1 /*
2 * Copyright (C) 2007 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 #undef LOG_TAG
23 #define LOG_TAG "DisplayDevice"
24
25 #define ATRACE_TAG ATRACE_TAG_GRAPHICS
26
27 #include <compositionengine/CompositionEngine.h>
28 #include <compositionengine/Display.h>
29 #include <compositionengine/DisplayColorProfile.h>
30 #include <compositionengine/DisplayColorProfileCreationArgs.h>
31 #include <compositionengine/DisplayCreationArgs.h>
32 #include <compositionengine/DisplaySurface.h>
33 #include <compositionengine/ProjectionSpace.h>
34 #include <compositionengine/RenderSurface.h>
35 #include <compositionengine/RenderSurfaceCreationArgs.h>
36 #include <compositionengine/impl/OutputCompositionState.h>
37 #include <configstore/Utils.h>
38 #include <log/log.h>
39 #include <system/window.h>
40 #include <ui/GraphicTypes.h>
41
42 #include "DisplayDevice.h"
43 #include "FrontEnd/DisplayInfo.h"
44 #include "Layer.h"
45 #include "RefreshRateOverlay.h"
46 #include "SurfaceFlinger.h"
47
48 namespace android {
49
50 namespace hal = hardware::graphics::composer::hal;
51
DisplayDeviceCreationArgs(const sp<SurfaceFlinger> & flinger,HWComposer & hwComposer,const wp<IBinder> & displayToken,std::shared_ptr<compositionengine::Display> compositionDisplay)52 DisplayDeviceCreationArgs::DisplayDeviceCreationArgs(
53 const sp<SurfaceFlinger>& flinger, HWComposer& hwComposer, const wp<IBinder>& displayToken,
54 std::shared_ptr<compositionengine::Display> compositionDisplay)
55 : flinger(flinger),
56 hwComposer(hwComposer),
57 displayToken(displayToken),
58 compositionDisplay(compositionDisplay) {}
59
DisplayDevice(DisplayDeviceCreationArgs & args)60 DisplayDevice::DisplayDevice(DisplayDeviceCreationArgs& args)
61 : mFlinger(args.flinger),
62 mHwComposer(args.hwComposer),
63 mDisplayToken(args.displayToken),
64 mSequenceId(args.sequenceId),
65 mCompositionDisplay{args.compositionDisplay},
66 mActiveModeFPSTrace("ActiveModeFPS -" + to_string(getId())),
67 mActiveModeFPSHwcTrace("ActiveModeFPS_HWC -" + to_string(getId())),
68 mRenderFrameRateFPSTrace("RenderRateFPS -" + to_string(getId())),
69 mPhysicalOrientation(args.physicalOrientation),
70 mIsPrimary(args.isPrimary),
71 mRequestedRefreshRate(args.requestedRefreshRate),
72 mRefreshRateSelector(std::move(args.refreshRateSelector)) {
73 mCompositionDisplay->editState().isSecure = args.isSecure;
74 mCompositionDisplay->createRenderSurface(
75 compositionengine::RenderSurfaceCreationArgsBuilder()
76 .setDisplayWidth(ANativeWindow_getWidth(args.nativeWindow.get()))
77 .setDisplayHeight(ANativeWindow_getHeight(args.nativeWindow.get()))
78 .setNativeWindow(std::move(args.nativeWindow))
79 .setDisplaySurface(std::move(args.displaySurface))
80 .setMaxTextureCacheSize(
81 static_cast<size_t>(SurfaceFlinger::maxFrameBufferAcquiredBuffers))
82 .build());
83
84 if (!mFlinger->mDisableClientCompositionCache &&
85 SurfaceFlinger::maxFrameBufferAcquiredBuffers > 0) {
86 mCompositionDisplay->createClientCompositionCache(
87 static_cast<uint32_t>(SurfaceFlinger::maxFrameBufferAcquiredBuffers));
88 }
89
90 mCompositionDisplay->setPredictCompositionStrategy(mFlinger->mPredictCompositionStrategy);
91 mCompositionDisplay->setTreat170mAsSrgb(mFlinger->mTreat170mAsSrgb);
92 mCompositionDisplay->createDisplayColorProfile(
93 compositionengine::DisplayColorProfileCreationArgsBuilder()
94 .setHasWideColorGamut(args.hasWideColorGamut)
95 .setHdrCapabilities(std::move(args.hdrCapabilities))
96 .setSupportedPerFrameMetadata(args.supportedPerFrameMetadata)
97 .setHwcColorModes(std::move(args.hwcColorModes))
98 .Build());
99
100 if (!mCompositionDisplay->isValid()) {
101 ALOGE("Composition Display did not validate!");
102 }
103
104 mCompositionDisplay->getRenderSurface()->initialize();
105
106 if (const auto powerModeOpt = args.initialPowerMode) {
107 setPowerMode(*powerModeOpt);
108 }
109
110 // initialize the display orientation transform.
111 setProjection(ui::ROTATION_0, Rect::INVALID_RECT, Rect::INVALID_RECT);
112 }
113
114 DisplayDevice::~DisplayDevice() = default;
115
disconnect()116 void DisplayDevice::disconnect() {
117 mCompositionDisplay->disconnect();
118 }
119
getWidth() const120 int DisplayDevice::getWidth() const {
121 return mCompositionDisplay->getState().displaySpace.getBounds().width;
122 }
123
getHeight() const124 int DisplayDevice::getHeight() const {
125 return mCompositionDisplay->getState().displaySpace.getBounds().height;
126 }
127
setDisplayName(const std::string & displayName)128 void DisplayDevice::setDisplayName(const std::string& displayName) {
129 if (!displayName.empty()) {
130 // never override the name with an empty name
131 mDisplayName = displayName;
132 mCompositionDisplay->setName(displayName);
133 }
134 }
135
getFrontEndInfo() const136 auto DisplayDevice::getFrontEndInfo() const -> frontend::DisplayInfo {
137 gui::DisplayInfo info;
138 info.displayId = getLayerStack().id;
139
140 // The physical orientation is set when the orientation of the display panel is
141 // different than the default orientation of the device. Other services like
142 // InputFlinger do not know about this, so we do not need to expose the physical
143 // orientation of the panel outside of SurfaceFlinger.
144 const ui::Rotation inversePhysicalOrientation = ui::ROTATION_0 - mPhysicalOrientation;
145 auto width = getWidth();
146 auto height = getHeight();
147 if (inversePhysicalOrientation == ui::ROTATION_90 ||
148 inversePhysicalOrientation == ui::ROTATION_270) {
149 std::swap(width, height);
150 }
151 const ui::Transform undoPhysicalOrientation(ui::Transform::toRotationFlags(
152 inversePhysicalOrientation),
153 width, height);
154 const auto& displayTransform = undoPhysicalOrientation * getTransform();
155 // Send the inverse display transform to input so it can convert display coordinates to
156 // logical display.
157 info.transform = displayTransform.inverse();
158
159 info.logicalWidth = getLayerStackSpaceRect().width();
160 info.logicalHeight = getLayerStackSpaceRect().height();
161
162 return {.info = info,
163 .transform = displayTransform,
164 .receivesInput = receivesInput(),
165 .isSecure = isSecure(),
166 .isPrimary = isPrimary(),
167 .isVirtual = isVirtual(),
168 .rotationFlags = ui::Transform::toRotationFlags(mOrientation),
169 .transformHint = getTransformHint()};
170 }
171
setPowerMode(hal::PowerMode mode)172 void DisplayDevice::setPowerMode(hal::PowerMode mode) {
173 if (mode == hal::PowerMode::OFF || mode == hal::PowerMode::ON) {
174 if (mStagedBrightness && mBrightness != mStagedBrightness) {
175 getCompositionDisplay()->setNextBrightness(*mStagedBrightness);
176 mBrightness = *mStagedBrightness;
177 }
178 mStagedBrightness = std::nullopt;
179 getCompositionDisplay()->applyDisplayBrightness(true);
180 }
181
182 if (mPowerMode) {
183 *mPowerMode = mode;
184 } else {
185 mPowerMode.emplace("PowerMode -" + to_string(getId()), mode);
186 }
187
188 getCompositionDisplay()->setCompositionEnabled(isPoweredOn());
189 }
190
tracePowerMode()191 void DisplayDevice::tracePowerMode() {
192 // assign the same value for tracing
193 if (mPowerMode) {
194 const hal::PowerMode powerMode = *mPowerMode;
195 *mPowerMode = powerMode;
196 }
197 }
198
enableLayerCaching(bool enable)199 void DisplayDevice::enableLayerCaching(bool enable) {
200 getCompositionDisplay()->setLayerCachingEnabled(enable);
201 }
202
getPowerMode() const203 std::optional<hal::PowerMode> DisplayDevice::getPowerMode() const {
204 return mPowerMode;
205 }
206
isPoweredOn() const207 bool DisplayDevice::isPoweredOn() const {
208 return mPowerMode && *mPowerMode != hal::PowerMode::OFF;
209 }
210
setActiveMode(DisplayModeId modeId,Fps displayFps,Fps renderFps)211 void DisplayDevice::setActiveMode(DisplayModeId modeId, Fps displayFps, Fps renderFps) {
212 ATRACE_INT(mActiveModeFPSTrace.c_str(), displayFps.getIntValue());
213 ATRACE_INT(mRenderFrameRateFPSTrace.c_str(), renderFps.getIntValue());
214
215 mRefreshRateSelector->setActiveMode(modeId, renderFps);
216 updateRefreshRateOverlayRate(displayFps, renderFps);
217 }
218
initiateModeChange(const ActiveModeInfo & info,const hal::VsyncPeriodChangeConstraints & constraints,hal::VsyncPeriodChangeTimeline * outTimeline)219 status_t DisplayDevice::initiateModeChange(const ActiveModeInfo& info,
220 const hal::VsyncPeriodChangeConstraints& constraints,
221 hal::VsyncPeriodChangeTimeline* outTimeline) {
222 if (!info.modeOpt || info.modeOpt->modePtr->getPhysicalDisplayId() != getPhysicalId()) {
223 ALOGE("Trying to initiate a mode change to invalid mode %s on display %s",
224 info.modeOpt ? std::to_string(info.modeOpt->modePtr->getId().value()).c_str()
225 : "null",
226 to_string(getId()).c_str());
227 return BAD_VALUE;
228 }
229 mUpcomingActiveMode = info;
230 mIsModeSetPending = true;
231
232 const auto& pendingMode = *info.modeOpt->modePtr;
233 ATRACE_INT(mActiveModeFPSHwcTrace.c_str(), pendingMode.getFps().getIntValue());
234
235 return mHwComposer.setActiveModeWithConstraints(getPhysicalId(), pendingMode.getHwcId(),
236 constraints, outTimeline);
237 }
238
finalizeModeChange(DisplayModeId modeId,Fps displayFps,Fps renderFps)239 void DisplayDevice::finalizeModeChange(DisplayModeId modeId, Fps displayFps, Fps renderFps) {
240 setActiveMode(modeId, displayFps, renderFps);
241 mIsModeSetPending = false;
242 }
243
getVsyncPeriodFromHWC() const244 nsecs_t DisplayDevice::getVsyncPeriodFromHWC() const {
245 const auto physicalId = getPhysicalId();
246 if (!mHwComposer.isConnected(physicalId)) {
247 return 0;
248 }
249
250 nsecs_t vsyncPeriod;
251 const auto status = mHwComposer.getDisplayVsyncPeriod(physicalId, &vsyncPeriod);
252 if (status == NO_ERROR) {
253 return vsyncPeriod;
254 }
255
256 return refreshRateSelector().getActiveMode().modePtr->getVsyncPeriod();
257 }
258
getCompositionDataSpace() const259 ui::Dataspace DisplayDevice::getCompositionDataSpace() const {
260 return mCompositionDisplay->getState().dataspace;
261 }
262
setLayerFilter(ui::LayerFilter filter)263 void DisplayDevice::setLayerFilter(ui::LayerFilter filter) {
264 mCompositionDisplay->setLayerFilter(filter);
265 if (mRefreshRateOverlay) {
266 mRefreshRateOverlay->setLayerStack(filter.layerStack);
267 }
268 }
269
setFlags(uint32_t flags)270 void DisplayDevice::setFlags(uint32_t flags) {
271 mFlags = flags;
272 }
273
setDisplaySize(int width,int height)274 void DisplayDevice::setDisplaySize(int width, int height) {
275 LOG_FATAL_IF(!isVirtual(), "Changing the display size is supported only for virtual displays.");
276 const auto size = ui::Size(width, height);
277 mCompositionDisplay->setDisplaySize(size);
278 if (mRefreshRateOverlay) {
279 mRefreshRateOverlay->setViewport(size);
280 }
281 }
282
setProjection(ui::Rotation orientation,Rect layerStackSpaceRect,Rect orientedDisplaySpaceRect)283 void DisplayDevice::setProjection(ui::Rotation orientation, Rect layerStackSpaceRect,
284 Rect orientedDisplaySpaceRect) {
285 mOrientation = orientation;
286
287 // We need to take care of display rotation for globalTransform for case if the panel is not
288 // installed aligned with device orientation.
289 const auto transformOrientation = orientation + mPhysicalOrientation;
290
291 const auto& state = getCompositionDisplay()->getState();
292
293 // If the layer stack and destination frames have never been set, then configure them to be the
294 // same as the physical device, taking into account the total transform.
295 if (!orientedDisplaySpaceRect.isValid()) {
296 ui::Size bounds = state.displaySpace.getBounds();
297 bounds.rotate(transformOrientation);
298 orientedDisplaySpaceRect = Rect(bounds);
299 }
300 if (layerStackSpaceRect.isEmpty()) {
301 ui::Size bounds = state.framebufferSpace.getBounds();
302 bounds.rotate(transformOrientation);
303 layerStackSpaceRect = Rect(bounds);
304 }
305 getCompositionDisplay()->setProjection(transformOrientation, layerStackSpaceRect,
306 orientedDisplaySpaceRect);
307 }
308
stageBrightness(float brightness)309 void DisplayDevice::stageBrightness(float brightness) {
310 mStagedBrightness = brightness;
311 }
312
persistBrightness(bool needsComposite)313 void DisplayDevice::persistBrightness(bool needsComposite) {
314 if (mStagedBrightness && mBrightness != mStagedBrightness) {
315 if (needsComposite) {
316 getCompositionDisplay()->setNextBrightness(*mStagedBrightness);
317 }
318 mBrightness = *mStagedBrightness;
319 }
320 mStagedBrightness = std::nullopt;
321 }
322
getStagedBrightness() const323 std::optional<float> DisplayDevice::getStagedBrightness() const {
324 return mStagedBrightness;
325 }
326
dump(utils::Dumper & dumper) const327 void DisplayDevice::dump(utils::Dumper& dumper) const {
328 using namespace std::string_view_literals;
329
330 dumper.dump("name"sv, '"' + mDisplayName + '"');
331 dumper.dump("powerMode"sv, mPowerMode);
332
333 if (mRefreshRateSelector) {
334 mRefreshRateSelector->dump(dumper);
335 }
336 }
337
hasRenderIntent(ui::RenderIntent intent) const338 bool DisplayDevice::hasRenderIntent(ui::RenderIntent intent) const {
339 return mCompositionDisplay->getDisplayColorProfile()->hasRenderIntent(intent);
340 }
341
getId() const342 DisplayId DisplayDevice::getId() const {
343 return mCompositionDisplay->getId();
344 }
345
isSecure() const346 bool DisplayDevice::isSecure() const {
347 return mCompositionDisplay->isSecure();
348 }
349
getBounds() const350 const Rect DisplayDevice::getBounds() const {
351 return mCompositionDisplay->getState().displaySpace.getBoundsAsRect();
352 }
353
getUndefinedRegion() const354 const Region& DisplayDevice::getUndefinedRegion() const {
355 return mCompositionDisplay->getState().undefinedRegion;
356 }
357
getLayerStack() const358 ui::LayerStack DisplayDevice::getLayerStack() const {
359 return mCompositionDisplay->getState().layerFilter.layerStack;
360 }
361
getTransformHint() const362 ui::Transform::RotationFlags DisplayDevice::getTransformHint() const {
363 return mCompositionDisplay->getTransformHint();
364 }
365
getTransform() const366 const ui::Transform& DisplayDevice::getTransform() const {
367 return mCompositionDisplay->getState().transform;
368 }
369
getLayerStackSpaceRect() const370 const Rect& DisplayDevice::getLayerStackSpaceRect() const {
371 return mCompositionDisplay->getState().layerStackSpace.getContent();
372 }
373
getOrientedDisplaySpaceRect() const374 const Rect& DisplayDevice::getOrientedDisplaySpaceRect() const {
375 return mCompositionDisplay->getState().orientedDisplaySpace.getContent();
376 }
377
hasWideColorGamut() const378 bool DisplayDevice::hasWideColorGamut() const {
379 return mCompositionDisplay->getDisplayColorProfile()->hasWideColorGamut();
380 }
381
hasHDR10PlusSupport() const382 bool DisplayDevice::hasHDR10PlusSupport() const {
383 return mCompositionDisplay->getDisplayColorProfile()->hasHDR10PlusSupport();
384 }
385
hasHDR10Support() const386 bool DisplayDevice::hasHDR10Support() const {
387 return mCompositionDisplay->getDisplayColorProfile()->hasHDR10Support();
388 }
389
hasHLGSupport() const390 bool DisplayDevice::hasHLGSupport() const {
391 return mCompositionDisplay->getDisplayColorProfile()->hasHLGSupport();
392 }
393
hasDolbyVisionSupport() const394 bool DisplayDevice::hasDolbyVisionSupport() const {
395 return mCompositionDisplay->getDisplayColorProfile()->hasDolbyVisionSupport();
396 }
397
getSupportedPerFrameMetadata() const398 int DisplayDevice::getSupportedPerFrameMetadata() const {
399 return mCompositionDisplay->getDisplayColorProfile()->getSupportedPerFrameMetadata();
400 }
401
overrideHdrTypes(const std::vector<ui::Hdr> & hdrTypes)402 void DisplayDevice::overrideHdrTypes(const std::vector<ui::Hdr>& hdrTypes) {
403 mOverrideHdrTypes = hdrTypes;
404 }
405
getHdrCapabilities() const406 HdrCapabilities DisplayDevice::getHdrCapabilities() const {
407 const HdrCapabilities& capabilities =
408 mCompositionDisplay->getDisplayColorProfile()->getHdrCapabilities();
409 std::vector<ui::Hdr> hdrTypes = capabilities.getSupportedHdrTypes();
410 if (!mOverrideHdrTypes.empty()) {
411 hdrTypes = mOverrideHdrTypes;
412 }
413 return HdrCapabilities(hdrTypes, capabilities.getDesiredMaxLuminance(),
414 capabilities.getDesiredMaxAverageLuminance(),
415 capabilities.getDesiredMinLuminance());
416 }
417
enableRefreshRateOverlay(bool enable,bool setByHwc,bool showSpinner,bool showRenderRate,bool showInMiddle)418 void DisplayDevice::enableRefreshRateOverlay(bool enable, bool setByHwc, bool showSpinner,
419 bool showRenderRate, bool showInMiddle) {
420 if (!enable) {
421 mRefreshRateOverlay.reset();
422 return;
423 }
424
425 ftl::Flags<RefreshRateOverlay::Features> features;
426 if (showSpinner) {
427 features |= RefreshRateOverlay::Features::Spinner;
428 }
429
430 if (showRenderRate) {
431 features |= RefreshRateOverlay::Features::RenderRate;
432 }
433
434 if (showInMiddle) {
435 features |= RefreshRateOverlay::Features::ShowInMiddle;
436 }
437
438 if (setByHwc) {
439 features |= RefreshRateOverlay::Features::SetByHwc;
440 }
441
442 const auto fpsRange = mRefreshRateSelector->getSupportedRefreshRateRange();
443 mRefreshRateOverlay = std::make_unique<RefreshRateOverlay>(fpsRange, features);
444 mRefreshRateOverlay->setLayerStack(getLayerStack());
445 mRefreshRateOverlay->setViewport(getSize());
446 updateRefreshRateOverlayRate(getActiveMode().modePtr->getFps(), getActiveMode().fps, setByHwc);
447 }
448
updateRefreshRateOverlayRate(Fps displayFps,Fps renderFps,bool setByHwc)449 void DisplayDevice::updateRefreshRateOverlayRate(Fps displayFps, Fps renderFps, bool setByHwc) {
450 ATRACE_CALL();
451 if (mRefreshRateOverlay && (!mRefreshRateOverlay->isSetByHwc() || setByHwc)) {
452 mRefreshRateOverlay->changeRefreshRate(displayFps, renderFps);
453 }
454 }
455
onKernelTimerChanged(std::optional<DisplayModeId> desiredModeId,bool timerExpired)456 bool DisplayDevice::onKernelTimerChanged(std::optional<DisplayModeId> desiredModeId,
457 bool timerExpired) {
458 if (mRefreshRateSelector && mRefreshRateOverlay) {
459 const auto newMode =
460 mRefreshRateSelector->onKernelTimerChanged(desiredModeId, timerExpired);
461 if (newMode) {
462 updateRefreshRateOverlayRate(newMode->modePtr->getFps(), newMode->fps);
463 return true;
464 }
465 }
466
467 return false;
468 }
469
animateRefreshRateOverlay()470 void DisplayDevice::animateRefreshRateOverlay() {
471 if (mRefreshRateOverlay) {
472 mRefreshRateOverlay->animate();
473 }
474 }
475
setDesiredActiveMode(const ActiveModeInfo & info,bool force)476 auto DisplayDevice::setDesiredActiveMode(const ActiveModeInfo& info, bool force)
477 -> DesiredActiveModeAction {
478 ATRACE_CALL();
479
480 LOG_ALWAYS_FATAL_IF(!info.modeOpt, "desired mode not provided");
481 LOG_ALWAYS_FATAL_IF(getPhysicalId() != info.modeOpt->modePtr->getPhysicalDisplayId(),
482 "DisplayId mismatch");
483
484 ALOGV("%s(%s)", __func__, to_string(*info.modeOpt->modePtr).c_str());
485
486 std::scoped_lock lock(mActiveModeLock);
487 if (mDesiredActiveModeChanged) {
488 // If a mode change is pending, just cache the latest request in mDesiredActiveMode
489 const auto prevConfig = mDesiredActiveMode.event;
490 mDesiredActiveMode = info;
491 mDesiredActiveMode.event = mDesiredActiveMode.event | prevConfig;
492 return DesiredActiveModeAction::None;
493 }
494
495 const auto& desiredMode = *info.modeOpt->modePtr;
496
497 // Check if we are already at the desired mode
498 const auto currentMode = refreshRateSelector().getActiveMode();
499 if (!force && currentMode.modePtr->getId() == desiredMode.getId()) {
500 if (currentMode == info.modeOpt) {
501 return DesiredActiveModeAction::None;
502 }
503
504 setActiveMode(desiredMode.getId(), desiredMode.getFps(), info.modeOpt->fps);
505 return DesiredActiveModeAction::InitiateRenderRateSwitch;
506 }
507
508 // Set the render frame rate to the current physical refresh rate to schedule the next
509 // frame as soon as possible.
510 setActiveMode(currentMode.modePtr->getId(), currentMode.modePtr->getFps(),
511 currentMode.modePtr->getFps());
512
513 // Initiate a mode change.
514 mDesiredActiveModeChanged = true;
515 mDesiredActiveMode = info;
516 return DesiredActiveModeAction::InitiateDisplayModeSwitch;
517 }
518
getDesiredActiveMode() const519 std::optional<DisplayDevice::ActiveModeInfo> DisplayDevice::getDesiredActiveMode() const {
520 std::scoped_lock lock(mActiveModeLock);
521 if (mDesiredActiveModeChanged) return mDesiredActiveMode;
522 return std::nullopt;
523 }
524
clearDesiredActiveModeState()525 void DisplayDevice::clearDesiredActiveModeState() {
526 std::scoped_lock lock(mActiveModeLock);
527 mDesiredActiveMode.event = scheduler::DisplayModeEvent::None;
528 mDesiredActiveModeChanged = false;
529 }
530
adjustRefreshRate(Fps pacesetterDisplayRefreshRate)531 void DisplayDevice::adjustRefreshRate(Fps pacesetterDisplayRefreshRate) {
532 using fps_approx_ops::operator<=;
533 if (mRequestedRefreshRate <= 0_Hz) {
534 return;
535 }
536
537 using fps_approx_ops::operator>;
538 if (mRequestedRefreshRate > pacesetterDisplayRefreshRate) {
539 mAdjustedRefreshRate = pacesetterDisplayRefreshRate;
540 return;
541 }
542
543 unsigned divisor = static_cast<unsigned>(
544 std::floor(pacesetterDisplayRefreshRate.getValue() / mRequestedRefreshRate.getValue()));
545 if (divisor == 0) {
546 mAdjustedRefreshRate = 0_Hz;
547 return;
548 }
549
550 mAdjustedRefreshRate = pacesetterDisplayRefreshRate / divisor;
551 }
552
553 std::atomic<int32_t> DisplayDeviceState::sNextSequenceId(1);
554
555 } // namespace android
556
557 // TODO(b/129481165): remove the #pragma below and fix conversion issues
558 #pragma clang diagnostic pop // ignored "-Wconversion"
559