mt_pmic_wrap_init_v1.c 44 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 is
  5. * confidential and proprietary to MediaTek Inc. and/or its licensors. Without
  6. * the prior written permission of MediaTek inc. and/or its licensors, any
  7. * reproduction, modification, use or disclosure of MediaTek Software, and
  8. * information contained herein, in whole or in part, shall be strictly
  9. * prohibited.
  10. *
  11. * MediaTek Inc. (C) 2016. All rights reserved.
  12. *
  13. * BY OPENING THIS FILE, RECEIVER HEREBY UNEQUIVOCALLY ACKNOWLEDGES AND AGREES
  14. * THAT THE SOFTWARE/FIRMWARE AND ITS DOCUMENTATIONS ("MEDIATEK SOFTWARE")
  15. * RECEIVED FROM MEDIATEK AND/OR ITS REPRESENTATIVES ARE PROVIDED TO RECEIVER
  16. * ON AN "AS-IS" BASIS ONLY. MEDIATEK EXPRESSLY DISCLAIMS ANY AND ALL
  17. * WARRANTIES, EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE IMPLIED
  18. * WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE OR
  19. * NONINFRINGEMENT. NEITHER DOES MEDIATEK PROVIDE ANY WARRANTY WHATSOEVER WITH
  20. * RESPECT TO THE SOFTWARE OF ANY THIRD PARTY WHICH MAY BE USED BY,
  21. * INCORPORATED IN, OR SUPPLIED WITH THE MEDIATEK SOFTWARE, AND RECEIVER AGREES
  22. * TO LOOK ONLY TO SUCH THIRD PARTY FOR ANY WARRANTY CLAIM RELATING THERETO.
  23. * RECEIVER EXPRESSLY ACKNOWLEDGES THAT IT IS RECEIVER'S SOLE RESPONSIBILITY TO
  24. * OBTAIN FROM ANY THIRD PARTY ALL PROPER LICENSES CONTAINED IN MEDIATEK
  25. * SOFTWARE. MEDIATEK SHALL ALSO NOT BE RESPONSIBLE FOR ANY MEDIATEK SOFTWARE
  26. * RELEASES MADE TO RECEIVER'S SPECIFICATION OR TO CONFORM TO A PARTICULAR
  27. * STANDARD OR OPEN FORUM. RECEIVER'S SOLE AND EXCLUSIVE REMEDY AND MEDIATEK'S
  28. * ENTIRE AND CUMULATIVE LIABILITY WITH RESPECT TO THE MEDIATEK SOFTWARE
  29. * RELEASED HEREUNDER WILL BE, AT MEDIATEK'S OPTION, TO REVISE OR REPLACE THE
  30. * MEDIATEK SOFTWARE AT ISSUE, OR REFUND ANY SOFTWARE LICENSE FEES OR SERVICE
  31. * CHARGE PAID BY RECEIVER TO MEDIATEK FOR SUCH MEDIATEK SOFTWARE AT ISSUE.
  32. *
  33. * The following software/firmware and/or related documentation ("MediaTek
  34. * Software") have been modified by MediaTek Inc. All revisions are subject to
  35. * any receiver's applicable license agreements with MediaTek Inc.
  36. */
  37. /******************************************************************************
  38. * MTK PMIC Wrapper Driver
  39. *
  40. * Copyright 2016 MediaTek Co.,Ltd.
  41. *
  42. * DESCRIPTION:
  43. * This file provides API for other drivers to access PMIC registers
  44. *
  45. ******************************************************************************/
  46. #include <mt_pmic_wrap_init.h>
  47. #if (PMIC_WRAP_PRELOADER)
  48. #elif (PMIC_WRAP_LK)
  49. #elif (PMIC_WRAP_KERNEL)
  50. #elif (PMIC_WRAP_CTP)
  51. #include <gpio.h>
  52. #include <upmu_hw.h>
  53. #else
  54. ### Compile error, check SW ENV define
  55. #endif
  56. /************* marco ******************************************************/
  57. #if (PMIC_WRAP_PRELOADER)
  58. #elif (PMIC_WRAP_LK)
  59. #elif (PMIC_WRAP_KERNEL)
  60. #elif (PMIC_WRAP_SCP)
  61. #elif (PMIC_WRAP_CTP)
  62. #else
  63. ### Compile error, check SW ENV define
  64. #endif
  65. #ifdef PMIC_WRAP_NO_PMIC
  66. #if !(PMIC_WRAP_KERNEL)
  67. signed int pwrap_wacs2(unsigned int write, unsigned int adr, unsigned int wdata, unsigned int *rdata)
  68. {
  69. PWRAPLOG("[PMIC_WRAP]There is no PMIC real chip, PMIC_WRAP do Nothing.\n");
  70. return 0;
  71. }
  72. signed int pwrap_read(unsigned int adr, unsigned int *rdata)
  73. {
  74. PWRAPLOG("[PMIC_WRAP]There is no PMIC real chip, PMIC_WRAP do Nothing.\n");
  75. return 0;
  76. }
  77. signed int pwrap_write(unsigned int adr, unsigned int wdata)
  78. {
  79. PWRAPLOG("[PMIC_WRAP]There is no PMIC real chip, PMIC_WRAP do Nothing.\n");
  80. return 0;
  81. }
  82. #endif
  83. signed int pwrap_wacs2_read(unsigned int adr, unsigned int *rdata)
  84. {
  85. PWRAPLOG("[PMIC_WRAP]There is no PMIC real chip, PMIC_WRAP do Nothing.\n");
  86. return 0;
  87. }
  88. /* Provide PMIC write API */
  89. signed int pwrap_wacs2_write(unsigned int adr, unsigned int wdata)
  90. {
  91. PWRAPLOG("[PMIC_WRAP]There is no PMIC real chip, PMIC_WRAP do Nothing.\n");
  92. return 0;
  93. }
  94. signed int pwrap_read_nochk(unsigned int adr, unsigned int *rdata)
  95. {
  96. PWRAPLOG("[PMIC_WRAP]There is no PMIC real chip, PMIC_WRAP do Nothing.\n");
  97. return 0;
  98. }
  99. signed int pwrap_write_nochk(unsigned int adr, unsigned int wdata)
  100. {
  101. PWRAPLOG("[PMIC_WRAP]There is no PMIC real chip, PMIC_WRAP do Nothing.\n");
  102. return 0;
  103. }
  104. /*
  105. *pmic_wrap init,init wrap interface
  106. *
  107. */
  108. signed int pwrap_init(void)
  109. {
  110. PWRAPLOG("[PMIC_WRAP]There is no PMIC real chip, PMIC_WRAP do Nothing.\n");
  111. return 0;
  112. }
  113. signed int pwrap_init_preloader(void)
  114. {
  115. PWRAPLOG("[PMIC_WRAP]There is no PMIC real chip, PMIC_WRAP do Nothing.\n");
  116. return 0;
  117. }
  118. signed int pwrap_init_lk(void)
  119. {
  120. PWRAPLOG("[PMIC_WRAP]There is no PMIC real chip, PMIC_WRAP do Nothing.\n");
  121. return 0;
  122. }
  123. #else /* #ifdef PMIC_WRAP_NO_PMIC */
  124. /*********************start ---internal API***********************************/
  125. static int _pwrap_timeout_ns(unsigned long long start_time_ns, unsigned long long timeout_time_ns);
  126. static unsigned long long _pwrap_get_current_time(void);
  127. static unsigned long long _pwrap_time2ns(unsigned long long time_us);
  128. static signed int _pwrap_reset_spislv(void);
  129. static signed int _pwrap_init_dio(unsigned int dio_en);
  130. static signed int _pwrap_init_cipher(void);
  131. static signed int _pwrap_init_reg_clock(unsigned int regck_sel);
  132. static void _pwrap_enable(void);
  133. static void _pwrap_starve_set(void);
  134. static signed int _pwrap_wacs2_nochk(unsigned int write, unsigned int adr, unsigned int wdata, unsigned int *rdata);
  135. static signed int pwrap_wacs2_hal(unsigned int write, unsigned int adr, unsigned int wdata, unsigned int *rdata);
  136. /*********************test API************************************************/
  137. static inline void pwrap_dump_ap_register(void);
  138. static unsigned int pwrap_write_test(void);
  139. static unsigned int pwrap_read_test(void);
  140. signed int pwrap_wacs2_read(unsigned int adr, unsigned int *rdata);
  141. signed int pwrap_wacs2_write(unsigned int adr, unsigned int wdata);
  142. /************* end--internal API**********************************************/
  143. /*********************** external API for pmic_wrap user ************************/
  144. signed int pwrap_wacs2_read(unsigned int adr, unsigned int *rdata)
  145. {
  146. pwrap_wacs2(0, adr, 0, rdata);
  147. return 0;
  148. }
  149. /* Provide PMIC write API */
  150. signed int pwrap_wacs2_write(unsigned int adr, unsigned int wdata)
  151. {
  152. #ifdef CONFIG_MTK_TINYSYS_SSPM_SUPPORT
  153. unsigned int flag;
  154. flag = WRITE_CMD | (1 << WRITE_PMIC);
  155. pwrap_wacs2_ipi(adr, wdata, flag);
  156. #else
  157. pwrap_wacs2(1, adr, wdata, 0);
  158. #endif
  159. return 0;
  160. }
  161. signed int pwrap_read(unsigned int adr, unsigned int *rdata)
  162. {
  163. return pwrap_wacs2(0,adr,0,rdata);
  164. }
  165. signed int pwrap_write(unsigned int adr, unsigned int wdata)
  166. {
  167. return pwrap_wacs2(1,adr,wdata,0);
  168. }
  169. /******************************************************************************
  170. wrapper timeout
  171. ******************************************************************************/
  172. /*use the same API name with kernel driver
  173. *however,the timeout API in uboot use tick instead of ns */
  174. #ifdef PWRAP_TIMEOUT
  175. static unsigned long long _pwrap_get_current_time(void)
  176. {
  177. return gpt4_get_current_tick();
  178. }
  179. static int _pwrap_timeout_ns(unsigned long long start_time_ns, unsigned long long timeout_time_ns)
  180. {
  181. return gpt4_timeout_tick(start_time_ns, timeout_time_ns);
  182. }
  183. static unsigned long long _pwrap_time2ns(unsigned long long time_us)
  184. {
  185. return gpt4_time2tick_us(time_us);
  186. }
  187. #else
  188. static unsigned long long _pwrap_get_current_time(void)
  189. {
  190. return 0;
  191. }
  192. static int _pwrap_timeout_ns(unsigned long long start_time_ns, unsigned long long elapse_time)
  193. {
  194. return 0;
  195. }
  196. static unsigned long long _pwrap_time2ns(unsigned long long time_us)
  197. {
  198. return 0;
  199. }
  200. #endif
  201. /* ##################################################################### */
  202. /* define macro and inline function (for do while loop) */
  203. /* ##################################################################### */
  204. typedef unsigned int(*loop_condition_fp) (unsigned int); /* define a function pointer */
  205. static inline unsigned int wait_for_fsm_idle(unsigned int x)
  206. {
  207. return GET_WACS2_FSM(x) != WACS_FSM_IDLE;
  208. }
  209. static inline unsigned int wait_for_fsm_vldclr(unsigned int x)
  210. {
  211. return GET_WACS2_FSM(x) != WACS_FSM_WFVLDCLR;
  212. }
  213. static inline unsigned int wait_for_sync(unsigned int x)
  214. {
  215. return GET_SYNC_IDLE2(x) != WACS_SYNC_IDLE;
  216. }
  217. static inline unsigned int wait_for_idle_and_sync(unsigned int x)
  218. {
  219. return (GET_WACS2_FSM(x) != WACS_FSM_IDLE) || (GET_SYNC_IDLE2(x) != WACS_SYNC_IDLE);
  220. }
  221. static inline unsigned int wait_for_wrap_idle(unsigned int x)
  222. {
  223. return (GET_WRAP_FSM(x) != 0x0) || (GET_WRAP_CH_DLE_RESTCNT(x) != 0x0);
  224. }
  225. static inline unsigned int wait_for_wrap_state_idle(unsigned int x)
  226. {
  227. return GET_WRAP_AG_DLE_RESTCNT(x) != 0;
  228. }
  229. static inline unsigned int wait_for_man_idle_and_noreq(unsigned int x)
  230. {
  231. return (GET_MAN_REQ(x) != MAN_FSM_NO_REQ) || (GET_MAN_FSM(x) != MAN_FSM_IDLE);
  232. }
  233. static inline unsigned int wait_for_man_vldclr(unsigned int x)
  234. {
  235. return GET_MAN_FSM(x) != MAN_FSM_WFVLDCLR;
  236. }
  237. static inline unsigned int wait_for_cipher_ready(unsigned int x)
  238. {
  239. return x != 3;
  240. }
  241. static inline unsigned int wait_for_stdupd_idle(unsigned int x)
  242. {
  243. return GET_STAUPD_FSM(x) != 0x0;
  244. }
  245. /**************used at _pwrap_wacs2_nochk*************************************/
  246. #if (PMIC_WRAP_KERNEL) || (PMIC_WRAP_CTP)
  247. static inline unsigned int wait_for_state_ready_init(loop_condition_fp fp, unsigned int timeout_us,
  248. void *wacs_register, unsigned int *read_reg)
  249. #else
  250. static inline unsigned int wait_for_state_ready_init(loop_condition_fp fp, unsigned int timeout_us,
  251. unsigned int wacs_register, unsigned int *read_reg)
  252. #endif
  253. {
  254. unsigned long long start_time_ns = 0, timeout_ns = 0;
  255. unsigned int reg_rdata = 0x0;
  256. start_time_ns = _pwrap_get_current_time();
  257. timeout_ns = _pwrap_time2ns(timeout_us);
  258. do {
  259. if (_pwrap_timeout_ns(start_time_ns, timeout_ns)) {
  260. PWRAPERR("wait_for_state_ready_init timeout when waiting for idle\n");
  261. return E_PWR_WAIT_IDLE_TIMEOUT;
  262. }
  263. reg_rdata = WRAP_RD32(wacs_register);
  264. } while (fp(reg_rdata));
  265. if (read_reg)
  266. *read_reg = reg_rdata;
  267. return 0;
  268. }
  269. #if (PMIC_WRAP_KERNEL) || (PMIC_WRAP_CTP)
  270. static inline unsigned int wait_for_state_idle(loop_condition_fp fp, unsigned int timeout_us, void *wacs_register,
  271. void *wacs_vldclr_register, unsigned int *read_reg)
  272. #else
  273. static inline unsigned int wait_for_state_idle(loop_condition_fp fp, unsigned int timeout_us,
  274. unsigned int wacs_register, unsigned int wacs_vldclr_register, unsigned int *read_reg)
  275. #endif
  276. {
  277. unsigned long long start_time_ns = 0, timeout_ns = 0;
  278. unsigned int reg_rdata;
  279. start_time_ns = _pwrap_get_current_time();
  280. timeout_ns = _pwrap_time2ns(timeout_us);
  281. do {
  282. if (_pwrap_timeout_ns(start_time_ns, timeout_ns)) {
  283. PWRAPERR("wait_for_state_idle timeout when waiting for idle\n");
  284. pwrap_dump_ap_register();
  285. return E_PWR_WAIT_IDLE_TIMEOUT;
  286. }
  287. reg_rdata = WRAP_RD32(wacs_register);
  288. if (GET_INIT_DONE2(reg_rdata) != WACS_INIT_DONE) {
  289. PWRAPERR("initialization isn't finished\n");
  290. return E_PWR_NOT_INIT_DONE;
  291. }
  292. switch (GET_WACS2_FSM(reg_rdata)) {
  293. case WACS_FSM_WFVLDCLR:
  294. WRAP_WR32(wacs_vldclr_register, 1);
  295. PWRAPERR("WACS_FSM = PMIC_WRAP_WACS_VLDCLR\n");
  296. break;
  297. case WACS_FSM_WFDLE:
  298. PWRAPERR("WACS_FSM = WACS_FSM_WFDLE\n");
  299. break;
  300. case WACS_FSM_REQ:
  301. PWRAPERR("WACS_FSM = WACS_FSM_REQ\n");
  302. break;
  303. default:
  304. break;
  305. }
  306. } while (fp(reg_rdata));
  307. if (read_reg)
  308. *read_reg = reg_rdata;
  309. return 0;
  310. }
  311. /**************used at pwrap_wacs2********************************************/
  312. #if (PMIC_WRAP_KERNEL) || (PMIC_WRAP_CTP)
  313. static inline unsigned int wait_for_state_ready(loop_condition_fp fp, unsigned int timeout_us, void *wacs_register,
  314. unsigned int *read_reg)
  315. #else
  316. static inline unsigned int wait_for_state_ready(loop_condition_fp fp, unsigned int timeout_us,
  317. unsigned int wacs_register, unsigned int *read_reg)
  318. #endif
  319. {
  320. unsigned long long start_time_ns = 0, timeout_ns = 0;
  321. unsigned int reg_rdata;
  322. start_time_ns = _pwrap_get_current_time();
  323. timeout_ns = _pwrap_time2ns(timeout_us);
  324. do {
  325. if (_pwrap_timeout_ns(start_time_ns, timeout_ns)) {
  326. PWRAPERR("timeout when waiting for idle\n");
  327. pwrap_dump_ap_register();
  328. return E_PWR_WAIT_IDLE_TIMEOUT;
  329. }
  330. reg_rdata = WRAP_RD32(wacs_register);
  331. if (GET_INIT_DONE2(reg_rdata) != WACS_INIT_DONE) {
  332. PWRAPERR("initialization isn't finished\n");
  333. return E_PWR_NOT_INIT_DONE;
  334. }
  335. } while (fp(reg_rdata));
  336. if (read_reg)
  337. *read_reg = reg_rdata;
  338. return 0;
  339. }
  340. /******************************************************
  341. * Function : pwrap_wacs2()
  342. * Description :
  343. * Parameter :
  344. * Return :
  345. ******************************************************/
  346. signed int pwrap_wacs2(unsigned int write, unsigned int adr, unsigned int wdata, unsigned int *rdata)
  347. {
  348. unsigned int reg_rdata = 0;
  349. unsigned int wacs_write = 0;
  350. unsigned int wacs_adr = 0;
  351. unsigned int wacs_cmd = 0;
  352. unsigned int return_value = 0;
  353. /* Check argument validation */
  354. if ((write & ~(0x1)) != 0)
  355. return E_PWR_INVALID_RW;
  356. if ((adr & ~(0xffff)) != 0)
  357. return E_PWR_INVALID_ADDR;
  358. if ((wdata & ~(0xffff)) != 0)
  359. return E_PWR_INVALID_WDAT;
  360. /* Check IDLE & INIT_DONE in advance */
  361. return_value =
  362. wait_for_state_idle(wait_for_fsm_idle, TIMEOUT_WAIT_IDLE, PMIC_WRAP_WACS2_RDATA,
  363. PMIC_WRAP_WACS2_VLDCLR, 0);
  364. if (return_value != 0) {
  365. PWRAPERR("wait_for_fsm_idle fail,return_value=%d\n", return_value);
  366. goto FAIL;
  367. }
  368. wacs_write = write << 31;
  369. wacs_adr = (adr >> 1) << 16;
  370. wacs_cmd = wacs_write | wacs_adr | wdata;
  371. WRAP_WR32(PMIC_WRAP_WACS2_CMD, wacs_cmd);
  372. if (write == 0) {
  373. if (rdata == NULL) {
  374. PWRAPERR("rdata is a NULL pointer\n");
  375. return_value = E_PWR_INVALID_ARG;
  376. goto FAIL;
  377. }
  378. return_value =
  379. wait_for_state_ready(wait_for_fsm_vldclr, TIMEOUT_READ, PMIC_WRAP_WACS2_RDATA,
  380. &reg_rdata);
  381. if (return_value != 0) {
  382. PWRAPERR("wait_for_fsm_vldclr fail,return_value=%d\n", return_value);
  383. return_value += 1;
  384. goto FAIL;
  385. }
  386. *rdata = GET_WACS2_RDATA(reg_rdata);
  387. WRAP_WR32(PMIC_WRAP_WACS2_VLDCLR, 1);
  388. }
  389. FAIL:
  390. if (return_value != 0) {
  391. PWRAPERR("pwrap_wacs2_hal fail,return_value=%d\n", return_value);
  392. PWRAPERR("timeout:BUG_ON here\n");
  393. }
  394. return return_value;
  395. }
  396. /*********************internal API for pwrap_init***************************/
  397. /**********************************
  398. * Function : _pwrap_wacs2_nochk()
  399. * Description :
  400. * Parameter :
  401. * Return :
  402. ***********************************/
  403. signed int pwrap_read_nochk(unsigned int adr, unsigned int *rdata)
  404. {
  405. return _pwrap_wacs2_nochk(0, adr, 0, rdata);
  406. }
  407. signed int pwrap_write_nochk(unsigned int adr, unsigned int wdata)
  408. {
  409. return _pwrap_wacs2_nochk(1, adr, wdata, 0);
  410. }
  411. static signed int _pwrap_wacs2_nochk(unsigned int write, unsigned int adr, unsigned int wdata, unsigned int *rdata)
  412. {
  413. unsigned int reg_rdata = 0x0;
  414. unsigned int wacs_write = 0x0;
  415. unsigned int wacs_adr = 0x0;
  416. unsigned int wacs_cmd = 0x0;
  417. unsigned int return_value = 0x0;
  418. /* Check argument validation */
  419. if ((write & ~(0x1)) != 0)
  420. return E_PWR_INVALID_RW;
  421. if ((adr & ~(0xffff)) != 0)
  422. return E_PWR_INVALID_ADDR;
  423. if ((wdata & ~(0xffff)) != 0)
  424. return E_PWR_INVALID_WDAT;
  425. /* Check IDLE */
  426. return_value =
  427. wait_for_state_ready_init(wait_for_fsm_idle, TIMEOUT_WAIT_IDLE, PMIC_WRAP_WACS2_RDATA, 0);
  428. if (return_value != 0) {
  429. PWRAPERR("_pwrap_wacs2_nochk write command fail,return_value=%x\n", return_value);
  430. return return_value;
  431. }
  432. wacs_write = write << 31;
  433. wacs_adr = (adr >> 1) << 16;
  434. wacs_cmd = wacs_write | wacs_adr | wdata;
  435. WRAP_WR32(PMIC_WRAP_WACS2_CMD, wacs_cmd);
  436. if (write == 0) {
  437. if (rdata == NULL) {
  438. PWRAPERR("rdata is a NULL pointer\n");
  439. return_value = E_PWR_INVALID_ARG;
  440. return return_value;
  441. }
  442. return_value =
  443. wait_for_state_ready_init(wait_for_fsm_vldclr, TIMEOUT_READ,
  444. PMIC_WRAP_WACS2_RDATA, &reg_rdata);
  445. if (return_value != 0) {
  446. PWRAPERR("wait_for_fsm_vldclr fail,return_value=%d\n", return_value);
  447. return_value += 1;
  448. return return_value;
  449. }
  450. *rdata = GET_WACS2_RDATA(reg_rdata);
  451. WRAP_WR32(PMIC_WRAP_WACS2_VLDCLR, 1);
  452. }
  453. return 0;
  454. }
  455. static void __pwrap_soft_reset(void)
  456. {
  457. PWRAPLOG("start reset wrapper\n");
  458. WRAP_WR32(INFRA_GLOBALCON_RST2_SET, 0x1);
  459. WRAP_WR32(INFRA_GLOBALCON_RST2_CLR, 0x1);
  460. }
  461. static void __pwrap_spi_clk_set(void)
  462. {
  463. /* toggle PMIC_WRAP and pwrap_spictl reset */
  464. __pwrap_soft_reset();
  465. PWRAPLOG("pwrap_spictl reset ok\n");
  466. WRAP_WR32(CLK_CFG_5_CLR, CLK_SPI_CK_26M);
  467. /*sys_ck cg enable, turn off clock*/
  468. WRAP_WR32(MODULE_SW_CG_0_SET, 0x0000000F);
  469. /* turn on clock*/
  470. WRAP_WR32(MODULE_SW_CG_0_CLR, 0x0000000F);
  471. PWRAPLOG("spi clk set ....\n");
  472. }
  473. /************************************************
  474. * Function : _pwrap_init_dio()
  475. * Description :call it in pwrap_init,mustn't check init done
  476. * Parameter :
  477. * Return :
  478. ************************************************/
  479. static signed int _pwrap_init_dio(unsigned int dio_en)
  480. {
  481. unsigned int rdata = 0x0;
  482. pwrap_write_nochk(PMIC_DEW_DIO_EN_ADDR, dio_en);
  483. #ifdef DUAL_PMICS
  484. pwrap_write_nochk(EXT_DEW_DIO_EN, dio_en);
  485. #endif
  486. do {
  487. rdata = WRAP_RD32(PMIC_WRAP_WACS2_RDATA);
  488. } while ((GET_WACS2_FSM(rdata) != WACS_FSM_IDLE) || (GET_SYNC_IDLE2(rdata) != WACS_SYNC_IDLE));
  489. #ifndef DUAL_PMICS
  490. WRAP_WR32(PMIC_WRAP_DIO_EN, 0x1);
  491. #else
  492. WRAP_WR32(PMIC_WRAP_DIO_EN, 0x3);
  493. #endif
  494. return 0;
  495. }
  496. /***************************************************
  497. * Function : _pwrap_init_cipher()
  498. * Description :
  499. * Parameter :
  500. * Return :
  501. ****************************************************/
  502. static signed int _pwrap_init_cipher(void)
  503. {
  504. unsigned int rdata = 0;
  505. unsigned int return_value = 0;
  506. unsigned int start_time_ns = 0, timeout_ns = 0;
  507. WRAP_WR32(PMIC_WRAP_CIPHER_SWRST, 1);
  508. WRAP_WR32(PMIC_WRAP_CIPHER_SWRST, 0);
  509. WRAP_WR32(PMIC_WRAP_CIPHER_KEY_SEL, 1);
  510. WRAP_WR32(PMIC_WRAP_CIPHER_IV_SEL, 2);
  511. WRAP_WR32(PMIC_WRAP_CIPHER_EN, 1);
  512. /* Config CIPHER @ PMIC */
  513. pwrap_write_nochk(PMIC_DEW_CIPHER_SWRST_ADDR, 0x1);
  514. pwrap_write_nochk(PMIC_DEW_CIPHER_SWRST_ADDR, 0x0);
  515. pwrap_write_nochk(PMIC_DEW_CIPHER_KEY_SEL_ADDR, 0x1);
  516. pwrap_write_nochk(PMIC_DEW_CIPHER_IV_SEL_ADDR, 0x2);
  517. pwrap_write_nochk(PMIC_DEW_CIPHER_EN_ADDR, 0x1);
  518. PWRAPLOG("[_pwrap_init_cipher]Config CIPHER of PMIC 0 ok\n");
  519. #ifdef DUAL_PMICS
  520. /* Config CIPHER of PMIC 1 */
  521. pwrap_write_nochk(EXT_DEW_CIPHER_SWRST, 0x1);
  522. pwrap_write_nochk(EXT_DEW_CIPHER_SWRST, 0x0);
  523. pwrap_write_nochk(EXT_DEW_CIPHER_KEY_SEL, 0x1);
  524. pwrap_write_nochk(EXT_DEW_CIPHER_IV_SEL, 0x2);
  525. pwrap_write_nochk(EXT_DEW_CIPHER_EN, 0x1);
  526. PWRAPLOG("[_pwrap_init_cipher]Config CIPHER of PMIC 1 ok\n");
  527. #endif
  528. /*wait for cipher data ready@AP */
  529. return_value = wait_for_state_ready_init(wait_for_cipher_ready, TIMEOUT_WAIT_IDLE, PMIC_WRAP_CIPHER_RDY, 0);
  530. if (return_value != 0) {
  531. PWRAPERR("wait for cipher data ready@AP fail,return_value=%x\n", return_value);
  532. return return_value;
  533. }
  534. PWRAPLOG("wait for cipher 0 and 1 to be ready ok\n");
  535. /* wait for cipher 0 data ready@PMIC */
  536. start_time_ns = _pwrap_get_current_time();
  537. timeout_ns = _pwrap_time2ns(0xFFFFFF);
  538. do {
  539. if (_pwrap_timeout_ns(start_time_ns, timeout_ns))
  540. PWRAPERR("wait for cipher 0 data ready@PMIC\n");
  541. pwrap_read_nochk(PMIC_DEW_CIPHER_RDY_ADDR, &rdata);
  542. } while (rdata != 0x1); /* cipher_ready */
  543. return_value = pwrap_write_nochk(PMIC_DEW_CIPHER_MODE_ADDR, 0x1);
  544. if (return_value != 0) {
  545. PWRAPERR("write DEW_CIPHER_MODE fail,return_value=%x\n", return_value);
  546. return return_value;
  547. }
  548. PWRAPLOG("wait for cipher0 data ready ok\n");
  549. #ifdef DUAL_PMICS
  550. start_time_ns = _pwrap_get_current_time();
  551. timeout_ns = _pwrap_time2ns(0xFFFFFF);
  552. do {
  553. if (_pwrap_timeout_ns(start_time_ns, timeout_ns))
  554. PWRAPERR("wait for cipher 1 data ready@PMIC\n");
  555. pwrap_read_nochk(EXT_DEW_CIPHER_RDY, &rdata);
  556. } while (rdata != 0x1); /* cipher_ready */
  557. return_value = pwrap_write_nochk(EXT_DEW_CIPHER_MODE, 0x1);
  558. if (return_value != 0) {
  559. PWRAPERR("write EXT_DEW_CIPHER_MODE fail,return_value=%x\n", return_value);
  560. return return_value;
  561. }
  562. #endif
  563. PWRAPLOG("wait for cipher 1 data ready@PMIC ok\n");
  564. /* wait for cipher mode idle */
  565. return_value = wait_for_state_ready_init(wait_for_idle_and_sync, TIMEOUT_WAIT_IDLE, PMIC_WRAP_WACS2_RDATA, 0);
  566. if (return_value != 0) {
  567. PWRAPERR("wait for cipher mode idle fail,return_value=%x\n", return_value);
  568. return return_value;
  569. }
  570. WRAP_WR32(PMIC_WRAP_CIPHER_MODE, 1);
  571. /* Read Test */
  572. pwrap_read_nochk(PMIC_DEW_READ_TEST_ADDR, &rdata);
  573. if (rdata != DEFAULT_VALUE_READ_TEST) {
  574. PWRAPERR("_pwrap_init_cipher,read test error,error code=%x, rdata=%x\n", 1, rdata);
  575. return E_PWR_READ_TEST_FAIL;
  576. }
  577. #ifdef DUAL_PMICS
  578. pwrap_read_nochk(EXT_DEW_READ_TEST, &rdata);
  579. if (rdata != DEFAULT_VALUE_READ_TEST) {
  580. PWRAPERR("_pwrap_init_cipher,read test error,error code=%x, rdata=%x\n", 1, rdata);
  581. return E_PWR_READ_TEST_FAIL;
  582. }
  583. #endif
  584. return 0;
  585. }
  586. static void _pwrap_InitStaUpd(void)
  587. {
  588. #ifndef DUAL_PMICS
  589. #if (MTK_PLATFORM_MT6771_OE2)
  590. WRAP_WR32(PMIC_WRAP_STAUPD_GRPEN, 0x54);
  591. #else
  592. WRAP_WR32(PMIC_WRAP_STAUPD_GRPEN, 0xf5);
  593. #endif
  594. #else
  595. WRAP_WR32(PMIC_WRAP_STAUPD_GRPEN, 0x19f);
  596. #endif
  597. #if 0
  598. /* CRC */
  599. #ifdef DUAL_PMICS
  600. pwrap_write_nochk(PMIC_DEW_CRC_EN_ADDR, 0x1);
  601. WRAP_WR32(PMIC_WRAP_CRC_EN, 0x1);
  602. WRAP_WR32(PMIC_WRAP_SIG_ADR, DEW_CRC_VAL);
  603. #else
  604. pwrap_write_nochk(PMIC_DEW_CRC_EN_ADDR, 0x1);
  605. pwrap_write_nochk(EXT_DEW_CRC_EN, 0x1);
  606. WRAP_WR32(PMIC_WRAP_CRC_EN, 0x1);
  607. WRAP_WR32(PMIC_WRAP_SIG_ADR, (EXT_DEW_CRC_VAL << 16 | DEW_CRC_VAL));
  608. #endif
  609. #endif
  610. /* Signature */
  611. #ifndef DUAL_PMICS
  612. WRAP_WR32(PMIC_WRAP_SIG_ADR, PMIC_DEW_CRC_VAL_ADDR);
  613. #else
  614. WRAP_WR32(PMIC_WRAP_SIG_MODE, 0x3);
  615. WRAP_WR32(PMIC_WRAP_SIG_ADR, (EXT_DEW_CRC_VAL << 16) | DEW_CRC_VAL);
  616. WRAP_WR32(PMIC_WRAP_SIG_VALUE, (0x83 << 16) | 0x83);
  617. #endif
  618. WRAP_WR32(PMIC_WRAP_EINT_STA0_ADR, PMIC_CPU_INT_STA_ADDR);
  619. #ifdef DUAL_PMICS
  620. WRAP_WR32(PMIC_WRAP_EINT_STA1_ADR, EXT_INT_STA);
  621. #endif
  622. WRAP_WR32(PMIC_WRAP_ADC_CMD_ADDR, PMIC_AUXADC_RQST1_SET_ADDR);
  623. WRAP_WR32(PMIC_WRAP_PWRAP_ADC_CMD, 0x0100);
  624. WRAP_WR32(PMIC_WRAP_ADC_RDATA_ADDR, PMIC_AUXADC_ADC_OUT_CH7_BY_GPS_ADDR);
  625. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR_LATEST, PMIC_AUXADC_ADC_OUT_MDRT_ADDR);
  626. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR_WP, PMIC_AUXADC_MDBG_R_PTR_ADDR);
  627. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR0, PMIC_AUXADC_BUF_OUT_00_ADDR);
  628. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR1, PMIC_AUXADC_BUF_OUT_01_ADDR);
  629. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR2, PMIC_AUXADC_BUF_OUT_02_ADDR);
  630. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR3, PMIC_AUXADC_BUF_OUT_03_ADDR);
  631. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR4, PMIC_AUXADC_BUF_OUT_04_ADDR);
  632. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR5, PMIC_AUXADC_BUF_OUT_05_ADDR);
  633. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR6, PMIC_AUXADC_BUF_OUT_06_ADDR);
  634. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR7, PMIC_AUXADC_BUF_OUT_07_ADDR);
  635. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR8, PMIC_AUXADC_BUF_OUT_08_ADDR);
  636. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR9, PMIC_AUXADC_BUF_OUT_09_ADDR);
  637. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR10, PMIC_AUXADC_BUF_OUT_10_ADDR);
  638. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR11, PMIC_AUXADC_BUF_OUT_11_ADDR);
  639. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR12, PMIC_AUXADC_BUF_OUT_12_ADDR);
  640. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR13, PMIC_AUXADC_BUF_OUT_13_ADDR);
  641. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR14, PMIC_AUXADC_BUF_OUT_14_ADDR);
  642. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR15, PMIC_AUXADC_BUF_OUT_15_ADDR);
  643. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR16, PMIC_AUXADC_BUF_OUT_16_ADDR);
  644. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR17, PMIC_AUXADC_BUF_OUT_17_ADDR);
  645. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR18, PMIC_AUXADC_BUF_OUT_18_ADDR);
  646. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR19, PMIC_AUXADC_BUF_OUT_19_ADDR);
  647. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR20, PMIC_AUXADC_BUF_OUT_20_ADDR);
  648. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR21, PMIC_AUXADC_BUF_OUT_21_ADDR);
  649. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR22, PMIC_AUXADC_BUF_OUT_22_ADDR);
  650. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR23, PMIC_AUXADC_BUF_OUT_23_ADDR);
  651. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR24, PMIC_AUXADC_BUF_OUT_24_ADDR);
  652. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR25, PMIC_AUXADC_BUF_OUT_25_ADDR);
  653. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR26, PMIC_AUXADC_BUF_OUT_26_ADDR);
  654. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR27, PMIC_AUXADC_BUF_OUT_27_ADDR);
  655. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR28, PMIC_AUXADC_BUF_OUT_28_ADDR);
  656. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR29, PMIC_AUXADC_BUF_OUT_29_ADDR);
  657. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR30, PMIC_AUXADC_BUF_OUT_30_ADDR);
  658. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR31, PMIC_AUXADC_BUF_OUT_31_ADDR);
  659. /* MD ADC Interface */
  660. WRAP_WR32(PMIC_WRAP_ADC_CMD_ADDR_1, PMIC_AUXADC_RQST1_SET_ADDR);
  661. WRAP_WR32(PMIC_WRAP_PWRAP_ADC_CMD_1, 0x0400);
  662. WRAP_WR32(PMIC_WRAP_ADC_RDATA_ADDR_1, PMIC_AUXADC_ADC_OUT_DCXO_BY_GPS_ADDR);
  663. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR_LATEST_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  664. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR_WP_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  665. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR0_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  666. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR1_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  667. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR2_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  668. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR3_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  669. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR4_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  670. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR5_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  671. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR6_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  672. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR7_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  673. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR8_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  674. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR9_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  675. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR10_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  676. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR11_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  677. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR12_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  678. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR13_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  679. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR14_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  680. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR15_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  681. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR16_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  682. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR17_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  683. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR18_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  684. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR19_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  685. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR20_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  686. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR21_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  687. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR22_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  688. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR23_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  689. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR24_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  690. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR25_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  691. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR26_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  692. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR27_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  693. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR28_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  694. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR29_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  695. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR30_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  696. WRAP_WR32(PMIC_WRAP_MD_ADC_RDATA_ADDR31_1, PMIC_AUXADC_ADC_OUT_DCXO_MDRT_ADDR);
  697. }
  698. static void _pwrap_starve_set(void)
  699. {
  700. WRAP_WR32(PMIC_WRAP_HARB_HPRIO, 0x0007);
  701. WRAP_WR32(PMIC_WRAP_STARV_COUNTER_0, 0x0402);
  702. WRAP_WR32(PMIC_WRAP_STARV_COUNTER_1, 0x0402);
  703. WRAP_WR32(PMIC_WRAP_STARV_COUNTER_2, 0x0403);
  704. WRAP_WR32(PMIC_WRAP_STARV_COUNTER_3, 0x0414);
  705. WRAP_WR32(PMIC_WRAP_STARV_COUNTER_4, 0x0420);
  706. WRAP_WR32(PMIC_WRAP_STARV_COUNTER_5, 0x0420);
  707. WRAP_WR32(PMIC_WRAP_STARV_COUNTER_6, 0x0420);
  708. WRAP_WR32(PMIC_WRAP_STARV_COUNTER_7, 0x0428);
  709. WRAP_WR32(PMIC_WRAP_STARV_COUNTER_8, 0x0428);
  710. WRAP_WR32(PMIC_WRAP_STARV_COUNTER_9, 0x0417);
  711. #if (MTK_PLATFORM_MT6771_OE2)
  712. WRAP_WR32(PMIC_WRAP_STARV_COUNTER_10, 0x059F);
  713. WRAP_WR32(PMIC_WRAP_STARV_COUNTER_11, 0x047C);
  714. WRAP_WR32(PMIC_WRAP_STARV_COUNTER_12, 0x0740);
  715. #else
  716. WRAP_WR32(PMIC_WRAP_STARV_COUNTER_10, 0x0740);
  717. WRAP_WR32(PMIC_WRAP_STARV_COUNTER_11, 0x0537);
  718. WRAP_WR32(PMIC_WRAP_STARV_COUNTER_12, 0x047c);
  719. #endif
  720. WRAP_WR32(PMIC_WRAP_STARV_COUNTER_13, 0x047c);
  721. WRAP_WR32(PMIC_WRAP_STARV_COUNTER_14, 0x0740);
  722. }
  723. static void _pwrap_enable(void)
  724. {
  725. #if (MTK_PLATFORM_MT6771_OE2)
  726. WRAP_WR32(PMIC_WRAP_HIPRIO_ARB_EN, 0x1fff);
  727. #else
  728. WRAP_WR32(PMIC_WRAP_HIPRIO_ARB_EN, 0x7fff);
  729. #endif
  730. WRAP_WR32(PMIC_WRAP_WACS0_EN, 0x1);
  731. WRAP_WR32(PMIC_WRAP_WACS1_EN, 0x1);
  732. WRAP_WR32(PMIC_WRAP_WACS2_EN, 0x1);
  733. WRAP_WR32(PMIC_WRAP_WACS3_EN, 0x1);
  734. WRAP_WR32(PMIC_WRAP_STAUPD_PRD, 0x5); /* 100us */
  735. WRAP_WR32(PMIC_WRAP_WDT_UNIT, 0xf);
  736. WRAP_WR32(PMIC_WRAP_WDT_SRC_EN, 0xffffffff);
  737. WRAP_WR32(PMIC_WRAP_TIMER_EN, 0x1);
  738. WRAP_WR32(PMIC_WRAP_INT0_EN, 0xffffffff);
  739. WRAP_WR32(PMIC_WRAP_INT1_EN, 0xffffffff);
  740. }
  741. /************************************************
  742. * Function : _pwrap_init_sistrobe()
  743. * scription : Initialize SI_CK_CON and SIDLY
  744. * Parameter :
  745. * Return :
  746. ************************************************/
  747. static signed int _pwrap_init_sistrobe(int dual_si_sample_settings)
  748. {
  749. unsigned int rdata;
  750. int si_en_sel, si_ck_sel, si_dly, si_sample_ctrl, reserved = 0;
  751. char result_faulty = 0;
  752. char found;
  753. int test_data[30] = {0x6996, 0x9669, 0x6996, 0x9669, 0x6996, 0x9669, 0x6996, 0x9669, 0x6996, 0x9669,
  754. 0x5AA5, 0xA55A, 0x5AA5, 0xA55A, 0x5AA5, 0xA55A, 0x5AA5, 0xA55A, 0x5AA5, 0xA55A,
  755. 0x1B27, 0x1B27, 0x1B27, 0x1B27, 0x1B27, 0x1B27, 0x1B27, 0x1B27, 0x1B27, 0x1B27
  756. };
  757. int i;
  758. int error = 0;
  759. /* TINFO = "[DrvPWRAP_InitSiStrobe] SI Strobe Calibration For PMIC 0............" */
  760. /* TINFO = "[DrvPWRAP_InitSiStrobe] Scan For The First Valid Sampling Clock Edge......" */
  761. found = 0;
  762. for (si_en_sel = 0; si_en_sel < 8; si_en_sel++) {
  763. for (si_ck_sel = 0; si_ck_sel < 2; si_ck_sel++) {
  764. si_sample_ctrl = (si_en_sel << 1) | (si_ck_sel);
  765. WRAP_WR32(PMIC_WRAP_SI_CK_CON, si_sample_ctrl);
  766. pwrap_read_nochk(PMIC_DEW_READ_TEST_ADDR, &rdata);
  767. if (rdata == 0x5aa5) {
  768. PWRAPLOG("[DrvPWRAP_InitSiStrobe]The First Valid Sampling Clock Edge Is Found !!!\n");
  769. PWRAPLOG("si_en_sel = %x, si_ck_sel = %x, si_sample_ctrl = %x, rdata = %x\n",
  770. si_en_sel, si_ck_sel, si_sample_ctrl, rdata);
  771. found = 1;
  772. break;
  773. }
  774. PWRAPERR("si_en_sel = %x, si_ck_sel = %x, *PMIC_WRAP_SI_SAMPLE_CTRL = %x, rdata = %x\n",
  775. si_en_sel, si_ck_sel, si_sample_ctrl, rdata);
  776. }
  777. if (found == 1)
  778. break;
  779. }
  780. if (found == 0) {
  781. result_faulty |= 0x1;
  782. PWRAPERR("result_faulty = %d\n", result_faulty);
  783. }
  784. if (si_en_sel == 8)
  785. result_faulty |= 0x2;
  786. /* TINFO = "[DrvPWRAP_InitSiStrobe] Search For The Data Boundary......" */
  787. for (si_dly = 0; si_dly < 10; si_dly++) {
  788. pwrap_write_nochk(PMIC_RG_SPI_DLY_SEL_ADDR, si_dly);
  789. error = 0;
  790. #ifndef SPEED_UP_PWRAP_INIT
  791. for (i = 0; i < 30; i++)
  792. #else
  793. for (i = 0; i < 1; i++)
  794. #endif
  795. {
  796. pwrap_write_nochk(PMIC_DEW_WRITE_TEST_ADDR, test_data[i]);
  797. pwrap_read_nochk(PMIC_DEW_WRITE_TEST_ADDR, &rdata);
  798. if ((rdata & 0x7fff) != (test_data[i] & 0x7fff)) {
  799. PWRAPERR("[DrvPWRAP_InitSiStrobe] (%x, %x, %x) Data Boundary Is Found !!\n",
  800. si_dly, reserved, rdata);
  801. PWRAPERR("[DrvPWRAP_InitSiStrobe] (%x, %x, %x) Data Boundary Is Found !!\n",
  802. si_dly, si_dly, rdata);
  803. error = 1;
  804. break;
  805. }
  806. }
  807. if (error == 1)
  808. break;
  809. PWRAPLOG("si_dly = %x, *PMIC_WRAP_RESERVED = %x, rdata = %x\n",
  810. si_dly, reserved, rdata);
  811. PWRAPLOG("si_dly = %x, *RG_SPI_CON2 = %x, rdata = %x\n",
  812. si_dly, si_dly, rdata);
  813. }
  814. /* TINFO = "[DrvPWRAP_InitSiStrobe] Change The Sampling Clock Edge To The Next One." */
  815. /*elbrus si_sample_ctrl = (((si_en_sel << 1) | si_ck_sel) + 1) << 2;*/
  816. si_sample_ctrl = si_sample_ctrl + 0x1;
  817. WRAP_WR32(PMIC_WRAP_SI_CK_CON, si_sample_ctrl);
  818. if (si_dly == 10) {
  819. PWRAPLOG("SI Strobe Calibration For PMIC 0 Done, (%x, si_dly%x)\n", si_sample_ctrl, si_dly);
  820. si_dly--;
  821. }
  822. PWRAPLOG("SI Strobe Calibration For PMIC 0 Done, (%x, %x)\n", si_sample_ctrl, reserved);
  823. PWRAPLOG("SI Strobe Calibration For PMIC 0 Done, (%x, %x)\n", si_sample_ctrl, si_dly);
  824. if (result_faulty != 0)
  825. return result_faulty;
  826. /* Read Test */
  827. pwrap_read_nochk(PMIC_DEW_READ_TEST_ADDR, &rdata);
  828. if (rdata != DEFAULT_VALUE_READ_TEST) {
  829. PWRAPERR("[_pwrap_init_dio] Read Test Failed, DEW_READ_TEST rdata = %x, exp = 0x5aa5\n",
  830. rdata);
  831. return 0x10;
  832. }
  833. return 0;
  834. }
  835. static int __pwrap_InitSPISLV(void)
  836. {
  837. pwrap_write_nochk(MT6355_FILTER_CON0, 0xf); /* turn on IO filter function */
  838. pwrap_write_nochk(PMIC_TOP_CKHWEN_CON0_SET_ADDR, 0x80); /* turn on SPI slave DCM */
  839. pwrap_write_nochk(MT6355_SMT_CON1, 0xf); /* turn on IO SMT function to improve noise immunity */
  840. pwrap_write_nochk(PMIC_GPIO_PULLEN0_CLR_ADDR, 0x3c0); /* turn off IO pull function for power saving */
  841. pwrap_write_nochk(MT6355_RG_SPI_CON0, 0x1); /* turn off IO pull function for power saving */
  842. #ifdef DUAL_PMICS
  843. pwrap_write_nochk(EXT_FILTER_CON0, 0xf); /* turn on IO filter function */
  844. pwrap_write_nochk(EXT_TOP_CKHWEN_CON0_SET, 0x80); /* turn on SPI slave DCM */
  845. pwrap_write_nochk(EXT_SMT_CON1, 0xf); /* turn on IO SMT function to improve noise immunity */
  846. pwrap_write_nochk(EXT_RG_SPI_CON, 0x1); /* turn off IO pull function for power saving */
  847. #endif
  848. return 0;
  849. }
  850. /******************************************************
  851. * Function : _pwrap_reset_spislv()
  852. * Description :
  853. * Parameter :
  854. * Return :
  855. ******************************************************/
  856. static signed int _pwrap_reset_spislv(void)
  857. {
  858. unsigned int ret = 0;
  859. unsigned int return_value = 0;
  860. WRAP_WR32(PMIC_WRAP_HIPRIO_ARB_EN, DISABLE_ALL);
  861. WRAP_WR32(PMIC_WRAP_WRAP_EN, DISABLE);
  862. WRAP_WR32(PMIC_WRAP_MUX_SEL, MANUAL_MODE);
  863. WRAP_WR32(PMIC_WRAP_MAN_EN, ENABLE);
  864. WRAP_WR32(PMIC_WRAP_DIO_EN, DISABLE);
  865. WRAP_WR32(PMIC_WRAP_MAN_CMD, (OP_WR << 13) | (OP_CSL << 8));
  866. WRAP_WR32(PMIC_WRAP_MAN_CMD, (OP_WR << 13) | (OP_OUTS << 8));
  867. WRAP_WR32(PMIC_WRAP_MAN_CMD, (OP_WR << 13) | (OP_CSH << 8));
  868. WRAP_WR32(PMIC_WRAP_MAN_CMD, (OP_WR << 13) | (OP_OUTS << 8));
  869. WRAP_WR32(PMIC_WRAP_MAN_CMD, (OP_WR << 13) | (OP_OUTS << 8));
  870. WRAP_WR32(PMIC_WRAP_MAN_CMD, (OP_WR << 13) | (OP_OUTS << 8));
  871. WRAP_WR32(PMIC_WRAP_MAN_CMD, (OP_WR << 13) | (OP_OUTS << 8));
  872. return_value =
  873. wait_for_state_ready_init(wait_for_sync, TIMEOUT_WAIT_IDLE, PMIC_WRAP_WACS2_RDATA, 0);
  874. if (return_value != 0) {
  875. PWRAPERR("_pwrap_reset_spislv fail,return_value=%x\n", return_value);
  876. ret = E_PWR_TIMEOUT;
  877. goto timeout;
  878. }
  879. WRAP_WR32(PMIC_WRAP_MAN_EN, DISABLE);
  880. WRAP_WR32(PMIC_WRAP_MUX_SEL, WRAPPER_MODE);
  881. timeout:
  882. WRAP_WR32(PMIC_WRAP_MAN_EN, DISABLE);
  883. WRAP_WR32(PMIC_WRAP_MUX_SEL, WRAPPER_MODE);
  884. return ret;
  885. }
  886. static signed int _pwrap_init_reg_clock(unsigned int regck_sel)
  887. {
  888. unsigned int rdata;
  889. #ifndef SLV_CLK_1M
  890. #ifndef DUAL_PMICS
  891. /* Set Read Dummy Cycle Number (Slave Clock is 18MHz) */
  892. _pwrap_wacs2_nochk(1, PMIC_DEW_RDDMY_NO_ADDR, 0x8, &rdata);
  893. WRAP_WR32(PMIC_WRAP_RDDMY, 0x8);
  894. PWRAPLOG("NO_SLV_CLK_1M Set Read Dummy Cycle\n");
  895. #else
  896. _pwrap_wacs2_nochk(1, PMIC_DEW_RDDMY_NO_ADDR, 0x8, &rdata);
  897. _pwrap_wacs2_nochk(1, EXT_DEW_RDDMY_NO, 0x8, &rdata);
  898. WRAP_WR32(PMIC_WRAP_RDDMY, 0x0808);
  899. PWRAPLOG("NO_SLV_CLK_1M Set Read Dummy Cycle dual_pmics\n");
  900. #endif
  901. #else
  902. #ifndef DUAL_PMICS
  903. /* Set Read Dummy Cycle Number (Slave Clock is 1MHz) */
  904. _pwrap_wacs2_nochk(1, PMIC_DEW_RDDMY_NO_ADDR, 0x68, &rdata);
  905. WRAP_WR32(PMIC_WRAP_RDDMY, 0x68);
  906. PWRAPLOG("SLV_CLK_1M Set Read Dummy Cycle\n");
  907. #else
  908. _pwrap_wacs2_nochk(1, PMIC_DEW_RDDMY_NO_ADDR, 0x68, &rdata);
  909. _pwrap_wacs2_nochk(1, EXT_DEW_RDDMY_NO, 0x68, &rdata);
  910. WRAP_WR32(PMIC_WRAP_RDDMY, 0x6868);
  911. PWRAPLOG("SLV_CLK_1M Set Read Dummy Cycle dual_pmics\n");
  912. #endif
  913. #endif
  914. /* Config SPI Waveform according to reg clk */
  915. if (regck_sel == 1) { /* Slave Clock is 18MHz */
  916. /* wait data written into register => 4T_PMIC:
  917. * CSHEXT_WRITE_START+EXT_CK+CSHEXT_WRITE_END+CSLEXT_START
  918. */
  919. WRAP_WR32(PMIC_WRAP_CSHEXT_WRITE, 0x22);
  920. WRAP_WR32(PMIC_WRAP_CSHEXT_READ, 0x0);
  921. WRAP_WR32(PMIC_WRAP_CSLEXT_START, 0x0);
  922. WRAP_WR32(PMIC_WRAP_CSLEXT_END, 0x2);
  923. } else { /*Safe Mode*/
  924. WRAP_WR32(PMIC_WRAP_CSHEXT_WRITE, 0xff);
  925. WRAP_WR32(PMIC_WRAP_CSHEXT_READ, 0xff);
  926. WRAP_WR32(PMIC_WRAP_CSLEXT_START, 0xf);
  927. WRAP_WR32(PMIC_WRAP_CSLEXT_END, 0xf);
  928. }
  929. return 0;
  930. }
  931. static int _pwrap_wacs2_write_test(int pmic_no)
  932. {
  933. unsigned int rdata;
  934. if (pmic_no == 0) {
  935. pwrap_write_nochk(PMIC_DEW_WRITE_TEST_ADDR, 0xa55a);
  936. pwrap_read_nochk(PMIC_DEW_WRITE_TEST_ADDR, &rdata);
  937. if (rdata != 0xa55a) {
  938. PWRAPERR("Error: Write Test Failed. DEW_WRITE_TEST rdata = %x, exp = 0xa55a\n", rdata);
  939. return E_PWR_WRITE_TEST_FAIL;
  940. }
  941. }
  942. #ifdef DUAL_PMICS
  943. if (pmic_no == 1) {
  944. pwrap_write_nochk(EXT_DEW_WRITE_TEST, 0xa55a);
  945. pwrap_read_nochk(EXT_DEW_WRITE_TEST, &rdata);
  946. if (rdata != 0xa55a) {
  947. PWRAPERR("Error: Write Test Failed. EXT_DEW_WRITE_TEST rdata = %x, exp = 0xa55a\n", rdata);
  948. return E_PWR_WRITE_TEST_FAIL;
  949. }
  950. }
  951. #endif
  952. return 0;
  953. }
  954. static unsigned int pwrap_read_test(void)
  955. {
  956. unsigned int rdata = 0;
  957. unsigned int return_value = 0;
  958. /* Read Test */
  959. return_value = pwrap_wacs2_read(PMIC_DEW_READ_TEST_ADDR, &rdata);
  960. if (rdata != DEFAULT_VALUE_READ_TEST) {
  961. PWRAPERR("Read Test fail,rdata=0x%x, exp=0x5aa5,return_value=0x%x\n", rdata, return_value);
  962. return E_PWR_READ_TEST_FAIL;
  963. }
  964. PWRAPLOG("Read Test pass,return_value=%d\n", return_value);
  965. return 0;
  966. }
  967. static unsigned int pwrap_write_test(void)
  968. {
  969. unsigned int rdata = 0;
  970. unsigned int sub_return = 0;
  971. unsigned int sub_return1 = 0;
  972. /* Write test using WACS2 */
  973. PWRAPLOG("start pwrap_write\n");
  974. sub_return = pwrap_wacs2_write(PMIC_DEW_WRITE_TEST_ADDR, DEFAULT_VALUE_READ_TEST);
  975. PWRAPLOG("after pwrap_write\n");
  976. sub_return1 = pwrap_wacs2_read(PMIC_DEW_WRITE_TEST_ADDR, &rdata);
  977. if ((rdata != DEFAULT_VALUE_READ_TEST) || (sub_return != 0) || (sub_return1 != 0)) {
  978. PWRAPERR("write test error,rdata=0x%x,exp=0xa55a,sub_return=0x%x,sub_return1=0x%x\n", rdata, sub_return,
  979. sub_return1);
  980. return E_PWR_INIT_WRITE_TEST;
  981. }
  982. PWRAPLOG("write Test pass\n");
  983. return 0;
  984. }
  985. static void pwrap_ut(unsigned int ut_test)
  986. {
  987. switch (ut_test) {
  988. case 1:
  989. pwrap_write_test();
  990. break;
  991. case 2:
  992. pwrap_read_test();
  993. break;
  994. case 3:
  995. #ifdef CONFIG_MTK_TINYSYS_SSPM_SUPPORT
  996. pwrap_wacs2_ipi(0x10010000 + 0xD8, 0xffffffff, (WRITE_CMD | WRITE_PMIC_WRAP));
  997. break;
  998. #endif
  999. default:
  1000. PWRAPLOG("default test.\n");
  1001. break;
  1002. }
  1003. }
  1004. static void _pwrap_set_DCM(void)
  1005. {
  1006. signed int sub_return = 0;
  1007. #ifndef PWRAP_DCM_ALL_ON
  1008. WRAP_WR32(PMIC_WRAP_DCM_EN, 0x3);
  1009. #else
  1010. WRAP_WR32(PMIC_WRAP_DCM_EN, 0x3fff);
  1011. #endif
  1012. /* no debounce */
  1013. WRAP_WR32(PMIC_WRAP_DCM_DBC_PRD, DISABLE);
  1014. #if 0
  1015. /* had config at DCM_GROUP, default is disable */
  1016. /* 0x10001074 bit[22] = 1 b0 to disable pmic clock DCM */
  1017. sub_return = WRAP_RD32(PMIC_CLOCK_DCM);
  1018. PWRAPLOG("PMIC_CLOCK_DCM=0x%x\n", sub_return);
  1019. WRAP_WR32(PMIC_CLOCK_DCM, (sub_return & 0xFFBFFFFF));
  1020. #endif
  1021. /* 0x10001F0C bit[25] = 1 b1 to disable apb clock gating mechanism. */
  1022. sub_return = WRAP_RD32(APB_CLOCK_GATING);
  1023. PWRAPLOG("APB_CLOCK_GATING=0x%x\n", sub_return);
  1024. WRAP_WR32(APB_CLOCK_GATING, ((sub_return & 0xFDFFFFFF) | 0x02000000));
  1025. PWRAPLOG("PMIC_CLOCK_DCM=0x%x APB_CLOCK_GATING=0x%x ,enable DCM ok\n",
  1026. WRAP_RD32(PMIC_CLOCK_DCM), WRAP_RD32(APB_CLOCK_GATING));
  1027. }
  1028. signed int pwrap_init(void)
  1029. {
  1030. signed int sub_return = 0;
  1031. unsigned int rdata = 0x0;
  1032. PWRAPLOG("pwrap_init start!!!!!!!!!!!!!\n");
  1033. __pwrap_spi_clk_set();
  1034. PWRAPLOG("__pwrap_spi_clk_set ok\n");
  1035. /* Enable DCM */
  1036. _pwrap_set_DCM();
  1037. PWRAPLOG("Enable DCM ok\n");
  1038. /* Reset SPISLV */
  1039. sub_return = _pwrap_reset_spislv();
  1040. if (sub_return != 0) {
  1041. PWRAPERR("error,_pwrap_reset_spislv fail,sub_return=%x\n", sub_return);
  1042. return E_PWR_INIT_RESET_SPI;
  1043. }
  1044. PWRAPLOG("Reset SPISLV ok\n");
  1045. /* Enable WRAP */
  1046. WRAP_WR32(PMIC_WRAP_WRAP_EN, ENABLE);
  1047. PWRAPLOG("Enable WRAP ok\n");
  1048. WRAP_WR32(PMIC_WRAP_HIPRIO_ARB_EN, WACS2); /* ONLY WACS2 */
  1049. /* Enable WACS2 */
  1050. WRAP_WR32(PMIC_WRAP_WACS2_EN, ENABLE);
  1051. PWRAPLOG("Enable WACSW2 ok\n");
  1052. /* SPI Slave Configuration */
  1053. sub_return = __pwrap_InitSPISLV();
  1054. if (sub_return != 0) {
  1055. PWRAPERR("Error: DrvPWRAP_InitSPISLV Failed, sub_return = %x", sub_return);
  1056. return -1;
  1057. }
  1058. /* SPI Waveform Configuration. 0:safe mode, 1:18MHz */
  1059. sub_return = _pwrap_init_reg_clock(1);
  1060. if (sub_return != 0) {
  1061. PWRAPERR("error,_pwrap_init_reg_clock fail,sub_return=%x\n", sub_return);
  1062. return E_PWR_INIT_REG_CLOCK;
  1063. }
  1064. PWRAPLOG("_pwrap_init_reg_clock ok\n");
  1065. /* Enable DIO mode */
  1066. sub_return = _pwrap_init_dio(1);
  1067. if (sub_return != 0) {
  1068. PWRAPERR("_pwrap_init_dio test error,error code=%x, sub_return=%x\n", 0x11, sub_return);
  1069. return E_PWR_INIT_DIO;
  1070. }
  1071. PWRAPLOG("_pwrap_init_dio ok\n");
  1072. /* Input data calibration flow; */
  1073. sub_return = _pwrap_init_sistrobe(0);
  1074. if (sub_return != 0) {
  1075. PWRAPERR("error,DrvPWRAP_InitSiStrobe fail,sub_return=%x\n", sub_return);
  1076. return E_PWR_INIT_SIDLY;
  1077. }
  1078. PWRAPLOG("_pwrap_init_sistrobe ok\n");
  1079. /* Enable Encryption */
  1080. sub_return = _pwrap_init_cipher();
  1081. if (sub_return != 0) {
  1082. PWRAPERR("Enable Encryption fail, return=%x\n", sub_return);
  1083. return E_PWR_INIT_CIPHER;
  1084. }
  1085. PWRAPLOG("_pwrap_init_cipher ok\n");
  1086. /* Write test using WACS2. check Wtiet test default value */
  1087. sub_return = _pwrap_wacs2_write_test(0);
  1088. if (rdata != 0) {
  1089. PWRAPERR("[_pwrap_wacs2_write_test(0)] test fail\n");
  1090. return E_PWR_INIT_WRITE_TEST;
  1091. }
  1092. #ifdef DUAL_PMICS
  1093. sub_return = _pwrap_wacs2_write_test(1);
  1094. if (rdata != 0) {
  1095. PWRAPERR("[_pwrap_wacs2_write_test(1)] test fail\n");
  1096. return E_PWR_INIT_WRITE_TEST;
  1097. }
  1098. #endif
  1099. PWRAPLOG("_pwrap_wacs2_write_test ok\n");
  1100. /* Status update function initialization
  1101. * 1. Signature Checking using CRC (CRC 0 only)
  1102. * 2. EINT update
  1103. * 3. Read back Auxadc thermal data for GPS
  1104. */
  1105. _pwrap_InitStaUpd();
  1106. PWRAPLOG("_pwrap_InitStaUpd ok\n");
  1107. #if (MTK_PLATFORM_MT6771_OE2)
  1108. /* PMIC WRAP priority adjust */
  1109. WRAP_WR32(PMIC_WRAP_PRIORITY_USER_SEL_0, 0x6543C210);
  1110. WRAP_WR32(PMIC_WRAP_PRIORITY_USER_SEL_1, 0xFEDBA987);
  1111. WRAP_WR32(PMIC_WRAP_ARBITER_OUT_SEL_0, 0x87654210);
  1112. WRAP_WR32(PMIC_WRAP_ARBITER_OUT_SEL_1, 0xFED3CBA9);
  1113. #else
  1114. /* PMIC WRAP priority adjust */
  1115. WRAP_WR32(PMIC_WRAP_PRIORITY_USER_SEL_0, 0x6543C210);
  1116. WRAP_WR32(PMIC_WRAP_PRIORITY_USER_SEL_1, 0xDBFA9E87);
  1117. WRAP_WR32(PMIC_WRAP_ARBITER_OUT_SEL_0, 0x87654210);
  1118. WRAP_WR32(PMIC_WRAP_ARBITER_OUT_SEL_1, 0xDAF3ECB9);
  1119. #endif
  1120. /* PMIC_WRAP starvation setting */
  1121. _pwrap_starve_set();
  1122. PWRAPLOG("_pwrap_starve_set ok\n");
  1123. /* PMIC_WRAP enables */
  1124. _pwrap_enable();
  1125. PWRAPLOG("_pwrap_enable ok\n");
  1126. /* Backward Compatible Settings */
  1127. /* WRAP_WR32(PMIC_WRAP_BWC_OPTIONS, WRAP_RD32(PMIC_WRAP_BWC_OPTIONS) | 0x8); */
  1128. /* Initialization Done */
  1129. WRAP_WR32(PMIC_WRAP_INIT_DONE0, 0x1);
  1130. WRAP_WR32(PMIC_WRAP_INIT_DONE1, 0x1);
  1131. WRAP_WR32(PMIC_WRAP_INIT_DONE2, 0x1);
  1132. WRAP_WR32(PMIC_WRAP_INIT_DONE3, 0x1);
  1133. PWRAPLOG("pwrap_init Done!!!!!!!!!\n");
  1134. /* WACS2 UT */
  1135. pwrap_ut(1);
  1136. pwrap_ut(2);
  1137. PWRAPLOG("channel pass \n\r ");
  1138. #if (PMIC_WRAP_PRELOADER) && (MTK_PLATFORM_MT6799)
  1139. unsigned int rgdata=0;
  1140. pwrap_read(PPCCTL0, &rgdata);
  1141. rgdata |= 0x1;
  1142. pwrap_write(PPCCTL0, rgdata);
  1143. pwrap_read(PPCCTL0, &rgdata);
  1144. PWRAPLOG("PMIC_RG_PWRHOLD=%x(should be 1)\n", rgdata);
  1145. #endif
  1146. return 0;
  1147. }
  1148. /*-------------------pwrap debug---------------------*/
  1149. static inline void pwrap_dump_ap_register(void)
  1150. {
  1151. unsigned int i = 0;
  1152. #if (PMIC_WRAP_KERNEL) || (PMIC_WRAP_CTP)
  1153. unsigned int *reg_addr;
  1154. #else
  1155. unsigned int reg_addr;
  1156. #endif
  1157. unsigned int reg_value = 0;
  1158. PWRAPERR("dump pwrap register\n");
  1159. for (i = 0; i <= PMIC_WRAP_REG_RANGE; i++) {
  1160. reg_addr = (PMIC_WRAP_BASE + i * 4);
  1161. #if (PMIC_WRAP_KERNEL)
  1162. reg_value = WRAP_RD32(((unsigned int *) (PMIC_WRAP_BASE + i * 4)));
  1163. #else
  1164. reg_value = WRAP_RD32(reg_addr);
  1165. #endif
  1166. PWRAPERR("reg_addr:0x%p = 0x%x\n", reg_addr, reg_value);
  1167. }
  1168. }
  1169. void pwrap_dump_all_register(void)
  1170. {
  1171. pwrap_dump_ap_register();
  1172. }
  1173. static int is_pwrap_init_done(void)
  1174. {
  1175. int ret = 0;
  1176. ret = WRAP_RD32(PMIC_WRAP_INIT_DONE2);
  1177. PWRAPLOG("is_pwrap_init_done %d\n", ret);
  1178. if ((ret & 0x1) == 1)
  1179. return 0;
  1180. return -1;
  1181. }
  1182. signed int pwrap_init_lk(void)
  1183. {
  1184. unsigned int pwrap_ret = 0, i = 0;
  1185. PWRAPFUC();
  1186. if (0 == is_pwrap_init_done()) {
  1187. PWRAPLOG("[PMIC_WRAP]wrap_init already init, do nothing\n");
  1188. return 0;
  1189. }
  1190. for (i = 0; i < 3; i++) {
  1191. pwrap_ret = pwrap_init();
  1192. if (pwrap_ret != 0) {
  1193. PWRAPERR("[PMIC_WRAP]wrap_init fail,the return value=%x.\n",pwrap_ret);
  1194. if (i >= 2)
  1195. ASSERT(0);
  1196. } else {
  1197. PWRAPLOG("[PMIC_WRAP]wrap_init pass,the return value=%x.\n",pwrap_ret);
  1198. break;
  1199. }
  1200. }
  1201. return 0;
  1202. }
  1203. #endif /*endif PMIC_WRAP_NO_PMIC */