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Marin Shalamanov07b1ff32020-10-07 16:57:22 +02001/*
2 * Copyright 2020 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17#pragma once
18
19// TODO(b/129481165): remove the #pragma below and fix conversion issues
20#pragma clang diagnostic push
21#pragma clang diagnostic ignored "-Wconversion"
Marin Shalamanovbed7fd32020-12-21 20:02:20 +010022#pragma clang diagnostic ignored "-Wextra"
Marin Shalamanov07b1ff32020-10-07 16:57:22 +020023
24#include <type_traits>
25#include "DisplayIdentificationTest.h"
26
27#include <binder/IPCThreadState.h>
28#include <compositionengine/Display.h>
29#include <compositionengine/DisplayColorProfile.h>
30#include <compositionengine/impl/Display.h>
31#include <compositionengine/impl/OutputCompositionState.h>
32#include <compositionengine/mock/Display.h>
33#include <compositionengine/mock/DisplayColorProfile.h>
34#include <compositionengine/mock/DisplaySurface.h>
35#include <compositionengine/mock/RenderSurface.h>
36#include <gmock/gmock.h>
37#include <gtest/gtest.h>
38#include <gui/mock/GraphicBufferConsumer.h>
39#include <gui/mock/GraphicBufferProducer.h>
40#include <log/log.h>
41#include <private/android_filesystem_config.h>
42#include <renderengine/mock/RenderEngine.h>
43#include <ui/DebugUtils.h>
44
45#include "TestableScheduler.h"
46#include "TestableSurfaceFlinger.h"
47#include "mock/DisplayHardware/MockComposer.h"
48#include "mock/DisplayHardware/MockPowerAdvisor.h"
49#include "mock/MockEventThread.h"
50#include "mock/MockMessageQueue.h"
51#include "mock/MockNativeWindowSurface.h"
52#include "mock/MockSchedulerCallback.h"
53#include "mock/MockSurfaceInterceptor.h"
54#include "mock/MockVsyncController.h"
55#include "mock/system/window/MockNativeWindow.h"
56
57namespace android {
58
59// TODO: Do not polute the android namespace
60namespace hal = android::hardware::graphics::composer::hal;
61
62using testing::_;
63using testing::AnyNumber;
64using testing::DoAll;
65using testing::Mock;
66using testing::ResultOf;
67using testing::Return;
68using testing::SetArgPointee;
69
70using hal::ColorMode;
71using hal::Connection;
72using hal::DisplayCapability;
73using hal::DisplayType;
74using hal::Error;
75using hal::Hdr;
76using hal::HWDisplayId;
77using hal::IComposer;
78using hal::IComposerClient;
79using hal::PerFrameMetadataKey;
80using hal::PowerMode;
81
82class DisplayTransactionTest : public testing::Test {
83public:
84 ~DisplayTransactionTest() override;
85
86 // --------------------------------------------------------------------
87 // Mock/Fake injection
88
89 void injectMockScheduler();
90 void injectMockComposer(int virtualDisplayCount);
91 void injectFakeBufferQueueFactory();
92 void injectFakeNativeWindowSurfaceFactory();
93 sp<DisplayDevice> injectDefaultInternalDisplay(
94 std::function<void(TestableSurfaceFlinger::FakeDisplayDeviceInjector&)>);
95
96 // --------------------------------------------------------------------
97 // Postcondition helpers
98
99 bool hasPhysicalHwcDisplay(hal::HWDisplayId hwcDisplayId);
100 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
110
111 TestableSurfaceFlinger mFlinger;
112 sp<mock::NativeWindow> mNativeWindow = new mock::NativeWindow();
113 sp<GraphicBuffer> mBuffer = new GraphicBuffer();
114 Hwc2::mock::PowerAdvisor mPowerAdvisor;
115
116 // These mocks are created by the test, but are destroyed by SurfaceFlinger
117 // by virtue of being stored into a std::unique_ptr. However we still need
118 // to keep a reference to them for use in setting up call expectations.
119 renderengine::mock::RenderEngine* mRenderEngine = new renderengine::mock::RenderEngine();
120 Hwc2::mock::Composer* mComposer = nullptr;
121 mock::MessageQueue* mMessageQueue = new mock::MessageQueue();
122 sp<mock::SurfaceInterceptor> mSurfaceInterceptor = new mock::SurfaceInterceptor;
123
124 mock::VsyncController* mVsyncController = new mock::VsyncController;
125 mock::VSyncTracker* mVSyncTracker = new mock::VSyncTracker;
126 mock::SchedulerCallback mSchedulerCallback;
127 mock::EventThread* mEventThread = new mock::EventThread;
128 mock::EventThread* mSFEventThread = new mock::EventThread;
129
130 // These mocks are created only when expected to be created via a factory.
131 sp<mock::GraphicBufferConsumer> mConsumer;
132 sp<mock::GraphicBufferProducer> mProducer;
133 surfaceflinger::mock::NativeWindowSurface* mNativeWindowSurface = nullptr;
134
135protected:
136 DisplayTransactionTest();
137};
138
Marin Shalamanova903d032020-12-29 20:35:13 +0100139constexpr int32_t DEFAULT_VSYNC_PERIOD = 16'666'667;
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200140constexpr int32_t DEFAULT_DPI = 320;
141constexpr int DEFAULT_VIRTUAL_DISPLAY_SURFACE_FORMAT = HAL_PIXEL_FORMAT_RGB_565;
142
143constexpr int POWER_MODE_LEET = 1337; // An out of range power mode value
144
145/* ------------------------------------------------------------------------
146 * Boolean avoidance
147 *
148 * To make calls and template instantiations more readable, we define some
149 * local enums along with an implicit bool conversion.
150 */
151
152#define BOOL_SUBSTITUTE(TYPENAME) enum class TYPENAME : bool { FALSE = false, TRUE = true };
153
154BOOL_SUBSTITUTE(Async);
155BOOL_SUBSTITUTE(Critical);
156BOOL_SUBSTITUTE(Primary);
157BOOL_SUBSTITUTE(Secure);
158BOOL_SUBSTITUTE(Virtual);
159
160template <typename PhysicalDisplay>
161struct PhysicalDisplayIdType {};
162
163template <uint64_t displayId>
164using HalVirtualDisplayIdType = std::integral_constant<uint64_t, displayId>;
165
166struct GpuVirtualDisplayIdType {};
167
168template <typename>
169struct IsPhysicalDisplayId : std::bool_constant<false> {};
170
171template <typename PhysicalDisplay>
172struct IsPhysicalDisplayId<PhysicalDisplayIdType<PhysicalDisplay>> : std::bool_constant<true> {};
173
174template <typename>
175struct DisplayIdGetter;
176
177template <typename PhysicalDisplay>
178struct DisplayIdGetter<PhysicalDisplayIdType<PhysicalDisplay>> {
179 static PhysicalDisplayId get() {
180 if (!PhysicalDisplay::HAS_IDENTIFICATION_DATA) {
181 return PhysicalDisplayId::fromPort(static_cast<bool>(PhysicalDisplay::PRIMARY)
182 ? LEGACY_DISPLAY_TYPE_PRIMARY
183 : LEGACY_DISPLAY_TYPE_EXTERNAL);
184 }
185
186 const auto info =
187 parseDisplayIdentificationData(PhysicalDisplay::PORT,
188 PhysicalDisplay::GET_IDENTIFICATION_DATA());
189 return info ? info->id : PhysicalDisplayId::fromPort(PhysicalDisplay::PORT);
190 }
191};
192
193template <uint64_t displayId>
194struct DisplayIdGetter<HalVirtualDisplayIdType<displayId>> {
195 static HalVirtualDisplayId get() { return HalVirtualDisplayId(displayId); }
196};
197
198template <>
199struct DisplayIdGetter<GpuVirtualDisplayIdType> {
200 static GpuVirtualDisplayId get() { return GpuVirtualDisplayId(0); }
201};
202
203template <typename>
204struct DisplayConnectionTypeGetter {
Marin Shalamanov228f46b2021-01-28 21:11:45 +0100205 static constexpr std::optional<ui::DisplayConnectionType> value;
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200206};
207
208template <typename PhysicalDisplay>
209struct DisplayConnectionTypeGetter<PhysicalDisplayIdType<PhysicalDisplay>> {
Marin Shalamanov228f46b2021-01-28 21:11:45 +0100210 static constexpr std::optional<ui::DisplayConnectionType> value =
211 PhysicalDisplay::CONNECTION_TYPE;
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200212};
213
214template <typename>
215struct HwcDisplayIdGetter {
216 static constexpr std::optional<HWDisplayId> value;
217};
218
219constexpr HWDisplayId HWC_VIRTUAL_DISPLAY_HWC_DISPLAY_ID = 1010;
220
221template <uint64_t displayId>
222struct HwcDisplayIdGetter<HalVirtualDisplayIdType<displayId>> {
223 static constexpr std::optional<HWDisplayId> value = HWC_VIRTUAL_DISPLAY_HWC_DISPLAY_ID;
224};
225
226template <typename PhysicalDisplay>
227struct HwcDisplayIdGetter<PhysicalDisplayIdType<PhysicalDisplay>> {
228 static constexpr std::optional<HWDisplayId> value = PhysicalDisplay::HWC_DISPLAY_ID;
229};
230
231// DisplayIdType can be:
232// 1) PhysicalDisplayIdType<...> for generated ID of physical display backed by HWC.
233// 2) HalVirtualDisplayIdType<...> for hard-coded ID of virtual display backed by HWC.
234// 3) GpuVirtualDisplayIdType for virtual display without HWC backing.
235template <typename DisplayIdType, int width, int height, Critical critical, Async async,
236 Secure secure, Primary primary, int grallocUsage>
237struct DisplayVariant {
238 using DISPLAY_ID = DisplayIdGetter<DisplayIdType>;
239 using CONNECTION_TYPE = DisplayConnectionTypeGetter<DisplayIdType>;
240 using HWC_DISPLAY_ID_OPT = HwcDisplayIdGetter<DisplayIdType>;
241
242 // The display width and height
243 static constexpr int WIDTH = width;
244 static constexpr int HEIGHT = height;
245
246 static constexpr int GRALLOC_USAGE = grallocUsage;
247
248 // Whether the display is virtual or physical
249 static constexpr Virtual VIRTUAL =
250 IsPhysicalDisplayId<DisplayIdType>{} ? Virtual::FALSE : Virtual::TRUE;
251
252 // When creating native window surfaces for the framebuffer, whether those should be critical
253 static constexpr Critical CRITICAL = critical;
254
255 // When creating native window surfaces for the framebuffer, whether those should be async
256 static constexpr Async ASYNC = async;
257
258 // Whether the display should be treated as secure
259 static constexpr Secure SECURE = secure;
260
261 // Whether the display is primary
262 static constexpr Primary PRIMARY = primary;
263
264 static auto makeFakeExistingDisplayInjector(DisplayTransactionTest* test) {
265 auto ceDisplayArgs = compositionengine::DisplayCreationArgsBuilder();
Dominik Laskowski13948602021-03-08 20:48:28 -0800266 ceDisplayArgs.setId(DISPLAY_ID::get())
267 .setPixels({WIDTH, HEIGHT})
268 .setPowerAdvisor(&test->mPowerAdvisor);
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200269
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200270 auto compositionDisplay =
271 compositionengine::impl::createDisplay(test->mFlinger.getCompositionEngine(),
272 ceDisplayArgs.build());
273
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200274 auto injector =
275 TestableSurfaceFlinger::FakeDisplayDeviceInjector(test->mFlinger,
276 compositionDisplay,
Dominik Laskowski29fa1462021-04-27 15:51:50 -0700277 CONNECTION_TYPE::value,
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200278 HWC_DISPLAY_ID_OPT::value,
279 static_cast<bool>(PRIMARY));
280
281 injector.setSecure(static_cast<bool>(SECURE));
282 injector.setNativeWindow(test->mNativeWindow);
283
284 // Creating a DisplayDevice requires getting default dimensions from the
285 // native window along with some other initial setup.
286 EXPECT_CALL(*test->mNativeWindow, query(NATIVE_WINDOW_WIDTH, _))
287 .WillRepeatedly(DoAll(SetArgPointee<1>(WIDTH), Return(0)));
288 EXPECT_CALL(*test->mNativeWindow, query(NATIVE_WINDOW_HEIGHT, _))
289 .WillRepeatedly(DoAll(SetArgPointee<1>(HEIGHT), Return(0)));
290 EXPECT_CALL(*test->mNativeWindow, perform(NATIVE_WINDOW_SET_BUFFERS_FORMAT))
291 .WillRepeatedly(Return(0));
292 EXPECT_CALL(*test->mNativeWindow, perform(NATIVE_WINDOW_API_CONNECT))
293 .WillRepeatedly(Return(0));
294 EXPECT_CALL(*test->mNativeWindow, perform(NATIVE_WINDOW_SET_USAGE64))
295 .WillRepeatedly(Return(0));
296 EXPECT_CALL(*test->mNativeWindow, perform(NATIVE_WINDOW_API_DISCONNECT))
297 .WillRepeatedly(Return(0));
298
299 return injector;
300 }
301
302 // Called by tests to set up any native window creation call expectations.
303 static void setupNativeWindowSurfaceCreationCallExpectations(DisplayTransactionTest* test) {
304 EXPECT_CALL(*test->mNativeWindowSurface, getNativeWindow())
305 .WillOnce(Return(test->mNativeWindow));
306
307 EXPECT_CALL(*test->mNativeWindow, query(NATIVE_WINDOW_WIDTH, _))
308 .WillRepeatedly(DoAll(SetArgPointee<1>(WIDTH), Return(0)));
309 EXPECT_CALL(*test->mNativeWindow, query(NATIVE_WINDOW_HEIGHT, _))
310 .WillRepeatedly(DoAll(SetArgPointee<1>(HEIGHT), Return(0)));
311 EXPECT_CALL(*test->mNativeWindow, perform(NATIVE_WINDOW_SET_BUFFERS_FORMAT))
312 .WillRepeatedly(Return(0));
313 EXPECT_CALL(*test->mNativeWindow, perform(NATIVE_WINDOW_API_CONNECT))
314 .WillRepeatedly(Return(0));
315 EXPECT_CALL(*test->mNativeWindow, perform(NATIVE_WINDOW_SET_USAGE64))
316 .WillRepeatedly(Return(0));
317 EXPECT_CALL(*test->mNativeWindow, perform(NATIVE_WINDOW_API_DISCONNECT))
318 .WillRepeatedly(Return(0));
319 }
320
321 static void setupFramebufferConsumerBufferQueueCallExpectations(DisplayTransactionTest* test) {
322 EXPECT_CALL(*test->mConsumer, consumerConnect(_, false)).WillOnce(Return(NO_ERROR));
323 EXPECT_CALL(*test->mConsumer, setConsumerName(_)).WillRepeatedly(Return(NO_ERROR));
324 EXPECT_CALL(*test->mConsumer, setConsumerUsageBits(GRALLOC_USAGE))
325 .WillRepeatedly(Return(NO_ERROR));
326 EXPECT_CALL(*test->mConsumer, setDefaultBufferSize(WIDTH, HEIGHT))
327 .WillRepeatedly(Return(NO_ERROR));
328 EXPECT_CALL(*test->mConsumer, setMaxAcquiredBufferCount(_))
329 .WillRepeatedly(Return(NO_ERROR));
330 }
331
332 static void setupFramebufferProducerBufferQueueCallExpectations(DisplayTransactionTest* test) {
333 EXPECT_CALL(*test->mProducer, allocateBuffers(0, 0, 0, 0)).WillRepeatedly(Return());
334 }
335};
336
337template <HWDisplayId hwcDisplayId, DisplayType hwcDisplayType, typename DisplayVariant,
338 typename PhysicalDisplay = void>
339struct HwcDisplayVariant {
340 // The display id supplied by the HWC
341 static constexpr HWDisplayId HWC_DISPLAY_ID = hwcDisplayId;
342
343 // The HWC display type
344 static constexpr DisplayType HWC_DISPLAY_TYPE = hwcDisplayType;
345
346 // The HWC active configuration id
Marin Shalamanov6e840172020-12-14 22:13:28 +0100347 static constexpr hal::HWConfigId HWC_ACTIVE_CONFIG_ID = 2001;
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200348 static constexpr PowerMode INIT_POWER_MODE = hal::PowerMode::ON;
349
350 static void injectPendingHotplugEvent(DisplayTransactionTest* test, Connection connection) {
351 test->mFlinger.mutablePendingHotplugEvents().emplace_back(
352 TestableSurfaceFlinger::HotplugEvent{HWC_DISPLAY_ID, connection});
353 }
354
355 // Called by tests to inject a HWC display setup
356 static void injectHwcDisplayWithNoDefaultCapabilities(DisplayTransactionTest* test) {
357 const auto displayId = DisplayVariant::DISPLAY_ID::get();
358 ASSERT_FALSE(GpuVirtualDisplayId::tryCast(displayId));
359 TestableSurfaceFlinger::FakeHwcDisplayInjector(displayId, HWC_DISPLAY_TYPE,
360 static_cast<bool>(DisplayVariant::PRIMARY))
361 .setHwcDisplayId(HWC_DISPLAY_ID)
362 .setWidth(DisplayVariant::WIDTH)
363 .setHeight(DisplayVariant::HEIGHT)
364 .setActiveConfig(HWC_ACTIVE_CONFIG_ID)
365 .setPowerMode(INIT_POWER_MODE)
366 .inject(&test->mFlinger, test->mComposer);
367 }
368
369 // Called by tests to inject a HWC display setup
370 static void injectHwcDisplay(DisplayTransactionTest* test) {
371 EXPECT_CALL(*test->mComposer, getDisplayCapabilities(HWC_DISPLAY_ID, _))
372 .WillOnce(DoAll(SetArgPointee<1>(std::vector<DisplayCapability>({})),
373 Return(Error::NONE)));
374 EXPECT_CALL(*test->mComposer, setPowerMode(HWC_DISPLAY_ID, INIT_POWER_MODE))
375 .WillOnce(Return(Error::NONE));
376 injectHwcDisplayWithNoDefaultCapabilities(test);
377 }
378
379 static std::shared_ptr<compositionengine::Display> injectCompositionDisplay(
380 DisplayTransactionTest* test) {
381 const ::testing::TestInfo* const test_info =
382 ::testing::UnitTest::GetInstance()->current_test_info();
383
384 auto ceDisplayArgs = compositionengine::DisplayCreationArgsBuilder()
Dominik Laskowski13948602021-03-08 20:48:28 -0800385 .setId(DisplayVariant::DISPLAY_ID::get())
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200386 .setPixels({DisplayVariant::WIDTH, DisplayVariant::HEIGHT})
387 .setIsSecure(static_cast<bool>(DisplayVariant::SECURE))
388 .setPowerAdvisor(&test->mPowerAdvisor)
389 .setName(std::string("Injected display for ") +
390 test_info->test_case_name() + "." + test_info->name())
391 .build();
392
393 return compositionengine::impl::createDisplay(test->mFlinger.getCompositionEngine(),
394 ceDisplayArgs);
395 }
396
Marin Shalamanov6e840172020-12-14 22:13:28 +0100397 static void setupHwcGetConfigsCallExpectations(DisplayTransactionTest* test) {
398 if (HWC_DISPLAY_TYPE == DisplayType::PHYSICAL) {
399 EXPECT_CALL(*test->mComposer, getDisplayConfigs(HWC_DISPLAY_ID, _))
400 .WillRepeatedly(DoAll(SetArgPointee<1>(std::vector<hal::HWConfigId>{
401 HWC_ACTIVE_CONFIG_ID}),
402 Return(Error::NONE)));
403 EXPECT_CALL(*test->mComposer,
404 getDisplayAttribute(HWC_DISPLAY_ID, HWC_ACTIVE_CONFIG_ID,
405 IComposerClient::Attribute::WIDTH, _))
406 .WillRepeatedly(
407 DoAll(SetArgPointee<3>(DisplayVariant::WIDTH), Return(Error::NONE)));
408 EXPECT_CALL(*test->mComposer,
409 getDisplayAttribute(HWC_DISPLAY_ID, HWC_ACTIVE_CONFIG_ID,
410 IComposerClient::Attribute::HEIGHT, _))
411 .WillRepeatedly(
412 DoAll(SetArgPointee<3>(DisplayVariant::HEIGHT), Return(Error::NONE)));
413 EXPECT_CALL(*test->mComposer,
414 getDisplayAttribute(HWC_DISPLAY_ID, HWC_ACTIVE_CONFIG_ID,
415 IComposerClient::Attribute::VSYNC_PERIOD, _))
416 .WillRepeatedly(
Marin Shalamanova903d032020-12-29 20:35:13 +0100417 DoAll(SetArgPointee<3>(DEFAULT_VSYNC_PERIOD), Return(Error::NONE)));
Marin Shalamanov6e840172020-12-14 22:13:28 +0100418 EXPECT_CALL(*test->mComposer,
419 getDisplayAttribute(HWC_DISPLAY_ID, HWC_ACTIVE_CONFIG_ID,
420 IComposerClient::Attribute::DPI_X, _))
421 .WillRepeatedly(DoAll(SetArgPointee<3>(DEFAULT_DPI), Return(Error::NONE)));
422 EXPECT_CALL(*test->mComposer,
423 getDisplayAttribute(HWC_DISPLAY_ID, HWC_ACTIVE_CONFIG_ID,
424 IComposerClient::Attribute::DPI_Y, _))
425 .WillRepeatedly(DoAll(SetArgPointee<3>(DEFAULT_DPI), Return(Error::NONE)));
426 EXPECT_CALL(*test->mComposer,
427 getDisplayAttribute(HWC_DISPLAY_ID, HWC_ACTIVE_CONFIG_ID,
428 IComposerClient::Attribute::CONFIG_GROUP, _))
429 .WillRepeatedly(DoAll(SetArgPointee<3>(-1), Return(Error::NONE)));
430 } else {
431 EXPECT_CALL(*test->mComposer, getDisplayConfigs(_, _)).Times(0);
432 EXPECT_CALL(*test->mComposer, getDisplayAttribute(_, _, _, _)).Times(0);
433 }
434 }
435
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200436 static void setupHwcHotplugCallExpectations(DisplayTransactionTest* test) {
437 constexpr auto CONNECTION_TYPE =
Marin Shalamanov228f46b2021-01-28 21:11:45 +0100438 PhysicalDisplay::CONNECTION_TYPE == ui::DisplayConnectionType::Internal
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200439 ? IComposerClient::DisplayConnectionType::INTERNAL
440 : IComposerClient::DisplayConnectionType::EXTERNAL;
441
442 EXPECT_CALL(*test->mComposer, getDisplayConnectionType(HWC_DISPLAY_ID, _))
443 .WillOnce(DoAll(SetArgPointee<1>(CONNECTION_TYPE), Return(hal::V2_4::Error::NONE)));
444
445 EXPECT_CALL(*test->mComposer, setClientTargetSlotCount(_))
446 .WillOnce(Return(hal::Error::NONE));
Marin Shalamanov6e840172020-12-14 22:13:28 +0100447
448 setupHwcGetConfigsCallExpectations(test);
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200449
450 if (PhysicalDisplay::HAS_IDENTIFICATION_DATA) {
451 EXPECT_CALL(*test->mComposer, getDisplayIdentificationData(HWC_DISPLAY_ID, _, _))
452 .WillOnce(DoAll(SetArgPointee<1>(PhysicalDisplay::PORT),
453 SetArgPointee<2>(PhysicalDisplay::GET_IDENTIFICATION_DATA()),
454 Return(Error::NONE)));
455 } else {
456 EXPECT_CALL(*test->mComposer, getDisplayIdentificationData(HWC_DISPLAY_ID, _, _))
457 .WillOnce(Return(Error::UNSUPPORTED));
458 }
459 }
460
461 // Called by tests to set up HWC call expectations
462 static void setupHwcGetActiveConfigCallExpectations(DisplayTransactionTest* test) {
463 EXPECT_CALL(*test->mComposer, getActiveConfig(HWC_DISPLAY_ID, _))
464 .WillRepeatedly(DoAll(SetArgPointee<1>(HWC_ACTIVE_CONFIG_ID), Return(Error::NONE)));
465 }
466};
467
468// Physical displays are expected to be synchronous, secure, and have a HWC display for output.
469constexpr uint32_t GRALLOC_USAGE_PHYSICAL_DISPLAY =
470 GRALLOC_USAGE_HW_RENDER | GRALLOC_USAGE_HW_COMPOSER | GRALLOC_USAGE_HW_FB;
471
472template <typename PhysicalDisplay, int width, int height, Critical critical>
473struct PhysicalDisplayVariant
474 : DisplayVariant<PhysicalDisplayIdType<PhysicalDisplay>, width, height, critical,
475 Async::FALSE, Secure::TRUE, PhysicalDisplay::PRIMARY,
476 GRALLOC_USAGE_PHYSICAL_DISPLAY>,
477 HwcDisplayVariant<PhysicalDisplay::HWC_DISPLAY_ID, DisplayType::PHYSICAL,
478 DisplayVariant<PhysicalDisplayIdType<PhysicalDisplay>, width, height,
479 critical, Async::FALSE, Secure::TRUE,
480 PhysicalDisplay::PRIMARY, GRALLOC_USAGE_PHYSICAL_DISPLAY>,
481 PhysicalDisplay> {};
482
483template <bool hasIdentificationData>
484struct PrimaryDisplay {
Marin Shalamanov228f46b2021-01-28 21:11:45 +0100485 static constexpr auto CONNECTION_TYPE = ui::DisplayConnectionType::Internal;
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200486 static constexpr Primary PRIMARY = Primary::TRUE;
487 static constexpr uint8_t PORT = 255;
488 static constexpr HWDisplayId HWC_DISPLAY_ID = 1001;
489 static constexpr bool HAS_IDENTIFICATION_DATA = hasIdentificationData;
490 static constexpr auto GET_IDENTIFICATION_DATA = getInternalEdid;
491};
492
493template <bool hasIdentificationData>
494struct ExternalDisplay {
Marin Shalamanov228f46b2021-01-28 21:11:45 +0100495 static constexpr auto CONNECTION_TYPE = ui::DisplayConnectionType::External;
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200496 static constexpr Primary PRIMARY = Primary::FALSE;
497 static constexpr uint8_t PORT = 254;
498 static constexpr HWDisplayId HWC_DISPLAY_ID = 1002;
499 static constexpr bool HAS_IDENTIFICATION_DATA = hasIdentificationData;
500 static constexpr auto GET_IDENTIFICATION_DATA = getExternalEdid;
501};
502
503struct TertiaryDisplay {
504 static constexpr Primary PRIMARY = Primary::FALSE;
505 static constexpr uint8_t PORT = 253;
506 static constexpr HWDisplayId HWC_DISPLAY_ID = 1003;
507 static constexpr auto GET_IDENTIFICATION_DATA = getExternalEdid;
508};
509
510// A primary display is a physical display that is critical
511using PrimaryDisplayVariant =
512 PhysicalDisplayVariant<PrimaryDisplay<false>, 3840, 2160, Critical::TRUE>;
513
514// An external display is physical display that is not critical.
515using ExternalDisplayVariant =
516 PhysicalDisplayVariant<ExternalDisplay<false>, 1920, 1280, Critical::FALSE>;
517
518using TertiaryDisplayVariant = PhysicalDisplayVariant<TertiaryDisplay, 1600, 1200, Critical::FALSE>;
519
520// A virtual display not supported by the HWC.
521constexpr uint32_t GRALLOC_USAGE_NONHWC_VIRTUAL_DISPLAY = 0;
522
523template <int width, int height, Secure secure>
524struct NonHwcVirtualDisplayVariant
525 : DisplayVariant<GpuVirtualDisplayIdType, width, height, Critical::FALSE, Async::TRUE, secure,
526 Primary::FALSE, GRALLOC_USAGE_NONHWC_VIRTUAL_DISPLAY> {
527 using Base =
528 DisplayVariant<GpuVirtualDisplayIdType, width, height, Critical::FALSE, Async::TRUE,
529 secure, Primary::FALSE, GRALLOC_USAGE_NONHWC_VIRTUAL_DISPLAY>;
530
531 static void injectHwcDisplay(DisplayTransactionTest*) {}
532
533 static std::shared_ptr<compositionengine::Display> injectCompositionDisplay(
534 DisplayTransactionTest* test) {
535 const ::testing::TestInfo* const test_info =
536 ::testing::UnitTest::GetInstance()->current_test_info();
537
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200538 auto ceDisplayArgs = compositionengine::DisplayCreationArgsBuilder()
Dominik Laskowski13948602021-03-08 20:48:28 -0800539 .setId(Base::DISPLAY_ID::get())
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200540 .setPixels({Base::WIDTH, Base::HEIGHT})
541 .setIsSecure(static_cast<bool>(Base::SECURE))
542 .setPowerAdvisor(&test->mPowerAdvisor)
543 .setName(std::string("Injected display for ") +
544 test_info->test_case_name() + "." + test_info->name())
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200545 .build();
546
547 return compositionengine::impl::createDisplay(test->mFlinger.getCompositionEngine(),
548 ceDisplayArgs);
549 }
550
Marin Shalamanov6e840172020-12-14 22:13:28 +0100551 static void setupHwcGetConfigsCallExpectations(DisplayTransactionTest* test) {
552 EXPECT_CALL(*test->mComposer, getDisplayConfigs(_, _)).Times(0);
553 EXPECT_CALL(*test->mComposer, getDisplayAttribute(_, _, _, _)).Times(0);
554 }
555
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200556 static void setupHwcGetActiveConfigCallExpectations(DisplayTransactionTest* test) {
557 EXPECT_CALL(*test->mComposer, getActiveConfig(_, _)).Times(0);
558 }
559
560 static void setupNativeWindowSurfaceCreationCallExpectations(DisplayTransactionTest* test) {
561 Base::setupNativeWindowSurfaceCreationCallExpectations(test);
562 EXPECT_CALL(*test->mNativeWindow, setSwapInterval(0)).Times(1);
563 }
564};
565
566// A virtual display supported by the HWC.
567constexpr uint32_t GRALLOC_USAGE_HWC_VIRTUAL_DISPLAY = GRALLOC_USAGE_HW_COMPOSER;
568
569template <int width, int height, Secure secure>
570struct HwcVirtualDisplayVariant
571 : DisplayVariant<HalVirtualDisplayIdType<42>, width, height, Critical::FALSE, Async::TRUE,
572 secure, Primary::FALSE, GRALLOC_USAGE_HWC_VIRTUAL_DISPLAY>,
573 HwcDisplayVariant<HWC_VIRTUAL_DISPLAY_HWC_DISPLAY_ID, DisplayType::VIRTUAL,
574 DisplayVariant<HalVirtualDisplayIdType<42>, width, height,
575 Critical::FALSE, Async::TRUE, secure, Primary::FALSE,
576 GRALLOC_USAGE_HWC_VIRTUAL_DISPLAY>> {
577 using Base = DisplayVariant<HalVirtualDisplayIdType<42>, width, height, Critical::FALSE,
578 Async::TRUE, secure, Primary::FALSE, GRALLOC_USAGE_HW_COMPOSER>;
579 using Self = HwcVirtualDisplayVariant<width, height, secure>;
580
581 static std::shared_ptr<compositionengine::Display> injectCompositionDisplay(
582 DisplayTransactionTest* test) {
583 const ::testing::TestInfo* const test_info =
584 ::testing::UnitTest::GetInstance()->current_test_info();
585
Dominik Laskowski13948602021-03-08 20:48:28 -0800586 const auto displayId = Base::DISPLAY_ID::get();
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200587 auto ceDisplayArgs = compositionengine::DisplayCreationArgsBuilder()
Dominik Laskowski13948602021-03-08 20:48:28 -0800588 .setId(displayId)
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200589 .setPixels({Base::WIDTH, Base::HEIGHT})
590 .setIsSecure(static_cast<bool>(Base::SECURE))
591 .setPowerAdvisor(&test->mPowerAdvisor)
592 .setName(std::string("Injected display for ") +
593 test_info->test_case_name() + "." + test_info->name())
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200594 .build();
595
596 auto compositionDisplay =
597 compositionengine::impl::createDisplay(test->mFlinger.getCompositionEngine(),
598 ceDisplayArgs);
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200599
600 // Insert display data so that the HWC thinks it created the virtual display.
Dominik Laskowski13948602021-03-08 20:48:28 -0800601 test->mFlinger.mutableHwcDisplayData().try_emplace(displayId);
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200602
603 return compositionDisplay;
604 }
605
606 static void setupNativeWindowSurfaceCreationCallExpectations(DisplayTransactionTest* test) {
607 Base::setupNativeWindowSurfaceCreationCallExpectations(test);
608 EXPECT_CALL(*test->mNativeWindow, setSwapInterval(0)).Times(1);
609 }
610
611 static void setupHwcVirtualDisplayCreationCallExpectations(DisplayTransactionTest* test) {
Dominik Laskowski263eec42021-07-21 23:13:24 -0700612 EXPECT_CALL(*test->mComposer, createVirtualDisplay(Base::WIDTH, Base::HEIGHT, _, _))
613 .WillOnce(DoAll(SetArgPointee<3>(Self::HWC_DISPLAY_ID), Return(Error::NONE)));
Marin Shalamanov07b1ff32020-10-07 16:57:22 +0200614 EXPECT_CALL(*test->mComposer, setClientTargetSlotCount(_)).WillOnce(Return(Error::NONE));
615 }
616};
617
618// For this variant, the display is not a HWC display, so no HDR support should
619// be configured.
620struct NonHwcDisplayHdrSupportVariant {
621 static constexpr bool HDR10_PLUS_SUPPORTED = false;
622 static constexpr bool HDR10_SUPPORTED = false;
623 static constexpr bool HDR_HLG_SUPPORTED = false;
624 static constexpr bool HDR_DOLBY_VISION_SUPPORTED = false;
625 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
626 EXPECT_CALL(*test->mComposer, getHdrCapabilities(_, _, _, _, _)).Times(0);
627 }
628};
629
630// For this variant, the composer should respond with am empty list of HDR
631// modes, so no HDR support should be configured.
632template <typename Display>
633struct HdrNotSupportedVariant {
634 static constexpr bool HDR10_PLUS_SUPPORTED = false;
635 static constexpr bool HDR10_SUPPORTED = false;
636 static constexpr bool HDR_HLG_SUPPORTED = false;
637 static constexpr bool HDR_DOLBY_VISION_SUPPORTED = false;
638 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
639 EXPECT_CALL(*test->mComposer, getHdrCapabilities(Display::HWC_DISPLAY_ID, _, _, _, _))
640 .WillOnce(DoAll(SetArgPointee<1>(std::vector<Hdr>()), Return(Error::NONE)));
641 }
642};
643
644struct NonHwcPerFrameMetadataSupportVariant {
645 static constexpr int PER_FRAME_METADATA_KEYS = 0;
646 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
647 EXPECT_CALL(*test->mComposer, getPerFrameMetadataKeys(_)).Times(0);
648 }
649};
650
651template <typename Display>
652struct NoPerFrameMetadataSupportVariant {
653 static constexpr int PER_FRAME_METADATA_KEYS = 0;
654 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
655 EXPECT_CALL(*test->mComposer, getPerFrameMetadataKeys(Display::HWC_DISPLAY_ID))
656 .WillOnce(Return(std::vector<PerFrameMetadataKey>()));
657 }
658};
659
660// For this variant, SurfaceFlinger should configure itself with wide display
661// support, but the display should respond with an empty list of supported color
662// modes. Wide-color support for the display should not be configured.
663template <typename Display>
664struct WideColorNotSupportedVariant {
665 static constexpr bool WIDE_COLOR_SUPPORTED = false;
666
667 static void injectConfigChange(DisplayTransactionTest* test) {
668 test->mFlinger.mutableUseColorManagement() = true;
669 test->mFlinger.mutableHasWideColorDisplay() = true;
670 }
671
672 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
673 EXPECT_CALL(*test->mComposer, getColorModes(Display::HWC_DISPLAY_ID, _))
674 .WillOnce(DoAll(SetArgPointee<1>(std::vector<ColorMode>()), Return(Error::NONE)));
675 EXPECT_CALL(*test->mComposer, setColorMode(_, _, _)).Times(0);
676 }
677};
678
679// For this variant, SurfaceFlinger should not configure itself with wide
680// display support, so the display should not be configured for wide-color
681// support.
682struct WideColorSupportNotConfiguredVariant {
683 static constexpr bool WIDE_COLOR_SUPPORTED = false;
684
685 static void injectConfigChange(DisplayTransactionTest* test) {
686 test->mFlinger.mutableHasWideColorDisplay() = false;
687 test->mFlinger.mutableUseColorManagement() = false;
688 test->mFlinger.mutableDisplayColorSetting() = DisplayColorSetting::kUnmanaged;
689 }
690
691 static void setupComposerCallExpectations(DisplayTransactionTest* test) {
692 EXPECT_CALL(*test->mComposer, getColorModes(_, _)).Times(0);
693 EXPECT_CALL(*test->mComposer, getRenderIntents(_, _, _)).Times(0);
694 EXPECT_CALL(*test->mComposer, setColorMode(_, _, _)).Times(0);
695 }
696};
697
698/* ------------------------------------------------------------------------
699 * Typical display configurations to test
700 */
701
702template <typename DisplayPolicy, typename WideColorSupportPolicy, typename HdrSupportPolicy,
703 typename PerFrameMetadataSupportPolicy>
704struct Case {
705 using Display = DisplayPolicy;
706 using WideColorSupport = WideColorSupportPolicy;
707 using HdrSupport = HdrSupportPolicy;
708 using PerFrameMetadataSupport = PerFrameMetadataSupportPolicy;
709};
710
711using SimplePrimaryDisplayCase =
712 Case<PrimaryDisplayVariant, WideColorNotSupportedVariant<PrimaryDisplayVariant>,
713 HdrNotSupportedVariant<PrimaryDisplayVariant>,
714 NoPerFrameMetadataSupportVariant<PrimaryDisplayVariant>>;
715using SimpleExternalDisplayCase =
716 Case<ExternalDisplayVariant, WideColorNotSupportedVariant<ExternalDisplayVariant>,
717 HdrNotSupportedVariant<ExternalDisplayVariant>,
718 NoPerFrameMetadataSupportVariant<ExternalDisplayVariant>>;
719using SimpleTertiaryDisplayCase =
720 Case<TertiaryDisplayVariant, WideColorNotSupportedVariant<TertiaryDisplayVariant>,
721 HdrNotSupportedVariant<TertiaryDisplayVariant>,
722 NoPerFrameMetadataSupportVariant<TertiaryDisplayVariant>>;
723
724using NonHwcVirtualDisplayCase =
725 Case<NonHwcVirtualDisplayVariant<1024, 768, Secure::FALSE>,
726 WideColorSupportNotConfiguredVariant, NonHwcDisplayHdrSupportVariant,
727 NonHwcPerFrameMetadataSupportVariant>;
728using SimpleHwcVirtualDisplayVariant = HwcVirtualDisplayVariant<1024, 768, Secure::TRUE>;
729using HwcVirtualDisplayCase =
730 Case<SimpleHwcVirtualDisplayVariant, WideColorSupportNotConfiguredVariant,
731 HdrNotSupportedVariant<SimpleHwcVirtualDisplayVariant>,
732 NoPerFrameMetadataSupportVariant<SimpleHwcVirtualDisplayVariant>>;
733
734} // namespace android
735
736// TODO(b/129481165): remove the #pragma below and fix conversion issues
Marin Shalamanovbed7fd32020-12-21 20:02:20 +0100737#pragma clang diagnostic pop // ignored "-Wconversion -Wextra"