blob: 809c76ee003828a04e80581fd639dbaf178cfba0 [file] [log] [blame]
Phil Burk204a1632017-01-03 17:23:43 -08001/*
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
Phil Burka9876702020-04-20 18:16:15 -070017#define LOG_TAG "AudioStreamInternal"
Phil Burk204a1632017-01-03 17:23:43 -080018//#define LOG_NDEBUG 0
19#include <utils/Log.h>
20
Phil Burk4485d412017-05-09 15:55:02 -070021#define ATRACE_TAG ATRACE_TAG_AUDIO
22
Phil Burkc0c70e32017-02-09 13:18:38 -080023#include <stdint.h>
Phil Burk204a1632017-01-03 17:23:43 -080024
25#include <binder/IServiceManager.h>
26
Phil Burk5ed503c2017-02-01 09:38:15 -080027#include <aaudio/AAudio.h>
Phil Burkfd34a932017-07-19 07:03:52 -070028#include <cutils/properties.h>
Phil Burka9876702020-04-20 18:16:15 -070029
30#include <media/MediaMetricsItem.h>
Phil Burke4d7bb42017-03-28 11:32:39 -070031#include <utils/String16.h>
Phil Burk4485d412017-05-09 15:55:02 -070032#include <utils/Trace.h>
Phil Burk204a1632017-01-03 17:23:43 -080033
Phil Burkc0c70e32017-02-09 13:18:38 -080034#include "AudioEndpointParcelable.h"
35#include "binding/AAudioStreamRequest.h"
36#include "binding/AAudioStreamConfiguration.h"
Phil Burk5ed503c2017-02-01 09:38:15 -080037#include "binding/AAudioServiceMessage.h"
Phil Burka9876702020-04-20 18:16:15 -070038#include "core/AudioGlobal.h"
Phil Burk3df348f2017-02-08 11:41:55 -080039#include "core/AudioStreamBuilder.h"
Phil Burke572f462017-04-20 13:03:19 -070040#include "fifo/FifoBuffer.h"
Phil Burkfd34a932017-07-19 07:03:52 -070041#include "utility/AudioClock.h"
Phil Burke572f462017-04-20 13:03:19 -070042
Phil Burkc0c70e32017-02-09 13:18:38 -080043#include "AudioStreamInternal.h"
Phil Burk204a1632017-01-03 17:23:43 -080044
Phil Burka9876702020-04-20 18:16:15 -070045// We do this after the #includes because if a header uses ALOG.
46// it would fail on the reference to mInService.
47#undef LOG_TAG
48// This file is used in both client and server processes.
49// This is needed to make sense of the logs more easily.
50#define LOG_TAG (mInService ? "AudioStreamInternal_Service" : "AudioStreamInternal_Client")
51
Phil Burk204a1632017-01-03 17:23:43 -080052using android::String16;
Phil Burkdec33ab2017-01-17 14:48:16 -080053using android::Mutex;
Phil Burkc0c70e32017-02-09 13:18:38 -080054using android::WrappingBuffer;
Phil Burk204a1632017-01-03 17:23:43 -080055
Phil Burk5ed503c2017-02-01 09:38:15 -080056using namespace aaudio;
Phil Burk204a1632017-01-03 17:23:43 -080057
Phil Burke4d7bb42017-03-28 11:32:39 -070058#define MIN_TIMEOUT_NANOS (1000 * AAUDIO_NANOS_PER_MILLISECOND)
59
60// Wait at least this many times longer than the operation should take.
61#define MIN_TIMEOUT_OPERATIONS 4
62
Phil Burkbcc36742017-08-31 17:24:51 -070063#define LOG_TIMESTAMPS 0
Phil Burk87c9f642017-05-17 07:22:39 -070064
Phil Burkc0c70e32017-02-09 13:18:38 -080065AudioStreamInternal::AudioStreamInternal(AAudioServiceInterface &serviceInterface, bool inService)
Phil Burk204a1632017-01-03 17:23:43 -080066 : AudioStream()
67 , mClockModel()
Phil Burk5ed503c2017-02-01 09:38:15 -080068 , mServiceStreamHandle(AAUDIO_HANDLE_INVALID)
Phil Burkec89b2e2017-06-20 15:05:06 -070069 , mInService(inService)
Phil Burkfd34a932017-07-19 07:03:52 -070070 , mServiceInterface(serviceInterface)
Phil Burka53ffa62018-10-10 16:21:37 -070071 , mAtomicInternalTimestamp()
Phil Burkfd34a932017-07-19 07:03:52 -070072 , mWakeupDelayNanos(AAudioProperty_getWakeupDelayMicros() * AAUDIO_NANOS_PER_MICROSECOND)
73 , mMinimumSleepNanos(AAudioProperty_getMinimumSleepMicros() * AAUDIO_NANOS_PER_MICROSECOND)
74 {
Phil Burk204a1632017-01-03 17:23:43 -080075}
76
77AudioStreamInternal::~AudioStreamInternal() {
Phil Burkdd582922020-10-15 20:29:51 +000078 ALOGD("%s() %p called", __func__, this);
Phil Burk204a1632017-01-03 17:23:43 -080079}
80
Phil Burk5ed503c2017-02-01 09:38:15 -080081aaudio_result_t AudioStreamInternal::open(const AudioStreamBuilder &builder) {
Phil Burk204a1632017-01-03 17:23:43 -080082
Phil Burk5ed503c2017-02-01 09:38:15 -080083 aaudio_result_t result = AAUDIO_OK;
Phil Burk6479d502017-11-20 09:32:52 -080084 int32_t framesPerBurst;
Phil Burk3c4e6b52019-01-22 15:53:36 -080085 int32_t framesPerHardwareBurst;
Phil Burk5ed503c2017-02-01 09:38:15 -080086 AAudioStreamRequest request;
Phil Burk99306c82017-08-14 12:38:58 -070087 AAudioStreamConfiguration configurationOutput;
Phil Burk204a1632017-01-03 17:23:43 -080088
Phil Burk99306c82017-08-14 12:38:58 -070089 if (getState() != AAUDIO_STREAM_STATE_UNINITIALIZED) {
Phil Burkfbf031e2017-10-12 15:58:31 -070090 ALOGE("%s - already open! state = %d", __func__, getState());
Phil Burk99306c82017-08-14 12:38:58 -070091 return AAUDIO_ERROR_INVALID_STATE;
92 }
93
94 // Copy requested parameters to the stream.
Phil Burk204a1632017-01-03 17:23:43 -080095 result = AudioStream::open(builder);
96 if (result < 0) {
97 return result;
98 }
99
Phil Burk3c4e6b52019-01-22 15:53:36 -0800100 const int32_t burstMinMicros = AAudioProperty_getHardwareBurstMinMicros();
101 int32_t burstMicros = 0;
102
Phil Burkc0c70e32017-02-09 13:18:38 -0800103 // We have to do volume scaling. So we prefer FLOAT format.
Phil Burk0127c1b2018-03-29 13:48:06 -0700104 if (getFormat() == AUDIO_FORMAT_DEFAULT) {
105 setFormat(AUDIO_FORMAT_PCM_FLOAT);
Phil Burkc0c70e32017-02-09 13:18:38 -0800106 }
Phil Burk71f35bb2017-04-13 16:05:07 -0700107 // Request FLOAT for the shared mixer.
Phil Burk0127c1b2018-03-29 13:48:06 -0700108 request.getConfiguration().setFormat(AUDIO_FORMAT_PCM_FLOAT);
Phil Burkc0c70e32017-02-09 13:18:38 -0800109
Phil Burkdec33ab2017-01-17 14:48:16 -0800110 // Build the request to send to the server.
Phil Burk204a1632017-01-03 17:23:43 -0800111 request.setUserId(getuid());
112 request.setProcessId(getpid());
Phil Burk71f35bb2017-04-13 16:05:07 -0700113 request.setSharingModeMatchRequired(isSharingModeMatchRequired());
Phil Burk41f19d82018-02-13 14:59:10 -0800114 request.setInService(isInService());
Phil Burkc0c70e32017-02-09 13:18:38 -0800115
Phil Burk204a1632017-01-03 17:23:43 -0800116 request.getConfiguration().setDeviceId(getDeviceId());
117 request.getConfiguration().setSampleRate(getSampleRate());
118 request.getConfiguration().setSamplesPerFrame(getSamplesPerFrame());
Phil Burk39f02dd2017-08-04 09:13:31 -0700119 request.getConfiguration().setDirection(getDirection());
Phil Burk71f35bb2017-04-13 16:05:07 -0700120 request.getConfiguration().setSharingMode(getSharingMode());
121
Phil Burka62fb952018-01-16 12:44:06 -0800122 request.getConfiguration().setUsage(getUsage());
123 request.getConfiguration().setContentType(getContentType());
124 request.getConfiguration().setInputPreset(getInputPreset());
Eric Laurentd17c8502019-10-24 15:58:35 -0700125 request.getConfiguration().setPrivacySensitive(isPrivacySensitive());
Phil Burka62fb952018-01-16 12:44:06 -0800126
Phil Burk3df348f2017-02-08 11:41:55 -0800127 request.getConfiguration().setBufferCapacity(builder.getBufferCapacity());
Phil Burk204a1632017-01-03 17:23:43 -0800128
Phil Burk41f19d82018-02-13 14:59:10 -0800129 mDeviceChannelCount = getSamplesPerFrame(); // Assume it will be the same. Update if not.
130
Phil Burk99306c82017-08-14 12:38:58 -0700131 mServiceStreamHandle = mServiceInterface.openStream(request, configurationOutput);
Phil Burk41f19d82018-02-13 14:59:10 -0800132 if (mServiceStreamHandle < 0
133 && request.getConfiguration().getSamplesPerFrame() == 1 // mono?
134 && getDirection() == AAUDIO_DIRECTION_OUTPUT
135 && !isInService()) {
136 // if that failed then try switching from mono to stereo if OUTPUT.
137 // Only do this in the client. Otherwise we end up with a mono mixer in the service
138 // that writes to a stereo MMAP stream.
Phil Burk0127c1b2018-03-29 13:48:06 -0700139 ALOGD("%s() - openStream() returned %d, try switching from MONO to STEREO",
Phil Burk41f19d82018-02-13 14:59:10 -0800140 __func__, mServiceStreamHandle);
141 request.getConfiguration().setSamplesPerFrame(2); // stereo
142 mServiceStreamHandle = mServiceInterface.openStream(request, configurationOutput);
143 }
Phil Burk204a1632017-01-03 17:23:43 -0800144 if (mServiceStreamHandle < 0) {
Phil Burk41f19d82018-02-13 14:59:10 -0800145 return mServiceStreamHandle;
Phil Burk204a1632017-01-03 17:23:43 -0800146 }
Phil Burk99306c82017-08-14 12:38:58 -0700147
Phil Burka9876702020-04-20 18:16:15 -0700148 // This must match the key generated in oboeservice/AAudioServiceStreamBase.cpp
149 // so the client can have permission to log.
150 mMetricsId = std::string(AMEDIAMETRICS_KEY_PREFIX_AUDIO_STREAM)
151 + std::to_string(mServiceStreamHandle);
152
Phil Burk99306c82017-08-14 12:38:58 -0700153 result = configurationOutput.validate();
154 if (result != AAUDIO_OK) {
155 goto error;
156 }
157 // Save results of the open.
Phil Burk41f19d82018-02-13 14:59:10 -0800158 if (getSamplesPerFrame() == AAUDIO_UNSPECIFIED) {
159 setSamplesPerFrame(configurationOutput.getSamplesPerFrame());
160 }
161 mDeviceChannelCount = configurationOutput.getSamplesPerFrame();
162
Phil Burk99306c82017-08-14 12:38:58 -0700163 setSampleRate(configurationOutput.getSampleRate());
Phil Burk99306c82017-08-14 12:38:58 -0700164 setDeviceId(configurationOutput.getDeviceId());
Phil Burk4e1af9f2018-01-03 15:54:35 -0800165 setSessionId(configurationOutput.getSessionId());
Phil Burk99306c82017-08-14 12:38:58 -0700166 setSharingMode(configurationOutput.getSharingMode());
167
Phil Burka62fb952018-01-16 12:44:06 -0800168 setUsage(configurationOutput.getUsage());
169 setContentType(configurationOutput.getContentType());
170 setInputPreset(configurationOutput.getInputPreset());
171
Phil Burk99306c82017-08-14 12:38:58 -0700172 // Save device format so we can do format conversion and volume scaling together.
Phil Burk3d786cb2018-04-09 11:58:09 -0700173 setDeviceFormat(configurationOutput.getFormat());
Phil Burk99306c82017-08-14 12:38:58 -0700174
175 result = mServiceInterface.getStreamDescription(mServiceStreamHandle, mEndPointParcelable);
176 if (result != AAUDIO_OK) {
177 goto error;
178 }
179
180 // Resolve parcelable into a descriptor.
181 result = mEndPointParcelable.resolve(&mEndpointDescriptor);
182 if (result != AAUDIO_OK) {
183 goto error;
184 }
185
186 // Configure endpoint based on descriptor.
Phil Burk5edc4ea2020-04-17 08:15:42 -0700187 mAudioEndpoint = std::make_unique<AudioEndpoint>();
188 result = mAudioEndpoint->configure(&mEndpointDescriptor, getDirection());
Phil Burk99306c82017-08-14 12:38:58 -0700189 if (result != AAUDIO_OK) {
190 goto error;
191 }
192
Phil Burk3c4e6b52019-01-22 15:53:36 -0800193 framesPerHardwareBurst = mEndpointDescriptor.dataQueueDescriptor.framesPerBurst;
194
195 // Scale up the burst size to meet the minimum equivalent in microseconds.
196 // This is to avoid waking the CPU too often when the HW burst is very small
197 // or at high sample rates.
198 framesPerBurst = framesPerHardwareBurst;
199 do {
200 if (burstMicros > 0) { // skip first loop
201 framesPerBurst *= 2;
202 }
203 burstMicros = framesPerBurst * static_cast<int64_t>(1000000) / getSampleRate();
204 } while (burstMicros < burstMinMicros);
205 ALOGD("%s() original HW burst = %d, minMicros = %d => SW burst = %d\n",
206 __func__, framesPerHardwareBurst, burstMinMicros, framesPerBurst);
207
208 // Validate final burst size.
Phil Burk6479d502017-11-20 09:32:52 -0800209 if (framesPerBurst < MIN_FRAMES_PER_BURST || framesPerBurst > MAX_FRAMES_PER_BURST) {
210 ALOGE("%s - framesPerBurst out of range = %d", __func__, framesPerBurst);
Phil Burk99306c82017-08-14 12:38:58 -0700211 result = AAUDIO_ERROR_OUT_OF_RANGE;
212 goto error;
213 }
Phil Burk8d97b8e2020-09-25 23:18:14 +0000214 setFramesPerBurst(framesPerBurst); // only save good value
Phil Burk6479d502017-11-20 09:32:52 -0800215
Phil Burk5edc4ea2020-04-17 08:15:42 -0700216 mBufferCapacityInFrames = mEndpointDescriptor.dataQueueDescriptor.capacityInFrames;
Phil Burk8d97b8e2020-09-25 23:18:14 +0000217 if (mBufferCapacityInFrames < getFramesPerBurst()
Phil Burk5edc4ea2020-04-17 08:15:42 -0700218 || mBufferCapacityInFrames > MAX_BUFFER_CAPACITY_IN_FRAMES) {
219 ALOGE("%s - bufferCapacity out of range = %d", __func__, mBufferCapacityInFrames);
Phil Burk99306c82017-08-14 12:38:58 -0700220 result = AAUDIO_ERROR_OUT_OF_RANGE;
221 goto error;
222 }
223
224 mClockModel.setSampleRate(getSampleRate());
Phil Burk3c4e6b52019-01-22 15:53:36 -0800225 mClockModel.setFramesPerBurst(framesPerHardwareBurst);
Phil Burk99306c82017-08-14 12:38:58 -0700226
Phil Burk134f1972017-12-08 13:06:11 -0800227 if (isDataCallbackSet()) {
Phil Burk99306c82017-08-14 12:38:58 -0700228 mCallbackFrames = builder.getFramesPerDataCallback();
229 if (mCallbackFrames > getBufferCapacity() / 2) {
Phil Burk29ccc292019-04-15 08:58:08 -0700230 ALOGW("%s - framesPerCallback too big = %d, capacity = %d",
Phil Burkfbf031e2017-10-12 15:58:31 -0700231 __func__, mCallbackFrames, getBufferCapacity());
Phil Burk99306c82017-08-14 12:38:58 -0700232 result = AAUDIO_ERROR_OUT_OF_RANGE;
233 goto error;
234
235 } else if (mCallbackFrames < 0) {
Phil Burk29ccc292019-04-15 08:58:08 -0700236 ALOGW("%s - framesPerCallback negative", __func__);
Phil Burk99306c82017-08-14 12:38:58 -0700237 result = AAUDIO_ERROR_OUT_OF_RANGE;
238 goto error;
239
240 }
241 if (mCallbackFrames == AAUDIO_UNSPECIFIED) {
Phil Burk8d97b8e2020-09-25 23:18:14 +0000242 mCallbackFrames = getFramesPerBurst();
Phil Burk99306c82017-08-14 12:38:58 -0700243 }
244
Phil Burk0127c1b2018-03-29 13:48:06 -0700245 const int32_t callbackBufferSize = mCallbackFrames * getBytesPerFrame();
Phil Burkbf821e22020-04-17 11:51:43 -0700246 mCallbackBuffer = std::make_unique<uint8_t[]>(callbackBufferSize);
Phil Burk99306c82017-08-14 12:38:58 -0700247 }
248
Phil Burkb31b66f2019-09-30 09:33:41 -0700249 // For debugging and analyzing the distribution of MMAP timestamps.
250 // For OUTPUT, use a NEGATIVE offset to move the CPU writes further BEFORE the HW reads.
251 // For INPUT, use a POSITIVE offset to move the CPU reads further AFTER the HW writes.
252 // You can use this offset to reduce glitching.
253 // You can also use this offset to force glitching. By iterating over multiple
254 // values you can reveal the distribution of the hardware timing jitter.
Phil Burk5edc4ea2020-04-17 08:15:42 -0700255 if (mAudioEndpoint->isFreeRunning()) { // MMAP?
Phil Burkb31b66f2019-09-30 09:33:41 -0700256 int32_t offsetMicros = (getDirection() == AAUDIO_DIRECTION_OUTPUT)
257 ? AAudioProperty_getOutputMMapOffsetMicros()
258 : AAudioProperty_getInputMMapOffsetMicros();
259 // This log is used to debug some tricky glitch issues. Please leave.
260 ALOGD_IF(offsetMicros, "%s() - %s mmap offset = %d micros",
261 __func__,
262 (getDirection() == AAUDIO_DIRECTION_OUTPUT) ? "output" : "input",
263 offsetMicros);
264 mTimeOffsetNanos = offsetMicros * AAUDIO_NANOS_PER_MICROSECOND;
265 }
266
Phil Burk5edc4ea2020-04-17 08:15:42 -0700267 setBufferSize(mBufferCapacityInFrames / 2); // Default buffer size to match Q
Phil Burk6c63ae32019-10-28 10:28:21 -0700268
Phil Burk99306c82017-08-14 12:38:58 -0700269 setState(AAUDIO_STREAM_STATE_OPEN);
Phil Burk99306c82017-08-14 12:38:58 -0700270
271 return result;
272
273error:
Phil Burkdd582922020-10-15 20:29:51 +0000274 safeReleaseClose();
Phil Burk204a1632017-01-03 17:23:43 -0800275 return result;
276}
277
Phil Burk13d3d832019-06-10 14:36:48 -0700278// This must be called under mStreamLock.
Phil Burk8b4e05e2019-12-17 12:12:09 -0800279aaudio_result_t AudioStreamInternal::release_l() {
Phil Burk965650e2017-09-07 21:00:09 -0700280 aaudio_result_t result = AAUDIO_OK;
Phil Burkdd582922020-10-15 20:29:51 +0000281 ALOGD("%s(): mServiceStreamHandle = 0x%08X", __func__, mServiceStreamHandle);
Phil Burk5ed503c2017-02-01 09:38:15 -0800282 if (mServiceStreamHandle != AAUDIO_HANDLE_INVALID) {
Phil Burk4485d412017-05-09 15:55:02 -0700283 aaudio_stream_state_t currentState = getState();
Phil Burk8b4e05e2019-12-17 12:12:09 -0800284 // Don't release a stream while it is running. Stop it first.
Phil Burk13d3d832019-06-10 14:36:48 -0700285 // If DISCONNECTED then we should still try to stop in case the
286 // error callback is still running.
287 if (isActive() || currentState == AAUDIO_STREAM_STATE_DISCONNECTED) {
Phil Burkdd582922020-10-15 20:29:51 +0000288 requestStop_l();
Phil Burk4485d412017-05-09 15:55:02 -0700289 }
Phil Burka9876702020-04-20 18:16:15 -0700290
Phil Burk64e16a72020-06-01 13:25:51 -0700291 logReleaseBufferState();
Phil Burka9876702020-04-20 18:16:15 -0700292
Phil Burkec89b2e2017-06-20 15:05:06 -0700293 setState(AAUDIO_STREAM_STATE_CLOSING);
Phil Burk5ed503c2017-02-01 09:38:15 -0800294 aaudio_handle_t serviceStreamHandle = mServiceStreamHandle;
295 mServiceStreamHandle = AAUDIO_HANDLE_INVALID;
Phil Burkc0c70e32017-02-09 13:18:38 -0800296
297 mServiceInterface.closeStream(serviceStreamHandle);
Phil Burkbf821e22020-04-17 11:51:43 -0700298 mCallbackBuffer.reset();
Phil Burk5edc4ea2020-04-17 08:15:42 -0700299
300 // Update local frame counters so we can query them after releasing the endpoint.
301 getFramesRead();
302 getFramesWritten();
303 mAudioEndpoint.reset();
Phil Burk965650e2017-09-07 21:00:09 -0700304 result = mEndPointParcelable.close();
Phil Burk8b4e05e2019-12-17 12:12:09 -0800305 aaudio_result_t result2 = AudioStream::release_l();
Phil Burk965650e2017-09-07 21:00:09 -0700306 return (result != AAUDIO_OK) ? result : result2;
Phil Burk204a1632017-01-03 17:23:43 -0800307 } else {
Phil Burk5ed503c2017-02-01 09:38:15 -0800308 return AAUDIO_ERROR_INVALID_HANDLE;
Phil Burk204a1632017-01-03 17:23:43 -0800309 }
310}
311
Phil Burke4d7bb42017-03-28 11:32:39 -0700312static void *aaudio_callback_thread_proc(void *context)
313{
314 AudioStreamInternal *stream = (AudioStreamInternal *)context;
Phil Burkfbf031e2017-10-12 15:58:31 -0700315 //LOGD("oboe_callback_thread, stream = %p", stream);
Phil Burke4d7bb42017-03-28 11:32:39 -0700316 if (stream != NULL) {
317 return stream->callbackLoop();
318 } else {
319 return NULL;
320 }
321}
322
Phil Burkbcc36742017-08-31 17:24:51 -0700323/*
324 * It normally takes about 20-30 msec to start a stream on the server.
325 * But the first time can take as much as 200-300 msec. The HW
326 * starts right away so by the time the client gets a chance to write into
327 * the buffer, it is already in a deep underflow state. That can cause the
328 * XRunCount to be non-zero, which could lead an app to tune its latency higher.
329 * To avoid this problem, we set a request for the processing code to start the
330 * client stream at the same position as the server stream.
331 * The processing code will then save the current offset
332 * between client and server and apply that to any position given to the app.
333 */
Phil Burkdd582922020-10-15 20:29:51 +0000334aaudio_result_t AudioStreamInternal::requestStart_l()
Phil Burk204a1632017-01-03 17:23:43 -0800335{
Phil Burk3316d5e2017-02-15 11:23:01 -0800336 int64_t startTime;
Phil Burk5ed503c2017-02-01 09:38:15 -0800337 if (mServiceStreamHandle == AAUDIO_HANDLE_INVALID) {
Phil Burk29ccc292019-04-15 08:58:08 -0700338 ALOGD("requestStart() mServiceStreamHandle invalid");
Phil Burk5ed503c2017-02-01 09:38:15 -0800339 return AAUDIO_ERROR_INVALID_STATE;
Phil Burk204a1632017-01-03 17:23:43 -0800340 }
Phil Burkec89b2e2017-06-20 15:05:06 -0700341 if (isActive()) {
Phil Burk29ccc292019-04-15 08:58:08 -0700342 ALOGD("requestStart() already active");
Phil Burkec89b2e2017-06-20 15:05:06 -0700343 return AAUDIO_ERROR_INVALID_STATE;
344 }
Phil Burkec89b2e2017-06-20 15:05:06 -0700345
Phil Burkbcc36742017-08-31 17:24:51 -0700346 aaudio_stream_state_t originalState = getState();
347 if (originalState == AAUDIO_STREAM_STATE_DISCONNECTED) {
Phil Burk29ccc292019-04-15 08:58:08 -0700348 ALOGD("requestStart() but DISCONNECTED");
Phil Burkbcc36742017-08-31 17:24:51 -0700349 return AAUDIO_ERROR_DISCONNECTED;
350 }
Phil Burkec89b2e2017-06-20 15:05:06 -0700351 setState(AAUDIO_STREAM_STATE_STARTING);
Phil Burkbcc36742017-08-31 17:24:51 -0700352
353 // Clear any stale timestamps from the previous run.
354 drainTimestampsFromService();
355
Phil Burkec8ca522020-05-19 10:05:58 -0700356 prepareBuffersForStart(); // tell subclasses to get ready
357
Phil Burk965650e2017-09-07 21:00:09 -0700358 aaudio_result_t result = mServiceInterface.startStream(mServiceStreamHandle);
Phil Burk6e463ce2020-04-13 10:20:20 -0700359 if (result == AAUDIO_ERROR_INVALID_HANDLE) {
360 ALOGD("%s() INVALID_HANDLE, stream was probably stolen", __func__);
361 // Stealing was added in R. Coerce result to improve backward compatibility.
362 result = AAUDIO_ERROR_DISCONNECTED;
363 setState(AAUDIO_STREAM_STATE_DISCONNECTED);
364 }
Phil Burkc0c70e32017-02-09 13:18:38 -0800365
Phil Burk3316d5e2017-02-15 11:23:01 -0800366 startTime = AudioClock::getNanoseconds();
Phil Burk204a1632017-01-03 17:23:43 -0800367 mClockModel.start(startTime);
Phil Burkbcc36742017-08-31 17:24:51 -0700368 mNeedCatchUp.request(); // Ask data processing code to catch up when first timestamp received.
Phil Burke4d7bb42017-03-28 11:32:39 -0700369
Phil Burk965650e2017-09-07 21:00:09 -0700370 // Start data callback thread.
Phil Burk134f1972017-12-08 13:06:11 -0800371 if (result == AAUDIO_OK && isDataCallbackSet()) {
Phil Burke4d7bb42017-03-28 11:32:39 -0700372 // Launch the callback loop thread.
373 int64_t periodNanos = mCallbackFrames
374 * AAUDIO_NANOS_PER_SECOND
375 / getSampleRate();
376 mCallbackEnabled.store(true);
Phil Burkdd582922020-10-15 20:29:51 +0000377 result = createThread_l(periodNanos, aaudio_callback_thread_proc, this);
Phil Burke4d7bb42017-03-28 11:32:39 -0700378 }
Phil Burkec89b2e2017-06-20 15:05:06 -0700379 if (result != AAUDIO_OK) {
380 setState(originalState);
381 }
Phil Burke4d7bb42017-03-28 11:32:39 -0700382 return result;
Phil Burk204a1632017-01-03 17:23:43 -0800383}
384
Phil Burke4d7bb42017-03-28 11:32:39 -0700385int64_t AudioStreamInternal::calculateReasonableTimeout(int32_t framesPerOperation) {
386
387 // Wait for at least a second or some number of callbacks to join the thread.
Phil Burk71f35bb2017-04-13 16:05:07 -0700388 int64_t timeoutNanoseconds = (MIN_TIMEOUT_OPERATIONS
389 * framesPerOperation
390 * AAUDIO_NANOS_PER_SECOND)
391 / getSampleRate();
Phil Burke4d7bb42017-03-28 11:32:39 -0700392 if (timeoutNanoseconds < MIN_TIMEOUT_NANOS) { // arbitrary number of seconds
393 timeoutNanoseconds = MIN_TIMEOUT_NANOS;
394 }
395 return timeoutNanoseconds;
396}
397
Phil Burk87c9f642017-05-17 07:22:39 -0700398int64_t AudioStreamInternal::calculateReasonableTimeout() {
399 return calculateReasonableTimeout(getFramesPerBurst());
400}
401
Phil Burk13d3d832019-06-10 14:36:48 -0700402// This must be called under mStreamLock.
Phil Burkdd582922020-10-15 20:29:51 +0000403aaudio_result_t AudioStreamInternal::stopCallback_l()
Phil Burke4d7bb42017-03-28 11:32:39 -0700404{
Phil Burk13d3d832019-06-10 14:36:48 -0700405 if (isDataCallbackSet()
406 && (isActive() || getState() == AAUDIO_STREAM_STATE_DISCONNECTED)) {
Phil Burke4d7bb42017-03-28 11:32:39 -0700407 mCallbackEnabled.store(false);
Phil Burkdd582922020-10-15 20:29:51 +0000408 aaudio_result_t result = joinThread_l(NULL); // may temporarily unlock mStreamLock
Phil Burk6e463ce2020-04-13 10:20:20 -0700409 if (result == AAUDIO_ERROR_INVALID_HANDLE) {
410 ALOGD("%s() INVALID_HANDLE, stream was probably stolen", __func__);
411 result = AAUDIO_OK;
412 }
413 return result;
Phil Burke4d7bb42017-03-28 11:32:39 -0700414 } else {
Phil Burkdd582922020-10-15 20:29:51 +0000415 ALOGD("%s() skipped, isDataCallbackSet() = %d, isActive() = %d, getState() = %d", __func__,
416 isDataCallbackSet(), isActive(), getState());
Phil Burke4d7bb42017-03-28 11:32:39 -0700417 return AAUDIO_OK;
418 }
419}
420
Phil Burkdd582922020-10-15 20:29:51 +0000421aaudio_result_t AudioStreamInternal::requestStop_l() {
422 aaudio_result_t result = stopCallback_l();
Phil Burk5cc83c32017-11-28 15:43:18 -0800423 if (result != AAUDIO_OK) {
Phil Burkdd582922020-10-15 20:29:51 +0000424 ALOGW("%s() stop callback returned %d, returning early", __func__, result);
Phil Burk5cc83c32017-11-28 15:43:18 -0800425 return result;
426 }
Phil Burk13d3d832019-06-10 14:36:48 -0700427 // The stream may have been unlocked temporarily to let a callback finish
428 // and the callback may have stopped the stream.
429 // Check to make sure the stream still needs to be stopped.
Phil Burk0bd745e2020-10-17 18:20:01 +0000430 // See also AudioStream::safeStop_l().
Phil Burk13d3d832019-06-10 14:36:48 -0700431 if (!(isActive() || getState() == AAUDIO_STREAM_STATE_DISCONNECTED)) {
Phil Burkdd582922020-10-15 20:29:51 +0000432 ALOGD("%s() returning early, not active or disconnected", __func__);
Phil Burk13d3d832019-06-10 14:36:48 -0700433 return AAUDIO_OK;
434 }
Phil Burk5cc83c32017-11-28 15:43:18 -0800435
Phil Burk71f35bb2017-04-13 16:05:07 -0700436 if (mServiceStreamHandle == AAUDIO_HANDLE_INVALID) {
Phil Burk29ccc292019-04-15 08:58:08 -0700437 ALOGW("%s() mServiceStreamHandle invalid = 0x%08X",
438 __func__, mServiceStreamHandle);
Phil Burk71f35bb2017-04-13 16:05:07 -0700439 return AAUDIO_ERROR_INVALID_STATE;
440 }
441
442 mClockModel.stop(AudioClock::getNanoseconds());
443 setState(AAUDIO_STREAM_STATE_STOPPING);
Phil Burka53ffa62018-10-10 16:21:37 -0700444 mAtomicInternalTimestamp.clear();
Phil Burk965650e2017-09-07 21:00:09 -0700445
Phil Burk6e463ce2020-04-13 10:20:20 -0700446 result = mServiceInterface.stopStream(mServiceStreamHandle);
447 if (result == AAUDIO_ERROR_INVALID_HANDLE) {
448 ALOGD("%s() INVALID_HANDLE, stream was probably stolen", __func__);
449 result = AAUDIO_OK;
450 }
451 return result;
Phil Burk71f35bb2017-04-13 16:05:07 -0700452}
453
Phil Burk5ed503c2017-02-01 09:38:15 -0800454aaudio_result_t AudioStreamInternal::registerThread() {
Phil Burk5ed503c2017-02-01 09:38:15 -0800455 if (mServiceStreamHandle == AAUDIO_HANDLE_INVALID) {
Phil Burk29ccc292019-04-15 08:58:08 -0700456 ALOGW("%s() mServiceStreamHandle invalid", __func__);
Phil Burk5ed503c2017-02-01 09:38:15 -0800457 return AAUDIO_ERROR_INVALID_STATE;
Phil Burk204a1632017-01-03 17:23:43 -0800458 }
Phil Burkc0c70e32017-02-09 13:18:38 -0800459 return mServiceInterface.registerAudioThread(mServiceStreamHandle,
Phil Burkc0c70e32017-02-09 13:18:38 -0800460 gettid(),
461 getPeriodNanoseconds());
Phil Burk204a1632017-01-03 17:23:43 -0800462}
463
Phil Burk5ed503c2017-02-01 09:38:15 -0800464aaudio_result_t AudioStreamInternal::unregisterThread() {
Phil Burk5ed503c2017-02-01 09:38:15 -0800465 if (mServiceStreamHandle == AAUDIO_HANDLE_INVALID) {
Phil Burk29ccc292019-04-15 08:58:08 -0700466 ALOGW("%s() mServiceStreamHandle invalid", __func__);
Phil Burk5ed503c2017-02-01 09:38:15 -0800467 return AAUDIO_ERROR_INVALID_STATE;
Phil Burk204a1632017-01-03 17:23:43 -0800468 }
Phil Burk2ac035f2017-06-23 14:51:14 -0700469 return mServiceInterface.unregisterAudioThread(mServiceStreamHandle, gettid());
Phil Burk204a1632017-01-03 17:23:43 -0800470}
471
Eric Laurentcb4dae22017-07-01 19:39:32 -0700472aaudio_result_t AudioStreamInternal::startClient(const android::AudioClient& client,
jiabind1f1cb62020-03-24 11:57:57 -0700473 const audio_attributes_t *attr,
Phil Burkbbd52862018-04-13 11:37:42 -0700474 audio_port_handle_t *portHandle) {
475 ALOGV("%s() called", __func__);
Eric Laurentcb4dae22017-07-01 19:39:32 -0700476 if (mServiceStreamHandle == AAUDIO_HANDLE_INVALID) {
477 return AAUDIO_ERROR_INVALID_STATE;
478 }
Phil Burkbbd52862018-04-13 11:37:42 -0700479 aaudio_result_t result = mServiceInterface.startClient(mServiceStreamHandle,
jiabind1f1cb62020-03-24 11:57:57 -0700480 client, attr, portHandle);
Phil Burkbbd52862018-04-13 11:37:42 -0700481 ALOGV("%s(%d) returning %d", __func__, *portHandle, result);
482 return result;
Eric Laurentcb4dae22017-07-01 19:39:32 -0700483}
484
Phil Burkbbd52862018-04-13 11:37:42 -0700485aaudio_result_t AudioStreamInternal::stopClient(audio_port_handle_t portHandle) {
486 ALOGV("%s(%d) called", __func__, portHandle);
Eric Laurentcb4dae22017-07-01 19:39:32 -0700487 if (mServiceStreamHandle == AAUDIO_HANDLE_INVALID) {
488 return AAUDIO_ERROR_INVALID_STATE;
489 }
Phil Burkbbd52862018-04-13 11:37:42 -0700490 aaudio_result_t result = mServiceInterface.stopClient(mServiceStreamHandle, portHandle);
491 ALOGV("%s(%d) returning %d", __func__, portHandle, result);
492 return result;
Eric Laurentcb4dae22017-07-01 19:39:32 -0700493}
494
Phil Burk5ed503c2017-02-01 09:38:15 -0800495aaudio_result_t AudioStreamInternal::getTimestamp(clockid_t clockId,
Phil Burk3316d5e2017-02-15 11:23:01 -0800496 int64_t *framePosition,
497 int64_t *timeNanoseconds) {
Phil Burk97350f92017-07-21 15:59:44 -0700498 // Generated in server and passed to client. Return latest.
Phil Burka53ffa62018-10-10 16:21:37 -0700499 if (mAtomicInternalTimestamp.isValid()) {
500 Timestamp timestamp = mAtomicInternalTimestamp.read();
Phil Burkbcc36742017-08-31 17:24:51 -0700501 int64_t position = timestamp.getPosition() + mFramesOffsetFromService;
502 if (position >= 0) {
503 *framePosition = position;
504 *timeNanoseconds = timestamp.getNanoseconds();
505 return AAUDIO_OK;
506 }
Phil Burk97350f92017-07-21 15:59:44 -0700507 }
Phil Burkc75d97f2017-09-08 15:48:36 -0700508 return AAUDIO_ERROR_INVALID_STATE;
Phil Burk204a1632017-01-03 17:23:43 -0800509}
510
Phil Burk0befec62017-07-28 15:12:13 -0700511aaudio_result_t AudioStreamInternal::updateStateMachine() {
Phil Burke4d7bb42017-03-28 11:32:39 -0700512 if (isDataCallbackActive()) {
513 return AAUDIO_OK; // state is getting updated by the callback thread read/write call
514 }
Phil Burk204a1632017-01-03 17:23:43 -0800515 return processCommands();
516}
517
Phil Burkec89b2e2017-06-20 15:05:06 -0700518void AudioStreamInternal::logTimestamp(AAudioServiceMessage &command) {
Phil Burk204a1632017-01-03 17:23:43 -0800519 static int64_t oldPosition = 0;
Phil Burk3316d5e2017-02-15 11:23:01 -0800520 static int64_t oldTime = 0;
Phil Burk204a1632017-01-03 17:23:43 -0800521 int64_t framePosition = command.timestamp.position;
Phil Burk3316d5e2017-02-15 11:23:01 -0800522 int64_t nanoTime = command.timestamp.timestamp;
Phil Burkbcc36742017-08-31 17:24:51 -0700523 ALOGD("logTimestamp: timestamp says framePosition = %8lld at nanoTime %lld",
Phil Burk204a1632017-01-03 17:23:43 -0800524 (long long) framePosition,
525 (long long) nanoTime);
526 int64_t nanosDelta = nanoTime - oldTime;
527 if (nanosDelta > 0 && oldTime > 0) {
528 int64_t framesDelta = framePosition - oldPosition;
Phil Burk5ed503c2017-02-01 09:38:15 -0800529 int64_t rate = (framesDelta * AAUDIO_NANOS_PER_SECOND) / nanosDelta;
Phil Burkbcc36742017-08-31 17:24:51 -0700530 ALOGD("logTimestamp: framesDelta = %8lld, nanosDelta = %8lld, rate = %lld",
Phil Burkec89b2e2017-06-20 15:05:06 -0700531 (long long) framesDelta, (long long) nanosDelta, (long long) rate);
Phil Burk204a1632017-01-03 17:23:43 -0800532 }
533 oldPosition = framePosition;
534 oldTime = nanoTime;
535}
Phil Burk204a1632017-01-03 17:23:43 -0800536
Phil Burk97350f92017-07-21 15:59:44 -0700537aaudio_result_t AudioStreamInternal::onTimestampService(AAudioServiceMessage *message) {
Phil Burk204a1632017-01-03 17:23:43 -0800538#if LOG_TIMESTAMPS
Phil Burkec89b2e2017-06-20 15:05:06 -0700539 logTimestamp(*message);
Phil Burk204a1632017-01-03 17:23:43 -0800540#endif
Phil Burkb31b66f2019-09-30 09:33:41 -0700541 processTimestamp(message->timestamp.position,
542 message->timestamp.timestamp + mTimeOffsetNanos);
Phil Burk5ed503c2017-02-01 09:38:15 -0800543 return AAUDIO_OK;
Phil Burk204a1632017-01-03 17:23:43 -0800544}
545
Phil Burk97350f92017-07-21 15:59:44 -0700546aaudio_result_t AudioStreamInternal::onTimestampHardware(AAudioServiceMessage *message) {
547 Timestamp timestamp(message->timestamp.position, message->timestamp.timestamp);
Phil Burka53ffa62018-10-10 16:21:37 -0700548 mAtomicInternalTimestamp.write(timestamp);
Phil Burk97350f92017-07-21 15:59:44 -0700549 return AAUDIO_OK;
550}
551
Phil Burk5ed503c2017-02-01 09:38:15 -0800552aaudio_result_t AudioStreamInternal::onEventFromServer(AAudioServiceMessage *message) {
553 aaudio_result_t result = AAUDIO_OK;
Phil Burk204a1632017-01-03 17:23:43 -0800554 switch (message->event.event) {
Phil Burk5ed503c2017-02-01 09:38:15 -0800555 case AAUDIO_SERVICE_EVENT_STARTED:
Phil Burkfbf031e2017-10-12 15:58:31 -0700556 ALOGD("%s - got AAUDIO_SERVICE_EVENT_STARTED", __func__);
Phil Burk87c9f642017-05-17 07:22:39 -0700557 if (getState() == AAUDIO_STREAM_STATE_STARTING) {
558 setState(AAUDIO_STREAM_STATE_STARTED);
559 }
Phil Burk204a1632017-01-03 17:23:43 -0800560 break;
Phil Burk5ed503c2017-02-01 09:38:15 -0800561 case AAUDIO_SERVICE_EVENT_PAUSED:
Phil Burkfbf031e2017-10-12 15:58:31 -0700562 ALOGD("%s - got AAUDIO_SERVICE_EVENT_PAUSED", __func__);
Phil Burk87c9f642017-05-17 07:22:39 -0700563 if (getState() == AAUDIO_STREAM_STATE_PAUSING) {
564 setState(AAUDIO_STREAM_STATE_PAUSED);
565 }
Phil Burk204a1632017-01-03 17:23:43 -0800566 break;
Phil Burk71f35bb2017-04-13 16:05:07 -0700567 case AAUDIO_SERVICE_EVENT_STOPPED:
Phil Burkfbf031e2017-10-12 15:58:31 -0700568 ALOGD("%s - got AAUDIO_SERVICE_EVENT_STOPPED", __func__);
Phil Burk87c9f642017-05-17 07:22:39 -0700569 if (getState() == AAUDIO_STREAM_STATE_STOPPING) {
570 setState(AAUDIO_STREAM_STATE_STOPPED);
571 }
Phil Burk71f35bb2017-04-13 16:05:07 -0700572 break;
Phil Burk5ed503c2017-02-01 09:38:15 -0800573 case AAUDIO_SERVICE_EVENT_FLUSHED:
Phil Burkfbf031e2017-10-12 15:58:31 -0700574 ALOGD("%s - got AAUDIO_SERVICE_EVENT_FLUSHED", __func__);
Phil Burk87c9f642017-05-17 07:22:39 -0700575 if (getState() == AAUDIO_STREAM_STATE_FLUSHING) {
576 setState(AAUDIO_STREAM_STATE_FLUSHED);
577 onFlushFromServer();
578 }
Phil Burk204a1632017-01-03 17:23:43 -0800579 break;
Phil Burk5ed503c2017-02-01 09:38:15 -0800580 case AAUDIO_SERVICE_EVENT_DISCONNECTED:
Phil Burkea04d972017-08-07 12:30:44 -0700581 // Prevent hardware from looping on old data and making buzzing sounds.
582 if (getDirection() == AAUDIO_DIRECTION_OUTPUT) {
Phil Burk5edc4ea2020-04-17 08:15:42 -0700583 mAudioEndpoint->eraseDataMemory();
Phil Burkea04d972017-08-07 12:30:44 -0700584 }
Phil Burk5ed503c2017-02-01 09:38:15 -0800585 result = AAUDIO_ERROR_DISCONNECTED;
Phil Burkc0c70e32017-02-09 13:18:38 -0800586 setState(AAUDIO_STREAM_STATE_DISCONNECTED);
Phil Burkfbf031e2017-10-12 15:58:31 -0700587 ALOGW("%s - AAUDIO_SERVICE_EVENT_DISCONNECTED - FIFO cleared", __func__);
Phil Burk204a1632017-01-03 17:23:43 -0800588 break;
Phil Burkc0c70e32017-02-09 13:18:38 -0800589 case AAUDIO_SERVICE_EVENT_VOLUME:
Phil Burk55e5eab2018-04-10 15:16:38 -0700590 ALOGD("%s - AAUDIO_SERVICE_EVENT_VOLUME %lf", __func__, message->event.dataDouble);
Eric Laurenta2f296e2017-06-21 18:51:47 -0700591 mStreamVolume = (float)message->event.dataDouble;
592 doSetVolume();
Phil Burkc0c70e32017-02-09 13:18:38 -0800593 break;
Phil Burk23296382017-11-20 15:45:11 -0800594 case AAUDIO_SERVICE_EVENT_XRUN:
595 mXRunCount = static_cast<int32_t>(message->event.dataLong);
596 break;
Phil Burk204a1632017-01-03 17:23:43 -0800597 default:
Phil Burkfbf031e2017-10-12 15:58:31 -0700598 ALOGE("%s - Unrecognized event = %d", __func__, (int) message->event.event);
Phil Burk204a1632017-01-03 17:23:43 -0800599 break;
600 }
601 return result;
602}
603
Phil Burkbcc36742017-08-31 17:24:51 -0700604aaudio_result_t AudioStreamInternal::drainTimestampsFromService() {
605 aaudio_result_t result = AAUDIO_OK;
606
607 while (result == AAUDIO_OK) {
608 AAudioServiceMessage message;
Phil Burk5edc4ea2020-04-17 08:15:42 -0700609 if (!mAudioEndpoint) {
610 break;
611 }
612 if (mAudioEndpoint->readUpCommand(&message) != 1) {
Phil Burkbcc36742017-08-31 17:24:51 -0700613 break; // no command this time, no problem
614 }
615 switch (message.what) {
616 // ignore most messages
617 case AAudioServiceMessage::code::TIMESTAMP_SERVICE:
618 case AAudioServiceMessage::code::TIMESTAMP_HARDWARE:
619 break;
620
621 case AAudioServiceMessage::code::EVENT:
622 result = onEventFromServer(&message);
623 break;
624
625 default:
Phil Burkfbf031e2017-10-12 15:58:31 -0700626 ALOGE("%s - unrecognized message.what = %d", __func__, (int) message.what);
Phil Burkbcc36742017-08-31 17:24:51 -0700627 result = AAUDIO_ERROR_INTERNAL;
628 break;
629 }
630 }
631 return result;
632}
633
Phil Burk204a1632017-01-03 17:23:43 -0800634// Process all the commands coming from the server.
Phil Burk5ed503c2017-02-01 09:38:15 -0800635aaudio_result_t AudioStreamInternal::processCommands() {
636 aaudio_result_t result = AAUDIO_OK;
Phil Burk204a1632017-01-03 17:23:43 -0800637
Phil Burk5ed503c2017-02-01 09:38:15 -0800638 while (result == AAUDIO_OK) {
639 AAudioServiceMessage message;
Phil Burk5edc4ea2020-04-17 08:15:42 -0700640 if (!mAudioEndpoint) {
641 break;
642 }
643 if (mAudioEndpoint->readUpCommand(&message) != 1) {
Phil Burk204a1632017-01-03 17:23:43 -0800644 break; // no command this time, no problem
645 }
646 switch (message.what) {
Phil Burk97350f92017-07-21 15:59:44 -0700647 case AAudioServiceMessage::code::TIMESTAMP_SERVICE:
648 result = onTimestampService(&message);
649 break;
650
651 case AAudioServiceMessage::code::TIMESTAMP_HARDWARE:
652 result = onTimestampHardware(&message);
Phil Burk204a1632017-01-03 17:23:43 -0800653 break;
654
Phil Burk5ed503c2017-02-01 09:38:15 -0800655 case AAudioServiceMessage::code::EVENT:
Phil Burk204a1632017-01-03 17:23:43 -0800656 result = onEventFromServer(&message);
657 break;
658
659 default:
Phil Burkfbf031e2017-10-12 15:58:31 -0700660 ALOGE("%s - unrecognized message.what = %d", __func__, (int) message.what);
Phil Burk17fff382017-05-16 14:06:45 -0700661 result = AAUDIO_ERROR_INTERNAL;
Phil Burk204a1632017-01-03 17:23:43 -0800662 break;
663 }
664 }
665 return result;
666}
667
Phil Burk87c9f642017-05-17 07:22:39 -0700668// Read or write the data, block if needed and timeoutMillis > 0
669aaudio_result_t AudioStreamInternal::processData(void *buffer, int32_t numFrames,
670 int64_t timeoutNanoseconds)
Phil Burk204a1632017-01-03 17:23:43 -0800671{
Phil Burkfd34a932017-07-19 07:03:52 -0700672 const char * traceName = "aaProc";
673 const char * fifoName = "aaRdy";
Phil Burk4485d412017-05-09 15:55:02 -0700674 ATRACE_BEGIN(traceName);
Phil Burk4485d412017-05-09 15:55:02 -0700675 if (ATRACE_ENABLED()) {
Phil Burk5edc4ea2020-04-17 08:15:42 -0700676 int32_t fullFrames = mAudioEndpoint->getFullFramesAvailable();
Phil Burkfd34a932017-07-19 07:03:52 -0700677 ATRACE_INT(fifoName, fullFrames);
Phil Burk4485d412017-05-09 15:55:02 -0700678 }
679
Phil Burkec89b2e2017-06-20 15:05:06 -0700680 aaudio_result_t result = AAUDIO_OK;
681 int32_t loopCount = 0;
682 uint8_t* audioData = (uint8_t*)buffer;
683 int64_t currentTimeNanos = AudioClock::getNanoseconds();
684 const int64_t entryTimeNanos = currentTimeNanos;
685 const int64_t deadlineNanos = currentTimeNanos + timeoutNanoseconds;
686 int32_t framesLeft = numFrames;
687
Phil Burk87c9f642017-05-17 07:22:39 -0700688 // Loop until all the data has been processed or until a timeout occurs.
Phil Burk204a1632017-01-03 17:23:43 -0800689 while (framesLeft > 0) {
Phil Burkec89b2e2017-06-20 15:05:06 -0700690 // The call to processDataNow() will not block. It will just process as much as it can.
Phil Burk3316d5e2017-02-15 11:23:01 -0800691 int64_t wakeTimeNanos = 0;
Phil Burk87c9f642017-05-17 07:22:39 -0700692 aaudio_result_t framesProcessed = processDataNow(audioData, framesLeft,
693 currentTimeNanos, &wakeTimeNanos);
694 if (framesProcessed < 0) {
Phil Burk87c9f642017-05-17 07:22:39 -0700695 result = framesProcessed;
Phil Burk204a1632017-01-03 17:23:43 -0800696 break;
697 }
Phil Burk87c9f642017-05-17 07:22:39 -0700698 framesLeft -= (int32_t) framesProcessed;
699 audioData += framesProcessed * getBytesPerFrame();
Phil Burk204a1632017-01-03 17:23:43 -0800700
701 // Should we block?
702 if (timeoutNanoseconds == 0) {
703 break; // don't block
Phil Burk8d4f0062019-10-03 15:55:41 -0700704 } else if (wakeTimeNanos != 0) {
Phil Burk5edc4ea2020-04-17 08:15:42 -0700705 if (!mAudioEndpoint->isFreeRunning()) {
Phil Burkfd34a932017-07-19 07:03:52 -0700706 // If there is software on the other end of the FIFO then it may get delayed.
707 // So wake up just a little after we expect it to be ready.
708 wakeTimeNanos += mWakeupDelayNanos;
Phil Burk204a1632017-01-03 17:23:43 -0800709 }
Phil Burkfd34a932017-07-19 07:03:52 -0700710
Phil Burk2bc7c182017-08-28 11:45:01 -0700711 currentTimeNanos = AudioClock::getNanoseconds();
712 int64_t earliestWakeTime = currentTimeNanos + mMinimumSleepNanos;
713 // Guarantee a minimum sleep time.
714 if (wakeTimeNanos < earliestWakeTime) {
715 wakeTimeNanos = earliestWakeTime;
716 }
717
Phil Burk204a1632017-01-03 17:23:43 -0800718 if (wakeTimeNanos > deadlineNanos) {
719 // If we time out, just return the framesWritten so far.
Phil Burkcf5f6d22017-05-26 12:35:07 -0700720 // TODO remove after we fix the deadline bug
Phil Burkfbf031e2017-10-12 15:58:31 -0700721 ALOGW("processData(): entered at %lld nanos, currently %lld",
Phil Burkec89b2e2017-06-20 15:05:06 -0700722 (long long) entryTimeNanos, (long long) currentTimeNanos);
Phil Burkfbf031e2017-10-12 15:58:31 -0700723 ALOGW("processData(): TIMEOUT after %lld nanos",
Phil Burkc0c70e32017-02-09 13:18:38 -0800724 (long long) timeoutNanoseconds);
Phil Burkfbf031e2017-10-12 15:58:31 -0700725 ALOGW("processData(): wakeTime = %lld, deadline = %lld nanos",
Phil Burk87c9f642017-05-17 07:22:39 -0700726 (long long) wakeTimeNanos, (long long) deadlineNanos);
Phil Burkfbf031e2017-10-12 15:58:31 -0700727 ALOGW("processData(): past deadline by %d micros",
Phil Burk87c9f642017-05-17 07:22:39 -0700728 (int)((wakeTimeNanos - deadlineNanos) / AAUDIO_NANOS_PER_MICROSECOND));
Phil Burkec89b2e2017-06-20 15:05:06 -0700729 mClockModel.dump();
Phil Burk5edc4ea2020-04-17 08:15:42 -0700730 mAudioEndpoint->dump();
Phil Burk204a1632017-01-03 17:23:43 -0800731 break;
732 }
733
Phil Burkfd34a932017-07-19 07:03:52 -0700734 if (ATRACE_ENABLED()) {
Phil Burk5edc4ea2020-04-17 08:15:42 -0700735 int32_t fullFrames = mAudioEndpoint->getFullFramesAvailable();
Phil Burkfd34a932017-07-19 07:03:52 -0700736 ATRACE_INT(fifoName, fullFrames);
737 int64_t sleepForNanos = wakeTimeNanos - currentTimeNanos;
738 ATRACE_INT("aaSlpNs", (int32_t)sleepForNanos);
739 }
740
741 AudioClock::sleepUntilNanoTime(wakeTimeNanos);
Phil Burk204a1632017-01-03 17:23:43 -0800742 currentTimeNanos = AudioClock::getNanoseconds();
743 }
744 }
745
Phil Burkfd34a932017-07-19 07:03:52 -0700746 if (ATRACE_ENABLED()) {
Phil Burk5edc4ea2020-04-17 08:15:42 -0700747 int32_t fullFrames = mAudioEndpoint->getFullFramesAvailable();
Phil Burkfd34a932017-07-19 07:03:52 -0700748 ATRACE_INT(fifoName, fullFrames);
749 }
750
Phil Burk87c9f642017-05-17 07:22:39 -0700751 // return error or framesProcessed
Phil Burkc0c70e32017-02-09 13:18:38 -0800752 (void) loopCount;
Phil Burk4485d412017-05-09 15:55:02 -0700753 ATRACE_END();
Phil Burk204a1632017-01-03 17:23:43 -0800754 return (result < 0) ? result : numFrames - framesLeft;
755}
756
Phil Burk3316d5e2017-02-15 11:23:01 -0800757void AudioStreamInternal::processTimestamp(uint64_t position, int64_t time) {
Phil Burk87c9f642017-05-17 07:22:39 -0700758 mClockModel.processTimestamp(position, time);
Phil Burk204a1632017-01-03 17:23:43 -0800759}
760
Phil Burk3316d5e2017-02-15 11:23:01 -0800761aaudio_result_t AudioStreamInternal::setBufferSize(int32_t requestedFrames) {
Phil Burk6479d502017-11-20 09:32:52 -0800762 int32_t adjustedFrames = requestedFrames;
Phil Burk8d97b8e2020-09-25 23:18:14 +0000763 const int32_t maximumSize = getBufferCapacity() - getFramesPerBurst();
Phil Burk5347dca2020-04-08 16:31:07 -0700764 // Minimum size should be a multiple number of bursts.
Phil Burk8d97b8e2020-09-25 23:18:14 +0000765 const int32_t minimumSize = 1 * getFramesPerBurst();
Phil Burk6479d502017-11-20 09:32:52 -0800766
767 // Clip to minimum size so that rounding up will work better.
Phil Burk8d4f0062019-10-03 15:55:41 -0700768 adjustedFrames = std::max(minimumSize, adjustedFrames);
Phil Burk71f35bb2017-04-13 16:05:07 -0700769
Phil Burk8d4f0062019-10-03 15:55:41 -0700770 // Prevent arithmetic overflow by clipping before we round.
771 if (adjustedFrames >= maximumSize) {
Phil Burk6479d502017-11-20 09:32:52 -0800772 adjustedFrames = maximumSize;
773 } else {
774 // Round to the next highest burst size.
Phil Burk8d97b8e2020-09-25 23:18:14 +0000775 int32_t numBursts = (adjustedFrames + getFramesPerBurst() - 1) / getFramesPerBurst();
776 adjustedFrames = numBursts * getFramesPerBurst();
777 // Clip just in case maximumSize is not a multiple of getFramesPerBurst().
Phil Burk5347dca2020-04-08 16:31:07 -0700778 adjustedFrames = std::min(maximumSize, adjustedFrames);
Phil Burk6479d502017-11-20 09:32:52 -0800779 }
780
Phil Burk5edc4ea2020-04-17 08:15:42 -0700781 if (mAudioEndpoint) {
782 // Clip against the actual size from the endpoint.
783 int32_t actualFrames = 0;
784 // Set to maximum size so we can write extra data when ready in order to reduce glitches.
785 // The amount we keep in the buffer is controlled by mBufferSizeInFrames.
786 mAudioEndpoint->setBufferSizeInFrames(maximumSize, &actualFrames);
787 // actualFrames should be <= actual maximum size of endpoint
788 adjustedFrames = std::min(actualFrames, adjustedFrames);
789 }
Phil Burk8d4f0062019-10-03 15:55:41 -0700790
Phil Burk64e16a72020-06-01 13:25:51 -0700791 if (adjustedFrames != mBufferSizeInFrames) {
792 android::mediametrics::LogItem(mMetricsId)
793 .set(AMEDIAMETRICS_PROP_EVENT, AMEDIAMETRICS_PROP_EVENT_VALUE_SETBUFFERSIZE)
794 .set(AMEDIAMETRICS_PROP_BUFFERSIZEFRAMES, adjustedFrames)
795 .set(AMEDIAMETRICS_PROP_UNDERRUN, (int32_t) getXRunCount())
796 .record();
797 }
798
Phil Burk8d4f0062019-10-03 15:55:41 -0700799 mBufferSizeInFrames = adjustedFrames;
Phil Burk6c63ae32019-10-28 10:28:21 -0700800 ALOGV("%s(%d) returns %d", __func__, requestedFrames, adjustedFrames);
Phil Burk8d4f0062019-10-03 15:55:41 -0700801 return (aaudio_result_t) adjustedFrames;
Phil Burk204a1632017-01-03 17:23:43 -0800802}
803
Phil Burk87c9f642017-05-17 07:22:39 -0700804int32_t AudioStreamInternal::getBufferSize() const {
Phil Burk8d4f0062019-10-03 15:55:41 -0700805 return mBufferSizeInFrames;
Phil Burk204a1632017-01-03 17:23:43 -0800806}
807
Phil Burk87c9f642017-05-17 07:22:39 -0700808int32_t AudioStreamInternal::getBufferCapacity() const {
Phil Burk5edc4ea2020-04-17 08:15:42 -0700809 return mBufferCapacityInFrames;
Phil Burk204a1632017-01-03 17:23:43 -0800810}
811
Phil Burk377c1c22018-12-12 16:06:54 -0800812bool AudioStreamInternal::isClockModelInControl() const {
Phil Burk5edc4ea2020-04-17 08:15:42 -0700813 return isActive() && mAudioEndpoint->isFreeRunning() && mClockModel.isRunning();
Phil Burk377c1c22018-12-12 16:06:54 -0800814}