1 /*
2 * Copyright (c) 2021-2022 Huawei Device Co., Ltd.
3 * Licensed under the Apache License, Version 2.0 (the "License");
4 * you may not use this file except in compliance with the License.
5 * You may obtain a copy of the License at
6 *
7 * http://www.apache.org/licenses/LICENSE-2.0
8 *
9 * Unless required by applicable law or agreed to in writing, software
10 * distributed under the License is distributed on an "AS IS" BASIS,
11 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
12 * See the License for the specific language governing permissions and
13 * limitations under the License.
14 */
15
16 #include "hdi_device_impl.h"
17 #include "hdi_log.h"
18 #include <cstddef>
19 #include <cstdlib>
20 #include <mutex>
21 #include <scoped_bytrace.h>
22 #include <securec.h>
23 #include "v1_2/include/idisplay_composer_interface.h"
24
25 #define CHECK_FUNC(composerSptr) \
26 do { \
27 if ((composerSptr) == nullptr) { \
28 HLOGD("[%{public}s]composerSptr is nullptr.", __func__); \
29 return GRAPHIC_DISPLAY_NULL_PTR; \
30 } \
31 } while (0)
32
33 namespace OHOS {
34 namespace Rosen {
35 namespace {
36 using namespace OHOS::HDI::Display::Composer::V1_0;
37 using namespace OHOS::HDI::Display::Composer::V1_1;
38 using namespace OHOS::HDI::Display::Composer::V1_2;
39 using IDisplayComposerInterfaceSptr = sptr<Composer::V1_2::IDisplayComposerInterface>;
40 static IDisplayComposerInterfaceSptr g_composer;
41 }
42
43 class HwcDeathRecipient : public IRemoteObject::DeathRecipient {
44 public:
HwcDeathRecipient(OnHwcDeadCallback callback=nullptr,void * data=nullptr)45 explicit HwcDeathRecipient(OnHwcDeadCallback callback = nullptr, void *data = nullptr)
46 : deathCbFunc_(callback), data_(data) {}
OnRemoteDied(const wptr<IRemoteObject> & object)47 void OnRemoteDied(const wptr<IRemoteObject> &object) override
48 {
49 if (deathCbFunc_ != nullptr) {
50 HLOGI("%{public}s: notify the death event of composer to RS", __func__);
51 deathCbFunc_(data_);
52 }
53 }
54 private:
55 OnHwcDeadCallback deathCbFunc_;
56 void *data_;
57 };
58
HdiDeviceImpl()59 HdiDeviceImpl::HdiDeviceImpl()
60 {
61 }
62
~HdiDeviceImpl()63 HdiDeviceImpl::~HdiDeviceImpl()
64 {
65 Destroy();
66 }
67
Init()68 bool HdiDeviceImpl::Init()
69 {
70 if (g_composer == nullptr) {
71 g_composer = Composer::V1_2::IDisplayComposerInterface::Get();
72 if (g_composer == nullptr) {
73 HLOGE("IDisplayComposerInterface::Get return nullptr.");
74 return false;
75 }
76 }
77 return true;
78 }
79
Destroy()80 void HdiDeviceImpl::Destroy()
81 {
82 g_composer = nullptr;
83 }
84
85 /* set & get device screen info begin */
RegHotPlugCallback(HotPlugCallback callback,void * data)86 int32_t HdiDeviceImpl::RegHotPlugCallback(HotPlugCallback callback, void *data)
87 {
88 CHECK_FUNC(g_composer);
89 return g_composer->RegHotPlugCallback(callback, data);
90 }
91
RegHwcDeadCallback(OnHwcDeadCallback callback,void * data)92 bool HdiDeviceImpl::RegHwcDeadCallback(OnHwcDeadCallback callback, void *data)
93 {
94 CHECK_FUNC(g_composer);
95 sptr<HwcDeathRecipient> recipient = new HwcDeathRecipient(callback, data);
96 return g_composer->AddDeathRecipient(recipient);
97 }
98
RegRefreshCallback(RefreshCallback callback,void * data)99 int32_t HdiDeviceImpl::RegRefreshCallback(RefreshCallback callback, void *data)
100 {
101 CHECK_FUNC(g_composer);
102 return g_composer->RegRefreshCallback(callback, data);
103 }
104
RegScreenVBlankCallback(uint32_t screenId,VBlankCallback callback,void * data)105 int32_t HdiDeviceImpl::RegScreenVBlankCallback(uint32_t screenId, VBlankCallback callback, void *data)
106 {
107 CHECK_FUNC(g_composer);
108 return g_composer->RegDisplayVBlankCallback(screenId, callback, data);
109 }
110
RegScreenVBlankIdleCallback(OnVBlankIdleCallback callback,void * data)111 int32_t HdiDeviceImpl::RegScreenVBlankIdleCallback(OnVBlankIdleCallback callback, void *data)
112 {
113 CHECK_FUNC(g_composer);
114 return g_composer->RegDisplayVBlankIdleCallback(callback, data);
115 }
116
SetScreenConstraint(uint32_t screenId,uint64_t frameId,uint64_t timestamp,uint32_t type)117 int32_t HdiDeviceImpl::SetScreenConstraint(uint32_t screenId, uint64_t frameId, uint64_t timestamp, uint32_t type)
118 {
119 CHECK_FUNC(g_composer);
120 return g_composer->SetDisplayConstraint(screenId, frameId, timestamp, type);
121 }
122
GetDisplayProperty(uint32_t screenId,uint32_t propertyId,uint64_t & propertyValue)123 int32_t HdiDeviceImpl::GetDisplayProperty(uint32_t screenId, uint32_t propertyId, uint64_t& propertyValue)
124 {
125 CHECK_FUNC(g_composer);
126 return g_composer->GetDisplayProperty(screenId, propertyId, propertyValue);
127 }
128
SetScreenVsyncEnabled(uint32_t screenId,bool enabled)129 int32_t HdiDeviceImpl::SetScreenVsyncEnabled(uint32_t screenId, bool enabled)
130 {
131 HLOGD("SetScreenVsyncEnabled, screenId:%{public}u, enabled:%{public}d", screenId, enabled);
132 ScopedBytrace trace("SetScreenVsyncEnabled, screenId:" + std::to_string(screenId) +
133 ", enabled:" + std::to_string(enabled));
134 CHECK_FUNC(g_composer);
135 return g_composer->SetDisplayVsyncEnabled(screenId, enabled);
136 }
137
GetScreenCapability(uint32_t screenId,GraphicDisplayCapability & info)138 int32_t HdiDeviceImpl::GetScreenCapability(uint32_t screenId, GraphicDisplayCapability &info)
139 {
140 CHECK_FUNC(g_composer);
141 DisplayCapability hdiInfo;
142 uint32_t propertyId = DisplayPropertyID::DISPLAY_PROPERTY_ID_SKIP_VALIDATE;
143 uint64_t propertyValue;
144 int32_t ret = g_composer->GetDisplayCapability(screenId, hdiInfo);
145 if (ret == GRAPHIC_DISPLAY_SUCCESS) {
146 info.name = hdiInfo.name;
147 info.type = static_cast<GraphicInterfaceType>(hdiInfo.type);
148 info.phyWidth = hdiInfo.phyWidth;
149 info.phyHeight = hdiInfo.phyHeight;
150 info.supportLayers = hdiInfo.supportLayers;
151 info.virtualDispCount = hdiInfo.virtualDispCount;
152 info.supportWriteBack = hdiInfo.supportWriteBack;
153 info.propertyCount = hdiInfo.propertyCount;
154 info.props.clear();
155 info.props.reserve(hdiInfo.propertyCount);
156 for (uint32_t i = 0; i < hdiInfo.propertyCount; i++) {
157 GraphicPropertyObject graphicProperty = {
158 .name = hdiInfo.props[i].name,
159 .propId = hdiInfo.props[i].propId,
160 .value = hdiInfo.props[i].value,
161 };
162 info.props.emplace_back(graphicProperty);
163 }
164 }
165
166 (void)g_composer->GetDisplayProperty(screenId, propertyId, propertyValue);
167 return ret;
168 }
169
GetScreenSupportedModes(uint32_t screenId,std::vector<GraphicDisplayModeInfo> & modes)170 int32_t HdiDeviceImpl::GetScreenSupportedModes(uint32_t screenId, std::vector<GraphicDisplayModeInfo> &modes)
171 {
172 CHECK_FUNC(g_composer);
173 std::vector<DisplayModeInfo> hdiModes;
174 int32_t ret = g_composer->GetDisplaySupportedModes(screenId, hdiModes);
175 if (ret != GRAPHIC_DISPLAY_SUCCESS) {
176 HLOGE("Get screen supported modes failed, ret is %{public}d.", ret);
177 return ret;
178 }
179
180 modes.clear();
181 modes.reserve(hdiModes.size());
182 for (auto iter = hdiModes.begin(); iter != hdiModes.end(); iter++) {
183 GraphicDisplayModeInfo tempMode = {
184 .width = iter->width,
185 .height = iter->height,
186 .freshRate = iter->freshRate,
187 .id = iter->id,
188 };
189 modes.emplace_back(tempMode);
190 }
191 return ret;
192 }
193
GetScreenMode(uint32_t screenId,uint32_t & modeId)194 int32_t HdiDeviceImpl::GetScreenMode(uint32_t screenId, uint32_t &modeId)
195 {
196 CHECK_FUNC(g_composer);
197 return g_composer->GetDisplayMode(screenId, modeId);
198 }
199
SetScreenMode(uint32_t screenId,uint32_t modeId)200 int32_t HdiDeviceImpl::SetScreenMode(uint32_t screenId, uint32_t modeId)
201 {
202 CHECK_FUNC(g_composer);
203 return g_composer->SetDisplayMode(screenId, modeId);
204 }
205
SetScreenActiveRect(uint32_t screenId,const GraphicIRect & activeRect)206 int32_t HdiDeviceImpl::SetScreenActiveRect(uint32_t screenId, const GraphicIRect& activeRect)
207 {
208 if (activeRect.w <= 0 || activeRect.h <= 0) {
209 return GRAPHIC_DISPLAY_PARAM_ERR;
210 }
211 CHECK_FUNC(g_composer);
212 IRect hdiActiveRect {
213 .x = activeRect.x,
214 .y = activeRect.y,
215 .w = activeRect.w,
216 .h = activeRect.h,
217 };
218 return g_composer->SetDisplayActiveRegion(screenId, hdiActiveRect);
219 }
220
SetScreenOverlayResolution(uint32_t screenId,uint32_t width,uint32_t height)221 int32_t HdiDeviceImpl::SetScreenOverlayResolution(uint32_t screenId, uint32_t width, uint32_t height)
222 {
223 CHECK_FUNC(g_composer);
224 return g_composer->SetDisplayOverlayResolution(screenId, width, height);
225 }
226
GetScreenPowerStatus(uint32_t screenId,GraphicDispPowerStatus & status)227 int32_t HdiDeviceImpl::GetScreenPowerStatus(uint32_t screenId, GraphicDispPowerStatus &status)
228 {
229 CHECK_FUNC(g_composer);
230 Composer::V1_0::DispPowerStatus hdiStatus;
231 int32_t ret = g_composer->GetDisplayPowerStatus(screenId, hdiStatus);
232 if (ret == GRAPHIC_DISPLAY_SUCCESS) {
233 status = static_cast<GraphicDispPowerStatus>(hdiStatus);
234 }
235 return ret;
236 }
237
SetScreenPowerStatus(uint32_t screenId,GraphicDispPowerStatus status)238 int32_t HdiDeviceImpl::SetScreenPowerStatus(uint32_t screenId, GraphicDispPowerStatus status)
239 {
240 CHECK_FUNC(g_composer);
241 return g_composer->SetDisplayPowerStatus(screenId, static_cast<Composer::V1_0::DispPowerStatus>(status));
242 }
243
GetScreenBacklight(uint32_t screenId,uint32_t & level)244 int32_t HdiDeviceImpl::GetScreenBacklight(uint32_t screenId, uint32_t &level)
245 {
246 CHECK_FUNC(g_composer);
247 return g_composer->GetDisplayBacklight(screenId, level);
248 }
249
SetScreenBacklight(uint32_t screenId,uint32_t level)250 int32_t HdiDeviceImpl::SetScreenBacklight(uint32_t screenId, uint32_t level)
251 {
252 CHECK_FUNC(g_composer);
253 return g_composer->SetDisplayBacklight(screenId, level);
254 }
255
PrepareScreenLayers(uint32_t screenId,bool & needFlush)256 int32_t HdiDeviceImpl::PrepareScreenLayers(uint32_t screenId, bool &needFlush)
257 {
258 CHECK_FUNC(g_composer);
259 return g_composer->PrepareDisplayLayers(screenId, needFlush);
260 }
261
GetScreenCompChange(uint32_t screenId,std::vector<uint32_t> & layersId,std::vector<int32_t> & types)262 int32_t HdiDeviceImpl::GetScreenCompChange(uint32_t screenId, std::vector<uint32_t> &layersId,
263 std::vector<int32_t> &types)
264 {
265 CHECK_FUNC(g_composer);
266 return g_composer->GetDisplayCompChange(screenId, layersId, types);
267 }
268
SetScreenClientBuffer(uint32_t screenId,const BufferHandle * buffer,uint32_t cacheIndex,const sptr<SyncFence> & fence)269 int32_t HdiDeviceImpl::SetScreenClientBuffer(uint32_t screenId, const BufferHandle *buffer, uint32_t cacheIndex,
270 const sptr<SyncFence> &fence)
271 {
272 CHECK_FUNC(g_composer);
273 if ((buffer == nullptr && cacheIndex == INVALID_BUFFER_CACHE_INDEX) || fence == nullptr) {
274 return GRAPHIC_DISPLAY_PARAM_ERR;
275 }
276
277 return g_composer->SetDisplayClientBuffer(screenId, buffer, cacheIndex, fence->Get());
278 }
279
SetScreenClientBufferCacheCount(uint32_t screen,uint32_t count)280 int32_t HdiDeviceImpl::SetScreenClientBufferCacheCount(uint32_t screen, uint32_t count)
281 {
282 CHECK_FUNC(g_composer);
283 if (count == 0 || count > SURFACE_MAX_QUEUE_SIZE) {
284 return GRAPHIC_DISPLAY_PARAM_ERR;
285 }
286 return g_composer->SetClientBufferCacheCount(screen, count);
287 }
288
SetScreenClientDamage(uint32_t screenId,const std::vector<GraphicIRect> & damageRect)289 int32_t HdiDeviceImpl::SetScreenClientDamage(uint32_t screenId, const std::vector<GraphicIRect> &damageRect)
290 {
291 CHECK_FUNC(g_composer);
292 std::vector<IRect> hdiDamageRect;
293 for (auto iter = damageRect.begin(); iter != damageRect.end(); iter++) {
294 IRect tempDamageRect = {
295 .x = iter->x,
296 .y = iter->y,
297 .w = iter->w,
298 .h = iter->h,
299 };
300 hdiDamageRect.emplace_back(tempDamageRect);
301 }
302 return g_composer->SetDisplayClientDamage(screenId, hdiDamageRect);
303 }
304
GetScreenSupportedColorGamuts(uint32_t screenId,std::vector<GraphicColorGamut> & gamuts)305 int32_t HdiDeviceImpl::GetScreenSupportedColorGamuts(uint32_t screenId, std::vector<GraphicColorGamut> &gamuts)
306 {
307 CHECK_FUNC(g_composer);
308 std::vector<ColorGamut> hdiGamuts;
309 int32_t ret = g_composer->GetDisplaySupportedColorGamuts(screenId, hdiGamuts);
310 if (ret != GRAPHIC_DISPLAY_SUCCESS) {
311 return ret;
312 }
313
314 gamuts.clear();
315 gamuts.reserve(hdiGamuts.size());
316 for (auto iter = hdiGamuts.begin(); iter != hdiGamuts.end(); iter++) {
317 GraphicColorGamut tempGamut = static_cast<GraphicColorGamut>(*iter);
318 gamuts.emplace_back(tempGamut);
319 }
320 return ret;
321 }
322
SetScreenColorGamut(uint32_t screenId,GraphicColorGamut gamut)323 int32_t HdiDeviceImpl::SetScreenColorGamut(uint32_t screenId, GraphicColorGamut gamut)
324 {
325 CHECK_FUNC(g_composer);
326 return g_composer->SetDisplayColorGamut(screenId, static_cast<ColorGamut>(gamut));
327 }
328
GetScreenColorGamut(uint32_t screenId,GraphicColorGamut & gamut)329 int32_t HdiDeviceImpl::GetScreenColorGamut(uint32_t screenId, GraphicColorGamut &gamut)
330 {
331 CHECK_FUNC(g_composer);
332 ColorGamut hdiGamut;
333 int32_t ret = g_composer->GetDisplayColorGamut(screenId, hdiGamut);
334 if (ret == GRAPHIC_DISPLAY_SUCCESS) {
335 gamut = static_cast<GraphicColorGamut>(hdiGamut);
336 }
337 return ret;
338 }
339
SetScreenGamutMap(uint32_t screenId,GraphicGamutMap gamutMap)340 int32_t HdiDeviceImpl::SetScreenGamutMap(uint32_t screenId, GraphicGamutMap gamutMap)
341 {
342 CHECK_FUNC(g_composer);
343 return g_composer->SetDisplayGamutMap(screenId, static_cast<GamutMap>(gamutMap));
344 }
345
GetScreenGamutMap(uint32_t screenId,GraphicGamutMap & gamutMap)346 int32_t HdiDeviceImpl::GetScreenGamutMap(uint32_t screenId, GraphicGamutMap &gamutMap)
347 {
348 CHECK_FUNC(g_composer);
349 GamutMap hdiGamutMap;
350 int32_t ret = g_composer->GetDisplayGamutMap(screenId, hdiGamutMap);
351 if (ret == GRAPHIC_DISPLAY_SUCCESS) {
352 gamutMap = static_cast<GraphicGamutMap>(hdiGamutMap);
353 }
354 return ret;
355 }
356
SetScreenColorTransform(uint32_t screenId,const std::vector<float> & matrix)357 int32_t HdiDeviceImpl::SetScreenColorTransform(uint32_t screenId, const std::vector<float> &matrix)
358 {
359 CHECK_FUNC(g_composer);
360 return g_composer->SetDisplayColorTransform(screenId, matrix);
361 }
362
GetHDRCapabilityInfos(uint32_t screenId,GraphicHDRCapability & info)363 int32_t HdiDeviceImpl::GetHDRCapabilityInfos(uint32_t screenId, GraphicHDRCapability &info)
364 {
365 CHECK_FUNC(g_composer);
366 HDRCapability hdiInfo;
367 int32_t ret = g_composer->GetHDRCapabilityInfos(screenId, hdiInfo);
368 if (ret != GRAPHIC_DISPLAY_SUCCESS) {
369 return ret;
370 }
371 uint32_t formatCount = hdiInfo.formatCount;
372 info.formats.clear();
373 info.formats.reserve(formatCount);
374 for (uint32_t i = 0; i < formatCount; i++) {
375 info.formats.emplace_back(static_cast<GraphicHDRFormat>(hdiInfo.formats[i]));
376 }
377 info.maxLum = hdiInfo.maxLum;
378 info.maxAverageLum = hdiInfo.maxAverageLum;
379 info.minLum = hdiInfo.minLum;
380 return ret;
381 }
382
GetSupportedMetaDataKey(uint32_t screenId,std::vector<GraphicHDRMetadataKey> & keys)383 int32_t HdiDeviceImpl::GetSupportedMetaDataKey(uint32_t screenId, std::vector<GraphicHDRMetadataKey> &keys)
384 {
385 CHECK_FUNC(g_composer);
386 std::vector<HDRMetadataKey> hdiKeys;
387 int32_t ret = g_composer->GetSupportedMetadataKey(screenId, hdiKeys);
388 if (ret != GRAPHIC_DISPLAY_SUCCESS) {
389 return ret;
390 }
391 keys.clear();
392 keys.reserve(hdiKeys.size());
393 for (auto iter = hdiKeys.begin(); iter != hdiKeys.end(); iter++) {
394 keys.emplace_back(static_cast<GraphicHDRMetadataKey>(*iter));
395 }
396 return ret;
397 }
398
Commit(uint32_t screenId,sptr<SyncFence> & fence)399 int32_t HdiDeviceImpl::Commit(uint32_t screenId, sptr<SyncFence> &fence)
400 {
401 ScopedBytrace bytrace(__func__);
402 CHECK_FUNC(g_composer);
403 int32_t fenceFd = -1;
404 int32_t ret = g_composer->Commit(screenId, fenceFd);
405
406 if (fenceFd >= 0) {
407 fence = new SyncFence(fenceFd);
408 } else {
409 fence = new SyncFence(-1);
410 }
411
412 return ret;
413 }
414
CommitAndGetReleaseFence(uint32_t screenId,sptr<SyncFence> & fence,int32_t & skipState,bool & needFlush,std::vector<uint32_t> & layers,std::vector<sptr<SyncFence>> & fences,bool isValidated)415 int32_t HdiDeviceImpl::CommitAndGetReleaseFence(uint32_t screenId, sptr<SyncFence> &fence, int32_t &skipState,
416 bool &needFlush, std::vector<uint32_t> &layers, std::vector<sptr<SyncFence>> &fences, bool isValidated)
417 {
418 ScopedBytrace bytrace(__func__);
419 CHECK_FUNC(g_composer);
420 int32_t fenceFd = -1;
421 std::vector<int32_t> fenceFds;
422
423 int32_t ret = g_composer->CommitAndGetReleaseFence(
424 screenId, fenceFd, skipState, needFlush, layers, fenceFds, isValidated);
425
426 if (skipState == 0 || fenceFd >= 0) {
427 fence = new SyncFence(fenceFd);
428 } else {
429 fence = new SyncFence(-1);
430 }
431
432 size_t fencesNum = fenceFds.size();
433 fences.resize(fencesNum);
434 for (size_t i = 0; i < fencesNum; i++) {
435 if (fenceFds[i] >= 0) {
436 fences[i] = new SyncFence(fenceFds[i]);
437 } else {
438 fences[i] = new SyncFence(-1);
439 }
440 }
441 return ret;
442 }
443 /* set & get device screen info end */
444
445 /* set & get device layer info begin */
SetLayerAlpha(uint32_t screenId,uint32_t layerId,const GraphicLayerAlpha & alpha)446 int32_t HdiDeviceImpl::SetLayerAlpha(uint32_t screenId, uint32_t layerId, const GraphicLayerAlpha &alpha)
447 {
448 CHECK_FUNC(g_composer);
449 LayerAlpha hdiLayerAlpha = {
450 .enGlobalAlpha = alpha.enGlobalAlpha,
451 .enPixelAlpha = alpha.enPixelAlpha,
452 .alpha0 = alpha.alpha0,
453 .alpha1 = alpha.alpha1,
454 .gAlpha = alpha.gAlpha,
455 };
456 return g_composer->SetLayerAlpha(screenId, layerId, hdiLayerAlpha);
457 }
458
SetLayerSize(uint32_t screenId,uint32_t layerId,const GraphicIRect & layerRect)459 int32_t HdiDeviceImpl::SetLayerSize(uint32_t screenId, uint32_t layerId, const GraphicIRect &layerRect)
460 {
461 CHECK_FUNC(g_composer);
462 IRect hdiLayerRect = {
463 .x = layerRect.x,
464 .y = layerRect.y,
465 .w = layerRect.w,
466 .h = layerRect.h,
467 };
468 return g_composer->SetLayerRegion(screenId, layerId, hdiLayerRect);
469 }
470
SetTransformMode(uint32_t screenId,uint32_t layerId,GraphicTransformType type)471 int32_t HdiDeviceImpl::SetTransformMode(uint32_t screenId, uint32_t layerId, GraphicTransformType type)
472 {
473 CHECK_FUNC(g_composer);
474 TransformType hdiType = static_cast<TransformType>(type);
475 return g_composer->SetLayerTransformMode(screenId, layerId, hdiType);
476 }
477
SetLayerVisibleRegion(uint32_t screenId,uint32_t layerId,const std::vector<GraphicIRect> & visible)478 int32_t HdiDeviceImpl::SetLayerVisibleRegion(uint32_t screenId, uint32_t layerId,
479 const std::vector<GraphicIRect> &visible)
480 {
481 CHECK_FUNC(g_composer);
482 std::vector<IRect> hdiVisibleRects;
483 for (auto iter = visible.begin(); iter != visible.end(); iter++) {
484 IRect tempVisibleRect = {
485 .x = iter->x,
486 .y = iter->y,
487 .w = iter->w,
488 .h = iter->h,
489 };
490 hdiVisibleRects.emplace_back(tempVisibleRect);
491 }
492 return g_composer->SetLayerVisibleRegion(screenId, layerId, hdiVisibleRects);
493 }
494
SetLayerDirtyRegion(uint32_t screenId,uint32_t layerId,const std::vector<GraphicIRect> & dirtyRegions)495 int32_t HdiDeviceImpl::SetLayerDirtyRegion(uint32_t screenId, uint32_t layerId,
496 const std::vector<GraphicIRect> &dirtyRegions)
497 {
498 CHECK_FUNC(g_composer);
499 std::vector<IRect> hdiDirtyRegions;
500 for (auto iter = dirtyRegions.begin(); iter != dirtyRegions.end(); iter++) {
501 IRect hdiDirtyRect = {
502 .x = iter->x,
503 .y = iter->y,
504 .w = iter->w,
505 .h = iter->h,
506 };
507 hdiDirtyRegions.emplace_back(hdiDirtyRect);
508 }
509 return g_composer->SetLayerDirtyRegion(screenId, layerId, hdiDirtyRegions);
510 }
511
SetLayerBuffer(uint32_t screenId,uint32_t layerId,const GraphicLayerBuffer & layerBuffer)512 int32_t HdiDeviceImpl::SetLayerBuffer(uint32_t screenId, uint32_t layerId, const GraphicLayerBuffer &layerBuffer)
513 {
514 CHECK_FUNC(g_composer);
515 if ((layerBuffer.handle == nullptr && layerBuffer.cacheIndex == INVALID_BUFFER_CACHE_INDEX) ||
516 layerBuffer.acquireFence == nullptr) {
517 return GRAPHIC_DISPLAY_PARAM_ERR;
518 }
519 int32_t fenceFd = (layerBuffer.acquireFence)->Get();
520 return g_composer->SetLayerBuffer(screenId, layerId, layerBuffer.handle, layerBuffer.cacheIndex,
521 fenceFd, layerBuffer.deletingList);
522 }
523
SetLayerCompositionType(uint32_t screenId,uint32_t layerId,GraphicCompositionType type)524 int32_t HdiDeviceImpl::SetLayerCompositionType(uint32_t screenId, uint32_t layerId, GraphicCompositionType type)
525 {
526 CHECK_FUNC(g_composer);
527 Composer::V1_0::CompositionType hdiType = static_cast<Composer::V1_0::CompositionType>(type);
528 return g_composer->SetLayerCompositionType(screenId, layerId, hdiType);
529 }
530
SetLayerBlendType(uint32_t screenId,uint32_t layerId,GraphicBlendType type)531 int32_t HdiDeviceImpl::SetLayerBlendType(uint32_t screenId, uint32_t layerId, GraphicBlendType type)
532 {
533 CHECK_FUNC(g_composer);
534 BlendType hdiBlendType = static_cast<BlendType>(type);
535 return g_composer->SetLayerBlendType(screenId, layerId, hdiBlendType);
536 }
537
SetLayerCrop(uint32_t screenId,uint32_t layerId,const GraphicIRect & crop)538 int32_t HdiDeviceImpl::SetLayerCrop(uint32_t screenId, uint32_t layerId, const GraphicIRect &crop)
539 {
540 CHECK_FUNC(g_composer);
541 IRect hdiCropRect = {
542 .x = crop.x,
543 .y = crop.y,
544 .w = crop.w,
545 .h = crop.h,
546 };
547 return g_composer->SetLayerCrop(screenId, layerId, hdiCropRect);
548 }
549
SetLayerZorder(uint32_t screenId,uint32_t layerId,uint32_t zorder)550 int32_t HdiDeviceImpl::SetLayerZorder(uint32_t screenId, uint32_t layerId, uint32_t zorder)
551 {
552 CHECK_FUNC(g_composer);
553 return g_composer->SetLayerZorder(screenId, layerId, zorder);
554 }
555
SetLayerPreMulti(uint32_t screenId,uint32_t layerId,bool isPreMulti)556 int32_t HdiDeviceImpl::SetLayerPreMulti(uint32_t screenId, uint32_t layerId, bool isPreMulti)
557 {
558 CHECK_FUNC(g_composer);
559 return g_composer->SetLayerPreMulti(screenId, layerId, isPreMulti);
560 }
561
SetLayerColor(uint32_t screenId,uint32_t layerId,GraphicLayerColor layerColor)562 int32_t HdiDeviceImpl::SetLayerColor(uint32_t screenId, uint32_t layerId, GraphicLayerColor layerColor)
563 {
564 CHECK_FUNC(g_composer);
565 LayerColor color = {
566 .r = layerColor.r,
567 .g = layerColor.g,
568 .b = layerColor.b,
569 .a = layerColor.a
570 };
571
572 HLOGD("SetLayerColor screenId:%{public}u, layerId:%{public}u", screenId, layerId);
573
574 return g_composer->SetLayerColor(screenId, layerId, color);
575 }
576
SetLayerColorTransform(uint32_t screenId,uint32_t layerId,const std::vector<float> & matrix)577 int32_t HdiDeviceImpl::SetLayerColorTransform(uint32_t screenId, uint32_t layerId, const std::vector<float> &matrix)
578 {
579 CHECK_FUNC(g_composer);
580 return g_composer->SetLayerColorTransform(screenId, layerId, matrix);
581 }
582
SetLayerColorDataSpace(uint32_t screenId,uint32_t layerId,GraphicColorDataSpace colorSpace)583 int32_t HdiDeviceImpl::SetLayerColorDataSpace(uint32_t screenId, uint32_t layerId, GraphicColorDataSpace colorSpace)
584 {
585 CHECK_FUNC(g_composer);
586 ColorDataSpace hdiColorDataSpace = static_cast<ColorDataSpace>(colorSpace);
587 return g_composer->SetLayerColorDataSpace(screenId, layerId, hdiColorDataSpace);
588 }
589
GetLayerColorDataSpace(uint32_t screenId,uint32_t layerId,GraphicColorDataSpace & colorSpace)590 int32_t HdiDeviceImpl::GetLayerColorDataSpace(uint32_t screenId, uint32_t layerId, GraphicColorDataSpace &colorSpace)
591 {
592 CHECK_FUNC(g_composer);
593 ColorDataSpace hdiColorDataSpace = COLOR_DATA_SPACE_UNKNOWN;
594 int32_t ret = g_composer->GetLayerColorDataSpace(screenId, layerId, hdiColorDataSpace);
595 if (ret == GRAPHIC_DISPLAY_SUCCESS) {
596 colorSpace = static_cast<GraphicColorDataSpace>(hdiColorDataSpace);
597 }
598 return ret;
599 }
600
SetLayerMetaData(uint32_t screenId,uint32_t layerId,const std::vector<GraphicHDRMetaData> & metaData)601 int32_t HdiDeviceImpl::SetLayerMetaData(uint32_t screenId, uint32_t layerId,
602 const std::vector<GraphicHDRMetaData> &metaData)
603 {
604 CHECK_FUNC(g_composer);
605 std::vector<HDRMetaData> hdiMetaDatas;
606 std::size_t metaDataSize = metaData.size();
607 for (std::size_t i = 0; i < metaDataSize; i++) {
608 HDRMetaData hdiMetaData = {
609 .key = static_cast<HDRMetadataKey>(metaData[i].key),
610 .value = metaData[i].value,
611 };
612 hdiMetaDatas.emplace_back(hdiMetaData);
613 }
614 return g_composer->SetLayerMetaData(screenId, layerId, hdiMetaDatas);
615 }
616
SetLayerMetaDataSet(uint32_t screenId,uint32_t layerId,GraphicHDRMetadataKey key,const std::vector<uint8_t> & metaData)617 int32_t HdiDeviceImpl::SetLayerMetaDataSet(uint32_t screenId, uint32_t layerId, GraphicHDRMetadataKey key,
618 const std::vector<uint8_t> &metaData)
619 {
620 CHECK_FUNC(g_composer);
621 HDRMetadataKey hdiKey = static_cast<HDRMetadataKey>(key);
622 return g_composer->SetLayerMetaDataSet(screenId, layerId, hdiKey, metaData);
623 }
624
GetSupportedLayerPerFrameParameterKey()625 std::vector<std::string>& HdiDeviceImpl::GetSupportedLayerPerFrameParameterKey()
626 {
627 std::call_once(layerPerFrameParameterKeyCreateFlag_, [this]() {
628 CHECK_FUNC(g_composer);
629 if (g_composer->GetSupportedLayerPerFrameParameterKey(layerPerFrameParameterKeys_) != 0) {
630 HLOGW("get supported layer perframe parameter key failed!");
631 }
632
633 return GRAPHIC_DISPLAY_SUCCESS;
634 });
635
636 return layerPerFrameParameterKeys_;
637 }
638
SetLayerPerFrameParameter(uint32_t devId,uint32_t layerId,const std::string & key,const std::vector<int8_t> & value)639 int32_t HdiDeviceImpl::SetLayerPerFrameParameter(uint32_t devId, uint32_t layerId, const std::string& key,
640 const std::vector<int8_t>& value)
641 {
642 CHECK_FUNC(g_composer);
643 return g_composer->SetLayerPerFrameParameter(devId, layerId, key, value);
644 }
645
SetLayerTunnelHandle(uint32_t screenId,uint32_t layerId,GraphicExtDataHandle * handle)646 int32_t HdiDeviceImpl::SetLayerTunnelHandle(uint32_t screenId, uint32_t layerId, GraphicExtDataHandle *handle)
647 {
648 CHECK_FUNC(g_composer);
649 return g_composer->SetLayerTunnelHandle(screenId, layerId, (*(reinterpret_cast<ExtDataHandle *>(handle))));
650 }
651
GetSupportedPresentTimestampType(uint32_t screenId,uint32_t layerId,GraphicPresentTimestampType & type)652 int32_t HdiDeviceImpl::GetSupportedPresentTimestampType(uint32_t screenId, uint32_t layerId,
653 GraphicPresentTimestampType &type)
654 {
655 CHECK_FUNC(g_composer);
656 PresentTimestampType hdiType = PresentTimestampType::HARDWARE_DISPLAY_PTS_UNSUPPORTED;
657 int32_t ret = g_composer->GetSupportedPresentTimestamp(screenId, layerId, hdiType);
658 if (ret == GRAPHIC_DISPLAY_SUCCESS) {
659 type = static_cast<GraphicPresentTimestampType>(hdiType);
660 }
661 return ret;
662 }
663
GetPresentTimestamp(uint32_t screenId,uint32_t layerId,GraphicPresentTimestamp & timestamp)664 int32_t HdiDeviceImpl::GetPresentTimestamp(uint32_t screenId, uint32_t layerId, GraphicPresentTimestamp ×tamp)
665 {
666 CHECK_FUNC(g_composer);
667 PresentTimestamp hdiTimestamp = {HARDWARE_DISPLAY_PTS_UNSUPPORTED, 0};
668 int32_t ret = g_composer->GetHwPresentTimestamp(screenId, layerId, hdiTimestamp);
669 if (ret == GRAPHIC_DISPLAY_SUCCESS) {
670 timestamp.time = hdiTimestamp.time;
671 timestamp.type = static_cast<GraphicPresentTimestampType>(hdiTimestamp.type);
672 }
673 return ret;
674 }
675
SetLayerMaskInfo(uint32_t screenId,uint32_t layerId,uint32_t maskInfo)676 int32_t HdiDeviceImpl::SetLayerMaskInfo(uint32_t screenId, uint32_t layerId, uint32_t maskInfo)
677 {
678 CHECK_FUNC(g_composer);
679 MaskInfo info = static_cast<MaskInfo>(maskInfo);
680 return g_composer->SetLayerMaskInfo(screenId, layerId, info);
681 }
682
683 /* set & get device layer info end */
CreateLayer(uint32_t screenId,const GraphicLayerInfo & layerInfo,uint32_t cacheCount,uint32_t & layerId)684 int32_t HdiDeviceImpl::CreateLayer(uint32_t screenId, const GraphicLayerInfo &layerInfo, uint32_t cacheCount,
685 uint32_t &layerId)
686 {
687 CHECK_FUNC(g_composer);
688 LayerInfo hdiLayerInfo = {
689 .width = layerInfo.width,
690 .height = layerInfo.height,
691 .type = static_cast<LayerType>(layerInfo.type),
692 .pixFormat = static_cast<Composer::V1_0::PixelFormat>(layerInfo.pixFormat),
693 };
694 return g_composer->CreateLayer(screenId, hdiLayerInfo, cacheCount, layerId);
695 }
696
CloseLayer(uint32_t screenId,uint32_t layerId)697 int32_t HdiDeviceImpl::CloseLayer(uint32_t screenId, uint32_t layerId)
698 {
699 CHECK_FUNC(g_composer);
700 return g_composer->DestroyLayer(screenId, layerId);
701 }
702
ClearLayerBuffer(uint32_t screenId,uint32_t layerId)703 int32_t HdiDeviceImpl::ClearLayerBuffer(uint32_t screenId, uint32_t layerId)
704 {
705 CHECK_FUNC(g_composer);
706 return g_composer->ClearLayerBuffer(screenId, layerId);
707 }
708
ClearClientBuffer(uint32_t screenId)709 int32_t HdiDeviceImpl::ClearClientBuffer(uint32_t screenId)
710 {
711 CHECK_FUNC(g_composer);
712 return g_composer->ClearClientBuffer(screenId);
713 }
714
715 } // namespace Rosen
716 } // namespace OHOS
717