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Yifan Hong2200cff2021-10-28 12:18:35 -07001/*
2 * Copyright (C) 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#define LOG_TAG "health_aidl_hal_test"
18
19#include <chrono>
20#include <memory>
21#include <thread>
22
23#include <aidl/Gtest.h>
24#include <aidl/Vintf.h>
25#include <aidl/android/hardware/health/BnHealthInfoCallback.h>
26#include <aidl/android/hardware/health/IHealth.h>
27#include <android/binder_auto_utils.h>
28#include <android/binder_enums.h>
29#include <android/binder_interface_utils.h>
30#include <android/binder_manager.h>
31#include <android/binder_process.h>
32#include <gmock/gmock.h>
33#include <gtest/gtest.h>
34#include <health-test/TestUtils.h>
35
36using android::getAidlHalInstanceNames;
37using android::PrintInstanceNameToString;
38using android::hardware::health::test_utils::SucceedOnce;
39using ndk::enum_range;
40using ndk::ScopedAStatus;
41using ndk::SharedRefBase;
42using ndk::SpAIBinder;
43using testing::AllOf;
44using testing::AnyOf;
45using testing::AnyOfArray;
46using testing::AssertionFailure;
47using testing::AssertionResult;
48using testing::AssertionSuccess;
49using testing::Contains;
50using testing::Each;
51using testing::Eq;
52using testing::ExplainMatchResult;
53using testing::Ge;
54using testing::Gt;
55using testing::Le;
56using testing::Lt;
57using testing::Matcher;
58using testing::Not;
59using namespace std::string_literals;
60using namespace std::chrono_literals;
61
62namespace aidl::android::hardware::health {
63
64static constexpr int32_t kFullChargeDesignCapMinUah = 100 * 1000;
65static constexpr int32_t kFullChargeDesignCapMaxUah = 100 * 1000 * 1000;
66
67MATCHER(IsOk, "") {
68 *result_listener << "status is " << arg.getDescription();
69 return arg.isOk();
70}
71
72MATCHER_P(ExceptionIs, exception_code, "") {
73 *result_listener << "status is " << arg.getDescription();
74 return arg.getExceptionCode() == exception_code;
75}
76
77template <typename T>
78Matcher<T> InClosedRange(const T& lo, const T& hi) {
79 return AllOf(Ge(lo), Le(hi));
80}
81
82template <typename T>
83Matcher<T> IsValidEnum() {
84 return AnyOfArray(enum_range<T>().begin(), enum_range<T>().end());
85}
86
87class HealthAidl : public testing::TestWithParam<std::string> {
88 public:
89 void SetUp() override {
90 SpAIBinder binder(AServiceManager_waitForService(GetParam().c_str()));
91 health = IHealth::fromBinder(binder);
92 ASSERT_NE(health, nullptr);
93 }
94 std::shared_ptr<IHealth> health;
95};
96
97class Callback : public BnHealthInfoCallback {
98 public:
99 ScopedAStatus healthInfoChanged(const HealthInfo&) override {
100 {
101 std::lock_guard<std::mutex> lock(mutex_);
102 invoked_ = true;
103 }
104 invoked_notify_.notify_all();
105 return ScopedAStatus::ok();
106 }
107 template <typename R, typename P>
108 [[nodiscard]] bool waitInvoke(std::chrono::duration<R, P> duration) {
109 std::unique_lock<std::mutex> lock(mutex_);
110 bool r = invoked_notify_.wait_for(lock, duration, [this] { return this->invoked_; });
111 invoked_ = false;
112 return r;
113 }
114
115 private:
116 std::mutex mutex_;
117 std::condition_variable invoked_notify_;
118 bool invoked_ = false;
119};
120
121TEST_P(HealthAidl, Callbacks) {
122 auto first_callback = SharedRefBase::make<Callback>();
123 auto second_callback = SharedRefBase::make<Callback>();
124
125 ASSERT_THAT(health->registerCallback(first_callback), IsOk());
126 ASSERT_THAT(health->registerCallback(second_callback), IsOk());
127
128 // registerCallback may or may not invoke the callback immediately, so the test needs
129 // to wait for the invocation. If the implementation chooses not to invoke the callback
130 // immediately, just wait for some time.
131 (void)first_callback->waitInvoke(200ms);
132 (void)second_callback->waitInvoke(200ms);
133
134 // assert that the first callback is invoked when update is called.
135 ASSERT_THAT(health->update(), IsOk());
136
137 ASSERT_TRUE(first_callback->waitInvoke(1s));
138 ASSERT_TRUE(second_callback->waitInvoke(1s));
139
140 ASSERT_THAT(health->unregisterCallback(first_callback), IsOk());
141
142 // clear any potentially pending callbacks result from wakealarm / kernel events
143 // If there is none, just wait for some time.
144 (void)first_callback->waitInvoke(200ms);
145 (void)second_callback->waitInvoke(200ms);
146
147 // assert that the second callback is still invoked even though the first is unregistered.
148 ASSERT_THAT(health->update(), IsOk());
149
150 ASSERT_FALSE(first_callback->waitInvoke(200ms));
151 ASSERT_TRUE(second_callback->waitInvoke(1s));
152
153 ASSERT_THAT(health->unregisterCallback(second_callback), IsOk());
154}
155
156TEST_P(HealthAidl, UnregisterNonExistentCallback) {
157 auto callback = SharedRefBase::make<Callback>();
158 auto ret = health->unregisterCallback(callback);
159 ASSERT_THAT(ret, ExceptionIs(EX_ILLEGAL_ARGUMENT));
160}
161
162/*
163 * Tests the values returned by getChargeCounterUah() from interface IHealth.
164 */
165TEST_P(HealthAidl, getChargeCounterUah) {
166 int32_t value;
167 auto status = health->getChargeCounterUah(&value);
168 ASSERT_THAT(status, AnyOf(IsOk(), ExceptionIs(EX_UNSUPPORTED_OPERATION)));
169 if (!status.isOk()) return;
170 ASSERT_THAT(value, Ge(0));
171}
172
173/*
174 * Tests the values returned by getCurrentNowMicroamps() from interface IHealth.
175 */
176TEST_P(HealthAidl, getCurrentNowMicroamps) {
177 int32_t value;
178 auto status = health->getCurrentNowMicroamps(&value);
179 ASSERT_THAT(status, AnyOf(IsOk(), ExceptionIs(EX_UNSUPPORTED_OPERATION)));
180 if (!status.isOk()) return;
181 ASSERT_THAT(value, Not(INT32_MIN));
182}
183
184/*
185 * Tests the values returned by getCurrentAverageMicroamps() from interface IHealth.
186 */
187TEST_P(HealthAidl, getCurrentAverageMicroamps) {
188 int32_t value;
189 auto status = health->getCurrentAverageMicroamps(&value);
190 ASSERT_THAT(status, AnyOf(IsOk(), ExceptionIs(EX_UNSUPPORTED_OPERATION)));
191 if (!status.isOk()) return;
192 ASSERT_THAT(value, Not(INT32_MIN));
193}
194
195/*
196 * Tests the values returned by getCapacity() from interface IHealth.
197 */
198TEST_P(HealthAidl, getCapacity) {
199 int32_t value;
200 auto status = health->getCapacity(&value);
201 ASSERT_THAT(status, AnyOf(IsOk(), ExceptionIs(EX_UNSUPPORTED_OPERATION)));
202 if (!status.isOk()) return;
203 ASSERT_THAT(value, InClosedRange(0, 100));
204}
205
206/*
207 * Tests the values returned by getEnergyCounterNwh() from interface IHealth.
208 */
209TEST_P(HealthAidl, getEnergyCounterNwh) {
210 int64_t value;
211 auto status = health->getEnergyCounterNwh(&value);
212 ASSERT_THAT(status, AnyOf(IsOk(), ExceptionIs(EX_UNSUPPORTED_OPERATION)));
213 if (!status.isOk()) return;
214 ASSERT_THAT(value, Not(INT64_MIN));
215}
216
217/*
218 * Tests the values returned by getChargeStatus() from interface IHealth.
219 */
220TEST_P(HealthAidl, getChargeStatus) {
221 BatteryStatus value;
222 auto status = health->getChargeStatus(&value);
223 ASSERT_THAT(status, AnyOf(IsOk(), ExceptionIs(EX_UNSUPPORTED_OPERATION)));
224 if (!status.isOk()) return;
225 ASSERT_THAT(value, IsValidEnum<BatteryStatus>());
226}
227
Jack Wu33561612022-11-24 12:10:55 +0800228/*
229 * Tests the values returned by getChargingPolicy() from interface IHealth.
230 */
231TEST_P(HealthAidl, getChargingPolicy) {
232 BatteryChargingPolicy value;
233 auto status = health->getChargingPolicy(&value);
234 ASSERT_THAT(status, AnyOf(IsOk(), ExceptionIs(EX_UNSUPPORTED_OPERATION)));
235 if (!status.isOk()) return;
236 ASSERT_THAT(value, IsValidEnum<BatteryChargingPolicy>());
237}
238
239/*
240 * Tests that setChargingPolicy() writes the value and compared the returned
241 * value by getChargingPolicy() from interface IHealth.
242 */
243TEST_P(HealthAidl, setChargingPolicy) {
244 BatteryChargingPolicy value;
245
246 /* set ChargingPolicy*/
247 auto status = health->setChargingPolicy(static_cast<BatteryChargingPolicy>(2)); // LONG_LIFE
248 ASSERT_THAT(status, AnyOf(IsOk(), ExceptionIs(EX_UNSUPPORTED_OPERATION)));
249 if (!status.isOk()) return;
250
251 /* get ChargingPolicy*/
252 status = health->getChargingPolicy(&value);
253 ASSERT_THAT(status, AnyOf(IsOk(), ExceptionIs(EX_UNSUPPORTED_OPERATION)));
254 if (!status.isOk()) return;
255 ASSERT_THAT(static_cast<int>(value), Eq(2));
256}
257
258MATCHER(IsValidHealthData, "") {
259 *result_listener << "value is " << arg.toString() << ".";
260 if (!ExplainMatchResult(Ge(-1), arg.batteryManufacturingDateSeconds, result_listener)) {
261 *result_listener << " for batteryManufacturingDateSeconds.";
262 return false;
263 }
264 if (!ExplainMatchResult(Ge(-1), arg.batteryFirstUsageSeconds, result_listener)) {
265 *result_listener << " for batteryFirstUsageSeconds.";
266 return false;
267 }
268
269 return true;
270}
271
272/*
273 * Tests the values returned by getBatteryHealthData() from interface IHealth.
274 */
275TEST_P(HealthAidl, getBatteryHealthData) {
276 BatteryHealthData value;
277 auto status = health->getBatteryHealthData(&value);
278 ASSERT_THAT(status, AnyOf(IsOk(), ExceptionIs(EX_UNSUPPORTED_OPERATION)));
279 if (!status.isOk()) return;
280 ASSERT_THAT(value, IsValidHealthData());
281}
282
Yifan Hong2200cff2021-10-28 12:18:35 -0700283MATCHER(IsValidStorageInfo, "") {
284 *result_listener << "value is " << arg.toString() << ".";
285 if (!ExplainMatchResult(InClosedRange(0, 3), arg.eol, result_listener)) {
286 *result_listener << " for eol.";
287 return false;
288 }
289 if (!ExplainMatchResult(InClosedRange(0, 0x0B), arg.lifetimeA, result_listener)) {
290 *result_listener << " for lifetimeA.";
291 return false;
292 }
293 if (!ExplainMatchResult(InClosedRange(0, 0x0B), arg.lifetimeB, result_listener)) {
294 *result_listener << " for lifetimeB.";
295 return false;
296 }
297 return true;
298}
299
300/*
301 * Tests the values returned by getStorageInfo() from interface IHealth.
302 */
303TEST_P(HealthAidl, getStorageInfo) {
304 std::vector<StorageInfo> value;
305 auto status = health->getStorageInfo(&value);
306 ASSERT_THAT(status, AnyOf(IsOk(), ExceptionIs(EX_UNSUPPORTED_OPERATION)));
307 if (!status.isOk()) return;
308 ASSERT_THAT(value, Each(IsValidStorageInfo()));
309}
310
311/*
312 * Tests the values returned by getDiskStats() from interface IHealth.
313 */
314TEST_P(HealthAidl, getDiskStats) {
315 std::vector<DiskStats> value;
316 auto status = health->getDiskStats(&value);
317 ASSERT_THAT(status, AnyOf(IsOk(), ExceptionIs(EX_UNSUPPORTED_OPERATION)));
318}
319
320MATCHER(IsValidHealthInfo, "") {
321 *result_listener << "value is " << arg.toString() << ".";
322 if (!ExplainMatchResult(Each(IsValidStorageInfo()), arg.storageInfos, result_listener)) {
323 *result_listener << " for storageInfos.";
324 return false;
325 }
326
327 if (!ExplainMatchResult(Not(INT32_MIN), arg.batteryCurrentMicroamps, result_listener)) {
328 *result_listener << " for batteryCurrentMicroamps.";
329 return false;
330 }
331
332 if (!ExplainMatchResult(InClosedRange(0, 100), arg.batteryLevel, result_listener)) {
333 *result_listener << " for batteryLevel.";
334 return false;
335 }
336
337 if (!ExplainMatchResult(IsValidEnum<BatteryHealth>(), arg.batteryHealth, result_listener)) {
338 *result_listener << " for batteryHealth.";
339 return false;
340 }
341
342 if (!ExplainMatchResult(IsValidEnum<BatteryStatus>(), arg.batteryStatus, result_listener)) {
343 *result_listener << " for batteryStatus.";
344 return false;
345 }
346
347 if (arg.batteryPresent) {
348 if (!ExplainMatchResult(Gt(0), arg.batteryChargeCounterUah, result_listener)) {
349 *result_listener << " for batteryChargeCounterUah when battery is present.";
350 return false;
351 }
352 if (!ExplainMatchResult(Not(BatteryStatus::UNKNOWN), arg.batteryStatus, result_listener)) {
353 *result_listener << " for batteryStatus when battery is present.";
354 return false;
355 }
356 }
357
358 if (!ExplainMatchResult(IsValidEnum<BatteryCapacityLevel>(), arg.batteryCapacityLevel,
359 result_listener)) {
360 *result_listener << " for batteryCapacityLevel.";
361 return false;
362 }
363 if (!ExplainMatchResult(Ge(-1), arg.batteryChargeTimeToFullNowSeconds, result_listener)) {
364 *result_listener << " for batteryChargeTimeToFullNowSeconds.";
365 return false;
366 }
367
368 if (!ExplainMatchResult(
369 AnyOf(Eq(0), AllOf(Gt(kFullChargeDesignCapMinUah), Lt(kFullChargeDesignCapMaxUah))),
370 arg.batteryFullChargeDesignCapacityUah, result_listener)) {
371 *result_listener << " for batteryFullChargeDesignCapacityUah. It should be greater than "
372 "100 mAh and less than 100,000 mAh, or 0 if unknown";
373 return false;
374 }
375
376 return true;
377}
378
379/*
380 * Tests the values returned by getHealthInfo() from interface IHealth.
381 */
382TEST_P(HealthAidl, getHealthInfo) {
383 HealthInfo value;
384 auto status = health->getHealthInfo(&value);
385 ASSERT_THAT(status, AnyOf(IsOk(), ExceptionIs(EX_UNSUPPORTED_OPERATION)));
386 if (!status.isOk()) return;
387 ASSERT_THAT(value, IsValidHealthInfo());
388}
389
390GTEST_ALLOW_UNINSTANTIATED_PARAMETERIZED_TEST(HealthAidl);
391INSTANTIATE_TEST_SUITE_P(Health, HealthAidl,
392 testing::ValuesIn(getAidlHalInstanceNames(IHealth::descriptor)),
393 PrintInstanceNameToString);
394
395// For battery current tests, value may not be stable if the battery current has fluctuated.
396// Retry in a bit more time (with the following timeout) and consider the test successful if it
397// has succeed once.
398static constexpr auto gBatteryTestTimeout = 1min;
399static constexpr double gCurrentCompareFactor = 0.50;
400class BatteryTest : public HealthAidl {};
401
402// Tuple for all IHealth::get* API return values.
403template <typename T>
404struct HalResult {
405 std::shared_ptr<ScopedAStatus> result = std::make_shared<ScopedAStatus>();
406 T value;
407};
408
409// Needs to be called repeatedly within a period of time to ensure values are initialized.
410static AssertionResult IsBatteryCurrentSignCorrect(const HalResult<BatteryStatus>& status,
411 const HalResult<int32_t>& current,
412 bool acceptZeroCurrentAsUnknown) {
413 // getChargeStatus / getCurrentNow / getCurrentAverage / getHealthInfo already tested above.
414 // Here, just skip if not ok.
415 if (!status.result->isOk()) {
416 return AssertionSuccess() << "getChargeStatus / getHealthInfo returned "
417 << status.result->getDescription() << ", skipping";
418 }
419
420 if (!current.result->isOk()) {
421 return AssertionSuccess() << "getCurrentNow / getCurrentAverage returned "
422 << current.result->getDescription() << ", skipping";
423 }
424
425 return ::android::hardware::health::test_utils::IsBatteryCurrentSignCorrect(
426 status.value, current.value, acceptZeroCurrentAsUnknown,
427 [](BatteryStatus status) { return toString(status); });
428}
429
430static AssertionResult IsBatteryCurrentSimilar(const HalResult<BatteryStatus>& status,
431 const HalResult<int32_t>& current_now,
432 const HalResult<int32_t>& current_average) {
433 if (status.result->isOk() && status.value == BatteryStatus::FULL) {
434 // No reason to test on full battery because battery current load fluctuates.
435 return AssertionSuccess() << "Battery is full, skipping";
436 }
437
438 // getCurrentNow / getCurrentAverage / getHealthInfo already tested above. Here, just skip if
439 // not SUCCESS or value 0.
440 if (!current_now.result->isOk() || current_now.value == 0) {
441 return AssertionSuccess() << "getCurrentNow returned "
442 << current_now.result->getDescription() << " with value "
443 << current_now.value << ", skipping";
444 }
445
446 if (!current_average.result->isOk() || current_average.value == 0) {
447 return AssertionSuccess() << "getCurrentAverage returned "
448 << current_average.result->getDescription() << " with value "
449 << current_average.value << ", skipping";
450 }
451
452 return ::android::hardware::health::test_utils::IsBatteryCurrentSimilar(
453 current_now.value, current_average.value, gCurrentCompareFactor);
454}
455
456TEST_P(BatteryTest, InstantCurrentAgainstChargeStatusInHealthInfo) {
457 auto testOnce = [&]() -> AssertionResult {
458 HalResult<HealthInfo> health_info;
459 *health_info.result = health->getHealthInfo(&health_info.value);
460
461 return IsBatteryCurrentSignCorrect(
462 {health_info.result, health_info.value.batteryStatus},
463 {health_info.result, health_info.value.batteryCurrentMicroamps},
464 true /* accept zero current as unknown */);
465 };
466 EXPECT_TRUE(SucceedOnce(gBatteryTestTimeout, testOnce))
467 << "You may want to try again later when current_now becomes stable.";
468}
469
470TEST_P(BatteryTest, AverageCurrentAgainstChargeStatusInHealthInfo) {
471 auto testOnce = [&]() -> AssertionResult {
472 HalResult<HealthInfo> health_info;
473 *health_info.result = health->getHealthInfo(&health_info.value);
474 return IsBatteryCurrentSignCorrect(
475 {health_info.result, health_info.value.batteryStatus},
476 {health_info.result, health_info.value.batteryCurrentAverageMicroamps},
477 true /* accept zero current as unknown */);
478 };
479
480 EXPECT_TRUE(SucceedOnce(gBatteryTestTimeout, testOnce))
481 << "You may want to try again later when current_average becomes stable.";
482}
483
484TEST_P(BatteryTest, InstantCurrentAgainstAverageCurrentInHealthInfo) {
485 auto testOnce = [&]() -> AssertionResult {
486 HalResult<HealthInfo> health_info;
487 *health_info.result = health->getHealthInfo(&health_info.value);
488 return IsBatteryCurrentSimilar(
489 {health_info.result, health_info.value.batteryStatus},
490 {health_info.result, health_info.value.batteryCurrentMicroamps},
491 {health_info.result, health_info.value.batteryCurrentAverageMicroamps});
492 };
493
494 EXPECT_TRUE(SucceedOnce(gBatteryTestTimeout, testOnce))
495 << "You may want to try again later when current_now and current_average becomes "
496 "stable.";
497}
498
499TEST_P(BatteryTest, InstantCurrentAgainstChargeStatusFromHal) {
500 auto testOnce = [&]() -> AssertionResult {
501 HalResult<BatteryStatus> status;
502 *status.result = health->getChargeStatus(&status.value);
503 HalResult<int32_t> current_now;
504 *current_now.result = health->getCurrentNowMicroamps(&current_now.value);
505 return IsBatteryCurrentSignCorrect(status, current_now,
506 false /* accept zero current as unknown */);
507 };
508
509 EXPECT_TRUE(SucceedOnce(gBatteryTestTimeout, testOnce))
510 << "You may want to try again later when current_now becomes stable.";
511}
512
513TEST_P(BatteryTest, AverageCurrentAgainstChargeStatusFromHal) {
514 auto testOnce = [&]() -> AssertionResult {
515 HalResult<BatteryStatus> status;
516 *status.result = health->getChargeStatus(&status.value);
517 HalResult<int32_t> current_average;
518 *current_average.result = health->getCurrentAverageMicroamps(&current_average.value);
519 return IsBatteryCurrentSignCorrect(status, current_average,
520 false /* accept zero current as unknown */);
521 };
522
523 EXPECT_TRUE(SucceedOnce(gBatteryTestTimeout, testOnce))
524 << "You may want to try again later when current_average becomes stable.";
525}
526
527TEST_P(BatteryTest, InstantCurrentAgainstAverageCurrentFromHal) {
528 auto testOnce = [&]() -> AssertionResult {
529 HalResult<BatteryStatus> status;
530 *status.result = health->getChargeStatus(&status.value);
531 HalResult<int32_t> current_now;
532 *current_now.result = health->getCurrentNowMicroamps(&current_now.value);
533 HalResult<int32_t> current_average;
534 *current_average.result = health->getCurrentAverageMicroamps(&current_average.value);
535 return IsBatteryCurrentSimilar(status, current_now, current_average);
536 };
537
538 EXPECT_TRUE(SucceedOnce(gBatteryTestTimeout, testOnce))
539 << "You may want to try again later when current_average becomes stable.";
540}
541
542AssertionResult IsBatteryStatusCorrect(const HalResult<BatteryStatus>& status,
543 const HalResult<HealthInfo>& health_info) {
544 // getChargetStatus / getHealthInfo is already tested above. Here, just skip if not ok.
545 if (!health_info.result->isOk()) {
546 return AssertionSuccess() << "getHealthInfo returned "
547 << health_info.result->getDescription() << ", skipping";
548 }
549 if (!status.result->isOk()) {
550 return AssertionSuccess() << "getChargeStatus returned " << status.result->getDescription()
551 << ", skipping";
552 }
553 return ::android::hardware::health::test_utils::IsBatteryStatusCorrect(
554 status.value, health_info.value, [](BatteryStatus status) { return toString(status); });
555}
556
557TEST_P(BatteryTest, ConnectedAgainstStatusFromHal) {
558 auto testOnce = [&]() -> AssertionResult {
559 HalResult<BatteryStatus> status;
560 *status.result = health->getChargeStatus(&status.value);
561 HalResult<HealthInfo> health_info;
562 *health_info.result = health->getHealthInfo(&health_info.value);
563 return IsBatteryStatusCorrect(status, health_info);
564 };
565
566 EXPECT_TRUE(SucceedOnce(gBatteryTestTimeout, testOnce))
567 << "You may want to try again later when battery_status becomes stable.";
568}
569
570TEST_P(BatteryTest, ConnectedAgainstStatusInHealthInfo) {
571 auto testOnce = [&]() -> AssertionResult {
572 HalResult<HealthInfo> health_info;
573 *health_info.result = health->getHealthInfo(&health_info.value);
574 return IsBatteryStatusCorrect({health_info.result, health_info.value.batteryStatus},
575 health_info);
576 };
577
578 EXPECT_TRUE(SucceedOnce(gBatteryTestTimeout, testOnce))
579 << "You may want to try again later when getHealthInfo becomes stable.";
580}
581
582GTEST_ALLOW_UNINSTANTIATED_PARAMETERIZED_TEST(BatteryTest);
583INSTANTIATE_TEST_SUITE_P(Health, BatteryTest,
584 testing::ValuesIn(getAidlHalInstanceNames(IHealth::descriptor)),
585 PrintInstanceNameToString);
586
587} // namespace aidl::android::hardware::health
588
589int main(int argc, char** argv) {
590 ::testing::InitGoogleTest(&argc, argv);
591 ABinderProcess_setThreadPoolMaxThreadCount(1);
592 ABinderProcess_startThreadPool();
593 return RUN_ALL_TESTS();
594}