1 /*
2 * Copyright 2016 The Android Open Source Project
3 *
4 * Licensed under the Apache License, Version 2.0 (the "License");
5 * you may not use this file except in compliance with the License.
6 * You may obtain a copy of the License at
7 *
8 * http://www.apache.org/licenses/LICENSE-2.0
9 *
10 * Unless required by applicable law or agreed to in writing, software
11 * distributed under the License is distributed on an "AS IS" BASIS,
12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
13 * See the License for the specific language governing permissions and
14 * limitations under the License.
15 */
16
17 #define LOG_TAG "a2dp_vendor_aptx_encoder"
18
19 #include "a2dp_vendor_aptx_encoder.h"
20
21 #include <dlfcn.h>
22 #include <inttypes.h>
23 #include <stdio.h>
24 #include <string.h>
25
26 #include "a2dp_vendor.h"
27 #include "a2dp_vendor_aptx.h"
28 #include "bt_common.h"
29 #include "common/time_util.h"
30 #include "osi/include/log.h"
31 #include "osi/include/osi.h"
32
33 //
34 // Encoder for aptX Source Codec
35 //
36
37 //
38 // The aptX encoder shared library, and the functions to use
39 //
40 static const char* APTX_ENCODER_LIB_NAME = "libaptX_encoder.so";
41 static void* aptx_encoder_lib_handle = NULL;
42
43 static const char* APTX_ENCODER_INIT_NAME = "aptxbtenc_init";
44 typedef int (*tAPTX_ENCODER_INIT)(void* state, short endian);
45
46 static const char* APTX_ENCODER_ENCODE_STEREO_NAME = "aptxbtenc_encodestereo";
47 typedef int (*tAPTX_ENCODER_ENCODE_STEREO)(void* state, void* pcmL, void* pcmR,
48 void* buffer);
49
50 static const char* APTX_ENCODER_SIZEOF_PARAMS_NAME = "SizeofAptxbtenc";
51 typedef int (*tAPTX_ENCODER_SIZEOF_PARAMS)(void);
52
53 static tAPTX_ENCODER_INIT aptx_encoder_init_func;
54 static tAPTX_ENCODER_ENCODE_STEREO aptx_encoder_encode_stereo_func;
55 static tAPTX_ENCODER_SIZEOF_PARAMS aptx_encoder_sizeof_params_func;
56
57 // offset
58 #if (BTA_AV_CO_CP_SCMS_T == TRUE)
59 #define A2DP_APTX_OFFSET (AVDT_MEDIA_OFFSET + 1)
60 #else
61 // no RTP header for aptX classic
62 #define A2DP_APTX_OFFSET (AVDT_MEDIA_OFFSET - AVDT_MEDIA_HDR_SIZE)
63 #endif
64
65 #define A2DP_APTX_MAX_PCM_BYTES_PER_READ 4096
66
67 typedef struct {
68 uint64_t sleep_time_ns;
69 uint32_t pcm_reads;
70 uint32_t pcm_bytes_per_read;
71 uint32_t aptx_bytes;
72 uint32_t frame_size_counter;
73 } tAPTX_FRAMING_PARAMS;
74
75 typedef struct {
76 uint64_t session_start_us;
77
78 size_t media_read_total_expected_packets;
79 size_t media_read_total_expected_reads_count;
80 size_t media_read_total_expected_read_bytes;
81
82 size_t media_read_total_dropped_packets;
83 size_t media_read_total_actual_reads_count;
84 size_t media_read_total_actual_read_bytes;
85 } a2dp_aptx_encoder_stats_t;
86
87 typedef struct {
88 a2dp_source_read_callback_t read_callback;
89 a2dp_source_enqueue_callback_t enqueue_callback;
90
91 bool use_SCMS_T;
92 bool is_peer_edr; // True if the peer device supports EDR
93 bool peer_supports_3mbps; // True if the peer device supports 3Mbps EDR
94 uint16_t peer_mtu; // MTU of the A2DP peer
95 uint32_t timestamp; // Timestamp for the A2DP frames
96
97 tA2DP_FEEDING_PARAMS feeding_params;
98 tAPTX_FRAMING_PARAMS framing_params;
99 void* aptx_encoder_state;
100 a2dp_aptx_encoder_stats_t stats;
101 } tA2DP_APTX_ENCODER_CB;
102
103 static tA2DP_APTX_ENCODER_CB a2dp_aptx_encoder_cb;
104
105 static void a2dp_vendor_aptx_encoder_update(uint16_t peer_mtu,
106 A2dpCodecConfig* a2dp_codec_config,
107 bool* p_restart_input,
108 bool* p_restart_output,
109 bool* p_config_updated);
110 static void aptx_init_framing_params(tAPTX_FRAMING_PARAMS* framing_params);
111 static void aptx_update_framing_params(tAPTX_FRAMING_PARAMS* framing_params);
112 static size_t aptx_encode_16bit(tAPTX_FRAMING_PARAMS* framing_params,
113 size_t* data_out_index, uint16_t* data16_in,
114 uint8_t* data_out);
115
A2DP_VendorLoadEncoderAptx(void)116 bool A2DP_VendorLoadEncoderAptx(void) {
117 if (aptx_encoder_lib_handle != NULL) return true; // Already loaded
118
119 // Open the encoder library
120 aptx_encoder_lib_handle = dlopen(APTX_ENCODER_LIB_NAME, RTLD_NOW);
121 if (aptx_encoder_lib_handle == NULL) {
122 LOG_ERROR(LOG_TAG, "%s: cannot open aptX encoder library %s: %s", __func__,
123 APTX_ENCODER_LIB_NAME, dlerror());
124 return false;
125 }
126
127 aptx_encoder_init_func = (tAPTX_ENCODER_INIT)dlsym(aptx_encoder_lib_handle,
128 APTX_ENCODER_INIT_NAME);
129 if (aptx_encoder_init_func == NULL) {
130 LOG_ERROR(LOG_TAG,
131 "%s: cannot find function '%s' in the encoder library: %s",
132 __func__, APTX_ENCODER_INIT_NAME, dlerror());
133 A2DP_VendorUnloadEncoderAptx();
134 return false;
135 }
136
137 aptx_encoder_encode_stereo_func = (tAPTX_ENCODER_ENCODE_STEREO)dlsym(
138 aptx_encoder_lib_handle, APTX_ENCODER_ENCODE_STEREO_NAME);
139 if (aptx_encoder_encode_stereo_func == NULL) {
140 LOG_ERROR(LOG_TAG,
141 "%s: cannot find function '%s' in the encoder library: %s",
142 __func__, APTX_ENCODER_ENCODE_STEREO_NAME, dlerror());
143 A2DP_VendorUnloadEncoderAptx();
144 return false;
145 }
146
147 aptx_encoder_sizeof_params_func = (tAPTX_ENCODER_SIZEOF_PARAMS)dlsym(
148 aptx_encoder_lib_handle, APTX_ENCODER_SIZEOF_PARAMS_NAME);
149 if (aptx_encoder_sizeof_params_func == NULL) {
150 LOG_ERROR(LOG_TAG,
151 "%s: cannot find function '%s' in the encoder library: %s",
152 __func__, APTX_ENCODER_SIZEOF_PARAMS_NAME, dlerror());
153 A2DP_VendorUnloadEncoderAptx();
154 return false;
155 }
156
157 return true;
158 }
159
A2DP_VendorUnloadEncoderAptx(void)160 void A2DP_VendorUnloadEncoderAptx(void) {
161 aptx_encoder_init_func = NULL;
162 aptx_encoder_encode_stereo_func = NULL;
163 aptx_encoder_sizeof_params_func = NULL;
164
165 if (aptx_encoder_lib_handle != NULL) {
166 dlclose(aptx_encoder_lib_handle);
167 aptx_encoder_lib_handle = NULL;
168 }
169 }
170
a2dp_vendor_aptx_encoder_init(const tA2DP_ENCODER_INIT_PEER_PARAMS * p_peer_params,A2dpCodecConfig * a2dp_codec_config,a2dp_source_read_callback_t read_callback,a2dp_source_enqueue_callback_t enqueue_callback)171 void a2dp_vendor_aptx_encoder_init(
172 const tA2DP_ENCODER_INIT_PEER_PARAMS* p_peer_params,
173 A2dpCodecConfig* a2dp_codec_config,
174 a2dp_source_read_callback_t read_callback,
175 a2dp_source_enqueue_callback_t enqueue_callback) {
176 memset(&a2dp_aptx_encoder_cb, 0, sizeof(a2dp_aptx_encoder_cb));
177
178 a2dp_aptx_encoder_cb.stats.session_start_us =
179 bluetooth::common::time_get_os_boottime_us();
180
181 a2dp_aptx_encoder_cb.read_callback = read_callback;
182 a2dp_aptx_encoder_cb.enqueue_callback = enqueue_callback;
183 a2dp_aptx_encoder_cb.is_peer_edr = p_peer_params->is_peer_edr;
184 a2dp_aptx_encoder_cb.peer_supports_3mbps = p_peer_params->peer_supports_3mbps;
185 a2dp_aptx_encoder_cb.peer_mtu = p_peer_params->peer_mtu;
186 a2dp_aptx_encoder_cb.timestamp = 0;
187
188 /* aptX encoder config */
189 a2dp_aptx_encoder_cb.use_SCMS_T = false; // TODO: should be a parameter
190 #if (BTA_AV_CO_CP_SCMS_T == TRUE)
191 a2dp_aptx_encoder_cb.use_SCMS_T = true;
192 #endif
193
194 a2dp_aptx_encoder_cb.aptx_encoder_state =
195 osi_malloc(aptx_encoder_sizeof_params_func());
196 if (a2dp_aptx_encoder_cb.aptx_encoder_state != NULL) {
197 aptx_encoder_init_func(a2dp_aptx_encoder_cb.aptx_encoder_state, 0);
198 } else {
199 LOG_ERROR(LOG_TAG, "%s: Cannot allocate aptX encoder state", __func__);
200 // TODO: Return an error?
201 }
202
203 // NOTE: Ignore the restart_input / restart_output flags - this initization
204 // happens when the connection is (re)started.
205 bool restart_input = false;
206 bool restart_output = false;
207 bool config_updated = false;
208 a2dp_vendor_aptx_encoder_update(a2dp_aptx_encoder_cb.peer_mtu,
209 a2dp_codec_config, &restart_input,
210 &restart_output, &config_updated);
211 }
212
updateEncoderUserConfig(const tA2DP_ENCODER_INIT_PEER_PARAMS * p_peer_params,bool * p_restart_input,bool * p_restart_output,bool * p_config_updated)213 bool A2dpCodecConfigAptx::updateEncoderUserConfig(
214 const tA2DP_ENCODER_INIT_PEER_PARAMS* p_peer_params, bool* p_restart_input,
215 bool* p_restart_output, bool* p_config_updated) {
216 a2dp_aptx_encoder_cb.is_peer_edr = p_peer_params->is_peer_edr;
217 a2dp_aptx_encoder_cb.peer_supports_3mbps = p_peer_params->peer_supports_3mbps;
218 a2dp_aptx_encoder_cb.peer_mtu = p_peer_params->peer_mtu;
219 a2dp_aptx_encoder_cb.timestamp = 0;
220
221 if (a2dp_aptx_encoder_cb.peer_mtu == 0) {
222 LOG_ERROR(LOG_TAG,
223 "%s: Cannot update the codec encoder for %s: "
224 "invalid peer MTU",
225 __func__, name().c_str());
226 return false;
227 }
228
229 a2dp_vendor_aptx_encoder_update(a2dp_aptx_encoder_cb.peer_mtu, this,
230 p_restart_input, p_restart_output,
231 p_config_updated);
232 return true;
233 }
234
235 // Update the A2DP aptX encoder.
236 // |peer_mtu| is the peer MTU.
237 // |a2dp_codec_config| is the A2DP codec to use for the update.
a2dp_vendor_aptx_encoder_update(uint16_t peer_mtu,A2dpCodecConfig * a2dp_codec_config,bool * p_restart_input,bool * p_restart_output,bool * p_config_updated)238 static void a2dp_vendor_aptx_encoder_update(uint16_t peer_mtu,
239 A2dpCodecConfig* a2dp_codec_config,
240 bool* p_restart_input,
241 bool* p_restart_output,
242 bool* p_config_updated) {
243 uint8_t codec_info[AVDT_CODEC_SIZE];
244
245 *p_restart_input = false;
246 *p_restart_output = false;
247 *p_config_updated = false;
248 if (!a2dp_codec_config->copyOutOtaCodecConfig(codec_info)) {
249 LOG_ERROR(LOG_TAG,
250 "%s: Cannot update the codec encoder for %s: "
251 "invalid codec config",
252 __func__, a2dp_codec_config->name().c_str());
253 return;
254 }
255 const uint8_t* p_codec_info = codec_info;
256
257 // The feeding parameters
258 tA2DP_FEEDING_PARAMS* p_feeding_params = &a2dp_aptx_encoder_cb.feeding_params;
259 p_feeding_params->sample_rate =
260 A2DP_VendorGetTrackSampleRateAptx(p_codec_info);
261 p_feeding_params->bits_per_sample =
262 a2dp_codec_config->getAudioBitsPerSample();
263 p_feeding_params->channel_count =
264 A2DP_VendorGetTrackChannelCountAptx(p_codec_info);
265 LOG_DEBUG(LOG_TAG, "%s: sample_rate=%u bits_per_sample=%u channel_count=%u",
266 __func__, p_feeding_params->sample_rate,
267 p_feeding_params->bits_per_sample, p_feeding_params->channel_count);
268 a2dp_vendor_aptx_feeding_reset();
269 }
270
a2dp_vendor_aptx_encoder_cleanup(void)271 void a2dp_vendor_aptx_encoder_cleanup(void) {
272 osi_free(a2dp_aptx_encoder_cb.aptx_encoder_state);
273 memset(&a2dp_aptx_encoder_cb, 0, sizeof(a2dp_aptx_encoder_cb));
274 }
275
276 //
277 // Initialize the framing parameters, and set those that don't change
278 // while streaming (e.g., 'sleep_time_ns').
279 //
aptx_init_framing_params(tAPTX_FRAMING_PARAMS * framing_params)280 static void aptx_init_framing_params(tAPTX_FRAMING_PARAMS* framing_params) {
281 framing_params->sleep_time_ns = 0;
282 framing_params->pcm_reads = 0;
283 framing_params->pcm_bytes_per_read = 0;
284 framing_params->aptx_bytes = 0;
285 framing_params->frame_size_counter = 0;
286
287 if (a2dp_aptx_encoder_cb.feeding_params.sample_rate == 48000) {
288 if (a2dp_aptx_encoder_cb.use_SCMS_T) {
289 framing_params->sleep_time_ns = 13000000;
290 } else {
291 framing_params->sleep_time_ns = 14000000;
292 }
293 } else {
294 // Assume the sample rate is 44100
295 if (a2dp_aptx_encoder_cb.use_SCMS_T) {
296 framing_params->sleep_time_ns = 14000000;
297 } else {
298 framing_params->sleep_time_ns = 15000000;
299 }
300 }
301
302 LOG_DEBUG(LOG_TAG, "%s: sleep_time_ns = %" PRIu64, __func__,
303 framing_params->sleep_time_ns);
304 }
305
306 //
307 // Set frame size and transmission interval needed to stream the required
308 // sample rate using 2-DH5 packets for aptX and 2-DH3 packets for aptX-LL.
309 // With SCMS-T enabled we need to reserve room for extra headers added later.
310 // Packets are always sent at equals time intervals but to achieve the
311 // required sample rate, the frame size needs to change on occasion.
312 //
313 // Also need to specify how many of the required PCM samples are read at a
314 // time:
315 // aptx_bytes = pcm_reads * pcm_bytes_per_read / 4
316 // and
317 // number of aptX samples produced = pcm_bytes_per_read / 16
318 //
aptx_update_framing_params(tAPTX_FRAMING_PARAMS * framing_params)319 static void aptx_update_framing_params(tAPTX_FRAMING_PARAMS* framing_params) {
320 if (a2dp_aptx_encoder_cb.feeding_params.sample_rate == 48000) {
321 if (a2dp_aptx_encoder_cb.use_SCMS_T) {
322 framing_params->aptx_bytes = 624;
323 framing_params->pcm_bytes_per_read = 208;
324 framing_params->pcm_reads = 12;
325 } else {
326 framing_params->aptx_bytes = 672;
327 framing_params->pcm_bytes_per_read = 224;
328 framing_params->pcm_reads = 12;
329 }
330 } else {
331 // Assume the sample rate is 44100
332 if (a2dp_aptx_encoder_cb.use_SCMS_T) {
333 if (++framing_params->frame_size_counter < 20) {
334 framing_params->aptx_bytes = 616;
335 framing_params->pcm_bytes_per_read = 224;
336 framing_params->pcm_reads = 11;
337 } else {
338 framing_params->aptx_bytes = 644;
339 framing_params->pcm_bytes_per_read = 368;
340 framing_params->pcm_reads = 7;
341 framing_params->frame_size_counter = 0;
342 }
343 } else {
344 if (++framing_params->frame_size_counter < 8) {
345 framing_params->aptx_bytes = 660;
346 framing_params->pcm_bytes_per_read = 240;
347 framing_params->pcm_reads = 11;
348 } else {
349 framing_params->aptx_bytes = 672;
350 framing_params->pcm_bytes_per_read = 224;
351 framing_params->pcm_reads = 12;
352 framing_params->frame_size_counter = 0;
353 }
354 }
355 }
356
357 LOG_VERBOSE(LOG_TAG,
358 "%s: sleep_time_ns = %" PRIu64
359 " aptx_bytes = %u "
360 "pcm_bytes_per_read = %u pcm_reads = %u frame_size_counter = %u",
361 __func__, framing_params->sleep_time_ns,
362 framing_params->aptx_bytes, framing_params->pcm_bytes_per_read,
363 framing_params->pcm_reads, framing_params->frame_size_counter);
364 }
365
a2dp_vendor_aptx_feeding_reset(void)366 void a2dp_vendor_aptx_feeding_reset(void) {
367 aptx_init_framing_params(&a2dp_aptx_encoder_cb.framing_params);
368 }
369
a2dp_vendor_aptx_feeding_flush(void)370 void a2dp_vendor_aptx_feeding_flush(void) {
371 aptx_init_framing_params(&a2dp_aptx_encoder_cb.framing_params);
372 }
373
a2dp_vendor_aptx_get_encoder_interval_ms(void)374 uint64_t a2dp_vendor_aptx_get_encoder_interval_ms(void) {
375 return a2dp_aptx_encoder_cb.framing_params.sleep_time_ns / (1000 * 1000);
376 }
377
a2dp_vendor_aptx_send_frames(uint64_t timestamp_us)378 void a2dp_vendor_aptx_send_frames(uint64_t timestamp_us) {
379 tAPTX_FRAMING_PARAMS* framing_params = &a2dp_aptx_encoder_cb.framing_params;
380
381 // Prepare the packet to send
382 BT_HDR* p_buf = (BT_HDR*)osi_malloc(BT_DEFAULT_BUFFER_SIZE);
383 p_buf->offset = A2DP_APTX_OFFSET;
384 p_buf->len = 0;
385 p_buf->layer_specific = 0;
386
387 uint8_t* encoded_ptr = (uint8_t*)(p_buf + 1);
388 encoded_ptr += p_buf->offset;
389
390 aptx_update_framing_params(framing_params);
391
392 //
393 // Read the PCM data and encode it
394 //
395 uint16_t read_buffer16[A2DP_APTX_MAX_PCM_BYTES_PER_READ / sizeof(uint16_t)];
396 uint32_t expected_read_bytes =
397 framing_params->pcm_reads * framing_params->pcm_bytes_per_read;
398 size_t encoded_ptr_index = 0;
399 size_t pcm_bytes_encoded = 0;
400 uint32_t bytes_read = 0;
401
402 a2dp_aptx_encoder_cb.stats.media_read_total_expected_packets++;
403 a2dp_aptx_encoder_cb.stats.media_read_total_expected_reads_count++;
404 a2dp_aptx_encoder_cb.stats.media_read_total_expected_read_bytes +=
405 expected_read_bytes;
406
407 LOG_VERBOSE(LOG_TAG, "%s: PCM read of size %u", __func__,
408 expected_read_bytes);
409 bytes_read = a2dp_aptx_encoder_cb.read_callback((uint8_t*)read_buffer16,
410 expected_read_bytes);
411 a2dp_aptx_encoder_cb.stats.media_read_total_actual_read_bytes += bytes_read;
412 if (bytes_read < expected_read_bytes) {
413 LOG_WARN(LOG_TAG,
414 "%s: underflow at PCM reading: read %u bytes instead of %u",
415 __func__, bytes_read, expected_read_bytes);
416 a2dp_aptx_encoder_cb.stats.media_read_total_dropped_packets++;
417 osi_free(p_buf);
418 return;
419 }
420 a2dp_aptx_encoder_cb.stats.media_read_total_actual_reads_count++;
421
422 for (uint32_t reads = 0, offset = 0; reads < framing_params->pcm_reads;
423 reads++, offset +=
424 (framing_params->pcm_bytes_per_read / sizeof(uint16_t))) {
425 pcm_bytes_encoded += aptx_encode_16bit(framing_params, &encoded_ptr_index,
426 read_buffer16 + offset, encoded_ptr);
427 }
428
429 // Compute the number of encoded bytes
430 const int COMPRESSION_RATIO = 4;
431 size_t encoded_bytes = pcm_bytes_encoded / COMPRESSION_RATIO;
432 p_buf->len += encoded_bytes;
433 LOG_VERBOSE(LOG_TAG, "%s: encoded %zu PCM bytes to %zu", __func__,
434 pcm_bytes_encoded, encoded_bytes);
435
436 // Update the RTP timestamp
437 *((uint32_t*)(p_buf + 1)) = a2dp_aptx_encoder_cb.timestamp;
438 const uint8_t BYTES_PER_FRAME = 2;
439 uint32_t rtp_timestamp =
440 (pcm_bytes_encoded / a2dp_aptx_encoder_cb.feeding_params.channel_count) /
441 BYTES_PER_FRAME;
442 a2dp_aptx_encoder_cb.timestamp += rtp_timestamp;
443
444 if (p_buf->len > 0) {
445 a2dp_aptx_encoder_cb.enqueue_callback(p_buf, 1, bytes_read);
446 } else {
447 a2dp_aptx_encoder_cb.stats.media_read_total_dropped_packets++;
448 osi_free(p_buf);
449 }
450 }
451
aptx_encode_16bit(tAPTX_FRAMING_PARAMS * framing_params,size_t * data_out_index,uint16_t * data16_in,uint8_t * data_out)452 static size_t aptx_encode_16bit(tAPTX_FRAMING_PARAMS* framing_params,
453 size_t* data_out_index, uint16_t* data16_in,
454 uint8_t* data_out) {
455 size_t pcm_bytes_encoded = 0;
456 size_t frame = 0;
457
458 for (size_t aptx_samples = 0;
459 aptx_samples < framing_params->pcm_bytes_per_read / 16; aptx_samples++) {
460 uint32_t pcmL[4];
461 uint32_t pcmR[4];
462 uint16_t encoded_sample[2];
463
464 for (size_t i = 0, j = frame; i < 4; i++, j++) {
465 pcmL[i] = (uint16_t) * (data16_in + (2 * j));
466 pcmR[i] = (uint16_t) * (data16_in + ((2 * j) + 1));
467 }
468
469 aptx_encoder_encode_stereo_func(a2dp_aptx_encoder_cb.aptx_encoder_state,
470 &pcmL, &pcmR, &encoded_sample);
471
472 data_out[*data_out_index + 0] = (uint8_t)((encoded_sample[0] >> 8) & 0xff);
473 data_out[*data_out_index + 1] = (uint8_t)((encoded_sample[0] >> 0) & 0xff);
474 data_out[*data_out_index + 2] = (uint8_t)((encoded_sample[1] >> 8) & 0xff);
475 data_out[*data_out_index + 3] = (uint8_t)((encoded_sample[1] >> 0) & 0xff);
476
477 frame += 4;
478 pcm_bytes_encoded += 16;
479 *data_out_index += 4;
480 }
481
482 return pcm_bytes_encoded;
483 }
484
encoderIntervalMs() const485 uint64_t A2dpCodecConfigAptx::encoderIntervalMs() const {
486 return a2dp_vendor_aptx_get_encoder_interval_ms();
487 }
488
getEffectiveMtu() const489 int A2dpCodecConfigAptx::getEffectiveMtu() const {
490 return a2dp_aptx_encoder_cb.peer_mtu;
491 }
492
debug_codec_dump(int fd)493 void A2dpCodecConfigAptx::debug_codec_dump(int fd) {
494 a2dp_aptx_encoder_stats_t* stats = &a2dp_aptx_encoder_cb.stats;
495
496 A2dpCodecConfig::debug_codec_dump(fd);
497
498 dprintf(fd,
499 " Packet counts (expected/dropped) : %zu / "
500 "%zu\n",
501 stats->media_read_total_expected_packets,
502 stats->media_read_total_dropped_packets);
503
504 dprintf(fd,
505 " PCM read counts (expected/actual) : %zu / "
506 "%zu\n",
507 stats->media_read_total_expected_reads_count,
508 stats->media_read_total_actual_reads_count);
509
510 dprintf(fd,
511 " PCM read bytes (expected/actual) : %zu / "
512 "%zu\n",
513 stats->media_read_total_expected_read_bytes,
514 stats->media_read_total_actual_read_bytes);
515 }
516