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1 /*
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 
17 // TODO(b/129481165): remove the #pragma below and fix conversion issues
18 #pragma clang diagnostic push
19 #pragma clang diagnostic ignored "-Wconversion"
20 #pragma clang diagnostic ignored "-Wextra"
21 
22 //#define LOG_NDEBUG 0
23 #define ATRACE_TAG ATRACE_TAG_GRAPHICS
24 #undef LOG_TAG
25 #define LOG_TAG "RegionSamplingThread"
26 
27 #include "RegionSamplingThread.h"
28 
29 #include <common/trace.h>
30 #include <compositionengine/Display.h>
31 #include <compositionengine/impl/OutputCompositionState.h>
32 #include <cutils/properties.h>
33 #include <ftl/future.h>
34 #include <gui/SpHash.h>
35 #include <gui/SyncScreenCaptureListener.h>
36 #include <renderengine/impl/ExternalTexture.h>
37 #include <ui/DisplayStatInfo.h>
38 
39 #include <string>
40 
41 #include "DisplayDevice.h"
42 #include "FrontEnd/LayerCreationArgs.h"
43 #include "Layer.h"
44 #include "SurfaceFlinger.h"
45 
46 namespace android {
47 using namespace std::chrono_literals;
48 
49 using gui::SpHash;
50 
51 constexpr auto lumaSamplingStepTag = "LumaSamplingStep";
52 enum class samplingStep {
53     noWorkNeeded,
54     idleTimerWaiting,
55     waitForQuietFrame,
56     waitForSamplePhase,
57     sample
58 };
59 
60 constexpr auto defaultRegionSamplingWorkDuration = 3ms;
61 constexpr auto defaultRegionSamplingPeriod = 100ms;
62 constexpr auto defaultRegionSamplingTimerTimeout = 100ms;
63 constexpr auto maxRegionSamplingDelay = 100ms;
64 // TODO: (b/127403193) duration to string conversion could probably be constexpr
65 template <typename Rep, typename Per>
toNsString(std::chrono::duration<Rep,Per> t)66 inline std::string toNsString(std::chrono::duration<Rep, Per> t) {
67     return std::to_string(std::chrono::duration_cast<std::chrono::nanoseconds>(t).count());
68 }
69 
EnvironmentTimingTunables()70 RegionSamplingThread::EnvironmentTimingTunables::EnvironmentTimingTunables() {
71     char value[PROPERTY_VALUE_MAX] = {};
72 
73     property_get("debug.sf.region_sampling_duration_ns", value,
74                  toNsString(defaultRegionSamplingWorkDuration).c_str());
75     int const samplingDurationNsRaw = atoi(value);
76 
77     property_get("debug.sf.region_sampling_period_ns", value,
78                  toNsString(defaultRegionSamplingPeriod).c_str());
79     int const samplingPeriodNsRaw = atoi(value);
80 
81     property_get("debug.sf.region_sampling_timer_timeout_ns", value,
82                  toNsString(defaultRegionSamplingTimerTimeout).c_str());
83     int const samplingTimerTimeoutNsRaw = atoi(value);
84 
85     if ((samplingPeriodNsRaw < 0) || (samplingTimerTimeoutNsRaw < 0)) {
86         ALOGW("User-specified sampling tuning options nonsensical. Using defaults");
87         mSamplingDuration = defaultRegionSamplingWorkDuration;
88         mSamplingPeriod = defaultRegionSamplingPeriod;
89         mSamplingTimerTimeout = defaultRegionSamplingTimerTimeout;
90     } else {
91         mSamplingDuration = std::chrono::nanoseconds(samplingDurationNsRaw);
92         mSamplingPeriod = std::chrono::nanoseconds(samplingPeriodNsRaw);
93         mSamplingTimerTimeout = std::chrono::nanoseconds(samplingTimerTimeoutNsRaw);
94     }
95 }
96 
RegionSamplingThread(SurfaceFlinger & flinger,const TimingTunables & tunables)97 RegionSamplingThread::RegionSamplingThread(SurfaceFlinger& flinger, const TimingTunables& tunables)
98       : mFlinger(flinger),
99         mTunables(tunables),
100         mIdleTimer(
101                 "RegSampIdle",
102                 std::chrono::duration_cast<std::chrono::milliseconds>(
103                         mTunables.mSamplingTimerTimeout),
104                 [] {}, [this] { checkForStaleLuma(); }),
105         mLastSampleTime(0ns) {
__anon089dee350302() 106     mThread = std::thread([this]() { threadMain(); });
107     pthread_setname_np(mThread.native_handle(), "RegionSampling");
108     mIdleTimer.start();
109 }
110 
RegionSamplingThread(SurfaceFlinger & flinger)111 RegionSamplingThread::RegionSamplingThread(SurfaceFlinger& flinger)
112       : RegionSamplingThread(flinger,
113                              TimingTunables{defaultRegionSamplingWorkDuration,
114                                             defaultRegionSamplingPeriod,
115                                             defaultRegionSamplingTimerTimeout}) {}
116 
~RegionSamplingThread()117 RegionSamplingThread::~RegionSamplingThread() {
118     mIdleTimer.stop();
119 
120     {
121         std::lock_guard lock(mThreadControlMutex);
122         mRunning = false;
123         mCondition.notify_one();
124     }
125 
126     if (mThread.joinable()) {
127         mThread.join();
128     }
129 }
130 
addListener(const Rect & samplingArea,uint32_t stopLayerId,const sp<IRegionSamplingListener> & listener)131 void RegionSamplingThread::addListener(const Rect& samplingArea, uint32_t stopLayerId,
132                                        const sp<IRegionSamplingListener>& listener) {
133     sp<IBinder> asBinder = IInterface::asBinder(listener);
134     asBinder->linkToDeath(sp<DeathRecipient>::fromExisting(this));
135     std::lock_guard lock(mSamplingMutex);
136     mDescriptors.emplace(wp<IBinder>(asBinder), Descriptor{samplingArea, stopLayerId, listener});
137 }
138 
removeListener(const sp<IRegionSamplingListener> & listener)139 void RegionSamplingThread::removeListener(const sp<IRegionSamplingListener>& listener) {
140     std::lock_guard lock(mSamplingMutex);
141     mDescriptors.erase(wp<IBinder>(IInterface::asBinder(listener)));
142 }
143 
checkForStaleLuma()144 void RegionSamplingThread::checkForStaleLuma() {
145     std::lock_guard lock(mThreadControlMutex);
146 
147     if (mSampleRequestTime.has_value()) {
148         SFTRACE_INT(lumaSamplingStepTag, static_cast<int>(samplingStep::waitForSamplePhase));
149         mSampleRequestTime.reset();
150         mFlinger.scheduleSample();
151     }
152 }
153 
onCompositionComplete(std::optional<std::chrono::steady_clock::time_point> samplingDeadline)154 void RegionSamplingThread::onCompositionComplete(
155         std::optional<std::chrono::steady_clock::time_point> samplingDeadline) {
156     doSample(samplingDeadline);
157 }
158 
doSample(std::optional<std::chrono::steady_clock::time_point> samplingDeadline)159 void RegionSamplingThread::doSample(
160         std::optional<std::chrono::steady_clock::time_point> samplingDeadline) {
161     std::lock_guard lock(mThreadControlMutex);
162     const auto now = std::chrono::steady_clock::now();
163     if (mLastSampleTime + mTunables.mSamplingPeriod > now) {
164         // content changed, but we sampled not too long ago, so we need to sample some time in the
165         // future.
166         SFTRACE_INT(lumaSamplingStepTag, static_cast<int>(samplingStep::idleTimerWaiting));
167         mSampleRequestTime = now;
168         return;
169     }
170     if (!mSampleRequestTime.has_value() || now - *mSampleRequestTime < maxRegionSamplingDelay) {
171         // If there is relatively little time left for surfaceflinger
172         // until the next vsync deadline, defer this sampling work
173         // to a later frame, when hopefully there will be more time.
174         if (samplingDeadline.has_value() && now + mTunables.mSamplingDuration > *samplingDeadline) {
175             SFTRACE_INT(lumaSamplingStepTag, static_cast<int>(samplingStep::waitForQuietFrame));
176             mSampleRequestTime = mSampleRequestTime.value_or(now);
177             return;
178         }
179     }
180 
181     SFTRACE_INT(lumaSamplingStepTag, static_cast<int>(samplingStep::sample));
182 
183     mSampleRequestTime.reset();
184     mLastSampleTime = now;
185 
186     mIdleTimer.reset();
187 
188     mSampleRequested = true;
189     mCondition.notify_one();
190 }
191 
binderDied(const wp<IBinder> & who)192 void RegionSamplingThread::binderDied(const wp<IBinder>& who) {
193     std::lock_guard lock(mSamplingMutex);
194     mDescriptors.erase(who);
195 }
196 
sampleArea(const uint32_t * data,int32_t width,int32_t height,int32_t stride,uint32_t orientation,const Rect & sample_area)197 float sampleArea(const uint32_t* data, int32_t width, int32_t height, int32_t stride,
198                  uint32_t orientation, const Rect& sample_area) {
199     if (!sample_area.isValid() || (sample_area.getWidth() > width) ||
200         (sample_area.getHeight() > height)) {
201         ALOGE("invalid sampling region requested");
202         return 0.0f;
203     }
204 
205     const uint32_t pixelCount =
206             (sample_area.bottom - sample_area.top) * (sample_area.right - sample_area.left);
207     uint32_t accumulatedLuma = 0;
208 
209     // Calculates luma with approximation of Rec. 709 primaries
210     for (int32_t row = sample_area.top; row < sample_area.bottom; ++row) {
211         const uint32_t* rowBase = data + row * stride;
212         for (int32_t column = sample_area.left; column < sample_area.right; ++column) {
213             uint32_t pixel = rowBase[column];
214             const uint32_t r = pixel & 0xFF;
215             const uint32_t g = (pixel >> 8) & 0xFF;
216             const uint32_t b = (pixel >> 16) & 0xFF;
217             const uint32_t luma = (r * 7 + b * 2 + g * 23) >> 5;
218             accumulatedLuma += luma;
219         }
220     }
221 
222     return accumulatedLuma / (255.0f * pixelCount);
223 }
224 
sampleBuffer(const sp<GraphicBuffer> & buffer,const Point & leftTop,const std::vector<RegionSamplingThread::Descriptor> & descriptors,uint32_t orientation)225 std::vector<float> RegionSamplingThread::sampleBuffer(
226         const sp<GraphicBuffer>& buffer, const Point& leftTop,
227         const std::vector<RegionSamplingThread::Descriptor>& descriptors, uint32_t orientation) {
228     void* data_raw = nullptr;
229     buffer->lock(GRALLOC_USAGE_SW_READ_OFTEN, &data_raw);
230     std::shared_ptr<uint32_t> data(reinterpret_cast<uint32_t*>(data_raw),
231                                    [&buffer](auto) { buffer->unlock(); });
232     if (!data) return {};
233 
234     const int32_t width = buffer->getWidth();
235     const int32_t height = buffer->getHeight();
236     const int32_t stride = buffer->getStride();
237     std::vector<float> lumas(descriptors.size());
238     std::transform(descriptors.begin(), descriptors.end(), lumas.begin(),
239                    [&](auto const& descriptor) {
240                        return sampleArea(data.get(), width, height, stride, orientation,
241                                          descriptor.area - leftTop);
242                    });
243     return lumas;
244 }
245 
captureSample()246 void RegionSamplingThread::captureSample() {
247     SFTRACE_CALL();
248     std::lock_guard lock(mSamplingMutex);
249 
250     if (mDescriptors.empty()) {
251         return;
252     }
253 
254     wp<const DisplayDevice> displayWeak;
255 
256     ui::LayerStack layerStack;
257     ui::Transform::RotationFlags orientation;
258     ui::Size displaySize;
259     Rect layerStackSpaceRect;
260 
261     {
262         // TODO(b/159112860): Don't keep sp<DisplayDevice> outside of SF main thread
263         const sp<const DisplayDevice> display = mFlinger.getDefaultDisplayDevice();
264         displayWeak = display;
265         layerStack = display->getLayerStack();
266         orientation = ui::Transform::toRotationFlags(display->getOrientation());
267         displaySize = display->getSize();
268         layerStackSpaceRect = display->getLayerStackSpaceRect();
269     }
270 
271     std::vector<RegionSamplingThread::Descriptor> descriptors;
272     Region sampleRegion;
273     for (const auto& [listener, descriptor] : mDescriptors) {
274         sampleRegion.orSelf(descriptor.area);
275         descriptors.emplace_back(descriptor);
276     }
277 
278     const Rect sampledBounds = sampleRegion.bounds();
279 
280     std::unordered_set<sp<IRegionSamplingListener>, SpHash<IRegionSamplingListener>> listeners;
281 
282     auto layerFilterFn = [&](const char* layerName, uint32_t layerId, const Rect& bounds,
283                              const ui::Transform transform, bool& outStopTraversal) -> bool {
284         // Likewise if we just found a stop layer, set the flag and abort
285         for (const auto& [area, stopLayerId, listener] : descriptors) {
286             if (stopLayerId != UNASSIGNED_LAYER_ID && layerId == stopLayerId) {
287                 outStopTraversal = true;
288                 return false;
289             }
290         }
291 
292         // Compute the layer's position on the screen
293         constexpr bool roundOutwards = true;
294         Rect transformed = transform.transform(bounds, roundOutwards);
295 
296         // If this layer doesn't intersect with the larger sampledBounds, skip capturing it
297         Rect ignore;
298         if (!transformed.intersect(sampledBounds, &ignore)) return false;
299 
300         // If the layer doesn't intersect a sampling area, skip capturing it
301         bool intersectsAnyArea = false;
302         for (const auto& [area, stopLayer, listener] : descriptors) {
303             if (transformed.intersect(area, &ignore)) {
304                 intersectsAnyArea = true;
305                 listeners.insert(listener);
306             }
307         }
308         if (!intersectsAnyArea) return false;
309 
310         ALOGV("Traversing [%s] [%d, %d, %d, %d]", layerName, bounds.left, bounds.top, bounds.right,
311               bounds.bottom);
312 
313         return true;
314     };
315 
316     auto filterFn = [&](const frontend::LayerSnapshot& snapshot, bool& outStopTraversal) -> bool {
317         const Rect bounds = frontend::RequestedLayerState::reduce(Rect(snapshot.geomLayerBounds),
318                                                                   snapshot.transparentRegionHint);
319         const ui::Transform transform = snapshot.geomLayerTransform;
320         return layerFilterFn(snapshot.name.c_str(), snapshot.path.id, bounds, transform,
321                              outStopTraversal);
322     };
323     auto getLayerSnapshotsFn =
324             mFlinger.getLayerSnapshotsForScreenshots(layerStack, CaptureArgs::UNSET_UID, filterFn);
325 
326     std::shared_ptr<renderengine::ExternalTexture> buffer = nullptr;
327     if (mCachedBuffer && mCachedBuffer->getBuffer()->getWidth() == sampledBounds.getWidth() &&
328         mCachedBuffer->getBuffer()->getHeight() == sampledBounds.getHeight()) {
329         buffer = mCachedBuffer;
330     } else {
331         const uint32_t usage =
332                 GRALLOC_USAGE_SW_READ_OFTEN | GRALLOC_USAGE_HW_RENDER | GRALLOC_USAGE_HW_TEXTURE;
333         sp<GraphicBuffer> graphicBuffer =
334                 sp<GraphicBuffer>::make(sampledBounds.getWidth(), sampledBounds.getHeight(),
335                                         PIXEL_FORMAT_RGBA_8888, 1, usage, "RegionSamplingThread");
336         const status_t bufferStatus = graphicBuffer->initCheck();
337         LOG_ALWAYS_FATAL_IF(bufferStatus != OK, "captureSample: Buffer failed to allocate: %d",
338                             bufferStatus);
339         buffer = std::make_shared<
340                 renderengine::impl::ExternalTexture>(graphicBuffer, mFlinger.getRenderEngine(),
341                                                      renderengine::impl::ExternalTexture::Usage::
342                                                              WRITEABLE);
343     }
344 
345     constexpr bool kRegionSampling = true;
346     constexpr bool kGrayscale = false;
347     constexpr bool kIsProtected = false;
348 
349     SurfaceFlinger::ScreenshotArgs screenshotArgs;
350     screenshotArgs.captureTypeVariant = displayWeak;
351     screenshotArgs.displayIdVariant = std::nullopt;
352     screenshotArgs.sourceCrop = sampledBounds.isEmpty() ? layerStackSpaceRect : sampledBounds;
353     screenshotArgs.reqSize = sampledBounds.getSize();
354     screenshotArgs.dataspace = ui::Dataspace::V0_SRGB;
355     screenshotArgs.isSecure = true;
356     screenshotArgs.seamlessTransition = false;
357 
358     std::vector<std::pair<Layer*, sp<LayerFE>>> layers;
359     mFlinger.getSnapshotsFromMainThread(screenshotArgs, getLayerSnapshotsFn, layers);
360     FenceResult fenceResult = mFlinger.captureScreenshot(screenshotArgs, buffer, kRegionSampling,
361                                                          kGrayscale, kIsProtected, nullptr, layers)
362                                       .get();
363     if (fenceResult.ok()) {
364         fenceResult.value()->waitForever(LOG_TAG);
365     }
366 
367     std::vector<Descriptor> activeDescriptors;
368     for (const auto& descriptor : descriptors) {
369         if (listeners.count(descriptor.listener) != 0) {
370             activeDescriptors.emplace_back(descriptor);
371         }
372     }
373 
374     ALOGV("Sampling %zu descriptors", activeDescriptors.size());
375     std::vector<float> lumas = sampleBuffer(buffer->getBuffer(), sampledBounds.leftTop(),
376                                             activeDescriptors, orientation);
377     if (lumas.size() != activeDescriptors.size()) {
378         ALOGW("collected %zu median luma values for %zu descriptors", lumas.size(),
379               activeDescriptors.size());
380         return;
381     }
382 
383     for (size_t d = 0; d < activeDescriptors.size(); ++d) {
384         activeDescriptors[d].listener->onSampleCollected(lumas[d]);
385     }
386 
387     mCachedBuffer = buffer;
388     SFTRACE_INT(lumaSamplingStepTag, static_cast<int>(samplingStep::noWorkNeeded));
389 }
390 
391 // NO_THREAD_SAFETY_ANALYSIS is because std::unique_lock presently lacks thread safety annotations.
threadMain()392 void RegionSamplingThread::threadMain() NO_THREAD_SAFETY_ANALYSIS {
393     std::unique_lock<std::mutex> lock(mThreadControlMutex);
394     while (mRunning) {
395         if (mSampleRequested) {
396             mSampleRequested = false;
397             lock.unlock();
398             captureSample();
399             lock.lock();
400         }
401         mCondition.wait(lock, [this]() REQUIRES(mThreadControlMutex) {
402             return mSampleRequested || !mRunning;
403         });
404     }
405 }
406 
407 } // namespace android
408 
409 // TODO(b/129481165): remove the #pragma below and fix conversion issues
410 #pragma clang diagnostic pop // ignored "-Wconversion -Wextra"
411