blob: 25dca390389b1568870a84204278eac0a6be99a7 [file] [log] [blame]
Ady Abraham8a82ba62020-01-17 12:43:17 -08001/*
2 * Copyright 2020 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 LOG_NDEBUG 0
18
19#include "LayerInfoV2.h"
20
21#include <algorithm>
22#include <utility>
23
24#undef LOG_TAG
25#define LOG_TAG "LayerInfoV2"
26#define ATRACE_TAG ATRACE_TAG_GRAPHICS
27
28namespace android::scheduler {
29
Ady Abrahama6b676e2020-05-27 14:29:09 -070030LayerInfoV2::LayerInfoV2(const std::string& name, nsecs_t highRefreshRatePeriod,
31 LayerHistory::LayerVoteType defaultVote)
32 : mName(name),
33 mHighRefreshRatePeriod(highRefreshRatePeriod),
Ady Abraham8a82ba62020-01-17 12:43:17 -080034 mDefaultVote(defaultVote),
35 mLayerVote({defaultVote, 0.0f}) {}
36
Ady Abraham32efd542020-05-19 17:49:26 -070037void LayerInfoV2::setLastPresentTime(nsecs_t lastPresentTime, nsecs_t now,
38 bool pendingConfigChange) {
Ady Abraham8a82ba62020-01-17 12:43:17 -080039 lastPresentTime = std::max(lastPresentTime, static_cast<nsecs_t>(0));
40
41 mLastUpdatedTime = std::max(lastPresentTime, now);
42
Ady Abraham32efd542020-05-19 17:49:26 -070043 FrameTimeData frameTime = {.presetTime = lastPresentTime,
44 .queueTime = mLastUpdatedTime,
45 .pendingConfigChange = pendingConfigChange};
Ady Abraham8a82ba62020-01-17 12:43:17 -080046
47 mFrameTimes.push_back(frameTime);
48 if (mFrameTimes.size() > HISTORY_SIZE) {
49 mFrameTimes.pop_front();
50 }
51}
52
Ady Abrahamdfb63ba2020-05-27 20:05:05 +000053bool LayerInfoV2::isFrameTimeValid(const FrameTimeData& frameTime) const {
54 return frameTime.queueTime >= std::chrono::duration_cast<std::chrono::nanoseconds>(
55 mFrameTimeValidSince.time_since_epoch())
56 .count();
57}
Ady Abraham1adbb722020-05-15 11:51:48 -070058
Ady Abrahamdfb63ba2020-05-27 20:05:05 +000059bool LayerInfoV2::isFrequent(nsecs_t now) const {
Ady Abrahamdfb63ba2020-05-27 20:05:05 +000060 // If we know nothing about this layer we consider it as frequent as it might be the start
61 // of an animation.
Ady Abraham983e5682020-05-28 16:49:18 -070062 if (mFrameTimes.size() < FREQUENT_LAYER_WINDOW_SIZE) {
Ady Abrahamdfb63ba2020-05-27 20:05:05 +000063 return true;
64 }
65
66 // Find the first active frame
Ady Abraham983e5682020-05-28 16:49:18 -070067 auto it = mFrameTimes.begin();
Ady Abrahamdfb63ba2020-05-27 20:05:05 +000068 for (; it != mFrameTimes.end(); ++it) {
69 if (it->queueTime >= getActiveLayerThreshold(now)) {
70 break;
71 }
72 }
73
74 const auto numFrames = std::distance(it, mFrameTimes.end());
75 if (numFrames < FREQUENT_LAYER_WINDOW_SIZE) {
76 return false;
77 }
78
79 // Layer is considered frequent if the average frame rate is higher than the threshold
80 const auto totalTime = mFrameTimes.back().queueTime - it->queueTime;
81 return (1e9f * (numFrames - 1)) / totalTime >= MIN_FPS_FOR_FREQUENT_LAYER;
Ady Abraham8a82ba62020-01-17 12:43:17 -080082}
83
84bool LayerInfoV2::hasEnoughDataForHeuristic() const {
85 // The layer had to publish at least HISTORY_SIZE or HISTORY_TIME of updates
Ady Abrahama61edcb2020-01-30 18:32:03 -080086 if (mFrameTimes.size() < 2) {
87 return false;
88 }
89
Ady Abrahamdfb63ba2020-05-27 20:05:05 +000090 if (!isFrameTimeValid(mFrameTimes.front())) {
91 return false;
92 }
93
Ady Abraham8a82ba62020-01-17 12:43:17 -080094 if (mFrameTimes.size() < HISTORY_SIZE &&
95 mFrameTimes.back().queueTime - mFrameTimes.front().queueTime < HISTORY_TIME.count()) {
96 return false;
97 }
98
99 return true;
100}
101
Ady Abraham32efd542020-05-19 17:49:26 -0700102std::pair<nsecs_t, bool> LayerInfoV2::calculateAverageFrameTime() const {
Ady Abraham8a82ba62020-01-17 12:43:17 -0800103 nsecs_t totalPresentTimeDeltas = 0;
Ady Abrahamc9664832020-05-12 14:16:56 -0700104 nsecs_t totalQueueTimeDeltas = 0;
Ady Abraham32efd542020-05-19 17:49:26 -0700105 bool missingPresentTime = false;
106 int numFrames = 0;
Ady Abraham8a82ba62020-01-17 12:43:17 -0800107 for (auto it = mFrameTimes.begin(); it != mFrameTimes.end() - 1; ++it) {
Ady Abraham32efd542020-05-19 17:49:26 -0700108 // Ignore frames captured during a config change
109 if (it->pendingConfigChange || (it + 1)->pendingConfigChange) {
110 continue;
111 }
112
Ady Abrahamc9664832020-05-12 14:16:56 -0700113 totalQueueTimeDeltas +=
114 std::max(((it + 1)->queueTime - it->queueTime), mHighRefreshRatePeriod);
Ady Abraham32efd542020-05-19 17:49:26 -0700115 numFrames++;
Ady Abrahamc9664832020-05-12 14:16:56 -0700116
Ady Abraham8a82ba62020-01-17 12:43:17 -0800117 if (it->presetTime == 0 || (it + 1)->presetTime == 0) {
Ady Abrahamc9664832020-05-12 14:16:56 -0700118 missingPresentTime = true;
119 continue;
Ady Abraham8a82ba62020-01-17 12:43:17 -0800120 }
121
122 totalPresentTimeDeltas +=
123 std::max(((it + 1)->presetTime - it->presetTime), mHighRefreshRatePeriod);
124 }
Ady Abrahamc9664832020-05-12 14:16:56 -0700125
Ady Abrahamc9664832020-05-12 14:16:56 -0700126 // Calculate the average frame time based on presentation timestamps. If those
127 // doesn't exist, we look at the time the buffer was queued only. We can do that only if
128 // we calculated a refresh rate based on presentation timestamps in the past. The reason
129 // we look at the queue time is to handle cases where hwui attaches presentation timestamps
130 // when implementing render ahead for specific refresh rates. When hwui no longer provides
131 // presentation timestamps we look at the queue time to see if the current refresh rate still
132 // matches the content.
Ady Abraham32efd542020-05-19 17:49:26 -0700133 const auto averageFrameTime =
Ady Abrahamc9664832020-05-12 14:16:56 -0700134 static_cast<float>(missingPresentTime ? totalQueueTimeDeltas : totalPresentTimeDeltas) /
Ady Abraham32efd542020-05-19 17:49:26 -0700135 numFrames;
136 return {static_cast<nsecs_t>(averageFrameTime), missingPresentTime};
137}
Ady Abraham8a82ba62020-01-17 12:43:17 -0800138
Ady Abraham32efd542020-05-19 17:49:26 -0700139bool LayerInfoV2::isRefreshRateStable(nsecs_t averageFrameTime, bool missingPresentTime) const {
Ady Abraham8a82ba62020-01-17 12:43:17 -0800140 for (auto it = mFrameTimes.begin(); it != mFrameTimes.end() - 1; ++it) {
Ady Abraham32efd542020-05-19 17:49:26 -0700141 // Ignore frames captured during a config change
142 if (it->pendingConfigChange || (it + 1)->pendingConfigChange) {
143 continue;
144 }
Ady Abrahamc9664832020-05-12 14:16:56 -0700145 const auto presentTimeDeltas = [&] {
146 const auto delta = missingPresentTime ? (it + 1)->queueTime - it->queueTime
147 : (it + 1)->presetTime - it->presetTime;
148 return std::max(delta, mHighRefreshRatePeriod);
149 }();
150
Ady Abraham5f489bd2020-05-12 21:22:02 +0000151 if (std::abs(presentTimeDeltas - averageFrameTime) > 2 * averageFrameTime) {
Ady Abraham32efd542020-05-19 17:49:26 -0700152 return false;
Ady Abraham8a82ba62020-01-17 12:43:17 -0800153 }
154 }
155
Ady Abraham32efd542020-05-19 17:49:26 -0700156 return true;
157}
158
159std::optional<float> LayerInfoV2::calculateRefreshRateIfPossible() {
160 static constexpr float MARGIN = 1.0f; // 1Hz
161
162 if (!hasEnoughDataForHeuristic()) {
163 ALOGV("Not enough data");
164 return std::nullopt;
165 }
166
167 const auto [averageFrameTime, missingPresentTime] = calculateAverageFrameTime();
168
169 // If there are no presentation timestamps provided we can't calculate the refresh rate
170 if (missingPresentTime && mLastReportedRefreshRate == 0) {
171 return std::nullopt;
172 }
173
174 if (!isRefreshRateStable(averageFrameTime, missingPresentTime)) {
175 return std::nullopt;
176 }
177
Ady Abraham8a82ba62020-01-17 12:43:17 -0800178 const auto refreshRate = 1e9f / averageFrameTime;
179 if (std::abs(refreshRate - mLastReportedRefreshRate) > MARGIN) {
180 mLastReportedRefreshRate = refreshRate;
181 }
182
183 ALOGV("Refresh rate: %.2f", mLastReportedRefreshRate);
184 return mLastReportedRefreshRate;
185}
186
187std::pair<LayerHistory::LayerVoteType, float> LayerInfoV2::getRefreshRate(nsecs_t now) {
188 if (mLayerVote.type != LayerHistory::LayerVoteType::Heuristic) {
Ady Abrahama6b676e2020-05-27 14:29:09 -0700189 ALOGV("%s voted %d ", mName.c_str(), static_cast<int>(mLayerVote.type));
Ady Abraham8a82ba62020-01-17 12:43:17 -0800190 return {mLayerVote.type, mLayerVote.fps};
191 }
192
193 if (!isFrequent(now)) {
Ady Abrahama6b676e2020-05-27 14:29:09 -0700194 ALOGV("%s is infrequent", mName.c_str());
Ady Abraham8a82ba62020-01-17 12:43:17 -0800195 return {LayerHistory::LayerVoteType::Min, 0};
196 }
197
198 auto refreshRate = calculateRefreshRateIfPossible();
199 if (refreshRate.has_value()) {
Ady Abrahama6b676e2020-05-27 14:29:09 -0700200 ALOGV("%s calculated refresh rate: %.2f", mName.c_str(), refreshRate.value());
Ady Abraham8a82ba62020-01-17 12:43:17 -0800201 return {LayerHistory::LayerVoteType::Heuristic, refreshRate.value()};
202 }
203
Ady Abrahama6b676e2020-05-27 14:29:09 -0700204 ALOGV("%s Max (can't resolve refresh rate)", mName.c_str());
Ady Abraham8a82ba62020-01-17 12:43:17 -0800205 return {LayerHistory::LayerVoteType::Max, 0};
206}
207
208} // namespace android::scheduler