blob: 5aa6e27553ee7b541ea88b5d6f644c5941387708 [file] [log] [blame]
Lloyd Piqued6b579f2018-04-06 15:29:10 -07001/*
2 * Copyright 2018 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#undef LOG_TAG
18#define LOG_TAG "CompositionTest"
19
20#include <gmock/gmock.h>
21#include <gtest/gtest.h>
22
23#include <gui/IProducerListener.h>
24#include <log/log.h>
25#include <system/window.h>
26#include <utils/String8.h>
27
28#include "BufferQueueLayer.h"
29#include "ColorLayer.h"
30#include "Layer.h"
31
32#include "TestableSurfaceFlinger.h"
33#include "mock/DisplayHardware/MockComposer.h"
34#include "mock/DisplayHardware/MockDisplaySurface.h"
35#include "mock/MockDispSync.h"
36#include "mock/MockEventControlThread.h"
37#include "mock/MockEventThread.h"
38#include "mock/MockMessageQueue.h"
39#include "mock/RenderEngine/MockRenderEngine.h"
40
41namespace android {
42namespace {
43
44using testing::_;
45using testing::ByMove;
46using testing::DoAll;
47using testing::IsNull;
48using testing::Mock;
49using testing::NotNull;
50using testing::Ref;
51using testing::Return;
52using testing::ReturnRef;
53using testing::SetArgPointee;
54
55using android::Hwc2::Error;
56using android::Hwc2::IComposer;
57using android::Hwc2::IComposerClient;
58using android::Hwc2::Transform;
59
60using FakeHwcDisplayInjector = TestableSurfaceFlinger::FakeHwcDisplayInjector;
61using FakeDisplayDeviceInjector = TestableSurfaceFlinger::FakeDisplayDeviceInjector;
62
63constexpr hwc2_display_t HWC_DISPLAY = FakeHwcDisplayInjector::DEFAULT_HWC_DISPLAY_ID;
64constexpr hwc2_layer_t HWC_LAYER = 5000;
65constexpr Transform DEFAULT_TRANSFORM = static_cast<Transform>(0);
66
67constexpr int DEFAULT_DISPLAY_WIDTH = 1920;
68constexpr int DEFAULT_DISPLAY_HEIGHT = 1024;
69
70constexpr int DEFAULT_CONFIG_ID = 0;
71constexpr int DEFAULT_TEXTURE_ID = 6000;
72constexpr int DEFAULT_LAYER_STACK = 7000;
73
74constexpr int DEFAULT_DISPLAY_MAX_LUMINANCE = 500;
75
76constexpr int DEFAULT_SIDEBAND_STREAM = 51;
77
78class CompositionTest : public testing::Test {
79public:
80 CompositionTest() {
81 const ::testing::TestInfo* const test_info =
82 ::testing::UnitTest::GetInstance()->current_test_info();
83 ALOGD("**** Setting up for %s.%s\n", test_info->test_case_name(), test_info->name());
84
85 mFlinger.mutableEventControlThread().reset(mEventControlThread);
86 mFlinger.mutableEventThread().reset(mEventThread);
87 mFlinger.mutableEventQueue().reset(mMessageQueue);
88
89 mFlinger.mutablePrimaryDispSync().reset(mPrimaryDispSync);
90 EXPECT_CALL(*mPrimaryDispSync, computeNextRefresh(0)).WillRepeatedly(Return(0));
91 EXPECT_CALL(*mPrimaryDispSync, getPeriod())
92 .WillRepeatedly(Return(FakeHwcDisplayInjector::DEFAULT_REFRESH_RATE));
93
94 mFlinger.setupRenderEngine(std::unique_ptr<renderengine::RenderEngine>(mRenderEngine));
95 setupComposer(0);
96 }
97
98 ~CompositionTest() {
99 const ::testing::TestInfo* const test_info =
100 ::testing::UnitTest::GetInstance()->current_test_info();
101 ALOGD("**** Tearing down after %s.%s\n", test_info->test_case_name(), test_info->name());
102 }
103
104 void setupComposer(int virtualDisplayCount) {
105 mComposer = new Hwc2::mock::Composer();
106 EXPECT_CALL(*mComposer, getCapabilities())
107 .WillOnce(Return(std::vector<IComposer::Capability>()));
108 EXPECT_CALL(*mComposer, getMaxVirtualDisplayCount()).WillOnce(Return(virtualDisplayCount));
109 mFlinger.setupComposer(std::unique_ptr<Hwc2::Composer>(mComposer));
110
111 Mock::VerifyAndClear(mComposer);
112 }
113
114 void setupForceGeometryDirty() {
115 // TODO: This requires the visible region and other related
116 // state to be set, and is problematic for BufferLayers since they are
117 // not visible without a buffer (and setting up a buffer looks like a
118 // pain)
119 // mFlinger.mutableVisibleRegionsDirty() = true;
120
121 mFlinger.mutableGeometryInvalid() = true;
122 }
123
124 template <typename Case>
125 void displayRefreshCompositionDirtyGeometry();
126
127 template <typename Case>
128 void displayRefreshCompositionDirtyFrame();
129
130 template <typename Case>
131 void captureScreenComposition();
132
133 std::unordered_set<HWC2::Capability> mDefaultCapabilities = {HWC2::Capability::SidebandStream};
134
135 TestableSurfaceFlinger mFlinger;
136 sp<DisplayDevice> mDisplay;
137 sp<DisplayDevice> mExternalDisplay;
138 sp<mock::DisplaySurface> mDisplaySurface = new mock::DisplaySurface();
139 renderengine::mock::Surface* mRenderSurface = new renderengine::mock::Surface();
140
141 mock::EventThread* mEventThread = new mock::EventThread();
142 mock::EventControlThread* mEventControlThread = new mock::EventControlThread();
143
144 Hwc2::mock::Composer* mComposer = nullptr;
145 renderengine::mock::RenderEngine* mRenderEngine = new renderengine::mock::RenderEngine();
146 mock::MessageQueue* mMessageQueue = new mock::MessageQueue();
147 mock::DispSync* mPrimaryDispSync = new mock::DispSync();
148 renderengine::mock::Image* mReImage = new renderengine::mock::Image();
149 renderengine::mock::Framebuffer* mReFrameBuffer = new renderengine::mock::Framebuffer();
150
151 sp<Fence> mClientTargetAcquireFence = Fence::NO_FENCE;
152
153 sp<GraphicBuffer> mCaptureScreenBuffer;
154};
155
156template <typename LayerCase>
157void CompositionTest::displayRefreshCompositionDirtyGeometry() {
158 setupForceGeometryDirty();
159 LayerCase::setupForDirtyGeometry(this);
160
161 // --------------------------------------------------------------------
162 // Invocation
163
164 mFlinger.onMessageReceived(MessageQueue::INVALIDATE);
165 mFlinger.onMessageReceived(MessageQueue::REFRESH);
166
167 LayerCase::cleanup(this);
168}
169
170template <typename LayerCase>
171void CompositionTest::displayRefreshCompositionDirtyFrame() {
172 LayerCase::setupForDirtyFrame(this);
173
174 // --------------------------------------------------------------------
175 // Invocation
176
177 mFlinger.onMessageReceived(MessageQueue::INVALIDATE);
178 mFlinger.onMessageReceived(MessageQueue::REFRESH);
179
180 LayerCase::cleanup(this);
181}
182
183template <typename LayerCase>
184void CompositionTest::captureScreenComposition() {
185 LayerCase::setupForScreenCapture(this);
186
187 const Rect sourceCrop(0, 0, DEFAULT_DISPLAY_WIDTH, DEFAULT_DISPLAY_HEIGHT);
188 constexpr int32_t minLayerZ = -1;
189 constexpr int32_t maxLayerZ = 1000;
190 constexpr bool useIdentityTransform = true;
191 constexpr bool forSystem = true;
192
193 DisplayRenderArea renderArea(mDisplay, sourceCrop, DEFAULT_DISPLAY_WIDTH,
194 DEFAULT_DISPLAY_HEIGHT, ui::Transform::ROT_0);
195
196 auto traverseLayers = [this](const LayerVector::Visitor& visitor) {
197 return mFlinger.traverseLayersInDisplay(mDisplay, minLayerZ, maxLayerZ, visitor);
198 };
199
200 // TODO: Eliminate expensive/real allocation if possible.
201 const uint32_t usage = GRALLOC_USAGE_SW_READ_OFTEN | GRALLOC_USAGE_SW_WRITE_OFTEN |
202 GRALLOC_USAGE_HW_RENDER | GRALLOC_USAGE_HW_TEXTURE;
203 mCaptureScreenBuffer = new GraphicBuffer(renderArea.getReqWidth(), renderArea.getReqHeight(),
204 HAL_PIXEL_FORMAT_RGBA_8888, 1, usage, "screenshot");
205
206 int fd = -1;
207 status_t result =
208 mFlinger.captureScreenImplLocked(renderArea, traverseLayers, mCaptureScreenBuffer.get(),
209 useIdentityTransform, forSystem, &fd);
210 if (fd >= 0) {
211 close(fd);
212 }
213
214 EXPECT_EQ(NO_ERROR, result);
215
216 LayerCase::cleanup(this);
217}
218
219/* ------------------------------------------------------------------------
220 * Variants for each display configuration which can be tested
221 */
222
223template <typename Derived>
224struct BaseDisplayVariant {
225 static constexpr bool IS_SECURE = true;
226 static constexpr int INIT_POWER_MODE = HWC_POWER_MODE_NORMAL;
227
228 static void setupPreconditions(CompositionTest* test) {
229 FakeHwcDisplayInjector(DisplayDevice::DISPLAY_PRIMARY, HWC2::DisplayType::Physical)
230 .setCapabilities(&test->mDefaultCapabilities)
231 .inject(&test->mFlinger, test->mComposer);
232
233 test->mDisplay = FakeDisplayDeviceInjector(test->mFlinger, DisplayDevice::DISPLAY_PRIMARY,
234 DisplayDevice::DISPLAY_PRIMARY)
235 .setDisplaySize(DEFAULT_DISPLAY_WIDTH, DEFAULT_DISPLAY_HEIGHT)
236 .setDisplaySurface(test->mDisplaySurface)
237 .setRenderSurface(std::unique_ptr<renderengine::Surface>(
238 test->mRenderSurface))
239 .setSecure(Derived::IS_SECURE)
240 .setPowerMode(Derived::INIT_POWER_MODE)
241 .inject();
242 test->mDisplay->setLayerStack(DEFAULT_LAYER_STACK);
243 }
244
245 template <typename Case>
246 static void setupCommonCompositionCallExpectations(CompositionTest* test) {
247 EXPECT_CALL(*test->mComposer,
248 setColorTransform(HWC_DISPLAY, _, Hwc2::ColorTransform::IDENTITY))
249 .Times(1);
250 EXPECT_CALL(*test->mComposer, presentOrValidateDisplay(HWC_DISPLAY, _, _, _, _)).Times(1);
251 EXPECT_CALL(*test->mComposer, getDisplayRequests(HWC_DISPLAY, _, _, _)).Times(1);
252 EXPECT_CALL(*test->mComposer, acceptDisplayChanges(HWC_DISPLAY)).Times(1);
253 EXPECT_CALL(*test->mComposer, presentDisplay(HWC_DISPLAY, _)).Times(1);
254 EXPECT_CALL(*test->mComposer, getReleaseFences(HWC_DISPLAY, _, _)).Times(1);
255
256 EXPECT_CALL(*test->mRenderEngine, useNativeFenceSync()).WillRepeatedly(Return(true));
257 EXPECT_CALL(*test->mRenderEngine, checkErrors()).WillRepeatedly(Return());
258 EXPECT_CALL(*test->mRenderEngine, isCurrent()).WillRepeatedly(Return(true));
259
260 EXPECT_CALL(*test->mRenderEngine, setCurrentSurface(Ref(*test->mRenderSurface)))
261 .WillOnce(Return(true));
262 EXPECT_CALL(*test->mRenderEngine,
263 setViewportAndProjection(DEFAULT_DISPLAY_WIDTH, DEFAULT_DISPLAY_HEIGHT,
264 Rect(DEFAULT_DISPLAY_WIDTH, DEFAULT_DISPLAY_HEIGHT),
265 ui::Transform::ROT_0))
266 .Times(1);
267
268 EXPECT_CALL(*test->mDisplaySurface, onFrameCommitted()).Times(1);
269 EXPECT_CALL(*test->mDisplaySurface, advanceFrame()).Times(1);
270
271 Case::CompositionType::setupHwcSetCallExpectations(test);
272 Case::CompositionType::setupHwcGetCallExpectations(test);
273 }
274
275 template <typename Case>
276 static void setupCommonScreensCaptureCallExpectations(CompositionTest* test) {
277 // Called once with a non-null value to set a framebuffer, and then
278 // again with nullptr to clear it.
279 EXPECT_CALL(*test->mReFrameBuffer, setNativeWindowBuffer(NotNull())).WillOnce(Return(true));
280 EXPECT_CALL(*test->mReFrameBuffer, setNativeWindowBuffer(IsNull())).WillOnce(Return(true));
281
282 EXPECT_CALL(*test->mRenderEngine, checkErrors()).WillRepeatedly(Return());
283 EXPECT_CALL(*test->mRenderEngine, createFramebuffer())
284 .WillOnce(Return(
285 ByMove(std::unique_ptr<renderengine::Framebuffer>(test->mReFrameBuffer))));
286 EXPECT_CALL(*test->mRenderEngine, bindFrameBuffer(test->mReFrameBuffer)).Times(1);
287 EXPECT_CALL(*test->mRenderEngine, unbindFrameBuffer(test->mReFrameBuffer)).Times(1);
288 EXPECT_CALL(*test->mRenderEngine, clearWithColor(0, 0, 0, 1)).Times(1);
289 EXPECT_CALL(*test->mRenderEngine, flush()).WillOnce(Return(ByMove(base::unique_fd())));
290 EXPECT_CALL(*test->mRenderEngine, finish()).WillOnce(Return(true));
291
292 EXPECT_CALL(*test->mRenderEngine, setOutputDataSpace(ui::Dataspace::SRGB)).Times(1);
293 EXPECT_CALL(*test->mRenderEngine, setDisplayMaxLuminance(DEFAULT_DISPLAY_MAX_LUMINANCE))
294 .Times(1);
295 // This expectation retires on saturation as setViewportAndProjection is
296 // called an extra time for the code path this setup is for.
297 // TODO: Investigate this extra call
298 EXPECT_CALL(*test->mRenderEngine,
299 setViewportAndProjection(DEFAULT_DISPLAY_WIDTH, DEFAULT_DISPLAY_HEIGHT,
300 Rect(DEFAULT_DISPLAY_WIDTH, DEFAULT_DISPLAY_HEIGHT),
301 ui::Transform::ROT_0))
302 .Times(1)
303 .RetiresOnSaturation();
304 EXPECT_CALL(*test->mRenderEngine, disableTexturing()).Times(1);
305 }
306
307 static void setupNonEmptyFrameCompositionCallExpectations(CompositionTest* test) {
308 EXPECT_CALL(*test->mDisplaySurface, beginFrame(true)).Times(1);
309 }
310
311 static void setupEmptyFrameCompositionCallExpectations(CompositionTest* test) {
312 EXPECT_CALL(*test->mDisplaySurface, beginFrame(false)).Times(1);
313 }
314
315 static void setupHwcCompositionCallExpectations(CompositionTest* test) {
316 EXPECT_CALL(*test->mDisplaySurface, prepareFrame(DisplaySurface::COMPOSITION_HWC)).Times(1);
317
318 EXPECT_CALL(*test->mRenderEngine, disableScissor()).Times(1);
319 }
320
321 static void setupRECompositionCallExpectations(CompositionTest* test) {
322 EXPECT_CALL(*test->mDisplaySurface, prepareFrame(DisplaySurface::COMPOSITION_GLES))
323 .Times(1);
324 EXPECT_CALL(*test->mDisplaySurface, getClientTargetAcquireFence())
325 .WillRepeatedly(ReturnRef(test->mClientTargetAcquireFence));
326
327 EXPECT_CALL(*test->mRenderEngine, setOutputDataSpace(ui::Dataspace::UNKNOWN)).Times(1);
328 EXPECT_CALL(*test->mRenderEngine, setDisplayMaxLuminance(DEFAULT_DISPLAY_MAX_LUMINANCE))
329 .Times(1);
330 EXPECT_CALL(*test->mRenderEngine, setupColorTransform(_)).Times(2);
331 // These expectations retire on saturation as the code path these
332 // expectations are for appears to make an extra call to them.
333 // TODO: Investigate this extra call
334 EXPECT_CALL(*test->mRenderEngine,
335 setViewportAndProjection(DEFAULT_DISPLAY_WIDTH, DEFAULT_DISPLAY_HEIGHT,
336 Rect(DEFAULT_DISPLAY_WIDTH, DEFAULT_DISPLAY_HEIGHT),
337 ui::Transform::ROT_0))
338 .Times(1)
339 .RetiresOnSaturation();
340 EXPECT_CALL(*test->mRenderEngine, setCurrentSurface(Ref(*test->mRenderSurface)))
341 .WillOnce(Return(true))
342 .RetiresOnSaturation();
343 EXPECT_CALL(*test->mRenderSurface, swapBuffers()).Times(1);
344 }
345
346 template <typename Case>
347 static void setupRELayerCompositionCallExpectations(CompositionTest* test) {
348 Case::Layer::setupRECompositionCallExpectations(test);
349 }
350
351 template <typename Case>
352 static void setupRELayerScreenshotCompositionCallExpectations(CompositionTest* test) {
353 Case::Layer::setupREScreenshotCompositionCallExpectations(test);
354
355 EXPECT_CALL(*test->mRenderEngine, isCurrent()).WillRepeatedly(Return(true));
356 }
357};
358
359struct DefaultDisplaySetupVariant : public BaseDisplayVariant<DefaultDisplaySetupVariant> {};
360
361struct InsecureDisplaySetupVariant : public BaseDisplayVariant<InsecureDisplaySetupVariant> {
362 static constexpr bool IS_SECURE = false;
363
364 template <typename Case>
365 static void setupRELayerCompositionCallExpectations(CompositionTest* test) {
366 Case::Layer::setupInsecureRECompositionCallExpectations(test);
367
368 // TODO: Investigate this extra call
369 EXPECT_CALL(*test->mRenderEngine, disableScissor()).Times(1);
370 }
371
372 template <typename Case>
373 static void setupRELayerScreenshotCompositionCallExpectations(CompositionTest* test) {
374 Case::Layer::setupInsecureREScreenshotCompositionCallExpectations(test);
375
376 EXPECT_CALL(*test->mRenderEngine, isCurrent()).WillRepeatedly(Return(true));
377 }
378};
379
380struct PoweredOffDisplaySetupVariant : public BaseDisplayVariant<PoweredOffDisplaySetupVariant> {
381 static constexpr int INIT_POWER_MODE = HWC_POWER_MODE_OFF;
382
383 template <typename Case>
384 static void setupCommonCompositionCallExpectations(CompositionTest* test) {
385 // TODO: This seems like an unnecessary call if display is powered off.
386 EXPECT_CALL(*test->mComposer,
387 setColorTransform(HWC_DISPLAY, _, Hwc2::ColorTransform::IDENTITY))
388 .Times(1);
389
390 // TODO: This seems like an unnecessary call if display is powered off.
391 Case::CompositionType::setupHwcSetCallExpectations(test);
392 }
393
394 static void setupHwcCompositionCallExpectations(CompositionTest*) {}
395
396 static void setupRECompositionCallExpectations(CompositionTest* test) {
397 // TODO: This seems like an unnecessary call if display is powered off.
398 EXPECT_CALL(*test->mDisplaySurface, getClientTargetAcquireFence())
399 .WillRepeatedly(ReturnRef(test->mClientTargetAcquireFence));
400 }
401
402 template <typename Case>
403 static void setupRELayerCompositionCallExpectations(CompositionTest*) {}
404};
405
406/* ------------------------------------------------------------------------
407 * Variants for each layer configuration which can be tested
408 */
409
410template <typename LayerProperties>
411struct BaseLayerProperties {
412 static constexpr uint32_t WIDTH = 100;
413 static constexpr uint32_t HEIGHT = 100;
414 static constexpr PixelFormat FORMAT = PIXEL_FORMAT_RGBA_8888;
415 static constexpr uint64_t USAGE =
416 GraphicBuffer::USAGE_SW_READ_NEVER | GraphicBuffer::USAGE_SW_WRITE_NEVER;
417 static constexpr android_dataspace DATASPACE = HAL_DATASPACE_UNKNOWN;
418 static constexpr uint32_t SCALING_MODE = 0;
419 static constexpr uint32_t TRANSFORM = 0;
420 static constexpr uint32_t LAYER_FLAGS = 0;
421 static constexpr float COLOR[] = {1.f, 1.f, 1.f, 1.f};
422 static constexpr IComposerClient::BlendMode BLENDMODE =
423 IComposerClient::BlendMode::PREMULTIPLIED;
424
425 static void enqueueBuffer(CompositionTest*, sp<BufferQueueLayer> layer) {
426 auto producer = layer->getProducer();
427
428 IGraphicBufferProducer::QueueBufferOutput qbo;
429 status_t result = producer->connect(nullptr, NATIVE_WINDOW_API_EGL, false, &qbo);
430 if (result != NO_ERROR) {
431 ALOGE("Failed to connect() (%d)", result);
432 return;
433 }
434
435 int slot;
436 sp<Fence> fence;
437 result = producer->dequeueBuffer(&slot, &fence, LayerProperties::WIDTH,
438 LayerProperties::HEIGHT, LayerProperties::FORMAT,
439 LayerProperties::USAGE, nullptr, nullptr);
440 if (result != IGraphicBufferProducer::BUFFER_NEEDS_REALLOCATION) {
441 ALOGE("Failed to dequeueBuffer() (%d)", result);
442 return;
443 }
444
445 sp<GraphicBuffer> buffer;
446 result = producer->requestBuffer(slot, &buffer);
447 if (result != NO_ERROR) {
448 ALOGE("Failed to requestBuffer() (%d)", result);
449 return;
450 }
451
452 IGraphicBufferProducer::QueueBufferInput qbi(systemTime(), false /* isAutoTimestamp */,
453 LayerProperties::DATASPACE,
454 Rect(LayerProperties::WIDTH,
455 LayerProperties::HEIGHT),
456 LayerProperties::SCALING_MODE,
457 LayerProperties::TRANSFORM, Fence::NO_FENCE);
458 result = producer->queueBuffer(slot, qbi, &qbo);
459 if (result != NO_ERROR) {
460 ALOGE("Failed to queueBuffer (%d)", result);
461 return;
462 }
463 }
464
465 static void setupLatchedBuffer(CompositionTest* test, sp<BufferQueueLayer> layer) {
466 // TODO: Eliminate the complexity of actually creating a buffer
467 EXPECT_CALL(*test->mRenderEngine, getMaxTextureSize()).WillOnce(Return(16384));
468 EXPECT_CALL(*test->mRenderEngine, getMaxViewportDims()).WillOnce(Return(16384));
469 status_t err =
470 layer->setDefaultBufferProperties(LayerProperties::WIDTH, LayerProperties::HEIGHT,
471 LayerProperties::FORMAT);
472 ASSERT_EQ(NO_ERROR, err);
473 Mock::VerifyAndClear(test->mRenderEngine);
474
475 EXPECT_CALL(*test->mMessageQueue, invalidate()).Times(1);
476 enqueueBuffer(test, layer);
477 Mock::VerifyAndClear(test->mMessageQueue);
478
479 EXPECT_CALL(*test->mRenderEngine, isCurrent()).WillRepeatedly(Return(true));
480 EXPECT_CALL(*test->mRenderEngine, useNativeFenceSync()).WillRepeatedly(Return(true));
481 EXPECT_CALL(*test->mRenderEngine, createImage())
482 .WillOnce(Return(ByMove(std::unique_ptr<renderengine::Image>(test->mReImage))));
483 EXPECT_CALL(*test->mRenderEngine, bindExternalTextureImage(DEFAULT_TEXTURE_ID, _)).Times(1);
484 EXPECT_CALL(*test->mRenderEngine, checkErrors()).Times(1);
485 EXPECT_CALL(*test->mReImage, setNativeWindowBuffer(_, false)).WillOnce(Return(true));
486 bool ignoredRecomputeVisibleRegions;
487 layer->latchBuffer(ignoredRecomputeVisibleRegions, 0);
488 Mock::VerifyAndClear(test->mRenderEngine);
489 Mock::VerifyAndClear(test->mReImage);
490 }
491
492 static void setupLayerState(CompositionTest* test, sp<BufferQueueLayer> layer) {
493 setupLatchedBuffer(test, layer);
494 }
495
496 static void setupBufferLayerPostFrameCallExpectations(CompositionTest* test) {
497 // BufferLayer::onPostComposition(), when there is no present fence
498 EXPECT_CALL(*test->mComposer, getActiveConfig(HWC_DISPLAY, _))
499 .WillOnce(DoAll(SetArgPointee<1>(DEFAULT_CONFIG_ID), Return(Error::NONE)));
500 }
501
502 static void setupHwcSetGeometryCallExpectations(CompositionTest* test) {
503 // TODO: Coverage of other values
504 EXPECT_CALL(*test->mComposer,
505 setLayerBlendMode(HWC_DISPLAY, HWC_LAYER, LayerProperties::BLENDMODE))
506 .Times(1);
507 // TODO: Coverage of other values for origin
508 EXPECT_CALL(*test->mComposer,
509 setLayerDisplayFrame(HWC_DISPLAY, HWC_LAYER,
510 IComposerClient::Rect({0, 0, LayerProperties::WIDTH,
511 LayerProperties::HEIGHT})))
512 .Times(1);
513 EXPECT_CALL(*test->mComposer,
514 setLayerPlaneAlpha(HWC_DISPLAY, HWC_LAYER, LayerProperties::COLOR[3]))
515 .Times(1);
516 // TODO: Coverage of other values
517 EXPECT_CALL(*test->mComposer, setLayerZOrder(HWC_DISPLAY, HWC_LAYER, 0u)).Times(1);
518 // TODO: Coverage of other values
519 EXPECT_CALL(*test->mComposer, setLayerInfo(HWC_DISPLAY, HWC_LAYER, 0u, 0u)).Times(1);
520
521 // These expectations retire on saturation as the code path these
522 // expectations are for appears to make an extra call to them.
523 // TODO: Investigate this extra call
524 EXPECT_CALL(*test->mComposer, setLayerTransform(HWC_DISPLAY, HWC_LAYER, DEFAULT_TRANSFORM))
525 .Times(1)
526 .RetiresOnSaturation();
527 }
528
529 static void setupHwcSetSourceCropBufferCallExpectations(CompositionTest* test) {
530 EXPECT_CALL(*test->mComposer,
531 setLayerSourceCrop(HWC_DISPLAY, HWC_LAYER,
532 IComposerClient::FRect({0.f, 0.f, LayerProperties::WIDTH,
533 LayerProperties::HEIGHT})))
534 .Times(1);
535 }
536
537 static void setupHwcSetSourceCropColorCallExpectations(CompositionTest* test) {
538 EXPECT_CALL(*test->mComposer,
539 setLayerSourceCrop(HWC_DISPLAY, HWC_LAYER,
540 IComposerClient::FRect({0.f, 0.f, 0.f, 0.f})))
541 .Times(1);
542 }
543
544 static void setupHwcSetPerFrameCallExpectations(CompositionTest* test) {
545 EXPECT_CALL(*test->mComposer,
546 setLayerVisibleRegion(HWC_DISPLAY, HWC_LAYER,
547 std::vector<IComposerClient::Rect>({IComposerClient::Rect(
548 {0, 0, LayerProperties::WIDTH,
549 LayerProperties::HEIGHT})})))
550 .Times(1);
551 }
552
553 static void setupHwcSetPerFrameColorCallExpectations(CompositionTest* test) {
554 EXPECT_CALL(*test->mComposer, setLayerSurfaceDamage(HWC_DISPLAY, HWC_LAYER, _)).Times(1);
555
556 // TODO: use COLOR
557 EXPECT_CALL(*test->mComposer,
558 setLayerColor(HWC_DISPLAY, HWC_LAYER,
559 IComposerClient::Color({0xff, 0xff, 0xff, 0xff})))
560 .Times(1);
561
562 // TODO: ColorLayer::onPreComposition() always returns true, triggering an
563 // extra layer update in SurfaceFlinger::preComposition(). This seems
564 // wrong on the surface.
565 EXPECT_CALL(*test->mMessageQueue, invalidate()).Times(1);
566 }
567
568 static void setupHwcSetPerFrameBufferCallExpectations(CompositionTest* test) {
569 EXPECT_CALL(*test->mComposer, setLayerSurfaceDamage(HWC_DISPLAY, HWC_LAYER, _)).Times(1);
570 EXPECT_CALL(*test->mComposer, setLayerBuffer(HWC_DISPLAY, HWC_LAYER, _, _, _)).Times(1);
571
572 setupBufferLayerPostFrameCallExpectations(test);
573 }
574
575 static void setupREBufferCompositionCommonCallExpectations(CompositionTest* test) {
576 EXPECT_CALL(*test->mRenderEngine,
577 setupLayerBlending(true, false, false,
578 half4(LayerProperties::COLOR[0], LayerProperties::COLOR[1],
579 LayerProperties::COLOR[2], LayerProperties::COLOR[3])))
580 .Times(1);
581
582 EXPECT_CALL(*test->mRenderEngine, bindExternalTextureImage(DEFAULT_TEXTURE_ID, _)).Times(1);
583 EXPECT_CALL(*test->mRenderEngine, setupLayerTexturing(_)).Times(1);
584 EXPECT_CALL(*test->mRenderEngine, setSourceDataSpace(ui::Dataspace::UNKNOWN)).Times(1);
585 EXPECT_CALL(*test->mRenderEngine, drawMesh(_)).Times(1);
586 EXPECT_CALL(*test->mRenderEngine, disableBlending()).Times(1);
587 EXPECT_CALL(*test->mRenderEngine, setSourceY410BT2020(false)).Times(1);
588 // This call retires on saturation as the code that renders a texture disables the state,
589 // along with a top-level disable to ensure it is disabled for non-buffer layers.
590 EXPECT_CALL(*test->mRenderEngine, disableTexturing()).Times(1).RetiresOnSaturation();
591 }
592
593 static void setupREBufferCompositionCallExpectations(CompositionTest* test) {
594 LayerProperties::setupREBufferCompositionCommonCallExpectations(test);
595
596 // TODO - Investigate and eliminate these differences between display
597 // composition and screenshot composition.
598 EXPECT_CALL(*test->mRenderEngine, disableScissor()).Times(1);
599 }
600
601 static void setupInsecureREBufferCompositionCallExpectations(CompositionTest* test) {
602 setupREBufferCompositionCallExpectations(test);
603 }
604
605 static void setupREBufferScreenshotCompositionCallExpectations(CompositionTest* test) {
606 LayerProperties::setupREBufferCompositionCommonCallExpectations(test);
607 }
608
609 static void setupInsecureREBufferScreenshotCompositionCallExpectations(CompositionTest* test) {
610 LayerProperties::setupREBufferCompositionCommonCallExpectations(test);
611 }
612
613 static void setupREColorCompositionCommonCallExpectations(CompositionTest* test) {
614 EXPECT_CALL(*test->mRenderEngine, disableScissor()).Times(1);
615 }
616
617 static void setupREColorCompositionCallExpectations(CompositionTest* test) {
618 EXPECT_CALL(*test->mRenderEngine, setSourceDataSpace(ui::Dataspace::UNKNOWN)).Times(1);
619 EXPECT_CALL(*test->mRenderEngine,
620 setupLayerBlending(true, false, true,
621 half4(LayerProperties::COLOR[0], LayerProperties::COLOR[1],
622 LayerProperties::COLOR[2], LayerProperties::COLOR[3])))
623 .Times(1);
624 EXPECT_CALL(*test->mRenderEngine, drawMesh(_)).Times(1);
625 EXPECT_CALL(*test->mRenderEngine, disableBlending()).Times(1);
626 }
627
628 static void setupREColorScreenshotCompositionCallExpectations(CompositionTest* test) {
629 setupREColorCompositionCallExpectations(test);
630 }
631};
632
633struct DefaultLayerProperties : public BaseLayerProperties<DefaultLayerProperties> {};
634
635struct ColorLayerProperties : public BaseLayerProperties<ColorLayerProperties> {};
636
637struct SidebandLayerProperties : public BaseLayerProperties<SidebandLayerProperties> {
638 using Base = BaseLayerProperties<SidebandLayerProperties>;
639 static constexpr IComposerClient::BlendMode BLENDMODE = IComposerClient::BlendMode::NONE;
640
641 static void setupLayerState(CompositionTest* test, sp<BufferQueueLayer> layer) {
642 sp<NativeHandle> stream =
643 NativeHandle::create(reinterpret_cast<native_handle_t*>(DEFAULT_SIDEBAND_STREAM),
644 false);
645 test->mFlinger.setLayerSidebandStream(layer, stream);
646 }
647
648 static void setupHwcSetSourceCropBufferCallExpectations(CompositionTest* test) {
649 EXPECT_CALL(*test->mComposer,
650 setLayerSourceCrop(HWC_DISPLAY, HWC_LAYER,
651 IComposerClient::FRect({0.f, 0.f, -1.f, -1.f})))
652 .Times(1);
653 }
654
655 static void setupHwcSetPerFrameBufferCallExpectations(CompositionTest* test) {
656 EXPECT_CALL(*test->mComposer,
657 setLayerSidebandStream(HWC_DISPLAY, HWC_LAYER,
658 reinterpret_cast<native_handle_t*>(
659 DEFAULT_SIDEBAND_STREAM)))
660 .WillOnce(Return(Error::NONE));
661
662 EXPECT_CALL(*test->mComposer, setLayerSurfaceDamage(HWC_DISPLAY, HWC_LAYER, _)).Times(1);
663 }
664
665 static void setupREBufferCompositionCommonCallExpectations(CompositionTest* test) {
666 EXPECT_CALL(*test->mRenderEngine, setupFillWithColor(0, 0, 0, 1)).Times(1);
667 EXPECT_CALL(*test->mRenderEngine, drawMesh(_)).Times(1);
668 }
669};
670
671struct SecureLayerProperties : public BaseLayerProperties<SecureLayerProperties> {
672 using Base = BaseLayerProperties<SecureLayerProperties>;
673
674 static constexpr uint32_t LAYER_FLAGS = ISurfaceComposerClient::eSecure;
675
676 static void setupInsecureREBufferCompositionCommonCallExpectations(CompositionTest* test) {
677 EXPECT_CALL(*test->mRenderEngine, bindExternalTextureImage(DEFAULT_TEXTURE_ID, _)).Times(1);
678 EXPECT_CALL(*test->mRenderEngine, setupLayerBlackedOut()).Times(1);
679
680 EXPECT_CALL(*test->mRenderEngine,
681 setupLayerBlending(true, false, false,
682 half4(Base::COLOR[0], Base::COLOR[1], Base::COLOR[2],
683 Base::COLOR[3])))
684 .Times(1);
685 EXPECT_CALL(*test->mRenderEngine, setSourceDataSpace(ui::Dataspace::UNKNOWN)).Times(1);
686 EXPECT_CALL(*test->mRenderEngine, drawMesh(_)).Times(1);
687 EXPECT_CALL(*test->mRenderEngine, disableBlending()).Times(1);
688 EXPECT_CALL(*test->mRenderEngine, setSourceY410BT2020(false)).Times(1);
689 // This call retires on saturation as the code that renders a texture disables the state,
690 // along with a top-level disable to ensure it is disabled for non-buffer layers.
691 EXPECT_CALL(*test->mRenderEngine, disableTexturing()).Times(1).RetiresOnSaturation();
692 }
693
694 static void setupInsecureREBufferCompositionCallExpectations(CompositionTest* test) {
695 setupInsecureREBufferCompositionCommonCallExpectations(test);
696 Base::setupBufferLayerPostFrameCallExpectations(test);
697 }
698
699 static void setupInsecureREBufferScreenshotCompositionCallExpectations(CompositionTest* test) {
700 setupInsecureREBufferCompositionCommonCallExpectations(test);
701 }
702};
703
704struct CursorLayerProperties : public BaseLayerProperties<CursorLayerProperties> {
705 using Base = BaseLayerProperties<CursorLayerProperties>;
706
707 static void setupLayerState(CompositionTest* test, sp<BufferQueueLayer> layer) {
708 Base::setupLayerState(test, layer);
709 test->mFlinger.setLayerPotentialCursor(layer, true);
710 }
711};
712
713struct NoLayerVariant {
714 using FlingerLayerType = sp<BufferQueueLayer>;
715
716 static FlingerLayerType createLayer(CompositionTest*) { return FlingerLayerType(); }
717 static void injectLayer(CompositionTest*, FlingerLayerType) {}
718 static void cleanupInjectedLayers(CompositionTest*) {}
719
720 static void setupCallExpectationsForDirtyGeometry(CompositionTest*) {}
721 static void setupCallExpectationsForDirtyFrame(CompositionTest*) {}
722};
723
724template <typename LayerProperties>
725struct BaseLayerVariant {
726 template <typename L, typename F>
727 static sp<L> createLayerWithFactory(CompositionTest* test, F factory) {
728 EXPECT_CALL(*test->mMessageQueue, postMessage(_, 0)).Times(0);
729
730 sp<L> layer = factory();
731
732 Mock::VerifyAndClear(test->mComposer);
733 Mock::VerifyAndClear(test->mRenderEngine);
734 Mock::VerifyAndClear(test->mMessageQueue);
735
736 auto& layerDrawingState = test->mFlinger.mutableLayerDrawingState(layer);
737 layerDrawingState.layerStack = DEFAULT_LAYER_STACK;
738 layerDrawingState.active.w = 100;
739 layerDrawingState.active.h = 100;
740 layerDrawingState.color = half4(LayerProperties::COLOR[0], LayerProperties::COLOR[1],
741 LayerProperties::COLOR[2], LayerProperties::COLOR[3]);
742
743 layer->setVisibleRegion(Region(Rect(0, 0, 100, 100)));
744
745 return layer;
746 }
747
748 static void injectLayer(CompositionTest* test, sp<Layer> layer) {
749 EXPECT_CALL(*test->mComposer, createLayer(HWC_DISPLAY, _))
750 .WillOnce(DoAll(SetArgPointee<1>(HWC_LAYER), Return(Error::NONE)));
751
752 layer->createHwcLayer(test->mFlinger.mFlinger->getBE().mHwc.get(), test->mDisplay->getId());
753
754 Mock::VerifyAndClear(test->mComposer);
755
756 Vector<sp<Layer>> layers;
757 layers.add(layer);
758 test->mDisplay->setVisibleLayersSortedByZ(layers);
759 test->mFlinger.mutableDrawingState().layersSortedByZ.add(layer);
760 }
761
762 static void cleanupInjectedLayers(CompositionTest* test) {
763 EXPECT_CALL(*test->mComposer, destroyLayer(HWC_DISPLAY, HWC_LAYER))
764 .WillOnce(Return(Error::NONE));
765 for (auto layer : test->mFlinger.mutableDrawingState().layersSortedByZ) {
766 layer->destroyHwcLayer(test->mDisplay->getId());
767 }
768 test->mFlinger.mutableDrawingState().layersSortedByZ.clear();
769 }
770};
771
772template <typename LayerProperties>
773struct ColorLayerVariant : public BaseLayerVariant<LayerProperties> {
774 using Base = BaseLayerVariant<LayerProperties>;
775 using FlingerLayerType = sp<ColorLayer>;
776
777 static FlingerLayerType createLayer(CompositionTest* test) {
778 FlingerLayerType layer = Base::template createLayerWithFactory<ColorLayer>(test, [test]() {
779 return new ColorLayer(test->mFlinger.mFlinger.get(), sp<Client>(),
780 String8("test-layer"), LayerProperties::WIDTH,
781 LayerProperties::HEIGHT, LayerProperties::LAYER_FLAGS);
782 });
783 return layer;
784 }
785
786 static void setupRECompositionCallExpectations(CompositionTest* test) {
787 LayerProperties::setupREColorCompositionCommonCallExpectations(test);
788 LayerProperties::setupREColorCompositionCallExpectations(test);
789 }
790
791 static void setupREScreenshotCompositionCallExpectations(CompositionTest* test) {
792 LayerProperties::setupREColorScreenshotCompositionCallExpectations(test);
793 }
794
795 static void setupCallExpectationsForDirtyGeometry(CompositionTest* test) {
796 LayerProperties::setupHwcSetGeometryCallExpectations(test);
797 LayerProperties::setupHwcSetSourceCropColorCallExpectations(test);
798 }
799
800 static void setupCallExpectationsForDirtyFrame(CompositionTest* test) {
801 LayerProperties::setupHwcSetPerFrameCallExpectations(test);
802 LayerProperties::setupHwcSetPerFrameColorCallExpectations(test);
803 }
804};
805
806template <typename LayerProperties>
807struct BufferLayerVariant : public BaseLayerVariant<LayerProperties> {
808 using Base = BaseLayerVariant<LayerProperties>;
809 using FlingerLayerType = sp<BufferQueueLayer>;
810
811 static FlingerLayerType createLayer(CompositionTest* test) {
812 test->mFlinger.mutableTexturePool().push_back(DEFAULT_TEXTURE_ID);
813
814 FlingerLayerType layer =
815 Base::template createLayerWithFactory<BufferQueueLayer>(test, [test]() {
816 return new BufferQueueLayer(test->mFlinger.mFlinger.get(), sp<Client>(),
817 String8("test-layer"), LayerProperties::WIDTH,
818 LayerProperties::HEIGHT,
819 LayerProperties::LAYER_FLAGS);
820 });
821
822 LayerProperties::setupLayerState(test, layer);
823
824 return layer;
825 }
826
827 static void cleanupInjectedLayers(CompositionTest* test) {
828 EXPECT_CALL(*test->mMessageQueue, postMessage(_, 0)).Times(2);
829 Base::cleanupInjectedLayers(test);
830 }
831
832 static void setupCallExpectationsForDirtyGeometry(CompositionTest* test) {
833 LayerProperties::setupHwcSetGeometryCallExpectations(test);
834 LayerProperties::setupHwcSetSourceCropBufferCallExpectations(test);
835 }
836
837 static void setupCallExpectationsForDirtyFrame(CompositionTest* test) {
838 LayerProperties::setupHwcSetPerFrameCallExpectations(test);
839 LayerProperties::setupHwcSetPerFrameBufferCallExpectations(test);
840 }
841
842 static void setupRECompositionCallExpectations(CompositionTest* test) {
843 LayerProperties::setupREBufferCompositionCallExpectations(test);
844 }
845
846 static void setupInsecureRECompositionCallExpectations(CompositionTest* test) {
847 LayerProperties::setupInsecureREBufferCompositionCallExpectations(test);
848 }
849
850 static void setupREScreenshotCompositionCallExpectations(CompositionTest* test) {
851 LayerProperties::setupREBufferScreenshotCompositionCallExpectations(test);
852 }
853
854 static void setupInsecureREScreenshotCompositionCallExpectations(CompositionTest* test) {
855 LayerProperties::setupInsecureREBufferScreenshotCompositionCallExpectations(test);
856 }
857};
858
859/* ------------------------------------------------------------------------
860 * Variants to control how the composition type is changed
861 */
862
863struct NoCompositionTypeVariant {
864 static void setupHwcSetCallExpectations(CompositionTest*) {}
865
866 static void setupHwcGetCallExpectations(CompositionTest* test) {
867 EXPECT_CALL(*test->mComposer, getChangedCompositionTypes(HWC_DISPLAY, _, _)).Times(1);
868 }
869};
870
871template <IComposerClient::Composition CompositionType>
872struct KeepCompositionTypeVariant {
873 static constexpr HWC2::Composition TYPE = static_cast<HWC2::Composition>(CompositionType);
874
875 static void setupHwcSetCallExpectations(CompositionTest* test) {
876 EXPECT_CALL(*test->mComposer,
877 setLayerCompositionType(HWC_DISPLAY, HWC_LAYER, CompositionType))
878 .Times(1);
879 }
880
881 static void setupHwcGetCallExpectations(CompositionTest* test) {
882 EXPECT_CALL(*test->mComposer, getChangedCompositionTypes(HWC_DISPLAY, _, _)).Times(1);
883 }
884};
885
886template <IComposerClient::Composition InitialCompositionType,
887 IComposerClient::Composition FinalCompositionType>
888struct ChangeCompositionTypeVariant {
889 static constexpr HWC2::Composition TYPE = static_cast<HWC2::Composition>(FinalCompositionType);
890
891 static void setupHwcSetCallExpectations(CompositionTest* test) {
892 EXPECT_CALL(*test->mComposer,
893 setLayerCompositionType(HWC_DISPLAY, HWC_LAYER, InitialCompositionType))
894 .Times(1);
895 }
896
897 static void setupHwcGetCallExpectations(CompositionTest* test) {
898 EXPECT_CALL(*test->mComposer, getChangedCompositionTypes(HWC_DISPLAY, _, _))
899 .WillOnce(DoAll(SetArgPointee<1>(std::vector<Hwc2::Layer>{
900 static_cast<Hwc2::Layer>(HWC_LAYER)}),
901 SetArgPointee<2>(std::vector<IComposerClient::Composition>{
902 FinalCompositionType}),
903 Return(Error::NONE)));
904 }
905};
906
907/* ------------------------------------------------------------------------
908 * Variants to select how the composition is expected to be handled
909 */
910
911struct CompositionResultBaseVariant {
912 static void setupLayerState(CompositionTest*, sp<Layer>) {}
913
914 template <typename Case>
915 static void setupCallExpectationsForDirtyGeometry(CompositionTest* test) {
916 Case::Layer::setupCallExpectationsForDirtyGeometry(test);
917 }
918
919 template <typename Case>
920 static void setupCallExpectationsForDirtyFrame(CompositionTest* test) {
921 Case::Layer::setupCallExpectationsForDirtyFrame(test);
922 }
923};
924
925struct NoCompositionResultVariant : public CompositionResultBaseVariant {
926 template <typename Case>
927 static void setupCallExpectations(CompositionTest* test) {
928 Case::Display::setupEmptyFrameCompositionCallExpectations(test);
929 Case::Display::setupHwcCompositionCallExpectations(test);
930 }
931};
932
933struct HwcCompositionResultVariant : public CompositionResultBaseVariant {
934 template <typename Case>
935 static void setupCallExpectations(CompositionTest* test) {
936 Case::Display::setupNonEmptyFrameCompositionCallExpectations(test);
937 Case::Display::setupHwcCompositionCallExpectations(test);
938 }
939};
940
941struct RECompositionResultVariant : public CompositionResultBaseVariant {
942 template <typename Case>
943 static void setupCallExpectations(CompositionTest* test) {
944 Case::Display::setupNonEmptyFrameCompositionCallExpectations(test);
945 Case::Display::setupRECompositionCallExpectations(test);
946 Case::Display::template setupRELayerCompositionCallExpectations<Case>(test);
947 }
948};
949
950struct ForcedClientCompositionResultVariant : public RECompositionResultVariant {
951 static void setupLayerState(CompositionTest*, sp<Layer> layer) {
952 layer->forceClientComposition(DisplayDevice::DISPLAY_PRIMARY);
953 }
954
955 template <typename Case>
956 static void setupCallExpectationsForDirtyGeometry(CompositionTest*) {}
957
958 template <typename Case>
959 static void setupCallExpectationsForDirtyFrame(CompositionTest*) {}
960};
961
962struct EmptyScreenshotResultVariant {
963 static void setupLayerState(CompositionTest*, sp<Layer>) {}
964
965 template <typename Case>
966 static void setupCallExpectations(CompositionTest*) {}
967};
968
969struct REScreenshotResultVariant : public EmptyScreenshotResultVariant {
970 using Base = EmptyScreenshotResultVariant;
971
972 template <typename Case>
973 static void setupCallExpectations(CompositionTest* test) {
974 Base::template setupCallExpectations<Case>(test);
975 Case::Display::template setupRELayerScreenshotCompositionCallExpectations<Case>(test);
976 }
977};
978
979/* ------------------------------------------------------------------------
980 * Composition test case, containing all the variants being tested
981 */
982
983template <typename DisplayCase, typename LayerCase, typename CompositionTypeCase,
984 typename CompositionResultCase>
985struct CompositionCase {
986 using ThisCase =
987 CompositionCase<DisplayCase, LayerCase, CompositionTypeCase, CompositionResultCase>;
988 using Display = DisplayCase;
989 using Layer = LayerCase;
990 using CompositionType = CompositionTypeCase;
991 using CompositionResult = CompositionResultCase;
992
993 static void setupCommon(CompositionTest* test) {
994 Display::setupPreconditions(test);
995
996 auto layer = Layer::createLayer(test);
997 Layer::injectLayer(test, layer);
998 CompositionResult::setupLayerState(test, layer);
999 }
1000
1001 static void setupForDirtyGeometry(CompositionTest* test) {
1002 setupCommon(test);
1003
1004 Display::template setupCommonCompositionCallExpectations<ThisCase>(test);
1005 CompositionResult::template setupCallExpectationsForDirtyGeometry<ThisCase>(test);
1006 CompositionResult::template setupCallExpectationsForDirtyFrame<ThisCase>(test);
1007 CompositionResult::template setupCallExpectations<ThisCase>(test);
1008 }
1009
1010 static void setupForDirtyFrame(CompositionTest* test) {
1011 setupCommon(test);
1012
1013 Display::template setupCommonCompositionCallExpectations<ThisCase>(test);
1014 CompositionResult::template setupCallExpectationsForDirtyFrame<ThisCase>(test);
1015 CompositionResult::template setupCallExpectations<ThisCase>(test);
1016 }
1017
1018 static void setupForScreenCapture(CompositionTest* test) {
1019 setupCommon(test);
1020
1021 Display::template setupCommonScreensCaptureCallExpectations<ThisCase>(test);
1022 CompositionResult::template setupCallExpectations<ThisCase>(test);
1023 }
1024
1025 static void cleanup(CompositionTest* test) {
1026 Layer::cleanupInjectedLayers(test);
1027
1028 for (auto& hwcDisplay : test->mFlinger.mFakeHwcDisplays) {
1029 hwcDisplay->mutableLayers().clear();
1030 }
1031
1032 test->mDisplay->setVisibleLayersSortedByZ(Vector<sp<android::Layer>>());
1033 }
1034};
1035
1036/* ------------------------------------------------------------------------
1037 * Composition cases to test
1038 */
1039
1040TEST_F(CompositionTest, noLayersDoesMinimalWorkWithDirtyGeometry) {
1041 displayRefreshCompositionDirtyGeometry<
1042 CompositionCase<DefaultDisplaySetupVariant, NoLayerVariant, NoCompositionTypeVariant,
1043 NoCompositionResultVariant>>();
1044}
1045
1046TEST_F(CompositionTest, noLayersDoesMinimalWorkWithDirtyFrame) {
1047 displayRefreshCompositionDirtyFrame<
1048 CompositionCase<DefaultDisplaySetupVariant, NoLayerVariant, NoCompositionTypeVariant,
1049 NoCompositionResultVariant>>();
1050}
1051
1052TEST_F(CompositionTest, noLayersDoesMinimalWorkToCaptureScreen) {
1053 captureScreenComposition<
1054 CompositionCase<DefaultDisplaySetupVariant, NoLayerVariant, NoCompositionTypeVariant,
1055 EmptyScreenshotResultVariant>>();
1056}
1057
1058/* ------------------------------------------------------------------------
1059 * Simple buffer layers
1060 */
1061
1062TEST_F(CompositionTest, HWCComposedNormalBufferLayerWithDirtyGeometry) {
1063 displayRefreshCompositionDirtyGeometry<
1064 CompositionCase<DefaultDisplaySetupVariant, BufferLayerVariant<DefaultLayerProperties>,
1065 KeepCompositionTypeVariant<IComposerClient::Composition::DEVICE>,
1066 HwcCompositionResultVariant>>();
1067}
1068
1069TEST_F(CompositionTest, HWCComposedNormalBufferLayerWithDirtyFrame) {
1070 displayRefreshCompositionDirtyFrame<
1071 CompositionCase<DefaultDisplaySetupVariant, BufferLayerVariant<DefaultLayerProperties>,
1072 KeepCompositionTypeVariant<IComposerClient::Composition::DEVICE>,
1073 HwcCompositionResultVariant>>();
1074}
1075
1076TEST_F(CompositionTest, REComposedNormalBufferLayer) {
1077 displayRefreshCompositionDirtyFrame<
1078 CompositionCase<DefaultDisplaySetupVariant, BufferLayerVariant<DefaultLayerProperties>,
1079 ChangeCompositionTypeVariant<IComposerClient::Composition::DEVICE,
1080 IComposerClient::Composition::CLIENT>,
1081 RECompositionResultVariant>>();
1082}
1083
1084TEST_F(CompositionTest, captureScreenNormalBufferLayer) {
1085 captureScreenComposition<
1086 CompositionCase<DefaultDisplaySetupVariant, BufferLayerVariant<DefaultLayerProperties>,
1087 NoCompositionTypeVariant, REScreenshotResultVariant>>();
1088}
1089
1090/* ------------------------------------------------------------------------
1091 * Single-color layers
1092 */
1093
1094TEST_F(CompositionTest, HWCComposedColorLayerWithDirtyGeometry) {
1095 displayRefreshCompositionDirtyGeometry<
1096 CompositionCase<DefaultDisplaySetupVariant, ColorLayerVariant<ColorLayerProperties>,
1097 KeepCompositionTypeVariant<IComposerClient::Composition::SOLID_COLOR>,
1098 HwcCompositionResultVariant>>();
1099}
1100
1101TEST_F(CompositionTest, HWCComposedColorLayerWithDirtyFrame) {
1102 displayRefreshCompositionDirtyFrame<
1103 CompositionCase<DefaultDisplaySetupVariant, ColorLayerVariant<ColorLayerProperties>,
1104 KeepCompositionTypeVariant<IComposerClient::Composition::SOLID_COLOR>,
1105 HwcCompositionResultVariant>>();
1106}
1107
1108TEST_F(CompositionTest, REComposedColorLayer) {
1109 displayRefreshCompositionDirtyFrame<
1110 CompositionCase<DefaultDisplaySetupVariant, ColorLayerVariant<ColorLayerProperties>,
1111 ChangeCompositionTypeVariant<IComposerClient::Composition::SOLID_COLOR,
1112 IComposerClient::Composition::CLIENT>,
1113 RECompositionResultVariant>>();
1114}
1115
1116TEST_F(CompositionTest, captureScreenColorLayer) {
1117 captureScreenComposition<
1118 CompositionCase<DefaultDisplaySetupVariant, ColorLayerVariant<ColorLayerProperties>,
1119 NoCompositionTypeVariant, REScreenshotResultVariant>>();
1120}
1121
1122/* ------------------------------------------------------------------------
1123 * Layers with sideband buffers
1124 */
1125
1126TEST_F(CompositionTest, HWCComposedSidebandBufferLayerWithDirtyGeometry) {
1127 displayRefreshCompositionDirtyGeometry<
1128 CompositionCase<DefaultDisplaySetupVariant, BufferLayerVariant<SidebandLayerProperties>,
1129 KeepCompositionTypeVariant<IComposerClient::Composition::SIDEBAND>,
1130 HwcCompositionResultVariant>>();
1131}
1132
1133TEST_F(CompositionTest, HWCComposedSidebandBufferLayerWithDirtyFrame) {
1134 displayRefreshCompositionDirtyFrame<
1135 CompositionCase<DefaultDisplaySetupVariant, BufferLayerVariant<SidebandLayerProperties>,
1136 KeepCompositionTypeVariant<IComposerClient::Composition::SIDEBAND>,
1137 HwcCompositionResultVariant>>();
1138}
1139
1140TEST_F(CompositionTest, REComposedSidebandBufferLayer) {
1141 displayRefreshCompositionDirtyFrame<
1142 CompositionCase<DefaultDisplaySetupVariant, BufferLayerVariant<SidebandLayerProperties>,
1143 ChangeCompositionTypeVariant<IComposerClient::Composition::SIDEBAND,
1144 IComposerClient::Composition::CLIENT>,
1145 RECompositionResultVariant>>();
1146}
1147
1148TEST_F(CompositionTest, captureScreenSidebandBufferLayer) {
1149 captureScreenComposition<
1150 CompositionCase<DefaultDisplaySetupVariant, BufferLayerVariant<SidebandLayerProperties>,
1151 NoCompositionTypeVariant, REScreenshotResultVariant>>();
1152}
1153
1154/* ------------------------------------------------------------------------
1155 * Layers with ISurfaceComposerClient::eSecure, on a secure display
1156 */
1157
1158TEST_F(CompositionTest, HWCComposedSecureBufferLayerWithDirtyGeometry) {
1159 displayRefreshCompositionDirtyGeometry<
1160 CompositionCase<DefaultDisplaySetupVariant, BufferLayerVariant<SecureLayerProperties>,
1161 KeepCompositionTypeVariant<IComposerClient::Composition::DEVICE>,
1162 HwcCompositionResultVariant>>();
1163}
1164
1165TEST_F(CompositionTest, HWCComposedSecureBufferLayerWithDirtyFrame) {
1166 displayRefreshCompositionDirtyFrame<
1167 CompositionCase<DefaultDisplaySetupVariant, BufferLayerVariant<SecureLayerProperties>,
1168 KeepCompositionTypeVariant<IComposerClient::Composition::DEVICE>,
1169 HwcCompositionResultVariant>>();
1170}
1171
1172TEST_F(CompositionTest, REComposedSecureBufferLayer) {
1173 displayRefreshCompositionDirtyFrame<
1174 CompositionCase<DefaultDisplaySetupVariant, BufferLayerVariant<SecureLayerProperties>,
1175 ChangeCompositionTypeVariant<IComposerClient::Composition::DEVICE,
1176 IComposerClient::Composition::CLIENT>,
1177 RECompositionResultVariant>>();
1178}
1179
1180TEST_F(CompositionTest, captureScreenSecureBufferLayerOnSecureDisplay) {
1181 captureScreenComposition<
1182 CompositionCase<DefaultDisplaySetupVariant, BufferLayerVariant<SecureLayerProperties>,
1183 NoCompositionTypeVariant, REScreenshotResultVariant>>();
1184}
1185
1186/* ------------------------------------------------------------------------
1187 * Layers with ISurfaceComposerClient::eSecure, on a non-secure display
1188 */
1189
1190TEST_F(CompositionTest, HWCComposedSecureBufferLayerOnInsecureDisplayWithDirtyGeometry) {
1191 displayRefreshCompositionDirtyGeometry<
1192 CompositionCase<InsecureDisplaySetupVariant, BufferLayerVariant<SecureLayerProperties>,
1193 KeepCompositionTypeVariant<IComposerClient::Composition::CLIENT>,
1194 ForcedClientCompositionResultVariant>>();
1195}
1196
1197TEST_F(CompositionTest, HWCComposedSecureBufferLayerOnInsecureDisplayWithDirtyFrame) {
1198 displayRefreshCompositionDirtyFrame<
1199 CompositionCase<InsecureDisplaySetupVariant, BufferLayerVariant<SecureLayerProperties>,
1200 KeepCompositionTypeVariant<IComposerClient::Composition::CLIENT>,
1201 ForcedClientCompositionResultVariant>>();
1202}
1203
1204TEST_F(CompositionTest, captureScreenSecureBufferLayerOnInsecureDisplay) {
1205 captureScreenComposition<
1206 CompositionCase<InsecureDisplaySetupVariant, BufferLayerVariant<SecureLayerProperties>,
1207 NoCompositionTypeVariant, REScreenshotResultVariant>>();
1208}
1209
1210/* ------------------------------------------------------------------------
1211 * Cursor layers
1212 */
1213
1214TEST_F(CompositionTest, HWCComposedCursorLayerWithDirtyGeometry) {
1215 displayRefreshCompositionDirtyGeometry<
1216 CompositionCase<DefaultDisplaySetupVariant, BufferLayerVariant<CursorLayerProperties>,
1217 KeepCompositionTypeVariant<IComposerClient::Composition::CURSOR>,
1218 HwcCompositionResultVariant>>();
1219}
1220
1221TEST_F(CompositionTest, HWCComposedCursorLayerWithDirtyFrame) {
1222 displayRefreshCompositionDirtyFrame<
1223 CompositionCase<DefaultDisplaySetupVariant, BufferLayerVariant<CursorLayerProperties>,
1224 KeepCompositionTypeVariant<IComposerClient::Composition::CURSOR>,
1225 HwcCompositionResultVariant>>();
1226}
1227
1228TEST_F(CompositionTest, REComposedCursorLayer) {
1229 displayRefreshCompositionDirtyFrame<
1230 CompositionCase<DefaultDisplaySetupVariant, BufferLayerVariant<CursorLayerProperties>,
1231 ChangeCompositionTypeVariant<IComposerClient::Composition::CURSOR,
1232 IComposerClient::Composition::CLIENT>,
1233 RECompositionResultVariant>>();
1234}
1235
1236TEST_F(CompositionTest, captureScreenCursorLayer) {
1237 captureScreenComposition<
1238 CompositionCase<DefaultDisplaySetupVariant, BufferLayerVariant<CursorLayerProperties>,
1239 NoCompositionTypeVariant, REScreenshotResultVariant>>();
1240}
1241
1242/* ------------------------------------------------------------------------
1243 * Simple buffer layer on a display which is powered off.
1244 */
1245
1246TEST_F(CompositionTest, displayOffHWCComposedNormalBufferLayerWithDirtyGeometry) {
1247 displayRefreshCompositionDirtyGeometry<CompositionCase<
1248 PoweredOffDisplaySetupVariant, BufferLayerVariant<DefaultLayerProperties>,
1249 KeepCompositionTypeVariant<IComposerClient::Composition::DEVICE>,
1250 HwcCompositionResultVariant>>();
1251}
1252
1253TEST_F(CompositionTest, displayOffHWCComposedNormalBufferLayerWithDirtyFrame) {
1254 displayRefreshCompositionDirtyFrame<CompositionCase<
1255 PoweredOffDisplaySetupVariant, BufferLayerVariant<DefaultLayerProperties>,
1256 KeepCompositionTypeVariant<IComposerClient::Composition::DEVICE>,
1257 HwcCompositionResultVariant>>();
1258}
1259
1260TEST_F(CompositionTest, displayOffREComposedNormalBufferLayer) {
1261 displayRefreshCompositionDirtyFrame<CompositionCase<
1262 PoweredOffDisplaySetupVariant, BufferLayerVariant<DefaultLayerProperties>,
1263 ChangeCompositionTypeVariant<IComposerClient::Composition::DEVICE,
1264 IComposerClient::Composition::CLIENT>,
1265 RECompositionResultVariant>>();
1266}
1267
1268TEST_F(CompositionTest, captureScreenNormalBufferLayerOnPoweredOffDisplay) {
1269 captureScreenComposition<CompositionCase<
1270 PoweredOffDisplaySetupVariant, BufferLayerVariant<DefaultLayerProperties>,
1271 NoCompositionTypeVariant, REScreenshotResultVariant>>();
1272}
1273
1274} // namespace
1275} // namespace android