sdhci_am654.c 30 KB

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  1. // SPDX-License-Identifier: GPL-2.0
  2. /*
  3. * sdhci_am654.c - SDHCI driver for TI's AM654 SOCs
  4. *
  5. * Copyright (C) 2018 Texas Instruments Incorporated - https://www.ti.com
  6. *
  7. */
  8. #include <linux/clk.h>
  9. #include <linux/iopoll.h>
  10. #include <linux/of.h>
  11. #include <linux/module.h>
  12. #include <linux/pm_runtime.h>
  13. #include <linux/property.h>
  14. #include <linux/regmap.h>
  15. #include <linux/sys_soc.h>
  16. #include "cqhci.h"
  17. #include "sdhci-cqhci.h"
  18. #include "sdhci-pltfm.h"
  19. /* CTL_CFG Registers */
  20. #define CTL_CFG_2 0x14
  21. #define CTL_CFG_3 0x18
  22. #define SLOTTYPE_MASK GENMASK(31, 30)
  23. #define SLOTTYPE_EMBEDDED BIT(30)
  24. #define TUNINGFORSDR50_MASK BIT(13)
  25. /* PHY Registers */
  26. #define PHY_CTRL1 0x100
  27. #define PHY_CTRL2 0x104
  28. #define PHY_CTRL3 0x108
  29. #define PHY_CTRL4 0x10C
  30. #define PHY_CTRL5 0x110
  31. #define PHY_CTRL6 0x114
  32. #define PHY_STAT1 0x130
  33. #define PHY_STAT2 0x134
  34. #define IOMUX_ENABLE_SHIFT 31
  35. #define IOMUX_ENABLE_MASK BIT(IOMUX_ENABLE_SHIFT)
  36. #define OTAPDLYENA_SHIFT 20
  37. #define OTAPDLYENA_MASK BIT(OTAPDLYENA_SHIFT)
  38. #define OTAPDLYSEL_SHIFT 12
  39. #define OTAPDLYSEL_MASK GENMASK(15, 12)
  40. #define STRBSEL_SHIFT 24
  41. #define STRBSEL_4BIT_MASK GENMASK(27, 24)
  42. #define STRBSEL_8BIT_MASK GENMASK(31, 24)
  43. #define SEL50_SHIFT 8
  44. #define SEL50_MASK BIT(SEL50_SHIFT)
  45. #define SEL100_SHIFT 9
  46. #define SEL100_MASK BIT(SEL100_SHIFT)
  47. #define FREQSEL_SHIFT 8
  48. #define FREQSEL_MASK GENMASK(10, 8)
  49. #define CLKBUFSEL_SHIFT 0
  50. #define CLKBUFSEL_MASK GENMASK(2, 0)
  51. #define DLL_TRIM_ICP_SHIFT 4
  52. #define DLL_TRIM_ICP_MASK GENMASK(7, 4)
  53. #define DR_TY_SHIFT 20
  54. #define DR_TY_MASK GENMASK(22, 20)
  55. #define ENDLL_SHIFT 1
  56. #define ENDLL_MASK BIT(ENDLL_SHIFT)
  57. #define DLLRDY_SHIFT 0
  58. #define DLLRDY_MASK BIT(DLLRDY_SHIFT)
  59. #define PDB_SHIFT 0
  60. #define PDB_MASK BIT(PDB_SHIFT)
  61. #define CALDONE_SHIFT 1
  62. #define CALDONE_MASK BIT(CALDONE_SHIFT)
  63. #define RETRIM_SHIFT 17
  64. #define RETRIM_MASK BIT(RETRIM_SHIFT)
  65. #define SELDLYTXCLK_SHIFT 17
  66. #define SELDLYTXCLK_MASK BIT(SELDLYTXCLK_SHIFT)
  67. #define SELDLYRXCLK_SHIFT 16
  68. #define SELDLYRXCLK_MASK BIT(SELDLYRXCLK_SHIFT)
  69. #define ITAPDLYSEL_SHIFT 0
  70. #define ITAPDLYSEL_MASK GENMASK(4, 0)
  71. #define ITAPDLYENA_SHIFT 8
  72. #define ITAPDLYENA_MASK BIT(ITAPDLYENA_SHIFT)
  73. #define ITAPCHGWIN_SHIFT 9
  74. #define ITAPCHGWIN_MASK BIT(ITAPCHGWIN_SHIFT)
  75. #define DRIVER_STRENGTH_50_OHM 0x0
  76. #define DRIVER_STRENGTH_33_OHM 0x1
  77. #define DRIVER_STRENGTH_66_OHM 0x2
  78. #define DRIVER_STRENGTH_100_OHM 0x3
  79. #define DRIVER_STRENGTH_40_OHM 0x4
  80. #define CLOCK_TOO_SLOW_HZ 50000000
  81. #define SDHCI_AM654_AUTOSUSPEND_DELAY -1
  82. #define RETRY_TUNING_MAX 10
  83. /* Command Queue Host Controller Interface Base address */
  84. #define SDHCI_AM654_CQE_BASE_ADDR 0x200
  85. static const struct regmap_config sdhci_am654_regmap_config = {
  86. .reg_bits = 32,
  87. .val_bits = 32,
  88. .reg_stride = 4,
  89. .fast_io = true,
  90. };
  91. struct timing_data {
  92. const char *otap_binding;
  93. const char *itap_binding;
  94. u32 capability;
  95. };
  96. static const struct timing_data td[] = {
  97. [MMC_TIMING_LEGACY] = {"ti,otap-del-sel-legacy",
  98. "ti,itap-del-sel-legacy",
  99. 0},
  100. [MMC_TIMING_MMC_HS] = {"ti,otap-del-sel-mmc-hs",
  101. "ti,itap-del-sel-mmc-hs",
  102. MMC_CAP_MMC_HIGHSPEED},
  103. [MMC_TIMING_SD_HS] = {"ti,otap-del-sel-sd-hs",
  104. "ti,itap-del-sel-sd-hs",
  105. MMC_CAP_SD_HIGHSPEED},
  106. [MMC_TIMING_UHS_SDR12] = {"ti,otap-del-sel-sdr12",
  107. "ti,itap-del-sel-sdr12",
  108. MMC_CAP_UHS_SDR12},
  109. [MMC_TIMING_UHS_SDR25] = {"ti,otap-del-sel-sdr25",
  110. "ti,itap-del-sel-sdr25",
  111. MMC_CAP_UHS_SDR25},
  112. [MMC_TIMING_UHS_SDR50] = {"ti,otap-del-sel-sdr50",
  113. NULL,
  114. MMC_CAP_UHS_SDR50},
  115. [MMC_TIMING_UHS_SDR104] = {"ti,otap-del-sel-sdr104",
  116. NULL,
  117. MMC_CAP_UHS_SDR104},
  118. [MMC_TIMING_UHS_DDR50] = {"ti,otap-del-sel-ddr50",
  119. NULL,
  120. MMC_CAP_UHS_DDR50},
  121. [MMC_TIMING_MMC_DDR52] = {"ti,otap-del-sel-ddr52",
  122. "ti,itap-del-sel-ddr52",
  123. MMC_CAP_DDR},
  124. [MMC_TIMING_MMC_HS200] = {"ti,otap-del-sel-hs200",
  125. NULL,
  126. MMC_CAP2_HS200},
  127. [MMC_TIMING_MMC_HS400] = {"ti,otap-del-sel-hs400",
  128. NULL,
  129. MMC_CAP2_HS400},
  130. };
  131. struct sdhci_am654_data {
  132. struct regmap *base;
  133. u32 otap_del_sel[ARRAY_SIZE(td)];
  134. u32 itap_del_sel[ARRAY_SIZE(td)];
  135. u32 itap_del_ena[ARRAY_SIZE(td)];
  136. int clkbuf_sel;
  137. int trm_icp;
  138. int drv_strength;
  139. int strb_sel;
  140. u32 flags;
  141. u32 quirks;
  142. bool dll_enable;
  143. u32 tuning_loop;
  144. #define SDHCI_AM654_QUIRK_FORCE_CDTEST BIT(0)
  145. #define SDHCI_AM654_QUIRK_DISABLE_HS400 BIT(1)
  146. };
  147. struct window {
  148. u8 start;
  149. u8 end;
  150. u8 length;
  151. };
  152. struct sdhci_am654_driver_data {
  153. const struct sdhci_pltfm_data *pdata;
  154. u32 flags;
  155. #define IOMUX_PRESENT (1 << 0)
  156. #define FREQSEL_2_BIT (1 << 1)
  157. #define STRBSEL_4_BIT (1 << 2)
  158. #define DLL_PRESENT (1 << 3)
  159. #define DLL_CALIB (1 << 4)
  160. };
  161. static void sdhci_am654_setup_dll(struct sdhci_host *host, unsigned int clock)
  162. {
  163. struct sdhci_pltfm_host *pltfm_host = sdhci_priv(host);
  164. struct sdhci_am654_data *sdhci_am654 = sdhci_pltfm_priv(pltfm_host);
  165. int sel50, sel100, freqsel;
  166. u32 mask, val;
  167. int ret;
  168. /* Disable delay chain mode */
  169. regmap_update_bits(sdhci_am654->base, PHY_CTRL5,
  170. SELDLYTXCLK_MASK | SELDLYRXCLK_MASK, 0);
  171. if (sdhci_am654->flags & FREQSEL_2_BIT) {
  172. switch (clock) {
  173. case 200000000:
  174. sel50 = 0;
  175. sel100 = 0;
  176. break;
  177. case 100000000:
  178. sel50 = 0;
  179. sel100 = 1;
  180. break;
  181. default:
  182. sel50 = 1;
  183. sel100 = 0;
  184. }
  185. /* Configure PHY DLL frequency */
  186. mask = SEL50_MASK | SEL100_MASK;
  187. val = (sel50 << SEL50_SHIFT) | (sel100 << SEL100_SHIFT);
  188. regmap_update_bits(sdhci_am654->base, PHY_CTRL5, mask, val);
  189. } else {
  190. switch (clock) {
  191. case 200000000:
  192. freqsel = 0x0;
  193. break;
  194. default:
  195. freqsel = 0x4;
  196. }
  197. regmap_update_bits(sdhci_am654->base, PHY_CTRL5, FREQSEL_MASK,
  198. freqsel << FREQSEL_SHIFT);
  199. }
  200. /* Configure DLL TRIM */
  201. mask = DLL_TRIM_ICP_MASK;
  202. val = sdhci_am654->trm_icp << DLL_TRIM_ICP_SHIFT;
  203. /* Configure DLL driver strength */
  204. mask |= DR_TY_MASK;
  205. val |= sdhci_am654->drv_strength << DR_TY_SHIFT;
  206. regmap_update_bits(sdhci_am654->base, PHY_CTRL1, mask, val);
  207. /* Enable DLL */
  208. regmap_update_bits(sdhci_am654->base, PHY_CTRL1, ENDLL_MASK,
  209. 0x1 << ENDLL_SHIFT);
  210. /*
  211. * Poll for DLL ready. Use a one second timeout.
  212. * Works in all experiments done so far
  213. */
  214. ret = regmap_read_poll_timeout(sdhci_am654->base, PHY_STAT1, val,
  215. val & DLLRDY_MASK, 1000, 1000000);
  216. if (ret) {
  217. dev_err(mmc_dev(host->mmc), "DLL failed to relock\n");
  218. return;
  219. }
  220. }
  221. static void sdhci_am654_write_itapdly(struct sdhci_am654_data *sdhci_am654,
  222. u32 itapdly, u32 enable)
  223. {
  224. /* Set ITAPCHGWIN before writing to ITAPDLY */
  225. regmap_update_bits(sdhci_am654->base, PHY_CTRL4, ITAPCHGWIN_MASK,
  226. 1 << ITAPCHGWIN_SHIFT);
  227. regmap_update_bits(sdhci_am654->base, PHY_CTRL4, ITAPDLYENA_MASK,
  228. enable << ITAPDLYENA_SHIFT);
  229. regmap_update_bits(sdhci_am654->base, PHY_CTRL4, ITAPDLYSEL_MASK,
  230. itapdly << ITAPDLYSEL_SHIFT);
  231. regmap_update_bits(sdhci_am654->base, PHY_CTRL4, ITAPCHGWIN_MASK, 0);
  232. }
  233. static void sdhci_am654_setup_delay_chain(struct sdhci_am654_data *sdhci_am654,
  234. unsigned char timing)
  235. {
  236. u32 mask, val;
  237. regmap_update_bits(sdhci_am654->base, PHY_CTRL1, ENDLL_MASK, 0);
  238. val = 1 << SELDLYTXCLK_SHIFT | 1 << SELDLYRXCLK_SHIFT;
  239. mask = SELDLYTXCLK_MASK | SELDLYRXCLK_MASK;
  240. regmap_update_bits(sdhci_am654->base, PHY_CTRL5, mask, val);
  241. sdhci_am654_write_itapdly(sdhci_am654, sdhci_am654->itap_del_sel[timing],
  242. sdhci_am654->itap_del_ena[timing]);
  243. }
  244. static void sdhci_am654_set_clock(struct sdhci_host *host, unsigned int clock)
  245. {
  246. struct sdhci_pltfm_host *pltfm_host = sdhci_priv(host);
  247. struct sdhci_am654_data *sdhci_am654 = sdhci_pltfm_priv(pltfm_host);
  248. unsigned char timing = host->mmc->ios.timing;
  249. u32 otap_del_sel;
  250. u32 mask, val;
  251. regmap_update_bits(sdhci_am654->base, PHY_CTRL1, ENDLL_MASK, 0);
  252. sdhci_set_clock(host, clock);
  253. /* Setup Output TAP delay */
  254. otap_del_sel = sdhci_am654->otap_del_sel[timing];
  255. mask = OTAPDLYENA_MASK | OTAPDLYSEL_MASK;
  256. val = (0x1 << OTAPDLYENA_SHIFT) |
  257. (otap_del_sel << OTAPDLYSEL_SHIFT);
  258. /* Write to STRBSEL for HS400 speed mode */
  259. if (timing == MMC_TIMING_MMC_HS400) {
  260. if (sdhci_am654->flags & STRBSEL_4_BIT)
  261. mask |= STRBSEL_4BIT_MASK;
  262. else
  263. mask |= STRBSEL_8BIT_MASK;
  264. val |= sdhci_am654->strb_sel << STRBSEL_SHIFT;
  265. }
  266. regmap_update_bits(sdhci_am654->base, PHY_CTRL4, mask, val);
  267. if (timing > MMC_TIMING_UHS_SDR25 && clock >= CLOCK_TOO_SLOW_HZ) {
  268. sdhci_am654_setup_dll(host, clock);
  269. sdhci_am654->dll_enable = true;
  270. if (timing == MMC_TIMING_MMC_HS400) {
  271. sdhci_am654->itap_del_ena[timing] = 0x1;
  272. sdhci_am654->itap_del_sel[timing] = sdhci_am654->itap_del_sel[timing - 1];
  273. }
  274. sdhci_am654_write_itapdly(sdhci_am654, sdhci_am654->itap_del_sel[timing],
  275. sdhci_am654->itap_del_ena[timing]);
  276. } else {
  277. sdhci_am654_setup_delay_chain(sdhci_am654, timing);
  278. sdhci_am654->dll_enable = false;
  279. }
  280. regmap_update_bits(sdhci_am654->base, PHY_CTRL5, CLKBUFSEL_MASK,
  281. sdhci_am654->clkbuf_sel);
  282. }
  283. static void sdhci_j721e_4bit_set_clock(struct sdhci_host *host,
  284. unsigned int clock)
  285. {
  286. struct sdhci_pltfm_host *pltfm_host = sdhci_priv(host);
  287. struct sdhci_am654_data *sdhci_am654 = sdhci_pltfm_priv(pltfm_host);
  288. unsigned char timing = host->mmc->ios.timing;
  289. u32 otap_del_sel;
  290. u32 itap_del_ena;
  291. u32 itap_del_sel;
  292. u32 mask, val;
  293. /* Setup Output TAP delay */
  294. otap_del_sel = sdhci_am654->otap_del_sel[timing];
  295. mask = OTAPDLYENA_MASK | OTAPDLYSEL_MASK;
  296. val = (0x1 << OTAPDLYENA_SHIFT) |
  297. (otap_del_sel << OTAPDLYSEL_SHIFT);
  298. /* Setup Input TAP delay */
  299. itap_del_ena = sdhci_am654->itap_del_ena[timing];
  300. itap_del_sel = sdhci_am654->itap_del_sel[timing];
  301. mask |= ITAPDLYENA_MASK | ITAPDLYSEL_MASK;
  302. val |= (itap_del_ena << ITAPDLYENA_SHIFT) |
  303. (itap_del_sel << ITAPDLYSEL_SHIFT);
  304. regmap_update_bits(sdhci_am654->base, PHY_CTRL4, ITAPCHGWIN_MASK,
  305. 1 << ITAPCHGWIN_SHIFT);
  306. regmap_update_bits(sdhci_am654->base, PHY_CTRL4, mask, val);
  307. regmap_update_bits(sdhci_am654->base, PHY_CTRL4, ITAPCHGWIN_MASK, 0);
  308. regmap_update_bits(sdhci_am654->base, PHY_CTRL5, CLKBUFSEL_MASK,
  309. sdhci_am654->clkbuf_sel);
  310. sdhci_set_clock(host, clock);
  311. }
  312. static u8 sdhci_am654_write_power_on(struct sdhci_host *host, u8 val, int reg)
  313. {
  314. writeb(val, host->ioaddr + reg);
  315. usleep_range(1000, 10000);
  316. return readb(host->ioaddr + reg);
  317. }
  318. #define MAX_POWER_ON_TIMEOUT 1500000 /* us */
  319. static void sdhci_am654_write_b(struct sdhci_host *host, u8 val, int reg)
  320. {
  321. unsigned char timing = host->mmc->ios.timing;
  322. u8 pwr;
  323. int ret;
  324. if (reg == SDHCI_HOST_CONTROL) {
  325. switch (timing) {
  326. /*
  327. * According to the data manual, HISPD bit
  328. * should not be set in these speed modes.
  329. */
  330. case MMC_TIMING_SD_HS:
  331. case MMC_TIMING_MMC_HS:
  332. val &= ~SDHCI_CTRL_HISPD;
  333. }
  334. }
  335. writeb(val, host->ioaddr + reg);
  336. if (reg == SDHCI_POWER_CONTROL && (val & SDHCI_POWER_ON)) {
  337. /*
  338. * Power on will not happen until the card detect debounce
  339. * timer expires. Wait at least 1.5 seconds for the power on
  340. * bit to be set
  341. */
  342. ret = read_poll_timeout(sdhci_am654_write_power_on, pwr,
  343. pwr & SDHCI_POWER_ON, 0,
  344. MAX_POWER_ON_TIMEOUT, false, host, val,
  345. reg);
  346. if (ret)
  347. dev_info(mmc_dev(host->mmc), "Power on failed\n");
  348. }
  349. }
  350. static void sdhci_am654_reset(struct sdhci_host *host, u8 mask)
  351. {
  352. u8 ctrl;
  353. struct sdhci_pltfm_host *pltfm_host = sdhci_priv(host);
  354. struct sdhci_am654_data *sdhci_am654 = sdhci_pltfm_priv(pltfm_host);
  355. sdhci_and_cqhci_reset(host, mask);
  356. if (sdhci_am654->quirks & SDHCI_AM654_QUIRK_FORCE_CDTEST) {
  357. ctrl = sdhci_readb(host, SDHCI_HOST_CONTROL);
  358. ctrl |= SDHCI_CTRL_CDTEST_INS | SDHCI_CTRL_CDTEST_EN;
  359. sdhci_writeb(host, ctrl, SDHCI_HOST_CONTROL);
  360. }
  361. }
  362. static int sdhci_am654_execute_tuning(struct mmc_host *mmc, u32 opcode)
  363. {
  364. struct sdhci_host *host = mmc_priv(mmc);
  365. int err = sdhci_execute_tuning(mmc, opcode);
  366. if (err)
  367. return err;
  368. /*
  369. * Tuning data remains in the buffer after tuning.
  370. * Do a command and data reset to get rid of it
  371. */
  372. sdhci_reset(host, SDHCI_RESET_CMD | SDHCI_RESET_DATA);
  373. return 0;
  374. }
  375. static u32 sdhci_am654_cqhci_irq(struct sdhci_host *host, u32 intmask)
  376. {
  377. int cmd_error = 0;
  378. int data_error = 0;
  379. if (!sdhci_cqe_irq(host, intmask, &cmd_error, &data_error))
  380. return intmask;
  381. cqhci_irq(host->mmc, intmask, cmd_error, data_error);
  382. return 0;
  383. }
  384. #define ITAPDLY_LENGTH 32
  385. #define ITAPDLY_LAST_INDEX (ITAPDLY_LENGTH - 1)
  386. static int sdhci_am654_calculate_itap(struct sdhci_host *host, struct window
  387. *fail_window, u8 num_fails, bool circular_buffer)
  388. {
  389. u8 itap = 0, start_fail = 0, end_fail = 0, pass_length = 0;
  390. u8 first_fail_start = 0, last_fail_end = 0;
  391. struct device *dev = mmc_dev(host->mmc);
  392. struct window pass_window = {0, 0, 0};
  393. int prev_fail_end = -1;
  394. u8 i;
  395. if (!num_fails) {
  396. /* Retry tuning */
  397. dev_dbg(dev, "No failing region found, retry tuning\n");
  398. return -1;
  399. }
  400. if (fail_window->length == ITAPDLY_LENGTH) {
  401. /* Retry tuning */
  402. dev_dbg(dev, "No passing itapdly, retry tuning\n");
  403. return -1;
  404. }
  405. first_fail_start = fail_window->start;
  406. last_fail_end = fail_window[num_fails - 1].end;
  407. for (i = 0; i < num_fails; i++) {
  408. start_fail = fail_window[i].start;
  409. end_fail = fail_window[i].end;
  410. pass_length = start_fail - (prev_fail_end + 1);
  411. if (pass_length > pass_window.length) {
  412. pass_window.start = prev_fail_end + 1;
  413. pass_window.length = pass_length;
  414. }
  415. prev_fail_end = end_fail;
  416. }
  417. if (!circular_buffer)
  418. pass_length = ITAPDLY_LAST_INDEX - last_fail_end;
  419. else
  420. pass_length = ITAPDLY_LAST_INDEX - last_fail_end + first_fail_start;
  421. if (pass_length > pass_window.length) {
  422. pass_window.start = last_fail_end + 1;
  423. pass_window.length = pass_length;
  424. }
  425. if (!circular_buffer)
  426. itap = pass_window.start + (pass_window.length >> 1);
  427. else
  428. itap = (pass_window.start + (pass_window.length >> 1)) % ITAPDLY_LENGTH;
  429. return (itap > ITAPDLY_LAST_INDEX) ? ITAPDLY_LAST_INDEX >> 1 : itap;
  430. }
  431. static int sdhci_am654_do_tuning(struct sdhci_host *host,
  432. u32 opcode)
  433. {
  434. struct sdhci_pltfm_host *pltfm_host = sdhci_priv(host);
  435. struct sdhci_am654_data *sdhci_am654 = sdhci_pltfm_priv(pltfm_host);
  436. unsigned char timing = host->mmc->ios.timing;
  437. struct window fail_window[ITAPDLY_LENGTH];
  438. struct device *dev = mmc_dev(host->mmc);
  439. u8 curr_pass, itap;
  440. u8 fail_index = 0;
  441. u8 prev_pass = 1;
  442. memset(fail_window, 0, sizeof(fail_window));
  443. /* Enable ITAPDLY */
  444. sdhci_am654->itap_del_ena[timing] = 0x1;
  445. for (itap = 0; itap < ITAPDLY_LENGTH; itap++) {
  446. sdhci_am654_write_itapdly(sdhci_am654, itap, sdhci_am654->itap_del_ena[timing]);
  447. curr_pass = !mmc_send_tuning(host->mmc, opcode, NULL);
  448. if (!curr_pass && prev_pass)
  449. fail_window[fail_index].start = itap;
  450. if (!curr_pass) {
  451. fail_window[fail_index].end = itap;
  452. fail_window[fail_index].length++;
  453. dev_dbg(dev, "Failed itapdly=%d\n", itap);
  454. }
  455. if (curr_pass && !prev_pass)
  456. fail_index++;
  457. prev_pass = curr_pass;
  458. }
  459. if (fail_window[fail_index].length != 0)
  460. fail_index++;
  461. return sdhci_am654_calculate_itap(host, fail_window, fail_index,
  462. sdhci_am654->dll_enable);
  463. }
  464. static int sdhci_am654_platform_execute_tuning(struct sdhci_host *host,
  465. u32 opcode)
  466. {
  467. struct sdhci_pltfm_host *pltfm_host = sdhci_priv(host);
  468. struct sdhci_am654_data *sdhci_am654 = sdhci_pltfm_priv(pltfm_host);
  469. unsigned char timing = host->mmc->ios.timing;
  470. struct device *dev = mmc_dev(host->mmc);
  471. int itapdly;
  472. do {
  473. itapdly = sdhci_am654_do_tuning(host, opcode);
  474. if (itapdly >= 0)
  475. break;
  476. } while (++sdhci_am654->tuning_loop < RETRY_TUNING_MAX);
  477. if (itapdly < 0) {
  478. dev_err(dev, "Failed to find itapdly, fail tuning\n");
  479. return -1;
  480. }
  481. dev_dbg(dev, "Passed tuning, final itapdly=%d\n", itapdly);
  482. sdhci_am654_write_itapdly(sdhci_am654, itapdly, sdhci_am654->itap_del_ena[timing]);
  483. /* Save ITAPDLY */
  484. sdhci_am654->itap_del_sel[timing] = itapdly;
  485. return 0;
  486. }
  487. static const struct sdhci_ops sdhci_am654_ops = {
  488. .platform_execute_tuning = sdhci_am654_platform_execute_tuning,
  489. .get_max_clock = sdhci_pltfm_clk_get_max_clock,
  490. .get_timeout_clock = sdhci_pltfm_clk_get_max_clock,
  491. .set_uhs_signaling = sdhci_set_uhs_signaling,
  492. .set_bus_width = sdhci_set_bus_width,
  493. .set_power = sdhci_set_power_and_bus_voltage,
  494. .set_clock = sdhci_am654_set_clock,
  495. .write_b = sdhci_am654_write_b,
  496. .irq = sdhci_am654_cqhci_irq,
  497. .reset = sdhci_and_cqhci_reset,
  498. };
  499. static const struct sdhci_pltfm_data sdhci_am654_pdata = {
  500. .ops = &sdhci_am654_ops,
  501. .quirks = SDHCI_QUIRK_MULTIBLOCK_READ_ACMD12,
  502. .quirks2 = SDHCI_QUIRK2_PRESET_VALUE_BROKEN |
  503. SDHCI_QUIRK2_DISABLE_HW_TIMEOUT,
  504. };
  505. static const struct sdhci_am654_driver_data sdhci_am654_sr1_drvdata = {
  506. .pdata = &sdhci_am654_pdata,
  507. .flags = IOMUX_PRESENT | FREQSEL_2_BIT | STRBSEL_4_BIT | DLL_PRESENT |
  508. DLL_CALIB,
  509. };
  510. static const struct sdhci_am654_driver_data sdhci_am654_drvdata = {
  511. .pdata = &sdhci_am654_pdata,
  512. .flags = IOMUX_PRESENT | FREQSEL_2_BIT | STRBSEL_4_BIT | DLL_PRESENT,
  513. };
  514. static const struct sdhci_ops sdhci_j721e_8bit_ops = {
  515. .platform_execute_tuning = sdhci_am654_platform_execute_tuning,
  516. .get_max_clock = sdhci_pltfm_clk_get_max_clock,
  517. .get_timeout_clock = sdhci_pltfm_clk_get_max_clock,
  518. .set_uhs_signaling = sdhci_set_uhs_signaling,
  519. .set_bus_width = sdhci_set_bus_width,
  520. .set_power = sdhci_set_power_and_bus_voltage,
  521. .set_clock = sdhci_am654_set_clock,
  522. .write_b = sdhci_am654_write_b,
  523. .irq = sdhci_am654_cqhci_irq,
  524. .reset = sdhci_and_cqhci_reset,
  525. };
  526. static const struct sdhci_pltfm_data sdhci_j721e_8bit_pdata = {
  527. .ops = &sdhci_j721e_8bit_ops,
  528. .quirks = SDHCI_QUIRK_MULTIBLOCK_READ_ACMD12,
  529. .quirks2 = SDHCI_QUIRK2_PRESET_VALUE_BROKEN |
  530. SDHCI_QUIRK2_DISABLE_HW_TIMEOUT,
  531. };
  532. static const struct sdhci_am654_driver_data sdhci_j721e_8bit_drvdata = {
  533. .pdata = &sdhci_j721e_8bit_pdata,
  534. .flags = DLL_PRESENT | DLL_CALIB,
  535. };
  536. static const struct sdhci_ops sdhci_j721e_4bit_ops = {
  537. .platform_execute_tuning = sdhci_am654_platform_execute_tuning,
  538. .get_max_clock = sdhci_pltfm_clk_get_max_clock,
  539. .get_timeout_clock = sdhci_pltfm_clk_get_max_clock,
  540. .set_uhs_signaling = sdhci_set_uhs_signaling,
  541. .set_bus_width = sdhci_set_bus_width,
  542. .set_power = sdhci_set_power_and_bus_voltage,
  543. .set_clock = sdhci_j721e_4bit_set_clock,
  544. .write_b = sdhci_am654_write_b,
  545. .irq = sdhci_am654_cqhci_irq,
  546. .reset = sdhci_am654_reset,
  547. };
  548. static const struct sdhci_pltfm_data sdhci_j721e_4bit_pdata = {
  549. .ops = &sdhci_j721e_4bit_ops,
  550. .quirks = SDHCI_QUIRK_MULTIBLOCK_READ_ACMD12,
  551. .quirks2 = SDHCI_QUIRK2_PRESET_VALUE_BROKEN |
  552. SDHCI_QUIRK2_DISABLE_HW_TIMEOUT,
  553. };
  554. static const struct sdhci_am654_driver_data sdhci_j721e_4bit_drvdata = {
  555. .pdata = &sdhci_j721e_4bit_pdata,
  556. .flags = IOMUX_PRESENT,
  557. };
  558. static const struct soc_device_attribute sdhci_am654_devices[] = {
  559. { .family = "AM65X",
  560. .revision = "SR1.0",
  561. .data = &sdhci_am654_sr1_drvdata
  562. },
  563. {/* sentinel */}
  564. };
  565. static void sdhci_am654_dumpregs(struct mmc_host *mmc)
  566. {
  567. sdhci_dumpregs(mmc_priv(mmc));
  568. }
  569. static const struct cqhci_host_ops sdhci_am654_cqhci_ops = {
  570. .enable = sdhci_cqe_enable,
  571. .disable = sdhci_cqe_disable,
  572. .dumpregs = sdhci_am654_dumpregs,
  573. };
  574. static int sdhci_am654_cqe_add_host(struct sdhci_host *host)
  575. {
  576. struct cqhci_host *cq_host;
  577. cq_host = devm_kzalloc(mmc_dev(host->mmc), sizeof(struct cqhci_host),
  578. GFP_KERNEL);
  579. if (!cq_host)
  580. return -ENOMEM;
  581. cq_host->mmio = host->ioaddr + SDHCI_AM654_CQE_BASE_ADDR;
  582. cq_host->quirks |= CQHCI_QUIRK_SHORT_TXFR_DESC_SZ;
  583. cq_host->caps |= CQHCI_TASK_DESC_SZ_128;
  584. cq_host->ops = &sdhci_am654_cqhci_ops;
  585. host->mmc->caps2 |= MMC_CAP2_CQE;
  586. return cqhci_init(cq_host, host->mmc, 1);
  587. }
  588. static int sdhci_am654_get_otap_delay(struct sdhci_host *host,
  589. struct sdhci_am654_data *sdhci_am654)
  590. {
  591. struct device *dev = mmc_dev(host->mmc);
  592. int i;
  593. int ret;
  594. for (i = MMC_TIMING_LEGACY; i <= MMC_TIMING_MMC_HS400; i++) {
  595. ret = device_property_read_u32(dev, td[i].otap_binding,
  596. &sdhci_am654->otap_del_sel[i]);
  597. if (ret) {
  598. if (i == MMC_TIMING_LEGACY) {
  599. dev_err(dev, "Couldn't find mandatory ti,otap-del-sel-legacy\n");
  600. return ret;
  601. }
  602. dev_dbg(dev, "Couldn't find %s\n",
  603. td[i].otap_binding);
  604. /*
  605. * Remove the corresponding capability
  606. * if an otap-del-sel value is not found
  607. */
  608. if (i <= MMC_TIMING_MMC_DDR52)
  609. host->mmc->caps &= ~td[i].capability;
  610. else
  611. host->mmc->caps2 &= ~td[i].capability;
  612. }
  613. if (td[i].itap_binding) {
  614. ret = device_property_read_u32(dev, td[i].itap_binding,
  615. &sdhci_am654->itap_del_sel[i]);
  616. if (!ret)
  617. sdhci_am654->itap_del_ena[i] = 0x1;
  618. }
  619. }
  620. return 0;
  621. }
  622. static int sdhci_am654_init(struct sdhci_host *host)
  623. {
  624. struct sdhci_pltfm_host *pltfm_host = sdhci_priv(host);
  625. struct sdhci_am654_data *sdhci_am654 = sdhci_pltfm_priv(pltfm_host);
  626. struct device *dev = mmc_dev(host->mmc);
  627. u32 ctl_cfg_2 = 0;
  628. u32 mask;
  629. u32 val;
  630. int ret;
  631. /* Reset OTAP to default value */
  632. mask = OTAPDLYENA_MASK | OTAPDLYSEL_MASK;
  633. regmap_update_bits(sdhci_am654->base, PHY_CTRL4, mask, 0x0);
  634. if (sdhci_am654->flags & DLL_CALIB) {
  635. regmap_read(sdhci_am654->base, PHY_STAT1, &val);
  636. if (~val & CALDONE_MASK) {
  637. /* Calibrate IO lines */
  638. regmap_update_bits(sdhci_am654->base, PHY_CTRL1,
  639. PDB_MASK, PDB_MASK);
  640. ret = regmap_read_poll_timeout(sdhci_am654->base,
  641. PHY_STAT1, val,
  642. val & CALDONE_MASK,
  643. 1, 20);
  644. if (ret)
  645. return ret;
  646. }
  647. }
  648. /* Enable pins by setting IO mux to 0 */
  649. if (sdhci_am654->flags & IOMUX_PRESENT)
  650. regmap_update_bits(sdhci_am654->base, PHY_CTRL1,
  651. IOMUX_ENABLE_MASK, 0);
  652. /* Set slot type based on SD or eMMC */
  653. if (host->mmc->caps & MMC_CAP_NONREMOVABLE)
  654. ctl_cfg_2 = SLOTTYPE_EMBEDDED;
  655. regmap_update_bits(sdhci_am654->base, CTL_CFG_2, SLOTTYPE_MASK,
  656. ctl_cfg_2);
  657. /* Enable tuning for SDR50 */
  658. regmap_update_bits(sdhci_am654->base, CTL_CFG_3, TUNINGFORSDR50_MASK,
  659. TUNINGFORSDR50_MASK);
  660. /* Use to re-execute tuning */
  661. sdhci_am654->tuning_loop = 0;
  662. ret = sdhci_setup_host(host);
  663. if (ret)
  664. return ret;
  665. ret = sdhci_am654_cqe_add_host(host);
  666. if (ret)
  667. goto err_cleanup_host;
  668. ret = sdhci_am654_get_otap_delay(host, sdhci_am654);
  669. if (ret)
  670. goto err_cleanup_host;
  671. if (sdhci_am654->quirks & SDHCI_AM654_QUIRK_DISABLE_HS400 &&
  672. host->mmc->caps2 & (MMC_CAP2_HS400 | MMC_CAP2_HS400_ES)) {
  673. dev_info(dev, "HS400 mode not supported on this silicon revision, disabling it\n");
  674. host->mmc->caps2 &= ~(MMC_CAP2_HS400 | MMC_CAP2_HS400_ES);
  675. }
  676. ret = __sdhci_add_host(host);
  677. if (ret)
  678. goto err_cleanup_host;
  679. return 0;
  680. err_cleanup_host:
  681. sdhci_cleanup_host(host);
  682. return ret;
  683. }
  684. static int sdhci_am654_get_of_property(struct platform_device *pdev,
  685. struct sdhci_am654_data *sdhci_am654)
  686. {
  687. struct device *dev = &pdev->dev;
  688. int drv_strength;
  689. int ret;
  690. if (sdhci_am654->flags & DLL_PRESENT) {
  691. ret = device_property_read_u32(dev, "ti,trm-icp",
  692. &sdhci_am654->trm_icp);
  693. if (ret)
  694. return ret;
  695. ret = device_property_read_u32(dev, "ti,driver-strength-ohm",
  696. &drv_strength);
  697. if (ret)
  698. return ret;
  699. switch (drv_strength) {
  700. case 50:
  701. sdhci_am654->drv_strength = DRIVER_STRENGTH_50_OHM;
  702. break;
  703. case 33:
  704. sdhci_am654->drv_strength = DRIVER_STRENGTH_33_OHM;
  705. break;
  706. case 66:
  707. sdhci_am654->drv_strength = DRIVER_STRENGTH_66_OHM;
  708. break;
  709. case 100:
  710. sdhci_am654->drv_strength = DRIVER_STRENGTH_100_OHM;
  711. break;
  712. case 40:
  713. sdhci_am654->drv_strength = DRIVER_STRENGTH_40_OHM;
  714. break;
  715. default:
  716. dev_err(dev, "Invalid driver strength\n");
  717. return -EINVAL;
  718. }
  719. }
  720. device_property_read_u32(dev, "ti,strobe-sel", &sdhci_am654->strb_sel);
  721. device_property_read_u32(dev, "ti,clkbuf-sel",
  722. &sdhci_am654->clkbuf_sel);
  723. if (device_property_read_bool(dev, "ti,fails-without-test-cd"))
  724. sdhci_am654->quirks |= SDHCI_AM654_QUIRK_FORCE_CDTEST;
  725. sdhci_get_of_property(pdev);
  726. return 0;
  727. }
  728. static const struct soc_device_attribute sdhci_am654_descope_hs400[] = {
  729. { .family = "AM62PX", .revision = "SR1.0" },
  730. { .family = "AM62PX", .revision = "SR1.1" },
  731. { /* sentinel */ }
  732. };
  733. static const struct of_device_id sdhci_am654_of_match[] = {
  734. {
  735. .compatible = "ti,am654-sdhci-5.1",
  736. .data = &sdhci_am654_drvdata,
  737. },
  738. {
  739. .compatible = "ti,j721e-sdhci-8bit",
  740. .data = &sdhci_j721e_8bit_drvdata,
  741. },
  742. {
  743. .compatible = "ti,j721e-sdhci-4bit",
  744. .data = &sdhci_j721e_4bit_drvdata,
  745. },
  746. {
  747. .compatible = "ti,am64-sdhci-8bit",
  748. .data = &sdhci_j721e_8bit_drvdata,
  749. },
  750. {
  751. .compatible = "ti,am64-sdhci-4bit",
  752. .data = &sdhci_j721e_4bit_drvdata,
  753. },
  754. {
  755. .compatible = "ti,am62-sdhci",
  756. .data = &sdhci_j721e_4bit_drvdata,
  757. },
  758. { /* sentinel */ }
  759. };
  760. MODULE_DEVICE_TABLE(of, sdhci_am654_of_match);
  761. static int sdhci_am654_probe(struct platform_device *pdev)
  762. {
  763. const struct sdhci_am654_driver_data *drvdata;
  764. const struct soc_device_attribute *soc;
  765. struct sdhci_pltfm_host *pltfm_host;
  766. struct sdhci_am654_data *sdhci_am654;
  767. const struct of_device_id *match;
  768. struct sdhci_host *host;
  769. struct clk *clk_xin;
  770. struct device *dev = &pdev->dev;
  771. void __iomem *base;
  772. int ret;
  773. match = of_match_node(sdhci_am654_of_match, pdev->dev.of_node);
  774. drvdata = match->data;
  775. /* Update drvdata based on SoC revision */
  776. soc = soc_device_match(sdhci_am654_devices);
  777. if (soc && soc->data)
  778. drvdata = soc->data;
  779. host = sdhci_pltfm_init(pdev, drvdata->pdata, sizeof(*sdhci_am654));
  780. if (IS_ERR(host))
  781. return PTR_ERR(host);
  782. pltfm_host = sdhci_priv(host);
  783. sdhci_am654 = sdhci_pltfm_priv(pltfm_host);
  784. sdhci_am654->flags = drvdata->flags;
  785. clk_xin = devm_clk_get(dev, "clk_xin");
  786. if (IS_ERR(clk_xin)) {
  787. dev_err(dev, "clk_xin clock not found.\n");
  788. ret = PTR_ERR(clk_xin);
  789. goto err_pltfm_free;
  790. }
  791. pltfm_host->clk = clk_xin;
  792. base = devm_platform_ioremap_resource(pdev, 1);
  793. if (IS_ERR(base)) {
  794. ret = PTR_ERR(base);
  795. goto err_pltfm_free;
  796. }
  797. sdhci_am654->base = devm_regmap_init_mmio(dev, base,
  798. &sdhci_am654_regmap_config);
  799. if (IS_ERR(sdhci_am654->base)) {
  800. dev_err(dev, "Failed to initialize regmap\n");
  801. ret = PTR_ERR(sdhci_am654->base);
  802. goto err_pltfm_free;
  803. }
  804. ret = sdhci_am654_get_of_property(pdev, sdhci_am654);
  805. if (ret)
  806. goto err_pltfm_free;
  807. ret = mmc_of_parse(host->mmc);
  808. if (ret) {
  809. dev_err_probe(dev, ret, "parsing dt failed\n");
  810. goto err_pltfm_free;
  811. }
  812. soc = soc_device_match(sdhci_am654_descope_hs400);
  813. if (soc)
  814. sdhci_am654->quirks |= SDHCI_AM654_QUIRK_DISABLE_HS400;
  815. host->mmc_host_ops.execute_tuning = sdhci_am654_execute_tuning;
  816. pm_runtime_get_noresume(dev);
  817. ret = pm_runtime_set_active(dev);
  818. if (ret)
  819. goto pm_put;
  820. pm_runtime_enable(dev);
  821. ret = clk_prepare_enable(pltfm_host->clk);
  822. if (ret)
  823. goto pm_disable;
  824. ret = sdhci_am654_init(host);
  825. if (ret)
  826. goto clk_disable;
  827. /* Setting up autosuspend */
  828. pm_runtime_set_autosuspend_delay(dev, SDHCI_AM654_AUTOSUSPEND_DELAY);
  829. pm_runtime_use_autosuspend(dev);
  830. pm_runtime_mark_last_busy(dev);
  831. pm_runtime_put_autosuspend(dev);
  832. return 0;
  833. clk_disable:
  834. clk_disable_unprepare(pltfm_host->clk);
  835. pm_disable:
  836. pm_runtime_disable(dev);
  837. pm_put:
  838. pm_runtime_put_noidle(dev);
  839. err_pltfm_free:
  840. sdhci_pltfm_free(pdev);
  841. return ret;
  842. }
  843. static void sdhci_am654_remove(struct platform_device *pdev)
  844. {
  845. struct sdhci_host *host = platform_get_drvdata(pdev);
  846. struct sdhci_pltfm_host *pltfm_host = sdhci_priv(host);
  847. struct device *dev = &pdev->dev;
  848. int ret;
  849. ret = pm_runtime_get_sync(dev);
  850. if (ret < 0)
  851. dev_err(dev, "pm_runtime_get_sync() Failed\n");
  852. sdhci_remove_host(host, true);
  853. clk_disable_unprepare(pltfm_host->clk);
  854. pm_runtime_disable(dev);
  855. pm_runtime_put_noidle(dev);
  856. sdhci_pltfm_free(pdev);
  857. }
  858. #ifdef CONFIG_PM
  859. static int sdhci_am654_restore(struct sdhci_host *host)
  860. {
  861. struct sdhci_pltfm_host *pltfm_host = sdhci_priv(host);
  862. struct sdhci_am654_data *sdhci_am654 = sdhci_pltfm_priv(pltfm_host);
  863. u32 ctl_cfg_2 = 0;
  864. u32 val;
  865. int ret;
  866. if (sdhci_am654->flags & DLL_CALIB) {
  867. regmap_read(sdhci_am654->base, PHY_STAT1, &val);
  868. if (~val & CALDONE_MASK) {
  869. /* Calibrate IO lines */
  870. regmap_update_bits(sdhci_am654->base, PHY_CTRL1,
  871. PDB_MASK, PDB_MASK);
  872. ret = regmap_read_poll_timeout(sdhci_am654->base,
  873. PHY_STAT1, val,
  874. val & CALDONE_MASK,
  875. 1, 20);
  876. if (ret)
  877. return ret;
  878. }
  879. }
  880. /* Enable pins by setting IO mux to 0 */
  881. if (sdhci_am654->flags & IOMUX_PRESENT)
  882. regmap_update_bits(sdhci_am654->base, PHY_CTRL1,
  883. IOMUX_ENABLE_MASK, 0);
  884. /* Set slot type based on SD or eMMC */
  885. if (host->mmc->caps & MMC_CAP_NONREMOVABLE)
  886. ctl_cfg_2 = SLOTTYPE_EMBEDDED;
  887. regmap_update_bits(sdhci_am654->base, CTL_CFG_2, SLOTTYPE_MASK,
  888. ctl_cfg_2);
  889. regmap_read(sdhci_am654->base, CTL_CFG_3, &val);
  890. if (~val & TUNINGFORSDR50_MASK)
  891. /* Enable tuning for SDR50 */
  892. regmap_update_bits(sdhci_am654->base, CTL_CFG_3, TUNINGFORSDR50_MASK,
  893. TUNINGFORSDR50_MASK);
  894. return 0;
  895. }
  896. static int sdhci_am654_runtime_suspend(struct device *dev)
  897. {
  898. struct sdhci_host *host = dev_get_drvdata(dev);
  899. struct sdhci_pltfm_host *pltfm_host = sdhci_priv(host);
  900. int ret;
  901. if (host->tuning_mode != SDHCI_TUNING_MODE_3)
  902. mmc_retune_needed(host->mmc);
  903. ret = cqhci_suspend(host->mmc);
  904. if (ret)
  905. return ret;
  906. ret = sdhci_runtime_suspend_host(host);
  907. if (ret)
  908. return ret;
  909. /* disable the clock */
  910. clk_disable_unprepare(pltfm_host->clk);
  911. return 0;
  912. }
  913. static int sdhci_am654_runtime_resume(struct device *dev)
  914. {
  915. struct sdhci_host *host = dev_get_drvdata(dev);
  916. struct sdhci_pltfm_host *pltfm_host = sdhci_priv(host);
  917. int ret;
  918. /* Enable the clock */
  919. ret = clk_prepare_enable(pltfm_host->clk);
  920. if (ret)
  921. return ret;
  922. ret = sdhci_am654_restore(host);
  923. if (ret)
  924. return ret;
  925. ret = sdhci_runtime_resume_host(host, 0);
  926. if (ret)
  927. return ret;
  928. ret = cqhci_resume(host->mmc);
  929. if (ret)
  930. return ret;
  931. return 0;
  932. }
  933. #endif
  934. static const struct dev_pm_ops sdhci_am654_dev_pm_ops = {
  935. SET_RUNTIME_PM_OPS(sdhci_am654_runtime_suspend,
  936. sdhci_am654_runtime_resume, NULL)
  937. SET_SYSTEM_SLEEP_PM_OPS(pm_runtime_force_suspend,
  938. pm_runtime_force_resume)
  939. };
  940. static struct platform_driver sdhci_am654_driver = {
  941. .driver = {
  942. .name = "sdhci-am654",
  943. .probe_type = PROBE_PREFER_ASYNCHRONOUS,
  944. .pm = &sdhci_am654_dev_pm_ops,
  945. .of_match_table = sdhci_am654_of_match,
  946. },
  947. .probe = sdhci_am654_probe,
  948. .remove_new = sdhci_am654_remove,
  949. };
  950. module_platform_driver(sdhci_am654_driver);
  951. MODULE_DESCRIPTION("Driver for SDHCI Controller on TI's AM654 devices");
  952. MODULE_AUTHOR("Faiz Abbas <faiz_abbas@ti.com>");
  953. MODULE_LICENSE("GPL");