output_i2s.c 25 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674675676677678679680681682683684685686687688689690691692693694695696697698699700701702703704705706707708709710711712713714715716717718719720721722723724725726727728729730731732733734735736737738739740741742743744745746747748749750751752753754755756757758759760761762763764765766767768769770771772773774775776777778779780781782783
  1. /*
  2. * Squeezelite for esp32
  3. *
  4. * (c) Sebastien 2019
  5. * Philippe G. 2019, philippe_44@outlook.com
  6. *
  7. * This program is free software: you can redistribute it and/or modify
  8. * it under the terms of the GNU General Public License as published by
  9. * the Free Software Foundation, either version 3 of the License, or
  10. * (at your option) any later version.
  11. *
  12. * This program is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  15. * GNU General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU General Public License
  18. * along with this program. If not, see <http://www.gnu.org/licenses/>.
  19. *
  20. */
  21. /*
  22. Synchronisation is a bit of a hack with i2s. The esp32 driver is always
  23. full when it starts, so there is a delay of the total length of buffers.
  24. In other words, i2s_write blocks at first call, until at least one buffer
  25. has been written (it uses a queue with produce / consume).
  26. The first hack is to consume that length at the beginning of tracks when
  27. synchronization is active. It's about ~180ms @ 44.1kHz
  28. The second hack is that we never know exactly the number of frames in the
  29. DMA buffers when we update the output.frames_played_dmp. We assume that
  30. after i2s_write, these buffers are always full so by measuring the gap
  31. between time after i2s_write and update of frames_played_dmp, we have a
  32. good idea of the error.
  33. The third hack is when sample rate changes, buffers are reset and we also
  34. do the change too early, but can't do that exaclty at the right time. So
  35. there might be a pop and a de-sync when sampling rate change happens. Not
  36. sure that using rate_delay would fix that
  37. */
  38. #include "squeezelite.h"
  39. #include "esp_pthread.h"
  40. #include "driver/i2s.h"
  41. #include "driver/i2c.h"
  42. #include "driver/gpio.h"
  43. #include "perf_trace.h"
  44. #include <signal.h>
  45. #include "time.h"
  46. #include "led.h"
  47. #include "monitor.h"
  48. #define LOCK mutex_lock(outputbuf->mutex)
  49. #define UNLOCK mutex_unlock(outputbuf->mutex)
  50. #define FRAME_BLOCK MAX_SILENCE_FRAMES
  51. // Prevent compile errors if dac output is
  52. // included in the build and not actually activated in menuconfig
  53. #ifndef CONFIG_I2S_BCK_IO
  54. #define CONFIG_I2S_BCK_IO -1
  55. #endif
  56. #ifndef CONFIG_I2S_WS_IO
  57. #define CONFIG_I2S_WS_IO -1
  58. #endif
  59. #ifndef CONFIG_I2S_DO_IO
  60. #define CONFIG_I2S_DO_IO -1
  61. #endif
  62. #ifndef CONFIG_I2S_NUM
  63. #define CONFIG_I2S_NUM -1
  64. #endif
  65. #ifndef CONFIG_SPDIF_BCK_IO
  66. #define CONFIG_SPDIF_BCK_IO -1
  67. #endif
  68. #ifndef CONFIG_SPDIF_WS_IO
  69. #define CONFIG_SPDIF_WS_IO -1
  70. #endif
  71. #ifndef CONFIG_SPDIF_DO_IO
  72. #define CONFIG_SPDIF_DO_IO -1
  73. #endif
  74. #ifndef CONFIG_SPDIF_NUM
  75. #define CONFIG_SPDIF_NUM -1
  76. #endif
  77. typedef enum { DAC_ACTIVE = 0, DAC_STANDBY, DAC_DOWN, DAC_ANALOGUE_OFF, DAC_ANALOGUE_ON, DAC_VOLUME } dac_cmd_e;
  78. // must have an integer ratio with FRAME_BLOCK (see spdif comment)
  79. #define DMA_BUF_LEN 512
  80. #define DMA_BUF_COUNT 12
  81. #define DECLARE_ALL_MIN_MAX \
  82. DECLARE_MIN_MAX(o); \
  83. DECLARE_MIN_MAX(s); \
  84. DECLARE_MIN_MAX(rec); \
  85. DECLARE_MIN_MAX(i2s_time); \
  86. DECLARE_MIN_MAX(buffering);
  87. #define RESET_ALL_MIN_MAX \
  88. RESET_MIN_MAX(o); \
  89. RESET_MIN_MAX(s); \
  90. RESET_MIN_MAX(rec); \
  91. RESET_MIN_MAX(i2s_time); \
  92. RESET_MIN_MAX(buffering);
  93. #define STATS_PERIOD_MS 5000
  94. extern struct outputstate output;
  95. extern struct buffer *streambuf;
  96. extern struct buffer *outputbuf;
  97. extern u8_t *silencebuf;
  98. bool jack_mutes_amp = false;
  99. static log_level loglevel;
  100. static bool running, isI2SStarted;
  101. static i2s_config_t i2s_config;
  102. static int bytes_per_frame;
  103. static thread_type thread, stats_thread;
  104. static u8_t *obuf;
  105. static frames_t oframes;
  106. static bool spdif;
  107. static size_t dma_buf_frames;
  108. DECLARE_ALL_MIN_MAX;
  109. static int _i2s_write_frames(frames_t out_frames, bool silence, s32_t gainL, s32_t gainR,
  110. s32_t cross_gain_in, s32_t cross_gain_out, ISAMPLE_T **cross_ptr);
  111. static void *output_thread_i2s();
  112. static void *output_thread_i2s_stats();
  113. static void dac_cmd(dac_cmd_e cmd, ...);
  114. static int tas57_detect(void);
  115. static void spdif_convert(ISAMPLE_T *src, size_t frames, u32_t *dst, size_t *count);
  116. static void (*jack_handler_chain)(bool inserted);
  117. #ifdef CONFIG_SQUEEZEAMP
  118. #define TAS57xx
  119. #undef CONFIG_I2S_BCK_IO
  120. #define CONFIG_I2S_BCK_IO 33
  121. #undef CONFIG_I2S_WS_IO
  122. #define CONFIG_I2S_WS_IO 25
  123. #undef CONFIG_I2S_DO_IO
  124. #define CONFIG_I2S_DO_IO 32
  125. #undef CONFIG_I2S_NUM
  126. #define CONFIG_I2S_NUM 0
  127. #undef CONFIG_SPDIF_BCK_IO
  128. #define CONFIG_SPDIF_BCK_IO 33
  129. #undef CONFIG_SPDIF_WS_IO
  130. #define CONFIG_SPDIF_WS_IO 25
  131. #undef CONFIG_SPDIF_DO_IO
  132. #define CONFIG_SPDIF_DO_IO 15
  133. #undef CONFIG_SPDIF_NUM
  134. #define CONFIG_SPDIF_NUM 0
  135. #define I2C_PORT 0
  136. #define VOLUME_GPIO 14
  137. #define JACK_GPIO 34
  138. #define TAS575x 0x98
  139. #define TAS578x 0x90
  140. struct tas57xx_cmd_s {
  141. u8_t reg;
  142. u8_t value;
  143. };
  144. u8_t config_spdif_gpio = CONFIG_SPDIF_DO_IO;
  145. static const struct tas57xx_cmd_s tas57xx_init_sequence[] = {
  146. { 0x00, 0x00 }, // select page 0
  147. { 0x02, 0x10 }, // standby
  148. { 0x0d, 0x10 }, // use SCK for PLL
  149. { 0x25, 0x08 }, // ignore SCK halt
  150. { 0x08, 0x10 }, // Mute control enable (from TAS5780)
  151. { 0x54, 0x02 }, // Mute output control (from TAS5780)
  152. { 0x02, 0x00 }, // restart
  153. { 0xff, 0xff } // end of table
  154. };
  155. static const i2c_config_t i2c_config = {
  156. .mode = I2C_MODE_MASTER,
  157. .sda_io_num = 27,
  158. .sda_pullup_en = GPIO_PULLUP_ENABLE,
  159. .scl_io_num = 26,
  160. .scl_pullup_en = GPIO_PULLUP_ENABLE,
  161. .master.clk_speed = 100000,
  162. };
  163. static const struct tas57xx_cmd_s tas57xx_cmd[] = {
  164. { 0x02, 0x00 }, // DAC_ACTIVE
  165. { 0x02, 0x10 }, // DAC_STANDBY
  166. { 0x02, 0x01 }, // DAC_DOWN
  167. { 0x56, 0x10 }, // DAC_ANALOGUE_OFF
  168. { 0x56, 0x00 }, // DAC_ANALOGUE_ON
  169. };
  170. static u8_t tas57_addr;
  171. #endif
  172. /****************************************************************************************
  173. * jack insertion handler
  174. */
  175. static void jack_handler(bool inserted) {
  176. // jack detection bounces a bit but that seems fine
  177. if (jack_mutes_amp) {
  178. LOG_INFO("switching amplifier %s", inserted ? "ON" : "OFF");
  179. if (inserted) dac_cmd(DAC_ANALOGUE_OFF);
  180. else dac_cmd(DAC_ANALOGUE_ON);
  181. }
  182. if (jack_handler_chain) (jack_handler_chain)(inserted);
  183. }
  184. /****************************************************************************************
  185. * Initialize the DAC output
  186. */
  187. void output_init_i2s(log_level level, char *device, unsigned output_buf_size, char *params, unsigned rates[], unsigned rate_delay, unsigned idle) {
  188. loglevel = level;
  189. #ifdef TAS57xx
  190. LOG_INFO("Initializing TAS57xx ");
  191. adc1_config_width(ADC_WIDTH_BIT_12);
  192. adc1_config_channel_atten(ADC1_CHANNEL_7, ADC_ATTEN_DB_0);
  193. // init volume & mute
  194. gpio_pad_select_gpio(VOLUME_GPIO);
  195. gpio_set_direction(VOLUME_GPIO, GPIO_MODE_OUTPUT);
  196. gpio_set_level(VOLUME_GPIO, 0);
  197. // configure i2c
  198. i2c_param_config(I2C_PORT, &i2c_config);
  199. i2c_driver_install(I2C_PORT, I2C_MODE_MASTER, false, false, false);
  200. // find which TAS we are using
  201. tas57_addr = tas57_detect();
  202. i2c_cmd_handle_t i2c_cmd = i2c_cmd_link_create();
  203. for (int i = 0; tas57xx_init_sequence[i].reg != 0xff; i++) {
  204. i2c_master_start(i2c_cmd);
  205. i2c_master_write_byte(i2c_cmd, tas57_addr | I2C_MASTER_WRITE, I2C_MASTER_NACK);
  206. i2c_master_write_byte(i2c_cmd, tas57xx_init_sequence[i].reg, I2C_MASTER_NACK);
  207. i2c_master_write_byte(i2c_cmd, tas57xx_init_sequence[i].value, I2C_MASTER_NACK);
  208. LOG_DEBUG("i2c write %x at %u", tas57xx_init_sequence[i].reg, tas57xx_init_sequence[i].value);
  209. }
  210. i2c_master_stop(i2c_cmd);
  211. esp_err_t ret = i2c_master_cmd_begin(I2C_PORT, i2c_cmd, 500 / portTICK_RATE_MS);
  212. i2c_cmd_link_delete(i2c_cmd);
  213. if (ret != ESP_OK) {
  214. LOG_ERROR("could not intialize TAS57xx %d", ret);
  215. }
  216. #endif
  217. #ifdef CONFIG_I2S_BITS_PER_CHANNEL
  218. switch (CONFIG_I2S_BITS_PER_CHANNEL) {
  219. case 24:
  220. output.format = S24_BE;
  221. bytes_per_frame = 2*3;
  222. break;
  223. case 16:
  224. output.format = S16_BE;
  225. bytes_per_frame = 2*2;
  226. break;
  227. case 8:
  228. output.format = S8_BE;
  229. bytes_per_frame = 2*4;
  230. break;
  231. default:
  232. LOG_ERROR("Unsupported bit depth %d",CONFIG_I2S_BITS_PER_CHANNEL);
  233. break;
  234. }
  235. #else
  236. output.format = S16_LE;
  237. bytes_per_frame = 2*2;
  238. #endif
  239. if (strcasestr(device, "spdif")) spdif = true;
  240. output.write_cb = &_i2s_write_frames;
  241. obuf = malloc(FRAME_BLOCK * bytes_per_frame);
  242. if (!obuf) {
  243. LOG_ERROR("Cannot allocate i2s buffer");
  244. return;
  245. }
  246. running=true;
  247. i2s_pin_config_t pin_config;
  248. if (spdif) {
  249. pin_config = (i2s_pin_config_t) { .bck_io_num = CONFIG_SPDIF_BCK_IO, .ws_io_num = CONFIG_SPDIF_WS_IO,
  250. .data_out_num = CONFIG_SPDIF_DO_IO, .data_in_num = -1 //Not used
  251. };
  252. i2s_config.sample_rate = output.current_sample_rate * 2;
  253. i2s_config.bits_per_sample = 32;
  254. // Normally counted in frames, but 16 sample are transformed into 32 bits in spdif
  255. i2s_config.dma_buf_len = DMA_BUF_LEN / 2;
  256. i2s_config.dma_buf_count = DMA_BUF_COUNT * 2;
  257. /*
  258. In DMA, we have room for (LEN * COUNT) frames of 32 bits samples that
  259. we push at sample_rate * 2. Each of these peuso-frames is a single true
  260. audio frame. So the real depth is true frames is (LEN * COUNT / 2)
  261. */
  262. dma_buf_frames = DMA_BUF_COUNT * DMA_BUF_LEN / 2;
  263. } else {
  264. pin_config = (i2s_pin_config_t) { .bck_io_num = CONFIG_I2S_BCK_IO, .ws_io_num = CONFIG_I2S_WS_IO,
  265. .data_out_num = CONFIG_I2S_DO_IO, .data_in_num = -1 //Not used
  266. };
  267. i2s_config.sample_rate = output.current_sample_rate;
  268. i2s_config.bits_per_sample = bytes_per_frame * 8 / 2;
  269. // Counted in frames (but i2s allocates a buffer <= 4092 bytes)
  270. i2s_config.dma_buf_len = DMA_BUF_LEN;
  271. i2s_config.dma_buf_count = DMA_BUF_COUNT;
  272. dma_buf_frames = DMA_BUF_COUNT * DMA_BUF_LEN;
  273. #ifdef TAS57xx
  274. gpio_pad_select_gpio(CONFIG_SPDIF_DO_IO);
  275. gpio_set_direction(CONFIG_SPDIF_DO_IO, GPIO_MODE_OUTPUT);
  276. gpio_set_level(CONFIG_SPDIF_DO_IO, 0);
  277. #endif
  278. }
  279. i2s_config.mode = I2S_MODE_MASTER | I2S_MODE_TX;
  280. i2s_config.channel_format = I2S_CHANNEL_FMT_RIGHT_LEFT;
  281. i2s_config.communication_format = I2S_COMM_FORMAT_I2S| I2S_COMM_FORMAT_I2S_MSB;
  282. // in case of overflow, do not replay old buffer
  283. i2s_config.tx_desc_auto_clear = true;
  284. i2s_config.use_apll = true;
  285. i2s_config.intr_alloc_flags = ESP_INTR_FLAG_LEVEL1; //Interrupt level 1
  286. LOG_INFO("Initializing I2S mode %s with rate: %d, bits per sample: %d, buffer frames: %d, number of buffers: %d ",
  287. spdif ? "S/PDIF" : "normal",
  288. i2s_config.sample_rate, i2s_config.bits_per_sample, i2s_config.dma_buf_len, i2s_config.dma_buf_count);
  289. i2s_driver_install(CONFIG_I2S_NUM, &i2s_config, 0, NULL);
  290. i2s_set_pin(CONFIG_I2S_NUM, &pin_config);
  291. i2s_stop(CONFIG_I2S_NUM);
  292. i2s_zero_dma_buffer(CONFIG_I2S_NUM);
  293. isI2SStarted=false;
  294. dac_cmd(DAC_STANDBY);
  295. jack_handler_chain = jack_handler_svc;
  296. jack_handler_svc = jack_handler;
  297. if (jack_mutes_amp && jack_inserted_svc()) dac_cmd(DAC_ANALOGUE_OFF);
  298. else dac_cmd(DAC_ANALOGUE_ON);
  299. esp_pthread_cfg_t cfg = esp_pthread_get_default_config();
  300. cfg.thread_name= "output_i2s";
  301. cfg.inherit_cfg = false;
  302. cfg.prio = CONFIG_ESP32_PTHREAD_TASK_PRIO_DEFAULT + 1;
  303. cfg.stack_size = PTHREAD_STACK_MIN + OUTPUT_THREAD_STACK_SIZE;
  304. esp_pthread_set_cfg(&cfg);
  305. pthread_create(&thread, NULL, output_thread_i2s, NULL);
  306. cfg.thread_name= "output_i2s_sts";
  307. cfg.prio = CONFIG_ESP32_PTHREAD_TASK_PRIO_DEFAULT - 1;
  308. cfg.stack_size = 2048;
  309. esp_pthread_set_cfg(&cfg);
  310. pthread_create(&stats_thread, NULL, output_thread_i2s_stats, NULL);
  311. }
  312. /****************************************************************************************
  313. * Terminate DAC output
  314. */
  315. void output_close_i2s(void) {
  316. LOCK;
  317. running = false;
  318. UNLOCK;
  319. pthread_join(thread, NULL);
  320. pthread_join(stats_thread, NULL);
  321. i2s_driver_uninstall(CONFIG_I2S_NUM);
  322. free(obuf);
  323. #ifdef TAS57xx
  324. i2c_driver_delete(I2C_PORT);
  325. #endif
  326. }
  327. /****************************************************************************************
  328. * change volume
  329. */
  330. bool output_volume_i2s(unsigned left, unsigned right) {
  331. #ifdef TAS57xx
  332. if (!spdif) {
  333. LOG_INFO("TAS57xx volume (L:%u R:%u)", left, right);
  334. gpio_set_level(VOLUME_GPIO, left || right);
  335. }
  336. #endif
  337. return false;
  338. }
  339. /****************************************************************************************
  340. * Write frames to the output buffer
  341. */
  342. static int _i2s_write_frames(frames_t out_frames, bool silence, s32_t gainL, s32_t gainR,
  343. s32_t cross_gain_in, s32_t cross_gain_out, ISAMPLE_T **cross_ptr) {
  344. #if BYTES_PER_FRAME == 8
  345. s32_t *optr;
  346. #endif
  347. if (!silence) {
  348. if (output.fade == FADE_ACTIVE && output.fade_dir == FADE_CROSS && *cross_ptr) {
  349. _apply_cross(outputbuf, out_frames, cross_gain_in, cross_gain_out, cross_ptr);
  350. }
  351. #if BYTES_PER_FRAME == 4
  352. if (gainL != FIXED_ONE || gainR!= FIXED_ONE) {
  353. _apply_gain(outputbuf, out_frames, gainL, gainR);
  354. }
  355. memcpy(obuf + oframes * bytes_per_frame, outputbuf->readp, out_frames * bytes_per_frame);
  356. #else
  357. optr = (s32_t*) outputbuf->readp;
  358. #endif
  359. } else {
  360. #if BYTES_PER_FRAME == 4
  361. memcpy(obuf + oframes * bytes_per_frame, silencebuf, out_frames * bytes_per_frame);
  362. #else
  363. optr = (s32_t*) silencebuf;
  364. #endif
  365. }
  366. #if BYTES_PER_FRAME == 8
  367. IF_DSD(
  368. if (output.outfmt == DOP) {
  369. update_dop((u32_t *) optr, out_frames, output.invert);
  370. } else if (output.outfmt != PCM && output.invert)
  371. dsd_invert((u32_t *) optr, out_frames);
  372. )
  373. _scale_and_pack_frames(obuf + oframes * bytes_per_frame, optr, out_frames, gainL, gainR, output.format);
  374. #endif
  375. oframes += out_frames;
  376. return out_frames;
  377. }
  378. /****************************************************************************************
  379. * Main output thread
  380. */
  381. static void *output_thread_i2s() {
  382. size_t count = 0, bytes;
  383. frames_t iframes = FRAME_BLOCK;
  384. uint32_t timer_start = 0;
  385. int discard = 0;
  386. uint32_t fullness = gettime_ms();
  387. bool synced;
  388. output_state state = OUTPUT_OFF;
  389. char *sbuf = NULL;
  390. // spdif needs 16 bytes per frame : 32 bits/sample, 2 channels, BMC encoded
  391. if (spdif && (sbuf = malloc(FRAME_BLOCK * 16)) == NULL) {
  392. LOG_ERROR("Cannot allocate SPDIF buffer");
  393. }
  394. while (running) {
  395. TIME_MEASUREMENT_START(timer_start);
  396. LOCK;
  397. // manage led display & analogue
  398. if (state != output.state) {
  399. LOG_INFO("Output state is %d", output.state);
  400. if (output.state == OUTPUT_OFF) led_blink(LED_GREEN, 100, 2500);
  401. else if (output.state == OUTPUT_STOPPED) {
  402. #ifdef TAS57xx
  403. dac_cmd(DAC_ANALOGUE_OFF);
  404. #endif
  405. led_blink(LED_GREEN, 200, 1000);
  406. } else if (output.state == OUTPUT_RUNNING) {
  407. #ifdef TAS57xx
  408. if (!jack_mutes_amp || !jack_inserted_svc()) dac_cmd(DAC_ANALOGUE_ON);
  409. #endif
  410. led_on(LED_GREEN);
  411. }
  412. }
  413. state = output.state;
  414. if (output.state == OUTPUT_OFF) {
  415. UNLOCK;
  416. if (isI2SStarted) {
  417. isI2SStarted = false;
  418. i2s_stop(CONFIG_I2S_NUM);
  419. if (!spdif) dac_cmd(DAC_STANDBY);
  420. count = 0;
  421. }
  422. usleep(200000);
  423. continue;
  424. } else if (output.state == OUTPUT_STOPPED) {
  425. synced = false;
  426. }
  427. oframes = 0;
  428. output.updated = gettime_ms();
  429. output.frames_played_dmp = output.frames_played;
  430. // try to estimate how much we have consumed from the DMA buffer (calculation is incorrect at the very beginning ...)
  431. output.device_frames = dma_buf_frames - ((output.updated - fullness) * output.current_sample_rate) / 1000;
  432. _output_frames( iframes );
  433. // oframes must be a global updated by the write callback
  434. output.frames_in_process = oframes;
  435. SET_MIN_MAX_SIZED(oframes,rec,iframes);
  436. SET_MIN_MAX_SIZED(_buf_used(outputbuf),o,outputbuf->size);
  437. SET_MIN_MAX_SIZED(_buf_used(streambuf),s,streambuf->size);
  438. SET_MIN_MAX( TIME_MEASUREMENT_GET(timer_start),buffering);
  439. /* must skip first whatever is in the pipe (but not when resuming).
  440. This test is incorrect when we pause a track that has just started,
  441. but this is higly unlikely and I don't have a better one for now */
  442. if (output.state == OUTPUT_START_AT) {
  443. discard = output.frames_played_dmp ? 0 : output.device_frames;
  444. synced = true;
  445. } else if (discard) {
  446. discard -= oframes;
  447. iframes = discard ? min(FRAME_BLOCK, discard) : FRAME_BLOCK;
  448. UNLOCK;
  449. continue;
  450. }
  451. UNLOCK;
  452. // now send all the data
  453. TIME_MEASUREMENT_START(timer_start);
  454. if (!isI2SStarted ) {
  455. isI2SStarted = true;
  456. LOG_INFO("Restarting I2S.");
  457. i2s_zero_dma_buffer(CONFIG_I2S_NUM);
  458. i2s_start(CONFIG_I2S_NUM);
  459. if (!spdif) dac_cmd(DAC_ACTIVE);
  460. }
  461. // this does not work well as set_sample_rates resets the fifos (and it's too early)
  462. if (i2s_config.sample_rate != output.current_sample_rate) {
  463. LOG_INFO("changing sampling rate %u to %u", i2s_config.sample_rate, output.current_sample_rate);
  464. /*
  465. if (synced)
  466. // can sleep for a buffer_queue - 1 and then eat a buffer (discard) if we are synced
  467. usleep(((DMA_BUF_COUNT - 1) * DMA_BUF_LEN * bytes_per_frame * 1000) / 44100 * 1000);
  468. discard = DMA_BUF_COUNT * DMA_BUF_LEN * bytes_per_frame;
  469. }
  470. */
  471. i2s_config.sample_rate = output.current_sample_rate;
  472. i2s_set_sample_rates(CONFIG_I2S_NUM, spdif ? i2s_config.sample_rate * 2 : i2s_config.sample_rate);
  473. i2s_zero_dma_buffer(CONFIG_I2S_NUM);
  474. //return;
  475. }
  476. // we assume that here we have been able to entirely fill the DMA buffers
  477. if (spdif) {
  478. spdif_convert((ISAMPLE_T*) obuf, oframes, (u32_t*) sbuf, &count);
  479. i2s_write(CONFIG_I2S_NUM, sbuf, oframes * 16, &bytes, portMAX_DELAY);
  480. bytes /= 4;
  481. } else {
  482. i2s_write(CONFIG_I2S_NUM, obuf, oframes * bytes_per_frame, &bytes, portMAX_DELAY);
  483. }
  484. fullness = gettime_ms();
  485. if (bytes != oframes * bytes_per_frame) {
  486. LOG_WARN("I2S DMA Overflow! available bytes: %d, I2S wrote %d bytes", oframes * bytes_per_frame, bytes);
  487. }
  488. SET_MIN_MAX( TIME_MEASUREMENT_GET(timer_start),i2s_time);
  489. }
  490. if (spdif) free(sbuf);
  491. return 0;
  492. }
  493. /****************************************************************************************
  494. * Stats output thread
  495. */
  496. static void *output_thread_i2s_stats() {
  497. while (running) {
  498. LOCK;
  499. output_state state = output.state;
  500. UNLOCK;
  501. if(state>OUTPUT_STOPPED){
  502. LOG_INFO( "Output State: %d, current sample rate: %d, bytes per frame: %d",state,output.current_sample_rate, bytes_per_frame);
  503. LOG_INFO( LINE_MIN_MAX_FORMAT_HEAD1);
  504. LOG_INFO( LINE_MIN_MAX_FORMAT_HEAD2);
  505. LOG_INFO( LINE_MIN_MAX_FORMAT_HEAD3);
  506. LOG_INFO( LINE_MIN_MAX_FORMAT_HEAD4);
  507. LOG_INFO(LINE_MIN_MAX_FORMAT_STREAM, LINE_MIN_MAX_STREAM("stream",s));
  508. LOG_INFO(LINE_MIN_MAX_FORMAT,LINE_MIN_MAX("output",o));
  509. LOG_INFO(LINE_MIN_MAX_FORMAT_FOOTER);
  510. LOG_INFO(LINE_MIN_MAX_FORMAT,LINE_MIN_MAX("received",rec));
  511. LOG_INFO(LINE_MIN_MAX_FORMAT_FOOTER);
  512. LOG_INFO("");
  513. LOG_INFO(" ----------+----------+-----------+-----------+ ");
  514. LOG_INFO(" max (us) | min (us) | avg(us) | count | ");
  515. LOG_INFO(" ----------+----------+-----------+-----------+ ");
  516. LOG_INFO(LINE_MIN_MAX_DURATION_FORMAT,LINE_MIN_MAX_DURATION("Buffering(us)",buffering));
  517. LOG_INFO(LINE_MIN_MAX_DURATION_FORMAT,LINE_MIN_MAX_DURATION("i2s tfr(us)",i2s_time));
  518. LOG_INFO(" ----------+----------+-----------+-----------+");
  519. RESET_ALL_MIN_MAX;
  520. }
  521. usleep(STATS_PERIOD_MS *1000);
  522. }
  523. return NULL;
  524. }
  525. /****************************************************************************************
  526. * DAC specific commands
  527. */
  528. void dac_cmd(dac_cmd_e cmd, ...) {
  529. va_list args;
  530. esp_err_t ret = ESP_OK;
  531. va_start(args, cmd);
  532. #ifdef TAS57xx
  533. i2c_cmd_handle_t i2c_cmd = i2c_cmd_link_create();
  534. switch(cmd) {
  535. case DAC_VOLUME:
  536. LOG_ERROR("volume not handled yet");
  537. break;
  538. default:
  539. i2c_master_start(i2c_cmd);
  540. i2c_master_write_byte(i2c_cmd, tas57_addr | I2C_MASTER_WRITE, I2C_MASTER_NACK);
  541. i2c_master_write_byte(i2c_cmd, tas57xx_cmd[cmd].reg, I2C_MASTER_NACK);
  542. i2c_master_write_byte(i2c_cmd, tas57xx_cmd[cmd].value, I2C_MASTER_NACK);
  543. i2c_master_stop(i2c_cmd);
  544. ret = i2c_master_cmd_begin(I2C_PORT, i2c_cmd, 50 / portTICK_RATE_MS);
  545. }
  546. i2c_cmd_link_delete(i2c_cmd);
  547. if (ret != ESP_OK) {
  548. LOG_ERROR("could not intialize TAS57xx %d", ret);
  549. }
  550. #endif
  551. va_end(args);
  552. }
  553. /****************************************************************************************
  554. * TAS57 detection
  555. */
  556. #ifdef TAS57xx
  557. static int tas57_detect(void) {
  558. u8_t data, addr[] = {TAS578x, TAS575x};
  559. int ret;
  560. for (int i = 0; i < sizeof(addr); i++) {
  561. i2c_cmd_handle_t i2c_cmd = i2c_cmd_link_create();
  562. i2c_master_start(i2c_cmd);
  563. i2c_master_write_byte(i2c_cmd, addr[i] | I2C_MASTER_WRITE, I2C_MASTER_NACK);
  564. i2c_master_write_byte(i2c_cmd, 00, I2C_MASTER_NACK);
  565. i2c_master_start(i2c_cmd);
  566. i2c_master_write_byte(i2c_cmd, addr[i] | I2C_MASTER_READ, I2C_MASTER_NACK);
  567. i2c_master_read_byte(i2c_cmd, &data, I2C_MASTER_NACK);
  568. i2c_master_stop(i2c_cmd);
  569. ret = i2c_master_cmd_begin(I2C_PORT, i2c_cmd, 50 / portTICK_RATE_MS);
  570. i2c_cmd_link_delete(i2c_cmd);
  571. if (ret == ESP_OK) {
  572. LOG_INFO("Detected TAS @0x%x", addr[i]);
  573. return addr[i];
  574. }
  575. }
  576. return 0;
  577. }
  578. #endif
  579. /****************************************************************************************
  580. * SPDIF support
  581. */
  582. #define PREAMBLE_B (0xE8) //11101000
  583. #define PREAMBLE_M (0xE2) //11100010
  584. #define PREAMBLE_W (0xE4) //11100100
  585. #define VUCP ((0xCC) << 24)
  586. #define VUCP_MUTE ((0xD4) << 24) // To mute PCM, set VUCP = invalid.
  587. extern const u16_t spdif_bmclookup[256];
  588. /*
  589. SPDIF is supposed to be (before BMC encoding, from LSB to MSB)
  590. PPPP AAAA SSSS SSSS SSSS SSSS SSSS VUCP
  591. after BMC encoding, each bits becomes 2 hence this becomes a 64 bits word. The
  592. the trick is to start not with a PPPP sequence but with an VUCP sequence to that
  593. the 16 bits samples are aligned with a BMC word boundary. Note that the LSB of the
  594. audio is transmitted first (not the MSB) and that ESP32 libray sends R then L,
  595. contrary to what seems to be usually done, so (dst) order had to be changed
  596. */
  597. void spdif_convert(ISAMPLE_T *src, size_t frames, u32_t *dst, size_t *count) {
  598. u16_t hi, lo, aux;
  599. // frames are 2 channels of 16 bits
  600. frames *= 2;
  601. while (frames--) {
  602. #if BYTES_PER_FRAME == 4
  603. hi = spdif_bmclookup[(u8_t)(*src >> 8)];
  604. lo = spdif_bmclookup[(u8_t) *src];
  605. #else
  606. hi = spdif_bmclookup[(u8_t)(*src >> 24)];
  607. lo = spdif_bmclookup[(u8_t) *src >> 16];
  608. #endif
  609. lo ^= ~((s16_t)hi) >> 16;
  610. // 16 bits sample:
  611. *(dst+0) = ((u32_t)lo << 16) | hi;
  612. // 4 bits auxillary-audio-databits, the first used as parity
  613. aux = 0xb333 ^ (((u32_t)((s16_t)lo)) >> 17);
  614. // VUCP-Bits: Valid, Subcode, Channelstatus, Parity = 0
  615. // As parity is always 0, we can use fixed preambles
  616. if (++(*count) > 383) {
  617. *(dst+1) = VUCP | (PREAMBLE_B << 16 ) | aux; //special preamble for one of 192 frames
  618. *count = 0;
  619. } else {
  620. *(dst+1) = VUCP | ((((*count) & 0x01) ? PREAMBLE_W : PREAMBLE_M) << 16) | aux;
  621. }
  622. src++;
  623. dst += 2;
  624. }
  625. }
  626. const u16_t spdif_bmclookup[256] = { //biphase mark encoded values (least significant bit first)
  627. 0xcccc, 0x4ccc, 0x2ccc, 0xaccc, 0x34cc, 0xb4cc, 0xd4cc, 0x54cc,
  628. 0x32cc, 0xb2cc, 0xd2cc, 0x52cc, 0xcacc, 0x4acc, 0x2acc, 0xaacc,
  629. 0x334c, 0xb34c, 0xd34c, 0x534c, 0xcb4c, 0x4b4c, 0x2b4c, 0xab4c,
  630. 0xcd4c, 0x4d4c, 0x2d4c, 0xad4c, 0x354c, 0xb54c, 0xd54c, 0x554c,
  631. 0x332c, 0xb32c, 0xd32c, 0x532c, 0xcb2c, 0x4b2c, 0x2b2c, 0xab2c,
  632. 0xcd2c, 0x4d2c, 0x2d2c, 0xad2c, 0x352c, 0xb52c, 0xd52c, 0x552c,
  633. 0xccac, 0x4cac, 0x2cac, 0xacac, 0x34ac, 0xb4ac, 0xd4ac, 0x54ac,
  634. 0x32ac, 0xb2ac, 0xd2ac, 0x52ac, 0xcaac, 0x4aac, 0x2aac, 0xaaac,
  635. 0x3334, 0xb334, 0xd334, 0x5334, 0xcb34, 0x4b34, 0x2b34, 0xab34,
  636. 0xcd34, 0x4d34, 0x2d34, 0xad34, 0x3534, 0xb534, 0xd534, 0x5534,
  637. 0xccb4, 0x4cb4, 0x2cb4, 0xacb4, 0x34b4, 0xb4b4, 0xd4b4, 0x54b4,
  638. 0x32b4, 0xb2b4, 0xd2b4, 0x52b4, 0xcab4, 0x4ab4, 0x2ab4, 0xaab4,
  639. 0xccd4, 0x4cd4, 0x2cd4, 0xacd4, 0x34d4, 0xb4d4, 0xd4d4, 0x54d4,
  640. 0x32d4, 0xb2d4, 0xd2d4, 0x52d4, 0xcad4, 0x4ad4, 0x2ad4, 0xaad4,
  641. 0x3354, 0xb354, 0xd354, 0x5354, 0xcb54, 0x4b54, 0x2b54, 0xab54,
  642. 0xcd54, 0x4d54, 0x2d54, 0xad54, 0x3554, 0xb554, 0xd554, 0x5554,
  643. 0x3332, 0xb332, 0xd332, 0x5332, 0xcb32, 0x4b32, 0x2b32, 0xab32,
  644. 0xcd32, 0x4d32, 0x2d32, 0xad32, 0x3532, 0xb532, 0xd532, 0x5532,
  645. 0xccb2, 0x4cb2, 0x2cb2, 0xacb2, 0x34b2, 0xb4b2, 0xd4b2, 0x54b2,
  646. 0x32b2, 0xb2b2, 0xd2b2, 0x52b2, 0xcab2, 0x4ab2, 0x2ab2, 0xaab2,
  647. 0xccd2, 0x4cd2, 0x2cd2, 0xacd2, 0x34d2, 0xb4d2, 0xd4d2, 0x54d2,
  648. 0x32d2, 0xb2d2, 0xd2d2, 0x52d2, 0xcad2, 0x4ad2, 0x2ad2, 0xaad2,
  649. 0x3352, 0xb352, 0xd352, 0x5352, 0xcb52, 0x4b52, 0x2b52, 0xab52,
  650. 0xcd52, 0x4d52, 0x2d52, 0xad52, 0x3552, 0xb552, 0xd552, 0x5552,
  651. 0xccca, 0x4cca, 0x2cca, 0xacca, 0x34ca, 0xb4ca, 0xd4ca, 0x54ca,
  652. 0x32ca, 0xb2ca, 0xd2ca, 0x52ca, 0xcaca, 0x4aca, 0x2aca, 0xaaca,
  653. 0x334a, 0xb34a, 0xd34a, 0x534a, 0xcb4a, 0x4b4a, 0x2b4a, 0xab4a,
  654. 0xcd4a, 0x4d4a, 0x2d4a, 0xad4a, 0x354a, 0xb54a, 0xd54a, 0x554a,
  655. 0x332a, 0xb32a, 0xd32a, 0x532a, 0xcb2a, 0x4b2a, 0x2b2a, 0xab2a,
  656. 0xcd2a, 0x4d2a, 0x2d2a, 0xad2a, 0x352a, 0xb52a, 0xd52a, 0x552a,
  657. 0xccaa, 0x4caa, 0x2caa, 0xacaa, 0x34aa, 0xb4aa, 0xd4aa, 0x54aa,
  658. 0x32aa, 0xb2aa, 0xd2aa, 0x52aa, 0xcaaa, 0x4aaa, 0x2aaa, 0xaaaa
  659. };