. Register(new_map);
  293. return new_map;
  294. }
  295. const VAddr cpu_addr_end = cpu_addr + size;
  296. if (overlaps.size() == 1) {
  297. MapInterval& current_map = overlaps[0];
  298. if (current_map->IsInside(cpu_addr, cpu_addr_end)) {
  299. return current_map;
  300. }
  301. }
  302. VAddr new_start = cpu_addr;
  303. VAddr new_end = cpu_addr_end;
  304. bool write_inheritance = false;
  305. bool modified_inheritance = false;
  306. // Calculate new buffer parameters
  307. for (auto& overlap : overlaps) {
  308. new_start = std::min(overlap->GetStart(), new_start);
  309. new_end = std::max(overlap->GetEnd(), new_end);
  310. write_inheritance |= overlap->IsWritten();
  311. modified_inheritance |= overlap->IsModified();
  312. }
  313. GPUVAddr new_gpu_addr = gpu_addr + new_start - cpu_addr;
  314. for (auto& overlap : overlaps) {
  315. Unregister(overlap);
  316. }
  317. UpdateBlock(block, new_start, new_end, overlaps);
  318. MapInterval new_map = CreateMap(new_start, new_end, new_gpu_addr);
  319. if (modified_inheritance) {
  320. new_map->MarkAsModified(true, GetModifiedTicks());
  321. if (Settings::IsGPULevelHigh() && Settings::values.use_asynchronous_gpu_emulation) {
  322. MarkForAsyncFlush(new_map);
  323. }
  324. }
  325. Register(new_map, write_inheritance);
  326. return new_map;
  327. }
  328. void UpdateBlock(const OwnerBuffer& block, VAddr start, VAddr end,
  329. std::vector<MapInterval>& overlaps) {
  330. const IntervalType base_interval{start, end};
  331. IntervalSet interval_set{};
  332. interval_set.add(base_interval);
  333. for (auto& overlap : overlaps) {
  334. const IntervalType subtract{overlap->GetStart(), overlap->GetEnd()};
  335. interval_set.subtract(subtract);
  336. }
  337. for (auto& interval : interval_set) {
  338. std::size_t size = interval.upper() - interval.lower();
  339. if (size > 0) {
  340. staging_buffer.resize(size);
  341. system.Memory().ReadBlockUnsafe(interval.lower(), staging_buffer.data(), size);
  342. UploadBlockData(block, block->GetOffset(interval.lower()), size,
  343. staging_buffer.data());
  344. }
  345. }
  346. }
  347. std::vector<MapInterval> GetMapsInRange(VAddr addr, std::size_t size) {
  348. if (size == 0) {
  349. return {};
  350. }
  351. std::vector<MapInterval> objects{};
  352. const IntervalType interval{addr, addr + size};
  353. for (auto& pair : boost::make_iterator_range(mapped_addresses.equal_range(interval))) {
  354. objects.push_back(pair.second);
  355. }
  356. return objects;
  357. }
  358. /// Returns a ticks counter used for tracking when cached objects were last modified
  359. u64 GetModifiedTicks() {
  360. return ++modified_ticks;
  361. }
  362. void FlushMap(MapInterval map) {
  363. std::size_t size = map->GetEnd() - map->GetStart();
  364. OwnerBuffer block = blocks[map->GetStart() >> block_page_bits];
  365. staging_buffer.resize(size);
  366. DownloadBlockData(block, block->GetOffset(map->GetStart()), size, staging_buffer.data());
  367. system.Memory().WriteBlockUnsafe(map->GetStart(), staging_buffer.data(), size);
  368. map->MarkAsModified(false, 0);
  369. }
  370. BufferInfo StreamBufferUpload(const void* raw_pointer, std::size_t size,
  371. std::size_t alignment) {
  372. AlignBuffer(alignment);
  373. const std::size_t uploaded_offset = buffer_offset;
  374. std::memcpy(buffer_ptr, raw_pointer, size);
  375. buffer_ptr += size;
  376. buffer_offset += size;
  377. return {stream_buffer_handle, uploaded_offset};
  378. }
  379. void AlignBuffer(std::size_t alignment) {
  380. // Align the offset, not the mapped pointer
  381. const std::size_t offset_aligned = Common::AlignUp(buffer_offset, alignment);
  382. buffer_ptr += offset_aligned - buffer_offset;
  383. buffer_offset = offset_aligned;
  384. }
  385. OwnerBuffer EnlargeBlock(OwnerBuffer buffer) {
  386. const std::size_t old_size = buffer->GetSize();
  387. const std::size_t new_size = old_size + block_page_size;
  388. const VAddr cpu_addr = buffer->GetCpuAddr();
  389. OwnerBuffer new_buffer = CreateBlock(cpu_addr, new_size);
  390. CopyBlock(buffer, new_buffer, 0, 0, old_size);
  391. buffer->SetEpoch(epoch);
  392. pending_destruction.push_back(buffer);
  393. const VAddr cpu_addr_end = cpu_addr + new_size - 1;
  394. u64 page_start = cpu_addr >> block_page_bits;
  395. const u64 page_end = cpu_addr_end >> block_page_bits;
  396. while (page_start <= page_end) {
  397. blocks[page_start] = new_buffer;
  398. ++page_start;
  399. }
  400. return new_buffer;
  401. }
  402. OwnerBuffer MergeBlocks(OwnerBuffer first, OwnerBuffer second) {
  403. const std::size_t size_1 = first->GetSize();
  404. const std::size_t size_2 = second->GetSize();
  405. const VAddr first_addr = first->GetCpuAddr();
  406. const VAddr second_addr = second->GetCpuAddr();
  407. const VAddr new_addr = std::min(first_addr, second_addr);
  408. const std::size_t new_size = size_1 + size_2;
  409. OwnerBuffer new_buffer = CreateBlock(new_addr, new_size);
  410. CopyBlock(first, new_buffer, 0, new_buffer->GetOffset(first_addr), size_1);
  411. CopyBlock(second, new_buffer, 0, new_buffer->GetOffset(second_addr), size_2);
  412. first->SetEpoch(epoch);
  413. second->SetEpoch(epoch);
  414. pending_destruction.push_back(first);
  415. pending_destruction.push_back(second);
  416. const VAddr cpu_addr_end = new_addr + new_size - 1;
  417. u64 page_start = new_addr >> block_page_bits;
  418. const u64 page_end = cpu_addr_end >> block_page_bits;
  419. while (page_start <= page_end) {
  420. blocks[page_start] = new_buffer;
  421. ++page_start;
  422. }
  423. return new_buffer;
  424. }
  425. OwnerBuffer GetBlock(const VAddr cpu_addr, const std::size_t size) {
  426. OwnerBuffer found;
  427. const VAddr cpu_addr_end = cpu_addr + size - 1;
  428. u64 page_start = cpu_addr >> block_page_bits;
  429. const u64 page_end = cpu_addr_end >> block_page_bits;
  430. while (page_start <= page_end) {
  431. auto it = blocks.find(page_start);
  432. if (it == blocks.end()) {
  433. if (found) {
  434. found = EnlargeBlock(found);
  435. } else {
  436. const VAddr start_addr = (page_start << block_page_bits);
  437. found = CreateBlock(start_addr, block_page_size);
  438. blocks[page_start] = found;
  439. }
  440. } else {
  441. if (found) {
  442. if (found == it->second) {
  443. ++page_start;
  444. continue;
  445. }
  446. found = MergeBlocks(found, it->second);
  447. } else {
  448. found = it->second;
  449. }
  450. }
  451. ++page_start;
  452. }
  453. return found;
  454. }
  455. void MarkRegionAsWritten(const VAddr start, const VAddr end) {
  456. u64 page_start = start >> write_page_bit;
  457. const u64 page_end = end >> write_page_bit;
  458. while (page_start <= page_end) {
  459. auto it = written_pages.find(page_start);
  460. if (it != written_pages.end()) {
  461. it->second = it->second + 1;
  462. } else {
  463. written_pages[page_start] = 1;
  464. }
  465. page_start++;
  466. }
  467. }
  468. void UnmarkRegionAsWritten(const VAddr start, const VAddr end) {
  469. u64 page_start = start >> write_page_bit;
  470. const u64 page_end = end >> write_page_bit;
  471. while (page_start <= page_end) {
  472. auto it = written_pages.find(page_start);
  473. if (it != written_pages.end()) {
  474. if (it->second > 1) {
  475. it->second = it->second - 1;
  476. } else {
  477. written_pages.erase(it);
  478. }
  479. }
  480. page_start++;
  481. }
  482. }
  483. bool IsRegionWritten(const VAddr start, const VAddr end) const {
  484. u64 page_start = start >> write_page_bit;
  485. const u64 page_end = end >> write_page_bit;
  486. while (page_start <= page_end) {
  487. if (written_pages.count(page_start) > 0) {
  488. return true;
  489. }
  490. page_start++;
  491. }
  492. return false;
  493. }
  494. void MarkForAsyncFlush(MapInterval& map) {
  495. if (!uncommitted_flushes) {
  496. uncommitted_flushes = std::make_shared<std::unordered_set<MapInterval>>();
  497. }
  498. uncommitted_flushes->insert(map);
  499. }
  500. VideoCore::RasterizerInterface& rasterizer;
  501. Core::System& system;
  502. std::unique_ptr<StreamBuffer> stream_buffer;
  503. BufferType stream_buffer_handle{};
  504. bool invalidated = false;
  505. u8* buffer_ptr = nullptr;
  506. u64 buffer_offset = 0;
  507. u64 buffer_offset_base = 0;
  508. using IntervalSet = boost::icl::interval_set<VAddr>;
  509. using IntervalCache = boost::icl::interval_map<VAddr, MapInterval>;
  510. using IntervalType = typename IntervalCache::interval_type;
  511. IntervalCache mapped_addresses;
  512. static constexpr u64 write_page_bit = 11;
  513. std::unordered_map<u64, u32> written_pages;
  514. static constexpr u64 block_page_bits = 21;
  515. static constexpr u64 block_page_size = 1ULL << block_page_bits;
  516. std::unordered_map<u64, OwnerBuffer> blocks;
  517. std::list<OwnerBuffer> pending_destruction;
  518. u64 epoch = 0;
  519. u64 modified_ticks = 0;
  520. std::vector<u8> staging_buffer;
  521. std::list<MapInterval> marked_for_unregister;
  522. std::shared_ptr<std::unordered_set<MapInterval>> uncommitted_flushes{};
  523. std::list<std::shared_ptr<std::list<MapInterval>>> committed_flushes;
  524. std::recursive_mutex mutex;
  525. };
  526. } // namespace VideoCommon