blob: 1e11660dcff33c185f0be9a9cf668074bea4d541 [file] [log] [blame]
Eric Laurent951f4552014-05-20 10:48:17 -07001/*
2**
3** Copyright 2014, 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
19#define LOG_TAG "AudioFlinger::PatchPanel"
20//#define LOG_NDEBUG 0
21
22#include "Configuration.h"
23#include <utils/Log.h>
24#include <audio_utils/primitives.h>
25
26#include "AudioFlinger.h"
Eric Laurent951f4552014-05-20 10:48:17 -070027#include <media/AudioParameter.h>
Ytai Ben-Tsvi53858472020-11-30 11:04:46 -080028#include <media/AudioValidator.h>
jiabinc52b1ff2019-10-31 17:20:42 -070029#include <media/DeviceDescriptorBase.h>
Mikhail Naganovdc769682018-05-04 15:34:08 -070030#include <media/PatchBuilder.h>
Andy Hungab7ef302018-05-15 19:35:29 -070031#include <mediautils/ServiceUtilities.h>
Eric Laurent951f4552014-05-20 10:48:17 -070032
33// ----------------------------------------------------------------------------
34
35// Note: the following macro is used for extremely verbose logging message. In
36// order to run with ALOG_ASSERT turned on, we need to have LOG_NDEBUG set to
37// 0; but one side effect of this is to turn all LOGV's as well. Some messages
38// are so verbose that we want to suppress them even when we have ALOG_ASSERT
39// turned on. Do not uncomment the #def below unless you really know what you
40// are doing and want to see all of the extremely verbose messages.
41//#define VERY_VERY_VERBOSE_LOGGING
42#ifdef VERY_VERY_VERBOSE_LOGGING
43#define ALOGVV ALOGV
44#else
45#define ALOGVV(a...) do { } while(0)
46#endif
47
48namespace android {
49
50/* List connected audio ports and their attributes */
51status_t AudioFlinger::listAudioPorts(unsigned int *num_ports,
52 struct audio_port *ports)
53{
54 Mutex::Autolock _l(mLock);
Mikhail Naganovdea53042018-04-26 13:10:21 -070055 return mPatchPanel.listAudioPorts(num_ports, ports);
Eric Laurent951f4552014-05-20 10:48:17 -070056}
57
58/* Get supported attributes for a given audio port */
jiabinb4fed192020-09-22 14:45:40 -070059status_t AudioFlinger::getAudioPort(struct audio_port_v7 *port) {
Ytai Ben-Tsvi53858472020-11-30 11:04:46 -080060 status_t status = AudioValidator::validateAudioPort(*port);
61 if (status != NO_ERROR) {
62 return status;
63 }
64
Eric Laurent951f4552014-05-20 10:48:17 -070065 Mutex::Autolock _l(mLock);
Mikhail Naganovdea53042018-04-26 13:10:21 -070066 return mPatchPanel.getAudioPort(port);
Eric Laurent951f4552014-05-20 10:48:17 -070067}
68
Eric Laurent951f4552014-05-20 10:48:17 -070069/* Connect a patch between several source and sink ports */
70status_t AudioFlinger::createAudioPatch(const struct audio_patch *patch,
71 audio_patch_handle_t *handle)
72{
Ytai Ben-Tsvi53858472020-11-30 11:04:46 -080073 status_t status = AudioValidator::validateAudioPatch(*patch);
74 if (status != NO_ERROR) {
75 return status;
76 }
77
Eric Laurent951f4552014-05-20 10:48:17 -070078 Mutex::Autolock _l(mLock);
Mikhail Naganovdea53042018-04-26 13:10:21 -070079 return mPatchPanel.createAudioPatch(patch, handle);
Eric Laurent951f4552014-05-20 10:48:17 -070080}
81
82/* Disconnect a patch */
83status_t AudioFlinger::releaseAudioPatch(audio_patch_handle_t handle)
84{
85 Mutex::Autolock _l(mLock);
Mikhail Naganovdea53042018-04-26 13:10:21 -070086 return mPatchPanel.releaseAudioPatch(handle);
Eric Laurent951f4552014-05-20 10:48:17 -070087}
88
Eric Laurent951f4552014-05-20 10:48:17 -070089/* List connected audio ports and they attributes */
90status_t AudioFlinger::listAudioPatches(unsigned int *num_patches,
91 struct audio_patch *patches)
92{
93 Mutex::Autolock _l(mLock);
Mikhail Naganovdea53042018-04-26 13:10:21 -070094 return mPatchPanel.listAudioPatches(num_patches, patches);
Eric Laurent951f4552014-05-20 10:48:17 -070095}
96
Mikhail Naganovadca70f2018-07-09 12:49:25 -070097status_t AudioFlinger::PatchPanel::SoftwarePatch::getLatencyMs_l(double *latencyMs) const
98{
99 const auto& iter = mPatchPanel.mPatches.find(mPatchHandle);
100 if (iter != mPatchPanel.mPatches.end()) {
101 return iter->second.getLatencyMs(latencyMs);
102 } else {
103 return BAD_VALUE;
104 }
105}
106
Eric Laurent951f4552014-05-20 10:48:17 -0700107/* List connected audio ports and their attributes */
108status_t AudioFlinger::PatchPanel::listAudioPorts(unsigned int *num_ports __unused,
109 struct audio_port *ports __unused)
110{
Mikhail Naganovdea53042018-04-26 13:10:21 -0700111 ALOGV(__func__);
Eric Laurent951f4552014-05-20 10:48:17 -0700112 return NO_ERROR;
113}
114
115/* Get supported attributes for a given audio port */
jiabinb4fed192020-09-22 14:45:40 -0700116status_t AudioFlinger::PatchPanel::getAudioPort(struct audio_port_v7 *port)
Eric Laurent951f4552014-05-20 10:48:17 -0700117{
jiabinb4fed192020-09-22 14:45:40 -0700118 if (port->type != AUDIO_PORT_TYPE_DEVICE) {
119 // Only query the HAL when the port is a device.
120 // TODO: implement getAudioPort for mix.
121 return INVALID_OPERATION;
122 }
123 AudioHwDevice* hwDevice = findAudioHwDeviceByModule(port->ext.device.hw_module);
124 if (hwDevice == nullptr) {
125 ALOGW("%s cannot find hw module %d", __func__, port->ext.device.hw_module);
126 return BAD_VALUE;
127 }
128 if (!hwDevice->supportsAudioPatches()) {
129 return INVALID_OPERATION;
130 }
131 return hwDevice->getAudioPort(port);
Eric Laurent951f4552014-05-20 10:48:17 -0700132}
133
Eric Laurent951f4552014-05-20 10:48:17 -0700134/* Connect a patch between several source and sink ports */
135status_t AudioFlinger::PatchPanel::createAudioPatch(const struct audio_patch *patch,
136 audio_patch_handle_t *handle)
137{
Greg Kaiserf27ce402016-03-14 13:43:14 -0700138 if (handle == NULL || patch == NULL) {
139 return BAD_VALUE;
140 }
Mikhail Naganovdea53042018-04-26 13:10:21 -0700141 ALOGV("%s() num_sources %d num_sinks %d handle %d",
142 __func__, patch->num_sources, patch->num_sinks, *handle);
143 status_t status = NO_ERROR;
144 audio_patch_handle_t halHandle = AUDIO_PATCH_HANDLE_NONE;
Eric Laurent83b88082014-06-20 18:31:16 -0700145
Mikhail Naganovac9858b2018-06-15 13:12:37 -0700146 if (!audio_patch_is_valid(patch) || (patch->num_sinks == 0 && patch->num_sources != 2)) {
Eric Laurent951f4552014-05-20 10:48:17 -0700147 return BAD_VALUE;
148 }
Eric Laurent874c42872014-08-08 15:13:39 -0700149 // limit number of sources to 1 for now or 2 sources for special cross hw module case.
150 // only the audio policy manager can request a patch creation with 2 sources.
151 if (patch->num_sources > 2) {
152 return INVALID_OPERATION;
153 }
Eric Laurent951f4552014-05-20 10:48:17 -0700154
Eric Laurent83b88082014-06-20 18:31:16 -0700155 if (*handle != AUDIO_PATCH_HANDLE_NONE) {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700156 auto iter = mPatches.find(*handle);
157 if (iter != mPatches.end()) {
158 ALOGV("%s() removing patch handle %d", __func__, *handle);
159 Patch &removedPatch = iter->second;
Mikhail Naganovdea53042018-04-26 13:10:21 -0700160 // free resources owned by the removed patch if applicable
161 // 1) if a software patch is present, release the playback and capture threads and
162 // tracks created. This will also release the corresponding audio HAL patches
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700163 if (removedPatch.isSoftware()) {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700164 removedPatch.clearConnections(this);
Eric Laurent83b88082014-06-20 18:31:16 -0700165 }
Mikhail Naganovdea53042018-04-26 13:10:21 -0700166 // 2) if the new patch and old patch source or sink are devices from different
167 // hw modules, clear the audio HAL patches now because they will not be updated
168 // by call to create_audio_patch() below which will happen on a different HW module
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700169 if (removedPatch.mHalHandle != AUDIO_PATCH_HANDLE_NONE) {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700170 audio_module_handle_t hwModule = AUDIO_MODULE_HANDLE_NONE;
171 const struct audio_patch &oldPatch = removedPatch.mAudioPatch;
172 if (oldPatch.sources[0].type == AUDIO_PORT_TYPE_DEVICE &&
173 (patch->sources[0].type != AUDIO_PORT_TYPE_DEVICE ||
174 oldPatch.sources[0].ext.device.hw_module !=
175 patch->sources[0].ext.device.hw_module)) {
176 hwModule = oldPatch.sources[0].ext.device.hw_module;
177 } else if (patch->num_sinks == 0 ||
178 (oldPatch.sinks[0].type == AUDIO_PORT_TYPE_DEVICE &&
179 (patch->sinks[0].type != AUDIO_PORT_TYPE_DEVICE ||
180 oldPatch.sinks[0].ext.device.hw_module !=
181 patch->sinks[0].ext.device.hw_module))) {
182 // Note on (patch->num_sinks == 0): this situation should not happen as
183 // these special patches are only created by the policy manager but just
184 // in case, systematically clear the HAL patch.
185 // Note that removedPatch.mAudioPatch.num_sinks cannot be 0 here because
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700186 // removedPatch.mHalHandle would be AUDIO_PATCH_HANDLE_NONE in this case.
Mikhail Naganovdea53042018-04-26 13:10:21 -0700187 hwModule = oldPatch.sinks[0].ext.device.hw_module;
188 }
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700189 sp<DeviceHalInterface> hwDevice = findHwDeviceByModule(hwModule);
190 if (hwDevice != 0) {
191 hwDevice->releaseAudioPatch(removedPatch.mHalHandle);
Mikhail Naganovdea53042018-04-26 13:10:21 -0700192 }
Eric Laurent9bcfa7c2019-11-21 15:45:04 -0800193 halHandle = removedPatch.mHalHandle;
Mikhail Naganovdea53042018-04-26 13:10:21 -0700194 }
Eric Laurentb82e6b72019-11-22 17:25:04 -0800195 erasePatch(*handle);
Eric Laurent951f4552014-05-20 10:48:17 -0700196 }
197 }
198
Mikhail Naganovdea53042018-04-26 13:10:21 -0700199 Patch newPatch{*patch};
Mikhail Naganovadca70f2018-07-09 12:49:25 -0700200 audio_module_handle_t insertedModule = AUDIO_MODULE_HANDLE_NONE;
Eric Laurent83b88082014-06-20 18:31:16 -0700201
Eric Laurent951f4552014-05-20 10:48:17 -0700202 switch (patch->sources[0].type) {
203 case AUDIO_PORT_TYPE_DEVICE: {
Eric Laurent874c42872014-08-08 15:13:39 -0700204 audio_module_handle_t srcModule = patch->sources[0].ext.device.hw_module;
Mikhail Naganovadca70f2018-07-09 12:49:25 -0700205 AudioHwDevice *audioHwDevice = findAudioHwDeviceByModule(srcModule);
206 if (!audioHwDevice) {
Eric Laurent83b88082014-06-20 18:31:16 -0700207 status = BAD_VALUE;
208 goto exit;
Eric Laurent951f4552014-05-20 10:48:17 -0700209 }
210 for (unsigned int i = 0; i < patch->num_sinks; i++) {
Eric Laurent874c42872014-08-08 15:13:39 -0700211 // support only one sink if connection to a mix or across HW modules
212 if ((patch->sinks[i].type == AUDIO_PORT_TYPE_MIX ||
Mikhail Naganovc589a492018-05-16 11:14:57 -0700213 (patch->sinks[i].type == AUDIO_PORT_TYPE_DEVICE &&
214 patch->sinks[i].ext.device.hw_module != srcModule)) &&
Eric Laurent874c42872014-08-08 15:13:39 -0700215 patch->num_sinks > 1) {
Mikhail Naganovc589a492018-05-16 11:14:57 -0700216 ALOGW("%s() multiple sinks for mix or across modules not supported", __func__);
Eric Laurent874c42872014-08-08 15:13:39 -0700217 status = INVALID_OPERATION;
218 goto exit;
219 }
Eric Laurent6a94d692014-05-20 11:18:06 -0700220 // reject connection to different sink types
221 if (patch->sinks[i].type != patch->sinks[0].type) {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700222 ALOGW("%s() different sink types in same patch not supported", __func__);
Eric Laurent83b88082014-06-20 18:31:16 -0700223 status = BAD_VALUE;
224 goto exit;
Eric Laurent951f4552014-05-20 10:48:17 -0700225 }
Eric Laurent951f4552014-05-20 10:48:17 -0700226 }
227
Eric Laurent3bcf8592015-04-03 12:13:24 -0700228 // manage patches requiring a software bridge
Eric Laurentd60560a2015-04-10 11:31:20 -0700229 // - special patch request with 2 sources (reuse one existing output mix) OR
Eric Laurent3bcf8592015-04-03 12:13:24 -0700230 // - Device to device AND
231 // - source HW module != destination HW module OR
Mikhail Naganov9ee05402016-10-13 15:58:17 -0700232 // - audio HAL does not support audio patches creation
Eric Laurentd60560a2015-04-10 11:31:20 -0700233 if ((patch->num_sources == 2) ||
234 ((patch->sinks[0].type == AUDIO_PORT_TYPE_DEVICE) &&
235 ((patch->sinks[0].ext.device.hw_module != srcModule) ||
Mikhail Naganov9ee05402016-10-13 15:58:17 -0700236 !audioHwDevice->supportsAudioPatches()))) {
juyuchen2224c5a2019-01-21 12:00:58 +0800237 audio_devices_t outputDevice = patch->sinks[0].ext.device.type;
238 String8 outputDeviceAddress = String8(patch->sinks[0].ext.device.address);
Eric Laurent83b88082014-06-20 18:31:16 -0700239 if (patch->num_sources == 2) {
240 if (patch->sources[1].type != AUDIO_PORT_TYPE_MIX ||
Eric Laurentd60560a2015-04-10 11:31:20 -0700241 (patch->num_sinks != 0 && patch->sinks[0].ext.device.hw_module !=
242 patch->sources[1].ext.mix.hw_module)) {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700243 ALOGW("%s() invalid source combination", __func__);
Eric Laurent83b88082014-06-20 18:31:16 -0700244 status = INVALID_OPERATION;
245 goto exit;
Eric Laurent951f4552014-05-20 10:48:17 -0700246 }
Eric Laurent83b88082014-06-20 18:31:16 -0700247
248 sp<ThreadBase> thread =
Mikhail Naganovdea53042018-04-26 13:10:21 -0700249 mAudioFlinger.checkPlaybackThread_l(patch->sources[1].ext.mix.handle);
Eric Laurent83b88082014-06-20 18:31:16 -0700250 if (thread == 0) {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700251 ALOGW("%s() cannot get playback thread", __func__);
Eric Laurent83b88082014-06-20 18:31:16 -0700252 status = INVALID_OPERATION;
253 goto exit;
254 }
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700255 // existing playback thread is reused, so it is not closed when patch is cleared
256 newPatch.mPlayback.setThread(
257 reinterpret_cast<PlaybackThread*>(thread.get()), false /*closeThread*/);
Eric Laurent951f4552014-05-20 10:48:17 -0700258 } else {
Eric Laurentcf2c0212014-07-25 16:20:43 -0700259 audio_config_t config = AUDIO_CONFIG_INITIALIZER;
Eric Laurentcf2c0212014-07-25 16:20:43 -0700260 audio_io_handle_t output = AUDIO_IO_HANDLE_NONE;
Mikhail Naganov67bae2c2018-07-16 15:44:35 -0700261 audio_output_flags_t flags = AUDIO_OUTPUT_FLAG_NONE;
262 if (patch->sinks[0].config_mask & AUDIO_PORT_CONFIG_SAMPLE_RATE) {
263 config.sample_rate = patch->sinks[0].sample_rate;
264 }
265 if (patch->sinks[0].config_mask & AUDIO_PORT_CONFIG_CHANNEL_MASK) {
266 config.channel_mask = patch->sinks[0].channel_mask;
267 }
268 if (patch->sinks[0].config_mask & AUDIO_PORT_CONFIG_FORMAT) {
269 config.format = patch->sinks[0].format;
270 }
271 if (patch->sinks[0].config_mask & AUDIO_PORT_CONFIG_FLAGS) {
272 flags = patch->sinks[0].flags.output;
273 }
Mikhail Naganovdea53042018-04-26 13:10:21 -0700274 sp<ThreadBase> thread = mAudioFlinger.openOutput_l(
Eric Laurent6acd1d42017-01-04 14:23:29 -0800275 patch->sinks[0].ext.device.hw_module,
276 &output,
277 &config,
juyuchen2224c5a2019-01-21 12:00:58 +0800278 outputDevice,
279 outputDeviceAddress,
Mikhail Naganov32abc2b2018-05-24 12:57:11 -0700280 flags);
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700281 ALOGV("mAudioFlinger.openOutput_l() returned %p", thread.get());
282 if (thread == 0) {
Eric Laurent83b88082014-06-20 18:31:16 -0700283 status = NO_MEMORY;
284 goto exit;
285 }
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700286 newPatch.mPlayback.setThread(reinterpret_cast<PlaybackThread*>(thread.get()));
Eric Laurent83b88082014-06-20 18:31:16 -0700287 }
Eric Laurent83b88082014-06-20 18:31:16 -0700288 audio_devices_t device = patch->sources[0].ext.device.type;
Eric Laurentcf2c0212014-07-25 16:20:43 -0700289 String8 address = String8(patch->sources[0].ext.device.address);
290 audio_config_t config = AUDIO_CONFIG_INITIALIZER;
Eric Laurent8ae73122016-04-12 10:13:29 -0700291 // open input stream with source device audio properties if provided or
292 // default to peer output stream properties otherwise.
293 if (patch->sources[0].config_mask & AUDIO_PORT_CONFIG_SAMPLE_RATE) {
294 config.sample_rate = patch->sources[0].sample_rate;
295 } else {
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700296 config.sample_rate = newPatch.mPlayback.thread()->sampleRate();
Eric Laurent8ae73122016-04-12 10:13:29 -0700297 }
298 if (patch->sources[0].config_mask & AUDIO_PORT_CONFIG_CHANNEL_MASK) {
299 config.channel_mask = patch->sources[0].channel_mask;
300 } else {
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700301 config.channel_mask = audio_channel_in_mask_from_count(
302 newPatch.mPlayback.thread()->channelCount());
Eric Laurent8ae73122016-04-12 10:13:29 -0700303 }
304 if (patch->sources[0].config_mask & AUDIO_PORT_CONFIG_FORMAT) {
305 config.format = patch->sources[0].format;
306 } else {
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700307 config.format = newPatch.mPlayback.thread()->format();
Eric Laurent8ae73122016-04-12 10:13:29 -0700308 }
Mikhail Naganov32abc2b2018-05-24 12:57:11 -0700309 audio_input_flags_t flags =
310 patch->sources[0].config_mask & AUDIO_PORT_CONFIG_FLAGS ?
311 patch->sources[0].flags.input : AUDIO_INPUT_FLAG_NONE;
Eric Laurentcf2c0212014-07-25 16:20:43 -0700312 audio_io_handle_t input = AUDIO_IO_HANDLE_NONE;
Mikhail Naganovdea53042018-04-26 13:10:21 -0700313 sp<ThreadBase> thread = mAudioFlinger.openInput_l(srcModule,
Eric Laurentcf2c0212014-07-25 16:20:43 -0700314 &input,
Eric Laurent83b88082014-06-20 18:31:16 -0700315 &config,
Eric Laurentcf2c0212014-07-25 16:20:43 -0700316 device,
317 address,
318 AUDIO_SOURCE_MIC,
Mikhail Naganovb4e037e2019-01-14 15:56:33 -0800319 flags,
320 outputDevice,
321 outputDeviceAddress);
Mikhail Naganovdea53042018-04-26 13:10:21 -0700322 ALOGV("mAudioFlinger.openInput_l() returned %p inChannelMask %08x",
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700323 thread.get(), config.channel_mask);
324 if (thread == 0) {
Eric Laurent83b88082014-06-20 18:31:16 -0700325 status = NO_MEMORY;
326 goto exit;
327 }
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700328 newPatch.mRecord.setThread(reinterpret_cast<RecordThread*>(thread.get()));
Mikhail Naganovdea53042018-04-26 13:10:21 -0700329 status = newPatch.createConnections(this);
Eric Laurent83b88082014-06-20 18:31:16 -0700330 if (status != NO_ERROR) {
331 goto exit;
Eric Laurent951f4552014-05-20 10:48:17 -0700332 }
Mikhail Naganovadca70f2018-07-09 12:49:25 -0700333 if (audioHwDevice->isInsert()) {
334 insertedModule = audioHwDevice->handle();
335 }
Eric Laurent951f4552014-05-20 10:48:17 -0700336 } else {
Eric Laurent054d9d32015-04-24 08:48:48 -0700337 if (patch->sinks[0].type == AUDIO_PORT_TYPE_MIX) {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700338 sp<ThreadBase> thread = mAudioFlinger.checkRecordThread_l(
Eric Laurent054d9d32015-04-24 08:48:48 -0700339 patch->sinks[0].ext.mix.handle);
340 if (thread == 0) {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700341 thread = mAudioFlinger.checkMmapThread_l(patch->sinks[0].ext.mix.handle);
Eric Laurent6acd1d42017-01-04 14:23:29 -0800342 if (thread == 0) {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700343 ALOGW("%s() bad capture I/O handle %d",
344 __func__, patch->sinks[0].ext.mix.handle);
Eric Laurent6acd1d42017-01-04 14:23:29 -0800345 status = BAD_VALUE;
346 goto exit;
347 }
Eric Laurent83b88082014-06-20 18:31:16 -0700348 }
Eric Laurent054d9d32015-04-24 08:48:48 -0700349 status = thread->sendCreateAudioPatchConfigEvent(patch, &halHandle);
Eric Laurentb82e6b72019-11-22 17:25:04 -0800350 if (status == NO_ERROR) {
351 newPatch.setThread(thread);
352 }
353
Eric Laurent526aa572019-01-15 10:54:58 -0800354 // remove stale audio patch with same input as sink if any
355 for (auto& iter : mPatches) {
356 if (iter.second.mAudioPatch.sinks[0].ext.mix.handle == thread->id()) {
Eric Laurentb82e6b72019-11-22 17:25:04 -0800357 erasePatch(iter.first);
Eric Laurent526aa572019-01-15 10:54:58 -0800358 break;
359 }
360 }
Eric Laurent83b88082014-06-20 18:31:16 -0700361 } else {
Mikhail Naganove4f1f632016-08-31 11:35:10 -0700362 sp<DeviceHalInterface> hwDevice = audioHwDevice->hwDevice();
363 status = hwDevice->createAudioPatch(patch->num_sources,
364 patch->sources,
365 patch->num_sinks,
366 patch->sinks,
367 &halHandle);
Mikhail Naganov9ee05402016-10-13 15:58:17 -0700368 if (status == INVALID_OPERATION) goto exit;
Eric Laurent83b88082014-06-20 18:31:16 -0700369 }
Eric Laurent951f4552014-05-20 10:48:17 -0700370 }
371 } break;
372 case AUDIO_PORT_TYPE_MIX: {
Eric Laurent874c42872014-08-08 15:13:39 -0700373 audio_module_handle_t srcModule = patch->sources[0].ext.mix.hw_module;
Mikhail Naganovdea53042018-04-26 13:10:21 -0700374 ssize_t index = mAudioFlinger.mAudioHwDevs.indexOfKey(srcModule);
Eric Laurent951f4552014-05-20 10:48:17 -0700375 if (index < 0) {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700376 ALOGW("%s() bad src hw module %d", __func__, srcModule);
Eric Laurent83b88082014-06-20 18:31:16 -0700377 status = BAD_VALUE;
378 goto exit;
Eric Laurent951f4552014-05-20 10:48:17 -0700379 }
380 // limit to connections between devices and output streams
jiabinc52b1ff2019-10-31 17:20:42 -0700381 DeviceDescriptorBaseVector devices;
Eric Laurent951f4552014-05-20 10:48:17 -0700382 for (unsigned int i = 0; i < patch->num_sinks; i++) {
383 if (patch->sinks[i].type != AUDIO_PORT_TYPE_DEVICE) {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700384 ALOGW("%s() invalid sink type %d for mix source",
385 __func__, patch->sinks[i].type);
Eric Laurent83b88082014-06-20 18:31:16 -0700386 status = BAD_VALUE;
387 goto exit;
Eric Laurent951f4552014-05-20 10:48:17 -0700388 }
389 // limit to connections between sinks and sources on same HW module
Eric Laurent874c42872014-08-08 15:13:39 -0700390 if (patch->sinks[i].ext.device.hw_module != srcModule) {
Eric Laurent83b88082014-06-20 18:31:16 -0700391 status = BAD_VALUE;
392 goto exit;
Eric Laurent951f4552014-05-20 10:48:17 -0700393 }
jiabinc52b1ff2019-10-31 17:20:42 -0700394 sp<DeviceDescriptorBase> device = new DeviceDescriptorBase(
395 patch->sinks[i].ext.device.type);
396 device->setAddress(patch->sinks[i].ext.device.address);
397 device->applyAudioPortConfig(&patch->sinks[i]);
398 devices.push_back(device);
Eric Laurent951f4552014-05-20 10:48:17 -0700399 }
Eric Laurent951f4552014-05-20 10:48:17 -0700400 sp<ThreadBase> thread =
Mikhail Naganovdea53042018-04-26 13:10:21 -0700401 mAudioFlinger.checkPlaybackThread_l(patch->sources[0].ext.mix.handle);
Eric Laurent951f4552014-05-20 10:48:17 -0700402 if (thread == 0) {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700403 thread = mAudioFlinger.checkMmapThread_l(patch->sources[0].ext.mix.handle);
Eric Laurent6acd1d42017-01-04 14:23:29 -0800404 if (thread == 0) {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700405 ALOGW("%s() bad playback I/O handle %d",
406 __func__, patch->sources[0].ext.mix.handle);
Eric Laurent6acd1d42017-01-04 14:23:29 -0800407 status = BAD_VALUE;
408 goto exit;
409 }
Eric Laurent951f4552014-05-20 10:48:17 -0700410 }
Mikhail Naganovdea53042018-04-26 13:10:21 -0700411 if (thread == mAudioFlinger.primaryPlaybackThread_l()) {
jiabinc52b1ff2019-10-31 17:20:42 -0700412 mAudioFlinger.updateOutDevicesForRecordThreads_l(devices);
Eric Laurent951f4552014-05-20 10:48:17 -0700413 }
414
Eric Laurent054d9d32015-04-24 08:48:48 -0700415 status = thread->sendCreateAudioPatchConfigEvent(patch, &halHandle);
Eric Laurentb82e6b72019-11-22 17:25:04 -0800416 if (status == NO_ERROR) {
417 newPatch.setThread(thread);
418 }
Eric Laurent526aa572019-01-15 10:54:58 -0800419
420 // remove stale audio patch with same output as source if any
421 for (auto& iter : mPatches) {
422 if (iter.second.mAudioPatch.sources[0].ext.mix.handle == thread->id()) {
Eric Laurentb82e6b72019-11-22 17:25:04 -0800423 erasePatch(iter.first);
Eric Laurent526aa572019-01-15 10:54:58 -0800424 break;
425 }
426 }
Eric Laurent951f4552014-05-20 10:48:17 -0700427 } break;
428 default:
Eric Laurent83b88082014-06-20 18:31:16 -0700429 status = BAD_VALUE;
430 goto exit;
Eric Laurent951f4552014-05-20 10:48:17 -0700431 }
Eric Laurent83b88082014-06-20 18:31:16 -0700432exit:
Mikhail Naganovdea53042018-04-26 13:10:21 -0700433 ALOGV("%s() status %d", __func__, status);
Eric Laurent951f4552014-05-20 10:48:17 -0700434 if (status == NO_ERROR) {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700435 *handle = (audio_patch_handle_t) mAudioFlinger.nextUniqueId(AUDIO_UNIQUE_ID_USE_PATCH);
436 newPatch.mHalHandle = halHandle;
Eric Laurentb82e6b72019-11-22 17:25:04 -0800437 mAudioFlinger.mDeviceEffectManager.createAudioPatch(*handle, newPatch);
Mikhail Naganovdea53042018-04-26 13:10:21 -0700438 mPatches.insert(std::make_pair(*handle, std::move(newPatch)));
Mikhail Naganovadca70f2018-07-09 12:49:25 -0700439 if (insertedModule != AUDIO_MODULE_HANDLE_NONE) {
440 addSoftwarePatchToInsertedModules(insertedModule, *handle);
441 }
Eric Laurent83b88082014-06-20 18:31:16 -0700442 } else {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700443 newPatch.clearConnections(this);
Eric Laurent951f4552014-05-20 10:48:17 -0700444 }
445 return status;
446}
447
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700448AudioFlinger::PatchPanel::Patch::~Patch()
449{
450 ALOGE_IF(isSoftware(), "Software patch connections leaked %d %d",
451 mRecord.handle(), mPlayback.handle());
452}
453
Mikhail Naganovdea53042018-04-26 13:10:21 -0700454status_t AudioFlinger::PatchPanel::Patch::createConnections(PatchPanel *panel)
Eric Laurent83b88082014-06-20 18:31:16 -0700455{
456 // create patch from source device to record thread input
Mikhail Naganovdc769682018-05-04 15:34:08 -0700457 status_t status = panel->createAudioPatch(
458 PatchBuilder().addSource(mAudioPatch.sources[0]).
459 addSink(mRecord.thread(), { .source = AUDIO_SOURCE_MIC }).patch(),
460 mRecord.handlePtr());
Eric Laurent83b88082014-06-20 18:31:16 -0700461 if (status != NO_ERROR) {
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700462 *mRecord.handlePtr() = AUDIO_PATCH_HANDLE_NONE;
Eric Laurent83b88082014-06-20 18:31:16 -0700463 return status;
464 }
465
466 // create patch from playback thread output to sink device
Mikhail Naganovdea53042018-04-26 13:10:21 -0700467 if (mAudioPatch.num_sinks != 0) {
Mikhail Naganovdc769682018-05-04 15:34:08 -0700468 status = panel->createAudioPatch(
469 PatchBuilder().addSource(mPlayback.thread()).addSink(mAudioPatch.sinks[0]).patch(),
470 mPlayback.handlePtr());
Eric Laurentd60560a2015-04-10 11:31:20 -0700471 if (status != NO_ERROR) {
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700472 *mPlayback.handlePtr() = AUDIO_PATCH_HANDLE_NONE;
Eric Laurentd60560a2015-04-10 11:31:20 -0700473 return status;
474 }
475 } else {
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700476 *mPlayback.handlePtr() = AUDIO_PATCH_HANDLE_NONE;
Eric Laurent83b88082014-06-20 18:31:16 -0700477 }
478
Eric Laurent83b88082014-06-20 18:31:16 -0700479 // create a special record track to capture from record thread
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700480 uint32_t channelCount = mPlayback.thread()->channelCount();
Eric Laurent83b88082014-06-20 18:31:16 -0700481 audio_channel_mask_t inChannelMask = audio_channel_in_mask_from_count(channelCount);
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700482 audio_channel_mask_t outChannelMask = mPlayback.thread()->channelMask();
483 uint32_t sampleRate = mPlayback.thread()->sampleRate();
484 audio_format_t format = mPlayback.thread()->format();
Eric Laurent83b88082014-06-20 18:31:16 -0700485
Mikhail Naganov7c6ae982018-06-14 12:33:38 -0700486 audio_format_t inputFormat = mRecord.thread()->format();
487 if (!audio_is_linear_pcm(inputFormat)) {
488 // The playbackThread format will say PCM for IEC61937 packetized stream.
489 // Use recordThread format.
490 format = inputFormat;
491 }
492 audio_input_flags_t inputFlags = mAudioPatch.sources[0].config_mask & AUDIO_PORT_CONFIG_FLAGS ?
493 mAudioPatch.sources[0].flags.input : AUDIO_INPUT_FLAG_NONE;
jiabin01c8f562018-07-19 17:47:28 -0700494 if (sampleRate == mRecord.thread()->sampleRate() &&
495 inChannelMask == mRecord.thread()->channelMask() &&
496 mRecord.thread()->fastTrackAvailable() &&
497 mRecord.thread()->hasFastCapture()) {
498 // Create a fast track if the record thread has fast capture to get better performance.
499 // Only enable fast mode when there is no resample needed.
500 inputFlags = (audio_input_flags_t) (inputFlags | AUDIO_INPUT_FLAG_FAST);
501 } else {
502 // Fast mode is not available in this case.
503 inputFlags = (audio_input_flags_t) (inputFlags & ~AUDIO_INPUT_FLAG_FAST);
504 }
Eric Laurent83b88082014-06-20 18:31:16 -0700505
Mikhail Naganov7c6ae982018-06-14 12:33:38 -0700506 audio_output_flags_t outputFlags = mAudioPatch.sinks[0].config_mask & AUDIO_PORT_CONFIG_FLAGS ?
507 mAudioPatch.sinks[0].flags.output : AUDIO_OUTPUT_FLAG_NONE;
Mikhail Naganov776eb212018-07-19 15:14:11 -0700508 audio_stream_type_t streamType = AUDIO_STREAM_PATCH;
509 if (mAudioPatch.num_sources == 2 && mAudioPatch.sources[1].type == AUDIO_PORT_TYPE_MIX) {
510 // "reuse one existing output mix" case
511 streamType = mAudioPatch.sources[1].ext.mix.usecase.stream;
512 }
jiabin01c8f562018-07-19 17:47:28 -0700513 if (mPlayback.thread()->hasFastMixer()) {
514 // Create a fast track if the playback thread has fast mixer to get better performance.
Andy Hungae22b482019-05-09 15:38:55 -0700515 // Note: we should have matching channel mask, sample rate, and format by the logic above.
jiabin01c8f562018-07-19 17:47:28 -0700516 outputFlags = (audio_output_flags_t) (outputFlags | AUDIO_OUTPUT_FLAG_FAST);
Andy Hungae22b482019-05-09 15:38:55 -0700517 } else {
518 outputFlags = (audio_output_flags_t) (outputFlags & ~AUDIO_OUTPUT_FLAG_FAST);
jiabin01c8f562018-07-19 17:47:28 -0700519 }
520
Mikhail Naganov9515fc82019-10-01 16:52:14 -0700521 sp<RecordThread::PatchRecord> tempRecordTrack;
Mikhail Naganovdd91ce22020-01-13 11:34:30 -0800522 const bool usePassthruPatchRecord =
523 (inputFlags & AUDIO_INPUT_FLAG_DIRECT) && (outputFlags & AUDIO_OUTPUT_FLAG_DIRECT);
Dean Wheatleyb3643892019-12-18 08:38:37 +1100524 const size_t playbackFrameCount = mPlayback.thread()->frameCount();
525 const size_t recordFrameCount = mRecord.thread()->frameCount();
526 size_t frameCount = 0;
Mikhail Naganovdd91ce22020-01-13 11:34:30 -0800527 if (usePassthruPatchRecord) {
Dean Wheatleyb3643892019-12-18 08:38:37 +1100528 // PassthruPatchRecord producesBufferOnDemand, so use
529 // maximum of playback and record thread framecounts
530 frameCount = std::max(playbackFrameCount, recordFrameCount);
531 ALOGV("%s() playframeCount %zu recordFrameCount %zu frameCount %zu",
532 __func__, playbackFrameCount, recordFrameCount, frameCount);
Mikhail Naganov9515fc82019-10-01 16:52:14 -0700533 tempRecordTrack = new RecordThread::PassthruPatchRecord(
534 mRecord.thread().get(),
535 sampleRate,
536 inChannelMask,
537 format,
538 frameCount,
539 inputFlags);
540 } else {
Dean Wheatleyb3643892019-12-18 08:38:37 +1100541 // use a pseudo LCM between input and output framecount
542 int playbackShift = __builtin_ctz(playbackFrameCount);
543 int shift = __builtin_ctz(recordFrameCount);
544 if (playbackShift < shift) {
545 shift = playbackShift;
546 }
547 frameCount = (playbackFrameCount * recordFrameCount) >> shift;
548 ALOGV("%s() playframeCount %zu recordFrameCount %zu frameCount %zu",
549 __func__, playbackFrameCount, recordFrameCount, frameCount);
550
Mikhail Naganov9515fc82019-10-01 16:52:14 -0700551 tempRecordTrack = new RecordThread::PatchRecord(
552 mRecord.thread().get(),
553 sampleRate,
554 inChannelMask,
555 format,
556 frameCount,
557 nullptr,
558 (size_t)0 /* bufferSize */,
559 inputFlags);
560 }
561 status = mRecord.checkTrack(tempRecordTrack.get());
562 if (status != NO_ERROR) {
563 return status;
564 }
565
Eric Laurent83b88082014-06-20 18:31:16 -0700566 // create a special playback track to render to playback thread.
567 // this track is given the same buffer as the PatchRecord buffer
Mikhail Naganov9515fc82019-10-01 16:52:14 -0700568 sp<PlaybackThread::PatchTrack> tempPatchTrack = new PlaybackThread::PatchTrack(
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700569 mPlayback.thread().get(),
Mikhail Naganov776eb212018-07-19 15:14:11 -0700570 streamType,
Eric Laurent83b88082014-06-20 18:31:16 -0700571 sampleRate,
572 outChannelMask,
573 format,
574 frameCount,
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700575 tempRecordTrack->buffer(),
576 tempRecordTrack->bufferSize(),
Mikhail Naganov7c6ae982018-06-14 12:33:38 -0700577 outputFlags);
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700578 status = mPlayback.checkTrack(tempPatchTrack.get());
Eric Laurent83b88082014-06-20 18:31:16 -0700579 if (status != NO_ERROR) {
580 return status;
581 }
Eric Laurent83b88082014-06-20 18:31:16 -0700582
583 // tie playback and record tracks together
Mikhail Naganovdd91ce22020-01-13 11:34:30 -0800584 // In the case of PassthruPatchRecord no I/O activity happens on RecordThread,
585 // everything is driven from PlaybackThread. Thus AudioBufferProvider methods
586 // of PassthruPatchRecord can only be called if the corresponding PatchTrack
587 // is alive. There is no need to hold a reference, and there is no need
588 // to clear it. In fact, since playback stopping is asynchronous, there is
589 // no proper time when clearing could be done.
590 mRecord.setTrackAndPeer(tempRecordTrack, tempPatchTrack, !usePassthruPatchRecord);
591 mPlayback.setTrackAndPeer(tempPatchTrack, tempRecordTrack, true /*holdReference*/);
Eric Laurent83b88082014-06-20 18:31:16 -0700592
593 // start capture and playback
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700594 mRecord.track()->start(AudioSystem::SYNC_EVENT_NONE, AUDIO_SESSION_NONE);
595 mPlayback.track()->start();
Eric Laurent83b88082014-06-20 18:31:16 -0700596
597 return status;
598}
599
Mikhail Naganovdea53042018-04-26 13:10:21 -0700600void AudioFlinger::PatchPanel::Patch::clearConnections(PatchPanel *panel)
Eric Laurent83b88082014-06-20 18:31:16 -0700601{
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700602 ALOGV("%s() mRecord.handle %d mPlayback.handle %d",
603 __func__, mRecord.handle(), mPlayback.handle());
604 mRecord.stopTrack();
605 mPlayback.stopTrack();
Mikhail Naganovd3f301c2019-03-11 08:58:03 -0700606 mRecord.clearTrackPeer(); // mRecord stop is synchronous. Break PeerProxy sp<> cycle.
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700607 mRecord.closeConnections(panel);
608 mPlayback.closeConnections(panel);
Eric Laurent83b88082014-06-20 18:31:16 -0700609}
610
Andy Hungc3ab7732018-06-01 13:46:29 -0700611status_t AudioFlinger::PatchPanel::Patch::getLatencyMs(double *latencyMs) const
612{
613 if (!isSoftware()) return INVALID_OPERATION;
614
615 auto recordTrack = mRecord.const_track();
616 if (recordTrack.get() == nullptr) return INVALID_OPERATION;
617
618 auto playbackTrack = mPlayback.const_track();
619 if (playbackTrack.get() == nullptr) return INVALID_OPERATION;
620
621 // Latency information for tracks may be called without obtaining
622 // the underlying thread lock.
623 //
624 // We use record server latency + playback track latency (generally smaller than the
625 // reverse due to internal biases).
626 //
627 // TODO: is this stable enough? Consider a PatchTrack synchronized version of this.
Andy Hungc3ab7732018-06-01 13:46:29 -0700628
Andy Hung30282562018-08-08 18:27:03 -0700629 // For PCM tracks get server latency.
630 if (audio_is_linear_pcm(recordTrack->format())) {
631 double recordServerLatencyMs, playbackTrackLatencyMs;
632 if (recordTrack->getServerLatencyMs(&recordServerLatencyMs) == OK
633 && playbackTrack->getTrackLatencyMs(&playbackTrackLatencyMs) == OK) {
634 *latencyMs = recordServerLatencyMs + playbackTrackLatencyMs;
635 return OK;
636 }
637 }
Andy Hungc3ab7732018-06-01 13:46:29 -0700638
Andy Hung30282562018-08-08 18:27:03 -0700639 // See if kernel latencies are available.
640 // If so, do a frame diff and time difference computation to estimate
641 // the total patch latency. This requires that frame counts are reported by the
642 // HAL are matched properly in the case of record overruns and playback underruns.
643 ThreadBase::TrackBase::FrameTime recordFT{}, playFT{};
644 recordTrack->getKernelFrameTime(&recordFT);
645 playbackTrack->getKernelFrameTime(&playFT);
646 if (recordFT.timeNs > 0 && playFT.timeNs > 0) {
647 const int64_t frameDiff = recordFT.frames - playFT.frames;
648 const int64_t timeDiffNs = recordFT.timeNs - playFT.timeNs;
649
650 // It is possible that the patch track and patch record have a large time disparity because
651 // one thread runs but another is stopped. We arbitrarily choose the maximum timestamp
652 // time difference based on how often we expect the timestamps to update in normal operation
653 // (typical should be no more than 50 ms).
654 //
655 // If the timestamps aren't sampled close enough, the patch latency is not
656 // considered valid.
657 //
658 // TODO: change this based on more experiments.
659 constexpr int64_t maxValidTimeDiffNs = 200 * NANOS_PER_MILLISECOND;
660 if (std::abs(timeDiffNs) < maxValidTimeDiffNs) {
661 *latencyMs = frameDiff * 1e3 / recordTrack->sampleRate()
662 - timeDiffNs * 1e-6;
663 return OK;
664 }
665 }
666
667 return INVALID_OPERATION;
Andy Hungc3ab7732018-06-01 13:46:29 -0700668}
669
Mikhail Naganovadca70f2018-07-09 12:49:25 -0700670String8 AudioFlinger::PatchPanel::Patch::dump(audio_patch_handle_t myHandle) const
Mikhail Naganov201369b2018-05-16 16:52:32 -0700671{
Andy Hungc3ab7732018-06-01 13:46:29 -0700672 // TODO: Consider table dump form for patches, just like tracks.
Eric Laurentb82e6b72019-11-22 17:25:04 -0800673 String8 result = String8::format("Patch %d: %s (thread %p => thread %p)",
674 myHandle, isSoftware() ? "Software bridge between" : "No software bridge",
675 mRecord.const_thread().get(), mPlayback.const_thread().get());
676
677 bool hasSinkDevice =
678 mAudioPatch.num_sinks > 0 && mAudioPatch.sinks[0].type == AUDIO_PORT_TYPE_DEVICE;
679 bool hasSourceDevice =
680 mAudioPatch.num_sources > 0 && mAudioPatch.sources[0].type == AUDIO_PORT_TYPE_DEVICE;
681 result.appendFormat(" thread %p %s (%d) first device type %08x", mThread.unsafe_get(),
682 hasSinkDevice ? "num sinks" :
683 (hasSourceDevice ? "num sources" : "no devices"),
684 hasSinkDevice ? mAudioPatch.num_sinks :
685 (hasSourceDevice ? mAudioPatch.num_sources : 0),
686 hasSinkDevice ? mAudioPatch.sinks[0].ext.device.type :
687 (hasSourceDevice ? mAudioPatch.sources[0].ext.device.type : 0));
Andy Hungc3ab7732018-06-01 13:46:29 -0700688
689 // add latency if it exists
690 double latencyMs;
691 if (getLatencyMs(&latencyMs) == OK) {
Mikhail Naganovb8b60972018-09-13 12:55:43 -0700692 result.appendFormat(" latency: %.2lf ms", latencyMs);
Andy Hungc3ab7732018-06-01 13:46:29 -0700693 }
Mikhail Naganov201369b2018-05-16 16:52:32 -0700694 return result;
695}
696
Eric Laurent951f4552014-05-20 10:48:17 -0700697/* Disconnect a patch */
698status_t AudioFlinger::PatchPanel::releaseAudioPatch(audio_patch_handle_t handle)
699{
Mikhail Naganovdea53042018-04-26 13:10:21 -0700700 ALOGV("%s handle %d", __func__, handle);
Eric Laurent951f4552014-05-20 10:48:17 -0700701 status_t status = NO_ERROR;
Eric Laurent951f4552014-05-20 10:48:17 -0700702
Mikhail Naganovdea53042018-04-26 13:10:21 -0700703 auto iter = mPatches.find(handle);
704 if (iter == mPatches.end()) {
Eric Laurent951f4552014-05-20 10:48:17 -0700705 return BAD_VALUE;
706 }
Mikhail Naganovdea53042018-04-26 13:10:21 -0700707 Patch &removedPatch = iter->second;
708 const struct audio_patch &patch = removedPatch.mAudioPatch;
Eric Laurent951f4552014-05-20 10:48:17 -0700709
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700710 const struct audio_port_config &src = patch.sources[0];
711 switch (src.type) {
Eric Laurent951f4552014-05-20 10:48:17 -0700712 case AUDIO_PORT_TYPE_DEVICE: {
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700713 sp<DeviceHalInterface> hwDevice = findHwDeviceByModule(src.ext.device.hw_module);
714 if (hwDevice == 0) {
715 ALOGW("%s() bad src hw module %d", __func__, src.ext.device.hw_module);
Eric Laurent951f4552014-05-20 10:48:17 -0700716 status = BAD_VALUE;
717 break;
718 }
Eric Laurent83b88082014-06-20 18:31:16 -0700719
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700720 if (removedPatch.isSoftware()) {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700721 removedPatch.clearConnections(this);
Eric Laurent83b88082014-06-20 18:31:16 -0700722 break;
723 }
724
Mikhail Naganovdea53042018-04-26 13:10:21 -0700725 if (patch.sinks[0].type == AUDIO_PORT_TYPE_MIX) {
726 audio_io_handle_t ioHandle = patch.sinks[0].ext.mix.handle;
727 sp<ThreadBase> thread = mAudioFlinger.checkRecordThread_l(ioHandle);
Eric Laurent951f4552014-05-20 10:48:17 -0700728 if (thread == 0) {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700729 thread = mAudioFlinger.checkMmapThread_l(ioHandle);
Eric Laurent6acd1d42017-01-04 14:23:29 -0800730 if (thread == 0) {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700731 ALOGW("%s() bad capture I/O handle %d", __func__, ioHandle);
Eric Laurent6acd1d42017-01-04 14:23:29 -0800732 status = BAD_VALUE;
733 break;
734 }
Eric Laurent951f4552014-05-20 10:48:17 -0700735 }
Mikhail Naganovdea53042018-04-26 13:10:21 -0700736 status = thread->sendReleaseAudioPatchConfigEvent(removedPatch.mHalHandle);
Eric Laurent054d9d32015-04-24 08:48:48 -0700737 } else {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700738 status = hwDevice->releaseAudioPatch(removedPatch.mHalHandle);
Eric Laurent951f4552014-05-20 10:48:17 -0700739 }
740 } break;
741 case AUDIO_PORT_TYPE_MIX: {
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700742 if (findHwDeviceByModule(src.ext.mix.hw_module) == 0) {
743 ALOGW("%s() bad src hw module %d", __func__, src.ext.mix.hw_module);
Eric Laurent951f4552014-05-20 10:48:17 -0700744 status = BAD_VALUE;
745 break;
746 }
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700747 audio_io_handle_t ioHandle = src.ext.mix.handle;
Mikhail Naganovdea53042018-04-26 13:10:21 -0700748 sp<ThreadBase> thread = mAudioFlinger.checkPlaybackThread_l(ioHandle);
Eric Laurent951f4552014-05-20 10:48:17 -0700749 if (thread == 0) {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700750 thread = mAudioFlinger.checkMmapThread_l(ioHandle);
Eric Laurent6acd1d42017-01-04 14:23:29 -0800751 if (thread == 0) {
Mikhail Naganovdea53042018-04-26 13:10:21 -0700752 ALOGW("%s() bad playback I/O handle %d", __func__, ioHandle);
Eric Laurent6acd1d42017-01-04 14:23:29 -0800753 status = BAD_VALUE;
754 break;
755 }
Eric Laurent951f4552014-05-20 10:48:17 -0700756 }
Mikhail Naganovdea53042018-04-26 13:10:21 -0700757 status = thread->sendReleaseAudioPatchConfigEvent(removedPatch.mHalHandle);
Eric Laurent951f4552014-05-20 10:48:17 -0700758 } break;
759 default:
760 status = BAD_VALUE;
Eric Laurent951f4552014-05-20 10:48:17 -0700761 }
762
Eric Laurentb82e6b72019-11-22 17:25:04 -0800763 erasePatch(handle);
Eric Laurent951f4552014-05-20 10:48:17 -0700764 return status;
765}
766
Eric Laurentb82e6b72019-11-22 17:25:04 -0800767void AudioFlinger::PatchPanel::erasePatch(audio_patch_handle_t handle) {
768 mPatches.erase(handle);
769 removeSoftwarePatchFromInsertedModules(handle);
770 mAudioFlinger.mDeviceEffectManager.releaseAudioPatch(handle);
771}
772
Eric Laurent951f4552014-05-20 10:48:17 -0700773/* List connected audio ports and they attributes */
774status_t AudioFlinger::PatchPanel::listAudioPatches(unsigned int *num_patches __unused,
775 struct audio_patch *patches __unused)
776{
Mikhail Naganovdea53042018-04-26 13:10:21 -0700777 ALOGV(__func__);
Eric Laurent951f4552014-05-20 10:48:17 -0700778 return NO_ERROR;
779}
780
Mikhail Naganovadca70f2018-07-09 12:49:25 -0700781status_t AudioFlinger::PatchPanel::getDownstreamSoftwarePatches(
782 audio_io_handle_t stream,
783 std::vector<AudioFlinger::PatchPanel::SoftwarePatch> *patches) const
784{
785 for (const auto& module : mInsertedModules) {
786 if (module.second.streams.count(stream)) {
787 for (const auto& patchHandle : module.second.sw_patches) {
788 const auto& patch_iter = mPatches.find(patchHandle);
789 if (patch_iter != mPatches.end()) {
790 const Patch &patch = patch_iter->second;
791 patches->emplace_back(*this, patchHandle,
792 patch.mPlayback.const_thread()->id(),
793 patch.mRecord.const_thread()->id());
794 } else {
795 ALOGE("Stale patch handle in the cache: %d", patchHandle);
796 }
797 }
798 return OK;
799 }
800 }
801 // The stream is not associated with any of inserted modules.
802 return BAD_VALUE;
803}
804
805void AudioFlinger::PatchPanel::notifyStreamOpened(
806 AudioHwDevice *audioHwDevice, audio_io_handle_t stream)
807{
808 if (audioHwDevice->isInsert()) {
809 mInsertedModules[audioHwDevice->handle()].streams.insert(stream);
810 }
811}
812
813void AudioFlinger::PatchPanel::notifyStreamClosed(audio_io_handle_t stream)
814{
815 for (auto& module : mInsertedModules) {
816 module.second.streams.erase(stream);
817 }
818}
819
820AudioHwDevice* AudioFlinger::PatchPanel::findAudioHwDeviceByModule(audio_module_handle_t module)
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700821{
822 if (module == AUDIO_MODULE_HANDLE_NONE) return nullptr;
823 ssize_t index = mAudioFlinger.mAudioHwDevs.indexOfKey(module);
824 if (index < 0) {
Mikhail Naganovadca70f2018-07-09 12:49:25 -0700825 ALOGW("%s() bad hw module %d", __func__, module);
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700826 return nullptr;
827 }
Mikhail Naganovadca70f2018-07-09 12:49:25 -0700828 return mAudioFlinger.mAudioHwDevs.valueAt(index);
Mikhail Naganov444ecc32018-05-01 17:40:05 -0700829}
830
Mikhail Naganovadca70f2018-07-09 12:49:25 -0700831sp<DeviceHalInterface> AudioFlinger::PatchPanel::findHwDeviceByModule(audio_module_handle_t module)
Mikhail Naganov201369b2018-05-16 16:52:32 -0700832{
Mikhail Naganovadca70f2018-07-09 12:49:25 -0700833 AudioHwDevice *audioHwDevice = findAudioHwDeviceByModule(module);
834 return audioHwDevice ? audioHwDevice->hwDevice() : nullptr;
835}
836
837void AudioFlinger::PatchPanel::addSoftwarePatchToInsertedModules(
838 audio_module_handle_t module, audio_patch_handle_t handle)
839{
840 mInsertedModules[module].sw_patches.insert(handle);
841}
842
843void AudioFlinger::PatchPanel::removeSoftwarePatchFromInsertedModules(
844 audio_patch_handle_t handle)
845{
846 for (auto& module : mInsertedModules) {
847 module.second.sw_patches.erase(handle);
848 }
849}
850
851void AudioFlinger::PatchPanel::dump(int fd) const
852{
853 String8 patchPanelDump;
854 const char *indent = " ";
855
Mikhail Naganov201369b2018-05-16 16:52:32 -0700856 bool headerPrinted = false;
Mikhail Naganovadca70f2018-07-09 12:49:25 -0700857 for (const auto& iter : mPatches) {
Eric Laurentb82e6b72019-11-22 17:25:04 -0800858 if (!headerPrinted) {
859 patchPanelDump += "\nPatches:\n";
860 headerPrinted = true;
Mikhail Naganov201369b2018-05-16 16:52:32 -0700861 }
Eric Laurentb82e6b72019-11-22 17:25:04 -0800862 patchPanelDump.appendFormat("%s%s\n", indent, iter.second.dump(iter.first).string());
Mikhail Naganov201369b2018-05-16 16:52:32 -0700863 }
Mikhail Naganovadca70f2018-07-09 12:49:25 -0700864
865 headerPrinted = false;
866 for (const auto& module : mInsertedModules) {
867 if (!module.second.streams.empty() || !module.second.sw_patches.empty()) {
868 if (!headerPrinted) {
869 patchPanelDump += "\nTracked inserted modules:\n";
870 headerPrinted = true;
871 }
872 String8 moduleDump = String8::format("Module %d: I/O handles: ", module.first);
873 for (const auto& stream : module.second.streams) {
874 moduleDump.appendFormat("%d ", stream);
875 }
876 moduleDump.append("; SW Patches: ");
877 for (const auto& patch : module.second.sw_patches) {
878 moduleDump.appendFormat("%d ", patch);
879 }
880 patchPanelDump.appendFormat("%s%s\n", indent, moduleDump.string());
881 }
882 }
883
884 if (!patchPanelDump.isEmpty()) {
885 write(fd, patchPanelDump.string(), patchPanelDump.size());
Mikhail Naganov201369b2018-05-16 16:52:32 -0700886 }
887}
888
Glenn Kasten63238ef2015-03-02 15:50:29 -0800889} // namespace android