1 /*
2 * Copyright 2019 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 #define ATRACE_TAG ATRACE_TAG_GRAPHICS
18 #include <android-base/stringprintf.h>
19 #include <utils/Trace.h>
20 #include <vector>
21
22 #include "TimeKeeper.h"
23 #include "VSyncDispatchTimerQueue.h"
24 #include "VSyncTracker.h"
25
26 namespace android::scheduler {
27 using base::StringAppendF;
28
29 VSyncDispatch::~VSyncDispatch() = default;
30 VSyncTracker::~VSyncTracker() = default;
31 TimeKeeper::~TimeKeeper() = default;
32
VSyncDispatchTimerQueueEntry(std::string const & name,VSyncDispatch::Callback const & cb,nsecs_t minVsyncDistance)33 VSyncDispatchTimerQueueEntry::VSyncDispatchTimerQueueEntry(std::string const& name,
34 VSyncDispatch::Callback const& cb,
35 nsecs_t minVsyncDistance)
36 : mName(name),
37 mCallback(cb),
38 mWorkDuration(0),
39 mEarliestVsync(0),
40 mMinVsyncDistance(minVsyncDistance) {}
41
lastExecutedVsyncTarget() const42 std::optional<nsecs_t> VSyncDispatchTimerQueueEntry::lastExecutedVsyncTarget() const {
43 return mLastDispatchTime;
44 }
45
name() const46 std::string_view VSyncDispatchTimerQueueEntry::name() const {
47 return mName;
48 }
49
wakeupTime() const50 std::optional<nsecs_t> VSyncDispatchTimerQueueEntry::wakeupTime() const {
51 if (!mArmedInfo) {
52 return {};
53 }
54 return {mArmedInfo->mActualWakeupTime};
55 }
56
targetVsync() const57 std::optional<nsecs_t> VSyncDispatchTimerQueueEntry::targetVsync() const {
58 if (!mArmedInfo) {
59 return {};
60 }
61 return {mArmedInfo->mActualVsyncTime};
62 }
63
schedule(nsecs_t workDuration,nsecs_t earliestVsync,VSyncTracker & tracker,nsecs_t now)64 ScheduleResult VSyncDispatchTimerQueueEntry::schedule(nsecs_t workDuration, nsecs_t earliestVsync,
65 VSyncTracker& tracker, nsecs_t now) {
66 auto nextVsyncTime =
67 tracker.nextAnticipatedVSyncTimeFrom(std::max(earliestVsync, now + workDuration));
68
69 bool const wouldSkipAVsyncTarget =
70 mArmedInfo && (nextVsyncTime > (mArmedInfo->mActualVsyncTime + mMinVsyncDistance));
71 if (wouldSkipAVsyncTarget) {
72 return ScheduleResult::Scheduled;
73 }
74
75 bool const alreadyDispatchedForVsync = mLastDispatchTime &&
76 ((*mLastDispatchTime + mMinVsyncDistance) >= nextVsyncTime &&
77 (*mLastDispatchTime - mMinVsyncDistance) <= nextVsyncTime);
78 if (alreadyDispatchedForVsync) {
79 nextVsyncTime =
80 tracker.nextAnticipatedVSyncTimeFrom(*mLastDispatchTime + mMinVsyncDistance);
81 }
82
83 auto const nextWakeupTime = nextVsyncTime - workDuration;
84 mWorkDuration = workDuration;
85 mEarliestVsync = earliestVsync;
86 mArmedInfo = {nextWakeupTime, nextVsyncTime};
87 return ScheduleResult::Scheduled;
88 }
89
addPendingWorkloadUpdate(nsecs_t workDuration,nsecs_t earliestVsync)90 void VSyncDispatchTimerQueueEntry::addPendingWorkloadUpdate(nsecs_t workDuration,
91 nsecs_t earliestVsync) {
92 mWorkloadUpdateInfo = {.earliestVsync = earliestVsync, .duration = workDuration};
93 }
94
hasPendingWorkloadUpdate() const95 bool VSyncDispatchTimerQueueEntry::hasPendingWorkloadUpdate() const {
96 return mWorkloadUpdateInfo.has_value();
97 }
98
update(VSyncTracker & tracker,nsecs_t now)99 void VSyncDispatchTimerQueueEntry::update(VSyncTracker& tracker, nsecs_t now) {
100 if (!mArmedInfo && !mWorkloadUpdateInfo) {
101 return;
102 }
103
104 if (mWorkloadUpdateInfo) {
105 mEarliestVsync = mWorkloadUpdateInfo->earliestVsync;
106 mWorkDuration = mWorkloadUpdateInfo->duration;
107 mWorkloadUpdateInfo.reset();
108 }
109
110 auto const nextVsyncTime =
111 tracker.nextAnticipatedVSyncTimeFrom(std::max(mEarliestVsync, now + mWorkDuration));
112 mArmedInfo = {nextVsyncTime - mWorkDuration, nextVsyncTime};
113 }
114
disarm()115 void VSyncDispatchTimerQueueEntry::disarm() {
116 mArmedInfo.reset();
117 }
118
executing()119 nsecs_t VSyncDispatchTimerQueueEntry::executing() {
120 mLastDispatchTime = mArmedInfo->mActualVsyncTime;
121 disarm();
122 return *mLastDispatchTime;
123 }
124
callback(nsecs_t vsyncTimestamp,nsecs_t wakeupTimestamp)125 void VSyncDispatchTimerQueueEntry::callback(nsecs_t vsyncTimestamp, nsecs_t wakeupTimestamp) {
126 {
127 std::lock_guard<std::mutex> lk(mRunningMutex);
128 mRunning = true;
129 }
130
131 mCallback(vsyncTimestamp, wakeupTimestamp);
132
133 std::lock_guard<std::mutex> lk(mRunningMutex);
134 mRunning = false;
135 mCv.notify_all();
136 }
137
ensureNotRunning()138 void VSyncDispatchTimerQueueEntry::ensureNotRunning() {
139 std::unique_lock<std::mutex> lk(mRunningMutex);
140 mCv.wait(lk, [this]() REQUIRES(mRunningMutex) { return !mRunning; });
141 }
142
dump(std::string & result) const143 void VSyncDispatchTimerQueueEntry::dump(std::string& result) const {
144 std::lock_guard<std::mutex> lk(mRunningMutex);
145 std::string armedInfo;
146 if (mArmedInfo) {
147 StringAppendF(&armedInfo, "[wake up in %.2fms for vsync %.2fms from now]",
148 (mArmedInfo->mActualWakeupTime - systemTime()) / 1e6f,
149 (mArmedInfo->mActualVsyncTime - systemTime()) / 1e6f);
150 }
151
152 StringAppendF(&result, "\t\t%s: %s %s\n", mName.c_str(),
153 mRunning ? "(in callback function)" : "", armedInfo.c_str());
154 StringAppendF(&result, "\t\t\tmWorkDuration: %.2fms mEarliestVsync: %.2fms relative to now\n",
155 mWorkDuration / 1e6f, (mEarliestVsync - systemTime()) / 1e6f);
156
157 if (mLastDispatchTime) {
158 StringAppendF(&result, "\t\t\tmLastDispatchTime: %.2fms ago\n",
159 (systemTime() - *mLastDispatchTime) / 1e6f);
160 } else {
161 StringAppendF(&result, "\t\t\tmLastDispatchTime unknown\n");
162 }
163 }
164
VSyncDispatchTimerQueue(std::unique_ptr<TimeKeeper> tk,VSyncTracker & tracker,nsecs_t timerSlack,nsecs_t minVsyncDistance)165 VSyncDispatchTimerQueue::VSyncDispatchTimerQueue(std::unique_ptr<TimeKeeper> tk,
166 VSyncTracker& tracker, nsecs_t timerSlack,
167 nsecs_t minVsyncDistance)
168 : mTimeKeeper(std::move(tk)),
169 mTracker(tracker),
170 mTimerSlack(timerSlack),
171 mMinVsyncDistance(minVsyncDistance) {}
172
~VSyncDispatchTimerQueue()173 VSyncDispatchTimerQueue::~VSyncDispatchTimerQueue() {
174 std::lock_guard<decltype(mMutex)> lk(mMutex);
175 cancelTimer();
176 }
177
cancelTimer()178 void VSyncDispatchTimerQueue::cancelTimer() {
179 mIntendedWakeupTime = kInvalidTime;
180 mTimeKeeper->alarmCancel();
181 }
182
setTimer(nsecs_t targetTime,nsecs_t now)183 void VSyncDispatchTimerQueue::setTimer(nsecs_t targetTime, nsecs_t now) {
184 mIntendedWakeupTime = targetTime;
185 mTimeKeeper->alarmIn(std::bind(&VSyncDispatchTimerQueue::timerCallback, this),
186 targetTime - now);
187 mLastTimerSchedule = mTimeKeeper->now();
188 }
189
rearmTimer(nsecs_t now)190 void VSyncDispatchTimerQueue::rearmTimer(nsecs_t now) {
191 rearmTimerSkippingUpdateFor(now, mCallbacks.end());
192 }
193
note(std::string_view name,nsecs_t alarmIn,nsecs_t vsFor)194 void VSyncDispatchTimerQueue::TraceBuffer::note(std::string_view name, nsecs_t alarmIn,
195 nsecs_t vsFor) {
196 if (ATRACE_ENABLED()) {
197 snprintf(str_buffer.data(), str_buffer.size(), "%.4s%s%" PRId64 "%s%" PRId64,
198 name.substr(0, kMaxNamePrint).data(), kTraceNamePrefix, alarmIn,
199 kTraceNameSeparator, vsFor);
200 }
201 ATRACE_NAME(str_buffer.data());
202 }
203
rearmTimerSkippingUpdateFor(nsecs_t now,CallbackMap::iterator const & skipUpdateIt)204 void VSyncDispatchTimerQueue::rearmTimerSkippingUpdateFor(
205 nsecs_t now, CallbackMap::iterator const& skipUpdateIt) {
206 std::optional<nsecs_t> min;
207 std::optional<nsecs_t> targetVsync;
208 std::optional<std::string_view> nextWakeupName;
209 for (auto it = mCallbacks.begin(); it != mCallbacks.end(); it++) {
210 auto& callback = it->second;
211 if (!callback->wakeupTime() && !callback->hasPendingWorkloadUpdate()) {
212 continue;
213 }
214
215 if (it != skipUpdateIt) {
216 callback->update(mTracker, now);
217 }
218 auto const wakeupTime = *callback->wakeupTime();
219 if (!min || (min && *min > wakeupTime)) {
220 nextWakeupName = callback->name();
221 min = wakeupTime;
222 targetVsync = callback->targetVsync();
223 }
224 }
225
226 if (min && (min < mIntendedWakeupTime)) {
227 if (targetVsync && nextWakeupName) {
228 mTraceBuffer.note(*nextWakeupName, *min - now, *targetVsync - now);
229 }
230 setTimer(*min, now);
231 } else {
232 ATRACE_NAME("cancel timer");
233 cancelTimer();
234 }
235 }
236
timerCallback()237 void VSyncDispatchTimerQueue::timerCallback() {
238 struct Invocation {
239 std::shared_ptr<VSyncDispatchTimerQueueEntry> callback;
240 nsecs_t vsyncTimestamp;
241 nsecs_t wakeupTimestamp;
242 };
243 std::vector<Invocation> invocations;
244 {
245 std::lock_guard<decltype(mMutex)> lk(mMutex);
246 mLastTimerCallback = mTimeKeeper->now();
247 for (auto it = mCallbacks.begin(); it != mCallbacks.end(); it++) {
248 auto& callback = it->second;
249 auto const wakeupTime = callback->wakeupTime();
250 if (!wakeupTime) {
251 continue;
252 }
253
254 if (*wakeupTime < mIntendedWakeupTime + mTimerSlack) {
255 callback->executing();
256 invocations.emplace_back(
257 Invocation{callback, *callback->lastExecutedVsyncTarget(), *wakeupTime});
258 }
259 }
260
261 mIntendedWakeupTime = kInvalidTime;
262 rearmTimer(mTimeKeeper->now());
263 }
264
265 for (auto const& invocation : invocations) {
266 invocation.callback->callback(invocation.vsyncTimestamp, invocation.wakeupTimestamp);
267 }
268 }
269
registerCallback(Callback const & callbackFn,std::string callbackName)270 VSyncDispatchTimerQueue::CallbackToken VSyncDispatchTimerQueue::registerCallback(
271 Callback const& callbackFn, std::string callbackName) {
272 std::lock_guard<decltype(mMutex)> lk(mMutex);
273 return CallbackToken{
274 mCallbacks
275 .emplace(++mCallbackToken,
276 std::make_shared<VSyncDispatchTimerQueueEntry>(callbackName,
277 callbackFn,
278 mMinVsyncDistance))
279 .first->first};
280 }
281
unregisterCallback(CallbackToken token)282 void VSyncDispatchTimerQueue::unregisterCallback(CallbackToken token) {
283 std::shared_ptr<VSyncDispatchTimerQueueEntry> entry = nullptr;
284 {
285 std::lock_guard<decltype(mMutex)> lk(mMutex);
286 auto it = mCallbacks.find(token);
287 if (it != mCallbacks.end()) {
288 entry = it->second;
289 mCallbacks.erase(it);
290 }
291 }
292
293 if (entry) {
294 entry->ensureNotRunning();
295 }
296 }
297
schedule(CallbackToken token,nsecs_t workDuration,nsecs_t earliestVsync)298 ScheduleResult VSyncDispatchTimerQueue::schedule(CallbackToken token, nsecs_t workDuration,
299 nsecs_t earliestVsync) {
300 auto result = ScheduleResult::Error;
301 {
302 std::lock_guard<decltype(mMutex)> lk(mMutex);
303
304 auto it = mCallbacks.find(token);
305 if (it == mCallbacks.end()) {
306 return result;
307 }
308 auto& callback = it->second;
309 auto const now = mTimeKeeper->now();
310
311 /* If the timer thread will run soon, we'll apply this work update via the callback
312 * timer recalculation to avoid cancelling a callback that is about to fire. */
313 auto const rearmImminent = now > mIntendedWakeupTime;
314 if (CC_UNLIKELY(rearmImminent)) {
315 callback->addPendingWorkloadUpdate(workDuration, earliestVsync);
316 return ScheduleResult::Scheduled;
317 }
318
319 result = callback->schedule(workDuration, earliestVsync, mTracker, now);
320 if (result == ScheduleResult::CannotSchedule) {
321 return result;
322 }
323
324 if (callback->wakeupTime() < mIntendedWakeupTime - mTimerSlack) {
325 rearmTimerSkippingUpdateFor(now, it);
326 }
327 }
328
329 return result;
330 }
331
cancel(CallbackToken token)332 CancelResult VSyncDispatchTimerQueue::cancel(CallbackToken token) {
333 std::lock_guard<decltype(mMutex)> lk(mMutex);
334
335 auto it = mCallbacks.find(token);
336 if (it == mCallbacks.end()) {
337 return CancelResult::Error;
338 }
339 auto& callback = it->second;
340
341 auto const wakeupTime = callback->wakeupTime();
342 if (wakeupTime) {
343 callback->disarm();
344
345 if (*wakeupTime == mIntendedWakeupTime) {
346 mIntendedWakeupTime = kInvalidTime;
347 rearmTimer(mTimeKeeper->now());
348 }
349 return CancelResult::Cancelled;
350 }
351 return CancelResult::TooLate;
352 }
353
dump(std::string & result) const354 void VSyncDispatchTimerQueue::dump(std::string& result) const {
355 std::lock_guard<decltype(mMutex)> lk(mMutex);
356 StringAppendF(&result, "\tTimer:\n");
357 mTimeKeeper->dump(result);
358 StringAppendF(&result, "\tmTimerSlack: %.2fms mMinVsyncDistance: %.2fms\n", mTimerSlack / 1e6f,
359 mMinVsyncDistance / 1e6f);
360 StringAppendF(&result, "\tmIntendedWakeupTime: %.2fms from now\n",
361 (mIntendedWakeupTime - mTimeKeeper->now()) / 1e6f);
362 StringAppendF(&result, "\tmLastTimerCallback: %.2fms ago mLastTimerSchedule: %.2fms ago\n",
363 (mTimeKeeper->now() - mLastTimerCallback) / 1e6f,
364 (mTimeKeeper->now() - mLastTimerSchedule) / 1e6f);
365 StringAppendF(&result, "\tCallbacks:\n");
366 for (const auto& [token, entry] : mCallbacks) {
367 entry->dump(result);
368 }
369 }
370
VSyncCallbackRegistration(VSyncDispatch & dispatch,VSyncDispatch::Callback const & callbackFn,std::string const & callbackName)371 VSyncCallbackRegistration::VSyncCallbackRegistration(VSyncDispatch& dispatch,
372 VSyncDispatch::Callback const& callbackFn,
373 std::string const& callbackName)
374 : mDispatch(dispatch),
375 mToken(dispatch.registerCallback(callbackFn, callbackName)),
376 mValidToken(true) {}
377
VSyncCallbackRegistration(VSyncCallbackRegistration && other)378 VSyncCallbackRegistration::VSyncCallbackRegistration(VSyncCallbackRegistration&& other)
379 : mDispatch(other.mDispatch),
380 mToken(std::move(other.mToken)),
381 mValidToken(std::move(other.mValidToken)) {
382 other.mValidToken = false;
383 }
384
operator =(VSyncCallbackRegistration && other)385 VSyncCallbackRegistration& VSyncCallbackRegistration::operator=(VSyncCallbackRegistration&& other) {
386 mDispatch = std::move(other.mDispatch);
387 mToken = std::move(other.mToken);
388 mValidToken = std::move(other.mValidToken);
389 other.mValidToken = false;
390 return *this;
391 }
392
~VSyncCallbackRegistration()393 VSyncCallbackRegistration::~VSyncCallbackRegistration() {
394 if (mValidToken) mDispatch.get().unregisterCallback(mToken);
395 }
396
schedule(nsecs_t workDuration,nsecs_t earliestVsync)397 ScheduleResult VSyncCallbackRegistration::schedule(nsecs_t workDuration, nsecs_t earliestVsync) {
398 if (!mValidToken) {
399 return ScheduleResult::Error;
400 }
401 return mDispatch.get().schedule(mToken, workDuration, earliestVsync);
402 }
403
cancel()404 CancelResult VSyncCallbackRegistration::cancel() {
405 if (!mValidToken) {
406 return CancelResult::Error;
407 }
408 return mDispatch.get().cancel(mToken);
409 }
410
411 } // namespace android::scheduler
412