blob: 990318a00a7c5fa22b0c281de3e2c3b906c006bc [file] [log] [blame]
Ana Krulec98b5b242018-08-10 15:03:23 -07001/*
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
Ana Krulec7ab56032018-11-02 20:51:06 +010017#define ATRACE_TAG ATRACE_TAG_GRAPHICS
18
Ana Krulec98b5b242018-08-10 15:03:23 -070019#include "Scheduler.h"
20
Ana Krulec434c22d2018-11-28 13:48:36 +010021#include <algorithm>
Ana Krulec98b5b242018-08-10 15:03:23 -070022#include <cinttypes>
23#include <cstdint>
24#include <memory>
Ana Krulec7ab56032018-11-02 20:51:06 +010025#include <numeric>
Ana Krulec98b5b242018-08-10 15:03:23 -070026
Ana Krulece588e312018-09-18 12:32:24 -070027#include <android/hardware/configstore/1.0/ISurfaceFlingerConfigs.h>
28#include <android/hardware/configstore/1.1/ISurfaceFlingerConfigs.h>
29#include <android/hardware/configstore/1.2/ISurfaceFlingerConfigs.h>
30#include <configstore/Utils.h>
Ana Krulecfb772822018-11-30 10:44:07 +010031#include <cutils/properties.h>
Ana Krulece588e312018-09-18 12:32:24 -070032#include <ui/DisplayStatInfo.h>
Ana Krulec3084c052018-11-21 20:27:17 +010033#include <utils/Timers.h>
Ana Krulec7ab56032018-11-02 20:51:06 +010034#include <utils/Trace.h>
Ana Krulec98b5b242018-08-10 15:03:23 -070035
36#include "DispSync.h"
37#include "DispSyncSource.h"
Ana Krulece588e312018-09-18 12:32:24 -070038#include "EventControlThread.h"
Ana Krulec98b5b242018-08-10 15:03:23 -070039#include "EventThread.h"
Ana Krulecfb772822018-11-30 10:44:07 +010040#include "IdleTimer.h"
Ana Krulec98b5b242018-08-10 15:03:23 -070041#include "InjectVSyncSource.h"
Ana Krulec434c22d2018-11-28 13:48:36 +010042#include "SchedulerUtils.h"
Sundong Ahnd5e08f62018-12-12 20:27:28 +090043#include "SurfaceFlingerProperties.h"
Ana Krulec98b5b242018-08-10 15:03:23 -070044
45namespace android {
46
Ana Krulece588e312018-09-18 12:32:24 -070047using namespace android::hardware::configstore;
48using namespace android::hardware::configstore::V1_0;
Sundong Ahnd5e08f62018-12-12 20:27:28 +090049using namespace android::sysprop;
Ana Krulece588e312018-09-18 12:32:24 -070050
Ana Krulec0c8cd522018-08-31 12:27:28 -070051#define RETURN_VALUE_IF_INVALID(value) \
52 if (handle == nullptr || mConnections.count(handle->id) == 0) return value
53#define RETURN_IF_INVALID() \
54 if (handle == nullptr || mConnections.count(handle->id) == 0) return
55
Ana Krulec98b5b242018-08-10 15:03:23 -070056std::atomic<int64_t> Scheduler::sNextId = 0;
57
Ana Krulece588e312018-09-18 12:32:24 -070058Scheduler::Scheduler(impl::EventControlThread::SetVSyncEnabledFunction function)
Sundong Ahnd5e08f62018-12-12 20:27:28 +090059 : mHasSyncFramework(running_without_sync_framework(true)),
60 mDispSyncPresentTimeOffset(present_time_offset_from_vsync_ns(0)),
Ana Krulece588e312018-09-18 12:32:24 -070061 mPrimaryHWVsyncEnabled(false),
62 mHWVsyncAvailable(false) {
63 // Note: We create a local temporary with the real DispSync implementation
64 // type temporarily so we can initialize it with the configured values,
65 // before storing it for more generic use using the interface type.
66 auto primaryDispSync = std::make_unique<impl::DispSync>("SchedulerDispSync");
67 primaryDispSync->init(mHasSyncFramework, mDispSyncPresentTimeOffset);
68 mPrimaryDispSync = std::move(primaryDispSync);
69 mEventControlThread = std::make_unique<impl::EventControlThread>(function);
Ana Krulecfb772822018-11-30 10:44:07 +010070
71 char value[PROPERTY_VALUE_MAX];
Ana Kruleca5bdd9d2019-01-29 19:00:58 -080072 property_get("debug.sf.set_idle_timer_ms", value, "0");
Ana Krulecfb772822018-11-30 10:44:07 +010073 mSetIdleTimerMs = atoi(value);
74
75 if (mSetIdleTimerMs > 0) {
76 mIdleTimer =
77 std::make_unique<scheduler::IdleTimer>(std::chrono::milliseconds(mSetIdleTimerMs),
Ady Abrahama1a49af2019-02-07 14:36:55 -080078 [this] { resetTimerCallback(); },
Ana Krulecfb772822018-11-30 10:44:07 +010079 [this] { expiredTimerCallback(); });
80 mIdleTimer->start();
81 }
Ana Krulece588e312018-09-18 12:32:24 -070082}
83
Lloyd Pique1f9f1a42019-01-31 13:04:00 -080084Scheduler::~Scheduler() {
85 // Ensure the IdleTimer thread is joined before we start destroying state.
86 mIdleTimer.reset();
87}
Ana Krulec0c8cd522018-08-31 12:27:28 -070088
Ana Krulec98b5b242018-08-10 15:03:23 -070089sp<Scheduler::ConnectionHandle> Scheduler::createConnection(
Dominik Laskowskibd52c842019-01-28 18:11:23 -080090 const char* connectionName, int64_t phaseOffsetNs, ResyncCallback resyncCallback,
Ana Krulec98b5b242018-08-10 15:03:23 -070091 impl::EventThread::InterceptVSyncsCallback interceptCallback) {
92 const int64_t id = sNextId++;
93 ALOGV("Creating a connection handle with ID: %" PRId64 "\n", id);
94
Ana Krulec98b5b242018-08-10 15:03:23 -070095 std::unique_ptr<EventThread> eventThread =
Dominik Laskowskif654d572018-12-20 11:03:06 -080096 makeEventThread(connectionName, mPrimaryDispSync.get(), phaseOffsetNs,
Dominik Laskowskibd52c842019-01-28 18:11:23 -080097 std::move(interceptCallback));
Dominik Laskowskif654d572018-12-20 11:03:06 -080098
Dominik Laskowskiccf37d72019-02-01 16:47:58 -080099 auto eventThreadConnection =
Ady Abrahama1a49af2019-02-07 14:36:55 -0800100 createConnectionInternal(eventThread.get(), std::move(resyncCallback));
Dominik Laskowskiccf37d72019-02-01 16:47:58 -0800101 mConnections.emplace(id,
102 std::make_unique<Connection>(new ConnectionHandle(id),
103 eventThreadConnection,
104 std::move(eventThread)));
Ana Krulec98b5b242018-08-10 15:03:23 -0700105 return mConnections[id]->handle;
106}
107
Ana Krulec0c8cd522018-08-31 12:27:28 -0700108std::unique_ptr<EventThread> Scheduler::makeEventThread(
Dominik Laskowskibd52c842019-01-28 18:11:23 -0800109 const char* connectionName, DispSync* dispSync, int64_t phaseOffsetNs,
Ana Krulec0c8cd522018-08-31 12:27:28 -0700110 impl::EventThread::InterceptVSyncsCallback interceptCallback) {
111 std::unique_ptr<VSyncSource> eventThreadSource =
Dominik Laskowskibd52c842019-01-28 18:11:23 -0800112 std::make_unique<DispSyncSource>(dispSync, phaseOffsetNs, true, connectionName);
113 return std::make_unique<impl::EventThread>(std::move(eventThreadSource),
Dominik Laskowskiccf37d72019-02-01 16:47:58 -0800114 std::move(interceptCallback), connectionName);
115}
116
Ady Abrahama1a49af2019-02-07 14:36:55 -0800117sp<EventThreadConnection> Scheduler::createConnectionInternal(EventThread* eventThread,
118 ResyncCallback&& resyncCallback) {
Dominik Laskowskiccf37d72019-02-01 16:47:58 -0800119 return eventThread->createEventConnection(std::move(resyncCallback),
Ady Abrahama1a49af2019-02-07 14:36:55 -0800120 [this] { resetIdleTimer(); });
Ana Krulec0c8cd522018-08-31 12:27:28 -0700121}
122
Ana Krulec98b5b242018-08-10 15:03:23 -0700123sp<IDisplayEventConnection> Scheduler::createDisplayEventConnection(
Ady Abrahama1a49af2019-02-07 14:36:55 -0800124 const sp<Scheduler::ConnectionHandle>& handle, ResyncCallback resyncCallback) {
Ana Krulec0c8cd522018-08-31 12:27:28 -0700125 RETURN_VALUE_IF_INVALID(nullptr);
Dominik Laskowskiccf37d72019-02-01 16:47:58 -0800126 return createConnectionInternal(mConnections[handle->id]->thread.get(),
Ady Abrahama1a49af2019-02-07 14:36:55 -0800127 std::move(resyncCallback));
Ana Krulec98b5b242018-08-10 15:03:23 -0700128}
129
130EventThread* Scheduler::getEventThread(const sp<Scheduler::ConnectionHandle>& handle) {
Ana Krulec0c8cd522018-08-31 12:27:28 -0700131 RETURN_VALUE_IF_INVALID(nullptr);
132 return mConnections[handle->id]->thread.get();
Ana Krulec98b5b242018-08-10 15:03:23 -0700133}
134
Ana Krulec85c39af2018-12-26 17:29:57 -0800135sp<EventThreadConnection> Scheduler::getEventConnection(const sp<ConnectionHandle>& handle) {
Ana Krulec0c8cd522018-08-31 12:27:28 -0700136 RETURN_VALUE_IF_INVALID(nullptr);
137 return mConnections[handle->id]->eventConnection;
Ana Krulec98b5b242018-08-10 15:03:23 -0700138}
139
140void Scheduler::hotplugReceived(const sp<Scheduler::ConnectionHandle>& handle,
Dominik Laskowskidcb38bb2019-01-25 02:35:50 -0800141 PhysicalDisplayId displayId, bool connected) {
Ana Krulec0c8cd522018-08-31 12:27:28 -0700142 RETURN_IF_INVALID();
Dominik Laskowskidcb38bb2019-01-25 02:35:50 -0800143 mConnections[handle->id]->thread->onHotplugReceived(displayId, connected);
Ana Krulec98b5b242018-08-10 15:03:23 -0700144}
145
146void Scheduler::onScreenAcquired(const sp<Scheduler::ConnectionHandle>& handle) {
Ana Krulec0c8cd522018-08-31 12:27:28 -0700147 RETURN_IF_INVALID();
148 mConnections[handle->id]->thread->onScreenAcquired();
Ana Krulec98b5b242018-08-10 15:03:23 -0700149}
150
151void Scheduler::onScreenReleased(const sp<Scheduler::ConnectionHandle>& handle) {
Ana Krulec0c8cd522018-08-31 12:27:28 -0700152 RETURN_IF_INVALID();
153 mConnections[handle->id]->thread->onScreenReleased();
Ana Krulec98b5b242018-08-10 15:03:23 -0700154}
155
Ady Abraham447052e2019-02-13 16:07:27 -0800156void Scheduler::onConfigChanged(const sp<ConnectionHandle>& handle, PhysicalDisplayId displayId,
157 int32_t configId) {
158 RETURN_IF_INVALID();
159 mConnections[handle->id]->thread->onConfigChanged(displayId, configId);
160}
161
Yiwei Zhang5434a782018-12-05 18:06:32 -0800162void Scheduler::dump(const sp<Scheduler::ConnectionHandle>& handle, std::string& result) const {
Ana Krulec0c8cd522018-08-31 12:27:28 -0700163 RETURN_IF_INVALID();
164 mConnections.at(handle->id)->thread->dump(result);
Ana Krulec98b5b242018-08-10 15:03:23 -0700165}
166
167void Scheduler::setPhaseOffset(const sp<Scheduler::ConnectionHandle>& handle, nsecs_t phaseOffset) {
Ana Krulec0c8cd522018-08-31 12:27:28 -0700168 RETURN_IF_INVALID();
169 mConnections[handle->id]->thread->setPhaseOffset(phaseOffset);
Ana Krulec98b5b242018-08-10 15:03:23 -0700170}
Ana Krulece588e312018-09-18 12:32:24 -0700171
Ady Abrahamb838aed2019-02-12 15:30:16 -0800172void Scheduler::pauseVsyncCallback(const android::sp<android::Scheduler::ConnectionHandle>& handle,
173 bool pause) {
174 RETURN_IF_INVALID();
175 mConnections[handle->id]->thread->pauseVsyncCallback(pause);
176}
177
Ana Krulece588e312018-09-18 12:32:24 -0700178void Scheduler::getDisplayStatInfo(DisplayStatInfo* stats) {
179 stats->vsyncTime = mPrimaryDispSync->computeNextRefresh(0);
180 stats->vsyncPeriod = mPrimaryDispSync->getPeriod();
181}
182
183void Scheduler::enableHardwareVsync() {
184 std::lock_guard<std::mutex> lock(mHWVsyncLock);
185 if (!mPrimaryHWVsyncEnabled && mHWVsyncAvailable) {
186 mPrimaryDispSync->beginResync();
187 mEventControlThread->setVsyncEnabled(true);
188 mPrimaryHWVsyncEnabled = true;
189 }
190}
191
192void Scheduler::disableHardwareVsync(bool makeUnavailable) {
193 std::lock_guard<std::mutex> lock(mHWVsyncLock);
194 if (mPrimaryHWVsyncEnabled) {
195 mEventControlThread->setVsyncEnabled(false);
196 mPrimaryDispSync->endResync();
197 mPrimaryHWVsyncEnabled = false;
198 }
199 if (makeUnavailable) {
200 mHWVsyncAvailable = false;
201 }
202}
203
Ana Krulecc2870422019-01-29 19:00:58 -0800204void Scheduler::resyncToHardwareVsync(bool makeAvailable, nsecs_t period) {
205 {
206 std::lock_guard<std::mutex> lock(mHWVsyncLock);
207 if (makeAvailable) {
208 mHWVsyncAvailable = makeAvailable;
209 } else if (!mHWVsyncAvailable) {
210 // Hardware vsync is not currently available, so abort the resync
211 // attempt for now
212 return;
213 }
214 }
215
216 if (period <= 0) {
217 return;
218 }
219
220 setVsyncPeriod(period);
221}
222
223ResyncCallback Scheduler::makeResyncCallback(GetVsyncPeriod&& getVsyncPeriod) {
224 std::weak_ptr<VsyncState> ptr = mPrimaryVsyncState;
225 return [ptr, getVsyncPeriod = std::move(getVsyncPeriod)]() {
226 if (const auto vsync = ptr.lock()) {
227 vsync->resync(getVsyncPeriod);
228 }
229 };
230}
231
232void Scheduler::VsyncState::resync(const GetVsyncPeriod& getVsyncPeriod) {
233 static constexpr nsecs_t kIgnoreDelay = ms2ns(500);
234
235 const nsecs_t now = systemTime();
236 const nsecs_t last = lastResyncTime.exchange(now);
237
238 if (now - last > kIgnoreDelay) {
239 scheduler.resyncToHardwareVsync(false, getVsyncPeriod());
240 }
241}
242
243void Scheduler::setRefreshSkipCount(int count) {
244 mPrimaryDispSync->setRefreshSkipCount(count);
245}
246
Ana Krulece588e312018-09-18 12:32:24 -0700247void Scheduler::setVsyncPeriod(const nsecs_t period) {
Ady Abraham3aff9172019-02-07 19:10:26 -0800248 std::lock_guard<std::mutex> lock(mHWVsyncLock);
Ana Krulece588e312018-09-18 12:32:24 -0700249 mPrimaryDispSync->reset();
250 mPrimaryDispSync->setPeriod(period);
Ady Abraham3aff9172019-02-07 19:10:26 -0800251
252 if (!mPrimaryHWVsyncEnabled) {
253 mPrimaryDispSync->beginResync();
254 mEventControlThread->setVsyncEnabled(true);
255 mPrimaryHWVsyncEnabled = true;
256 }
Ana Krulece588e312018-09-18 12:32:24 -0700257}
258
259void Scheduler::addResyncSample(const nsecs_t timestamp) {
260 bool needsHwVsync = false;
261 { // Scope for the lock
262 std::lock_guard<std::mutex> lock(mHWVsyncLock);
263 if (mPrimaryHWVsyncEnabled) {
264 needsHwVsync = mPrimaryDispSync->addResyncSample(timestamp);
265 }
266 }
267
268 if (needsHwVsync) {
269 enableHardwareVsync();
270 } else {
271 disableHardwareVsync(false);
272 }
273}
274
275void Scheduler::addPresentFence(const std::shared_ptr<FenceTime>& fenceTime) {
276 if (mPrimaryDispSync->addPresentFence(fenceTime)) {
277 enableHardwareVsync();
278 } else {
279 disableHardwareVsync(false);
280 }
281}
282
283void Scheduler::setIgnorePresentFences(bool ignore) {
284 mPrimaryDispSync->setIgnorePresentFences(ignore);
285}
286
Ady Abrahamc3e21312019-02-07 14:30:23 -0800287nsecs_t Scheduler::expectedPresentTime() {
288 return mPrimaryDispSync->expectedPresentTime();
289}
290
Ady Abraham3aff9172019-02-07 19:10:26 -0800291void Scheduler::dumpPrimaryDispSync(std::string& result) const {
292 mPrimaryDispSync->dump(result);
293}
294
Ana Krulec3084c052018-11-21 20:27:17 +0100295void Scheduler::addFramePresentTimeForLayer(const nsecs_t framePresentTime, bool isAutoTimestamp,
296 const std::string layerName) {
297 // This is V1 logic. It calculates the average FPS based on the timestamp frequency
298 // regardless of which layer the timestamp came from.
299 // For now, the averages and FPS are recorded in the systrace.
300 determineTimestampAverage(isAutoTimestamp, framePresentTime);
301
302 // This is V2 logic. It calculates the average and median timestamp difference based on the
303 // individual layer history. The results are recorded in the systrace.
304 determineLayerTimestampStats(layerName, framePresentTime);
305}
306
307void Scheduler::incrementFrameCounter() {
Ana Krulec6da0e492019-02-19 14:46:01 -0800308 std::lock_guard<std::mutex> lock(mLayerHistoryLock);
Ana Krulec3084c052018-11-21 20:27:17 +0100309 mLayerHistory.incrementCounter();
310}
311
Ana Krulec7d1d6832018-12-27 11:10:09 -0800312void Scheduler::setExpiredIdleTimerCallback(const ExpiredIdleTimerCallback& expiredTimerCallback) {
313 std::lock_guard<std::mutex> lock(mCallbackLock);
314 mExpiredTimerCallback = expiredTimerCallback;
315}
316
Ady Abrahama1a49af2019-02-07 14:36:55 -0800317void Scheduler::setResetIdleTimerCallback(const ResetIdleTimerCallback& resetTimerCallback) {
318 std::lock_guard<std::mutex> lock(mCallbackLock);
319 mResetTimerCallback = resetTimerCallback;
320}
321
Ana Krulec3084c052018-11-21 20:27:17 +0100322void Scheduler::updateFrameSkipping(const int64_t skipCount) {
323 ATRACE_INT("FrameSkipCount", skipCount);
324 if (mSkipCount != skipCount) {
325 // Only update DispSync if it hasn't been updated yet.
326 mPrimaryDispSync->setRefreshSkipCount(skipCount);
327 mSkipCount = skipCount;
328 }
329}
330
331void Scheduler::determineLayerTimestampStats(const std::string layerName,
332 const nsecs_t framePresentTime) {
Ana Krulec3084c052018-11-21 20:27:17 +0100333 std::vector<int64_t> differencesMs;
Ana Krulec434c22d2018-11-28 13:48:36 +0100334 std::string differencesText = "";
Ana Krulec6da0e492019-02-19 14:46:01 -0800335 {
336 std::lock_guard<std::mutex> lock(mLayerHistoryLock);
337 mLayerHistory.insert(layerName, framePresentTime);
338
339 // Traverse through the layer history, and determine the differences in present times.
340 nsecs_t newestPresentTime = framePresentTime;
341 for (int i = 1; i < mLayerHistory.getSize(); i++) {
342 std::unordered_map<std::string, nsecs_t> layers = mLayerHistory.get(i);
343 for (auto layer : layers) {
344 if (layer.first != layerName) {
345 continue;
346 }
347 int64_t differenceMs = (newestPresentTime - layer.second) / 1000000;
348 // Dismiss noise.
349 if (differenceMs > 10 && differenceMs < 60) {
350 differencesMs.push_back(differenceMs);
351 }
352 IF_ALOGV() { differencesText += (std::to_string(differenceMs) + " "); }
353 newestPresentTime = layer.second;
Ana Krulec3084c052018-11-21 20:27:17 +0100354 }
Ana Krulec3084c052018-11-21 20:27:17 +0100355 }
356 }
Ana Krulec434c22d2018-11-28 13:48:36 +0100357 ALOGV("Layer %s timestamp intervals: %s", layerName.c_str(), differencesText.c_str());
Ana Krulec3084c052018-11-21 20:27:17 +0100358
Ana Krulec434c22d2018-11-28 13:48:36 +0100359 if (!differencesMs.empty()) {
360 // Mean/Average is a good indicator for when 24fps videos are playing, because the frames
361 // come in 33, and 49 ms intervals with occasional 41ms.
362 const int64_t meanMs = scheduler::calculate_mean(differencesMs);
363 const auto tagMean = "TimestampMean_" + layerName;
364 ATRACE_INT(tagMean.c_str(), meanMs);
365
366 // Mode and median are good indicators for 30 and 60 fps videos, because the majority of
367 // frames come in 16, or 33 ms intervals.
Ana Krulec3084c052018-11-21 20:27:17 +0100368 const auto tagMedian = "TimestampMedian_" + layerName;
Ana Krulec434c22d2018-11-28 13:48:36 +0100369 ATRACE_INT(tagMedian.c_str(), scheduler::calculate_median(&differencesMs));
Ana Krulec3084c052018-11-21 20:27:17 +0100370
Ana Krulec434c22d2018-11-28 13:48:36 +0100371 const auto tagMode = "TimestampMode_" + layerName;
372 ATRACE_INT(tagMode.c_str(), scheduler::calculate_mode(differencesMs));
Ana Krulec3084c052018-11-21 20:27:17 +0100373 }
Ana Krulec3084c052018-11-21 20:27:17 +0100374}
375
376void Scheduler::determineTimestampAverage(bool isAutoTimestamp, const nsecs_t framePresentTime) {
Ana Krulec7ab56032018-11-02 20:51:06 +0100377 ATRACE_INT("AutoTimestamp", isAutoTimestamp);
Ana Krulec3084c052018-11-21 20:27:17 +0100378
Ana Krulec7ab56032018-11-02 20:51:06 +0100379 // Video does not have timestamp automatically set, so we discard timestamps that are
380 // coming in from other sources for now.
381 if (isAutoTimestamp) {
382 return;
383 }
Ana Krulec3084c052018-11-21 20:27:17 +0100384 int64_t differenceMs = (framePresentTime - mPreviousFrameTimestamp) / 1000000;
385 mPreviousFrameTimestamp = framePresentTime;
Ana Krulec7ab56032018-11-02 20:51:06 +0100386
387 if (differenceMs < 10 || differenceMs > 100) {
388 // Dismiss noise.
389 return;
390 }
391 ATRACE_INT("TimestampDiff", differenceMs);
392
Ana Krulec434c22d2018-11-28 13:48:36 +0100393 mTimeDifferences[mCounter % scheduler::ARRAY_SIZE] = differenceMs;
Ana Krulec7ab56032018-11-02 20:51:06 +0100394 mCounter++;
Ana Krulec434c22d2018-11-28 13:48:36 +0100395 int64_t mean = scheduler::calculate_mean(mTimeDifferences);
396 ATRACE_INT("AutoTimestampMean", mean);
Ana Krulec7ab56032018-11-02 20:51:06 +0100397
398 // TODO(b/113612090): This are current numbers from trial and error while running videos
399 // from YouTube at 24, 30, and 60 fps.
Ana Krulec434c22d2018-11-28 13:48:36 +0100400 if (mean > 14 && mean < 18) {
Ana Krulec7d1d6832018-12-27 11:10:09 -0800401 ATRACE_INT("MediaFPS", 60);
Ana Krulec434c22d2018-11-28 13:48:36 +0100402 } else if (mean > 31 && mean < 34) {
Ana Krulec7d1d6832018-12-27 11:10:09 -0800403 ATRACE_INT("MediaFPS", 30);
Ana Krulec7ab56032018-11-02 20:51:06 +0100404 return;
Ana Krulec434c22d2018-11-28 13:48:36 +0100405 } else if (mean > 39 && mean < 42) {
Ana Krulec7d1d6832018-12-27 11:10:09 -0800406 ATRACE_INT("MediaFPS", 24);
Ana Krulec7ab56032018-11-02 20:51:06 +0100407 }
Ana Krulec7ab56032018-11-02 20:51:06 +0100408}
409
Ana Krulecfb772822018-11-30 10:44:07 +0100410void Scheduler::resetIdleTimer() {
411 if (mIdleTimer) {
412 mIdleTimer->reset();
Ady Abrahama1a49af2019-02-07 14:36:55 -0800413 }
414}
415
416void Scheduler::resetTimerCallback() {
417 std::lock_guard<std::mutex> lock(mCallbackLock);
418 if (mResetTimerCallback) {
419 mResetTimerCallback();
Ana Krulecfb772822018-11-30 10:44:07 +0100420 ATRACE_INT("ExpiredIdleTimer", 0);
421 }
422}
423
424void Scheduler::expiredTimerCallback() {
Ana Krulec7d1d6832018-12-27 11:10:09 -0800425 std::lock_guard<std::mutex> lock(mCallbackLock);
426 if (mExpiredTimerCallback) {
427 mExpiredTimerCallback();
428 ATRACE_INT("ExpiredIdleTimer", 1);
429 }
Ana Krulecfb772822018-11-30 10:44:07 +0100430}
431
Ana Krulecb43429d2019-01-09 14:28:51 -0800432std::string Scheduler::doDump() {
433 std::ostringstream stream;
434 stream << "+ Idle timer interval: " << mSetIdleTimerMs << " ms" << std::endl;
435 return stream.str();
436}
437
Ana Krulec98b5b242018-08-10 15:03:23 -0700438} // namespace android