1 /*
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 #define LOG_TAG "AudioEffectHidlHalTest"
18 #include <android-base/logging.h>
19 #include <system/audio.h>
20
21 #include PATH(android/hardware/audio/effect/FILE_VERSION/IEffect.h)
22 #include PATH(android/hardware/audio/effect/FILE_VERSION/IEffectsFactory.h)
23 #include PATH(android/hardware/audio/effect/FILE_VERSION/IEqualizerEffect.h)
24 #include PATH(android/hardware/audio/effect/FILE_VERSION/ILoudnessEnhancerEffect.h)
25 #include PATH(android/hardware/audio/effect/FILE_VERSION/types.h)
26 #include <android/hidl/allocator/1.0/IAllocator.h>
27 #include <android/hidl/memory/1.0/IMemory.h>
28
29 #include <common/all-versions/VersionUtils.h>
30
31 #include <gtest/gtest.h>
32 #include <hidl/GtestPrinter.h>
33 #include <hidl/ServiceManagement.h>
34
35 using ::android::sp;
36 using ::android::hardware::hidl_handle;
37 using ::android::hardware::hidl_memory;
38 using ::android::hardware::hidl_string;
39 using ::android::hardware::hidl_vec;
40 using ::android::hardware::MQDescriptorSync;
41 using ::android::hardware::Return;
42 using ::android::hardware::Void;
43 using ::android::hardware::audio::common::utils::mkEnumBitfield;
44 using ::android::hidl::allocator::V1_0::IAllocator;
45 using ::android::hidl::memory::V1_0::IMemory;
46 using namespace ::android::hardware::audio::common::CPP_VERSION;
47 using namespace ::android::hardware::audio::effect::CPP_VERSION;
48
49 #ifndef ARRAY_SIZE
50 #define ARRAY_SIZE(a) (sizeof(a) / sizeof(*(a)))
51 #endif
52
53 class AudioEffectsFactoryHidlTest : public ::testing::TestWithParam<std::string> {
54 public:
SetUp()55 void SetUp() override {
56 effectsFactory = IEffectsFactory::getService(GetParam());
57 ASSERT_NE(effectsFactory, nullptr);
58 }
TearDown()59 void TearDown() override { effectsFactory.clear(); }
60
61 protected:
description(const std::string & description)62 static void description(const std::string& description) {
63 RecordProperty("description", description);
64 }
65
66 sp<IEffectsFactory> effectsFactory;
67 };
68
TEST_P(AudioEffectsFactoryHidlTest,EnumerateEffects)69 TEST_P(AudioEffectsFactoryHidlTest, EnumerateEffects) {
70 description("Verify that EnumerateEffects returns at least one effect");
71 Result retval = Result::NOT_INITIALIZED;
72 size_t effectCount = 0;
73 Return<void> ret =
74 effectsFactory->getAllDescriptors([&](Result r, const hidl_vec<EffectDescriptor>& result) {
75 retval = r;
76 effectCount = result.size();
77 });
78 EXPECT_TRUE(ret.isOk());
79 EXPECT_EQ(Result::OK, retval);
80 EXPECT_GT(effectCount, 0u);
81 }
82
TEST_P(AudioEffectsFactoryHidlTest,CreateEffect)83 TEST_P(AudioEffectsFactoryHidlTest, CreateEffect) {
84 description("Verify that an effect can be created via CreateEffect");
85 bool gotEffect = false;
86 Uuid effectUuid;
87 Return<void> ret =
88 effectsFactory->getAllDescriptors([&](Result r, const hidl_vec<EffectDescriptor>& result) {
89 if (r == Result::OK && result.size() > 0) {
90 gotEffect = true;
91 effectUuid = result[0].uuid;
92 }
93 });
94 ASSERT_TRUE(ret.isOk());
95 ASSERT_TRUE(gotEffect);
96 Result retval = Result::NOT_INITIALIZED;
97 sp<IEffect> effect;
98 ret = effectsFactory->createEffect(
99 effectUuid, 1 /*session*/, 1 /*ioHandle*/,
100 #if MAJOR_VERSION >= 6
101 0 /*device*/,
102 #endif
103 [&](Result r, const sp<IEffect>& result, uint64_t /*effectId*/) {
104 retval = r;
105 if (r == Result::OK) {
106 effect = result;
107 }
108 });
109 EXPECT_TRUE(ret.isOk());
110 EXPECT_EQ(Result::OK, retval);
111 EXPECT_NE(nullptr, effect.get());
112 }
113
TEST_P(AudioEffectsFactoryHidlTest,GetDescriptor)114 TEST_P(AudioEffectsFactoryHidlTest, GetDescriptor) {
115 description(
116 "Verify that effects factory can provide an effect descriptor via "
117 "GetDescriptor");
118 hidl_vec<EffectDescriptor> allDescriptors;
119 Return<void> ret =
120 effectsFactory->getAllDescriptors([&](Result r, const hidl_vec<EffectDescriptor>& result) {
121 if (r == Result::OK) {
122 allDescriptors = result;
123 }
124 });
125 ASSERT_TRUE(ret.isOk());
126 ASSERT_GT(allDescriptors.size(), 0u);
127 for (size_t i = 0; i < allDescriptors.size(); ++i) {
128 ret = effectsFactory->getDescriptor(allDescriptors[i].uuid,
129 [&](Result r, const EffectDescriptor& result) {
130 EXPECT_EQ(r, Result::OK);
131 EXPECT_EQ(result, allDescriptors[i]);
132 });
133 }
134 EXPECT_TRUE(ret.isOk());
135 }
136
TEST_P(AudioEffectsFactoryHidlTest,DebugDumpInvalidArgument)137 TEST_P(AudioEffectsFactoryHidlTest, DebugDumpInvalidArgument) {
138 description("Verify that debugDump doesn't crash on invalid arguments");
139 #if MAJOR_VERSION == 2
140 Return<void> ret = effectsFactory->debugDump(hidl_handle());
141 #elif MAJOR_VERSION >= 4
142 Return<void> ret = effectsFactory->debug(hidl_handle(), {});
143 #endif
144 ASSERT_TRUE(ret.isOk());
145 }
146
147 // Equalizer effect is required by CDD, but only the type is fixed.
148 // This is the same UUID as AudioEffect.EFFECT_TYPE_EQUALIZER in Java.
149 static const Uuid EQUALIZER_EFFECT_TYPE = {
150 0x0bed4300, 0xddd6, 0x11db, 0x8f34,
151 std::array<uint8_t, 6>{{0x00, 0x02, 0xa5, 0xd5, 0xc5, 0x1b}}};
152 // Loudness Enhancer effect is required by CDD, but only the type is fixed.
153 // This is the same UUID as AudioEffect.EFFECT_TYPE_LOUDNESS_ENHANCER in Java.
154 static const Uuid LOUDNESS_ENHANCER_EFFECT_TYPE = {
155 0xfe3199be, 0xaed0, 0x413f, 0x87bb,
156 std::array<uint8_t, 6>{{0x11, 0x26, 0x0e, 0xb6, 0x3c, 0xf1}}};
157
158 enum { PARAM_FACTORY_NAME, PARAM_EFFECT_UUID };
159 using EffectParameter = std::tuple<std::string, Uuid>;
160
EffectParameterToString(const::testing::TestParamInfo<EffectParameter> & info)161 static inline std::string EffectParameterToString(
162 const ::testing::TestParamInfo<EffectParameter>& info) {
163 return ::android::hardware::PrintInstanceNameToString(::testing::TestParamInfo<std::string>{
164 std::get<PARAM_FACTORY_NAME>(info.param), info.index});
165 }
166
167 // The main test class for Audio Effect HIDL HAL.
168 class AudioEffectHidlTest : public ::testing::TestWithParam<EffectParameter> {
169 public:
SetUp()170 void SetUp() override {
171 effectsFactory = IEffectsFactory::getService(std::get<PARAM_FACTORY_NAME>(GetParam()));
172 ASSERT_NE(nullptr, effectsFactory.get());
173
174 findAndCreateEffect(getEffectType());
175 ASSERT_NE(nullptr, effect.get());
176
177 Return<Result> ret = effect->init();
178 ASSERT_TRUE(ret.isOk());
179 ASSERT_EQ(Result::OK, ret);
180 }
181
TearDown()182 void TearDown() override {
183 effect.clear();
184 effectsFactory.clear();
185 }
186
187 protected:
description(const std::string & description)188 static void description(const std::string& description) {
189 RecordProperty("description", description);
190 }
191
getEffectType() const192 Uuid getEffectType() const { return std::get<PARAM_EFFECT_UUID>(GetParam()); }
193
194 void findAndCreateEffect(const Uuid& type);
195 void findEffectInstance(const Uuid& type, Uuid* uuid);
196 void getChannelCount(uint32_t* channelCount);
197
198 sp<IEffectsFactory> effectsFactory;
199 sp<IEffect> effect;
200 };
201
findAndCreateEffect(const Uuid & type)202 void AudioEffectHidlTest::findAndCreateEffect(const Uuid& type) {
203 Uuid effectUuid;
204 findEffectInstance(type, &effectUuid);
205 Return<void> ret = effectsFactory->createEffect(
206 effectUuid, 1 /*session*/, 1 /*ioHandle*/,
207 #if MAJOR_VERSION >= 6
208 0 /*device*/,
209 #endif
210 [&](Result r, const sp<IEffect>& result, uint64_t /*effectId*/) {
211 if (r == Result::OK) {
212 effect = result;
213 }
214 });
215 ASSERT_TRUE(ret.isOk());
216 }
217
findEffectInstance(const Uuid & type,Uuid * uuid)218 void AudioEffectHidlTest::findEffectInstance(const Uuid& type, Uuid* uuid) {
219 bool effectFound = false;
220 Return<void> ret =
221 effectsFactory->getAllDescriptors([&](Result r, const hidl_vec<EffectDescriptor>& result) {
222 if (r == Result::OK) {
223 for (const auto& desc : result) {
224 if (desc.type == type) {
225 effectFound = true;
226 *uuid = desc.uuid;
227 break;
228 }
229 }
230 }
231 });
232 ASSERT_TRUE(ret.isOk());
233 ASSERT_TRUE(effectFound);
234 }
235
getChannelCount(uint32_t * channelCount)236 void AudioEffectHidlTest::getChannelCount(uint32_t* channelCount) {
237 Result retval;
238 EffectConfig currentConfig;
239 Return<void> ret = effect->getConfig([&](Result r, const EffectConfig& conf) {
240 retval = r;
241 if (r == Result::OK) {
242 currentConfig = conf;
243 }
244 });
245 ASSERT_TRUE(ret.isOk());
246 ASSERT_EQ(Result::OK, retval);
247 ASSERT_TRUE(audio_channel_mask_is_valid(
248 static_cast<audio_channel_mask_t>(currentConfig.outputCfg.channels)));
249 *channelCount = audio_channel_count_from_out_mask(
250 static_cast<audio_channel_mask_t>(currentConfig.outputCfg.channels));
251 }
252
TEST_P(AudioEffectHidlTest,Close)253 TEST_P(AudioEffectHidlTest, Close) {
254 description("Verify that an effect can be closed");
255 Return<Result> ret = effect->close();
256 EXPECT_TRUE(ret.isOk());
257 EXPECT_EQ(Result::OK, ret);
258 }
259
TEST_P(AudioEffectHidlTest,GetDescriptor)260 TEST_P(AudioEffectHidlTest, GetDescriptor) {
261 description("Verify that an effect can return its own descriptor via GetDescriptor");
262 Result retval = Result::NOT_INITIALIZED;
263 Uuid actualType;
264 Return<void> ret = effect->getDescriptor([&](Result r, const EffectDescriptor& desc) {
265 retval = r;
266 if (r == Result::OK) {
267 actualType = desc.type;
268 }
269 });
270 EXPECT_TRUE(ret.isOk());
271 EXPECT_EQ(Result::OK, retval);
272 EXPECT_EQ(getEffectType(), actualType);
273 }
274
TEST_P(AudioEffectHidlTest,GetSetConfig)275 TEST_P(AudioEffectHidlTest, GetSetConfig) {
276 description(
277 "Verify that it is possible to manipulate effect config via Get / "
278 "SetConfig");
279 Result retval = Result::NOT_INITIALIZED;
280 EffectConfig currentConfig;
281 Return<void> ret = effect->getConfig([&](Result r, const EffectConfig& conf) {
282 retval = r;
283 if (r == Result::OK) {
284 currentConfig = conf;
285 }
286 });
287 EXPECT_TRUE(ret.isOk());
288 EXPECT_EQ(Result::OK, retval);
289 Return<Result> ret2 = effect->setConfig(currentConfig, nullptr, nullptr);
290 EXPECT_TRUE(ret2.isOk());
291 EXPECT_EQ(Result::OK, ret2);
292 }
293
TEST_P(AudioEffectHidlTest,GetConfigReverse)294 TEST_P(AudioEffectHidlTest, GetConfigReverse) {
295 description("Verify that GetConfigReverse does not crash");
296 Return<void> ret = effect->getConfigReverse([&](Result, const EffectConfig&) {});
297 EXPECT_TRUE(ret.isOk());
298 }
299
TEST_P(AudioEffectHidlTest,GetSupportedAuxChannelsConfigs)300 TEST_P(AudioEffectHidlTest, GetSupportedAuxChannelsConfigs) {
301 description("Verify that GetSupportedAuxChannelsConfigs does not crash");
302 Return<void> ret = effect->getSupportedAuxChannelsConfigs(
303 0, [&](Result, const hidl_vec<EffectAuxChannelsConfig>&) {});
304 EXPECT_TRUE(ret.isOk());
305 }
306
TEST_P(AudioEffectHidlTest,GetAuxChannelsConfig)307 TEST_P(AudioEffectHidlTest, GetAuxChannelsConfig) {
308 description("Verify that GetAuxChannelsConfig does not crash");
309 Return<void> ret = effect->getAuxChannelsConfig([&](Result, const EffectAuxChannelsConfig&) {});
310 EXPECT_TRUE(ret.isOk());
311 }
312
TEST_P(AudioEffectHidlTest,SetAuxChannelsConfig)313 TEST_P(AudioEffectHidlTest, SetAuxChannelsConfig) {
314 description("Verify that SetAuxChannelsConfig does not crash");
315 Return<Result> ret = effect->setAuxChannelsConfig(EffectAuxChannelsConfig());
316 EXPECT_TRUE(ret.isOk());
317 }
318
319 // Not generated automatically because AudioBuffer contains
320 // instances of hidl_memory which can't be compared properly
321 // in general case due to presence of handles.
322 //
323 // However, in this particular case, handles must not present
324 // thus comparison is possible.
325 //
326 // operator== must be defined in the same namespace as the structures.
327 namespace android {
328 namespace hardware {
329 namespace audio {
330 namespace effect {
331 namespace CPP_VERSION {
operator ==(const AudioBuffer & lhs,const AudioBuffer & rhs)332 inline bool operator==(const AudioBuffer& lhs, const AudioBuffer& rhs) {
333 return lhs.id == rhs.id && lhs.frameCount == rhs.frameCount && lhs.data.handle() == nullptr &&
334 rhs.data.handle() == nullptr;
335 }
336
operator ==(const EffectBufferConfig & lhs,const EffectBufferConfig & rhs)337 inline bool operator==(const EffectBufferConfig& lhs, const EffectBufferConfig& rhs) {
338 return lhs.buffer == rhs.buffer && lhs.samplingRateHz == rhs.samplingRateHz &&
339 lhs.channels == rhs.channels && lhs.format == rhs.format &&
340 lhs.accessMode == rhs.accessMode && lhs.mask == rhs.mask;
341 }
342
operator ==(const EffectConfig & lhs,const EffectConfig & rhs)343 inline bool operator==(const EffectConfig& lhs, const EffectConfig& rhs) {
344 return lhs.inputCfg == rhs.inputCfg && lhs.outputCfg == rhs.outputCfg;
345 }
346 } // namespace CPP_VERSION
347 } // namespace effect
348 } // namespace audio
349 } // namespace hardware
350 } // namespace android
351
TEST_P(AudioEffectHidlTest,Reset)352 TEST_P(AudioEffectHidlTest, Reset) {
353 description("Verify that Reset preserves effect configuration");
354 Result retval = Result::NOT_INITIALIZED;
355 EffectConfig originalConfig;
356 Return<void> ret = effect->getConfig([&](Result r, const EffectConfig& conf) {
357 retval = r;
358 if (r == Result::OK) {
359 originalConfig = conf;
360 }
361 });
362 ASSERT_TRUE(ret.isOk());
363 ASSERT_EQ(Result::OK, retval);
364 Return<Result> ret2 = effect->reset();
365 EXPECT_TRUE(ret2.isOk());
366 EXPECT_EQ(Result::OK, ret2);
367 EffectConfig configAfterReset;
368 ret = effect->getConfig([&](Result r, const EffectConfig& conf) {
369 retval = r;
370 if (r == Result::OK) {
371 configAfterReset = conf;
372 }
373 });
374 EXPECT_EQ(originalConfig, configAfterReset);
375 }
376
TEST_P(AudioEffectHidlTest,DisableEnableDisable)377 TEST_P(AudioEffectHidlTest, DisableEnableDisable) {
378 description("Verify Disable -> Enable -> Disable sequence for an effect");
379 Return<Result> ret = effect->disable();
380 EXPECT_TRUE(ret.isOk());
381 // Note: some legacy effects may return -EINVAL (INVALID_ARGUMENTS),
382 // more canonical is to return -ENOSYS (NOT_SUPPORTED)
383 EXPECT_TRUE(ret == Result::NOT_SUPPORTED || ret == Result::INVALID_ARGUMENTS);
384 ret = effect->enable();
385 EXPECT_TRUE(ret.isOk());
386 EXPECT_EQ(Result::OK, ret);
387 ret = effect->disable();
388 EXPECT_TRUE(ret.isOk());
389 EXPECT_EQ(Result::OK, ret);
390 }
391
TEST_P(AudioEffectHidlTest,SetDevice)392 TEST_P(AudioEffectHidlTest, SetDevice) {
393 description("Verify that SetDevice works for an output chain effect");
394 Return<Result> ret = effect->setDevice(mkEnumBitfield(AudioDevice::OUT_SPEAKER));
395 EXPECT_TRUE(ret.isOk());
396 EXPECT_EQ(Result::OK, ret);
397 }
398
TEST_P(AudioEffectHidlTest,SetAndGetVolume)399 TEST_P(AudioEffectHidlTest, SetAndGetVolume) {
400 description("Verify that SetAndGetVolume method works for an effect");
401 uint32_t channelCount;
402 getChannelCount(&channelCount);
403 hidl_vec<uint32_t> volumes;
404 volumes.resize(channelCount);
405 for (uint32_t i = 0; i < channelCount; ++i) {
406 volumes[i] = 0;
407 }
408 Result retval = Result::NOT_INITIALIZED;
409 Return<void> ret =
410 effect->setAndGetVolume(volumes, [&](Result r, const hidl_vec<uint32_t>&) { retval = r; });
411 EXPECT_TRUE(ret.isOk());
412 EXPECT_EQ(Result::OK, retval);
413 }
414
TEST_P(AudioEffectHidlTest,VolumeChangeNotification)415 TEST_P(AudioEffectHidlTest, VolumeChangeNotification) {
416 description("Verify that effect accepts VolumeChangeNotification");
417 uint32_t channelCount;
418 getChannelCount(&channelCount);
419 hidl_vec<uint32_t> volumes;
420 volumes.resize(channelCount);
421 for (uint32_t i = 0; i < channelCount; ++i) {
422 volumes[i] = 0;
423 }
424 Return<Result> ret = effect->volumeChangeNotification(volumes);
425 EXPECT_TRUE(ret.isOk());
426 EXPECT_EQ(Result::OK, ret);
427 }
428
TEST_P(AudioEffectHidlTest,SetAudioMode)429 TEST_P(AudioEffectHidlTest, SetAudioMode) {
430 description("Verify that SetAudioMode works for an effect");
431 Return<Result> ret = effect->setAudioMode(AudioMode::NORMAL);
432 EXPECT_TRUE(ret.isOk());
433 EXPECT_EQ(Result::OK, ret);
434 }
435
TEST_P(AudioEffectHidlTest,SetConfigReverse)436 TEST_P(AudioEffectHidlTest, SetConfigReverse) {
437 description("Verify that SetConfigReverse does not crash");
438 Return<Result> ret = effect->setConfigReverse(EffectConfig(), nullptr, nullptr);
439 EXPECT_TRUE(ret.isOk());
440 }
441
TEST_P(AudioEffectHidlTest,SetInputDevice)442 TEST_P(AudioEffectHidlTest, SetInputDevice) {
443 description("Verify that SetInputDevice does not crash");
444 Return<Result> ret = effect->setInputDevice(mkEnumBitfield(AudioDevice::IN_BUILTIN_MIC));
445 EXPECT_TRUE(ret.isOk());
446 }
447
TEST_P(AudioEffectHidlTest,SetAudioSource)448 TEST_P(AudioEffectHidlTest, SetAudioSource) {
449 description("Verify that SetAudioSource does not crash");
450 Return<Result> ret = effect->setAudioSource(AudioSource::MIC);
451 EXPECT_TRUE(ret.isOk());
452 }
453
TEST_P(AudioEffectHidlTest,Offload)454 TEST_P(AudioEffectHidlTest, Offload) {
455 description("Verify that calling Offload method does not crash");
456 EffectOffloadParameter offloadParam;
457 offloadParam.isOffload = false;
458 offloadParam.ioHandle = static_cast<int>(AudioHandleConsts::AUDIO_IO_HANDLE_NONE);
459 Return<Result> ret = effect->offload(offloadParam);
460 EXPECT_TRUE(ret.isOk());
461 }
462
TEST_P(AudioEffectHidlTest,PrepareForProcessing)463 TEST_P(AudioEffectHidlTest, PrepareForProcessing) {
464 description("Verify that PrepareForProcessing method works for an effect");
465 Result retval = Result::NOT_INITIALIZED;
466 Return<void> ret = effect->prepareForProcessing(
467 [&](Result r, const MQDescriptorSync<Result>&) { retval = r; });
468 EXPECT_TRUE(ret.isOk());
469 EXPECT_EQ(Result::OK, retval);
470 }
471
TEST_P(AudioEffectHidlTest,SetProcessBuffers)472 TEST_P(AudioEffectHidlTest, SetProcessBuffers) {
473 description("Verify that SetProcessBuffers works for an effect");
474 sp<IAllocator> ashmem = IAllocator::getService("ashmem");
475 ASSERT_NE(nullptr, ashmem.get());
476 bool success = false;
477 AudioBuffer buffer;
478 Return<void> ret = ashmem->allocate(1024, [&](bool s, const hidl_memory& memory) {
479 success = s;
480 if (s) {
481 buffer.data = memory;
482 }
483 });
484 ASSERT_TRUE(ret.isOk());
485 ASSERT_TRUE(success);
486 Return<Result> ret2 = effect->setProcessBuffers(buffer, buffer);
487 EXPECT_TRUE(ret2.isOk());
488 EXPECT_EQ(Result::OK, ret2);
489 }
490
TEST_P(AudioEffectHidlTest,Command)491 TEST_P(AudioEffectHidlTest, Command) {
492 description("Verify that Command does not crash");
493 Return<void> ret =
494 effect->command(0, hidl_vec<uint8_t>(), 0, [&](int32_t, const hidl_vec<uint8_t>&) {});
495 EXPECT_TRUE(ret.isOk());
496 }
497
TEST_P(AudioEffectHidlTest,SetParameter)498 TEST_P(AudioEffectHidlTest, SetParameter) {
499 description("Verify that SetParameter does not crash");
500 Return<Result> ret = effect->setParameter(hidl_vec<uint8_t>(), hidl_vec<uint8_t>());
501 EXPECT_TRUE(ret.isOk());
502 }
503
TEST_P(AudioEffectHidlTest,GetParameter)504 TEST_P(AudioEffectHidlTest, GetParameter) {
505 description("Verify that GetParameter does not crash");
506 Return<void> ret =
507 effect->getParameter(hidl_vec<uint8_t>(), 0, [&](Result, const hidl_vec<uint8_t>&) {});
508 EXPECT_TRUE(ret.isOk());
509 }
510
TEST_P(AudioEffectHidlTest,GetSupportedConfigsForFeature)511 TEST_P(AudioEffectHidlTest, GetSupportedConfigsForFeature) {
512 description("Verify that GetSupportedConfigsForFeature does not crash");
513 Return<void> ret = effect->getSupportedConfigsForFeature(
514 0, 0, 0, [&](Result, uint32_t, const hidl_vec<uint8_t>&) {});
515 EXPECT_TRUE(ret.isOk());
516 }
517
TEST_P(AudioEffectHidlTest,GetCurrentConfigForFeature)518 TEST_P(AudioEffectHidlTest, GetCurrentConfigForFeature) {
519 description("Verify that GetCurrentConfigForFeature does not crash");
520 Return<void> ret =
521 effect->getCurrentConfigForFeature(0, 0, [&](Result, const hidl_vec<uint8_t>&) {});
522 EXPECT_TRUE(ret.isOk());
523 }
524
TEST_P(AudioEffectHidlTest,SetCurrentConfigForFeature)525 TEST_P(AudioEffectHidlTest, SetCurrentConfigForFeature) {
526 description("Verify that SetCurrentConfigForFeature does not crash");
527 Return<Result> ret = effect->setCurrentConfigForFeature(0, hidl_vec<uint8_t>());
528 EXPECT_TRUE(ret.isOk());
529 }
530
531 // The main test class for Equalizer Audio Effect HIDL HAL.
532 class EqualizerAudioEffectHidlTest : public AudioEffectHidlTest {
533 public:
SetUp()534 void SetUp() override {
535 AudioEffectHidlTest::SetUp();
536 equalizer = IEqualizerEffect::castFrom(effect);
537 ASSERT_NE(nullptr, equalizer.get());
538 }
539
TearDown()540 void TearDown() override {
541 equalizer.clear();
542 AudioEffectHidlTest::TearDown();
543 }
544
545 protected:
546 void getNumBands(uint16_t* numBands);
547 void getLevelRange(int16_t* minLevel, int16_t* maxLevel);
548 void getBandFrequencyRange(uint16_t band, uint32_t* minFreq, uint32_t* centerFreq,
549 uint32_t* maxFreq);
550 void getPresetCount(size_t* count);
551
552 sp<IEqualizerEffect> equalizer;
553 };
554
getNumBands(uint16_t * numBands)555 void EqualizerAudioEffectHidlTest::getNumBands(uint16_t* numBands) {
556 Result retval = Result::NOT_INITIALIZED;
557 Return<void> ret = equalizer->getNumBands([&](Result r, uint16_t b) {
558 retval = r;
559 if (retval == Result::OK) {
560 *numBands = b;
561 }
562 });
563 ASSERT_TRUE(ret.isOk());
564 ASSERT_EQ(Result::OK, retval);
565 }
566
getLevelRange(int16_t * minLevel,int16_t * maxLevel)567 void EqualizerAudioEffectHidlTest::getLevelRange(int16_t* minLevel, int16_t* maxLevel) {
568 Result retval = Result::NOT_INITIALIZED;
569 Return<void> ret = equalizer->getLevelRange([&](Result r, int16_t min, int16_t max) {
570 retval = r;
571 if (retval == Result::OK) {
572 *minLevel = min;
573 *maxLevel = max;
574 }
575 });
576 ASSERT_TRUE(ret.isOk());
577 ASSERT_EQ(Result::OK, retval);
578 }
579
getBandFrequencyRange(uint16_t band,uint32_t * minFreq,uint32_t * centerFreq,uint32_t * maxFreq)580 void EqualizerAudioEffectHidlTest::getBandFrequencyRange(uint16_t band, uint32_t* minFreq,
581 uint32_t* centerFreq, uint32_t* maxFreq) {
582 Result retval = Result::NOT_INITIALIZED;
583 Return<void> ret =
584 equalizer->getBandFrequencyRange(band, [&](Result r, uint32_t min, uint32_t max) {
585 retval = r;
586 if (retval == Result::OK) {
587 *minFreq = min;
588 *maxFreq = max;
589 }
590 });
591 ASSERT_TRUE(ret.isOk());
592 ASSERT_EQ(Result::OK, retval);
593 ret = equalizer->getBandCenterFrequency(band, [&](Result r, uint32_t center) {
594 retval = r;
595 if (retval == Result::OK) {
596 *centerFreq = center;
597 }
598 });
599 ASSERT_TRUE(ret.isOk());
600 ASSERT_EQ(Result::OK, retval);
601 }
602
getPresetCount(size_t * count)603 void EqualizerAudioEffectHidlTest::getPresetCount(size_t* count) {
604 Result retval = Result::NOT_INITIALIZED;
605 Return<void> ret = equalizer->getPresetNames([&](Result r, const hidl_vec<hidl_string>& names) {
606 retval = r;
607 if (retval == Result::OK) {
608 *count = names.size();
609 }
610 });
611 ASSERT_TRUE(ret.isOk());
612 ASSERT_EQ(Result::OK, retval);
613 }
614
TEST_P(EqualizerAudioEffectHidlTest,GetNumBands)615 TEST_P(EqualizerAudioEffectHidlTest, GetNumBands) {
616 description("Verify that Equalizer effect reports at least one band");
617 uint16_t numBands = 0;
618 getNumBands(&numBands);
619 EXPECT_GT(numBands, 0);
620 }
621
TEST_P(EqualizerAudioEffectHidlTest,GetLevelRange)622 TEST_P(EqualizerAudioEffectHidlTest, GetLevelRange) {
623 description("Verify that Equalizer effect reports adequate band level range");
624 int16_t minLevel = 0x7fff, maxLevel = 0;
625 getLevelRange(&minLevel, &maxLevel);
626 EXPECT_GT(maxLevel, minLevel);
627 }
628
TEST_P(EqualizerAudioEffectHidlTest,GetSetBandLevel)629 TEST_P(EqualizerAudioEffectHidlTest, GetSetBandLevel) {
630 description("Verify that manipulating band levels works for Equalizer effect");
631 uint16_t numBands = 0;
632 getNumBands(&numBands);
633 ASSERT_GT(numBands, 0);
634 int16_t levels[3]{0x7fff, 0, 0};
635 getLevelRange(&levels[0], &levels[2]);
636 ASSERT_GT(levels[2], levels[0]);
637 levels[1] = (levels[2] + levels[0]) / 2;
638 for (uint16_t i = 0; i < numBands; ++i) {
639 for (size_t j = 0; j < ARRAY_SIZE(levels); ++j) {
640 Return<Result> ret = equalizer->setBandLevel(i, levels[j]);
641 EXPECT_TRUE(ret.isOk());
642 EXPECT_EQ(Result::OK, ret);
643 Result retval = Result::NOT_INITIALIZED;
644 int16_t actualLevel;
645 Return<void> ret2 = equalizer->getBandLevel(i, [&](Result r, int16_t l) {
646 retval = r;
647 if (retval == Result::OK) {
648 actualLevel = l;
649 }
650 });
651 EXPECT_TRUE(ret2.isOk());
652 EXPECT_EQ(Result::OK, retval);
653 EXPECT_EQ(levels[j], actualLevel);
654 }
655 }
656 }
657
TEST_P(EqualizerAudioEffectHidlTest,GetBandCenterFrequencyAndRange)658 TEST_P(EqualizerAudioEffectHidlTest, GetBandCenterFrequencyAndRange) {
659 description("Verify that Equalizer effect reports adequate band frequency range");
660 uint16_t numBands = 0;
661 getNumBands(&numBands);
662 ASSERT_GT(numBands, 0);
663 for (uint16_t i = 0; i < numBands; ++i) {
664 uint32_t minFreq = 0xffffffff, centerFreq = 0xffffffff, maxFreq = 0xffffffff;
665 getBandFrequencyRange(i, &minFreq, ¢erFreq, &maxFreq);
666 // Note: NXP legacy implementation reports "1" as upper bound for last band,
667 // so this check fails.
668 EXPECT_GE(maxFreq, centerFreq);
669 EXPECT_GE(centerFreq, minFreq);
670 }
671 }
672
TEST_P(EqualizerAudioEffectHidlTest,GetBandForFrequency)673 TEST_P(EqualizerAudioEffectHidlTest, GetBandForFrequency) {
674 description("Verify that Equalizer effect supports GetBandForFrequency correctly");
675 uint16_t numBands = 0;
676 getNumBands(&numBands);
677 ASSERT_GT(numBands, 0);
678 for (uint16_t i = 0; i < numBands; ++i) {
679 uint32_t freqs[3]{0, 0, 0};
680 getBandFrequencyRange(i, &freqs[0], &freqs[1], &freqs[2]);
681 // NXP legacy implementation reports "1" as upper bound for last band, some
682 // of the checks fail.
683 for (size_t j = 0; j < ARRAY_SIZE(freqs); ++j) {
684 if (j == 0) {
685 freqs[j]++;
686 } // Min frequency is an open interval.
687 Result retval = Result::NOT_INITIALIZED;
688 uint16_t actualBand = numBands + 1;
689 Return<void> ret = equalizer->getBandForFrequency(freqs[j], [&](Result r, uint16_t b) {
690 retval = r;
691 if (retval == Result::OK) {
692 actualBand = b;
693 }
694 });
695 EXPECT_TRUE(ret.isOk());
696 EXPECT_EQ(Result::OK, retval);
697 EXPECT_EQ(i, actualBand) << "Frequency: " << freqs[j];
698 }
699 }
700 }
701
TEST_P(EqualizerAudioEffectHidlTest,GetPresetNames)702 TEST_P(EqualizerAudioEffectHidlTest, GetPresetNames) {
703 description("Verify that Equalizer effect reports at least one preset");
704 size_t presetCount;
705 getPresetCount(&presetCount);
706 EXPECT_GT(presetCount, 0u);
707 }
708
TEST_P(EqualizerAudioEffectHidlTest,GetSetCurrentPreset)709 TEST_P(EqualizerAudioEffectHidlTest, GetSetCurrentPreset) {
710 description("Verify that manipulating the current preset for Equalizer effect");
711 size_t presetCount;
712 getPresetCount(&presetCount);
713 ASSERT_GT(presetCount, 0u);
714 for (uint16_t i = 0; i < presetCount; ++i) {
715 Return<Result> ret = equalizer->setCurrentPreset(i);
716 EXPECT_TRUE(ret.isOk());
717 EXPECT_EQ(Result::OK, ret);
718 Result retval = Result::NOT_INITIALIZED;
719 uint16_t actualPreset = 0xffff;
720 Return<void> ret2 = equalizer->getCurrentPreset([&](Result r, uint16_t p) {
721 retval = r;
722 if (retval == Result::OK) {
723 actualPreset = p;
724 }
725 });
726 EXPECT_TRUE(ret2.isOk());
727 EXPECT_EQ(Result::OK, retval);
728 EXPECT_EQ(i, actualPreset);
729 }
730 }
731
TEST_P(EqualizerAudioEffectHidlTest,GetSetAllProperties)732 TEST_P(EqualizerAudioEffectHidlTest, GetSetAllProperties) {
733 description(
734 "Verify that setting band levels and presets works via Get / "
735 "SetAllProperties for Equalizer effect");
736 using AllProperties =
737 ::android::hardware::audio::effect::CPP_VERSION::IEqualizerEffect::AllProperties;
738 uint16_t numBands = 0;
739 getNumBands(&numBands);
740 ASSERT_GT(numBands, 0);
741 AllProperties props;
742 props.bandLevels.resize(numBands);
743 for (size_t i = 0; i < numBands; ++i) {
744 props.bandLevels[i] = 0;
745 }
746
747 AllProperties actualProps;
748 Result retval = Result::NOT_INITIALIZED;
749
750 // Verify setting of the band levels via properties.
751 props.curPreset = -1;
752 Return<Result> ret = equalizer->setAllProperties(props);
753 EXPECT_TRUE(ret.isOk());
754 EXPECT_EQ(Result::OK, ret);
755 Return<void> ret2 = equalizer->getAllProperties([&](Result r, AllProperties p) {
756 retval = r;
757 if (retval == Result::OK) {
758 actualProps = p;
759 }
760 });
761 EXPECT_TRUE(ret2.isOk());
762 EXPECT_EQ(Result::OK, retval);
763 EXPECT_EQ(props.bandLevels, actualProps.bandLevels);
764
765 // Verify setting of the current preset via properties.
766 props.curPreset = 0; // Assuming there is at least one preset.
767 ret = equalizer->setAllProperties(props);
768 EXPECT_TRUE(ret.isOk());
769 EXPECT_EQ(Result::OK, ret);
770 ret2 = equalizer->getAllProperties([&](Result r, AllProperties p) {
771 retval = r;
772 if (retval == Result::OK) {
773 actualProps = p;
774 }
775 });
776 EXPECT_TRUE(ret2.isOk());
777 EXPECT_EQ(Result::OK, retval);
778 EXPECT_EQ(props.curPreset, actualProps.curPreset);
779 }
780
781 // The main test class for Equalizer Audio Effect HIDL HAL.
782 class LoudnessEnhancerAudioEffectHidlTest : public AudioEffectHidlTest {
783 public:
SetUp()784 void SetUp() override {
785 AudioEffectHidlTest::SetUp();
786 enhancer = ILoudnessEnhancerEffect::castFrom(effect);
787 ASSERT_NE(nullptr, enhancer.get());
788 }
789
TearDown()790 void TearDown() override {
791 enhancer.clear();
792 AudioEffectHidlTest::TearDown();
793 }
794
795 protected:
796 sp<ILoudnessEnhancerEffect> enhancer;
797 };
798
TEST_P(LoudnessEnhancerAudioEffectHidlTest,GetSetTargetGain)799 TEST_P(LoudnessEnhancerAudioEffectHidlTest, GetSetTargetGain) {
800 description(
801 "Verify that manipulating the target gain works for Loudness Enhancer "
802 "effect");
803 const int32_t gain = 100;
804 Return<Result> ret = enhancer->setTargetGain(gain);
805 EXPECT_TRUE(ret.isOk());
806 EXPECT_EQ(Result::OK, ret);
807 int32_t actualGain = 0;
808 Result retval;
809 Return<void> ret2 = enhancer->getTargetGain([&](Result r, int32_t g) {
810 retval = r;
811 if (retval == Result::OK) {
812 actualGain = g;
813 }
814 });
815 EXPECT_TRUE(ret2.isOk());
816 EXPECT_EQ(Result::OK, retval);
817 EXPECT_EQ(gain, actualGain);
818 }
819
820 INSTANTIATE_TEST_SUITE_P(EffectsFactory, AudioEffectsFactoryHidlTest,
821 ::testing::ValuesIn(::android::hardware::getAllHalInstanceNames(
822 IEffectsFactory::descriptor)),
823 ::android::hardware::PrintInstanceNameToString);
824 INSTANTIATE_TEST_SUITE_P(
825 Equalizer_IEffect, AudioEffectHidlTest,
826 ::testing::Combine(::testing::ValuesIn(::android::hardware::getAllHalInstanceNames(
827 IEffectsFactory::descriptor)),
828 ::testing::Values(EQUALIZER_EFFECT_TYPE)),
829 EffectParameterToString);
830 INSTANTIATE_TEST_SUITE_P(
831 LoudnessEnhancer_IEffect, AudioEffectHidlTest,
832 ::testing::Combine(::testing::ValuesIn(::android::hardware::getAllHalInstanceNames(
833 IEffectsFactory::descriptor)),
834 ::testing::Values(LOUDNESS_ENHANCER_EFFECT_TYPE)),
835 EffectParameterToString);
836 INSTANTIATE_TEST_SUITE_P(
837 Equalizer, EqualizerAudioEffectHidlTest,
838 ::testing::Combine(::testing::ValuesIn(::android::hardware::getAllHalInstanceNames(
839 IEffectsFactory::descriptor)),
840 ::testing::Values(EQUALIZER_EFFECT_TYPE)),
841 EffectParameterToString);
842 INSTANTIATE_TEST_SUITE_P(
843 LoudnessEnhancer, LoudnessEnhancerAudioEffectHidlTest,
844 ::testing::Combine(::testing::ValuesIn(::android::hardware::getAllHalInstanceNames(
845 IEffectsFactory::descriptor)),
846 ::testing::Values(LOUDNESS_ENHANCER_EFFECT_TYPE)),
847 EffectParameterToString);
848 // When the VTS test runs on a device lacking the corresponding HAL version the parameter
849 // list is empty, this isn't a problem.
850 GTEST_ALLOW_UNINSTANTIATED_PARAMETERIZED_TEST(AudioEffectsFactoryHidlTest);
851 GTEST_ALLOW_UNINSTANTIATED_PARAMETERIZED_TEST(AudioEffectHidlTest);
852 GTEST_ALLOW_UNINSTANTIATED_PARAMETERIZED_TEST(EqualizerAudioEffectHidlTest);
853 GTEST_ALLOW_UNINSTANTIATED_PARAMETERIZED_TEST(LoudnessEnhancerAudioEffectHidlTest);
854