gen.c 13 KB

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  1. /*
  2. * Renesas R-Car Gen1 SRU/SSI 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. struct rsnd_gen {
  13. void __iomem *base[RSND_BASE_MAX];
  14. struct rsnd_gen_ops *ops;
  15. struct regmap *regmap[RSND_BASE_MAX];
  16. struct regmap_field *regs[RSND_REG_MAX];
  17. };
  18. #define rsnd_priv_to_gen(p) ((struct rsnd_gen *)(p)->gen)
  19. struct rsnd_regmap_field_conf {
  20. int idx;
  21. unsigned int reg_offset;
  22. unsigned int id_offset;
  23. };
  24. #define RSND_REG_SET(id, offset, _id_offset) \
  25. { \
  26. .idx = id, \
  27. .reg_offset = offset, \
  28. .id_offset = _id_offset, \
  29. }
  30. /* single address mapping */
  31. #define RSND_GEN_S_REG(id, offset) \
  32. RSND_REG_SET(RSND_REG_##id, offset, 0)
  33. /* multi address mapping */
  34. #define RSND_GEN_M_REG(id, offset, _id_offset) \
  35. RSND_REG_SET(RSND_REG_##id, offset, _id_offset)
  36. /*
  37. * basic function
  38. */
  39. static int rsnd_is_accessible_reg(struct rsnd_priv *priv,
  40. struct rsnd_gen *gen, enum rsnd_reg reg)
  41. {
  42. if (!gen->regs[reg]) {
  43. struct device *dev = rsnd_priv_to_dev(priv);
  44. dev_err(dev, "unsupported register access %x\n", reg);
  45. return 0;
  46. }
  47. return 1;
  48. }
  49. u32 rsnd_read(struct rsnd_priv *priv,
  50. struct rsnd_mod *mod, enum rsnd_reg reg)
  51. {
  52. struct device *dev = rsnd_priv_to_dev(priv);
  53. struct rsnd_gen *gen = rsnd_priv_to_gen(priv);
  54. u32 val;
  55. if (!rsnd_is_accessible_reg(priv, gen, reg))
  56. return 0;
  57. regmap_fields_read(gen->regs[reg], rsnd_mod_id(mod), &val);
  58. dev_dbg(dev, "r %s - 0x%04d : %08x\n", rsnd_mod_name(mod), reg, val);
  59. return val;
  60. }
  61. void rsnd_write(struct rsnd_priv *priv,
  62. struct rsnd_mod *mod,
  63. enum rsnd_reg reg, u32 data)
  64. {
  65. struct device *dev = rsnd_priv_to_dev(priv);
  66. struct rsnd_gen *gen = rsnd_priv_to_gen(priv);
  67. if (!rsnd_is_accessible_reg(priv, gen, reg))
  68. return;
  69. regmap_fields_write(gen->regs[reg], rsnd_mod_id(mod), data);
  70. dev_dbg(dev, "w %s - 0x%04d : %08x\n", rsnd_mod_name(mod), reg, data);
  71. }
  72. void rsnd_bset(struct rsnd_priv *priv, struct rsnd_mod *mod,
  73. enum rsnd_reg reg, u32 mask, u32 data)
  74. {
  75. struct device *dev = rsnd_priv_to_dev(priv);
  76. struct rsnd_gen *gen = rsnd_priv_to_gen(priv);
  77. if (!rsnd_is_accessible_reg(priv, gen, reg))
  78. return;
  79. regmap_fields_update_bits(gen->regs[reg], rsnd_mod_id(mod),
  80. mask, data);
  81. dev_dbg(dev, "b %s - 0x%04d : %08x/%08x\n",
  82. rsnd_mod_name(mod), reg, data, mask);
  83. }
  84. #define rsnd_gen_regmap_init(priv, id_size, reg_id, conf) \
  85. _rsnd_gen_regmap_init(priv, id_size, reg_id, conf, ARRAY_SIZE(conf))
  86. static int _rsnd_gen_regmap_init(struct rsnd_priv *priv,
  87. int id_size,
  88. int reg_id,
  89. struct rsnd_regmap_field_conf *conf,
  90. int conf_size)
  91. {
  92. struct platform_device *pdev = rsnd_priv_to_pdev(priv);
  93. struct rsnd_gen *gen = rsnd_priv_to_gen(priv);
  94. struct device *dev = rsnd_priv_to_dev(priv);
  95. struct resource *res;
  96. struct regmap_config regc;
  97. struct regmap_field *regs;
  98. struct regmap *regmap;
  99. struct reg_field regf;
  100. void __iomem *base;
  101. int i;
  102. memset(&regc, 0, sizeof(regc));
  103. regc.reg_bits = 32;
  104. regc.val_bits = 32;
  105. regc.reg_stride = 4;
  106. res = platform_get_resource(pdev, IORESOURCE_MEM, reg_id);
  107. if (!res)
  108. return -ENODEV;
  109. base = devm_ioremap_resource(dev, res);
  110. if (IS_ERR(base))
  111. return PTR_ERR(base);
  112. regmap = devm_regmap_init_mmio(dev, base, &regc);
  113. if (IS_ERR(regmap))
  114. return PTR_ERR(regmap);
  115. gen->base[reg_id] = base;
  116. gen->regmap[reg_id] = regmap;
  117. for (i = 0; i < conf_size; i++) {
  118. regf.reg = conf[i].reg_offset;
  119. regf.id_offset = conf[i].id_offset;
  120. regf.lsb = 0;
  121. regf.msb = 31;
  122. regf.id_size = id_size;
  123. regs = devm_regmap_field_alloc(dev, regmap, regf);
  124. if (IS_ERR(regs))
  125. return PTR_ERR(regs);
  126. gen->regs[conf[i].idx] = regs;
  127. }
  128. return 0;
  129. }
  130. /*
  131. * DMA read/write register offset
  132. *
  133. * RSND_xxx_I_N for Audio DMAC input
  134. * RSND_xxx_O_N for Audio DMAC output
  135. * RSND_xxx_I_P for Audio DMAC peri peri input
  136. * RSND_xxx_O_P for Audio DMAC peri peri output
  137. *
  138. * ex) R-Car H2 case
  139. * mod / DMAC in / DMAC out / DMAC PP in / DMAC pp out
  140. * SSI : 0xec541000 / 0xec241008 / 0xec24100c
  141. * SSIU: 0xec541000 / 0xec100000 / 0xec100000 / 0xec400000 / 0xec400000
  142. * SCU : 0xec500000 / 0xec000000 / 0xec004000 / 0xec300000 / 0xec304000
  143. * CMD : 0xec500000 / / 0xec008000 0xec308000
  144. */
  145. #define RDMA_SSI_I_N(addr, i) (addr ##_reg - 0x00300000 + (0x40 * i) + 0x8)
  146. #define RDMA_SSI_O_N(addr, i) (addr ##_reg - 0x00300000 + (0x40 * i) + 0xc)
  147. #define RDMA_SSIU_I_N(addr, i) (addr ##_reg - 0x00441000 + (0x1000 * i))
  148. #define RDMA_SSIU_O_N(addr, i) (addr ##_reg - 0x00441000 + (0x1000 * i))
  149. #define RDMA_SSIU_I_P(addr, i) (addr ##_reg - 0x00141000 + (0x1000 * i))
  150. #define RDMA_SSIU_O_P(addr, i) (addr ##_reg - 0x00141000 + (0x1000 * i))
  151. #define RDMA_SRC_I_N(addr, i) (addr ##_reg - 0x00500000 + (0x400 * i))
  152. #define RDMA_SRC_O_N(addr, i) (addr ##_reg - 0x004fc000 + (0x400 * i))
  153. #define RDMA_SRC_I_P(addr, i) (addr ##_reg - 0x00200000 + (0x400 * i))
  154. #define RDMA_SRC_O_P(addr, i) (addr ##_reg - 0x001fc000 + (0x400 * i))
  155. #define RDMA_CMD_O_N(addr, i) (addr ##_reg - 0x004f8000 + (0x400 * i))
  156. #define RDMA_CMD_O_P(addr, i) (addr ##_reg - 0x001f8000 + (0x400 * i))
  157. static dma_addr_t
  158. rsnd_gen2_dma_addr(struct rsnd_priv *priv,
  159. struct rsnd_mod *mod,
  160. int is_play, int is_from)
  161. {
  162. struct platform_device *pdev = rsnd_priv_to_pdev(priv);
  163. struct device *dev = rsnd_priv_to_dev(priv);
  164. struct rsnd_dai_stream *io = rsnd_mod_to_io(mod);
  165. dma_addr_t ssi_reg = platform_get_resource(pdev,
  166. IORESOURCE_MEM, RSND_GEN2_SSI)->start;
  167. dma_addr_t src_reg = platform_get_resource(pdev,
  168. IORESOURCE_MEM, RSND_GEN2_SCU)->start;
  169. int is_ssi = !!(rsnd_io_to_mod_ssi(io) == mod);
  170. int use_src = !!rsnd_io_to_mod_src(io);
  171. int use_dvc = !!rsnd_io_to_mod_dvc(io);
  172. int id = rsnd_mod_id(mod);
  173. struct dma_addr {
  174. dma_addr_t out_addr;
  175. dma_addr_t in_addr;
  176. } dma_addrs[3][2][3] = {
  177. /* SRC */
  178. {{{ 0, 0 },
  179. /* Capture */
  180. { RDMA_SRC_O_N(src, id), RDMA_SRC_I_P(src, id) },
  181. { RDMA_CMD_O_N(src, id), RDMA_SRC_I_P(src, id) } },
  182. /* Playback */
  183. {{ 0, 0, },
  184. { RDMA_SRC_O_P(src, id), RDMA_SRC_I_N(src, id) },
  185. { RDMA_CMD_O_P(src, id), RDMA_SRC_I_N(src, id) } }
  186. },
  187. /* SSI */
  188. /* Capture */
  189. {{{ RDMA_SSI_O_N(ssi, id), 0 },
  190. { RDMA_SSIU_O_P(ssi, id), 0 },
  191. { RDMA_SSIU_O_P(ssi, id), 0 } },
  192. /* Playback */
  193. {{ 0, RDMA_SSI_I_N(ssi, id) },
  194. { 0, RDMA_SSIU_I_P(ssi, id) },
  195. { 0, RDMA_SSIU_I_P(ssi, id) } }
  196. },
  197. /* SSIU */
  198. /* Capture */
  199. {{{ RDMA_SSIU_O_N(ssi, id), 0 },
  200. { RDMA_SSIU_O_P(ssi, id), 0 },
  201. { RDMA_SSIU_O_P(ssi, id), 0 } },
  202. /* Playback */
  203. {{ 0, RDMA_SSIU_I_N(ssi, id) },
  204. { 0, RDMA_SSIU_I_P(ssi, id) },
  205. { 0, RDMA_SSIU_I_P(ssi, id) } } },
  206. };
  207. /* it shouldn't happen */
  208. if (use_dvc && !use_src)
  209. dev_err(dev, "DVC is selected without SRC\n");
  210. /* use SSIU or SSI ? */
  211. if (is_ssi && (0 == strcmp(rsnd_mod_dma_name(mod), "ssiu")))
  212. is_ssi++;
  213. return (is_from) ?
  214. dma_addrs[is_ssi][is_play][use_src + use_dvc].out_addr :
  215. dma_addrs[is_ssi][is_play][use_src + use_dvc].in_addr;
  216. }
  217. dma_addr_t rsnd_gen_dma_addr(struct rsnd_priv *priv,
  218. struct rsnd_mod *mod,
  219. int is_play, int is_from)
  220. {
  221. /*
  222. * gen1 uses default DMA addr
  223. */
  224. if (rsnd_is_gen1(priv))
  225. return 0;
  226. if (!mod)
  227. return 0;
  228. return rsnd_gen2_dma_addr(priv, mod, is_play, is_from);
  229. }
  230. /*
  231. * Gen2
  232. */
  233. static int rsnd_gen2_probe(struct platform_device *pdev,
  234. struct rsnd_priv *priv)
  235. {
  236. struct device *dev = rsnd_priv_to_dev(priv);
  237. struct rsnd_regmap_field_conf conf_ssiu[] = {
  238. RSND_GEN_S_REG(SSI_MODE0, 0x800),
  239. RSND_GEN_S_REG(SSI_MODE1, 0x804),
  240. /* FIXME: it needs SSI_MODE2/3 in the future */
  241. RSND_GEN_M_REG(SSI_BUSIF_MODE, 0x0, 0x80),
  242. RSND_GEN_M_REG(SSI_BUSIF_ADINR, 0x4, 0x80),
  243. RSND_GEN_M_REG(BUSIF_DALIGN, 0x8, 0x80),
  244. RSND_GEN_M_REG(SSI_CTRL, 0x10, 0x80),
  245. RSND_GEN_M_REG(INT_ENABLE, 0x18, 0x80),
  246. };
  247. struct rsnd_regmap_field_conf conf_scu[] = {
  248. RSND_GEN_M_REG(SRC_BUSIF_MODE, 0x0, 0x20),
  249. RSND_GEN_M_REG(SRC_ROUTE_MODE0, 0xc, 0x20),
  250. RSND_GEN_M_REG(SRC_CTRL, 0x10, 0x20),
  251. RSND_GEN_M_REG(CMD_ROUTE_SLCT, 0x18c, 0x20),
  252. RSND_GEN_M_REG(CMD_CTRL, 0x190, 0x20),
  253. RSND_GEN_M_REG(SRC_SWRSR, 0x200, 0x40),
  254. RSND_GEN_M_REG(SRC_SRCIR, 0x204, 0x40),
  255. RSND_GEN_M_REG(SRC_ADINR, 0x214, 0x40),
  256. RSND_GEN_M_REG(SRC_IFSCR, 0x21c, 0x40),
  257. RSND_GEN_M_REG(SRC_IFSVR, 0x220, 0x40),
  258. RSND_GEN_M_REG(SRC_SRCCR, 0x224, 0x40),
  259. RSND_GEN_M_REG(SRC_BSDSR, 0x22c, 0x40),
  260. RSND_GEN_M_REG(SRC_BSISR, 0x238, 0x40),
  261. RSND_GEN_M_REG(DVC_SWRSR, 0xe00, 0x100),
  262. RSND_GEN_M_REG(DVC_DVUIR, 0xe04, 0x100),
  263. RSND_GEN_M_REG(DVC_ADINR, 0xe08, 0x100),
  264. RSND_GEN_M_REG(DVC_DVUCR, 0xe10, 0x100),
  265. RSND_GEN_M_REG(DVC_ZCMCR, 0xe14, 0x100),
  266. RSND_GEN_M_REG(DVC_VOL0R, 0xe28, 0x100),
  267. RSND_GEN_M_REG(DVC_VOL1R, 0xe2c, 0x100),
  268. RSND_GEN_M_REG(DVC_DVUER, 0xe48, 0x100),
  269. };
  270. struct rsnd_regmap_field_conf conf_adg[] = {
  271. RSND_GEN_S_REG(BRRA, 0x00),
  272. RSND_GEN_S_REG(BRRB, 0x04),
  273. RSND_GEN_S_REG(SSICKR, 0x08),
  274. RSND_GEN_S_REG(AUDIO_CLK_SEL0, 0x0c),
  275. RSND_GEN_S_REG(AUDIO_CLK_SEL1, 0x10),
  276. RSND_GEN_S_REG(AUDIO_CLK_SEL2, 0x14),
  277. RSND_GEN_S_REG(DIV_EN, 0x30),
  278. RSND_GEN_S_REG(SRCIN_TIMSEL0, 0x34),
  279. RSND_GEN_S_REG(SRCIN_TIMSEL1, 0x38),
  280. RSND_GEN_S_REG(SRCIN_TIMSEL2, 0x3c),
  281. RSND_GEN_S_REG(SRCIN_TIMSEL3, 0x40),
  282. RSND_GEN_S_REG(SRCIN_TIMSEL4, 0x44),
  283. RSND_GEN_S_REG(SRCOUT_TIMSEL0, 0x48),
  284. RSND_GEN_S_REG(SRCOUT_TIMSEL1, 0x4c),
  285. RSND_GEN_S_REG(SRCOUT_TIMSEL2, 0x50),
  286. RSND_GEN_S_REG(SRCOUT_TIMSEL3, 0x54),
  287. RSND_GEN_S_REG(SRCOUT_TIMSEL4, 0x58),
  288. RSND_GEN_S_REG(CMDOUT_TIMSEL, 0x5c),
  289. };
  290. struct rsnd_regmap_field_conf conf_ssi[] = {
  291. RSND_GEN_M_REG(SSICR, 0x00, 0x40),
  292. RSND_GEN_M_REG(SSISR, 0x04, 0x40),
  293. RSND_GEN_M_REG(SSITDR, 0x08, 0x40),
  294. RSND_GEN_M_REG(SSIRDR, 0x0c, 0x40),
  295. RSND_GEN_M_REG(SSIWSR, 0x20, 0x40),
  296. };
  297. int ret_ssiu;
  298. int ret_scu;
  299. int ret_adg;
  300. int ret_ssi;
  301. ret_ssiu = rsnd_gen_regmap_init(priv, 10, RSND_GEN2_SSIU, conf_ssiu);
  302. ret_scu = rsnd_gen_regmap_init(priv, 10, RSND_GEN2_SCU, conf_scu);
  303. ret_adg = rsnd_gen_regmap_init(priv, 10, RSND_GEN2_ADG, conf_adg);
  304. ret_ssi = rsnd_gen_regmap_init(priv, 10, RSND_GEN2_SSI, conf_ssi);
  305. if (ret_ssiu < 0 ||
  306. ret_scu < 0 ||
  307. ret_adg < 0 ||
  308. ret_ssi < 0)
  309. return ret_ssiu | ret_scu | ret_adg | ret_ssi;
  310. dev_dbg(dev, "Gen2 is probed\n");
  311. return 0;
  312. }
  313. /*
  314. * Gen1
  315. */
  316. static int rsnd_gen1_probe(struct platform_device *pdev,
  317. struct rsnd_priv *priv)
  318. {
  319. struct device *dev = rsnd_priv_to_dev(priv);
  320. struct rsnd_regmap_field_conf conf_sru[] = {
  321. RSND_GEN_S_REG(SRC_ROUTE_SEL, 0x00),
  322. RSND_GEN_S_REG(SRC_TMG_SEL0, 0x08),
  323. RSND_GEN_S_REG(SRC_TMG_SEL1, 0x0c),
  324. RSND_GEN_S_REG(SRC_TMG_SEL2, 0x10),
  325. RSND_GEN_S_REG(SRC_ROUTE_CTRL, 0xc0),
  326. RSND_GEN_S_REG(SSI_MODE0, 0xD0),
  327. RSND_GEN_S_REG(SSI_MODE1, 0xD4),
  328. RSND_GEN_M_REG(SRC_BUSIF_MODE, 0x20, 0x4),
  329. RSND_GEN_M_REG(SRC_ROUTE_MODE0, 0x50, 0x8),
  330. RSND_GEN_M_REG(SRC_SWRSR, 0x200, 0x40),
  331. RSND_GEN_M_REG(SRC_SRCIR, 0x204, 0x40),
  332. RSND_GEN_M_REG(SRC_ADINR, 0x214, 0x40),
  333. RSND_GEN_M_REG(SRC_IFSCR, 0x21c, 0x40),
  334. RSND_GEN_M_REG(SRC_IFSVR, 0x220, 0x40),
  335. RSND_GEN_M_REG(SRC_SRCCR, 0x224, 0x40),
  336. RSND_GEN_M_REG(SRC_MNFSR, 0x228, 0x40),
  337. };
  338. struct rsnd_regmap_field_conf conf_adg[] = {
  339. RSND_GEN_S_REG(BRRA, 0x00),
  340. RSND_GEN_S_REG(BRRB, 0x04),
  341. RSND_GEN_S_REG(SSICKR, 0x08),
  342. RSND_GEN_S_REG(AUDIO_CLK_SEL0, 0x0c),
  343. RSND_GEN_S_REG(AUDIO_CLK_SEL1, 0x10),
  344. RSND_GEN_S_REG(AUDIO_CLK_SEL3, 0x18),
  345. RSND_GEN_S_REG(AUDIO_CLK_SEL4, 0x1c),
  346. RSND_GEN_S_REG(AUDIO_CLK_SEL5, 0x20),
  347. };
  348. struct rsnd_regmap_field_conf conf_ssi[] = {
  349. RSND_GEN_M_REG(SSICR, 0x00, 0x40),
  350. RSND_GEN_M_REG(SSISR, 0x04, 0x40),
  351. RSND_GEN_M_REG(SSITDR, 0x08, 0x40),
  352. RSND_GEN_M_REG(SSIRDR, 0x0c, 0x40),
  353. RSND_GEN_M_REG(SSIWSR, 0x20, 0x40),
  354. };
  355. int ret_sru;
  356. int ret_adg;
  357. int ret_ssi;
  358. ret_sru = rsnd_gen_regmap_init(priv, 9, RSND_GEN1_SRU, conf_sru);
  359. ret_adg = rsnd_gen_regmap_init(priv, 9, RSND_GEN1_ADG, conf_adg);
  360. ret_ssi = rsnd_gen_regmap_init(priv, 9, RSND_GEN1_SSI, conf_ssi);
  361. if (ret_sru < 0 ||
  362. ret_adg < 0 ||
  363. ret_ssi < 0)
  364. return ret_sru | ret_adg | ret_ssi;
  365. dev_dbg(dev, "Gen1 is probed\n");
  366. return 0;
  367. }
  368. /*
  369. * Gen
  370. */
  371. static void rsnd_of_parse_gen(struct platform_device *pdev,
  372. const struct rsnd_of_data *of_data,
  373. struct rsnd_priv *priv)
  374. {
  375. struct rcar_snd_info *info = priv->info;
  376. if (!of_data)
  377. return;
  378. info->flags = of_data->flags;
  379. }
  380. int rsnd_gen_probe(struct platform_device *pdev,
  381. const struct rsnd_of_data *of_data,
  382. struct rsnd_priv *priv)
  383. {
  384. struct device *dev = rsnd_priv_to_dev(priv);
  385. struct rsnd_gen *gen;
  386. int ret;
  387. rsnd_of_parse_gen(pdev, of_data, priv);
  388. gen = devm_kzalloc(dev, sizeof(*gen), GFP_KERNEL);
  389. if (!gen) {
  390. dev_err(dev, "GEN allocate failed\n");
  391. return -ENOMEM;
  392. }
  393. priv->gen = gen;
  394. ret = -ENODEV;
  395. if (rsnd_is_gen1(priv))
  396. ret = rsnd_gen1_probe(pdev, priv);
  397. else if (rsnd_is_gen2(priv))
  398. ret = rsnd_gen2_probe(pdev, priv);
  399. if (ret < 0)
  400. dev_err(dev, "unknown generation R-Car sound device\n");
  401. return ret;
  402. }