src.c 23 KB

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  1. /*
  2. * Renesas R-Car SRC support
  3. *
  4. * Copyright (C) 2013 Renesas Solutions Corp.
  5. * Kuninori Morimoto <kuninori.morimoto.gx@renesas.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 version 2 as
  9. * published by the Free Software Foundation.
  10. */
  11. #include "rsnd.h"
  12. #define SRC_NAME "src"
  13. /* SRCx_STATUS */
  14. #define OUF_SRCO ((1 << 12) | (1 << 13))
  15. #define OUF_SRCI ((1 << 9) | (1 << 8))
  16. /* SCU_SYSTEM_STATUS0/1 */
  17. #define OUF_SRC(id) ((1 << (id + 16)) | (1 << id))
  18. struct rsnd_src {
  19. struct rsnd_src_platform_info *info; /* rcar_snd.h */
  20. struct rsnd_mod mod;
  21. struct rsnd_kctrl_cfg_s sen; /* sync convert enable */
  22. struct rsnd_kctrl_cfg_s sync; /* sync convert */
  23. u32 convert_rate; /* sampling rate convert */
  24. int err;
  25. };
  26. #define RSND_SRC_NAME_SIZE 16
  27. #define rsnd_src_nr(priv) ((priv)->src_nr)
  28. #define rsnd_enable_sync_convert(src) ((src)->sen.val)
  29. #define rsnd_src_of_node(priv) \
  30. of_get_child_by_name(rsnd_priv_to_dev(priv)->of_node, "rcar_sound,src")
  31. #define rsnd_mod_to_src(_mod) \
  32. container_of((_mod), struct rsnd_src, mod)
  33. #define for_each_rsnd_src(pos, priv, i) \
  34. for ((i) = 0; \
  35. ((i) < rsnd_src_nr(priv)) && \
  36. ((pos) = (struct rsnd_src *)(priv)->src + i); \
  37. i++)
  38. /*
  39. * image of SRC (Sampling Rate Converter)
  40. *
  41. * 96kHz <-> +-----+ 48kHz +-----+ 48kHz +-------+
  42. * 48kHz <-> | SRC | <------> | SSI | <-----> | codec |
  43. * 44.1kHz <-> +-----+ +-----+ +-------+
  44. * ...
  45. *
  46. */
  47. /*
  48. * src.c is caring...
  49. *
  50. * Gen1
  51. *
  52. * [mem] -> [SRU] -> [SSI]
  53. * |--------|
  54. *
  55. * Gen2
  56. *
  57. * [mem] -> [SRC] -> [SSIU] -> [SSI]
  58. * |-----------------|
  59. */
  60. /*
  61. * How to use SRC bypass mode for debugging
  62. *
  63. * SRC has bypass mode, and it is useful for debugging.
  64. * In Gen2 case,
  65. * SRCm_MODE controls whether SRC is used or not
  66. * SSI_MODE0 controls whether SSIU which receives SRC data
  67. * is used or not.
  68. * Both SRCm_MODE/SSI_MODE0 settings are needed if you use SRC,
  69. * but SRC bypass mode needs SSI_MODE0 only.
  70. *
  71. * This driver request
  72. * struct rsnd_src_platform_info {
  73. * u32 convert_rate;
  74. * int dma_id;
  75. * }
  76. *
  77. * rsnd_src_convert_rate() indicates
  78. * above convert_rate, and it controls
  79. * whether SRC is used or not.
  80. *
  81. * ex) doesn't use SRC
  82. * static struct rsnd_dai_platform_info rsnd_dai = {
  83. * .playback = { .ssi = &rsnd_ssi[0], },
  84. * };
  85. *
  86. * ex) uses SRC
  87. * static struct rsnd_src_platform_info rsnd_src[] = {
  88. * RSND_SCU(48000, 0),
  89. * ...
  90. * };
  91. * static struct rsnd_dai_platform_info rsnd_dai = {
  92. * .playback = { .ssi = &rsnd_ssi[0], .src = &rsnd_src[0] },
  93. * };
  94. *
  95. * ex) uses SRC bypass mode
  96. * static struct rsnd_src_platform_info rsnd_src[] = {
  97. * RSND_SCU(0, 0),
  98. * ...
  99. * };
  100. * static struct rsnd_dai_platform_info rsnd_dai = {
  101. * .playback = { .ssi = &rsnd_ssi[0], .src = &rsnd_src[0] },
  102. * };
  103. *
  104. */
  105. /*
  106. * Gen1/Gen2 common functions
  107. */
  108. static void rsnd_src_soft_reset(struct rsnd_mod *mod)
  109. {
  110. rsnd_mod_write(mod, SRC_SWRSR, 0);
  111. rsnd_mod_write(mod, SRC_SWRSR, 1);
  112. }
  113. #define rsnd_src_initialize_lock(mod) __rsnd_src_initialize_lock(mod, 1)
  114. #define rsnd_src_initialize_unlock(mod) __rsnd_src_initialize_lock(mod, 0)
  115. static void __rsnd_src_initialize_lock(struct rsnd_mod *mod, u32 enable)
  116. {
  117. rsnd_mod_write(mod, SRC_SRCIR, enable);
  118. }
  119. static struct dma_chan *rsnd_src_dma_req(struct rsnd_dai_stream *io,
  120. struct rsnd_mod *mod)
  121. {
  122. struct rsnd_priv *priv = rsnd_mod_to_priv(mod);
  123. int is_play = rsnd_io_is_play(io);
  124. return rsnd_dma_request_channel(rsnd_src_of_node(priv),
  125. mod,
  126. is_play ? "rx" : "tx");
  127. }
  128. int rsnd_src_ssiu_start(struct rsnd_mod *ssi_mod,
  129. struct rsnd_dai_stream *io,
  130. int use_busif)
  131. {
  132. struct rsnd_dai *rdai = rsnd_io_to_rdai(io);
  133. int ssi_id = rsnd_mod_id(ssi_mod);
  134. /*
  135. * SSI_MODE0
  136. */
  137. rsnd_mod_bset(ssi_mod, SSI_MODE0, (1 << ssi_id),
  138. !use_busif << ssi_id);
  139. /*
  140. * SSI_MODE1
  141. */
  142. if (rsnd_ssi_is_pin_sharing(ssi_mod)) {
  143. int shift = -1;
  144. switch (ssi_id) {
  145. case 1:
  146. shift = 0;
  147. break;
  148. case 2:
  149. shift = 2;
  150. break;
  151. case 4:
  152. shift = 16;
  153. break;
  154. }
  155. if (shift >= 0)
  156. rsnd_mod_bset(ssi_mod, SSI_MODE1,
  157. 0x3 << shift,
  158. rsnd_rdai_is_clk_master(rdai) ?
  159. 0x2 << shift : 0x1 << shift);
  160. }
  161. /*
  162. * DMA settings for SSIU
  163. */
  164. if (use_busif) {
  165. u32 val = rsnd_get_dalign(ssi_mod, io);
  166. rsnd_mod_write(ssi_mod, SSI_BUSIF_ADINR,
  167. rsnd_get_adinr_bit(ssi_mod, io));
  168. rsnd_mod_write(ssi_mod, SSI_BUSIF_MODE, 1);
  169. rsnd_mod_write(ssi_mod, SSI_CTRL, 0x1);
  170. rsnd_mod_write(ssi_mod, SSI_BUSIF_DALIGN, val);
  171. }
  172. return 0;
  173. }
  174. int rsnd_src_ssiu_stop(struct rsnd_mod *ssi_mod,
  175. struct rsnd_dai_stream *io)
  176. {
  177. /*
  178. * DMA settings for SSIU
  179. */
  180. rsnd_mod_write(ssi_mod, SSI_CTRL, 0);
  181. return 0;
  182. }
  183. int rsnd_src_ssi_irq_enable(struct rsnd_mod *ssi_mod)
  184. {
  185. struct rsnd_priv *priv = rsnd_mod_to_priv(ssi_mod);
  186. if (rsnd_is_gen1(priv))
  187. return 0;
  188. /* enable SSI interrupt if Gen2 */
  189. rsnd_mod_write(ssi_mod, SSI_INT_ENABLE,
  190. rsnd_ssi_is_dma_mode(ssi_mod) ?
  191. 0x0e000000 : 0x0f000000);
  192. return 0;
  193. }
  194. int rsnd_src_ssi_irq_disable(struct rsnd_mod *ssi_mod)
  195. {
  196. struct rsnd_priv *priv = rsnd_mod_to_priv(ssi_mod);
  197. if (rsnd_is_gen1(priv))
  198. return 0;
  199. /* disable SSI interrupt if Gen2 */
  200. rsnd_mod_write(ssi_mod, SSI_INT_ENABLE, 0x00000000);
  201. return 0;
  202. }
  203. static u32 rsnd_src_convert_rate(struct rsnd_dai_stream *io,
  204. struct rsnd_src *src)
  205. {
  206. struct snd_pcm_runtime *runtime = rsnd_io_to_runtime(io);
  207. u32 convert_rate;
  208. if (!runtime)
  209. return 0;
  210. if (!rsnd_enable_sync_convert(src))
  211. return src->convert_rate;
  212. convert_rate = src->sync.val;
  213. if (!convert_rate)
  214. convert_rate = src->convert_rate;
  215. if (!convert_rate)
  216. convert_rate = runtime->rate;
  217. return convert_rate;
  218. }
  219. unsigned int rsnd_src_get_ssi_rate(struct rsnd_priv *priv,
  220. struct rsnd_dai_stream *io,
  221. struct snd_pcm_runtime *runtime)
  222. {
  223. struct rsnd_mod *src_mod = rsnd_io_to_mod_src(io);
  224. struct rsnd_src *src;
  225. unsigned int rate = 0;
  226. if (src_mod) {
  227. src = rsnd_mod_to_src(src_mod);
  228. /*
  229. * return convert rate if SRC is used,
  230. * otherwise, return runtime->rate as usual
  231. */
  232. rate = rsnd_src_convert_rate(io, src);
  233. }
  234. if (!rate)
  235. rate = runtime->rate;
  236. return rate;
  237. }
  238. static int rsnd_src_set_convert_rate(struct rsnd_mod *mod,
  239. struct rsnd_dai_stream *io)
  240. {
  241. struct snd_pcm_runtime *runtime = rsnd_io_to_runtime(io);
  242. struct rsnd_src *src = rsnd_mod_to_src(mod);
  243. u32 convert_rate = rsnd_src_convert_rate(io, src);
  244. u32 fsrate = 0;
  245. if (convert_rate)
  246. fsrate = 0x0400000 / convert_rate * runtime->rate;
  247. /* Set channel number and output bit length */
  248. rsnd_mod_write(mod, SRC_ADINR, rsnd_get_adinr_bit(mod, io));
  249. /* Enable the initial value of IFS */
  250. if (fsrate) {
  251. rsnd_mod_write(mod, SRC_IFSCR, 1);
  252. /* Set initial value of IFS */
  253. rsnd_mod_write(mod, SRC_IFSVR, fsrate);
  254. }
  255. /* use DMA transfer */
  256. rsnd_mod_write(mod, SRC_BUSIF_MODE, 1);
  257. return 0;
  258. }
  259. static int rsnd_src_hw_params(struct rsnd_mod *mod,
  260. struct rsnd_dai_stream *io,
  261. struct snd_pcm_substream *substream,
  262. struct snd_pcm_hw_params *fe_params)
  263. {
  264. struct rsnd_src *src = rsnd_mod_to_src(mod);
  265. struct snd_soc_pcm_runtime *fe = substream->private_data;
  266. /* default value (mainly for non-DT) */
  267. src->convert_rate = src->info->convert_rate;
  268. /*
  269. * SRC assumes that it is used under DPCM if user want to use
  270. * sampling rate convert. Then, SRC should be FE.
  271. * And then, this function will be called *after* BE settings.
  272. * this means, each BE already has fixuped hw_params.
  273. * see
  274. * dpcm_fe_dai_hw_params()
  275. * dpcm_be_dai_hw_params()
  276. */
  277. if (fe->dai_link->dynamic) {
  278. int stream = substream->stream;
  279. struct snd_soc_dpcm *dpcm;
  280. struct snd_pcm_hw_params *be_params;
  281. list_for_each_entry(dpcm, &fe->dpcm[stream].be_clients, list_be) {
  282. be_params = &dpcm->hw_params;
  283. if (params_rate(fe_params) != params_rate(be_params))
  284. src->convert_rate = params_rate(be_params);
  285. }
  286. }
  287. return 0;
  288. }
  289. static int rsnd_src_init(struct rsnd_mod *mod,
  290. struct rsnd_priv *priv)
  291. {
  292. struct rsnd_src *src = rsnd_mod_to_src(mod);
  293. rsnd_mod_hw_start(mod);
  294. rsnd_src_soft_reset(mod);
  295. rsnd_src_initialize_lock(mod);
  296. src->err = 0;
  297. /* reset sync convert_rate */
  298. src->sync.val = 0;
  299. return 0;
  300. }
  301. static int rsnd_src_quit(struct rsnd_mod *mod,
  302. struct rsnd_dai_stream *io,
  303. struct rsnd_priv *priv)
  304. {
  305. struct rsnd_src *src = rsnd_mod_to_src(mod);
  306. struct device *dev = rsnd_priv_to_dev(priv);
  307. rsnd_mod_hw_stop(mod);
  308. if (src->err)
  309. dev_warn(dev, "%s[%d] under/over flow err = %d\n",
  310. rsnd_mod_name(mod), rsnd_mod_id(mod), src->err);
  311. src->convert_rate = 0;
  312. /* reset sync convert_rate */
  313. src->sync.val = 0;
  314. return 0;
  315. }
  316. static int rsnd_src_start(struct rsnd_mod *mod)
  317. {
  318. rsnd_src_initialize_unlock(mod);
  319. return 0;
  320. }
  321. static int rsnd_src_stop(struct rsnd_mod *mod)
  322. {
  323. /* nothing to do */
  324. return 0;
  325. }
  326. /*
  327. * Gen1 functions
  328. */
  329. static int rsnd_src_set_route_gen1(struct rsnd_dai_stream *io,
  330. struct rsnd_mod *mod)
  331. {
  332. struct src_route_config {
  333. u32 mask;
  334. int shift;
  335. } routes[] = {
  336. { 0xF, 0, }, /* 0 */
  337. { 0xF, 4, }, /* 1 */
  338. { 0xF, 8, }, /* 2 */
  339. { 0x7, 12, }, /* 3 */
  340. { 0x7, 16, }, /* 4 */
  341. { 0x7, 20, }, /* 5 */
  342. { 0x7, 24, }, /* 6 */
  343. { 0x3, 28, }, /* 7 */
  344. { 0x3, 30, }, /* 8 */
  345. };
  346. u32 mask;
  347. u32 val;
  348. int id;
  349. id = rsnd_mod_id(mod);
  350. if (id < 0 || id >= ARRAY_SIZE(routes))
  351. return -EIO;
  352. /*
  353. * SRC_ROUTE_SELECT
  354. */
  355. val = rsnd_io_is_play(io) ? 0x1 : 0x2;
  356. val = val << routes[id].shift;
  357. mask = routes[id].mask << routes[id].shift;
  358. rsnd_mod_bset(mod, SRC_ROUTE_SEL, mask, val);
  359. return 0;
  360. }
  361. static int rsnd_src_set_convert_timing_gen1(struct rsnd_dai_stream *io,
  362. struct rsnd_mod *mod)
  363. {
  364. struct rsnd_priv *priv = rsnd_mod_to_priv(mod);
  365. struct rsnd_src *src = rsnd_mod_to_src(mod);
  366. struct snd_pcm_runtime *runtime = rsnd_io_to_runtime(io);
  367. u32 convert_rate = rsnd_src_convert_rate(io, src);
  368. u32 mask;
  369. u32 val;
  370. int shift;
  371. int id = rsnd_mod_id(mod);
  372. int ret;
  373. /*
  374. * SRC_TIMING_SELECT
  375. */
  376. shift = (id % 4) * 8;
  377. mask = 0x1F << shift;
  378. /*
  379. * ADG is used as source clock if SRC was used,
  380. * then, SSI WS is used as destination clock.
  381. * SSI WS is used as source clock if SRC is not used
  382. * (when playback, source/destination become reverse when capture)
  383. */
  384. ret = 0;
  385. if (convert_rate) {
  386. /* use ADG */
  387. val = 0;
  388. ret = rsnd_adg_set_convert_clk_gen1(priv, mod,
  389. runtime->rate,
  390. convert_rate);
  391. } else if (8 == id) {
  392. /* use SSI WS, but SRU8 is special */
  393. val = id << shift;
  394. } else {
  395. /* use SSI WS */
  396. val = (id + 1) << shift;
  397. }
  398. if (ret < 0)
  399. return ret;
  400. switch (id / 4) {
  401. case 0:
  402. rsnd_mod_bset(mod, SRC_TMG_SEL0, mask, val);
  403. break;
  404. case 1:
  405. rsnd_mod_bset(mod, SRC_TMG_SEL1, mask, val);
  406. break;
  407. case 2:
  408. rsnd_mod_bset(mod, SRC_TMG_SEL2, mask, val);
  409. break;
  410. }
  411. return 0;
  412. }
  413. static int rsnd_src_set_convert_rate_gen1(struct rsnd_mod *mod,
  414. struct rsnd_dai_stream *io)
  415. {
  416. struct rsnd_src *src = rsnd_mod_to_src(mod);
  417. int ret;
  418. ret = rsnd_src_set_convert_rate(mod, io);
  419. if (ret < 0)
  420. return ret;
  421. /* Select SRC mode (fixed value) */
  422. rsnd_mod_write(mod, SRC_SRCCR, 0x00010110);
  423. /* Set the restriction value of the FS ratio (98%) */
  424. rsnd_mod_write(mod, SRC_MNFSR,
  425. rsnd_mod_read(mod, SRC_IFSVR) / 100 * 98);
  426. /* Gen1/Gen2 are not compatible */
  427. if (rsnd_src_convert_rate(io, src))
  428. rsnd_mod_write(mod, SRC_ROUTE_MODE0, 1);
  429. /* no SRC_BFSSR settings, since SRC_SRCCR::BUFMD is 0 */
  430. return 0;
  431. }
  432. static int rsnd_src_init_gen1(struct rsnd_mod *mod,
  433. struct rsnd_dai_stream *io,
  434. struct rsnd_priv *priv)
  435. {
  436. int ret;
  437. ret = rsnd_src_init(mod, priv);
  438. if (ret < 0)
  439. return ret;
  440. ret = rsnd_src_set_route_gen1(io, mod);
  441. if (ret < 0)
  442. return ret;
  443. ret = rsnd_src_set_convert_rate_gen1(mod, io);
  444. if (ret < 0)
  445. return ret;
  446. ret = rsnd_src_set_convert_timing_gen1(io, mod);
  447. if (ret < 0)
  448. return ret;
  449. return 0;
  450. }
  451. static int rsnd_src_start_gen1(struct rsnd_mod *mod,
  452. struct rsnd_dai_stream *io,
  453. struct rsnd_priv *priv)
  454. {
  455. int id = rsnd_mod_id(mod);
  456. rsnd_mod_bset(mod, SRC_ROUTE_CTRL, (1 << id), (1 << id));
  457. return rsnd_src_start(mod);
  458. }
  459. static int rsnd_src_stop_gen1(struct rsnd_mod *mod,
  460. struct rsnd_dai_stream *io,
  461. struct rsnd_priv *priv)
  462. {
  463. int id = rsnd_mod_id(mod);
  464. rsnd_mod_bset(mod, SRC_ROUTE_CTRL, (1 << id), 0);
  465. return rsnd_src_stop(mod);
  466. }
  467. static struct rsnd_mod_ops rsnd_src_gen1_ops = {
  468. .name = SRC_NAME,
  469. .dma_req = rsnd_src_dma_req,
  470. .init = rsnd_src_init_gen1,
  471. .quit = rsnd_src_quit,
  472. .start = rsnd_src_start_gen1,
  473. .stop = rsnd_src_stop_gen1,
  474. .hw_params = rsnd_src_hw_params,
  475. };
  476. /*
  477. * Gen2 functions
  478. */
  479. #define rsnd_src_irq_enable_gen2(mod) rsnd_src_irq_ctrol_gen2(mod, 1)
  480. #define rsnd_src_irq_disable_gen2(mod) rsnd_src_irq_ctrol_gen2(mod, 0)
  481. static void rsnd_src_irq_ctrol_gen2(struct rsnd_mod *mod, int enable)
  482. {
  483. struct rsnd_src *src = rsnd_mod_to_src(mod);
  484. u32 sys_int_val, int_val, sys_int_mask;
  485. int irq = src->info->irq;
  486. int id = rsnd_mod_id(mod);
  487. sys_int_val =
  488. sys_int_mask = OUF_SRC(id);
  489. int_val = 0x3300;
  490. /*
  491. * IRQ is not supported on non-DT
  492. * see
  493. * rsnd_src_probe_gen2()
  494. */
  495. if ((irq <= 0) || !enable) {
  496. sys_int_val = 0;
  497. int_val = 0;
  498. }
  499. /*
  500. * WORKAROUND
  501. *
  502. * ignore over flow error when rsnd_enable_sync_convert()
  503. */
  504. if (rsnd_enable_sync_convert(src))
  505. sys_int_val = sys_int_val & 0xffff;
  506. rsnd_mod_write(mod, SRC_INT_ENABLE0, int_val);
  507. rsnd_mod_bset(mod, SCU_SYS_INT_EN0, sys_int_mask, sys_int_val);
  508. rsnd_mod_bset(mod, SCU_SYS_INT_EN1, sys_int_mask, sys_int_val);
  509. }
  510. static void rsnd_src_error_clear_gen2(struct rsnd_mod *mod)
  511. {
  512. u32 val = OUF_SRC(rsnd_mod_id(mod));
  513. rsnd_mod_bset(mod, SCU_SYS_STATUS0, val, val);
  514. rsnd_mod_bset(mod, SCU_SYS_STATUS1, val, val);
  515. }
  516. static bool rsnd_src_error_record_gen2(struct rsnd_mod *mod)
  517. {
  518. struct rsnd_src *src = rsnd_mod_to_src(mod);
  519. u32 val0, val1;
  520. bool ret = false;
  521. val0 = val1 = OUF_SRC(rsnd_mod_id(mod));
  522. /*
  523. * WORKAROUND
  524. *
  525. * ignore over flow error when rsnd_enable_sync_convert()
  526. */
  527. if (rsnd_enable_sync_convert(src))
  528. val0 = val0 & 0xffff;
  529. if ((rsnd_mod_read(mod, SCU_SYS_STATUS0) & val0) ||
  530. (rsnd_mod_read(mod, SCU_SYS_STATUS1) & val1)) {
  531. struct rsnd_src *src = rsnd_mod_to_src(mod);
  532. src->err++;
  533. ret = true;
  534. }
  535. /* clear error static */
  536. rsnd_src_error_clear_gen2(mod);
  537. return ret;
  538. }
  539. static int _rsnd_src_start_gen2(struct rsnd_mod *mod,
  540. struct rsnd_dai_stream *io)
  541. {
  542. struct rsnd_src *src = rsnd_mod_to_src(mod);
  543. u32 val;
  544. val = rsnd_get_dalign(mod, io);
  545. rsnd_mod_write(mod, SRC_BUSIF_DALIGN, val);
  546. /*
  547. * WORKAROUND
  548. *
  549. * Enable SRC output if you want to use sync convert together with DVC
  550. */
  551. val = (rsnd_io_to_mod_dvc(io) && !rsnd_enable_sync_convert(src)) ?
  552. 0x01 : 0x11;
  553. rsnd_mod_write(mod, SRC_CTRL, val);
  554. rsnd_src_error_clear_gen2(mod);
  555. rsnd_src_start(mod);
  556. rsnd_src_irq_enable_gen2(mod);
  557. return 0;
  558. }
  559. static int _rsnd_src_stop_gen2(struct rsnd_mod *mod)
  560. {
  561. rsnd_src_irq_disable_gen2(mod);
  562. rsnd_mod_write(mod, SRC_CTRL, 0);
  563. rsnd_src_error_record_gen2(mod);
  564. return rsnd_src_stop(mod);
  565. }
  566. static void __rsnd_src_interrupt_gen2(struct rsnd_mod *mod,
  567. struct rsnd_dai_stream *io)
  568. {
  569. struct rsnd_priv *priv = rsnd_mod_to_priv(mod);
  570. spin_lock(&priv->lock);
  571. /* ignore all cases if not working */
  572. if (!rsnd_io_is_working(io))
  573. goto rsnd_src_interrupt_gen2_out;
  574. if (rsnd_src_error_record_gen2(mod)) {
  575. struct rsnd_priv *priv = rsnd_mod_to_priv(mod);
  576. struct rsnd_src *src = rsnd_mod_to_src(mod);
  577. struct device *dev = rsnd_priv_to_dev(priv);
  578. dev_dbg(dev, "%s[%d] restart\n",
  579. rsnd_mod_name(mod), rsnd_mod_id(mod));
  580. _rsnd_src_stop_gen2(mod);
  581. if (src->err < 1024)
  582. _rsnd_src_start_gen2(mod, io);
  583. else
  584. dev_warn(dev, "no more SRC restart\n");
  585. }
  586. rsnd_src_interrupt_gen2_out:
  587. spin_unlock(&priv->lock);
  588. }
  589. static irqreturn_t rsnd_src_interrupt_gen2(int irq, void *data)
  590. {
  591. struct rsnd_mod *mod = data;
  592. rsnd_mod_interrupt(mod, __rsnd_src_interrupt_gen2);
  593. return IRQ_HANDLED;
  594. }
  595. static int rsnd_src_set_convert_rate_gen2(struct rsnd_mod *mod,
  596. struct rsnd_dai_stream *io)
  597. {
  598. struct rsnd_priv *priv = rsnd_mod_to_priv(mod);
  599. struct device *dev = rsnd_priv_to_dev(priv);
  600. struct snd_pcm_runtime *runtime = rsnd_io_to_runtime(io);
  601. struct rsnd_src *src = rsnd_mod_to_src(mod);
  602. u32 convert_rate = rsnd_src_convert_rate(io, src);
  603. u32 cr, route;
  604. uint ratio;
  605. int ret;
  606. /* 6 - 1/6 are very enough ratio for SRC_BSDSR */
  607. if (!convert_rate)
  608. ratio = 0;
  609. else if (convert_rate > runtime->rate)
  610. ratio = 100 * convert_rate / runtime->rate;
  611. else
  612. ratio = 100 * runtime->rate / convert_rate;
  613. if (ratio > 600) {
  614. dev_err(dev, "FSO/FSI ratio error\n");
  615. return -EINVAL;
  616. }
  617. ret = rsnd_src_set_convert_rate(mod, io);
  618. if (ret < 0)
  619. return ret;
  620. cr = 0x00011110;
  621. route = 0x0;
  622. if (convert_rate) {
  623. route = 0x1;
  624. if (rsnd_enable_sync_convert(src)) {
  625. cr |= 0x1;
  626. route |= rsnd_io_is_play(io) ?
  627. (0x1 << 24) : (0x1 << 25);
  628. }
  629. }
  630. rsnd_mod_write(mod, SRC_SRCCR, cr);
  631. rsnd_mod_write(mod, SRC_ROUTE_MODE0, route);
  632. switch (rsnd_mod_id(mod)) {
  633. case 5:
  634. case 6:
  635. case 7:
  636. case 8:
  637. rsnd_mod_write(mod, SRC_BSDSR, 0x02400000);
  638. break;
  639. default:
  640. rsnd_mod_write(mod, SRC_BSDSR, 0x01800000);
  641. break;
  642. }
  643. rsnd_mod_write(mod, SRC_BSISR, 0x00100060);
  644. return 0;
  645. }
  646. static int rsnd_src_set_convert_timing_gen2(struct rsnd_dai_stream *io,
  647. struct rsnd_mod *mod)
  648. {
  649. struct snd_pcm_runtime *runtime = rsnd_io_to_runtime(io);
  650. struct rsnd_src *src = rsnd_mod_to_src(mod);
  651. u32 convert_rate = rsnd_src_convert_rate(io, src);
  652. int ret;
  653. if (convert_rate)
  654. ret = rsnd_adg_set_convert_clk_gen2(mod, io,
  655. runtime->rate,
  656. convert_rate);
  657. else
  658. ret = rsnd_adg_set_convert_timing_gen2(mod, io);
  659. return ret;
  660. }
  661. static int rsnd_src_probe_gen2(struct rsnd_mod *mod,
  662. struct rsnd_dai_stream *io,
  663. struct rsnd_priv *priv)
  664. {
  665. struct rsnd_src *src = rsnd_mod_to_src(mod);
  666. struct device *dev = rsnd_priv_to_dev(priv);
  667. int irq = src->info->irq;
  668. int ret;
  669. if (irq > 0) {
  670. /*
  671. * IRQ is not supported on non-DT
  672. * see
  673. * rsnd_src_irq_enable_gen2()
  674. */
  675. ret = devm_request_irq(dev, irq,
  676. rsnd_src_interrupt_gen2,
  677. IRQF_SHARED,
  678. dev_name(dev), mod);
  679. if (ret)
  680. return ret;
  681. }
  682. ret = rsnd_dma_init(io,
  683. rsnd_mod_to_dma(mod),
  684. src->info->dma_id);
  685. return ret;
  686. }
  687. static int rsnd_src_remove_gen2(struct rsnd_mod *mod,
  688. struct rsnd_dai_stream *io,
  689. struct rsnd_priv *priv)
  690. {
  691. rsnd_dma_quit(io, rsnd_mod_to_dma(mod));
  692. return 0;
  693. }
  694. static int rsnd_src_init_gen2(struct rsnd_mod *mod,
  695. struct rsnd_dai_stream *io,
  696. struct rsnd_priv *priv)
  697. {
  698. int ret;
  699. ret = rsnd_src_init(mod, priv);
  700. if (ret < 0)
  701. return ret;
  702. ret = rsnd_src_set_convert_rate_gen2(mod, io);
  703. if (ret < 0)
  704. return ret;
  705. ret = rsnd_src_set_convert_timing_gen2(io, mod);
  706. if (ret < 0)
  707. return ret;
  708. return 0;
  709. }
  710. static int rsnd_src_start_gen2(struct rsnd_mod *mod,
  711. struct rsnd_dai_stream *io,
  712. struct rsnd_priv *priv)
  713. {
  714. rsnd_dma_start(io, rsnd_mod_to_dma(mod));
  715. return _rsnd_src_start_gen2(mod, io);
  716. }
  717. static int rsnd_src_stop_gen2(struct rsnd_mod *mod,
  718. struct rsnd_dai_stream *io,
  719. struct rsnd_priv *priv)
  720. {
  721. int ret;
  722. ret = _rsnd_src_stop_gen2(mod);
  723. rsnd_dma_stop(io, rsnd_mod_to_dma(mod));
  724. return ret;
  725. }
  726. static void rsnd_src_reconvert_update(struct rsnd_dai_stream *io,
  727. struct rsnd_mod *mod)
  728. {
  729. struct snd_pcm_runtime *runtime = rsnd_io_to_runtime(io);
  730. struct rsnd_src *src = rsnd_mod_to_src(mod);
  731. u32 convert_rate = rsnd_src_convert_rate(io, src);
  732. u32 fsrate;
  733. if (!runtime)
  734. return;
  735. if (!convert_rate)
  736. convert_rate = runtime->rate;
  737. fsrate = 0x0400000 / convert_rate * runtime->rate;
  738. /* update IFS */
  739. rsnd_mod_write(mod, SRC_IFSVR, fsrate);
  740. }
  741. static int rsnd_src_pcm_new(struct rsnd_mod *mod,
  742. struct rsnd_dai_stream *io,
  743. struct snd_soc_pcm_runtime *rtd)
  744. {
  745. struct rsnd_priv *priv = rsnd_mod_to_priv(mod);
  746. struct rsnd_dai *rdai = rsnd_io_to_rdai(io);
  747. struct rsnd_src *src = rsnd_mod_to_src(mod);
  748. int ret;
  749. /*
  750. * enable SRC sync convert if possible
  751. */
  752. /*
  753. * Gen1 is not supported
  754. */
  755. if (rsnd_is_gen1(priv))
  756. return 0;
  757. /*
  758. * SRC sync convert needs clock master
  759. */
  760. if (!rsnd_rdai_is_clk_master(rdai))
  761. return 0;
  762. /*
  763. * enable sync convert
  764. */
  765. ret = rsnd_kctrl_new_s(mod, io, rtd,
  766. rsnd_io_is_play(io) ?
  767. "SRC Out Rate Switch" :
  768. "SRC In Rate Switch",
  769. rsnd_src_reconvert_update,
  770. &src->sen, 1);
  771. if (ret < 0)
  772. return ret;
  773. ret = rsnd_kctrl_new_s(mod, io, rtd,
  774. rsnd_io_is_play(io) ?
  775. "SRC Out Rate" :
  776. "SRC In Rate",
  777. rsnd_src_reconvert_update,
  778. &src->sync, 192000);
  779. return ret;
  780. }
  781. static struct rsnd_mod_ops rsnd_src_gen2_ops = {
  782. .name = SRC_NAME,
  783. .dma_req = rsnd_src_dma_req,
  784. .probe = rsnd_src_probe_gen2,
  785. .remove = rsnd_src_remove_gen2,
  786. .init = rsnd_src_init_gen2,
  787. .quit = rsnd_src_quit,
  788. .start = rsnd_src_start_gen2,
  789. .stop = rsnd_src_stop_gen2,
  790. .hw_params = rsnd_src_hw_params,
  791. .pcm_new = rsnd_src_pcm_new,
  792. };
  793. struct rsnd_mod *rsnd_src_mod_get(struct rsnd_priv *priv, int id)
  794. {
  795. if (WARN_ON(id < 0 || id >= rsnd_src_nr(priv)))
  796. id = 0;
  797. return &((struct rsnd_src *)(priv->src) + id)->mod;
  798. }
  799. static void rsnd_of_parse_src(struct platform_device *pdev,
  800. const struct rsnd_of_data *of_data,
  801. struct rsnd_priv *priv)
  802. {
  803. struct device_node *src_node;
  804. struct device_node *np;
  805. struct rcar_snd_info *info = rsnd_priv_to_info(priv);
  806. struct rsnd_src_platform_info *src_info;
  807. struct device *dev = &pdev->dev;
  808. int nr, i;
  809. if (!of_data)
  810. return;
  811. src_node = rsnd_src_of_node(priv);
  812. if (!src_node)
  813. return;
  814. nr = of_get_child_count(src_node);
  815. if (!nr)
  816. goto rsnd_of_parse_src_end;
  817. src_info = devm_kzalloc(dev,
  818. sizeof(struct rsnd_src_platform_info) * nr,
  819. GFP_KERNEL);
  820. if (!src_info) {
  821. dev_err(dev, "src info allocation error\n");
  822. goto rsnd_of_parse_src_end;
  823. }
  824. info->src_info = src_info;
  825. info->src_info_nr = nr;
  826. i = 0;
  827. for_each_child_of_node(src_node, np) {
  828. src_info[i].irq = irq_of_parse_and_map(np, 0);
  829. i++;
  830. }
  831. rsnd_of_parse_src_end:
  832. of_node_put(src_node);
  833. }
  834. int rsnd_src_probe(struct platform_device *pdev,
  835. const struct rsnd_of_data *of_data,
  836. struct rsnd_priv *priv)
  837. {
  838. struct rcar_snd_info *info = rsnd_priv_to_info(priv);
  839. struct device *dev = rsnd_priv_to_dev(priv);
  840. struct rsnd_src *src;
  841. struct rsnd_mod_ops *ops;
  842. struct clk *clk;
  843. char name[RSND_SRC_NAME_SIZE];
  844. int i, nr, ret;
  845. ops = NULL;
  846. if (rsnd_is_gen1(priv))
  847. ops = &rsnd_src_gen1_ops;
  848. if (rsnd_is_gen2(priv))
  849. ops = &rsnd_src_gen2_ops;
  850. if (!ops) {
  851. dev_err(dev, "unknown Generation\n");
  852. return -EIO;
  853. }
  854. rsnd_of_parse_src(pdev, of_data, priv);
  855. /*
  856. * init SRC
  857. */
  858. nr = info->src_info_nr;
  859. if (!nr)
  860. return 0;
  861. src = devm_kzalloc(dev, sizeof(*src) * nr, GFP_KERNEL);
  862. if (!src)
  863. return -ENOMEM;
  864. priv->src_nr = nr;
  865. priv->src = src;
  866. for_each_rsnd_src(src, priv, i) {
  867. snprintf(name, RSND_SRC_NAME_SIZE, "%s.%d",
  868. SRC_NAME, i);
  869. clk = devm_clk_get(dev, name);
  870. if (IS_ERR(clk))
  871. return PTR_ERR(clk);
  872. src->info = &info->src_info[i];
  873. ret = rsnd_mod_init(priv, &src->mod, ops, clk, RSND_MOD_SRC, i);
  874. if (ret)
  875. return ret;
  876. }
  877. return 0;
  878. }
  879. void rsnd_src_remove(struct platform_device *pdev,
  880. struct rsnd_priv *priv)
  881. {
  882. struct rsnd_src *src;
  883. int i;
  884. for_each_rsnd_src(src, priv, i) {
  885. rsnd_mod_quit(&src->mod);
  886. }
  887. }