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Kevin DuBois1678e2c2019-08-22 12:26:24 -07001/*
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
Marin Shalamanovbed7fd32020-12-21 20:02:20 +010017// TODO(b/129481165): remove the #pragma below and fix conversion issues
18#pragma clang diagnostic push
19#pragma clang diagnostic ignored "-Wextra"
20
Dominik Laskowski62eff352021-12-06 09:59:41 -080021#undef LOG_TAG
22#define LOG_TAG "VSyncPredictor"
23
Kevin DuBois1678e2c2019-08-22 12:26:24 -070024#define ATRACE_TAG ATRACE_TAG_GRAPHICS
Dominik Laskowski62eff352021-12-06 09:59:41 -080025
26#include <algorithm>
27#include <chrono>
28#include <sstream>
29
Kevin DuBois1678e2c2019-08-22 12:26:24 -070030#include <android-base/logging.h>
Ady Abraham5e7371c2020-03-24 14:47:24 -070031#include <android-base/stringprintf.h>
Alec Mouri9b133ca2023-11-14 19:00:01 +000032#include <common/FlagManager.h>
Kevin DuBois1678e2c2019-08-22 12:26:24 -070033#include <cutils/compiler.h>
Kevin DuBoisecb1f0d2019-12-12 10:47:41 -080034#include <cutils/properties.h>
Leon Scroggins III67388622023-02-06 20:36:20 -050035#include <ftl/concat.h>
Ady Abraham9243bba2023-02-10 15:31:14 -080036#include <gui/TraceUtils.h>
Kevin DuBois1678e2c2019-08-22 12:26:24 -070037#include <utils/Log.h>
Kevin DuBois1678e2c2019-08-22 12:26:24 -070038
Dominik Laskowskid82e0f02022-10-26 15:23:04 -040039#include "RefreshRateSelector.h"
Dominik Laskowski62eff352021-12-06 09:59:41 -080040#include "VSyncPredictor.h"
Ady Abraham0bb6a472020-10-12 10:22:13 -070041
Kevin DuBois1678e2c2019-08-22 12:26:24 -070042namespace android::scheduler {
Dominik Laskowski62eff352021-12-06 09:59:41 -080043
Ady Abraham5e7371c2020-03-24 14:47:24 -070044using base::StringAppendF;
Kevin DuBoisecb1f0d2019-12-12 10:47:41 -080045
Kevin DuBois1678e2c2019-08-22 12:26:24 -070046static auto constexpr kMaxPercent = 100u;
47
48VSyncPredictor::~VSyncPredictor() = default;
49
Leon Scroggins III67388622023-02-06 20:36:20 -050050VSyncPredictor::VSyncPredictor(PhysicalDisplayId id, nsecs_t idealPeriod, size_t historySize,
ramindanid4354a92023-10-02 15:11:09 -070051 size_t minimumSamplesForPrediction, uint32_t outlierTolerancePercent,
52 IVsyncTrackerCallback& callback)
Leon Scroggins III67388622023-02-06 20:36:20 -050053 : mId(id),
54 mTraceOn(property_get_bool("debug.sf.vsp_trace", false)),
Kevin DuBoisecb1f0d2019-12-12 10:47:41 -080055 kHistorySize(historySize),
Kevin DuBois1678e2c2019-08-22 12:26:24 -070056 kMinimumSamplesForPrediction(minimumSamplesForPrediction),
57 kOutlierTolerancePercent(std::min(outlierTolerancePercent, kMaxPercent)),
ramindanid4354a92023-10-02 15:11:09 -070058 mVsyncTrackerCallback(callback),
Kevin DuBois1678e2c2019-08-22 12:26:24 -070059 mIdealPeriod(idealPeriod) {
Kevin DuBoisc3e9e8e2020-01-07 09:06:52 -080060 resetModel();
Kevin DuBois1678e2c2019-08-22 12:26:24 -070061}
62
Kevin DuBoisecb1f0d2019-12-12 10:47:41 -080063inline void VSyncPredictor::traceInt64If(const char* name, int64_t value) const {
64 if (CC_UNLIKELY(mTraceOn)) {
Leon Scroggins III67388622023-02-06 20:36:20 -050065 traceInt64(name, value);
Kevin DuBoisecb1f0d2019-12-12 10:47:41 -080066 }
67}
68
Ady Abrahamd9b9a042023-01-13 11:30:58 -080069inline void VSyncPredictor::traceInt64(const char* name, int64_t value) const {
Leon Scroggins III67388622023-02-06 20:36:20 -050070 ATRACE_INT64(ftl::Concat(ftl::truncated<14>(name), " ", mId.value).c_str(), value);
Ady Abrahamd9b9a042023-01-13 11:30:58 -080071}
72
Ady Abraham9c53ee72020-07-22 21:16:18 -070073inline size_t VSyncPredictor::next(size_t i) const {
Ady Abraham92fa2f42020-02-11 15:33:56 -080074 return (i + 1) % mTimestamps.size();
Kevin DuBois1678e2c2019-08-22 12:26:24 -070075}
76
77bool VSyncPredictor::validate(nsecs_t timestamp) const {
Ady Abraham92fa2f42020-02-11 15:33:56 -080078 if (mLastTimestampIndex < 0 || mTimestamps.empty()) {
Kevin DuBois1678e2c2019-08-22 12:26:24 -070079 return true;
80 }
81
Ady Abraham92fa2f42020-02-11 15:33:56 -080082 auto const aValidTimestamp = mTimestamps[mLastTimestampIndex];
Kevin DuBois1678e2c2019-08-22 12:26:24 -070083 auto const percent = (timestamp - aValidTimestamp) % mIdealPeriod * kMaxPercent / mIdealPeriod;
Ady Abraham99ca3362021-06-17 12:28:46 -070084 if (percent >= kOutlierTolerancePercent &&
85 percent <= (kMaxPercent - kOutlierTolerancePercent)) {
86 return false;
87 }
88
89 const auto iter = std::min_element(mTimestamps.begin(), mTimestamps.end(),
90 [timestamp](nsecs_t a, nsecs_t b) {
91 return std::abs(timestamp - a) < std::abs(timestamp - b);
92 });
93 const auto distancePercent = std::abs(*iter - timestamp) * kMaxPercent / mIdealPeriod;
94 if (distancePercent < kOutlierTolerancePercent) {
95 // duplicate timestamp
96 return false;
97 }
98 return true;
Kevin DuBois1678e2c2019-08-22 12:26:24 -070099}
100
Kevin DuBois2fd3cea2019-11-14 08:52:45 -0800101nsecs_t VSyncPredictor::currentPeriod() const {
Ady Abraham9c53ee72020-07-22 21:16:18 -0700102 std::lock_guard lock(mMutex);
Ady Abraham0bb6a472020-10-12 10:22:13 -0700103 return mRateMap.find(mIdealPeriod)->second.slope;
Kevin DuBois2fd3cea2019-11-14 08:52:45 -0800104}
105
Kevin DuBois02d5ed92020-01-27 11:05:46 -0800106bool VSyncPredictor::addVsyncTimestamp(nsecs_t timestamp) {
Ady Abraham9c53ee72020-07-22 21:16:18 -0700107 std::lock_guard lock(mMutex);
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700108
109 if (!validate(timestamp)) {
Kevin DuBois241d0ee2020-06-26 17:00:15 -0700110 // VSR could elect to ignore the incongruent timestamp or resetModel(). If ts is ignored,
Ady Abraham43a3e692020-11-13 12:43:39 -0800111 // don't insert this ts into mTimestamps ringbuffer. If we are still
112 // in the learning phase we should just clear all timestamps and start
113 // over.
114 if (mTimestamps.size() < kMinimumSamplesForPrediction) {
Ady Abraham4c56b642021-06-08 15:03:33 -0700115 // Add the timestamp to mTimestamps before clearing it so we could
116 // update mKnownTimestamp based on the new timestamp.
117 mTimestamps.push_back(timestamp);
Ady Abraham43a3e692020-11-13 12:43:39 -0800118 clearTimestamps();
119 } else if (!mTimestamps.empty()) {
Kevin DuBois241d0ee2020-06-26 17:00:15 -0700120 mKnownTimestamp =
121 std::max(timestamp, *std::max_element(mTimestamps.begin(), mTimestamps.end()));
122 } else {
123 mKnownTimestamp = timestamp;
124 }
Kevin DuBois02d5ed92020-01-27 11:05:46 -0800125 return false;
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700126 }
127
Ady Abraham92fa2f42020-02-11 15:33:56 -0800128 if (mTimestamps.size() != kHistorySize) {
129 mTimestamps.push_back(timestamp);
130 mLastTimestampIndex = next(mLastTimestampIndex);
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700131 } else {
Ady Abraham92fa2f42020-02-11 15:33:56 -0800132 mLastTimestampIndex = next(mLastTimestampIndex);
133 mTimestamps[mLastTimestampIndex] = timestamp;
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700134 }
135
Ady Abrahamd9b9a042023-01-13 11:30:58 -0800136 traceInt64If("VSP-ts", timestamp);
137
Dominik Laskowski62eff352021-12-06 09:59:41 -0800138 const size_t numSamples = mTimestamps.size();
139 if (numSamples < kMinimumSamplesForPrediction) {
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700140 mRateMap[mIdealPeriod] = {mIdealPeriod, 0};
Kevin DuBois02d5ed92020-01-27 11:05:46 -0800141 return true;
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700142 }
143
144 // This is a 'simple linear regression' calculation of Y over X, with Y being the
145 // vsync timestamps, and X being the ordinal of vsync count.
146 // The calculated slope is the vsync period.
147 // Formula for reference:
148 // Sigma_i: means sum over all timestamps.
149 // mean(variable): statistical mean of variable.
150 // X: snapped ordinal of the timestamp
151 // Y: vsync timestamp
152 //
153 // Sigma_i( (X_i - mean(X)) * (Y_i - mean(Y) )
154 // slope = -------------------------------------------
155 // Sigma_i ( X_i - mean(X) ) ^ 2
156 //
157 // intercept = mean(Y) - slope * mean(X)
158 //
Dominik Laskowski62eff352021-12-06 09:59:41 -0800159 std::vector<nsecs_t> vsyncTS(numSamples);
160 std::vector<nsecs_t> ordinals(numSamples);
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700161
Dominik Laskowski62eff352021-12-06 09:59:41 -0800162 // Normalizing to the oldest timestamp cuts down on error in calculating the intercept.
163 const auto oldestTS = *std::min_element(mTimestamps.begin(), mTimestamps.end());
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700164 auto it = mRateMap.find(mIdealPeriod);
Ady Abraham0bb6a472020-10-12 10:22:13 -0700165 auto const currentPeriod = it->second.slope;
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700166
Dominik Laskowski62eff352021-12-06 09:59:41 -0800167 // The mean of the ordinals must be precise for the intercept calculation, so scale them up for
168 // fixed-point arithmetic.
169 constexpr int64_t kScalingFactor = 1000;
170
171 nsecs_t meanTS = 0;
172 nsecs_t meanOrdinal = 0;
173
174 for (size_t i = 0; i < numSamples; i++) {
Dominik Laskowski62eff352021-12-06 09:59:41 -0800175 const auto timestamp = mTimestamps[i] - oldestTS;
176 vsyncTS[i] = timestamp;
177 meanTS += timestamp;
178
Rachel Lee934017e2022-08-10 15:34:14 -0700179 const auto ordinal = currentPeriod == 0
180 ? 0
181 : (vsyncTS[i] + currentPeriod / 2) / currentPeriod * kScalingFactor;
Dominik Laskowski62eff352021-12-06 09:59:41 -0800182 ordinals[i] = ordinal;
183 meanOrdinal += ordinal;
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700184 }
185
Dominik Laskowski62eff352021-12-06 09:59:41 -0800186 meanTS /= numSamples;
187 meanOrdinal /= numSamples;
188
189 for (size_t i = 0; i < numSamples; i++) {
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700190 vsyncTS[i] -= meanTS;
191 ordinals[i] -= meanOrdinal;
192 }
193
Dominik Laskowski62eff352021-12-06 09:59:41 -0800194 nsecs_t top = 0;
195 nsecs_t bottom = 0;
196 for (size_t i = 0; i < numSamples; i++) {
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700197 top += vsyncTS[i] * ordinals[i];
198 bottom += ordinals[i] * ordinals[i];
199 }
200
201 if (CC_UNLIKELY(bottom == 0)) {
202 it->second = {mIdealPeriod, 0};
Ady Abraham92fa2f42020-02-11 15:33:56 -0800203 clearTimestamps();
Kevin DuBois02d5ed92020-01-27 11:05:46 -0800204 return false;
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700205 }
206
Kevin DuBois0049f8b2020-03-11 10:30:11 -0700207 nsecs_t const anticipatedPeriod = top * kScalingFactor / bottom;
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700208 nsecs_t const intercept = meanTS - (anticipatedPeriod * meanOrdinal / kScalingFactor);
209
Ady Abraham92fa2f42020-02-11 15:33:56 -0800210 auto const percent = std::abs(anticipatedPeriod - mIdealPeriod) * kMaxPercent / mIdealPeriod;
211 if (percent >= kOutlierTolerancePercent) {
212 it->second = {mIdealPeriod, 0};
213 clearTimestamps();
214 return false;
215 }
216
Kevin DuBoisecb1f0d2019-12-12 10:47:41 -0800217 traceInt64If("VSP-period", anticipatedPeriod);
218 traceInt64If("VSP-intercept", intercept);
219
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700220 it->second = {anticipatedPeriod, intercept};
221
Leon Scroggins III67388622023-02-06 20:36:20 -0500222 ALOGV("model update ts %" PRIu64 ": %" PRId64 " slope: %" PRId64 " intercept: %" PRId64,
223 mId.value, timestamp, anticipatedPeriod, intercept);
Kevin DuBois02d5ed92020-01-27 11:05:46 -0800224 return true;
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700225}
226
Ady Abrahamf34a8132023-02-13 20:49:48 -0800227auto VSyncPredictor::getVsyncSequenceLocked(nsecs_t timestamp) const -> VsyncSequence {
228 const auto vsync = nextAnticipatedVSyncTimeFromLocked(timestamp);
229 if (!mLastVsyncSequence) return {vsync, 0};
230
231 const auto [slope, _] = getVSyncPredictionModelLocked();
232 const auto [lastVsyncTime, lastVsyncSequence] = *mLastVsyncSequence;
233 const auto vsyncSequence = lastVsyncSequence +
234 static_cast<int64_t>(std::round((vsync - lastVsyncTime) / static_cast<float>(slope)));
235 return {vsync, vsyncSequence};
236}
237
Ady Abraham0bb6a472020-10-12 10:22:13 -0700238nsecs_t VSyncPredictor::nextAnticipatedVSyncTimeFromLocked(nsecs_t timePoint) const {
239 auto const [slope, intercept] = getVSyncPredictionModelLocked();
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700240
Ady Abraham92fa2f42020-02-11 15:33:56 -0800241 if (mTimestamps.empty()) {
Ady Abrahamd9b9a042023-01-13 11:30:58 -0800242 traceInt64("VSP-mode", 1);
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700243 auto const knownTimestamp = mKnownTimestamp ? *mKnownTimestamp : timePoint;
244 auto const numPeriodsOut = ((timePoint - knownTimestamp) / mIdealPeriod) + 1;
245 return knownTimestamp + numPeriodsOut * mIdealPeriod;
246 }
247
Ady Abraham92fa2f42020-02-11 15:33:56 -0800248 auto const oldest = *std::min_element(mTimestamps.begin(), mTimestamps.end());
Kevin DuBois127a2d92019-12-04 13:52:52 -0800249
250 // See b/145667109, the ordinal calculation must take into account the intercept.
251 auto const zeroPoint = oldest + intercept;
252 auto const ordinalRequest = (timePoint - zeroPoint + slope) / slope;
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700253 auto const prediction = (ordinalRequest * slope) + intercept + oldest;
254
Ady Abrahamd9b9a042023-01-13 11:30:58 -0800255 traceInt64("VSP-mode", 0);
Kevin DuBoisecb1f0d2019-12-12 10:47:41 -0800256 traceInt64If("VSP-timePoint", timePoint);
257 traceInt64If("VSP-prediction", prediction);
258
Kevin DuBois127a2d92019-12-04 13:52:52 -0800259 auto const printer = [&, slope = slope, intercept = intercept] {
260 std::stringstream str;
261 str << "prediction made from: " << timePoint << "prediction: " << prediction << " (+"
262 << prediction - timePoint << ") slope: " << slope << " intercept: " << intercept
263 << "oldestTS: " << oldest << " ordinal: " << ordinalRequest;
264 return str.str();
265 };
266
267 ALOGV("%s", printer().c_str());
268 LOG_ALWAYS_FATAL_IF(prediction < timePoint, "VSyncPredictor: model miscalculation: %s",
269 printer().c_str());
270
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700271 return prediction;
272}
273
Ady Abraham0bb6a472020-10-12 10:22:13 -0700274nsecs_t VSyncPredictor::nextAnticipatedVSyncTimeFrom(nsecs_t timePoint) const {
Ady Abraham9c53ee72020-07-22 21:16:18 -0700275 std::lock_guard lock(mMutex);
Ady Abrahamace3d052022-11-17 16:25:05 -0800276
Ady Abrahamf34a8132023-02-13 20:49:48 -0800277 // update the mLastVsyncSequence for reference point
278 mLastVsyncSequence = getVsyncSequenceLocked(timePoint);
279
Ady Abrahamfdc049c2023-02-17 14:52:05 +0000280 const auto renderRatePhase = [&]() REQUIRES(mMutex) -> int {
ramindanid4354a92023-10-02 15:11:09 -0700281 if (!mDisplayModeDataOpt) return 0;
Ady Abrahamfdc049c2023-02-17 14:52:05 +0000282
283 const auto divisor =
284 RefreshRateSelector::getFrameRateDivisor(Fps::fromPeriodNsecs(mIdealPeriod),
ramindanid4354a92023-10-02 15:11:09 -0700285 mDisplayModeDataOpt->renderRate);
Ady Abrahamfdc049c2023-02-17 14:52:05 +0000286 if (divisor <= 1) return 0;
287
288 const int mod = mLastVsyncSequence->seq % divisor;
289 if (mod == 0) return 0;
290
291 return divisor - mod;
292 }();
293
294 if (renderRatePhase == 0) {
ramindanid4354a92023-10-02 15:11:09 -0700295 const auto vsyncTime = mLastVsyncSequence->vsyncTime;
296 if (FlagManager::getInstance().vrr_config() && mDisplayModeDataOpt) {
ramindani2c65b0d2023-10-30 10:37:31 -0700297 const auto vsyncTimePoint = TimePoint::fromNs(vsyncTime);
298 ATRACE_FORMAT("%s InPhase vsyncIn %.2fms", __func__,
299 ticks<std::milli, float>(vsyncTimePoint - TimePoint::now()));
300 mVsyncTrackerCallback.onVsyncGenerated(mId, vsyncTimePoint, *mDisplayModeDataOpt,
ramindanid4354a92023-10-02 15:11:09 -0700301 Period::fromNs(mIdealPeriod));
302 }
303 return vsyncTime;
Ady Abrahamace3d052022-11-17 16:25:05 -0800304 }
Ady Abrahamf34a8132023-02-13 20:49:48 -0800305
306 auto const [slope, intercept] = getVSyncPredictionModelLocked();
Ady Abrahamfdc049c2023-02-17 14:52:05 +0000307 const auto approximateNextVsync = mLastVsyncSequence->vsyncTime + slope * renderRatePhase;
ramindanid4354a92023-10-02 15:11:09 -0700308 const auto nextAnticipatedVsyncTime =
309 nextAnticipatedVSyncTimeFromLocked(approximateNextVsync - slope / 2);
310 if (FlagManager::getInstance().vrr_config() && mDisplayModeDataOpt) {
ramindani2c65b0d2023-10-30 10:37:31 -0700311 const auto nextAnticipatedVsyncTimePoint = TimePoint::fromNs(nextAnticipatedVsyncTime);
312 ATRACE_FORMAT("%s outOfPhase vsyncIn %.2fms", __func__,
313 ticks<std::milli, float>(nextAnticipatedVsyncTimePoint - TimePoint::now()));
314 mVsyncTrackerCallback.onVsyncGenerated(mId, nextAnticipatedVsyncTimePoint,
ramindanid4354a92023-10-02 15:11:09 -0700315 *mDisplayModeDataOpt, Period::fromNs(mIdealPeriod));
316 }
317 return nextAnticipatedVsyncTime;
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700318}
319
Ady Abraham0bb6a472020-10-12 10:22:13 -0700320/*
Ady Abraham5cc2e262021-03-25 13:09:17 -0700321 * Returns whether a given vsync timestamp is in phase with a frame rate.
Ady Abrahamcc315492022-02-17 17:06:39 -0800322 * If the frame rate is not a divisor of the refresh rate, it is always considered in phase.
Ady Abraham5cc2e262021-03-25 13:09:17 -0700323 * For example, if the vsync timestamps are (16.6,33.3,50.0,66.6):
324 * isVSyncInPhase(16.6, 30) = true
325 * isVSyncInPhase(33.3, 30) = false
326 * isVSyncInPhase(50.0, 30) = true
Ady Abraham0bb6a472020-10-12 10:22:13 -0700327 */
Ady Abraham5cc2e262021-03-25 13:09:17 -0700328bool VSyncPredictor::isVSyncInPhase(nsecs_t timePoint, Fps frameRate) const {
Ady Abrahamace3d052022-11-17 16:25:05 -0800329 std::lock_guard lock(mMutex);
330 const auto divisor =
331 RefreshRateSelector::getFrameRateDivisor(Fps::fromPeriodNsecs(mIdealPeriod), frameRate);
332 return isVSyncInPhaseLocked(timePoint, static_cast<unsigned>(divisor));
333}
334
335bool VSyncPredictor::isVSyncInPhaseLocked(nsecs_t timePoint, unsigned divisor) const {
Ady Abraham9243bba2023-02-10 15:31:14 -0800336 const TimePoint now = TimePoint::now();
337 const auto getTimePointIn = [](TimePoint now, nsecs_t timePoint) -> float {
338 return ticks<std::milli, float>(TimePoint::fromNs(timePoint) - now);
339 };
340 ATRACE_FORMAT("%s timePoint in: %.2f divisor: %zu", __func__, getTimePointIn(now, timePoint),
341 divisor);
342
Ady Abrahamcc315492022-02-17 17:06:39 -0800343 if (divisor <= 1 || timePoint == 0) {
Ady Abraham0bb6a472020-10-12 10:22:13 -0700344 return true;
345 }
346
347 const nsecs_t period = mRateMap[mIdealPeriod].slope;
348 const nsecs_t justBeforeTimePoint = timePoint - period / 2;
Ady Abrahamf34a8132023-02-13 20:49:48 -0800349 const auto vsyncSequence = getVsyncSequenceLocked(justBeforeTimePoint);
350 ATRACE_FORMAT_INSTANT("vsync in: %.2f sequence: %" PRId64,
351 getTimePointIn(now, vsyncSequence.vsyncTime), vsyncSequence.seq);
352 return vsyncSequence.seq % divisor == 0;
Ady Abraham0bb6a472020-10-12 10:22:13 -0700353}
354
ramindanid4354a92023-10-02 15:11:09 -0700355void VSyncPredictor::setDisplayModeData(const DisplayModeData& displayModeData) {
356 ALOGV("%s %s: RenderRate %s notifyExpectedPresentTimeout %s", __func__, to_string(mId).c_str(),
357 to_string(displayModeData.renderRate).c_str(),
358 displayModeData.notifyExpectedPresentTimeoutOpt
359 ? std::to_string(displayModeData.notifyExpectedPresentTimeoutOpt->ns()).c_str()
360 : "N/A");
Ady Abrahamace3d052022-11-17 16:25:05 -0800361 std::lock_guard lock(mMutex);
ramindanid4354a92023-10-02 15:11:09 -0700362 mDisplayModeDataOpt = displayModeData;
Ady Abrahamace3d052022-11-17 16:25:05 -0800363}
364
Ady Abraham0bb6a472020-10-12 10:22:13 -0700365VSyncPredictor::Model VSyncPredictor::getVSyncPredictionModel() const {
366 std::lock_guard lock(mMutex);
367 const auto model = VSyncPredictor::getVSyncPredictionModelLocked();
368 return {model.slope, model.intercept};
369}
370
371VSyncPredictor::Model VSyncPredictor::getVSyncPredictionModelLocked() const {
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700372 return mRateMap.find(mIdealPeriod)->second;
373}
374
375void VSyncPredictor::setPeriod(nsecs_t period) {
Leon Scroggins III67388622023-02-06 20:36:20 -0500376 ATRACE_FORMAT("%s %s", __func__, to_string(mId).c_str());
Ady Abrahamd9b9a042023-01-13 11:30:58 -0800377 traceInt64("VSP-setPeriod", period);
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700378
Ady Abraham9c53ee72020-07-22 21:16:18 -0700379 std::lock_guard lock(mMutex);
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700380 static constexpr size_t kSizeLimit = 30;
381 if (CC_UNLIKELY(mRateMap.size() == kSizeLimit)) {
382 mRateMap.erase(mRateMap.begin());
383 }
384
ramindanid4354a92023-10-02 15:11:09 -0700385 // TODO(b/308610306) mIdealPeriod to be updated with setDisplayModeData
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700386 mIdealPeriod = period;
387 if (mRateMap.find(period) == mRateMap.end()) {
388 mRateMap[mIdealPeriod] = {period, 0};
389 }
390
Kevin DuBoisc3e9e8e2020-01-07 09:06:52 -0800391 clearTimestamps();
392}
393
394void VSyncPredictor::clearTimestamps() {
Ady Abraham92fa2f42020-02-11 15:33:56 -0800395 if (!mTimestamps.empty()) {
Kevin DuBois241d0ee2020-06-26 17:00:15 -0700396 auto const maxRb = *std::max_element(mTimestamps.begin(), mTimestamps.end());
397 if (mKnownTimestamp) {
398 mKnownTimestamp = std::max(*mKnownTimestamp, maxRb);
399 } else {
400 mKnownTimestamp = maxRb;
401 }
402
Ady Abraham92fa2f42020-02-11 15:33:56 -0800403 mTimestamps.clear();
404 mLastTimestampIndex = 0;
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700405 }
406}
407
Kevin DuBoisb818bfa2020-07-10 14:29:36 -0700408bool VSyncPredictor::needsMoreSamples() const {
Ady Abraham9c53ee72020-07-22 21:16:18 -0700409 std::lock_guard lock(mMutex);
Kevin DuBoisb818bfa2020-07-10 14:29:36 -0700410 return mTimestamps.size() < kMinimumSamplesForPrediction;
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700411}
412
Kevin DuBoisc3e9e8e2020-01-07 09:06:52 -0800413void VSyncPredictor::resetModel() {
Ady Abraham9c53ee72020-07-22 21:16:18 -0700414 std::lock_guard lock(mMutex);
Kevin DuBoisc3e9e8e2020-01-07 09:06:52 -0800415 mRateMap[mIdealPeriod] = {mIdealPeriod, 0};
416 clearTimestamps();
417}
418
Ady Abraham5e7371c2020-03-24 14:47:24 -0700419void VSyncPredictor::dump(std::string& result) const {
Ady Abraham9c53ee72020-07-22 21:16:18 -0700420 std::lock_guard lock(mMutex);
Ady Abraham5e7371c2020-03-24 14:47:24 -0700421 StringAppendF(&result, "\tmIdealPeriod=%.2f\n", mIdealPeriod / 1e6f);
422 StringAppendF(&result, "\tRefresh Rate Map:\n");
423 for (const auto& [idealPeriod, periodInterceptTuple] : mRateMap) {
424 StringAppendF(&result,
425 "\t\tFor ideal period %.2fms: period = %.2fms, intercept = %" PRId64 "\n",
Ady Abraham0bb6a472020-10-12 10:22:13 -0700426 idealPeriod / 1e6f, periodInterceptTuple.slope / 1e6f,
427 periodInterceptTuple.intercept);
Ady Abraham5e7371c2020-03-24 14:47:24 -0700428 }
429}
430
Kevin DuBois1678e2c2019-08-22 12:26:24 -0700431} // namespace android::scheduler
Ady Abrahamb0dbdaa2020-01-06 16:19:42 -0800432
Marin Shalamanovbed7fd32020-12-21 20:02:20 +0100433// TODO(b/129481165): remove the #pragma below and fix conversion issues
Dominik Laskowski62eff352021-12-06 09:59:41 -0800434#pragma clang diagnostic pop // ignored "-Wextra"