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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
Ady Abrahamb0dbdaa2020-01-06 16:19:42 -080017// TODO(b/129481165): remove the #pragma below and fix conversion issues
18#pragma clang diagnostic push
19#pragma clang diagnostic ignored "-Wconversion"
20
Lloyd Piquef58625d2017-12-19 13:22:33 -080021#undef LOG_TAG
22#define LOG_TAG "LibSurfaceFlingerUnittests"
23
Dominik Laskowski075d3172018-05-24 15:50:06 -070024#include <type_traits>
25
Lais Andrade3a6e47d2020-04-02 11:20:16 +010026#include <android/hardware/power/Boost.h>
Lloyd Pique3d0c02e2018-10-19 18:38:12 -070027#include <compositionengine/Display.h>
28#include <compositionengine/DisplayColorProfile.h>
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -070029#include <compositionengine/impl/Display.h>
Lloyd Pique33050472019-12-19 17:12:44 -080030#include <compositionengine/impl/OutputCompositionState.h>
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -070031#include <compositionengine/mock/Display.h>
32#include <compositionengine/mock/DisplayColorProfile.h>
Lloyd Pique542307f2018-10-19 13:24:08 -070033#include <compositionengine/mock/DisplaySurface.h>
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -070034#include <compositionengine/mock/RenderSurface.h>
Lloyd Piquef58625d2017-12-19 13:22:33 -080035#include <gmock/gmock.h>
36#include <gtest/gtest.h>
Lloyd Pique1ebe0902019-10-04 14:47:13 -070037#include <gui/mock/GraphicBufferConsumer.h>
38#include <gui/mock/GraphicBufferProducer.h>
Lloyd Piquef58625d2017-12-19 13:22:33 -080039#include <log/log.h>
Lloyd Pique3823e7b2018-10-18 16:58:10 -070040#include <renderengine/mock/RenderEngine.h>
Valerie Hau9758ae02018-10-09 16:05:09 -070041#include <ui/DebugUtils.h>
Dominik Laskowski075d3172018-05-24 15:50:06 -070042
43#include "DisplayIdentificationTest.h"
Ana Krulecafb45842019-02-13 13:33:03 -080044#include "TestableScheduler.h"
Lloyd Piquef58625d2017-12-19 13:22:33 -080045#include "TestableSurfaceFlinger.h"
Lloyd Piquecbe00012018-02-02 15:40:42 -080046#include "mock/DisplayHardware/MockComposer.h"
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -070047#include "mock/DisplayHardware/MockPowerAdvisor.h"
Lloyd Pique41be5d22018-06-21 13:11:48 -070048#include "mock/MockDispSync.h"
Lloyd Piquecbe00012018-02-02 15:40:42 -080049#include "mock/MockEventControlThread.h"
50#include "mock/MockEventThread.h"
51#include "mock/MockMessageQueue.h"
52#include "mock/MockNativeWindowSurface.h"
53#include "mock/MockSurfaceInterceptor.h"
Lloyd Piquecbe00012018-02-02 15:40:42 -080054#include "mock/system/window/MockNativeWindow.h"
Lloyd Piquef58625d2017-12-19 13:22:33 -080055
56namespace android {
57namespace {
58
Peiyong Line9d809e2020-04-14 13:10:48 -070059namespace hal = android::hardware::graphics::composer::hal;
60
Lais Andrade3a6e47d2020-04-02 11:20:16 +010061using android::hardware::power::Boost;
62
Lloyd Piquee39cad22017-12-20 17:01:29 -080063using testing::_;
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -070064using testing::AnyNumber;
Lloyd Piquee39cad22017-12-20 17:01:29 -080065using testing::DoAll;
66using testing::Mock;
Dominik Laskowskidcb38bb2019-01-25 02:35:50 -080067using testing::ResultOf;
Lloyd Piquee39cad22017-12-20 17:01:29 -080068using testing::Return;
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -070069using testing::ReturnRefOfCopy;
Lloyd Piquee39cad22017-12-20 17:01:29 -080070using testing::SetArgPointee;
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -070071using testing::StrictMock;
Lloyd Piquee39cad22017-12-20 17:01:29 -080072
Peiyong Line9d809e2020-04-14 13:10:48 -070073using hal::ColorMode;
74using hal::Connection;
75using hal::DisplayCapability;
76using hal::DisplayType;
77using hal::Error;
78using hal::Hdr;
79using hal::HWDisplayId;
80using hal::IComposer;
81using hal::IComposerClient;
82using hal::PerFrameMetadataKey;
83using hal::PowerMode;
84using hal::RenderIntent;
Lloyd Piquee39cad22017-12-20 17:01:29 -080085
Lloyd Piquec11e0d32018-01-22 18:44:59 -080086using FakeDisplayDeviceInjector = TestableSurfaceFlinger::FakeDisplayDeviceInjector;
87using FakeHwcDisplayInjector = TestableSurfaceFlinger::FakeHwcDisplayInjector;
Lloyd Pique1fa4d462018-01-22 18:03:16 -080088using HotplugEvent = TestableSurfaceFlinger::HotplugEvent;
Lloyd Piquec11e0d32018-01-22 18:44:59 -080089using HWC2Display = TestableSurfaceFlinger::HWC2Display;
Lloyd Piquebc792092018-01-17 11:52:30 -080090
Lloyd Piquec11e0d32018-01-22 18:44:59 -080091constexpr int32_t DEFAULT_REFRESH_RATE = 16'666'666;
Lloyd Piquee39cad22017-12-20 17:01:29 -080092constexpr int32_t DEFAULT_DPI = 320;
Lloyd Piquec11e0d32018-01-22 18:44:59 -080093constexpr int DEFAULT_VIRTUAL_DISPLAY_SURFACE_FORMAT = HAL_PIXEL_FORMAT_RGB_565;
Lloyd Piquee39cad22017-12-20 17:01:29 -080094
Peiyong Lin65248e02020-04-18 21:15:07 -070095constexpr int POWER_MODE_LEET = 1337; // An out of range power mode value
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -080096
Lloyd Piquec11e0d32018-01-22 18:44:59 -080097/* ------------------------------------------------------------------------
98 * Boolean avoidance
99 *
100 * To make calls and template instantiations more readable, we define some
101 * local enums along with an implicit bool conversion.
102 */
103
104#define BOOL_SUBSTITUTE(TYPENAME) enum class TYPENAME : bool { FALSE = false, TRUE = true };
105
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800106BOOL_SUBSTITUTE(Async);
Dominik Laskowski075d3172018-05-24 15:50:06 -0700107BOOL_SUBSTITUTE(Critical);
108BOOL_SUBSTITUTE(Primary);
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800109BOOL_SUBSTITUTE(Secure);
Dominik Laskowski075d3172018-05-24 15:50:06 -0700110BOOL_SUBSTITUTE(Virtual);
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800111
112/* ------------------------------------------------------------------------
113 *
114 */
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800115
Lloyd Piquef58625d2017-12-19 13:22:33 -0800116class DisplayTransactionTest : public testing::Test {
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800117public:
Lloyd Piquef58625d2017-12-19 13:22:33 -0800118 DisplayTransactionTest();
119 ~DisplayTransactionTest() override;
120
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800121 // --------------------------------------------------------------------
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800122 // Mock/Fake injection
Lloyd Piquef58625d2017-12-19 13:22:33 -0800123
Dominik Laskowski7c9dbf92019-08-01 17:57:31 -0700124 void injectMockScheduler();
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800125 void injectMockComposer(int virtualDisplayCount);
126 void injectFakeBufferQueueFactory();
127 void injectFakeNativeWindowSurfaceFactory();
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -0700128 sp<DisplayDevice> injectDefaultInternalDisplay(std::function<void(FakeDisplayDeviceInjector&)>);
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800129
130 // --------------------------------------------------------------------
131 // Postcondition helpers
132
Peiyong Line9d809e2020-04-14 13:10:48 -0700133 bool hasPhysicalHwcDisplay(HWDisplayId hwcDisplayId);
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800134 bool hasTransactionFlagSet(int flag);
135 bool hasDisplayDevice(sp<IBinder> displayToken);
136 sp<DisplayDevice> getDisplayDevice(sp<IBinder> displayToken);
137 bool hasCurrentDisplayState(sp<IBinder> displayToken);
138 const DisplayDeviceState& getCurrentDisplayState(sp<IBinder> displayToken);
139 bool hasDrawingDisplayState(sp<IBinder> displayToken);
140 const DisplayDeviceState& getDrawingDisplayState(sp<IBinder> displayToken);
141
142 // --------------------------------------------------------------------
143 // Test instances
Lloyd Pique5b36f3f2018-01-17 11:57:07 -0800144
Lloyd Piquef58625d2017-12-19 13:22:33 -0800145 TestableSurfaceFlinger mFlinger;
Alec Mouriba013fa2018-10-16 12:43:11 -0700146 sp<mock::NativeWindow> mNativeWindow = new mock::NativeWindow();
Alec Mouri0a9c7b82018-11-16 13:05:25 -0800147 sp<GraphicBuffer> mBuffer = new GraphicBuffer();
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -0700148 Hwc2::mock::PowerAdvisor mPowerAdvisor;
Lloyd Piquee39cad22017-12-20 17:01:29 -0800149
150 // These mocks are created by the test, but are destroyed by SurfaceFlinger
151 // by virtue of being stored into a std::unique_ptr. However we still need
152 // to keep a reference to them for use in setting up call expectations.
Peiyong Lin833074a2018-08-28 11:53:54 -0700153 renderengine::mock::RenderEngine* mRenderEngine = new renderengine::mock::RenderEngine();
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800154 Hwc2::mock::Composer* mComposer = nullptr;
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800155 mock::MessageQueue* mMessageQueue = new mock::MessageQueue();
156 mock::SurfaceInterceptor* mSurfaceInterceptor = new mock::SurfaceInterceptor();
Dominik Laskowski7c9dbf92019-08-01 17:57:31 -0700157
158 mock::DispSync* mPrimaryDispSync = new mock::DispSync;
159 mock::EventControlThread* mEventControlThread = new mock::EventControlThread;
160 mock::EventThread* mEventThread = new mock::EventThread;
161 mock::EventThread* mSFEventThread = new mock::EventThread;
Lloyd Pique5b36f3f2018-01-17 11:57:07 -0800162
163 // These mocks are created only when expected to be created via a factory.
164 sp<mock::GraphicBufferConsumer> mConsumer;
165 sp<mock::GraphicBufferProducer> mProducer;
Lloyd Pique22098362018-09-13 11:46:49 -0700166 surfaceflinger::mock::NativeWindowSurface* mNativeWindowSurface = nullptr;
Lloyd Piquef58625d2017-12-19 13:22:33 -0800167};
168
169DisplayTransactionTest::DisplayTransactionTest() {
170 const ::testing::TestInfo* const test_info =
171 ::testing::UnitTest::GetInstance()->current_test_info();
172 ALOGD("**** Setting up for %s.%s\n", test_info->test_case_name(), test_info->name());
Lloyd Piquee39cad22017-12-20 17:01:29 -0800173
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800174 // Default to no wide color display support configured
175 mFlinger.mutableHasWideColorDisplay() = false;
Peiyong Lin13effd12018-07-24 17:01:47 -0700176 mFlinger.mutableUseColorManagement() = false;
Lloyd Pique6a3b4462019-03-07 20:58:12 -0800177 mFlinger.mutableDisplayColorSetting() = DisplayColorSetting::kUnmanaged;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800178
179 // Default to using HWC virtual displays
180 mFlinger.mutableUseHwcVirtualDisplays() = true;
181
Lloyd Pique5b36f3f2018-01-17 11:57:07 -0800182 mFlinger.setCreateBufferQueueFunction([](auto, auto, auto) {
183 ADD_FAILURE() << "Unexpected request to create a buffer queue.";
184 });
185
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800186 mFlinger.setCreateNativeWindowSurface([](auto) {
187 ADD_FAILURE() << "Unexpected request to create a native window surface.";
188 return nullptr;
189 });
190
Dominik Laskowski7c9dbf92019-08-01 17:57:31 -0700191 injectMockScheduler();
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800192 mFlinger.mutableEventQueue().reset(mMessageQueue);
Peiyong Lin833074a2018-08-28 11:53:54 -0700193 mFlinger.setupRenderEngine(std::unique_ptr<renderengine::RenderEngine>(mRenderEngine));
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800194 mFlinger.mutableInterceptor().reset(mSurfaceInterceptor);
Lloyd Piquee39cad22017-12-20 17:01:29 -0800195
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800196 injectMockComposer(0);
Lloyd Piquef58625d2017-12-19 13:22:33 -0800197}
198
199DisplayTransactionTest::~DisplayTransactionTest() {
200 const ::testing::TestInfo* const test_info =
201 ::testing::UnitTest::GetInstance()->current_test_info();
202 ALOGD("**** Tearing down after %s.%s\n", test_info->test_case_name(), test_info->name());
203}
204
Dominik Laskowski7c9dbf92019-08-01 17:57:31 -0700205void DisplayTransactionTest::injectMockScheduler() {
Ana Krulecafb45842019-02-13 13:33:03 -0800206 EXPECT_CALL(*mEventThread, registerDisplayEventConnection(_));
Dominik Laskowski98041832019-08-01 18:35:59 -0700207 EXPECT_CALL(*mEventThread, createEventConnection(_, _))
208 .WillOnce(Return(new EventThreadConnection(mEventThread, ResyncCallback(),
209 ISurfaceComposer::eConfigChangedSuppress)));
210
Ana Krulecafb45842019-02-13 13:33:03 -0800211 EXPECT_CALL(*mSFEventThread, registerDisplayEventConnection(_));
Dominik Laskowski98041832019-08-01 18:35:59 -0700212 EXPECT_CALL(*mSFEventThread, createEventConnection(_, _))
213 .WillOnce(Return(new EventThreadConnection(mSFEventThread, ResyncCallback(),
214 ISurfaceComposer::eConfigChangedSuppress)));
Ana Krulecafb45842019-02-13 13:33:03 -0800215
Dominik Laskowski7c9dbf92019-08-01 17:57:31 -0700216 mFlinger.setupScheduler(std::unique_ptr<DispSync>(mPrimaryDispSync),
217 std::unique_ptr<EventControlThread>(mEventControlThread),
218 std::unique_ptr<EventThread>(mEventThread),
219 std::unique_ptr<EventThread>(mSFEventThread));
Ana Krulecafb45842019-02-13 13:33:03 -0800220}
221
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800222void DisplayTransactionTest::injectMockComposer(int virtualDisplayCount) {
223 mComposer = new Hwc2::mock::Composer();
Lloyd Piquee39cad22017-12-20 17:01:29 -0800224 EXPECT_CALL(*mComposer, getMaxVirtualDisplayCount()).WillOnce(Return(virtualDisplayCount));
225 mFlinger.setupComposer(std::unique_ptr<Hwc2::Composer>(mComposer));
Lloyd Piquef58625d2017-12-19 13:22:33 -0800226
Lloyd Piquee39cad22017-12-20 17:01:29 -0800227 Mock::VerifyAndClear(mComposer);
228}
229
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800230void DisplayTransactionTest::injectFakeBufferQueueFactory() {
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800231 // This setup is only expected once per test.
232 ASSERT_TRUE(mConsumer == nullptr && mProducer == nullptr);
233
Lloyd Pique5b36f3f2018-01-17 11:57:07 -0800234 mConsumer = new mock::GraphicBufferConsumer();
235 mProducer = new mock::GraphicBufferProducer();
236
237 mFlinger.setCreateBufferQueueFunction([this](auto outProducer, auto outConsumer, bool) {
238 *outProducer = mProducer;
239 *outConsumer = mConsumer;
240 });
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800241}
Lloyd Pique5b36f3f2018-01-17 11:57:07 -0800242
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800243void DisplayTransactionTest::injectFakeNativeWindowSurfaceFactory() {
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800244 // This setup is only expected once per test.
245 ASSERT_TRUE(mNativeWindowSurface == nullptr);
246
Lloyd Pique22098362018-09-13 11:46:49 -0700247 mNativeWindowSurface = new surfaceflinger::mock::NativeWindowSurface();
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800248
Lloyd Pique22098362018-09-13 11:46:49 -0700249 mFlinger.setCreateNativeWindowSurface([this](auto) {
250 return std::unique_ptr<surfaceflinger::NativeWindowSurface>(mNativeWindowSurface);
251 });
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800252}
253
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -0700254sp<DisplayDevice> DisplayTransactionTest::injectDefaultInternalDisplay(
255 std::function<void(FakeDisplayDeviceInjector&)> injectExtra) {
256 constexpr DisplayId DEFAULT_DISPLAY_ID = DisplayId{777};
257 constexpr int DEFAULT_DISPLAY_WIDTH = 1080;
258 constexpr int DEFAULT_DISPLAY_HEIGHT = 1920;
Peiyong Line9d809e2020-04-14 13:10:48 -0700259 constexpr HWDisplayId DEFAULT_DISPLAY_HWC_DISPLAY_ID = 0;
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -0700260
261 // The DisplayDevice is required to have a framebuffer (behind the
262 // ANativeWindow interface) which uses the actual hardware display
263 // size.
264 EXPECT_CALL(*mNativeWindow, query(NATIVE_WINDOW_WIDTH, _))
265 .WillRepeatedly(DoAll(SetArgPointee<1>(DEFAULT_DISPLAY_WIDTH), Return(0)));
266 EXPECT_CALL(*mNativeWindow, query(NATIVE_WINDOW_HEIGHT, _))
267 .WillRepeatedly(DoAll(SetArgPointee<1>(DEFAULT_DISPLAY_HEIGHT), Return(0)));
268 EXPECT_CALL(*mNativeWindow, perform(NATIVE_WINDOW_SET_BUFFERS_FORMAT));
269 EXPECT_CALL(*mNativeWindow, perform(NATIVE_WINDOW_API_CONNECT));
270 EXPECT_CALL(*mNativeWindow, perform(NATIVE_WINDOW_SET_USAGE64));
271 EXPECT_CALL(*mNativeWindow, perform(NATIVE_WINDOW_API_DISCONNECT)).Times(AnyNumber());
272
273 auto compositionDisplay = compositionengine::impl::
274 createDisplay(mFlinger.getCompositionEngine(),
275 compositionengine::DisplayCreationArgsBuilder()
276 .setPhysical(
277 {DEFAULT_DISPLAY_ID, DisplayConnectionType::Internal})
278 .setPixels({DEFAULT_DISPLAY_WIDTH, DEFAULT_DISPLAY_HEIGHT})
279 .setPowerAdvisor(&mPowerAdvisor)
280 .build());
281
282 auto injector =
283 FakeDisplayDeviceInjector(mFlinger, compositionDisplay, DisplayConnectionType::Internal,
Marin Shalamanov4a42d432020-02-12 20:22:26 +0100284 DEFAULT_DISPLAY_HWC_DISPLAY_ID, true /* isPrimary */);
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -0700285
286 injector.setNativeWindow(mNativeWindow);
287 if (injectExtra) {
288 injectExtra(injector);
289 }
290
291 auto displayDevice = injector.inject();
292
293 Mock::VerifyAndClear(mNativeWindow.get());
294
295 return displayDevice;
296}
297
Peiyong Line9d809e2020-04-14 13:10:48 -0700298bool DisplayTransactionTest::hasPhysicalHwcDisplay(HWDisplayId hwcDisplayId) {
Dominik Laskowski075d3172018-05-24 15:50:06 -0700299 return mFlinger.mutableHwcPhysicalDisplayIdMap().count(hwcDisplayId) == 1;
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800300}
301
302bool DisplayTransactionTest::hasTransactionFlagSet(int flag) {
303 return mFlinger.mutableTransactionFlags() & flag;
304}
305
306bool DisplayTransactionTest::hasDisplayDevice(sp<IBinder> displayToken) {
Dominik Laskowski9fae1022018-05-29 13:17:40 -0700307 return mFlinger.mutableDisplays().count(displayToken) == 1;
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800308}
309
310sp<DisplayDevice> DisplayTransactionTest::getDisplayDevice(sp<IBinder> displayToken) {
Dominik Laskowski9fae1022018-05-29 13:17:40 -0700311 return mFlinger.mutableDisplays()[displayToken];
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800312}
313
314bool DisplayTransactionTest::hasCurrentDisplayState(sp<IBinder> displayToken) {
315 return mFlinger.mutableCurrentState().displays.indexOfKey(displayToken) >= 0;
316}
317
318const DisplayDeviceState& DisplayTransactionTest::getCurrentDisplayState(sp<IBinder> displayToken) {
319 return mFlinger.mutableCurrentState().displays.valueFor(displayToken);
320}
321
322bool DisplayTransactionTest::hasDrawingDisplayState(sp<IBinder> displayToken) {
323 return mFlinger.mutableDrawingState().displays.indexOfKey(displayToken) >= 0;
324}
325
326const DisplayDeviceState& DisplayTransactionTest::getDrawingDisplayState(sp<IBinder> displayToken) {
327 return mFlinger.mutableDrawingState().displays.valueFor(displayToken);
328}
329
330/* ------------------------------------------------------------------------
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800331 *
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800332 */
333
Dominik Laskowski075d3172018-05-24 15:50:06 -0700334template <typename PhysicalDisplay>
335struct PhysicalDisplayId {};
336
Dominik Laskowski34157762018-10-31 13:07:19 -0700337template <DisplayId::Type displayId>
338using VirtualDisplayId = std::integral_constant<DisplayId::Type, displayId>;
Dominik Laskowski075d3172018-05-24 15:50:06 -0700339
340struct NoDisplayId {};
341
342template <typename>
343struct IsPhysicalDisplayId : std::bool_constant<false> {};
344
345template <typename PhysicalDisplay>
346struct IsPhysicalDisplayId<PhysicalDisplayId<PhysicalDisplay>> : std::bool_constant<true> {};
347
348template <typename>
349struct DisplayIdGetter;
350
351template <typename PhysicalDisplay>
352struct DisplayIdGetter<PhysicalDisplayId<PhysicalDisplay>> {
353 static std::optional<DisplayId> get() {
354 if (!PhysicalDisplay::HAS_IDENTIFICATION_DATA) {
355 return getFallbackDisplayId(static_cast<bool>(PhysicalDisplay::PRIMARY)
Peiyong Lin65248e02020-04-18 21:15:07 -0700356 ? LEGACY_DISPLAY_TYPE_PRIMARY
357 : LEGACY_DISPLAY_TYPE_EXTERNAL);
Dominik Laskowski075d3172018-05-24 15:50:06 -0700358 }
359
360 const auto info =
361 parseDisplayIdentificationData(PhysicalDisplay::PORT,
362 PhysicalDisplay::GET_IDENTIFICATION_DATA());
363 return info ? std::make_optional(info->id) : std::nullopt;
364 }
365};
366
Dominik Laskowski34157762018-10-31 13:07:19 -0700367template <DisplayId::Type displayId>
Dominik Laskowski075d3172018-05-24 15:50:06 -0700368struct DisplayIdGetter<VirtualDisplayId<displayId>> {
Dominik Laskowski34157762018-10-31 13:07:19 -0700369 static std::optional<DisplayId> get() { return DisplayId{displayId}; }
Dominik Laskowski075d3172018-05-24 15:50:06 -0700370};
371
372template <>
373struct DisplayIdGetter<NoDisplayId> {
374 static std::optional<DisplayId> get() { return {}; }
375};
376
Dominik Laskowski55c85402020-01-21 16:25:47 -0800377template <typename>
378struct DisplayConnectionTypeGetter {
379 static constexpr std::optional<DisplayConnectionType> value;
380};
381
382template <typename PhysicalDisplay>
383struct DisplayConnectionTypeGetter<PhysicalDisplayId<PhysicalDisplay>> {
384 static constexpr std::optional<DisplayConnectionType> value = PhysicalDisplay::CONNECTION_TYPE;
385};
386
Marin Shalamanov4a42d432020-02-12 20:22:26 +0100387template <typename>
388struct HwcDisplayIdGetter {
Peiyong Line9d809e2020-04-14 13:10:48 -0700389 static constexpr std::optional<HWDisplayId> value;
Marin Shalamanov4a42d432020-02-12 20:22:26 +0100390};
391
Peiyong Line9d809e2020-04-14 13:10:48 -0700392constexpr HWDisplayId HWC_VIRTUAL_DISPLAY_HWC_DISPLAY_ID = 1010;
Marin Shalamanov4a42d432020-02-12 20:22:26 +0100393
394template <DisplayId::Type displayId>
395struct HwcDisplayIdGetter<VirtualDisplayId<displayId>> {
Peiyong Line9d809e2020-04-14 13:10:48 -0700396 static constexpr std::optional<HWDisplayId> value = HWC_VIRTUAL_DISPLAY_HWC_DISPLAY_ID;
Marin Shalamanov4a42d432020-02-12 20:22:26 +0100397};
398
399template <typename PhysicalDisplay>
400struct HwcDisplayIdGetter<PhysicalDisplayId<PhysicalDisplay>> {
Peiyong Line9d809e2020-04-14 13:10:48 -0700401 static constexpr std::optional<HWDisplayId> value = PhysicalDisplay::HWC_DISPLAY_ID;
Marin Shalamanov4a42d432020-02-12 20:22:26 +0100402};
403
Dominik Laskowski075d3172018-05-24 15:50:06 -0700404// DisplayIdType can be:
405// 1) PhysicalDisplayId<...> for generated ID of physical display backed by HWC.
406// 2) VirtualDisplayId<...> for hard-coded ID of virtual display backed by HWC.
407// 3) NoDisplayId for virtual display without HWC backing.
408template <typename DisplayIdType, int width, int height, Critical critical, Async async,
409 Secure secure, Primary primary, int grallocUsage>
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800410struct DisplayVariant {
Dominik Laskowski075d3172018-05-24 15:50:06 -0700411 using DISPLAY_ID = DisplayIdGetter<DisplayIdType>;
Dominik Laskowski55c85402020-01-21 16:25:47 -0800412 using CONNECTION_TYPE = DisplayConnectionTypeGetter<DisplayIdType>;
Marin Shalamanov4a42d432020-02-12 20:22:26 +0100413 using HWC_DISPLAY_ID_OPT = HwcDisplayIdGetter<DisplayIdType>;
Dominik Laskowski075d3172018-05-24 15:50:06 -0700414
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800415 // The display width and height
416 static constexpr int WIDTH = width;
417 static constexpr int HEIGHT = height;
418
419 static constexpr int GRALLOC_USAGE = grallocUsage;
420
Dominik Laskowski075d3172018-05-24 15:50:06 -0700421 // Whether the display is virtual or physical
422 static constexpr Virtual VIRTUAL =
423 IsPhysicalDisplayId<DisplayIdType>{} ? Virtual::FALSE : Virtual::TRUE;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800424
425 // When creating native window surfaces for the framebuffer, whether those should be critical
426 static constexpr Critical CRITICAL = critical;
427
428 // When creating native window surfaces for the framebuffer, whether those should be async
429 static constexpr Async ASYNC = async;
430
431 // Whether the display should be treated as secure
432 static constexpr Secure SECURE = secure;
433
Dominik Laskowski075d3172018-05-24 15:50:06 -0700434 // Whether the display is primary
435 static constexpr Primary PRIMARY = primary;
436
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800437 static auto makeFakeExistingDisplayInjector(DisplayTransactionTest* test) {
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -0700438 auto ceDisplayArgs = compositionengine::DisplayCreationArgsBuilder();
439 if (auto displayId = DISPLAY_ID::get()) {
440 ceDisplayArgs.setPhysical({*displayId, DisplayConnectionType::Internal});
441 } else {
442 ceDisplayArgs.setUseHwcVirtualDisplays(false);
443 }
444 ceDisplayArgs.setPixels({WIDTH, HEIGHT}).setPowerAdvisor(&test->mPowerAdvisor).build();
445
446 auto compositionDisplay =
447 compositionengine::impl::createDisplay(test->mFlinger.getCompositionEngine(),
448 ceDisplayArgs.build());
449
Marin Shalamanov4a42d432020-02-12 20:22:26 +0100450 auto injector = FakeDisplayDeviceInjector(test->mFlinger, compositionDisplay,
451 CONNECTION_TYPE::value, HWC_DISPLAY_ID_OPT::value,
452 static_cast<bool>(PRIMARY));
Dominik Laskowski075d3172018-05-24 15:50:06 -0700453
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800454 injector.setSecure(static_cast<bool>(SECURE));
Alec Mouriba013fa2018-10-16 12:43:11 -0700455 injector.setNativeWindow(test->mNativeWindow);
456
457 // Creating a DisplayDevice requires getting default dimensions from the
Lloyd Pique86fa3db2019-02-04 18:46:01 -0800458 // native window along with some other initial setup.
Alec Mouriba013fa2018-10-16 12:43:11 -0700459 EXPECT_CALL(*test->mNativeWindow, query(NATIVE_WINDOW_WIDTH, _))
460 .WillRepeatedly(DoAll(SetArgPointee<1>(WIDTH), Return(0)));
461 EXPECT_CALL(*test->mNativeWindow, query(NATIVE_WINDOW_HEIGHT, _))
462 .WillRepeatedly(DoAll(SetArgPointee<1>(HEIGHT), Return(0)));
Lloyd Pique86fa3db2019-02-04 18:46:01 -0800463 EXPECT_CALL(*test->mNativeWindow, perform(NATIVE_WINDOW_SET_BUFFERS_FORMAT))
464 .WillRepeatedly(Return(0));
465 EXPECT_CALL(*test->mNativeWindow, perform(NATIVE_WINDOW_API_CONNECT))
466 .WillRepeatedly(Return(0));
467 EXPECT_CALL(*test->mNativeWindow, perform(NATIVE_WINDOW_SET_USAGE64))
468 .WillRepeatedly(Return(0));
chaviw8beb4142019-04-11 13:09:05 -0700469 EXPECT_CALL(*test->mNativeWindow, perform(NATIVE_WINDOW_API_DISCONNECT))
470 .WillRepeatedly(Return(0));
471
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800472 return injector;
473 }
474
475 // Called by tests to set up any native window creation call expectations.
476 static void setupNativeWindowSurfaceCreationCallExpectations(DisplayTransactionTest* test) {
477 EXPECT_CALL(*test->mNativeWindowSurface, getNativeWindow())
478 .WillOnce(Return(test->mNativeWindow));
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800479
Alec Mouriba013fa2018-10-16 12:43:11 -0700480 EXPECT_CALL(*test->mNativeWindow, query(NATIVE_WINDOW_WIDTH, _))
481 .WillRepeatedly(DoAll(SetArgPointee<1>(WIDTH), Return(0)));
482 EXPECT_CALL(*test->mNativeWindow, query(NATIVE_WINDOW_HEIGHT, _))
483 .WillRepeatedly(DoAll(SetArgPointee<1>(HEIGHT), Return(0)));
Lloyd Pique86fa3db2019-02-04 18:46:01 -0800484 EXPECT_CALL(*test->mNativeWindow, perform(NATIVE_WINDOW_SET_BUFFERS_FORMAT))
485 .WillRepeatedly(Return(0));
486 EXPECT_CALL(*test->mNativeWindow, perform(NATIVE_WINDOW_API_CONNECT))
487 .WillRepeatedly(Return(0));
488 EXPECT_CALL(*test->mNativeWindow, perform(NATIVE_WINDOW_SET_USAGE64))
489 .WillRepeatedly(Return(0));
chaviw8beb4142019-04-11 13:09:05 -0700490 EXPECT_CALL(*test->mNativeWindow, perform(NATIVE_WINDOW_API_DISCONNECT))
491 .WillRepeatedly(Return(0));
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800492 }
493
494 static void setupFramebufferConsumerBufferQueueCallExpectations(DisplayTransactionTest* test) {
495 EXPECT_CALL(*test->mConsumer, consumerConnect(_, false)).WillOnce(Return(NO_ERROR));
496 EXPECT_CALL(*test->mConsumer, setConsumerName(_)).WillRepeatedly(Return(NO_ERROR));
497 EXPECT_CALL(*test->mConsumer, setConsumerUsageBits(GRALLOC_USAGE))
498 .WillRepeatedly(Return(NO_ERROR));
499 EXPECT_CALL(*test->mConsumer, setDefaultBufferSize(WIDTH, HEIGHT))
500 .WillRepeatedly(Return(NO_ERROR));
501 EXPECT_CALL(*test->mConsumer, setMaxAcquiredBufferCount(_))
502 .WillRepeatedly(Return(NO_ERROR));
503 }
504
505 static void setupFramebufferProducerBufferQueueCallExpectations(DisplayTransactionTest* test) {
506 EXPECT_CALL(*test->mProducer, allocateBuffers(0, 0, 0, 0)).WillRepeatedly(Return());
507 }
508};
509
Peiyong Line9d809e2020-04-14 13:10:48 -0700510template <HWDisplayId hwcDisplayId, DisplayType hwcDisplayType, typename DisplayVariant,
Dominik Laskowski075d3172018-05-24 15:50:06 -0700511 typename PhysicalDisplay = void>
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800512struct HwcDisplayVariant {
513 // The display id supplied by the HWC
Peiyong Line9d809e2020-04-14 13:10:48 -0700514 static constexpr HWDisplayId HWC_DISPLAY_ID = hwcDisplayId;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800515
516 // The HWC display type
Peiyong Line9d809e2020-04-14 13:10:48 -0700517 static constexpr DisplayType HWC_DISPLAY_TYPE = hwcDisplayType;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800518
519 // The HWC active configuration id
Lloyd Pique3c085a02018-05-09 19:38:32 -0700520 static constexpr int HWC_ACTIVE_CONFIG_ID = 2001;
Peiyong Lin65248e02020-04-18 21:15:07 -0700521 static constexpr PowerMode INIT_POWER_MODE = PowerMode::ON;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800522
Peiyong Line9d809e2020-04-14 13:10:48 -0700523 static void injectPendingHotplugEvent(DisplayTransactionTest* test, Connection connection) {
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800524 test->mFlinger.mutablePendingHotplugEvents().emplace_back(
525 HotplugEvent{HWC_DISPLAY_ID, connection});
526 }
527
528 // Called by tests to inject a HWC display setup
Lloyd Pique86fa3db2019-02-04 18:46:01 -0800529 static void injectHwcDisplayWithNoDefaultCapabilities(DisplayTransactionTest* test) {
Dominik Laskowski075d3172018-05-24 15:50:06 -0700530 const auto displayId = DisplayVariant::DISPLAY_ID::get();
531 ASSERT_TRUE(displayId);
532 FakeHwcDisplayInjector(*displayId, HWC_DISPLAY_TYPE,
533 static_cast<bool>(DisplayVariant::PRIMARY))
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800534 .setHwcDisplayId(HWC_DISPLAY_ID)
535 .setWidth(DisplayVariant::WIDTH)
536 .setHeight(DisplayVariant::HEIGHT)
537 .setActiveConfig(HWC_ACTIVE_CONFIG_ID)
Peiyong Lin1336e6e2019-05-28 09:23:50 -0700538 .setPowerMode(INIT_POWER_MODE)
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800539 .inject(&test->mFlinger, test->mComposer);
540 }
541
Lloyd Pique86fa3db2019-02-04 18:46:01 -0800542 // Called by tests to inject a HWC display setup
543 static void injectHwcDisplay(DisplayTransactionTest* test) {
544 EXPECT_CALL(*test->mComposer, getDisplayCapabilities(HWC_DISPLAY_ID, _))
Peiyong Line9d809e2020-04-14 13:10:48 -0700545 .WillOnce(DoAll(SetArgPointee<1>(std::vector<DisplayCapability>({})),
Lloyd Pique86fa3db2019-02-04 18:46:01 -0800546 Return(Error::NONE)));
Peiyong Lin65248e02020-04-18 21:15:07 -0700547 EXPECT_CALL(*test->mComposer, setPowerMode(HWC_DISPLAY_ID, INIT_POWER_MODE))
Peiyong Lin1336e6e2019-05-28 09:23:50 -0700548 .WillOnce(Return(Error::NONE));
Lloyd Pique86fa3db2019-02-04 18:46:01 -0800549 injectHwcDisplayWithNoDefaultCapabilities(test);
550 }
551
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -0700552 static std::shared_ptr<compositionengine::Display> injectCompositionDisplay(
553 DisplayTransactionTest* test) {
554 const ::testing::TestInfo* const test_info =
555 ::testing::UnitTest::GetInstance()->current_test_info();
556
557 auto ceDisplayArgs = compositionengine::DisplayCreationArgsBuilder()
558 .setPhysical({*DisplayVariant::DISPLAY_ID::get(),
559 PhysicalDisplay::CONNECTION_TYPE})
560 .setPixels({DisplayVariant::WIDTH, DisplayVariant::HEIGHT})
561 .setIsSecure(static_cast<bool>(DisplayVariant::SECURE))
562 .setPowerAdvisor(&test->mPowerAdvisor)
563 .setName(std::string("Injected display for ") +
564 test_info->test_case_name() + "." + test_info->name())
565 .build();
566
567 return compositionengine::impl::createDisplay(test->mFlinger.getCompositionEngine(),
568 ceDisplayArgs);
569 }
570
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800571 static void setupHwcHotplugCallExpectations(DisplayTransactionTest* test) {
Dominik Laskowski55c85402020-01-21 16:25:47 -0800572 constexpr auto CONNECTION_TYPE =
573 PhysicalDisplay::CONNECTION_TYPE == DisplayConnectionType::Internal
574 ? IComposerClient::DisplayConnectionType::INTERNAL
575 : IComposerClient::DisplayConnectionType::EXTERNAL;
576
577 EXPECT_CALL(*test->mComposer, getDisplayConnectionType(HWC_DISPLAY_ID, _))
Peiyong Line9d809e2020-04-14 13:10:48 -0700578 .WillOnce(DoAll(SetArgPointee<1>(CONNECTION_TYPE), Return(hal::V2_4::Error::NONE)));
Dominik Laskowski55c85402020-01-21 16:25:47 -0800579
Peiyong Line9d809e2020-04-14 13:10:48 -0700580 EXPECT_CALL(*test->mComposer, setClientTargetSlotCount(_))
581 .WillOnce(Return(hal::Error::NONE));
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800582 EXPECT_CALL(*test->mComposer, getDisplayConfigs(HWC_DISPLAY_ID, _))
583 .WillOnce(DoAll(SetArgPointee<1>(std::vector<unsigned>{HWC_ACTIVE_CONFIG_ID}),
584 Return(Error::NONE)));
585 EXPECT_CALL(*test->mComposer,
586 getDisplayAttribute(HWC_DISPLAY_ID, HWC_ACTIVE_CONFIG_ID,
587 IComposerClient::Attribute::WIDTH, _))
588 .WillOnce(DoAll(SetArgPointee<3>(DisplayVariant::WIDTH), Return(Error::NONE)));
589 EXPECT_CALL(*test->mComposer,
590 getDisplayAttribute(HWC_DISPLAY_ID, HWC_ACTIVE_CONFIG_ID,
591 IComposerClient::Attribute::HEIGHT, _))
592 .WillOnce(DoAll(SetArgPointee<3>(DisplayVariant::HEIGHT), Return(Error::NONE)));
593 EXPECT_CALL(*test->mComposer,
594 getDisplayAttribute(HWC_DISPLAY_ID, HWC_ACTIVE_CONFIG_ID,
595 IComposerClient::Attribute::VSYNC_PERIOD, _))
596 .WillOnce(DoAll(SetArgPointee<3>(DEFAULT_REFRESH_RATE), Return(Error::NONE)));
597 EXPECT_CALL(*test->mComposer,
598 getDisplayAttribute(HWC_DISPLAY_ID, HWC_ACTIVE_CONFIG_ID,
599 IComposerClient::Attribute::DPI_X, _))
600 .WillOnce(DoAll(SetArgPointee<3>(DEFAULT_DPI), Return(Error::NONE)));
601 EXPECT_CALL(*test->mComposer,
602 getDisplayAttribute(HWC_DISPLAY_ID, HWC_ACTIVE_CONFIG_ID,
603 IComposerClient::Attribute::DPI_Y, _))
604 .WillOnce(DoAll(SetArgPointee<3>(DEFAULT_DPI), Return(Error::NONE)));
Ady Abraham7159f572019-10-11 11:10:18 -0700605 EXPECT_CALL(*test->mComposer,
606 getDisplayAttribute(HWC_DISPLAY_ID, HWC_ACTIVE_CONFIG_ID,
607 IComposerClient::Attribute::CONFIG_GROUP, _))
608 .WillOnce(DoAll(SetArgPointee<3>(-1), Return(Error::NONE)));
Dominik Laskowski075d3172018-05-24 15:50:06 -0700609
610 if (PhysicalDisplay::HAS_IDENTIFICATION_DATA) {
611 EXPECT_CALL(*test->mComposer, getDisplayIdentificationData(HWC_DISPLAY_ID, _, _))
Marin Shalamanove5cceea2020-04-30 18:13:10 +0200612 .WillRepeatedly(
613 DoAll(SetArgPointee<1>(PhysicalDisplay::PORT),
614 SetArgPointee<2>(PhysicalDisplay::GET_IDENTIFICATION_DATA()),
615 Return(Error::NONE)));
Dominik Laskowski075d3172018-05-24 15:50:06 -0700616 } else {
617 EXPECT_CALL(*test->mComposer, getDisplayIdentificationData(HWC_DISPLAY_ID, _, _))
Marin Shalamanove5cceea2020-04-30 18:13:10 +0200618 .WillRepeatedly(Return(Error::UNSUPPORTED));
Dominik Laskowski075d3172018-05-24 15:50:06 -0700619 }
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800620 }
621
622 // Called by tests to set up HWC call expectations
623 static void setupHwcGetActiveConfigCallExpectations(DisplayTransactionTest* test) {
624 EXPECT_CALL(*test->mComposer, getActiveConfig(HWC_DISPLAY_ID, _))
Lloyd Pique3c085a02018-05-09 19:38:32 -0700625 .WillRepeatedly(DoAll(SetArgPointee<1>(HWC_ACTIVE_CONFIG_ID), Return(Error::NONE)));
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800626 }
627};
628
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800629// Physical displays are expected to be synchronous, secure, and have a HWC display for output.
630constexpr uint32_t GRALLOC_USAGE_PHYSICAL_DISPLAY =
631 GRALLOC_USAGE_HW_RENDER | GRALLOC_USAGE_HW_COMPOSER | GRALLOC_USAGE_HW_FB;
632
Marin Shalamanov4a42d432020-02-12 20:22:26 +0100633template <typename PhysicalDisplay, int width, int height, Critical critical>
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800634struct PhysicalDisplayVariant
Dominik Laskowski075d3172018-05-24 15:50:06 -0700635 : DisplayVariant<PhysicalDisplayId<PhysicalDisplay>, width, height, critical, Async::FALSE,
636 Secure::TRUE, PhysicalDisplay::PRIMARY, GRALLOC_USAGE_PHYSICAL_DISPLAY>,
Peiyong Line9d809e2020-04-14 13:10:48 -0700637 HwcDisplayVariant<PhysicalDisplay::HWC_DISPLAY_ID, DisplayType::PHYSICAL,
Dominik Laskowski075d3172018-05-24 15:50:06 -0700638 DisplayVariant<PhysicalDisplayId<PhysicalDisplay>, width, height,
639 critical, Async::FALSE, Secure::TRUE,
640 PhysicalDisplay::PRIMARY, GRALLOC_USAGE_PHYSICAL_DISPLAY>,
641 PhysicalDisplay> {};
642
643template <bool hasIdentificationData>
644struct PrimaryDisplay {
Dominik Laskowski55c85402020-01-21 16:25:47 -0800645 static constexpr auto CONNECTION_TYPE = DisplayConnectionType::Internal;
Dominik Laskowski075d3172018-05-24 15:50:06 -0700646 static constexpr Primary PRIMARY = Primary::TRUE;
647 static constexpr uint8_t PORT = 255;
Peiyong Line9d809e2020-04-14 13:10:48 -0700648 static constexpr HWDisplayId HWC_DISPLAY_ID = 1001;
Dominik Laskowski075d3172018-05-24 15:50:06 -0700649 static constexpr bool HAS_IDENTIFICATION_DATA = hasIdentificationData;
650 static constexpr auto GET_IDENTIFICATION_DATA = getInternalEdid;
651};
652
653template <bool hasIdentificationData>
654struct ExternalDisplay {
Dominik Laskowski55c85402020-01-21 16:25:47 -0800655 static constexpr auto CONNECTION_TYPE = DisplayConnectionType::External;
Dominik Laskowski075d3172018-05-24 15:50:06 -0700656 static constexpr Primary PRIMARY = Primary::FALSE;
657 static constexpr uint8_t PORT = 254;
Peiyong Line9d809e2020-04-14 13:10:48 -0700658 static constexpr HWDisplayId HWC_DISPLAY_ID = 1002;
Dominik Laskowski075d3172018-05-24 15:50:06 -0700659 static constexpr bool HAS_IDENTIFICATION_DATA = hasIdentificationData;
660 static constexpr auto GET_IDENTIFICATION_DATA = getExternalEdid;
661};
662
663struct TertiaryDisplay {
664 static constexpr Primary PRIMARY = Primary::FALSE;
Lloyd Pique86fa3db2019-02-04 18:46:01 -0800665 static constexpr uint8_t PORT = 253;
Peiyong Line9d809e2020-04-14 13:10:48 -0700666 static constexpr HWDisplayId HWC_DISPLAY_ID = 1003;
Lloyd Pique86fa3db2019-02-04 18:46:01 -0800667 static constexpr auto GET_IDENTIFICATION_DATA = getExternalEdid;
Dominik Laskowski075d3172018-05-24 15:50:06 -0700668};
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800669
670// A primary display is a physical display that is critical
671using PrimaryDisplayVariant =
Marin Shalamanov4a42d432020-02-12 20:22:26 +0100672 PhysicalDisplayVariant<PrimaryDisplay<false>, 3840, 2160, Critical::TRUE>;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800673
674// An external display is physical display that is not critical.
675using ExternalDisplayVariant =
Marin Shalamanov4a42d432020-02-12 20:22:26 +0100676 PhysicalDisplayVariant<ExternalDisplay<false>, 1920, 1280, Critical::FALSE>;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800677
Marin Shalamanov4a42d432020-02-12 20:22:26 +0100678using TertiaryDisplayVariant = PhysicalDisplayVariant<TertiaryDisplay, 1600, 1200, Critical::FALSE>;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800679
680// A virtual display not supported by the HWC.
681constexpr uint32_t GRALLOC_USAGE_NONHWC_VIRTUAL_DISPLAY = 0;
682
683template <int width, int height, Secure secure>
684struct NonHwcVirtualDisplayVariant
Dominik Laskowski075d3172018-05-24 15:50:06 -0700685 : DisplayVariant<NoDisplayId, width, height, Critical::FALSE, Async::TRUE, secure,
686 Primary::FALSE, GRALLOC_USAGE_NONHWC_VIRTUAL_DISPLAY> {
687 using Base = DisplayVariant<NoDisplayId, width, height, Critical::FALSE, Async::TRUE, secure,
688 Primary::FALSE, GRALLOC_USAGE_NONHWC_VIRTUAL_DISPLAY>;
689
690 static void injectHwcDisplay(DisplayTransactionTest*) {}
691
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -0700692 static std::shared_ptr<compositionengine::Display> injectCompositionDisplay(
693 DisplayTransactionTest* test) {
694 const ::testing::TestInfo* const test_info =
695 ::testing::UnitTest::GetInstance()->current_test_info();
696
697 auto ceDisplayArgs = compositionengine::DisplayCreationArgsBuilder()
698 .setPixels({Base::WIDTH, Base::HEIGHT})
699 .setIsSecure(static_cast<bool>(Base::SECURE))
700 .setPowerAdvisor(&test->mPowerAdvisor)
701 .setName(std::string("Injected display for ") +
702 test_info->test_case_name() + "." + test_info->name())
703 .build();
704
705 return compositionengine::impl::createDisplay(test->mFlinger.getCompositionEngine(),
706 ceDisplayArgs);
707 }
708
Dominik Laskowski075d3172018-05-24 15:50:06 -0700709 static void setupHwcGetActiveConfigCallExpectations(DisplayTransactionTest* test) {
710 EXPECT_CALL(*test->mComposer, getActiveConfig(_, _)).Times(0);
711 }
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800712
713 static void setupNativeWindowSurfaceCreationCallExpectations(DisplayTransactionTest* test) {
714 Base::setupNativeWindowSurfaceCreationCallExpectations(test);
715 EXPECT_CALL(*test->mNativeWindow, setSwapInterval(0)).Times(1);
716 }
717};
718
719// A virtual display supported by the HWC.
720constexpr uint32_t GRALLOC_USAGE_HWC_VIRTUAL_DISPLAY = GRALLOC_USAGE_HW_COMPOSER;
721
722template <int width, int height, Secure secure>
723struct HwcVirtualDisplayVariant
Dominik Laskowski075d3172018-05-24 15:50:06 -0700724 : DisplayVariant<VirtualDisplayId<42>, width, height, Critical::FALSE, Async::TRUE, secure,
725 Primary::FALSE, GRALLOC_USAGE_HWC_VIRTUAL_DISPLAY>,
726 HwcDisplayVariant<
Peiyong Line9d809e2020-04-14 13:10:48 -0700727 HWC_VIRTUAL_DISPLAY_HWC_DISPLAY_ID, DisplayType::VIRTUAL,
Dominik Laskowski075d3172018-05-24 15:50:06 -0700728 DisplayVariant<VirtualDisplayId<42>, width, height, Critical::FALSE, Async::TRUE,
729 secure, Primary::FALSE, GRALLOC_USAGE_HWC_VIRTUAL_DISPLAY>> {
730 using Base = DisplayVariant<VirtualDisplayId<42>, width, height, Critical::FALSE, Async::TRUE,
731 secure, Primary::FALSE, GRALLOC_USAGE_HW_COMPOSER>;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800732 using Self = HwcVirtualDisplayVariant<width, height, secure>;
733
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -0700734 static std::shared_ptr<compositionengine::Display> injectCompositionDisplay(
735 DisplayTransactionTest* test) {
736 const ::testing::TestInfo* const test_info =
737 ::testing::UnitTest::GetInstance()->current_test_info();
738
739 auto ceDisplayArgs = compositionengine::DisplayCreationArgsBuilder()
740 .setUseHwcVirtualDisplays(false)
741 .setPixels({Base::WIDTH, Base::HEIGHT})
742 .setIsSecure(static_cast<bool>(Base::SECURE))
743 .setPowerAdvisor(&test->mPowerAdvisor)
744 .setName(std::string("Injected display for ") +
745 test_info->test_case_name() + "." + test_info->name())
746 .build();
747
748 auto compositionDisplay =
749 compositionengine::impl::createDisplay(test->mFlinger.getCompositionEngine(),
750 ceDisplayArgs);
751 compositionDisplay->setDisplayIdForTesting(Base::DISPLAY_ID::get());
752
753 // Insert display data so that the HWC thinks it created the virtual display.
754 if (const auto displayId = Base::DISPLAY_ID::get()) {
755 test->mFlinger.mutableHwcDisplayData().try_emplace(*displayId);
756 }
757
758 return compositionDisplay;
759 }
760
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800761 static void setupNativeWindowSurfaceCreationCallExpectations(DisplayTransactionTest* test) {
762 Base::setupNativeWindowSurfaceCreationCallExpectations(test);
763 EXPECT_CALL(*test->mNativeWindow, setSwapInterval(0)).Times(1);
764 }
765
766 static void setupHwcVirtualDisplayCreationCallExpectations(DisplayTransactionTest* test) {
767 EXPECT_CALL(*test->mComposer, createVirtualDisplay(Base::WIDTH, Base::HEIGHT, _, _))
768 .WillOnce(DoAll(SetArgPointee<3>(Self::HWC_DISPLAY_ID), Return(Error::NONE)));
769 EXPECT_CALL(*test->mComposer, setClientTargetSlotCount(_)).WillOnce(Return(Error::NONE));
770 }
771};
772
773// For this variant, SurfaceFlinger should not configure itself with wide
774// display support, so the display should not be configured for wide-color
775// support.
776struct WideColorSupportNotConfiguredVariant {
777 static constexpr bool WIDE_COLOR_SUPPORTED = false;
778
779 static void injectConfigChange(DisplayTransactionTest* test) {
780 test->mFlinger.mutableHasWideColorDisplay() = false;
Peiyong Lin13effd12018-07-24 17:01:47 -0700781 test->mFlinger.mutableUseColorManagement() = false;
Lloyd Pique6a3b4462019-03-07 20:58:12 -0800782 test->mFlinger.mutableDisplayColorSetting() = DisplayColorSetting::kUnmanaged;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800783 }
784
785 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
786 EXPECT_CALL(*test->mComposer, getColorModes(_, _)).Times(0);
787 EXPECT_CALL(*test->mComposer, getRenderIntents(_, _, _)).Times(0);
788 EXPECT_CALL(*test->mComposer, setColorMode(_, _, _)).Times(0);
789 }
790};
791
792// For this variant, SurfaceFlinger should configure itself with wide display
793// support, and the display should respond with an non-empty list of supported
794// color modes. Wide-color support should be configured.
795template <typename Display>
796struct WideColorP3ColorimetricSupportedVariant {
797 static constexpr bool WIDE_COLOR_SUPPORTED = true;
798
799 static void injectConfigChange(DisplayTransactionTest* test) {
Peiyong Lin13effd12018-07-24 17:01:47 -0700800 test->mFlinger.mutableUseColorManagement() = true;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800801 test->mFlinger.mutableHasWideColorDisplay() = true;
Lloyd Pique6a3b4462019-03-07 20:58:12 -0800802 test->mFlinger.mutableDisplayColorSetting() = DisplayColorSetting::kUnmanaged;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800803 }
804
805 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
Lloyd Pique86fa3db2019-02-04 18:46:01 -0800806 EXPECT_CALL(*test->mNativeWindow, perform(NATIVE_WINDOW_SET_BUFFERS_DATASPACE)).Times(1);
807
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800808 EXPECT_CALL(*test->mComposer, getColorModes(Display::HWC_DISPLAY_ID, _))
809 .WillOnce(DoAll(SetArgPointee<1>(std::vector<ColorMode>({ColorMode::DISPLAY_P3})),
810 Return(Error::NONE)));
811 EXPECT_CALL(*test->mComposer,
812 getRenderIntents(Display::HWC_DISPLAY_ID, ColorMode::DISPLAY_P3, _))
813 .WillOnce(DoAll(SetArgPointee<2>(
814 std::vector<RenderIntent>({RenderIntent::COLORIMETRIC})),
815 Return(Error::NONE)));
816 EXPECT_CALL(*test->mComposer,
817 setColorMode(Display::HWC_DISPLAY_ID, ColorMode::SRGB,
818 RenderIntent::COLORIMETRIC))
819 .WillOnce(Return(Error::NONE));
820 }
821};
822
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800823// For this variant, SurfaceFlinger should configure itself with wide display
824// support, but the display should respond with an empty list of supported color
825// modes. Wide-color support for the display should not be configured.
826template <typename Display>
827struct WideColorNotSupportedVariant {
828 static constexpr bool WIDE_COLOR_SUPPORTED = false;
829
830 static void injectConfigChange(DisplayTransactionTest* test) {
Peiyong Lin13effd12018-07-24 17:01:47 -0700831 test->mFlinger.mutableUseColorManagement() = true;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800832 test->mFlinger.mutableHasWideColorDisplay() = true;
833 }
834
835 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
836 EXPECT_CALL(*test->mComposer, getColorModes(Display::HWC_DISPLAY_ID, _))
837 .WillOnce(DoAll(SetArgPointee<1>(std::vector<ColorMode>()), Return(Error::NONE)));
Chia-I Wu614e1422018-05-23 02:17:03 -0700838 EXPECT_CALL(*test->mComposer, setColorMode(_, _, _)).Times(0);
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800839 }
840};
841
842// For this variant, the display is not a HWC display, so no HDR support should
843// be configured.
844struct NonHwcDisplayHdrSupportVariant {
Valerie Haue9e843a2018-12-18 13:39:23 -0800845 static constexpr bool HDR10_PLUS_SUPPORTED = false;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800846 static constexpr bool HDR10_SUPPORTED = false;
847 static constexpr bool HDR_HLG_SUPPORTED = false;
848 static constexpr bool HDR_DOLBY_VISION_SUPPORTED = false;
849 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
850 EXPECT_CALL(*test->mComposer, getHdrCapabilities(_, _, _, _, _)).Times(0);
851 }
852};
853
Valerie Haue9e843a2018-12-18 13:39:23 -0800854template <typename Display>
855struct Hdr10PlusSupportedVariant {
856 static constexpr bool HDR10_PLUS_SUPPORTED = true;
857 static constexpr bool HDR10_SUPPORTED = true;
858 static constexpr bool HDR_HLG_SUPPORTED = false;
859 static constexpr bool HDR_DOLBY_VISION_SUPPORTED = false;
860 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
861 EXPECT_CALL(*test->mComposer, getHdrCapabilities(_, _, _, _, _))
862 .WillOnce(DoAll(SetArgPointee<1>(std::vector<Hdr>({
863 Hdr::HDR10_PLUS,
864 Hdr::HDR10,
865 })),
866 Return(Error::NONE)));
867 }
868};
869
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800870// For this variant, the composer should respond with a non-empty list of HDR
871// modes containing HDR10, so HDR10 support should be configured.
872template <typename Display>
873struct Hdr10SupportedVariant {
Valerie Haue9e843a2018-12-18 13:39:23 -0800874 static constexpr bool HDR10_PLUS_SUPPORTED = false;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800875 static constexpr bool HDR10_SUPPORTED = true;
876 static constexpr bool HDR_HLG_SUPPORTED = false;
877 static constexpr bool HDR_DOLBY_VISION_SUPPORTED = false;
878 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
879 EXPECT_CALL(*test->mComposer, getHdrCapabilities(Display::HWC_DISPLAY_ID, _, _, _, _))
880 .WillOnce(DoAll(SetArgPointee<1>(std::vector<Hdr>({Hdr::HDR10})),
881 Return(Error::NONE)));
882 }
883};
884
885// For this variant, the composer should respond with a non-empty list of HDR
886// modes containing HLG, so HLG support should be configured.
887template <typename Display>
888struct HdrHlgSupportedVariant {
Valerie Haue9e843a2018-12-18 13:39:23 -0800889 static constexpr bool HDR10_PLUS_SUPPORTED = false;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800890 static constexpr bool HDR10_SUPPORTED = false;
891 static constexpr bool HDR_HLG_SUPPORTED = true;
892 static constexpr bool HDR_DOLBY_VISION_SUPPORTED = false;
893 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
894 EXPECT_CALL(*test->mComposer, getHdrCapabilities(Display::HWC_DISPLAY_ID, _, _, _, _))
895 .WillOnce(
896 DoAll(SetArgPointee<1>(std::vector<Hdr>({Hdr::HLG})), Return(Error::NONE)));
897 }
898};
899
900// For this variant, the composer should respond with a non-empty list of HDR
901// modes containing DOLBY_VISION, so DOLBY_VISION support should be configured.
902template <typename Display>
903struct HdrDolbyVisionSupportedVariant {
Valerie Haue9e843a2018-12-18 13:39:23 -0800904 static constexpr bool HDR10_PLUS_SUPPORTED = false;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800905 static constexpr bool HDR10_SUPPORTED = false;
906 static constexpr bool HDR_HLG_SUPPORTED = false;
907 static constexpr bool HDR_DOLBY_VISION_SUPPORTED = true;
908 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
909 EXPECT_CALL(*test->mComposer, getHdrCapabilities(Display::HWC_DISPLAY_ID, _, _, _, _))
910 .WillOnce(DoAll(SetArgPointee<1>(std::vector<Hdr>({Hdr::DOLBY_VISION})),
911 Return(Error::NONE)));
912 }
913};
914
915// For this variant, the composer should respond with am empty list of HDR
916// modes, so no HDR support should be configured.
917template <typename Display>
918struct HdrNotSupportedVariant {
Valerie Haue9e843a2018-12-18 13:39:23 -0800919 static constexpr bool HDR10_PLUS_SUPPORTED = false;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800920 static constexpr bool HDR10_SUPPORTED = false;
921 static constexpr bool HDR_HLG_SUPPORTED = false;
922 static constexpr bool HDR_DOLBY_VISION_SUPPORTED = false;
923 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
924 EXPECT_CALL(*test->mComposer, getHdrCapabilities(Display::HWC_DISPLAY_ID, _, _, _, _))
925 .WillOnce(DoAll(SetArgPointee<1>(std::vector<Hdr>()), Return(Error::NONE)));
926 }
927};
928
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700929struct NonHwcPerFrameMetadataSupportVariant {
930 static constexpr int PER_FRAME_METADATA_KEYS = 0;
931 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
Chia-I Wud7e01d72018-06-21 13:39:09 +0800932 EXPECT_CALL(*test->mComposer, getPerFrameMetadataKeys(_)).Times(0);
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700933 }
934};
935
936template <typename Display>
937struct NoPerFrameMetadataSupportVariant {
938 static constexpr int PER_FRAME_METADATA_KEYS = 0;
939 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
Chia-I Wud7e01d72018-06-21 13:39:09 +0800940 EXPECT_CALL(*test->mComposer, getPerFrameMetadataKeys(Display::HWC_DISPLAY_ID))
941 .WillOnce(Return(std::vector<PerFrameMetadataKey>()));
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700942 }
943};
944
945template <typename Display>
946struct Smpte2086PerFrameMetadataSupportVariant {
947 static constexpr int PER_FRAME_METADATA_KEYS = HdrMetadata::Type::SMPTE2086;
948 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
Chia-I Wud7e01d72018-06-21 13:39:09 +0800949 EXPECT_CALL(*test->mComposer, getPerFrameMetadataKeys(Display::HWC_DISPLAY_ID))
950 .WillOnce(Return(std::vector<PerFrameMetadataKey>({
Valerie Haue9e843a2018-12-18 13:39:23 -0800951 PerFrameMetadataKey::DISPLAY_RED_PRIMARY_X,
952 PerFrameMetadataKey::DISPLAY_RED_PRIMARY_Y,
953 PerFrameMetadataKey::DISPLAY_GREEN_PRIMARY_X,
954 PerFrameMetadataKey::DISPLAY_GREEN_PRIMARY_Y,
955 PerFrameMetadataKey::DISPLAY_BLUE_PRIMARY_X,
956 PerFrameMetadataKey::DISPLAY_BLUE_PRIMARY_Y,
957 PerFrameMetadataKey::WHITE_POINT_X,
958 PerFrameMetadataKey::WHITE_POINT_Y,
959 PerFrameMetadataKey::MAX_LUMINANCE,
960 PerFrameMetadataKey::MIN_LUMINANCE,
961 })));
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700962 }
963};
964
965template <typename Display>
966struct Cta861_3_PerFrameMetadataSupportVariant {
967 static constexpr int PER_FRAME_METADATA_KEYS = HdrMetadata::Type::CTA861_3;
968 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
Chia-I Wud7e01d72018-06-21 13:39:09 +0800969 EXPECT_CALL(*test->mComposer, getPerFrameMetadataKeys(Display::HWC_DISPLAY_ID))
970 .WillOnce(Return(std::vector<PerFrameMetadataKey>({
Valerie Haue9e843a2018-12-18 13:39:23 -0800971 PerFrameMetadataKey::MAX_CONTENT_LIGHT_LEVEL,
972 PerFrameMetadataKey::MAX_FRAME_AVERAGE_LIGHT_LEVEL,
973 })));
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700974 }
975};
976
Valerie Haue9e843a2018-12-18 13:39:23 -0800977template <typename Display>
978struct Hdr10_Plus_PerFrameMetadataSupportVariant {
979 static constexpr int PER_FRAME_METADATA_KEYS = HdrMetadata::Type::HDR10PLUS;
980 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
981 EXPECT_CALL(*test->mComposer, getPerFrameMetadataKeys(Display::HWC_DISPLAY_ID))
982 .WillOnce(Return(std::vector<PerFrameMetadataKey>({
983 PerFrameMetadataKey::HDR10_PLUS_SEI,
984 })));
985 }
986};
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800987/* ------------------------------------------------------------------------
988 * Typical display configurations to test
989 */
990
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700991template <typename DisplayPolicy, typename WideColorSupportPolicy, typename HdrSupportPolicy,
992 typename PerFrameMetadataSupportPolicy>
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800993struct Case {
994 using Display = DisplayPolicy;
995 using WideColorSupport = WideColorSupportPolicy;
996 using HdrSupport = HdrSupportPolicy;
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700997 using PerFrameMetadataSupport = PerFrameMetadataSupportPolicy;
Lloyd Piquec11e0d32018-01-22 18:44:59 -0800998};
999
1000using SimplePrimaryDisplayCase =
1001 Case<PrimaryDisplayVariant, WideColorNotSupportedVariant<PrimaryDisplayVariant>,
Lloyd Piqued883d5a2018-04-27 19:32:30 -07001002 HdrNotSupportedVariant<PrimaryDisplayVariant>,
1003 NoPerFrameMetadataSupportVariant<PrimaryDisplayVariant>>;
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001004using SimpleExternalDisplayCase =
1005 Case<ExternalDisplayVariant, WideColorNotSupportedVariant<ExternalDisplayVariant>,
Lloyd Piqued883d5a2018-04-27 19:32:30 -07001006 HdrNotSupportedVariant<ExternalDisplayVariant>,
1007 NoPerFrameMetadataSupportVariant<ExternalDisplayVariant>>;
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001008using SimpleTertiaryDisplayCase =
1009 Case<TertiaryDisplayVariant, WideColorNotSupportedVariant<TertiaryDisplayVariant>,
Lloyd Piqued883d5a2018-04-27 19:32:30 -07001010 HdrNotSupportedVariant<TertiaryDisplayVariant>,
1011 NoPerFrameMetadataSupportVariant<TertiaryDisplayVariant>>;
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001012using NonHwcVirtualDisplayCase =
1013 Case<NonHwcVirtualDisplayVariant<1024, 768, Secure::FALSE>,
Lloyd Piqued883d5a2018-04-27 19:32:30 -07001014 WideColorSupportNotConfiguredVariant, NonHwcDisplayHdrSupportVariant,
1015 NonHwcPerFrameMetadataSupportVariant>;
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001016using SimpleHwcVirtualDisplayVariant = HwcVirtualDisplayVariant<1024, 768, Secure::TRUE>;
1017using HwcVirtualDisplayCase =
1018 Case<SimpleHwcVirtualDisplayVariant, WideColorSupportNotConfiguredVariant,
Lloyd Pique438e9e72018-09-04 18:06:08 -07001019 HdrNotSupportedVariant<SimpleHwcVirtualDisplayVariant>,
tangrobin6753a022018-08-10 10:58:54 +08001020 NoPerFrameMetadataSupportVariant<SimpleHwcVirtualDisplayVariant>>;
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001021using WideColorP3ColorimetricDisplayCase =
1022 Case<PrimaryDisplayVariant, WideColorP3ColorimetricSupportedVariant<PrimaryDisplayVariant>,
Lloyd Piqued883d5a2018-04-27 19:32:30 -07001023 HdrNotSupportedVariant<PrimaryDisplayVariant>,
1024 NoPerFrameMetadataSupportVariant<PrimaryDisplayVariant>>;
Valerie Haue9e843a2018-12-18 13:39:23 -08001025using Hdr10PlusDisplayCase =
1026 Case<PrimaryDisplayVariant, WideColorNotSupportedVariant<PrimaryDisplayVariant>,
1027 Hdr10SupportedVariant<PrimaryDisplayVariant>,
1028 Hdr10_Plus_PerFrameMetadataSupportVariant<PrimaryDisplayVariant>>;
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001029using Hdr10DisplayCase =
1030 Case<PrimaryDisplayVariant, WideColorNotSupportedVariant<PrimaryDisplayVariant>,
Lloyd Piqued883d5a2018-04-27 19:32:30 -07001031 Hdr10SupportedVariant<PrimaryDisplayVariant>,
1032 NoPerFrameMetadataSupportVariant<PrimaryDisplayVariant>>;
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001033using HdrHlgDisplayCase =
1034 Case<PrimaryDisplayVariant, WideColorNotSupportedVariant<PrimaryDisplayVariant>,
Lloyd Piqued883d5a2018-04-27 19:32:30 -07001035 HdrHlgSupportedVariant<PrimaryDisplayVariant>,
1036 NoPerFrameMetadataSupportVariant<PrimaryDisplayVariant>>;
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001037using HdrDolbyVisionDisplayCase =
1038 Case<PrimaryDisplayVariant, WideColorNotSupportedVariant<PrimaryDisplayVariant>,
Lloyd Piqued883d5a2018-04-27 19:32:30 -07001039 HdrDolbyVisionSupportedVariant<PrimaryDisplayVariant>,
1040 NoPerFrameMetadataSupportVariant<PrimaryDisplayVariant>>;
1041using HdrSmpte2086DisplayCase =
1042 Case<PrimaryDisplayVariant, WideColorNotSupportedVariant<PrimaryDisplayVariant>,
1043 HdrNotSupportedVariant<PrimaryDisplayVariant>,
1044 Smpte2086PerFrameMetadataSupportVariant<PrimaryDisplayVariant>>;
1045using HdrCta861_3_DisplayCase =
1046 Case<PrimaryDisplayVariant, WideColorNotSupportedVariant<PrimaryDisplayVariant>,
1047 HdrNotSupportedVariant<PrimaryDisplayVariant>,
1048 Cta861_3_PerFrameMetadataSupportVariant<PrimaryDisplayVariant>>;
Dominik Laskowskif07b85b2018-06-11 12:49:15 -07001049
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001050/* ------------------------------------------------------------------------
Lloyd Pique6cf11032018-01-22 18:57:44 -08001051 *
1052 * SurfaceFlinger::onHotplugReceived
1053 */
1054
1055TEST_F(DisplayTransactionTest, hotplugEnqueuesEventsForDisplayTransaction) {
1056 constexpr int currentSequenceId = 123;
Peiyong Line9d809e2020-04-14 13:10:48 -07001057 constexpr HWDisplayId hwcDisplayId1 = 456;
1058 constexpr HWDisplayId hwcDisplayId2 = 654;
Lloyd Pique6cf11032018-01-22 18:57:44 -08001059
1060 // --------------------------------------------------------------------
1061 // Preconditions
1062
1063 // Set the current sequence id for accepted events
1064 mFlinger.mutableComposerSequenceId() = currentSequenceId;
1065
1066 // Set the main thread id so that the current thread does not appear to be
1067 // the main thread.
1068 mFlinger.mutableMainThreadId() = std::thread::id();
1069
1070 // --------------------------------------------------------------------
1071 // Call Expectations
1072
1073 // We expect invalidate() to be invoked once to trigger display transaction
1074 // processing.
1075 EXPECT_CALL(*mMessageQueue, invalidate()).Times(1);
1076
1077 // --------------------------------------------------------------------
1078 // Invocation
1079
1080 // Simulate two hotplug events (a connect and a disconnect)
Peiyong Line9d809e2020-04-14 13:10:48 -07001081 mFlinger.onHotplugReceived(currentSequenceId, hwcDisplayId1, Connection::CONNECTED);
1082 mFlinger.onHotplugReceived(currentSequenceId, hwcDisplayId2, Connection::DISCONNECTED);
Lloyd Pique6cf11032018-01-22 18:57:44 -08001083
1084 // --------------------------------------------------------------------
1085 // Postconditions
1086
1087 // The display transaction needed flag should be set.
1088 EXPECT_TRUE(hasTransactionFlagSet(eDisplayTransactionNeeded));
1089
1090 // All events should be in the pending event queue.
1091 const auto& pendingEvents = mFlinger.mutablePendingHotplugEvents();
1092 ASSERT_EQ(2u, pendingEvents.size());
Dominik Laskowskia2edf612018-06-01 13:15:16 -07001093 EXPECT_EQ(hwcDisplayId1, pendingEvents[0].hwcDisplayId);
Peiyong Line9d809e2020-04-14 13:10:48 -07001094 EXPECT_EQ(Connection::CONNECTED, pendingEvents[0].connection);
Dominik Laskowskia2edf612018-06-01 13:15:16 -07001095 EXPECT_EQ(hwcDisplayId2, pendingEvents[1].hwcDisplayId);
Peiyong Line9d809e2020-04-14 13:10:48 -07001096 EXPECT_EQ(Connection::DISCONNECTED, pendingEvents[1].connection);
Lloyd Pique6cf11032018-01-22 18:57:44 -08001097}
1098
1099TEST_F(DisplayTransactionTest, hotplugDiscardsUnexpectedEvents) {
1100 constexpr int currentSequenceId = 123;
1101 constexpr int otherSequenceId = 321;
Peiyong Line9d809e2020-04-14 13:10:48 -07001102 constexpr HWDisplayId displayId = 456;
Lloyd Pique6cf11032018-01-22 18:57:44 -08001103
1104 // --------------------------------------------------------------------
1105 // Preconditions
1106
1107 // Set the current sequence id for accepted events
1108 mFlinger.mutableComposerSequenceId() = currentSequenceId;
1109
1110 // Set the main thread id so that the current thread does not appear to be
1111 // the main thread.
1112 mFlinger.mutableMainThreadId() = std::thread::id();
1113
1114 // --------------------------------------------------------------------
1115 // Call Expectations
1116
1117 // We do not expect any calls to invalidate().
1118 EXPECT_CALL(*mMessageQueue, invalidate()).Times(0);
1119
1120 // --------------------------------------------------------------------
1121 // Invocation
1122
1123 // Call with an unexpected sequence id
Peiyong Line9d809e2020-04-14 13:10:48 -07001124 mFlinger.onHotplugReceived(otherSequenceId, displayId, Connection::INVALID);
Lloyd Pique6cf11032018-01-22 18:57:44 -08001125
1126 // --------------------------------------------------------------------
1127 // Postconditions
1128
1129 // The display transaction needed flag should not be set
1130 EXPECT_FALSE(hasTransactionFlagSet(eDisplayTransactionNeeded));
1131
1132 // There should be no pending events
1133 EXPECT_TRUE(mFlinger.mutablePendingHotplugEvents().empty());
1134}
1135
1136TEST_F(DisplayTransactionTest, hotplugProcessesEnqueuedEventsIfCalledOnMainThread) {
1137 constexpr int currentSequenceId = 123;
Peiyong Line9d809e2020-04-14 13:10:48 -07001138 constexpr HWDisplayId displayId1 = 456;
Lloyd Pique6cf11032018-01-22 18:57:44 -08001139
1140 // --------------------------------------------------------------------
1141 // Note:
1142 // --------------------------------------------------------------------
1143 // This test case is a bit tricky. We want to verify that
1144 // onHotplugReceived() calls processDisplayHotplugEventsLocked(), but we
1145 // don't really want to provide coverage for everything the later function
1146 // does as there are specific tests for it.
1147 // --------------------------------------------------------------------
1148
1149 // --------------------------------------------------------------------
1150 // Preconditions
1151
1152 // Set the current sequence id for accepted events
1153 mFlinger.mutableComposerSequenceId() = currentSequenceId;
1154
1155 // Set the main thread id so that the current thread does appear to be the
1156 // main thread.
1157 mFlinger.mutableMainThreadId() = std::this_thread::get_id();
1158
1159 // --------------------------------------------------------------------
1160 // Call Expectations
1161
1162 // We expect invalidate() to be invoked once to trigger display transaction
1163 // processing.
1164 EXPECT_CALL(*mMessageQueue, invalidate()).Times(1);
1165
1166 // --------------------------------------------------------------------
1167 // Invocation
1168
1169 // Simulate a disconnect on a display id that is not connected. This should
1170 // be enqueued by onHotplugReceived(), and dequeued by
1171 // processDisplayHotplugEventsLocked(), but then ignored as invalid.
Peiyong Line9d809e2020-04-14 13:10:48 -07001172 mFlinger.onHotplugReceived(currentSequenceId, displayId1, Connection::DISCONNECTED);
Lloyd Pique6cf11032018-01-22 18:57:44 -08001173
1174 // --------------------------------------------------------------------
1175 // Postconditions
1176
1177 // The display transaction needed flag should be set.
1178 EXPECT_TRUE(hasTransactionFlagSet(eDisplayTransactionNeeded));
1179
1180 // There should be no event queued on return, as it should have been
1181 // processed.
1182 EXPECT_TRUE(mFlinger.mutablePendingHotplugEvents().empty());
1183}
1184
1185/* ------------------------------------------------------------------------
Lloyd Piquea482f992018-01-22 19:00:34 -08001186 * SurfaceFlinger::createDisplay
1187 */
1188
1189TEST_F(DisplayTransactionTest, createDisplaySetsCurrentStateForNonsecureDisplay) {
1190 const String8 name("virtual.test");
1191
1192 // --------------------------------------------------------------------
1193 // Call Expectations
1194
1195 // The call should notify the interceptor that a display was created.
1196 EXPECT_CALL(*mSurfaceInterceptor, saveDisplayCreation(_)).Times(1);
1197
1198 // --------------------------------------------------------------------
1199 // Invocation
1200
1201 sp<IBinder> displayToken = mFlinger.createDisplay(name, false);
1202
1203 // --------------------------------------------------------------------
1204 // Postconditions
1205
1206 // The display should have been added to the current state
1207 ASSERT_TRUE(hasCurrentDisplayState(displayToken));
1208 const auto& display = getCurrentDisplayState(displayToken);
Dominik Laskowski075d3172018-05-24 15:50:06 -07001209 EXPECT_TRUE(display.isVirtual());
1210 EXPECT_FALSE(display.isSecure);
Lloyd Piquea482f992018-01-22 19:00:34 -08001211 EXPECT_EQ(name.string(), display.displayName);
1212
1213 // --------------------------------------------------------------------
1214 // Cleanup conditions
1215
1216 // Destroying the display invalidates the display state.
1217 EXPECT_CALL(*mMessageQueue, invalidate()).Times(1);
1218}
1219
1220TEST_F(DisplayTransactionTest, createDisplaySetsCurrentStateForSecureDisplay) {
1221 const String8 name("virtual.test");
1222
1223 // --------------------------------------------------------------------
1224 // Call Expectations
1225
1226 // The call should notify the interceptor that a display was created.
1227 EXPECT_CALL(*mSurfaceInterceptor, saveDisplayCreation(_)).Times(1);
1228
1229 // --------------------------------------------------------------------
1230 // Invocation
1231
1232 sp<IBinder> displayToken = mFlinger.createDisplay(name, true);
1233
1234 // --------------------------------------------------------------------
1235 // Postconditions
1236
1237 // The display should have been added to the current state
1238 ASSERT_TRUE(hasCurrentDisplayState(displayToken));
1239 const auto& display = getCurrentDisplayState(displayToken);
Dominik Laskowski075d3172018-05-24 15:50:06 -07001240 EXPECT_TRUE(display.isVirtual());
1241 EXPECT_TRUE(display.isSecure);
Lloyd Piquea482f992018-01-22 19:00:34 -08001242 EXPECT_EQ(name.string(), display.displayName);
1243
1244 // --------------------------------------------------------------------
1245 // Cleanup conditions
1246
1247 // Destroying the display invalidates the display state.
1248 EXPECT_CALL(*mMessageQueue, invalidate()).Times(1);
1249}
1250
1251/* ------------------------------------------------------------------------
1252 * SurfaceFlinger::destroyDisplay
1253 */
1254
1255TEST_F(DisplayTransactionTest, destroyDisplayClearsCurrentStateForDisplay) {
1256 using Case = NonHwcVirtualDisplayCase;
1257
1258 // --------------------------------------------------------------------
1259 // Preconditions
1260
1261 // A virtual display exists
1262 auto existing = Case::Display::makeFakeExistingDisplayInjector(this);
1263 existing.inject();
1264
1265 // --------------------------------------------------------------------
1266 // Call Expectations
1267
1268 // The call should notify the interceptor that a display was created.
1269 EXPECT_CALL(*mSurfaceInterceptor, saveDisplayDeletion(_)).Times(1);
1270
1271 // Destroying the display invalidates the display state.
1272 EXPECT_CALL(*mMessageQueue, invalidate()).Times(1);
1273
1274 // --------------------------------------------------------------------
1275 // Invocation
1276
1277 mFlinger.destroyDisplay(existing.token());
1278
1279 // --------------------------------------------------------------------
1280 // Postconditions
1281
1282 // The display should have been removed from the current state
1283 EXPECT_FALSE(hasCurrentDisplayState(existing.token()));
1284
1285 // Ths display should still exist in the drawing state
1286 EXPECT_TRUE(hasDrawingDisplayState(existing.token()));
1287
1288 // The display transaction needed flasg should be set
1289 EXPECT_TRUE(hasTransactionFlagSet(eDisplayTransactionNeeded));
1290}
1291
1292TEST_F(DisplayTransactionTest, destroyDisplayHandlesUnknownDisplay) {
1293 // --------------------------------------------------------------------
1294 // Preconditions
1295
1296 sp<BBinder> displayToken = new BBinder();
1297
1298 // --------------------------------------------------------------------
1299 // Invocation
1300
1301 mFlinger.destroyDisplay(displayToken);
1302}
1303
1304/* ------------------------------------------------------------------------
Lloyd Piqued6fbb8a2018-01-22 19:08:36 -08001305 * SurfaceFlinger::resetDisplayState
1306 */
1307
1308TEST_F(DisplayTransactionTest, resetDisplayStateClearsState) {
1309 using Case = NonHwcVirtualDisplayCase;
1310
1311 // --------------------------------------------------------------------
1312 // Preconditions
1313
1314 // vsync is enabled and available
Dominik Laskowski7c9dbf92019-08-01 17:57:31 -07001315 mFlinger.scheduler()->mutablePrimaryHWVsyncEnabled() = true;
1316 mFlinger.scheduler()->mutableHWVsyncAvailable() = true;
Lloyd Piqued6fbb8a2018-01-22 19:08:36 -08001317
1318 // A display exists
1319 auto existing = Case::Display::makeFakeExistingDisplayInjector(this);
1320 existing.inject();
1321
1322 // --------------------------------------------------------------------
1323 // Call Expectations
1324
1325 // The call disable vsyncs
1326 EXPECT_CALL(*mEventControlThread, setVsyncEnabled(false)).Times(1);
1327
Lloyd Pique41be5d22018-06-21 13:11:48 -07001328 // The call ends any display resyncs
1329 EXPECT_CALL(*mPrimaryDispSync, endResync()).Times(1);
1330
Lloyd Piqued6fbb8a2018-01-22 19:08:36 -08001331 // --------------------------------------------------------------------
1332 // Invocation
1333
1334 mFlinger.resetDisplayState();
1335
1336 // --------------------------------------------------------------------
1337 // Postconditions
1338
1339 // vsyncs should be off and not available.
Dominik Laskowski7c9dbf92019-08-01 17:57:31 -07001340 EXPECT_FALSE(mFlinger.scheduler()->mutablePrimaryHWVsyncEnabled());
1341 EXPECT_FALSE(mFlinger.scheduler()->mutableHWVsyncAvailable());
Lloyd Piqued6fbb8a2018-01-22 19:08:36 -08001342
1343 // The display should have been removed from the display map.
1344 EXPECT_FALSE(hasDisplayDevice(existing.token()));
1345
1346 // The display should still exist in the current state
1347 EXPECT_TRUE(hasCurrentDisplayState(existing.token()));
1348
1349 // The display should have been removed from the drawing state
1350 EXPECT_FALSE(hasDrawingDisplayState(existing.token()));
1351}
1352
1353/* ------------------------------------------------------------------------
Lais Andrade3a6e47d2020-04-02 11:20:16 +01001354 * SurfaceFlinger::notifyPowerBoost
1355 */
1356
1357TEST_F(DisplayTransactionTest, notifyPowerBoostNotifiesTouchEvent) {
1358 mFlinger.scheduler()->replaceTouchTimer(100);
1359 std::this_thread::sleep_for(10ms); // wait for callback to be triggered
1360 EXPECT_TRUE(mFlinger.scheduler()->isTouchActive()); // Starting timer activates touch
1361
1362 std::this_thread::sleep_for(110ms); // wait for reset touch timer to expire and trigger callback
1363 EXPECT_FALSE(mFlinger.scheduler()->isTouchActive());
1364
1365 EXPECT_EQ(NO_ERROR, mFlinger.notifyPowerBoost(static_cast<int32_t>(Boost::CAMERA_SHOT)));
1366 std::this_thread::sleep_for(10ms); // wait for callback to maybe be triggered
1367 EXPECT_FALSE(mFlinger.scheduler()->isTouchActive());
1368
1369 std::this_thread::sleep_for(110ms); // wait for reset touch timer to expire and trigger callback
1370 EXPECT_FALSE(mFlinger.scheduler()->isTouchActive());
1371
1372 EXPECT_EQ(NO_ERROR, mFlinger.notifyPowerBoost(static_cast<int32_t>(Boost::INTERACTION)));
1373 std::this_thread::sleep_for(10ms); // wait for callback to be triggered.
1374 EXPECT_TRUE(mFlinger.scheduler()->isTouchActive());
1375}
1376
1377/* ------------------------------------------------------------------------
Valerie Hau9758ae02018-10-09 16:05:09 -07001378 * DisplayDevice::GetBestColorMode
1379 */
1380class GetBestColorModeTest : public DisplayTransactionTest {
1381public:
Valerie Hau9758ae02018-10-09 16:05:09 -07001382 void setHasWideColorGamut(bool hasWideColorGamut) { mHasWideColorGamut = hasWideColorGamut; }
1383
1384 void addHwcColorModesMapping(ui::ColorMode colorMode,
1385 std::vector<ui::RenderIntent> renderIntents) {
1386 mHwcColorModes[colorMode] = renderIntents;
1387 }
1388
1389 void setInputDataspace(ui::Dataspace dataspace) { mInputDataspace = dataspace; }
1390
1391 void setInputRenderIntent(ui::RenderIntent renderIntent) { mInputRenderIntent = renderIntent; }
1392
1393 void getBestColorMode() {
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -07001394 auto displayDevice =
1395 injectDefaultInternalDisplay([this](FakeDisplayDeviceInjector& injector) {
1396 injector.setHwcColorModes(mHwcColorModes);
1397 injector.setHasWideColorGamut(mHasWideColorGamut);
1398 injector.setNativeWindow(mNativeWindow);
1399 });
Valerie Hau9758ae02018-10-09 16:05:09 -07001400
Lloyd Pique3d0c02e2018-10-19 18:38:12 -07001401 displayDevice->getCompositionDisplay()
1402 ->getDisplayColorProfile()
1403 ->getBestColorMode(mInputDataspace, mInputRenderIntent, &mOutDataspace,
1404 &mOutColorMode, &mOutRenderIntent);
Valerie Hau9758ae02018-10-09 16:05:09 -07001405 }
1406
1407 ui::Dataspace mOutDataspace;
1408 ui::ColorMode mOutColorMode;
1409 ui::RenderIntent mOutRenderIntent;
1410
1411private:
1412 ui::Dataspace mInputDataspace;
1413 ui::RenderIntent mInputRenderIntent;
1414 bool mHasWideColorGamut = false;
1415 std::unordered_map<ui::ColorMode, std::vector<ui::RenderIntent>> mHwcColorModes;
Valerie Hau9758ae02018-10-09 16:05:09 -07001416};
1417
1418TEST_F(GetBestColorModeTest, DataspaceDisplayP3_ColorModeSRGB) {
1419 addHwcColorModesMapping(ui::ColorMode::SRGB,
1420 std::vector<ui::RenderIntent>(1, RenderIntent::COLORIMETRIC));
1421 setInputDataspace(ui::Dataspace::DISPLAY_P3);
1422 setInputRenderIntent(ui::RenderIntent::COLORIMETRIC);
1423 setHasWideColorGamut(true);
1424
1425 getBestColorMode();
1426
Peiyong Lin14724e62018-12-05 07:27:30 -08001427 ASSERT_EQ(ui::Dataspace::V0_SRGB, mOutDataspace);
Valerie Hau9758ae02018-10-09 16:05:09 -07001428 ASSERT_EQ(ui::ColorMode::SRGB, mOutColorMode);
1429 ASSERT_EQ(ui::RenderIntent::COLORIMETRIC, mOutRenderIntent);
1430}
1431
1432TEST_F(GetBestColorModeTest, DataspaceDisplayP3_ColorModeDisplayP3) {
1433 addHwcColorModesMapping(ui::ColorMode::DISPLAY_P3,
1434 std::vector<ui::RenderIntent>(1, RenderIntent::COLORIMETRIC));
1435 addHwcColorModesMapping(ui::ColorMode::SRGB,
1436 std::vector<ui::RenderIntent>(1, RenderIntent::COLORIMETRIC));
1437 addHwcColorModesMapping(ui::ColorMode::DISPLAY_BT2020,
1438 std::vector<ui::RenderIntent>(1, RenderIntent::COLORIMETRIC));
1439 setInputDataspace(ui::Dataspace::DISPLAY_P3);
1440 setInputRenderIntent(ui::RenderIntent::COLORIMETRIC);
1441 setHasWideColorGamut(true);
1442
1443 getBestColorMode();
1444
1445 ASSERT_EQ(ui::Dataspace::DISPLAY_P3, mOutDataspace);
1446 ASSERT_EQ(ui::ColorMode::DISPLAY_P3, mOutColorMode);
1447 ASSERT_EQ(ui::RenderIntent::COLORIMETRIC, mOutRenderIntent);
1448}
1449
1450TEST_F(GetBestColorModeTest, DataspaceDisplayP3_ColorModeDISPLAY_BT2020) {
1451 addHwcColorModesMapping(ui::ColorMode::DISPLAY_BT2020,
1452 std::vector<ui::RenderIntent>(1, RenderIntent::COLORIMETRIC));
1453 setInputDataspace(ui::Dataspace::DISPLAY_P3);
1454 setInputRenderIntent(ui::RenderIntent::COLORIMETRIC);
1455 setHasWideColorGamut(true);
1456
1457 getBestColorMode();
1458
1459 ASSERT_EQ(ui::Dataspace::DISPLAY_BT2020, mOutDataspace);
1460 ASSERT_EQ(ui::ColorMode::DISPLAY_BT2020, mOutColorMode);
1461 ASSERT_EQ(ui::RenderIntent::COLORIMETRIC, mOutRenderIntent);
1462}
1463
1464/* ------------------------------------------------------------------------
Lloyd Pique33050472019-12-19 17:12:44 -08001465 * DisplayDevice::setProjection
1466 */
1467
1468class DisplayDeviceSetProjectionTest : public DisplayTransactionTest {
1469public:
Lloyd Pique33050472019-12-19 17:12:44 -08001470 static constexpr int32_t DEFAULT_DISPLAY_WIDTH = 1080; // arbitrary
1471 static constexpr int32_t DEFAULT_DISPLAY_HEIGHT = 1920; // arbitrary
1472
1473 static constexpr int32_t TRANSFORM_FLAGS_ROT_0 = 0;
1474 static constexpr int32_t TRANSFORM_FLAGS_ROT_90 = HAL_TRANSFORM_ROT_90;
1475 static constexpr int32_t TRANSFORM_FLAGS_ROT_180 = HAL_TRANSFORM_FLIP_H | HAL_TRANSFORM_FLIP_V;
1476 static constexpr int32_t TRANSFORM_FLAGS_ROT_270 =
1477 HAL_TRANSFORM_FLIP_H | HAL_TRANSFORM_FLIP_V | HAL_TRANSFORM_ROT_90;
1478
1479 DisplayDeviceSetProjectionTest(ui::Size flingerDisplaySize, ui::Size hardwareDisplaySize,
1480 ui::Rotation physicalOrientation)
1481 : mFlingerDisplaySize(flingerDisplaySize),
1482 mHardwareDisplaySize(hardwareDisplaySize),
1483 mPhysicalOrientation(physicalOrientation),
1484 mDisplayDevice(createDisplayDevice()) {}
1485
1486 sp<DisplayDevice> createDisplayDevice() {
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -07001487 return injectDefaultInternalDisplay([this](FakeDisplayDeviceInjector& injector) {
1488 injector.setPhysicalOrientation(mPhysicalOrientation);
1489 });
Lloyd Pique33050472019-12-19 17:12:44 -08001490 }
1491
1492 ui::Size SwapWH(const ui::Size size) const { return ui::Size(size.height, size.width); }
1493
1494 void setProjectionForRotation0() {
1495 // A logical rotation of 0 uses the SurfaceFlinger display size
1496 mDisplayDevice->setProjection(ui::ROTATION_0, Rect(mFlingerDisplaySize),
1497 Rect(mFlingerDisplaySize));
1498 }
1499
1500 void setProjectionForRotation90() {
1501 // A logical rotation of 90 uses the SurfaceFlinger display size with
1502 // the width/height swapped.
1503 mDisplayDevice->setProjection(ui::ROTATION_90, Rect(SwapWH(mFlingerDisplaySize)),
1504 Rect(SwapWH(mFlingerDisplaySize)));
1505 }
1506
1507 void setProjectionForRotation180() {
1508 // A logical rotation of 180 uses the SurfaceFlinger display size
1509 mDisplayDevice->setProjection(ui::ROTATION_180, Rect(mFlingerDisplaySize),
1510 Rect(mFlingerDisplaySize));
1511 }
1512
1513 void setProjectionForRotation270() {
1514 // A logical rotation of 270 uses the SurfaceFlinger display size with
1515 // the width/height swapped.
1516 mDisplayDevice->setProjection(ui::ROTATION_270, Rect(SwapWH(mFlingerDisplaySize)),
1517 Rect(SwapWH(mFlingerDisplaySize)));
1518 }
1519
1520 void expectStateForHardwareTransform0() {
1521 const auto& compositionState = mDisplayDevice->getCompositionDisplay()->getState();
1522 EXPECT_EQ(ui::Transform(TRANSFORM_FLAGS_ROT_0, mHardwareDisplaySize.width,
1523 mHardwareDisplaySize.height),
1524 compositionState.transform);
1525 EXPECT_EQ(TRANSFORM_FLAGS_ROT_0, compositionState.orientation);
Lloyd Piquee8fe4742020-01-21 15:26:18 -08001526 EXPECT_EQ(Rect(mHardwareDisplaySize), compositionState.sourceClip);
1527 EXPECT_EQ(Rect(mHardwareDisplaySize), compositionState.destinationClip);
Lloyd Pique33050472019-12-19 17:12:44 -08001528 EXPECT_EQ(Rect(mHardwareDisplaySize), compositionState.frame);
1529 EXPECT_EQ(Rect(mHardwareDisplaySize), compositionState.viewport);
1530 EXPECT_EQ(false, compositionState.needsFiltering);
1531 }
1532
1533 void expectStateForHardwareTransform90() {
1534 const auto& compositionState = mDisplayDevice->getCompositionDisplay()->getState();
1535 EXPECT_EQ(ui::Transform(TRANSFORM_FLAGS_ROT_90, mHardwareDisplaySize.width,
1536 mHardwareDisplaySize.height),
1537 compositionState.transform);
1538 EXPECT_EQ(TRANSFORM_FLAGS_ROT_90, compositionState.orientation);
Alec Mouri5a6d8572020-03-23 23:56:15 -07001539 EXPECT_EQ(Rect(SwapWH(mHardwareDisplaySize)), compositionState.sourceClip);
Lloyd Piquee8fe4742020-01-21 15:26:18 -08001540 EXPECT_EQ(Rect(mHardwareDisplaySize), compositionState.destinationClip);
Lloyd Pique33050472019-12-19 17:12:44 -08001541 // For 90, the frame and viewport have the hardware display size width and height swapped
1542 EXPECT_EQ(Rect(SwapWH(mHardwareDisplaySize)), compositionState.frame);
1543 EXPECT_EQ(Rect(SwapWH(mHardwareDisplaySize)), compositionState.viewport);
1544 EXPECT_EQ(false, compositionState.needsFiltering);
1545 }
1546
1547 void expectStateForHardwareTransform180() {
1548 const auto& compositionState = mDisplayDevice->getCompositionDisplay()->getState();
1549 EXPECT_EQ(ui::Transform(TRANSFORM_FLAGS_ROT_180, mHardwareDisplaySize.width,
1550 mHardwareDisplaySize.height),
1551 compositionState.transform);
1552 EXPECT_EQ(TRANSFORM_FLAGS_ROT_180, compositionState.orientation);
Lloyd Piquee8fe4742020-01-21 15:26:18 -08001553 EXPECT_EQ(Rect(mHardwareDisplaySize), compositionState.sourceClip);
1554 EXPECT_EQ(Rect(mHardwareDisplaySize), compositionState.destinationClip);
Lloyd Pique33050472019-12-19 17:12:44 -08001555 EXPECT_EQ(Rect(mHardwareDisplaySize), compositionState.frame);
1556 EXPECT_EQ(Rect(mHardwareDisplaySize), compositionState.viewport);
1557 EXPECT_EQ(false, compositionState.needsFiltering);
1558 }
1559
1560 void expectStateForHardwareTransform270() {
1561 const auto& compositionState = mDisplayDevice->getCompositionDisplay()->getState();
1562 EXPECT_EQ(ui::Transform(TRANSFORM_FLAGS_ROT_270, mHardwareDisplaySize.width,
1563 mHardwareDisplaySize.height),
1564 compositionState.transform);
1565 EXPECT_EQ(TRANSFORM_FLAGS_ROT_270, compositionState.orientation);
Alec Mouri5a6d8572020-03-23 23:56:15 -07001566 EXPECT_EQ(Rect(SwapWH(mHardwareDisplaySize)), compositionState.sourceClip);
Lloyd Piquee8fe4742020-01-21 15:26:18 -08001567 EXPECT_EQ(Rect(mHardwareDisplaySize), compositionState.destinationClip);
Lloyd Pique33050472019-12-19 17:12:44 -08001568 // For 270, the frame and viewport have the hardware display size width and height swapped
1569 EXPECT_EQ(Rect(SwapWH(mHardwareDisplaySize)), compositionState.frame);
1570 EXPECT_EQ(Rect(SwapWH(mHardwareDisplaySize)), compositionState.viewport);
1571 EXPECT_EQ(false, compositionState.needsFiltering);
1572 }
1573
1574 const ui::Size mFlingerDisplaySize;
1575 const ui::Size mHardwareDisplaySize;
1576 const ui::Rotation mPhysicalOrientation;
1577 const sp<DisplayDevice> mDisplayDevice;
1578};
1579
1580struct DisplayDeviceSetProjectionTest_Installed0 : public DisplayDeviceSetProjectionTest {
1581 DisplayDeviceSetProjectionTest_Installed0()
1582 : DisplayDeviceSetProjectionTest(ui::Size(DEFAULT_DISPLAY_WIDTH, DEFAULT_DISPLAY_HEIGHT),
1583 ui::Size(DEFAULT_DISPLAY_WIDTH, DEFAULT_DISPLAY_HEIGHT),
1584 ui::ROTATION_0) {}
1585};
1586
1587TEST_F(DisplayDeviceSetProjectionTest_Installed0, checkWith0OutputRotation) {
1588 setProjectionForRotation0();
1589 expectStateForHardwareTransform0();
1590}
1591
1592TEST_F(DisplayDeviceSetProjectionTest_Installed0, checkWith90OutputRotation) {
1593 setProjectionForRotation90();
1594 expectStateForHardwareTransform90();
1595}
1596
1597TEST_F(DisplayDeviceSetProjectionTest_Installed0, checkWith180OutputRotation) {
1598 setProjectionForRotation180();
1599 expectStateForHardwareTransform180();
1600}
1601
1602TEST_F(DisplayDeviceSetProjectionTest_Installed0, checkWith270OutputRotation) {
1603 setProjectionForRotation270();
1604 expectStateForHardwareTransform270();
1605}
1606
1607struct DisplayDeviceSetProjectionTest_Installed90 : public DisplayDeviceSetProjectionTest {
1608 DisplayDeviceSetProjectionTest_Installed90()
1609 : DisplayDeviceSetProjectionTest(ui::Size(DEFAULT_DISPLAY_HEIGHT, DEFAULT_DISPLAY_WIDTH),
1610 ui::Size(DEFAULT_DISPLAY_WIDTH, DEFAULT_DISPLAY_HEIGHT),
1611 ui::ROTATION_90) {}
1612};
1613
1614TEST_F(DisplayDeviceSetProjectionTest_Installed90, checkWith0OutputRotation) {
1615 setProjectionForRotation0();
1616 expectStateForHardwareTransform90();
1617}
1618
1619TEST_F(DisplayDeviceSetProjectionTest_Installed90, checkWith90OutputRotation) {
1620 setProjectionForRotation90();
1621 expectStateForHardwareTransform180();
1622}
1623
1624TEST_F(DisplayDeviceSetProjectionTest_Installed90, checkWith180OutputRotation) {
1625 setProjectionForRotation180();
1626 expectStateForHardwareTransform270();
1627}
1628
1629TEST_F(DisplayDeviceSetProjectionTest_Installed90, checkWith270OutputRotation) {
1630 setProjectionForRotation270();
1631 expectStateForHardwareTransform0();
1632}
1633
1634struct DisplayDeviceSetProjectionTest_Installed180 : public DisplayDeviceSetProjectionTest {
1635 DisplayDeviceSetProjectionTest_Installed180()
1636 : DisplayDeviceSetProjectionTest(ui::Size(DEFAULT_DISPLAY_WIDTH, DEFAULT_DISPLAY_HEIGHT),
1637 ui::Size(DEFAULT_DISPLAY_WIDTH, DEFAULT_DISPLAY_HEIGHT),
1638 ui::ROTATION_180) {}
1639};
1640
1641TEST_F(DisplayDeviceSetProjectionTest_Installed180, checkWith0OutputRotation) {
1642 setProjectionForRotation0();
1643 expectStateForHardwareTransform180();
1644}
1645
1646TEST_F(DisplayDeviceSetProjectionTest_Installed180, checkWith90OutputRotation) {
1647 setProjectionForRotation90();
1648 expectStateForHardwareTransform270();
1649}
1650
1651TEST_F(DisplayDeviceSetProjectionTest_Installed180, checkWith180OutputRotation) {
1652 setProjectionForRotation180();
1653 expectStateForHardwareTransform0();
1654}
1655
1656TEST_F(DisplayDeviceSetProjectionTest_Installed180, checkWith270OutputRotation) {
1657 setProjectionForRotation270();
1658 expectStateForHardwareTransform90();
1659}
1660
1661struct DisplayDeviceSetProjectionTest_Installed270 : public DisplayDeviceSetProjectionTest {
1662 DisplayDeviceSetProjectionTest_Installed270()
1663 : DisplayDeviceSetProjectionTest(ui::Size(DEFAULT_DISPLAY_HEIGHT, DEFAULT_DISPLAY_WIDTH),
1664 ui::Size(DEFAULT_DISPLAY_WIDTH, DEFAULT_DISPLAY_HEIGHT),
1665 ui::ROTATION_270) {}
1666};
1667
1668TEST_F(DisplayDeviceSetProjectionTest_Installed270, checkWith0OutputRotation) {
1669 setProjectionForRotation0();
1670 expectStateForHardwareTransform270();
1671}
1672
1673TEST_F(DisplayDeviceSetProjectionTest_Installed270, checkWith90OutputRotation) {
1674 setProjectionForRotation90();
1675 expectStateForHardwareTransform0();
1676}
1677
1678TEST_F(DisplayDeviceSetProjectionTest_Installed270, checkWith180OutputRotation) {
1679 setProjectionForRotation180();
1680 expectStateForHardwareTransform90();
1681}
1682
1683TEST_F(DisplayDeviceSetProjectionTest_Installed270, checkWith270OutputRotation) {
1684 setProjectionForRotation270();
1685 expectStateForHardwareTransform180();
1686}
1687
1688/* ------------------------------------------------------------------------
Daniel Solomon42d04562019-01-20 21:03:19 -08001689 * SurfaceFlinger::getDisplayNativePrimaries
1690 */
1691
1692class GetDisplayNativePrimaries : public DisplayTransactionTest {
1693public:
1694 GetDisplayNativePrimaries();
1695 void populateDummyDisplayNativePrimaries(ui::DisplayPrimaries& primaries);
1696 void checkDummyDisplayNativePrimaries(const ui::DisplayPrimaries& primaries);
1697
1698private:
1699 static constexpr float mStartingTestValue = 1.0f;
1700};
1701
1702GetDisplayNativePrimaries::GetDisplayNativePrimaries() {
1703 SimplePrimaryDisplayCase::Display::injectHwcDisplay(this);
1704 injectFakeNativeWindowSurfaceFactory();
1705}
1706
1707void GetDisplayNativePrimaries::populateDummyDisplayNativePrimaries(
1708 ui::DisplayPrimaries& primaries) {
1709 float startingVal = mStartingTestValue;
1710 primaries.red.X = startingVal++;
1711 primaries.red.Y = startingVal++;
1712 primaries.red.Z = startingVal++;
1713 primaries.green.X = startingVal++;
1714 primaries.green.Y = startingVal++;
1715 primaries.green.Z = startingVal++;
1716 primaries.blue.X = startingVal++;
1717 primaries.blue.Y = startingVal++;
1718 primaries.blue.Z = startingVal++;
1719 primaries.white.X = startingVal++;
1720 primaries.white.Y = startingVal++;
1721 primaries.white.Z = startingVal++;
1722}
1723
1724void GetDisplayNativePrimaries::checkDummyDisplayNativePrimaries(
1725 const ui::DisplayPrimaries& primaries) {
1726 float startingVal = mStartingTestValue;
1727 EXPECT_EQ(primaries.red.X, startingVal++);
1728 EXPECT_EQ(primaries.red.Y, startingVal++);
1729 EXPECT_EQ(primaries.red.Z, startingVal++);
1730 EXPECT_EQ(primaries.green.X, startingVal++);
1731 EXPECT_EQ(primaries.green.Y, startingVal++);
1732 EXPECT_EQ(primaries.green.Z, startingVal++);
1733 EXPECT_EQ(primaries.blue.X, startingVal++);
1734 EXPECT_EQ(primaries.blue.Y, startingVal++);
1735 EXPECT_EQ(primaries.blue.Z, startingVal++);
1736 EXPECT_EQ(primaries.white.X, startingVal++);
1737 EXPECT_EQ(primaries.white.Y, startingVal++);
1738 EXPECT_EQ(primaries.white.Z, startingVal++);
1739}
1740
1741TEST_F(GetDisplayNativePrimaries, nullDisplayToken) {
1742 ui::DisplayPrimaries primaries;
1743 EXPECT_EQ(BAD_VALUE, mFlinger.getDisplayNativePrimaries(nullptr, primaries));
1744}
1745
Daniel Solomon42d04562019-01-20 21:03:19 -08001746TEST_F(GetDisplayNativePrimaries, internalDisplayWithPrimariesData) {
1747 auto injector = SimplePrimaryDisplayCase::Display::makeFakeExistingDisplayInjector(this);
1748 injector.inject();
1749 auto internalDisplayToken = injector.token();
1750
1751 ui::DisplayPrimaries expectedPrimaries;
1752 populateDummyDisplayNativePrimaries(expectedPrimaries);
1753 mFlinger.setInternalDisplayPrimaries(expectedPrimaries);
1754
1755 ui::DisplayPrimaries primaries;
1756 EXPECT_EQ(NO_ERROR, mFlinger.getDisplayNativePrimaries(internalDisplayToken, primaries));
1757
1758 checkDummyDisplayNativePrimaries(primaries);
1759}
1760
1761TEST_F(GetDisplayNativePrimaries, notInternalDisplayToken) {
1762 sp<BBinder> notInternalDisplayToken = new BBinder();
1763
1764 ui::DisplayPrimaries primaries;
1765 populateDummyDisplayNativePrimaries(primaries);
Dominik Laskowski470df5f2020-04-02 22:27:42 -07001766 EXPECT_EQ(NAME_NOT_FOUND,
1767 mFlinger.getDisplayNativePrimaries(notInternalDisplayToken, primaries));
Daniel Solomon42d04562019-01-20 21:03:19 -08001768
1769 // Check primaries argument wasn't modified in case of failure
1770 checkDummyDisplayNativePrimaries(primaries);
1771}
1772
1773/* ------------------------------------------------------------------------
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001774 * SurfaceFlinger::setupNewDisplayDeviceInternal
1775 */
1776
1777class SetupNewDisplayDeviceInternalTest : public DisplayTransactionTest {
1778public:
1779 template <typename T>
1780 void setupNewDisplayDeviceInternalTest();
1781};
1782
1783template <typename Case>
1784void SetupNewDisplayDeviceInternalTest::setupNewDisplayDeviceInternalTest() {
1785 const sp<BBinder> displayToken = new BBinder();
Lloyd Pique542307f2018-10-19 13:24:08 -07001786 const sp<compositionengine::mock::DisplaySurface> displaySurface =
1787 new compositionengine::mock::DisplaySurface();
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001788 const sp<mock::GraphicBufferProducer> producer = new mock::GraphicBufferProducer();
Lloyd Pique1fa4d462018-01-22 18:03:16 -08001789
1790 // --------------------------------------------------------------------
1791 // Preconditions
1792
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001793 // Wide color displays support is configured appropriately
1794 Case::WideColorSupport::injectConfigChange(this);
Lloyd Pique1fa4d462018-01-22 18:03:16 -08001795
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001796 // The display is setup with the HWC.
1797 Case::Display::injectHwcDisplay(this);
1798
1799 // SurfaceFlinger will use a test-controlled factory for native window
1800 // surfaces.
1801 injectFakeNativeWindowSurfaceFactory();
1802
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -07001803 // A compositionengine::Display has already been created
1804 auto compositionDisplay = Case::Display::injectCompositionDisplay(this);
1805
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001806 // --------------------------------------------------------------------
1807 // Call Expectations
1808
1809 // Various native window calls will be made.
1810 Case::Display::setupNativeWindowSurfaceCreationCallExpectations(this);
Lloyd Pique3c085a02018-05-09 19:38:32 -07001811 Case::Display::setupHwcGetActiveConfigCallExpectations(this);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001812 Case::WideColorSupport::setupComposerCallExpectations(this);
1813 Case::HdrSupport::setupComposerCallExpectations(this);
Lloyd Piqued883d5a2018-04-27 19:32:30 -07001814 Case::PerFrameMetadataSupport::setupComposerCallExpectations(this);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001815
1816 // --------------------------------------------------------------------
1817 // Invocation
1818
1819 DisplayDeviceState state;
Dominik Laskowski55c85402020-01-21 16:25:47 -08001820 if (const auto connectionType = Case::Display::CONNECTION_TYPE::value) {
1821 const auto displayId = Case::Display::DISPLAY_ID::get();
1822 ASSERT_TRUE(displayId);
Marin Shalamanov4a42d432020-02-12 20:22:26 +01001823 const auto hwcDisplayId = Case::Display::HWC_DISPLAY_ID_OPT::value;
1824 ASSERT_TRUE(hwcDisplayId);
1825 state.physical = {*displayId, *connectionType, *hwcDisplayId};
Dominik Laskowski55c85402020-01-21 16:25:47 -08001826 }
1827
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001828 state.isSecure = static_cast<bool>(Case::Display::SECURE);
1829
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -07001830 auto device = mFlinger.setupNewDisplayDeviceInternal(displayToken, compositionDisplay, state,
1831 displaySurface, producer);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001832
1833 // --------------------------------------------------------------------
1834 // Postconditions
1835
1836 ASSERT_TRUE(device != nullptr);
Dominik Laskowski075d3172018-05-24 15:50:06 -07001837 EXPECT_EQ(Case::Display::DISPLAY_ID::get(), device->getId());
Dominik Laskowski55c85402020-01-21 16:25:47 -08001838 EXPECT_EQ(Case::Display::CONNECTION_TYPE::value, device->getConnectionType());
Dominik Laskowski075d3172018-05-24 15:50:06 -07001839 EXPECT_EQ(static_cast<bool>(Case::Display::VIRTUAL), device->isVirtual());
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001840 EXPECT_EQ(static_cast<bool>(Case::Display::SECURE), device->isSecure());
Dominik Laskowski075d3172018-05-24 15:50:06 -07001841 EXPECT_EQ(static_cast<bool>(Case::Display::PRIMARY), device->isPrimary());
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001842 EXPECT_EQ(Case::Display::WIDTH, device->getWidth());
1843 EXPECT_EQ(Case::Display::HEIGHT, device->getHeight());
1844 EXPECT_EQ(Case::WideColorSupport::WIDE_COLOR_SUPPORTED, device->hasWideColorGamut());
Valerie Haue9e843a2018-12-18 13:39:23 -08001845 EXPECT_EQ(Case::HdrSupport::HDR10_PLUS_SUPPORTED, device->hasHDR10PlusSupport());
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001846 EXPECT_EQ(Case::HdrSupport::HDR10_SUPPORTED, device->hasHDR10Support());
1847 EXPECT_EQ(Case::HdrSupport::HDR_HLG_SUPPORTED, device->hasHLGSupport());
1848 EXPECT_EQ(Case::HdrSupport::HDR_DOLBY_VISION_SUPPORTED, device->hasDolbyVisionSupport());
Lloyd Pique3c085a02018-05-09 19:38:32 -07001849 // Note: This is not Case::Display::HWC_ACTIVE_CONFIG_ID as the ids are
1850 // remapped, and the test only ever sets up one config. If there were an error
1851 // looking up the remapped index, device->getActiveConfig() would be -1 instead.
Ady Abraham2139f732019-11-13 18:56:40 -08001852 EXPECT_EQ(0, device->getActiveConfig().value());
Lloyd Piqued883d5a2018-04-27 19:32:30 -07001853 EXPECT_EQ(Case::PerFrameMetadataSupport::PER_FRAME_METADATA_KEYS,
1854 device->getSupportedPerFrameMetadata());
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001855}
1856
1857TEST_F(SetupNewDisplayDeviceInternalTest, createSimplePrimaryDisplay) {
1858 setupNewDisplayDeviceInternalTest<SimplePrimaryDisplayCase>();
1859}
1860
1861TEST_F(SetupNewDisplayDeviceInternalTest, createSimpleExternalDisplay) {
1862 setupNewDisplayDeviceInternalTest<SimpleExternalDisplayCase>();
1863}
1864
1865TEST_F(SetupNewDisplayDeviceInternalTest, createNonHwcVirtualDisplay) {
1866 setupNewDisplayDeviceInternalTest<NonHwcVirtualDisplayCase>();
1867}
1868
1869TEST_F(SetupNewDisplayDeviceInternalTest, createHwcVirtualDisplay) {
Lloyd Piqueaad4ebf2019-10-03 17:58:30 -07001870 setupNewDisplayDeviceInternalTest<HwcVirtualDisplayCase>();
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001871}
1872
1873TEST_F(SetupNewDisplayDeviceInternalTest, createWideColorP3Display) {
1874 setupNewDisplayDeviceInternalTest<WideColorP3ColorimetricDisplayCase>();
1875}
1876
Valerie Haue9e843a2018-12-18 13:39:23 -08001877TEST_F(SetupNewDisplayDeviceInternalTest, createHdr10PlusDisplay) {
1878 setupNewDisplayDeviceInternalTest<Hdr10PlusDisplayCase>();
1879}
1880
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001881TEST_F(SetupNewDisplayDeviceInternalTest, createHdr10Display) {
1882 setupNewDisplayDeviceInternalTest<Hdr10DisplayCase>();
1883}
1884
1885TEST_F(SetupNewDisplayDeviceInternalTest, createHdrHlgDisplay) {
1886 setupNewDisplayDeviceInternalTest<HdrHlgDisplayCase>();
1887}
1888
1889TEST_F(SetupNewDisplayDeviceInternalTest, createHdrDolbyVisionDisplay) {
1890 setupNewDisplayDeviceInternalTest<HdrDolbyVisionDisplayCase>();
1891}
1892
Lloyd Piqued883d5a2018-04-27 19:32:30 -07001893TEST_F(SetupNewDisplayDeviceInternalTest, createHdrSmpte2086DisplayCase) {
1894 setupNewDisplayDeviceInternalTest<HdrSmpte2086DisplayCase>();
1895}
1896
1897TEST_F(SetupNewDisplayDeviceInternalTest, createHdrCta816_3_DisplayCase) {
1898 setupNewDisplayDeviceInternalTest<HdrCta861_3_DisplayCase>();
1899}
1900
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001901/* ------------------------------------------------------------------------
1902 * SurfaceFlinger::handleTransactionLocked(eDisplayTransactionNeeded)
1903 */
1904
1905class HandleTransactionLockedTest : public DisplayTransactionTest {
1906public:
1907 template <typename Case>
1908 void setupCommonPreconditions();
1909
Dominik Laskowskidcb38bb2019-01-25 02:35:50 -08001910 template <typename Case, bool connected>
1911 static void expectHotplugReceived(mock::EventThread*);
1912
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001913 template <typename Case>
1914 void setupCommonCallExpectationsForConnectProcessing();
1915
1916 template <typename Case>
1917 void setupCommonCallExpectationsForDisconnectProcessing();
1918
1919 template <typename Case>
1920 void processesHotplugConnectCommon();
1921
1922 template <typename Case>
1923 void ignoresHotplugConnectCommon();
1924
1925 template <typename Case>
1926 void processesHotplugDisconnectCommon();
1927
1928 template <typename Case>
1929 void verifyDisplayIsConnected(const sp<IBinder>& displayToken);
1930
1931 template <typename Case>
1932 void verifyPhysicalDisplayIsConnected();
1933
1934 void verifyDisplayIsNotConnected(const sp<IBinder>& displayToken);
1935};
1936
1937template <typename Case>
1938void HandleTransactionLockedTest::setupCommonPreconditions() {
1939 // Wide color displays support is configured appropriately
1940 Case::WideColorSupport::injectConfigChange(this);
1941
1942 // SurfaceFlinger will use a test-controlled factory for BufferQueues
1943 injectFakeBufferQueueFactory();
1944
1945 // SurfaceFlinger will use a test-controlled factory for native window
1946 // surfaces.
1947 injectFakeNativeWindowSurfaceFactory();
1948}
1949
Dominik Laskowskidcb38bb2019-01-25 02:35:50 -08001950template <typename Case, bool connected>
1951void HandleTransactionLockedTest::expectHotplugReceived(mock::EventThread* eventThread) {
1952 const auto convert = [](auto physicalDisplayId) {
1953 return std::make_optional(DisplayId{physicalDisplayId});
1954 };
1955
1956 EXPECT_CALL(*eventThread,
1957 onHotplugReceived(ResultOf(convert, Case::Display::DISPLAY_ID::get()), connected))
1958 .Times(1);
1959}
1960
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001961template <typename Case>
1962void HandleTransactionLockedTest::setupCommonCallExpectationsForConnectProcessing() {
1963 Case::Display::setupHwcHotplugCallExpectations(this);
1964
1965 Case::Display::setupFramebufferConsumerBufferQueueCallExpectations(this);
1966 Case::Display::setupFramebufferProducerBufferQueueCallExpectations(this);
1967 Case::Display::setupNativeWindowSurfaceCreationCallExpectations(this);
1968 Case::Display::setupHwcGetActiveConfigCallExpectations(this);
1969
1970 Case::WideColorSupport::setupComposerCallExpectations(this);
1971 Case::HdrSupport::setupComposerCallExpectations(this);
Lloyd Piqued883d5a2018-04-27 19:32:30 -07001972 Case::PerFrameMetadataSupport::setupComposerCallExpectations(this);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001973
1974 EXPECT_CALL(*mSurfaceInterceptor, saveDisplayCreation(_)).Times(1);
Dominik Laskowskidcb38bb2019-01-25 02:35:50 -08001975 expectHotplugReceived<Case, true>(mEventThread);
1976 expectHotplugReceived<Case, true>(mSFEventThread);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001977}
1978
1979template <typename Case>
1980void HandleTransactionLockedTest::setupCommonCallExpectationsForDisconnectProcessing() {
1981 EXPECT_CALL(*mSurfaceInterceptor, saveDisplayDeletion(_)).Times(1);
Dominik Laskowski1eba0202019-01-24 09:14:40 -08001982
Dominik Laskowskidcb38bb2019-01-25 02:35:50 -08001983 expectHotplugReceived<Case, false>(mEventThread);
1984 expectHotplugReceived<Case, false>(mSFEventThread);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001985}
1986
1987template <typename Case>
1988void HandleTransactionLockedTest::verifyDisplayIsConnected(const sp<IBinder>& displayToken) {
1989 // The display device should have been set up in the list of displays.
1990 ASSERT_TRUE(hasDisplayDevice(displayToken));
1991 const auto& device = getDisplayDevice(displayToken);
1992 EXPECT_EQ(static_cast<bool>(Case::Display::SECURE), device->isSecure());
Dominik Laskowski075d3172018-05-24 15:50:06 -07001993 EXPECT_EQ(static_cast<bool>(Case::Display::PRIMARY), device->isPrimary());
Lloyd Piquec11e0d32018-01-22 18:44:59 -08001994
Dominik Laskowski55c85402020-01-21 16:25:47 -08001995 std::optional<DisplayDeviceState::Physical> expectedPhysical;
1996 if (const auto connectionType = Case::Display::CONNECTION_TYPE::value) {
1997 const auto displayId = Case::Display::DISPLAY_ID::get();
1998 ASSERT_TRUE(displayId);
Marin Shalamanov4a42d432020-02-12 20:22:26 +01001999 const auto hwcDisplayId = Case::Display::HWC_DISPLAY_ID_OPT::value;
2000 ASSERT_TRUE(hwcDisplayId);
2001 expectedPhysical = {*displayId, *connectionType, *hwcDisplayId};
Dominik Laskowski55c85402020-01-21 16:25:47 -08002002 }
2003
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002004 // The display should have been set up in the current display state
2005 ASSERT_TRUE(hasCurrentDisplayState(displayToken));
2006 const auto& current = getCurrentDisplayState(displayToken);
Dominik Laskowski075d3172018-05-24 15:50:06 -07002007 EXPECT_EQ(static_cast<bool>(Case::Display::VIRTUAL), current.isVirtual());
Dominik Laskowski55c85402020-01-21 16:25:47 -08002008 EXPECT_EQ(expectedPhysical, current.physical);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002009
2010 // The display should have been set up in the drawing display state
2011 ASSERT_TRUE(hasDrawingDisplayState(displayToken));
2012 const auto& draw = getDrawingDisplayState(displayToken);
Dominik Laskowski075d3172018-05-24 15:50:06 -07002013 EXPECT_EQ(static_cast<bool>(Case::Display::VIRTUAL), draw.isVirtual());
Dominik Laskowski55c85402020-01-21 16:25:47 -08002014 EXPECT_EQ(expectedPhysical, draw.physical);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002015}
2016
2017template <typename Case>
2018void HandleTransactionLockedTest::verifyPhysicalDisplayIsConnected() {
2019 // HWComposer should have an entry for the display
Dominik Laskowski075d3172018-05-24 15:50:06 -07002020 EXPECT_TRUE(hasPhysicalHwcDisplay(Case::Display::HWC_DISPLAY_ID));
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002021
Dominik Laskowski075d3172018-05-24 15:50:06 -07002022 // SF should have a display token.
2023 const auto displayId = Case::Display::DISPLAY_ID::get();
2024 ASSERT_TRUE(displayId);
2025 ASSERT_TRUE(mFlinger.mutablePhysicalDisplayTokens().count(*displayId) == 1);
2026 auto& displayToken = mFlinger.mutablePhysicalDisplayTokens()[*displayId];
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002027
2028 verifyDisplayIsConnected<Case>(displayToken);
2029}
2030
2031void HandleTransactionLockedTest::verifyDisplayIsNotConnected(const sp<IBinder>& displayToken) {
2032 EXPECT_FALSE(hasDisplayDevice(displayToken));
2033 EXPECT_FALSE(hasCurrentDisplayState(displayToken));
2034 EXPECT_FALSE(hasDrawingDisplayState(displayToken));
2035}
2036
2037template <typename Case>
2038void HandleTransactionLockedTest::processesHotplugConnectCommon() {
2039 // --------------------------------------------------------------------
2040 // Preconditions
2041
2042 setupCommonPreconditions<Case>();
2043
2044 // A hotplug connect event is enqueued for a display
Peiyong Line9d809e2020-04-14 13:10:48 -07002045 Case::Display::injectPendingHotplugEvent(this, Connection::CONNECTED);
Lloyd Pique1fa4d462018-01-22 18:03:16 -08002046
2047 // --------------------------------------------------------------------
2048 // Call Expectations
2049
2050 EXPECT_CALL(*mComposer, isUsingVrComposer()).WillOnce(Return(false));
Lloyd Pique1fa4d462018-01-22 18:03:16 -08002051
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002052 setupCommonCallExpectationsForConnectProcessing<Case>();
Lloyd Piquee39cad22017-12-20 17:01:29 -08002053
Lloyd Pique1fa4d462018-01-22 18:03:16 -08002054 // --------------------------------------------------------------------
2055 // Invocation
Lloyd Piquee39cad22017-12-20 17:01:29 -08002056
Lloyd Pique1fa4d462018-01-22 18:03:16 -08002057 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
Lloyd Piquee39cad22017-12-20 17:01:29 -08002058
Lloyd Pique1fa4d462018-01-22 18:03:16 -08002059 // --------------------------------------------------------------------
2060 // Postconditions
2061
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002062 verifyPhysicalDisplayIsConnected<Case>();
Lloyd Piquee39cad22017-12-20 17:01:29 -08002063
Lloyd Pique1fa4d462018-01-22 18:03:16 -08002064 // --------------------------------------------------------------------
2065 // Cleanup conditions
2066
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002067 EXPECT_CALL(*mComposer,
2068 setVsyncEnabled(Case::Display::HWC_DISPLAY_ID, IComposerClient::Vsync::DISABLE))
Lloyd Pique1fa4d462018-01-22 18:03:16 -08002069 .WillOnce(Return(Error::NONE));
2070 EXPECT_CALL(*mConsumer, consumerDisconnect()).WillOnce(Return(NO_ERROR));
Lloyd Piquef58625d2017-12-19 13:22:33 -08002071}
2072
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002073template <typename Case>
2074void HandleTransactionLockedTest::ignoresHotplugConnectCommon() {
2075 // --------------------------------------------------------------------
2076 // Preconditions
2077
2078 setupCommonPreconditions<Case>();
2079
2080 // A hotplug connect event is enqueued for a display
Peiyong Line9d809e2020-04-14 13:10:48 -07002081 Case::Display::injectPendingHotplugEvent(this, Connection::CONNECTED);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002082
2083 // --------------------------------------------------------------------
2084 // Invocation
2085
2086 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
2087
2088 // --------------------------------------------------------------------
2089 // Postconditions
2090
2091 // HWComposer should not have an entry for the display
Dominik Laskowski075d3172018-05-24 15:50:06 -07002092 EXPECT_FALSE(hasPhysicalHwcDisplay(Case::Display::HWC_DISPLAY_ID));
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002093}
2094
2095template <typename Case>
2096void HandleTransactionLockedTest::processesHotplugDisconnectCommon() {
2097 // --------------------------------------------------------------------
2098 // Preconditions
2099
2100 setupCommonPreconditions<Case>();
2101
2102 // A hotplug disconnect event is enqueued for a display
Peiyong Line9d809e2020-04-14 13:10:48 -07002103 Case::Display::injectPendingHotplugEvent(this, Connection::DISCONNECTED);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002104
2105 // The display is already completely set up.
2106 Case::Display::injectHwcDisplay(this);
2107 auto existing = Case::Display::makeFakeExistingDisplayInjector(this);
2108 existing.inject();
2109
2110 // --------------------------------------------------------------------
2111 // Call Expectations
2112
2113 EXPECT_CALL(*mComposer, isUsingVrComposer()).WillRepeatedly(Return(false));
Lloyd Pique438e9e72018-09-04 18:06:08 -07002114 EXPECT_CALL(*mComposer, getDisplayIdentificationData(Case::Display::HWC_DISPLAY_ID, _, _))
2115 .Times(0);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002116
2117 setupCommonCallExpectationsForDisconnectProcessing<Case>();
2118
2119 // --------------------------------------------------------------------
2120 // Invocation
2121
2122 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
2123
2124 // --------------------------------------------------------------------
2125 // Postconditions
2126
2127 // HWComposer should not have an entry for the display
Dominik Laskowski075d3172018-05-24 15:50:06 -07002128 EXPECT_FALSE(hasPhysicalHwcDisplay(Case::Display::HWC_DISPLAY_ID));
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002129
Dominik Laskowski075d3172018-05-24 15:50:06 -07002130 // SF should not have a display token.
2131 const auto displayId = Case::Display::DISPLAY_ID::get();
2132 ASSERT_TRUE(displayId);
2133 ASSERT_TRUE(mFlinger.mutablePhysicalDisplayTokens().count(*displayId) == 0);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002134
2135 // The existing token should have been removed
2136 verifyDisplayIsNotConnected(existing.token());
2137}
2138
2139TEST_F(HandleTransactionLockedTest, processesHotplugConnectPrimaryDisplay) {
2140 processesHotplugConnectCommon<SimplePrimaryDisplayCase>();
2141}
2142
2143TEST_F(HandleTransactionLockedTest,
2144 processesHotplugConnectPrimaryDisplayWithExternalAlreadyConnected) {
2145 // Inject an external display.
2146 ExternalDisplayVariant::injectHwcDisplay(this);
2147
2148 processesHotplugConnectCommon<SimplePrimaryDisplayCase>();
2149}
2150
2151TEST_F(HandleTransactionLockedTest, processesHotplugConnectExternalDisplay) {
2152 // Inject a primary display.
2153 PrimaryDisplayVariant::injectHwcDisplay(this);
2154
2155 processesHotplugConnectCommon<SimpleExternalDisplayCase>();
2156}
2157
2158TEST_F(HandleTransactionLockedTest, ignoresHotplugConnectIfPrimaryAndExternalAlreadyConnected) {
2159 // Inject both a primary and external display.
2160 PrimaryDisplayVariant::injectHwcDisplay(this);
2161 ExternalDisplayVariant::injectHwcDisplay(this);
2162
Lloyd Pique86fa3db2019-02-04 18:46:01 -08002163 // TODO: This is an unnecessary call.
2164 EXPECT_CALL(*mComposer,
2165 getDisplayIdentificationData(TertiaryDisplayVariant::HWC_DISPLAY_ID, _, _))
2166 .WillOnce(DoAll(SetArgPointee<1>(TertiaryDisplay::PORT),
2167 SetArgPointee<2>(TertiaryDisplay::GET_IDENTIFICATION_DATA()),
2168 Return(Error::NONE)));
2169
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002170 EXPECT_CALL(*mComposer, isUsingVrComposer()).WillRepeatedly(Return(false));
2171
2172 ignoresHotplugConnectCommon<SimpleTertiaryDisplayCase>();
2173}
2174
2175TEST_F(HandleTransactionLockedTest, ignoresHotplugConnectIfExternalForVrComposer) {
2176 // Inject a primary display.
2177 PrimaryDisplayVariant::injectHwcDisplay(this);
2178
2179 EXPECT_CALL(*mComposer, isUsingVrComposer()).WillRepeatedly(Return(true));
2180
2181 ignoresHotplugConnectCommon<SimpleExternalDisplayCase>();
2182}
2183
Marin Shalamanov4a42d432020-02-12 20:22:26 +01002184TEST_F(HandleTransactionLockedTest, processesHotplugDisconnectPrimaryDisplay) {
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002185 processesHotplugDisconnectCommon<SimplePrimaryDisplayCase>();
2186}
2187
Marin Shalamanov4a42d432020-02-12 20:22:26 +01002188TEST_F(HandleTransactionLockedTest, processesHotplugDisconnectExternalDisplay) {
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002189 processesHotplugDisconnectCommon<SimpleExternalDisplayCase>();
2190}
2191
2192TEST_F(HandleTransactionLockedTest, processesHotplugConnectThenDisconnectPrimary) {
2193 using Case = SimplePrimaryDisplayCase;
2194
2195 // --------------------------------------------------------------------
2196 // Preconditions
2197
2198 setupCommonPreconditions<Case>();
2199
2200 // A hotplug connect event is enqueued for a display
Peiyong Line9d809e2020-04-14 13:10:48 -07002201 Case::Display::injectPendingHotplugEvent(this, Connection::CONNECTED);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002202 // A hotplug disconnect event is also enqueued for the same display
Peiyong Line9d809e2020-04-14 13:10:48 -07002203 Case::Display::injectPendingHotplugEvent(this, Connection::DISCONNECTED);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002204
2205 // --------------------------------------------------------------------
2206 // Call Expectations
2207
2208 EXPECT_CALL(*mComposer, isUsingVrComposer()).WillRepeatedly(Return(false));
2209
2210 setupCommonCallExpectationsForConnectProcessing<Case>();
2211 setupCommonCallExpectationsForDisconnectProcessing<Case>();
2212
2213 EXPECT_CALL(*mComposer,
2214 setVsyncEnabled(Case::Display::HWC_DISPLAY_ID, IComposerClient::Vsync::DISABLE))
2215 .WillOnce(Return(Error::NONE));
2216 EXPECT_CALL(*mConsumer, consumerDisconnect()).WillOnce(Return(NO_ERROR));
2217
2218 // --------------------------------------------------------------------
2219 // Invocation
2220
2221 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
2222
2223 // --------------------------------------------------------------------
2224 // Postconditions
2225
2226 // HWComposer should not have an entry for the display
Dominik Laskowski075d3172018-05-24 15:50:06 -07002227 EXPECT_FALSE(hasPhysicalHwcDisplay(Case::Display::HWC_DISPLAY_ID));
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002228
Dominik Laskowski075d3172018-05-24 15:50:06 -07002229 // SF should not have a display token.
2230 const auto displayId = Case::Display::DISPLAY_ID::get();
2231 ASSERT_TRUE(displayId);
2232 ASSERT_TRUE(mFlinger.mutablePhysicalDisplayTokens().count(*displayId) == 0);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002233}
2234
2235TEST_F(HandleTransactionLockedTest, processesHotplugDisconnectThenConnectPrimary) {
2236 using Case = SimplePrimaryDisplayCase;
2237
2238 // --------------------------------------------------------------------
2239 // Preconditions
2240
2241 setupCommonPreconditions<Case>();
2242
2243 // The display is already completely set up.
2244 Case::Display::injectHwcDisplay(this);
2245 auto existing = Case::Display::makeFakeExistingDisplayInjector(this);
2246 existing.inject();
2247
2248 // A hotplug disconnect event is enqueued for a display
Peiyong Line9d809e2020-04-14 13:10:48 -07002249 Case::Display::injectPendingHotplugEvent(this, Connection::DISCONNECTED);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002250 // A hotplug connect event is also enqueued for the same display
Peiyong Line9d809e2020-04-14 13:10:48 -07002251 Case::Display::injectPendingHotplugEvent(this, Connection::CONNECTED);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002252
2253 // --------------------------------------------------------------------
2254 // Call Expectations
2255
2256 EXPECT_CALL(*mComposer, isUsingVrComposer()).WillRepeatedly(Return(false));
2257
2258 setupCommonCallExpectationsForConnectProcessing<Case>();
2259 setupCommonCallExpectationsForDisconnectProcessing<Case>();
2260
2261 // --------------------------------------------------------------------
2262 // Invocation
2263
2264 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
2265
2266 // --------------------------------------------------------------------
2267 // Postconditions
2268
2269 // The existing token should have been removed
2270 verifyDisplayIsNotConnected(existing.token());
Dominik Laskowski075d3172018-05-24 15:50:06 -07002271 const auto displayId = Case::Display::DISPLAY_ID::get();
2272 ASSERT_TRUE(displayId);
2273 ASSERT_TRUE(mFlinger.mutablePhysicalDisplayTokens().count(*displayId) == 1);
2274 EXPECT_NE(existing.token(), mFlinger.mutablePhysicalDisplayTokens()[*displayId]);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002275
2276 // A new display should be connected in its place
2277
2278 verifyPhysicalDisplayIsConnected<Case>();
2279
2280 // --------------------------------------------------------------------
2281 // Cleanup conditions
2282
2283 EXPECT_CALL(*mComposer,
2284 setVsyncEnabled(Case::Display::HWC_DISPLAY_ID, IComposerClient::Vsync::DISABLE))
2285 .WillOnce(Return(Error::NONE));
2286 EXPECT_CALL(*mConsumer, consumerDisconnect()).WillOnce(Return(NO_ERROR));
2287}
2288
2289TEST_F(HandleTransactionLockedTest, processesVirtualDisplayAdded) {
2290 using Case = HwcVirtualDisplayCase;
2291
2292 // --------------------------------------------------------------------
2293 // Preconditions
2294
2295 // The HWC supports at least one virtual display
2296 injectMockComposer(1);
2297
2298 setupCommonPreconditions<Case>();
2299
2300 // A virtual display was added to the current state, and it has a
2301 // surface(producer)
2302 sp<BBinder> displayToken = new BBinder();
Lloyd Pique4c2ac022018-04-27 12:08:03 -07002303
Dominik Laskowski075d3172018-05-24 15:50:06 -07002304 DisplayDeviceState state;
2305 state.isSecure = static_cast<bool>(Case::Display::SECURE);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002306
2307 sp<mock::GraphicBufferProducer> surface{new mock::GraphicBufferProducer()};
Dominik Laskowski075d3172018-05-24 15:50:06 -07002308 state.surface = surface;
2309 mFlinger.mutableCurrentState().displays.add(displayToken, state);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002310
2311 // --------------------------------------------------------------------
2312 // Call Expectations
2313
2314 Case::Display::setupFramebufferConsumerBufferQueueCallExpectations(this);
2315 Case::Display::setupNativeWindowSurfaceCreationCallExpectations(this);
2316
2317 EXPECT_CALL(*surface, query(NATIVE_WINDOW_WIDTH, _))
2318 .WillRepeatedly(DoAll(SetArgPointee<1>(Case::Display::WIDTH), Return(NO_ERROR)));
2319 EXPECT_CALL(*surface, query(NATIVE_WINDOW_HEIGHT, _))
2320 .WillRepeatedly(DoAll(SetArgPointee<1>(Case::Display::HEIGHT), Return(NO_ERROR)));
2321 EXPECT_CALL(*surface, query(NATIVE_WINDOW_FORMAT, _))
2322 .WillRepeatedly(DoAll(SetArgPointee<1>(DEFAULT_VIRTUAL_DISPLAY_SURFACE_FORMAT),
2323 Return(NO_ERROR)));
2324 EXPECT_CALL(*surface, query(NATIVE_WINDOW_CONSUMER_USAGE_BITS, _))
2325 .WillRepeatedly(DoAll(SetArgPointee<1>(0), Return(NO_ERROR)));
2326
2327 EXPECT_CALL(*surface, setAsyncMode(true)).Times(1);
2328
Lloyd Pique86fa3db2019-02-04 18:46:01 -08002329 EXPECT_CALL(*mProducer, connect(_, NATIVE_WINDOW_API_EGL, false, _)).Times(1);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002330 EXPECT_CALL(*mProducer, disconnect(_, _)).Times(1);
2331
2332 Case::Display::setupHwcVirtualDisplayCreationCallExpectations(this);
2333 Case::WideColorSupport::setupComposerCallExpectations(this);
2334 Case::HdrSupport::setupComposerCallExpectations(this);
Lloyd Piqued883d5a2018-04-27 19:32:30 -07002335 Case::PerFrameMetadataSupport::setupComposerCallExpectations(this);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002336
2337 // --------------------------------------------------------------------
2338 // Invocation
2339
2340 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
2341
2342 // --------------------------------------------------------------------
2343 // Postconditions
2344
2345 // The display device should have been set up in the list of displays.
2346 verifyDisplayIsConnected<Case>(displayToken);
2347
2348 // --------------------------------------------------------------------
2349 // Cleanup conditions
2350
2351 EXPECT_CALL(*mComposer, destroyVirtualDisplay(Case::Display::HWC_DISPLAY_ID))
2352 .WillOnce(Return(Error::NONE));
2353 EXPECT_CALL(*mConsumer, consumerDisconnect()).WillOnce(Return(NO_ERROR));
Lloyd Pique9e9800c2019-02-26 16:26:09 -08002354
2355 // Cleanup
2356 mFlinger.mutableCurrentState().displays.removeItem(displayToken);
2357 mFlinger.mutableDrawingState().displays.removeItem(displayToken);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002358}
2359
2360TEST_F(HandleTransactionLockedTest, processesVirtualDisplayAddedWithNoSurface) {
2361 using Case = HwcVirtualDisplayCase;
2362
2363 // --------------------------------------------------------------------
2364 // Preconditions
2365
2366 // The HWC supports at least one virtual display
2367 injectMockComposer(1);
2368
2369 setupCommonPreconditions<Case>();
2370
2371 // A virtual display was added to the current state, but it does not have a
2372 // surface.
2373 sp<BBinder> displayToken = new BBinder();
2374
Dominik Laskowski075d3172018-05-24 15:50:06 -07002375 DisplayDeviceState state;
2376 state.isSecure = static_cast<bool>(Case::Display::SECURE);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002377
Dominik Laskowski075d3172018-05-24 15:50:06 -07002378 mFlinger.mutableCurrentState().displays.add(displayToken, state);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002379
2380 // --------------------------------------------------------------------
2381 // Call Expectations
2382
2383 // --------------------------------------------------------------------
2384 // Invocation
2385
2386 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
2387
2388 // --------------------------------------------------------------------
2389 // Postconditions
2390
2391 // There will not be a display device set up.
2392 EXPECT_FALSE(hasDisplayDevice(displayToken));
2393
2394 // The drawing display state will be set from the current display state.
2395 ASSERT_TRUE(hasDrawingDisplayState(displayToken));
2396 const auto& draw = getDrawingDisplayState(displayToken);
Dominik Laskowski075d3172018-05-24 15:50:06 -07002397 EXPECT_EQ(static_cast<bool>(Case::Display::VIRTUAL), draw.isVirtual());
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002398}
2399
2400TEST_F(HandleTransactionLockedTest, processesVirtualDisplayRemoval) {
2401 using Case = HwcVirtualDisplayCase;
2402
2403 // --------------------------------------------------------------------
2404 // Preconditions
2405
2406 // A virtual display is set up but is removed from the current state.
Dominik Laskowski075d3172018-05-24 15:50:06 -07002407 const auto displayId = Case::Display::DISPLAY_ID::get();
2408 ASSERT_TRUE(displayId);
Dominik Laskowski1af47932018-11-12 10:20:46 -08002409 mFlinger.mutableHwcDisplayData().try_emplace(*displayId);
Lloyd Piquec11e0d32018-01-22 18:44:59 -08002410 Case::Display::injectHwcDisplay(this);
2411 auto existing = Case::Display::makeFakeExistingDisplayInjector(this);
2412 existing.inject();
2413 mFlinger.mutableCurrentState().displays.removeItem(existing.token());
2414
2415 // --------------------------------------------------------------------
2416 // Call Expectations
2417
2418 EXPECT_CALL(*mComposer, isUsingVrComposer()).WillRepeatedly(Return(false));
2419
2420 // --------------------------------------------------------------------
2421 // Invocation
2422
2423 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
2424
2425 // --------------------------------------------------------------------
2426 // Postconditions
2427
2428 // The existing token should have been removed
2429 verifyDisplayIsNotConnected(existing.token());
2430}
2431
Lloyd Pique0fa1d4c2018-01-22 18:54:42 -08002432TEST_F(HandleTransactionLockedTest, processesDisplayLayerStackChanges) {
2433 using Case = NonHwcVirtualDisplayCase;
2434
2435 constexpr uint32_t oldLayerStack = 0u;
2436 constexpr uint32_t newLayerStack = 123u;
2437
2438 // --------------------------------------------------------------------
2439 // Preconditions
2440
2441 // A display is set up
2442 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2443 display.inject();
2444
2445 // There is a change to the layerStack state
2446 display.mutableDrawingDisplayState().layerStack = oldLayerStack;
2447 display.mutableCurrentDisplayState().layerStack = newLayerStack;
2448
2449 // --------------------------------------------------------------------
2450 // Invocation
2451
2452 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
2453
2454 // --------------------------------------------------------------------
2455 // Postconditions
2456
Lloyd Pique9d9cf402018-02-16 17:47:13 -08002457 EXPECT_EQ(newLayerStack, display.mutableDisplayDevice()->getLayerStack());
Lloyd Pique0fa1d4c2018-01-22 18:54:42 -08002458}
2459
2460TEST_F(HandleTransactionLockedTest, processesDisplayTransformChanges) {
2461 using Case = NonHwcVirtualDisplayCase;
2462
Dominik Laskowski718f9602019-11-09 20:01:35 -08002463 constexpr ui::Rotation oldTransform = ui::ROTATION_0;
2464 constexpr ui::Rotation newTransform = ui::ROTATION_180;
Lloyd Pique0fa1d4c2018-01-22 18:54:42 -08002465
2466 // --------------------------------------------------------------------
2467 // Preconditions
2468
2469 // A display is set up
2470 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2471 display.inject();
2472
2473 // There is a change to the orientation state
2474 display.mutableDrawingDisplayState().orientation = oldTransform;
2475 display.mutableCurrentDisplayState().orientation = newTransform;
2476
2477 // --------------------------------------------------------------------
2478 // Invocation
2479
2480 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
2481
2482 // --------------------------------------------------------------------
2483 // Postconditions
2484
Lloyd Pique9d9cf402018-02-16 17:47:13 -08002485 EXPECT_EQ(newTransform, display.mutableDisplayDevice()->getOrientation());
Lloyd Pique0fa1d4c2018-01-22 18:54:42 -08002486}
2487
2488TEST_F(HandleTransactionLockedTest, processesDisplayViewportChanges) {
2489 using Case = NonHwcVirtualDisplayCase;
2490
2491 const Rect oldViewport(0, 0, 0, 0);
2492 const Rect newViewport(0, 0, 123, 456);
2493
2494 // --------------------------------------------------------------------
2495 // Preconditions
2496
2497 // A display is set up
2498 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2499 display.inject();
2500
2501 // There is a change to the viewport state
2502 display.mutableDrawingDisplayState().viewport = oldViewport;
2503 display.mutableCurrentDisplayState().viewport = newViewport;
2504
2505 // --------------------------------------------------------------------
2506 // Invocation
2507
2508 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
2509
2510 // --------------------------------------------------------------------
2511 // Postconditions
2512
Lloyd Pique9d9cf402018-02-16 17:47:13 -08002513 EXPECT_EQ(newViewport, display.mutableDisplayDevice()->getViewport());
Lloyd Pique0fa1d4c2018-01-22 18:54:42 -08002514}
2515
2516TEST_F(HandleTransactionLockedTest, processesDisplayFrameChanges) {
2517 using Case = NonHwcVirtualDisplayCase;
2518
2519 const Rect oldFrame(0, 0, 0, 0);
2520 const Rect newFrame(0, 0, 123, 456);
2521
2522 // --------------------------------------------------------------------
2523 // Preconditions
2524
2525 // A display is set up
2526 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2527 display.inject();
2528
2529 // There is a change to the viewport state
2530 display.mutableDrawingDisplayState().frame = oldFrame;
2531 display.mutableCurrentDisplayState().frame = newFrame;
2532
2533 // --------------------------------------------------------------------
2534 // Invocation
2535
2536 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
2537
2538 // --------------------------------------------------------------------
2539 // Postconditions
2540
Lloyd Pique9d9cf402018-02-16 17:47:13 -08002541 EXPECT_EQ(newFrame, display.mutableDisplayDevice()->getFrame());
Lloyd Pique0fa1d4c2018-01-22 18:54:42 -08002542}
2543
2544TEST_F(HandleTransactionLockedTest, processesDisplayWidthChanges) {
2545 using Case = NonHwcVirtualDisplayCase;
2546
2547 constexpr int oldWidth = 0;
2548 constexpr int oldHeight = 10;
2549 constexpr int newWidth = 123;
2550
2551 // --------------------------------------------------------------------
2552 // Preconditions
2553
2554 // A display is set up
2555 auto nativeWindow = new mock::NativeWindow();
Lloyd Pique542307f2018-10-19 13:24:08 -07002556 auto displaySurface = new compositionengine::mock::DisplaySurface();
Alec Mouri0a9c7b82018-11-16 13:05:25 -08002557 sp<GraphicBuffer> buf = new GraphicBuffer();
Lloyd Pique0fa1d4c2018-01-22 18:54:42 -08002558 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2559 display.setNativeWindow(nativeWindow);
2560 display.setDisplaySurface(displaySurface);
Alec Mouri0a9c7b82018-11-16 13:05:25 -08002561 // Setup injection expections
2562 EXPECT_CALL(*nativeWindow, query(NATIVE_WINDOW_WIDTH, _))
2563 .WillOnce(DoAll(SetArgPointee<1>(oldWidth), Return(0)));
2564 EXPECT_CALL(*nativeWindow, query(NATIVE_WINDOW_HEIGHT, _))
2565 .WillOnce(DoAll(SetArgPointee<1>(oldHeight), Return(0)));
Lloyd Pique86fa3db2019-02-04 18:46:01 -08002566 EXPECT_CALL(*nativeWindow, perform(NATIVE_WINDOW_SET_BUFFERS_FORMAT)).Times(1);
2567 EXPECT_CALL(*nativeWindow, perform(NATIVE_WINDOW_API_CONNECT)).Times(1);
2568 EXPECT_CALL(*nativeWindow, perform(NATIVE_WINDOW_SET_USAGE64)).Times(1);
chaviw8beb4142019-04-11 13:09:05 -07002569 EXPECT_CALL(*nativeWindow, perform(NATIVE_WINDOW_API_DISCONNECT)).Times(1);
Lloyd Pique0fa1d4c2018-01-22 18:54:42 -08002570 display.inject();
2571
2572 // There is a change to the viewport state
2573 display.mutableDrawingDisplayState().width = oldWidth;
2574 display.mutableDrawingDisplayState().height = oldHeight;
2575 display.mutableCurrentDisplayState().width = newWidth;
2576 display.mutableCurrentDisplayState().height = oldHeight;
2577
2578 // --------------------------------------------------------------------
2579 // Call Expectations
2580
Lloyd Pique0fa1d4c2018-01-22 18:54:42 -08002581 EXPECT_CALL(*displaySurface, resizeBuffers(newWidth, oldHeight)).Times(1);
Lloyd Pique0fa1d4c2018-01-22 18:54:42 -08002582
2583 // --------------------------------------------------------------------
2584 // Invocation
2585
2586 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
2587}
2588
2589TEST_F(HandleTransactionLockedTest, processesDisplayHeightChanges) {
2590 using Case = NonHwcVirtualDisplayCase;
2591
2592 constexpr int oldWidth = 0;
2593 constexpr int oldHeight = 10;
2594 constexpr int newHeight = 123;
2595
2596 // --------------------------------------------------------------------
2597 // Preconditions
2598
2599 // A display is set up
2600 auto nativeWindow = new mock::NativeWindow();
Lloyd Pique542307f2018-10-19 13:24:08 -07002601 auto displaySurface = new compositionengine::mock::DisplaySurface();
Alec Mouri0a9c7b82018-11-16 13:05:25 -08002602 sp<GraphicBuffer> buf = new GraphicBuffer();
Lloyd Pique0fa1d4c2018-01-22 18:54:42 -08002603 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2604 display.setNativeWindow(nativeWindow);
2605 display.setDisplaySurface(displaySurface);
Alec Mouri0a9c7b82018-11-16 13:05:25 -08002606 // Setup injection expections
2607 EXPECT_CALL(*nativeWindow, query(NATIVE_WINDOW_WIDTH, _))
2608 .WillOnce(DoAll(SetArgPointee<1>(oldWidth), Return(0)));
2609 EXPECT_CALL(*nativeWindow, query(NATIVE_WINDOW_HEIGHT, _))
2610 .WillOnce(DoAll(SetArgPointee<1>(oldHeight), Return(0)));
Lloyd Pique86fa3db2019-02-04 18:46:01 -08002611 EXPECT_CALL(*nativeWindow, perform(NATIVE_WINDOW_SET_BUFFERS_FORMAT)).Times(1);
2612 EXPECT_CALL(*nativeWindow, perform(NATIVE_WINDOW_API_CONNECT)).Times(1);
2613 EXPECT_CALL(*nativeWindow, perform(NATIVE_WINDOW_SET_USAGE64)).Times(1);
chaviw8beb4142019-04-11 13:09:05 -07002614 EXPECT_CALL(*nativeWindow, perform(NATIVE_WINDOW_API_DISCONNECT)).Times(1);
Lloyd Pique0fa1d4c2018-01-22 18:54:42 -08002615 display.inject();
2616
2617 // There is a change to the viewport state
2618 display.mutableDrawingDisplayState().width = oldWidth;
2619 display.mutableDrawingDisplayState().height = oldHeight;
2620 display.mutableCurrentDisplayState().width = oldWidth;
2621 display.mutableCurrentDisplayState().height = newHeight;
2622
2623 // --------------------------------------------------------------------
2624 // Call Expectations
2625
Lloyd Pique0fa1d4c2018-01-22 18:54:42 -08002626 EXPECT_CALL(*displaySurface, resizeBuffers(oldWidth, newHeight)).Times(1);
Lloyd Pique0fa1d4c2018-01-22 18:54:42 -08002627
2628 // --------------------------------------------------------------------
2629 // Invocation
2630
2631 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
2632}
2633
Lloyd Pique9d9cf402018-02-16 17:47:13 -08002634/* ------------------------------------------------------------------------
2635 * SurfaceFlinger::setDisplayStateLocked
2636 */
2637
2638TEST_F(DisplayTransactionTest, setDisplayStateLockedDoesNothingWithUnknownDisplay) {
2639 // --------------------------------------------------------------------
2640 // Preconditions
2641
2642 // We have an unknown display token not associated with a known display
2643 sp<BBinder> displayToken = new BBinder();
2644
2645 // The requested display state references the unknown display.
2646 DisplayState state;
2647 state.what = DisplayState::eLayerStackChanged;
2648 state.token = displayToken;
2649 state.layerStack = 456;
2650
2651 // --------------------------------------------------------------------
2652 // Invocation
2653
2654 uint32_t flags = mFlinger.setDisplayStateLocked(state);
2655
2656 // --------------------------------------------------------------------
2657 // Postconditions
2658
2659 // The returned flags are empty
2660 EXPECT_EQ(0u, flags);
2661
2662 // The display token still doesn't match anything known.
2663 EXPECT_FALSE(hasCurrentDisplayState(displayToken));
2664}
2665
Lloyd Pique9d9cf402018-02-16 17:47:13 -08002666TEST_F(DisplayTransactionTest, setDisplayStateLockedDoesNothingWhenNoChanges) {
2667 using Case = SimplePrimaryDisplayCase;
2668
2669 // --------------------------------------------------------------------
2670 // Preconditions
2671
2672 // A display is already set up
2673 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2674 display.inject();
2675
2676 // No changes are made to the display
2677 DisplayState state;
2678 state.what = 0;
2679 state.token = display.token();
2680
2681 // --------------------------------------------------------------------
2682 // Invocation
2683
2684 uint32_t flags = mFlinger.setDisplayStateLocked(state);
2685
2686 // --------------------------------------------------------------------
2687 // Postconditions
2688
2689 // The returned flags are empty
2690 EXPECT_EQ(0u, flags);
2691}
2692
2693TEST_F(DisplayTransactionTest, setDisplayStateLockedDoesNothingIfSurfaceDidNotChange) {
2694 using Case = SimplePrimaryDisplayCase;
2695
2696 // --------------------------------------------------------------------
2697 // Preconditions
2698
2699 // A display is already set up
2700 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2701 display.inject();
2702
2703 // There is a surface that can be set.
2704 sp<mock::GraphicBufferProducer> surface = new mock::GraphicBufferProducer();
2705
2706 // The current display state has the surface set
2707 display.mutableCurrentDisplayState().surface = surface;
2708
2709 // The incoming request sets the same surface
2710 DisplayState state;
2711 state.what = DisplayState::eSurfaceChanged;
2712 state.token = display.token();
2713 state.surface = surface;
2714
2715 // --------------------------------------------------------------------
2716 // Invocation
2717
2718 uint32_t flags = mFlinger.setDisplayStateLocked(state);
2719
2720 // --------------------------------------------------------------------
2721 // Postconditions
2722
2723 // The returned flags are empty
2724 EXPECT_EQ(0u, flags);
2725
2726 // The current display state is unchanged.
2727 EXPECT_EQ(surface.get(), display.getCurrentDisplayState().surface.get());
2728}
2729
2730TEST_F(DisplayTransactionTest, setDisplayStateLockedRequestsUpdateIfSurfaceChanged) {
2731 using Case = SimplePrimaryDisplayCase;
2732
2733 // --------------------------------------------------------------------
2734 // Preconditions
2735
2736 // A display is already set up
2737 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2738 display.inject();
2739
2740 // There is a surface that can be set.
2741 sp<mock::GraphicBufferProducer> surface = new mock::GraphicBufferProducer();
2742
2743 // The current display state does not have a surface
2744 display.mutableCurrentDisplayState().surface = nullptr;
2745
2746 // The incoming request sets a surface
2747 DisplayState state;
2748 state.what = DisplayState::eSurfaceChanged;
2749 state.token = display.token();
2750 state.surface = surface;
2751
2752 // --------------------------------------------------------------------
2753 // Invocation
2754
2755 uint32_t flags = mFlinger.setDisplayStateLocked(state);
2756
2757 // --------------------------------------------------------------------
2758 // Postconditions
2759
2760 // The returned flags indicate a transaction is needed
2761 EXPECT_EQ(eDisplayTransactionNeeded, flags);
2762
2763 // The current display layer stack state is set to the new value
2764 EXPECT_EQ(surface.get(), display.getCurrentDisplayState().surface.get());
2765}
2766
2767TEST_F(DisplayTransactionTest, setDisplayStateLockedDoesNothingIfLayerStackDidNotChange) {
2768 using Case = SimplePrimaryDisplayCase;
2769
2770 // --------------------------------------------------------------------
2771 // Preconditions
2772
2773 // A display is already set up
2774 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2775 display.inject();
2776
2777 // The display has a layer stack set
2778 display.mutableCurrentDisplayState().layerStack = 456u;
2779
2780 // The incoming request sets the same layer stack
2781 DisplayState state;
2782 state.what = DisplayState::eLayerStackChanged;
2783 state.token = display.token();
2784 state.layerStack = 456u;
2785
2786 // --------------------------------------------------------------------
2787 // Invocation
2788
2789 uint32_t flags = mFlinger.setDisplayStateLocked(state);
2790
2791 // --------------------------------------------------------------------
2792 // Postconditions
2793
2794 // The returned flags are empty
2795 EXPECT_EQ(0u, flags);
2796
2797 // The current display state is unchanged
2798 EXPECT_EQ(456u, display.getCurrentDisplayState().layerStack);
2799}
2800
2801TEST_F(DisplayTransactionTest, setDisplayStateLockedRequestsUpdateIfLayerStackChanged) {
2802 using Case = SimplePrimaryDisplayCase;
2803
2804 // --------------------------------------------------------------------
2805 // Preconditions
2806
2807 // A display is set up
2808 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2809 display.inject();
2810
2811 // The display has a layer stack set
2812 display.mutableCurrentDisplayState().layerStack = 654u;
2813
2814 // The incoming request sets a different layer stack
2815 DisplayState state;
2816 state.what = DisplayState::eLayerStackChanged;
2817 state.token = display.token();
2818 state.layerStack = 456u;
2819
2820 // --------------------------------------------------------------------
2821 // Invocation
2822
2823 uint32_t flags = mFlinger.setDisplayStateLocked(state);
2824
2825 // --------------------------------------------------------------------
2826 // Postconditions
2827
2828 // The returned flags indicate a transaction is needed
2829 EXPECT_EQ(eDisplayTransactionNeeded, flags);
2830
2831 // The desired display state has been set to the new value.
2832 EXPECT_EQ(456u, display.getCurrentDisplayState().layerStack);
2833}
2834
2835TEST_F(DisplayTransactionTest, setDisplayStateLockedDoesNothingIfProjectionDidNotChange) {
2836 using Case = SimplePrimaryDisplayCase;
Dominik Laskowski718f9602019-11-09 20:01:35 -08002837 constexpr ui::Rotation initialOrientation = ui::ROTATION_180;
Lloyd Pique9d9cf402018-02-16 17:47:13 -08002838 const Rect initialFrame = {1, 2, 3, 4};
2839 const Rect initialViewport = {5, 6, 7, 8};
2840
2841 // --------------------------------------------------------------------
2842 // Preconditions
2843
2844 // A display is set up
2845 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2846 display.inject();
2847
2848 // The current display state projection state is all set
2849 display.mutableCurrentDisplayState().orientation = initialOrientation;
2850 display.mutableCurrentDisplayState().frame = initialFrame;
2851 display.mutableCurrentDisplayState().viewport = initialViewport;
2852
2853 // The incoming request sets the same projection state
2854 DisplayState state;
2855 state.what = DisplayState::eDisplayProjectionChanged;
2856 state.token = display.token();
2857 state.orientation = initialOrientation;
2858 state.frame = initialFrame;
2859 state.viewport = initialViewport;
2860
2861 // --------------------------------------------------------------------
2862 // Invocation
2863
2864 uint32_t flags = mFlinger.setDisplayStateLocked(state);
2865
2866 // --------------------------------------------------------------------
2867 // Postconditions
2868
2869 // The returned flags are empty
2870 EXPECT_EQ(0u, flags);
2871
2872 // The current display state is unchanged
2873 EXPECT_EQ(initialOrientation, display.getCurrentDisplayState().orientation);
2874
2875 EXPECT_EQ(initialFrame, display.getCurrentDisplayState().frame);
2876 EXPECT_EQ(initialViewport, display.getCurrentDisplayState().viewport);
2877}
2878
2879TEST_F(DisplayTransactionTest, setDisplayStateLockedRequestsUpdateIfOrientationChanged) {
2880 using Case = SimplePrimaryDisplayCase;
Dominik Laskowski718f9602019-11-09 20:01:35 -08002881 constexpr ui::Rotation initialOrientation = ui::ROTATION_90;
2882 constexpr ui::Rotation desiredOrientation = ui::ROTATION_180;
Lloyd Pique9d9cf402018-02-16 17:47:13 -08002883
2884 // --------------------------------------------------------------------
2885 // Preconditions
2886
2887 // A display is set up
2888 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2889 display.inject();
2890
2891 // The current display state has an orientation set
2892 display.mutableCurrentDisplayState().orientation = initialOrientation;
2893
2894 // The incoming request sets a different orientation
2895 DisplayState state;
2896 state.what = DisplayState::eDisplayProjectionChanged;
2897 state.token = display.token();
2898 state.orientation = desiredOrientation;
2899
2900 // --------------------------------------------------------------------
2901 // Invocation
2902
2903 uint32_t flags = mFlinger.setDisplayStateLocked(state);
2904
2905 // --------------------------------------------------------------------
2906 // Postconditions
2907
2908 // The returned flags indicate a transaction is needed
2909 EXPECT_EQ(eDisplayTransactionNeeded, flags);
2910
2911 // The current display state has the new value.
2912 EXPECT_EQ(desiredOrientation, display.getCurrentDisplayState().orientation);
2913}
2914
2915TEST_F(DisplayTransactionTest, setDisplayStateLockedRequestsUpdateIfFrameChanged) {
2916 using Case = SimplePrimaryDisplayCase;
2917 const Rect initialFrame = {0, 0, 0, 0};
2918 const Rect desiredFrame = {5, 6, 7, 8};
2919
2920 // --------------------------------------------------------------------
2921 // Preconditions
2922
2923 // A display is set up
2924 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2925 display.inject();
2926
2927 // The current display state does not have a frame
2928 display.mutableCurrentDisplayState().frame = initialFrame;
2929
2930 // The incoming request sets a frame
2931 DisplayState state;
2932 state.what = DisplayState::eDisplayProjectionChanged;
2933 state.token = display.token();
2934 state.frame = desiredFrame;
2935
2936 // --------------------------------------------------------------------
2937 // Invocation
2938
2939 uint32_t flags = mFlinger.setDisplayStateLocked(state);
2940
2941 // --------------------------------------------------------------------
2942 // Postconditions
2943
2944 // The returned flags indicate a transaction is needed
2945 EXPECT_EQ(eDisplayTransactionNeeded, flags);
2946
2947 // The current display state has the new value.
2948 EXPECT_EQ(desiredFrame, display.getCurrentDisplayState().frame);
2949}
2950
2951TEST_F(DisplayTransactionTest, setDisplayStateLockedRequestsUpdateIfViewportChanged) {
2952 using Case = SimplePrimaryDisplayCase;
2953 const Rect initialViewport = {0, 0, 0, 0};
2954 const Rect desiredViewport = {5, 6, 7, 8};
2955
2956 // --------------------------------------------------------------------
2957 // Preconditions
2958
2959 // A display is set up
2960 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2961 display.inject();
2962
2963 // The current display state does not have a viewport
2964 display.mutableCurrentDisplayState().viewport = initialViewport;
2965
2966 // The incoming request sets a viewport
2967 DisplayState state;
2968 state.what = DisplayState::eDisplayProjectionChanged;
2969 state.token = display.token();
2970 state.viewport = desiredViewport;
2971
2972 // --------------------------------------------------------------------
2973 // Invocation
2974
2975 uint32_t flags = mFlinger.setDisplayStateLocked(state);
2976
2977 // --------------------------------------------------------------------
2978 // Postconditions
2979
2980 // The returned flags indicate a transaction is needed
2981 EXPECT_EQ(eDisplayTransactionNeeded, flags);
2982
2983 // The current display state has the new value.
2984 EXPECT_EQ(desiredViewport, display.getCurrentDisplayState().viewport);
2985}
2986
2987TEST_F(DisplayTransactionTest, setDisplayStateLockedDoesNothingIfSizeDidNotChange) {
2988 using Case = SimplePrimaryDisplayCase;
2989 constexpr uint32_t initialWidth = 1024;
2990 constexpr uint32_t initialHeight = 768;
2991
2992 // --------------------------------------------------------------------
2993 // Preconditions
2994
2995 // A display is set up
2996 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2997 display.inject();
2998
2999 // The current display state has a size set
3000 display.mutableCurrentDisplayState().width = initialWidth;
3001 display.mutableCurrentDisplayState().height = initialHeight;
3002
3003 // The incoming request sets the same display size
3004 DisplayState state;
3005 state.what = DisplayState::eDisplaySizeChanged;
3006 state.token = display.token();
3007 state.width = initialWidth;
3008 state.height = initialHeight;
3009
3010 // --------------------------------------------------------------------
3011 // Invocation
3012
3013 uint32_t flags = mFlinger.setDisplayStateLocked(state);
3014
3015 // --------------------------------------------------------------------
3016 // Postconditions
3017
3018 // The returned flags are empty
3019 EXPECT_EQ(0u, flags);
3020
3021 // The current display state is unchanged
3022 EXPECT_EQ(initialWidth, display.getCurrentDisplayState().width);
3023 EXPECT_EQ(initialHeight, display.getCurrentDisplayState().height);
3024}
3025
3026TEST_F(DisplayTransactionTest, setDisplayStateLockedRequestsUpdateIfWidthChanged) {
3027 using Case = SimplePrimaryDisplayCase;
3028 constexpr uint32_t initialWidth = 0;
3029 constexpr uint32_t desiredWidth = 1024;
3030
3031 // --------------------------------------------------------------------
3032 // Preconditions
3033
3034 // A display is set up
3035 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
3036 display.inject();
3037
3038 // The display does not yet have a width
3039 display.mutableCurrentDisplayState().width = initialWidth;
3040
3041 // The incoming request sets a display width
3042 DisplayState state;
3043 state.what = DisplayState::eDisplaySizeChanged;
3044 state.token = display.token();
3045 state.width = desiredWidth;
3046
3047 // --------------------------------------------------------------------
3048 // Invocation
3049
3050 uint32_t flags = mFlinger.setDisplayStateLocked(state);
3051
3052 // --------------------------------------------------------------------
3053 // Postconditions
3054
3055 // The returned flags indicate a transaction is needed
3056 EXPECT_EQ(eDisplayTransactionNeeded, flags);
3057
3058 // The current display state has the new value.
3059 EXPECT_EQ(desiredWidth, display.getCurrentDisplayState().width);
3060}
3061
3062TEST_F(DisplayTransactionTest, setDisplayStateLockedRequestsUpdateIfHeightChanged) {
3063 using Case = SimplePrimaryDisplayCase;
3064 constexpr uint32_t initialHeight = 0;
3065 constexpr uint32_t desiredHeight = 768;
3066
3067 // --------------------------------------------------------------------
3068 // Preconditions
3069
3070 // A display is set up
3071 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
3072 display.inject();
3073
3074 // The display does not yet have a height
3075 display.mutableCurrentDisplayState().height = initialHeight;
3076
3077 // The incoming request sets a display height
3078 DisplayState state;
3079 state.what = DisplayState::eDisplaySizeChanged;
3080 state.token = display.token();
3081 state.height = desiredHeight;
3082
3083 // --------------------------------------------------------------------
3084 // Invocation
3085
3086 uint32_t flags = mFlinger.setDisplayStateLocked(state);
3087
3088 // --------------------------------------------------------------------
3089 // Postconditions
3090
3091 // The returned flags indicate a transaction is needed
3092 EXPECT_EQ(eDisplayTransactionNeeded, flags);
3093
3094 // The current display state has the new value.
3095 EXPECT_EQ(desiredHeight, display.getCurrentDisplayState().height);
3096}
3097
Lloyd Pique86016da2018-03-01 16:09:38 -08003098/* ------------------------------------------------------------------------
3099 * SurfaceFlinger::onInitializeDisplays
3100 */
3101
3102TEST_F(DisplayTransactionTest, onInitializeDisplaysSetsUpPrimaryDisplay) {
3103 using Case = SimplePrimaryDisplayCase;
3104
3105 // --------------------------------------------------------------------
3106 // Preconditions
3107
3108 // A primary display is set up
3109 Case::Display::injectHwcDisplay(this);
3110 auto primaryDisplay = Case::Display::makeFakeExistingDisplayInjector(this);
3111 primaryDisplay.inject();
3112
3113 // --------------------------------------------------------------------
3114 // Call Expectations
3115
3116 // We expect the surface interceptor to possibly be used, but we treat it as
3117 // disabled since it is called as a side effect rather than directly by this
3118 // function.
3119 EXPECT_CALL(*mSurfaceInterceptor, isEnabled()).WillOnce(Return(false));
3120
3121 // We expect a call to get the active display config.
3122 Case::Display::setupHwcGetActiveConfigCallExpectations(this);
3123
3124 // We expect invalidate() to be invoked once to trigger display transaction
3125 // processing.
3126 EXPECT_CALL(*mMessageQueue, invalidate()).Times(1);
3127
Ady Abraham0ed31c92020-04-16 11:48:45 -07003128 EXPECT_CALL(*mPrimaryDispSync, expectedPresentTime(_)).WillRepeatedly(Return(0));
Lloyd Pique86fa3db2019-02-04 18:46:01 -08003129
Lloyd Pique86016da2018-03-01 16:09:38 -08003130 // --------------------------------------------------------------------
3131 // Invocation
3132
3133 mFlinger.onInitializeDisplays();
3134
3135 // --------------------------------------------------------------------
3136 // Postconditions
3137
3138 // The primary display should have a current state
3139 ASSERT_TRUE(hasCurrentDisplayState(primaryDisplay.token()));
3140 const auto& primaryDisplayState = getCurrentDisplayState(primaryDisplay.token());
3141 // The layer stack state should be set to zero
3142 EXPECT_EQ(0u, primaryDisplayState.layerStack);
3143 // The orientation state should be set to zero
Dominik Laskowski718f9602019-11-09 20:01:35 -08003144 EXPECT_EQ(ui::ROTATION_0, primaryDisplayState.orientation);
Lloyd Pique86016da2018-03-01 16:09:38 -08003145
3146 // The frame state should be set to INVALID
3147 EXPECT_EQ(Rect::INVALID_RECT, primaryDisplayState.frame);
3148
3149 // The viewport state should be set to INVALID
3150 EXPECT_EQ(Rect::INVALID_RECT, primaryDisplayState.viewport);
3151
3152 // The width and height should both be zero
3153 EXPECT_EQ(0u, primaryDisplayState.width);
3154 EXPECT_EQ(0u, primaryDisplayState.height);
3155
Peiyong Lin65248e02020-04-18 21:15:07 -07003156 // The display should be set to PowerMode::ON
Lloyd Pique86016da2018-03-01 16:09:38 -08003157 ASSERT_TRUE(hasDisplayDevice(primaryDisplay.token()));
3158 auto displayDevice = primaryDisplay.mutableDisplayDevice();
Peiyong Lin65248e02020-04-18 21:15:07 -07003159 EXPECT_EQ(PowerMode::ON, displayDevice->getPowerMode());
Lloyd Pique86016da2018-03-01 16:09:38 -08003160
3161 // The display refresh period should be set in the frame tracker.
3162 FrameStats stats;
3163 mFlinger.getAnimFrameTracker().getStats(&stats);
3164 EXPECT_EQ(DEFAULT_REFRESH_RATE, stats.refreshPeriodNano);
3165
3166 // The display transaction needed flag should be set.
3167 EXPECT_TRUE(hasTransactionFlagSet(eDisplayTransactionNeeded));
3168
3169 // The compositor timing should be set to default values
3170 const auto& compositorTiming = mFlinger.getCompositorTiming();
3171 EXPECT_EQ(-DEFAULT_REFRESH_RATE, compositorTiming.deadline);
3172 EXPECT_EQ(DEFAULT_REFRESH_RATE, compositorTiming.interval);
3173 EXPECT_EQ(DEFAULT_REFRESH_RATE, compositorTiming.presentLatency);
3174}
3175
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003176/* ------------------------------------------------------------------------
3177 * SurfaceFlinger::setPowerModeInternal
3178 */
3179
3180// Used when we simulate a display that supports doze.
Peiyong Lined531a32018-10-26 18:27:56 -07003181template <typename Display>
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003182struct DozeIsSupportedVariant {
3183 static constexpr bool DOZE_SUPPORTED = true;
3184 static constexpr IComposerClient::PowerMode ACTUAL_POWER_MODE_FOR_DOZE =
3185 IComposerClient::PowerMode::DOZE;
3186 static constexpr IComposerClient::PowerMode ACTUAL_POWER_MODE_FOR_DOZE_SUSPEND =
3187 IComposerClient::PowerMode::DOZE_SUSPEND;
Peiyong Lined531a32018-10-26 18:27:56 -07003188
3189 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
3190 EXPECT_CALL(*test->mComposer, getDisplayCapabilities(Display::HWC_DISPLAY_ID, _))
Peiyong Line9d809e2020-04-14 13:10:48 -07003191 .WillOnce(DoAll(SetArgPointee<1>(
3192 std::vector<DisplayCapability>({DisplayCapability::DOZE})),
Peiyong Lined531a32018-10-26 18:27:56 -07003193 Return(Error::NONE)));
3194 }
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003195};
3196
Peiyong Lined531a32018-10-26 18:27:56 -07003197template <typename Display>
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003198// Used when we simulate a display that does not support doze.
3199struct DozeNotSupportedVariant {
3200 static constexpr bool DOZE_SUPPORTED = false;
3201 static constexpr IComposerClient::PowerMode ACTUAL_POWER_MODE_FOR_DOZE =
3202 IComposerClient::PowerMode::ON;
3203 static constexpr IComposerClient::PowerMode ACTUAL_POWER_MODE_FOR_DOZE_SUSPEND =
3204 IComposerClient::PowerMode::ON;
Peiyong Lined531a32018-10-26 18:27:56 -07003205
3206 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
3207 EXPECT_CALL(*test->mComposer, getDisplayCapabilities(Display::HWC_DISPLAY_ID, _))
Peiyong Line9d809e2020-04-14 13:10:48 -07003208 .WillOnce(DoAll(SetArgPointee<1>(std::vector<DisplayCapability>({})),
Peiyong Lined531a32018-10-26 18:27:56 -07003209 Return(Error::NONE)));
3210 }
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003211};
3212
3213struct EventThreadBaseSupportedVariant {
3214 static void setupEventAndEventControlThreadNoCallExpectations(DisplayTransactionTest* test) {
3215 // The event control thread should not be notified.
3216 EXPECT_CALL(*test->mEventControlThread, setVsyncEnabled(_)).Times(0);
3217
3218 // The event thread should not be notified.
3219 EXPECT_CALL(*test->mEventThread, onScreenReleased()).Times(0);
3220 EXPECT_CALL(*test->mEventThread, onScreenAcquired()).Times(0);
3221 }
3222};
3223
3224struct EventThreadNotSupportedVariant : public EventThreadBaseSupportedVariant {
3225 static void setupAcquireAndEnableVsyncCallExpectations(DisplayTransactionTest* test) {
3226 // These calls are only expected for the primary display.
3227
3228 // Instead expect no calls.
3229 setupEventAndEventControlThreadNoCallExpectations(test);
3230 }
3231
3232 static void setupReleaseAndDisableVsyncCallExpectations(DisplayTransactionTest* test) {
3233 // These calls are only expected for the primary display.
3234
3235 // Instead expect no calls.
3236 setupEventAndEventControlThreadNoCallExpectations(test);
3237 }
3238};
3239
3240struct EventThreadIsSupportedVariant : public EventThreadBaseSupportedVariant {
3241 static void setupAcquireAndEnableVsyncCallExpectations(DisplayTransactionTest* test) {
3242 // The event control thread should be notified to enable vsyncs
3243 EXPECT_CALL(*test->mEventControlThread, setVsyncEnabled(true)).Times(1);
3244
3245 // The event thread should be notified that the screen was acquired.
3246 EXPECT_CALL(*test->mEventThread, onScreenAcquired()).Times(1);
3247 }
3248
3249 static void setupReleaseAndDisableVsyncCallExpectations(DisplayTransactionTest* test) {
3250 // There should be a call to setVsyncEnabled(false)
3251 EXPECT_CALL(*test->mEventControlThread, setVsyncEnabled(false)).Times(1);
3252
3253 // The event thread should not be notified that the screen was released.
3254 EXPECT_CALL(*test->mEventThread, onScreenReleased()).Times(1);
3255 }
3256};
3257
Lloyd Pique41be5d22018-06-21 13:11:48 -07003258struct DispSyncIsSupportedVariant {
3259 static void setupBeginResyncCallExpectations(DisplayTransactionTest* test) {
Lloyd Pique41be5d22018-06-21 13:11:48 -07003260 EXPECT_CALL(*test->mPrimaryDispSync, setPeriod(DEFAULT_REFRESH_RATE)).Times(1);
3261 EXPECT_CALL(*test->mPrimaryDispSync, beginResync()).Times(1);
3262 }
3263
3264 static void setupEndResyncCallExpectations(DisplayTransactionTest* test) {
3265 EXPECT_CALL(*test->mPrimaryDispSync, endResync()).Times(1);
3266 }
3267};
3268
3269struct DispSyncNotSupportedVariant {
3270 static void setupBeginResyncCallExpectations(DisplayTransactionTest* /* test */) {}
3271
3272 static void setupEndResyncCallExpectations(DisplayTransactionTest* /* test */) {}
3273};
3274
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003275// --------------------------------------------------------------------
3276// Note:
3277//
3278// There are a large number of transitions we could test, however we only test a
3279// selected subset which provides complete test coverage of the implementation.
3280// --------------------------------------------------------------------
3281
Peiyong Lin65248e02020-04-18 21:15:07 -07003282template <PowerMode initialPowerMode, PowerMode targetPowerMode>
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003283struct TransitionVariantCommon {
3284 static constexpr auto INITIAL_POWER_MODE = initialPowerMode;
3285 static constexpr auto TARGET_POWER_MODE = targetPowerMode;
3286
3287 static void verifyPostconditions(DisplayTransactionTest*) {}
3288};
3289
Peiyong Lin65248e02020-04-18 21:15:07 -07003290struct TransitionOffToOnVariant : public TransitionVariantCommon<PowerMode::OFF, PowerMode::ON> {
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003291 template <typename Case>
3292 static void setupCallExpectations(DisplayTransactionTest* test) {
3293 Case::setupComposerCallExpectations(test, IComposerClient::PowerMode::ON);
3294 Case::EventThread::setupAcquireAndEnableVsyncCallExpectations(test);
Lloyd Pique41be5d22018-06-21 13:11:48 -07003295 Case::DispSync::setupBeginResyncCallExpectations(test);
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003296 Case::setupRepaintEverythingCallExpectations(test);
3297 }
3298
3299 static void verifyPostconditions(DisplayTransactionTest* test) {
3300 EXPECT_TRUE(test->mFlinger.getVisibleRegionsDirty());
3301 EXPECT_TRUE(test->mFlinger.getHasPoweredOff());
3302 }
3303};
3304
3305struct TransitionOffToDozeSuspendVariant
Peiyong Lin65248e02020-04-18 21:15:07 -07003306 : public TransitionVariantCommon<PowerMode::OFF, PowerMode::DOZE_SUSPEND> {
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003307 template <typename Case>
3308 static void setupCallExpectations(DisplayTransactionTest* test) {
3309 Case::setupComposerCallExpectations(test, Case::Doze::ACTUAL_POWER_MODE_FOR_DOZE_SUSPEND);
3310 Case::EventThread::setupEventAndEventControlThreadNoCallExpectations(test);
3311 Case::setupRepaintEverythingCallExpectations(test);
3312 }
3313
3314 static void verifyPostconditions(DisplayTransactionTest* test) {
3315 EXPECT_TRUE(test->mFlinger.getVisibleRegionsDirty());
3316 EXPECT_TRUE(test->mFlinger.getHasPoweredOff());
3317 }
3318};
3319
Peiyong Lin65248e02020-04-18 21:15:07 -07003320struct TransitionOnToOffVariant : public TransitionVariantCommon<PowerMode::ON, PowerMode::OFF> {
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003321 template <typename Case>
3322 static void setupCallExpectations(DisplayTransactionTest* test) {
3323 Case::EventThread::setupReleaseAndDisableVsyncCallExpectations(test);
Lloyd Pique41be5d22018-06-21 13:11:48 -07003324 Case::DispSync::setupEndResyncCallExpectations(test);
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003325 Case::setupComposerCallExpectations(test, IComposerClient::PowerMode::OFF);
3326 }
3327
3328 static void verifyPostconditions(DisplayTransactionTest* test) {
3329 EXPECT_TRUE(test->mFlinger.getVisibleRegionsDirty());
3330 }
3331};
3332
3333struct TransitionDozeSuspendToOffVariant
Peiyong Lin65248e02020-04-18 21:15:07 -07003334 : public TransitionVariantCommon<PowerMode::DOZE_SUSPEND, PowerMode::OFF> {
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003335 template <typename Case>
3336 static void setupCallExpectations(DisplayTransactionTest* test) {
3337 Case::EventThread::setupEventAndEventControlThreadNoCallExpectations(test);
3338 Case::setupComposerCallExpectations(test, IComposerClient::PowerMode::OFF);
3339 }
3340
3341 static void verifyPostconditions(DisplayTransactionTest* test) {
3342 EXPECT_TRUE(test->mFlinger.getVisibleRegionsDirty());
3343 }
3344};
3345
Peiyong Lin65248e02020-04-18 21:15:07 -07003346struct TransitionOnToDozeVariant : public TransitionVariantCommon<PowerMode::ON, PowerMode::DOZE> {
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003347 template <typename Case>
3348 static void setupCallExpectations(DisplayTransactionTest* test) {
3349 Case::EventThread::setupEventAndEventControlThreadNoCallExpectations(test);
3350 Case::setupComposerCallExpectations(test, Case::Doze::ACTUAL_POWER_MODE_FOR_DOZE);
3351 }
3352};
3353
3354struct TransitionDozeSuspendToDozeVariant
Peiyong Lin65248e02020-04-18 21:15:07 -07003355 : public TransitionVariantCommon<PowerMode::DOZE_SUSPEND, PowerMode::DOZE> {
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003356 template <typename Case>
3357 static void setupCallExpectations(DisplayTransactionTest* test) {
3358 Case::EventThread::setupAcquireAndEnableVsyncCallExpectations(test);
Lloyd Pique41be5d22018-06-21 13:11:48 -07003359 Case::DispSync::setupBeginResyncCallExpectations(test);
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003360 Case::setupComposerCallExpectations(test, Case::Doze::ACTUAL_POWER_MODE_FOR_DOZE);
3361 }
3362};
3363
Peiyong Lin65248e02020-04-18 21:15:07 -07003364struct TransitionDozeToOnVariant : public TransitionVariantCommon<PowerMode::DOZE, PowerMode::ON> {
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003365 template <typename Case>
3366 static void setupCallExpectations(DisplayTransactionTest* test) {
3367 Case::EventThread::setupEventAndEventControlThreadNoCallExpectations(test);
3368 Case::setupComposerCallExpectations(test, IComposerClient::PowerMode::ON);
3369 }
3370};
3371
3372struct TransitionDozeSuspendToOnVariant
Peiyong Lin65248e02020-04-18 21:15:07 -07003373 : public TransitionVariantCommon<PowerMode::DOZE_SUSPEND, PowerMode::ON> {
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003374 template <typename Case>
3375 static void setupCallExpectations(DisplayTransactionTest* test) {
3376 Case::EventThread::setupAcquireAndEnableVsyncCallExpectations(test);
Lloyd Pique41be5d22018-06-21 13:11:48 -07003377 Case::DispSync::setupBeginResyncCallExpectations(test);
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003378 Case::setupComposerCallExpectations(test, IComposerClient::PowerMode::ON);
3379 }
3380};
3381
3382struct TransitionOnToDozeSuspendVariant
Peiyong Lin65248e02020-04-18 21:15:07 -07003383 : public TransitionVariantCommon<PowerMode::ON, PowerMode::DOZE_SUSPEND> {
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003384 template <typename Case>
3385 static void setupCallExpectations(DisplayTransactionTest* test) {
3386 Case::EventThread::setupReleaseAndDisableVsyncCallExpectations(test);
Lloyd Pique41be5d22018-06-21 13:11:48 -07003387 Case::DispSync::setupEndResyncCallExpectations(test);
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003388 Case::setupComposerCallExpectations(test, Case::Doze::ACTUAL_POWER_MODE_FOR_DOZE_SUSPEND);
3389 }
3390};
3391
3392struct TransitionOnToUnknownVariant
Peiyong Lin65248e02020-04-18 21:15:07 -07003393 : public TransitionVariantCommon<PowerMode::ON, static_cast<PowerMode>(POWER_MODE_LEET)> {
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003394 template <typename Case>
3395 static void setupCallExpectations(DisplayTransactionTest* test) {
3396 Case::EventThread::setupEventAndEventControlThreadNoCallExpectations(test);
3397 Case::setupNoComposerPowerModeCallExpectations(test);
3398 }
3399};
3400
3401// --------------------------------------------------------------------
3402// Note:
3403//
3404// Rather than testing the cartesian product of of
3405// DozeIsSupported/DozeNotSupported with all other options, we use one for one
3406// display type, and the other for another display type.
3407// --------------------------------------------------------------------
3408
3409template <typename DisplayVariant, typename DozeVariant, typename EventThreadVariant,
Lloyd Pique41be5d22018-06-21 13:11:48 -07003410 typename DispSyncVariant, typename TransitionVariant>
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003411struct DisplayPowerCase {
3412 using Display = DisplayVariant;
3413 using Doze = DozeVariant;
3414 using EventThread = EventThreadVariant;
Lloyd Pique41be5d22018-06-21 13:11:48 -07003415 using DispSync = DispSyncVariant;
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003416 using Transition = TransitionVariant;
3417
Peiyong Lin65248e02020-04-18 21:15:07 -07003418 static auto injectDisplayWithInitialPowerMode(DisplayTransactionTest* test, PowerMode mode) {
Lloyd Pique86fa3db2019-02-04 18:46:01 -08003419 Display::injectHwcDisplayWithNoDefaultCapabilities(test);
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003420 auto display = Display::makeFakeExistingDisplayInjector(test);
3421 display.inject();
3422 display.mutableDisplayDevice()->setPowerMode(mode);
3423 return display;
3424 }
3425
3426 static void setInitialPrimaryHWVsyncEnabled(DisplayTransactionTest* test, bool enabled) {
Dominik Laskowski7c9dbf92019-08-01 17:57:31 -07003427 test->mFlinger.scheduler()->mutablePrimaryHWVsyncEnabled() = enabled;
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003428 }
3429
3430 static void setupRepaintEverythingCallExpectations(DisplayTransactionTest* test) {
3431 EXPECT_CALL(*test->mMessageQueue, invalidate()).Times(1);
3432 }
3433
Peiyong Lin65248e02020-04-18 21:15:07 -07003434 static void setupSurfaceInterceptorCallExpectations(DisplayTransactionTest* test,
3435 PowerMode mode) {
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003436 EXPECT_CALL(*test->mSurfaceInterceptor, isEnabled()).WillOnce(Return(true));
Peiyong Lin65248e02020-04-18 21:15:07 -07003437 EXPECT_CALL(*test->mSurfaceInterceptor, savePowerModeUpdate(_, static_cast<int32_t>(mode)))
3438 .Times(1);
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003439 }
3440
Peiyong Lin65248e02020-04-18 21:15:07 -07003441 static void setupComposerCallExpectations(DisplayTransactionTest* test, PowerMode mode) {
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003442 // Any calls to get the active config will return a default value.
3443 EXPECT_CALL(*test->mComposer, getActiveConfig(Display::HWC_DISPLAY_ID, _))
3444 .WillRepeatedly(DoAll(SetArgPointee<1>(Display::HWC_ACTIVE_CONFIG_ID),
3445 Return(Error::NONE)));
3446
3447 // Any calls to get whether the display supports dozing will return the value set by the
3448 // policy variant.
3449 EXPECT_CALL(*test->mComposer, getDozeSupport(Display::HWC_DISPLAY_ID, _))
3450 .WillRepeatedly(DoAll(SetArgPointee<1>(Doze::DOZE_SUPPORTED), Return(Error::NONE)));
3451
3452 EXPECT_CALL(*test->mComposer, setPowerMode(Display::HWC_DISPLAY_ID, mode)).Times(1);
3453 }
3454
3455 static void setupNoComposerPowerModeCallExpectations(DisplayTransactionTest* test) {
3456 EXPECT_CALL(*test->mComposer, setPowerMode(Display::HWC_DISPLAY_ID, _)).Times(0);
3457 }
3458};
3459
3460// A sample configuration for the primary display.
3461// In addition to having event thread support, we emulate doze support.
3462template <typename TransitionVariant>
Peiyong Lined531a32018-10-26 18:27:56 -07003463using PrimaryDisplayPowerCase =
3464 DisplayPowerCase<PrimaryDisplayVariant, DozeIsSupportedVariant<PrimaryDisplayVariant>,
3465 EventThreadIsSupportedVariant, DispSyncIsSupportedVariant,
3466 TransitionVariant>;
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003467
3468// A sample configuration for the external display.
3469// In addition to not having event thread support, we emulate not having doze
3470// support.
3471template <typename TransitionVariant>
Peiyong Lined531a32018-10-26 18:27:56 -07003472using ExternalDisplayPowerCase =
3473 DisplayPowerCase<ExternalDisplayVariant, DozeNotSupportedVariant<ExternalDisplayVariant>,
3474 EventThreadNotSupportedVariant, DispSyncNotSupportedVariant,
3475 TransitionVariant>;
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003476
3477class SetPowerModeInternalTest : public DisplayTransactionTest {
3478public:
3479 template <typename Case>
3480 void transitionDisplayCommon();
3481};
3482
Peiyong Lin65248e02020-04-18 21:15:07 -07003483template <PowerMode PowerMode>
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003484struct PowerModeInitialVSyncEnabled : public std::false_type {};
3485
3486template <>
Peiyong Lin65248e02020-04-18 21:15:07 -07003487struct PowerModeInitialVSyncEnabled<PowerMode::ON> : public std::true_type {};
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003488
3489template <>
Peiyong Lin65248e02020-04-18 21:15:07 -07003490struct PowerModeInitialVSyncEnabled<PowerMode::DOZE> : public std::true_type {};
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003491
3492template <typename Case>
3493void SetPowerModeInternalTest::transitionDisplayCommon() {
3494 // --------------------------------------------------------------------
3495 // Preconditions
3496
Peiyong Lined531a32018-10-26 18:27:56 -07003497 Case::Doze::setupComposerCallExpectations(this);
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003498 auto display =
3499 Case::injectDisplayWithInitialPowerMode(this, Case::Transition::INITIAL_POWER_MODE);
3500 Case::setInitialPrimaryHWVsyncEnabled(this,
3501 PowerModeInitialVSyncEnabled<
3502 Case::Transition::INITIAL_POWER_MODE>::value);
3503
3504 // --------------------------------------------------------------------
3505 // Call Expectations
3506
3507 Case::setupSurfaceInterceptorCallExpectations(this, Case::Transition::TARGET_POWER_MODE);
3508 Case::Transition::template setupCallExpectations<Case>(this);
3509
3510 // --------------------------------------------------------------------
3511 // Invocation
3512
3513 mFlinger.setPowerModeInternal(display.mutableDisplayDevice(),
3514 Case::Transition::TARGET_POWER_MODE);
3515
3516 // --------------------------------------------------------------------
3517 // Postconditions
3518
3519 Case::Transition::verifyPostconditions(this);
3520}
3521
3522TEST_F(SetPowerModeInternalTest, setPowerModeInternalDoesNothingIfNoChange) {
3523 using Case = SimplePrimaryDisplayCase;
3524
3525 // --------------------------------------------------------------------
3526 // Preconditions
3527
3528 // A primary display device is set up
3529 Case::Display::injectHwcDisplay(this);
3530 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
3531 display.inject();
3532
Peiyong Lin65248e02020-04-18 21:15:07 -07003533 // The display is already set to PowerMode::ON
3534 display.mutableDisplayDevice()->setPowerMode(PowerMode::ON);
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003535
3536 // --------------------------------------------------------------------
3537 // Invocation
3538
Peiyong Lin65248e02020-04-18 21:15:07 -07003539 mFlinger.setPowerModeInternal(display.mutableDisplayDevice(), PowerMode::ON);
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003540
3541 // --------------------------------------------------------------------
3542 // Postconditions
3543
Peiyong Lin65248e02020-04-18 21:15:07 -07003544 EXPECT_EQ(PowerMode::ON, display.mutableDisplayDevice()->getPowerMode());
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003545}
3546
Dominik Laskowskieecd6592018-05-29 10:25:41 -07003547TEST_F(SetPowerModeInternalTest, setPowerModeInternalDoesNothingIfVirtualDisplay) {
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003548 using Case = HwcVirtualDisplayCase;
3549
3550 // --------------------------------------------------------------------
3551 // Preconditions
3552
Dominik Laskowski075d3172018-05-24 15:50:06 -07003553 // Insert display data so that the HWC thinks it created the virtual display.
3554 const auto displayId = Case::Display::DISPLAY_ID::get();
3555 ASSERT_TRUE(displayId);
Dominik Laskowski1af47932018-11-12 10:20:46 -08003556 mFlinger.mutableHwcDisplayData().try_emplace(*displayId);
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003557
3558 // A virtual display device is set up
3559 Case::Display::injectHwcDisplay(this);
3560 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
3561 display.inject();
3562
Peiyong Lin65248e02020-04-18 21:15:07 -07003563 // The display is set to PowerMode::ON
3564 getDisplayDevice(display.token())->setPowerMode(PowerMode::ON);
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003565
3566 // --------------------------------------------------------------------
3567 // Invocation
3568
Peiyong Lin65248e02020-04-18 21:15:07 -07003569 mFlinger.setPowerModeInternal(display.mutableDisplayDevice(), PowerMode::OFF);
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003570
3571 // --------------------------------------------------------------------
3572 // Postconditions
3573
Peiyong Lin65248e02020-04-18 21:15:07 -07003574 EXPECT_EQ(PowerMode::ON, display.mutableDisplayDevice()->getPowerMode());
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08003575}
3576
3577TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOffToOnPrimaryDisplay) {
3578 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionOffToOnVariant>>();
3579}
3580
3581TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOffToDozeSuspendPrimaryDisplay) {
3582 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionOffToDozeSuspendVariant>>();
3583}
3584
3585TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOnToOffPrimaryDisplay) {
3586 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionOnToOffVariant>>();
3587}
3588
3589TEST_F(SetPowerModeInternalTest, transitionsDisplayFromDozeSuspendToOffPrimaryDisplay) {
3590 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionDozeSuspendToOffVariant>>();
3591}
3592
3593TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOnToDozePrimaryDisplay) {
3594 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionOnToDozeVariant>>();
3595}
3596
3597TEST_F(SetPowerModeInternalTest, transitionsDisplayFromDozeSuspendToDozePrimaryDisplay) {
3598 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionDozeSuspendToDozeVariant>>();
3599}
3600
3601TEST_F(SetPowerModeInternalTest, transitionsDisplayFromDozeToOnPrimaryDisplay) {
3602 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionDozeToOnVariant>>();
3603}
3604
3605TEST_F(SetPowerModeInternalTest, transitionsDisplayFromDozeSuspendToOnPrimaryDisplay) {
3606 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionDozeSuspendToOnVariant>>();
3607}
3608
3609TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOnToDozeSuspendPrimaryDisplay) {
3610 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionOnToDozeSuspendVariant>>();
3611}
3612
3613TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOnToUnknownPrimaryDisplay) {
3614 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionOnToUnknownVariant>>();
3615}
3616
3617TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOffToOnExternalDisplay) {
3618 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionOffToOnVariant>>();
3619}
3620
3621TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOffToDozeSuspendExternalDisplay) {
3622 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionOffToDozeSuspendVariant>>();
3623}
3624
3625TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOnToOffExternalDisplay) {
3626 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionOnToOffVariant>>();
3627}
3628
3629TEST_F(SetPowerModeInternalTest, transitionsDisplayFromDozeSuspendToOffExternalDisplay) {
3630 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionDozeSuspendToOffVariant>>();
3631}
3632
3633TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOnToDozeExternalDisplay) {
3634 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionOnToDozeVariant>>();
3635}
3636
3637TEST_F(SetPowerModeInternalTest, transitionsDisplayFromDozeSuspendToDozeExternalDisplay) {
3638 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionDozeSuspendToDozeVariant>>();
3639}
3640
3641TEST_F(SetPowerModeInternalTest, transitionsDisplayFromDozeToOnExternalDisplay) {
3642 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionDozeToOnVariant>>();
3643}
3644
3645TEST_F(SetPowerModeInternalTest, transitionsDisplayFromDozeSuspendToOnExternalDisplay) {
3646 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionDozeSuspendToOnVariant>>();
3647}
3648
3649TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOnToDozeSuspendExternalDisplay) {
3650 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionOnToDozeSuspendVariant>>();
3651}
3652
3653TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOnToUnknownExternalDisplay) {
3654 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionOnToUnknownVariant>>();
3655}
3656
Lloyd Piquef58625d2017-12-19 13:22:33 -08003657} // namespace
3658} // namespace android
Ady Abrahamb0dbdaa2020-01-06 16:19:42 -08003659
3660// TODO(b/129481165): remove the #pragma below and fix conversion issues
3661#pragma clang diagnostic pop // ignored "-Wconversion"