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Kalle Raitaa099a242017-01-11 11:17:29 -08001/*
2 * Copyright (C) 2017 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#undef LOG_TAG
19#define LOG_TAG "FakeComposer"
20
21#include "FakeComposerClient.h"
22
23#include <gui/SurfaceComposerClient.h>
24
25#include <log/log.h>
26
27#include <gtest/gtest.h>
28
29#include <inttypes.h>
30#include <time.h>
31#include <algorithm>
32#include <condition_variable>
33#include <iostream>
34#include <mutex>
35#include <set>
36#include <thread>
37
38constexpr Config NULL_DISPLAY_CONFIG = static_cast<Config>(0);
Kalle Raitaa099a242017-01-11 11:17:29 -080039
40using namespace sftest;
41
42using android::Condition;
43using android::Mutex;
44
45using Clock = std::chrono::steady_clock;
46using TimePoint = std::chrono::time_point<Clock>;
47
48namespace {
49
50// Internal state of a layer in the HWC API.
51class LayerImpl {
52public:
53 LayerImpl() = default;
54
55 bool mValid = true;
56 RenderState mRenderState;
57 uint32_t mZ = 0;
58};
59
60// Struct for storing per frame rectangle state. Contains the render
61// state shared to the test case. Basically a snapshot and a subset of
62// LayerImpl sufficient to re-create the pixels of a layer for the
63// frame.
64struct FrameRect {
65public:
66 FrameRect(Layer layer_, const RenderState& state, uint32_t z_)
67 : layer(layer_), renderState(state), z(z_) {}
68
69 const Layer layer;
70 const RenderState renderState;
71 const uint32_t z;
72};
73
74// Collection of FrameRects forming one rendered frame. Could store
75// related fences and other data in the future.
76class Frame {
77public:
78 Frame() = default;
79 std::vector<std::unique_ptr<FrameRect>> rectangles;
80};
81
82class DelayedEventGenerator {
83public:
84 DelayedEventGenerator(std::function<void()> onTimerExpired)
85 : mOnTimerExpired(onTimerExpired), mThread([this]() { loop(); }) {}
86
87 ~DelayedEventGenerator() {
88 ALOGI("DelayedEventGenerator exiting.");
89 {
90 std::unique_lock<std::mutex> lock(mMutex);
91 mRunning = false;
92 mWakeups.clear();
93 mCondition.notify_one();
94 }
95 mThread.join();
96 ALOGI("DelayedEventGenerator exited.");
97 }
98
99 void wakeAfter(std::chrono::nanoseconds waitTime) {
100 std::unique_lock<std::mutex> lock(mMutex);
101 mWakeups.insert(Clock::now() + waitTime);
102 mCondition.notify_one();
103 }
104
105private:
106 void loop() {
107 while (true) {
108 // Lock scope
109 {
110 std::unique_lock<std::mutex> lock(mMutex);
111 mCondition.wait(lock, [this]() { return !mRunning || !mWakeups.empty(); });
112 if (!mRunning && mWakeups.empty()) {
113 // This thread should only exit once the destructor has been called and all
114 // wakeups have been processed
115 return;
116 }
117
118 // At this point, mWakeups will not be empty
119
120 TimePoint target = *(mWakeups.begin());
121 auto status = mCondition.wait_until(lock, target);
122 while (status == std::cv_status::no_timeout) {
123 // This was either a spurious wakeup or another wakeup was added, so grab the
124 // oldest point and wait again
125 target = *(mWakeups.begin());
126 status = mCondition.wait_until(lock, target);
127 }
128
129 // status must have been timeout, so we can finally clear this point
130 mWakeups.erase(target);
131 }
132 // Callback *without* locks!
133 mOnTimerExpired();
134 }
135 }
136
137 std::function<void()> mOnTimerExpired;
138 std::thread mThread;
139 std::mutex mMutex;
140 std::condition_variable mCondition;
141 bool mRunning = true;
142 std::set<TimePoint> mWakeups;
143};
144
145} // namespace
146
147FakeComposerClient::FakeComposerClient()
148 : mCallbacksOn(false),
149 mClient(nullptr),
150 mCurrentConfig(NULL_DISPLAY_CONFIG),
151 mVsyncEnabled(false),
152 mLayers(),
153 mDelayedEventGenerator(
154 std::make_unique<DelayedEventGenerator>([this]() { this->requestVSync(); })),
155 mSurfaceComposer(nullptr) {}
156
157FakeComposerClient::~FakeComposerClient() {}
158
159void FakeComposerClient::removeClient() {
160 ALOGV("removeClient");
161 // TODO: Ahooga! Only thing current lifetime management choices in
162 // APIs make possible. Sad.
163 delete this;
164}
165
166void FakeComposerClient::enableCallback(bool enable) {
167 ALOGV("enableCallback");
168 mCallbacksOn = enable;
169 if (mCallbacksOn) {
Kalle Raitaa7de5942017-08-08 14:34:04 -0700170 mClient->onHotplug(PRIMARY_DISPLAY, IComposerCallback::Connection::CONNECTED);
Kalle Raitaa099a242017-01-11 11:17:29 -0800171 }
172}
173
174void FakeComposerClient::hotplugDisplay(Display display, IComposerCallback::Connection state) {
175 if (mCallbacksOn) {
176 mClient->onHotplug(display, state);
177 }
178}
179
180uint32_t FakeComposerClient::getMaxVirtualDisplayCount() {
181 ALOGV("getMaxVirtualDisplayCount");
182 return 1;
183}
184
185Error FakeComposerClient::createVirtualDisplay(uint32_t /*width*/, uint32_t /*height*/,
186 PixelFormat* /*format*/, Display* /*outDisplay*/) {
187 ALOGV("createVirtualDisplay");
188 return Error::NONE;
189}
190
191Error FakeComposerClient::destroyVirtualDisplay(Display /*display*/) {
192 ALOGV("destroyVirtualDisplay");
193 return Error::NONE;
194}
195
196Error FakeComposerClient::createLayer(Display /*display*/, Layer* outLayer) {
197 ALOGV("createLayer");
198 *outLayer = mLayers.size();
199 auto newLayer = std::make_unique<LayerImpl>();
200 mLayers.push_back(std::move(newLayer));
201 return Error::NONE;
202}
203
204Error FakeComposerClient::destroyLayer(Display /*display*/, Layer layer) {
205 ALOGV("destroyLayer");
206 mLayers[layer]->mValid = false;
207 return Error::NONE;
208}
209
210Error FakeComposerClient::getActiveConfig(Display /*display*/, Config* outConfig) {
211 ALOGV("getActiveConfig");
212
213 // TODO Assert outConfig != nullptr
214
215 // TODO This is my reading of the
216 // IComposerClient::getActiveConfig, but returning BAD_CONFIG
217 // seems to not fit SurfaceFlinger plans. See version 2 below.
218 // if (mCurrentConfig == NULL_DISPLAY_CONFIG) {
219 // return Error::BAD_CONFIG;
220 // }
221 //*outConfig = mCurrentConfig;
222 *outConfig = 1; // Very special config for you my friend
223 return Error::NONE;
224}
225
226Error FakeComposerClient::getClientTargetSupport(Display /*display*/, uint32_t /*width*/,
227 uint32_t /*height*/, PixelFormat /*format*/,
228 Dataspace /*dataspace*/) {
229 ALOGV("getClientTargetSupport");
230 return Error::NONE;
231}
232
233Error FakeComposerClient::getColorModes(Display /*display*/, hidl_vec<ColorMode>* /*outModes*/) {
234 ALOGV("getColorModes");
235 return Error::NONE;
236}
237
238Error FakeComposerClient::getDisplayAttribute(Display display, Config config,
239 IComposerClient::Attribute attribute,
240 int32_t* outValue) {
241 ALOGV("getDisplayAttribute (%d, %d, %d, %p)", static_cast<int>(display),
242 static_cast<int>(config), static_cast<int>(attribute), outValue);
243
244 // TODO: SOOO much fun to be had with these alone
245 switch (attribute) {
246 case IComposerClient::Attribute::WIDTH:
247 *outValue = 1920;
248 break;
249 case IComposerClient::Attribute::HEIGHT:
250 *outValue = 1080;
251 break;
252 case IComposerClient::Attribute::VSYNC_PERIOD:
253 *outValue = 1666666666;
254 break; // TOOD: Tests break down if lowered to 16ms?
255 case IComposerClient::Attribute::DPI_X:
256 *outValue = 240;
257 break;
258 case IComposerClient::Attribute::DPI_Y:
259 *outValue = 240;
260 break;
261 default:
262 LOG_ALWAYS_FATAL("Say what!?! New attribute");
263 }
264
265 return Error::NONE;
266}
267
268Error FakeComposerClient::getDisplayConfigs(Display /*display*/, hidl_vec<Config>* outConfigs) {
269 ALOGV("getDisplayConfigs");
270 // TODO assert display == 1, outConfigs != nullptr
271
272 outConfigs->resize(1);
273 (*outConfigs)[0] = 1;
274
275 return Error::NONE;
276}
277
278Error FakeComposerClient::getDisplayName(Display /*display*/, hidl_string* /*outName*/) {
279 ALOGV("getDisplayName");
280 return Error::NONE;
281}
282
283Error FakeComposerClient::getDisplayType(Display /*display*/,
284 IComposerClient::DisplayType* outType) {
285 ALOGV("getDisplayType");
286 // TODO: This setting nothing on the output had no effect on initial trials. Is first display
287 // assumed to be physical?
288 *outType = static_cast<IComposerClient::DisplayType>(HWC2_DISPLAY_TYPE_PHYSICAL);
289 return Error::NONE;
290}
291
292Error FakeComposerClient::getDozeSupport(Display /*display*/, bool* /*outSupport*/) {
293 ALOGV("getDozeSupport");
294 return Error::NONE;
295}
296
297Error FakeComposerClient::getHdrCapabilities(Display /*display*/, hidl_vec<Hdr>* /*outTypes*/,
298 float* /*outMaxLuminance*/,
299 float* /*outMaxAverageLuminance*/,
300 float* /*outMinLuminance*/) {
301 ALOGV("getHdrCapabilities");
302 return Error::NONE;
303}
304
305Error FakeComposerClient::setActiveConfig(Display /*display*/, Config config) {
306 ALOGV("setActiveConfig");
307 mCurrentConfig = config;
308 return Error::NONE;
309}
310
311Error FakeComposerClient::setColorMode(Display /*display*/, ColorMode /*mode*/) {
312 ALOGV("setColorMode");
313 return Error::NONE;
314}
315
316Error FakeComposerClient::setPowerMode(Display /*display*/, IComposerClient::PowerMode /*mode*/) {
317 ALOGV("setPowerMode");
318 return Error::NONE;
319}
320
321Error FakeComposerClient::setVsyncEnabled(Display /*display*/, IComposerClient::Vsync enabled) {
322 mVsyncEnabled = (enabled == IComposerClient::Vsync::ENABLE);
323 ALOGV("setVsyncEnabled(%s)", mVsyncEnabled ? "ENABLE" : "DISABLE");
324 return Error::NONE;
325}
326
327Error FakeComposerClient::setColorTransform(Display /*display*/, const float* /*matrix*/,
328 int32_t /*hint*/) {
329 ALOGV("setColorTransform");
330 return Error::NONE;
331}
332
333Error FakeComposerClient::setClientTarget(Display /*display*/, buffer_handle_t /*target*/,
334 int32_t /*acquireFence*/, int32_t /*dataspace*/,
335 const std::vector<hwc_rect_t>& /*damage*/) {
336 ALOGV("setClientTarget");
337 return Error::NONE;
338}
339
340Error FakeComposerClient::setOutputBuffer(Display /*display*/, buffer_handle_t /*buffer*/,
341 int32_t /*releaseFence*/) {
342 ALOGV("setOutputBuffer");
343 return Error::NONE;
344}
345
346Error FakeComposerClient::validateDisplay(
347 Display /*display*/, std::vector<Layer>* /*outChangedLayers*/,
348 std::vector<IComposerClient::Composition>* /*outCompositionTypes*/,
349 uint32_t* /*outDisplayRequestMask*/, std::vector<Layer>* /*outRequestedLayers*/,
350 std::vector<uint32_t>* /*outRequestMasks*/) {
351 ALOGV("validateDisplay");
352 // TODO: Assume touching nothing means All Korrekt!
353 return Error::NONE;
354}
355
356Error FakeComposerClient::acceptDisplayChanges(Display /*display*/) {
357 ALOGV("acceptDisplayChanges");
358 // Didn't ask for changes because software is omnipotent.
359 return Error::NONE;
360}
361
362bool layerZOrdering(const std::unique_ptr<FrameRect>& a, const std::unique_ptr<FrameRect>& b) {
363 return a->z <= b->z;
364}
365
366Error FakeComposerClient::presentDisplay(Display /*display*/, int32_t* /*outPresentFence*/,
367 std::vector<Layer>* /*outLayers*/,
368 std::vector<int32_t>* /*outReleaseFences*/) {
369 ALOGV("presentDisplay");
370 // TODO Leaving layers and their fences out for now. Doing so
371 // means that we've already processed everything. Important to
372 // test that the fences are respected, though. (How?)
373
374 std::unique_ptr<Frame> newFrame(new Frame);
375 for (uint64_t layer = 0; layer < mLayers.size(); layer++) {
376 const LayerImpl& layerImpl = *mLayers[layer];
377
378 if (!layerImpl.mValid) continue;
379
380 auto rect = std::make_unique<FrameRect>(layer, layerImpl.mRenderState, layerImpl.mZ);
381 newFrame->rectangles.push_back(std::move(rect));
382 }
383 std::sort(newFrame->rectangles.begin(), newFrame->rectangles.end(), layerZOrdering);
384 {
385 Mutex::Autolock _l(mStateMutex);
386 mFrames.push_back(std::move(newFrame));
387 mFramesAvailable.broadcast();
388 }
389 return Error::NONE;
390}
391
392Error FakeComposerClient::setLayerCursorPosition(Display /*display*/, Layer /*layer*/,
393 int32_t /*x*/, int32_t /*y*/) {
394 ALOGV("setLayerCursorPosition");
395 return Error::NONE;
396}
397
398Error FakeComposerClient::setLayerBuffer(Display /*display*/, Layer layer, buffer_handle_t buffer,
399 int32_t acquireFence) {
400 ALOGV("setLayerBuffer");
401 LayerImpl& l = getLayerImpl(layer);
402 if (buffer != l.mRenderState.mBuffer) {
403 l.mRenderState.mSwapCount++; // TODO: Is setting to same value a swap or not?
404 }
405 l.mRenderState.mBuffer = buffer;
406 l.mRenderState.mAcquireFence = acquireFence;
407
408 return Error::NONE;
409}
410
411Error FakeComposerClient::setLayerSurfaceDamage(Display /*display*/, Layer /*layer*/,
412 const std::vector<hwc_rect_t>& /*damage*/) {
413 ALOGV("setLayerSurfaceDamage");
414 return Error::NONE;
415}
416
417Error FakeComposerClient::setLayerBlendMode(Display /*display*/, Layer layer, int32_t mode) {
418 ALOGV("setLayerBlendMode");
419 getLayerImpl(layer).mRenderState.mBlendMode = static_cast<hwc2_blend_mode_t>(mode);
420 return Error::NONE;
421}
422
423Error FakeComposerClient::setLayerColor(Display /*display*/, Layer layer,
424 IComposerClient::Color color) {
425 ALOGV("setLayerColor");
426 getLayerImpl(layer).mRenderState.mLayerColor.r = color.r;
427 getLayerImpl(layer).mRenderState.mLayerColor.g = color.g;
428 getLayerImpl(layer).mRenderState.mLayerColor.b = color.b;
429 getLayerImpl(layer).mRenderState.mLayerColor.a = color.a;
430 return Error::NONE;
431}
432
433Error FakeComposerClient::setLayerCompositionType(Display /*display*/, Layer /*layer*/,
434 int32_t /*type*/) {
435 ALOGV("setLayerCompositionType");
436 return Error::NONE;
437}
438
439Error FakeComposerClient::setLayerDataspace(Display /*display*/, Layer /*layer*/,
440 int32_t /*dataspace*/) {
441 ALOGV("setLayerDataspace");
442 return Error::NONE;
443}
444
445Error FakeComposerClient::setLayerDisplayFrame(Display /*display*/, Layer layer,
446 const hwc_rect_t& frame) {
447 ALOGV("setLayerDisplayFrame (%d, %d, %d, %d)", frame.left, frame.top, frame.right,
448 frame.bottom);
449 getLayerImpl(layer).mRenderState.mDisplayFrame = frame;
450 return Error::NONE;
451}
452
453Error FakeComposerClient::setLayerPlaneAlpha(Display /*display*/, Layer layer, float alpha) {
454 ALOGV("setLayerPlaneAlpha");
455 getLayerImpl(layer).mRenderState.mPlaneAlpha = alpha;
456 return Error::NONE;
457}
458
459Error FakeComposerClient::setLayerSidebandStream(Display /*display*/, Layer /*layer*/,
460 buffer_handle_t /*stream*/) {
461 ALOGV("setLayerSidebandStream");
462 return Error::NONE;
463}
464
465Error FakeComposerClient::setLayerSourceCrop(Display /*display*/, Layer layer,
466 const hwc_frect_t& crop) {
467 ALOGV("setLayerSourceCrop");
468 getLayerImpl(layer).mRenderState.mSourceCrop = crop;
469 return Error::NONE;
470}
471
472Error FakeComposerClient::setLayerTransform(Display /*display*/, Layer layer, int32_t transform) {
473 ALOGV("setLayerTransform");
474 getLayerImpl(layer).mRenderState.mTransform = static_cast<hwc_transform_t>(transform);
475 return Error::NONE;
476}
477
478Error FakeComposerClient::setLayerVisibleRegion(Display /*display*/, Layer layer,
479 const std::vector<hwc_rect_t>& visible) {
480 ALOGV("setLayerVisibleRegion");
481 getLayerImpl(layer).mRenderState.mVisibleRegion = visible;
482 return Error::NONE;
483}
484
485Error FakeComposerClient::setLayerZOrder(Display /*display*/, Layer layer, uint32_t z) {
486 ALOGV("setLayerZOrder");
487 getLayerImpl(layer).mZ = z;
488 return Error::NONE;
489}
490
491//////////////////////////////////////////////////////////////////
492
493void FakeComposerClient::setClient(ComposerClient* client) {
494 mClient = client;
495}
496
497void FakeComposerClient::requestVSync(uint64_t vsyncTime) {
498 if (mCallbacksOn) {
499 uint64_t timestamp = vsyncTime;
500 ALOGV("Vsync");
501 if (timestamp == 0) {
502 struct timespec ts;
503 clock_gettime(CLOCK_MONOTONIC, &ts);
504 timestamp = ts.tv_sec * 1000 * 1000 * 1000 + ts.tv_nsec;
505 }
506 if (mSurfaceComposer != nullptr) {
507 mSurfaceComposer->injectVSync(timestamp);
508 } else {
Kalle Raitaa7de5942017-08-08 14:34:04 -0700509 mClient->onVsync(PRIMARY_DISPLAY, timestamp);
Kalle Raitaa099a242017-01-11 11:17:29 -0800510 }
511 }
512}
513
514void FakeComposerClient::runVSyncAfter(std::chrono::nanoseconds wait) {
515 mDelayedEventGenerator->wakeAfter(wait);
516}
517
518LayerImpl& FakeComposerClient::getLayerImpl(Layer handle) {
519 // TODO Change these to an internal state check that can be
520 // invoked from the gtest? GTest macros do not seem all that safe
521 // when used outside the test class
522 EXPECT_GE(handle, static_cast<Layer>(0));
523 EXPECT_LT(handle, mLayers.size());
524 return *(mLayers[handle]);
525}
526
527int FakeComposerClient::getFrameCount() const {
528 return mFrames.size();
529}
530
531static std::vector<RenderState> extractRenderState(
532 const std::vector<std::unique_ptr<FrameRect>>& internalRects) {
533 std::vector<RenderState> result;
534 result.reserve(internalRects.size());
535 for (const std::unique_ptr<FrameRect>& rect : internalRects) {
536 result.push_back(rect->renderState);
537 }
538 return result;
539}
540
541std::vector<RenderState> FakeComposerClient::getFrameRects(int frame) const {
542 Mutex::Autolock _l(mStateMutex);
543 return extractRenderState(mFrames[frame]->rectangles);
544}
545
546std::vector<RenderState> FakeComposerClient::getLatestFrame() const {
547 Mutex::Autolock _l(mStateMutex);
548 return extractRenderState(mFrames[mFrames.size() - 1]->rectangles);
549}
550
551void FakeComposerClient::runVSyncAndWait(std::chrono::nanoseconds maxWait) {
552 int currentFrame = 0;
553 {
554 Mutex::Autolock _l(mStateMutex); // I hope this is ok...
555 currentFrame = static_cast<int>(mFrames.size());
556 requestVSync();
557 }
558 waitUntilFrame(currentFrame + 1, maxWait);
559}
560
561void FakeComposerClient::waitUntilFrame(int targetFrame, std::chrono::nanoseconds maxWait) const {
562 Mutex::Autolock _l(mStateMutex);
563 while (mFrames.size() < static_cast<size_t>(targetFrame)) {
564 android::status_t result = mFramesAvailable.waitRelative(mStateMutex, maxWait.count());
565 if (result == android::TIMED_OUT) {
566 ALOGE("Waiting for frame %d (at frame %zu now) timed out after %lld ns", targetFrame,
567 mFrames.size(), maxWait.count());
568 return;
569 }
570 }
571}
572
573void FakeComposerClient::clearFrames() {
574 Mutex::Autolock _l(mStateMutex);
575 mFrames.clear();
576 for (const std::unique_ptr<LayerImpl>& layer : mLayers) {
577 if (layer->mValid) {
578 layer->mRenderState.mSwapCount = 0;
579 }
580 }
581}
582
583void FakeComposerClient::onSurfaceFlingerStart() {
584 mSurfaceComposer == nullptr;
585 do {
586 mSurfaceComposer = new android::SurfaceComposerClient;
587 android::status_t initResult = mSurfaceComposer->initCheck();
588 if (initResult != android::NO_ERROR) {
589 ALOGD("Init result: %d", initResult);
590 mSurfaceComposer = nullptr;
591 std::this_thread::sleep_for(10ms);
592 }
593 } while (mSurfaceComposer == nullptr);
594 ALOGD("SurfaceComposerClient created");
595 mSurfaceComposer->enableVSyncInjections(true);
596}
597
598void FakeComposerClient::onSurfaceFlingerStop() {
599 mSurfaceComposer->dispose();
600 mSurfaceComposer.clear();
601}
602
603// Includes destroyed layers, stored in order of creation.
604int FakeComposerClient::getLayerCount() const {
605 return mLayers.size();
606}
607
608Layer FakeComposerClient::getLayer(size_t index) const {
609 // NOTE: If/when passing calls through to actual implementation,
610 // this might get more involving.
611 return static_cast<Layer>(index);
612}