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Harry Cuttse6512e12022-11-28 18:44:01 +00001/*
2 * Copyright 2022 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#include "InputMapperTest.h"
18
19#include <InputReaderBase.h>
20#include <gtest/gtest.h>
21#include <ui/Rotation.h>
Harry Cutts1b5bde42023-12-18 16:08:29 +000022#include <utils/Timers.h>
Harry Cuttse6512e12022-11-28 18:44:01 +000023
Harry Cuttsd256daa2024-01-05 11:47:36 +000024#include "NotifyArgs.h"
25
Harry Cuttse6512e12022-11-28 18:44:01 +000026namespace android {
27
Harry Cuttsd256daa2024-01-05 11:47:36 +000028using testing::_;
Siarhei Vishniakou979f2d82023-05-16 14:26:24 -070029using testing::Return;
30
Harry Cutts7ecbb992023-12-18 14:45:09 +000031void InputMapperUnitTest::SetUpWithBus(int bus) {
Byoungho Jungee6268f2023-10-30 17:27:26 +090032 mFakePolicy = sp<FakeInputReaderPolicy>::make();
Siarhei Vishniakou979f2d82023-05-16 14:26:24 -070033
Byoungho Jungee6268f2023-10-30 17:27:26 +090034 EXPECT_CALL(mMockInputReaderContext, getPolicy()).WillRepeatedly(Return(mFakePolicy.get()));
35
Siarhei Vishniakou979f2d82023-05-16 14:26:24 -070036 EXPECT_CALL(mMockInputReaderContext, getEventHub()).WillRepeatedly(Return(&mMockEventHub));
Siarhei Vishniakou979f2d82023-05-16 14:26:24 -070037
Harry Cutts1b5bde42023-12-18 16:08:29 +000038 mIdentifier.name = "device";
39 mIdentifier.location = "USB1";
Harry Cutts7ecbb992023-12-18 14:45:09 +000040 mIdentifier.bus = bus;
Harry Cutts1b5bde42023-12-18 16:08:29 +000041 EXPECT_CALL(mMockEventHub, getDeviceIdentifier(EVENTHUB_ID))
42 .WillRepeatedly(Return(mIdentifier));
Harry Cutts7ecbb992023-12-18 14:45:09 +000043 EXPECT_CALL(mMockEventHub, getConfiguration(EVENTHUB_ID)).WillRepeatedly([&](int32_t) {
44 return mPropertyMap;
45 });
Harry Cutts1b5bde42023-12-18 16:08:29 +000046}
47
48void InputMapperUnitTest::createDevice() {
Siarhei Vishniakou979f2d82023-05-16 14:26:24 -070049 mDevice = std::make_unique<InputDevice>(&mMockInputReaderContext, DEVICE_ID,
Harry Cutts1b5bde42023-12-18 16:08:29 +000050 /*generation=*/2, mIdentifier);
51 mDevice->addEmptyEventHubDevice(EVENTHUB_ID);
Siarhei Vishniakou979f2d82023-05-16 14:26:24 -070052 mDeviceContext = std::make_unique<InputDeviceContext>(*mDevice, EVENTHUB_ID);
Harry Cuttsd256daa2024-01-05 11:47:36 +000053 std::list<NotifyArgs> args =
Harry Cutts1b5bde42023-12-18 16:08:29 +000054 mDevice->configure(systemTime(), mReaderConfiguration, /*changes=*/{});
Harry Cuttsd256daa2024-01-05 11:47:36 +000055 ASSERT_THAT(args, testing::ElementsAre(testing::VariantWith<NotifyDeviceResetArgs>(_)));
Siarhei Vishniakou979f2d82023-05-16 14:26:24 -070056}
57
58void InputMapperUnitTest::setupAxis(int axis, bool valid, int32_t min, int32_t max,
59 int32_t resolution) {
Harry Cuttsd256daa2024-01-05 11:47:36 +000060 EXPECT_CALL(mMockEventHub, getAbsoluteAxisInfo(EVENTHUB_ID, axis, _))
Siarhei Vishniakou979f2d82023-05-16 14:26:24 -070061 .WillRepeatedly([=](int32_t, int32_t, RawAbsoluteAxisInfo* outAxisInfo) {
62 outAxisInfo->valid = valid;
63 outAxisInfo->minValue = min;
64 outAxisInfo->maxValue = max;
65 outAxisInfo->flat = 0;
66 outAxisInfo->fuzz = 0;
67 outAxisInfo->resolution = resolution;
68 return valid ? OK : -1;
69 });
70}
71
72void InputMapperUnitTest::expectScanCodes(bool present, std::set<int> scanCodes) {
73 for (const auto& scanCode : scanCodes) {
74 EXPECT_CALL(mMockEventHub, hasScanCode(EVENTHUB_ID, scanCode))
75 .WillRepeatedly(testing::Return(present));
76 }
77}
78
79void InputMapperUnitTest::setScanCodeState(KeyState state, std::set<int> scanCodes) {
80 for (const auto& scanCode : scanCodes) {
81 EXPECT_CALL(mMockEventHub, getScanCodeState(EVENTHUB_ID, scanCode))
82 .WillRepeatedly(testing::Return(static_cast<int>(state)));
83 }
84}
85
86void InputMapperUnitTest::setKeyCodeState(KeyState state, std::set<int> keyCodes) {
87 for (const auto& keyCode : keyCodes) {
88 EXPECT_CALL(mMockEventHub, getKeyCodeState(EVENTHUB_ID, keyCode))
89 .WillRepeatedly(testing::Return(static_cast<int>(state)));
90 }
91}
92
93std::list<NotifyArgs> InputMapperUnitTest::process(int32_t type, int32_t code, int32_t value) {
Arpit Singh82e413e2023-10-10 19:30:58 +000094 nsecs_t when = systemTime(SYSTEM_TIME_MONOTONIC);
95 return process(when, type, code, value);
96}
97
98std::list<NotifyArgs> InputMapperUnitTest::process(nsecs_t when, int32_t type, int32_t code,
99 int32_t value) {
Siarhei Vishniakou979f2d82023-05-16 14:26:24 -0700100 RawEvent event;
Arpit Singh82e413e2023-10-10 19:30:58 +0000101 event.when = when;
102 event.readTime = when;
Siarhei Vishniakou979f2d82023-05-16 14:26:24 -0700103 event.deviceId = mMapper->getDeviceContext().getEventHubId();
104 event.type = type;
105 event.code = code;
106 event.value = value;
107 return mMapper->process(&event);
108}
109
Harry Cuttse6512e12022-11-28 18:44:01 +0000110const char* InputMapperTest::DEVICE_NAME = "device";
111const char* InputMapperTest::DEVICE_LOCATION = "USB1";
112const ftl::Flags<InputDeviceClass> InputMapperTest::DEVICE_CLASSES =
113 ftl::Flags<InputDeviceClass>(0); // not needed for current tests
114
115void InputMapperTest::SetUp(ftl::Flags<InputDeviceClass> classes, int bus) {
116 mFakeEventHub = std::make_unique<FakeEventHub>();
117 mFakePolicy = sp<FakeInputReaderPolicy>::make();
118 mFakeListener = std::make_unique<TestInputListener>();
119 mReader = std::make_unique<InstrumentedInputReader>(mFakeEventHub, mFakePolicy, *mFakeListener);
120 mDevice = newDevice(DEVICE_ID, DEVICE_NAME, DEVICE_LOCATION, EVENTHUB_ID, classes, bus);
121 // Consume the device reset notification generated when adding a new device.
122 mFakeListener->assertNotifyDeviceResetWasCalled();
123}
124
125void InputMapperTest::SetUp() {
126 SetUp(DEVICE_CLASSES);
127}
128
129void InputMapperTest::TearDown() {
130 mFakeListener.reset();
131 mFakePolicy.clear();
132}
133
134void InputMapperTest::addConfigurationProperty(const char* key, const char* value) {
135 mFakeEventHub->addConfigurationProperty(EVENTHUB_ID, key, value);
136}
137
Prabir Pradhan4bf6d452023-04-18 21:26:56 +0000138std::list<NotifyArgs> InputMapperTest::configureDevice(ConfigurationChanges changes) {
139 using namespace ftl::flag_operators;
140 if (!changes.any() ||
141 (changes.any(InputReaderConfiguration::Change::DISPLAY_INFO |
142 InputReaderConfiguration::Change::POINTER_CAPTURE |
143 InputReaderConfiguration::Change::DEVICE_TYPE))) {
Harry Cuttse6512e12022-11-28 18:44:01 +0000144 mReader->requestRefreshConfiguration(changes);
145 mReader->loopOnce();
146 }
147 std::list<NotifyArgs> out =
148 mDevice->configure(ARBITRARY_TIME, mFakePolicy->getReaderConfiguration(), changes);
149 // Loop the reader to flush the input listener queue.
150 for (const NotifyArgs& args : out) {
151 mFakeListener->notify(args);
152 }
153 mReader->loopOnce();
154 return out;
155}
156
157std::shared_ptr<InputDevice> InputMapperTest::newDevice(int32_t deviceId, const std::string& name,
158 const std::string& location,
159 int32_t eventHubId,
160 ftl::Flags<InputDeviceClass> classes,
161 int bus) {
162 InputDeviceIdentifier identifier;
163 identifier.name = name;
164 identifier.location = location;
165 identifier.bus = bus;
166 std::shared_ptr<InputDevice> device =
167 std::make_shared<InputDevice>(mReader->getContext(), deviceId, DEVICE_GENERATION,
168 identifier);
169 mReader->pushNextDevice(device);
170 mFakeEventHub->addDevice(eventHubId, name, classes, bus);
171 mReader->loopOnce();
172 return device;
173}
174
Linnan Li13bf76a2024-05-05 19:18:02 +0800175void InputMapperTest::setDisplayInfoAndReconfigure(ui::LogicalDisplayId displayId, int32_t width,
176 int32_t height, ui::Rotation orientation,
Harry Cuttse6512e12022-11-28 18:44:01 +0000177 const std::string& uniqueId,
178 std::optional<uint8_t> physicalPort,
179 ViewportType viewportType) {
180 mFakePolicy->addDisplayViewport(displayId, width, height, orientation, /* isActive= */ true,
181 uniqueId, physicalPort, viewportType);
Prabir Pradhan4bf6d452023-04-18 21:26:56 +0000182 configureDevice(InputReaderConfiguration::Change::DISPLAY_INFO);
Harry Cuttse6512e12022-11-28 18:44:01 +0000183}
184
185void InputMapperTest::clearViewports() {
186 mFakePolicy->clearViewports();
187}
188
189std::list<NotifyArgs> InputMapperTest::process(InputMapper& mapper, nsecs_t when, nsecs_t readTime,
190 int32_t type, int32_t code, int32_t value) {
191 RawEvent event;
192 event.when = when;
193 event.readTime = readTime;
194 event.deviceId = mapper.getDeviceContext().getEventHubId();
195 event.type = type;
196 event.code = code;
197 event.value = value;
198 std::list<NotifyArgs> processArgList = mapper.process(&event);
199 for (const NotifyArgs& args : processArgList) {
200 mFakeListener->notify(args);
201 }
202 // Loop the reader to flush the input listener queue.
203 mReader->loopOnce();
204 return processArgList;
205}
206
207void InputMapperTest::resetMapper(InputMapper& mapper, nsecs_t when) {
208 const auto resetArgs = mapper.reset(when);
209 for (const auto args : resetArgs) {
210 mFakeListener->notify(args);
211 }
212 // Loop the reader to flush the input listener queue.
213 mReader->loopOnce();
214}
215
216std::list<NotifyArgs> InputMapperTest::handleTimeout(InputMapper& mapper, nsecs_t when) {
217 std::list<NotifyArgs> generatedArgs = mapper.timeoutExpired(when);
218 for (const NotifyArgs& args : generatedArgs) {
219 mFakeListener->notify(args);
220 }
221 // Loop the reader to flush the input listener queue.
222 mReader->loopOnce();
223 return generatedArgs;
224}
225
Harry Cutts7ecbb992023-12-18 14:45:09 +0000226void assertMotionRange(const InputDeviceInfo& info, int32_t axis, uint32_t source, float min,
227 float max, float flat, float fuzz) {
Harry Cuttse6512e12022-11-28 18:44:01 +0000228 const InputDeviceInfo::MotionRange* range = info.getMotionRange(axis, source);
229 ASSERT_TRUE(range != nullptr) << "Axis: " << axis << " Source: " << source;
230 ASSERT_EQ(axis, range->axis) << "Axis: " << axis << " Source: " << source;
231 ASSERT_EQ(source, range->source) << "Axis: " << axis << " Source: " << source;
232 ASSERT_NEAR(min, range->min, EPSILON) << "Axis: " << axis << " Source: " << source;
233 ASSERT_NEAR(max, range->max, EPSILON) << "Axis: " << axis << " Source: " << source;
234 ASSERT_NEAR(flat, range->flat, EPSILON) << "Axis: " << axis << " Source: " << source;
235 ASSERT_NEAR(fuzz, range->fuzz, EPSILON) << "Axis: " << axis << " Source: " << source;
236}
237
Harry Cutts7ecbb992023-12-18 14:45:09 +0000238void assertPointerCoords(const PointerCoords& coords, float x, float y, float pressure, float size,
239 float touchMajor, float touchMinor, float toolMajor, float toolMinor,
240 float orientation, float distance, float scaledAxisEpsilon) {
Harry Cuttse6512e12022-11-28 18:44:01 +0000241 ASSERT_NEAR(x, coords.getAxisValue(AMOTION_EVENT_AXIS_X), scaledAxisEpsilon);
242 ASSERT_NEAR(y, coords.getAxisValue(AMOTION_EVENT_AXIS_Y), scaledAxisEpsilon);
243 ASSERT_NEAR(pressure, coords.getAxisValue(AMOTION_EVENT_AXIS_PRESSURE), EPSILON);
244 ASSERT_NEAR(size, coords.getAxisValue(AMOTION_EVENT_AXIS_SIZE), EPSILON);
245 ASSERT_NEAR(touchMajor, coords.getAxisValue(AMOTION_EVENT_AXIS_TOUCH_MAJOR), scaledAxisEpsilon);
246 ASSERT_NEAR(touchMinor, coords.getAxisValue(AMOTION_EVENT_AXIS_TOUCH_MINOR), scaledAxisEpsilon);
247 ASSERT_NEAR(toolMajor, coords.getAxisValue(AMOTION_EVENT_AXIS_TOOL_MAJOR), scaledAxisEpsilon);
248 ASSERT_NEAR(toolMinor, coords.getAxisValue(AMOTION_EVENT_AXIS_TOOL_MINOR), scaledAxisEpsilon);
249 ASSERT_NEAR(orientation, coords.getAxisValue(AMOTION_EVENT_AXIS_ORIENTATION), EPSILON);
250 ASSERT_NEAR(distance, coords.getAxisValue(AMOTION_EVENT_AXIS_DISTANCE), EPSILON);
251}
252
Harry Cuttse6512e12022-11-28 18:44:01 +0000253} // namespace android