Kalle Raita | a099a24 | 2017-01-11 11:17:29 -0800 | [diff] [blame] | 1 | /* |
| 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 | |
| 38 | constexpr Config NULL_DISPLAY_CONFIG = static_cast<Config>(0); |
Kalle Raita | a099a24 | 2017-01-11 11:17:29 -0800 | [diff] [blame] | 39 | |
| 40 | using namespace sftest; |
| 41 | |
| 42 | using android::Condition; |
| 43 | using android::Mutex; |
| 44 | |
| 45 | using Clock = std::chrono::steady_clock; |
| 46 | using TimePoint = std::chrono::time_point<Clock>; |
| 47 | |
| 48 | namespace { |
| 49 | |
| 50 | // Internal state of a layer in the HWC API. |
| 51 | class LayerImpl { |
| 52 | public: |
| 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. |
| 64 | struct FrameRect { |
| 65 | public: |
| 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. |
| 76 | class Frame { |
| 77 | public: |
| 78 | Frame() = default; |
| 79 | std::vector<std::unique_ptr<FrameRect>> rectangles; |
| 80 | }; |
| 81 | |
| 82 | class DelayedEventGenerator { |
| 83 | public: |
| 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 | |
| 105 | private: |
| 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 | |
| 147 | FakeComposerClient::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 | |
| 157 | FakeComposerClient::~FakeComposerClient() {} |
| 158 | |
| 159 | void 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 | |
| 166 | void FakeComposerClient::enableCallback(bool enable) { |
| 167 | ALOGV("enableCallback"); |
| 168 | mCallbacksOn = enable; |
| 169 | if (mCallbacksOn) { |
Kalle Raita | a7de594 | 2017-08-08 14:34:04 -0700 | [diff] [blame^] | 170 | mClient->onHotplug(PRIMARY_DISPLAY, IComposerCallback::Connection::CONNECTED); |
Kalle Raita | a099a24 | 2017-01-11 11:17:29 -0800 | [diff] [blame] | 171 | } |
| 172 | } |
| 173 | |
| 174 | void FakeComposerClient::hotplugDisplay(Display display, IComposerCallback::Connection state) { |
| 175 | if (mCallbacksOn) { |
| 176 | mClient->onHotplug(display, state); |
| 177 | } |
| 178 | } |
| 179 | |
| 180 | uint32_t FakeComposerClient::getMaxVirtualDisplayCount() { |
| 181 | ALOGV("getMaxVirtualDisplayCount"); |
| 182 | return 1; |
| 183 | } |
| 184 | |
| 185 | Error FakeComposerClient::createVirtualDisplay(uint32_t /*width*/, uint32_t /*height*/, |
| 186 | PixelFormat* /*format*/, Display* /*outDisplay*/) { |
| 187 | ALOGV("createVirtualDisplay"); |
| 188 | return Error::NONE; |
| 189 | } |
| 190 | |
| 191 | Error FakeComposerClient::destroyVirtualDisplay(Display /*display*/) { |
| 192 | ALOGV("destroyVirtualDisplay"); |
| 193 | return Error::NONE; |
| 194 | } |
| 195 | |
| 196 | Error 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 | |
| 204 | Error FakeComposerClient::destroyLayer(Display /*display*/, Layer layer) { |
| 205 | ALOGV("destroyLayer"); |
| 206 | mLayers[layer]->mValid = false; |
| 207 | return Error::NONE; |
| 208 | } |
| 209 | |
| 210 | Error 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 | |
| 226 | Error 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 | |
| 233 | Error FakeComposerClient::getColorModes(Display /*display*/, hidl_vec<ColorMode>* /*outModes*/) { |
| 234 | ALOGV("getColorModes"); |
| 235 | return Error::NONE; |
| 236 | } |
| 237 | |
| 238 | Error 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 | |
| 268 | Error 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 | |
| 278 | Error FakeComposerClient::getDisplayName(Display /*display*/, hidl_string* /*outName*/) { |
| 279 | ALOGV("getDisplayName"); |
| 280 | return Error::NONE; |
| 281 | } |
| 282 | |
| 283 | Error 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 | |
| 292 | Error FakeComposerClient::getDozeSupport(Display /*display*/, bool* /*outSupport*/) { |
| 293 | ALOGV("getDozeSupport"); |
| 294 | return Error::NONE; |
| 295 | } |
| 296 | |
| 297 | Error 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 | |
| 305 | Error FakeComposerClient::setActiveConfig(Display /*display*/, Config config) { |
| 306 | ALOGV("setActiveConfig"); |
| 307 | mCurrentConfig = config; |
| 308 | return Error::NONE; |
| 309 | } |
| 310 | |
| 311 | Error FakeComposerClient::setColorMode(Display /*display*/, ColorMode /*mode*/) { |
| 312 | ALOGV("setColorMode"); |
| 313 | return Error::NONE; |
| 314 | } |
| 315 | |
| 316 | Error FakeComposerClient::setPowerMode(Display /*display*/, IComposerClient::PowerMode /*mode*/) { |
| 317 | ALOGV("setPowerMode"); |
| 318 | return Error::NONE; |
| 319 | } |
| 320 | |
| 321 | Error 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 | |
| 327 | Error FakeComposerClient::setColorTransform(Display /*display*/, const float* /*matrix*/, |
| 328 | int32_t /*hint*/) { |
| 329 | ALOGV("setColorTransform"); |
| 330 | return Error::NONE; |
| 331 | } |
| 332 | |
| 333 | Error 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 | |
| 340 | Error FakeComposerClient::setOutputBuffer(Display /*display*/, buffer_handle_t /*buffer*/, |
| 341 | int32_t /*releaseFence*/) { |
| 342 | ALOGV("setOutputBuffer"); |
| 343 | return Error::NONE; |
| 344 | } |
| 345 | |
| 346 | Error 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 | |
| 356 | Error FakeComposerClient::acceptDisplayChanges(Display /*display*/) { |
| 357 | ALOGV("acceptDisplayChanges"); |
| 358 | // Didn't ask for changes because software is omnipotent. |
| 359 | return Error::NONE; |
| 360 | } |
| 361 | |
| 362 | bool layerZOrdering(const std::unique_ptr<FrameRect>& a, const std::unique_ptr<FrameRect>& b) { |
| 363 | return a->z <= b->z; |
| 364 | } |
| 365 | |
| 366 | Error 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 | |
| 392 | Error FakeComposerClient::setLayerCursorPosition(Display /*display*/, Layer /*layer*/, |
| 393 | int32_t /*x*/, int32_t /*y*/) { |
| 394 | ALOGV("setLayerCursorPosition"); |
| 395 | return Error::NONE; |
| 396 | } |
| 397 | |
| 398 | Error 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 | |
| 411 | Error FakeComposerClient::setLayerSurfaceDamage(Display /*display*/, Layer /*layer*/, |
| 412 | const std::vector<hwc_rect_t>& /*damage*/) { |
| 413 | ALOGV("setLayerSurfaceDamage"); |
| 414 | return Error::NONE; |
| 415 | } |
| 416 | |
| 417 | Error 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 | |
| 423 | Error 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 | |
| 433 | Error FakeComposerClient::setLayerCompositionType(Display /*display*/, Layer /*layer*/, |
| 434 | int32_t /*type*/) { |
| 435 | ALOGV("setLayerCompositionType"); |
| 436 | return Error::NONE; |
| 437 | } |
| 438 | |
| 439 | Error FakeComposerClient::setLayerDataspace(Display /*display*/, Layer /*layer*/, |
| 440 | int32_t /*dataspace*/) { |
| 441 | ALOGV("setLayerDataspace"); |
| 442 | return Error::NONE; |
| 443 | } |
| 444 | |
| 445 | Error 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 | |
| 453 | Error FakeComposerClient::setLayerPlaneAlpha(Display /*display*/, Layer layer, float alpha) { |
| 454 | ALOGV("setLayerPlaneAlpha"); |
| 455 | getLayerImpl(layer).mRenderState.mPlaneAlpha = alpha; |
| 456 | return Error::NONE; |
| 457 | } |
| 458 | |
| 459 | Error FakeComposerClient::setLayerSidebandStream(Display /*display*/, Layer /*layer*/, |
| 460 | buffer_handle_t /*stream*/) { |
| 461 | ALOGV("setLayerSidebandStream"); |
| 462 | return Error::NONE; |
| 463 | } |
| 464 | |
| 465 | Error 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 | |
| 472 | Error 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 | |
| 478 | Error 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 | |
| 485 | Error 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 | |
| 493 | void FakeComposerClient::setClient(ComposerClient* client) { |
| 494 | mClient = client; |
| 495 | } |
| 496 | |
| 497 | void 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 Raita | a7de594 | 2017-08-08 14:34:04 -0700 | [diff] [blame^] | 509 | mClient->onVsync(PRIMARY_DISPLAY, timestamp); |
Kalle Raita | a099a24 | 2017-01-11 11:17:29 -0800 | [diff] [blame] | 510 | } |
| 511 | } |
| 512 | } |
| 513 | |
| 514 | void FakeComposerClient::runVSyncAfter(std::chrono::nanoseconds wait) { |
| 515 | mDelayedEventGenerator->wakeAfter(wait); |
| 516 | } |
| 517 | |
| 518 | LayerImpl& 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 | |
| 527 | int FakeComposerClient::getFrameCount() const { |
| 528 | return mFrames.size(); |
| 529 | } |
| 530 | |
| 531 | static 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 | |
| 541 | std::vector<RenderState> FakeComposerClient::getFrameRects(int frame) const { |
| 542 | Mutex::Autolock _l(mStateMutex); |
| 543 | return extractRenderState(mFrames[frame]->rectangles); |
| 544 | } |
| 545 | |
| 546 | std::vector<RenderState> FakeComposerClient::getLatestFrame() const { |
| 547 | Mutex::Autolock _l(mStateMutex); |
| 548 | return extractRenderState(mFrames[mFrames.size() - 1]->rectangles); |
| 549 | } |
| 550 | |
| 551 | void 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 | |
| 561 | void 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 | |
| 573 | void 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 | |
| 583 | void 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 | |
| 598 | void FakeComposerClient::onSurfaceFlingerStop() { |
| 599 | mSurfaceComposer->dispose(); |
| 600 | mSurfaceComposer.clear(); |
| 601 | } |
| 602 | |
| 603 | // Includes destroyed layers, stored in order of creation. |
| 604 | int FakeComposerClient::getLayerCount() const { |
| 605 | return mLayers.size(); |
| 606 | } |
| 607 | |
| 608 | Layer 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 | } |