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Lloyd Piquef58625d2017-12-19 13:22:33 -08001/*
2 * Copyright (C) 2018 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#undef LOG_TAG
18#define LOG_TAG "LibSurfaceFlingerUnittests"
19
20#include <gmock/gmock.h>
21#include <gtest/gtest.h>
22
23#include <log/log.h>
24
25#include "TestableSurfaceFlinger.h"
Lloyd Piquecbe00012018-02-02 15:40:42 -080026#include "mock/DisplayHardware/MockComposer.h"
27#include "mock/DisplayHardware/MockDisplaySurface.h"
28#include "mock/MockEventControlThread.h"
29#include "mock/MockEventThread.h"
30#include "mock/MockMessageQueue.h"
31#include "mock/MockNativeWindowSurface.h"
32#include "mock/MockSurfaceInterceptor.h"
33#include "mock/RenderEngine/MockRenderEngine.h"
34#include "mock/gui/MockGraphicBufferConsumer.h"
35#include "mock/gui/MockGraphicBufferProducer.h"
36#include "mock/system/window/MockNativeWindow.h"
Lloyd Piquef58625d2017-12-19 13:22:33 -080037
38namespace android {
39namespace {
40
Lloyd Piquee39cad22017-12-20 17:01:29 -080041using testing::_;
42using testing::ByMove;
43using testing::DoAll;
44using testing::Mock;
45using testing::Return;
46using testing::SetArgPointee;
47
Lloyd Piqued883d5a2018-04-27 19:32:30 -070048using android::Hwc2::ColorMode;
Lloyd Piquee39cad22017-12-20 17:01:29 -080049using android::Hwc2::Error;
Lloyd Piqued883d5a2018-04-27 19:32:30 -070050using android::Hwc2::Hdr;
Lloyd Piquee39cad22017-12-20 17:01:29 -080051using android::Hwc2::IComposer;
52using android::Hwc2::IComposerClient;
Lloyd Piqued883d5a2018-04-27 19:32:30 -070053using android::Hwc2::PerFrameMetadataKey;
54using android::Hwc2::RenderIntent;
Lloyd Piquee39cad22017-12-20 17:01:29 -080055
Lloyd Piquefc12f562018-01-22 18:44:59 -080056using FakeDisplayDeviceInjector = TestableSurfaceFlinger::FakeDisplayDeviceInjector;
57using FakeHwcDisplayInjector = TestableSurfaceFlinger::FakeHwcDisplayInjector;
Lloyd Pique1fa4d462018-01-22 18:03:16 -080058using HotplugEvent = TestableSurfaceFlinger::HotplugEvent;
Lloyd Piquefc12f562018-01-22 18:44:59 -080059using HWC2Display = TestableSurfaceFlinger::HWC2Display;
Lloyd Piquebc792092018-01-17 11:52:30 -080060
Lloyd Piquefc12f562018-01-22 18:44:59 -080061constexpr int32_t DEFAULT_REFRESH_RATE = 16'666'666;
Lloyd Piquee39cad22017-12-20 17:01:29 -080062constexpr int32_t DEFAULT_DPI = 320;
Lloyd Piquefc12f562018-01-22 18:44:59 -080063constexpr int DEFAULT_VIRTUAL_DISPLAY_SURFACE_FORMAT = HAL_PIXEL_FORMAT_RGB_565;
Lloyd Piquee39cad22017-12-20 17:01:29 -080064
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -080065constexpr int HWC_POWER_MODE_LEET = 1337; // An out of range power mode value
66
Lloyd Piquefc12f562018-01-22 18:44:59 -080067/* ------------------------------------------------------------------------
68 * Boolean avoidance
69 *
70 * To make calls and template instantiations more readable, we define some
71 * local enums along with an implicit bool conversion.
72 */
73
74#define BOOL_SUBSTITUTE(TYPENAME) enum class TYPENAME : bool { FALSE = false, TRUE = true };
75
76BOOL_SUBSTITUTE(Critical);
77BOOL_SUBSTITUTE(Async);
78BOOL_SUBSTITUTE(Secure);
79
80/* ------------------------------------------------------------------------
81 *
82 */
Lloyd Pique1fa4d462018-01-22 18:03:16 -080083
Lloyd Piquef58625d2017-12-19 13:22:33 -080084class DisplayTransactionTest : public testing::Test {
Lloyd Piquefc12f562018-01-22 18:44:59 -080085public:
Lloyd Piquef58625d2017-12-19 13:22:33 -080086 DisplayTransactionTest();
87 ~DisplayTransactionTest() override;
88
Lloyd Pique1fa4d462018-01-22 18:03:16 -080089 // --------------------------------------------------------------------
Lloyd Piquefc12f562018-01-22 18:44:59 -080090 // Mock/Fake injection
Lloyd Piquef58625d2017-12-19 13:22:33 -080091
Lloyd Piquefc12f562018-01-22 18:44:59 -080092 void injectMockComposer(int virtualDisplayCount);
93 void injectFakeBufferQueueFactory();
94 void injectFakeNativeWindowSurfaceFactory();
Lloyd Pique1fa4d462018-01-22 18:03:16 -080095
96 // --------------------------------------------------------------------
97 // Postcondition helpers
98
Lloyd Piquefc12f562018-01-22 18:44:59 -080099 bool hasHwcDisplay(hwc2_display_t displayId);
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800100 bool hasTransactionFlagSet(int flag);
101 bool hasDisplayDevice(sp<IBinder> displayToken);
102 sp<DisplayDevice> getDisplayDevice(sp<IBinder> displayToken);
103 bool hasCurrentDisplayState(sp<IBinder> displayToken);
104 const DisplayDeviceState& getCurrentDisplayState(sp<IBinder> displayToken);
105 bool hasDrawingDisplayState(sp<IBinder> displayToken);
106 const DisplayDeviceState& getDrawingDisplayState(sp<IBinder> displayToken);
107
108 // --------------------------------------------------------------------
109 // Test instances
Lloyd Pique5b36f3f2018-01-17 11:57:07 -0800110
Lloyd Piquef58625d2017-12-19 13:22:33 -0800111 TestableSurfaceFlinger mFlinger;
Lloyd Piquee39cad22017-12-20 17:01:29 -0800112 mock::EventThread* mEventThread = new mock::EventThread();
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800113 mock::EventControlThread* mEventControlThread = new mock::EventControlThread();
Lloyd Piquee39cad22017-12-20 17:01:29 -0800114
115 // These mocks are created by the test, but are destroyed by SurfaceFlinger
116 // by virtue of being stored into a std::unique_ptr. However we still need
117 // to keep a reference to them for use in setting up call expectations.
118 RE::mock::RenderEngine* mRenderEngine = new RE::mock::RenderEngine();
Lloyd Piquefc12f562018-01-22 18:44:59 -0800119 Hwc2::mock::Composer* mComposer = nullptr;
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800120 mock::MessageQueue* mMessageQueue = new mock::MessageQueue();
121 mock::SurfaceInterceptor* mSurfaceInterceptor = new mock::SurfaceInterceptor();
Lloyd Pique5b36f3f2018-01-17 11:57:07 -0800122
123 // These mocks are created only when expected to be created via a factory.
124 sp<mock::GraphicBufferConsumer> mConsumer;
125 sp<mock::GraphicBufferProducer> mProducer;
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800126 mock::NativeWindowSurface* mNativeWindowSurface = nullptr;
127 sp<mock::NativeWindow> mNativeWindow;
128 RE::mock::Surface* mRenderSurface = nullptr;
Lloyd Piquef58625d2017-12-19 13:22:33 -0800129};
130
131DisplayTransactionTest::DisplayTransactionTest() {
132 const ::testing::TestInfo* const test_info =
133 ::testing::UnitTest::GetInstance()->current_test_info();
134 ALOGD("**** Setting up for %s.%s\n", test_info->test_case_name(), test_info->name());
Lloyd Piquee39cad22017-12-20 17:01:29 -0800135
Lloyd Piquefc12f562018-01-22 18:44:59 -0800136 // Default to no wide color display support configured
137 mFlinger.mutableHasWideColorDisplay() = false;
138 mFlinger.mutableDisplayColorSetting() = DisplayColorSetting::UNMANAGED;
139
140 // Default to using HWC virtual displays
141 mFlinger.mutableUseHwcVirtualDisplays() = true;
142
Lloyd Pique5b36f3f2018-01-17 11:57:07 -0800143 mFlinger.setCreateBufferQueueFunction([](auto, auto, auto) {
144 ADD_FAILURE() << "Unexpected request to create a buffer queue.";
145 });
146
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800147 mFlinger.setCreateNativeWindowSurface([](auto) {
148 ADD_FAILURE() << "Unexpected request to create a native window surface.";
149 return nullptr;
150 });
151
152 mFlinger.mutableEventControlThread().reset(mEventControlThread);
Lloyd Piquee39cad22017-12-20 17:01:29 -0800153 mFlinger.mutableEventThread().reset(mEventThread);
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800154 mFlinger.mutableEventQueue().reset(mMessageQueue);
Lloyd Piquee39cad22017-12-20 17:01:29 -0800155 mFlinger.setupRenderEngine(std::unique_ptr<RE::RenderEngine>(mRenderEngine));
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800156 mFlinger.mutableInterceptor().reset(mSurfaceInterceptor);
Lloyd Piquee39cad22017-12-20 17:01:29 -0800157
Lloyd Piquefc12f562018-01-22 18:44:59 -0800158 injectMockComposer(0);
Lloyd Piquef58625d2017-12-19 13:22:33 -0800159}
160
161DisplayTransactionTest::~DisplayTransactionTest() {
162 const ::testing::TestInfo* const test_info =
163 ::testing::UnitTest::GetInstance()->current_test_info();
164 ALOGD("**** Tearing down after %s.%s\n", test_info->test_case_name(), test_info->name());
165}
166
Lloyd Piquefc12f562018-01-22 18:44:59 -0800167void DisplayTransactionTest::injectMockComposer(int virtualDisplayCount) {
168 mComposer = new Hwc2::mock::Composer();
Lloyd Piquee39cad22017-12-20 17:01:29 -0800169 EXPECT_CALL(*mComposer, getCapabilities())
170 .WillOnce(Return(std::vector<IComposer::Capability>()));
171 EXPECT_CALL(*mComposer, getMaxVirtualDisplayCount()).WillOnce(Return(virtualDisplayCount));
172 mFlinger.setupComposer(std::unique_ptr<Hwc2::Composer>(mComposer));
Lloyd Piquef58625d2017-12-19 13:22:33 -0800173
Lloyd Piquee39cad22017-12-20 17:01:29 -0800174 Mock::VerifyAndClear(mComposer);
175}
176
Lloyd Piquefc12f562018-01-22 18:44:59 -0800177void DisplayTransactionTest::injectFakeBufferQueueFactory() {
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800178 // This setup is only expected once per test.
179 ASSERT_TRUE(mConsumer == nullptr && mProducer == nullptr);
180
Lloyd Pique5b36f3f2018-01-17 11:57:07 -0800181 mConsumer = new mock::GraphicBufferConsumer();
182 mProducer = new mock::GraphicBufferProducer();
183
184 mFlinger.setCreateBufferQueueFunction([this](auto outProducer, auto outConsumer, bool) {
185 *outProducer = mProducer;
186 *outConsumer = mConsumer;
187 });
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800188}
Lloyd Pique5b36f3f2018-01-17 11:57:07 -0800189
Lloyd Piquefc12f562018-01-22 18:44:59 -0800190void DisplayTransactionTest::injectFakeNativeWindowSurfaceFactory() {
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800191 // This setup is only expected once per test.
192 ASSERT_TRUE(mNativeWindowSurface == nullptr);
193
194 mNativeWindowSurface = new mock::NativeWindowSurface();
195 mNativeWindow = new mock::NativeWindow();
196
197 mFlinger.setCreateNativeWindowSurface(
198 [this](auto) { return std::unique_ptr<NativeWindowSurface>(mNativeWindowSurface); });
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800199}
200
Lloyd Piquefc12f562018-01-22 18:44:59 -0800201bool DisplayTransactionTest::hasHwcDisplay(hwc2_display_t displayId) {
202 return mFlinger.mutableHwcDisplaySlots().count(displayId) == 1;
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800203}
204
205bool DisplayTransactionTest::hasTransactionFlagSet(int flag) {
206 return mFlinger.mutableTransactionFlags() & flag;
207}
208
209bool DisplayTransactionTest::hasDisplayDevice(sp<IBinder> displayToken) {
210 return mFlinger.mutableDisplays().indexOfKey(displayToken) >= 0;
211}
212
213sp<DisplayDevice> DisplayTransactionTest::getDisplayDevice(sp<IBinder> displayToken) {
214 return mFlinger.mutableDisplays().valueFor(displayToken);
215}
216
217bool DisplayTransactionTest::hasCurrentDisplayState(sp<IBinder> displayToken) {
218 return mFlinger.mutableCurrentState().displays.indexOfKey(displayToken) >= 0;
219}
220
221const DisplayDeviceState& DisplayTransactionTest::getCurrentDisplayState(sp<IBinder> displayToken) {
222 return mFlinger.mutableCurrentState().displays.valueFor(displayToken);
223}
224
225bool DisplayTransactionTest::hasDrawingDisplayState(sp<IBinder> displayToken) {
226 return mFlinger.mutableDrawingState().displays.indexOfKey(displayToken) >= 0;
227}
228
229const DisplayDeviceState& DisplayTransactionTest::getDrawingDisplayState(sp<IBinder> displayToken) {
230 return mFlinger.mutableDrawingState().displays.valueFor(displayToken);
231}
232
233/* ------------------------------------------------------------------------
Lloyd Piquefc12f562018-01-22 18:44:59 -0800234 *
Lloyd Pique1fa4d462018-01-22 18:03:16 -0800235 */
236
Lloyd Piquefc12f562018-01-22 18:44:59 -0800237template <DisplayDevice::DisplayType type, DisplayDevice::DisplayType hwcId, int width, int height,
238 Critical critical, Async async, Secure secure, int grallocUsage>
239struct DisplayVariant {
240 // The display width and height
241 static constexpr int WIDTH = width;
242 static constexpr int HEIGHT = height;
243
244 static constexpr int GRALLOC_USAGE = grallocUsage;
245
246 // The type for this display
247 static constexpr DisplayDevice::DisplayType TYPE = type;
248 static constexpr DisplayDevice::DisplayType HWCOMPOSER_ID = hwcId;
249
250 // When creating native window surfaces for the framebuffer, whether those should be critical
251 static constexpr Critical CRITICAL = critical;
252
253 // When creating native window surfaces for the framebuffer, whether those should be async
254 static constexpr Async ASYNC = async;
255
256 // Whether the display should be treated as secure
257 static constexpr Secure SECURE = secure;
258
259 static auto makeFakeExistingDisplayInjector(DisplayTransactionTest* test) {
260 auto injector = FakeDisplayDeviceInjector(test->mFlinger, TYPE, HWCOMPOSER_ID);
261 injector.setSecure(static_cast<bool>(SECURE));
262 return injector;
263 }
264
265 // Called by tests to set up any native window creation call expectations.
266 static void setupNativeWindowSurfaceCreationCallExpectations(DisplayTransactionTest* test) {
267 EXPECT_CALL(*test->mNativeWindowSurface, getNativeWindow())
268 .WillOnce(Return(test->mNativeWindow));
269 EXPECT_CALL(*test->mNativeWindow, perform(19)).WillRepeatedly(Return(NO_ERROR));
270
271 // For simplicity, we only expect to create a single render surface for
272 // each test.
273 ASSERT_TRUE(test->mRenderSurface == nullptr);
274 test->mRenderSurface = new RE::mock::Surface();
275 EXPECT_CALL(*test->mRenderEngine, createSurface())
276 .WillOnce(Return(ByMove(std::unique_ptr<RE::Surface>(test->mRenderSurface))));
277 EXPECT_CALL(*test->mRenderSurface, setAsync(static_cast<bool>(ASYNC))).Times(1);
278 EXPECT_CALL(*test->mRenderSurface, setCritical(static_cast<bool>(CRITICAL))).Times(1);
279 EXPECT_CALL(*test->mRenderSurface, setNativeWindow(test->mNativeWindow.get())).Times(1);
280 EXPECT_CALL(*test->mRenderSurface, queryWidth()).WillOnce(Return(WIDTH));
281 EXPECT_CALL(*test->mRenderSurface, queryHeight()).WillOnce(Return(HEIGHT));
282 }
283
284 static void setupFramebufferConsumerBufferQueueCallExpectations(DisplayTransactionTest* test) {
285 EXPECT_CALL(*test->mConsumer, consumerConnect(_, false)).WillOnce(Return(NO_ERROR));
286 EXPECT_CALL(*test->mConsumer, setConsumerName(_)).WillRepeatedly(Return(NO_ERROR));
287 EXPECT_CALL(*test->mConsumer, setConsumerUsageBits(GRALLOC_USAGE))
288 .WillRepeatedly(Return(NO_ERROR));
289 EXPECT_CALL(*test->mConsumer, setDefaultBufferSize(WIDTH, HEIGHT))
290 .WillRepeatedly(Return(NO_ERROR));
291 EXPECT_CALL(*test->mConsumer, setMaxAcquiredBufferCount(_))
292 .WillRepeatedly(Return(NO_ERROR));
293 }
294
295 static void setupFramebufferProducerBufferQueueCallExpectations(DisplayTransactionTest* test) {
296 EXPECT_CALL(*test->mProducer, allocateBuffers(0, 0, 0, 0)).WillRepeatedly(Return());
297 }
298};
299
300template <hwc2_display_t hwcDisplayId, HWC2::DisplayType hwcDisplayType, typename DisplayVariant>
301struct HwcDisplayVariant {
302 // The display id supplied by the HWC
303 static constexpr hwc2_display_t HWC_DISPLAY_ID = hwcDisplayId;
304
305 // The HWC display type
306 static constexpr HWC2::DisplayType HWC_DISPLAY_TYPE = hwcDisplayType;
307
308 // The HWC active configuration id
Lloyd Pique3c085a02018-05-09 19:38:32 -0700309 static constexpr int HWC_ACTIVE_CONFIG_ID = 2001;
Lloyd Piquefc12f562018-01-22 18:44:59 -0800310
311 static void injectPendingHotplugEvent(DisplayTransactionTest* test,
312 HWC2::Connection connection) {
313 test->mFlinger.mutablePendingHotplugEvents().emplace_back(
314 HotplugEvent{HWC_DISPLAY_ID, connection});
315 }
316
317 // Called by tests to inject a HWC display setup
318 static void injectHwcDisplay(DisplayTransactionTest* test) {
319 FakeHwcDisplayInjector(DisplayVariant::TYPE, HWC_DISPLAY_TYPE)
320 .setHwcDisplayId(HWC_DISPLAY_ID)
321 .setWidth(DisplayVariant::WIDTH)
322 .setHeight(DisplayVariant::HEIGHT)
323 .setActiveConfig(HWC_ACTIVE_CONFIG_ID)
324 .inject(&test->mFlinger, test->mComposer);
325 }
326
327 static void setupHwcHotplugCallExpectations(DisplayTransactionTest* test) {
328 EXPECT_CALL(*test->mComposer, getDisplayType(HWC_DISPLAY_ID, _))
329 .WillOnce(DoAll(SetArgPointee<1>(static_cast<IComposerClient::DisplayType>(
330 HWC_DISPLAY_TYPE)),
331 Return(Error::NONE)));
332 EXPECT_CALL(*test->mComposer, setClientTargetSlotCount(_)).WillOnce(Return(Error::NONE));
333 EXPECT_CALL(*test->mComposer, getDisplayConfigs(HWC_DISPLAY_ID, _))
334 .WillOnce(DoAll(SetArgPointee<1>(std::vector<unsigned>{HWC_ACTIVE_CONFIG_ID}),
335 Return(Error::NONE)));
336 EXPECT_CALL(*test->mComposer,
337 getDisplayAttribute(HWC_DISPLAY_ID, HWC_ACTIVE_CONFIG_ID,
338 IComposerClient::Attribute::WIDTH, _))
339 .WillOnce(DoAll(SetArgPointee<3>(DisplayVariant::WIDTH), Return(Error::NONE)));
340 EXPECT_CALL(*test->mComposer,
341 getDisplayAttribute(HWC_DISPLAY_ID, HWC_ACTIVE_CONFIG_ID,
342 IComposerClient::Attribute::HEIGHT, _))
343 .WillOnce(DoAll(SetArgPointee<3>(DisplayVariant::HEIGHT), Return(Error::NONE)));
344 EXPECT_CALL(*test->mComposer,
345 getDisplayAttribute(HWC_DISPLAY_ID, HWC_ACTIVE_CONFIG_ID,
346 IComposerClient::Attribute::VSYNC_PERIOD, _))
347 .WillOnce(DoAll(SetArgPointee<3>(DEFAULT_REFRESH_RATE), Return(Error::NONE)));
348 EXPECT_CALL(*test->mComposer,
349 getDisplayAttribute(HWC_DISPLAY_ID, HWC_ACTIVE_CONFIG_ID,
350 IComposerClient::Attribute::DPI_X, _))
351 .WillOnce(DoAll(SetArgPointee<3>(DEFAULT_DPI), Return(Error::NONE)));
352 EXPECT_CALL(*test->mComposer,
353 getDisplayAttribute(HWC_DISPLAY_ID, HWC_ACTIVE_CONFIG_ID,
354 IComposerClient::Attribute::DPI_Y, _))
355 .WillOnce(DoAll(SetArgPointee<3>(DEFAULT_DPI), Return(Error::NONE)));
356 }
357
358 // Called by tests to set up HWC call expectations
359 static void setupHwcGetActiveConfigCallExpectations(DisplayTransactionTest* test) {
360 EXPECT_CALL(*test->mComposer, getActiveConfig(HWC_DISPLAY_ID, _))
Lloyd Pique3c085a02018-05-09 19:38:32 -0700361 .WillRepeatedly(DoAll(SetArgPointee<1>(HWC_ACTIVE_CONFIG_ID), Return(Error::NONE)));
Lloyd Piquefc12f562018-01-22 18:44:59 -0800362 }
363};
364
365struct NonHwcDisplayVariant {
Lloyd Piquefc12f562018-01-22 18:44:59 -0800366 static void injectHwcDisplay(DisplayTransactionTest*) {}
367
368 static void setupHwcGetActiveConfigCallExpectations(DisplayTransactionTest* test) {
369 EXPECT_CALL(*test->mComposer, getActiveConfig(_, _)).Times(0);
370 }
371};
372
373// Physical displays are expected to be synchronous, secure, and have a HWC display for output.
374constexpr uint32_t GRALLOC_USAGE_PHYSICAL_DISPLAY =
375 GRALLOC_USAGE_HW_RENDER | GRALLOC_USAGE_HW_COMPOSER | GRALLOC_USAGE_HW_FB;
376
377template <hwc2_display_t hwcDisplayId, DisplayDevice::DisplayType type, int width, int height,
378 Critical critical>
379struct PhysicalDisplayVariant
380 : public DisplayVariant<type, type, width, height, critical, Async::FALSE, Secure::TRUE,
381 GRALLOC_USAGE_PHYSICAL_DISPLAY>,
382 public HwcDisplayVariant<hwcDisplayId, HWC2::DisplayType::Physical,
383 DisplayVariant<type, type, width, height, critical, Async::FALSE,
384 Secure::TRUE, GRALLOC_USAGE_PHYSICAL_DISPLAY>> {};
385
Lloyd Pique9d9cf402018-02-16 17:47:13 -0800386// An invalid display
387using InvalidDisplayVariant =
388 DisplayVariant<DisplayDevice::DISPLAY_ID_INVALID, DisplayDevice::DISPLAY_ID_INVALID, 0, 0,
389 Critical::FALSE, Async::FALSE, Secure::FALSE, 0>;
390
Lloyd Piquefc12f562018-01-22 18:44:59 -0800391// A primary display is a physical display that is critical
392using PrimaryDisplayVariant =
393 PhysicalDisplayVariant<1001, DisplayDevice::DISPLAY_PRIMARY, 3840, 2160, Critical::TRUE>;
394
395// An external display is physical display that is not critical.
396using ExternalDisplayVariant =
397 PhysicalDisplayVariant<1002, DisplayDevice::DISPLAY_EXTERNAL, 1920, 1280, Critical::FALSE>;
398
399using TertiaryDisplayVariant =
400 PhysicalDisplayVariant<1003, DisplayDevice::DISPLAY_EXTERNAL, 1600, 1200, Critical::FALSE>;
401
402// A virtual display not supported by the HWC.
403constexpr uint32_t GRALLOC_USAGE_NONHWC_VIRTUAL_DISPLAY = 0;
404
405template <int width, int height, Secure secure>
406struct NonHwcVirtualDisplayVariant
407 : public DisplayVariant<DisplayDevice::DISPLAY_VIRTUAL, DisplayDevice::DISPLAY_ID_INVALID,
408 width, height, Critical::FALSE, Async::TRUE, secure,
409 GRALLOC_USAGE_NONHWC_VIRTUAL_DISPLAY>,
410 public NonHwcDisplayVariant {
411 using Base = DisplayVariant<DisplayDevice::DISPLAY_VIRTUAL, DisplayDevice::DISPLAY_ID_INVALID,
412 width, height, Critical::FALSE, Async::TRUE, secure,
413 GRALLOC_USAGE_NONHWC_VIRTUAL_DISPLAY>;
414
415 static void setupNativeWindowSurfaceCreationCallExpectations(DisplayTransactionTest* test) {
416 Base::setupNativeWindowSurfaceCreationCallExpectations(test);
417 EXPECT_CALL(*test->mNativeWindow, setSwapInterval(0)).Times(1);
418 }
419};
420
421// A virtual display supported by the HWC.
422constexpr uint32_t GRALLOC_USAGE_HWC_VIRTUAL_DISPLAY = GRALLOC_USAGE_HW_COMPOSER;
423
424template <int width, int height, Secure secure>
425struct HwcVirtualDisplayVariant
426 : public DisplayVariant<DisplayDevice::DISPLAY_VIRTUAL, DisplayDevice::DISPLAY_VIRTUAL, width,
427 height, Critical::FALSE, Async::TRUE, secure,
428 GRALLOC_USAGE_HWC_VIRTUAL_DISPLAY>,
429 public HwcDisplayVariant<1010, HWC2::DisplayType::Virtual,
430 NonHwcVirtualDisplayVariant<width, height, secure>> {
431 using Base =
432 DisplayVariant<DisplayDevice::DISPLAY_VIRTUAL, DisplayDevice::DISPLAY_VIRTUAL, width,
433 height, Critical::FALSE, Async::TRUE, secure, GRALLOC_USAGE_HW_COMPOSER>;
434 using Self = HwcVirtualDisplayVariant<width, height, secure>;
435
436 static void setupNativeWindowSurfaceCreationCallExpectations(DisplayTransactionTest* test) {
437 Base::setupNativeWindowSurfaceCreationCallExpectations(test);
438 EXPECT_CALL(*test->mNativeWindow, setSwapInterval(0)).Times(1);
439 }
440
441 static void setupHwcVirtualDisplayCreationCallExpectations(DisplayTransactionTest* test) {
442 EXPECT_CALL(*test->mComposer, createVirtualDisplay(Base::WIDTH, Base::HEIGHT, _, _))
443 .WillOnce(DoAll(SetArgPointee<3>(Self::HWC_DISPLAY_ID), Return(Error::NONE)));
444 EXPECT_CALL(*test->mComposer, setClientTargetSlotCount(_)).WillOnce(Return(Error::NONE));
445 }
446};
447
448// For this variant, SurfaceFlinger should not configure itself with wide
449// display support, so the display should not be configured for wide-color
450// support.
451struct WideColorSupportNotConfiguredVariant {
452 static constexpr bool WIDE_COLOR_SUPPORTED = false;
453
454 static void injectConfigChange(DisplayTransactionTest* test) {
455 test->mFlinger.mutableHasWideColorDisplay() = false;
456 test->mFlinger.mutableDisplayColorSetting() = DisplayColorSetting::UNMANAGED;
457 }
458
459 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
460 EXPECT_CALL(*test->mComposer, getColorModes(_, _)).Times(0);
461 EXPECT_CALL(*test->mComposer, getRenderIntents(_, _, _)).Times(0);
462 EXPECT_CALL(*test->mComposer, setColorMode(_, _, _)).Times(0);
463 }
464};
465
466// For this variant, SurfaceFlinger should configure itself with wide display
467// support, and the display should respond with an non-empty list of supported
468// color modes. Wide-color support should be configured.
469template <typename Display>
470struct WideColorP3ColorimetricSupportedVariant {
471 static constexpr bool WIDE_COLOR_SUPPORTED = true;
472
473 static void injectConfigChange(DisplayTransactionTest* test) {
474 test->mFlinger.mutableHasWideColorDisplay() = true;
475 test->mFlinger.mutableDisplayColorSetting() = DisplayColorSetting::UNMANAGED;
476 }
477
478 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
479 EXPECT_CALL(*test->mComposer, getColorModes(Display::HWC_DISPLAY_ID, _))
480 .WillOnce(DoAll(SetArgPointee<1>(std::vector<ColorMode>({ColorMode::DISPLAY_P3})),
481 Return(Error::NONE)));
482 EXPECT_CALL(*test->mComposer,
483 getRenderIntents(Display::HWC_DISPLAY_ID, ColorMode::DISPLAY_P3, _))
484 .WillOnce(DoAll(SetArgPointee<2>(
485 std::vector<RenderIntent>({RenderIntent::COLORIMETRIC})),
486 Return(Error::NONE)));
487 EXPECT_CALL(*test->mComposer,
488 setColorMode(Display::HWC_DISPLAY_ID, ColorMode::SRGB,
489 RenderIntent::COLORIMETRIC))
490 .WillOnce(Return(Error::NONE));
491 }
492};
493
Lloyd Piquefc12f562018-01-22 18:44:59 -0800494// For this variant, SurfaceFlinger should configure itself with wide display
495// support, but the display should respond with an empty list of supported color
496// modes. Wide-color support for the display should not be configured.
497template <typename Display>
498struct WideColorNotSupportedVariant {
499 static constexpr bool WIDE_COLOR_SUPPORTED = false;
500
501 static void injectConfigChange(DisplayTransactionTest* test) {
502 test->mFlinger.mutableHasWideColorDisplay() = true;
503 }
504
505 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
506 EXPECT_CALL(*test->mComposer, getColorModes(Display::HWC_DISPLAY_ID, _))
507 .WillOnce(DoAll(SetArgPointee<1>(std::vector<ColorMode>()), Return(Error::NONE)));
Chia-I Wu437efc22018-05-23 02:17:03 -0700508 EXPECT_CALL(*test->mComposer, setColorMode(_, _, _)).Times(0);
Lloyd Piquefc12f562018-01-22 18:44:59 -0800509 }
510};
511
512// For this variant, the display is not a HWC display, so no HDR support should
513// be configured.
514struct NonHwcDisplayHdrSupportVariant {
515 static constexpr bool HDR10_SUPPORTED = false;
516 static constexpr bool HDR_HLG_SUPPORTED = false;
517 static constexpr bool HDR_DOLBY_VISION_SUPPORTED = false;
518 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
519 EXPECT_CALL(*test->mComposer, getHdrCapabilities(_, _, _, _, _)).Times(0);
520 }
521};
522
523// For this variant, the composer should respond with a non-empty list of HDR
524// modes containing HDR10, so HDR10 support should be configured.
525template <typename Display>
526struct Hdr10SupportedVariant {
527 static constexpr bool HDR10_SUPPORTED = true;
528 static constexpr bool HDR_HLG_SUPPORTED = false;
529 static constexpr bool HDR_DOLBY_VISION_SUPPORTED = false;
530 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
531 EXPECT_CALL(*test->mComposer, getHdrCapabilities(Display::HWC_DISPLAY_ID, _, _, _, _))
532 .WillOnce(DoAll(SetArgPointee<1>(std::vector<Hdr>({Hdr::HDR10})),
533 Return(Error::NONE)));
534 }
535};
536
537// For this variant, the composer should respond with a non-empty list of HDR
538// modes containing HLG, so HLG support should be configured.
539template <typename Display>
540struct HdrHlgSupportedVariant {
541 static constexpr bool HDR10_SUPPORTED = false;
542 static constexpr bool HDR_HLG_SUPPORTED = true;
543 static constexpr bool HDR_DOLBY_VISION_SUPPORTED = false;
544 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
545 EXPECT_CALL(*test->mComposer, getHdrCapabilities(Display::HWC_DISPLAY_ID, _, _, _, _))
546 .WillOnce(
547 DoAll(SetArgPointee<1>(std::vector<Hdr>({Hdr::HLG})), Return(Error::NONE)));
548 }
549};
550
551// For this variant, the composer should respond with a non-empty list of HDR
552// modes containing DOLBY_VISION, so DOLBY_VISION support should be configured.
553template <typename Display>
554struct HdrDolbyVisionSupportedVariant {
555 static constexpr bool HDR10_SUPPORTED = false;
556 static constexpr bool HDR_HLG_SUPPORTED = false;
557 static constexpr bool HDR_DOLBY_VISION_SUPPORTED = true;
558 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
559 EXPECT_CALL(*test->mComposer, getHdrCapabilities(Display::HWC_DISPLAY_ID, _, _, _, _))
560 .WillOnce(DoAll(SetArgPointee<1>(std::vector<Hdr>({Hdr::DOLBY_VISION})),
561 Return(Error::NONE)));
562 }
563};
564
565// For this variant, the composer should respond with am empty list of HDR
566// modes, so no HDR support should be configured.
567template <typename Display>
568struct HdrNotSupportedVariant {
569 static constexpr bool HDR10_SUPPORTED = false;
570 static constexpr bool HDR_HLG_SUPPORTED = false;
571 static constexpr bool HDR_DOLBY_VISION_SUPPORTED = false;
572 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
573 EXPECT_CALL(*test->mComposer, getHdrCapabilities(Display::HWC_DISPLAY_ID, _, _, _, _))
574 .WillOnce(DoAll(SetArgPointee<1>(std::vector<Hdr>()), Return(Error::NONE)));
575 }
576};
577
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700578struct NonHwcPerFrameMetadataSupportVariant {
579 static constexpr int PER_FRAME_METADATA_KEYS = 0;
580 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
581 EXPECT_CALL(*test->mComposer, getPerFrameMetadataKeys(_, _)).Times(0);
582 }
583};
584
585template <typename Display>
586struct NoPerFrameMetadataSupportVariant {
587 static constexpr int PER_FRAME_METADATA_KEYS = 0;
588 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
589 EXPECT_CALL(*test->mComposer, getPerFrameMetadataKeys(Display::HWC_DISPLAY_ID, _))
590 .WillOnce(DoAll(SetArgPointee<1>(std::vector<PerFrameMetadataKey>()),
591 Return(Error::NONE)));
592 }
593};
594
595template <typename Display>
596struct Smpte2086PerFrameMetadataSupportVariant {
597 static constexpr int PER_FRAME_METADATA_KEYS = HdrMetadata::Type::SMPTE2086;
598 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
599 EXPECT_CALL(*test->mComposer, getPerFrameMetadataKeys(Display::HWC_DISPLAY_ID, _))
600 .WillOnce(DoAll(SetArgPointee<1>(std::vector<PerFrameMetadataKey>({
601 PerFrameMetadataKey::DISPLAY_RED_PRIMARY_X,
602 PerFrameMetadataKey::DISPLAY_RED_PRIMARY_Y,
603 PerFrameMetadataKey::DISPLAY_GREEN_PRIMARY_X,
604 PerFrameMetadataKey::DISPLAY_GREEN_PRIMARY_Y,
605 PerFrameMetadataKey::DISPLAY_BLUE_PRIMARY_X,
606 PerFrameMetadataKey::DISPLAY_BLUE_PRIMARY_Y,
607 PerFrameMetadataKey::WHITE_POINT_X,
608 PerFrameMetadataKey::WHITE_POINT_Y,
609 PerFrameMetadataKey::MAX_LUMINANCE,
610 PerFrameMetadataKey::MIN_LUMINANCE,
611 })),
612 Return(Error::NONE)));
613 }
614};
615
616template <typename Display>
617struct Cta861_3_PerFrameMetadataSupportVariant {
618 static constexpr int PER_FRAME_METADATA_KEYS = HdrMetadata::Type::CTA861_3;
619 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
620 EXPECT_CALL(*test->mComposer, getPerFrameMetadataKeys(Display::HWC_DISPLAY_ID, _))
621 .WillOnce(DoAll(SetArgPointee<1>(std::vector<PerFrameMetadataKey>({
622 PerFrameMetadataKey::MAX_CONTENT_LIGHT_LEVEL,
623 PerFrameMetadataKey::MAX_FRAME_AVERAGE_LIGHT_LEVEL,
624 })),
625 Return(Error::NONE)));
626 }
627};
628
Lloyd Piquefc12f562018-01-22 18:44:59 -0800629/* ------------------------------------------------------------------------
630 * Typical display configurations to test
631 */
632
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700633template <typename DisplayPolicy, typename WideColorSupportPolicy, typename HdrSupportPolicy,
634 typename PerFrameMetadataSupportPolicy>
Lloyd Piquefc12f562018-01-22 18:44:59 -0800635struct Case {
636 using Display = DisplayPolicy;
637 using WideColorSupport = WideColorSupportPolicy;
638 using HdrSupport = HdrSupportPolicy;
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700639 using PerFrameMetadataSupport = PerFrameMetadataSupportPolicy;
Lloyd Piquefc12f562018-01-22 18:44:59 -0800640};
641
642using SimplePrimaryDisplayCase =
643 Case<PrimaryDisplayVariant, WideColorNotSupportedVariant<PrimaryDisplayVariant>,
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700644 HdrNotSupportedVariant<PrimaryDisplayVariant>,
645 NoPerFrameMetadataSupportVariant<PrimaryDisplayVariant>>;
Lloyd Piquefc12f562018-01-22 18:44:59 -0800646using SimpleExternalDisplayCase =
647 Case<ExternalDisplayVariant, WideColorNotSupportedVariant<ExternalDisplayVariant>,
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700648 HdrNotSupportedVariant<ExternalDisplayVariant>,
649 NoPerFrameMetadataSupportVariant<ExternalDisplayVariant>>;
Lloyd Piquefc12f562018-01-22 18:44:59 -0800650using SimpleTertiaryDisplayCase =
651 Case<TertiaryDisplayVariant, WideColorNotSupportedVariant<TertiaryDisplayVariant>,
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700652 HdrNotSupportedVariant<TertiaryDisplayVariant>,
653 NoPerFrameMetadataSupportVariant<TertiaryDisplayVariant>>;
Lloyd Piquefc12f562018-01-22 18:44:59 -0800654using NonHwcVirtualDisplayCase =
655 Case<NonHwcVirtualDisplayVariant<1024, 768, Secure::FALSE>,
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700656 WideColorSupportNotConfiguredVariant, NonHwcDisplayHdrSupportVariant,
657 NonHwcPerFrameMetadataSupportVariant>;
Lloyd Piquefc12f562018-01-22 18:44:59 -0800658using SimpleHwcVirtualDisplayVariant = HwcVirtualDisplayVariant<1024, 768, Secure::TRUE>;
659using HwcVirtualDisplayCase =
660 Case<SimpleHwcVirtualDisplayVariant, WideColorSupportNotConfiguredVariant,
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700661 HdrNotSupportedVariant<SimpleHwcVirtualDisplayVariant>,
662 NoPerFrameMetadataSupportVariant<SimpleHwcVirtualDisplayVariant>>;
Lloyd Piquefc12f562018-01-22 18:44:59 -0800663using WideColorP3ColorimetricDisplayCase =
664 Case<PrimaryDisplayVariant, WideColorP3ColorimetricSupportedVariant<PrimaryDisplayVariant>,
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700665 HdrNotSupportedVariant<PrimaryDisplayVariant>,
666 NoPerFrameMetadataSupportVariant<PrimaryDisplayVariant>>;
Lloyd Piquefc12f562018-01-22 18:44:59 -0800667using Hdr10DisplayCase =
668 Case<PrimaryDisplayVariant, WideColorNotSupportedVariant<PrimaryDisplayVariant>,
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700669 Hdr10SupportedVariant<PrimaryDisplayVariant>,
670 NoPerFrameMetadataSupportVariant<PrimaryDisplayVariant>>;
Lloyd Piquefc12f562018-01-22 18:44:59 -0800671using HdrHlgDisplayCase =
672 Case<PrimaryDisplayVariant, WideColorNotSupportedVariant<PrimaryDisplayVariant>,
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700673 HdrHlgSupportedVariant<PrimaryDisplayVariant>,
674 NoPerFrameMetadataSupportVariant<PrimaryDisplayVariant>>;
Lloyd Piquefc12f562018-01-22 18:44:59 -0800675using HdrDolbyVisionDisplayCase =
676 Case<PrimaryDisplayVariant, WideColorNotSupportedVariant<PrimaryDisplayVariant>,
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700677 HdrDolbyVisionSupportedVariant<PrimaryDisplayVariant>,
678 NoPerFrameMetadataSupportVariant<PrimaryDisplayVariant>>;
679using HdrSmpte2086DisplayCase =
680 Case<PrimaryDisplayVariant, WideColorNotSupportedVariant<PrimaryDisplayVariant>,
681 HdrNotSupportedVariant<PrimaryDisplayVariant>,
682 Smpte2086PerFrameMetadataSupportVariant<PrimaryDisplayVariant>>;
683using HdrCta861_3_DisplayCase =
684 Case<PrimaryDisplayVariant, WideColorNotSupportedVariant<PrimaryDisplayVariant>,
685 HdrNotSupportedVariant<PrimaryDisplayVariant>,
686 Cta861_3_PerFrameMetadataSupportVariant<PrimaryDisplayVariant>>;
Lloyd Pique9d9cf402018-02-16 17:47:13 -0800687using InvalidDisplayCase = Case<InvalidDisplayVariant, WideColorSupportNotConfiguredVariant,
Lloyd Piqued883d5a2018-04-27 19:32:30 -0700688 NonHwcDisplayHdrSupportVariant,
689 NoPerFrameMetadataSupportVariant<InvalidDisplayVariant>>;
Lloyd Piquefc12f562018-01-22 18:44:59 -0800690/* ------------------------------------------------------------------------
Lloyd Pique6cf11032018-01-22 18:57:44 -0800691 *
692 * SurfaceFlinger::onHotplugReceived
693 */
694
695TEST_F(DisplayTransactionTest, hotplugEnqueuesEventsForDisplayTransaction) {
696 constexpr int currentSequenceId = 123;
697 constexpr hwc2_display_t displayId1 = 456;
698 constexpr hwc2_display_t displayId2 = 654;
699
700 // --------------------------------------------------------------------
701 // Preconditions
702
703 // Set the current sequence id for accepted events
704 mFlinger.mutableComposerSequenceId() = currentSequenceId;
705
706 // Set the main thread id so that the current thread does not appear to be
707 // the main thread.
708 mFlinger.mutableMainThreadId() = std::thread::id();
709
710 // --------------------------------------------------------------------
711 // Call Expectations
712
713 // We expect invalidate() to be invoked once to trigger display transaction
714 // processing.
715 EXPECT_CALL(*mMessageQueue, invalidate()).Times(1);
716
717 // --------------------------------------------------------------------
718 // Invocation
719
720 // Simulate two hotplug events (a connect and a disconnect)
721 mFlinger.onHotplugReceived(currentSequenceId, displayId1, HWC2::Connection::Connected);
722 mFlinger.onHotplugReceived(currentSequenceId, displayId2, HWC2::Connection::Disconnected);
723
724 // --------------------------------------------------------------------
725 // Postconditions
726
727 // The display transaction needed flag should be set.
728 EXPECT_TRUE(hasTransactionFlagSet(eDisplayTransactionNeeded));
729
730 // All events should be in the pending event queue.
731 const auto& pendingEvents = mFlinger.mutablePendingHotplugEvents();
732 ASSERT_EQ(2u, pendingEvents.size());
733 EXPECT_EQ(displayId1, pendingEvents[0].display);
734 EXPECT_EQ(HWC2::Connection::Connected, pendingEvents[0].connection);
735 EXPECT_EQ(displayId2, pendingEvents[1].display);
736 EXPECT_EQ(HWC2::Connection::Disconnected, pendingEvents[1].connection);
737}
738
739TEST_F(DisplayTransactionTest, hotplugDiscardsUnexpectedEvents) {
740 constexpr int currentSequenceId = 123;
741 constexpr int otherSequenceId = 321;
742 constexpr hwc2_display_t displayId = 456;
743
744 // --------------------------------------------------------------------
745 // Preconditions
746
747 // Set the current sequence id for accepted events
748 mFlinger.mutableComposerSequenceId() = currentSequenceId;
749
750 // Set the main thread id so that the current thread does not appear to be
751 // the main thread.
752 mFlinger.mutableMainThreadId() = std::thread::id();
753
754 // --------------------------------------------------------------------
755 // Call Expectations
756
757 // We do not expect any calls to invalidate().
758 EXPECT_CALL(*mMessageQueue, invalidate()).Times(0);
759
760 // --------------------------------------------------------------------
761 // Invocation
762
763 // Call with an unexpected sequence id
764 mFlinger.onHotplugReceived(otherSequenceId, displayId, HWC2::Connection::Invalid);
765
766 // --------------------------------------------------------------------
767 // Postconditions
768
769 // The display transaction needed flag should not be set
770 EXPECT_FALSE(hasTransactionFlagSet(eDisplayTransactionNeeded));
771
772 // There should be no pending events
773 EXPECT_TRUE(mFlinger.mutablePendingHotplugEvents().empty());
774}
775
776TEST_F(DisplayTransactionTest, hotplugProcessesEnqueuedEventsIfCalledOnMainThread) {
777 constexpr int currentSequenceId = 123;
778 constexpr hwc2_display_t displayId1 = 456;
779
780 // --------------------------------------------------------------------
781 // Note:
782 // --------------------------------------------------------------------
783 // This test case is a bit tricky. We want to verify that
784 // onHotplugReceived() calls processDisplayHotplugEventsLocked(), but we
785 // don't really want to provide coverage for everything the later function
786 // does as there are specific tests for it.
787 // --------------------------------------------------------------------
788
789 // --------------------------------------------------------------------
790 // Preconditions
791
792 // Set the current sequence id for accepted events
793 mFlinger.mutableComposerSequenceId() = currentSequenceId;
794
795 // Set the main thread id so that the current thread does appear to be the
796 // main thread.
797 mFlinger.mutableMainThreadId() = std::this_thread::get_id();
798
799 // --------------------------------------------------------------------
800 // Call Expectations
801
802 // We expect invalidate() to be invoked once to trigger display transaction
803 // processing.
804 EXPECT_CALL(*mMessageQueue, invalidate()).Times(1);
805
806 // --------------------------------------------------------------------
807 // Invocation
808
809 // Simulate a disconnect on a display id that is not connected. This should
810 // be enqueued by onHotplugReceived(), and dequeued by
811 // processDisplayHotplugEventsLocked(), but then ignored as invalid.
812 mFlinger.onHotplugReceived(currentSequenceId, displayId1, HWC2::Connection::Disconnected);
813
814 // --------------------------------------------------------------------
815 // Postconditions
816
817 // The display transaction needed flag should be set.
818 EXPECT_TRUE(hasTransactionFlagSet(eDisplayTransactionNeeded));
819
820 // There should be no event queued on return, as it should have been
821 // processed.
822 EXPECT_TRUE(mFlinger.mutablePendingHotplugEvents().empty());
823}
824
825/* ------------------------------------------------------------------------
Lloyd Piquea482f992018-01-22 19:00:34 -0800826 * SurfaceFlinger::createDisplay
827 */
828
829TEST_F(DisplayTransactionTest, createDisplaySetsCurrentStateForNonsecureDisplay) {
830 const String8 name("virtual.test");
831
832 // --------------------------------------------------------------------
833 // Call Expectations
834
835 // The call should notify the interceptor that a display was created.
836 EXPECT_CALL(*mSurfaceInterceptor, saveDisplayCreation(_)).Times(1);
837
838 // --------------------------------------------------------------------
839 // Invocation
840
841 sp<IBinder> displayToken = mFlinger.createDisplay(name, false);
842
843 // --------------------------------------------------------------------
844 // Postconditions
845
846 // The display should have been added to the current state
847 ASSERT_TRUE(hasCurrentDisplayState(displayToken));
848 const auto& display = getCurrentDisplayState(displayToken);
849 EXPECT_EQ(DisplayDevice::DISPLAY_VIRTUAL, display.type);
850 EXPECT_EQ(false, display.isSecure);
851 EXPECT_EQ(name.string(), display.displayName);
852
853 // --------------------------------------------------------------------
854 // Cleanup conditions
855
856 // Destroying the display invalidates the display state.
857 EXPECT_CALL(*mMessageQueue, invalidate()).Times(1);
858}
859
860TEST_F(DisplayTransactionTest, createDisplaySetsCurrentStateForSecureDisplay) {
861 const String8 name("virtual.test");
862
863 // --------------------------------------------------------------------
864 // Call Expectations
865
866 // The call should notify the interceptor that a display was created.
867 EXPECT_CALL(*mSurfaceInterceptor, saveDisplayCreation(_)).Times(1);
868
869 // --------------------------------------------------------------------
870 // Invocation
871
872 sp<IBinder> displayToken = mFlinger.createDisplay(name, true);
873
874 // --------------------------------------------------------------------
875 // Postconditions
876
877 // The display should have been added to the current state
878 ASSERT_TRUE(hasCurrentDisplayState(displayToken));
879 const auto& display = getCurrentDisplayState(displayToken);
880 EXPECT_EQ(DisplayDevice::DISPLAY_VIRTUAL, display.type);
881 EXPECT_EQ(true, display.isSecure);
882 EXPECT_EQ(name.string(), display.displayName);
883
884 // --------------------------------------------------------------------
885 // Cleanup conditions
886
887 // Destroying the display invalidates the display state.
888 EXPECT_CALL(*mMessageQueue, invalidate()).Times(1);
889}
890
891/* ------------------------------------------------------------------------
892 * SurfaceFlinger::destroyDisplay
893 */
894
895TEST_F(DisplayTransactionTest, destroyDisplayClearsCurrentStateForDisplay) {
896 using Case = NonHwcVirtualDisplayCase;
897
898 // --------------------------------------------------------------------
899 // Preconditions
900
901 // A virtual display exists
902 auto existing = Case::Display::makeFakeExistingDisplayInjector(this);
903 existing.inject();
904
905 // --------------------------------------------------------------------
906 // Call Expectations
907
908 // The call should notify the interceptor that a display was created.
909 EXPECT_CALL(*mSurfaceInterceptor, saveDisplayDeletion(_)).Times(1);
910
911 // Destroying the display invalidates the display state.
912 EXPECT_CALL(*mMessageQueue, invalidate()).Times(1);
913
914 // --------------------------------------------------------------------
915 // Invocation
916
917 mFlinger.destroyDisplay(existing.token());
918
919 // --------------------------------------------------------------------
920 // Postconditions
921
922 // The display should have been removed from the current state
923 EXPECT_FALSE(hasCurrentDisplayState(existing.token()));
924
925 // Ths display should still exist in the drawing state
926 EXPECT_TRUE(hasDrawingDisplayState(existing.token()));
927
928 // The display transaction needed flasg should be set
929 EXPECT_TRUE(hasTransactionFlagSet(eDisplayTransactionNeeded));
930}
931
932TEST_F(DisplayTransactionTest, destroyDisplayHandlesUnknownDisplay) {
933 // --------------------------------------------------------------------
934 // Preconditions
935
936 sp<BBinder> displayToken = new BBinder();
937
938 // --------------------------------------------------------------------
939 // Invocation
940
941 mFlinger.destroyDisplay(displayToken);
942}
943
944/* ------------------------------------------------------------------------
Lloyd Piqued6fbb8a2018-01-22 19:08:36 -0800945 * SurfaceFlinger::resetDisplayState
946 */
947
948TEST_F(DisplayTransactionTest, resetDisplayStateClearsState) {
949 using Case = NonHwcVirtualDisplayCase;
950
951 // --------------------------------------------------------------------
952 // Preconditions
953
954 // vsync is enabled and available
955 mFlinger.mutablePrimaryHWVsyncEnabled() = true;
956 mFlinger.mutableHWVsyncAvailable() = true;
957
958 // A display exists
959 auto existing = Case::Display::makeFakeExistingDisplayInjector(this);
960 existing.inject();
961
962 // --------------------------------------------------------------------
963 // Call Expectations
964
965 // The call disable vsyncs
966 EXPECT_CALL(*mEventControlThread, setVsyncEnabled(false)).Times(1);
967
968 // The call clears the current render engine surface
969 EXPECT_CALL(*mRenderEngine, resetCurrentSurface());
970
971 // --------------------------------------------------------------------
972 // Invocation
973
974 mFlinger.resetDisplayState();
975
976 // --------------------------------------------------------------------
977 // Postconditions
978
979 // vsyncs should be off and not available.
980 EXPECT_FALSE(mFlinger.mutablePrimaryHWVsyncEnabled());
981 EXPECT_FALSE(mFlinger.mutableHWVsyncAvailable());
982
983 // The display should have been removed from the display map.
984 EXPECT_FALSE(hasDisplayDevice(existing.token()));
985
986 // The display should still exist in the current state
987 EXPECT_TRUE(hasCurrentDisplayState(existing.token()));
988
989 // The display should have been removed from the drawing state
990 EXPECT_FALSE(hasDrawingDisplayState(existing.token()));
991}
992
993/* ------------------------------------------------------------------------
Lloyd Piquefc12f562018-01-22 18:44:59 -0800994 * SurfaceFlinger::setupNewDisplayDeviceInternal
995 */
996
997class SetupNewDisplayDeviceInternalTest : public DisplayTransactionTest {
998public:
999 template <typename T>
1000 void setupNewDisplayDeviceInternalTest();
1001};
1002
1003template <typename Case>
1004void SetupNewDisplayDeviceInternalTest::setupNewDisplayDeviceInternalTest() {
1005 const sp<BBinder> displayToken = new BBinder();
1006 const sp<mock::DisplaySurface> displaySurface = new mock::DisplaySurface();
1007 const sp<mock::GraphicBufferProducer> producer = new mock::GraphicBufferProducer();
Lloyd Pique1fa4d462018-01-22 18:03:16 -08001008
1009 // --------------------------------------------------------------------
1010 // Preconditions
1011
Lloyd Piquefc12f562018-01-22 18:44:59 -08001012 // Wide color displays support is configured appropriately
1013 Case::WideColorSupport::injectConfigChange(this);
Lloyd Pique1fa4d462018-01-22 18:03:16 -08001014
Lloyd Piquefc12f562018-01-22 18:44:59 -08001015 // The display is setup with the HWC.
1016 Case::Display::injectHwcDisplay(this);
1017
1018 // SurfaceFlinger will use a test-controlled factory for native window
1019 // surfaces.
1020 injectFakeNativeWindowSurfaceFactory();
1021
1022 // --------------------------------------------------------------------
1023 // Call Expectations
1024
1025 // Various native window calls will be made.
1026 Case::Display::setupNativeWindowSurfaceCreationCallExpectations(this);
Lloyd Pique3c085a02018-05-09 19:38:32 -07001027 Case::Display::setupHwcGetActiveConfigCallExpectations(this);
Lloyd Piquefc12f562018-01-22 18:44:59 -08001028 Case::WideColorSupport::setupComposerCallExpectations(this);
1029 Case::HdrSupport::setupComposerCallExpectations(this);
Lloyd Piqued883d5a2018-04-27 19:32:30 -07001030 Case::PerFrameMetadataSupport::setupComposerCallExpectations(this);
Lloyd Piquefc12f562018-01-22 18:44:59 -08001031
1032 // --------------------------------------------------------------------
1033 // Invocation
1034
1035 auto state = DisplayDeviceState(Case::Display::TYPE, static_cast<bool>(Case::Display::SECURE));
1036 auto device = mFlinger.setupNewDisplayDeviceInternal(displayToken, Case::Display::TYPE, state,
1037 displaySurface, producer);
1038
1039 // --------------------------------------------------------------------
1040 // Postconditions
1041
1042 ASSERT_TRUE(device != nullptr);
1043 EXPECT_EQ(Case::Display::TYPE, device->getDisplayType());
1044 EXPECT_EQ(static_cast<bool>(Case::Display::SECURE), device->isSecure());
1045 EXPECT_EQ(Case::Display::WIDTH, device->getWidth());
1046 EXPECT_EQ(Case::Display::HEIGHT, device->getHeight());
1047 EXPECT_EQ(Case::WideColorSupport::WIDE_COLOR_SUPPORTED, device->hasWideColorGamut());
1048 EXPECT_EQ(Case::HdrSupport::HDR10_SUPPORTED, device->hasHDR10Support());
1049 EXPECT_EQ(Case::HdrSupport::HDR_HLG_SUPPORTED, device->hasHLGSupport());
1050 EXPECT_EQ(Case::HdrSupport::HDR_DOLBY_VISION_SUPPORTED, device->hasDolbyVisionSupport());
Lloyd Pique3c085a02018-05-09 19:38:32 -07001051 // Note: This is not Case::Display::HWC_ACTIVE_CONFIG_ID as the ids are
1052 // remapped, and the test only ever sets up one config. If there were an error
1053 // looking up the remapped index, device->getActiveConfig() would be -1 instead.
1054 EXPECT_EQ(0, device->getActiveConfig());
Lloyd Piqued883d5a2018-04-27 19:32:30 -07001055 EXPECT_EQ(Case::PerFrameMetadataSupport::PER_FRAME_METADATA_KEYS,
1056 device->getSupportedPerFrameMetadata());
Lloyd Piquefc12f562018-01-22 18:44:59 -08001057}
1058
1059TEST_F(SetupNewDisplayDeviceInternalTest, createSimplePrimaryDisplay) {
1060 setupNewDisplayDeviceInternalTest<SimplePrimaryDisplayCase>();
1061}
1062
1063TEST_F(SetupNewDisplayDeviceInternalTest, createSimpleExternalDisplay) {
1064 setupNewDisplayDeviceInternalTest<SimpleExternalDisplayCase>();
1065}
1066
1067TEST_F(SetupNewDisplayDeviceInternalTest, createNonHwcVirtualDisplay) {
1068 setupNewDisplayDeviceInternalTest<NonHwcVirtualDisplayCase>();
1069}
1070
1071TEST_F(SetupNewDisplayDeviceInternalTest, createHwcVirtualDisplay) {
1072 // We need to resize this so that the HWC thinks the virtual display
1073 // is something it created.
1074 mFlinger.mutableHwcDisplayData().resize(3);
1075
1076 setupNewDisplayDeviceInternalTest<HwcVirtualDisplayCase>();
1077}
1078
1079TEST_F(SetupNewDisplayDeviceInternalTest, createWideColorP3Display) {
1080 setupNewDisplayDeviceInternalTest<WideColorP3ColorimetricDisplayCase>();
1081}
1082
Lloyd Piquefc12f562018-01-22 18:44:59 -08001083TEST_F(SetupNewDisplayDeviceInternalTest, createHdr10Display) {
1084 setupNewDisplayDeviceInternalTest<Hdr10DisplayCase>();
1085}
1086
1087TEST_F(SetupNewDisplayDeviceInternalTest, createHdrHlgDisplay) {
1088 setupNewDisplayDeviceInternalTest<HdrHlgDisplayCase>();
1089}
1090
1091TEST_F(SetupNewDisplayDeviceInternalTest, createHdrDolbyVisionDisplay) {
1092 setupNewDisplayDeviceInternalTest<HdrDolbyVisionDisplayCase>();
1093}
1094
Lloyd Piqued883d5a2018-04-27 19:32:30 -07001095TEST_F(SetupNewDisplayDeviceInternalTest, createHdrSmpte2086DisplayCase) {
1096 setupNewDisplayDeviceInternalTest<HdrSmpte2086DisplayCase>();
1097}
1098
1099TEST_F(SetupNewDisplayDeviceInternalTest, createHdrCta816_3_DisplayCase) {
1100 setupNewDisplayDeviceInternalTest<HdrCta861_3_DisplayCase>();
1101}
1102
Lloyd Piquefc12f562018-01-22 18:44:59 -08001103/* ------------------------------------------------------------------------
1104 * SurfaceFlinger::handleTransactionLocked(eDisplayTransactionNeeded)
1105 */
1106
1107class HandleTransactionLockedTest : public DisplayTransactionTest {
1108public:
1109 template <typename Case>
1110 void setupCommonPreconditions();
1111
1112 template <typename Case>
1113 void setupCommonCallExpectationsForConnectProcessing();
1114
1115 template <typename Case>
1116 void setupCommonCallExpectationsForDisconnectProcessing();
1117
1118 template <typename Case>
1119 void processesHotplugConnectCommon();
1120
1121 template <typename Case>
1122 void ignoresHotplugConnectCommon();
1123
1124 template <typename Case>
1125 void processesHotplugDisconnectCommon();
1126
1127 template <typename Case>
1128 void verifyDisplayIsConnected(const sp<IBinder>& displayToken);
1129
1130 template <typename Case>
1131 void verifyPhysicalDisplayIsConnected();
1132
1133 void verifyDisplayIsNotConnected(const sp<IBinder>& displayToken);
1134};
1135
1136template <typename Case>
1137void HandleTransactionLockedTest::setupCommonPreconditions() {
1138 // Wide color displays support is configured appropriately
1139 Case::WideColorSupport::injectConfigChange(this);
1140
1141 // SurfaceFlinger will use a test-controlled factory for BufferQueues
1142 injectFakeBufferQueueFactory();
1143
1144 // SurfaceFlinger will use a test-controlled factory for native window
1145 // surfaces.
1146 injectFakeNativeWindowSurfaceFactory();
1147}
1148
1149template <typename Case>
1150void HandleTransactionLockedTest::setupCommonCallExpectationsForConnectProcessing() {
1151 Case::Display::setupHwcHotplugCallExpectations(this);
1152
1153 Case::Display::setupFramebufferConsumerBufferQueueCallExpectations(this);
1154 Case::Display::setupFramebufferProducerBufferQueueCallExpectations(this);
1155 Case::Display::setupNativeWindowSurfaceCreationCallExpectations(this);
1156 Case::Display::setupHwcGetActiveConfigCallExpectations(this);
1157
1158 Case::WideColorSupport::setupComposerCallExpectations(this);
1159 Case::HdrSupport::setupComposerCallExpectations(this);
Lloyd Piqued883d5a2018-04-27 19:32:30 -07001160 Case::PerFrameMetadataSupport::setupComposerCallExpectations(this);
Lloyd Piquefc12f562018-01-22 18:44:59 -08001161
1162 EXPECT_CALL(*mSurfaceInterceptor, saveDisplayCreation(_)).Times(1);
1163 EXPECT_CALL(*mEventThread, onHotplugReceived(Case::Display::TYPE, true)).Times(1);
1164}
1165
1166template <typename Case>
1167void HandleTransactionLockedTest::setupCommonCallExpectationsForDisconnectProcessing() {
1168 EXPECT_CALL(*mSurfaceInterceptor, saveDisplayDeletion(_)).Times(1);
1169 EXPECT_CALL(*mEventThread, onHotplugReceived(Case::Display::TYPE, false)).Times(1);
1170}
1171
1172template <typename Case>
1173void HandleTransactionLockedTest::verifyDisplayIsConnected(const sp<IBinder>& displayToken) {
1174 // The display device should have been set up in the list of displays.
1175 ASSERT_TRUE(hasDisplayDevice(displayToken));
1176 const auto& device = getDisplayDevice(displayToken);
1177 EXPECT_EQ(static_cast<bool>(Case::Display::SECURE), device->isSecure());
1178 EXPECT_EQ(Case::Display::TYPE == DisplayDevice::DISPLAY_PRIMARY, device->isPrimary());
1179
1180 // The display should have been set up in the current display state
1181 ASSERT_TRUE(hasCurrentDisplayState(displayToken));
1182 const auto& current = getCurrentDisplayState(displayToken);
1183 EXPECT_EQ(Case::Display::TYPE, current.type);
1184
1185 // The display should have been set up in the drawing display state
1186 ASSERT_TRUE(hasDrawingDisplayState(displayToken));
1187 const auto& draw = getDrawingDisplayState(displayToken);
1188 EXPECT_EQ(Case::Display::TYPE, draw.type);
1189}
1190
1191template <typename Case>
1192void HandleTransactionLockedTest::verifyPhysicalDisplayIsConnected() {
1193 // HWComposer should have an entry for the display
1194 EXPECT_TRUE(hasHwcDisplay(Case::Display::HWC_DISPLAY_ID));
1195
1196 // The display should be set up as a built-in display.
1197 static_assert(0 <= Case::Display::TYPE &&
1198 Case::Display::TYPE < DisplayDevice::NUM_BUILTIN_DISPLAY_TYPES,
1199 "Must use a valid physical display type index for the fixed-size array");
1200 auto& displayToken = mFlinger.mutableBuiltinDisplays()[Case::Display::TYPE];
1201 ASSERT_TRUE(displayToken != nullptr);
1202
1203 verifyDisplayIsConnected<Case>(displayToken);
1204}
1205
1206void HandleTransactionLockedTest::verifyDisplayIsNotConnected(const sp<IBinder>& displayToken) {
1207 EXPECT_FALSE(hasDisplayDevice(displayToken));
1208 EXPECT_FALSE(hasCurrentDisplayState(displayToken));
1209 EXPECT_FALSE(hasDrawingDisplayState(displayToken));
1210}
1211
1212template <typename Case>
1213void HandleTransactionLockedTest::processesHotplugConnectCommon() {
1214 // --------------------------------------------------------------------
1215 // Preconditions
1216
1217 setupCommonPreconditions<Case>();
1218
1219 // A hotplug connect event is enqueued for a display
1220 Case::Display::injectPendingHotplugEvent(this, HWC2::Connection::Connected);
Lloyd Pique1fa4d462018-01-22 18:03:16 -08001221
1222 // --------------------------------------------------------------------
1223 // Call Expectations
1224
1225 EXPECT_CALL(*mComposer, isUsingVrComposer()).WillOnce(Return(false));
Lloyd Pique1fa4d462018-01-22 18:03:16 -08001226
Lloyd Piquefc12f562018-01-22 18:44:59 -08001227 setupCommonCallExpectationsForConnectProcessing<Case>();
Lloyd Piquee39cad22017-12-20 17:01:29 -08001228
Lloyd Pique1fa4d462018-01-22 18:03:16 -08001229 // --------------------------------------------------------------------
1230 // Invocation
Lloyd Piquee39cad22017-12-20 17:01:29 -08001231
Lloyd Pique1fa4d462018-01-22 18:03:16 -08001232 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
Lloyd Piquee39cad22017-12-20 17:01:29 -08001233
Lloyd Pique1fa4d462018-01-22 18:03:16 -08001234 // --------------------------------------------------------------------
1235 // Postconditions
1236
Lloyd Piquefc12f562018-01-22 18:44:59 -08001237 verifyPhysicalDisplayIsConnected<Case>();
Lloyd Piquee39cad22017-12-20 17:01:29 -08001238
Lloyd Pique1fa4d462018-01-22 18:03:16 -08001239 // --------------------------------------------------------------------
1240 // Cleanup conditions
1241
Lloyd Piquefc12f562018-01-22 18:44:59 -08001242 EXPECT_CALL(*mComposer,
1243 setVsyncEnabled(Case::Display::HWC_DISPLAY_ID, IComposerClient::Vsync::DISABLE))
Lloyd Pique1fa4d462018-01-22 18:03:16 -08001244 .WillOnce(Return(Error::NONE));
1245 EXPECT_CALL(*mConsumer, consumerDisconnect()).WillOnce(Return(NO_ERROR));
Lloyd Piquef58625d2017-12-19 13:22:33 -08001246}
1247
Lloyd Piquefc12f562018-01-22 18:44:59 -08001248template <typename Case>
1249void HandleTransactionLockedTest::ignoresHotplugConnectCommon() {
1250 // --------------------------------------------------------------------
1251 // Preconditions
1252
1253 setupCommonPreconditions<Case>();
1254
1255 // A hotplug connect event is enqueued for a display
1256 Case::Display::injectPendingHotplugEvent(this, HWC2::Connection::Connected);
1257
1258 // --------------------------------------------------------------------
1259 // Invocation
1260
1261 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
1262
1263 // --------------------------------------------------------------------
1264 // Postconditions
1265
1266 // HWComposer should not have an entry for the display
1267 EXPECT_FALSE(hasHwcDisplay(Case::Display::HWC_DISPLAY_ID));
1268}
1269
1270template <typename Case>
1271void HandleTransactionLockedTest::processesHotplugDisconnectCommon() {
1272 // --------------------------------------------------------------------
1273 // Preconditions
1274
1275 setupCommonPreconditions<Case>();
1276
1277 // A hotplug disconnect event is enqueued for a display
1278 Case::Display::injectPendingHotplugEvent(this, HWC2::Connection::Disconnected);
1279
1280 // The display is already completely set up.
1281 Case::Display::injectHwcDisplay(this);
1282 auto existing = Case::Display::makeFakeExistingDisplayInjector(this);
1283 existing.inject();
1284
1285 // --------------------------------------------------------------------
1286 // Call Expectations
1287
1288 EXPECT_CALL(*mComposer, isUsingVrComposer()).WillRepeatedly(Return(false));
1289
1290 setupCommonCallExpectationsForDisconnectProcessing<Case>();
1291
1292 // --------------------------------------------------------------------
1293 // Invocation
1294
1295 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
1296
1297 // --------------------------------------------------------------------
1298 // Postconditions
1299
1300 // HWComposer should not have an entry for the display
1301 EXPECT_FALSE(hasHwcDisplay(Case::Display::HWC_DISPLAY_ID));
1302
1303 // The display should not be set up as a built-in display.
1304 ASSERT_TRUE(0 <= Case::Display::TYPE &&
1305 Case::Display::TYPE < DisplayDevice::NUM_BUILTIN_DISPLAY_TYPES);
1306 auto displayToken = mFlinger.mutableBuiltinDisplays()[Case::Display::TYPE];
1307 EXPECT_TRUE(displayToken == nullptr);
1308
1309 // The existing token should have been removed
1310 verifyDisplayIsNotConnected(existing.token());
1311}
1312
1313TEST_F(HandleTransactionLockedTest, processesHotplugConnectPrimaryDisplay) {
1314 processesHotplugConnectCommon<SimplePrimaryDisplayCase>();
1315}
1316
1317TEST_F(HandleTransactionLockedTest,
1318 processesHotplugConnectPrimaryDisplayWithExternalAlreadyConnected) {
1319 // Inject an external display.
1320 ExternalDisplayVariant::injectHwcDisplay(this);
1321
1322 processesHotplugConnectCommon<SimplePrimaryDisplayCase>();
1323}
1324
1325TEST_F(HandleTransactionLockedTest, processesHotplugConnectExternalDisplay) {
1326 // Inject a primary display.
1327 PrimaryDisplayVariant::injectHwcDisplay(this);
1328
1329 processesHotplugConnectCommon<SimpleExternalDisplayCase>();
1330}
1331
1332TEST_F(HandleTransactionLockedTest, ignoresHotplugConnectIfPrimaryAndExternalAlreadyConnected) {
1333 // Inject both a primary and external display.
1334 PrimaryDisplayVariant::injectHwcDisplay(this);
1335 ExternalDisplayVariant::injectHwcDisplay(this);
1336
1337 EXPECT_CALL(*mComposer, isUsingVrComposer()).WillRepeatedly(Return(false));
1338
1339 ignoresHotplugConnectCommon<SimpleTertiaryDisplayCase>();
1340}
1341
1342TEST_F(HandleTransactionLockedTest, ignoresHotplugConnectIfExternalForVrComposer) {
1343 // Inject a primary display.
1344 PrimaryDisplayVariant::injectHwcDisplay(this);
1345
1346 EXPECT_CALL(*mComposer, isUsingVrComposer()).WillRepeatedly(Return(true));
1347
1348 ignoresHotplugConnectCommon<SimpleExternalDisplayCase>();
1349}
1350
1351TEST_F(HandleTransactionLockedTest, processHotplugDisconnectPrimaryDisplay) {
1352 processesHotplugDisconnectCommon<SimplePrimaryDisplayCase>();
1353}
1354
1355TEST_F(HandleTransactionLockedTest, processHotplugDisconnectExternalDisplay) {
1356 processesHotplugDisconnectCommon<SimpleExternalDisplayCase>();
1357}
1358
1359TEST_F(HandleTransactionLockedTest, processesHotplugConnectThenDisconnectPrimary) {
1360 using Case = SimplePrimaryDisplayCase;
1361
1362 // --------------------------------------------------------------------
1363 // Preconditions
1364
1365 setupCommonPreconditions<Case>();
1366
1367 // A hotplug connect event is enqueued for a display
1368 Case::Display::injectPendingHotplugEvent(this, HWC2::Connection::Connected);
1369 // A hotplug disconnect event is also enqueued for the same display
1370 Case::Display::injectPendingHotplugEvent(this, HWC2::Connection::Disconnected);
1371
1372 // --------------------------------------------------------------------
1373 // Call Expectations
1374
1375 EXPECT_CALL(*mComposer, isUsingVrComposer()).WillRepeatedly(Return(false));
1376
1377 setupCommonCallExpectationsForConnectProcessing<Case>();
1378 setupCommonCallExpectationsForDisconnectProcessing<Case>();
1379
1380 EXPECT_CALL(*mComposer,
1381 setVsyncEnabled(Case::Display::HWC_DISPLAY_ID, IComposerClient::Vsync::DISABLE))
1382 .WillOnce(Return(Error::NONE));
1383 EXPECT_CALL(*mConsumer, consumerDisconnect()).WillOnce(Return(NO_ERROR));
1384
1385 // --------------------------------------------------------------------
1386 // Invocation
1387
1388 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
1389
1390 // --------------------------------------------------------------------
1391 // Postconditions
1392
1393 // HWComposer should not have an entry for the display
1394 EXPECT_FALSE(hasHwcDisplay(Case::Display::HWC_DISPLAY_ID));
1395
1396 // The display should not be set up as a primary built-in display.
1397 ASSERT_TRUE(0 <= Case::Display::TYPE &&
1398 Case::Display::TYPE < DisplayDevice::NUM_BUILTIN_DISPLAY_TYPES);
1399 auto displayToken = mFlinger.mutableBuiltinDisplays()[Case::Display::TYPE];
1400 EXPECT_TRUE(displayToken == nullptr);
1401}
1402
1403TEST_F(HandleTransactionLockedTest, processesHotplugDisconnectThenConnectPrimary) {
1404 using Case = SimplePrimaryDisplayCase;
1405
1406 // --------------------------------------------------------------------
1407 // Preconditions
1408
1409 setupCommonPreconditions<Case>();
1410
1411 // The display is already completely set up.
1412 Case::Display::injectHwcDisplay(this);
1413 auto existing = Case::Display::makeFakeExistingDisplayInjector(this);
1414 existing.inject();
1415
1416 // A hotplug disconnect event is enqueued for a display
1417 Case::Display::injectPendingHotplugEvent(this, HWC2::Connection::Disconnected);
1418 // A hotplug connect event is also enqueued for the same display
1419 Case::Display::injectPendingHotplugEvent(this, HWC2::Connection::Connected);
1420
1421 // --------------------------------------------------------------------
1422 // Call Expectations
1423
1424 EXPECT_CALL(*mComposer, isUsingVrComposer()).WillRepeatedly(Return(false));
1425
1426 setupCommonCallExpectationsForConnectProcessing<Case>();
1427 setupCommonCallExpectationsForDisconnectProcessing<Case>();
1428
1429 // --------------------------------------------------------------------
1430 // Invocation
1431
1432 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
1433
1434 // --------------------------------------------------------------------
1435 // Postconditions
1436
1437 // The existing token should have been removed
1438 verifyDisplayIsNotConnected(existing.token());
1439 static_assert(0 <= Case::Display::TYPE &&
1440 Case::Display::TYPE < DisplayDevice::NUM_BUILTIN_DISPLAY_TYPES,
1441 "Display type must be a built-in display");
1442 EXPECT_NE(existing.token(), mFlinger.mutableBuiltinDisplays()[Case::Display::TYPE]);
1443
1444 // A new display should be connected in its place
1445
1446 verifyPhysicalDisplayIsConnected<Case>();
1447
1448 // --------------------------------------------------------------------
1449 // Cleanup conditions
1450
1451 EXPECT_CALL(*mComposer,
1452 setVsyncEnabled(Case::Display::HWC_DISPLAY_ID, IComposerClient::Vsync::DISABLE))
1453 .WillOnce(Return(Error::NONE));
1454 EXPECT_CALL(*mConsumer, consumerDisconnect()).WillOnce(Return(NO_ERROR));
1455}
1456
1457TEST_F(HandleTransactionLockedTest, processesVirtualDisplayAdded) {
1458 using Case = HwcVirtualDisplayCase;
1459
1460 // --------------------------------------------------------------------
1461 // Preconditions
1462
1463 // The HWC supports at least one virtual display
1464 injectMockComposer(1);
1465
1466 setupCommonPreconditions<Case>();
1467
1468 // A virtual display was added to the current state, and it has a
1469 // surface(producer)
1470 sp<BBinder> displayToken = new BBinder();
1471 DisplayDeviceState info(Case::Display::TYPE, static_cast<bool>(Case::Display::SECURE));
1472 sp<mock::GraphicBufferProducer> surface{new mock::GraphicBufferProducer()};
1473 info.surface = surface;
1474 mFlinger.mutableCurrentState().displays.add(displayToken, info);
1475
1476 // --------------------------------------------------------------------
1477 // Call Expectations
1478
1479 Case::Display::setupFramebufferConsumerBufferQueueCallExpectations(this);
1480 Case::Display::setupNativeWindowSurfaceCreationCallExpectations(this);
1481
1482 EXPECT_CALL(*surface, query(NATIVE_WINDOW_WIDTH, _))
1483 .WillRepeatedly(DoAll(SetArgPointee<1>(Case::Display::WIDTH), Return(NO_ERROR)));
1484 EXPECT_CALL(*surface, query(NATIVE_WINDOW_HEIGHT, _))
1485 .WillRepeatedly(DoAll(SetArgPointee<1>(Case::Display::HEIGHT), Return(NO_ERROR)));
1486 EXPECT_CALL(*surface, query(NATIVE_WINDOW_FORMAT, _))
1487 .WillRepeatedly(DoAll(SetArgPointee<1>(DEFAULT_VIRTUAL_DISPLAY_SURFACE_FORMAT),
1488 Return(NO_ERROR)));
1489 EXPECT_CALL(*surface, query(NATIVE_WINDOW_CONSUMER_USAGE_BITS, _))
1490 .WillRepeatedly(DoAll(SetArgPointee<1>(0), Return(NO_ERROR)));
1491
1492 EXPECT_CALL(*surface, setAsyncMode(true)).Times(1);
1493
1494 EXPECT_CALL(*mProducer, connect(_, _, _, _)).Times(1);
1495 EXPECT_CALL(*mProducer, disconnect(_, _)).Times(1);
1496
1497 Case::Display::setupHwcVirtualDisplayCreationCallExpectations(this);
1498 Case::WideColorSupport::setupComposerCallExpectations(this);
1499 Case::HdrSupport::setupComposerCallExpectations(this);
Lloyd Piqued883d5a2018-04-27 19:32:30 -07001500 Case::PerFrameMetadataSupport::setupComposerCallExpectations(this);
Lloyd Piquefc12f562018-01-22 18:44:59 -08001501
1502 // --------------------------------------------------------------------
1503 // Invocation
1504
1505 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
1506
1507 // --------------------------------------------------------------------
1508 // Postconditions
1509
1510 // The display device should have been set up in the list of displays.
1511 verifyDisplayIsConnected<Case>(displayToken);
1512
1513 // --------------------------------------------------------------------
1514 // Cleanup conditions
1515
1516 EXPECT_CALL(*mComposer, destroyVirtualDisplay(Case::Display::HWC_DISPLAY_ID))
1517 .WillOnce(Return(Error::NONE));
1518 EXPECT_CALL(*mConsumer, consumerDisconnect()).WillOnce(Return(NO_ERROR));
1519}
1520
1521TEST_F(HandleTransactionLockedTest, processesVirtualDisplayAddedWithNoSurface) {
1522 using Case = HwcVirtualDisplayCase;
1523
1524 // --------------------------------------------------------------------
1525 // Preconditions
1526
1527 // The HWC supports at least one virtual display
1528 injectMockComposer(1);
1529
1530 setupCommonPreconditions<Case>();
1531
1532 // A virtual display was added to the current state, but it does not have a
1533 // surface.
1534 sp<BBinder> displayToken = new BBinder();
1535 DisplayDeviceState info(Case::Display::TYPE, static_cast<bool>(Case::Display::SECURE));
1536 mFlinger.mutableCurrentState().displays.add(displayToken, info);
1537
1538 // --------------------------------------------------------------------
1539 // Call Expectations
1540
1541 // --------------------------------------------------------------------
1542 // Invocation
1543
1544 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
1545
1546 // --------------------------------------------------------------------
1547 // Postconditions
1548
1549 // There will not be a display device set up.
1550 EXPECT_FALSE(hasDisplayDevice(displayToken));
1551
1552 // The drawing display state will be set from the current display state.
1553 ASSERT_TRUE(hasDrawingDisplayState(displayToken));
1554 const auto& draw = getDrawingDisplayState(displayToken);
1555 EXPECT_EQ(Case::Display::TYPE, draw.type);
1556}
1557
1558TEST_F(HandleTransactionLockedTest, processesVirtualDisplayRemoval) {
1559 using Case = HwcVirtualDisplayCase;
1560
1561 // --------------------------------------------------------------------
1562 // Preconditions
1563
1564 // A virtual display is set up but is removed from the current state.
1565 mFlinger.mutableHwcDisplayData().resize(3);
1566 Case::Display::injectHwcDisplay(this);
1567 auto existing = Case::Display::makeFakeExistingDisplayInjector(this);
1568 existing.inject();
1569 mFlinger.mutableCurrentState().displays.removeItem(existing.token());
1570
1571 // --------------------------------------------------------------------
1572 // Call Expectations
1573
1574 EXPECT_CALL(*mComposer, isUsingVrComposer()).WillRepeatedly(Return(false));
1575
1576 // --------------------------------------------------------------------
1577 // Invocation
1578
1579 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
1580
1581 // --------------------------------------------------------------------
1582 // Postconditions
1583
1584 // The existing token should have been removed
1585 verifyDisplayIsNotConnected(existing.token());
1586}
1587
Lloyd Pique0fa1d4c2018-01-22 18:54:42 -08001588TEST_F(HandleTransactionLockedTest, processesDisplayLayerStackChanges) {
1589 using Case = NonHwcVirtualDisplayCase;
1590
1591 constexpr uint32_t oldLayerStack = 0u;
1592 constexpr uint32_t newLayerStack = 123u;
1593
1594 // --------------------------------------------------------------------
1595 // Preconditions
1596
1597 // A display is set up
1598 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
1599 display.inject();
1600
1601 // There is a change to the layerStack state
1602 display.mutableDrawingDisplayState().layerStack = oldLayerStack;
1603 display.mutableCurrentDisplayState().layerStack = newLayerStack;
1604
1605 // --------------------------------------------------------------------
1606 // Invocation
1607
1608 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
1609
1610 // --------------------------------------------------------------------
1611 // Postconditions
1612
Lloyd Pique9d9cf402018-02-16 17:47:13 -08001613 EXPECT_EQ(newLayerStack, display.mutableDisplayDevice()->getLayerStack());
Lloyd Pique0fa1d4c2018-01-22 18:54:42 -08001614}
1615
1616TEST_F(HandleTransactionLockedTest, processesDisplayTransformChanges) {
1617 using Case = NonHwcVirtualDisplayCase;
1618
1619 constexpr int oldTransform = 0;
1620 constexpr int newTransform = 2;
1621
1622 // --------------------------------------------------------------------
1623 // Preconditions
1624
1625 // A display is set up
1626 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
1627 display.inject();
1628
1629 // There is a change to the orientation state
1630 display.mutableDrawingDisplayState().orientation = oldTransform;
1631 display.mutableCurrentDisplayState().orientation = newTransform;
1632
1633 // --------------------------------------------------------------------
1634 // Invocation
1635
1636 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
1637
1638 // --------------------------------------------------------------------
1639 // Postconditions
1640
Lloyd Pique9d9cf402018-02-16 17:47:13 -08001641 EXPECT_EQ(newTransform, display.mutableDisplayDevice()->getOrientation());
Lloyd Pique0fa1d4c2018-01-22 18:54:42 -08001642}
1643
1644TEST_F(HandleTransactionLockedTest, processesDisplayViewportChanges) {
1645 using Case = NonHwcVirtualDisplayCase;
1646
1647 const Rect oldViewport(0, 0, 0, 0);
1648 const Rect newViewport(0, 0, 123, 456);
1649
1650 // --------------------------------------------------------------------
1651 // Preconditions
1652
1653 // A display is set up
1654 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
1655 display.inject();
1656
1657 // There is a change to the viewport state
1658 display.mutableDrawingDisplayState().viewport = oldViewport;
1659 display.mutableCurrentDisplayState().viewport = newViewport;
1660
1661 // --------------------------------------------------------------------
1662 // Invocation
1663
1664 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
1665
1666 // --------------------------------------------------------------------
1667 // Postconditions
1668
Lloyd Pique9d9cf402018-02-16 17:47:13 -08001669 EXPECT_EQ(newViewport, display.mutableDisplayDevice()->getViewport());
Lloyd Pique0fa1d4c2018-01-22 18:54:42 -08001670}
1671
1672TEST_F(HandleTransactionLockedTest, processesDisplayFrameChanges) {
1673 using Case = NonHwcVirtualDisplayCase;
1674
1675 const Rect oldFrame(0, 0, 0, 0);
1676 const Rect newFrame(0, 0, 123, 456);
1677
1678 // --------------------------------------------------------------------
1679 // Preconditions
1680
1681 // A display is set up
1682 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
1683 display.inject();
1684
1685 // There is a change to the viewport state
1686 display.mutableDrawingDisplayState().frame = oldFrame;
1687 display.mutableCurrentDisplayState().frame = newFrame;
1688
1689 // --------------------------------------------------------------------
1690 // Invocation
1691
1692 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
1693
1694 // --------------------------------------------------------------------
1695 // Postconditions
1696
Lloyd Pique9d9cf402018-02-16 17:47:13 -08001697 EXPECT_EQ(newFrame, display.mutableDisplayDevice()->getFrame());
Lloyd Pique0fa1d4c2018-01-22 18:54:42 -08001698}
1699
1700TEST_F(HandleTransactionLockedTest, processesDisplayWidthChanges) {
1701 using Case = NonHwcVirtualDisplayCase;
1702
1703 constexpr int oldWidth = 0;
1704 constexpr int oldHeight = 10;
1705 constexpr int newWidth = 123;
1706
1707 // --------------------------------------------------------------------
1708 // Preconditions
1709
1710 // A display is set up
1711 auto nativeWindow = new mock::NativeWindow();
1712 auto displaySurface = new mock::DisplaySurface();
1713 auto renderSurface = new RE::mock::Surface();
1714 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
1715 display.setNativeWindow(nativeWindow);
1716 display.setDisplaySurface(displaySurface);
1717 display.setRenderSurface(std::unique_ptr<RE::Surface>(renderSurface));
1718 display.inject();
1719
1720 // There is a change to the viewport state
1721 display.mutableDrawingDisplayState().width = oldWidth;
1722 display.mutableDrawingDisplayState().height = oldHeight;
1723 display.mutableCurrentDisplayState().width = newWidth;
1724 display.mutableCurrentDisplayState().height = oldHeight;
1725
1726 // --------------------------------------------------------------------
1727 // Call Expectations
1728
1729 EXPECT_CALL(*renderSurface, setNativeWindow(nullptr)).Times(1);
1730 EXPECT_CALL(*displaySurface, resizeBuffers(newWidth, oldHeight)).Times(1);
1731 EXPECT_CALL(*renderSurface, setNativeWindow(nativeWindow)).Times(1);
1732 EXPECT_CALL(*renderSurface, queryWidth()).WillOnce(Return(newWidth));
1733 EXPECT_CALL(*renderSurface, queryHeight()).WillOnce(Return(oldHeight));
1734
1735 // --------------------------------------------------------------------
1736 // Invocation
1737
1738 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
1739}
1740
1741TEST_F(HandleTransactionLockedTest, processesDisplayHeightChanges) {
1742 using Case = NonHwcVirtualDisplayCase;
1743
1744 constexpr int oldWidth = 0;
1745 constexpr int oldHeight = 10;
1746 constexpr int newHeight = 123;
1747
1748 // --------------------------------------------------------------------
1749 // Preconditions
1750
1751 // A display is set up
1752 auto nativeWindow = new mock::NativeWindow();
1753 auto displaySurface = new mock::DisplaySurface();
1754 auto renderSurface = new RE::mock::Surface();
1755 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
1756 display.setNativeWindow(nativeWindow);
1757 display.setDisplaySurface(displaySurface);
1758 display.setRenderSurface(std::unique_ptr<RE::Surface>(renderSurface));
1759 display.inject();
1760
1761 // There is a change to the viewport state
1762 display.mutableDrawingDisplayState().width = oldWidth;
1763 display.mutableDrawingDisplayState().height = oldHeight;
1764 display.mutableCurrentDisplayState().width = oldWidth;
1765 display.mutableCurrentDisplayState().height = newHeight;
1766
1767 // --------------------------------------------------------------------
1768 // Call Expectations
1769
1770 EXPECT_CALL(*renderSurface, setNativeWindow(nullptr)).Times(1);
1771 EXPECT_CALL(*displaySurface, resizeBuffers(oldWidth, newHeight)).Times(1);
1772 EXPECT_CALL(*renderSurface, setNativeWindow(nativeWindow)).Times(1);
1773 EXPECT_CALL(*renderSurface, queryWidth()).WillOnce(Return(oldWidth));
1774 EXPECT_CALL(*renderSurface, queryHeight()).WillOnce(Return(newHeight));
1775
1776 // --------------------------------------------------------------------
1777 // Invocation
1778
1779 mFlinger.handleTransactionLocked(eDisplayTransactionNeeded);
1780}
1781
Lloyd Pique9d9cf402018-02-16 17:47:13 -08001782/* ------------------------------------------------------------------------
1783 * SurfaceFlinger::setDisplayStateLocked
1784 */
1785
1786TEST_F(DisplayTransactionTest, setDisplayStateLockedDoesNothingWithUnknownDisplay) {
1787 // --------------------------------------------------------------------
1788 // Preconditions
1789
1790 // We have an unknown display token not associated with a known display
1791 sp<BBinder> displayToken = new BBinder();
1792
1793 // The requested display state references the unknown display.
1794 DisplayState state;
1795 state.what = DisplayState::eLayerStackChanged;
1796 state.token = displayToken;
1797 state.layerStack = 456;
1798
1799 // --------------------------------------------------------------------
1800 // Invocation
1801
1802 uint32_t flags = mFlinger.setDisplayStateLocked(state);
1803
1804 // --------------------------------------------------------------------
1805 // Postconditions
1806
1807 // The returned flags are empty
1808 EXPECT_EQ(0u, flags);
1809
1810 // The display token still doesn't match anything known.
1811 EXPECT_FALSE(hasCurrentDisplayState(displayToken));
1812}
1813
1814TEST_F(DisplayTransactionTest, setDisplayStateLockedDoesNothingWithInvalidDisplay) {
1815 using Case = InvalidDisplayCase;
1816
1817 // --------------------------------------------------------------------
1818 // Preconditions
1819
1820 // An invalid display is set up
1821 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
1822 display.inject();
1823
1824 // The invalid display has some state
1825 display.mutableCurrentDisplayState().layerStack = 654u;
1826
1827 // The requested display state tries to change the display state.
1828 DisplayState state;
1829 state.what = DisplayState::eLayerStackChanged;
1830 state.token = display.token();
1831 state.layerStack = 456;
1832
1833 // --------------------------------------------------------------------
1834 // Invocation
1835
1836 uint32_t flags = mFlinger.setDisplayStateLocked(state);
1837
1838 // --------------------------------------------------------------------
1839 // Postconditions
1840
1841 // The returned flags are empty
1842 EXPECT_EQ(0u, flags);
1843
1844 // The current display layer stack value is unchanged.
1845 EXPECT_EQ(654u, getCurrentDisplayState(display.token()).layerStack);
1846}
1847
1848TEST_F(DisplayTransactionTest, setDisplayStateLockedDoesNothingWhenNoChanges) {
1849 using Case = SimplePrimaryDisplayCase;
1850
1851 // --------------------------------------------------------------------
1852 // Preconditions
1853
1854 // A display is already set up
1855 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
1856 display.inject();
1857
1858 // No changes are made to the display
1859 DisplayState state;
1860 state.what = 0;
1861 state.token = display.token();
1862
1863 // --------------------------------------------------------------------
1864 // Invocation
1865
1866 uint32_t flags = mFlinger.setDisplayStateLocked(state);
1867
1868 // --------------------------------------------------------------------
1869 // Postconditions
1870
1871 // The returned flags are empty
1872 EXPECT_EQ(0u, flags);
1873}
1874
1875TEST_F(DisplayTransactionTest, setDisplayStateLockedDoesNothingIfSurfaceDidNotChange) {
1876 using Case = SimplePrimaryDisplayCase;
1877
1878 // --------------------------------------------------------------------
1879 // Preconditions
1880
1881 // A display is already set up
1882 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
1883 display.inject();
1884
1885 // There is a surface that can be set.
1886 sp<mock::GraphicBufferProducer> surface = new mock::GraphicBufferProducer();
1887
1888 // The current display state has the surface set
1889 display.mutableCurrentDisplayState().surface = surface;
1890
1891 // The incoming request sets the same surface
1892 DisplayState state;
1893 state.what = DisplayState::eSurfaceChanged;
1894 state.token = display.token();
1895 state.surface = surface;
1896
1897 // --------------------------------------------------------------------
1898 // Invocation
1899
1900 uint32_t flags = mFlinger.setDisplayStateLocked(state);
1901
1902 // --------------------------------------------------------------------
1903 // Postconditions
1904
1905 // The returned flags are empty
1906 EXPECT_EQ(0u, flags);
1907
1908 // The current display state is unchanged.
1909 EXPECT_EQ(surface.get(), display.getCurrentDisplayState().surface.get());
1910}
1911
1912TEST_F(DisplayTransactionTest, setDisplayStateLockedRequestsUpdateIfSurfaceChanged) {
1913 using Case = SimplePrimaryDisplayCase;
1914
1915 // --------------------------------------------------------------------
1916 // Preconditions
1917
1918 // A display is already set up
1919 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
1920 display.inject();
1921
1922 // There is a surface that can be set.
1923 sp<mock::GraphicBufferProducer> surface = new mock::GraphicBufferProducer();
1924
1925 // The current display state does not have a surface
1926 display.mutableCurrentDisplayState().surface = nullptr;
1927
1928 // The incoming request sets a surface
1929 DisplayState state;
1930 state.what = DisplayState::eSurfaceChanged;
1931 state.token = display.token();
1932 state.surface = surface;
1933
1934 // --------------------------------------------------------------------
1935 // Invocation
1936
1937 uint32_t flags = mFlinger.setDisplayStateLocked(state);
1938
1939 // --------------------------------------------------------------------
1940 // Postconditions
1941
1942 // The returned flags indicate a transaction is needed
1943 EXPECT_EQ(eDisplayTransactionNeeded, flags);
1944
1945 // The current display layer stack state is set to the new value
1946 EXPECT_EQ(surface.get(), display.getCurrentDisplayState().surface.get());
1947}
1948
1949TEST_F(DisplayTransactionTest, setDisplayStateLockedDoesNothingIfLayerStackDidNotChange) {
1950 using Case = SimplePrimaryDisplayCase;
1951
1952 // --------------------------------------------------------------------
1953 // Preconditions
1954
1955 // A display is already set up
1956 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
1957 display.inject();
1958
1959 // The display has a layer stack set
1960 display.mutableCurrentDisplayState().layerStack = 456u;
1961
1962 // The incoming request sets the same layer stack
1963 DisplayState state;
1964 state.what = DisplayState::eLayerStackChanged;
1965 state.token = display.token();
1966 state.layerStack = 456u;
1967
1968 // --------------------------------------------------------------------
1969 // Invocation
1970
1971 uint32_t flags = mFlinger.setDisplayStateLocked(state);
1972
1973 // --------------------------------------------------------------------
1974 // Postconditions
1975
1976 // The returned flags are empty
1977 EXPECT_EQ(0u, flags);
1978
1979 // The current display state is unchanged
1980 EXPECT_EQ(456u, display.getCurrentDisplayState().layerStack);
1981}
1982
1983TEST_F(DisplayTransactionTest, setDisplayStateLockedRequestsUpdateIfLayerStackChanged) {
1984 using Case = SimplePrimaryDisplayCase;
1985
1986 // --------------------------------------------------------------------
1987 // Preconditions
1988
1989 // A display is set up
1990 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
1991 display.inject();
1992
1993 // The display has a layer stack set
1994 display.mutableCurrentDisplayState().layerStack = 654u;
1995
1996 // The incoming request sets a different layer stack
1997 DisplayState state;
1998 state.what = DisplayState::eLayerStackChanged;
1999 state.token = display.token();
2000 state.layerStack = 456u;
2001
2002 // --------------------------------------------------------------------
2003 // Invocation
2004
2005 uint32_t flags = mFlinger.setDisplayStateLocked(state);
2006
2007 // --------------------------------------------------------------------
2008 // Postconditions
2009
2010 // The returned flags indicate a transaction is needed
2011 EXPECT_EQ(eDisplayTransactionNeeded, flags);
2012
2013 // The desired display state has been set to the new value.
2014 EXPECT_EQ(456u, display.getCurrentDisplayState().layerStack);
2015}
2016
2017TEST_F(DisplayTransactionTest, setDisplayStateLockedDoesNothingIfProjectionDidNotChange) {
2018 using Case = SimplePrimaryDisplayCase;
2019 constexpr int initialOrientation = 180;
2020 const Rect initialFrame = {1, 2, 3, 4};
2021 const Rect initialViewport = {5, 6, 7, 8};
2022
2023 // --------------------------------------------------------------------
2024 // Preconditions
2025
2026 // A display is set up
2027 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2028 display.inject();
2029
2030 // The current display state projection state is all set
2031 display.mutableCurrentDisplayState().orientation = initialOrientation;
2032 display.mutableCurrentDisplayState().frame = initialFrame;
2033 display.mutableCurrentDisplayState().viewport = initialViewport;
2034
2035 // The incoming request sets the same projection state
2036 DisplayState state;
2037 state.what = DisplayState::eDisplayProjectionChanged;
2038 state.token = display.token();
2039 state.orientation = initialOrientation;
2040 state.frame = initialFrame;
2041 state.viewport = initialViewport;
2042
2043 // --------------------------------------------------------------------
2044 // Invocation
2045
2046 uint32_t flags = mFlinger.setDisplayStateLocked(state);
2047
2048 // --------------------------------------------------------------------
2049 // Postconditions
2050
2051 // The returned flags are empty
2052 EXPECT_EQ(0u, flags);
2053
2054 // The current display state is unchanged
2055 EXPECT_EQ(initialOrientation, display.getCurrentDisplayState().orientation);
2056
2057 EXPECT_EQ(initialFrame, display.getCurrentDisplayState().frame);
2058 EXPECT_EQ(initialViewport, display.getCurrentDisplayState().viewport);
2059}
2060
2061TEST_F(DisplayTransactionTest, setDisplayStateLockedRequestsUpdateIfOrientationChanged) {
2062 using Case = SimplePrimaryDisplayCase;
2063 constexpr int initialOrientation = 90;
2064 constexpr int desiredOrientation = 180;
2065
2066 // --------------------------------------------------------------------
2067 // Preconditions
2068
2069 // A display is set up
2070 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2071 display.inject();
2072
2073 // The current display state has an orientation set
2074 display.mutableCurrentDisplayState().orientation = initialOrientation;
2075
2076 // The incoming request sets a different orientation
2077 DisplayState state;
2078 state.what = DisplayState::eDisplayProjectionChanged;
2079 state.token = display.token();
2080 state.orientation = desiredOrientation;
2081
2082 // --------------------------------------------------------------------
2083 // Invocation
2084
2085 uint32_t flags = mFlinger.setDisplayStateLocked(state);
2086
2087 // --------------------------------------------------------------------
2088 // Postconditions
2089
2090 // The returned flags indicate a transaction is needed
2091 EXPECT_EQ(eDisplayTransactionNeeded, flags);
2092
2093 // The current display state has the new value.
2094 EXPECT_EQ(desiredOrientation, display.getCurrentDisplayState().orientation);
2095}
2096
2097TEST_F(DisplayTransactionTest, setDisplayStateLockedRequestsUpdateIfFrameChanged) {
2098 using Case = SimplePrimaryDisplayCase;
2099 const Rect initialFrame = {0, 0, 0, 0};
2100 const Rect desiredFrame = {5, 6, 7, 8};
2101
2102 // --------------------------------------------------------------------
2103 // Preconditions
2104
2105 // A display is set up
2106 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2107 display.inject();
2108
2109 // The current display state does not have a frame
2110 display.mutableCurrentDisplayState().frame = initialFrame;
2111
2112 // The incoming request sets a frame
2113 DisplayState state;
2114 state.what = DisplayState::eDisplayProjectionChanged;
2115 state.token = display.token();
2116 state.frame = desiredFrame;
2117
2118 // --------------------------------------------------------------------
2119 // Invocation
2120
2121 uint32_t flags = mFlinger.setDisplayStateLocked(state);
2122
2123 // --------------------------------------------------------------------
2124 // Postconditions
2125
2126 // The returned flags indicate a transaction is needed
2127 EXPECT_EQ(eDisplayTransactionNeeded, flags);
2128
2129 // The current display state has the new value.
2130 EXPECT_EQ(desiredFrame, display.getCurrentDisplayState().frame);
2131}
2132
2133TEST_F(DisplayTransactionTest, setDisplayStateLockedRequestsUpdateIfViewportChanged) {
2134 using Case = SimplePrimaryDisplayCase;
2135 const Rect initialViewport = {0, 0, 0, 0};
2136 const Rect desiredViewport = {5, 6, 7, 8};
2137
2138 // --------------------------------------------------------------------
2139 // Preconditions
2140
2141 // A display is set up
2142 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2143 display.inject();
2144
2145 // The current display state does not have a viewport
2146 display.mutableCurrentDisplayState().viewport = initialViewport;
2147
2148 // The incoming request sets a viewport
2149 DisplayState state;
2150 state.what = DisplayState::eDisplayProjectionChanged;
2151 state.token = display.token();
2152 state.viewport = desiredViewport;
2153
2154 // --------------------------------------------------------------------
2155 // Invocation
2156
2157 uint32_t flags = mFlinger.setDisplayStateLocked(state);
2158
2159 // --------------------------------------------------------------------
2160 // Postconditions
2161
2162 // The returned flags indicate a transaction is needed
2163 EXPECT_EQ(eDisplayTransactionNeeded, flags);
2164
2165 // The current display state has the new value.
2166 EXPECT_EQ(desiredViewport, display.getCurrentDisplayState().viewport);
2167}
2168
2169TEST_F(DisplayTransactionTest, setDisplayStateLockedDoesNothingIfSizeDidNotChange) {
2170 using Case = SimplePrimaryDisplayCase;
2171 constexpr uint32_t initialWidth = 1024;
2172 constexpr uint32_t initialHeight = 768;
2173
2174 // --------------------------------------------------------------------
2175 // Preconditions
2176
2177 // A display is set up
2178 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2179 display.inject();
2180
2181 // The current display state has a size set
2182 display.mutableCurrentDisplayState().width = initialWidth;
2183 display.mutableCurrentDisplayState().height = initialHeight;
2184
2185 // The incoming request sets the same display size
2186 DisplayState state;
2187 state.what = DisplayState::eDisplaySizeChanged;
2188 state.token = display.token();
2189 state.width = initialWidth;
2190 state.height = initialHeight;
2191
2192 // --------------------------------------------------------------------
2193 // Invocation
2194
2195 uint32_t flags = mFlinger.setDisplayStateLocked(state);
2196
2197 // --------------------------------------------------------------------
2198 // Postconditions
2199
2200 // The returned flags are empty
2201 EXPECT_EQ(0u, flags);
2202
2203 // The current display state is unchanged
2204 EXPECT_EQ(initialWidth, display.getCurrentDisplayState().width);
2205 EXPECT_EQ(initialHeight, display.getCurrentDisplayState().height);
2206}
2207
2208TEST_F(DisplayTransactionTest, setDisplayStateLockedRequestsUpdateIfWidthChanged) {
2209 using Case = SimplePrimaryDisplayCase;
2210 constexpr uint32_t initialWidth = 0;
2211 constexpr uint32_t desiredWidth = 1024;
2212
2213 // --------------------------------------------------------------------
2214 // Preconditions
2215
2216 // A display is set up
2217 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2218 display.inject();
2219
2220 // The display does not yet have a width
2221 display.mutableCurrentDisplayState().width = initialWidth;
2222
2223 // The incoming request sets a display width
2224 DisplayState state;
2225 state.what = DisplayState::eDisplaySizeChanged;
2226 state.token = display.token();
2227 state.width = desiredWidth;
2228
2229 // --------------------------------------------------------------------
2230 // Invocation
2231
2232 uint32_t flags = mFlinger.setDisplayStateLocked(state);
2233
2234 // --------------------------------------------------------------------
2235 // Postconditions
2236
2237 // The returned flags indicate a transaction is needed
2238 EXPECT_EQ(eDisplayTransactionNeeded, flags);
2239
2240 // The current display state has the new value.
2241 EXPECT_EQ(desiredWidth, display.getCurrentDisplayState().width);
2242}
2243
2244TEST_F(DisplayTransactionTest, setDisplayStateLockedRequestsUpdateIfHeightChanged) {
2245 using Case = SimplePrimaryDisplayCase;
2246 constexpr uint32_t initialHeight = 0;
2247 constexpr uint32_t desiredHeight = 768;
2248
2249 // --------------------------------------------------------------------
2250 // Preconditions
2251
2252 // A display is set up
2253 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2254 display.inject();
2255
2256 // The display does not yet have a height
2257 display.mutableCurrentDisplayState().height = initialHeight;
2258
2259 // The incoming request sets a display height
2260 DisplayState state;
2261 state.what = DisplayState::eDisplaySizeChanged;
2262 state.token = display.token();
2263 state.height = desiredHeight;
2264
2265 // --------------------------------------------------------------------
2266 // Invocation
2267
2268 uint32_t flags = mFlinger.setDisplayStateLocked(state);
2269
2270 // --------------------------------------------------------------------
2271 // Postconditions
2272
2273 // The returned flags indicate a transaction is needed
2274 EXPECT_EQ(eDisplayTransactionNeeded, flags);
2275
2276 // The current display state has the new value.
2277 EXPECT_EQ(desiredHeight, display.getCurrentDisplayState().height);
2278}
2279
Lloyd Pique86016da2018-03-01 16:09:38 -08002280/* ------------------------------------------------------------------------
2281 * SurfaceFlinger::onInitializeDisplays
2282 */
2283
2284TEST_F(DisplayTransactionTest, onInitializeDisplaysSetsUpPrimaryDisplay) {
2285 using Case = SimplePrimaryDisplayCase;
2286
2287 // --------------------------------------------------------------------
2288 // Preconditions
2289
2290 // A primary display is set up
2291 Case::Display::injectHwcDisplay(this);
2292 auto primaryDisplay = Case::Display::makeFakeExistingDisplayInjector(this);
2293 primaryDisplay.inject();
2294
2295 // --------------------------------------------------------------------
2296 // Call Expectations
2297
2298 // We expect the surface interceptor to possibly be used, but we treat it as
2299 // disabled since it is called as a side effect rather than directly by this
2300 // function.
2301 EXPECT_CALL(*mSurfaceInterceptor, isEnabled()).WillOnce(Return(false));
2302
2303 // We expect a call to get the active display config.
2304 Case::Display::setupHwcGetActiveConfigCallExpectations(this);
2305
2306 // We expect invalidate() to be invoked once to trigger display transaction
2307 // processing.
2308 EXPECT_CALL(*mMessageQueue, invalidate()).Times(1);
2309
2310 // --------------------------------------------------------------------
2311 // Invocation
2312
2313 mFlinger.onInitializeDisplays();
2314
2315 // --------------------------------------------------------------------
2316 // Postconditions
2317
2318 // The primary display should have a current state
2319 ASSERT_TRUE(hasCurrentDisplayState(primaryDisplay.token()));
2320 const auto& primaryDisplayState = getCurrentDisplayState(primaryDisplay.token());
2321 // The layer stack state should be set to zero
2322 EXPECT_EQ(0u, primaryDisplayState.layerStack);
2323 // The orientation state should be set to zero
2324 EXPECT_EQ(0, primaryDisplayState.orientation);
2325
2326 // The frame state should be set to INVALID
2327 EXPECT_EQ(Rect::INVALID_RECT, primaryDisplayState.frame);
2328
2329 // The viewport state should be set to INVALID
2330 EXPECT_EQ(Rect::INVALID_RECT, primaryDisplayState.viewport);
2331
2332 // The width and height should both be zero
2333 EXPECT_EQ(0u, primaryDisplayState.width);
2334 EXPECT_EQ(0u, primaryDisplayState.height);
2335
2336 // The display should be set to HWC_POWER_MODE_NORMAL
2337 ASSERT_TRUE(hasDisplayDevice(primaryDisplay.token()));
2338 auto displayDevice = primaryDisplay.mutableDisplayDevice();
2339 EXPECT_EQ(HWC_POWER_MODE_NORMAL, displayDevice->getPowerMode());
2340
2341 // The display refresh period should be set in the frame tracker.
2342 FrameStats stats;
2343 mFlinger.getAnimFrameTracker().getStats(&stats);
2344 EXPECT_EQ(DEFAULT_REFRESH_RATE, stats.refreshPeriodNano);
2345
2346 // The display transaction needed flag should be set.
2347 EXPECT_TRUE(hasTransactionFlagSet(eDisplayTransactionNeeded));
2348
2349 // The compositor timing should be set to default values
2350 const auto& compositorTiming = mFlinger.getCompositorTiming();
2351 EXPECT_EQ(-DEFAULT_REFRESH_RATE, compositorTiming.deadline);
2352 EXPECT_EQ(DEFAULT_REFRESH_RATE, compositorTiming.interval);
2353 EXPECT_EQ(DEFAULT_REFRESH_RATE, compositorTiming.presentLatency);
2354}
2355
Lloyd Pique7d4aa6c2018-03-01 16:36:35 -08002356/* ------------------------------------------------------------------------
2357 * SurfaceFlinger::setPowerModeInternal
2358 */
2359
2360// Used when we simulate a display that supports doze.
2361struct DozeIsSupportedVariant {
2362 static constexpr bool DOZE_SUPPORTED = true;
2363 static constexpr IComposerClient::PowerMode ACTUAL_POWER_MODE_FOR_DOZE =
2364 IComposerClient::PowerMode::DOZE;
2365 static constexpr IComposerClient::PowerMode ACTUAL_POWER_MODE_FOR_DOZE_SUSPEND =
2366 IComposerClient::PowerMode::DOZE_SUSPEND;
2367};
2368
2369// Used when we simulate a display that does not support doze.
2370struct DozeNotSupportedVariant {
2371 static constexpr bool DOZE_SUPPORTED = false;
2372 static constexpr IComposerClient::PowerMode ACTUAL_POWER_MODE_FOR_DOZE =
2373 IComposerClient::PowerMode::ON;
2374 static constexpr IComposerClient::PowerMode ACTUAL_POWER_MODE_FOR_DOZE_SUSPEND =
2375 IComposerClient::PowerMode::ON;
2376};
2377
2378struct EventThreadBaseSupportedVariant {
2379 static void setupEventAndEventControlThreadNoCallExpectations(DisplayTransactionTest* test) {
2380 // The event control thread should not be notified.
2381 EXPECT_CALL(*test->mEventControlThread, setVsyncEnabled(_)).Times(0);
2382
2383 // The event thread should not be notified.
2384 EXPECT_CALL(*test->mEventThread, onScreenReleased()).Times(0);
2385 EXPECT_CALL(*test->mEventThread, onScreenAcquired()).Times(0);
2386 }
2387};
2388
2389struct EventThreadNotSupportedVariant : public EventThreadBaseSupportedVariant {
2390 static void setupAcquireAndEnableVsyncCallExpectations(DisplayTransactionTest* test) {
2391 // These calls are only expected for the primary display.
2392
2393 // Instead expect no calls.
2394 setupEventAndEventControlThreadNoCallExpectations(test);
2395 }
2396
2397 static void setupReleaseAndDisableVsyncCallExpectations(DisplayTransactionTest* test) {
2398 // These calls are only expected for the primary display.
2399
2400 // Instead expect no calls.
2401 setupEventAndEventControlThreadNoCallExpectations(test);
2402 }
2403};
2404
2405struct EventThreadIsSupportedVariant : public EventThreadBaseSupportedVariant {
2406 static void setupAcquireAndEnableVsyncCallExpectations(DisplayTransactionTest* test) {
2407 // The event control thread should be notified to enable vsyncs
2408 EXPECT_CALL(*test->mEventControlThread, setVsyncEnabled(true)).Times(1);
2409
2410 // The event thread should be notified that the screen was acquired.
2411 EXPECT_CALL(*test->mEventThread, onScreenAcquired()).Times(1);
2412 }
2413
2414 static void setupReleaseAndDisableVsyncCallExpectations(DisplayTransactionTest* test) {
2415 // There should be a call to setVsyncEnabled(false)
2416 EXPECT_CALL(*test->mEventControlThread, setVsyncEnabled(false)).Times(1);
2417
2418 // The event thread should not be notified that the screen was released.
2419 EXPECT_CALL(*test->mEventThread, onScreenReleased()).Times(1);
2420 }
2421};
2422
2423// --------------------------------------------------------------------
2424// Note:
2425//
2426// There are a large number of transitions we could test, however we only test a
2427// selected subset which provides complete test coverage of the implementation.
2428// --------------------------------------------------------------------
2429
2430template <int initialPowerMode, int targetPowerMode>
2431struct TransitionVariantCommon {
2432 static constexpr auto INITIAL_POWER_MODE = initialPowerMode;
2433 static constexpr auto TARGET_POWER_MODE = targetPowerMode;
2434
2435 static void verifyPostconditions(DisplayTransactionTest*) {}
2436};
2437
2438struct TransitionOffToOnVariant
2439 : public TransitionVariantCommon<HWC_POWER_MODE_OFF, HWC_POWER_MODE_NORMAL> {
2440 template <typename Case>
2441 static void setupCallExpectations(DisplayTransactionTest* test) {
2442 Case::setupComposerCallExpectations(test, IComposerClient::PowerMode::ON);
2443 Case::EventThread::setupAcquireAndEnableVsyncCallExpectations(test);
2444 Case::setupRepaintEverythingCallExpectations(test);
2445 }
2446
2447 static void verifyPostconditions(DisplayTransactionTest* test) {
2448 EXPECT_TRUE(test->mFlinger.getVisibleRegionsDirty());
2449 EXPECT_TRUE(test->mFlinger.getHasPoweredOff());
2450 }
2451};
2452
2453struct TransitionOffToDozeSuspendVariant
2454 : public TransitionVariantCommon<HWC_POWER_MODE_OFF, HWC_POWER_MODE_DOZE_SUSPEND> {
2455 template <typename Case>
2456 static void setupCallExpectations(DisplayTransactionTest* test) {
2457 Case::setupComposerCallExpectations(test, Case::Doze::ACTUAL_POWER_MODE_FOR_DOZE_SUSPEND);
2458 Case::EventThread::setupEventAndEventControlThreadNoCallExpectations(test);
2459 Case::setupRepaintEverythingCallExpectations(test);
2460 }
2461
2462 static void verifyPostconditions(DisplayTransactionTest* test) {
2463 EXPECT_TRUE(test->mFlinger.getVisibleRegionsDirty());
2464 EXPECT_TRUE(test->mFlinger.getHasPoweredOff());
2465 }
2466};
2467
2468struct TransitionOnToOffVariant
2469 : public TransitionVariantCommon<HWC_POWER_MODE_NORMAL, HWC_POWER_MODE_OFF> {
2470 template <typename Case>
2471 static void setupCallExpectations(DisplayTransactionTest* test) {
2472 Case::EventThread::setupReleaseAndDisableVsyncCallExpectations(test);
2473 Case::setupComposerCallExpectations(test, IComposerClient::PowerMode::OFF);
2474 }
2475
2476 static void verifyPostconditions(DisplayTransactionTest* test) {
2477 EXPECT_TRUE(test->mFlinger.getVisibleRegionsDirty());
2478 }
2479};
2480
2481struct TransitionDozeSuspendToOffVariant
2482 : public TransitionVariantCommon<HWC_POWER_MODE_DOZE_SUSPEND, HWC_POWER_MODE_OFF> {
2483 template <typename Case>
2484 static void setupCallExpectations(DisplayTransactionTest* test) {
2485 Case::EventThread::setupEventAndEventControlThreadNoCallExpectations(test);
2486 Case::setupComposerCallExpectations(test, IComposerClient::PowerMode::OFF);
2487 }
2488
2489 static void verifyPostconditions(DisplayTransactionTest* test) {
2490 EXPECT_TRUE(test->mFlinger.getVisibleRegionsDirty());
2491 }
2492};
2493
2494struct TransitionOnToDozeVariant
2495 : public TransitionVariantCommon<HWC_POWER_MODE_NORMAL, HWC_POWER_MODE_DOZE> {
2496 template <typename Case>
2497 static void setupCallExpectations(DisplayTransactionTest* test) {
2498 Case::EventThread::setupEventAndEventControlThreadNoCallExpectations(test);
2499 Case::setupComposerCallExpectations(test, Case::Doze::ACTUAL_POWER_MODE_FOR_DOZE);
2500 }
2501};
2502
2503struct TransitionDozeSuspendToDozeVariant
2504 : public TransitionVariantCommon<HWC_POWER_MODE_DOZE_SUSPEND, HWC_POWER_MODE_DOZE> {
2505 template <typename Case>
2506 static void setupCallExpectations(DisplayTransactionTest* test) {
2507 Case::EventThread::setupAcquireAndEnableVsyncCallExpectations(test);
2508 Case::setupComposerCallExpectations(test, Case::Doze::ACTUAL_POWER_MODE_FOR_DOZE);
2509 }
2510};
2511
2512struct TransitionDozeToOnVariant
2513 : public TransitionVariantCommon<HWC_POWER_MODE_DOZE, HWC_POWER_MODE_NORMAL> {
2514 template <typename Case>
2515 static void setupCallExpectations(DisplayTransactionTest* test) {
2516 Case::EventThread::setupEventAndEventControlThreadNoCallExpectations(test);
2517 Case::setupComposerCallExpectations(test, IComposerClient::PowerMode::ON);
2518 }
2519};
2520
2521struct TransitionDozeSuspendToOnVariant
2522 : public TransitionVariantCommon<HWC_POWER_MODE_DOZE_SUSPEND, HWC_POWER_MODE_NORMAL> {
2523 template <typename Case>
2524 static void setupCallExpectations(DisplayTransactionTest* test) {
2525 Case::EventThread::setupAcquireAndEnableVsyncCallExpectations(test);
2526 Case::setupComposerCallExpectations(test, IComposerClient::PowerMode::ON);
2527 }
2528};
2529
2530struct TransitionOnToDozeSuspendVariant
2531 : public TransitionVariantCommon<HWC_POWER_MODE_NORMAL, HWC_POWER_MODE_DOZE_SUSPEND> {
2532 template <typename Case>
2533 static void setupCallExpectations(DisplayTransactionTest* test) {
2534 Case::EventThread::setupReleaseAndDisableVsyncCallExpectations(test);
2535 Case::setupComposerCallExpectations(test, Case::Doze::ACTUAL_POWER_MODE_FOR_DOZE_SUSPEND);
2536 }
2537};
2538
2539struct TransitionOnToUnknownVariant
2540 : public TransitionVariantCommon<HWC_POWER_MODE_NORMAL, HWC_POWER_MODE_LEET> {
2541 template <typename Case>
2542 static void setupCallExpectations(DisplayTransactionTest* test) {
2543 Case::EventThread::setupEventAndEventControlThreadNoCallExpectations(test);
2544 Case::setupNoComposerPowerModeCallExpectations(test);
2545 }
2546};
2547
2548// --------------------------------------------------------------------
2549// Note:
2550//
2551// Rather than testing the cartesian product of of
2552// DozeIsSupported/DozeNotSupported with all other options, we use one for one
2553// display type, and the other for another display type.
2554// --------------------------------------------------------------------
2555
2556template <typename DisplayVariant, typename DozeVariant, typename EventThreadVariant,
2557 typename TransitionVariant>
2558struct DisplayPowerCase {
2559 using Display = DisplayVariant;
2560 using Doze = DozeVariant;
2561 using EventThread = EventThreadVariant;
2562 using Transition = TransitionVariant;
2563
2564 static auto injectDisplayWithInitialPowerMode(DisplayTransactionTest* test, int mode) {
2565 Display::injectHwcDisplay(test);
2566 auto display = Display::makeFakeExistingDisplayInjector(test);
2567 display.inject();
2568 display.mutableDisplayDevice()->setPowerMode(mode);
2569 return display;
2570 }
2571
2572 static void setInitialPrimaryHWVsyncEnabled(DisplayTransactionTest* test, bool enabled) {
2573 test->mFlinger.mutablePrimaryHWVsyncEnabled() = enabled;
2574 }
2575
2576 static void setupRepaintEverythingCallExpectations(DisplayTransactionTest* test) {
2577 EXPECT_CALL(*test->mMessageQueue, invalidate()).Times(1);
2578 }
2579
2580 static void setupSurfaceInterceptorCallExpectations(DisplayTransactionTest* test, int mode) {
2581 EXPECT_CALL(*test->mSurfaceInterceptor, isEnabled()).WillOnce(Return(true));
2582 EXPECT_CALL(*test->mSurfaceInterceptor, savePowerModeUpdate(_, mode)).Times(1);
2583 }
2584
2585 static void setupComposerCallExpectations(DisplayTransactionTest* test,
2586 IComposerClient::PowerMode mode) {
2587 // Any calls to get the active config will return a default value.
2588 EXPECT_CALL(*test->mComposer, getActiveConfig(Display::HWC_DISPLAY_ID, _))
2589 .WillRepeatedly(DoAll(SetArgPointee<1>(Display::HWC_ACTIVE_CONFIG_ID),
2590 Return(Error::NONE)));
2591
2592 // Any calls to get whether the display supports dozing will return the value set by the
2593 // policy variant.
2594 EXPECT_CALL(*test->mComposer, getDozeSupport(Display::HWC_DISPLAY_ID, _))
2595 .WillRepeatedly(DoAll(SetArgPointee<1>(Doze::DOZE_SUPPORTED), Return(Error::NONE)));
2596
2597 EXPECT_CALL(*test->mComposer, setPowerMode(Display::HWC_DISPLAY_ID, mode)).Times(1);
2598 }
2599
2600 static void setupNoComposerPowerModeCallExpectations(DisplayTransactionTest* test) {
2601 EXPECT_CALL(*test->mComposer, setPowerMode(Display::HWC_DISPLAY_ID, _)).Times(0);
2602 }
2603};
2604
2605// A sample configuration for the primary display.
2606// In addition to having event thread support, we emulate doze support.
2607template <typename TransitionVariant>
2608using PrimaryDisplayPowerCase = DisplayPowerCase<PrimaryDisplayVariant, DozeIsSupportedVariant,
2609 EventThreadIsSupportedVariant, TransitionVariant>;
2610
2611// A sample configuration for the external display.
2612// In addition to not having event thread support, we emulate not having doze
2613// support.
2614template <typename TransitionVariant>
2615using ExternalDisplayPowerCase =
2616 DisplayPowerCase<ExternalDisplayVariant, DozeNotSupportedVariant,
2617 EventThreadNotSupportedVariant, TransitionVariant>;
2618
2619class SetPowerModeInternalTest : public DisplayTransactionTest {
2620public:
2621 template <typename Case>
2622 void transitionDisplayCommon();
2623};
2624
2625template <int PowerMode>
2626struct PowerModeInitialVSyncEnabled : public std::false_type {};
2627
2628template <>
2629struct PowerModeInitialVSyncEnabled<HWC_POWER_MODE_NORMAL> : public std::true_type {};
2630
2631template <>
2632struct PowerModeInitialVSyncEnabled<HWC_POWER_MODE_DOZE> : public std::true_type {};
2633
2634template <typename Case>
2635void SetPowerModeInternalTest::transitionDisplayCommon() {
2636 // --------------------------------------------------------------------
2637 // Preconditions
2638
2639 auto display =
2640 Case::injectDisplayWithInitialPowerMode(this, Case::Transition::INITIAL_POWER_MODE);
2641 Case::setInitialPrimaryHWVsyncEnabled(this,
2642 PowerModeInitialVSyncEnabled<
2643 Case::Transition::INITIAL_POWER_MODE>::value);
2644
2645 // --------------------------------------------------------------------
2646 // Call Expectations
2647
2648 Case::setupSurfaceInterceptorCallExpectations(this, Case::Transition::TARGET_POWER_MODE);
2649 Case::Transition::template setupCallExpectations<Case>(this);
2650
2651 // --------------------------------------------------------------------
2652 // Invocation
2653
2654 mFlinger.setPowerModeInternal(display.mutableDisplayDevice(),
2655 Case::Transition::TARGET_POWER_MODE);
2656
2657 // --------------------------------------------------------------------
2658 // Postconditions
2659
2660 Case::Transition::verifyPostconditions(this);
2661}
2662
2663TEST_F(SetPowerModeInternalTest, setPowerModeInternalDoesNothingIfNoChange) {
2664 using Case = SimplePrimaryDisplayCase;
2665
2666 // --------------------------------------------------------------------
2667 // Preconditions
2668
2669 // A primary display device is set up
2670 Case::Display::injectHwcDisplay(this);
2671 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2672 display.inject();
2673
2674 // The diplay is already set to HWC_POWER_MODE_NORMAL
2675 display.mutableDisplayDevice()->setPowerMode(HWC_POWER_MODE_NORMAL);
2676
2677 // --------------------------------------------------------------------
2678 // Invocation
2679
2680 mFlinger.setPowerModeInternal(display.mutableDisplayDevice(), HWC_POWER_MODE_NORMAL);
2681
2682 // --------------------------------------------------------------------
2683 // Postconditions
2684
2685 EXPECT_EQ(HWC_POWER_MODE_NORMAL, display.mutableDisplayDevice()->getPowerMode());
2686}
2687
2688TEST_F(SetPowerModeInternalTest, setPowerModeInternalJustSetsInternalStateIfVirtualDisplay) {
2689 using Case = HwcVirtualDisplayCase;
2690
2691 // --------------------------------------------------------------------
2692 // Preconditions
2693
2694 // We need to resize this so that the HWC thinks the virtual display
2695 // is something it created.
2696 mFlinger.mutableHwcDisplayData().resize(3);
2697
2698 // A virtual display device is set up
2699 Case::Display::injectHwcDisplay(this);
2700 auto display = Case::Display::makeFakeExistingDisplayInjector(this);
2701 display.inject();
2702
2703 // The display is set to HWC_POWER_MODE_OFF
2704 getDisplayDevice(display.token())->setPowerMode(HWC_POWER_MODE_OFF);
2705
2706 // --------------------------------------------------------------------
2707 // Invocation
2708
2709 mFlinger.setPowerModeInternal(display.mutableDisplayDevice(), HWC_POWER_MODE_NORMAL);
2710
2711 // --------------------------------------------------------------------
2712 // Postconditions
2713
2714 EXPECT_EQ(HWC_POWER_MODE_NORMAL, display.mutableDisplayDevice()->getPowerMode());
2715}
2716
2717TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOffToOnPrimaryDisplay) {
2718 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionOffToOnVariant>>();
2719}
2720
2721TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOffToDozeSuspendPrimaryDisplay) {
2722 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionOffToDozeSuspendVariant>>();
2723}
2724
2725TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOnToOffPrimaryDisplay) {
2726 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionOnToOffVariant>>();
2727}
2728
2729TEST_F(SetPowerModeInternalTest, transitionsDisplayFromDozeSuspendToOffPrimaryDisplay) {
2730 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionDozeSuspendToOffVariant>>();
2731}
2732
2733TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOnToDozePrimaryDisplay) {
2734 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionOnToDozeVariant>>();
2735}
2736
2737TEST_F(SetPowerModeInternalTest, transitionsDisplayFromDozeSuspendToDozePrimaryDisplay) {
2738 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionDozeSuspendToDozeVariant>>();
2739}
2740
2741TEST_F(SetPowerModeInternalTest, transitionsDisplayFromDozeToOnPrimaryDisplay) {
2742 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionDozeToOnVariant>>();
2743}
2744
2745TEST_F(SetPowerModeInternalTest, transitionsDisplayFromDozeSuspendToOnPrimaryDisplay) {
2746 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionDozeSuspendToOnVariant>>();
2747}
2748
2749TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOnToDozeSuspendPrimaryDisplay) {
2750 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionOnToDozeSuspendVariant>>();
2751}
2752
2753TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOnToUnknownPrimaryDisplay) {
2754 transitionDisplayCommon<PrimaryDisplayPowerCase<TransitionOnToUnknownVariant>>();
2755}
2756
2757TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOffToOnExternalDisplay) {
2758 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionOffToOnVariant>>();
2759}
2760
2761TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOffToDozeSuspendExternalDisplay) {
2762 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionOffToDozeSuspendVariant>>();
2763}
2764
2765TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOnToOffExternalDisplay) {
2766 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionOnToOffVariant>>();
2767}
2768
2769TEST_F(SetPowerModeInternalTest, transitionsDisplayFromDozeSuspendToOffExternalDisplay) {
2770 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionDozeSuspendToOffVariant>>();
2771}
2772
2773TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOnToDozeExternalDisplay) {
2774 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionOnToDozeVariant>>();
2775}
2776
2777TEST_F(SetPowerModeInternalTest, transitionsDisplayFromDozeSuspendToDozeExternalDisplay) {
2778 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionDozeSuspendToDozeVariant>>();
2779}
2780
2781TEST_F(SetPowerModeInternalTest, transitionsDisplayFromDozeToOnExternalDisplay) {
2782 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionDozeToOnVariant>>();
2783}
2784
2785TEST_F(SetPowerModeInternalTest, transitionsDisplayFromDozeSuspendToOnExternalDisplay) {
2786 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionDozeSuspendToOnVariant>>();
2787}
2788
2789TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOnToDozeSuspendExternalDisplay) {
2790 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionOnToDozeSuspendVariant>>();
2791}
2792
2793TEST_F(SetPowerModeInternalTest, transitionsDisplayFromOnToUnknownExternalDisplay) {
2794 transitionDisplayCommon<ExternalDisplayPowerCase<TransitionOnToUnknownVariant>>();
2795}
2796
Lloyd Piquef58625d2017-12-19 13:22:33 -08002797} // namespace
2798} // namespace android