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Lloyd Piquef58625d2017-12-19 13:22:33 -08001/*
2 * Copyright (C) 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#pragma once
18
Lloyd Pique90c115d2018-09-18 21:39:42 -070019#include "BufferQueueLayer.h"
20#include "BufferStateLayer.h"
21#include "ColorLayer.h"
22#include "ContainerLayer.h"
Lloyd Piquef58625d2017-12-19 13:22:33 -080023#include "DisplayDevice.h"
Lloyd Piqued6b579f2018-04-06 15:29:10 -070024#include "Layer.h"
Lloyd Pique90c115d2018-09-18 21:39:42 -070025#include "NativeWindowSurface.h"
26#include "StartPropertySetThread.h"
Lloyd Piquef58625d2017-12-19 13:22:33 -080027#include "SurfaceFlinger.h"
Lloyd Pique90c115d2018-09-18 21:39:42 -070028#include "SurfaceFlingerFactory.h"
29#include "SurfaceInterceptor.h"
Lloyd Piquef58625d2017-12-19 13:22:33 -080030
31namespace android {
32
Lloyd Piquee39cad22017-12-20 17:01:29 -080033class EventThread;
34
Peiyong Lin833074a2018-08-28 11:53:54 -070035namespace renderengine {
Lloyd Pique90c115d2018-09-18 21:39:42 -070036
Lloyd Piquee39cad22017-12-20 17:01:29 -080037class RenderEngine;
Lloyd Pique90c115d2018-09-18 21:39:42 -070038
39} // namespace renderengine
Lloyd Piquee39cad22017-12-20 17:01:29 -080040
41namespace Hwc2 {
Lloyd Pique90c115d2018-09-18 21:39:42 -070042
Lloyd Piquee39cad22017-12-20 17:01:29 -080043class Composer;
Lloyd Pique90c115d2018-09-18 21:39:42 -070044
45} // namespace Hwc2
46
47namespace surfaceflinger::test {
48
49class Factory final : public surfaceflinger::Factory {
50public:
51 ~Factory() = default;
52
53 std::unique_ptr<DispSync> createDispSync(const char*, bool, int64_t) override {
54 // TODO: Use test-fixture controlled factory
55 return nullptr;
56 }
57
58 std::unique_ptr<EventControlThread> createEventControlThread(
59 std::function<void(bool)>) override {
60 // TODO: Use test-fixture controlled factory
61 return nullptr;
62 }
63
64 std::unique_ptr<HWComposer> createHWComposer(const std::string&) override {
65 // TODO: Use test-fixture controlled factory
66 return nullptr;
67 }
68
69 std::unique_ptr<MessageQueue> createMessageQueue() override {
70 // TODO: Use test-fixture controlled factory
71 return std::make_unique<android::impl::MessageQueue>();
72 }
73
74 std::unique_ptr<Scheduler> createScheduler(std::function<void(bool)>) override {
75 // TODO: Use test-fixture controlled factory
76 return nullptr;
77 }
78
79 std::unique_ptr<SurfaceInterceptor> createSurfaceInterceptor(SurfaceFlinger* flinger) override {
80 // TODO: Use test-fixture controlled factory
81 return std::make_unique<android::impl::SurfaceInterceptor>(flinger);
82 }
83
84 sp<StartPropertySetThread> createStartPropertySetThread(bool timestampPropertyValue) override {
85 // TODO: Use test-fixture controlled factory
86 return new StartPropertySetThread(timestampPropertyValue);
87 }
88
89 sp<DisplayDevice> createDisplayDevice(DisplayDeviceCreationArgs&& creationArgs) override {
90 // TODO: Use test-fixture controlled factory
91 return new DisplayDevice(std::move(creationArgs));
92 }
93
94 sp<GraphicBuffer> createGraphicBuffer(uint32_t width, uint32_t height, PixelFormat format,
95 uint32_t layerCount, uint64_t usage,
96 std::string requestorName) override {
97 // TODO: Use test-fixture controlled factory
98 return new GraphicBuffer(width, height, format, layerCount, usage, requestorName);
99 }
100
101 void createBufferQueue(sp<IGraphicBufferProducer>* outProducer,
102 sp<IGraphicBufferConsumer>* outConsumer,
103 bool consumerIsSurfaceFlinger) override {
104 if (!mCreateBufferQueue) return;
105 mCreateBufferQueue(outProducer, outConsumer, consumerIsSurfaceFlinger);
106 }
107
108 std::unique_ptr<surfaceflinger::NativeWindowSurface> createNativeWindowSurface(
109 const sp<IGraphicBufferProducer>& producer) override {
110 if (!mCreateNativeWindowSurface) return nullptr;
111 return mCreateNativeWindowSurface(producer);
112 }
113
114 sp<BufferQueueLayer> createBufferQueueLayer(const LayerCreationArgs&) override {
115 // TODO: Use test-fixture controlled factory
116 return nullptr;
117 }
118
119 sp<BufferStateLayer> createBufferStateLayer(const LayerCreationArgs&) override {
120 // TODO: Use test-fixture controlled factory
121 return nullptr;
122 }
123
124 sp<ColorLayer> createColorLayer(const LayerCreationArgs&) override {
125 // TODO: Use test-fixture controlled factory
126 return nullptr;
127 }
128
129 sp<ContainerLayer> createContainerLayer(const LayerCreationArgs&) override {
130 // TODO: Use test-fixture controlled factory
131 return nullptr;
132 }
133
134 using CreateBufferQueueFunction =
135 std::function<void(sp<IGraphicBufferProducer>* /* outProducer */,
136 sp<IGraphicBufferConsumer>* /* outConsumer */,
137 bool /* consumerIsSurfaceFlinger */)>;
138 CreateBufferQueueFunction mCreateBufferQueue;
139
140 using CreateNativeWindowSurfaceFunction =
141 std::function<std::unique_ptr<surfaceflinger::NativeWindowSurface>(
142 const sp<IGraphicBufferProducer>&)>;
143 CreateNativeWindowSurfaceFunction mCreateNativeWindowSurface;
144};
145
146} // namespace surfaceflinger::test
Lloyd Piquee39cad22017-12-20 17:01:29 -0800147
Lloyd Piquef58625d2017-12-19 13:22:33 -0800148class TestableSurfaceFlinger {
149public:
150 // Extend this as needed for accessing SurfaceFlinger private (and public)
151 // functions.
152
Peiyong Lin833074a2018-08-28 11:53:54 -0700153 void setupRenderEngine(std::unique_ptr<renderengine::RenderEngine> renderEngine) {
Lloyd Piquee39cad22017-12-20 17:01:29 -0800154 mFlinger->getBE().mRenderEngine = std::move(renderEngine);
155 }
156
157 void setupComposer(std::unique_ptr<Hwc2::Composer> composer) {
158 mFlinger->getBE().mHwc.reset(new HWComposer(std::move(composer)));
159 }
160
Lloyd Pique90c115d2018-09-18 21:39:42 -0700161 using CreateBufferQueueFunction = surfaceflinger::test::Factory::CreateBufferQueueFunction;
Lloyd Pique5b36f3f2018-01-17 11:57:07 -0800162 void setCreateBufferQueueFunction(CreateBufferQueueFunction f) {
Lloyd Pique90c115d2018-09-18 21:39:42 -0700163 mFactory.mCreateBufferQueue = f;
Lloyd Pique5b36f3f2018-01-17 11:57:07 -0800164 }
165
Lloyd Pique90c115d2018-09-18 21:39:42 -0700166 using CreateNativeWindowSurfaceFunction =
167 surfaceflinger::test::Factory::CreateNativeWindowSurfaceFunction;
Lloyd Pique0b1fe702018-01-22 18:03:16 -0800168 void setCreateNativeWindowSurface(CreateNativeWindowSurfaceFunction f) {
Lloyd Pique90c115d2018-09-18 21:39:42 -0700169 mFactory.mCreateNativeWindowSurface = f;
Lloyd Pique0b1fe702018-01-22 18:03:16 -0800170 }
171
172 using HotplugEvent = SurfaceFlinger::HotplugEvent;
173
Lloyd Piqued6b579f2018-04-06 15:29:10 -0700174 auto& mutableLayerCurrentState(sp<Layer> layer) { return layer->mCurrentState; }
175 auto& mutableLayerDrawingState(sp<Layer> layer) { return layer->mDrawingState; }
176
177 void setLayerSidebandStream(sp<Layer> layer, sp<NativeHandle> sidebandStream) {
178 layer->getBE().compositionInfo.hwc.sidebandStream = sidebandStream;
179 }
180
181 void setLayerCompositionType(sp<Layer> layer, HWC2::Composition type) {
182 layer->getBE().mHwcLayers[DisplayDevice::DISPLAY_PRIMARY].compositionType = type;
183 };
184
185 void setLayerPotentialCursor(sp<Layer> layer, bool potentialCursor) {
186 layer->mPotentialCursor = potentialCursor;
187 }
188
Lloyd Piquef58625d2017-12-19 13:22:33 -0800189 /* ------------------------------------------------------------------------
190 * Forwarding for functions being tested
191 */
Lloyd Pique0b1fe702018-01-22 18:03:16 -0800192
Lloyd Piquea482f992018-01-22 19:00:34 -0800193 auto createDisplay(const String8& displayName, bool secure) {
194 return mFlinger->createDisplay(displayName, secure);
195 }
196
Dominik Laskowskieecd6592018-05-29 10:25:41 -0700197 auto destroyDisplay(const sp<IBinder>& displayToken) {
198 return mFlinger->destroyDisplay(displayToken);
199 }
Lloyd Piquea482f992018-01-22 19:00:34 -0800200
Lloyd Piqued6fbb8a2018-01-22 19:08:36 -0800201 auto resetDisplayState() { return mFlinger->resetDisplayState(); }
202
Dominik Laskowski7e045462018-05-30 13:02:02 -0700203 auto setupNewDisplayDeviceInternal(const wp<IBinder>& displayToken, int32_t displayId,
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800204 const DisplayDeviceState& state,
205 const sp<DisplaySurface>& dispSurface,
206 const sp<IGraphicBufferProducer>& producer) {
Dominik Laskowski7e045462018-05-30 13:02:02 -0700207 return mFlinger->setupNewDisplayDeviceInternal(displayToken, displayId, state, dispSurface,
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800208 producer);
209 }
210
Lloyd Pique0b1fe702018-01-22 18:03:16 -0800211 auto handleTransactionLocked(uint32_t transactionFlags) {
212 return mFlinger->handleTransactionLocked(transactionFlags);
213 }
Lloyd Piquef58625d2017-12-19 13:22:33 -0800214
Lloyd Pique6cf11032018-01-22 18:57:44 -0800215 auto onHotplugReceived(int32_t sequenceId, hwc2_display_t display,
216 HWC2::Connection connection) {
217 return mFlinger->onHotplugReceived(sequenceId, display, connection);
218 }
219
Lloyd Pique9d9cf402018-02-16 17:47:13 -0800220 auto setDisplayStateLocked(const DisplayState& s) { return mFlinger->setDisplayStateLocked(s); }
221
Lloyd Pique86016da2018-03-01 16:09:38 -0800222 auto onInitializeDisplays() { return mFlinger->onInitializeDisplays(); }
223
Dominik Laskowskia2edf612018-06-01 13:15:16 -0700224 auto setPowerModeInternal(const sp<DisplayDevice>& display, int mode,
225 bool stateLockHeld = false) {
226 return mFlinger->setPowerModeInternal(display, mode, stateLockHeld);
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -0800227 }
228
Lloyd Piqued6b579f2018-04-06 15:29:10 -0700229 auto onMessageReceived(int32_t what) { return mFlinger->onMessageReceived(what); }
230
231 auto captureScreenImplLocked(const RenderArea& renderArea,
232 TraverseLayersFunction traverseLayers, ANativeWindowBuffer* buffer,
233 bool useIdentityTransform, bool forSystem, int* outSyncFd) {
234 return mFlinger->captureScreenImplLocked(renderArea, traverseLayers, buffer,
235 useIdentityTransform, forSystem, outSyncFd);
236 }
237
chaviw0e3479f2018-09-10 16:49:30 -0700238 auto traverseLayersInDisplay(const sp<const DisplayDevice>& display,
239 const LayerVector::Visitor& visitor) {
240 return mFlinger->SurfaceFlinger::traverseLayersInDisplay(display, visitor);
Lloyd Piqued6b579f2018-04-06 15:29:10 -0700241 }
242
Lloyd Pique86016da2018-03-01 16:09:38 -0800243 /* ------------------------------------------------------------------------
244 * Read-only access to private data to assert post-conditions.
245 */
246
247 const auto& getAnimFrameTracker() const { return mFlinger->mAnimFrameTracker; }
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -0800248 const auto& getHasPoweredOff() const { return mFlinger->mHasPoweredOff; }
249 const auto& getHWVsyncAvailable() const { return mFlinger->mHWVsyncAvailable; }
250 const auto& getVisibleRegionsDirty() const { return mFlinger->mVisibleRegionsDirty; }
251
Lloyd Pique86016da2018-03-01 16:09:38 -0800252 const auto& getCompositorTiming() const { return mFlinger->getBE().mCompositorTiming; }
253
Lloyd Piquef58625d2017-12-19 13:22:33 -0800254 /* ------------------------------------------------------------------------
255 * Read-write access to private data to set up preconditions and assert
256 * post-conditions.
257 */
Lloyd Pique0b1fe702018-01-22 18:03:16 -0800258
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800259 auto& mutableHasWideColorDisplay() { return SurfaceFlinger::hasWideColorDisplay; }
Chia-I Wu304d9cd2018-08-27 14:38:14 -0700260 auto& mutablePrimaryDisplayOrientation() { return SurfaceFlinger::primaryDisplayOrientation; }
Peiyong Lin13effd12018-07-24 17:01:47 -0700261 auto& mutableUseColorManagement() { return SurfaceFlinger::useColorManagement; }
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800262
Lloyd Piquee39cad22017-12-20 17:01:29 -0800263 auto& mutableCurrentState() { return mFlinger->mCurrentState; }
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800264 auto& mutableDisplayColorSetting() { return mFlinger->mDisplayColorSetting; }
Lloyd Piqued6b579f2018-04-06 15:29:10 -0700265 auto& mutableDisplays() { return mFlinger->mDisplays; }
266 auto& mutableDisplayTokens() { return mFlinger->mDisplayTokens; }
Lloyd Piquee39cad22017-12-20 17:01:29 -0800267 auto& mutableDrawingState() { return mFlinger->mDrawingState; }
Lloyd Pique0b1fe702018-01-22 18:03:16 -0800268 auto& mutableEventControlThread() { return mFlinger->mEventControlThread; }
Lloyd Piquee39cad22017-12-20 17:01:29 -0800269 auto& mutableEventQueue() { return mFlinger->mEventQueue; }
Lloyd Pique0b1fe702018-01-22 18:03:16 -0800270 auto& mutableEventThread() { return mFlinger->mEventThread; }
Lloyd Piqued6b579f2018-04-06 15:29:10 -0700271 auto& mutableGeometryInvalid() { return mFlinger->mGeometryInvalid; }
Lloyd Piqued6fbb8a2018-01-22 19:08:36 -0800272 auto& mutableHWVsyncAvailable() { return mFlinger->mHWVsyncAvailable; }
Lloyd Pique0b1fe702018-01-22 18:03:16 -0800273 auto& mutableInterceptor() { return mFlinger->mInterceptor; }
Lloyd Pique6cf11032018-01-22 18:57:44 -0800274 auto& mutableMainThreadId() { return mFlinger->mMainThreadId; }
Lloyd Pique0b1fe702018-01-22 18:03:16 -0800275 auto& mutablePendingHotplugEvents() { return mFlinger->mPendingHotplugEvents; }
Lloyd Pique41be5d22018-06-21 13:11:48 -0700276 auto& mutablePrimaryDispSync() { return mFlinger->mPrimaryDispSync; }
Lloyd Piqued6fbb8a2018-01-22 19:08:36 -0800277 auto& mutablePrimaryHWVsyncEnabled() { return mFlinger->mPrimaryHWVsyncEnabled; }
Lloyd Piqued6b579f2018-04-06 15:29:10 -0700278 auto& mutableTexturePool() { return mFlinger->mTexturePool; }
Lloyd Pique0b1fe702018-01-22 18:03:16 -0800279 auto& mutableTransactionFlags() { return mFlinger->mTransactionFlags; }
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800280 auto& mutableUseHwcVirtualDisplays() { return mFlinger->mUseHwcVirtualDisplays; }
Lloyd Piquee39cad22017-12-20 17:01:29 -0800281
Lloyd Pique6cf11032018-01-22 18:57:44 -0800282 auto& mutableComposerSequenceId() { return mFlinger->getBE().mComposerSequenceId; }
Lloyd Piquea618d852018-01-17 11:52:30 -0800283 auto& mutableHwcDisplayData() { return mFlinger->getBE().mHwc->mDisplayData; }
284 auto& mutableHwcDisplaySlots() { return mFlinger->getBE().mHwc->mHwcDisplaySlots; }
285
Lloyd Piquee39cad22017-12-20 17:01:29 -0800286 ~TestableSurfaceFlinger() {
287 // All these pointer and container clears help ensure that GMock does
288 // not report a leaked object, since the SurfaceFlinger instance may
289 // still be referenced by something despite our best efforts to destroy
290 // it after each test is done.
291 mutableDisplays().clear();
Lloyd Pique0b1fe702018-01-22 18:03:16 -0800292 mutableEventControlThread().reset();
293 mutableEventQueue().reset();
Lloyd Piquee39cad22017-12-20 17:01:29 -0800294 mutableEventThread().reset();
Lloyd Pique0b1fe702018-01-22 18:03:16 -0800295 mutableInterceptor().reset();
Lloyd Pique41be5d22018-06-21 13:11:48 -0700296 mutablePrimaryDispSync().reset();
Lloyd Piquee39cad22017-12-20 17:01:29 -0800297 mFlinger->getBE().mHwc.reset();
298 mFlinger->getBE().mRenderEngine.reset();
299 }
Lloyd Piquef58625d2017-12-19 13:22:33 -0800300
Lloyd Piquea618d852018-01-17 11:52:30 -0800301 /* ------------------------------------------------------------------------
302 * Wrapper classes for Read-write access to private data to set up
303 * preconditions and assert post-conditions.
304 */
Michael Wright5d22d4f2018-06-21 02:50:34 +0100305 class FakePowerAdvisor : public Hwc2::PowerAdvisor {
306 public:
307 FakePowerAdvisor() = default;
308 ~FakePowerAdvisor() override = default;
Lloyd Pique2eef1d22018-09-18 21:30:04 -0700309 void setExpensiveRenderingExpected(hwc2_display_t, bool) override {}
Michael Wright5d22d4f2018-06-21 02:50:34 +0100310 };
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800311
Lloyd Piquea618d852018-01-17 11:52:30 -0800312 struct HWC2Display : public HWC2::Display {
Michael Wright5d22d4f2018-06-21 02:50:34 +0100313 HWC2Display(Hwc2::Composer& composer, Hwc2::PowerAdvisor& advisor,
Lloyd Piquea618d852018-01-17 11:52:30 -0800314 const std::unordered_set<HWC2::Capability>& capabilities, hwc2_display_t id,
315 HWC2::DisplayType type)
Michael Wright5d22d4f2018-06-21 02:50:34 +0100316 : HWC2::Display(composer, advisor, capabilities, id, type) {}
Lloyd Piquea618d852018-01-17 11:52:30 -0800317 ~HWC2Display() {
318 // Prevents a call to disable vsyncs.
319 mType = HWC2::DisplayType::Invalid;
320 }
321
322 auto& mutableIsConnected() { return this->mIsConnected; }
323 auto& mutableConfigs() { return this->mConfigs; }
Lloyd Piqued6b579f2018-04-06 15:29:10 -0700324 auto& mutableLayers() { return this->mLayers; }
Lloyd Piquea618d852018-01-17 11:52:30 -0800325 };
326
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800327 class FakeHwcDisplayInjector {
328 public:
329 static constexpr hwc2_display_t DEFAULT_HWC_DISPLAY_ID = 1000;
330 static constexpr int32_t DEFAULT_WIDTH = 1920;
331 static constexpr int32_t DEFAULT_HEIGHT = 1280;
332 static constexpr int32_t DEFAULT_REFRESH_RATE = 16'666'666;
333 static constexpr int32_t DEFAULT_DPI = 320;
334 static constexpr int32_t DEFAULT_ACTIVE_CONFIG = 0;
335
336 FakeHwcDisplayInjector(DisplayDevice::DisplayType type, HWC2::DisplayType hwcDisplayType)
337 : mType(type), mHwcDisplayType(hwcDisplayType) {}
338
339 auto& setHwcDisplayId(hwc2_display_t displayId) {
340 mHwcDisplayId = displayId;
341 return *this;
342 }
343
344 auto& setWidth(int32_t width) {
345 mWidth = width;
346 return *this;
347 }
348
349 auto& setHeight(int32_t height) {
350 mHeight = height;
351 return *this;
352 }
353
354 auto& setRefreshRate(int32_t refreshRate) {
355 mRefreshRate = refreshRate;
356 return *this;
357 }
358
359 auto& setDpiX(int32_t dpi) {
360 mDpiX = dpi;
361 return *this;
362 }
363
364 auto& setDpiY(int32_t dpi) {
365 mDpiY = dpi;
366 return *this;
367 }
368
369 auto& setActiveConfig(int32_t config) {
370 mActiveConfig = config;
371 return *this;
372 }
373
Lloyd Piquee22f0332018-07-16 16:35:56 -0700374 auto& setCapabilities(const std::unordered_set<HWC2::Capability>* capabilities) {
375 mCapabilities = capabilities;
376 return *this;
377 }
378
379 auto& setPowerAdvisor(Hwc2::PowerAdvisor* powerAdvisor) {
380 mPowerAdvisor = powerAdvisor;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800381 return *this;
382 }
383
384 void inject(TestableSurfaceFlinger* flinger, Hwc2::Composer* composer) {
Lloyd Piquee22f0332018-07-16 16:35:56 -0700385 static FakePowerAdvisor defaultPowerAdvisor;
386 if (mPowerAdvisor == nullptr) mPowerAdvisor = &defaultPowerAdvisor;
387 static const std::unordered_set<HWC2::Capability> defaultCapabilities;
388 if (mCapabilities == nullptr) mCapabilities = &defaultCapabilities;
389
390 // Caution - Make sure that any values passed by reference here do
391 // not refer to an instance owned by FakeHwcDisplayInjector. This
392 // class has temporary lifetime, while the constructed HWC2::Display
393 // is much longer lived.
394 auto display = std::make_unique<HWC2Display>(*composer, *mPowerAdvisor, *mCapabilities,
Michael Wright5d22d4f2018-06-21 02:50:34 +0100395 mHwcDisplayId, mHwcDisplayType);
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800396
397 auto config = HWC2::Display::Config::Builder(*display, mActiveConfig);
398 config.setWidth(mWidth);
399 config.setHeight(mHeight);
400 config.setVsyncPeriod(mRefreshRate);
401 config.setDpiX(mDpiX);
402 config.setDpiY(mDpiY);
403 display->mutableConfigs().emplace(mActiveConfig, config.build());
404 display->mutableIsConnected() = true;
405
406 ASSERT_TRUE(flinger->mutableHwcDisplayData().size() > static_cast<size_t>(mType));
Dominik Laskowskif9750f22018-06-06 12:24:53 -0700407 flinger->mutableHwcDisplayData()[mType] = HWComposer::DisplayData();
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800408 flinger->mutableHwcDisplayData()[mType].hwcDisplay = display.get();
409 flinger->mutableHwcDisplaySlots().emplace(mHwcDisplayId, mType);
410
411 flinger->mFakeHwcDisplays.push_back(std::move(display));
412 }
413
414 private:
415 DisplayDevice::DisplayType mType;
416 HWC2::DisplayType mHwcDisplayType;
417 hwc2_display_t mHwcDisplayId = DEFAULT_HWC_DISPLAY_ID;
418 int32_t mWidth = DEFAULT_WIDTH;
419 int32_t mHeight = DEFAULT_HEIGHT;
420 int32_t mRefreshRate = DEFAULT_REFRESH_RATE;
421 int32_t mDpiX = DEFAULT_DPI;
422 int32_t mDpiY = DEFAULT_DPI;
423 int32_t mActiveConfig = DEFAULT_ACTIVE_CONFIG;
Lloyd Piquee22f0332018-07-16 16:35:56 -0700424 const std::unordered_set<HWC2::Capability>* mCapabilities = nullptr;
425 Hwc2::PowerAdvisor* mPowerAdvisor = nullptr;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800426 };
427
428 class FakeDisplayDeviceInjector {
429 public:
430 FakeDisplayDeviceInjector(TestableSurfaceFlinger& flinger, DisplayDevice::DisplayType type,
Dominik Laskowski7e045462018-05-30 13:02:02 -0700431 int32_t displayId)
Lloyd Pique2eef1d22018-09-18 21:30:04 -0700432 : mFlinger(flinger),
433 mCreationArgs(flinger.mFlinger.get(), mDisplayToken, type, displayId) {}
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800434
435 sp<IBinder> token() const { return mDisplayToken; }
436
437 DisplayDeviceState& mutableDrawingDisplayState() {
438 return mFlinger.mutableDrawingState().displays.editValueFor(mDisplayToken);
439 }
440
441 DisplayDeviceState& mutableCurrentDisplayState() {
442 return mFlinger.mutableCurrentState().displays.editValueFor(mDisplayToken);
443 }
444
Lloyd Pique9d9cf402018-02-16 17:47:13 -0800445 const auto& getDrawingDisplayState() {
446 return mFlinger.mutableDrawingState().displays.valueFor(mDisplayToken);
447 }
448
449 const auto& getCurrentDisplayState() {
450 return mFlinger.mutableCurrentState().displays.valueFor(mDisplayToken);
451 }
452
Dominik Laskowski9fae1022018-05-29 13:17:40 -0700453 auto& mutableDisplayDevice() { return mFlinger.mutableDisplays()[mDisplayToken]; }
Lloyd Pique9d9cf402018-02-16 17:47:13 -0800454
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800455 auto& setNativeWindow(const sp<ANativeWindow>& nativeWindow) {
Lloyd Pique2eef1d22018-09-18 21:30:04 -0700456 mCreationArgs.nativeWindow = nativeWindow;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800457 return *this;
458 }
459
460 auto& setDisplaySurface(const sp<DisplaySurface>& displaySurface) {
Lloyd Pique2eef1d22018-09-18 21:30:04 -0700461 mCreationArgs.displaySurface = displaySurface;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800462 return *this;
463 }
464
Peiyong Lin833074a2018-08-28 11:53:54 -0700465 auto& setRenderSurface(std::unique_ptr<renderengine::Surface> renderSurface) {
Lloyd Pique2eef1d22018-09-18 21:30:04 -0700466 mCreationArgs.renderSurface = std::move(renderSurface);
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800467 return *this;
468 }
469
470 auto& setSecure(bool secure) {
Lloyd Pique2eef1d22018-09-18 21:30:04 -0700471 mCreationArgs.isSecure = secure;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800472 return *this;
473 }
474
Lloyd Piqued6b579f2018-04-06 15:29:10 -0700475 auto& setDisplaySize(int width, int height) {
Lloyd Pique2eef1d22018-09-18 21:30:04 -0700476 mCreationArgs.displayWidth = width;
477 mCreationArgs.displayHeight = height;
Lloyd Piqued6b579f2018-04-06 15:29:10 -0700478 return *this;
479 }
480
481 auto& setPowerMode(int mode) {
Lloyd Pique2eef1d22018-09-18 21:30:04 -0700482 mCreationArgs.initialPowerMode = mode;
Lloyd Piqued6b579f2018-04-06 15:29:10 -0700483 return *this;
484 }
485
Valerie Hau9758ae02018-10-09 16:05:09 -0700486 auto& setHwcColorModes(
487 const std::unordered_map<ui::ColorMode, std::vector<ui::RenderIntent>>
488 hwcColorModes) {
489 mCreationArgs.hwcColorModes = hwcColorModes;
490 return *this;
491 }
492
493 auto& setHasWideColorGamut(bool hasWideColorGamut) {
494 mCreationArgs.hasWideColorGamut = hasWideColorGamut;
495 return *this;
496 }
497
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800498 sp<DisplayDevice> inject() {
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800499 DisplayDeviceState state;
Lloyd Pique2eef1d22018-09-18 21:30:04 -0700500 state.type = mCreationArgs.type;
501 state.isSecure = mCreationArgs.isSecure;
502
503 sp<DisplayDevice> device = new DisplayDevice(std::move(mCreationArgs));
504 mFlinger.mutableDisplays().emplace(mDisplayToken, device);
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800505 mFlinger.mutableCurrentState().displays.add(mDisplayToken, state);
506 mFlinger.mutableDrawingState().displays.add(mDisplayToken, state);
507
Lloyd Pique2eef1d22018-09-18 21:30:04 -0700508 if (state.type >= DisplayDevice::DISPLAY_PRIMARY &&
509 state.type < DisplayDevice::DISPLAY_VIRTUAL) {
510 mFlinger.mutableDisplayTokens()[state.type] = mDisplayToken;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800511 }
512
513 return device;
514 }
515
516 private:
517 TestableSurfaceFlinger& mFlinger;
518 sp<BBinder> mDisplayToken = new BBinder();
Lloyd Pique2eef1d22018-09-18 21:30:04 -0700519 DisplayDeviceCreationArgs mCreationArgs;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800520 };
521
Lloyd Pique90c115d2018-09-18 21:39:42 -0700522 surfaceflinger::test::Factory mFactory;
523 sp<SurfaceFlinger> mFlinger = new SurfaceFlinger(mFactory, SurfaceFlinger::SkipInitialization);
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800524
525 // We need to keep a reference to these so they are properly destroyed.
526 std::vector<std::unique_ptr<HWC2Display>> mFakeHwcDisplays;
Lloyd Piquef58625d2017-12-19 13:22:33 -0800527};
528
529} // namespace android