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248 lines
7.9 KiB
248 lines
7.9 KiB
/* |
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* Copyright (C) 2012 The Android Open Source Project |
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* |
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* Licensed under the Apache License, Version 2.0 (the "License"); |
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* you may not use this file except in compliance with the License. |
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* You may obtain a copy of the License at |
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* |
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* http://www.apache.org/licenses/LICENSE-2.0 |
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* |
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* Unless required by applicable law or agreed to in writing, software |
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* distributed under the License is distributed on an "AS IS" BASIS, |
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. |
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* See the License for the specific language governing permissions and |
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* limitations under the License. |
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*/ |
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// This is needed for stdint.h to define INT64_MAX in C++ |
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#define __STDC_LIMIT_MACROS |
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#include <inttypes.h> |
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#include <android/log.h> |
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#include <utils/String8.h> |
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#include <ui/FrameStats.h> |
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#include "FrameTracker.h" |
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#include "EventLog/EventLog.h" |
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namespace android { |
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FrameTracker::FrameTracker() : |
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mOffset(0), |
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mNumFences(0), |
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mDisplayPeriod(0) { |
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resetFrameCountersLocked(); |
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} |
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void FrameTracker::setDesiredPresentTime(nsecs_t presentTime) { |
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Mutex::Autolock lock(mMutex); |
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mFrameRecords[mOffset].desiredPresentTime = presentTime; |
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} |
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void FrameTracker::setFrameReadyTime(nsecs_t readyTime) { |
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Mutex::Autolock lock(mMutex); |
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mFrameRecords[mOffset].frameReadyTime = readyTime; |
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} |
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void FrameTracker::setFrameReadyFence( |
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std::shared_ptr<FenceTime>&& readyFence) { |
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Mutex::Autolock lock(mMutex); |
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mFrameRecords[mOffset].frameReadyFence = std::move(readyFence); |
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mNumFences++; |
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} |
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void FrameTracker::setActualPresentTime(nsecs_t presentTime) { |
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Mutex::Autolock lock(mMutex); |
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mFrameRecords[mOffset].actualPresentTime = presentTime; |
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} |
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void FrameTracker::setActualPresentFence( |
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std::shared_ptr<FenceTime>&& readyFence) { |
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Mutex::Autolock lock(mMutex); |
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mFrameRecords[mOffset].actualPresentFence = std::move(readyFence); |
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mNumFences++; |
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} |
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void FrameTracker::setDisplayRefreshPeriod(nsecs_t displayPeriod) { |
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Mutex::Autolock lock(mMutex); |
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mDisplayPeriod = displayPeriod; |
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} |
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void FrameTracker::advanceFrame() { |
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Mutex::Autolock lock(mMutex); |
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// Update the statistic to include the frame we just finished. |
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updateStatsLocked(mOffset); |
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// Advance to the next frame. |
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mOffset = (mOffset+1) % NUM_FRAME_RECORDS; |
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mFrameRecords[mOffset].desiredPresentTime = INT64_MAX; |
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mFrameRecords[mOffset].frameReadyTime = INT64_MAX; |
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mFrameRecords[mOffset].actualPresentTime = INT64_MAX; |
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if (mFrameRecords[mOffset].frameReadyFence != NULL) { |
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// We're clobbering an unsignaled fence, so we need to decrement the |
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// fence count. |
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mFrameRecords[mOffset].frameReadyFence = NULL; |
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mNumFences--; |
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} |
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if (mFrameRecords[mOffset].actualPresentFence != NULL) { |
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// We're clobbering an unsignaled fence, so we need to decrement the |
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// fence count. |
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mFrameRecords[mOffset].actualPresentFence = NULL; |
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mNumFences--; |
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} |
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} |
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void FrameTracker::clearStats() { |
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Mutex::Autolock lock(mMutex); |
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for (size_t i = 0; i < NUM_FRAME_RECORDS; i++) { |
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mFrameRecords[i].desiredPresentTime = 0; |
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mFrameRecords[i].frameReadyTime = 0; |
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mFrameRecords[i].actualPresentTime = 0; |
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mFrameRecords[i].frameReadyFence.reset(); |
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mFrameRecords[i].actualPresentFence.reset(); |
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} |
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mNumFences = 0; |
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mFrameRecords[mOffset].desiredPresentTime = INT64_MAX; |
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mFrameRecords[mOffset].frameReadyTime = INT64_MAX; |
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mFrameRecords[mOffset].actualPresentTime = INT64_MAX; |
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} |
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void FrameTracker::getStats(FrameStats* outStats) const { |
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Mutex::Autolock lock(mMutex); |
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processFencesLocked(); |
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outStats->refreshPeriodNano = mDisplayPeriod; |
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const size_t offset = mOffset; |
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for (size_t i = 1; i < NUM_FRAME_RECORDS; i++) { |
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const size_t index = (offset + i) % NUM_FRAME_RECORDS; |
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// Skip frame records with no data (if buffer not yet full). |
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if (mFrameRecords[index].desiredPresentTime == 0) { |
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continue; |
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} |
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nsecs_t desiredPresentTimeNano = mFrameRecords[index].desiredPresentTime; |
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outStats->desiredPresentTimesNano.push_back(desiredPresentTimeNano); |
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nsecs_t actualPresentTimeNano = mFrameRecords[index].actualPresentTime; |
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outStats->actualPresentTimesNano.push_back(actualPresentTimeNano); |
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nsecs_t frameReadyTimeNano = mFrameRecords[index].frameReadyTime; |
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outStats->frameReadyTimesNano.push_back(frameReadyTimeNano); |
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} |
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} |
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void FrameTracker::logAndResetStats(const String8& name) { |
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Mutex::Autolock lock(mMutex); |
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logStatsLocked(name); |
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resetFrameCountersLocked(); |
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} |
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void FrameTracker::processFencesLocked() const { |
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FrameRecord* records = const_cast<FrameRecord*>(mFrameRecords); |
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int& numFences = const_cast<int&>(mNumFences); |
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for (int i = 1; i < NUM_FRAME_RECORDS && numFences > 0; i++) { |
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size_t idx = (mOffset+NUM_FRAME_RECORDS-i) % NUM_FRAME_RECORDS; |
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bool updated = false; |
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const std::shared_ptr<FenceTime>& rfence = records[idx].frameReadyFence; |
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if (rfence != NULL) { |
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records[idx].frameReadyTime = rfence->getSignalTime(); |
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if (records[idx].frameReadyTime < INT64_MAX) { |
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records[idx].frameReadyFence = NULL; |
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numFences--; |
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updated = true; |
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} |
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} |
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const std::shared_ptr<FenceTime>& pfence = |
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records[idx].actualPresentFence; |
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if (pfence != NULL) { |
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records[idx].actualPresentTime = pfence->getSignalTime(); |
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if (records[idx].actualPresentTime < INT64_MAX) { |
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records[idx].actualPresentFence = NULL; |
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numFences--; |
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updated = true; |
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} |
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} |
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if (updated) { |
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updateStatsLocked(idx); |
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} |
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} |
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} |
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void FrameTracker::updateStatsLocked(size_t newFrameIdx) const { |
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int* numFrames = const_cast<int*>(mNumFrames); |
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if (mDisplayPeriod > 0 && isFrameValidLocked(newFrameIdx)) { |
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size_t prevFrameIdx = (newFrameIdx+NUM_FRAME_RECORDS-1) % |
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NUM_FRAME_RECORDS; |
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if (isFrameValidLocked(prevFrameIdx)) { |
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nsecs_t newPresentTime = |
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mFrameRecords[newFrameIdx].actualPresentTime; |
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nsecs_t prevPresentTime = |
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mFrameRecords[prevFrameIdx].actualPresentTime; |
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nsecs_t duration = newPresentTime - prevPresentTime; |
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int numPeriods = int((duration + mDisplayPeriod/2) / |
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mDisplayPeriod); |
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for (int i = 0; i < NUM_FRAME_BUCKETS-1; i++) { |
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int nextBucket = 1 << (i+1); |
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if (numPeriods < nextBucket) { |
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numFrames[i]++; |
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return; |
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} |
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} |
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// The last duration bucket is a catch-all. |
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numFrames[NUM_FRAME_BUCKETS-1]++; |
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} |
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} |
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} |
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void FrameTracker::resetFrameCountersLocked() { |
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for (int i = 0; i < NUM_FRAME_BUCKETS; i++) { |
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mNumFrames[i] = 0; |
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} |
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} |
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void FrameTracker::logStatsLocked(const String8& name) const { |
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for (int i = 0; i < NUM_FRAME_BUCKETS; i++) { |
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if (mNumFrames[i] > 0) { |
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EventLog::logFrameDurations(name, mNumFrames, NUM_FRAME_BUCKETS); |
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return; |
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} |
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} |
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} |
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bool FrameTracker::isFrameValidLocked(size_t idx) const { |
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return mFrameRecords[idx].actualPresentTime > 0 && |
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mFrameRecords[idx].actualPresentTime < INT64_MAX; |
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} |
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void FrameTracker::dumpStats(String8& result) const { |
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Mutex::Autolock lock(mMutex); |
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processFencesLocked(); |
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const size_t o = mOffset; |
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for (size_t i = 1; i < NUM_FRAME_RECORDS; i++) { |
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const size_t index = (o+i) % NUM_FRAME_RECORDS; |
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result.appendFormat("%" PRId64 "\t%" PRId64 "\t%" PRId64 "\n", |
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mFrameRecords[index].desiredPresentTime, |
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mFrameRecords[index].actualPresentTime, |
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mFrameRecords[index].frameReadyTime); |
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} |
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result.append("\n"); |
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} |
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} // namespace android
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