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1 /*
2  * Copyright (C) 2017 The Android Open Source Project
3  *
4  * Licensed under the Apache License, Version 2.0 (the "License");
5  * you may not use this file except in compliance with the License.
6  * You may obtain a copy of the License at
7  *
8  *      http://www.apache.org/licenses/LICENSE-2.0
9  *
10  * Unless required by applicable law or agreed to in writing, software
11  * distributed under the License is distributed on an "AS IS" BASIS,
12  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13  * See the License for the specific language governing permissions and
14  * limitations under the License.
15  */
16 
17 #define LOG_TAG "AAudioServiceEndpointMMAP"
18 //#define LOG_NDEBUG 0
19 #include <utils/Log.h>
20 
21 #include <algorithm>
22 #include <assert.h>
23 #include <map>
24 #include <mutex>
25 #include <sstream>
26 #include <utils/Singleton.h>
27 #include <vector>
28 
29 
30 #include "AAudioEndpointManager.h"
31 #include "AAudioServiceEndpoint.h"
32 
33 #include "core/AudioStreamBuilder.h"
34 #include "AAudioServiceEndpoint.h"
35 #include "AAudioServiceStreamShared.h"
36 #include "AAudioServiceEndpointPlay.h"
37 #include "AAudioServiceEndpointMMAP.h"
38 
39 
40 #define AAUDIO_BUFFER_CAPACITY_MIN    4 * 512
41 #define AAUDIO_SAMPLE_RATE_DEFAULT    48000
42 
43 // This is an estimate of the time difference between the HW and the MMAP time.
44 // TODO Get presentation timestamps from the HAL instead of using these estimates.
45 #define OUTPUT_ESTIMATED_HARDWARE_OFFSET_NANOS  (3 * AAUDIO_NANOS_PER_MILLISECOND)
46 #define INPUT_ESTIMATED_HARDWARE_OFFSET_NANOS   (-1 * AAUDIO_NANOS_PER_MILLISECOND)
47 
48 using namespace android;  // TODO just import names needed
49 using namespace aaudio;   // TODO just import names needed
50 
51 
AAudioServiceEndpointMMAP(AAudioService & audioService)52 AAudioServiceEndpointMMAP::AAudioServiceEndpointMMAP(AAudioService &audioService)
53         : mMmapStream(nullptr)
54         , mAAudioService(audioService) {}
55 
~AAudioServiceEndpointMMAP()56 AAudioServiceEndpointMMAP::~AAudioServiceEndpointMMAP() {}
57 
dump() const58 std::string AAudioServiceEndpointMMAP::dump() const {
59     std::stringstream result;
60 
61     result << "  MMAP: framesTransferred = " << mFramesTransferred.get();
62     result << ", HW nanos = " << mHardwareTimeOffsetNanos;
63     result << ", port handle = " << mPortHandle;
64     result << ", audio data FD = " << mAudioDataFileDescriptor;
65     result << "\n";
66 
67     result << "    HW Offset Micros:     " <<
68                                       (getHardwareTimeOffsetNanos()
69                                        / AAUDIO_NANOS_PER_MICROSECOND) << "\n";
70 
71     result << AAudioServiceEndpoint::dump();
72     return result.str();
73 }
74 
open(const aaudio::AAudioStreamRequest & request)75 aaudio_result_t AAudioServiceEndpointMMAP::open(const aaudio::AAudioStreamRequest &request) {
76     aaudio_result_t result = AAUDIO_OK;
77     audio_config_base_t config;
78     audio_port_handle_t deviceId;
79 
80     copyFrom(request.getConstantConfiguration());
81 
82     aaudio_direction_t direction = getDirection();
83 
84     const audio_content_type_t contentType =
85             AAudioConvert_contentTypeToInternal(getContentType());
86     // Usage only used for OUTPUT
87     const audio_usage_t usage = (direction == AAUDIO_DIRECTION_OUTPUT)
88             ? AAudioConvert_usageToInternal(getUsage())
89             : AUDIO_USAGE_UNKNOWN;
90     const audio_source_t source = (direction == AAUDIO_DIRECTION_INPUT)
91             ? AAudioConvert_inputPresetToAudioSource(getInputPreset())
92             : AUDIO_SOURCE_DEFAULT;
93     const audio_flags_mask_t flags = AUDIO_FLAG_LOW_LATENCY |
94             AAudioConvert_allowCapturePolicyToAudioFlagsMask(getAllowedCapturePolicy());
95 
96     const audio_attributes_t attributes = {
97             .content_type = contentType,
98             .usage = usage,
99             .source = source,
100             .flags = flags,
101             .tags = ""
102     };
103 
104     mMmapClient.clientUid = request.getUserId();
105     mMmapClient.clientPid = request.getProcessId();
106     mMmapClient.packageName.setTo(String16(""));
107 
108     mRequestedDeviceId = deviceId = getDeviceId();
109 
110     // Fill in config
111     audio_format_t audioFormat = getFormat();
112     if (audioFormat == AUDIO_FORMAT_DEFAULT || audioFormat == AUDIO_FORMAT_PCM_FLOAT) {
113         audioFormat = AUDIO_FORMAT_PCM_16_BIT;
114     }
115     config.format = audioFormat;
116 
117     int32_t aaudioSampleRate = getSampleRate();
118     if (aaudioSampleRate == AAUDIO_UNSPECIFIED) {
119         aaudioSampleRate = AAUDIO_SAMPLE_RATE_DEFAULT;
120     }
121     config.sample_rate = aaudioSampleRate;
122 
123     int32_t aaudioSamplesPerFrame = getSamplesPerFrame();
124 
125     if (direction == AAUDIO_DIRECTION_OUTPUT) {
126         config.channel_mask = (aaudioSamplesPerFrame == AAUDIO_UNSPECIFIED)
127                               ? AUDIO_CHANNEL_OUT_STEREO
128                               : audio_channel_out_mask_from_count(aaudioSamplesPerFrame);
129         mHardwareTimeOffsetNanos = OUTPUT_ESTIMATED_HARDWARE_OFFSET_NANOS; // frames at DAC later
130 
131     } else if (direction == AAUDIO_DIRECTION_INPUT) {
132         config.channel_mask =  (aaudioSamplesPerFrame == AAUDIO_UNSPECIFIED)
133                                ? AUDIO_CHANNEL_IN_STEREO
134                                : audio_channel_in_mask_from_count(aaudioSamplesPerFrame);
135         mHardwareTimeOffsetNanos = INPUT_ESTIMATED_HARDWARE_OFFSET_NANOS; // frames at ADC earlier
136 
137     } else {
138         ALOGE("%s() invalid direction = %d", __func__, direction);
139         return AAUDIO_ERROR_ILLEGAL_ARGUMENT;
140     }
141 
142     MmapStreamInterface::stream_direction_t streamDirection =
143             (direction == AAUDIO_DIRECTION_OUTPUT)
144             ? MmapStreamInterface::DIRECTION_OUTPUT
145             : MmapStreamInterface::DIRECTION_INPUT;
146 
147     aaudio_session_id_t requestedSessionId = getSessionId();
148     audio_session_t sessionId = AAudioConvert_aaudioToAndroidSessionId(requestedSessionId);
149 
150     // Open HAL stream. Set mMmapStream
151     status_t status = MmapStreamInterface::openMmapStream(streamDirection,
152                                                           &attributes,
153                                                           &config,
154                                                           mMmapClient,
155                                                           &deviceId,
156                                                           &sessionId,
157                                                           this, // callback
158                                                           mMmapStream,
159                                                           &mPortHandle);
160     ALOGD("%s() mMapClient.uid = %d, pid = %d => portHandle = %d\n",
161           __func__, mMmapClient.clientUid,  mMmapClient.clientPid, mPortHandle);
162     if (status != OK) {
163         // This can happen if the resource is busy or the config does
164         // not match the hardware.
165         ALOGD("%s() - openMmapStream() returned status %d",  __func__, status);
166         return AAUDIO_ERROR_UNAVAILABLE;
167     }
168 
169     if (deviceId == AAUDIO_UNSPECIFIED) {
170         ALOGW("%s() - openMmapStream() failed to set deviceId", __func__);
171     }
172     setDeviceId(deviceId);
173 
174     if (sessionId == AUDIO_SESSION_ALLOCATE) {
175         ALOGW("%s() - openMmapStream() failed to set sessionId", __func__);
176     }
177 
178     aaudio_session_id_t actualSessionId =
179             (requestedSessionId == AAUDIO_SESSION_ID_NONE)
180             ? AAUDIO_SESSION_ID_NONE
181             : (aaudio_session_id_t) sessionId;
182     setSessionId(actualSessionId);
183     ALOGD("%s() deviceId = %d, sessionId = %d", __func__, getDeviceId(), getSessionId());
184 
185     // Create MMAP/NOIRQ buffer.
186     int32_t minSizeFrames = getBufferCapacity();
187     if (minSizeFrames <= 0) { // zero will get rejected
188         minSizeFrames = AAUDIO_BUFFER_CAPACITY_MIN;
189     }
190     status = mMmapStream->createMmapBuffer(minSizeFrames, &mMmapBufferinfo);
191     bool isBufferShareable = mMmapBufferinfo.flags & AUDIO_MMAP_APPLICATION_SHAREABLE;
192     if (status != OK) {
193         ALOGE("%s() - createMmapBuffer() failed with status %d %s",
194               __func__, status, strerror(-status));
195         result = AAUDIO_ERROR_UNAVAILABLE;
196         goto error;
197     } else {
198         ALOGD("%s() createMmapBuffer() buffer_size = %d fr, burst_size %d fr"
199                       ", Sharable FD: %s",
200               __func__,
201               mMmapBufferinfo.buffer_size_frames,
202               mMmapBufferinfo.burst_size_frames,
203               isBufferShareable ? "Yes" : "No");
204     }
205 
206     setBufferCapacity(mMmapBufferinfo.buffer_size_frames);
207     if (!isBufferShareable) {
208         // Exclusive mode can only be used by the service because the FD cannot be shared.
209         uid_t audioServiceUid = getuid();
210         if ((mMmapClient.clientUid != audioServiceUid) &&
211             getSharingMode() == AAUDIO_SHARING_MODE_EXCLUSIVE) {
212             ALOGW("%s() - exclusive FD cannot be used by client", __func__);
213             result = AAUDIO_ERROR_UNAVAILABLE;
214             goto error;
215         }
216     }
217 
218     // Get information about the stream and pass it back to the caller.
219     setSamplesPerFrame((direction == AAUDIO_DIRECTION_OUTPUT)
220                        ? audio_channel_count_from_out_mask(config.channel_mask)
221                        : audio_channel_count_from_in_mask(config.channel_mask));
222 
223     // AAudio creates a copy of this FD and retains ownership of the copy.
224     // Assume that AudioFlinger will close the original shared_memory_fd.
225     mAudioDataFileDescriptor.reset(dup(mMmapBufferinfo.shared_memory_fd));
226     if (mAudioDataFileDescriptor.get() == -1) {
227         ALOGE("%s() - could not dup shared_memory_fd", __func__);
228         result = AAUDIO_ERROR_INTERNAL;
229         goto error;
230     }
231     mFramesPerBurst = mMmapBufferinfo.burst_size_frames;
232     setFormat(config.format);
233     setSampleRate(config.sample_rate);
234 
235     ALOGD("%s() actual rate = %d, channels = %d"
236           ", deviceId = %d, capacity = %d\n",
237           __func__, getSampleRate(), getSamplesPerFrame(), deviceId, getBufferCapacity());
238 
239     ALOGD("%s() format = 0x%08x, frame size = %d, burst size = %d",
240           __func__, getFormat(), calculateBytesPerFrame(), mFramesPerBurst);
241 
242     return result;
243 
244 error:
245     close();
246     return result;
247 }
248 
close()249 aaudio_result_t AAudioServiceEndpointMMAP::close() {
250     if (mMmapStream != 0) {
251         // Needs to be explicitly cleared or CTS will fail but it is not clear why.
252         mMmapStream.clear();
253         // Apparently the above close is asynchronous. An attempt to open a new device
254         // right after a close can fail. Also some callbacks may still be in flight!
255         // FIXME Make closing synchronous.
256         AudioClock::sleepForNanos(100 * AAUDIO_NANOS_PER_MILLISECOND);
257     }
258 
259     return AAUDIO_OK;
260 }
261 
startStream(sp<AAudioServiceStreamBase> stream,audio_port_handle_t * clientHandle __unused)262 aaudio_result_t AAudioServiceEndpointMMAP::startStream(sp<AAudioServiceStreamBase> stream,
263                                                    audio_port_handle_t *clientHandle __unused) {
264     // Start the client on behalf of the AAudio service.
265     // Use the port handle that was provided by openMmapStream().
266     audio_port_handle_t tempHandle = mPortHandle;
267     aaudio_result_t result = startClient(mMmapClient, &tempHandle);
268     // When AudioFlinger is passed a valid port handle then it should not change it.
269     LOG_ALWAYS_FATAL_IF(tempHandle != mPortHandle,
270                         "%s() port handle not expected to change from %d to %d",
271                         __func__, mPortHandle, tempHandle);
272     ALOGV("%s() mPortHandle = %d", __func__, mPortHandle);
273     return result;
274 }
275 
stopStream(sp<AAudioServiceStreamBase> stream,audio_port_handle_t clientHandle __unused)276 aaudio_result_t AAudioServiceEndpointMMAP::stopStream(sp<AAudioServiceStreamBase> stream,
277                                                   audio_port_handle_t clientHandle __unused) {
278     mFramesTransferred.reset32();
279 
280     // Round 64-bit counter up to a multiple of the buffer capacity.
281     // This is required because the 64-bit counter is used as an index
282     // into a circular buffer and the actual HW position is reset to zero
283     // when the stream is stopped.
284     mFramesTransferred.roundUp64(getBufferCapacity());
285 
286     // Use the port handle that was provided by openMmapStream().
287     ALOGV("%s() mPortHandle = %d", __func__, mPortHandle);
288     return stopClient(mPortHandle);
289 }
290 
startClient(const android::AudioClient & client,audio_port_handle_t * clientHandle)291 aaudio_result_t AAudioServiceEndpointMMAP::startClient(const android::AudioClient& client,
292                                                        audio_port_handle_t *clientHandle) {
293     if (mMmapStream == nullptr) return AAUDIO_ERROR_NULL;
294     status_t status = mMmapStream->start(client, clientHandle);
295     return AAudioConvert_androidToAAudioResult(status);
296 }
297 
stopClient(audio_port_handle_t clientHandle)298 aaudio_result_t AAudioServiceEndpointMMAP::stopClient(audio_port_handle_t clientHandle) {
299     if (mMmapStream == nullptr) return AAUDIO_ERROR_NULL;
300     aaudio_result_t result = AAudioConvert_androidToAAudioResult(mMmapStream->stop(clientHandle));
301     return result;
302 }
303 
304 // Get free-running DSP or DMA hardware position from the HAL.
getFreeRunningPosition(int64_t * positionFrames,int64_t * timeNanos)305 aaudio_result_t AAudioServiceEndpointMMAP::getFreeRunningPosition(int64_t *positionFrames,
306                                                                 int64_t *timeNanos) {
307     struct audio_mmap_position position;
308     if (mMmapStream == nullptr) {
309         return AAUDIO_ERROR_NULL;
310     }
311     status_t status = mMmapStream->getMmapPosition(&position);
312     ALOGV("%s() status= %d, pos = %d, nanos = %lld\n",
313           __func__, status, position.position_frames, (long long) position.time_nanoseconds);
314     aaudio_result_t result = AAudioConvert_androidToAAudioResult(status);
315     if (result == AAUDIO_ERROR_UNAVAILABLE) {
316         ALOGW("%s(): getMmapPosition() has no position data available", __func__);
317     } else if (result != AAUDIO_OK) {
318         ALOGE("%s(): getMmapPosition() returned status %d", __func__, status);
319     } else {
320         // Convert 32-bit position to 64-bit position.
321         mFramesTransferred.update32(position.position_frames);
322         *positionFrames = mFramesTransferred.get();
323         *timeNanos = position.time_nanoseconds;
324     }
325     return result;
326 }
327 
getTimestamp(int64_t * positionFrames,int64_t * timeNanos)328 aaudio_result_t AAudioServiceEndpointMMAP::getTimestamp(int64_t *positionFrames,
329                                                     int64_t *timeNanos) {
330     return 0; // TODO
331 }
332 
333 // This is called by AudioFlinger when it wants to destroy a stream.
onTearDown(audio_port_handle_t portHandle)334 void AAudioServiceEndpointMMAP::onTearDown(audio_port_handle_t portHandle) {
335     ALOGD("%s(portHandle = %d) called", __func__, portHandle);
336     // Are we tearing down the EXCLUSIVE MMAP stream?
337     if (isStreamRegistered(portHandle)) {
338         ALOGD("%s(%d) tearing down this entire MMAP endpoint", __func__, portHandle);
339         disconnectRegisteredStreams();
340     } else {
341         // Must be a SHARED stream?
342         ALOGD("%s(%d) disconnect a specific stream", __func__, portHandle);
343         aaudio_result_t result = mAAudioService.disconnectStreamByPortHandle(portHandle);
344         ALOGD("%s(%d) disconnectStreamByPortHandle returned %d", __func__, portHandle, result);
345     }
346 };
347 
onVolumeChanged(audio_channel_mask_t channels,android::Vector<float> values)348 void AAudioServiceEndpointMMAP::onVolumeChanged(audio_channel_mask_t channels,
349                                               android::Vector<float> values) {
350     // TODO Do we really need a different volume for each channel?
351     // We get called with an array filled with a single value!
352     float volume = values[0];
353     ALOGD("%s() volume[0] = %f", __func__, volume);
354     std::lock_guard<std::mutex> lock(mLockStreams);
355     for(const auto& stream : mRegisteredStreams) {
356         stream->onVolumeChanged(volume);
357     }
358 };
359 
onRoutingChanged(audio_port_handle_t deviceId)360 void AAudioServiceEndpointMMAP::onRoutingChanged(audio_port_handle_t deviceId) {
361     ALOGD("%s() called with dev %d, old = %d", __func__, deviceId, getDeviceId());
362     if (getDeviceId() != AUDIO_PORT_HANDLE_NONE  && getDeviceId() != deviceId) {
363         disconnectRegisteredStreams();
364     }
365     setDeviceId(deviceId);
366 };
367 
368 /**
369  * Get an immutable description of the data queue from the HAL.
370  */
getDownDataDescription(AudioEndpointParcelable & parcelable)371 aaudio_result_t AAudioServiceEndpointMMAP::getDownDataDescription(AudioEndpointParcelable &parcelable)
372 {
373     // Gather information on the data queue based on HAL info.
374     int32_t bytesPerFrame = calculateBytesPerFrame();
375     int32_t capacityInBytes = getBufferCapacity() * bytesPerFrame;
376     int fdIndex = parcelable.addFileDescriptor(mAudioDataFileDescriptor, capacityInBytes);
377     parcelable.mDownDataQueueParcelable.setupMemory(fdIndex, 0, capacityInBytes);
378     parcelable.mDownDataQueueParcelable.setBytesPerFrame(bytesPerFrame);
379     parcelable.mDownDataQueueParcelable.setFramesPerBurst(mFramesPerBurst);
380     parcelable.mDownDataQueueParcelable.setCapacityInFrames(getBufferCapacity());
381     return AAUDIO_OK;
382 }
383