1 /*
2 * Copyright 2015 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17 // TODO(b/129481165): remove the #pragma below and fix conversion issues
18 #pragma clang diagnostic push
19 #pragma clang diagnostic ignored "-Wconversion"
20
21 // #define LOG_NDEBUG 0
22
23 #undef LOG_TAG
24 #define LOG_TAG "HWC2"
25 #define ATRACE_TAG ATRACE_TAG_GRAPHICS
26
27 #include "HWC2.h"
28
29 #include <android/configuration.h>
30 #include <common/FlagManager.h>
31 #include <ui/Fence.h>
32 #include <ui/FloatRect.h>
33 #include <ui/GraphicBuffer.h>
34 #include <ui/PictureProfileHandle.h>
35
36 #include "DisplayHardware/Hal.h"
37
38 #include <algorithm>
39 #include <cinttypes>
40 #include <iterator>
41 #include <set>
42
43 using aidl::android::hardware::graphics::composer3::Color;
44 using aidl::android::hardware::graphics::composer3::Composition;
45 using AidlCapability = aidl::android::hardware::graphics::composer3::Capability;
46 using aidl::android::hardware::graphics::composer3::DisplayCapability;
47 using aidl::android::hardware::graphics::composer3::DisplayLuts;
48 using aidl::android::hardware::graphics::composer3::LutProperties;
49 using aidl::android::hardware::graphics::composer3::Luts;
50 using aidl::android::hardware::graphics::composer3::OverlayProperties;
51
52 namespace android {
53
54 using android::Fence;
55 using android::FloatRect;
56 using android::GraphicBuffer;
57 using android::HdrCapabilities;
58 using android::HdrMetadata;
59 using android::PictureProfileHandle;
60 using android::Rect;
61 using android::Region;
62 using android::sp;
63
64 namespace HWC2 {
65
66 using namespace android::hardware::graphics::composer::hal;
67
68 namespace Hwc2 = android::Hwc2;
69
70 namespace {
71
hasMetadataKey(const std::set<Hwc2::PerFrameMetadataKey> & keys,const Hwc2::PerFrameMetadataKey & key)72 inline bool hasMetadataKey(const std::set<Hwc2::PerFrameMetadataKey>& keys,
73 const Hwc2::PerFrameMetadataKey& key) {
74 return keys.find(key) != keys.end();
75 }
76
77 } // namespace anonymous
78
79 // Display methods
80 Display::~Display() = default;
81
82 namespace impl {
83
Display(android::Hwc2::Composer & composer,const std::unordered_set<AidlCapability> & capabilities,HWDisplayId id,DisplayType type)84 Display::Display(android::Hwc2::Composer& composer,
85 const std::unordered_set<AidlCapability>& capabilities, HWDisplayId id,
86 DisplayType type)
87 : mComposer(composer), mCapabilities(capabilities), mId(id), mType(type) {
88 ALOGV("Created display %" PRIu64, id);
89 if (mType == hal::DisplayType::VIRTUAL) {
90 loadDisplayCapabilities();
91 }
92 }
93
~Display()94 Display::~Display() {
95 // Note: The calls to onOwningDisplayDestroyed() are allowed (and expected)
96 // to call Display::onLayerDestroyed(). As that call removes entries from
97 // mLayers, we do not want to have a for loop directly over it here. Since
98 // the end goal is an empty mLayers anyway, we just go ahead and swap an
99 // initially empty local container with mLayers, and then enumerate
100 // the contents of the local container.
101 Layers destroyingLayers;
102 std::swap(mLayers, destroyingLayers);
103 for (const auto& [_, weakLayer] : destroyingLayers) {
104 if (std::shared_ptr layer = weakLayer.lock()) {
105 layer->onOwningDisplayDestroyed();
106 }
107 }
108
109 Error error = Error::NONE;
110 const char* msg;
111 switch (mType) {
112 case DisplayType::PHYSICAL:
113 error = setVsyncEnabled(HWC2::Vsync::DISABLE);
114 msg = "disable VSYNC for";
115 break;
116
117 case DisplayType::VIRTUAL:
118 error = static_cast<Error>(mComposer.destroyVirtualDisplay(mId));
119 msg = "destroy virtual";
120 break;
121
122 case DisplayType::INVALID: // Used in unit tests.
123 break;
124 }
125
126 ALOGE_IF(error != Error::NONE, "%s: Failed to %s display %" PRIu64 ": %d", __FUNCTION__, msg,
127 mId, static_cast<int32_t>(error));
128
129 ALOGV("Destroyed display %" PRIu64, mId);
130 }
131
132 // Required by HWC2 display
acceptChanges()133 Error Display::acceptChanges()
134 {
135 auto intError = mComposer.acceptDisplayChanges(mId);
136 return static_cast<Error>(intError);
137 }
138
createLayer()139 base::expected<std::shared_ptr<HWC2::Layer>, hal::Error> Display::createLayer() {
140 HWLayerId layerId = 0;
141 auto intError = mComposer.createLayer(mId, &layerId);
142 auto error = static_cast<Error>(intError);
143 if (error != Error::NONE) {
144 return base::unexpected(error);
145 }
146
147 auto layer = std::make_shared<impl::Layer>(mComposer, mCapabilities, *this, layerId);
148 mLayers.emplace(layerId, layer);
149 return layer;
150 }
151
onLayerDestroyed(hal::HWLayerId layerId)152 void Display::onLayerDestroyed(hal::HWLayerId layerId) {
153 mLayers.erase(layerId);
154 }
155
isVsyncPeriodSwitchSupported() const156 bool Display::isVsyncPeriodSwitchSupported() const {
157 ALOGV("[%" PRIu64 "] isVsyncPeriodSwitchSupported()", mId);
158
159 return mComposer.isSupported(android::Hwc2::Composer::OptionalFeature::RefreshRateSwitching);
160 }
161
hasDisplayIdleTimerCapability() const162 bool Display::hasDisplayIdleTimerCapability() const {
163 bool isCapabilitySupported = false;
164 return mComposer.hasDisplayIdleTimerCapability(mId, &isCapabilitySupported) == Error::NONE &&
165 isCapabilitySupported;
166 }
167
getPhysicalDisplayOrientation(Hwc2::AidlTransform * outTransform) const168 Error Display::getPhysicalDisplayOrientation(Hwc2::AidlTransform* outTransform) const {
169 auto error = mComposer.getPhysicalDisplayOrientation(mId, outTransform);
170 return static_cast<Error>(error);
171 }
172
getChangedCompositionTypes(std::unordered_map<HWC2::Layer *,Composition> * outTypes)173 Error Display::getChangedCompositionTypes(std::unordered_map<HWC2::Layer*, Composition>* outTypes) {
174 std::vector<Hwc2::Layer> layerIds;
175 std::vector<Composition> types;
176 auto intError = mComposer.getChangedCompositionTypes(
177 mId, &layerIds, &types);
178 uint32_t numElements = layerIds.size();
179 const auto error = static_cast<Error>(intError);
180 if (error != Error::NONE) {
181 return error;
182 }
183
184 outTypes->clear();
185 outTypes->reserve(numElements);
186 for (uint32_t element = 0; element < numElements; ++element) {
187 auto layer = getLayerById(layerIds[element]);
188 if (layer) {
189 auto type = types[element];
190 ALOGV("getChangedCompositionTypes: adding %" PRIu64 " %s",
191 layer->getId(), to_string(type).c_str());
192 outTypes->emplace(layer.get(), type);
193 } else {
194 ALOGE("getChangedCompositionTypes: invalid layer %" PRIu64 " found"
195 " on display %" PRIu64, layerIds[element], mId);
196 }
197 }
198
199 return Error::NONE;
200 }
201
getColorModes(std::vector<ColorMode> * outModes) const202 Error Display::getColorModes(std::vector<ColorMode>* outModes) const
203 {
204 auto intError = mComposer.getColorModes(mId, outModes);
205 return static_cast<Error>(intError);
206 }
207
getSupportedPerFrameMetadata() const208 int32_t Display::getSupportedPerFrameMetadata() const
209 {
210 int32_t supportedPerFrameMetadata = 0;
211
212 std::vector<Hwc2::PerFrameMetadataKey> tmpKeys = mComposer.getPerFrameMetadataKeys(mId);
213 std::set<Hwc2::PerFrameMetadataKey> keys(tmpKeys.begin(), tmpKeys.end());
214
215 // Check whether a specific metadata type is supported. A metadata type is considered
216 // supported if and only if all required fields are supported.
217
218 // SMPTE2086
219 if (hasMetadataKey(keys, Hwc2::PerFrameMetadataKey::DISPLAY_RED_PRIMARY_X) &&
220 hasMetadataKey(keys, Hwc2::PerFrameMetadataKey::DISPLAY_RED_PRIMARY_Y) &&
221 hasMetadataKey(keys, Hwc2::PerFrameMetadataKey::DISPLAY_GREEN_PRIMARY_X) &&
222 hasMetadataKey(keys, Hwc2::PerFrameMetadataKey::DISPLAY_GREEN_PRIMARY_Y) &&
223 hasMetadataKey(keys, Hwc2::PerFrameMetadataKey::DISPLAY_BLUE_PRIMARY_X) &&
224 hasMetadataKey(keys, Hwc2::PerFrameMetadataKey::DISPLAY_BLUE_PRIMARY_Y) &&
225 hasMetadataKey(keys, Hwc2::PerFrameMetadataKey::WHITE_POINT_X) &&
226 hasMetadataKey(keys, Hwc2::PerFrameMetadataKey::WHITE_POINT_Y) &&
227 hasMetadataKey(keys, Hwc2::PerFrameMetadataKey::MAX_LUMINANCE) &&
228 hasMetadataKey(keys, Hwc2::PerFrameMetadataKey::MIN_LUMINANCE)) {
229 supportedPerFrameMetadata |= HdrMetadata::Type::SMPTE2086;
230 }
231 // CTA861_3
232 if (hasMetadataKey(keys, Hwc2::PerFrameMetadataKey::MAX_CONTENT_LIGHT_LEVEL) &&
233 hasMetadataKey(keys, Hwc2::PerFrameMetadataKey::MAX_FRAME_AVERAGE_LIGHT_LEVEL)) {
234 supportedPerFrameMetadata |= HdrMetadata::Type::CTA861_3;
235 }
236
237 // HDR10PLUS
238 if (hasMetadataKey(keys, Hwc2::PerFrameMetadataKey::HDR10_PLUS_SEI)) {
239 supportedPerFrameMetadata |= HdrMetadata::Type::HDR10PLUS;
240 }
241
242 return supportedPerFrameMetadata;
243 }
244
getRenderIntents(ColorMode colorMode,std::vector<RenderIntent> * outRenderIntents) const245 Error Display::getRenderIntents(ColorMode colorMode,
246 std::vector<RenderIntent>* outRenderIntents) const
247 {
248 auto intError = mComposer.getRenderIntents(mId, colorMode, outRenderIntents);
249 return static_cast<Error>(intError);
250 }
251
getDataspaceSaturationMatrix(Dataspace dataspace,android::mat4 * outMatrix)252 Error Display::getDataspaceSaturationMatrix(Dataspace dataspace, android::mat4* outMatrix)
253 {
254 auto intError = mComposer.getDataspaceSaturationMatrix(dataspace, outMatrix);
255 return static_cast<Error>(intError);
256 }
257
getName(std::string * outName) const258 Error Display::getName(std::string* outName) const
259 {
260 auto intError = mComposer.getDisplayName(mId, outName);
261 return static_cast<Error>(intError);
262 }
263
getRequests(HWC2::DisplayRequest * outDisplayRequests,std::unordered_map<HWC2::Layer *,LayerRequest> * outLayerRequests)264 Error Display::getRequests(HWC2::DisplayRequest* outDisplayRequests,
265 std::unordered_map<HWC2::Layer*, LayerRequest>* outLayerRequests) {
266 uint32_t intDisplayRequests = 0;
267 std::vector<Hwc2::Layer> layerIds;
268 std::vector<uint32_t> layerRequests;
269 auto intError = mComposer.getDisplayRequests(
270 mId, &intDisplayRequests, &layerIds, &layerRequests);
271 uint32_t numElements = layerIds.size();
272 auto error = static_cast<Error>(intError);
273 if (error != Error::NONE) {
274 return error;
275 }
276
277 *outDisplayRequests = static_cast<DisplayRequest>(intDisplayRequests);
278 outLayerRequests->clear();
279 outLayerRequests->reserve(numElements);
280 for (uint32_t element = 0; element < numElements; ++element) {
281 auto layer = getLayerById(layerIds[element]);
282 if (layer) {
283 auto layerRequest =
284 static_cast<LayerRequest>(layerRequests[element]);
285 outLayerRequests->emplace(layer.get(), layerRequest);
286 } else {
287 ALOGE("getRequests: invalid layer %" PRIu64 " found on display %"
288 PRIu64, layerIds[element], mId);
289 }
290 }
291
292 return Error::NONE;
293 }
294
getConnectionType() const295 ftl::Expected<ui::DisplayConnectionType, hal::Error> Display::getConnectionType() const {
296 if (!mConnectionType) {
297 mConnectionType = [this]() -> decltype(mConnectionType) {
298 if (mType != DisplayType::PHYSICAL) {
299 return ftl::Unexpected(Error::BAD_DISPLAY);
300 }
301
302 using ConnectionType = Hwc2::IComposerClient::DisplayConnectionType;
303 ConnectionType connectionType;
304
305 if (const auto error = static_cast<Error>(
306 mComposer.getDisplayConnectionType(mId, &connectionType));
307 error != Error::NONE) {
308 return ftl::Unexpected(error);
309 }
310
311 return connectionType == ConnectionType::INTERNAL ? ui::DisplayConnectionType::Internal
312 : ui::DisplayConnectionType::External;
313 }();
314 }
315
316 return *mConnectionType;
317 }
318
hasCapability(DisplayCapability capability) const319 bool Display::hasCapability(DisplayCapability capability) const {
320 std::scoped_lock lock(mDisplayCapabilitiesMutex);
321 if (mDisplayCapabilities) {
322 return mDisplayCapabilities->count(capability) > 0;
323 }
324
325 ALOGW("Can't query capability %s."
326 " Display Capabilities were not queried from HWC yet",
327 to_string(capability).c_str());
328
329 return false;
330 }
331
supportsDoze(bool * outSupport) const332 Error Display::supportsDoze(bool* outSupport) const {
333 {
334 std::scoped_lock lock(mDisplayCapabilitiesMutex);
335 if (!mDisplayCapabilities) {
336 // The display has not turned on since boot, so DOZE support is unknown.
337 ALOGW("%s: haven't queried capabilities yet!", __func__);
338 return Error::NO_RESOURCES;
339 }
340 }
341 *outSupport = hasCapability(DisplayCapability::DOZE);
342 return Error::NONE;
343 }
344
getHdrCapabilities(HdrCapabilities * outCapabilities) const345 Error Display::getHdrCapabilities(HdrCapabilities* outCapabilities) const
346 {
347 float maxLuminance = -1.0f;
348 float maxAverageLuminance = -1.0f;
349 float minLuminance = -1.0f;
350 std::vector<Hwc2::Hdr> hdrTypes;
351 auto intError = mComposer.getHdrCapabilities(mId, &hdrTypes, &maxLuminance,
352 &maxAverageLuminance, &minLuminance);
353 auto error = static_cast<HWC2::Error>(intError);
354
355 if (error != Error::NONE) {
356 return error;
357 }
358
359 *outCapabilities =
360 HdrCapabilities(std::move(hdrTypes), maxLuminance, maxAverageLuminance, minLuminance);
361 return Error::NONE;
362 }
363
getOverlaySupport(OverlayProperties * outProperties) const364 Error Display::getOverlaySupport(OverlayProperties* outProperties) const {
365 auto intError = mComposer.getOverlaySupport(outProperties);
366 return static_cast<Error>(intError);
367 }
368
getDisplayedContentSamplingAttributes(hal::PixelFormat * outFormat,Dataspace * outDataspace,uint8_t * outComponentMask) const369 Error Display::getDisplayedContentSamplingAttributes(hal::PixelFormat* outFormat,
370 Dataspace* outDataspace,
371 uint8_t* outComponentMask) const {
372 auto intError = mComposer.getDisplayedContentSamplingAttributes(mId, outFormat, outDataspace,
373 outComponentMask);
374 return static_cast<Error>(intError);
375 }
376
setDisplayContentSamplingEnabled(bool enabled,uint8_t componentMask,uint64_t maxFrames) const377 Error Display::setDisplayContentSamplingEnabled(bool enabled, uint8_t componentMask,
378 uint64_t maxFrames) const {
379 auto intError =
380 mComposer.setDisplayContentSamplingEnabled(mId, enabled, componentMask, maxFrames);
381 return static_cast<Error>(intError);
382 }
383
getDisplayedContentSample(uint64_t maxFrames,uint64_t timestamp,android::DisplayedFrameStats * outStats) const384 Error Display::getDisplayedContentSample(uint64_t maxFrames, uint64_t timestamp,
385 android::DisplayedFrameStats* outStats) const {
386 auto intError = mComposer.getDisplayedContentSample(mId, maxFrames, timestamp, outStats);
387 return static_cast<Error>(intError);
388 }
389
getReleaseFences(std::unordered_map<HWC2::Layer *,sp<Fence>> * outFences) const390 Error Display::getReleaseFences(std::unordered_map<HWC2::Layer*, sp<Fence>>* outFences) const {
391 std::vector<Hwc2::Layer> layerIds;
392 std::vector<int> fenceFds;
393 auto intError = mComposer.getReleaseFences(mId, &layerIds, &fenceFds);
394 auto error = static_cast<Error>(intError);
395 uint32_t numElements = layerIds.size();
396 if (error != Error::NONE) {
397 return error;
398 }
399
400 std::unordered_map<HWC2::Layer*, sp<Fence>> releaseFences;
401 releaseFences.reserve(numElements);
402 for (uint32_t element = 0; element < numElements; ++element) {
403 auto layer = getLayerById(layerIds[element]);
404 if (layer) {
405 sp<Fence> fence(sp<Fence>::make(fenceFds[element]));
406 releaseFences.emplace(layer.get(), fence);
407 } else {
408 ALOGE("getReleaseFences: invalid layer %" PRIu64
409 " found on display %" PRIu64, layerIds[element], mId);
410 for (; element < numElements; ++element) {
411 close(fenceFds[element]);
412 }
413 return Error::BAD_LAYER;
414 }
415 }
416
417 *outFences = std::move(releaseFences);
418 return Error::NONE;
419 }
420
present(sp<Fence> * outPresentFence)421 Error Display::present(sp<Fence>* outPresentFence)
422 {
423 int32_t presentFenceFd = -1;
424 auto intError = mComposer.presentDisplay(mId, &presentFenceFd);
425 auto error = static_cast<Error>(intError);
426 if (error != Error::NONE) {
427 return error;
428 }
429
430 *outPresentFence = sp<Fence>::make(presentFenceFd);
431 return Error::NONE;
432 }
433
setActiveConfigWithConstraints(hal::HWConfigId configId,const VsyncPeriodChangeConstraints & constraints,VsyncPeriodChangeTimeline * outTimeline)434 Error Display::setActiveConfigWithConstraints(hal::HWConfigId configId,
435 const VsyncPeriodChangeConstraints& constraints,
436 VsyncPeriodChangeTimeline* outTimeline) {
437 ALOGV("[%" PRIu64 "] setActiveConfigWithConstraints", mId);
438
439 // FIXME (b/319505580): At least the first config set on an external display must be
440 // `setActiveConfig`, so skip over the block that calls `setActiveConfigWithConstraints`
441 // for simplicity.
442 if (isVsyncPeriodSwitchSupported() &&
443 getConnectionType().value_opt() != ui::DisplayConnectionType::External) {
444 Hwc2::IComposerClient::VsyncPeriodChangeConstraints hwc2Constraints;
445 hwc2Constraints.desiredTimeNanos = constraints.desiredTimeNanos;
446 hwc2Constraints.seamlessRequired = constraints.seamlessRequired;
447
448 Hwc2::VsyncPeriodChangeTimeline vsyncPeriodChangeTimeline = {};
449 auto intError = mComposer.setActiveConfigWithConstraints(mId, configId, hwc2Constraints,
450 &vsyncPeriodChangeTimeline);
451 outTimeline->newVsyncAppliedTimeNanos = vsyncPeriodChangeTimeline.newVsyncAppliedTimeNanos;
452 outTimeline->refreshRequired = vsyncPeriodChangeTimeline.refreshRequired;
453 outTimeline->refreshTimeNanos = vsyncPeriodChangeTimeline.refreshTimeNanos;
454 return static_cast<Error>(intError);
455 }
456
457 // Use legacy setActiveConfig instead
458 ALOGV("fallback to legacy setActiveConfig");
459 const auto now = systemTime();
460 if (constraints.desiredTimeNanos > now || constraints.seamlessRequired) {
461 ALOGE("setActiveConfigWithConstraints received constraints that can't be satisfied");
462 }
463
464 auto intError_2_4 = mComposer.setActiveConfig(mId, configId);
465 outTimeline->newVsyncAppliedTimeNanos = std::max(now, constraints.desiredTimeNanos);
466 outTimeline->refreshRequired = true;
467 outTimeline->refreshTimeNanos = now;
468 return static_cast<Error>(intError_2_4);
469 }
470
setClientTarget(uint32_t slot,const sp<GraphicBuffer> & target,const sp<Fence> & acquireFence,Dataspace dataspace,float hdrSdrRatio)471 Error Display::setClientTarget(uint32_t slot, const sp<GraphicBuffer>& target,
472 const sp<Fence>& acquireFence, Dataspace dataspace,
473 float hdrSdrRatio) {
474 // TODO: Properly encode client target surface damage
475 int32_t fenceFd = acquireFence->dup();
476 auto intError =
477 mComposer.setClientTarget(mId, slot, target, fenceFd, dataspace,
478 std::vector<Hwc2::IComposerClient::Rect>(), hdrSdrRatio);
479 return static_cast<Error>(intError);
480 }
481
setColorMode(ColorMode mode,RenderIntent renderIntent)482 Error Display::setColorMode(ColorMode mode, RenderIntent renderIntent)
483 {
484 auto intError = mComposer.setColorMode(mId, mode, renderIntent);
485 return static_cast<Error>(intError);
486 }
487
setColorTransform(const android::mat4 & matrix)488 Error Display::setColorTransform(const android::mat4& matrix) {
489 auto intError = mComposer.setColorTransform(mId, matrix.asArray());
490 return static_cast<Error>(intError);
491 }
492
setOutputBuffer(const sp<GraphicBuffer> & buffer,const sp<Fence> & releaseFence)493 Error Display::setOutputBuffer(const sp<GraphicBuffer>& buffer,
494 const sp<Fence>& releaseFence)
495 {
496 int32_t fenceFd = releaseFence->dup();
497 auto handle = buffer->getNativeBuffer()->handle;
498 auto intError = mComposer.setOutputBuffer(mId, handle, fenceFd);
499 close(fenceFd);
500 return static_cast<Error>(intError);
501 }
502
setPowerMode(PowerMode mode)503 Error Display::setPowerMode(PowerMode mode)
504 {
505 auto intMode = static_cast<Hwc2::IComposerClient::PowerMode>(mode);
506 auto intError = mComposer.setPowerMode(mId, intMode);
507
508 if (mode == PowerMode::ON) {
509 loadDisplayCapabilities();
510 }
511
512 return static_cast<Error>(intError);
513 }
514
setVsyncEnabled(Vsync enabled)515 Error Display::setVsyncEnabled(Vsync enabled)
516 {
517 auto intEnabled = static_cast<Hwc2::IComposerClient::Vsync>(enabled);
518 auto intError = mComposer.setVsyncEnabled(mId, intEnabled);
519 return static_cast<Error>(intError);
520 }
521
validate(nsecs_t expectedPresentTime,int32_t frameIntervalNs,uint32_t * outNumTypes,uint32_t * outNumRequests)522 Error Display::validate(nsecs_t expectedPresentTime, int32_t frameIntervalNs, uint32_t* outNumTypes,
523 uint32_t* outNumRequests) {
524 uint32_t numTypes = 0;
525 uint32_t numRequests = 0;
526 auto intError = mComposer.validateDisplay(mId, expectedPresentTime, frameIntervalNs, &numTypes,
527 &numRequests);
528 auto error = static_cast<Error>(intError);
529 if (error != Error::NONE && !hasChangesError(error)) {
530 return error;
531 }
532
533 *outNumTypes = numTypes;
534 *outNumRequests = numRequests;
535 return error;
536 }
537
presentOrValidate(nsecs_t expectedPresentTime,int32_t frameIntervalNs,uint32_t * outNumTypes,uint32_t * outNumRequests,sp<android::Fence> * outPresentFence,uint32_t * state)538 Error Display::presentOrValidate(nsecs_t expectedPresentTime, int32_t frameIntervalNs,
539 uint32_t* outNumTypes, uint32_t* outNumRequests,
540 sp<android::Fence>* outPresentFence, uint32_t* state) {
541 uint32_t numTypes = 0;
542 uint32_t numRequests = 0;
543 int32_t presentFenceFd = -1;
544 auto intError =
545 mComposer.presentOrValidateDisplay(mId, expectedPresentTime, frameIntervalNs, &numTypes,
546 &numRequests, &presentFenceFd, state);
547 auto error = static_cast<Error>(intError);
548 if (error != Error::NONE && !hasChangesError(error)) {
549 return error;
550 }
551
552 if (*state == 1) {
553 *outPresentFence = sp<Fence>::make(presentFenceFd);
554 }
555
556 if (*state == 0) {
557 *outNumTypes = numTypes;
558 *outNumRequests = numRequests;
559 }
560 return error;
561 }
562
setDisplayBrightness(float brightness,float brightnessNits,const Hwc2::Composer::DisplayBrightnessOptions & options)563 ftl::Future<Error> Display::setDisplayBrightness(
564 float brightness, float brightnessNits,
565 const Hwc2::Composer::DisplayBrightnessOptions& options) {
566 return ftl::defer([composer = &mComposer, id = mId, brightness, brightnessNits, options] {
567 const auto intError =
568 composer->setDisplayBrightness(id, brightness, brightnessNits, options);
569 return static_cast<Error>(intError);
570 });
571 }
572
setBootDisplayConfig(hal::HWConfigId configId)573 Error Display::setBootDisplayConfig(hal::HWConfigId configId) {
574 auto intError = mComposer.setBootDisplayConfig(mId, configId);
575 return static_cast<Error>(intError);
576 }
577
clearBootDisplayConfig()578 Error Display::clearBootDisplayConfig() {
579 auto intError = mComposer.clearBootDisplayConfig(mId);
580 return static_cast<Error>(intError);
581 }
582
getPreferredBootDisplayConfig(hal::HWConfigId * configId) const583 Error Display::getPreferredBootDisplayConfig(hal::HWConfigId* configId) const {
584 auto intError = mComposer.getPreferredBootDisplayConfig(mId, configId);
585 return static_cast<Error>(intError);
586 }
587
setAutoLowLatencyMode(bool on)588 Error Display::setAutoLowLatencyMode(bool on) {
589 auto intError = mComposer.setAutoLowLatencyMode(mId, on);
590 return static_cast<Error>(intError);
591 }
592
getSupportedContentTypes(std::vector<ContentType> * outSupportedContentTypes) const593 Error Display::getSupportedContentTypes(std::vector<ContentType>* outSupportedContentTypes) const {
594 std::vector<Hwc2::IComposerClient::ContentType> tmpSupportedContentTypes;
595 auto intError = mComposer.getSupportedContentTypes(mId, &tmpSupportedContentTypes);
596 for (Hwc2::IComposerClient::ContentType contentType : tmpSupportedContentTypes) {
597 outSupportedContentTypes->push_back(static_cast<ContentType>(contentType));
598 }
599 return static_cast<Error>(intError);
600 }
601
setContentType(ContentType contentType)602 Error Display::setContentType(ContentType contentType) {
603 auto intError = mComposer.setContentType(mId, contentType);
604 return static_cast<Error>(intError);
605 }
606
getClientTargetProperty(aidl::android::hardware::graphics::composer3::ClientTargetPropertyWithBrightness * outClientTargetProperty)607 Error Display::getClientTargetProperty(
608 aidl::android::hardware::graphics::composer3::ClientTargetPropertyWithBrightness*
609 outClientTargetProperty) {
610 const auto error = mComposer.getClientTargetProperty(mId, outClientTargetProperty);
611 return static_cast<Error>(error);
612 }
613
getRequestedLuts(LayerLuts * outLuts,LutFileDescriptorMapper & lutFileDescriptorMapper)614 Error Display::getRequestedLuts(LayerLuts* outLuts,
615 LutFileDescriptorMapper& lutFileDescriptorMapper) {
616 std::vector<Hwc2::Layer> layerIds;
617 std::vector<DisplayLuts::LayerLut> tmpLuts;
618 const auto error = static_cast<Error>(mComposer.getRequestedLuts(mId, &layerIds, &tmpLuts));
619 if (error != Error::NONE) {
620 return error;
621 }
622
623 uint32_t numElements = layerIds.size();
624 outLuts->clear();
625 for (uint32_t i = 0; i < numElements; ++i) {
626 auto layer = getLayerById(layerIds[i]);
627 if (layer) {
628 auto& layerLut = tmpLuts[i];
629 if (layerLut.luts.pfd.get() >= 0 && layerLut.luts.offsets.has_value()) {
630 const auto& offsets = layerLut.luts.offsets.value();
631 std::vector<std::pair<int32_t, LutProperties>> lutOffsetsAndProperties;
632 lutOffsetsAndProperties.reserve(offsets.size());
633 std::transform(offsets.begin(), offsets.end(), layerLut.luts.lutProperties.begin(),
634 std::back_inserter(lutOffsetsAndProperties),
635 [](int32_t i, LutProperties j) { return std::make_pair(i, j); });
636 outLuts->emplace_or_replace(layer.get(), lutOffsetsAndProperties);
637 lutFileDescriptorMapper.emplace_or_replace(layer.get(),
638 ::android::base::unique_fd(
639 layerLut.luts.pfd.release()));
640 } else {
641 ALOGE("getRequestedLuts: invalid luts on layer %" PRIu64 " found"
642 " on display %" PRIu64 ". pfd.get()=%d, offsets.has_value()=%d",
643 layerIds[i], mId, layerLut.luts.pfd.get(), layerLut.luts.offsets.has_value());
644 }
645 } else {
646 ALOGE("getRequestedLuts: invalid layer %" PRIu64 " found"
647 " on display %" PRIu64,
648 layerIds[i], mId);
649 }
650 }
651
652 return Error::NONE;
653 }
654
getDisplayDecorationSupport(std::optional<aidl::android::hardware::graphics::common::DisplayDecorationSupport> * support)655 Error Display::getDisplayDecorationSupport(
656 std::optional<aidl::android::hardware::graphics::common::DisplayDecorationSupport>*
657 support) {
658 const auto error = mComposer.getDisplayDecorationSupport(mId, support);
659 return static_cast<Error>(error);
660 }
661
setIdleTimerEnabled(std::chrono::milliseconds timeout)662 Error Display::setIdleTimerEnabled(std::chrono::milliseconds timeout) {
663 const auto error = mComposer.setIdleTimerEnabled(mId, timeout);
664 return static_cast<Error>(error);
665 }
666
getMaxLayerPictureProfiles(int32_t * outMaxProfiles)667 Error Display::getMaxLayerPictureProfiles(int32_t* outMaxProfiles) {
668 const auto error = mComposer.getMaxLayerPictureProfiles(mId, outMaxProfiles);
669 return static_cast<Error>(error);
670 }
671
setPictureProfileHandle(const PictureProfileHandle & handle)672 Error Display::setPictureProfileHandle(const PictureProfileHandle& handle) {
673 const auto error = mComposer.setDisplayPictureProfileId(mId, handle.getId());
674 return static_cast<Error>(error);
675 }
676
startHdcpNegotiation(const aidl::android::hardware::drm::HdcpLevels & levels)677 Error Display::startHdcpNegotiation(const aidl::android::hardware::drm::HdcpLevels& levels) {
678 const auto error = mComposer.startHdcpNegotiation(mId, levels);
679 return static_cast<Error>(error);
680 }
681
getLuts(const std::vector<sp<GraphicBuffer>> & buffers,std::vector<aidl::android::hardware::graphics::composer3::Luts> * outLuts)682 Error Display::getLuts(const std::vector<sp<GraphicBuffer>>& buffers,
683 std::vector<aidl::android::hardware::graphics::composer3::Luts>* outLuts) {
684 const auto error = mComposer.getLuts(mId, buffers, outLuts);
685 return static_cast<Error>(error);
686 }
687
688 // For use by Device
689
setConnected(bool connected)690 void Display::setConnected(bool connected) {
691 if (!mIsConnected && connected) {
692 mComposer.setClientTargetSlotCount(mId);
693 }
694 mIsConnected = connected;
695 }
696
697 // Other Display methods
698
getLayerById(HWLayerId id) const699 std::shared_ptr<HWC2::Layer> Display::getLayerById(HWLayerId id) const {
700 auto it = mLayers.find(id);
701 return it != mLayers.end() ? it->second.lock() : nullptr;
702 }
703
loadDisplayCapabilities()704 void Display::loadDisplayCapabilities() {
705 std::call_once(mDisplayCapabilityQueryFlag, [this]() {
706 std::vector<DisplayCapability> tmpCapabilities;
707 auto error =
708 static_cast<Error>(mComposer.getDisplayCapabilities(mId, &tmpCapabilities));
709 if (error == Error::NONE) {
710 std::scoped_lock lock(mDisplayCapabilitiesMutex);
711 mDisplayCapabilities.emplace();
712 for (auto capability : tmpCapabilities) {
713 mDisplayCapabilities->emplace(capability);
714 }
715 } else if (error == Error::UNSUPPORTED) {
716 std::scoped_lock lock(mDisplayCapabilitiesMutex);
717 mDisplayCapabilities.emplace();
718 if (mCapabilities.count(AidlCapability::SKIP_CLIENT_COLOR_TRANSFORM)) {
719 mDisplayCapabilities->emplace(DisplayCapability::SKIP_CLIENT_COLOR_TRANSFORM);
720 }
721 bool dozeSupport = false;
722 error = static_cast<Error>(mComposer.getDozeSupport(mId, &dozeSupport));
723 if (error == Error::NONE && dozeSupport) {
724 mDisplayCapabilities->emplace(DisplayCapability::DOZE);
725 }
726 }
727 });
728 }
729
setPhysicalSizeInMm(std::optional<ui::Size> size)730 void Display::setPhysicalSizeInMm(std::optional<ui::Size> size) {
731 mPhysicalSize = size;
732 }
733
734 } // namespace impl
735
736 // Layer methods
737
738 namespace {
convertRegionToHwcRects(const Region & region)739 std::vector<Hwc2::IComposerClient::Rect> convertRegionToHwcRects(const Region& region) {
740 size_t rectCount = 0;
741 Rect const* rectArray = region.getArray(&rectCount);
742
743 std::vector<Hwc2::IComposerClient::Rect> hwcRects;
744 hwcRects.reserve(rectCount);
745 for (size_t rect = 0; rect < rectCount; ++rect) {
746 hwcRects.push_back({rectArray[rect].left, rectArray[rect].top, rectArray[rect].right,
747 rectArray[rect].bottom});
748 }
749 return hwcRects;
750 }
751 } // namespace
752
753 Layer::~Layer() = default;
754
755 namespace impl {
756
Layer(android::Hwc2::Composer & composer,const std::unordered_set<AidlCapability> & capabilities,HWC2::Display & display,HWLayerId layerId)757 Layer::Layer(android::Hwc2::Composer& composer,
758 const std::unordered_set<AidlCapability>& capabilities, HWC2::Display& display,
759 HWLayerId layerId)
760 : mComposer(composer),
761 mCapabilities(capabilities),
762 mDisplay(&display),
763 mId(layerId),
764 mColorMatrix(android::mat4()) {
765 ALOGV("Created layer %" PRIu64 " on display %" PRIu64, layerId, display.getId());
766 }
767
~Layer()768 Layer::~Layer()
769 {
770 onOwningDisplayDestroyed();
771 }
772
onOwningDisplayDestroyed()773 void Layer::onOwningDisplayDestroyed() {
774 // Note: onOwningDisplayDestroyed() may be called to perform cleanup by
775 // either the Layer dtor or by the Display dtor and must be safe to call
776 // from either path. In particular, the call to Display::onLayerDestroyed()
777 // is expected to be safe to do,
778
779 if (CC_UNLIKELY(!mDisplay)) {
780 return;
781 }
782
783 mDisplay->onLayerDestroyed(mId);
784
785 // Note: If the HWC display was actually disconnected, these calls are will
786 // return an error. We always make them as there may be other reasons for
787 // the HWC2::Display to be destroyed.
788 auto intError = mComposer.destroyLayer(mDisplay->getId(), mId);
789 auto error = static_cast<Error>(intError);
790 ALOGE_IF(error != Error::NONE,
791 "destroyLayer(%" PRIu64 ", %" PRIu64 ")"
792 " failed: %s (%d)",
793 mDisplay->getId(), mId, to_string(error).c_str(), intError);
794
795 mDisplay = nullptr;
796 }
797
setCursorPosition(int32_t x,int32_t y)798 Error Layer::setCursorPosition(int32_t x, int32_t y)
799 {
800 if (CC_UNLIKELY(!mDisplay)) {
801 return Error::BAD_DISPLAY;
802 }
803
804 auto intError = mComposer.setCursorPosition(mDisplay->getId(), mId, x, y);
805 return static_cast<Error>(intError);
806 }
807
setBuffer(uint32_t slot,const sp<GraphicBuffer> & buffer,const sp<Fence> & acquireFence)808 Error Layer::setBuffer(uint32_t slot, const sp<GraphicBuffer>& buffer,
809 const sp<Fence>& acquireFence)
810 {
811 if (CC_UNLIKELY(!mDisplay)) {
812 return Error::BAD_DISPLAY;
813 }
814
815 if (buffer == nullptr && mBufferSlot == slot) {
816 return Error::NONE;
817 }
818 mBufferSlot = slot;
819
820 int32_t fenceFd = acquireFence->dup();
821 auto intError = mComposer.setLayerBuffer(mDisplay->getId(), mId, slot, buffer, fenceFd);
822 return static_cast<Error>(intError);
823 }
824
setBufferSlotsToClear(const std::vector<uint32_t> & slotsToClear,uint32_t activeBufferSlot)825 Error Layer::setBufferSlotsToClear(const std::vector<uint32_t>& slotsToClear,
826 uint32_t activeBufferSlot) {
827 if (CC_UNLIKELY(!mDisplay)) {
828 return Error::BAD_DISPLAY;
829 }
830 auto intError = mComposer.setLayerBufferSlotsToClear(mDisplay->getId(), mId, slotsToClear,
831 activeBufferSlot);
832 return static_cast<Error>(intError);
833 }
834
setSurfaceDamage(const Region & damage)835 Error Layer::setSurfaceDamage(const Region& damage)
836 {
837 if (CC_UNLIKELY(!mDisplay)) {
838 return Error::BAD_DISPLAY;
839 }
840
841 if (damage.isRect() && mDamageRegion.isRect() &&
842 (damage.getBounds() == mDamageRegion.getBounds())) {
843 return Error::NONE;
844 }
845 mDamageRegion = damage;
846
847 // We encode default full-screen damage as INVALID_RECT upstream, but as 0
848 // rects for HWC
849 Hwc2::Error intError = Hwc2::Error::NONE;
850 if (damage.isRect() && damage.getBounds() == Rect::INVALID_RECT) {
851 intError = mComposer.setLayerSurfaceDamage(mDisplay->getId(), mId,
852 std::vector<Hwc2::IComposerClient::Rect>());
853 } else {
854 const auto hwcRects = convertRegionToHwcRects(damage);
855 intError = mComposer.setLayerSurfaceDamage(mDisplay->getId(), mId, hwcRects);
856 }
857
858 return static_cast<Error>(intError);
859 }
860
setBlendMode(BlendMode mode)861 Error Layer::setBlendMode(BlendMode mode)
862 {
863 if (CC_UNLIKELY(!mDisplay)) {
864 return Error::BAD_DISPLAY;
865 }
866
867 auto intError = mComposer.setLayerBlendMode(mDisplay->getId(), mId, mode);
868 return static_cast<Error>(intError);
869 }
870
setColor(Color color)871 Error Layer::setColor(Color color) {
872 if (CC_UNLIKELY(!mDisplay)) {
873 return Error::BAD_DISPLAY;
874 }
875
876 auto intError = mComposer.setLayerColor(mDisplay->getId(), mId, color);
877 return static_cast<Error>(intError);
878 }
879
setCompositionType(Composition type)880 Error Layer::setCompositionType(Composition type)
881 {
882 if (CC_UNLIKELY(!mDisplay)) {
883 return Error::BAD_DISPLAY;
884 }
885
886 auto intError = mComposer.setLayerCompositionType(mDisplay->getId(), mId, type);
887 return static_cast<Error>(intError);
888 }
889
setDataspace(Dataspace dataspace)890 Error Layer::setDataspace(Dataspace dataspace)
891 {
892 if (CC_UNLIKELY(!mDisplay)) {
893 return Error::BAD_DISPLAY;
894 }
895
896 if (dataspace == mDataSpace) {
897 return Error::NONE;
898 }
899 mDataSpace = dataspace;
900 auto intError = mComposer.setLayerDataspace(mDisplay->getId(), mId, mDataSpace);
901 return static_cast<Error>(intError);
902 }
903
setPerFrameMetadata(const int32_t supportedPerFrameMetadata,const android::HdrMetadata & metadata)904 Error Layer::setPerFrameMetadata(const int32_t supportedPerFrameMetadata,
905 const android::HdrMetadata& metadata)
906 {
907 if (CC_UNLIKELY(!mDisplay)) {
908 return Error::BAD_DISPLAY;
909 }
910
911 if (metadata == mHdrMetadata) {
912 return Error::NONE;
913 }
914
915 mHdrMetadata = metadata;
916 int validTypes = mHdrMetadata.validTypes & supportedPerFrameMetadata;
917 std::vector<Hwc2::PerFrameMetadata> perFrameMetadatas;
918 if (validTypes & HdrMetadata::SMPTE2086) {
919 perFrameMetadatas.insert(perFrameMetadatas.end(),
920 {{Hwc2::PerFrameMetadataKey::DISPLAY_RED_PRIMARY_X,
921 mHdrMetadata.smpte2086.displayPrimaryRed.x},
922 {Hwc2::PerFrameMetadataKey::DISPLAY_RED_PRIMARY_Y,
923 mHdrMetadata.smpte2086.displayPrimaryRed.y},
924 {Hwc2::PerFrameMetadataKey::DISPLAY_GREEN_PRIMARY_X,
925 mHdrMetadata.smpte2086.displayPrimaryGreen.x},
926 {Hwc2::PerFrameMetadataKey::DISPLAY_GREEN_PRIMARY_Y,
927 mHdrMetadata.smpte2086.displayPrimaryGreen.y},
928 {Hwc2::PerFrameMetadataKey::DISPLAY_BLUE_PRIMARY_X,
929 mHdrMetadata.smpte2086.displayPrimaryBlue.x},
930 {Hwc2::PerFrameMetadataKey::DISPLAY_BLUE_PRIMARY_Y,
931 mHdrMetadata.smpte2086.displayPrimaryBlue.y},
932 {Hwc2::PerFrameMetadataKey::WHITE_POINT_X,
933 mHdrMetadata.smpte2086.whitePoint.x},
934 {Hwc2::PerFrameMetadataKey::WHITE_POINT_Y,
935 mHdrMetadata.smpte2086.whitePoint.y},
936 {Hwc2::PerFrameMetadataKey::MAX_LUMINANCE,
937 mHdrMetadata.smpte2086.maxLuminance},
938 {Hwc2::PerFrameMetadataKey::MIN_LUMINANCE,
939 mHdrMetadata.smpte2086.minLuminance}});
940 }
941
942 if (validTypes & HdrMetadata::CTA861_3) {
943 perFrameMetadatas.insert(perFrameMetadatas.end(),
944 {{Hwc2::PerFrameMetadataKey::MAX_CONTENT_LIGHT_LEVEL,
945 mHdrMetadata.cta8613.maxContentLightLevel},
946 {Hwc2::PerFrameMetadataKey::MAX_FRAME_AVERAGE_LIGHT_LEVEL,
947 mHdrMetadata.cta8613.maxFrameAverageLightLevel}});
948 }
949
950 const Error error = static_cast<Error>(
951 mComposer.setLayerPerFrameMetadata(mDisplay->getId(), mId, perFrameMetadatas));
952 if (error != Error::NONE) {
953 return error;
954 }
955
956 std::vector<Hwc2::PerFrameMetadataBlob> perFrameMetadataBlobs;
957 if (validTypes & HdrMetadata::HDR10PLUS) {
958 if (CC_UNLIKELY(mHdrMetadata.hdr10plus.size() == 0)) {
959 return Error::BAD_PARAMETER;
960 }
961
962 perFrameMetadataBlobs.push_back(
963 {Hwc2::PerFrameMetadataKey::HDR10_PLUS_SEI, mHdrMetadata.hdr10plus});
964 }
965
966 return static_cast<Error>(
967 mComposer.setLayerPerFrameMetadataBlobs(mDisplay->getId(), mId, perFrameMetadataBlobs));
968 }
969
setDisplayFrame(const Rect & frame)970 Error Layer::setDisplayFrame(const Rect& frame)
971 {
972 if (CC_UNLIKELY(!mDisplay)) {
973 return Error::BAD_DISPLAY;
974 }
975
976 Hwc2::IComposerClient::Rect hwcRect{frame.left, frame.top,
977 frame.right, frame.bottom};
978 auto intError = mComposer.setLayerDisplayFrame(mDisplay->getId(), mId, hwcRect);
979 return static_cast<Error>(intError);
980 }
981
setPlaneAlpha(float alpha)982 Error Layer::setPlaneAlpha(float alpha)
983 {
984 if (CC_UNLIKELY(!mDisplay)) {
985 return Error::BAD_DISPLAY;
986 }
987
988 auto intError = mComposer.setLayerPlaneAlpha(mDisplay->getId(), mId, alpha);
989 return static_cast<Error>(intError);
990 }
991
setSidebandStream(const native_handle_t * stream)992 Error Layer::setSidebandStream(const native_handle_t* stream)
993 {
994 if (CC_UNLIKELY(!mDisplay)) {
995 return Error::BAD_DISPLAY;
996 }
997
998 if (mCapabilities.count(AidlCapability::SIDEBAND_STREAM) == 0) {
999 ALOGE("Attempted to call setSidebandStream without checking that the "
1000 "device supports sideband streams");
1001 return Error::UNSUPPORTED;
1002 }
1003 auto intError = mComposer.setLayerSidebandStream(mDisplay->getId(), mId, stream);
1004 return static_cast<Error>(intError);
1005 }
1006
setSourceCrop(const FloatRect & crop)1007 Error Layer::setSourceCrop(const FloatRect& crop)
1008 {
1009 if (CC_UNLIKELY(!mDisplay)) {
1010 return Error::BAD_DISPLAY;
1011 }
1012
1013 Hwc2::IComposerClient::FRect hwcRect{
1014 crop.left, crop.top, crop.right, crop.bottom};
1015 auto intError = mComposer.setLayerSourceCrop(mDisplay->getId(), mId, hwcRect);
1016 return static_cast<Error>(intError);
1017 }
1018
setTransform(Transform transform)1019 Error Layer::setTransform(Transform transform)
1020 {
1021 if (CC_UNLIKELY(!mDisplay)) {
1022 return Error::BAD_DISPLAY;
1023 }
1024
1025 auto intTransform = static_cast<Hwc2::Transform>(transform);
1026 auto intError = mComposer.setLayerTransform(mDisplay->getId(), mId, intTransform);
1027 return static_cast<Error>(intError);
1028 }
1029
setVisibleRegion(const Region & region)1030 Error Layer::setVisibleRegion(const Region& region)
1031 {
1032 if (CC_UNLIKELY(!mDisplay)) {
1033 return Error::BAD_DISPLAY;
1034 }
1035
1036 if (region.isRect() && mVisibleRegion.isRect() &&
1037 (region.getBounds() == mVisibleRegion.getBounds())) {
1038 return Error::NONE;
1039 }
1040 mVisibleRegion = region;
1041 const auto hwcRects = convertRegionToHwcRects(region);
1042 auto intError = mComposer.setLayerVisibleRegion(mDisplay->getId(), mId, hwcRects);
1043 return static_cast<Error>(intError);
1044 }
1045
setZOrder(uint32_t z)1046 Error Layer::setZOrder(uint32_t z)
1047 {
1048 if (CC_UNLIKELY(!mDisplay)) {
1049 return Error::BAD_DISPLAY;
1050 }
1051
1052 auto intError = mComposer.setLayerZOrder(mDisplay->getId(), mId, z);
1053 return static_cast<Error>(intError);
1054 }
1055
1056 // Composer HAL 2.3
setColorTransform(const android::mat4 & matrix)1057 Error Layer::setColorTransform(const android::mat4& matrix) {
1058 if (CC_UNLIKELY(!mDisplay)) {
1059 return Error::BAD_DISPLAY;
1060 }
1061
1062 if (matrix == mColorMatrix) {
1063 return Error::NONE;
1064 }
1065 auto intError = mComposer.setLayerColorTransform(mDisplay->getId(), mId, matrix.asArray());
1066 Error error = static_cast<Error>(intError);
1067 if (error != Error::NONE) {
1068 return error;
1069 }
1070 mColorMatrix = matrix;
1071 return error;
1072 }
1073
1074 // Composer HAL 2.4
setLayerGenericMetadata(const std::string & name,bool mandatory,const std::vector<uint8_t> & value)1075 Error Layer::setLayerGenericMetadata(const std::string& name, bool mandatory,
1076 const std::vector<uint8_t>& value) {
1077 if (CC_UNLIKELY(!mDisplay)) {
1078 return Error::BAD_DISPLAY;
1079 }
1080
1081 auto intError =
1082 mComposer.setLayerGenericMetadata(mDisplay->getId(), mId, name, mandatory, value);
1083 return static_cast<Error>(intError);
1084 }
1085
1086 // AIDL HAL
setBrightness(float brightness)1087 Error Layer::setBrightness(float brightness) {
1088 if (CC_UNLIKELY(!mDisplay)) {
1089 return Error::BAD_DISPLAY;
1090 }
1091
1092 auto intError = mComposer.setLayerBrightness(mDisplay->getId(), mId, brightness);
1093 return static_cast<Error>(intError);
1094 }
1095
setBlockingRegion(const Region & region)1096 Error Layer::setBlockingRegion(const Region& region) {
1097 if (CC_UNLIKELY(!mDisplay)) {
1098 return Error::BAD_DISPLAY;
1099 }
1100
1101 if (region.isRect() && mBlockingRegion.isRect() &&
1102 (region.getBounds() == mBlockingRegion.getBounds())) {
1103 return Error::NONE;
1104 }
1105 mBlockingRegion = region;
1106 const auto hwcRects = convertRegionToHwcRects(region);
1107 const auto intError = mComposer.setLayerBlockingRegion(mDisplay->getId(), mId, hwcRects);
1108 return static_cast<Error>(intError);
1109 }
1110
setLuts(aidl::android::hardware::graphics::composer3::Luts & luts)1111 Error Layer::setLuts(aidl::android::hardware::graphics::composer3::Luts& luts) {
1112 if (CC_UNLIKELY(!mDisplay)) {
1113 return Error::BAD_DISPLAY;
1114 }
1115 const auto intError = mComposer.setLayerLuts(mDisplay->getId(), mId, luts);
1116 return static_cast<Error>(intError);
1117 }
1118
setPictureProfileHandle(const PictureProfileHandle & handle)1119 Error Layer::setPictureProfileHandle(const PictureProfileHandle& handle) {
1120 if (CC_UNLIKELY(!mDisplay)) {
1121 return Error::BAD_DISPLAY;
1122 }
1123 const auto intError =
1124 mComposer.setLayerPictureProfileId(mDisplay->getId(), mId, handle.getId());
1125 return static_cast<Error>(intError);
1126 }
1127
1128 } // namespace impl
1129 } // namespace HWC2
1130 } // namespace android
1131
1132 // TODO(b/129481165): remove the #pragma below and fix conversion issues
1133 #pragma clang diagnostic pop // ignored "-Wconversion"
1134