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Jamie Gennisfaf77cc2013-07-30 15:10:32 -07001/*
2 * Copyright (C) 2013 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
Tim Murray4a4e4a22016-04-19 16:29:23 +000018//#define LOG_NDEBUG 0
Jamie Gennisfaf77cc2013-07-30 15:10:32 -070019
20// This is needed for stdint.h to define INT64_MAX in C++
21#define __STDC_LIMIT_MACROS
22
23#include <math.h>
24
Mark Salyzyna5e161b2016-09-29 08:08:05 -070025#include <algorithm>
Jamie Gennisfaf77cc2013-07-30 15:10:32 -070026
Yiwei Zhang5434a782018-12-05 18:06:32 -080027#include <android-base/stringprintf.h>
David Sodman1afa8b02018-10-15 11:20:48 -070028#include <cutils/properties.h>
Yiwei Zhang5434a782018-12-05 18:06:32 -080029#include <log/log.h>
Jamie Gennisfaf77cc2013-07-30 15:10:32 -070030#include <utils/Thread.h>
31#include <utils/Trace.h>
Jamie Gennisfaf77cc2013-07-30 15:10:32 -070032
Brian Andersonfbc80ae2017-05-26 16:23:54 -070033#include <ui/FenceTime.h>
Mark Salyzyna5e161b2016-09-29 08:08:05 -070034
Jamie Gennisfaf77cc2013-07-30 15:10:32 -070035#include "DispSync.h"
36#include "EventLog/EventLog.h"
Lloyd Pique78ce4182018-01-31 16:39:51 -080037#include "SurfaceFlinger.h"
Jamie Gennisfaf77cc2013-07-30 15:10:32 -070038
Yiwei Zhang5434a782018-12-05 18:06:32 -080039using android::base::StringAppendF;
Tim Murray4a4e4a22016-04-19 16:29:23 +000040using std::max;
41using std::min;
42
Jamie Gennisfaf77cc2013-07-30 15:10:32 -070043namespace android {
44
Lloyd Pique41be5d22018-06-21 13:11:48 -070045DispSync::~DispSync() = default;
Kevin DuBois7b743be2019-02-27 10:05:48 -080046DispSync::Callback::~Callback() = default;
Lloyd Pique41be5d22018-06-21 13:11:48 -070047
48namespace impl {
49
Tim Murray4a4e4a22016-04-19 16:29:23 +000050// Setting this to true adds a zero-phase tracer for correlating with hardware
51// vsync events
52static const bool kEnableZeroPhaseTracer = false;
53
Jamie Gennisfaf77cc2013-07-30 15:10:32 -070054// This is the threshold used to determine when hardware vsync events are
55// needed to re-synchronize the software vsync model with the hardware. The
56// error metric used is the mean of the squared difference between each
57// present time and the nearest software-predicted vsync.
Lloyd Pique78ce4182018-01-31 16:39:51 -080058static const nsecs_t kErrorThreshold = 160000000000; // 400 usec squared
Jamie Gennisfaf77cc2013-07-30 15:10:32 -070059
Tim Murray4a4e4a22016-04-19 16:29:23 +000060#undef LOG_TAG
61#define LOG_TAG "DispSyncThread"
Lloyd Pique78ce4182018-01-31 16:39:51 -080062class DispSyncThread : public Thread {
Jamie Gennisfaf77cc2013-07-30 15:10:32 -070063public:
Ana Krulec064a82f2018-09-11 16:03:03 -070064 DispSyncThread(const char* name, bool showTraceDetailedInfo)
Lloyd Pique78ce4182018-01-31 16:39:51 -080065 : mName(name),
Jamie Gennisfaf77cc2013-07-30 15:10:32 -070066 mStop(false),
67 mPeriod(0),
68 mPhase(0),
Haixia Shi676b1f62015-10-28 16:19:01 -070069 mReferenceTime(0),
Tim Murray4a4e4a22016-04-19 16:29:23 +000070 mWakeupLatency(0),
Ana Krulec064a82f2018-09-11 16:03:03 -070071 mFrameNumber(0),
72 mTraceDetailedInfo(showTraceDetailedInfo) {}
Jamie Gennisfaf77cc2013-07-30 15:10:32 -070073
74 virtual ~DispSyncThread() {}
75
Haixia Shi676b1f62015-10-28 16:19:01 -070076 void updateModel(nsecs_t period, nsecs_t phase, nsecs_t referenceTime) {
Ana Krulec064a82f2018-09-11 16:03:03 -070077 if (mTraceDetailedInfo) ATRACE_CALL();
Jamie Gennisfaf77cc2013-07-30 15:10:32 -070078 Mutex::Autolock lock(mMutex);
Alec Mouri75b0b622019-03-12 18:56:00 +000079
Jamie Gennisfaf77cc2013-07-30 15:10:32 -070080 mPhase = phase;
Haixia Shi676b1f62015-10-28 16:19:01 -070081 mReferenceTime = referenceTime;
Alec Mouri75b0b622019-03-12 18:56:00 +000082 if (mPeriod != 0 && mPeriod != period && mReferenceTime != 0) {
83 // Inflate the reference time to be the most recent predicted
84 // vsync before the current time.
85 const nsecs_t now = systemTime(SYSTEM_TIME_MONOTONIC);
86 const nsecs_t baseTime = now - mReferenceTime;
87 const nsecs_t numOldPeriods = baseTime / mPeriod;
88 mReferenceTime = mReferenceTime + (numOldPeriods)*mPeriod;
89 }
90 mPeriod = period;
Alec Mourif5fe85c2019-02-22 13:40:36 -080091 if (mTraceDetailedInfo) {
92 ATRACE_INT64("DispSync:Period", mPeriod);
93 ATRACE_INT64("DispSync:Phase", mPhase + mPeriod / 2);
94 ATRACE_INT64("DispSync:Reference Time", mReferenceTime);
95 }
Tim Murray4a4e4a22016-04-19 16:29:23 +000096 ALOGV("[%s] updateModel: mPeriod = %" PRId64 ", mPhase = %" PRId64
Lloyd Pique78ce4182018-01-31 16:39:51 -080097 " mReferenceTime = %" PRId64,
98 mName, ns2us(mPeriod), ns2us(mPhase), ns2us(mReferenceTime));
Jamie Gennisfaf77cc2013-07-30 15:10:32 -070099 mCond.signal();
100 }
101
102 void stop() {
Ana Krulec064a82f2018-09-11 16:03:03 -0700103 if (mTraceDetailedInfo) ATRACE_CALL();
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700104 Mutex::Autolock lock(mMutex);
105 mStop = true;
106 mCond.signal();
107 }
108
109 virtual bool threadLoop() {
110 status_t err;
111 nsecs_t now = systemTime(SYSTEM_TIME_MONOTONIC);
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700112
113 while (true) {
Ana Krulec9a52b192018-07-12 18:18:47 -0400114 std::vector<CallbackInvocation> callbackInvocations;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700115
116 nsecs_t targetTime = 0;
117
118 { // Scope for lock
119 Mutex::Autolock lock(mMutex);
120
Ana Krulec064a82f2018-09-11 16:03:03 -0700121 if (mTraceDetailedInfo) {
Tim Murray4a4e4a22016-04-19 16:29:23 +0000122 ATRACE_INT64("DispSync:Frame", mFrameNumber);
123 }
124 ALOGV("[%s] Frame %" PRId64, mName, mFrameNumber);
125 ++mFrameNumber;
126
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700127 if (mStop) {
128 return false;
129 }
130
131 if (mPeriod == 0) {
132 err = mCond.wait(mMutex);
133 if (err != NO_ERROR) {
Lloyd Pique78ce4182018-01-31 16:39:51 -0800134 ALOGE("error waiting for new events: %s (%d)", strerror(-err), err);
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700135 return false;
136 }
137 continue;
138 }
139
Dan Stoza8f8374d2016-04-19 10:03:46 -0700140 targetTime = computeNextEventTimeLocked(now);
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700141
142 bool isWakeup = false;
143
144 if (now < targetTime) {
Ana Krulec064a82f2018-09-11 16:03:03 -0700145 if (mTraceDetailedInfo) ATRACE_NAME("DispSync waiting");
Dan Stoza8f8374d2016-04-19 10:03:46 -0700146
147 if (targetTime == INT64_MAX) {
148 ALOGV("[%s] Waiting forever", mName);
149 err = mCond.wait(mMutex);
150 } else {
Lloyd Pique78ce4182018-01-31 16:39:51 -0800151 ALOGV("[%s] Waiting until %" PRId64, mName, ns2us(targetTime));
Dan Stoza8f8374d2016-04-19 10:03:46 -0700152 err = mCond.waitRelative(mMutex, targetTime - now);
153 }
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700154
155 if (err == TIMED_OUT) {
156 isWakeup = true;
157 } else if (err != NO_ERROR) {
Lloyd Pique78ce4182018-01-31 16:39:51 -0800158 ALOGE("error waiting for next event: %s (%d)", strerror(-err), err);
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700159 return false;
160 }
161 }
162
163 now = systemTime(SYSTEM_TIME_MONOTONIC);
164
Tim Murray4a4e4a22016-04-19 16:29:23 +0000165 // Don't correct by more than 1.5 ms
166 static const nsecs_t kMaxWakeupLatency = us2ns(1500);
167
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700168 if (isWakeup) {
Lloyd Pique78ce4182018-01-31 16:39:51 -0800169 mWakeupLatency = ((mWakeupLatency * 63) + (now - targetTime)) / 64;
Tim Murray4a4e4a22016-04-19 16:29:23 +0000170 mWakeupLatency = min(mWakeupLatency, kMaxWakeupLatency);
Ana Krulec064a82f2018-09-11 16:03:03 -0700171 if (mTraceDetailedInfo) {
Tim Murray4a4e4a22016-04-19 16:29:23 +0000172 ATRACE_INT64("DispSync:WakeupLat", now - targetTime);
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700173 ATRACE_INT64("DispSync:AvgWakeupLat", mWakeupLatency);
174 }
175 }
176
177 callbackInvocations = gatherCallbackInvocationsLocked(now);
178 }
179
180 if (callbackInvocations.size() > 0) {
Andy McFadden645b1f72014-06-10 14:43:32 -0700181 fireCallbackInvocations(callbackInvocations);
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700182 }
183 }
184
185 return false;
186 }
187
Alec Mouri7355eb22019-03-05 14:19:10 -0800188 status_t addEventListener(const char* name, nsecs_t phase, DispSync::Callback* callback,
189 nsecs_t lastCallbackTime) {
Ana Krulec064a82f2018-09-11 16:03:03 -0700190 if (mTraceDetailedInfo) ATRACE_CALL();
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700191 Mutex::Autolock lock(mMutex);
192
193 for (size_t i = 0; i < mEventListeners.size(); i++) {
194 if (mEventListeners[i].mCallback == callback) {
195 return BAD_VALUE;
196 }
197 }
198
199 EventListener listener;
Tim Murray4a4e4a22016-04-19 16:29:23 +0000200 listener.mName = name;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700201 listener.mPhase = phase;
202 listener.mCallback = callback;
Jamie Gennis629b9872013-10-29 13:36:12 -0700203
204 // We want to allow the firstmost future event to fire without
Alec Mouri81835982019-02-27 13:40:44 -0800205 // allowing any past events to fire. To do this extrapolate from
206 // mReferenceTime the most recent hardware vsync, and pin the
207 // last event time there.
208 const nsecs_t now = systemTime(SYSTEM_TIME_MONOTONIC);
209 if (mPeriod != 0) {
210 const nsecs_t baseTime = now - mReferenceTime;
211 const nsecs_t numPeriodsSinceReference = baseTime / mPeriod;
212 const nsecs_t predictedReference = mReferenceTime + numPeriodsSinceReference * mPeriod;
213 const nsecs_t phaseCorrection = mPhase + listener.mPhase;
214 const nsecs_t predictedLastEventTime = predictedReference + phaseCorrection;
Alec Mouri7355eb22019-03-05 14:19:10 -0800215 if (predictedLastEventTime >= now) {
Alec Mouri81835982019-02-27 13:40:44 -0800216 // Make sure that the last event time does not exceed the current time.
217 // If it would, then back the last event time by a period.
218 listener.mLastEventTime = predictedLastEventTime - mPeriod;
219 } else {
220 listener.mLastEventTime = predictedLastEventTime;
221 }
222 } else {
223 listener.mLastEventTime = now + mPhase - mWakeupLatency;
224 }
Jamie Gennis629b9872013-10-29 13:36:12 -0700225
Alec Mouri7355eb22019-03-05 14:19:10 -0800226 if (lastCallbackTime <= 0) {
227 // If there is no prior callback time, try to infer one based on the
228 // logical last event time.
229 listener.mLastCallbackTime = listener.mLastEventTime + mWakeupLatency;
230 } else {
231 listener.mLastCallbackTime = lastCallbackTime;
232 }
233
Ana Krulec9a52b192018-07-12 18:18:47 -0400234 mEventListeners.push_back(listener);
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700235
236 mCond.signal();
237
238 return NO_ERROR;
239 }
240
Alec Mouri7355eb22019-03-05 14:19:10 -0800241 status_t removeEventListener(DispSync::Callback* callback, nsecs_t* outLastCallback) {
Ana Krulec064a82f2018-09-11 16:03:03 -0700242 if (mTraceDetailedInfo) ATRACE_CALL();
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700243 Mutex::Autolock lock(mMutex);
244
Ana Krulec9a52b192018-07-12 18:18:47 -0400245 for (std::vector<EventListener>::iterator it = mEventListeners.begin();
246 it != mEventListeners.end(); ++it) {
247 if (it->mCallback == callback) {
Alec Mouri7355eb22019-03-05 14:19:10 -0800248 *outLastCallback = it->mLastCallbackTime;
Ana Krulec9a52b192018-07-12 18:18:47 -0400249 mEventListeners.erase(it);
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700250 mCond.signal();
251 return NO_ERROR;
252 }
253 }
254
255 return BAD_VALUE;
256 }
257
Dan Stoza84d619e2018-03-28 17:07:36 -0700258 status_t changePhaseOffset(DispSync::Callback* callback, nsecs_t phase) {
Ana Krulec064a82f2018-09-11 16:03:03 -0700259 if (mTraceDetailedInfo) ATRACE_CALL();
Dan Stoza84d619e2018-03-28 17:07:36 -0700260 Mutex::Autolock lock(mMutex);
261
Ana Krulec9a52b192018-07-12 18:18:47 -0400262 for (auto& eventListener : mEventListeners) {
263 if (eventListener.mCallback == callback) {
264 const nsecs_t oldPhase = eventListener.mPhase;
265 eventListener.mPhase = phase;
Dan Stoza84d619e2018-03-28 17:07:36 -0700266
267 // Pretend that the last time this event was handled at the same frame but with the
268 // new offset to allow for a seamless offset change without double-firing or
269 // skipping.
Jorim Jaggi22ec38b2018-06-19 15:57:08 +0200270 nsecs_t diff = oldPhase - phase;
271 if (diff > mPeriod / 2) {
272 diff -= mPeriod;
273 } else if (diff < -mPeriod / 2) {
274 diff += mPeriod;
275 }
Ana Krulec9a52b192018-07-12 18:18:47 -0400276 eventListener.mLastEventTime -= diff;
Dan Stoza84d619e2018-03-28 17:07:36 -0700277 mCond.signal();
278 return NO_ERROR;
279 }
280 }
281
282 return BAD_VALUE;
283 }
284
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700285private:
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700286 struct EventListener {
Tim Murray4a4e4a22016-04-19 16:29:23 +0000287 const char* mName;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700288 nsecs_t mPhase;
289 nsecs_t mLastEventTime;
Alec Mouri7355eb22019-03-05 14:19:10 -0800290 nsecs_t mLastCallbackTime;
Lloyd Piquee83f9312018-02-01 12:53:17 -0800291 DispSync::Callback* mCallback;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700292 };
293
294 struct CallbackInvocation {
Lloyd Piquee83f9312018-02-01 12:53:17 -0800295 DispSync::Callback* mCallback;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700296 nsecs_t mEventTime;
297 };
298
299 nsecs_t computeNextEventTimeLocked(nsecs_t now) {
Ana Krulec064a82f2018-09-11 16:03:03 -0700300 if (mTraceDetailedInfo) ATRACE_CALL();
Tim Murray4a4e4a22016-04-19 16:29:23 +0000301 ALOGV("[%s] computeNextEventTimeLocked", mName);
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700302 nsecs_t nextEventTime = INT64_MAX;
303 for (size_t i = 0; i < mEventListeners.size(); i++) {
Lloyd Pique78ce4182018-01-31 16:39:51 -0800304 nsecs_t t = computeListenerNextEventTimeLocked(mEventListeners[i], now);
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700305
306 if (t < nextEventTime) {
307 nextEventTime = t;
308 }
309 }
310
Tim Murray4a4e4a22016-04-19 16:29:23 +0000311 ALOGV("[%s] nextEventTime = %" PRId64, mName, ns2us(nextEventTime));
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700312 return nextEventTime;
313 }
314
Alec Mouri7355eb22019-03-05 14:19:10 -0800315 // Sanity check that the duration is close enough in length to a period without
316 // falling into double-rate vsyncs.
317 bool isCloseToPeriod(nsecs_t duration) {
318 // Ratio of 3/5 is arbitrary, but it must be greater than 1/2.
319 return duration < (3 * mPeriod) / 5;
320 }
321
Ana Krulec9a52b192018-07-12 18:18:47 -0400322 std::vector<CallbackInvocation> gatherCallbackInvocationsLocked(nsecs_t now) {
Ana Krulec064a82f2018-09-11 16:03:03 -0700323 if (mTraceDetailedInfo) ATRACE_CALL();
Lloyd Pique78ce4182018-01-31 16:39:51 -0800324 ALOGV("[%s] gatherCallbackInvocationsLocked @ %" PRId64, mName, ns2us(now));
Tim Murray4a4e4a22016-04-19 16:29:23 +0000325
Ana Krulec9a52b192018-07-12 18:18:47 -0400326 std::vector<CallbackInvocation> callbackInvocations;
Tim Murray4a4e4a22016-04-19 16:29:23 +0000327 nsecs_t onePeriodAgo = now - mPeriod;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700328
Ana Krulec9a52b192018-07-12 18:18:47 -0400329 for (auto& eventListener : mEventListeners) {
330 nsecs_t t = computeListenerNextEventTimeLocked(eventListener, onePeriodAgo);
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700331
Jamie Gennis0d5c60e2013-10-09 17:49:37 -0700332 if (t < now) {
Alec Mouri7355eb22019-03-05 14:19:10 -0800333 if (isCloseToPeriod(now - eventListener.mLastCallbackTime)) {
334 eventListener.mLastEventTime = t;
335 eventListener.mLastCallbackTime = now;
336 ALOGV("[%s] [%s] Skipping event due to model error", mName,
337 eventListener.mName);
338 continue;
339 }
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700340 CallbackInvocation ci;
Ana Krulec9a52b192018-07-12 18:18:47 -0400341 ci.mCallback = eventListener.mCallback;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700342 ci.mEventTime = t;
Alec Mouri7355eb22019-03-05 14:19:10 -0800343 ALOGV("[%s] [%s] Preparing to fire, latency: %" PRId64, mName, eventListener.mName,
344 t - eventListener.mLastEventTime);
Ana Krulec9a52b192018-07-12 18:18:47 -0400345 callbackInvocations.push_back(ci);
346 eventListener.mLastEventTime = t;
Alec Mouri7355eb22019-03-05 14:19:10 -0800347 eventListener.mLastCallbackTime = now;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700348 }
349 }
350
351 return callbackInvocations;
352 }
353
Lloyd Pique78ce4182018-01-31 16:39:51 -0800354 nsecs_t computeListenerNextEventTimeLocked(const EventListener& listener, nsecs_t baseTime) {
Ana Krulec064a82f2018-09-11 16:03:03 -0700355 if (mTraceDetailedInfo) ATRACE_CALL();
Lloyd Pique78ce4182018-01-31 16:39:51 -0800356 ALOGV("[%s] [%s] computeListenerNextEventTimeLocked(%" PRId64 ")", mName, listener.mName,
357 ns2us(baseTime));
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700358
Tim Murray4a4e4a22016-04-19 16:29:23 +0000359 nsecs_t lastEventTime = listener.mLastEventTime + mWakeupLatency;
360 ALOGV("[%s] lastEventTime: %" PRId64, mName, ns2us(lastEventTime));
361 if (baseTime < lastEventTime) {
362 baseTime = lastEventTime;
Lloyd Pique78ce4182018-01-31 16:39:51 -0800363 ALOGV("[%s] Clamping baseTime to lastEventTime -> %" PRId64, mName, ns2us(baseTime));
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700364 }
365
Tim Murray4a4e4a22016-04-19 16:29:23 +0000366 baseTime -= mReferenceTime;
367 ALOGV("[%s] Relative baseTime = %" PRId64, mName, ns2us(baseTime));
368 nsecs_t phase = mPhase + listener.mPhase;
369 ALOGV("[%s] Phase = %" PRId64, mName, ns2us(phase));
370 baseTime -= phase;
371 ALOGV("[%s] baseTime - phase = %" PRId64, mName, ns2us(baseTime));
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700372
Tim Murray4a4e4a22016-04-19 16:29:23 +0000373 // If our previous time is before the reference (because the reference
374 // has since been updated), the division by mPeriod will truncate
375 // towards zero instead of computing the floor. Since in all cases
376 // before the reference we want the next time to be effectively now, we
377 // set baseTime to -mPeriod so that numPeriods will be -1.
378 // When we add 1 and the phase, we will be at the correct event time for
379 // this period.
380 if (baseTime < 0) {
381 ALOGV("[%s] Correcting negative baseTime", mName);
382 baseTime = -mPeriod;
383 }
384
385 nsecs_t numPeriods = baseTime / mPeriod;
386 ALOGV("[%s] numPeriods = %" PRId64, mName, numPeriods);
387 nsecs_t t = (numPeriods + 1) * mPeriod + phase;
388 ALOGV("[%s] t = %" PRId64, mName, ns2us(t));
389 t += mReferenceTime;
390 ALOGV("[%s] Absolute t = %" PRId64, mName, ns2us(t));
391
392 // Check that it's been slightly more than half a period since the last
393 // event so that we don't accidentally fall into double-rate vsyncs
Alec Mouri7355eb22019-03-05 14:19:10 -0800394 if (isCloseToPeriod(t - listener.mLastEventTime)) {
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700395 t += mPeriod;
Tim Murray4a4e4a22016-04-19 16:29:23 +0000396 ALOGV("[%s] Modifying t -> %" PRId64, mName, ns2us(t));
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700397 }
398
Tim Murray4a4e4a22016-04-19 16:29:23 +0000399 t -= mWakeupLatency;
400 ALOGV("[%s] Corrected for wakeup latency -> %" PRId64, mName, ns2us(t));
401
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700402 return t;
403 }
404
Ana Krulec9a52b192018-07-12 18:18:47 -0400405 void fireCallbackInvocations(const std::vector<CallbackInvocation>& callbacks) {
Ana Krulec064a82f2018-09-11 16:03:03 -0700406 if (mTraceDetailedInfo) ATRACE_CALL();
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700407 for (size_t i = 0; i < callbacks.size(); i++) {
408 callbacks[i].mCallback->onDispSyncEvent(callbacks[i].mEventTime);
409 }
410 }
411
Tim Murray4a4e4a22016-04-19 16:29:23 +0000412 const char* const mName;
413
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700414 bool mStop;
415
416 nsecs_t mPeriod;
417 nsecs_t mPhase;
Haixia Shi676b1f62015-10-28 16:19:01 -0700418 nsecs_t mReferenceTime;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700419 nsecs_t mWakeupLatency;
420
Tim Murray4a4e4a22016-04-19 16:29:23 +0000421 int64_t mFrameNumber;
422
Ana Krulec9a52b192018-07-12 18:18:47 -0400423 std::vector<EventListener> mEventListeners;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700424
425 Mutex mMutex;
426 Condition mCond;
Ana Krulec064a82f2018-09-11 16:03:03 -0700427
428 // Flag to turn on logging in systrace.
429 const bool mTraceDetailedInfo;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700430};
431
Tim Murray4a4e4a22016-04-19 16:29:23 +0000432#undef LOG_TAG
433#define LOG_TAG "DispSync"
434
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700435class ZeroPhaseTracer : public DispSync::Callback {
436public:
437 ZeroPhaseTracer() : mParity(false) {}
438
Mark Salyzyn92dc3fc2014-03-12 13:12:44 -0700439 virtual void onDispSyncEvent(nsecs_t /*when*/) {
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700440 mParity = !mParity;
441 ATRACE_INT("ZERO_PHASE_VSYNC", mParity ? 1 : 0);
442 }
443
444private:
445 bool mParity;
446};
447
Ana Krulec064a82f2018-09-11 16:03:03 -0700448DispSync::DispSync(const char* name) : mName(name), mRefreshSkipCount(0) {
449 // This flag offers the ability to turn on systrace logging from the shell.
450 char value[PROPERTY_VALUE_MAX];
451 property_get("debug.sf.dispsync_trace_detailed_info", value, "0");
452 mTraceDetailedInfo = atoi(value);
453 mThread = new DispSyncThread(name, mTraceDetailedInfo);
454}
Andy McFadden645b1f72014-06-10 14:43:32 -0700455
Saurabh Shahf4174532017-07-13 10:45:07 -0700456DispSync::~DispSync() {}
457
458void DispSync::init(bool hasSyncFramework, int64_t dispSyncPresentTimeOffset) {
459 mIgnorePresentFences = !hasSyncFramework;
460 mPresentTimeOffset = dispSyncPresentTimeOffset;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700461 mThread->run("DispSync", PRIORITY_URGENT_DISPLAY + PRIORITY_MORE_FAVORABLE);
Saurabh Shahf4174532017-07-13 10:45:07 -0700462
Tim Murrayacff43d2016-07-29 13:57:24 -0700463 // set DispSync to SCHED_FIFO to minimize jitter
464 struct sched_param param = {0};
Tim Murray35520632016-09-07 12:18:17 -0700465 param.sched_priority = 2;
Tim Murrayacff43d2016-07-29 13:57:24 -0700466 if (sched_setscheduler(mThread->getTid(), SCHED_FIFO, &param) != 0) {
467 ALOGE("Couldn't set SCHED_FIFO for DispSyncThread");
468 }
469
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700470 reset();
471 beginResync();
472
Ana Krulec064a82f2018-09-11 16:03:03 -0700473 if (mTraceDetailedInfo && kEnableZeroPhaseTracer) {
Steven Thomasdfde8fa2018-04-19 16:00:58 -0700474 mZeroPhaseTracer = std::make_unique<ZeroPhaseTracer>();
Alec Mouri7355eb22019-03-05 14:19:10 -0800475 addEventListener("ZeroPhaseTracer", 0, mZeroPhaseTracer.get(), 0);
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700476 }
477}
478
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700479void DispSync::reset() {
480 Mutex::Autolock lock(mMutex);
Steven Thomasdfde8fa2018-04-19 16:00:58 -0700481 resetLocked();
482}
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700483
Steven Thomasdfde8fa2018-04-19 16:00:58 -0700484void DispSync::resetLocked() {
Haixia Shi676b1f62015-10-28 16:19:01 -0700485 mPhase = 0;
Alec Mouri75b0b622019-03-12 18:56:00 +0000486 const size_t lastSampleIdx = (mFirstResyncSample + mNumResyncSamples - 1) % MAX_RESYNC_SAMPLES;
487 // Keep the most recent sample, when we resync to hardware we'll overwrite this
488 // with a more accurate signal
489 if (mResyncSamples[lastSampleIdx] != 0) {
490 mReferenceTime = mResyncSamples[lastSampleIdx];
491 }
Haixia Shi676b1f62015-10-28 16:19:01 -0700492 mModelUpdated = false;
Alec Mouri75b0b622019-03-12 18:56:00 +0000493 for (size_t i = 0; i < MAX_RESYNC_SAMPLES; i++) {
494 mResyncSamples[i] = 0;
495 }
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700496 mNumResyncSamples = 0;
497 mFirstResyncSample = 0;
498 mNumResyncSamplesSincePresent = 0;
499 resetErrorLocked();
500}
501
Brian Andersonfbc80ae2017-05-26 16:23:54 -0700502bool DispSync::addPresentFence(const std::shared_ptr<FenceTime>& fenceTime) {
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700503 Mutex::Autolock lock(mMutex);
504
Steven Thomasdfde8fa2018-04-19 16:00:58 -0700505 if (mIgnorePresentFences) {
506 return true;
507 }
508
Brian Andersonfbc80ae2017-05-26 16:23:54 -0700509 mPresentFences[mPresentSampleOffset] = fenceTime;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700510 mPresentSampleOffset = (mPresentSampleOffset + 1) % NUM_PRESENT_SAMPLES;
511 mNumResyncSamplesSincePresent = 0;
512
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700513 updateErrorLocked();
514
Haixia Shi676b1f62015-10-28 16:19:01 -0700515 return !mModelUpdated || mError > kErrorThreshold;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700516}
517
518void DispSync::beginResync() {
519 Mutex::Autolock lock(mMutex);
Tim Murray4a4e4a22016-04-19 16:29:23 +0000520 ALOGV("[%s] beginResync", mName);
Haixia Shi676b1f62015-10-28 16:19:01 -0700521 mModelUpdated = false;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700522 mNumResyncSamples = 0;
523}
524
525bool DispSync::addResyncSample(nsecs_t timestamp) {
526 Mutex::Autolock lock(mMutex);
527
Tim Murray4a4e4a22016-04-19 16:29:23 +0000528 ALOGV("[%s] addResyncSample(%" PRId64 ")", mName, ns2us(timestamp));
529
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700530 size_t idx = (mFirstResyncSample + mNumResyncSamples) % MAX_RESYNC_SAMPLES;
531 mResyncSamples[idx] = timestamp;
Haixia Shi664339a2015-10-28 13:22:22 -0700532 if (mNumResyncSamples == 0) {
Haixia Shi676b1f62015-10-28 16:19:01 -0700533 mPhase = 0;
534 mReferenceTime = timestamp;
Tim Murray4a4e4a22016-04-19 16:29:23 +0000535 ALOGV("[%s] First resync sample: mPeriod = %" PRId64 ", mPhase = 0, "
Lloyd Pique78ce4182018-01-31 16:39:51 -0800536 "mReferenceTime = %" PRId64,
537 mName, ns2us(mPeriod), ns2us(mReferenceTime));
Tim Murray4a4e4a22016-04-19 16:29:23 +0000538 mThread->updateModel(mPeriod, mPhase, mReferenceTime);
Haixia Shi664339a2015-10-28 13:22:22 -0700539 }
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700540
541 if (mNumResyncSamples < MAX_RESYNC_SAMPLES) {
542 mNumResyncSamples++;
543 } else {
544 mFirstResyncSample = (mFirstResyncSample + 1) % MAX_RESYNC_SAMPLES;
545 }
546
547 updateModelLocked();
548
549 if (mNumResyncSamplesSincePresent++ > MAX_RESYNC_SAMPLES_WITHOUT_PRESENT) {
550 resetErrorLocked();
551 }
552
Fabien Sanglardcbf153b2017-03-10 17:57:12 -0800553 if (mIgnorePresentFences) {
Steven Thomasdfde8fa2018-04-19 16:00:58 -0700554 // If we're ignoring the present fences we have no way to know whether
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700555 // or not we're synchronized with the HW vsyncs, so we just request
Steven Thomasdfde8fa2018-04-19 16:00:58 -0700556 // that the HW vsync events be turned on.
557 return true;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700558 }
559
Tim Murray4a4e4a22016-04-19 16:29:23 +0000560 // Check against kErrorThreshold / 2 to add some hysteresis before having to
561 // resync again
562 bool modelLocked = mModelUpdated && mError < (kErrorThreshold / 2);
Lloyd Pique78ce4182018-01-31 16:39:51 -0800563 ALOGV("[%s] addResyncSample returning %s", mName, modelLocked ? "locked" : "unlocked");
Tim Murray4a4e4a22016-04-19 16:29:23 +0000564 return !modelLocked;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700565}
566
Lloyd Pique78ce4182018-01-31 16:39:51 -0800567void DispSync::endResync() {}
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700568
Alec Mouri7355eb22019-03-05 14:19:10 -0800569status_t DispSync::addEventListener(const char* name, nsecs_t phase, Callback* callback,
570 nsecs_t lastCallbackTime) {
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700571 Mutex::Autolock lock(mMutex);
Alec Mouri7355eb22019-03-05 14:19:10 -0800572 return mThread->addEventListener(name, phase, callback, lastCallbackTime);
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700573}
574
Andy McFadden645b1f72014-06-10 14:43:32 -0700575void DispSync::setRefreshSkipCount(int count) {
576 Mutex::Autolock lock(mMutex);
577 ALOGD("setRefreshSkipCount(%d)", count);
578 mRefreshSkipCount = count;
579 updateModelLocked();
Ruchi Kandoif52b3c82014-04-24 16:42:35 -0700580}
581
Alec Mouri7355eb22019-03-05 14:19:10 -0800582status_t DispSync::removeEventListener(Callback* callback, nsecs_t* outLastCallbackTime) {
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700583 Mutex::Autolock lock(mMutex);
Alec Mouri7355eb22019-03-05 14:19:10 -0800584 return mThread->removeEventListener(callback, outLastCallbackTime);
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700585}
586
Dan Stoza84d619e2018-03-28 17:07:36 -0700587status_t DispSync::changePhaseOffset(Callback* callback, nsecs_t phase) {
588 Mutex::Autolock lock(mMutex);
589 return mThread->changePhaseOffset(callback, phase);
590}
591
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700592void DispSync::setPeriod(nsecs_t period) {
593 Mutex::Autolock lock(mMutex);
David Sodman1afa8b02018-10-15 11:20:48 -0700594 mPeriod = period;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700595 mPhase = 0;
Haixia Shi676b1f62015-10-28 16:19:01 -0700596 mThread->updateModel(mPeriod, mPhase, mReferenceTime);
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700597}
598
Lajos Molnar67d8bd62014-09-11 14:58:45 -0700599nsecs_t DispSync::getPeriod() {
600 // lock mutex as mPeriod changes multiple times in updateModelLocked
601 Mutex::Autolock lock(mMutex);
602 return mPeriod;
603}
604
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700605void DispSync::updateModelLocked() {
Tim Murray4a4e4a22016-04-19 16:29:23 +0000606 ALOGV("[%s] updateModelLocked %zu", mName, mNumResyncSamples);
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700607 if (mNumResyncSamples >= MIN_RESYNC_SAMPLES_FOR_UPDATE) {
Tim Murray4a4e4a22016-04-19 16:29:23 +0000608 ALOGV("[%s] Computing...", mName);
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700609 nsecs_t durationSum = 0;
Tim Murray4a4e4a22016-04-19 16:29:23 +0000610 nsecs_t minDuration = INT64_MAX;
611 nsecs_t maxDuration = 0;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700612 for (size_t i = 1; i < mNumResyncSamples; i++) {
613 size_t idx = (mFirstResyncSample + i) % MAX_RESYNC_SAMPLES;
614 size_t prev = (idx + MAX_RESYNC_SAMPLES - 1) % MAX_RESYNC_SAMPLES;
Tim Murray4a4e4a22016-04-19 16:29:23 +0000615 nsecs_t duration = mResyncSamples[idx] - mResyncSamples[prev];
616 durationSum += duration;
617 minDuration = min(minDuration, duration);
618 maxDuration = max(maxDuration, duration);
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700619 }
620
Tim Murray4a4e4a22016-04-19 16:29:23 +0000621 // Exclude the min and max from the average
622 durationSum -= minDuration + maxDuration;
David Sodman1afa8b02018-10-15 11:20:48 -0700623 mPeriod = durationSum / (mNumResyncSamples - 3);
Tim Murray4a4e4a22016-04-19 16:29:23 +0000624
625 ALOGV("[%s] mPeriod = %" PRId64, mName, ns2us(mPeriod));
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700626
627 double sampleAvgX = 0;
628 double sampleAvgY = 0;
629 double scale = 2.0 * M_PI / double(mPeriod);
Tim Murray4a4e4a22016-04-19 16:29:23 +0000630 // Intentionally skip the first sample
631 for (size_t i = 1; i < mNumResyncSamples; i++) {
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700632 size_t idx = (mFirstResyncSample + i) % MAX_RESYNC_SAMPLES;
Haixia Shi676b1f62015-10-28 16:19:01 -0700633 nsecs_t sample = mResyncSamples[idx] - mReferenceTime;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700634 double samplePhase = double(sample % mPeriod) * scale;
635 sampleAvgX += cos(samplePhase);
636 sampleAvgY += sin(samplePhase);
637 }
638
Tim Murray4a4e4a22016-04-19 16:29:23 +0000639 sampleAvgX /= double(mNumResyncSamples - 1);
640 sampleAvgY /= double(mNumResyncSamples - 1);
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700641
642 mPhase = nsecs_t(atan2(sampleAvgY, sampleAvgX) / scale);
643
Tim Murray4a4e4a22016-04-19 16:29:23 +0000644 ALOGV("[%s] mPhase = %" PRId64, mName, ns2us(mPhase));
645
646 if (mPhase < -(mPeriod / 2)) {
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700647 mPhase += mPeriod;
Tim Murray4a4e4a22016-04-19 16:29:23 +0000648 ALOGV("[%s] Adjusting mPhase -> %" PRId64, mName, ns2us(mPhase));
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700649 }
650
Andy McFadden645b1f72014-06-10 14:43:32 -0700651 // Artificially inflate the period if requested.
652 mPeriod += mPeriod * mRefreshSkipCount;
653
Haixia Shi676b1f62015-10-28 16:19:01 -0700654 mThread->updateModel(mPeriod, mPhase, mReferenceTime);
655 mModelUpdated = true;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700656 }
657}
658
659void DispSync::updateErrorLocked() {
Haixia Shi676b1f62015-10-28 16:19:01 -0700660 if (!mModelUpdated) {
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700661 return;
662 }
663
Andy McFadden645b1f72014-06-10 14:43:32 -0700664 // Need to compare present fences against the un-adjusted refresh period,
665 // since they might arrive between two events.
666 nsecs_t period = mPeriod / (1 + mRefreshSkipCount);
667
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700668 int numErrSamples = 0;
669 nsecs_t sqErrSum = 0;
670
671 for (size_t i = 0; i < NUM_PRESENT_SAMPLES; i++) {
Brian Andersonfbc80ae2017-05-26 16:23:54 -0700672 // Only check for the cached value of signal time to avoid unecessary
673 // syscalls. It is the responsibility of the DispSync owner to
674 // call getSignalTime() periodically so the cache is updated when the
675 // fence signals.
676 nsecs_t time = mPresentFences[i]->getCachedSignalTime();
Lloyd Pique78ce4182018-01-31 16:39:51 -0800677 if (time == Fence::SIGNAL_TIME_PENDING || time == Fence::SIGNAL_TIME_INVALID) {
Brian Andersonfbc80ae2017-05-26 16:23:54 -0700678 continue;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700679 }
Brian Andersonfbc80ae2017-05-26 16:23:54 -0700680
681 nsecs_t sample = time - mReferenceTime;
682 if (sample <= mPhase) {
683 continue;
684 }
685
686 nsecs_t sampleErr = (sample - mPhase) % period;
687 if (sampleErr > period / 2) {
688 sampleErr -= period;
689 }
690 sqErrSum += sampleErr * sampleErr;
691 numErrSamples++;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700692 }
693
694 if (numErrSamples > 0) {
695 mError = sqErrSum / numErrSamples;
Brian Andersonfbc80ae2017-05-26 16:23:54 -0700696 mZeroErrSamplesCount = 0;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700697 } else {
698 mError = 0;
Brian Andersonfbc80ae2017-05-26 16:23:54 -0700699 // Use mod ACCEPTABLE_ZERO_ERR_SAMPLES_COUNT to avoid log spam.
700 mZeroErrSamplesCount++;
Lloyd Pique78ce4182018-01-31 16:39:51 -0800701 ALOGE_IF((mZeroErrSamplesCount % ACCEPTABLE_ZERO_ERR_SAMPLES_COUNT) == 0,
702 "No present times for model error.");
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700703 }
704
Ana Krulec064a82f2018-09-11 16:03:03 -0700705 if (mTraceDetailedInfo) {
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700706 ATRACE_INT64("DispSync:Error", mError);
707 }
708}
709
710void DispSync::resetErrorLocked() {
711 mPresentSampleOffset = 0;
712 mError = 0;
Brian Andersonfbc80ae2017-05-26 16:23:54 -0700713 mZeroErrSamplesCount = 0;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700714 for (size_t i = 0; i < NUM_PRESENT_SAMPLES; i++) {
Brian Andersonfbc80ae2017-05-26 16:23:54 -0700715 mPresentFences[i] = FenceTime::NO_FENCE;
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700716 }
717}
718
Andy McFadden41d67d72014-04-25 16:58:34 -0700719nsecs_t DispSync::computeNextRefresh(int periodOffset) const {
Andy McFadden150ecd82014-05-08 14:56:50 -0700720 Mutex::Autolock lock(mMutex);
Andy McFadden41d67d72014-04-25 16:58:34 -0700721 nsecs_t now = systemTime(SYSTEM_TIME_MONOTONIC);
Haixia Shi676b1f62015-10-28 16:19:01 -0700722 nsecs_t phase = mReferenceTime + mPhase;
Marissa Wall17b4e452018-12-26 16:32:34 -0800723 if (mPeriod == 0) {
724 return 0;
725 }
Haixia Shi676b1f62015-10-28 16:19:01 -0700726 return (((now - phase) / mPeriod) + periodOffset + 1) * mPeriod + phase;
Andy McFadden41d67d72014-04-25 16:58:34 -0700727}
728
Steven Thomasdfde8fa2018-04-19 16:00:58 -0700729void DispSync::setIgnorePresentFences(bool ignore) {
730 Mutex::Autolock lock(mMutex);
731 if (mIgnorePresentFences != ignore) {
732 mIgnorePresentFences = ignore;
733 resetLocked();
734 }
735}
736
Yiwei Zhang5434a782018-12-05 18:06:32 -0800737void DispSync::dump(std::string& result) const {
Andy McFaddenc751e922014-05-08 14:53:26 -0700738 Mutex::Autolock lock(mMutex);
Yiwei Zhang5434a782018-12-05 18:06:32 -0800739 StringAppendF(&result, "present fences are %s\n", mIgnorePresentFences ? "ignored" : "used");
740 StringAppendF(&result, "mPeriod: %" PRId64 " ns (%.3f fps; skipCount=%d)\n", mPeriod,
741 1000000000.0 / mPeriod, mRefreshSkipCount);
742 StringAppendF(&result, "mPhase: %" PRId64 " ns\n", mPhase);
743 StringAppendF(&result, "mError: %" PRId64 " ns (sqrt=%.1f)\n", mError, sqrt(mError));
744 StringAppendF(&result, "mNumResyncSamplesSincePresent: %d (limit %d)\n",
745 mNumResyncSamplesSincePresent, MAX_RESYNC_SAMPLES_WITHOUT_PRESENT);
746 StringAppendF(&result, "mNumResyncSamples: %zd (max %d)\n", mNumResyncSamples,
747 MAX_RESYNC_SAMPLES);
Andy McFaddenc751e922014-05-08 14:53:26 -0700748
Yiwei Zhang5434a782018-12-05 18:06:32 -0800749 result.append("mResyncSamples:\n");
Andy McFaddenc751e922014-05-08 14:53:26 -0700750 nsecs_t previous = -1;
751 for (size_t i = 0; i < mNumResyncSamples; i++) {
752 size_t idx = (mFirstResyncSample + i) % MAX_RESYNC_SAMPLES;
753 nsecs_t sampleTime = mResyncSamples[idx];
754 if (i == 0) {
Yiwei Zhang5434a782018-12-05 18:06:32 -0800755 StringAppendF(&result, " %" PRId64 "\n", sampleTime);
Andy McFaddenc751e922014-05-08 14:53:26 -0700756 } else {
Yiwei Zhang5434a782018-12-05 18:06:32 -0800757 StringAppendF(&result, " %" PRId64 " (+%" PRId64 ")\n", sampleTime,
758 sampleTime - previous);
Andy McFaddenc751e922014-05-08 14:53:26 -0700759 }
760 previous = sampleTime;
761 }
762
Yiwei Zhang5434a782018-12-05 18:06:32 -0800763 StringAppendF(&result, "mPresentFences [%d]:\n", NUM_PRESENT_SAMPLES);
Andy McFadden5167ec62014-05-22 13:08:43 -0700764 nsecs_t now = systemTime(SYSTEM_TIME_MONOTONIC);
Brian Andersonfbc80ae2017-05-26 16:23:54 -0700765 previous = Fence::SIGNAL_TIME_INVALID;
Andy McFaddenc751e922014-05-08 14:53:26 -0700766 for (size_t i = 0; i < NUM_PRESENT_SAMPLES; i++) {
767 size_t idx = (i + mPresentSampleOffset) % NUM_PRESENT_SAMPLES;
Brian Andersonfbc80ae2017-05-26 16:23:54 -0700768 nsecs_t presentTime = mPresentFences[idx]->getSignalTime();
769 if (presentTime == Fence::SIGNAL_TIME_PENDING) {
Yiwei Zhang5434a782018-12-05 18:06:32 -0800770 StringAppendF(&result, " [unsignaled fence]\n");
Lloyd Pique78ce4182018-01-31 16:39:51 -0800771 } else if (presentTime == Fence::SIGNAL_TIME_INVALID) {
Yiwei Zhang5434a782018-12-05 18:06:32 -0800772 StringAppendF(&result, " [invalid fence]\n");
Brian Andersonfbc80ae2017-05-26 16:23:54 -0700773 } else if (previous == Fence::SIGNAL_TIME_PENDING ||
Lloyd Pique78ce4182018-01-31 16:39:51 -0800774 previous == Fence::SIGNAL_TIME_INVALID) {
Yiwei Zhang5434a782018-12-05 18:06:32 -0800775 StringAppendF(&result, " %" PRId64 " (%.3f ms ago)\n", presentTime,
776 (now - presentTime) / 1000000.0);
Andy McFaddenc751e922014-05-08 14:53:26 -0700777 } else {
Yiwei Zhang5434a782018-12-05 18:06:32 -0800778 StringAppendF(&result, " %" PRId64 " (+%" PRId64 " / %.3f) (%.3f ms ago)\n",
779 presentTime, presentTime - previous,
780 (presentTime - previous) / (double)mPeriod,
781 (now - presentTime) / 1000000.0);
Andy McFaddenc751e922014-05-08 14:53:26 -0700782 }
783 previous = presentTime;
784 }
Andy McFadden5167ec62014-05-22 13:08:43 -0700785
Yiwei Zhang5434a782018-12-05 18:06:32 -0800786 StringAppendF(&result, "current monotonic time: %" PRId64 "\n", now);
Andy McFaddenc751e922014-05-08 14:53:26 -0700787}
788
Ana Krulec010d2192018-10-08 06:29:54 -0700789// TODO(b/113612090): Figure out how much of this is still relevant.
790// We need to determine the time when a buffer acquired now will be
791// displayed. This can be calculated:
792// time when previous buffer's actual-present fence was signaled
793// + current display refresh rate * HWC latency
794// + a little extra padding
795//
796// Buffer producers are expected to set their desired presentation time
797// based on choreographer time stamps, which (coming from vsync events)
798// will be slightly later then the actual-present timing. If we get a
799// desired-present time that is unintentionally a hair after the next
800// vsync, we'll hold the frame when we really want to display it. We
801// need to take the offset between actual-present and reported-vsync
802// into account.
803//
804// If the system is configured without a DispSync phase offset for the app,
805// we also want to throw in a bit of padding to avoid edge cases where we
806// just barely miss. We want to do it here, not in every app. A major
807// source of trouble is the app's use of the display's ideal refresh time
808// (via Display.getRefreshRate()), which could be off of the actual refresh
809// by a few percent, with the error multiplied by the number of frames
810// between now and when the buffer should be displayed.
811//
812// If the refresh reported to the app has a phase offset, we shouldn't need
813// to tweak anything here.
814nsecs_t DispSync::expectedPresentTime() {
815 // The HWC doesn't currently have a way to report additional latency.
816 // Assume that whatever we submit now will appear right after the flip.
817 // For a smart panel this might be 1. This is expressed in frames,
818 // rather than time, because we expect to have a constant frame delay
819 // regardless of the refresh rate.
820 const uint32_t hwcLatency = 0;
821
822 // Ask DispSync when the next refresh will be (CLOCK_MONOTONIC).
Ana Krulec757f63a2019-01-25 10:46:18 -0800823 return computeNextRefresh(hwcLatency);
Ana Krulec010d2192018-10-08 06:29:54 -0700824}
825
Lloyd Pique41be5d22018-06-21 13:11:48 -0700826} // namespace impl
827
Jamie Gennisfaf77cc2013-07-30 15:10:32 -0700828} // namespace android