1 /*
2 * Copyright (C) 2016 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17 #include <stdio.h>
18
19 #define LOG_TAG "DeviceHalHidl"
20 //#define LOG_NDEBUG 0
21
22 #include <android/hardware/audio/2.0/IPrimaryDevice.h>
23 #include <cutils/native_handle.h>
24 #include <hwbinder/IPCThreadState.h>
25 #include <utils/Log.h>
26
27 #include "DeviceHalHidl.h"
28 #include "HidlUtils.h"
29 #include "StreamHalHidl.h"
30
31 using ::android::hardware::audio::common::V2_0::AudioConfig;
32 using ::android::hardware::audio::common::V2_0::AudioDevice;
33 using ::android::hardware::audio::common::V2_0::AudioInputFlag;
34 using ::android::hardware::audio::common::V2_0::AudioOutputFlag;
35 using ::android::hardware::audio::common::V2_0::AudioPatchHandle;
36 using ::android::hardware::audio::common::V2_0::AudioPort;
37 using ::android::hardware::audio::common::V2_0::AudioPortConfig;
38 using ::android::hardware::audio::common::V2_0::AudioMode;
39 using ::android::hardware::audio::common::V2_0::AudioSource;
40 using ::android::hardware::audio::common::V2_0::HidlUtils;
41 using ::android::hardware::audio::V2_0::DeviceAddress;
42 using ::android::hardware::audio::V2_0::IPrimaryDevice;
43 using ::android::hardware::audio::V2_0::ParameterValue;
44 using ::android::hardware::audio::V2_0::Result;
45 using ::android::hardware::hidl_string;
46 using ::android::hardware::hidl_vec;
47
48 namespace android {
49
50 namespace {
51
deviceAddressFromHal(audio_devices_t device,const char * halAddress,DeviceAddress * address)52 status_t deviceAddressFromHal(
53 audio_devices_t device, const char* halAddress, DeviceAddress* address) {
54 address->device = AudioDevice(device);
55
56 if (halAddress == nullptr || strnlen(halAddress, AUDIO_DEVICE_MAX_ADDRESS_LEN) == 0) {
57 return OK;
58 }
59 const bool isInput = (device & AUDIO_DEVICE_BIT_IN) != 0;
60 if (isInput) device &= ~AUDIO_DEVICE_BIT_IN;
61 if ((!isInput && (device & AUDIO_DEVICE_OUT_ALL_A2DP) != 0)
62 || (isInput && (device & AUDIO_DEVICE_IN_BLUETOOTH_A2DP) != 0)) {
63 int status = sscanf(halAddress,
64 "%hhX:%hhX:%hhX:%hhX:%hhX:%hhX",
65 &address->address.mac[0], &address->address.mac[1], &address->address.mac[2],
66 &address->address.mac[3], &address->address.mac[4], &address->address.mac[5]);
67 return status == 6 ? OK : BAD_VALUE;
68 } else if ((!isInput && (device & AUDIO_DEVICE_OUT_IP) != 0)
69 || (isInput && (device & AUDIO_DEVICE_IN_IP) != 0)) {
70 int status = sscanf(halAddress,
71 "%hhu.%hhu.%hhu.%hhu",
72 &address->address.ipv4[0], &address->address.ipv4[1],
73 &address->address.ipv4[2], &address->address.ipv4[3]);
74 return status == 4 ? OK : BAD_VALUE;
75 } else if ((!isInput && (device & AUDIO_DEVICE_OUT_ALL_USB)) != 0
76 || (isInput && (device & AUDIO_DEVICE_IN_ALL_USB)) != 0) {
77 int status = sscanf(halAddress,
78 "card=%d;device=%d",
79 &address->address.alsa.card, &address->address.alsa.device);
80 return status == 2 ? OK : BAD_VALUE;
81 } else if ((!isInput && (device & AUDIO_DEVICE_OUT_BUS) != 0)
82 || (isInput && (device & AUDIO_DEVICE_IN_BUS) != 0)) {
83 if (halAddress != NULL) {
84 address->busAddress = halAddress;
85 return OK;
86 }
87 return BAD_VALUE;
88 } else if ((!isInput && (device & AUDIO_DEVICE_OUT_REMOTE_SUBMIX)) != 0
89 || (isInput && (device & AUDIO_DEVICE_IN_REMOTE_SUBMIX) != 0)) {
90 if (halAddress != NULL) {
91 address->rSubmixAddress = halAddress;
92 return OK;
93 }
94 return BAD_VALUE;
95 }
96 return OK;
97 }
98
99 } // namespace
100
DeviceHalHidl(const sp<IDevice> & device)101 DeviceHalHidl::DeviceHalHidl(const sp<IDevice>& device)
102 : ConversionHelperHidl("Device"), mDevice(device),
103 mPrimaryDevice(IPrimaryDevice::castFrom(device)) {
104 }
105
~DeviceHalHidl()106 DeviceHalHidl::~DeviceHalHidl() {
107 if (mDevice != 0) {
108 mDevice.clear();
109 hardware::IPCThreadState::self()->flushCommands();
110 }
111 }
112
getSupportedDevices(uint32_t *)113 status_t DeviceHalHidl::getSupportedDevices(uint32_t*) {
114 // Obsolete.
115 return INVALID_OPERATION;
116 }
117
initCheck()118 status_t DeviceHalHidl::initCheck() {
119 if (mDevice == 0) return NO_INIT;
120 return processReturn("initCheck", mDevice->initCheck());
121 }
122
setVoiceVolume(float volume)123 status_t DeviceHalHidl::setVoiceVolume(float volume) {
124 if (mDevice == 0) return NO_INIT;
125 if (mPrimaryDevice == 0) return INVALID_OPERATION;
126 return processReturn("setVoiceVolume", mPrimaryDevice->setVoiceVolume(volume));
127 }
128
setMasterVolume(float volume)129 status_t DeviceHalHidl::setMasterVolume(float volume) {
130 if (mDevice == 0) return NO_INIT;
131 if (mPrimaryDevice == 0) return INVALID_OPERATION;
132 return processReturn("setMasterVolume", mPrimaryDevice->setMasterVolume(volume));
133 }
134
getMasterVolume(float * volume)135 status_t DeviceHalHidl::getMasterVolume(float *volume) {
136 if (mDevice == 0) return NO_INIT;
137 if (mPrimaryDevice == 0) return INVALID_OPERATION;
138 Result retval;
139 Return<void> ret = mPrimaryDevice->getMasterVolume(
140 [&](Result r, float v) {
141 retval = r;
142 if (retval == Result::OK) {
143 *volume = v;
144 }
145 });
146 return processReturn("getMasterVolume", ret, retval);
147 }
148
setMode(audio_mode_t mode)149 status_t DeviceHalHidl::setMode(audio_mode_t mode) {
150 if (mDevice == 0) return NO_INIT;
151 if (mPrimaryDevice == 0) return INVALID_OPERATION;
152 return processReturn("setMode", mPrimaryDevice->setMode(AudioMode(mode)));
153 }
154
setMicMute(bool state)155 status_t DeviceHalHidl::setMicMute(bool state) {
156 if (mDevice == 0) return NO_INIT;
157 return processReturn("setMicMute", mDevice->setMicMute(state));
158 }
159
getMicMute(bool * state)160 status_t DeviceHalHidl::getMicMute(bool *state) {
161 if (mDevice == 0) return NO_INIT;
162 Result retval;
163 Return<void> ret = mDevice->getMicMute(
164 [&](Result r, bool mute) {
165 retval = r;
166 if (retval == Result::OK) {
167 *state = mute;
168 }
169 });
170 return processReturn("getMicMute", ret, retval);
171 }
172
setMasterMute(bool state)173 status_t DeviceHalHidl::setMasterMute(bool state) {
174 if (mDevice == 0) return NO_INIT;
175 return processReturn("setMasterMute", mDevice->setMasterMute(state));
176 }
177
getMasterMute(bool * state)178 status_t DeviceHalHidl::getMasterMute(bool *state) {
179 if (mDevice == 0) return NO_INIT;
180 Result retval;
181 Return<void> ret = mDevice->getMasterMute(
182 [&](Result r, bool mute) {
183 retval = r;
184 if (retval == Result::OK) {
185 *state = mute;
186 }
187 });
188 return processReturn("getMasterMute", ret, retval);
189 }
190
setParameters(const String8 & kvPairs)191 status_t DeviceHalHidl::setParameters(const String8& kvPairs) {
192 if (mDevice == 0) return NO_INIT;
193 hidl_vec<ParameterValue> hidlParams;
194 status_t status = parametersFromHal(kvPairs, &hidlParams);
195 if (status != OK) return status;
196 return processReturn("setParameters", mDevice->setParameters(hidlParams));
197 }
198
getParameters(const String8 & keys,String8 * values)199 status_t DeviceHalHidl::getParameters(const String8& keys, String8 *values) {
200 values->clear();
201 if (mDevice == 0) return NO_INIT;
202 hidl_vec<hidl_string> hidlKeys;
203 status_t status = keysFromHal(keys, &hidlKeys);
204 if (status != OK) return status;
205 Result retval;
206 Return<void> ret = mDevice->getParameters(
207 hidlKeys,
208 [&](Result r, const hidl_vec<ParameterValue>& parameters) {
209 retval = r;
210 if (retval == Result::OK) {
211 parametersToHal(parameters, values);
212 }
213 });
214 return processReturn("getParameters", ret, retval);
215 }
216
getInputBufferSize(const struct audio_config * config,size_t * size)217 status_t DeviceHalHidl::getInputBufferSize(
218 const struct audio_config *config, size_t *size) {
219 if (mDevice == 0) return NO_INIT;
220 AudioConfig hidlConfig;
221 HidlUtils::audioConfigFromHal(*config, &hidlConfig);
222 Result retval;
223 Return<void> ret = mDevice->getInputBufferSize(
224 hidlConfig,
225 [&](Result r, uint64_t bufferSize) {
226 retval = r;
227 if (retval == Result::OK) {
228 *size = static_cast<size_t>(bufferSize);
229 }
230 });
231 return processReturn("getInputBufferSize", ret, retval);
232 }
233
openOutputStream(audio_io_handle_t handle,audio_devices_t devices,audio_output_flags_t flags,struct audio_config * config,const char * address,sp<StreamOutHalInterface> * outStream)234 status_t DeviceHalHidl::openOutputStream(
235 audio_io_handle_t handle,
236 audio_devices_t devices,
237 audio_output_flags_t flags,
238 struct audio_config *config,
239 const char *address,
240 sp<StreamOutHalInterface> *outStream) {
241 if (mDevice == 0) return NO_INIT;
242 DeviceAddress hidlDevice;
243 status_t status = deviceAddressFromHal(devices, address, &hidlDevice);
244 if (status != OK) return status;
245 AudioConfig hidlConfig;
246 HidlUtils::audioConfigFromHal(*config, &hidlConfig);
247 Result retval = Result::NOT_INITIALIZED;
248 Return<void> ret = mDevice->openOutputStream(
249 handle,
250 hidlDevice,
251 hidlConfig,
252 AudioOutputFlag(flags),
253 [&](Result r, const sp<IStreamOut>& result, const AudioConfig& suggestedConfig) {
254 retval = r;
255 if (retval == Result::OK) {
256 *outStream = new StreamOutHalHidl(result);
257 }
258 HidlUtils::audioConfigToHal(suggestedConfig, config);
259 });
260 return processReturn("openOutputStream", ret, retval);
261 }
262
openInputStream(audio_io_handle_t handle,audio_devices_t devices,struct audio_config * config,audio_input_flags_t flags,const char * address,audio_source_t source,sp<StreamInHalInterface> * inStream)263 status_t DeviceHalHidl::openInputStream(
264 audio_io_handle_t handle,
265 audio_devices_t devices,
266 struct audio_config *config,
267 audio_input_flags_t flags,
268 const char *address,
269 audio_source_t source,
270 sp<StreamInHalInterface> *inStream) {
271 if (mDevice == 0) return NO_INIT;
272 DeviceAddress hidlDevice;
273 status_t status = deviceAddressFromHal(devices, address, &hidlDevice);
274 if (status != OK) return status;
275 AudioConfig hidlConfig;
276 HidlUtils::audioConfigFromHal(*config, &hidlConfig);
277 Result retval = Result::NOT_INITIALIZED;
278 Return<void> ret = mDevice->openInputStream(
279 handle,
280 hidlDevice,
281 hidlConfig,
282 AudioInputFlag(flags),
283 AudioSource(source),
284 [&](Result r, const sp<IStreamIn>& result, const AudioConfig& suggestedConfig) {
285 retval = r;
286 if (retval == Result::OK) {
287 *inStream = new StreamInHalHidl(result);
288 }
289 HidlUtils::audioConfigToHal(suggestedConfig, config);
290 });
291 return processReturn("openInputStream", ret, retval);
292 }
293
supportsAudioPatches(bool * supportsPatches)294 status_t DeviceHalHidl::supportsAudioPatches(bool *supportsPatches) {
295 if (mDevice == 0) return NO_INIT;
296 return processReturn("supportsAudioPatches", mDevice->supportsAudioPatches(), supportsPatches);
297 }
298
createAudioPatch(unsigned int num_sources,const struct audio_port_config * sources,unsigned int num_sinks,const struct audio_port_config * sinks,audio_patch_handle_t * patch)299 status_t DeviceHalHidl::createAudioPatch(
300 unsigned int num_sources,
301 const struct audio_port_config *sources,
302 unsigned int num_sinks,
303 const struct audio_port_config *sinks,
304 audio_patch_handle_t *patch) {
305 if (mDevice == 0) return NO_INIT;
306 hidl_vec<AudioPortConfig> hidlSources, hidlSinks;
307 HidlUtils::audioPortConfigsFromHal(num_sources, sources, &hidlSources);
308 HidlUtils::audioPortConfigsFromHal(num_sinks, sinks, &hidlSinks);
309 Result retval;
310 Return<void> ret = mDevice->createAudioPatch(
311 hidlSources, hidlSinks,
312 [&](Result r, AudioPatchHandle hidlPatch) {
313 retval = r;
314 if (retval == Result::OK) {
315 *patch = static_cast<audio_patch_handle_t>(hidlPatch);
316 }
317 });
318 return processReturn("createAudioPatch", ret, retval);
319 }
320
releaseAudioPatch(audio_patch_handle_t patch)321 status_t DeviceHalHidl::releaseAudioPatch(audio_patch_handle_t patch) {
322 if (mDevice == 0) return NO_INIT;
323 return processReturn("releaseAudioPatch", mDevice->releaseAudioPatch(patch));
324 }
325
getAudioPort(struct audio_port * port)326 status_t DeviceHalHidl::getAudioPort(struct audio_port *port) {
327 if (mDevice == 0) return NO_INIT;
328 AudioPort hidlPort;
329 HidlUtils::audioPortFromHal(*port, &hidlPort);
330 Result retval;
331 Return<void> ret = mDevice->getAudioPort(
332 hidlPort,
333 [&](Result r, const AudioPort& p) {
334 retval = r;
335 if (retval == Result::OK) {
336 HidlUtils::audioPortToHal(p, port);
337 }
338 });
339 return processReturn("getAudioPort", ret, retval);
340 }
341
setAudioPortConfig(const struct audio_port_config * config)342 status_t DeviceHalHidl::setAudioPortConfig(const struct audio_port_config *config) {
343 if (mDevice == 0) return NO_INIT;
344 AudioPortConfig hidlConfig;
345 HidlUtils::audioPortConfigFromHal(*config, &hidlConfig);
346 return processReturn("setAudioPortConfig", mDevice->setAudioPortConfig(hidlConfig));
347 }
348
getMicrophones(std::vector<media::MicrophoneInfo> * microphonesInfo __unused)349 status_t DeviceHalHidl::getMicrophones(
350 std::vector<media::MicrophoneInfo> *microphonesInfo __unused) {
351 if (mDevice == 0) return NO_INIT;
352 return INVALID_OPERATION;
353 }
354
dump(int fd)355 status_t DeviceHalHidl::dump(int fd) {
356 if (mDevice == 0) return NO_INIT;
357 native_handle_t* hidlHandle = native_handle_create(1, 0);
358 hidlHandle->data[0] = fd;
359 Return<void> ret = mDevice->debugDump(hidlHandle);
360 native_handle_delete(hidlHandle);
361 return processReturn("dump", ret);
362 }
363
364 } // namespace android
365