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Michael Wright1509a232018-06-21 02:50:34 +01001/*
2 * Copyright 2018 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
Dan Stoza030fbc12020-02-19 15:32:01 -080017//#define LOG_NDEBUG 0
18
Ady Abrahamabce1652022-02-24 10:51:19 -080019#define ATRACE_TAG ATRACE_TAG_GRAPHICS
20
Michael Wright1509a232018-06-21 02:50:34 +010021#undef LOG_TAG
22#define LOG_TAG "PowerAdvisor"
23
Matt Buckley06f299a2021-09-24 19:43:51 +000024#include <unistd.h>
Michael Wright1509a232018-06-21 02:50:34 +010025#include <cinttypes>
Matt Buckley06f299a2021-09-24 19:43:51 +000026#include <cstdint>
27#include <optional>
Michael Wright1509a232018-06-21 02:50:34 +010028
Dan Stoza030fbc12020-02-19 15:32:01 -080029#include <android-base/properties.h>
Michael Wright1509a232018-06-21 02:50:34 +010030#include <utils/Log.h>
31#include <utils/Mutex.h>
Ady Abrahamabce1652022-02-24 10:51:19 -080032#include <utils/Trace.h>
Michael Wright1509a232018-06-21 02:50:34 +010033
Dan Stoza030fbc12020-02-19 15:32:01 -080034#include <android/hardware/power/1.3/IPower.h>
Matt Buckley06f299a2021-09-24 19:43:51 +000035#include <android/hardware/power/IPowerHintSession.h>
36#include <android/hardware/power/WorkDuration.h>
37
Dan Stoza030fbc12020-02-19 15:32:01 -080038#include <binder/IServiceManager.h>
39
40#include "../SurfaceFlingerProperties.h"
41
Michael Wright1509a232018-06-21 02:50:34 +010042#include "PowerAdvisor.h"
Alec Mouridea1ac52021-06-23 18:12:18 -070043#include "SurfaceFlinger.h"
Michael Wright1509a232018-06-21 02:50:34 +010044
45namespace android {
46namespace Hwc2 {
47
48PowerAdvisor::~PowerAdvisor() = default;
49
50namespace impl {
51
52namespace V1_0 = android::hardware::power::V1_0;
Dan Stoza030fbc12020-02-19 15:32:01 -080053namespace V1_3 = android::hardware::power::V1_3;
Michael Wright1509a232018-06-21 02:50:34 +010054using V1_3::PowerHint;
55
Dan Stoza030fbc12020-02-19 15:32:01 -080056using android::hardware::power::Boost;
57using android::hardware::power::IPower;
Matt Buckley06f299a2021-09-24 19:43:51 +000058using android::hardware::power::IPowerHintSession;
Dan Stoza030fbc12020-02-19 15:32:01 -080059using android::hardware::power::Mode;
Matt Buckley06f299a2021-09-24 19:43:51 +000060using android::hardware::power::WorkDuration;
61
Dan Stoza030fbc12020-02-19 15:32:01 -080062using scheduler::OneShotTimer;
63
Michael Wright1509a232018-06-21 02:50:34 +010064PowerAdvisor::~PowerAdvisor() = default;
65
Dan Stoza030fbc12020-02-19 15:32:01 -080066namespace {
Alec Mouri29382ad2022-05-11 18:38:38 +000067std::chrono::milliseconds getUpdateTimeout() {
Dan Stoza030fbc12020-02-19 15:32:01 -080068 // Default to a timeout of 80ms if nothing else is specified
Alec Mouri29382ad2022-05-11 18:38:38 +000069 static std::chrono::milliseconds timeout =
70 std::chrono::milliseconds(sysprop::display_update_imminent_timeout_ms(80));
Dan Stoza030fbc12020-02-19 15:32:01 -080071 return timeout;
72}
73
Ady Abrahamabce1652022-02-24 10:51:19 -080074void traceExpensiveRendering(bool enabled) {
75 if (enabled) {
76 ATRACE_ASYNC_BEGIN("ExpensiveRendering", 0);
77 } else {
78 ATRACE_ASYNC_END("ExpensiveRendering", 0);
79 }
80}
81
Dan Stoza030fbc12020-02-19 15:32:01 -080082} // namespace
83
Alec Mouric059dcf2022-05-05 23:40:07 +000084PowerAdvisor::PowerAdvisor(SurfaceFlinger& flinger) : mFlinger(flinger) {
Alec Mouri29382ad2022-05-11 18:38:38 +000085 if (getUpdateTimeout() > 0ms) {
86 mScreenUpdateTimer.emplace("UpdateImminentTimer", getUpdateTimeout(),
Alec Mouric059dcf2022-05-05 23:40:07 +000087 /* resetCallback */ nullptr,
88 /* timeoutCallback */
89 [this] {
Alec Mouri29382ad2022-05-11 18:38:38 +000090 while (true) {
91 auto timeSinceLastUpdate = std::chrono::nanoseconds(
92 systemTime() - mLastScreenUpdatedTime.load());
93 if (timeSinceLastUpdate >= getUpdateTimeout()) {
94 break;
95 }
Alec Mouric059dcf2022-05-05 23:40:07 +000096 // We may try to disable expensive rendering and allow
97 // for sending DISPLAY_UPDATE_IMMINENT hints too early if
98 // we idled very shortly after updating the screen, so
99 // make sure we wait enough time.
Alec Mouri29382ad2022-05-11 18:38:38 +0000100 std::this_thread::sleep_for(getUpdateTimeout() -
101 timeSinceLastUpdate);
Alec Mouric059dcf2022-05-05 23:40:07 +0000102 }
103 mSendUpdateImminent.store(true);
104 mFlinger.disableExpensiveRendering();
105 });
106 }
107}
Alec Mouridea1ac52021-06-23 18:12:18 -0700108
109void PowerAdvisor::init() {
110 // Defer starting the screen update timer until SurfaceFlinger finishes construction.
Alec Mouric059dcf2022-05-05 23:40:07 +0000111 if (mScreenUpdateTimer) {
112 mScreenUpdateTimer->start();
Dan Stoza030fbc12020-02-19 15:32:01 -0800113 }
114}
Michael Wright1509a232018-06-21 02:50:34 +0100115
Dan Stoza29e7bdf2020-03-23 14:43:09 -0700116void PowerAdvisor::onBootFinished() {
117 mBootFinished.store(true);
118}
119
Peiyong Lin74ca2f42019-01-14 19:36:57 -0800120void PowerAdvisor::setExpensiveRenderingExpected(DisplayId displayId, bool expected) {
Michael Wright1509a232018-06-21 02:50:34 +0100121 if (expected) {
122 mExpensiveDisplays.insert(displayId);
123 } else {
124 mExpensiveDisplays.erase(displayId);
125 }
126
Michael Wright1509a232018-06-21 02:50:34 +0100127 const bool expectsExpensiveRendering = !mExpensiveDisplays.empty();
128 if (mNotifiedExpensiveRendering != expectsExpensiveRendering) {
Dan Stoza20950002020-06-18 14:56:58 -0700129 std::lock_guard lock(mPowerHalMutex);
Dan Stoza030fbc12020-02-19 15:32:01 -0800130 HalWrapper* const halWrapper = getPowerHal();
131 if (halWrapper == nullptr) {
Peiyong Lin81934972018-07-02 11:00:54 -0700132 return;
133 }
Dan Stoza030fbc12020-02-19 15:32:01 -0800134
135 if (!halWrapper->setExpensiveRendering(expectsExpensiveRendering)) {
136 // The HAL has become unavailable; attempt to reconnect later
Michael Wright1509a232018-06-21 02:50:34 +0100137 mReconnectPowerHal = true;
138 return;
139 }
Dan Stoza030fbc12020-02-19 15:32:01 -0800140
Michael Wright1509a232018-06-21 02:50:34 +0100141 mNotifiedExpensiveRendering = expectsExpensiveRendering;
142 }
143}
144
Dan Stoza030fbc12020-02-19 15:32:01 -0800145void PowerAdvisor::notifyDisplayUpdateImminent() {
Dan Stoza29e7bdf2020-03-23 14:43:09 -0700146 // Only start sending this notification once the system has booted so we don't introduce an
147 // early-boot dependency on Power HAL
148 if (!mBootFinished.load()) {
149 return;
150 }
151
Alec Mouric059dcf2022-05-05 23:40:07 +0000152 if (mSendUpdateImminent.exchange(false)) {
Dan Stoza20950002020-06-18 14:56:58 -0700153 std::lock_guard lock(mPowerHalMutex);
Dan Stoza030fbc12020-02-19 15:32:01 -0800154 HalWrapper* const halWrapper = getPowerHal();
155 if (halWrapper == nullptr) {
156 return;
157 }
158
159 if (!halWrapper->notifyDisplayUpdateImminent()) {
160 // The HAL has become unavailable; attempt to reconnect later
161 mReconnectPowerHal = true;
162 return;
163 }
Alec Mouric059dcf2022-05-05 23:40:07 +0000164
165 if (mScreenUpdateTimer) {
166 mScreenUpdateTimer->reset();
167 } else {
168 // If we don't have a screen update timer, then we don't throttle power hal calls so
169 // flip this bit back to allow for calling into power hal again.
170 mSendUpdateImminent.store(true);
171 }
Dan Stoza030fbc12020-02-19 15:32:01 -0800172 }
173
Alec Mouric059dcf2022-05-05 23:40:07 +0000174 if (mScreenUpdateTimer) {
175 mLastScreenUpdatedTime.store(systemTime());
Dan Stoza030fbc12020-02-19 15:32:01 -0800176 }
177}
178
Matt Buckley06f299a2021-09-24 19:43:51 +0000179// checks both if it supports and if it's enabled
180bool PowerAdvisor::usePowerHintSession() {
181 // uses cached value since the underlying support and flag are unlikely to change at runtime
Matt Buckley06f299a2021-09-24 19:43:51 +0000182 return mPowerHintEnabled.value_or(false) && supportsPowerHintSession();
183}
184
185bool PowerAdvisor::supportsPowerHintSession() {
186 // cache to avoid needing lock every time
187 if (!mSupportsPowerHint.has_value()) {
188 std::lock_guard lock(mPowerHalMutex);
189 HalWrapper* const halWrapper = getPowerHal();
190 mSupportsPowerHint = halWrapper->supportsPowerHintSession();
191 }
192 return *mSupportsPowerHint;
193}
194
195bool PowerAdvisor::isPowerHintSessionRunning() {
196 return mPowerHintSessionRunning;
197}
198
Matt Buckley50c44062022-01-17 20:48:10 +0000199void PowerAdvisor::setTargetWorkDuration(int64_t targetDuration) {
Matt Buckleyef51fba2021-10-12 19:30:12 +0000200 if (!usePowerHintSession()) {
Matt Buckley06f299a2021-09-24 19:43:51 +0000201 ALOGV("Power hint session target duration cannot be set, skipping");
202 return;
203 }
204 {
205 std::lock_guard lock(mPowerHalMutex);
206 HalWrapper* const halWrapper = getPowerHal();
207 if (halWrapper != nullptr) {
Matt Buckley50c44062022-01-17 20:48:10 +0000208 halWrapper->setTargetWorkDuration(targetDuration);
Matt Buckley06f299a2021-09-24 19:43:51 +0000209 }
210 }
211}
212
Matt Buckley50c44062022-01-17 20:48:10 +0000213void PowerAdvisor::sendActualWorkDuration() {
Matt Buckley06f299a2021-09-24 19:43:51 +0000214 if (!mBootFinished || !usePowerHintSession()) {
215 ALOGV("Actual work duration power hint cannot be sent, skipping");
216 return;
217 }
Matt Buckley50c44062022-01-17 20:48:10 +0000218 const std::optional<nsecs_t> actualDuration = estimateWorkDuration(false);
219 if (actualDuration.has_value()) {
Matt Buckley06f299a2021-09-24 19:43:51 +0000220 std::lock_guard lock(mPowerHalMutex);
221 HalWrapper* const halWrapper = getPowerHal();
222 if (halWrapper != nullptr) {
Matt Buckley50c44062022-01-17 20:48:10 +0000223 halWrapper->sendActualWorkDuration(*actualDuration + kTargetSafetyMargin.count(),
224 systemTime());
Matt Buckley06f299a2021-09-24 19:43:51 +0000225 }
226 }
227}
228
Matt Buckley50c44062022-01-17 20:48:10 +0000229void PowerAdvisor::sendPredictedWorkDuration() {
230 if (!mBootFinished || !usePowerHintSession()) {
231 ALOGV("Actual work duration power hint cannot be sent, skipping");
232 return;
233 }
234
235 const std::optional<nsecs_t> predictedDuration = estimateWorkDuration(true);
236
237 if (predictedDuration.has_value()) {
238 std::lock_guard lock(mPowerHalMutex);
239 HalWrapper* const halWrapper = getPowerHal();
240 if (halWrapper != nullptr) {
Matt Buckleyffabce92022-06-17 13:52:46 -0700241 halWrapper->sendActualWorkDuration(*predictedDuration + kTargetSafetyMargin.count(),
242 systemTime());
Matt Buckley50c44062022-01-17 20:48:10 +0000243 }
244 }
245}
246
Matt Buckley06f299a2021-09-24 19:43:51 +0000247void PowerAdvisor::enablePowerHint(bool enabled) {
248 mPowerHintEnabled = enabled;
249}
250
Matt Buckleyef51fba2021-10-12 19:30:12 +0000251bool PowerAdvisor::startPowerHintSession(const std::vector<int32_t>& threadIds) {
252 if (!usePowerHintSession()) {
253 ALOGI("Power hint session cannot be started, skipping");
254 }
255 {
256 std::lock_guard lock(mPowerHalMutex);
257 HalWrapper* halWrapper = getPowerHal();
258 if (halWrapper != nullptr && usePowerHintSession()) {
259 halWrapper->setPowerHintSessionThreadIds(threadIds);
260 mPowerHintSessionRunning = halWrapper->startPowerHintSession();
261 }
262 }
263 return mPowerHintSessionRunning;
264}
265
Matt Buckley50c44062022-01-17 20:48:10 +0000266void PowerAdvisor::setGpuFenceTime(DisplayId displayId, std::unique_ptr<FenceTime>&& fenceTime) {
267 DisplayTimingData& displayData = mDisplayTimingData[displayId];
268 if (displayData.gpuEndFenceTime) {
269 nsecs_t signalTime = displayData.gpuEndFenceTime->getSignalTime();
270 if (signalTime != Fence::SIGNAL_TIME_INVALID && signalTime != Fence::SIGNAL_TIME_PENDING) {
271 for (auto&& [_, otherDisplayData] : mDisplayTimingData) {
272 // If the previous display started before us but ended after we should have
273 // started, then it likely delayed our start time and we must compensate for that.
274 // Displays finishing earlier should have already made their way through this call
275 // and swapped their timing into "lastValid" from "latest", so we check that here.
276 if (!otherDisplayData.lastValidGpuStartTime.has_value()) continue;
277 if ((*otherDisplayData.lastValidGpuStartTime < *displayData.gpuStartTime) &&
278 (*otherDisplayData.lastValidGpuEndTime > *displayData.gpuStartTime)) {
279 displayData.lastValidGpuStartTime = *otherDisplayData.lastValidGpuEndTime;
280 break;
281 }
282 }
283 displayData.lastValidGpuStartTime = displayData.gpuStartTime;
284 displayData.lastValidGpuEndTime = signalTime;
285 }
286 }
287 displayData.gpuEndFenceTime = std::move(fenceTime);
288 displayData.gpuStartTime = systemTime();
289}
290
Matt Buckley16dec1f2022-06-07 21:46:20 +0000291void PowerAdvisor::setHwcValidateTiming(DisplayId displayId, nsecs_t validateStartTime,
292 nsecs_t validateEndTime) {
Matt Buckley50c44062022-01-17 20:48:10 +0000293 DisplayTimingData& displayData = mDisplayTimingData[displayId];
Matt Buckley16dec1f2022-06-07 21:46:20 +0000294 displayData.hwcValidateStartTime = validateStartTime;
295 displayData.hwcValidateEndTime = validateEndTime;
Matt Buckley50c44062022-01-17 20:48:10 +0000296}
297
Matt Buckley16dec1f2022-06-07 21:46:20 +0000298void PowerAdvisor::setHwcPresentTiming(DisplayId displayId, nsecs_t presentStartTime,
299 nsecs_t presentEndTime) {
Matt Buckley50c44062022-01-17 20:48:10 +0000300 DisplayTimingData& displayData = mDisplayTimingData[displayId];
Matt Buckley16dec1f2022-06-07 21:46:20 +0000301 displayData.hwcPresentStartTime = presentStartTime;
302 displayData.hwcPresentEndTime = presentEndTime;
Matt Buckley50c44062022-01-17 20:48:10 +0000303}
304
305void PowerAdvisor::setSkippedValidate(DisplayId displayId, bool skipped) {
306 mDisplayTimingData[displayId].skippedValidate = skipped;
307}
308
309void PowerAdvisor::setRequiresClientComposition(DisplayId displayId,
310 bool requiresClientComposition) {
311 mDisplayTimingData[displayId].usedClientComposition = requiresClientComposition;
312}
313
314void PowerAdvisor::setExpectedPresentTime(nsecs_t expectedPresentTime) {
315 mExpectedPresentTimes.append(expectedPresentTime);
316}
317
318void PowerAdvisor::setFrameDelay(nsecs_t frameDelayDuration) {
319 mFrameDelayDuration = frameDelayDuration;
320}
321
Matt Buckley16dec1f2022-06-07 21:46:20 +0000322void PowerAdvisor::setHwcPresentDelayedTime(
Matt Buckley50c44062022-01-17 20:48:10 +0000323 DisplayId displayId, std::chrono::steady_clock::time_point earliestFrameStartTime) {
Matt Buckley16dec1f2022-06-07 21:46:20 +0000324 mDisplayTimingData[displayId].hwcPresentDelayedTime =
Matt Buckley50c44062022-01-17 20:48:10 +0000325 (earliestFrameStartTime - std::chrono::steady_clock::now()).count() + systemTime();
326}
327
328void PowerAdvisor::setCommitStart(nsecs_t commitStartTime) {
329 mCommitStartTimes.append(commitStartTime);
330}
331
332void PowerAdvisor::setCompositeEnd(nsecs_t compositeEnd) {
333 mLastCompositeEndTime = compositeEnd;
334 // calculate the postcomp time here as well
Matt Buckley16dec1f2022-06-07 21:46:20 +0000335 std::vector<DisplayId>&& displays = getOrderedDisplayIds(&DisplayTimingData::hwcPresentEndTime);
Matt Buckley50c44062022-01-17 20:48:10 +0000336 DisplayTimingData& timingData = mDisplayTimingData[displays.back()];
337 mLastPostcompDuration = compositeEnd -
Matt Buckley16dec1f2022-06-07 21:46:20 +0000338 (timingData.skippedValidate ? *timingData.hwcValidateEndTime
339 : *timingData.hwcPresentEndTime);
Matt Buckley50c44062022-01-17 20:48:10 +0000340}
341
342void PowerAdvisor::setDisplays(std::vector<DisplayId>& displayIds) {
343 mDisplayIds = displayIds;
344}
345
346void PowerAdvisor::setTotalFrameTargetWorkDuration(nsecs_t targetDuration) {
347 mTotalFrameTargetDuration = targetDuration;
348}
349
350std::vector<DisplayId> PowerAdvisor::getOrderedDisplayIds(
351 std::optional<nsecs_t> DisplayTimingData::*sortBy) {
352 std::vector<DisplayId> sortedDisplays;
353 std::copy_if(mDisplayIds.begin(), mDisplayIds.end(), std::back_inserter(sortedDisplays),
354 [&](DisplayId id) {
355 return mDisplayTimingData.count(id) &&
356 (mDisplayTimingData[id].*sortBy).has_value();
357 });
358 std::sort(sortedDisplays.begin(), sortedDisplays.end(), [&](DisplayId idA, DisplayId idB) {
359 return *(mDisplayTimingData[idA].*sortBy) < *(mDisplayTimingData[idB].*sortBy);
360 });
361 return sortedDisplays;
362}
363
364std::optional<nsecs_t> PowerAdvisor::estimateWorkDuration(bool earlyHint) {
365 if (earlyHint && (!mExpectedPresentTimes.isFull() || !mCommitStartTimes.isFull())) {
366 return std::nullopt;
367 }
368
369 // Tracks when we finish presenting to hwc
370 nsecs_t estimatedEndTime = mCommitStartTimes[0];
371
372 // How long we spent this frame not doing anything, waiting for fences or vsync
373 nsecs_t idleDuration = 0;
374
375 // Most recent previous gpu end time in the current frame, probably from a prior display, used
376 // as the start time for the next gpu operation if it ran over time since it probably blocked
377 std::optional<nsecs_t> previousValidGpuEndTime;
378
379 // The currently estimated gpu end time for the frame,
380 // used to accumulate gpu time as we iterate over the active displays
381 std::optional<nsecs_t> estimatedGpuEndTime;
382
383 // If we're predicting at the start of the frame, we use last frame as our reference point
384 // If we're predicting at the end of the frame, we use the current frame as a reference point
385 nsecs_t referenceFrameStartTime = (earlyHint ? mCommitStartTimes[-1] : mCommitStartTimes[0]);
386
387 // We need an idea of when the last present fence fired and how long it made us wait
388 // If we're predicting at the start of the frame, we want frame n-2's present fence time
389 // If we're predicting at the end of the frame we want frame n-1's present time
390 nsecs_t referenceFenceTime =
391 (earlyHint ? mExpectedPresentTimes[-2] : mExpectedPresentTimes[-1]);
392 // The timing info for the previously calculated display, if there was one
393 std::optional<DisplayTimeline> previousDisplayReferenceTiming;
394 std::vector<DisplayId>&& displayIds =
Matt Buckley16dec1f2022-06-07 21:46:20 +0000395 getOrderedDisplayIds(&DisplayTimingData::hwcPresentStartTime);
Matt Buckley50c44062022-01-17 20:48:10 +0000396 DisplayTimeline referenceTiming, estimatedTiming;
397
398 // Iterate over the displays in the same order they are presented
399 for (DisplayId displayId : displayIds) {
400 if (mDisplayTimingData.count(displayId) == 0) {
401 continue;
402 }
403
404 auto& displayData = mDisplayTimingData.at(displayId);
405 referenceTiming = displayData.calculateDisplayTimeline(referenceFenceTime);
406
Matt Buckley16dec1f2022-06-07 21:46:20 +0000407 // If this is the first display, include the duration before hwc present starts
Matt Buckley50c44062022-01-17 20:48:10 +0000408 if (!previousDisplayReferenceTiming.has_value()) {
Matt Buckley16dec1f2022-06-07 21:46:20 +0000409 estimatedEndTime += referenceTiming.hwcPresentStartTime - referenceFrameStartTime;
410 } else { // Otherwise add the time since last display's hwc present finished
411 estimatedEndTime += referenceTiming.hwcPresentStartTime -
412 previousDisplayReferenceTiming->hwcPresentEndTime;
Matt Buckley50c44062022-01-17 20:48:10 +0000413 }
414
415 estimatedTiming = referenceTiming.estimateTimelineFromReference(mExpectedPresentTimes[-1],
416 estimatedEndTime);
417 // Update predicted present finish time with this display's present time
Matt Buckley16dec1f2022-06-07 21:46:20 +0000418 estimatedEndTime = estimatedTiming.hwcPresentEndTime;
Matt Buckley50c44062022-01-17 20:48:10 +0000419
420 // Track how long we spent waiting for the fence, can be excluded from the timing estimate
Matt Buckley16dec1f2022-06-07 21:46:20 +0000421 idleDuration += estimatedTiming.probablyWaitsForReleaseFence
422 ? mExpectedPresentTimes[-1] - estimatedTiming.releaseFenceWaitStartTime
Matt Buckley50c44062022-01-17 20:48:10 +0000423 : 0;
424
425 // Track how long we spent waiting to present, can be excluded from the timing estimate
Matt Buckley16dec1f2022-06-07 21:46:20 +0000426 idleDuration += earlyHint ? 0 : referenceTiming.hwcPresentDelayDuration;
Matt Buckley50c44062022-01-17 20:48:10 +0000427
428 // Estimate the reference frame's gpu timing
429 auto gpuTiming = displayData.estimateGpuTiming(previousValidGpuEndTime);
430 if (gpuTiming.has_value()) {
431 previousValidGpuEndTime = gpuTiming->startTime + gpuTiming->duration;
432
433 // Estimate the prediction frame's gpu end time from the reference frame
434 estimatedGpuEndTime =
Matt Buckley16dec1f2022-06-07 21:46:20 +0000435 std::max(estimatedTiming.hwcPresentStartTime, estimatedGpuEndTime.value_or(0)) +
Matt Buckley50c44062022-01-17 20:48:10 +0000436 gpuTiming->duration;
437 }
438 previousDisplayReferenceTiming = referenceTiming;
439 }
440 ATRACE_INT64("Idle duration", idleDuration);
441
442 // Don't count time spent idly waiting in the estimate as we could do more work in that time
443 estimatedEndTime -= idleDuration;
444
445 // We finish the frame when both present and the gpu are done, so wait for the later of the two
446 // Also add the frame delay duration since the target did not move while we were delayed
447 nsecs_t totalDuration = mFrameDelayDuration +
448 std::max(estimatedEndTime, estimatedGpuEndTime.value_or(0)) - mCommitStartTimes[0];
449
450 // We finish SurfaceFlinger when post-composition finishes, so add that in here
451 nsecs_t flingerDuration = estimatedEndTime + mLastPostcompDuration - mCommitStartTimes[0];
452 nsecs_t combinedDuration = combineTimingEstimates(totalDuration, flingerDuration);
453
454 return std::make_optional(combinedDuration);
455}
456
457nsecs_t PowerAdvisor::combineTimingEstimates(nsecs_t totalDuration, nsecs_t flingerDuration) {
458 nsecs_t targetDuration;
459 {
460 std::lock_guard lock(mPowerHalMutex);
461 targetDuration = *getPowerHal()->getTargetWorkDuration();
462 }
463 if (!mTotalFrameTargetDuration.has_value()) return flingerDuration;
464
465 // Normalize total to the flinger target (vsync period) since that's how often we actually send
466 // hints
467 nsecs_t normalizedTotalDuration = (targetDuration * totalDuration) / *mTotalFrameTargetDuration;
468 return std::max(flingerDuration, normalizedTotalDuration);
469}
470
471PowerAdvisor::DisplayTimeline PowerAdvisor::DisplayTimeline::estimateTimelineFromReference(
472 nsecs_t fenceTime, nsecs_t displayStartTime) {
473 DisplayTimeline estimated;
Matt Buckley16dec1f2022-06-07 21:46:20 +0000474 estimated.hwcPresentStartTime = displayStartTime;
Matt Buckley50c44062022-01-17 20:48:10 +0000475
476 // We don't predict waiting for vsync alignment yet
Matt Buckley16dec1f2022-06-07 21:46:20 +0000477 estimated.hwcPresentDelayDuration = 0;
Matt Buckley50c44062022-01-17 20:48:10 +0000478
479 // For now just re-use last frame's post-present duration and assume it will not change much
480 // How long we expect to run before we start waiting for the fence
Matt Buckley16dec1f2022-06-07 21:46:20 +0000481 // If it's the early hint we exclude time we spent waiting for a vsync, otherwise don't
482 estimated.releaseFenceWaitStartTime = estimated.hwcPresentStartTime +
483 (releaseFenceWaitStartTime - (hwcPresentStartTime + hwcPresentDelayDuration));
484 estimated.probablyWaitsForReleaseFence = fenceTime > estimated.releaseFenceWaitStartTime;
485 estimated.hwcPresentEndTime = postReleaseFenceHwcPresentDuration +
486 (estimated.probablyWaitsForReleaseFence ? fenceTime
487 : estimated.releaseFenceWaitStartTime);
Matt Buckley50c44062022-01-17 20:48:10 +0000488 return estimated;
489}
490
491PowerAdvisor::DisplayTimeline PowerAdvisor::DisplayTimingData::calculateDisplayTimeline(
492 nsecs_t fenceTime) {
493 DisplayTimeline timeline;
Matt Buckley16dec1f2022-06-07 21:46:20 +0000494 // How long between calling hwc present and trying to wait on the fence
495 const nsecs_t fenceWaitStartDelay =
496 (skippedValidate ? kFenceWaitStartDelaySkippedValidate : kFenceWaitStartDelayValidated)
497 .count();
Matt Buckley50c44062022-01-17 20:48:10 +0000498
Matt Buckley16dec1f2022-06-07 21:46:20 +0000499 // Did our reference frame wait for an appropriate vsync before calling into hwc
500 const bool waitedOnHwcPresentTime = hwcPresentDelayedTime.has_value() &&
501 *hwcPresentDelayedTime > *hwcPresentStartTime &&
502 *hwcPresentDelayedTime < *hwcPresentEndTime;
Matt Buckley50c44062022-01-17 20:48:10 +0000503
504 // Use validate start here if we skipped it because we did validate + present together
Matt Buckley16dec1f2022-06-07 21:46:20 +0000505 timeline.hwcPresentStartTime = skippedValidate ? *hwcValidateStartTime : *hwcPresentStartTime;
Matt Buckley50c44062022-01-17 20:48:10 +0000506
507 // Use validate end here if we skipped it because we did validate + present together
Matt Buckley16dec1f2022-06-07 21:46:20 +0000508 timeline.hwcPresentEndTime = skippedValidate ? *hwcValidateEndTime : *hwcPresentEndTime;
Matt Buckley50c44062022-01-17 20:48:10 +0000509
Matt Buckley16dec1f2022-06-07 21:46:20 +0000510 // How long hwc present was delayed waiting for the next appropriate vsync
511 timeline.hwcPresentDelayDuration =
512 (waitedOnHwcPresentTime ? *hwcPresentDelayedTime - *hwcPresentStartTime : 0);
513 // When we started waiting for the release fence after calling into hwc present
514 timeline.releaseFenceWaitStartTime =
515 timeline.hwcPresentStartTime + timeline.hwcPresentDelayDuration + fenceWaitStartDelay;
516 timeline.probablyWaitsForReleaseFence = fenceTime > timeline.releaseFenceWaitStartTime &&
517 fenceTime < timeline.hwcPresentEndTime;
Matt Buckley50c44062022-01-17 20:48:10 +0000518
Matt Buckley16dec1f2022-06-07 21:46:20 +0000519 // How long we ran after we finished waiting for the fence but before hwc present finished
520 timeline.postReleaseFenceHwcPresentDuration = timeline.hwcPresentEndTime -
521 (timeline.probablyWaitsForReleaseFence ? fenceTime
522 : timeline.releaseFenceWaitStartTime);
Matt Buckley50c44062022-01-17 20:48:10 +0000523 return timeline;
524}
525
526std::optional<PowerAdvisor::GpuTimeline> PowerAdvisor::DisplayTimingData::estimateGpuTiming(
527 std::optional<nsecs_t> previousEnd) {
528 if (!(usedClientComposition && lastValidGpuStartTime.has_value() && gpuEndFenceTime)) {
529 return std::nullopt;
530 }
531 const nsecs_t latestGpuStartTime = std::max(previousEnd.value_or(0), *gpuStartTime);
532 const nsecs_t latestGpuEndTime = gpuEndFenceTime->getSignalTime();
533 nsecs_t gpuDuration = 0;
534 if (latestGpuEndTime != Fence::SIGNAL_TIME_INVALID &&
535 latestGpuEndTime != Fence::SIGNAL_TIME_PENDING) {
536 // If we know how long the most recent gpu duration was, use that
537 gpuDuration = latestGpuEndTime - latestGpuStartTime;
538 } else if (lastValidGpuEndTime.has_value()) {
539 // If we don't have the fence data, use the most recent information we do have
540 gpuDuration = *lastValidGpuEndTime - *lastValidGpuStartTime;
541 if (latestGpuEndTime == Fence::SIGNAL_TIME_PENDING) {
542 // If pending but went over the previous duration, use current time as the end
543 gpuDuration = std::max(gpuDuration, systemTime() - latestGpuStartTime);
544 }
545 }
546 return GpuTimeline{.duration = gpuDuration, .startTime = latestGpuStartTime};
547}
548
Dan Stoza030fbc12020-02-19 15:32:01 -0800549class HidlPowerHalWrapper : public PowerAdvisor::HalWrapper {
550public:
551 HidlPowerHalWrapper(sp<V1_3::IPower> powerHal) : mPowerHal(std::move(powerHal)) {}
552
553 ~HidlPowerHalWrapper() override = default;
554
555 static std::unique_ptr<HalWrapper> connect() {
556 // Power HAL 1.3 is not guaranteed to be available, thus we need to query
557 // Power HAL 1.0 first and try to cast it to Power HAL 1.3.
Dan Stoza030fbc12020-02-19 15:32:01 -0800558 sp<V1_3::IPower> powerHal = nullptr;
Dan Stoza9c051c02020-02-28 10:19:07 -0800559 sp<V1_0::IPower> powerHal_1_0 = V1_0::IPower::getService();
560 if (powerHal_1_0 != nullptr) {
561 // Try to cast to Power HAL 1.3
562 powerHal = V1_3::IPower::castFrom(powerHal_1_0);
563 if (powerHal == nullptr) {
564 ALOGW("No Power HAL 1.3 service in system, disabling PowerAdvisor");
565 } else {
566 ALOGI("Loaded Power HAL 1.3 service");
Dan Stoza030fbc12020-02-19 15:32:01 -0800567 }
Dan Stoza9c051c02020-02-28 10:19:07 -0800568 } else {
569 ALOGW("No Power HAL found, disabling PowerAdvisor");
Dan Stoza030fbc12020-02-19 15:32:01 -0800570 }
Dan Stoza9c051c02020-02-28 10:19:07 -0800571
Dan Stoza030fbc12020-02-19 15:32:01 -0800572 if (powerHal == nullptr) {
573 return nullptr;
574 }
575
576 return std::make_unique<HidlPowerHalWrapper>(std::move(powerHal));
577 }
578
579 bool setExpensiveRendering(bool enabled) override {
580 ALOGV("HIDL setExpensiveRendering %s", enabled ? "T" : "F");
581 auto ret = mPowerHal->powerHintAsync_1_3(PowerHint::EXPENSIVE_RENDERING, enabled);
Ady Abrahamabce1652022-02-24 10:51:19 -0800582 if (ret.isOk()) {
583 traceExpensiveRendering(enabled);
584 }
Dan Stoza030fbc12020-02-19 15:32:01 -0800585 return ret.isOk();
586 }
587
588 bool notifyDisplayUpdateImminent() override {
589 // Power HAL 1.x doesn't have a notification for this
590 ALOGV("HIDL notifyUpdateImminent received but can't send");
591 return true;
592 }
593
Matt Buckley06f299a2021-09-24 19:43:51 +0000594 bool supportsPowerHintSession() override { return false; }
595
596 bool isPowerHintSessionRunning() override { return false; }
597
598 void restartPowerHintSession() override {}
599
600 void setPowerHintSessionThreadIds(const std::vector<int32_t>&) override {}
601
602 bool startPowerHintSession() override { return false; }
603
604 void setTargetWorkDuration(int64_t) override {}
605
606 void sendActualWorkDuration(int64_t, nsecs_t) override {}
607
608 bool shouldReconnectHAL() override { return false; }
609
610 std::vector<int32_t> getPowerHintSessionThreadIds() override { return std::vector<int32_t>{}; }
611
612 std::optional<int64_t> getTargetWorkDuration() override { return std::nullopt; }
613
Dan Stoza030fbc12020-02-19 15:32:01 -0800614private:
Dan Stoza030fbc12020-02-19 15:32:01 -0800615 const sp<V1_3::IPower> mPowerHal = nullptr;
616};
617
Xiang Wange12b4fa2022-03-25 23:48:40 +0000618AidlPowerHalWrapper::AidlPowerHalWrapper(sp<IPower> powerHal) : mPowerHal(std::move(powerHal)) {
619 auto ret = mPowerHal->isModeSupported(Mode::EXPENSIVE_RENDERING, &mHasExpensiveRendering);
620 if (!ret.isOk()) {
621 mHasExpensiveRendering = false;
Dan Stoza030fbc12020-02-19 15:32:01 -0800622 }
623
Xiang Wange12b4fa2022-03-25 23:48:40 +0000624 ret = mPowerHal->isBoostSupported(Boost::DISPLAY_UPDATE_IMMINENT, &mHasDisplayUpdateImminent);
625 if (!ret.isOk()) {
626 mHasDisplayUpdateImminent = false;
Dan Stoza030fbc12020-02-19 15:32:01 -0800627 }
628
Xiang Wange12b4fa2022-03-25 23:48:40 +0000629 mSupportsPowerHint = checkPowerHintSessionSupported();
Matt Buckley50c44062022-01-17 20:48:10 +0000630
631 mAllowedActualDeviation =
632 base::GetIntProperty<nsecs_t>("debug.sf.allowed_actual_deviation",
633 std::chrono::nanoseconds(250us).count());
Xiang Wange12b4fa2022-03-25 23:48:40 +0000634}
Dan Stoza030fbc12020-02-19 15:32:01 -0800635
Xiang Wange12b4fa2022-03-25 23:48:40 +0000636AidlPowerHalWrapper::~AidlPowerHalWrapper() {
637 if (mPowerHintSession != nullptr) {
638 mPowerHintSession->close();
639 mPowerHintSession = nullptr;
Dan Stoza030fbc12020-02-19 15:32:01 -0800640 }
Matt Buckley50c44062022-01-17 20:48:10 +0000641}
Dan Stoza030fbc12020-02-19 15:32:01 -0800642
Xiang Wange12b4fa2022-03-25 23:48:40 +0000643std::unique_ptr<PowerAdvisor::HalWrapper> AidlPowerHalWrapper::connect() {
644 // This only waits if the service is actually declared
645 sp<IPower> powerHal = waitForVintfService<IPower>();
646 if (powerHal == nullptr) {
647 return nullptr;
648 }
649 ALOGI("Loaded AIDL Power HAL service");
650
651 return std::make_unique<AidlPowerHalWrapper>(std::move(powerHal));
652}
653
654bool AidlPowerHalWrapper::setExpensiveRendering(bool enabled) {
655 ALOGV("AIDL setExpensiveRendering %s", enabled ? "T" : "F");
656 if (!mHasExpensiveRendering) {
657 ALOGV("Skipped sending EXPENSIVE_RENDERING because HAL doesn't support it");
658 return true;
659 }
660
661 auto ret = mPowerHal->setMode(Mode::EXPENSIVE_RENDERING, enabled);
662 if (ret.isOk()) {
663 traceExpensiveRendering(enabled);
664 }
665 return ret.isOk();
666}
667
668bool AidlPowerHalWrapper::notifyDisplayUpdateImminent() {
669 ALOGV("AIDL notifyDisplayUpdateImminent");
670 if (!mHasDisplayUpdateImminent) {
671 ALOGV("Skipped sending DISPLAY_UPDATE_IMMINENT because HAL doesn't support it");
672 return true;
673 }
674
675 auto ret = mPowerHal->setBoost(Boost::DISPLAY_UPDATE_IMMINENT, 0);
676 return ret.isOk();
677}
678
Matt Buckley50c44062022-01-17 20:48:10 +0000679// Only version 2+ of the aidl supports power hint sessions, hidl has no support
Xiang Wange12b4fa2022-03-25 23:48:40 +0000680bool AidlPowerHalWrapper::supportsPowerHintSession() {
681 return mSupportsPowerHint;
682}
683
684bool AidlPowerHalWrapper::checkPowerHintSessionSupported() {
685 int64_t unused;
686 // Try to get preferred rate to determine if hint sessions are supported
687 // We check for isOk not EX_UNSUPPORTED_OPERATION to lump together errors
688 return mPowerHal->getHintSessionPreferredRate(&unused).isOk();
689}
690
691bool AidlPowerHalWrapper::isPowerHintSessionRunning() {
692 return mPowerHintSession != nullptr;
693}
694
695void AidlPowerHalWrapper::closePowerHintSession() {
696 if (mPowerHintSession != nullptr) {
697 mPowerHintSession->close();
698 mPowerHintSession = nullptr;
699 }
700}
701
702void AidlPowerHalWrapper::restartPowerHintSession() {
703 closePowerHintSession();
704 startPowerHintSession();
705}
706
707void AidlPowerHalWrapper::setPowerHintSessionThreadIds(const std::vector<int32_t>& threadIds) {
708 if (threadIds != mPowerHintThreadIds) {
709 mPowerHintThreadIds = threadIds;
710 if (isPowerHintSessionRunning()) {
711 restartPowerHintSession();
712 }
713 }
714}
715
716bool AidlPowerHalWrapper::startPowerHintSession() {
717 if (mPowerHintSession != nullptr || mPowerHintThreadIds.empty()) {
718 ALOGV("Cannot start power hint session, skipping");
719 return false;
720 }
721 auto ret =
722 mPowerHal->createHintSession(getpid(), static_cast<int32_t>(getuid()),
723 mPowerHintThreadIds, mTargetDuration, &mPowerHintSession);
724 if (!ret.isOk()) {
725 ALOGW("Failed to start power hint session with error: %s",
726 ret.exceptionToString(ret.exceptionCode()).c_str());
727 } else {
728 mLastTargetDurationSent = mTargetDuration;
729 }
730 return isPowerHintSessionRunning();
731}
732
Matt Buckley50c44062022-01-17 20:48:10 +0000733void AidlPowerHalWrapper::setTargetWorkDuration(int64_t targetDuration) {
Xiang Wange12b4fa2022-03-25 23:48:40 +0000734 ATRACE_CALL();
Matt Buckley50c44062022-01-17 20:48:10 +0000735 mTargetDuration = targetDuration;
736 if (sTraceHintSessionData) ATRACE_INT64("Time target", targetDuration);
737 if (isPowerHintSessionRunning() && (targetDuration != mLastTargetDurationSent)) {
738 ALOGV("Sending target time: %" PRId64 "ns", targetDuration);
739 mLastTargetDurationSent = targetDuration;
740 auto ret = mPowerHintSession->updateTargetWorkDuration(targetDuration);
Xiang Wange12b4fa2022-03-25 23:48:40 +0000741 if (!ret.isOk()) {
742 ALOGW("Failed to set power hint target work duration with error: %s",
743 ret.exceptionMessage().c_str());
744 mShouldReconnectHal = true;
745 }
746 }
747}
748
Matt Buckley50c44062022-01-17 20:48:10 +0000749bool AidlPowerHalWrapper::shouldReportActualDurations() {
750 // Report if we have never reported before or are approaching a stale session
Xiang Wange12b4fa2022-03-25 23:48:40 +0000751 if (!mLastActualDurationSent.has_value() ||
752 (systemTime() - mLastActualReportTimestamp) > kStaleTimeout.count()) {
753 return true;
754 }
755
756 if (!mActualDuration.has_value()) {
757 return false;
758 }
Matt Buckley50c44062022-01-17 20:48:10 +0000759 // Report if the change in actual duration exceeds the threshold
760 return abs(*mActualDuration - *mLastActualDurationSent) > mAllowedActualDeviation;
Xiang Wange12b4fa2022-03-25 23:48:40 +0000761}
762
Matt Buckley50c44062022-01-17 20:48:10 +0000763void AidlPowerHalWrapper::sendActualWorkDuration(int64_t actualDuration, nsecs_t timestamp) {
Xiang Wange12b4fa2022-03-25 23:48:40 +0000764 ATRACE_CALL();
765
Matt Buckley50c44062022-01-17 20:48:10 +0000766 if (actualDuration < 0 || !isPowerHintSessionRunning()) {
Xiang Wange12b4fa2022-03-25 23:48:40 +0000767 ALOGV("Failed to send actual work duration, skipping");
768 return;
769 }
Matt Buckley50c44062022-01-17 20:48:10 +0000770 const nsecs_t reportedDuration = actualDuration;
Xiang Wange12b4fa2022-03-25 23:48:40 +0000771
Xiang Wang0aba49e2022-04-06 16:13:59 +0000772 mActualDuration = reportedDuration;
773 WorkDuration duration;
774 duration.durationNanos = reportedDuration;
Matt Buckley50c44062022-01-17 20:48:10 +0000775 duration.timeStampNanos = timestamp;
Xiang Wange12b4fa2022-03-25 23:48:40 +0000776 mPowerHintQueue.push_back(duration);
777
Xiang Wange12b4fa2022-03-25 23:48:40 +0000778 if (sTraceHintSessionData) {
Matt Buckley50c44062022-01-17 20:48:10 +0000779 ATRACE_INT64("Measured duration", actualDuration);
780 ATRACE_INT64("Target error term", actualDuration - mTargetDuration);
Xiang Wang0aba49e2022-04-06 16:13:59 +0000781
782 ATRACE_INT64("Reported duration", reportedDuration);
783 ATRACE_INT64("Reported target", mLastTargetDurationSent);
Matt Buckley50c44062022-01-17 20:48:10 +0000784 ATRACE_INT64("Reported target error term", reportedDuration - mLastTargetDurationSent);
Xiang Wange12b4fa2022-03-25 23:48:40 +0000785 }
786
Xiang Wang0aba49e2022-04-06 16:13:59 +0000787 ALOGV("Sending actual work duration of: %" PRId64 " on reported target: %" PRId64
Xiang Wange12b4fa2022-03-25 23:48:40 +0000788 " with error: %" PRId64,
Matt Buckley50c44062022-01-17 20:48:10 +0000789 reportedDuration, mLastTargetDurationSent, reportedDuration - mLastTargetDurationSent);
Xiang Wange12b4fa2022-03-25 23:48:40 +0000790
791 // This rate limiter queues similar duration reports to the powerhal into
792 // batches to avoid excessive binder calls. The criteria to send a given batch
793 // are outlined in shouldReportActualDurationsNow()
Matt Buckley50c44062022-01-17 20:48:10 +0000794 if (shouldReportActualDurations()) {
Xiang Wange12b4fa2022-03-25 23:48:40 +0000795 ALOGV("Sending hint update batch");
796 mLastActualReportTimestamp = systemTime();
797 auto ret = mPowerHintSession->reportActualWorkDuration(mPowerHintQueue);
798 if (!ret.isOk()) {
799 ALOGW("Failed to report actual work durations with error: %s",
800 ret.exceptionMessage().c_str());
801 mShouldReconnectHal = true;
802 }
803 mPowerHintQueue.clear();
Matt Buckley50c44062022-01-17 20:48:10 +0000804 // We save the actual duration here for rate limiting
805 mLastActualDurationSent = actualDuration;
Xiang Wange12b4fa2022-03-25 23:48:40 +0000806 }
807}
808
809bool AidlPowerHalWrapper::shouldReconnectHAL() {
810 return mShouldReconnectHal;
811}
812
813std::vector<int32_t> AidlPowerHalWrapper::getPowerHintSessionThreadIds() {
814 return mPowerHintThreadIds;
815}
816
817std::optional<int64_t> AidlPowerHalWrapper::getTargetWorkDuration() {
818 return mTargetDuration;
819}
820
Matt Buckley50c44062022-01-17 20:48:10 +0000821void AidlPowerHalWrapper::setAllowedActualDeviation(nsecs_t allowedDeviation) {
822 mAllowedActualDeviation = allowedDeviation;
823}
824
Matt Buckleyef51fba2021-10-12 19:30:12 +0000825const bool AidlPowerHalWrapper::sTraceHintSessionData =
826 base::GetBoolProperty(std::string("debug.sf.trace_hint_sessions"), false);
827
Dan Stoza030fbc12020-02-19 15:32:01 -0800828PowerAdvisor::HalWrapper* PowerAdvisor::getPowerHal() {
829 static std::unique_ptr<HalWrapper> sHalWrapper = nullptr;
Dan Stoza9c051c02020-02-28 10:19:07 -0800830 static bool sHasHal = true;
Michael Wright1509a232018-06-21 02:50:34 +0100831
Dan Stoza9c051c02020-02-28 10:19:07 -0800832 if (!sHasHal) {
833 return nullptr;
834 }
835
Matt Buckley50c44062022-01-17 20:48:10 +0000836 // Grab old hint session values before we destroy any existing wrapper
Matt Buckley06f299a2021-09-24 19:43:51 +0000837 std::vector<int32_t> oldPowerHintSessionThreadIds;
838 std::optional<int64_t> oldTargetWorkDuration;
839
840 if (sHalWrapper != nullptr) {
841 oldPowerHintSessionThreadIds = sHalWrapper->getPowerHintSessionThreadIds();
842 oldTargetWorkDuration = sHalWrapper->getTargetWorkDuration();
843 }
844
Dan Stoza9c051c02020-02-28 10:19:07 -0800845 // If we used to have a HAL, but it stopped responding, attempt to reconnect
Michael Wright1509a232018-06-21 02:50:34 +0100846 if (mReconnectPowerHal) {
Dan Stoza030fbc12020-02-19 15:32:01 -0800847 sHalWrapper = nullptr;
Michael Wright1509a232018-06-21 02:50:34 +0100848 mReconnectPowerHal = false;
849 }
850
Dan Stoza030fbc12020-02-19 15:32:01 -0800851 if (sHalWrapper != nullptr) {
Matt Buckley06f299a2021-09-24 19:43:51 +0000852 auto wrapper = sHalWrapper.get();
Matt Buckley50c44062022-01-17 20:48:10 +0000853 // If the wrapper is fine, return it, but if it indicates a reconnect, remake it
Matt Buckley06f299a2021-09-24 19:43:51 +0000854 if (!wrapper->shouldReconnectHAL()) {
855 return wrapper;
856 }
Xiang Wang65a2e6f2022-04-18 21:19:17 +0000857 ALOGD("Reconnecting Power HAL");
Matt Buckley06f299a2021-09-24 19:43:51 +0000858 sHalWrapper = nullptr;
Michael Wright1509a232018-06-21 02:50:34 +0100859 }
Dan Stoza030fbc12020-02-19 15:32:01 -0800860
Matt Buckley50c44062022-01-17 20:48:10 +0000861 // At this point, we know for sure there is no running session
Matt Buckley06f299a2021-09-24 19:43:51 +0000862 mPowerHintSessionRunning = false;
863
Dan Stoza030fbc12020-02-19 15:32:01 -0800864 // First attempt to connect to the AIDL Power HAL
865 sHalWrapper = AidlPowerHalWrapper::connect();
866
867 // If that didn't succeed, attempt to connect to the HIDL Power HAL
868 if (sHalWrapper == nullptr) {
869 sHalWrapper = HidlPowerHalWrapper::connect();
Xiang Wang65a2e6f2022-04-18 21:19:17 +0000870 } else {
871 ALOGD("Successfully connecting AIDL Power HAL");
Matt Buckley50c44062022-01-17 20:48:10 +0000872 // If AIDL, pass on any existing hint session values
Matt Buckley06f299a2021-09-24 19:43:51 +0000873 sHalWrapper->setPowerHintSessionThreadIds(oldPowerHintSessionThreadIds);
Matt Buckley50c44062022-01-17 20:48:10 +0000874 // Only set duration and start if duration is defined
Matt Buckley06f299a2021-09-24 19:43:51 +0000875 if (oldTargetWorkDuration.has_value()) {
876 sHalWrapper->setTargetWorkDuration(*oldTargetWorkDuration);
Matt Buckley50c44062022-01-17 20:48:10 +0000877 // Only start if possible to run and both threadids and duration are defined
Matt Buckley06f299a2021-09-24 19:43:51 +0000878 if (usePowerHintSession() && !oldPowerHintSessionThreadIds.empty()) {
879 mPowerHintSessionRunning = sHalWrapper->startPowerHintSession();
880 }
881 }
Dan Stoza030fbc12020-02-19 15:32:01 -0800882 }
883
Dan Stoza9c051c02020-02-28 10:19:07 -0800884 // If we make it to this point and still don't have a HAL, it's unlikely we
885 // will, so stop trying
886 if (sHalWrapper == nullptr) {
887 sHasHal = false;
888 }
889
Dan Stoza030fbc12020-02-19 15:32:01 -0800890 return sHalWrapper.get();
Michael Wright1509a232018-06-21 02:50:34 +0100891}
892
893} // namespace impl
894} // namespace Hwc2
895} // namespace android