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1 /*
2  * Copyright (C) 2015 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 #include "JankTracker.h"
18 
19 #include <cutils/ashmem.h>
20 #include <errno.h>
21 #include <inttypes.h>
22 #include <log/log.h>
23 #include <sys/mman.h>
24 
25 #include <algorithm>
26 #include <cmath>
27 #include <cstdio>
28 #include <limits>
29 #include <sstream>
30 
31 #include "DeviceInfo.h"
32 #include "Properties.h"
33 #include "utils/TimeUtils.h"
34 #include "utils/Trace.h"
35 
36 namespace android {
37 namespace uirenderer {
38 
39 struct Comparison {
40     JankType type;
41     std::function<int64_t(nsecs_t)> computeThreadshold;
42     FrameInfoIndex start;
43     FrameInfoIndex end;
44 };
45 
46 static const std::array<Comparison, 4> COMPARISONS{
__anon082b4a060102() 47         Comparison{JankType::kMissedVsync, [](nsecs_t) { return 1; }, FrameInfoIndex::IntendedVsync,
48                    FrameInfoIndex::Vsync},
49 
50         Comparison{JankType::kSlowUI,
__anon082b4a060202() 51                    [](nsecs_t frameInterval) { return static_cast<int64_t>(.5 * frameInterval); },
52                    FrameInfoIndex::Vsync, FrameInfoIndex::SyncStart},
53 
54         Comparison{JankType::kSlowSync,
__anon082b4a060302() 55                    [](nsecs_t frameInterval) { return static_cast<int64_t>(.2 * frameInterval); },
56                    FrameInfoIndex::SyncStart, FrameInfoIndex::IssueDrawCommandsStart},
57 
58         Comparison{JankType::kSlowRT,
__anon082b4a060402() 59                    [](nsecs_t frameInterval) { return static_cast<int64_t>(.75 * frameInterval); },
60                    FrameInfoIndex::IssueDrawCommandsStart, FrameInfoIndex::FrameCompleted},
61 };
62 
63 // If the event exceeds 10 seconds throw it away, this isn't a jank event
64 // it's an ANR and will be handled as such
65 static const int64_t IGNORE_EXCEEDING = seconds_to_nanoseconds(10);
66 
67 /*
68  * We don't track direct-drawing via Surface:lockHardwareCanvas()
69  * for now
70  *
71  * TODO: kSurfaceCanvas can negatively impact other drawing by using up
72  * time on the RenderThread, figure out how to attribute that as a jank-causer
73  */
74 static const int64_t EXEMPT_FRAMES_FLAGS = FrameInfoFlags::SurfaceCanvas;
75 
76 // For testing purposes to try and eliminate test infra overhead we will
77 // consider any unknown delay of frame start as part of the test infrastructure
78 // and filter it out of the frame profile data
79 static FrameInfoIndex sFrameStart = FrameInfoIndex::IntendedVsync;
80 
JankTracker(ProfileDataContainer * globalData)81 JankTracker::JankTracker(ProfileDataContainer* globalData)
82         : mData(globalData->getDataMutex())
83         , mDataMutex(globalData->getDataMutex()) {
84     mGlobalData = globalData;
85     nsecs_t frameIntervalNanos = DeviceInfo::getVsyncPeriod();
86     nsecs_t sfOffset = DeviceInfo::getCompositorOffset();
87     nsecs_t offsetDelta = sfOffset - DeviceInfo::getAppOffset();
88     // There are two different offset cases. If the offsetDelta is positive
89     // and small, then the intention is to give apps extra time by leveraging
90     // pipelining between the UI & RT threads. If the offsetDelta is large or
91     // negative, the intention is to subtract time from the total duration
92     // in which case we can't afford to wait for dequeueBuffer blockage.
93     if (offsetDelta <= 4_ms && offsetDelta >= 0) {
94         // SF will begin composition at VSYNC-app + offsetDelta. If we are triple
95         // buffered, this is the expected time at which dequeueBuffer will
96         // return due to the staggering of VSYNC-app & VSYNC-sf.
97         mDequeueTimeForgivenessLegacy = offsetDelta + 4_ms;
98     }
99     mFrameIntervalLegacy = frameIntervalNanos;
100 }
101 
calculateLegacyJank(FrameInfo & frame)102 void JankTracker::calculateLegacyJank(FrameInfo& frame) REQUIRES(mDataMutex) {
103     // Fast-path for jank-free frames
104     int64_t totalDuration = frame.duration(sFrameStart, FrameInfoIndex::SwapBuffersCompleted);
105     if (mDequeueTimeForgivenessLegacy && frame[FrameInfoIndex::DequeueBufferDuration] > 500_us) {
106         nsecs_t expectedDequeueDuration = mDequeueTimeForgivenessLegacy
107                                           + frame[FrameInfoIndex::Vsync]
108                                           - frame[FrameInfoIndex::IssueDrawCommandsStart];
109         if (expectedDequeueDuration > 0) {
110             // Forgive only up to the expected amount, but not more than
111             // the actual time spent blocked.
112             nsecs_t forgiveAmount =
113                     std::min(expectedDequeueDuration, frame[FrameInfoIndex::DequeueBufferDuration]);
114             LOG_ALWAYS_FATAL_IF(forgiveAmount >= totalDuration,
115                                 "Impossible dequeue duration! dequeue duration reported %" PRId64
116                                 ", total duration %" PRId64,
117                                 forgiveAmount, totalDuration);
118             totalDuration -= forgiveAmount;
119         }
120     }
121 
122     LOG_ALWAYS_FATAL_IF(totalDuration <= 0, "Impossible totalDuration %" PRId64 " start=%" PRIi64
123                         " gpuComplete=%" PRIi64, totalDuration,
124                         frame[FrameInfoIndex::IntendedVsync],
125                         frame[FrameInfoIndex::GpuCompleted]);
126 
127 
128     // Only things like Surface.lockHardwareCanvas() are exempt from tracking
129     if (CC_UNLIKELY(frame[FrameInfoIndex::Flags] & EXEMPT_FRAMES_FLAGS)) {
130         return;
131     }
132 
133     if (totalDuration > mFrameIntervalLegacy) {
134         mData->reportJankLegacy();
135         (*mGlobalData)->reportJankLegacy();
136     }
137 
138     if (mSwapDeadlineLegacy < 0) {
139         mSwapDeadlineLegacy = frame[FrameInfoIndex::IntendedVsync] + mFrameIntervalLegacy;
140     }
141     bool isTripleBuffered = (mSwapDeadlineLegacy - frame[FrameInfoIndex::IntendedVsync])
142             > (mFrameIntervalLegacy * 0.1);
143 
144     mSwapDeadlineLegacy = std::max(mSwapDeadlineLegacy + mFrameIntervalLegacy,
145                              frame[FrameInfoIndex::IntendedVsync] + mFrameIntervalLegacy);
146 
147     // If we hit the deadline, cool!
148     if (frame[FrameInfoIndex::FrameCompleted] < mSwapDeadlineLegacy
149             || totalDuration < mFrameIntervalLegacy) {
150         if (isTripleBuffered) {
151             mData->reportJankType(JankType::kHighInputLatency);
152             (*mGlobalData)->reportJankType(JankType::kHighInputLatency);
153         }
154         return;
155     }
156 
157     mData->reportJankType(JankType::kMissedDeadlineLegacy);
158     (*mGlobalData)->reportJankType(JankType::kMissedDeadlineLegacy);
159 
160     // Janked, reset the swap deadline
161     nsecs_t jitterNanos = frame[FrameInfoIndex::FrameCompleted] - frame[FrameInfoIndex::Vsync];
162     nsecs_t lastFrameOffset = jitterNanos % mFrameIntervalLegacy;
163     mSwapDeadlineLegacy = frame[FrameInfoIndex::FrameCompleted]
164             - lastFrameOffset + mFrameIntervalLegacy;
165 }
166 
finishFrame(FrameInfo & frame,std::unique_ptr<FrameMetricsReporter> & reporter)167 void JankTracker::finishFrame(FrameInfo& frame, std::unique_ptr<FrameMetricsReporter>& reporter) {
168     std::lock_guard lock(mDataMutex);
169 
170     calculateLegacyJank(frame);
171 
172     // Fast-path for jank-free frames
173     int64_t totalDuration = frame.duration(FrameInfoIndex::IntendedVsync,
174             FrameInfoIndex::FrameCompleted);
175 
176     LOG_ALWAYS_FATAL_IF(totalDuration <= 0, "Impossible totalDuration %" PRId64, totalDuration);
177     mData->reportFrame(totalDuration);
178     (*mGlobalData)->reportFrame(totalDuration);
179 
180     // Only things like Surface.lockHardwareCanvas() are exempt from tracking
181     if (CC_UNLIKELY(frame[FrameInfoIndex::Flags] & EXEMPT_FRAMES_FLAGS)) {
182         return;
183     }
184 
185     int64_t frameInterval = frame[FrameInfoIndex::FrameInterval];
186 
187     // If we starter earlier than the intended frame start assuming an unstuffed scenario, it means
188     // that we are in a triple buffering situation.
189     bool isTripleBuffered = (mNextFrameStartUnstuffed - frame[FrameInfoIndex::IntendedVsync])
190                     > (frameInterval * 0.1);
191 
192     int64_t deadline = frame[FrameInfoIndex::FrameDeadline];
193 
194     // If we are in triple buffering, we have enough buffers in queue to sustain a single frame
195     // drop without jank, so adjust the frame interval to the deadline.
196     if (isTripleBuffered) {
197         deadline += frameInterval;
198         frame.set(FrameInfoIndex::FrameDeadline) += frameInterval;
199     }
200 
201     // If we hit the deadline, cool!
202     if (frame[FrameInfoIndex::GpuCompleted] < deadline) {
203         if (isTripleBuffered) {
204             mData->reportJankType(JankType::kHighInputLatency);
205             (*mGlobalData)->reportJankType(JankType::kHighInputLatency);
206 
207             // Buffer stuffing state gets carried over to next frame, unless there is a "pause"
208             mNextFrameStartUnstuffed += frameInterval;
209         }
210     } else {
211         mData->reportJankType(JankType::kMissedDeadline);
212         (*mGlobalData)->reportJankType(JankType::kMissedDeadline);
213         mData->reportJank();
214         (*mGlobalData)->reportJank();
215 
216         // Janked, store the adjust deadline to detect triple buffering in next frame correctly.
217         nsecs_t jitterNanos = frame[FrameInfoIndex::GpuCompleted]
218                 - frame[FrameInfoIndex::Vsync];
219         nsecs_t lastFrameOffset = jitterNanos % frameInterval;
220 
221         // Note the time when the next frame would start in an unstuffed situation. If it starts
222         // earlier, we are in a stuffed situation.
223         mNextFrameStartUnstuffed = frame[FrameInfoIndex::GpuCompleted]
224                 - lastFrameOffset + frameInterval;
225 
226         recomputeThresholds(frameInterval);
227         for (auto& comparison : COMPARISONS) {
228             int64_t delta = frame.duration(comparison.start, comparison.end);
229             if (delta >= mThresholds[comparison.type] && delta < IGNORE_EXCEEDING) {
230                 mData->reportJankType(comparison.type);
231                 (*mGlobalData)->reportJankType(comparison.type);
232             }
233         }
234 
235         // Log daveys since they are weird and we don't know what they are (b/70339576)
236         if (totalDuration >= 700_ms) {
237             static int sDaveyCount = 0;
238             std::stringstream ss;
239             ss << "Davey! duration=" << ns2ms(totalDuration) << "ms; ";
240             for (size_t i = 0; i < static_cast<size_t>(FrameInfoIndex::NumIndexes); i++) {
241                 ss << FrameInfoNames[i] << "=" << frame[i] << ", ";
242             }
243             ALOGI("%s", ss.str().c_str());
244             // Just so we have something that counts up, the value is largely irrelevant
245             ATRACE_INT(ss.str().c_str(), ++sDaveyCount);
246         }
247     }
248 
249     int64_t totalGPUDrawTime = frame.gpuDrawTime();
250     if (totalGPUDrawTime >= 0) {
251         mData->reportGPUFrame(totalGPUDrawTime);
252         (*mGlobalData)->reportGPUFrame(totalGPUDrawTime);
253     }
254 
255     if (CC_UNLIKELY(reporter.get() != nullptr)) {
256         reporter->reportFrameMetrics(frame.data(), false /* hasPresentTime */);
257     }
258 }
259 
recomputeThresholds(int64_t frameBudget)260 void JankTracker::recomputeThresholds(int64_t frameBudget) REQUIRES(mDataMutex) {
261     if (mThresholdsFrameBudget == frameBudget) {
262         return;
263     }
264     mThresholdsFrameBudget = frameBudget;
265     for (auto& comparison : COMPARISONS) {
266         mThresholds[comparison.type] = comparison.computeThreadshold(frameBudget);
267     }
268 }
269 
dumpData(int fd,const ProfileDataDescription * description,const ProfileData * data)270 void JankTracker::dumpData(int fd, const ProfileDataDescription* description,
271                            const ProfileData* data) {
272 
273     if (description) {
274         switch (description->type) {
275             case JankTrackerType::Generic:
276                 break;
277             case JankTrackerType::Package:
278                 dprintf(fd, "\nPackage: %s", description->name.c_str());
279                 break;
280             case JankTrackerType::Window:
281                 dprintf(fd, "\nWindow: %s", description->name.c_str());
282                 break;
283         }
284     }
285     if (sFrameStart != FrameInfoIndex::IntendedVsync) {
286         dprintf(fd, "\nNote: Data has been filtered!");
287     }
288     data->dump(fd);
289     dprintf(fd, "\n");
290 }
291 
dumpFrames(int fd)292 void JankTracker::dumpFrames(int fd) {
293     dprintf(fd, "\n\n---PROFILEDATA---\n");
294     for (size_t i = 0; i < static_cast<size_t>(FrameInfoIndex::NumIndexes); i++) {
295         dprintf(fd, "%s", FrameInfoNames[i]);
296         dprintf(fd, ",");
297     }
298     for (size_t i = 0; i < mFrames.size(); i++) {
299         FrameInfo& frame = mFrames[i];
300         if (frame[FrameInfoIndex::SyncStart] == 0) {
301             continue;
302         }
303         dprintf(fd, "\n");
304         for (int i = 0; i < static_cast<int>(FrameInfoIndex::NumIndexes); i++) {
305             dprintf(fd, "%" PRId64 ",", frame[i]);
306         }
307     }
308     dprintf(fd, "\n---PROFILEDATA---\n\n");
309 }
310 
reset()311 void JankTracker::reset() REQUIRES(mDataMutex) {
312     mFrames.clear();
313     mData->reset();
314     (*mGlobalData)->reset();
315     sFrameStart = Properties::filterOutTestOverhead ? FrameInfoIndex::HandleInputStart
316                                                     : FrameInfoIndex::IntendedVsync;
317 }
318 
319 } /* namespace uirenderer */
320 } /* namespace android */
321