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Mufaddal Chakera253887f2020-12-09 17:17:37 +05301/******************************************************************************
2 *
3 * Copyright (C) 2021 The Android Open Source Project
4 *
5 * Licensed under the Apache License, Version 2.0 (the "License");
6 * you may not use this file except in compliance with the License.
7 * You may obtain a copy of the License at:
8 *
9 * http://www.apache.org/licenses/LICENSE-2.0
10 *
11 * Unless required by applicable law or agreed to in writing, software
12 * distributed under the License is distributed on an "AS IS" BASIS,
13 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
14 * See the License for the specific language governing permissions and
15 * limitations under the License.
16 *
17 ******************************************************************************/
18#include <stdint.h>
19#include <sys/wait.h>
20#include <unistd.h>
21#include <algorithm>
22#include <memory>
23#include <string>
24#include <utility>
25#include <vector>
26
27#include <Serializer.h>
28#include <android-base/file.h>
Svet Ganov33761132021-05-13 22:51:08 +000029#include <android/content/AttributionSourceState.h>
Mufaddal Chakera253887f2020-12-09 17:17:37 +053030#include <libxml/parser.h>
31#include <libxml/xinclude.h>
32#include <media/AudioPolicy.h>
Dorin Drimusf2196d82022-01-03 12:11:18 +010033#include <media/AudioProfile.h>
Mufaddal Chakera253887f2020-12-09 17:17:37 +053034#include <media/PatchBuilder.h>
35#include <media/RecordingActivityTracker.h>
36
37#include <AudioPolicyInterface.h>
38#include <android_audio_policy_configuration_V7_0-enums.h>
39#include <fuzzer/FuzzedDataProvider.h>
40#include <tests/AudioPolicyManagerTestClient.h>
41#include <tests/AudioPolicyTestClient.h>
42#include <tests/AudioPolicyTestManager.h>
43#include <xsdc/XsdcSupport.h>
44
45using namespace android;
46
47namespace xsd {
48using namespace ::android::audio::policy::configuration::V7_0;
49}
50
Svet Ganov33761132021-05-13 22:51:08 +000051using content::AttributionSourceState;
Philip P. Moltmannbda45752020-07-17 16:41:18 -070052
Mufaddal Chakera253887f2020-12-09 17:17:37 +053053static const std::vector<audio_format_t> kAudioFormats = [] {
54 std::vector<audio_format_t> result;
55 for (const auto enumVal : xsdc_enum_range<xsd::AudioFormat>{}) {
56 audio_format_t audioFormatHal;
57 std::string audioFormat = toString(enumVal);
58 if (audio_format_from_string(audioFormat.c_str(), &audioFormatHal)) {
59 result.push_back(audioFormatHal);
60 }
61 }
62 return result;
63}();
64
65static const std::vector<audio_channel_mask_t> kAudioChannelOutMasks = [] {
66 std::vector<audio_channel_mask_t> result;
67 for (const auto enumVal : xsdc_enum_range<xsd::AudioChannelMask>{}) {
68 audio_channel_mask_t audioChannelMaskHal;
69 std::string audioChannelMask = toString(enumVal);
70 if (enumVal != xsd::AudioChannelMask::AUDIO_CHANNEL_NONE &&
71 audioChannelMask.find("_IN_") == std::string::npos &&
72 audio_channel_mask_from_string(audioChannelMask.c_str(), &audioChannelMaskHal)) {
73 result.push_back(audioChannelMaskHal);
74 }
75 }
76 return result;
77}();
78
79static const std::vector<audio_channel_mask_t> kAudioChannelInMasks = [] {
80 std::vector<audio_channel_mask_t> result;
81 for (const auto enumVal : xsdc_enum_range<xsd::AudioChannelMask>{}) {
82 audio_channel_mask_t audioChannelMaskHal;
83 std::string audioChannelMask = toString(enumVal);
84 if (enumVal != xsd::AudioChannelMask::AUDIO_CHANNEL_NONE &&
85 audioChannelMask.find("_OUT_") == std::string::npos &&
86 audio_channel_mask_from_string(audioChannelMask.c_str(), &audioChannelMaskHal)) {
87 result.push_back(audioChannelMaskHal);
88 }
89 }
90 return result;
91}();
92
93static const std::vector<audio_output_flags_t> kAudioOutputFlags = [] {
94 std::vector<audio_output_flags_t> result;
95 for (const auto enumVal : xsdc_enum_range<xsd::AudioInOutFlag>{}) {
96 audio_output_flags_t audioOutputFlagHal;
97 std::string audioOutputFlag = toString(enumVal);
98 if (audioOutputFlag.find("_OUTPUT_") != std::string::npos &&
99 audio_output_flag_from_string(audioOutputFlag.c_str(), &audioOutputFlagHal)) {
100 result.push_back(audioOutputFlagHal);
101 }
102 }
103 return result;
104}();
105
106static const std::vector<audio_devices_t> kAudioDevices = [] {
107 std::vector<audio_devices_t> result;
108 for (const auto enumVal : xsdc_enum_range<xsd::AudioDevice>{}) {
109 audio_devices_t audioDeviceHal;
110 std::string audioDevice = toString(enumVal);
111 if (audio_device_from_string(audioDevice.c_str(), &audioDeviceHal)) {
112 result.push_back(audioDeviceHal);
113 }
114 }
115 return result;
116}();
117
118static const std::vector<audio_usage_t> kAudioUsages = [] {
119 std::vector<audio_usage_t> result;
120 for (const auto enumVal : xsdc_enum_range<xsd::AudioUsage>{}) {
121 audio_usage_t audioUsageHal;
122 std::string audioUsage = toString(enumVal);
123 if (audio_usage_from_string(audioUsage.c_str(), &audioUsageHal)) {
124 result.push_back(audioUsageHal);
125 }
126 }
127 return result;
128}();
129
Ayushi Khopkar997d3732022-02-03 12:18:47 +0000130/**
131 * AudioSource - AUDIO_SOURCE_VOICE_COMMUNICATION and AUDIO_SOURCE_HOTWORD
132 * are excluded from kAudioSources[] in order to avoid the abort triggered
133 * for these two types of AudioSource in Engine::getDeviceForInputSource()
134 */
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530135static const std::vector<audio_source_t> kAudioSources = [] {
136 std::vector<audio_source_t> result;
137 for (const auto enumVal : xsdc_enum_range<xsd::AudioSource>{}) {
138 audio_source_t audioSourceHal;
139 std::string audioSource = toString(enumVal);
Ayushi Khopkar997d3732022-02-03 12:18:47 +0000140 if (enumVal != xsd::AudioSource::AUDIO_SOURCE_VOICE_COMMUNICATION &&
141 enumVal != xsd::AudioSource::AUDIO_SOURCE_HOTWORD &&
142 audio_source_from_string(audioSource.c_str(), &audioSourceHal)) {
143 result.push_back(audioSourceHal);
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530144 }
145 }
146 return result;
147}();
148
149static const std::vector<audio_content_type_t> kAudioContentTypes = [] {
150 std::vector<audio_content_type_t> result;
151 for (const auto enumVal : xsdc_enum_range<xsd::AudioContentType>{}) {
152 audio_content_type_t audioContentTypeHal;
153 std::string audioContentType = toString(enumVal);
154 if (audio_content_type_from_string(audioContentType.c_str(), &audioContentTypeHal)) {
155 result.push_back(audioContentTypeHal);
156 }
157 }
158 return result;
159}();
160
161std::vector<int> kMixTypes = {MIX_TYPE_PLAYERS, MIX_TYPE_RECORDERS};
162
163std::vector<int> kMixRouteFlags = {MIX_ROUTE_FLAG_RENDER, MIX_ROUTE_FLAG_LOOP_BACK,
164 MIX_ROUTE_FLAG_LOOP_BACK_AND_RENDER, MIX_ROUTE_FLAG_ALL};
165
166std::vector<audio_flags_mask_t> kAudioFlagMasks = {
167 AUDIO_FLAG_NONE, AUDIO_FLAG_AUDIBILITY_ENFORCED,
168 AUDIO_FLAG_SECURE, AUDIO_FLAG_SCO,
169 AUDIO_FLAG_BEACON, AUDIO_FLAG_HW_AV_SYNC,
170 AUDIO_FLAG_HW_HOTWORD, AUDIO_FLAG_BYPASS_INTERRUPTION_POLICY,
171 AUDIO_FLAG_BYPASS_MUTE, AUDIO_FLAG_LOW_LATENCY,
172 AUDIO_FLAG_DEEP_BUFFER, AUDIO_FLAG_NO_MEDIA_PROJECTION,
173 AUDIO_FLAG_MUTE_HAPTIC, AUDIO_FLAG_NO_SYSTEM_CAPTURE,
Eric Laurentac08f912021-08-25 15:01:05 +0200174 AUDIO_FLAG_CAPTURE_PRIVATE, AUDIO_FLAG_CONTENT_SPATIALIZED,
175 AUDIO_FLAG_NEVER_SPATIALIZE,
176 };
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530177
178std::vector<audio_policy_dev_state_t> kAudioPolicyDeviceStates = {
179 AUDIO_POLICY_DEVICE_STATE_UNAVAILABLE,
180 AUDIO_POLICY_DEVICE_STATE_AVAILABLE,
181 AUDIO_POLICY_DEVICE_STATE_CNT,
182};
183
184std::vector<uint32_t> kSamplingRates = {8000, 16000, 44100, 48000, 88200, 96000};
185
186template <typename T>
187T getValueFromVector(FuzzedDataProvider *fdp, std::vector<T> arr) {
188 if (fdp->ConsumeBool()) {
189 return arr[fdp->ConsumeIntegralInRange<int32_t>(0, arr.size() - 1)];
190 } else {
191 return (T)fdp->ConsumeIntegral<uint32_t>();
192 }
193}
194
195class AudioPolicyManagerFuzzer {
196 public:
197 explicit AudioPolicyManagerFuzzer(FuzzedDataProvider *fdp);
198 virtual ~AudioPolicyManagerFuzzer() = default;
199 virtual bool initialize();
200 virtual void SetUpManagerConfig();
201 bool getOutputForAttr(audio_port_handle_t *selectedDeviceId, audio_format_t format,
202 audio_channel_mask_t channelMask, int sampleRate,
203 audio_output_flags_t flags = AUDIO_OUTPUT_FLAG_NONE,
204 audio_io_handle_t *output = nullptr,
205 audio_port_handle_t *portId = nullptr, audio_attributes_t attr = {});
206 bool getInputForAttr(const audio_attributes_t &attr, audio_unique_id_t riid,
207 audio_port_handle_t *selectedDeviceId, audio_format_t format,
208 audio_channel_mask_t channelMask, int sampleRate,
209 audio_input_flags_t flags = AUDIO_INPUT_FLAG_NONE,
Marvin Ramine5a122d2023-12-07 13:57:59 +0100210 audio_port_handle_t *portId = nullptr,
211 uint32_t *virtualDeviceId = nullptr);
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530212 bool findDevicePort(audio_port_role_t role, audio_devices_t deviceType,
213 const std::string &address, audio_port_v7 *foundPort);
214 static audio_port_handle_t getDeviceIdFromPatch(const struct audio_patch *patch);
215 audio_patch createFuzzedPatch();
216 void fuzzPatchCreation();
217 virtual void process();
218
219 protected:
Mikhail Naganovb0fbc1b2023-04-28 13:06:32 -0700220 sp<AudioPolicyConfig> mConfig{AudioPolicyConfig::createWritableForTests()};
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530221 std::unique_ptr<AudioPolicyManagerTestClient> mClient{new AudioPolicyManagerTestClient};
Mikhail Naganovb0fbc1b2023-04-28 13:06:32 -0700222 std::unique_ptr<AudioPolicyTestManager> mManager;
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530223 FuzzedDataProvider *mFdp;
224};
225
226AudioPolicyManagerFuzzer::AudioPolicyManagerFuzzer(FuzzedDataProvider *fdp)
227 : mFdp(fdp) {}
228
229bool AudioPolicyManagerFuzzer::initialize() {
230 if (mFdp->remaining_bytes() < 1) {
231 return false;
232 }
233 // init code
234 SetUpManagerConfig();
Mikhail Naganovb0fbc1b2023-04-28 13:06:32 -0700235 if (mConfig == nullptr) {
236 return false;
237 }
238 mManager.reset(new AudioPolicyTestManager(mConfig, mClient.get()));
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530239 if (mManager->initialize() != NO_ERROR) {
240 return false;
241 }
242 if (mManager->initCheck() != NO_ERROR) {
243 return false;
244 }
245 return true;
246}
247
Mikhail Naganovb0fbc1b2023-04-28 13:06:32 -0700248void AudioPolicyManagerFuzzer::SetUpManagerConfig() { mConfig->setDefault(); }
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530249
250bool AudioPolicyManagerFuzzer::getOutputForAttr(
251 audio_port_handle_t *selectedDeviceId, audio_format_t format, audio_channel_mask_t channelMask,
252 int sampleRate, audio_output_flags_t flags, audio_io_handle_t *output,
253 audio_port_handle_t *portId, audio_attributes_t attr) {
254 audio_io_handle_t localOutput;
255 if (!output) output = &localOutput;
256 *output = AUDIO_IO_HANDLE_NONE;
257 audio_stream_type_t stream = AUDIO_STREAM_DEFAULT;
258 audio_config_t config = AUDIO_CONFIG_INITIALIZER;
259 config.sample_rate = sampleRate;
260 config.channel_mask = channelMask;
261 config.format = format;
262 audio_port_handle_t localPortId;
263 if (!portId) portId = &localPortId;
264 *portId = AUDIO_PORT_HANDLE_NONE;
265 AudioPolicyInterface::output_type_t outputType;
Eric Laurentb0a7bc92022-04-05 15:06:08 +0200266 bool isSpatialized;
jiabinc658e452022-10-21 20:52:21 +0000267 bool isBitPerfect;
Andy Hung6b137d12024-08-27 22:35:17 +0000268 float volume;
Vlad Popa1e865e62024-08-15 19:11:42 -0700269 bool muted;
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530270
Svet Ganov33761132021-05-13 22:51:08 +0000271 // TODO b/182392769: use attribution source util
272 AttributionSourceState attributionSource;
273 attributionSource.uid = 0;
274 attributionSource.token = sp<BBinder>::make();
275 if (mManager->getOutputForAttr(&attr, output, AUDIO_SESSION_NONE, &stream, attributionSource,
jiabinc658e452022-10-21 20:52:21 +0000276 &config, &flags, selectedDeviceId, portId, {}, &outputType, &isSpatialized,
Vlad Popa1e865e62024-08-15 19:11:42 -0700277 &isBitPerfect, &volume, &muted) != OK) {
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530278 return false;
279 }
280 if (*output == AUDIO_IO_HANDLE_NONE || *portId == AUDIO_PORT_HANDLE_NONE) {
281 return false;
282 }
283 return true;
284}
285
286bool AudioPolicyManagerFuzzer::getInputForAttr(
287 const audio_attributes_t &attr, audio_unique_id_t riid, audio_port_handle_t *selectedDeviceId,
288 audio_format_t format, audio_channel_mask_t channelMask, int sampleRate,
Marvin Ramine5a122d2023-12-07 13:57:59 +0100289 audio_input_flags_t flags, audio_port_handle_t *portId, uint32_t *virtualDeviceId) {
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530290 audio_io_handle_t input = AUDIO_IO_HANDLE_NONE;
291 audio_config_base_t config = AUDIO_CONFIG_BASE_INITIALIZER;
292 config.sample_rate = sampleRate;
293 config.channel_mask = channelMask;
294 config.format = format;
295 audio_port_handle_t localPortId;
296 if (!portId) portId = &localPortId;
297 *portId = AUDIO_PORT_HANDLE_NONE;
298 AudioPolicyInterface::input_type_t inputType;
299
Svet Ganov33761132021-05-13 22:51:08 +0000300 AttributionSourceState attributionSource;
301 attributionSource.uid = 0;
302 attributionSource.token = sp<BBinder>::make();
303 if (mManager->getInputForAttr(&attr, &input, riid, AUDIO_SESSION_NONE, attributionSource,
Marvin Ramine5a122d2023-12-07 13:57:59 +0100304 &config, flags, selectedDeviceId, &inputType, portId, virtualDeviceId) != OK) {
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530305 return false;
306 }
307 if (*portId == AUDIO_PORT_HANDLE_NONE || input == AUDIO_IO_HANDLE_NONE) {
308 return false;
309 }
310 return true;
311}
312
313bool AudioPolicyManagerFuzzer::findDevicePort(audio_port_role_t role, audio_devices_t deviceType,
314 const std::string &address,
315 audio_port_v7 *foundPort) {
316 uint32_t numPorts = 0;
317 uint32_t generation1;
318 status_t ret;
319
320 ret = mManager->listAudioPorts(role, AUDIO_PORT_TYPE_DEVICE, &numPorts, nullptr, &generation1);
321 if (ret != NO_ERROR) {
322 return false;
323 }
324
325 uint32_t generation2;
326 struct audio_port_v7 ports[numPorts];
327 ret = mManager->listAudioPorts(role, AUDIO_PORT_TYPE_DEVICE, &numPorts, ports, &generation2);
328 if (ret != NO_ERROR) {
329 return false;
330 }
331
332 for (const auto &port : ports) {
333 if (port.role == role && port.ext.device.type == deviceType &&
334 (strncmp(port.ext.device.address, address.c_str(), AUDIO_DEVICE_MAX_ADDRESS_LEN) ==
335 0)) {
336 if (foundPort) *foundPort = port;
337 return true;
338 }
339 }
340 return false;
341}
342
343audio_port_handle_t AudioPolicyManagerFuzzer::getDeviceIdFromPatch(
344 const struct audio_patch *patch) {
345 if (patch->num_sources != 0 && patch->num_sinks != 0) {
346 if (patch->sources[0].type == AUDIO_PORT_TYPE_MIX) {
347 return patch->sinks[0].id;
348 } else {
349 return patch->sources[0].id;
350 }
351 }
352 return AUDIO_PORT_HANDLE_NONE;
353}
354
355audio_patch AudioPolicyManagerFuzzer::createFuzzedPatch() {
356 audio_patch patch{};
357 patch.id = mFdp->ConsumeIntegral<uint32_t>();
358 patch.num_sources = mFdp->ConsumeIntegralInRange(0, AUDIO_PATCH_PORTS_MAX);
359 for (int i = 0; i < patch.num_sources; ++i) {
360 audio_port_config config{};
361 std::vector<uint8_t> bytes = mFdp->ConsumeBytes<uint8_t>(sizeof(config));
362 memcpy(reinterpret_cast<uint8_t *>(&config), &bytes[0], bytes.size());
363 patch.sources[i] = config;
364 }
365 patch.num_sinks = mFdp->ConsumeIntegralInRange(0, AUDIO_PATCH_PORTS_MAX);
366 for (int i = 0; i < patch.num_sinks; ++i) {
367 audio_port_config config{};
368 std::vector<uint8_t> bytes = mFdp->ConsumeBytes<uint8_t>(sizeof(config));
369 memcpy(reinterpret_cast<uint8_t *>(&config), &bytes[0], bytes.size());
370 patch.sinks[i] = config;
371 }
372 return patch;
373}
374
375void AudioPolicyManagerFuzzer::fuzzPatchCreation() {
376 if (mFdp->remaining_bytes()) {
377 audio_patch_handle_t handle = AUDIO_PATCH_HANDLE_NONE;
378 uid_t uid = mFdp->ConsumeIntegral<uint32_t>();
379
380 // create a fuzzed patch
381 handle = AUDIO_PATCH_HANDLE_NONE;
382 audio_patch patch = createFuzzedPatch();
383 uid = mFdp->ConsumeIntegral<uint32_t>();
384 if (mManager->createAudioPatch(&patch, &handle, uid) == NO_ERROR) {
385 mManager->releaseAudioPatch(handle, uid);
386 }
387 }
388}
389
390void AudioPolicyManagerFuzzer::process() {
391 if (initialize()) {
392 fuzzPatchCreation();
393 }
394}
395
396class AudioPolicyManagerFuzzerWithConfigurationFile : public AudioPolicyManagerFuzzer {
397 public:
398 explicit AudioPolicyManagerFuzzerWithConfigurationFile(FuzzedDataProvider *fdp)
399 : AudioPolicyManagerFuzzer(fdp){};
400
401 protected:
402 void SetUpManagerConfig() override;
403 virtual std::string getConfigFile();
404 void traverseAndFuzzXML(xmlDocPtr pDoc, xmlNodePtr curr);
405 std::string fuzzXML(std::string xmlPath);
406
407 static inline const std::string sExecutableDir = base::GetExecutableDirectory() + "/";
408 static inline const std::string sDefaultConfig =
409 sExecutableDir + "data/test_audio_policy_configuration.xml";
410 static inline const std::string sFuzzedConfig = sExecutableDir + "fuzzed.xml";;
411};
412
413std::string AudioPolicyManagerFuzzerWithConfigurationFile::getConfigFile() {
414 return fuzzXML(sDefaultConfig);
415}
416
417void AudioPolicyManagerFuzzerWithConfigurationFile::SetUpManagerConfig() {
Mikhail Naganovb0fbc1b2023-04-28 13:06:32 -0700418 const std::string configFilePath = getConfigFile();
419 auto result = AudioPolicyConfig::loadFromCustomXmlConfigForTests(configFilePath);
420 mConfig = result.ok() ? mConfig = result.value() : nullptr;
421 ALOGE_IF(!result.ok(), "%s: Failed to deserialize \"%s\": %d",
422 __func__, configFilePath.c_str(), result.error());
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530423}
424
425void AudioPolicyManagerFuzzerWithConfigurationFile::traverseAndFuzzXML(xmlDocPtr pDoc,
426 xmlNodePtr curr) {
427 if (curr == nullptr) {
428 return;
429 }
430
431 xmlAttr *attribute = curr->properties;
432 while (attribute) {
433 if (!xmlStrcmp(attribute->name, reinterpret_cast<const xmlChar *>("format"))) {
434 const char *newFormat =
435 audio_format_to_string(getValueFromVector<audio_format_t>(mFdp, kAudioFormats));
436 xmlSetProp(curr, attribute->name, reinterpret_cast<const xmlChar *>(newFormat));
437 }
438 if (!xmlStrcmp(attribute->name, reinterpret_cast<const xmlChar *>("flags"))) {
439 std::string newFlag = "";
440 uint16_t numFlags = std::max((uint16_t)1, mFdp->ConsumeIntegral<uint16_t>());
441 for (uint16_t i = 0; i < numFlags; ++i) {
442 newFlag += std::string(audio_output_flag_to_string(
443 getValueFromVector<audio_output_flags_t>(mFdp, kAudioOutputFlags)));
444 if (i != (numFlags - 1)) {
445 newFlag += std::string("|");
446 }
447 }
448 xmlSetProp(curr, attribute->name, reinterpret_cast<const xmlChar *>(newFlag.c_str()));
449 }
450 if (!xmlStrcmp(attribute->name, reinterpret_cast<const xmlChar *>("samplingRates"))) {
451 std::string newRate = "";
452 uint16_t numRates = std::max((uint16_t)1, mFdp->ConsumeIntegral<uint16_t>());
453 for (uint16_t i = 0; i < numRates; ++i) {
454 newRate += std::to_string(getValueFromVector<uint32_t>(mFdp, kSamplingRates));
455 if (i != (numRates - 1)) {
456 newRate += std::string(",");
457 }
458 }
459 xmlSetProp(curr, attribute->name, reinterpret_cast<const xmlChar *>(newRate.c_str()));
460 }
461 if (!xmlStrcmp(attribute->name, reinterpret_cast<const xmlChar *>("channelMasks"))) {
462 int isOutMask = -1;
463 char *value =
464 reinterpret_cast<char *>(xmlNodeListGetString(pDoc, attribute->children, 1));
465 if (std::string(value).find(std::string("_OUT_")) != std::string::npos) {
466 // OUT mask
467 isOutMask = 1;
468 } else if (std::string(value).find(std::string("_IN_")) != std::string::npos) {
469 // IN mask
470 isOutMask = 0;
471 }
472 if (isOutMask != -1) {
473 std::string newMask = "";
474 uint16_t numMasks = std::max((uint16_t)1, mFdp->ConsumeIntegral<uint16_t>());
475 for (uint16_t i = 0; i < numMasks; ++i) {
476 if (isOutMask) {
477 newMask += std::string(audio_channel_out_mask_to_string(
478 getValueFromVector<audio_channel_mask_t>(mFdp, kAudioChannelOutMasks)));
479 } else {
480 newMask += std::string(audio_channel_in_mask_to_string(
481 getValueFromVector<audio_channel_mask_t>(mFdp, kAudioChannelInMasks)));
482 }
483 if (i != (numMasks - 1)) {
484 newMask += std::string(",");
485 }
486 }
487 xmlSetProp(curr, attribute->name,
488 reinterpret_cast<const xmlChar *>(newMask.c_str()));
489 }
490 xmlFree(value);
491 }
492 attribute = attribute->next;
493 }
494
495 curr = curr->xmlChildrenNode;
496 while (curr != nullptr) {
497 traverseAndFuzzXML(pDoc, curr);
498 curr = curr->next;
499 }
500}
501
502std::string AudioPolicyManagerFuzzerWithConfigurationFile::fuzzXML(std::string xmlPath) {
503 std::string outPath = sFuzzedConfig;
504
505 // Load in the xml file from disk
506 xmlDocPtr pDoc = xmlParseFile(xmlPath.c_str());
507 xmlNodePtr root = xmlDocGetRootElement(pDoc);
508
509 traverseAndFuzzXML(pDoc, root);
510
511 // Save the document back out to disk.
512 xmlSaveFileEnc(outPath.c_str(), pDoc, "UTF-8");
513 xmlFreeDoc(pDoc);
514
515 return outPath;
516}
517
518class AudioPolicyManagerFuzzerMsd : public AudioPolicyManagerFuzzerWithConfigurationFile {
519 public:
520 explicit AudioPolicyManagerFuzzerMsd(FuzzedDataProvider *fdp)
521 : AudioPolicyManagerFuzzerWithConfigurationFile(fdp) {}
522
523 protected:
524 std::string getConfigFile() override;
525
526 static inline const std::string sMsdConfig =
527 sExecutableDir + "data/test_audio_policy_msd_configuration.xml";
528};
529
530std::string AudioPolicyManagerFuzzerMsd::getConfigFile() { return fuzzXML(sMsdConfig); }
531
532using PolicyMixTuple = std::tuple<audio_usage_t, audio_source_t, uint32_t>;
533
534class AudioPolicyManagerFuzzerDynamicPolicy : public AudioPolicyManagerFuzzerWithConfigurationFile {
535 public:
536 explicit AudioPolicyManagerFuzzerDynamicPolicy(FuzzedDataProvider *fdp)
537 : AudioPolicyManagerFuzzerWithConfigurationFile(fdp){};
538 ~AudioPolicyManagerFuzzerDynamicPolicy() override;
539 void process() override;
540
541 protected:
542 status_t addPolicyMix(int mixType, int mixFlag, audio_devices_t deviceType,
543 std::string mixAddress, const audio_config_t &audioConfig,
544 const std::vector<PolicyMixTuple> &rules);
545 void clearPolicyMix();
546 void registerPolicyMixes();
547 void unregisterPolicyMixes();
548
549 Vector<AudioMix> mAudioMixes;
550 const std::string mMixAddress = "remote_submix_media";
551};
552
553AudioPolicyManagerFuzzerDynamicPolicy::~AudioPolicyManagerFuzzerDynamicPolicy() {
554 clearPolicyMix();
555}
556
557status_t AudioPolicyManagerFuzzerDynamicPolicy::addPolicyMix(
558 int mixType, int mixFlag, audio_devices_t deviceType, std::string mixAddress,
559 const audio_config_t &audioConfig, const std::vector<PolicyMixTuple> &rules) {
Jan Sebechlebsky069787e2022-08-17 14:07:45 +0200560 std::vector<AudioMixMatchCriterion> myMixMatchCriteria;
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530561
Jan Sebechlebsky069787e2022-08-17 14:07:45 +0200562 myMixMatchCriteria.reserve(rules.size());
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530563 for (const auto &rule : rules) {
Jan Sebechlebsky069787e2022-08-17 14:07:45 +0200564 myMixMatchCriteria.push_back(
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530565 AudioMixMatchCriterion(std::get<0>(rule), std::get<1>(rule), std::get<2>(rule)));
566 }
567
568 AudioMix myAudioMix(myMixMatchCriteria, mixType, audioConfig, mixFlag,
569 String8(mixAddress.c_str()), 0);
570 myAudioMix.mDeviceType = deviceType;
571 // Clear mAudioMix before add new one to make sure we don't add already existing mixes.
572 mAudioMixes.clear();
573 mAudioMixes.add(myAudioMix);
574
575 // As the policy mixes registration may fail at some case,
576 // caller need to check the returned status.
577 status_t ret = mManager->registerPolicyMixes(mAudioMixes);
578 return ret;
579}
580
581void AudioPolicyManagerFuzzerDynamicPolicy::clearPolicyMix() {
582 if (mManager != nullptr) {
583 mManager->unregisterPolicyMixes(mAudioMixes);
584 }
585 mAudioMixes.clear();
586}
587
588void AudioPolicyManagerFuzzerDynamicPolicy::registerPolicyMixes() {
589 const uint32_t numPolicies = mFdp->ConsumeIntegralInRange<uint32_t>(1, MAX_MIXES_PER_POLICY);
590
591 for (int i = 0; i < numPolicies; ++i) {
592 audio_config_t audioConfig = AUDIO_CONFIG_INITIALIZER;
593 audioConfig.channel_mask = getValueFromVector<audio_channel_mask_t>(
594 mFdp, mFdp->ConsumeBool() ? kAudioChannelInMasks : kAudioChannelOutMasks);
595 audioConfig.format = getValueFromVector<audio_format_t>(mFdp, kAudioFormats);
596 audioConfig.sample_rate = getValueFromVector<uint32_t>(mFdp, kSamplingRates);
597 addPolicyMix(getValueFromVector<int>(mFdp, kMixTypes),
598 getValueFromVector<int>(mFdp, kMixRouteFlags),
599 getValueFromVector<audio_devices_t>(mFdp, kAudioDevices), "", audioConfig,
600 std::vector<PolicyMixTuple>());
601 }
602}
603
604void AudioPolicyManagerFuzzerDynamicPolicy::unregisterPolicyMixes() {
605 mManager->unregisterPolicyMixes(mAudioMixes);
606}
607
608void AudioPolicyManagerFuzzerDynamicPolicy::process() {
609 if (initialize()) {
610 registerPolicyMixes();
611 fuzzPatchCreation();
612 unregisterPolicyMixes();
613 }
614}
615
616class AudioPolicyManagerFuzzerDPNoRemoteSubmixModule
617 : public AudioPolicyManagerFuzzerDynamicPolicy {
618 public:
619 explicit AudioPolicyManagerFuzzerDPNoRemoteSubmixModule(FuzzedDataProvider *fdp)
620 : AudioPolicyManagerFuzzerDynamicPolicy(fdp){};
621
622 protected:
623 std::string getConfigFile() override;
624
625 static inline const std::string sPrimaryOnlyConfig =
626 sExecutableDir + "data/test_audio_policy_primary_only_configuration.xml";
627};
628
629std::string AudioPolicyManagerFuzzerDPNoRemoteSubmixModule::getConfigFile() {
630 return fuzzXML(sPrimaryOnlyConfig);
631}
632
633class AudioPolicyManagerFuzzerDPPlaybackReRouting : public AudioPolicyManagerFuzzerDynamicPolicy {
634 public:
635 explicit AudioPolicyManagerFuzzerDPPlaybackReRouting(FuzzedDataProvider *fdp);
636 ~AudioPolicyManagerFuzzerDPPlaybackReRouting() override;
637 void process() override;
638
639 protected:
640 bool initialize() override;
641 void playBackReRouting();
642
643 std::unique_ptr<RecordingActivityTracker> mTracker;
644
645 std::vector<PolicyMixTuple> mUsageRules = {
646 {AUDIO_USAGE_MEDIA, AUDIO_SOURCE_DEFAULT, RULE_MATCH_ATTRIBUTE_USAGE},
647 {AUDIO_USAGE_ALARM, AUDIO_SOURCE_DEFAULT, RULE_MATCH_ATTRIBUTE_USAGE}};
648
649 struct audio_port_v7 mInjectionPort;
650 audio_port_handle_t mPortId = AUDIO_PORT_HANDLE_NONE;
651 audio_config_t mAudioConfig;
652};
653
654AudioPolicyManagerFuzzerDPPlaybackReRouting::AudioPolicyManagerFuzzerDPPlaybackReRouting(
655 FuzzedDataProvider *fdp)
656 : AudioPolicyManagerFuzzerDynamicPolicy(fdp) {
657 const uint32_t numRules = mFdp->ConsumeIntegralInRange<uint32_t>(1, 10);
658 for (int i = 0; i < numRules; ++i) {
659 PolicyMixTuple rule = {getValueFromVector<audio_usage_t>(mFdp, kAudioUsages),
660 getValueFromVector<audio_source_t>(mFdp, kAudioSources),
661 RULE_MATCH_ATTRIBUTE_USAGE};
662 mUsageRules.push_back(rule);
663 }
664}
665
666AudioPolicyManagerFuzzerDPPlaybackReRouting::~AudioPolicyManagerFuzzerDPPlaybackReRouting() {
Munna Verma5f7cabd2023-06-20 16:22:16 +0530667 if (mManager) {
668 mManager->stopInput(mPortId);
669 }
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530670}
671
672bool AudioPolicyManagerFuzzerDPPlaybackReRouting::initialize() {
Mufaddal Chakera5d9a9e02021-02-16 14:18:54 +0530673 if (!AudioPolicyManagerFuzzerDynamicPolicy::initialize()) {
674 return false;
675 }
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530676 mTracker.reset(new RecordingActivityTracker());
677
678 mAudioConfig = AUDIO_CONFIG_INITIALIZER;
679 mAudioConfig.channel_mask =
680 getValueFromVector<audio_channel_mask_t>(mFdp, kAudioChannelOutMasks);
681 mAudioConfig.format = getValueFromVector<audio_format_t>(mFdp, kAudioFormats);
682 mAudioConfig.sample_rate = getValueFromVector<uint32_t>(mFdp, kSamplingRates);
683 status_t ret = addPolicyMix(getValueFromVector<int>(mFdp, kMixTypes),
684 getValueFromVector<int>(mFdp, kMixRouteFlags),
685 getValueFromVector<audio_devices_t>(mFdp, kAudioDevices),
686 mMixAddress, mAudioConfig, mUsageRules);
687 if (ret != NO_ERROR) {
688 return false;
689 }
690
691 struct audio_port_v7 extractionPort;
692 findDevicePort(AUDIO_PORT_ROLE_SOURCE, getValueFromVector<audio_devices_t>(mFdp, kAudioDevices),
693 mMixAddress, &extractionPort);
694
695 audio_port_handle_t selectedDeviceId = AUDIO_PORT_HANDLE_NONE;
696 audio_source_t source = getValueFromVector<audio_source_t>(mFdp, kAudioSources);
697 audio_attributes_t attr = {AUDIO_CONTENT_TYPE_UNKNOWN, AUDIO_USAGE_UNKNOWN, source,
698 AUDIO_FLAG_NONE, ""};
699 std::string tags = "addr=" + mMixAddress;
700 strncpy(attr.tags, tags.c_str(), AUDIO_ATTRIBUTES_TAGS_MAX_SIZE - 1);
701 getInputForAttr(attr, mTracker->getRiid(), &selectedDeviceId, mAudioConfig.format,
702 mAudioConfig.channel_mask, mAudioConfig.sample_rate, AUDIO_INPUT_FLAG_NONE,
703 &mPortId);
704
705 ret = mManager->startInput(mPortId);
706 if (ret != NO_ERROR) {
707 return false;
708 }
709 if (!findDevicePort(AUDIO_PORT_ROLE_SINK,
710 getValueFromVector<audio_devices_t>(mFdp, kAudioDevices), mMixAddress,
711 &mInjectionPort)) {
712 return false;
713 }
714
715 return true;
716}
717
718void AudioPolicyManagerFuzzerDPPlaybackReRouting::playBackReRouting() {
719 const uint32_t numTestCases = mFdp->ConsumeIntegralInRange<uint32_t>(1, 10);
720 for (int i = 0; i < numTestCases; ++i) {
721 audio_attributes_t attr;
722 attr.content_type = getValueFromVector<audio_content_type_t>(mFdp, kAudioContentTypes);
723 attr.usage = getValueFromVector<audio_usage_t>(mFdp, kAudioUsages);
724 attr.source = getValueFromVector<audio_source_t>(mFdp, kAudioSources);
725 attr.flags = getValueFromVector<audio_flags_mask_t>(mFdp, kAudioFlagMasks);
726 std::string tags(mFdp->ConsumeBool() ? "" : "addr=remote_submix_media");
727 strncpy(attr.tags, tags.c_str(), AUDIO_ATTRIBUTES_TAGS_MAX_SIZE - 1);
728
729 audio_port_handle_t playbackRoutedPortId = AUDIO_PORT_HANDLE_NONE;
730 getOutputForAttr(&playbackRoutedPortId, mAudioConfig.format, mAudioConfig.channel_mask,
731 mAudioConfig.sample_rate, AUDIO_OUTPUT_FLAG_NONE, nullptr /*output*/,
732 nullptr /*portId*/, attr);
733 }
734}
735
736void AudioPolicyManagerFuzzerDPPlaybackReRouting::process() {
737 if (initialize()) {
738 playBackReRouting();
739 registerPolicyMixes();
740 fuzzPatchCreation();
741 unregisterPolicyMixes();
742 }
743}
744
745class AudioPolicyManagerFuzzerDPMixRecordInjection : public AudioPolicyManagerFuzzerDynamicPolicy {
746 public:
747 explicit AudioPolicyManagerFuzzerDPMixRecordInjection(FuzzedDataProvider *fdp);
748 ~AudioPolicyManagerFuzzerDPMixRecordInjection() override;
749 void process() override;
750
751 protected:
752 bool initialize() override;
753 void recordingInjection();
754
755 std::unique_ptr<RecordingActivityTracker> mTracker;
756
757 std::vector<PolicyMixTuple> mSourceRules = {
758 {AUDIO_USAGE_UNKNOWN, AUDIO_SOURCE_CAMCORDER, RULE_MATCH_ATTRIBUTE_CAPTURE_PRESET},
759 {AUDIO_USAGE_UNKNOWN, AUDIO_SOURCE_MIC, RULE_MATCH_ATTRIBUTE_CAPTURE_PRESET},
760 {AUDIO_USAGE_UNKNOWN, AUDIO_SOURCE_VOICE_COMMUNICATION,
761 RULE_MATCH_ATTRIBUTE_CAPTURE_PRESET}};
762
763 struct audio_port_v7 mExtractionPort;
764 audio_port_handle_t mPortId = AUDIO_PORT_HANDLE_NONE;
765 audio_config_t mAudioConfig;
766};
767
768AudioPolicyManagerFuzzerDPMixRecordInjection::AudioPolicyManagerFuzzerDPMixRecordInjection(
769 FuzzedDataProvider *fdp)
770 : AudioPolicyManagerFuzzerDynamicPolicy(fdp) {
771 const uint32_t numRules = mFdp->ConsumeIntegralInRange<uint32_t>(1, 10);
772 for (int i = 0; i < numRules; ++i) {
773 PolicyMixTuple rule = {getValueFromVector<audio_usage_t>(mFdp, kAudioUsages),
774 getValueFromVector<audio_source_t>(mFdp, kAudioSources),
775 RULE_MATCH_ATTRIBUTE_CAPTURE_PRESET};
776 mSourceRules.push_back(rule);
777 }
778}
779
780AudioPolicyManagerFuzzerDPMixRecordInjection::~AudioPolicyManagerFuzzerDPMixRecordInjection() {
Munna Verma5f7cabd2023-06-20 16:22:16 +0530781 if (mManager) {
782 mManager->stopOutput(mPortId);
783 }
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530784}
785
786bool AudioPolicyManagerFuzzerDPMixRecordInjection::initialize() {
Mufaddal Chakera5d9a9e02021-02-16 14:18:54 +0530787 if (!AudioPolicyManagerFuzzerDynamicPolicy::initialize()) {
788 return false;
789 }
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530790
791 mTracker.reset(new RecordingActivityTracker());
792
793 mAudioConfig = AUDIO_CONFIG_INITIALIZER;
794 mAudioConfig.channel_mask =
795 getValueFromVector<audio_channel_mask_t>(mFdp, kAudioChannelInMasks);
796 mAudioConfig.format = getValueFromVector<audio_format_t>(mFdp, kAudioFormats);
797 mAudioConfig.sample_rate = getValueFromVector<uint32_t>(mFdp, kSamplingRates);
798 status_t ret = addPolicyMix(getValueFromVector<int>(mFdp, kMixTypes),
799 getValueFromVector<int>(mFdp, kMixRouteFlags),
800 getValueFromVector<audio_devices_t>(mFdp, kAudioDevices),
801 mMixAddress, mAudioConfig, mSourceRules);
802 if (ret != NO_ERROR) {
803 return false;
804 }
805
806 struct audio_port_v7 injectionPort;
807 findDevicePort(AUDIO_PORT_ROLE_SINK, getValueFromVector<audio_devices_t>(mFdp, kAudioDevices),
808 mMixAddress, &injectionPort);
809
810 audio_port_handle_t selectedDeviceId = AUDIO_PORT_HANDLE_NONE;
811 audio_usage_t usage = getValueFromVector<audio_usage_t>(mFdp, kAudioUsages);
812 audio_attributes_t attr = {AUDIO_CONTENT_TYPE_UNKNOWN, usage, AUDIO_SOURCE_DEFAULT,
813 AUDIO_FLAG_NONE, ""};
814 std::string tags = std::string("addr=") + mMixAddress;
815 strncpy(attr.tags, tags.c_str(), AUDIO_ATTRIBUTES_TAGS_MAX_SIZE - 1);
816 getOutputForAttr(&selectedDeviceId, mAudioConfig.format, mAudioConfig.channel_mask,
817 mAudioConfig.sample_rate /*sampleRate*/, AUDIO_OUTPUT_FLAG_NONE,
818 nullptr /*output*/, &mPortId, attr);
819 ret = mManager->startOutput(mPortId);
820 if (ret != NO_ERROR) {
821 return false;
822 }
823 getDeviceIdFromPatch(mClient->getLastAddedPatch());
824 if (!findDevicePort(AUDIO_PORT_ROLE_SOURCE,
825 getValueFromVector<audio_devices_t>(mFdp, kAudioDevices), mMixAddress,
826 &mExtractionPort)) {
827 return false;
828 }
829
830 return true;
831}
832
833void AudioPolicyManagerFuzzerDPMixRecordInjection::recordingInjection() {
834 const uint32_t numTestCases = mFdp->ConsumeIntegralInRange<uint32_t>(1, 10);
835 for (int i = 0; i < numTestCases; ++i) {
836 audio_attributes_t attr;
837 attr.content_type = getValueFromVector<audio_content_type_t>(mFdp, kAudioContentTypes);
838 attr.usage = getValueFromVector<audio_usage_t>(mFdp, kAudioUsages);
839 attr.source = getValueFromVector<audio_source_t>(mFdp, kAudioSources);
840 attr.flags = getValueFromVector<audio_flags_mask_t>(mFdp, kAudioFlagMasks);
841 std::string tags(mFdp->ConsumeBool() ? "" : "addr=remote_submix_media");
842 strncpy(attr.tags, tags.c_str(), AUDIO_ATTRIBUTES_TAGS_MAX_SIZE - 1);
843
844 audio_port_handle_t captureRoutedPortId = AUDIO_PORT_HANDLE_NONE;
845 audio_port_handle_t portId = AUDIO_PORT_HANDLE_NONE;
846 getInputForAttr(attr, mTracker->getRiid(), &captureRoutedPortId, mAudioConfig.format,
847 mAudioConfig.channel_mask, mAudioConfig.sample_rate, AUDIO_INPUT_FLAG_NONE,
848 &portId);
849 }
850}
851
852void AudioPolicyManagerFuzzerDPMixRecordInjection::process() {
853 if (initialize()) {
854 recordingInjection();
855 registerPolicyMixes();
856 fuzzPatchCreation();
857 unregisterPolicyMixes();
858 }
859}
860
861using DeviceConnectionTestParams =
862 std::tuple<audio_devices_t /*type*/, std::string /*name*/, std::string /*address*/>;
863
864class AudioPolicyManagerFuzzerDeviceConnection
865 : public AudioPolicyManagerFuzzerWithConfigurationFile {
866 public:
867 explicit AudioPolicyManagerFuzzerDeviceConnection(FuzzedDataProvider *fdp)
868 : AudioPolicyManagerFuzzerWithConfigurationFile(fdp){};
869 void process() override;
870
jiabin2b9d5a12021-12-10 01:06:29 +0000871 void fuzzGetDirectPlaybackSupport();
Dorin Drimusf2196d82022-01-03 12:11:18 +0100872 void fuzzGetDirectProfilesForAttributes();
jiabin2b9d5a12021-12-10 01:06:29 +0000873
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530874 protected:
875 void setDeviceConnectionState();
876 void explicitlyRoutingAfterConnection();
877};
878
879void AudioPolicyManagerFuzzerDeviceConnection::setDeviceConnectionState() {
880 const uint32_t numTestCases = mFdp->ConsumeIntegralInRange<uint32_t>(1, 10);
881 for (int i = 0; i < numTestCases; ++i) {
882 const audio_devices_t type = getValueFromVector<audio_devices_t>(mFdp, kAudioDevices);
883 const std::string name = mFdp->ConsumeRandomLengthString();
884 const std::string address = mFdp->ConsumeRandomLengthString();
885 mManager->setDeviceConnectionState(
886 type, getValueFromVector<audio_policy_dev_state_t>(mFdp, kAudioPolicyDeviceStates),
887 address.c_str(), name.c_str(), getValueFromVector<audio_format_t>(mFdp, kAudioFormats));
888 }
889}
890
891void AudioPolicyManagerFuzzerDeviceConnection::explicitlyRoutingAfterConnection() {
892 const uint32_t numTestCases = mFdp->ConsumeIntegralInRange<uint32_t>(1, 10);
893 for (int i = 0; i < numTestCases; ++i) {
894 const audio_devices_t type = getValueFromVector<audio_devices_t>(mFdp, kAudioDevices);
895 const std::string name = mFdp->ConsumeRandomLengthString();
896 const std::string address = mFdp->ConsumeRandomLengthString();
897 mManager->setDeviceConnectionState(
898 type, getValueFromVector<audio_policy_dev_state_t>(mFdp, kAudioPolicyDeviceStates),
899 address.c_str(), name.c_str(), getValueFromVector<audio_format_t>(mFdp, kAudioFormats));
900
901 audio_port_v7 devicePort;
902 const audio_port_role_t role =
903 audio_is_output_device(type) ? AUDIO_PORT_ROLE_SINK : AUDIO_PORT_ROLE_SOURCE;
904 findDevicePort(role, type, address, &devicePort);
905
906 audio_port_handle_t routedPortId = devicePort.id;
907 // Try start input or output according to the device type
908 if (audio_is_output_devices(type)) {
909 getOutputForAttr(&routedPortId, getValueFromVector<audio_format_t>(mFdp, kAudioFormats),
910 getValueFromVector<audio_channel_mask_t>(mFdp, kAudioChannelOutMasks),
911 getValueFromVector<uint32_t>(mFdp, kSamplingRates),
912 AUDIO_OUTPUT_FLAG_NONE);
913 } else if (audio_is_input_device(type)) {
914 RecordingActivityTracker tracker;
915 getInputForAttr({}, tracker.getRiid(), &routedPortId,
916 getValueFromVector<audio_format_t>(mFdp, kAudioFormats),
917 getValueFromVector<audio_channel_mask_t>(mFdp, kAudioChannelInMasks),
918 getValueFromVector<uint32_t>(mFdp, kSamplingRates),
919 AUDIO_INPUT_FLAG_NONE);
920 }
921 }
922}
923
jiabin2b9d5a12021-12-10 01:06:29 +0000924void AudioPolicyManagerFuzzerDeviceConnection::fuzzGetDirectPlaybackSupport() {
925 const uint32_t numTestCases = mFdp->ConsumeIntegralInRange<uint32_t>(1, 10);
926 for (int i = 0; i < numTestCases; ++i) {
927 audio_attributes_t attr = AUDIO_ATTRIBUTES_INITIALIZER;
928 attr.content_type = getValueFromVector<audio_content_type_t>(mFdp, kAudioContentTypes);
929 attr.usage = getValueFromVector<audio_usage_t>(mFdp, kAudioUsages);
930 attr.source = getValueFromVector<audio_source_t>(mFdp, kAudioSources);
931 attr.flags = getValueFromVector<audio_flags_mask_t>(mFdp, kAudioFlagMasks);
932 audio_config_t config = AUDIO_CONFIG_INITIALIZER;
933 config.channel_mask = getValueFromVector<audio_channel_mask_t>(mFdp, kAudioChannelOutMasks);
934 config.format = getValueFromVector<audio_format_t>(mFdp, kAudioFormats);
935 config.sample_rate = getValueFromVector<uint32_t>(mFdp, kSamplingRates);
936 mManager->getDirectPlaybackSupport(&attr, &config);
937 }
938}
939
Dorin Drimusf2196d82022-01-03 12:11:18 +0100940void AudioPolicyManagerFuzzerDeviceConnection::fuzzGetDirectProfilesForAttributes() {
941 const uint32_t numTestCases = mFdp->ConsumeIntegralInRange<uint32_t>(1, 10);
942 for (int i = 0; i < numTestCases; ++i) {
943 AudioProfileVector audioProfiles;
944 audio_attributes_t attr = AUDIO_ATTRIBUTES_INITIALIZER;
945 attr.content_type = getValueFromVector<audio_content_type_t>(mFdp, kAudioContentTypes);
946 attr.usage = getValueFromVector<audio_usage_t>(mFdp, kAudioUsages);
947 attr.source = getValueFromVector<audio_source_t>(mFdp, kAudioSources);
948 attr.flags = getValueFromVector<audio_flags_mask_t>(mFdp, kAudioFlagMasks);
949 mManager->getDirectProfilesForAttributes(&attr, audioProfiles);
950 }
951}
952
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530953void AudioPolicyManagerFuzzerDeviceConnection::process() {
954 if (initialize()) {
955 setDeviceConnectionState();
956 explicitlyRoutingAfterConnection();
jiabin2b9d5a12021-12-10 01:06:29 +0000957 fuzzGetDirectPlaybackSupport();
Dorin Drimusf2196d82022-01-03 12:11:18 +0100958 fuzzGetDirectProfilesForAttributes();
Mufaddal Chakera253887f2020-12-09 17:17:37 +0530959 fuzzPatchCreation();
960 }
961}
962
963class AudioPolicyManagerTVFuzzer : public AudioPolicyManagerFuzzerWithConfigurationFile {
964 public:
965 explicit AudioPolicyManagerTVFuzzer(FuzzedDataProvider *fdp)
966 : AudioPolicyManagerFuzzerWithConfigurationFile(fdp){};
967 void process() override;
968
969 protected:
970 std::string getConfigFile();
971 void testHDMIPortSelection(audio_output_flags_t flags);
972
973 static inline const std::string sTvConfig =
974 AudioPolicyManagerTVFuzzer::sExecutableDir + "data/test_tv_apm_configuration.xml";
975};
976
977std::string AudioPolicyManagerTVFuzzer::getConfigFile() { return fuzzXML(sTvConfig); }
978
979void AudioPolicyManagerTVFuzzer::testHDMIPortSelection(audio_output_flags_t flags) {
980 audio_devices_t audioDevice = getValueFromVector<audio_devices_t>(mFdp, kAudioDevices);
981 audio_format_t audioFormat = getValueFromVector<audio_format_t>(mFdp, kAudioFormats);
982 status_t ret = mManager->setDeviceConnectionState(
983 audioDevice, AUDIO_POLICY_DEVICE_STATE_AVAILABLE, "" /*address*/, "" /*name*/, audioFormat);
984 if (ret != NO_ERROR) {
985 return;
986 }
987 audio_port_handle_t selectedDeviceId = AUDIO_PORT_HANDLE_NONE;
988 audio_io_handle_t output;
989 audio_port_handle_t portId;
990 getOutputForAttr(&selectedDeviceId, getValueFromVector<audio_format_t>(mFdp, kAudioFormats),
991 getValueFromVector<audio_channel_mask_t>(mFdp, kAudioChannelOutMasks),
992 getValueFromVector<uint32_t>(mFdp, kSamplingRates), flags, &output, &portId);
993 sp<SwAudioOutputDescriptor> outDesc = mManager->getOutputs().valueFor(output);
994 if (outDesc.get() == nullptr) {
995 return;
996 }
997 audio_port_v7 port = {};
998 outDesc->toAudioPort(&port);
999 mManager->releaseOutput(portId);
1000 mManager->setDeviceConnectionState(audioDevice, AUDIO_POLICY_DEVICE_STATE_UNAVAILABLE,
1001 "" /*address*/, "" /*name*/, audioFormat);
1002}
1003
1004void AudioPolicyManagerTVFuzzer::process() {
1005 if (initialize()) {
1006 testHDMIPortSelection(getValueFromVector<audio_output_flags_t>(mFdp, kAudioOutputFlags));
1007 fuzzPatchCreation();
1008 }
1009}
1010
1011extern "C" int LLVMFuzzerTestOneInput(const uint8_t *data, size_t size) {
1012 if (size < 1) {
1013 return 0;
1014 }
1015 FuzzedDataProvider fdp = FuzzedDataProvider(data, size);
1016 while (fdp.remaining_bytes() > 0) {
1017 AudioPolicyManagerFuzzer audioPolicyManagerFuzzer(&fdp);
1018 audioPolicyManagerFuzzer.process();
1019
1020 AudioPolicyManagerFuzzerMsd audioPolicyManagerFuzzerMsd(&fdp);
1021 audioPolicyManagerFuzzerMsd.process();
1022
1023 AudioPolicyManagerFuzzerWithConfigurationFile audioPolicyManagerFuzzerWithConfigurationFile(
1024 &fdp);
1025 audioPolicyManagerFuzzerWithConfigurationFile.process();
1026
1027 AudioPolicyManagerFuzzerDynamicPolicy audioPolicyManagerFuzzerDynamicPolicy(&fdp);
1028 audioPolicyManagerFuzzerDynamicPolicy.process();
1029
1030 AudioPolicyManagerFuzzerDPNoRemoteSubmixModule
1031 audioPolicyManagerFuzzerDPNoRemoteSubmixModule(&fdp);
1032 audioPolicyManagerFuzzerDPNoRemoteSubmixModule.process();
1033
1034 AudioPolicyManagerFuzzerDPPlaybackReRouting audioPolicyManagerFuzzerDPPlaybackReRouting(
1035 &fdp);
1036 audioPolicyManagerFuzzerDPPlaybackReRouting.process();
1037
1038 AudioPolicyManagerFuzzerDPMixRecordInjection audioPolicyManagerFuzzerDPMixRecordInjection(
1039 &fdp);
1040 audioPolicyManagerFuzzerDPMixRecordInjection.process();
1041
1042 AudioPolicyManagerFuzzerDeviceConnection audioPolicyManagerFuzzerDeviceConnection(&fdp);
1043 audioPolicyManagerFuzzerDeviceConnection.process();
1044
1045 AudioPolicyManagerTVFuzzer audioPolicyManagerTVFuzzer(&fdp);
1046 audioPolicyManagerTVFuzzer.process();
1047 }
1048 return 0;
1049}