Xiang Wang | 0b7c652 | 2023-02-15 15:42:22 -0800 | [diff] [blame] | 1 | /* |
| 2 | * Copyright (C) 2023 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 | #define LOG_TAG "thermal_hidl_wrapper_test" |
| 18 | #include <VtsHalHidlTargetCallbackBase.h> |
| 19 | #include <aidl/Vintf.h> |
| 20 | #include <aidl/android/hardware/thermal/BnThermal.h> |
| 21 | #include <aidl/android/hardware/thermal/BnThermalChangedCallback.h> |
| 22 | #include <android-base/logging.h> |
| 23 | #include <android-base/properties.h> |
| 24 | #include <android/binder_ibinder.h> |
| 25 | #include <android/binder_interface_utils.h> |
| 26 | #include <android/binder_manager.h> |
| 27 | #include <android/binder_process.h> |
| 28 | #include <android/binder_status.h> |
| 29 | #include <android/hardware/thermal/2.0/IThermal.h> |
| 30 | #include <android/hardware/thermal/2.0/IThermalChangedCallback.h> |
| 31 | #include <android/hardware/thermal/2.0/types.h> |
| 32 | #include <gtest/gtest.h> |
| 33 | #include <hidl/GtestPrinter.h> |
| 34 | #include <hidl/ServiceManagement.h> |
| 35 | #include <thermalutils/ThermalHidlWrapper.h> |
| 36 | #include <unistd.h> |
| 37 | |
| 38 | #include <algorithm> |
| 39 | #include <chrono> |
| 40 | #include <cmath> |
| 41 | #include <memory> |
| 42 | #include <string> |
| 43 | #include <thread> |
| 44 | #include <vector> |
| 45 | |
| 46 | namespace aidl::android::hardware::thermal { |
| 47 | |
| 48 | namespace { |
| 49 | |
| 50 | using ::android::sp; |
| 51 | using ::android::hardware::hidl_enum_range; |
| 52 | using ::android::hardware::hidl_vec; |
| 53 | using ::android::hardware::Return; |
| 54 | using ::android::hardware::Void; |
| 55 | |
| 56 | using ::android::hardware::thermal::V1_0::ThermalStatus; |
| 57 | using ::android::hardware::thermal::V1_0::ThermalStatusCode; |
| 58 | using ::android::hardware::thermal::V2_0::CoolingDevice; |
| 59 | using ::android::hardware::thermal::V2_0::CoolingType; |
| 60 | using IThermal_2_0 = ::android::hardware::thermal::V2_0::IThermal; |
| 61 | using ::android::hardware::thermal::V2_0::IThermalChangedCallback; |
| 62 | using ::android::hardware::thermal::V2_0::Temperature; |
| 63 | using ::android::hardware::thermal::V2_0::TemperatureThreshold; |
| 64 | using ::android::hardware::thermal::V2_0::TemperatureType; |
| 65 | using ::android::hardware::thermal::V2_0::ThrottlingSeverity; |
| 66 | |
| 67 | constexpr char kCallbackNameNotifyThrottling[] = "notifyThrottling"; |
| 68 | static const Temperature kThrottleTemp = { |
| 69 | .type = TemperatureType::SKIN, |
| 70 | .name = "test temperature sensor", |
| 71 | .value = 98.6, |
| 72 | .throttlingStatus = ThrottlingSeverity::CRITICAL, |
| 73 | }; |
| 74 | |
| 75 | class ThermalCallbackArgs { |
| 76 | public: |
| 77 | Temperature temperature; |
| 78 | }; |
| 79 | |
| 80 | // Callback class for receiving thermal event notifications from main class |
| 81 | class ThermalCallback : public ::testing::VtsHalHidlTargetCallbackBase<ThermalCallbackArgs>, |
| 82 | public IThermalChangedCallback { |
| 83 | public: |
| 84 | Return<void> notifyThrottling(const Temperature& temperature) override { |
| 85 | ThermalCallbackArgs args; |
| 86 | args.temperature = temperature; |
| 87 | NotifyFromCallback(kCallbackNameNotifyThrottling, args); |
| 88 | return Void(); |
| 89 | } |
| 90 | }; |
| 91 | |
| 92 | // The main test class for THERMAL HIDL HAL 2.0. |
| 93 | class ThermalHidlWrapperTest : public ::testing::TestWithParam<std::string> { |
| 94 | public: |
| 95 | void SetUp() override { |
| 96 | AIBinder* binder = AServiceManager_waitForService(GetParam().c_str()); |
| 97 | ASSERT_NE(binder, nullptr); |
| 98 | mThermal = sp<ThermalHidlWrapper>::make(IThermal::fromBinder(ndk::SpAIBinder(binder))); |
| 99 | ASSERT_NE(mThermal, nullptr); |
| 100 | mThermalCallback = new (std::nothrow) ThermalCallback(); |
| 101 | ASSERT_NE(mThermalCallback, nullptr); |
| 102 | auto ret = mThermal->registerThermalChangedCallback( |
| 103 | mThermalCallback, false, TemperatureType::SKIN, |
| 104 | [](ThermalStatus status) { EXPECT_EQ(ThermalStatusCode::SUCCESS, status.code); }); |
| 105 | ASSERT_TRUE(ret.isOk()); |
| 106 | // Expect to fail if register again |
| 107 | ret = mThermal->registerThermalChangedCallback( |
| 108 | mThermalCallback, false, TemperatureType::SKIN, |
| 109 | [](ThermalStatus status) { EXPECT_NE(ThermalStatusCode::SUCCESS, status.code); }); |
| 110 | ASSERT_TRUE(ret.isOk()); |
| 111 | } |
| 112 | |
| 113 | void TearDown() override { |
| 114 | auto ret = mThermal->unregisterThermalChangedCallback( |
| 115 | mThermalCallback, |
| 116 | [](ThermalStatus status) { EXPECT_EQ(ThermalStatusCode::SUCCESS, status.code); }); |
| 117 | ASSERT_TRUE(ret.isOk()); |
| 118 | // Expect to fail if unregister again |
| 119 | ret = mThermal->unregisterThermalChangedCallback( |
| 120 | mThermalCallback, |
| 121 | [](ThermalStatus status) { EXPECT_NE(ThermalStatusCode::SUCCESS, status.code); }); |
| 122 | ASSERT_TRUE(ret.isOk()); |
| 123 | } |
| 124 | |
| 125 | protected: |
| 126 | sp<IThermal_2_0> mThermal; |
| 127 | sp<ThermalCallback> mThermalCallback; |
| 128 | }; // class ThermalHidlWrapperTest |
| 129 | |
| 130 | // Test ThermalChangedCallback::notifyThrottling(). |
| 131 | // This just calls into and back from our local ThermalChangedCallback impl. |
| 132 | TEST_P(ThermalHidlWrapperTest, NotifyThrottlingTest) { |
| 133 | sp<ThermalCallback> thermalCallback = new (std::nothrow) ThermalCallback(); |
| 134 | auto ret = thermalCallback->notifyThrottling(kThrottleTemp); |
| 135 | ASSERT_TRUE(ret.isOk()); |
| 136 | auto res = thermalCallback->WaitForCallback(kCallbackNameNotifyThrottling); |
| 137 | EXPECT_TRUE(res.no_timeout); |
| 138 | ASSERT_TRUE(res.args); |
| 139 | EXPECT_EQ(kThrottleTemp, res.args->temperature); |
| 140 | } |
| 141 | |
| 142 | // Test Thermal->registerThermalChangedCallback. |
| 143 | TEST_P(ThermalHidlWrapperTest, RegisterThermalChangedCallbackTest) { |
| 144 | // Expect to fail with same callback |
| 145 | auto ret = mThermal->registerThermalChangedCallback( |
| 146 | mThermalCallback, false, TemperatureType::SKIN, |
| 147 | [](ThermalStatus status) { EXPECT_EQ(ThermalStatusCode::FAILURE, status.code); }); |
| 148 | ASSERT_TRUE(ret.isOk()); |
| 149 | // Expect to fail with null callback |
| 150 | ret = mThermal->registerThermalChangedCallback( |
| 151 | nullptr, false, TemperatureType::SKIN, |
| 152 | [](ThermalStatus status) { EXPECT_EQ(ThermalStatusCode::FAILURE, status.code); }); |
| 153 | ASSERT_TRUE(ret.isOk()); |
| 154 | sp<ThermalCallback> localThermalCallback = new (std::nothrow) ThermalCallback(); |
| 155 | // Expect to succeed with different callback |
| 156 | ret = mThermal->registerThermalChangedCallback( |
| 157 | localThermalCallback, false, TemperatureType::SKIN, |
| 158 | [](ThermalStatus status) { EXPECT_EQ(ThermalStatusCode::SUCCESS, status.code); }); |
| 159 | ASSERT_TRUE(ret.isOk()); |
| 160 | // Remove the local callback |
| 161 | ret = mThermal->unregisterThermalChangedCallback( |
| 162 | localThermalCallback, |
| 163 | [](ThermalStatus status) { EXPECT_EQ(ThermalStatusCode::SUCCESS, status.code); }); |
| 164 | ASSERT_TRUE(ret.isOk()); |
| 165 | // Expect to fail with null callback |
| 166 | ret = mThermal->unregisterThermalChangedCallback(nullptr, [](ThermalStatus status) { |
| 167 | EXPECT_EQ(ThermalStatusCode::FAILURE, status.code); |
| 168 | }); |
| 169 | ASSERT_TRUE(ret.isOk()); |
| 170 | } |
| 171 | |
| 172 | // Test Thermal->unregisterThermalChangedCallback. |
| 173 | TEST_P(ThermalHidlWrapperTest, UnregisterThermalChangedCallbackTest) { |
| 174 | sp<ThermalCallback> localThermalCallback = new (std::nothrow) ThermalCallback(); |
| 175 | // Expect to fail as the callback was not registered before |
| 176 | auto ret = mThermal->unregisterThermalChangedCallback( |
| 177 | localThermalCallback, |
| 178 | [](ThermalStatus status) { EXPECT_NE(ThermalStatusCode::SUCCESS, status.code); }); |
| 179 | ASSERT_TRUE(ret.isOk()); |
| 180 | // Register a local callback |
| 181 | ret = mThermal->registerThermalChangedCallback( |
| 182 | localThermalCallback, false, TemperatureType::SKIN, |
| 183 | [](ThermalStatus status) { EXPECT_EQ(ThermalStatusCode::SUCCESS, status.code); }); |
| 184 | ASSERT_TRUE(ret.isOk()); |
| 185 | // Expect to succeed with callback removed |
| 186 | ret = mThermal->unregisterThermalChangedCallback( |
| 187 | localThermalCallback, |
| 188 | [](ThermalStatus status) { EXPECT_EQ(ThermalStatusCode::SUCCESS, status.code); }); |
| 189 | ASSERT_TRUE(ret.isOk()); |
| 190 | // Expect to fail as the callback has been unregistered already |
| 191 | ret = mThermal->unregisterThermalChangedCallback( |
| 192 | localThermalCallback, |
| 193 | [](ThermalStatus status) { EXPECT_NE(ThermalStatusCode::SUCCESS, status.code); }); |
| 194 | ASSERT_TRUE(ret.isOk()); |
| 195 | } |
| 196 | |
| 197 | // Sanity test for Thermal::getCurrentTemperatures(). |
| 198 | TEST_P(ThermalHidlWrapperTest, TemperatureTest) { |
| 199 | mThermal->getCurrentTemperatures(false, TemperatureType::SKIN, |
| 200 | [](ThermalStatus status, hidl_vec<Temperature> temperatures) { |
| 201 | if (temperatures.size()) { |
| 202 | EXPECT_EQ(ThermalStatusCode::SUCCESS, status.code); |
| 203 | } else { |
| 204 | EXPECT_NE(ThermalStatusCode::SUCCESS, status.code); |
| 205 | } |
| 206 | for (int i = 0; i < temperatures.size(); ++i) { |
| 207 | EXPECT_LT(0u, temperatures[i].name.size()); |
| 208 | } |
| 209 | }); |
| 210 | auto types = hidl_enum_range<TemperatureType>(); |
| 211 | for (const auto& type : types) { |
| 212 | mThermal->getCurrentTemperatures( |
| 213 | true, type, [&type](ThermalStatus status, hidl_vec<Temperature> temperatures) { |
| 214 | if (temperatures.size()) { |
| 215 | EXPECT_EQ(ThermalStatusCode::SUCCESS, status.code); |
| 216 | } else { |
| 217 | EXPECT_NE(ThermalStatusCode::SUCCESS, status.code); |
| 218 | } |
| 219 | for (int i = 0; i < temperatures.size(); ++i) { |
| 220 | EXPECT_EQ(type, temperatures[i].type); |
| 221 | EXPECT_LT(0u, temperatures[i].name.size()); |
| 222 | } |
| 223 | }); |
| 224 | } |
| 225 | } |
| 226 | |
| 227 | // Sanity test for Thermal::getTemperatureThresholds(). |
| 228 | TEST_P(ThermalHidlWrapperTest, TemperatureThresholdTest) { |
| 229 | mThermal->getTemperatureThresholds( |
| 230 | false, TemperatureType::SKIN, |
| 231 | [](ThermalStatus status, hidl_vec<TemperatureThreshold> temperatures) { |
| 232 | if (temperatures.size()) { |
| 233 | EXPECT_EQ(ThermalStatusCode::SUCCESS, status.code); |
| 234 | } else { |
| 235 | EXPECT_NE(ThermalStatusCode::SUCCESS, status.code); |
| 236 | } |
| 237 | }); |
| 238 | for (int i = static_cast<int>(TemperatureType::UNKNOWN); |
| 239 | i <= static_cast<int>(TemperatureType::POWER_AMPLIFIER); ++i) { |
| 240 | auto type = static_cast<TemperatureType>(i); |
| 241 | mThermal->getTemperatureThresholds( |
| 242 | true, type, |
| 243 | [&type](ThermalStatus status, hidl_vec<TemperatureThreshold> temperatures) { |
| 244 | if (temperatures.size()) { |
| 245 | EXPECT_EQ(ThermalStatusCode::SUCCESS, status.code); |
| 246 | } else { |
| 247 | EXPECT_NE(ThermalStatusCode::SUCCESS, status.code); |
| 248 | } |
| 249 | for (int i = 0; i < temperatures.size(); ++i) { |
| 250 | EXPECT_EQ(type, temperatures[i].type); |
| 251 | } |
| 252 | }); |
| 253 | } |
| 254 | } |
| 255 | |
| 256 | // Sanity test for Thermal::getCurrentCoolingDevices(). |
| 257 | TEST_P(ThermalHidlWrapperTest, CoolingDeviceTest) { |
| 258 | mThermal->getCurrentCoolingDevices( |
| 259 | false, CoolingType::CPU, |
| 260 | [](ThermalStatus status, hidl_vec<CoolingDevice> cooling_devices) { |
| 261 | if (cooling_devices.size()) { |
| 262 | EXPECT_EQ(ThermalStatusCode::SUCCESS, status.code); |
| 263 | } else { |
| 264 | EXPECT_NE(ThermalStatusCode::SUCCESS, status.code); |
| 265 | } |
| 266 | for (int i = 0; i < cooling_devices.size(); ++i) { |
| 267 | EXPECT_LT(0u, cooling_devices[i].name.size()); |
| 268 | } |
| 269 | }); |
| 270 | for (int i = 0; i <= static_cast<int>(CoolingType::COMPONENT); ++i) { |
| 271 | auto type = static_cast<CoolingType>(i); |
| 272 | mThermal->getCurrentCoolingDevices( |
| 273 | true, type, [&type](ThermalStatus status, hidl_vec<CoolingDevice> cooling_devices) { |
| 274 | if (cooling_devices.size()) { |
| 275 | EXPECT_EQ(ThermalStatusCode::SUCCESS, status.code); |
| 276 | } else { |
| 277 | EXPECT_NE(ThermalStatusCode::SUCCESS, status.code); |
| 278 | } |
| 279 | for (int i = 0; i < cooling_devices.size(); ++i) { |
| 280 | EXPECT_EQ(type, cooling_devices[i].type); |
| 281 | EXPECT_LT(0u, cooling_devices[i].name.size()); |
| 282 | } |
| 283 | }); |
| 284 | } |
| 285 | } |
| 286 | |
| 287 | GTEST_ALLOW_UNINSTANTIATED_PARAMETERIZED_TEST(ThermalHidlWrapperTest); |
| 288 | INSTANTIATE_TEST_SUITE_P( |
| 289 | PerInstance, ThermalHidlWrapperTest, |
| 290 | testing::ValuesIn(::android::getAidlHalInstanceNames(IThermal::descriptor)), |
| 291 | ::android::hardware::PrintInstanceNameToString); |
| 292 | |
| 293 | } // namespace |
| 294 | |
| 295 | int main(int argc, char** argv) { |
| 296 | ::testing::InitGoogleTest(&argc, argv); |
| 297 | ABinderProcess_setThreadPoolMaxThreadCount(1); |
| 298 | ABinderProcess_startThreadPool(); |
| 299 | return RUN_ALL_TESTS(); |
| 300 | } |
| 301 | |
| 302 | } // namespace aidl::android::hardware::thermal |