vi.cpp 42 KB

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  1. // Copyright 2018 yuzu emulator team
  2. // Licensed under GPLv2 or any later version
  3. // Refer to the license.txt file included.
  4. #include <algorithm>
  5. #include <array>
  6. #include <cstring>
  7. #include <memory>
  8. #include <optional>
  9. #include <type_traits>
  10. #include <utility>
  11. #include "common/alignment.h"
  12. #include "common/assert.h"
  13. #include "common/common_funcs.h"
  14. #include "common/logging/log.h"
  15. #include "common/math_util.h"
  16. #include "common/swap.h"
  17. #include "core/core_timing.h"
  18. #include "core/hle/ipc_helpers.h"
  19. #include "core/hle/kernel/readable_event.h"
  20. #include "core/hle/kernel/thread.h"
  21. #include "core/hle/kernel/writable_event.h"
  22. #include "core/hle/service/nvdrv/nvdrv.h"
  23. #include "core/hle/service/nvflinger/buffer_queue.h"
  24. #include "core/hle/service/nvflinger/nvflinger.h"
  25. #include "core/hle/service/vi/vi.h"
  26. #include "core/hle/service/vi/vi_m.h"
  27. #include "core/hle/service/vi/vi_s.h"
  28. #include "core/hle/service/vi/vi_u.h"
  29. #include "core/settings.h"
  30. namespace Service::VI {
  31. constexpr ResultCode ERR_OPERATION_FAILED{ErrorModule::VI, 1};
  32. constexpr ResultCode ERR_UNSUPPORTED{ErrorModule::VI, 6};
  33. struct DisplayInfo {
  34. /// The name of this particular display.
  35. char display_name[0x40]{"Default"};
  36. /// Whether or not the display has a limited number of layers.
  37. u8 has_limited_layers{1};
  38. INSERT_PADDING_BYTES(7){};
  39. /// Indicates the total amount of layers supported by the display.
  40. /// @note This is only valid if has_limited_layers is set.
  41. u64 max_layers{1};
  42. /// Maximum width in pixels.
  43. u64 width{1920};
  44. /// Maximum height in pixels.
  45. u64 height{1080};
  46. };
  47. static_assert(sizeof(DisplayInfo) == 0x60, "DisplayInfo has wrong size");
  48. class Parcel {
  49. public:
  50. // This default size was chosen arbitrarily.
  51. static constexpr std::size_t DefaultBufferSize = 0x40;
  52. Parcel() : buffer(DefaultBufferSize) {}
  53. explicit Parcel(std::vector<u8> data) : buffer(std::move(data)) {}
  54. virtual ~Parcel() = default;
  55. template <typename T>
  56. T Read() {
  57. static_assert(std::is_trivially_copyable_v<T>, "T must be trivially copyable.");
  58. ASSERT(read_index + sizeof(T) <= buffer.size());
  59. T val;
  60. std::memcpy(&val, buffer.data() + read_index, sizeof(T));
  61. read_index += sizeof(T);
  62. read_index = Common::AlignUp(read_index, 4);
  63. return val;
  64. }
  65. template <typename T>
  66. T ReadUnaligned() {
  67. static_assert(std::is_trivially_copyable_v<T>, "T must be trivially copyable.");
  68. ASSERT(read_index + sizeof(T) <= buffer.size());
  69. T val;
  70. std::memcpy(&val, buffer.data() + read_index, sizeof(T));
  71. read_index += sizeof(T);
  72. return val;
  73. }
  74. std::vector<u8> ReadBlock(std::size_t length) {
  75. ASSERT(read_index + length <= buffer.size());
  76. const u8* const begin = buffer.data() + read_index;
  77. const u8* const end = begin + length;
  78. std::vector<u8> data(begin, end);
  79. read_index += length;
  80. read_index = Common::AlignUp(read_index, 4);
  81. return data;
  82. }
  83. std::u16string ReadInterfaceToken() {
  84. u32 unknown = Read<u32_le>();
  85. u32 length = Read<u32_le>();
  86. std::u16string token{};
  87. for (u32 ch = 0; ch < length + 1; ++ch) {
  88. token.push_back(ReadUnaligned<u16_le>());
  89. }
  90. read_index = Common::AlignUp(read_index, 4);
  91. return token;
  92. }
  93. template <typename T>
  94. void Write(const T& val) {
  95. static_assert(std::is_trivially_copyable_v<T>, "T must be trivially copyable.");
  96. if (buffer.size() < write_index + sizeof(T)) {
  97. buffer.resize(buffer.size() + sizeof(T) + DefaultBufferSize);
  98. }
  99. std::memcpy(buffer.data() + write_index, &val, sizeof(T));
  100. write_index += sizeof(T);
  101. write_index = Common::AlignUp(write_index, 4);
  102. }
  103. template <typename T>
  104. void WriteObject(const T& val) {
  105. static_assert(std::is_trivially_copyable_v<T>, "T must be trivially copyable.");
  106. const u32_le size = static_cast<u32>(sizeof(val));
  107. Write(size);
  108. // TODO(Subv): Support file descriptors.
  109. Write<u32_le>(0); // Fd count.
  110. Write(val);
  111. }
  112. void Deserialize() {
  113. ASSERT(buffer.size() > sizeof(Header));
  114. Header header{};
  115. std::memcpy(&header, buffer.data(), sizeof(Header));
  116. read_index = header.data_offset;
  117. DeserializeData();
  118. }
  119. std::vector<u8> Serialize() {
  120. ASSERT(read_index == 0);
  121. write_index = sizeof(Header);
  122. SerializeData();
  123. Header header{};
  124. header.data_size = static_cast<u32_le>(write_index - sizeof(Header));
  125. header.data_offset = sizeof(Header);
  126. header.objects_size = 4;
  127. header.objects_offset = sizeof(Header) + header.data_size;
  128. std::memcpy(buffer.data(), &header, sizeof(Header));
  129. return buffer;
  130. }
  131. protected:
  132. virtual void SerializeData() {}
  133. virtual void DeserializeData() {}
  134. private:
  135. struct Header {
  136. u32_le data_size;
  137. u32_le data_offset;
  138. u32_le objects_size;
  139. u32_le objects_offset;
  140. };
  141. static_assert(sizeof(Header) == 16, "ParcelHeader has wrong size");
  142. std::vector<u8> buffer;
  143. std::size_t read_index = 0;
  144. std::size_t write_index = 0;
  145. };
  146. class NativeWindow : public Parcel {
  147. public:
  148. explicit NativeWindow(u32 id) {
  149. data.id = id;
  150. }
  151. ~NativeWindow() override = default;
  152. protected:
  153. void SerializeData() override {
  154. Write(data);
  155. }
  156. private:
  157. struct Data {
  158. u32_le magic = 2;
  159. u32_le process_id = 1;
  160. u32_le id;
  161. INSERT_PADDING_WORDS(3);
  162. std::array<u8, 8> dispdrv = {'d', 'i', 's', 'p', 'd', 'r', 'v', '\0'};
  163. INSERT_PADDING_WORDS(2);
  164. };
  165. static_assert(sizeof(Data) == 0x28, "ParcelData has wrong size");
  166. Data data{};
  167. };
  168. class IGBPConnectRequestParcel : public Parcel {
  169. public:
  170. explicit IGBPConnectRequestParcel(std::vector<u8> buffer) : Parcel(std::move(buffer)) {
  171. Deserialize();
  172. }
  173. ~IGBPConnectRequestParcel() override = default;
  174. void DeserializeData() override {
  175. std::u16string token = ReadInterfaceToken();
  176. data = Read<Data>();
  177. }
  178. struct Data {
  179. u32_le unk;
  180. u32_le api;
  181. u32_le producer_controlled_by_app;
  182. };
  183. Data data;
  184. };
  185. class IGBPConnectResponseParcel : public Parcel {
  186. public:
  187. explicit IGBPConnectResponseParcel(u32 width, u32 height) {
  188. data.width = width;
  189. data.height = height;
  190. }
  191. ~IGBPConnectResponseParcel() override = default;
  192. protected:
  193. void SerializeData() override {
  194. Write(data);
  195. }
  196. private:
  197. struct Data {
  198. u32_le width;
  199. u32_le height;
  200. u32_le transform_hint;
  201. u32_le num_pending_buffers;
  202. u32_le status;
  203. };
  204. static_assert(sizeof(Data) == 20, "ParcelData has wrong size");
  205. Data data{};
  206. };
  207. /// Represents a parcel containing one int '0' as its data
  208. /// Used by DetachBuffer and Disconnect
  209. class IGBPEmptyResponseParcel : public Parcel {
  210. protected:
  211. void SerializeData() override {
  212. Write(data);
  213. }
  214. private:
  215. struct Data {
  216. u32_le unk_0;
  217. };
  218. Data data{};
  219. };
  220. class IGBPSetPreallocatedBufferRequestParcel : public Parcel {
  221. public:
  222. explicit IGBPSetPreallocatedBufferRequestParcel(std::vector<u8> buffer)
  223. : Parcel(std::move(buffer)) {
  224. Deserialize();
  225. }
  226. ~IGBPSetPreallocatedBufferRequestParcel() override = default;
  227. void DeserializeData() override {
  228. std::u16string token = ReadInterfaceToken();
  229. data = Read<Data>();
  230. buffer = Read<NVFlinger::IGBPBuffer>();
  231. }
  232. struct Data {
  233. u32_le slot;
  234. INSERT_PADDING_WORDS(1);
  235. u32_le graphic_buffer_length;
  236. INSERT_PADDING_WORDS(1);
  237. };
  238. Data data;
  239. NVFlinger::IGBPBuffer buffer;
  240. };
  241. class IGBPSetPreallocatedBufferResponseParcel : public Parcel {
  242. protected:
  243. void SerializeData() override {
  244. // TODO(Subv): Find out what this means
  245. Write<u32>(0);
  246. }
  247. };
  248. class IGBPDequeueBufferRequestParcel : public Parcel {
  249. public:
  250. explicit IGBPDequeueBufferRequestParcel(std::vector<u8> buffer) : Parcel(std::move(buffer)) {
  251. Deserialize();
  252. }
  253. ~IGBPDequeueBufferRequestParcel() override = default;
  254. void DeserializeData() override {
  255. std::u16string token = ReadInterfaceToken();
  256. data = Read<Data>();
  257. }
  258. struct Data {
  259. u32_le pixel_format;
  260. u32_le width;
  261. u32_le height;
  262. u32_le get_frame_timestamps;
  263. u32_le usage;
  264. };
  265. Data data;
  266. };
  267. struct BufferProducerFence {
  268. u32 is_valid;
  269. std::array<Nvidia::IoctlFence, 4> fences;
  270. };
  271. static_assert(sizeof(BufferProducerFence) == 36, "BufferProducerFence has wrong size");
  272. class IGBPDequeueBufferResponseParcel : public Parcel {
  273. public:
  274. explicit IGBPDequeueBufferResponseParcel(u32 slot) : slot(slot) {}
  275. ~IGBPDequeueBufferResponseParcel() override = default;
  276. protected:
  277. void SerializeData() override {
  278. // TODO(Subv): Find out how this Fence is used.
  279. BufferProducerFence fence = {};
  280. fence.is_valid = 1;
  281. for (auto& fence_ : fence.fences)
  282. fence_.id = -1;
  283. Write(slot);
  284. Write<u32_le>(1);
  285. WriteObject(fence);
  286. Write<u32_le>(0);
  287. }
  288. u32_le slot;
  289. };
  290. class IGBPRequestBufferRequestParcel : public Parcel {
  291. public:
  292. explicit IGBPRequestBufferRequestParcel(std::vector<u8> buffer) : Parcel(std::move(buffer)) {
  293. Deserialize();
  294. }
  295. ~IGBPRequestBufferRequestParcel() override = default;
  296. void DeserializeData() override {
  297. std::u16string token = ReadInterfaceToken();
  298. slot = Read<u32_le>();
  299. }
  300. u32_le slot;
  301. };
  302. class IGBPRequestBufferResponseParcel : public Parcel {
  303. public:
  304. explicit IGBPRequestBufferResponseParcel(NVFlinger::IGBPBuffer buffer) : buffer(buffer) {}
  305. ~IGBPRequestBufferResponseParcel() override = default;
  306. protected:
  307. void SerializeData() override {
  308. // TODO(Subv): Figure out what this value means, writing non-zero here will make libnx
  309. // try to read an IGBPBuffer object from the parcel.
  310. Write<u32_le>(1);
  311. WriteObject(buffer);
  312. Write<u32_le>(0);
  313. }
  314. NVFlinger::IGBPBuffer buffer;
  315. };
  316. class IGBPQueueBufferRequestParcel : public Parcel {
  317. public:
  318. explicit IGBPQueueBufferRequestParcel(std::vector<u8> buffer) : Parcel(std::move(buffer)) {
  319. Deserialize();
  320. }
  321. ~IGBPQueueBufferRequestParcel() override = default;
  322. void DeserializeData() override {
  323. std::u16string token = ReadInterfaceToken();
  324. data = Read<Data>();
  325. }
  326. struct Fence {
  327. u32_le id;
  328. u32_le value;
  329. };
  330. static_assert(sizeof(Fence) == 8, "Fence has wrong size");
  331. struct Data {
  332. u32_le slot;
  333. INSERT_PADDING_WORDS(3);
  334. u32_le timestamp;
  335. s32_le is_auto_timestamp;
  336. s32_le crop_top;
  337. s32_le crop_left;
  338. s32_le crop_right;
  339. s32_le crop_bottom;
  340. s32_le scaling_mode;
  341. NVFlinger::BufferQueue::BufferTransformFlags transform;
  342. u32_le sticky_transform;
  343. INSERT_PADDING_WORDS(2);
  344. u32_le fence_is_valid;
  345. std::array<Fence, 2> fences;
  346. MathUtil::Rectangle<int> GetCropRect() const {
  347. return {crop_left, crop_top, crop_right, crop_bottom};
  348. }
  349. };
  350. static_assert(sizeof(Data) == 80, "ParcelData has wrong size");
  351. Data data;
  352. };
  353. class IGBPQueueBufferResponseParcel : public Parcel {
  354. public:
  355. explicit IGBPQueueBufferResponseParcel(u32 width, u32 height) {
  356. data.width = width;
  357. data.height = height;
  358. }
  359. ~IGBPQueueBufferResponseParcel() override = default;
  360. protected:
  361. void SerializeData() override {
  362. Write(data);
  363. }
  364. private:
  365. struct Data {
  366. u32_le width;
  367. u32_le height;
  368. u32_le transform_hint;
  369. u32_le num_pending_buffers;
  370. u32_le status;
  371. };
  372. static_assert(sizeof(Data) == 20, "ParcelData has wrong size");
  373. Data data{};
  374. };
  375. class IGBPQueryRequestParcel : public Parcel {
  376. public:
  377. explicit IGBPQueryRequestParcel(std::vector<u8> buffer) : Parcel(std::move(buffer)) {
  378. Deserialize();
  379. }
  380. ~IGBPQueryRequestParcel() override = default;
  381. void DeserializeData() override {
  382. std::u16string token = ReadInterfaceToken();
  383. type = Read<u32_le>();
  384. }
  385. u32 type;
  386. };
  387. class IGBPQueryResponseParcel : public Parcel {
  388. public:
  389. explicit IGBPQueryResponseParcel(u32 value) : value(value) {}
  390. ~IGBPQueryResponseParcel() override = default;
  391. protected:
  392. void SerializeData() override {
  393. Write(value);
  394. }
  395. private:
  396. u32_le value;
  397. };
  398. class IHOSBinderDriver final : public ServiceFramework<IHOSBinderDriver> {
  399. public:
  400. explicit IHOSBinderDriver(std::shared_ptr<NVFlinger::NVFlinger> nv_flinger)
  401. : ServiceFramework("IHOSBinderDriver"), nv_flinger(std::move(nv_flinger)) {
  402. static const FunctionInfo functions[] = {
  403. {0, &IHOSBinderDriver::TransactParcel, "TransactParcel"},
  404. {1, &IHOSBinderDriver::AdjustRefcount, "AdjustRefcount"},
  405. {2, &IHOSBinderDriver::GetNativeHandle, "GetNativeHandle"},
  406. {3, &IHOSBinderDriver::TransactParcel, "TransactParcelAuto"},
  407. };
  408. RegisterHandlers(functions);
  409. }
  410. ~IHOSBinderDriver() = default;
  411. private:
  412. enum class TransactionId {
  413. RequestBuffer = 1,
  414. SetBufferCount = 2,
  415. DequeueBuffer = 3,
  416. DetachBuffer = 4,
  417. DetachNextBuffer = 5,
  418. AttachBuffer = 6,
  419. QueueBuffer = 7,
  420. CancelBuffer = 8,
  421. Query = 9,
  422. Connect = 10,
  423. Disconnect = 11,
  424. AllocateBuffers = 13,
  425. SetPreallocatedBuffer = 14
  426. };
  427. void TransactParcel(Kernel::HLERequestContext& ctx) {
  428. IPC::RequestParser rp{ctx};
  429. const u32 id = rp.Pop<u32>();
  430. const auto transaction = static_cast<TransactionId>(rp.Pop<u32>());
  431. const u32 flags = rp.Pop<u32>();
  432. LOG_DEBUG(Service_VI, "called. id=0x{:08X} transaction={:X}, flags=0x{:08X}", id,
  433. static_cast<u32>(transaction), flags);
  434. auto buffer_queue = nv_flinger->GetBufferQueue(id);
  435. if (transaction == TransactionId::Connect) {
  436. IGBPConnectRequestParcel request{ctx.ReadBuffer()};
  437. IGBPConnectResponseParcel response{
  438. static_cast<u32>(static_cast<u32>(DisplayResolution::UndockedWidth) *
  439. Settings::values.resolution_factor),
  440. static_cast<u32>(static_cast<u32>(DisplayResolution::UndockedHeight) *
  441. Settings::values.resolution_factor)};
  442. ctx.WriteBuffer(response.Serialize());
  443. } else if (transaction == TransactionId::SetPreallocatedBuffer) {
  444. IGBPSetPreallocatedBufferRequestParcel request{ctx.ReadBuffer()};
  445. buffer_queue->SetPreallocatedBuffer(request.data.slot, request.buffer);
  446. IGBPSetPreallocatedBufferResponseParcel response{};
  447. ctx.WriteBuffer(response.Serialize());
  448. } else if (transaction == TransactionId::DequeueBuffer) {
  449. IGBPDequeueBufferRequestParcel request{ctx.ReadBuffer()};
  450. const u32 width{request.data.width};
  451. const u32 height{request.data.height};
  452. std::optional<u32> slot = buffer_queue->DequeueBuffer(width, height);
  453. if (slot) {
  454. // Buffer is available
  455. IGBPDequeueBufferResponseParcel response{*slot};
  456. ctx.WriteBuffer(response.Serialize());
  457. } else {
  458. // Wait the current thread until a buffer becomes available
  459. ctx.SleepClientThread(
  460. Kernel::GetCurrentThread(), "IHOSBinderDriver::DequeueBuffer", -1,
  461. [=](Kernel::SharedPtr<Kernel::Thread> thread, Kernel::HLERequestContext& ctx,
  462. Kernel::ThreadWakeupReason reason) {
  463. // Repeat TransactParcel DequeueBuffer when a buffer is available
  464. auto buffer_queue = nv_flinger->GetBufferQueue(id);
  465. std::optional<u32> slot = buffer_queue->DequeueBuffer(width, height);
  466. ASSERT_MSG(slot != std::nullopt, "Could not dequeue buffer.");
  467. IGBPDequeueBufferResponseParcel response{*slot};
  468. ctx.WriteBuffer(response.Serialize());
  469. IPC::ResponseBuilder rb{ctx, 2};
  470. rb.Push(RESULT_SUCCESS);
  471. },
  472. buffer_queue->GetWritableBufferWaitEvent());
  473. }
  474. } else if (transaction == TransactionId::RequestBuffer) {
  475. IGBPRequestBufferRequestParcel request{ctx.ReadBuffer()};
  476. auto& buffer = buffer_queue->RequestBuffer(request.slot);
  477. IGBPRequestBufferResponseParcel response{buffer};
  478. ctx.WriteBuffer(response.Serialize());
  479. } else if (transaction == TransactionId::QueueBuffer) {
  480. IGBPQueueBufferRequestParcel request{ctx.ReadBuffer()};
  481. buffer_queue->QueueBuffer(request.data.slot, request.data.transform,
  482. request.data.GetCropRect());
  483. IGBPQueueBufferResponseParcel response{1280, 720};
  484. ctx.WriteBuffer(response.Serialize());
  485. } else if (transaction == TransactionId::Query) {
  486. IGBPQueryRequestParcel request{ctx.ReadBuffer()};
  487. u32 value =
  488. buffer_queue->Query(static_cast<NVFlinger::BufferQueue::QueryType>(request.type));
  489. IGBPQueryResponseParcel response{value};
  490. ctx.WriteBuffer(response.Serialize());
  491. } else if (transaction == TransactionId::CancelBuffer) {
  492. LOG_CRITICAL(Service_VI, "(STUBBED) called, transaction=CancelBuffer");
  493. } else if (transaction == TransactionId::Disconnect ||
  494. transaction == TransactionId::DetachBuffer) {
  495. const auto buffer = ctx.ReadBuffer();
  496. IGBPEmptyResponseParcel response{};
  497. ctx.WriteBuffer(response.Serialize());
  498. } else {
  499. ASSERT_MSG(false, "Unimplemented");
  500. }
  501. IPC::ResponseBuilder rb{ctx, 2};
  502. rb.Push(RESULT_SUCCESS);
  503. }
  504. void AdjustRefcount(Kernel::HLERequestContext& ctx) {
  505. IPC::RequestParser rp{ctx};
  506. const u32 id = rp.Pop<u32>();
  507. const s32 addval = rp.PopRaw<s32>();
  508. const u32 type = rp.Pop<u32>();
  509. LOG_WARNING(Service_VI, "(STUBBED) called id={}, addval={:08X}, type={:08X}", id, addval,
  510. type);
  511. IPC::ResponseBuilder rb{ctx, 2};
  512. rb.Push(RESULT_SUCCESS);
  513. }
  514. void GetNativeHandle(Kernel::HLERequestContext& ctx) {
  515. IPC::RequestParser rp{ctx};
  516. const u32 id = rp.Pop<u32>();
  517. const u32 unknown = rp.Pop<u32>();
  518. LOG_WARNING(Service_VI, "(STUBBED) called id={}, unknown={:08X}", id, unknown);
  519. const auto buffer_queue = nv_flinger->GetBufferQueue(id);
  520. // TODO(Subv): Find out what this actually is.
  521. IPC::ResponseBuilder rb{ctx, 2, 1};
  522. rb.Push(RESULT_SUCCESS);
  523. rb.PushCopyObjects(buffer_queue->GetBufferWaitEvent());
  524. }
  525. std::shared_ptr<NVFlinger::NVFlinger> nv_flinger;
  526. }; // namespace VI
  527. class ISystemDisplayService final : public ServiceFramework<ISystemDisplayService> {
  528. public:
  529. explicit ISystemDisplayService() : ServiceFramework("ISystemDisplayService") {
  530. static const FunctionInfo functions[] = {
  531. {1200, nullptr, "GetZOrderCountMin"},
  532. {1202, nullptr, "GetZOrderCountMax"},
  533. {1203, nullptr, "GetDisplayLogicalResolution"},
  534. {1204, nullptr, "SetDisplayMagnification"},
  535. {2201, nullptr, "SetLayerPosition"},
  536. {2203, nullptr, "SetLayerSize"},
  537. {2204, nullptr, "GetLayerZ"},
  538. {2205, &ISystemDisplayService::SetLayerZ, "SetLayerZ"},
  539. {2207, &ISystemDisplayService::SetLayerVisibility, "SetLayerVisibility"},
  540. {2209, nullptr, "SetLayerAlpha"},
  541. {2312, nullptr, "CreateStrayLayer"},
  542. {2400, nullptr, "OpenIndirectLayer"},
  543. {2401, nullptr, "CloseIndirectLayer"},
  544. {2402, nullptr, "FlipIndirectLayer"},
  545. {3000, nullptr, "ListDisplayModes"},
  546. {3001, nullptr, "ListDisplayRgbRanges"},
  547. {3002, nullptr, "ListDisplayContentTypes"},
  548. {3200, &ISystemDisplayService::GetDisplayMode, "GetDisplayMode"},
  549. {3201, nullptr, "SetDisplayMode"},
  550. {3202, nullptr, "GetDisplayUnderscan"},
  551. {3203, nullptr, "SetDisplayUnderscan"},
  552. {3204, nullptr, "GetDisplayContentType"},
  553. {3205, nullptr, "SetDisplayContentType"},
  554. {3206, nullptr, "GetDisplayRgbRange"},
  555. {3207, nullptr, "SetDisplayRgbRange"},
  556. {3208, nullptr, "GetDisplayCmuMode"},
  557. {3209, nullptr, "SetDisplayCmuMode"},
  558. {3210, nullptr, "GetDisplayContrastRatio"},
  559. {3211, nullptr, "SetDisplayContrastRatio"},
  560. {3214, nullptr, "GetDisplayGamma"},
  561. {3215, nullptr, "SetDisplayGamma"},
  562. {3216, nullptr, "GetDisplayCmuLuma"},
  563. {3217, nullptr, "SetDisplayCmuLuma"},
  564. {8225, nullptr, "GetSharedBufferMemoryHandleId"},
  565. {8250, nullptr, "OpenSharedLayer"},
  566. {8251, nullptr, "CloseSharedLayer"},
  567. {8252, nullptr, "ConnectSharedLayer"},
  568. {8253, nullptr, "DisconnectSharedLayer"},
  569. {8254, nullptr, "AcquireSharedFrameBuffer"},
  570. {8255, nullptr, "PresentSharedFrameBuffer"},
  571. {8256, nullptr, "GetSharedFrameBufferAcquirableEvent"},
  572. {8257, nullptr, "FillSharedFrameBufferColor"},
  573. {8258, nullptr, "CancelSharedFrameBuffer"},
  574. };
  575. RegisterHandlers(functions);
  576. }
  577. ~ISystemDisplayService() = default;
  578. private:
  579. void SetLayerZ(Kernel::HLERequestContext& ctx) {
  580. IPC::RequestParser rp{ctx};
  581. const u64 layer_id = rp.Pop<u64>();
  582. const u64 z_value = rp.Pop<u64>();
  583. LOG_WARNING(Service_VI, "(STUBBED) called. layer_id=0x{:016X}, z_value=0x{:016X}", layer_id,
  584. z_value);
  585. IPC::ResponseBuilder rb{ctx, 2};
  586. rb.Push(RESULT_SUCCESS);
  587. }
  588. void SetLayerVisibility(Kernel::HLERequestContext& ctx) {
  589. IPC::RequestParser rp{ctx};
  590. const u64 layer_id = rp.Pop<u64>();
  591. const bool visibility = rp.Pop<bool>();
  592. LOG_WARNING(Service_VI, "(STUBBED) called, layer_id=0x{:08X}, visibility={}", layer_id,
  593. visibility);
  594. IPC::ResponseBuilder rb{ctx, 2};
  595. rb.Push(RESULT_SUCCESS);
  596. }
  597. void GetDisplayMode(Kernel::HLERequestContext& ctx) {
  598. LOG_WARNING(Service_VI, "(STUBBED) called");
  599. IPC::ResponseBuilder rb{ctx, 6};
  600. rb.Push(RESULT_SUCCESS);
  601. if (Settings::values.use_docked_mode) {
  602. rb.Push(static_cast<u32>(Service::VI::DisplayResolution::DockedWidth) *
  603. static_cast<u32>(Settings::values.resolution_factor));
  604. rb.Push(static_cast<u32>(Service::VI::DisplayResolution::DockedHeight) *
  605. static_cast<u32>(Settings::values.resolution_factor));
  606. } else {
  607. rb.Push(static_cast<u32>(Service::VI::DisplayResolution::UndockedWidth) *
  608. static_cast<u32>(Settings::values.resolution_factor));
  609. rb.Push(static_cast<u32>(Service::VI::DisplayResolution::UndockedHeight) *
  610. static_cast<u32>(Settings::values.resolution_factor));
  611. }
  612. rb.PushRaw<float>(60.0f); // This wouldn't seem to be correct for 30 fps games.
  613. rb.Push<u32>(0);
  614. }
  615. };
  616. class IManagerDisplayService final : public ServiceFramework<IManagerDisplayService> {
  617. public:
  618. explicit IManagerDisplayService(std::shared_ptr<NVFlinger::NVFlinger> nv_flinger)
  619. : ServiceFramework("IManagerDisplayService"), nv_flinger(std::move(nv_flinger)) {
  620. static const FunctionInfo functions[] = {
  621. {200, nullptr, "AllocateProcessHeapBlock"},
  622. {201, nullptr, "FreeProcessHeapBlock"},
  623. {1020, &IManagerDisplayService::CloseDisplay, "CloseDisplay"},
  624. {1102, nullptr, "GetDisplayResolution"},
  625. {2010, &IManagerDisplayService::CreateManagedLayer, "CreateManagedLayer"},
  626. {2011, nullptr, "DestroyManagedLayer"},
  627. {2050, nullptr, "CreateIndirectLayer"},
  628. {2051, nullptr, "DestroyIndirectLayer"},
  629. {2052, nullptr, "CreateIndirectProducerEndPoint"},
  630. {2053, nullptr, "DestroyIndirectProducerEndPoint"},
  631. {2054, nullptr, "CreateIndirectConsumerEndPoint"},
  632. {2055, nullptr, "DestroyIndirectConsumerEndPoint"},
  633. {2300, nullptr, "AcquireLayerTexturePresentingEvent"},
  634. {2301, nullptr, "ReleaseLayerTexturePresentingEvent"},
  635. {2302, nullptr, "GetDisplayHotplugEvent"},
  636. {2402, nullptr, "GetDisplayHotplugState"},
  637. {2501, nullptr, "GetCompositorErrorInfo"},
  638. {2601, nullptr, "GetDisplayErrorEvent"},
  639. {4201, nullptr, "SetDisplayAlpha"},
  640. {4203, nullptr, "SetDisplayLayerStack"},
  641. {4205, nullptr, "SetDisplayPowerState"},
  642. {4206, nullptr, "SetDefaultDisplay"},
  643. {6000, &IManagerDisplayService::AddToLayerStack, "AddToLayerStack"},
  644. {6001, nullptr, "RemoveFromLayerStack"},
  645. {6002, &IManagerDisplayService::SetLayerVisibility, "SetLayerVisibility"},
  646. {6003, nullptr, "SetLayerConfig"},
  647. {6004, nullptr, "AttachLayerPresentationTracer"},
  648. {6005, nullptr, "DetachLayerPresentationTracer"},
  649. {6006, nullptr, "StartLayerPresentationRecording"},
  650. {6007, nullptr, "StopLayerPresentationRecording"},
  651. {6008, nullptr, "StartLayerPresentationFenceWait"},
  652. {6009, nullptr, "StopLayerPresentationFenceWait"},
  653. {6010, nullptr, "GetLayerPresentationAllFencesExpiredEvent"},
  654. {7000, nullptr, "SetContentVisibility"},
  655. {8000, nullptr, "SetConductorLayer"},
  656. {8100, nullptr, "SetIndirectProducerFlipOffset"},
  657. {8200, nullptr, "CreateSharedBufferStaticStorage"},
  658. {8201, nullptr, "CreateSharedBufferTransferMemory"},
  659. {8202, nullptr, "DestroySharedBuffer"},
  660. {8203, nullptr, "BindSharedLowLevelLayerToManagedLayer"},
  661. {8204, nullptr, "BindSharedLowLevelLayerToIndirectLayer"},
  662. {8207, nullptr, "UnbindSharedLowLevelLayer"},
  663. {8208, nullptr, "ConnectSharedLowLevelLayerToSharedBuffer"},
  664. {8209, nullptr, "DisconnectSharedLowLevelLayerFromSharedBuffer"},
  665. {8210, nullptr, "CreateSharedLayer"},
  666. {8211, nullptr, "DestroySharedLayer"},
  667. {8216, nullptr, "AttachSharedLayerToLowLevelLayer"},
  668. {8217, nullptr, "ForceDetachSharedLayerFromLowLevelLayer"},
  669. {8218, nullptr, "StartDetachSharedLayerFromLowLevelLayer"},
  670. {8219, nullptr, "FinishDetachSharedLayerFromLowLevelLayer"},
  671. {8220, nullptr, "GetSharedLayerDetachReadyEvent"},
  672. {8221, nullptr, "GetSharedLowLevelLayerSynchronizedEvent"},
  673. {8222, nullptr, "CheckSharedLowLevelLayerSynchronized"},
  674. {8223, nullptr, "RegisterSharedBufferImporterAruid"},
  675. {8224, nullptr, "UnregisterSharedBufferImporterAruid"},
  676. {8227, nullptr, "CreateSharedBufferProcessHeap"},
  677. {8228, nullptr, "GetSharedLayerLayerStacks"},
  678. {8229, nullptr, "SetSharedLayerLayerStacks"},
  679. {8291, nullptr, "PresentDetachedSharedFrameBufferToLowLevelLayer"},
  680. {8292, nullptr, "FillDetachedSharedFrameBufferColor"},
  681. {8293, nullptr, "GetDetachedSharedFrameBufferImage"},
  682. {8294, nullptr, "SetDetachedSharedFrameBufferImage"},
  683. {8295, nullptr, "CopyDetachedSharedFrameBufferImage"},
  684. {8296, nullptr, "SetDetachedSharedFrameBufferSubImage"},
  685. {8297, nullptr, "GetSharedFrameBufferContentParameter"},
  686. {8298, nullptr, "ExpandStartupLogoOnSharedFrameBuffer"},
  687. };
  688. RegisterHandlers(functions);
  689. }
  690. ~IManagerDisplayService() = default;
  691. private:
  692. void CloseDisplay(Kernel::HLERequestContext& ctx) {
  693. IPC::RequestParser rp{ctx};
  694. const u64 display = rp.Pop<u64>();
  695. LOG_WARNING(Service_VI, "(STUBBED) called. display=0x{:016X}", display);
  696. IPC::ResponseBuilder rb{ctx, 2};
  697. rb.Push(RESULT_SUCCESS);
  698. }
  699. void CreateManagedLayer(Kernel::HLERequestContext& ctx) {
  700. IPC::RequestParser rp{ctx};
  701. const u32 unknown = rp.Pop<u32>();
  702. rp.Skip(1, false);
  703. const u64 display = rp.Pop<u64>();
  704. const u64 aruid = rp.Pop<u64>();
  705. LOG_WARNING(Service_VI,
  706. "(STUBBED) called. unknown=0x{:08X}, display=0x{:016X}, aruid=0x{:016X}",
  707. unknown, display, aruid);
  708. const u64 layer_id = nv_flinger->CreateLayer(display);
  709. IPC::ResponseBuilder rb{ctx, 4};
  710. rb.Push(RESULT_SUCCESS);
  711. rb.Push(layer_id);
  712. }
  713. void AddToLayerStack(Kernel::HLERequestContext& ctx) {
  714. IPC::RequestParser rp{ctx};
  715. const u32 stack = rp.Pop<u32>();
  716. const u64 layer_id = rp.Pop<u64>();
  717. LOG_WARNING(Service_VI, "(STUBBED) called. stack=0x{:08X}, layer_id=0x{:016X}", stack,
  718. layer_id);
  719. IPC::ResponseBuilder rb{ctx, 2};
  720. rb.Push(RESULT_SUCCESS);
  721. }
  722. void SetLayerVisibility(Kernel::HLERequestContext& ctx) {
  723. IPC::RequestParser rp{ctx};
  724. const u64 layer_id = rp.Pop<u64>();
  725. const bool visibility = rp.Pop<bool>();
  726. LOG_WARNING(Service_VI, "(STUBBED) called, layer_id=0x{:X}, visibility={}", layer_id,
  727. visibility);
  728. IPC::ResponseBuilder rb{ctx, 2};
  729. rb.Push(RESULT_SUCCESS);
  730. }
  731. std::shared_ptr<NVFlinger::NVFlinger> nv_flinger;
  732. };
  733. class IApplicationDisplayService final : public ServiceFramework<IApplicationDisplayService> {
  734. public:
  735. explicit IApplicationDisplayService(std::shared_ptr<NVFlinger::NVFlinger> nv_flinger);
  736. ~IApplicationDisplayService() = default;
  737. private:
  738. enum class ConvertedScaleMode : u64 {
  739. None = 0, // VI seems to name this as "Unknown" but lots of games pass it, assume it's no
  740. // scaling/default
  741. Freeze = 1,
  742. ScaleToWindow = 2,
  743. Crop = 3,
  744. NoCrop = 4,
  745. };
  746. // This struct is different, currently it's 1:1 but this might change in the future.
  747. enum class NintendoScaleMode : u32 {
  748. None = 0,
  749. Freeze = 1,
  750. ScaleToWindow = 2,
  751. Crop = 3,
  752. NoCrop = 4,
  753. };
  754. void GetRelayService(Kernel::HLERequestContext& ctx) {
  755. LOG_WARNING(Service_VI, "(STUBBED) called");
  756. IPC::ResponseBuilder rb{ctx, 2, 0, 1};
  757. rb.Push(RESULT_SUCCESS);
  758. rb.PushIpcInterface<IHOSBinderDriver>(nv_flinger);
  759. }
  760. void GetSystemDisplayService(Kernel::HLERequestContext& ctx) {
  761. LOG_WARNING(Service_VI, "(STUBBED) called");
  762. IPC::ResponseBuilder rb{ctx, 2, 0, 1};
  763. rb.Push(RESULT_SUCCESS);
  764. rb.PushIpcInterface<ISystemDisplayService>();
  765. }
  766. void GetManagerDisplayService(Kernel::HLERequestContext& ctx) {
  767. LOG_WARNING(Service_VI, "(STUBBED) called");
  768. IPC::ResponseBuilder rb{ctx, 2, 0, 1};
  769. rb.Push(RESULT_SUCCESS);
  770. rb.PushIpcInterface<IManagerDisplayService>(nv_flinger);
  771. }
  772. void GetIndirectDisplayTransactionService(Kernel::HLERequestContext& ctx) {
  773. LOG_WARNING(Service_VI, "(STUBBED) called");
  774. IPC::ResponseBuilder rb{ctx, 2, 0, 1};
  775. rb.Push(RESULT_SUCCESS);
  776. rb.PushIpcInterface<IHOSBinderDriver>(nv_flinger);
  777. }
  778. void OpenDisplay(Kernel::HLERequestContext& ctx) {
  779. LOG_WARNING(Service_VI, "(STUBBED) called");
  780. IPC::RequestParser rp{ctx};
  781. const auto name_buf = rp.PopRaw<std::array<char, 0x40>>();
  782. OpenDisplayImpl(ctx, std::string_view{name_buf.data(), name_buf.size()});
  783. }
  784. void OpenDefaultDisplay(Kernel::HLERequestContext& ctx) {
  785. LOG_DEBUG(Service_VI, "called");
  786. OpenDisplayImpl(ctx, "Default");
  787. }
  788. void OpenDisplayImpl(Kernel::HLERequestContext& ctx, std::string_view name) {
  789. const auto trim_pos = name.find('\0');
  790. if (trim_pos != std::string_view::npos) {
  791. name.remove_suffix(name.size() - trim_pos);
  792. }
  793. ASSERT_MSG(name == "Default", "Non-default displays aren't supported yet");
  794. IPC::ResponseBuilder rb{ctx, 4};
  795. rb.Push(RESULT_SUCCESS);
  796. rb.Push<u64>(nv_flinger->OpenDisplay(name));
  797. }
  798. void CloseDisplay(Kernel::HLERequestContext& ctx) {
  799. IPC::RequestParser rp{ctx};
  800. const u64 display_id = rp.Pop<u64>();
  801. LOG_WARNING(Service_VI, "(STUBBED) called. display_id=0x{:016X}", display_id);
  802. IPC::ResponseBuilder rb{ctx, 2};
  803. rb.Push(RESULT_SUCCESS);
  804. }
  805. // This literally does nothing internally in the actual service itself,
  806. // and just returns a successful result code regardless of the input.
  807. void SetDisplayEnabled(Kernel::HLERequestContext& ctx) {
  808. LOG_DEBUG(Service_VI, "called.");
  809. IPC::ResponseBuilder rb{ctx, 2};
  810. rb.Push(RESULT_SUCCESS);
  811. }
  812. void GetDisplayResolution(Kernel::HLERequestContext& ctx) {
  813. IPC::RequestParser rp{ctx};
  814. const u64 display_id = rp.Pop<u64>();
  815. LOG_WARNING(Service_VI, "(STUBBED) called. display_id=0x{:016X}", display_id);
  816. IPC::ResponseBuilder rb{ctx, 6};
  817. rb.Push(RESULT_SUCCESS);
  818. if (Settings::values.use_docked_mode) {
  819. rb.Push(static_cast<u64>(DisplayResolution::DockedWidth) *
  820. static_cast<u32>(Settings::values.resolution_factor));
  821. rb.Push(static_cast<u64>(DisplayResolution::DockedHeight) *
  822. static_cast<u32>(Settings::values.resolution_factor));
  823. } else {
  824. rb.Push(static_cast<u64>(DisplayResolution::UndockedWidth) *
  825. static_cast<u32>(Settings::values.resolution_factor));
  826. rb.Push(static_cast<u64>(DisplayResolution::UndockedHeight) *
  827. static_cast<u32>(Settings::values.resolution_factor));
  828. }
  829. }
  830. void SetLayerScalingMode(Kernel::HLERequestContext& ctx) {
  831. IPC::RequestParser rp{ctx};
  832. const auto scaling_mode = rp.PopEnum<NintendoScaleMode>();
  833. const u64 unknown = rp.Pop<u64>();
  834. LOG_DEBUG(Service_VI, "called. scaling_mode=0x{:08X}, unknown=0x{:016X}",
  835. static_cast<u32>(scaling_mode), unknown);
  836. IPC::ResponseBuilder rb{ctx, 2};
  837. if (scaling_mode > NintendoScaleMode::NoCrop) {
  838. LOG_ERROR(Service_VI, "Invalid scaling mode provided.");
  839. rb.Push(ERR_OPERATION_FAILED);
  840. return;
  841. }
  842. if (scaling_mode != NintendoScaleMode::ScaleToWindow &&
  843. scaling_mode != NintendoScaleMode::NoCrop) {
  844. LOG_ERROR(Service_VI, "Unsupported scaling mode supplied.");
  845. rb.Push(ERR_UNSUPPORTED);
  846. return;
  847. }
  848. rb.Push(RESULT_SUCCESS);
  849. }
  850. void ListDisplays(Kernel::HLERequestContext& ctx) {
  851. LOG_WARNING(Service_VI, "(STUBBED) called");
  852. IPC::RequestParser rp{ctx};
  853. DisplayInfo display_info;
  854. display_info.width *= static_cast<u64>(Settings::values.resolution_factor);
  855. display_info.height *= static_cast<u64>(Settings::values.resolution_factor);
  856. ctx.WriteBuffer(&display_info, sizeof(DisplayInfo));
  857. IPC::ResponseBuilder rb{ctx, 4};
  858. rb.Push(RESULT_SUCCESS);
  859. rb.Push<u64>(1);
  860. }
  861. void OpenLayer(Kernel::HLERequestContext& ctx) {
  862. IPC::RequestParser rp{ctx};
  863. const auto name_buf = rp.PopRaw<std::array<u8, 0x40>>();
  864. const auto end = std::find(name_buf.begin(), name_buf.end(), '\0');
  865. const std::string display_name(name_buf.begin(), end);
  866. const u64 layer_id = rp.Pop<u64>();
  867. const u64 aruid = rp.Pop<u64>();
  868. LOG_DEBUG(Service_VI, "called. layer_id=0x{:016X}, aruid=0x{:016X}", layer_id, aruid);
  869. const u64 display_id = nv_flinger->OpenDisplay(display_name);
  870. const u32 buffer_queue_id = nv_flinger->GetBufferQueueId(display_id, layer_id);
  871. NativeWindow native_window{buffer_queue_id};
  872. IPC::ResponseBuilder rb{ctx, 4};
  873. rb.Push(RESULT_SUCCESS);
  874. rb.Push<u64>(ctx.WriteBuffer(native_window.Serialize()));
  875. }
  876. void CreateStrayLayer(Kernel::HLERequestContext& ctx) {
  877. IPC::RequestParser rp{ctx};
  878. const u32 flags = rp.Pop<u32>();
  879. rp.Pop<u32>(); // padding
  880. const u64 display_id = rp.Pop<u64>();
  881. LOG_DEBUG(Service_VI, "called. flags=0x{:08X}, display_id=0x{:016X}", flags, display_id);
  882. // TODO(Subv): What's the difference between a Stray and a Managed layer?
  883. const u64 layer_id = nv_flinger->CreateLayer(display_id);
  884. const u32 buffer_queue_id = nv_flinger->GetBufferQueueId(display_id, layer_id);
  885. NativeWindow native_window{buffer_queue_id};
  886. IPC::ResponseBuilder rb{ctx, 6};
  887. rb.Push(RESULT_SUCCESS);
  888. rb.Push(layer_id);
  889. rb.Push<u64>(ctx.WriteBuffer(native_window.Serialize()));
  890. }
  891. void DestroyStrayLayer(Kernel::HLERequestContext& ctx) {
  892. IPC::RequestParser rp{ctx};
  893. const u64 layer_id = rp.Pop<u64>();
  894. LOG_WARNING(Service_VI, "(STUBBED) called. layer_id=0x{:016X}", layer_id);
  895. IPC::ResponseBuilder rb{ctx, 2};
  896. rb.Push(RESULT_SUCCESS);
  897. }
  898. void GetDisplayVsyncEvent(Kernel::HLERequestContext& ctx) {
  899. IPC::RequestParser rp{ctx};
  900. const u64 display_id = rp.Pop<u64>();
  901. LOG_WARNING(Service_VI, "(STUBBED) called. display_id=0x{:016X}", display_id);
  902. const auto vsync_event = nv_flinger->GetVsyncEvent(display_id);
  903. IPC::ResponseBuilder rb{ctx, 2, 1};
  904. rb.Push(RESULT_SUCCESS);
  905. rb.PushCopyObjects(vsync_event);
  906. }
  907. void ConvertScalingMode(Kernel::HLERequestContext& ctx) {
  908. IPC::RequestParser rp{ctx};
  909. const auto mode = rp.PopEnum<NintendoScaleMode>();
  910. LOG_DEBUG(Service_VI, "called mode={}", static_cast<u32>(mode));
  911. const auto converted_mode = ConvertScalingModeImpl(mode);
  912. if (converted_mode.Succeeded()) {
  913. IPC::ResponseBuilder rb{ctx, 4};
  914. rb.Push(RESULT_SUCCESS);
  915. rb.PushEnum(*converted_mode);
  916. } else {
  917. IPC::ResponseBuilder rb{ctx, 2};
  918. rb.Push(converted_mode.Code());
  919. }
  920. }
  921. static ResultVal<ConvertedScaleMode> ConvertScalingModeImpl(NintendoScaleMode mode) {
  922. switch (mode) {
  923. case NintendoScaleMode::None:
  924. return MakeResult(ConvertedScaleMode::None);
  925. case NintendoScaleMode::Freeze:
  926. return MakeResult(ConvertedScaleMode::Freeze);
  927. case NintendoScaleMode::ScaleToWindow:
  928. return MakeResult(ConvertedScaleMode::ScaleToWindow);
  929. case NintendoScaleMode::Crop:
  930. return MakeResult(ConvertedScaleMode::Crop);
  931. case NintendoScaleMode::NoCrop:
  932. return MakeResult(ConvertedScaleMode::NoCrop);
  933. default:
  934. return ERR_OPERATION_FAILED;
  935. }
  936. }
  937. std::shared_ptr<NVFlinger::NVFlinger> nv_flinger;
  938. };
  939. IApplicationDisplayService::IApplicationDisplayService(
  940. std::shared_ptr<NVFlinger::NVFlinger> nv_flinger)
  941. : ServiceFramework("IApplicationDisplayService"), nv_flinger(std::move(nv_flinger)) {
  942. static const FunctionInfo functions[] = {
  943. {100, &IApplicationDisplayService::GetRelayService, "GetRelayService"},
  944. {101, &IApplicationDisplayService::GetSystemDisplayService, "GetSystemDisplayService"},
  945. {102, &IApplicationDisplayService::GetManagerDisplayService, "GetManagerDisplayService"},
  946. {103, &IApplicationDisplayService::GetIndirectDisplayTransactionService,
  947. "GetIndirectDisplayTransactionService"},
  948. {1000, &IApplicationDisplayService::ListDisplays, "ListDisplays"},
  949. {1010, &IApplicationDisplayService::OpenDisplay, "OpenDisplay"},
  950. {1011, &IApplicationDisplayService::OpenDefaultDisplay, "OpenDefaultDisplay"},
  951. {1020, &IApplicationDisplayService::CloseDisplay, "CloseDisplay"},
  952. {1101, &IApplicationDisplayService::SetDisplayEnabled, "SetDisplayEnabled"},
  953. {1102, &IApplicationDisplayService::GetDisplayResolution, "GetDisplayResolution"},
  954. {2020, &IApplicationDisplayService::OpenLayer, "OpenLayer"},
  955. {2021, nullptr, "CloseLayer"},
  956. {2030, &IApplicationDisplayService::CreateStrayLayer, "CreateStrayLayer"},
  957. {2031, &IApplicationDisplayService::DestroyStrayLayer, "DestroyStrayLayer"},
  958. {2101, &IApplicationDisplayService::SetLayerScalingMode, "SetLayerScalingMode"},
  959. {2102, &IApplicationDisplayService::ConvertScalingMode, "ConvertScalingMode"},
  960. {2450, nullptr, "GetIndirectLayerImageMap"},
  961. {2451, nullptr, "GetIndirectLayerImageCropMap"},
  962. {2460, nullptr, "GetIndirectLayerImageRequiredMemoryInfo"},
  963. {5202, &IApplicationDisplayService::GetDisplayVsyncEvent, "GetDisplayVsyncEvent"},
  964. {5203, nullptr, "GetDisplayVsyncEventForDebug"},
  965. };
  966. RegisterHandlers(functions);
  967. }
  968. Module::Interface::Interface(std::shared_ptr<Module> module, const char* name,
  969. std::shared_ptr<NVFlinger::NVFlinger> nv_flinger)
  970. : ServiceFramework(name), module(std::move(module)), nv_flinger(std::move(nv_flinger)) {}
  971. Module::Interface::~Interface() = default;
  972. void Module::Interface::GetDisplayService(Kernel::HLERequestContext& ctx) {
  973. LOG_WARNING(Service_VI, "(STUBBED) called");
  974. IPC::ResponseBuilder rb{ctx, 2, 0, 1};
  975. rb.Push(RESULT_SUCCESS);
  976. rb.PushIpcInterface<IApplicationDisplayService>(nv_flinger);
  977. }
  978. void InstallInterfaces(SM::ServiceManager& service_manager,
  979. std::shared_ptr<NVFlinger::NVFlinger> nv_flinger) {
  980. auto module = std::make_shared<Module>();
  981. std::make_shared<VI_M>(module, nv_flinger)->InstallAsService(service_manager);
  982. std::make_shared<VI_S>(module, nv_flinger)->InstallAsService(service_manager);
  983. std::make_shared<VI_U>(module, nv_flinger)->InstallAsService(service_manager);
  984. }
  985. } // namespace Service::VI