info_updater.cpp 20 KB

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  1. // SPDX-FileCopyrightText: Copyright 2020 yuzu Emulator Project
  2. // SPDX-License-Identifier: GPL-2.0-or-later
  3. #include "audio_core/behavior_info.h"
  4. #include "audio_core/effect_context.h"
  5. #include "audio_core/info_updater.h"
  6. #include "audio_core/memory_pool.h"
  7. #include "audio_core/mix_context.h"
  8. #include "audio_core/sink_context.h"
  9. #include "audio_core/splitter_context.h"
  10. #include "audio_core/voice_context.h"
  11. #include "common/logging/log.h"
  12. namespace AudioCore {
  13. InfoUpdater::InfoUpdater(const std::vector<u8>& in_params_, std::vector<u8>& out_params_,
  14. BehaviorInfo& behavior_info_)
  15. : in_params(in_params_), out_params(out_params_), behavior_info(behavior_info_) {
  16. ASSERT(
  17. AudioCommon::CanConsumeBuffer(in_params.size(), 0, sizeof(AudioCommon::UpdateDataHeader)));
  18. std::memcpy(&input_header, in_params.data(), sizeof(AudioCommon::UpdateDataHeader));
  19. output_header.total_size = sizeof(AudioCommon::UpdateDataHeader);
  20. }
  21. InfoUpdater::~InfoUpdater() = default;
  22. bool InfoUpdater::UpdateBehaviorInfo(BehaviorInfo& in_behavior_info) {
  23. if (input_header.size.behavior != sizeof(BehaviorInfo::InParams)) {
  24. LOG_ERROR(Audio, "Behavior info is an invalid size, expecting 0x{:X} but got 0x{:X}",
  25. sizeof(BehaviorInfo::InParams), input_header.size.behavior);
  26. return false;
  27. }
  28. if (!AudioCommon::CanConsumeBuffer(in_params.size(), input_offset,
  29. sizeof(BehaviorInfo::InParams))) {
  30. LOG_ERROR(Audio, "Buffer is an invalid size!");
  31. return false;
  32. }
  33. BehaviorInfo::InParams behavior_in{};
  34. std::memcpy(&behavior_in, in_params.data() + input_offset, sizeof(BehaviorInfo::InParams));
  35. input_offset += sizeof(BehaviorInfo::InParams);
  36. // Make sure it's an audio revision we can actually support
  37. if (!AudioCommon::IsValidRevision(behavior_in.revision)) {
  38. LOG_ERROR(Audio, "Invalid input revision, revision=0x{:08X}", behavior_in.revision);
  39. return false;
  40. }
  41. // Make sure that our behavior info revision matches the input
  42. if (in_behavior_info.GetUserRevision() != behavior_in.revision) {
  43. LOG_ERROR(Audio,
  44. "User revision differs from input revision, expecting 0x{:08X} but got 0x{:08X}",
  45. in_behavior_info.GetUserRevision(), behavior_in.revision);
  46. return false;
  47. }
  48. // Update behavior info flags
  49. in_behavior_info.ClearError();
  50. in_behavior_info.UpdateFlags(behavior_in.flags);
  51. return true;
  52. }
  53. bool InfoUpdater::UpdateMemoryPools(std::vector<ServerMemoryPoolInfo>& memory_pool_info) {
  54. const auto memory_pool_count = memory_pool_info.size();
  55. const auto total_memory_pool_in = sizeof(ServerMemoryPoolInfo::InParams) * memory_pool_count;
  56. const auto total_memory_pool_out = sizeof(ServerMemoryPoolInfo::OutParams) * memory_pool_count;
  57. if (input_header.size.memory_pool != total_memory_pool_in) {
  58. LOG_ERROR(Audio, "Memory pools are an invalid size, expecting 0x{:X} but got 0x{:X}",
  59. total_memory_pool_in, input_header.size.memory_pool);
  60. return false;
  61. }
  62. if (!AudioCommon::CanConsumeBuffer(in_params.size(), input_offset, total_memory_pool_in)) {
  63. LOG_ERROR(Audio, "Buffer is an invalid size!");
  64. return false;
  65. }
  66. std::vector<ServerMemoryPoolInfo::InParams> mempool_in(memory_pool_count);
  67. std::vector<ServerMemoryPoolInfo::OutParams> mempool_out(memory_pool_count);
  68. std::memcpy(mempool_in.data(), in_params.data() + input_offset, total_memory_pool_in);
  69. input_offset += total_memory_pool_in;
  70. // Update our memory pools
  71. for (std::size_t i = 0; i < memory_pool_count; i++) {
  72. if (!memory_pool_info[i].Update(mempool_in[i], mempool_out[i])) {
  73. LOG_ERROR(Audio, "Failed to update memory pool {}!", i);
  74. return false;
  75. }
  76. }
  77. if (!AudioCommon::CanConsumeBuffer(out_params.size(), output_offset,
  78. sizeof(BehaviorInfo::InParams))) {
  79. LOG_ERROR(Audio, "Buffer is an invalid size!");
  80. return false;
  81. }
  82. std::memcpy(out_params.data() + output_offset, mempool_out.data(), total_memory_pool_out);
  83. output_offset += total_memory_pool_out;
  84. output_header.size.memory_pool = static_cast<u32>(total_memory_pool_out);
  85. return true;
  86. }
  87. bool InfoUpdater::UpdateVoiceChannelResources(VoiceContext& voice_context) {
  88. const auto voice_count = voice_context.GetVoiceCount();
  89. const auto voice_size = voice_count * sizeof(VoiceChannelResource::InParams);
  90. std::vector<VoiceChannelResource::InParams> resources_in(voice_count);
  91. if (input_header.size.voice_channel_resource != voice_size) {
  92. LOG_ERROR(Audio, "VoiceChannelResource is an invalid size, expecting 0x{:X} but got 0x{:X}",
  93. voice_size, input_header.size.voice_channel_resource);
  94. return false;
  95. }
  96. if (!AudioCommon::CanConsumeBuffer(in_params.size(), input_offset, voice_size)) {
  97. LOG_ERROR(Audio, "Buffer is an invalid size!");
  98. return false;
  99. }
  100. std::memcpy(resources_in.data(), in_params.data() + input_offset, voice_size);
  101. input_offset += voice_size;
  102. // Update our channel resources
  103. for (std::size_t i = 0; i < voice_count; i++) {
  104. // Grab our channel resource
  105. auto& resource = voice_context.GetChannelResource(i);
  106. resource.Update(resources_in[i]);
  107. }
  108. return true;
  109. }
  110. bool InfoUpdater::UpdateVoices(VoiceContext& voice_context,
  111. [[maybe_unused]] std::vector<ServerMemoryPoolInfo>& memory_pool_info,
  112. [[maybe_unused]] VAddr audio_codec_dsp_addr) {
  113. const auto voice_count = voice_context.GetVoiceCount();
  114. std::vector<VoiceInfo::InParams> voice_in(voice_count);
  115. std::vector<VoiceInfo::OutParams> voice_out(voice_count);
  116. const auto voice_in_size = voice_count * sizeof(VoiceInfo::InParams);
  117. const auto voice_out_size = voice_count * sizeof(VoiceInfo::OutParams);
  118. if (input_header.size.voice != voice_in_size) {
  119. LOG_ERROR(Audio, "Voices are an invalid size, expecting 0x{:X} but got 0x{:X}",
  120. voice_in_size, input_header.size.voice);
  121. return false;
  122. }
  123. if (!AudioCommon::CanConsumeBuffer(in_params.size(), input_offset, voice_in_size)) {
  124. LOG_ERROR(Audio, "Buffer is an invalid size!");
  125. return false;
  126. }
  127. std::memcpy(voice_in.data(), in_params.data() + input_offset, voice_in_size);
  128. input_offset += voice_in_size;
  129. // Set all voices to not be in use
  130. for (std::size_t i = 0; i < voice_count; i++) {
  131. voice_context.GetInfo(i).GetInParams().in_use = false;
  132. }
  133. // Update our voices
  134. for (std::size_t i = 0; i < voice_count; i++) {
  135. auto& voice_in_params = voice_in[i];
  136. const auto channel_count = static_cast<std::size_t>(voice_in_params.channel_count);
  137. // Skip if it's not currently in use
  138. if (!voice_in_params.is_in_use) {
  139. continue;
  140. }
  141. // Voice states for each channel
  142. std::array<VoiceState*, AudioCommon::MAX_CHANNEL_COUNT> voice_states{};
  143. ASSERT(static_cast<std::size_t>(voice_in_params.id) < voice_count);
  144. // Grab our current voice info
  145. auto& voice_info = voice_context.GetInfo(static_cast<std::size_t>(voice_in_params.id));
  146. ASSERT(channel_count <= AudioCommon::MAX_CHANNEL_COUNT);
  147. // Get all our channel voice states
  148. for (std::size_t channel = 0; channel < channel_count; channel++) {
  149. voice_states[channel] =
  150. &voice_context.GetState(voice_in_params.voice_channel_resource_ids[channel]);
  151. }
  152. if (voice_in_params.is_new) {
  153. // Default our values for our voice
  154. voice_info.Initialize();
  155. // Zero out our voice states
  156. for (std::size_t channel = 0; channel < channel_count; channel++) {
  157. std::memset(voice_states[channel], 0, sizeof(VoiceState));
  158. }
  159. }
  160. // Update our voice
  161. voice_info.UpdateParameters(voice_in_params, behavior_info);
  162. // TODO(ogniK): Handle mapping errors with behavior info based on in params response
  163. // Update our wave buffers
  164. voice_info.UpdateWaveBuffers(voice_in_params, voice_states, behavior_info);
  165. voice_info.WriteOutStatus(voice_out[i], voice_in_params, voice_states);
  166. }
  167. if (!AudioCommon::CanConsumeBuffer(out_params.size(), output_offset, voice_out_size)) {
  168. LOG_ERROR(Audio, "Buffer is an invalid size!");
  169. return false;
  170. }
  171. std::memcpy(out_params.data() + output_offset, voice_out.data(), voice_out_size);
  172. output_offset += voice_out_size;
  173. output_header.size.voice = static_cast<u32>(voice_out_size);
  174. return true;
  175. }
  176. bool InfoUpdater::UpdateEffects(EffectContext& effect_context, bool is_active) {
  177. const auto effect_count = effect_context.GetCount();
  178. std::vector<EffectInfo::InParams> effect_in(effect_count);
  179. std::vector<EffectInfo::OutParams> effect_out(effect_count);
  180. const auto total_effect_in = effect_count * sizeof(EffectInfo::InParams);
  181. const auto total_effect_out = effect_count * sizeof(EffectInfo::OutParams);
  182. if (input_header.size.effect != total_effect_in) {
  183. LOG_ERROR(Audio, "Effects are an invalid size, expecting 0x{:X} but got 0x{:X}",
  184. total_effect_in, input_header.size.effect);
  185. return false;
  186. }
  187. if (!AudioCommon::CanConsumeBuffer(in_params.size(), input_offset, total_effect_in)) {
  188. LOG_ERROR(Audio, "Buffer is an invalid size!");
  189. return false;
  190. }
  191. std::memcpy(effect_in.data(), in_params.data() + input_offset, total_effect_in);
  192. input_offset += total_effect_in;
  193. // Update effects
  194. for (std::size_t i = 0; i < effect_count; i++) {
  195. auto* info = effect_context.GetInfo(i);
  196. if (effect_in[i].type != info->GetType()) {
  197. info = effect_context.RetargetEffect(i, effect_in[i].type);
  198. }
  199. info->Update(effect_in[i]);
  200. if ((!is_active && info->GetUsage() != UsageState::Initialized) ||
  201. info->GetUsage() == UsageState::Stopped) {
  202. effect_out[i].status = UsageStatus::Removed;
  203. } else {
  204. effect_out[i].status = UsageStatus::Used;
  205. }
  206. }
  207. if (!AudioCommon::CanConsumeBuffer(out_params.size(), output_offset, total_effect_out)) {
  208. LOG_ERROR(Audio, "Buffer is an invalid size!");
  209. return false;
  210. }
  211. std::memcpy(out_params.data() + output_offset, effect_out.data(), total_effect_out);
  212. output_offset += total_effect_out;
  213. output_header.size.effect = static_cast<u32>(total_effect_out);
  214. return true;
  215. }
  216. bool InfoUpdater::UpdateSplitterInfo(SplitterContext& splitter_context) {
  217. std::size_t start_offset = input_offset;
  218. std::size_t bytes_read{};
  219. // Update splitter context
  220. if (!splitter_context.Update(in_params, input_offset, bytes_read)) {
  221. LOG_ERROR(Audio, "Failed to update splitter context!");
  222. return false;
  223. }
  224. const auto consumed = input_offset - start_offset;
  225. if (input_header.size.splitter != consumed) {
  226. LOG_ERROR(Audio, "Splitters is an invalid size, expecting 0x{:X} but got 0x{:X}",
  227. bytes_read, input_header.size.splitter);
  228. return false;
  229. }
  230. return true;
  231. }
  232. Result InfoUpdater::UpdateMixes(MixContext& mix_context, std::size_t mix_buffer_count,
  233. SplitterContext& splitter_context, EffectContext& effect_context) {
  234. std::vector<MixInfo::InParams> mix_in_params;
  235. if (!behavior_info.IsMixInParameterDirtyOnlyUpdateSupported()) {
  236. // If we're not dirty, get ALL mix in parameters
  237. const auto context_mix_count = mix_context.GetCount();
  238. const auto total_mix_in = context_mix_count * sizeof(MixInfo::InParams);
  239. if (input_header.size.mixer != total_mix_in) {
  240. LOG_ERROR(Audio, "Mixer is an invalid size, expecting 0x{:X} but got 0x{:X}",
  241. total_mix_in, input_header.size.mixer);
  242. return AudioCommon::Audren::ERR_INVALID_PARAMETERS;
  243. }
  244. if (!AudioCommon::CanConsumeBuffer(in_params.size(), input_offset, total_mix_in)) {
  245. LOG_ERROR(Audio, "Buffer is an invalid size!");
  246. return AudioCommon::Audren::ERR_INVALID_PARAMETERS;
  247. }
  248. mix_in_params.resize(context_mix_count);
  249. std::memcpy(mix_in_params.data(), in_params.data() + input_offset, total_mix_in);
  250. input_offset += total_mix_in;
  251. } else {
  252. // Only update the "dirty" mixes
  253. MixInfo::DirtyHeader dirty_header{};
  254. if (!AudioCommon::CanConsumeBuffer(in_params.size(), input_offset,
  255. sizeof(MixInfo::DirtyHeader))) {
  256. LOG_ERROR(Audio, "Buffer is an invalid size!");
  257. return AudioCommon::Audren::ERR_INVALID_PARAMETERS;
  258. }
  259. std::memcpy(&dirty_header, in_params.data() + input_offset, sizeof(MixInfo::DirtyHeader));
  260. input_offset += sizeof(MixInfo::DirtyHeader);
  261. const auto total_mix_in =
  262. dirty_header.mixer_count * sizeof(MixInfo::InParams) + sizeof(MixInfo::DirtyHeader);
  263. if (input_header.size.mixer != total_mix_in) {
  264. LOG_ERROR(Audio, "Mixer is an invalid size, expecting 0x{:X} but got 0x{:X}",
  265. total_mix_in, input_header.size.mixer);
  266. return AudioCommon::Audren::ERR_INVALID_PARAMETERS;
  267. }
  268. if (dirty_header.mixer_count != 0) {
  269. mix_in_params.resize(dirty_header.mixer_count);
  270. std::memcpy(mix_in_params.data(), in_params.data() + input_offset,
  271. mix_in_params.size() * sizeof(MixInfo::InParams));
  272. input_offset += mix_in_params.size() * sizeof(MixInfo::InParams);
  273. }
  274. }
  275. // Get our total input count
  276. const auto mix_count = mix_in_params.size();
  277. if (!behavior_info.IsMixInParameterDirtyOnlyUpdateSupported()) {
  278. // Only verify our buffer count if we're not dirty
  279. std::size_t total_buffer_count{};
  280. for (std::size_t i = 0; i < mix_count; i++) {
  281. const auto& in = mix_in_params[i];
  282. total_buffer_count += in.buffer_count;
  283. if (static_cast<std::size_t>(in.dest_mix_id) > mix_count &&
  284. in.dest_mix_id != AudioCommon::NO_MIX && in.mix_id != AudioCommon::FINAL_MIX) {
  285. LOG_ERROR(
  286. Audio,
  287. "Invalid mix destination, mix_id={:X}, dest_mix_id={:X}, mix_buffer_count={:X}",
  288. in.mix_id, in.dest_mix_id, mix_buffer_count);
  289. return AudioCommon::Audren::ERR_INVALID_PARAMETERS;
  290. }
  291. }
  292. if (total_buffer_count > mix_buffer_count) {
  293. LOG_ERROR(Audio,
  294. "Too many mix buffers used! mix_buffer_count={:X}, requesting_buffers={:X}",
  295. mix_buffer_count, total_buffer_count);
  296. return AudioCommon::Audren::ERR_INVALID_PARAMETERS;
  297. }
  298. }
  299. if (mix_buffer_count == 0) {
  300. LOG_ERROR(Audio, "No mix buffers!");
  301. return AudioCommon::Audren::ERR_INVALID_PARAMETERS;
  302. }
  303. bool should_sort = false;
  304. for (std::size_t i = 0; i < mix_count; i++) {
  305. const auto& mix_in = mix_in_params[i];
  306. std::size_t target_mix{};
  307. if (behavior_info.IsMixInParameterDirtyOnlyUpdateSupported()) {
  308. target_mix = mix_in.mix_id;
  309. } else {
  310. // Non dirty supported games just use i instead of the actual mix_id
  311. target_mix = i;
  312. }
  313. auto& mix_info = mix_context.GetInfo(target_mix);
  314. auto& mix_info_params = mix_info.GetInParams();
  315. if (mix_info_params.in_use != mix_in.in_use) {
  316. mix_info_params.in_use = mix_in.in_use;
  317. mix_info.ResetEffectProcessingOrder();
  318. should_sort = true;
  319. }
  320. if (mix_in.in_use) {
  321. should_sort |= mix_info.Update(mix_context.GetEdgeMatrix(), mix_in, behavior_info,
  322. splitter_context, effect_context);
  323. }
  324. }
  325. if (should_sort && behavior_info.IsSplitterSupported()) {
  326. // Sort our splitter data
  327. if (!mix_context.TsortInfo(splitter_context)) {
  328. return AudioCommon::Audren::ERR_SPLITTER_SORT_FAILED;
  329. }
  330. }
  331. // TODO(ogniK): Sort when splitter is suppoorted
  332. return ResultSuccess;
  333. }
  334. bool InfoUpdater::UpdateSinks(SinkContext& sink_context) {
  335. const auto sink_count = sink_context.GetCount();
  336. std::vector<SinkInfo::InParams> sink_in_params(sink_count);
  337. const auto total_sink_in = sink_count * sizeof(SinkInfo::InParams);
  338. if (input_header.size.sink != total_sink_in) {
  339. LOG_ERROR(Audio, "Sinks are an invalid size, expecting 0x{:X} but got 0x{:X}",
  340. total_sink_in, input_header.size.effect);
  341. return false;
  342. }
  343. if (!AudioCommon::CanConsumeBuffer(in_params.size(), input_offset, total_sink_in)) {
  344. LOG_ERROR(Audio, "Buffer is an invalid size!");
  345. return false;
  346. }
  347. std::memcpy(sink_in_params.data(), in_params.data() + input_offset, total_sink_in);
  348. input_offset += total_sink_in;
  349. // TODO(ogniK): Properly update sinks
  350. if (!sink_in_params.empty()) {
  351. sink_context.UpdateMainSink(sink_in_params[0]);
  352. }
  353. output_header.size.sink = static_cast<u32>(0x20 * sink_count);
  354. output_offset += 0x20 * sink_count;
  355. return true;
  356. }
  357. bool InfoUpdater::UpdatePerformanceBuffer() {
  358. output_header.size.performance = 0x10;
  359. output_offset += 0x10;
  360. return true;
  361. }
  362. bool InfoUpdater::UpdateErrorInfo([[maybe_unused]] BehaviorInfo& in_behavior_info) {
  363. const auto total_beahvior_info_out = sizeof(BehaviorInfo::OutParams);
  364. if (!AudioCommon::CanConsumeBuffer(out_params.size(), output_offset, total_beahvior_info_out)) {
  365. LOG_ERROR(Audio, "Buffer is an invalid size!");
  366. return false;
  367. }
  368. BehaviorInfo::OutParams behavior_info_out{};
  369. behavior_info.CopyErrorInfo(behavior_info_out);
  370. std::memcpy(out_params.data() + output_offset, &behavior_info_out, total_beahvior_info_out);
  371. output_offset += total_beahvior_info_out;
  372. output_header.size.behavior = total_beahvior_info_out;
  373. return true;
  374. }
  375. struct RendererInfo {
  376. u64_le elasped_frame_count{};
  377. INSERT_PADDING_WORDS(2);
  378. };
  379. static_assert(sizeof(RendererInfo) == 0x10, "RendererInfo is an invalid size");
  380. bool InfoUpdater::UpdateRendererInfo(std::size_t elapsed_frame_count) {
  381. const auto total_renderer_info_out = sizeof(RendererInfo);
  382. if (!AudioCommon::CanConsumeBuffer(out_params.size(), output_offset, total_renderer_info_out)) {
  383. LOG_ERROR(Audio, "Buffer is an invalid size!");
  384. return false;
  385. }
  386. RendererInfo out{};
  387. out.elasped_frame_count = elapsed_frame_count;
  388. std::memcpy(out_params.data() + output_offset, &out, total_renderer_info_out);
  389. output_offset += total_renderer_info_out;
  390. output_header.size.render_info = total_renderer_info_out;
  391. return true;
  392. }
  393. bool InfoUpdater::CheckConsumedSize() const {
  394. if (output_offset != out_params.size()) {
  395. LOG_ERROR(Audio, "Output is not consumed! Consumed {}, but requires {}. {} bytes remaining",
  396. output_offset, out_params.size(), out_params.size() - output_offset);
  397. return false;
  398. }
  399. /*if (input_offset != in_params.size()) {
  400. LOG_ERROR(Audio, "Input is not consumed!");
  401. return false;
  402. }*/
  403. return true;
  404. }
  405. bool InfoUpdater::WriteOutputHeader() {
  406. if (!AudioCommon::CanConsumeBuffer(out_params.size(), 0,
  407. sizeof(AudioCommon::UpdateDataHeader))) {
  408. LOG_ERROR(Audio, "Buffer is an invalid size!");
  409. return false;
  410. }
  411. output_header.revision = AudioCommon::CURRENT_PROCESS_REVISION;
  412. const auto& sz = output_header.size;
  413. output_header.total_size += sz.behavior + sz.memory_pool + sz.voice +
  414. sz.voice_channel_resource + sz.effect + sz.mixer + sz.sink +
  415. sz.performance + sz.splitter + sz.render_info;
  416. std::memcpy(out_params.data(), &output_header, sizeof(AudioCommon::UpdateDataHeader));
  417. return true;
  418. }
  419. } // namespace AudioCore