msdc_io.c 36 KB

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  1. /* Copyright Statement:
  2. *
  3. * This software/firmware and related documentation ("MediaTek Software") are
  4. * protected under relevant copyright laws. The information contained herein
  5. * is confidential and proprietary to MediaTek Inc. and/or its licensors.
  6. * Without the prior written permission of MediaTek inc. and/or its licensors,
  7. * any reproduction, modification, use or disclosure of MediaTek Software,
  8. * and information contained herein, in whole or in part, shall be strictly prohibited.
  9. */
  10. /* MediaTek Inc. (C) 2015. All rights reserved.
  11. *
  12. * BY OPENING THIS FILE, RECEIVER HEREBY UNEQUIVOCALLY ACKNOWLEDGES AND AGREES
  13. * THAT THE SOFTWARE/FIRMWARE AND ITS DOCUMENTATIONS ("MEDIATEK SOFTWARE")
  14. * RECEIVED FROM MEDIATEK AND/OR ITS REPRESENTATIVES ARE PROVIDED TO RECEIVER ON
  15. * AN "AS-IS" BASIS ONLY. MEDIATEK EXPRESSLY DISCLAIMS ANY AND ALL WARRANTIES,
  16. * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE IMPLIED WARRANTIES OF
  17. * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE OR NONINFRINGEMENT.
  18. * NEITHER DOES MEDIATEK PROVIDE ANY WARRANTY WHATSOEVER WITH RESPECT TO THE
  19. * SOFTWARE OF ANY THIRD PARTY WHICH MAY BE USED BY, INCORPORATED IN, OR
  20. * SUPPLIED WITH THE MEDIATEK SOFTWARE, AND RECEIVER AGREES TO LOOK ONLY TO SUCH
  21. * THIRD PARTY FOR ANY WARRANTY CLAIM RELATING THERETO. RECEIVER EXPRESSLY ACKNOWLEDGES
  22. * THAT IT IS RECEIVER'S SOLE RESPONSIBILITY TO OBTAIN FROM ANY THIRD PARTY ALL PROPER LICENSES
  23. * CONTAINED IN MEDIATEK SOFTWARE. MEDIATEK SHALL ALSO NOT BE RESPONSIBLE FOR ANY MEDIATEK
  24. * SOFTWARE RELEASES MADE TO RECEIVER'S SPECIFICATION OR TO CONFORM TO A PARTICULAR
  25. * STANDARD OR OPEN FORUM. RECEIVER'S SOLE AND EXCLUSIVE REMEDY AND MEDIATEK'S ENTIRE AND
  26. * CUMULATIVE LIABILITY WITH RESPECT TO THE MEDIATEK SOFTWARE RELEASED HEREUNDER WILL BE,
  27. * AT MEDIATEK'S OPTION, TO REVISE OR REPLACE THE MEDIATEK SOFTWARE AT ISSUE,
  28. * OR REFUND ANY SOFTWARE LICENSE FEES OR SERVICE CHARGE PAID BY RECEIVER TO
  29. * MEDIATEK FOR SUCH MEDIATEK SOFTWARE AT ISSUE.
  30. */
  31. #include "msdc.h"
  32. #include "msdc_io.h"
  33. #if defined(MMC_MSDC_DRV_CTP)
  34. #include <common.h>
  35. #include "api.h" //For invocation cache_clean_invalidate()
  36. #include "cache_api.h" //For invocation cache_clean_invalidate()
  37. #endif
  38. #if defined(MMC_MSDC_DRV_LK)
  39. #include <kernel/event.h>
  40. #include <platform/mt_irq.h>
  41. #endif
  42. #if defined(MMC_MSDC_DRV_CTP)
  43. #include "gpio.h"
  44. #if defined(MSDC_USE_DCM)
  45. #include "dcm.h"
  46. #endif
  47. #if !defined(FPGA_PLATFORM)
  48. #include "pmic.h"
  49. #include "clock_manager.h"
  50. #endif
  51. #endif
  52. ////////////////////////////////////////////////////////////////////////////////
  53. //
  54. // Section 1. Power Control -- Common for ASIC and FPGA
  55. //
  56. ////////////////////////////////////////////////////////////////////////////////
  57. //Note: MTKDRV_XXX are used by CTP
  58. #if defined(MTKDRV_PMIC) && defined(MTKDRV_PMIC_WRAP) && defined(MTKDRV_I2C)
  59. #include <upmu_hw.h>
  60. #else
  61. #define pmic_config_interface(RegNum, val, MASK, SHIFT)
  62. #define pmic_read_interface(RegNum, val, MASK, SHIFT)
  63. #endif
  64. u32 g_msdc0_io;
  65. u32 g_msdc1_io;
  66. u32 g_msdc2_io;
  67. u32 g_msdc3_io;
  68. u32 g_msdc0_flash;
  69. u32 g_msdc1_flash;
  70. u32 g_msdc2_flash;
  71. u32 g_msdc3_flash;
  72. #if defined(FPGA_PLATFORM)
  73. #define PWR_GPIO (0x10001E84) //Select Power On/Off
  74. #define PWR_GPIO_EO (0x10001E88) //Select Output/Input Direction
  75. #define PWR_MASK_CARD (0x1 << 8) //Vcc
  76. #define PWR_MASK_VOL_18 (0x1 << 9) //CLK/CMD/DAT for eMMC/SD + Vccq for eMMC
  77. #define PWR_MASK_VOL_33 (0x1 << 10) //CLK/CMD/DAT for eMMC/SD + Vccq for eMMC
  78. #define PWR_MASK_L4 (0x1 << 11)
  79. #define PWR_MSDC (PWR_MASK_CARD | PWR_MASK_VOL_18 | PWR_MASK_VOL_33 | PWR_MASK_L4)
  80. //#define FPGA_GPIO_DEBUG
  81. static void msdc_clr_gpio(u32 bits)
  82. {
  83. u32 l_val = 0;
  84. char *name;
  85. switch (bits) {
  86. case PWR_MASK_CARD:
  87. name = "card pwr";
  88. break;
  89. case PWR_MASK_VOL_18:
  90. name = "SD/eMMC bus pwer 1.8V";
  91. break;
  92. case PWR_MASK_VOL_33:
  93. name = "SD/eMMC bus pwer 3.3V";
  94. break;
  95. case PWR_MASK_L4:
  96. name = "L4";
  97. break;
  98. default:
  99. msdc_pr_err("[%s:%s]invalid value: 0x%x\n", __FILE__, __func__, bits);
  100. return;
  101. }
  102. MSDC_GET_FIELD(PWR_GPIO_EO, bits, l_val);
  103. //msdc_pr_info("====%s====%d\n", name, l_val);
  104. if (0 == l_val) {
  105. msdc_pr_info("check me! gpio for %s is input\n", name);
  106. MSDC_SET_FIELD(PWR_GPIO_EO, bits, 1);
  107. }
  108. /* check for set before */
  109. if (bits & MSDC_READ32(PWR_GPIO)) {
  110. msdc_pr_info("clear %s\n", name);
  111. MSDC_SET_FIELD(PWR_GPIO, bits, 0);
  112. //l_val = MSDC_READ32(PWR_GPIO);
  113. }
  114. #ifdef FPGA_GPIO_DEBUG
  115. {
  116. u32 val = 0;
  117. val = MSDC_READ32(PWR_GPIO);
  118. msdc_pr_err("[clr]PWR_GPIO[8-11]:0x%x\n", val);
  119. val = MSDC_READ32(PWR_GPIO_EO);
  120. msdc_pr_err("[clr]GPIO_DIR[8-11] :0x%x\n", val);
  121. }
  122. #endif
  123. }
  124. static void msdc_set_gpio(u32 bits)
  125. {
  126. u32 l_val = 0;
  127. char *name;
  128. switch (bits) {
  129. case PWR_MASK_CARD:
  130. name = "card pwr";
  131. break;
  132. case PWR_MASK_VOL_18:
  133. name = "SD/eMMC bus pwer 1.8V";
  134. break;
  135. case PWR_MASK_VOL_33:
  136. name = "SD/eMMC bus pwer 3.3V";
  137. break;
  138. case PWR_MASK_L4:
  139. name = "L4";
  140. break;
  141. default:
  142. msdc_pr_err("[%s:%s]invalid value: 0x%x\n", __FILE__, __func__, bits);
  143. return;
  144. }
  145. MSDC_GET_FIELD(PWR_GPIO_EO, bits, l_val);
  146. //msdc_pr_info("====%s====%d\n", name, l_val);
  147. if (0 == l_val) {
  148. msdc_pr_info("check me! gpio for %s is input\n", name);
  149. MSDC_SET_FIELD(PWR_GPIO_EO, bits, 1);
  150. }
  151. /* check for set before */
  152. if ((bits & MSDC_READ32(PWR_GPIO))==0) {
  153. msdc_pr_info("Set %s\n", name);
  154. MSDC_SET_FIELD(PWR_GPIO, bits, 1);
  155. //l_val = MSDC_READ32(PWR_GPIO);
  156. }
  157. #ifdef FPGA_GPIO_DEBUG
  158. {
  159. u32 val = 0;
  160. val = MSDC_READ32(PWR_GPIO);
  161. msdc_pr_err("[set]PWR_GPIO[8-11]:0x%x\n", val);
  162. val = MSDC_READ32(PWR_GPIO_EO);
  163. msdc_pr_err("[set]GPIO_DIR[8-11] :0x%x\n", val);
  164. }
  165. #endif
  166. }
  167. #endif
  168. #if defined(MMC_MSDC_DRV_CTP) && !defined(FPGA_PLATFORM)
  169. u32 hwPowerOn(MSDC_POWER powerId, MSDC_POWER_VOLTAGE powerVolt)
  170. {
  171. u32 ret;
  172. switch (powerId) {
  173. case MSDC_VEMC:
  174. if (powerVolt == VOL_3000) {
  175. pmic_config_interface(REG_VEMC_VOSEL, VEMC_VOSEL_3V, MASK_VEMC_VOSEL, SHIFT_VEMC_VOSEL);
  176. if (EMMC_VOL_ACTUAL != VOL_3000) {
  177. pmic_config_interface(REG_VEMC_VOSEL_CAL,
  178. VEMC_VOSEL_CAL_mV(EMMC_VOL_ACTUAL - VOL_3000),
  179. MASK_VEMC_VOSEL_CAL, SHIFT_VEMC_VOSEL_CAL);
  180. }
  181. } else if (powerVolt == VOL_3300) {
  182. pmic_config_interface(REG_VEMC_VOSEL, VEMC_VOSEL_3V3, MASK_VEMC_VOSEL, SHIFT_VEMC_VOSEL);
  183. } else {
  184. msdc_pr_err("Not support to Set VEMC_3V3 power to %d\n", powerVolt);
  185. }
  186. pmic_config_interface(REG_VEMC_EN, 1, MASK_VEMC_EN, SHIFT_VEMC_EN);
  187. break;
  188. case MSDC_VMC:
  189. if (powerVolt == VOL_3300 || powerVolt == VOL_3000)
  190. pmic_config_interface(REG_VMC_VOSEL, VMC_VOSEL_3V, MASK_VMC_VOSEL, SHIFT_VMC_VOSEL);
  191. else if (powerVolt == VOL_1800)
  192. pmic_config_interface(REG_VMC_VOSEL, VMC_VOSEL_1V8, MASK_VMC_VOSEL, SHIFT_VMC_VOSEL);
  193. else
  194. msdc_pr_err("Not support to Set VMC power to %d\n", powerVolt);
  195. pmic_config_interface(REG_VMC_EN, 1, MASK_VMC_EN, SHIFT_VMC_EN);
  196. break;
  197. case MSDC_VMCH:
  198. if (powerVolt == VOL_3000) {
  199. pmic_config_interface(REG_VMCH_VOSEL, VMCH_VOSEL_3V, MASK_VMCH_VOSEL, SHIFT_VMCH_VOSEL);
  200. if (SD_VOL_ACTUAL != VOL_3000) {
  201. pmic_config_interface(REG_VMCH_VOSEL_CAL,
  202. VMCH_VOSEL_CAL_mV(SD_VOL_ACTUAL - VOL_3000),
  203. MASK_VMCH_VOSEL_CAL, SHIFT_VMCH_VOSEL_CAL);
  204. }
  205. } else if (powerVolt == VOL_3300) {
  206. pmic_config_interface(REG_VMCH_VOSEL, VMCH_VOSEL_3V3, MASK_VMCH_VOSEL, SHIFT_VMCH_VOSEL);
  207. } else {
  208. msdc_pr_err("Not support to Set VMCH power to %d\n", powerVolt);
  209. }
  210. pmic_config_interface(REG_VMCH_EN, 1, MASK_VMCH_EN, SHIFT_VMCH_EN);
  211. break;
  212. default:
  213. msdc_pr_err("Not support to Set %d power on\n", powerId);
  214. break;
  215. }
  216. mdelay(100); /* requires before voltage stable */
  217. return 0;
  218. }
  219. u32 hwPowerDown(MSDC_POWER powerId)
  220. {
  221. switch (powerId) {
  222. case MSDC_VEMC:
  223. pmic_config_interface(REG_VEMC_EN, 0, MASK_VEMC_EN, SHIFT_VEMC_EN);
  224. break;
  225. case MSDC_VMC:
  226. pmic_config_interface(REG_VMC_EN, 0, MASK_VMC_EN, SHIFT_VMC_EN);
  227. break;
  228. case MSDC_VMCH:
  229. pmic_config_interface(REG_VMCH_EN, 0, MASK_VMCH_EN, SHIFT_VMCH_EN);
  230. break;
  231. default:
  232. msdc_pr_err("Not support to Set %d power down\n", powerId);
  233. break;
  234. }
  235. return 0;
  236. }
  237. static u32 msdc_ldo_power(u32 on, MSDC_POWER powerId, MSDC_POWER_VOLTAGE powerVolt, u32 *status)
  238. {
  239. if (on) { // want to power on
  240. if (*status == 0) { // can power on
  241. msdc_pr_info("msdc LDO<%d> power on<%d>\n", powerId, powerVolt);
  242. hwPowerOn(powerId, powerVolt);
  243. *status = powerVolt;
  244. } else if (*status == powerVolt) {
  245. msdc_pr_info("msdc LDO<%d><%d> power on again!\n", powerId, powerVolt);
  246. } else { // for sd3.0 later
  247. msdc_pr_info("msdc LDO<%d> change<%d> to <%d>\n", powerId, *status, powerVolt);
  248. hwPowerDown(powerId);
  249. hwPowerOn(powerId, powerVolt);
  250. *status = powerVolt;
  251. }
  252. } else { // want to power off
  253. if (*status != 0) { // has been powerred on
  254. msdc_pr_info("msdc LDO<%d> power off\n", powerId);
  255. hwPowerDown(powerId);
  256. *status = 0;
  257. } else {
  258. msdc_pr_info("LDO<%d> not power on\n", powerId);
  259. }
  260. }
  261. return 0;
  262. }
  263. #endif /* defined(MMC_MSDC_DRV_CTP) && !defined(FPGA_PLATFORM) */
  264. #if defined(FPGA_PLATFORM)
  265. void msdc_card_power(struct mmc_host *host, u32 on)
  266. {
  267. MSG(CFG, "[SD%d] Turn %s card power \n", host->id, on ? "on" : "off");
  268. switch (host->id) {
  269. case 0:
  270. if (on) {
  271. //On V6/V7 FPGA, card power need to be on/off
  272. //On HAPS FPGA, card power maybe always on.
  273. //Left this code for safety prevent from card power not always not.
  274. msdc_set_gpio(PWR_MASK_CARD);
  275. } else {
  276. msdc_clr_gpio(PWR_MASK_CARD);
  277. }
  278. mdelay(10);
  279. break;
  280. default:
  281. //No MSDC1 in FPGA
  282. break;
  283. }
  284. //add for fpga debug
  285. msdc_set_gpio(PWR_MASK_L4);
  286. }
  287. void msdc_host_power(struct mmc_host *host, u32 on, u32 level)
  288. {
  289. MSG(CFG, "[SD%d] Turn %s host power \n", host->id, on ? "on" : "off");
  290. // GPO[3:2] = {LVL_PWR33, LVL_PWR18};
  291. msdc_clr_gpio(PWR_MASK_VOL_18);
  292. msdc_clr_gpio(PWR_MASK_VOL_33);
  293. switch (host->id) {
  294. case 0:
  295. if (on) {
  296. if (level == VOL_1800)
  297. msdc_set_gpio(PWR_MASK_VOL_18);
  298. else
  299. msdc_set_gpio(PWR_MASK_VOL_33);
  300. }
  301. mdelay(10);
  302. break;
  303. default:
  304. //No MSDC1 in FPGA
  305. break;
  306. }
  307. //add for fpga debug
  308. msdc_set_gpio(PWR_MASK_L4);
  309. }
  310. #else
  311. void msdc_card_power(struct mmc_host *host, u32 on)
  312. {
  313. //Only CTP support power on/off for verification purose.
  314. //Preload and LK need not touch power since it is default on
  315. MSG(CFG, "[SD%d] Turn %s card power \n", host->id, on ? "on" : "off");
  316. #if defined(MMC_MSDC_DRV_CTP)
  317. switch (host->id) {
  318. case 0:
  319. msdc_ldo_power(on, MSDC_VEMC, VOL_3000, &g_msdc0_flash);
  320. mdelay(10);
  321. break;
  322. case 1:
  323. msdc_ldo_power(on, MSDC_VMCH, VOL_3000, &g_msdc1_flash);
  324. mdelay(10);
  325. break;
  326. case 2:
  327. if (on && (host->cur_pwr < VOL_2000) ) {
  328. //For MTK SDIO device initialized at 1.8V, use external source of 1.8V
  329. //So we just turn VMCH off
  330. on = 0;
  331. }
  332. msdc_ldo_power(on, MSDC_VMCH, VOL_3000, &g_msdc2_flash);
  333. mdelay(10);
  334. break;
  335. default:
  336. break;
  337. }
  338. #endif
  339. }
  340. void msdc_host_power(struct mmc_host *host, u32 on, u32 level)
  341. {
  342. //Only CTP support power on/off for verification purose.
  343. //Preload and LK need not touch power since it is default on
  344. #if defined(MMC_MSDC_DRV_CTP)
  345. u32 card_on = on;
  346. if (host->id != 0) {
  347. host->cur_pwr = level;
  348. }
  349. msdc_set_tdsel_wrap(host);
  350. msdc_set_rdsel_wrap(host);
  351. msdc_set_driving(host, &msdc_cap[host->id]);
  352. MSG(CFG, "[SD%d] Turn %s host power \n", host->id, on ? "on" : "off");
  353. switch (host->id) {
  354. case 0:
  355. //no need change;
  356. break;
  357. case 1:
  358. msdc_ldo_power(on, MSDC_VMC, level, &g_msdc1_io);
  359. mdelay(10);
  360. break;
  361. case 3:
  362. //For MSDC with SD card, not for SDIO
  363. msdc_ldo_power(on, MSDC_VMC, level, &g_msdc2_io);
  364. mdelay(10);
  365. break;
  366. default:
  367. break;
  368. }
  369. #endif
  370. }
  371. void msdc_dump_ldo_sts(struct mmc_host *host)
  372. {
  373. #if defined(MTK_MSDC_BRINGUP_DEBUG)
  374. u32 ldo_en = 0, ldo_vol = 0;
  375. pmic_read_interface(REG_VEMC_EN, &ldo_en, MASK_VEMC_EN,
  376. SHIFT_VEMC_EN);
  377. pmic_read_interface(REG_VEMC_VOSEL, &ldo_vol, MASK_VEMC_VOSEL,
  378. SHIFT_VEMC_VOSEL);
  379. msdc_pr_err(" VEMC_EN=0x%x, should:1b'1, "
  380. "VEMC_VOL=0x%x, should:3b'011(3.0V)\n",
  381. ldo_en, ldo_vol);
  382. #endif
  383. }
  384. #endif
  385. void msdc_power(struct mmc_host *host, u8 mode)
  386. {
  387. if (mode == MMC_POWER_ON || mode == MMC_POWER_UP) {
  388. msdc_pin_config(host, MSDC_PIN_PULL_UP);
  389. msdc_host_power(host, 1, host->cur_pwr);
  390. msdc_card_power(host, 1);
  391. msdc_clock(host, 1);
  392. } else {
  393. msdc_clock(host, 0);
  394. msdc_host_power(host, 0, host->cur_pwr);
  395. msdc_card_power(host, 0);
  396. msdc_pin_config(host, MSDC_PIN_PULL_DOWN);
  397. }
  398. }
  399. /**************************************************************/
  400. /* Section 2: Clock */
  401. /**************************************************************/
  402. #if !defined(FPGA_PLATFORM)
  403. u32 hclks_msdc0[] = { MSDC0_SRC_0, MSDC0_SRC_1};
  404. /* msdc1/2 clock source reference value is 200M */
  405. u32 hclks_msdc1[] = { MSDC1_SRC_0, MSDC1_SRC_1, MSDC1_SRC_2};
  406. u32 hclks_msdc3[] = { MSDC3_SRC_0, MSDC3_SRC_1, MSDC3_SRC_2, MSDC3_SRC_3,
  407. MSDC3_SRC_4, MSDC3_SRC_5, MSDC3_SRC_6, MSDC3_SRC_7};
  408. u32 *hclks_msdc_all[] = {
  409. hclks_msdc0,
  410. hclks_msdc1,
  411. hclks_msdc3,
  412. };
  413. void msdc_dump_clock_sts(struct mmc_host *host)
  414. {
  415. #if defined(MTK_MSDC_BRINGUP_DEBUG)
  416. #define MSDC_TOPCKGEN_REG_BASE 0x10000000
  417. #define MSDC_INFRACFG_AO_REG_BASE 0x10001000
  418. msdc_pr_err(
  419. " topckgen [0x%x]=0x%x(should bit[1:0]=01b, bit[7]=0, bit[10:8]=01b, bit[15]=0)\n",
  420. MSDC_TOPCKGEN_REG_BASE + 0x70, MSDC_READ32(MSDC_TOPCKGEN_REG_BASE + 0x70));
  421. msdc_pr_err(
  422. " pericfg [0x%x]=0x%x(should bit[2]=0b)\n",
  423. MSDC_INFRACFG_AO_REG_BASE + 0x94, MSDC_READ32(MSDC_INFRACFG_AO_REG_BASE + 0x94));
  424. msdc_pr_err(
  425. " pericfg [0x%x]=0x%x(should bit[9]=0b)\n",
  426. MSDC_INFRACFG_AO_REG_BASE + 0xc8, MSDC_READ32(MSDC_INFRACFG_AO_REG_BASE + 0xc8));
  427. #endif
  428. }
  429. #endif
  430. void msdc_clock(struct mmc_host *host, int on)
  431. {
  432. //Only CTP need enable/disable clock
  433. //Preloader will turn on clock with predefined clock source and module need not to touch clock setting.
  434. //LK will use preloader's setting and need not to touch clock setting.
  435. #if !defined(FPGA_PLATFORM)
  436. #if defined(MMC_MSDC_DRV_CTP)
  437. //int clk_id[MSDC_MAX_NUM] = {MT_CG_INFRA_MSDC_0, MT_CG_INFRA_MSDC_1, MT_CG_INFRA_MSDC_2, MT_CG_INFRA_MSDC_3};
  438. MSG(CFG, "[SD%d] Turn %s %s clock \n", host->id, on ? "on" : "off", "host");
  439. if (on) {
  440. //INFRA_enable_clock(clk_id[host->id]);
  441. if (host->id == 0) {
  442. MSDC_SET_BIT32(MSDC0_CLOCK_UNGATE_REG, MSDC0_CLOCK_CG_SECURE);
  443. MSDC_SET_BIT32(MSDC0_CLOCK_UNGATE_REG, MSDC0_CLOCK_CG_NORMAL);
  444. MSDC_SET_BIT32(MSDC0_CLOCK_UNGATE_REG, MSDC0_CLOCK_CG_MD);
  445. } else if (host->id == 1)
  446. MSDC_SET_BIT32(MSDC1_CLOCK_UNGATE_REG, MSDC1_CLOCK_CG);
  447. else if (host->id == 3)
  448. MSDC_SET_BIT32(MSDC3_CLOCK_UNGATE_REG, MSDC3_CLOCK_CG);
  449. } else {
  450. //INFRA_disable_clock(clk_id[host->id]);
  451. if (host->id == 0) {
  452. MSDC_SET_BIT32(MSDC0_CLOCK_GATE_REG, MSDC0_CLOCK_CG_SECURE);
  453. MSDC_SET_BIT32(MSDC0_CLOCK_GATE_REG, MSDC0_CLOCK_CG_NORMAL);
  454. MSDC_SET_BIT32(MSDC0_CLOCK_GATE_REG, MSDC0_CLOCK_CG_MD);
  455. } else if (host->id == 1)
  456. MSDC_SET_BIT32(MSDC1_CLOCK_GATE_REG, MSDC1_CLOCK_CG);
  457. else if (host->id == 3)
  458. MSDC_SET_BIT32(MSDC3_CLOCK_GATE_REG, MSDC3_CLOCK_CG);
  459. }
  460. #endif
  461. msdc_dump_clock_sts(host);
  462. #endif
  463. }
  464. /* perloader will pre-set msdc pll and the mux channel of msdc pll */
  465. /* note: pll will not changed */
  466. void msdc_config_clksrc(struct mmc_host *host, int clksrc)
  467. {
  468. #if !defined(FPGA_PLATFORM)
  469. #if defined(MMC_MSDC_DRV_PRELOADER) || defined(MMC_MSDC_DRV_LK)
  470. host->pll_mux_clk = MSDC0_CLKSRC_DEFAULT;
  471. host->src_clk = msdc_get_hclk(host->id, MSDC0_CLKSRC_DEFAULT);
  472. #endif
  473. #if defined(MMC_MSDC_DRV_CTP)
  474. if (host->card && mmc_card_hs400(host->card)) {
  475. /* if card is in hs400 mode, force clk source to be 400MHz */
  476. clksrc = MSDC0_CLKSRC_400MHZ;
  477. }
  478. host->pll_mux_clk = clksrc;
  479. host->src_clk = msdc_get_hclk(host->id, clksrc);
  480. /* The following section shall be confirmed by clock owner during porting */
  481. if (host->id == 0) {
  482. MSDC_SET_FIELD((TOPCKGEN_BASE + 0x0140), 0x7 << 16, host->pll_mux_clk);
  483. } else if (host->id == 1) {
  484. MSDC_SET_FIELD((TOPCKGEN_BASE + 0x0140), 0x7 << 24, host->pll_mux_clk);
  485. } else if (host->id == 3) {
  486. MSDC_SET_FIELD((TOPCKGEN_BASE + 0x0150), 0x7 << 8, host->pll_mux_clk);
  487. }
  488. MSDC_WRITE32(TOPCKGEN_BASE+0x04, 0x07FFFFFF);
  489. #endif
  490. #else
  491. host->src_clk = msdc_get_hclk(host->id, clksrc);
  492. #endif
  493. }
  494. /**************************************************************/
  495. /* Section 3: GPIO and Pad */
  496. /**************************************************************/
  497. #if !defined(FPGA_PLATFORM)
  498. void msdc_dump_padctl_by_id(u32 id)
  499. {
  500. #if defined(MTK_MSDC_BRINGUP_DEBUG)
  501. if (id == 0) {
  502. msdc_pr_err(
  503. "MSDC0_GPIO_MODE_TRAP[0x%x] =0x%x\t\n",
  504. MSDC0_GPIO_MODE_TRAP, MSDC_READ32(MSDC0_GPIO_MODE_TRAP));
  505. msdc_pr_err(
  506. "MSDC0 GPIO0[0x%x] =0x%x\tshould:32'b.001.001 .001.001 .001.001 ........\n",
  507. MSDC0_GPIO_MODE0, MSDC_READ32(MSDC0_GPIO_MODE0));
  508. msdc_pr_err(
  509. "MSDC0 GPIO1 [0x%x] =0x%x\tshould:32'b........ .001.001 .001.001 .001.001\n",
  510. MSDC0_GPIO_MODE1, MSDC_READ32(MSDC0_GPIO_MODE1));
  511. msdc_pr_err(
  512. "MSDC0 SMT [0x%x] =0x%x\tshould:32'b........ ........ ....1111 11111111\n",
  513. MSDC0_GPIO_SMT, MSDC_READ32(MSDC0_GPIO_SMT));
  514. msdc_pr_err(
  515. "MSDC0 IES [0x%x] =0x%x\tshould:32'b........ ........ ....1111 11111111n",
  516. MSDC0_GPIO_IES, MSDC_READ32(MSDC0_GPIO_IES));
  517. msdc_pr_err(
  518. "MSDC0 PUPD [0x%x] =0x%x\tshould:32'b........ ........ ....0100 00000001\n",
  519. MSDC0_GPIO_PUPD, MSDC_READ32(MSDC0_GPIO_PUPD));
  520. msdc_pr_err(
  521. "MSDC0 R0 [0x%x] =0x%x\tshould:32'b........ ........ ....1011 11111110\n",
  522. MSDC0_GPIO_R0, MSDC_READ32(MSDC0_GPIO_R0));
  523. msdc_pr_err(
  524. "MSDC0 R1 [0x%x] =0x%x\tshould:32'b........ ........ ....0100 00000001\n",
  525. MSDC0_GPIO_R1, MSDC_READ32(MSDC0_GPIO_R1));
  526. msdc_pr_err(
  527. "MSDC0 TDSEL [0x%x] =0x%x\tshould:32'b........ ....0000 00000000 00000000\n",
  528. MSDC0_GPIO_TDSEL, MSDC_READ32(MSDC0_GPIO_TDSEL));
  529. msdc_pr_err(
  530. "MSDC0 RDSEL [0x%x] =0x%x\tshould:32'b..000000 00000000 00000000 00000000n",
  531. MSDC0_GPIO_RDSEL, MSDC_READ32(MSDC0_GPIO_RDSEL));
  532. msdc_pr_err(
  533. "MSDC0 DRV [0x%x] =0x%x\tshould: 32'b........ ........ .0010010 01001001\n",
  534. MSDC0_GPIO_DRV, MSDC_READ32(MSDC0_GPIO_DRV));
  535. }
  536. else if (id == 1) {
  537. } else if (id == 3) {
  538. }
  539. #endif
  540. }
  541. void msdc_set_pin_mode(struct mmc_host *host)
  542. {
  543. if (host->id == 0) {
  544. /* default meet */
  545. } else if (host->id == 1) {
  546. } else if (host->id == 3) {
  547. }
  548. }
  549. void msdc_set_ies_by_id(u32 id, int set_ies)
  550. {
  551. if (id == 0) {
  552. /* default meet */
  553. } else if (id == 1) {
  554. } else if (id == 3) {
  555. }
  556. }
  557. void msdc_set_smt_by_id(u32 id, int set_smt)
  558. {
  559. if (id == 0) {
  560. /* default meet */
  561. } else if (id == 1) {
  562. } else if (id == 3) {
  563. }
  564. }
  565. void msdc_set_tdsel_by_id(u32 id, u32 flag, u32 value)
  566. {
  567. if (id == 0) {
  568. /* default meet */
  569. } else if (id == 1) {
  570. } else if (id == 3) {
  571. }
  572. }
  573. void msdc_set_rdsel_by_id(u32 id, u32 flag, u32 value)
  574. {
  575. if (id == 0) {
  576. /* default meet */
  577. } else if (id == 1) {
  578. } else if (id == 3) {
  579. }
  580. }
  581. void msdc_set_sr_by_id(u32 id, int clk, int cmd, int dat, int rst, int ds)
  582. {
  583. if (id == 0) {
  584. /* no need in msdc0 */
  585. } else if (id == 1) {
  586. } else if (id == 3) {
  587. }
  588. }
  589. void msdc_set_driving_by_id(u32 id, struct msdc_cust *msdc_cap)
  590. {
  591. switch (id) {
  592. case 0:
  593. MSDC_SET_FIELD(MSDC0_GPIO_DRV, 0x7 << 9,
  594. msdc_cap->ds_drv);
  595. MSDC_SET_FIELD(MSDC0_GPIO_DRV, 0x7 << 12,
  596. msdc_cap->rst_drv);
  597. MSDC_SET_FIELD(MSDC0_GPIO_DRV, 0x7 << 3,
  598. msdc_cap->cmd_drv);
  599. MSDC_SET_FIELD(MSDC0_GPIO_DRV, 0x7 << 0,
  600. msdc_cap->clk_drv);
  601. MSDC_SET_FIELD(MSDC0_GPIO_DRV, 0x7 << 6,
  602. msdc_cap->dat_drv);
  603. break;
  604. case 1:
  605. default:
  606. break;
  607. }
  608. }
  609. /* msdc pin config
  610. * MSDC0
  611. * PUPD/RO/R1
  612. * 0/0/0: High-Z
  613. * 0/0/1: Pull-up with 50Kohm
  614. * 0/1/0: Pull-up with 50Kohm
  615. * 0/1/1: Pull-up with 10Kohm//50Kohm
  616. * 1/0/0: High-Z
  617. * 1/0/1: Pull-down with 10Kohm
  618. * 1/1/0: Pull-down with 50Kohm
  619. * 1/1/1: Pull-down with 10Kohm//50Kohm
  620. */
  621. void msdc_pin_config_by_id(u32 id, u32 mode)
  622. {
  623. if (id == 0) {
  624. /* default meet
  625. * CMD:PU10K; CLK:PD50K; DAT:PU10K
  626. * DSL:PD50K; RSTB:PU10K
  627. */
  628. } else if (id == 1) {
  629. } else if (id == 3) {
  630. }
  631. }
  632. /**************************************************************/
  633. /* Section 4: MISC */
  634. /**************************************************************/
  635. /* make sure the pad is msdc mode */
  636. #if !defined(FPGA_PLATFORM)
  637. void msdc_set_tdsel_wrap(struct mmc_host *host)
  638. {
  639. if (host->cur_pwr == VOL_1800)
  640. msdc_set_tdsel_by_id(host->id, MSDC_TDRDSEL_1V8, 0);
  641. else
  642. msdc_set_tdsel_by_id(host->id, MSDC_TDRDSEL_3V, 0);
  643. }
  644. void msdc_set_rdsel_wrap(struct mmc_host *host)
  645. {
  646. if (host->cur_pwr == VOL_1800)
  647. msdc_set_rdsel_by_id(host->id, MSDC_TDRDSEL_1V8, 0);
  648. else
  649. msdc_set_rdsel_by_id(host->id, MSDC_TDRDSEL_3V, 0);
  650. }
  651. void msdc_gpio_and_pad_init(struct mmc_host *host)
  652. {
  653. /* set smt enable */
  654. msdc_set_smt(host, 1);
  655. /* set pull enable */
  656. msdc_pin_config(host, MSDC_PIN_PULL_UP);
  657. /* set gpio to msdc mode */
  658. msdc_set_pin_mode(host);
  659. /* set driving */
  660. msdc_set_driving(host, &msdc_cap[host->id]);
  661. /* set tdsel and rdsel */
  662. msdc_set_tdsel_wrap(host);
  663. msdc_set_rdsel_wrap(host);
  664. msdc_dump_padctl_by_id(host->id);
  665. }
  666. #endif
  667. #endif
  668. /**************************************************************/
  669. /* Section 5: Hard-code timing */
  670. /**************************************************************/
  671. #if defined(SLT) || defined(MMC_MSDC_DRV_CTP)
  672. /* copy from autok.c */
  673. #define AUTOK_CKGEN_VALUE (0)
  674. #define AUTOK_CMD_LATCH_EN_HS400_PORT0_VALUE (2)
  675. #define AUTOK_CRC_LATCH_EN_HS400_PORT0_VALUE (2)
  676. #define AUTOK_CMD_LATCH_EN_DDR208_PORT3_VALUE (2)
  677. #define AUTOK_CRC_LATCH_EN_DDR208_PORT3_VALUE (2)
  678. #define AUTOK_CMD_LATCH_EN_HS200_PORT0_VALUE (1)
  679. #define AUTOK_CRC_LATCH_EN_HS200_PORT0_VALUE (1)
  680. #define AUTOK_CMD_LATCH_EN_SDR104_PORT1_VALUE (1)
  681. #define AUTOK_CRC_LATCH_EN_SDR104_PORT1_VALUE (1)
  682. #define AUTOK_CMD_LATCH_EN_HS_VALUE (1)
  683. #define AUTOK_CRC_LATCH_EN_HS_VALUE (1)
  684. void msdc_apply_timing(unsigned int id)
  685. {
  686. struct mmc_host *host;
  687. msdc_priv_t *priv;
  688. int mode;
  689. u32 base;
  690. u32 hz, div;
  691. host = mmc_get_host(id);
  692. priv = host->priv;
  693. base = host->base;
  694. hz = host->cur_bus_clk;
  695. MSDC_GET_FIELD(MSDC_CFG, MSDC_CFG_CKMOD, mode);
  696. MSDC_GET_FIELD(MSDC_CFG, MSDC_CFG_CKDIV, div);
  697. if ((id == 0) && (mode == 3)) {
  698. MSDC_SET_FIELD(host->base + 0x4, (0x1 << 1), 0); /* MSDC_IOCON[MSDC_IOCON_RSPL] */
  699. MSDC_SET_FIELD(host->base + 0x4, (0x1 << 2), 0); /* MSDC_IOCON[MSDC_IOCON_R_D_SMPL] */
  700. MSDC_SET_FIELD(host->base + 0xb4, (0xf << 8), 3); /* MSDC_PB1_STOP_DLY_SEL */
  701. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 20), 1); /* MSDC_PB1_POP_MARK_WATER */
  702. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 19), 1); /* MSDC_PB1_STATE_CLR */
  703. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 18), 1); /* Reserved bit */
  704. MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 29), 0); /* MSDC_PB2_CRCSTSENSEL*/
  705. MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 16), 0); /* MSDC_PB2_CFG_CRCSTS_SEL*/
  706. //MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 29), AUTOK_CRC_LATCH_EN_HS400_PORT0_VALUE);
  707. //MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 16), AUTOK_CMD_LATCH_EN_HS400_PORT0_VALUE);
  708. MSDC_SET_FIELD(host->base + 0x208, (0x1 << 3), 0); /* MSDC_PB2_CFGCRCSTSEDGE, write crc stage edge */
  709. MSDC_SET_FIELD(host->base + 0x208, (0x7 << 21), 1); /* MSDC_EMMC50_CFG_READ_DAT_CNT */
  710. MSDC_SET_FIELD(host->base + 0x228, (0x1 << 24), 0); /* SDC_FIFO_CFG_WR_VALID_SEL */
  711. MSDC_SET_FIELD(host->base + 0x228, (0x1 << 25), 0); /* SDC_FIFO_CFG_RD_VALID_SEL */
  712. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x0, (0x1 << 13), 0x0); /* EMMC_TOP_CONTROL[PAD_DAT_RD_RXDLY_SEL] */
  713. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x0, (0x1f << 7), 0x0); /* EMMC_TOP_CONTROL[PAD_DAT_RD_RXDLY] */
  714. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x0, (0x1 << 12), 0x0); /* EMMC_TOP_CONTROL[PAD_DAT_RD_RXDLY2_SEL] */
  715. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x0, (0x1f << 2), 0x0); /* EMMC_TOP_CONTROL[PAD_DAT_RD_RXDLY2] */
  716. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x0, (0x1 << 15), 0x1); /* EMMC_TOP_CONTROL[SDC_RX_ENH_EN] */
  717. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x4, (0x1 << 11), 0x1); /* EMMC_TOP_CMD[PAD_CMD_RXDLY] */
  718. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x4, (0x1f << 5), 0x9); /* EMMC_TOP_CMD[PAD_CMD_RXDLY_SEL] */
  719. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x4, (0x1 << 10), 0x0); /* EMMC_TOP_CMD[PAD_CMD_RXDLY2] */
  720. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x4, (0x1f << 0), 0x0); /* EMMC_TOP_CMD[PAD_CMD_RXDLY2_SEL] */
  721. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x4, (0x1f << 12), 0x0); /* EMMC_TOP_CMD_LEVEL1[PAD_CMD_TX_DLY] */
  722. MSDC_WRITE32(MSDC0_TOP_BASE + 0x8, 0x3); /* EMMC50_PAD_CTL0 */
  723. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0xC, (0x1 << 16), 0x1); /* EMMC50_PAD_DS_TUNE[PAD_DS_DLY_SEL] */
  724. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0xC, (0x1f << 10), 0xA); /* EMMC50_PAD_DS_TUNE[PAD_DS_DLY1] */
  725. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0xC, (0x1 << 15), 0x0); /* EMMC50_PAD_DS_TUNE[PAD_DS_DLY2_SEL] */
  726. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0xC, (0x1 << 5), 0x0); /* EMMC50_PAD_DS_TUNE[PAD_DS_DLY2] */
  727. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0xC, (0x1f << 0), 0xC); /* EMMC50_PAD_DS_TUNE[PAD_DS_DLY3] */
  728. } else if ((id == 0) && (div == 0)) {
  729. MSDC_SET_FIELD(host->base + 0x4, (0x1 << 1), 0x0); /* MSDC_IOCON[MSDC_IOCON_RSPL] */
  730. MSDC_SET_FIELD(host->base + 0x4, (0x1 << 2), 0x0); /* MSDC_IOCON[MSDC_IOCON_R_D_SMPL] */
  731. MSDC_SET_FIELD(host->base + 0xb0, (0x1 << 3), 0); /* MSDC_PB1_STOP_DLY_SEL */
  732. MSDC_SET_FIELD(host->base + 0xb4, (0xf << 8), 3); /* MSDC_PB1_STOP_DLY_SEL */
  733. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 20), 1); /* MSDC_PB1_POP_MARK_WATER */
  734. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 19), 1); /* MSDC_PB1_STATE_CLR */
  735. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 18), 1); /* Reserved bit */
  736. MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 29), 0);
  737. MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 16), 0);
  738. //MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 29), AUTOK_CRC_LATCH_EN_HS200_PORT0_VALUE);
  739. //MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 16), AUTOK_CMD_LATCH_EN_HS200_PORT0_VALUE);
  740. MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 28), 1);
  741. MSDC_SET_FIELD(host->base + 0xb8, (0x1 << 25), 0); /* MSDC_PB2_CFGCRCSTSEDGE, write crc stage edge */
  742. MSDC_SET_FIELD(host->base + 0x208, (0x1 << 3), 0); /* MSDC_PB2_CFGCRCSTSEDGE, write crc stage edge */
  743. MSDC_SET_FIELD(host->base + 0x208, (0x7 << 21), 7); /* MSDC_EMMC50_CFG_READ_DAT_CNT */
  744. MSDC_SET_FIELD(host->base + 0x228, (0x1 << 24), 0); /* SDC_FIFO_CFG_WR_VALID_SEL */
  745. MSDC_SET_FIELD(host->base + 0x228, (0x1 << 25), 0); /* SDC_FIFO_CFG_RD_VALID_SEL */
  746. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x0, (0x1 << 13), 0x1); /* EMMC_TOP_CONTROL[PAD_DAT_RD_RXDLY_SEL] */
  747. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x0, (0x1f << 7), 0x4); /* EMMC_TOP_CONTROL[PAD_DAT_RD_RXDLY] */
  748. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x0, (0x1 << 12), 0x0); /* EMMC_TOP_CONTROL[PAD_DAT_RD_RXDLY2_SEL] */
  749. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x0, (0x1f << 2), 0x0); /* EMMC_TOP_CONTROL[PAD_DAT_RD_RXDLY2] */
  750. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x0, (0x1 << 15), 0x1); /* EMMC_TOP_CONTROL[SDC_RX_ENH_EN] */
  751. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x4, (0x1 << 11), 0x1); /* EMMC_TOP_CMD[PAD_CMD_RXDLY] */
  752. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x4, (0x1f << 5), 0x7); /* EMMC_TOP_CMD[PAD_CMD_RXDLY_SEL] */
  753. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x4, (0x1 << 10), 0x0); /* EMMC_TOP_CMD[PAD_CMD_RXDLY2] */
  754. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x4, (0x1f << 0), 0x0); /* EMMC_TOP_CMD[PAD_CMD_RXDLY2_SEL] */
  755. MSDC_SET_FIELD(MSDC0_TOP_BASE + 0x4, (0x1f << 12), 0x0); /* EMMC_TOP_CMD_LEVEL1[PAD_CMD_TX_DLY] */
  756. MSDC_WRITE32(MSDC0_TOP_BASE + 0x8, 0x3); /* EMMC50_PAD_CTL0 */
  757. MSDC_WRITE32(MSDC0_TOP_BASE + 0xC, 0x0); /* EMMC50_PAD_DS_TUNE */
  758. } else if ((id == 0) && (mode == 2)) {
  759. MSDC_SET_FIELD(host->base + 0x4, (0x1 << 4), 0x1); /* MSDC_IOCON[MSDC_IOCON_RSPL] */
  760. MSDC_SET_FIELD(host->base + 0xb4, (0xf << 8), 3); /* MSDC_PB1_STOP_DLY_SEL */
  761. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 20), 1); /* MSDC_PB1_POP_MARK_WATER */
  762. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 19), 1); /* MSDC_PB1_STATE_CLR */
  763. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 18), 1); /* Reserved bit */
  764. MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 29), AUTOK_CRC_LATCH_EN_HS_VALUE);
  765. MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 16), AUTOK_CMD_LATCH_EN_HS_VALUE);
  766. MSDC_SET_FIELD(host->base + 0xb8, (0x1 << 28), 1);
  767. MSDC_SET_FIELD(host->base + 0xb8, (0x1 << 25), 0); /* MSDC_PB2_CFGCRCSTSEDGE, write crc stage edge */
  768. MSDC_SET_FIELD(host->base + 0x208, (0x1 << 3), 0); /* MSDC_PB2_CFGCRCSTSEDGE, write crc stage edge */
  769. MSDC_SET_FIELD(host->base + 0x208, (0x7 << 21), 7); /* MSDC_EMMC50_CFG_READ_DAT_CNT */
  770. MSDC_SET_FIELD(host->base + 0x228, (0x1 << 24), 0); /* SDC_FIFO_CFG_WR_VALID_SEL */
  771. MSDC_SET_FIELD(host->base + 0x228, (0x1 << 25), 0); /* SDC_FIFO_CFG_RD_VALID_SEL */
  772. MSDC_WRITE32(MSDC0_TOP_BASE + 0x0, 0x0); /* EMMC50_PAD_DS_TUNE */
  773. MSDC_WRITE32(MSDC0_TOP_BASE + 0x4, 0x0); /* EMMC50_PAD_DS_TUNE */
  774. MSDC_WRITE32(MSDC0_TOP_BASE + 0x8, 0x0); /* EMMC50_PAD_DS_TUNE */
  775. MSDC_WRITE32(MSDC0_TOP_BASE + 0xC, 0x0); /* EMMC50_PAD_DS_TUNE */
  776. } else if (id == 0) {
  777. MSDC_SET_FIELD(host->base + 0x4, (0x1 << 4), 0x0); /* MSDC_IOCON[MSDC_IOCON_RSPL] */
  778. MSDC_SET_FIELD(host->base + 0x228, (0x1 << 24), 0); /* SDC_FIFO_CFG_WR_VALID_SEL */
  779. MSDC_SET_FIELD(host->base + 0x228, (0x1 << 25), 0); /* SDC_FIFO_CFG_RD_VALID_SEL */
  780. MSDC_SET_FIELD(host->base + 0xb4, (0xf << 8), 3); /* MSDC_PB1_STOP_DLY_SEL */
  781. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 20), 1); /* MSDC_PB1_POP_MARK_WATER */
  782. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 19), 1); /* MSDC_PB1_STATE_CLR */
  783. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 18), 1); /* Reserved bit */
  784. MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 29), AUTOK_CRC_LATCH_EN_HS_VALUE);
  785. MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 16), AUTOK_CMD_LATCH_EN_HS_VALUE);
  786. MSDC_SET_FIELD(host->base + 0xb8, (0x1 << 28), 1);
  787. MSDC_SET_FIELD(host->base + 0xb8, (0x1 << 25), 0); /* MSDC_PB2_CFGCRCSTSEDGE, write crc stage edge */
  788. MSDC_WRITE32(MSDC0_TOP_BASE + 0x0, 0x0); /* EMMC50_PAD_DS_TUNE */
  789. MSDC_WRITE32(MSDC0_TOP_BASE + 0x4, 0x0); /* EMMC50_PAD_DS_TUNE */
  790. MSDC_WRITE32(MSDC0_TOP_BASE + 0x8, 0x0); /* EMMC50_PAD_DS_TUNE */
  791. MSDC_WRITE32(MSDC0_TOP_BASE + 0xC, 0x0); /* EMMC50_PAD_DS_TUNE */
  792. } else if ((id == 1) && (mode == 1)) {
  793. MSDC_SET_FIELD(host->base + 0x4, (0x1 << 1), 0x0); /*MSDC_IOCON[MSDC_IOCON_RSPL] */
  794. MSDC_SET_FIELD(host->base + 0xb0, (0x1 << 3), 0x0);
  795. MSDC_SET_FIELD(host->base + 0xb4, (0xf << 8), 3); /* MSDC_PB1_STOP_DLY_SEL */
  796. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 20), 1); /* MSDC_PB1_POP_MARK_WATER */
  797. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 19), 1); /* MSDC_PB1_STATE_CLR */
  798. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 18), 1); /* Reserved bit */
  799. MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 29), 0);
  800. MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 16), 0);
  801. MSDC_SET_FIELD(host->base + 0xb8, (0x1 << 28), 1);
  802. MSDC_SET_FIELD(host->base + 0xb8, (0x1 << 25), 0x0);
  803. MSDC_SET_FIELD(host->base + 0x228, (0x1 << 24), 0); /* SDC_FIFO_CFG_WR_VALID_SEL */
  804. MSDC_SET_FIELD(host->base + 0x228, (0x1 << 25), 0); /* SDC_FIFO_CFG_RD_VALID_SEL */
  805. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x0, (0x1 << 13), 0x1); /* EMMC_TOP_CONTROL[PAD_DAT_RD_RXDLY_SEL] */
  806. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x0, (0x1f << 7), 0x6); /* EMMC_TOP_CONTROL[PAD_DAT_RD_RXDLY] */
  807. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x0, (0x1 << 12), 0x0); /* EMMC_TOP_CONTROL[PAD_DAT_RD_RXDLY2_SEL] */
  808. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x0, (0x1f << 2), 0x0); /* EMMC_TOP_CONTROL[PAD_DAT_RD_RXDLY2] */
  809. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x0, (0x1 << 15), 0x1); /* EMMC_TOP_CONTROL[SDC_RX_ENH_EN] */
  810. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x4, (0x1 << 11), 0x1); /* EMMC_TOP_CMD[PAD_CMD_RXDLY] */
  811. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x4, (0x1f << 5), 0x5); /* EMMC_TOP_CMD[PAD_CMD_RXDLY_SEL] */
  812. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x4, (0x1 << 10), 0x0); /* EMMC_TOP_CMD[PAD_CMD_RXDLY2] */
  813. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x4, (0x1f << 0), 0x0); /* EMMC_TOP_CMD[PAD_CMD_RXDLY2_SEL] */
  814. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x4, (0x1f << 12), 0x0); /* EMMC_TOP_CMD_LEVEL1[PAD_CMD_TX_DLY] */
  815. MSDC_WRITE32(MSDC0_TOP_BASE + 0x8, 0x3); /* EMMC50_PAD_CTL0 */
  816. MSDC_WRITE32(MSDC0_TOP_BASE + 0xC, 0x0); /* EMMC50_PAD_CTL0 */
  817. } else if ((id == 1) && (mode == 0) && (div == 0)) {
  818. MSDC_SET_FIELD(host->base + 0x4, (0x1 << 1), 0x1); /*MSDC_IOCON[MSDC_IOCON_RSPL] */
  819. MSDC_SET_FIELD(host->base + 0xb0, (0x1 << 3), 0x1);
  820. MSDC_SET_FIELD(host->base + 0xb4, (0xf << 8), 3); /* MSDC_PB1_STOP_DLY_SEL */
  821. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 20), 1); /* MSDC_PB1_POP_MARK_WATER */
  822. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 19), 1); /* MSDC_PB1_STATE_CLR */
  823. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 18), 1); /* Reserved bit */
  824. MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 29), 0);
  825. MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 16), 0);
  826. MSDC_SET_FIELD(host->base + 0xb8, (0x1 << 28), 1);
  827. MSDC_SET_FIELD(host->base + 0xb8, (0x1 << 25), 0x1);
  828. MSDC_SET_FIELD(host->base + 0x228, (0x1 << 24), 0); /* SDC_FIFO_CFG_WR_VALID_SEL */
  829. MSDC_SET_FIELD(host->base + 0x228, (0x1 << 25), 0); /* SDC_FIFO_CFG_RD_VALID_SEL */
  830. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x0, (0x1 << 13), 0x1); /* EMMC_TOP_CONTROL[PAD_DAT_RD_RXDLY_SEL] */
  831. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x0, (0x1f << 7), 0x16); /* EMMC_TOP_CONTROL[PAD_DAT_RD_RXDLY] */
  832. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x0, (0x1 << 12), 0x0); /* EMMC_TOP_CONTROL[PAD_DAT_RD_RXDLY2_SEL] */
  833. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x0, (0x1f << 2), 0x0); /* EMMC_TOP_CONTROL[PAD_DAT_RD_RXDLY2] */
  834. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x0, (0x1 << 15), 0x1); /* EMMC_TOP_CONTROL[SDC_RX_ENH_EN] */
  835. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x4, (0x1 << 11), 0x1); /* EMMC_TOP_CMD[PAD_CMD_RXDLY] */
  836. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x4, (0x1f << 5), 0x16); /* EMMC_TOP_CMD[PAD_CMD_RXDLY_SEL] */
  837. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x4, (0x1 << 10), 0x0); /* EMMC_TOP_CMD[PAD_CMD_RXDLY2] */
  838. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x4, (0x1f << 0), 0x0); /* EMMC_TOP_CMD[PAD_CMD_RXDLY2_SEL] */
  839. MSDC_SET_FIELD(MSDC1_TOP_BASE + 0x4, (0x1f << 12), 0x0); /* EMMC_TOP_CMD_LEVEL1[PAD_CMD_TX_DLY] */
  840. MSDC_WRITE32(MSDC0_TOP_BASE + 0x8, 0x3); /* EMMC50_PAD_CTL0 */
  841. MSDC_WRITE32(MSDC0_TOP_BASE + 0xC, 0x0); /* EMMC50_PAD_CTL0 */
  842. } else if ((id == 1) && (mode == 0)) {
  843. MSDC_SET_FIELD(host->base + 0x4, (0x1 << 1), 0x0); /*MSDC_IOCON[MSDC_IOCON_RSPL] */
  844. MSDC_SET_FIELD(host->base + 0xb0, (0x1 << 3), 0x0);
  845. MSDC_SET_FIELD(host->base + 0xb4, (0xf << 8), 3); /* MSDC_PB1_STOP_DLY_SEL */
  846. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 20), 1); /* MSDC_PB1_POP_MARK_WATER */
  847. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 19), 1); /* MSDC_PB1_STATE_CLR */
  848. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 18), 1); /* Reserved bit */
  849. MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 29), 0);
  850. MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 16), 0);
  851. MSDC_SET_FIELD(host->base + 0xb8, (0x1 << 28), 1);
  852. MSDC_SET_FIELD(host->base + 0xb8, (0x1 << 25), 0x0);
  853. MSDC_SET_FIELD(host->base + 0x228, (0x1 << 24), 0); /* SDC_FIFO_CFG_WR_VALID_SEL */
  854. MSDC_SET_FIELD(host->base + 0x228, (0x1 << 25), 0); /* SDC_FIFO_CFG_RD_VALID_SEL */
  855. MSDC_WRITE32(MSDC1_TOP_BASE + 0x0, 0x0);
  856. MSDC_WRITE32(MSDC1_TOP_BASE + 0x4, 0x0);
  857. MSDC_WRITE32(MSDC1_TOP_BASE + 0x8, 0x3); /* EMMC50_PAD_CTL0 */
  858. MSDC_WRITE32(MSDC1_TOP_BASE + 0xC, 0x18000); /* EMMC50_PAD_CTL0 */
  859. } else if ((id == 1) && (mode == 2)) {
  860. MSDC_SET_FIELD(host->base + 0x4, (0x1 << 1), 0x0); /*MSDC_IOCON[MSDC_IOCON_RSPL] */
  861. MSDC_SET_FIELD(host->base + 0xb0, (0x1 << 3), 0x0);
  862. MSDC_SET_FIELD(host->base + 0xb4, (0xf << 8), 3); /* MSDC_PB1_STOP_DLY_SEL */
  863. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 20), 1); /* MSDC_PB1_POP_MARK_WATER */
  864. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 19), 1); /* MSDC_PB1_STATE_CLR */
  865. MSDC_SET_FIELD(host->base + 0xb4, (0x1 << 18), 1); /* Reserved bit */
  866. MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 29), 1);
  867. MSDC_SET_FIELD(host->base + 0xb8, (0x7 << 16), 1);
  868. MSDC_SET_FIELD(host->base + 0xb8, (0x1 << 28), 1);
  869. MSDC_SET_FIELD(host->base + 0xb8, (0x1 << 25), 0x0);
  870. MSDC_SET_FIELD(host->base + 0x228, (0x1 << 24), 0); /* SDC_FIFO_CFG_WR_VALID_SEL */
  871. MSDC_SET_FIELD(host->base + 0x228, (0x1 << 25), 0); /* SDC_FIFO_CFG_RD_VALID_SEL */
  872. MSDC_WRITE32(MSDC1_TOP_BASE + 0x0, 0x2000); /* EMMC_TOP_CONTROL[PAD_DAT_RD_RXDLY_SEL] */
  873. MSDC_WRITE32(MSDC1_TOP_BASE + 0x4, 0); /* EMMC_TOP_CONTROL[PAD_DAT_RD_RXDLY_SEL] */
  874. MSDC_WRITE32(MSDC1_TOP_BASE + 0x8, 0x3); /* EMMC50_PAD_CTL0 */
  875. MSDC_WRITE32(MSDC1_TOP_BASE + 0xC, 0x18000); /* EMMC50_PAD_CTL0 */
  876. }
  877. }
  878. #endif