mtk_dcm.c 22 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 <mtk_dcm.h>
  32. #include <debug.h>
  33. #include <stdlib.h>
  34. #include <string.h>
  35. #include <arch/arm.h>
  36. #include <arch/arm/mmu.h>
  37. #include <arch/ops.h>
  38. #include <target/board.h>
  39. #include <platform/mt_reg_base.h>
  40. #include <platform/mt_typedefs.h>
  41. #include <platform/sync_write.h>
  42. #include <mtk_dcm_autogen.h>
  43. #include "mtk_secure_api.h"
  44. #define late_initcall(a)
  45. #define DEFINE_MUTEX(a)
  46. #define mutex_lock(a)
  47. #define mutex_unlock(a)
  48. #define IOMEM(a) (a)
  49. #define dcm_smc_msg(init_type) \
  50. mt_secure_call(MTK_SIP_KERNEL_DCM, init_type, 0, 0, 0)
  51. #define dcm_smc_read_cnt(type) \
  52. mt_secure_call(MTK_SIP_KERNEL_DCM, type, 1, 0, 0)
  53. #define __raw_readl(addr) DRV_Reg32(addr)
  54. #define reg_read(addr) __raw_readl(IOMEM(addr))
  55. #define reg_write(addr, val) mt_reg_sync_writel((val), ((void *)addr))
  56. #define MCUSYS_SMC_WRITE(addr, val) reg_write(addr, val)
  57. #define dcm_smc_msg_send(msg) dcm_smc_msg(msg)
  58. #define dcm_err(fmt, args...) dprintf(CRITICAL, fmt, ##args)
  59. #define dcm_warn(fmt, args...) dprintf(CRITICAL, fmt, ##args)
  60. #define dcm_info(fmt, args...) dprintf(INFO, fmt, ##args)
  61. #define dcm_dbg(fmt, args...) dprintf(SPEW, fmt, ##args)
  62. #define dcm_ver(fmt, args...) dprintf(SPEW, fmt, ##args)
  63. #define REG_DUMP(addr) dcm_info("%-30s(0x%08x): 0x%08x\n", #addr, addr, reg_read(addr))
  64. #define SECURE_REG_DUMP(addr) dcm_info("%-30s(0x%08x): 0x%08lx\n", #addr, addr, mcsi_reg_read(addr##_PHYS & 0xFFFF))
  65. /** macro **/
  66. #define and(v, a) ((v) & (a))
  67. #define or(v, o) ((v) | (o))
  68. #define aor(v, a, o) (((v) & (a)) | (o))
  69. /** global **/
  70. static short dcm_initiated;
  71. #ifdef CTRL_BIGCORE_DCM_IN_KERNEL
  72. /* Not in use.
  73. * static short dcm_cpu_cluster_stat;
  74. */
  75. #endif
  76. static unsigned int all_dcm_type = (ARMCORE_DCM_TYPE | MCUSYS_DCM_TYPE | MCSI_DCM_TYPE
  77. | STALL_DCM_TYPE | RGU_DCM_TYPE
  78. | GIC_SYNC_DCM_TYPE | INFRA_DCM_TYPE
  79. | DDRPHY_DCM_TYPE | EMI_DCM_TYPE | DRAMC_DCM_TYPE
  80. );
  81. #if 1
  82. static unsigned int init_dcm_type = (ARMCORE_DCM_TYPE | MCUSYS_DCM_TYPE | MCSI_DCM_TYPE
  83. | STALL_DCM_TYPE | RGU_DCM_TYPE
  84. | GIC_SYNC_DCM_TYPE | INFRA_DCM_TYPE
  85. );
  86. #else
  87. static unsigned int init_dcm_type = (INFRA_DCM_TYPE
  88. );
  89. #endif
  90. /*****************************************
  91. * following is implementation per DCM module.
  92. * 1. per-DCM function is 1-argu with ON/OFF/MODE option.
  93. *****************************************/
  94. typedef int (*DCM_FUNC)(int);
  95. typedef void (*DCM_PRESET_FUNC)(void);
  96. int dcm_topckg(ENUM_TOPCKG_DCM on)
  97. {
  98. return 0;
  99. }
  100. void dcm_infracfg_ao_emi_indiv(int on)
  101. {
  102. }
  103. int dcm_infra_preset(int on)
  104. {
  105. return 0;
  106. }
  107. int dcm_infra(ENUM_INFRA_DCM on)
  108. {
  109. /*
  110. * dcm_infracfg_ao_infra_bus_dcm(on);
  111. */
  112. dcm_infracfg_ao_infra_peri(on);
  113. /*
  114. * dcm_infracfg_ao_infra_emi_local_dcm(on);
  115. */
  116. dcm_infracfg_ao_infra_mem(on);
  117. /*
  118. * dcm_infracfg_ao_infra_rx_p2p_dcm(on);
  119. */
  120. dcm_infracfg_ao_p2p_dsi_csi(on);
  121. /*
  122. * dcm_infracfg_ao_peri_bus_dcm(on);
  123. */
  124. /* in dcm_infracfg_ao_infra_peri(on); */
  125. /*
  126. * dcm_infracfg_ao_peri_module_dcm(on);
  127. */
  128. dcm_infracfg_ao_audio(on);
  129. dcm_infracfg_ao_icusb(on);
  130. dcm_infracfg_ao_ssusb(on);
  131. return 0;
  132. }
  133. int dcm_peri(ENUM_PERI_DCM on)
  134. {
  135. return 0;
  136. }
  137. int dcm_armcore(ENUM_ARMCORE_DCM mode)
  138. {
  139. dcm_mcu_misccfg_bus_arm_pll_divider_dcm(mode);
  140. dcm_mcu_misccfg_mp0_arm_pll_divider_dcm(mode);
  141. dcm_mcu_misccfg_mp1_arm_pll_divider_dcm(mode);
  142. return 0;
  143. }
  144. int dcm_mcusys(ENUM_MCUSYS_DCM on)
  145. {
  146. dcm_mcu_misccfg_adb400_dcm(on);
  147. dcm_mcu_misccfg_bus_sync_dcm(on);
  148. dcm_mcu_misccfg_bus_clock_dcm(on);
  149. dcm_mcu_misccfg_bus_fabric_dcm(on);
  150. dcm_mcu_misccfg_l2_shared_dcm(on);
  151. dcm_mcu_misccfg_mp0_sync_dcm_enable(on);
  152. dcm_mcu_misccfg_mp1_sync_dcm_enable(on);
  153. dcm_mcu_misccfg_mcu_misc_dcm(on);
  154. return 0;
  155. }
  156. int dcm_mcusys_preset(int on)
  157. {
  158. return 0;
  159. }
  160. int dcm_big_core_preset(void)
  161. {
  162. return 0;
  163. }
  164. int dcm_big_core(ENUM_BIG_CORE_DCM on)
  165. {
  166. return 0;
  167. }
  168. int dcm_stall_preset(int on)
  169. {
  170. /* Not gen'ed as Bianco. Check if necessary.
  171. * dcm_mcu_misccfg_mp_stall_dcm(on);
  172. */
  173. reg_write(SYNC_DCM_CLUSTER_CONFIG, 0x063f0000);
  174. return 0;
  175. }
  176. int dcm_stall(ENUM_STALL_DCM on)
  177. {
  178. dcm_mcu_misccfg_mp0_stall_dcm(on);
  179. dcm_mcu_misccfg_mp1_stall_dcm(on);
  180. return 0;
  181. }
  182. int dcm_gic_sync(ENUM_GIC_SYNC_DCM on)
  183. {
  184. dcm_mcu_misccfg_gic_sync_dcm(on);
  185. return 0;
  186. }
  187. int dcm_last_core(ENUM_LAST_CORE_DCM on)
  188. {
  189. return 0;
  190. }
  191. int dcm_rgu(ENUM_RGU_DCM on)
  192. {
  193. dcm_mp0_cpucfg_mp0_rgu_dcm(on);
  194. dcm_mp1_cpucfg_mp1_rgu_dcm(on);
  195. return 0;
  196. }
  197. int dcm_dramc_ao(ENUM_DRAMC_AO_DCM on)
  198. {
  199. /* Not gen'd, Check why
  200. dcm_dramc_ch0_top1_dramc_dcm(on);
  201. dcm_dramc_ch1_top1_dramc_dcm(on);
  202. */
  203. return 0;
  204. }
  205. int dcm_ddrphy(ENUM_DDRPHY_DCM on)
  206. {
  207. /* Not gen'd, Check why
  208. dcm_dramc_ch0_top0_ddrphy(on);
  209. dcm_dramc_ch1_top0_ddrphy(on);
  210. */
  211. return 0;
  212. }
  213. int dcm_emi(ENUM_EMI_DCM on)
  214. {
  215. /* Not gen'd, Check why
  216. dcm_emi_dcm_emi_group(on);
  217. */
  218. dcm_chn0_emi_dcm_emi_group(on);
  219. dcm_chn1_emi_dcm_emi_group(on);
  220. return 0;
  221. }
  222. int dcm_lpdma(ENUM_LPDMA_DCM on)
  223. {
  224. return 0;
  225. }
  226. int dcm_pwrap(ENUM_PWRAP_DCM on)
  227. {
  228. return 0;
  229. }
  230. int dcm_mcsi_preset(int on)
  231. {
  232. return 0;
  233. }
  234. int dcm_mcsi(ENUM_MCSI_DCM on)
  235. {
  236. dcm_mcucfg_mcsi_dcm(on);
  237. return 0;
  238. }
  239. /*****************************************************/
  240. typedef struct _dcm {
  241. int current_state;
  242. int saved_state;
  243. int disable_refcnt;
  244. int default_state;
  245. DCM_FUNC func;
  246. DCM_PRESET_FUNC preset_func;
  247. int typeid;
  248. char *name;
  249. } DCM;
  250. static DCM dcm_array[NR_DCM_TYPE] = {
  251. {
  252. .typeid = ARMCORE_DCM_TYPE,
  253. .name = "ARMCORE_DCM",
  254. .func = (DCM_FUNC) dcm_armcore,
  255. .current_state = ARMCORE_DCM_MODE1,
  256. .default_state = ARMCORE_DCM_MODE1,
  257. .disable_refcnt = 0,
  258. },
  259. {
  260. .typeid = MCUSYS_DCM_TYPE,
  261. .name = "MCUSYS_DCM",
  262. .func = (DCM_FUNC) dcm_mcusys,
  263. .preset_func = (DCM_PRESET_FUNC) dcm_mcusys_preset,
  264. .current_state = MCUSYS_DCM_ON,
  265. .default_state = MCUSYS_DCM_ON,
  266. .disable_refcnt = 0,
  267. },
  268. {
  269. .typeid = INFRA_DCM_TYPE,
  270. .name = "INFRA_DCM",
  271. .func = (DCM_FUNC) dcm_infra,
  272. .preset_func = (DCM_PRESET_FUNC) dcm_infra_preset,
  273. .current_state = INFRA_DCM_ON,
  274. .default_state = INFRA_DCM_ON,
  275. .disable_refcnt = 0,
  276. },
  277. {
  278. .typeid = PERI_DCM_TYPE,
  279. .name = "PERI_DCM",
  280. .func = (DCM_FUNC) dcm_peri,
  281. /*.preset_func = (DCM_PRESET_FUNC) dcm_peri_preset,*/
  282. .current_state = PERI_DCM_ON,
  283. .default_state = PERI_DCM_ON,
  284. .disable_refcnt = 0,
  285. },
  286. {
  287. .typeid = EMI_DCM_TYPE,
  288. .name = "EMI_DCM",
  289. .func = (DCM_FUNC) dcm_emi,
  290. .current_state = EMI_DCM_ON,
  291. .default_state = EMI_DCM_ON,
  292. .disable_refcnt = 0,
  293. },
  294. {
  295. .typeid = DRAMC_DCM_TYPE,
  296. .name = "DRAMC_DCM",
  297. .func = (DCM_FUNC) dcm_dramc_ao,
  298. .current_state = DRAMC_AO_DCM_ON,
  299. .default_state = DRAMC_AO_DCM_ON,
  300. .disable_refcnt = 0,
  301. },
  302. {
  303. .typeid = DDRPHY_DCM_TYPE,
  304. .name = "DDRPHY_DCM",
  305. .func = (DCM_FUNC) dcm_ddrphy,
  306. .current_state = DDRPHY_DCM_ON,
  307. .default_state = DDRPHY_DCM_ON,
  308. .disable_refcnt = 0,
  309. },
  310. {
  311. .typeid = STALL_DCM_TYPE,
  312. .name = "STALL_DCM",
  313. .func = (DCM_FUNC) dcm_stall,
  314. .preset_func = (DCM_PRESET_FUNC) dcm_stall_preset,
  315. .current_state = STALL_DCM_ON,
  316. .default_state = STALL_DCM_ON,
  317. .disable_refcnt = 0,
  318. },
  319. {
  320. .typeid = BIG_CORE_DCM_TYPE,
  321. .name = "BIG_CORE_DCM",
  322. .func = (DCM_FUNC) dcm_big_core,
  323. .current_state = BIG_CORE_DCM_ON,
  324. .default_state = BIG_CORE_DCM_ON,
  325. .disable_refcnt = 0,
  326. },
  327. {
  328. .typeid = GIC_SYNC_DCM_TYPE,
  329. .name = "GIC_SYNC_DCM",
  330. .func = (DCM_FUNC) dcm_gic_sync,
  331. .current_state = GIC_SYNC_DCM_ON,
  332. .default_state = GIC_SYNC_DCM_ON,
  333. .disable_refcnt = 0,
  334. },
  335. {
  336. .typeid = LAST_CORE_DCM_TYPE,
  337. .name = "LAST_CORE_DCM",
  338. .func = (DCM_FUNC) dcm_last_core,
  339. .current_state = LAST_CORE_DCM_ON,
  340. .default_state = LAST_CORE_DCM_ON,
  341. .disable_refcnt = 0,
  342. },
  343. {
  344. .typeid = RGU_DCM_TYPE,
  345. .name = "RGU_CORE_DCM",
  346. .func = (DCM_FUNC) dcm_rgu,
  347. .current_state = RGU_DCM_ON,
  348. .default_state = RGU_DCM_ON,
  349. .disable_refcnt = 0,
  350. },
  351. {
  352. .typeid = TOPCKG_DCM_TYPE,
  353. .name = "TOPCKG_DCM",
  354. .func = (DCM_FUNC) dcm_topckg,
  355. .current_state = TOPCKG_DCM_ON,
  356. .default_state = TOPCKG_DCM_ON,
  357. .disable_refcnt = 0,
  358. },
  359. {
  360. .typeid = LPDMA_DCM_TYPE,
  361. .name = "LPDMA_DCM",
  362. .func = (DCM_FUNC) dcm_lpdma,
  363. .current_state = LPDMA_DCM_ON,
  364. .default_state = LPDMA_DCM_ON,
  365. .disable_refcnt = 0,
  366. },
  367. {
  368. .typeid = MCSI_DCM_TYPE,
  369. .name = "MCSI_DCM",
  370. .func = (DCM_FUNC) dcm_mcsi,
  371. /*.preset_func = (DCM_PRESET_FUNC) dcm_mcsi_preset,*/
  372. .current_state = MCSI_DCM_ON,
  373. .default_state = MCSI_DCM_ON,
  374. .disable_refcnt = 0,
  375. },
  376. };
  377. /*****************************************
  378. * DCM driver will provide regular APIs :
  379. * 1. dcm_restore(type) to recovery CURRENT_STATE before any power-off reset.
  380. * 2. dcm_set_default(type) to reset as cold-power-on init state.
  381. * 3. dcm_disable(type) to disable all dcm.
  382. * 4. dcm_set_state(type) to set dcm state.
  383. * 5. dcm_dump_state(type) to show CURRENT_STATE.
  384. * 6. /sys/power/dcm_state interface: 'restore', 'disable', 'dump', 'set'. 4 commands.
  385. *
  386. * spsecified APIs for workaround:
  387. * 1. (definitely no workaround now)
  388. *****************************************/
  389. void dcm_set_default(unsigned int type)
  390. {
  391. int i;
  392. DCM *dcm;
  393. #ifndef ENABLE_DCM_IN_LK
  394. dcm_warn("[%s]type:0x%X, init_dcm_type=0x%X\n", __func__, type, init_dcm_type);
  395. #else
  396. dcm_warn("[%s]type:0x%X, init_dcm_type=0x%X, INIT_DCM_TYPE_BY_K=0x%X\n",
  397. __func__, type, init_dcm_type, INIT_DCM_TYPE_BY_K);
  398. #endif
  399. mutex_lock(&dcm_lock);
  400. for (i = 0, dcm = &dcm_array[0]; i < NR_DCM_TYPE; i++, dcm++) {
  401. if (type & dcm->typeid) {
  402. dcm->saved_state = dcm->default_state;
  403. dcm->current_state = dcm->default_state;
  404. dcm->disable_refcnt = 0;
  405. #ifdef ENABLE_DCM_IN_LK
  406. if (INIT_DCM_TYPE_BY_K & dcm->typeid) {
  407. #endif
  408. if (dcm->preset_func)
  409. dcm->preset_func();
  410. dcm->func(dcm->current_state);
  411. #ifdef ENABLE_DCM_IN_LK
  412. }
  413. #endif
  414. dcm_info("[%s 0x%X] current state:%d (%d)\n",
  415. dcm->name, dcm->typeid, dcm->current_state,
  416. dcm->disable_refcnt);
  417. }
  418. }
  419. dcm_smc_msg_send(init_dcm_type);
  420. mutex_unlock(&dcm_lock);
  421. }
  422. void dcm_set_state(unsigned int type, int state)
  423. {
  424. int i;
  425. DCM *dcm;
  426. unsigned int init_dcm_type_pre = init_dcm_type;
  427. dcm_warn("[%s]type:0x%X, set:%d, init_dcm_type_pre=0x%X\n",
  428. __func__, type, state, init_dcm_type_pre);
  429. mutex_lock(&dcm_lock);
  430. for (i = 0, dcm = &dcm_array[0]; type && (i < NR_DCM_TYPE); i++, dcm++) {
  431. if (type & dcm->typeid) {
  432. type &= ~(dcm->typeid);
  433. dcm->saved_state = state;
  434. if (dcm->disable_refcnt == 0) {
  435. if (state)
  436. init_dcm_type |= dcm->typeid;
  437. else
  438. init_dcm_type &= ~(dcm->typeid);
  439. dcm->current_state = state;
  440. dcm->func(dcm->current_state);
  441. }
  442. dcm_info("[%s 0x%X] current state:%d (%d)\n",
  443. dcm->name, dcm->typeid, dcm->current_state,
  444. dcm->disable_refcnt);
  445. }
  446. }
  447. if (init_dcm_type_pre != init_dcm_type) {
  448. dcm_warn("[%s]type:0x%X, set:%d, init_dcm_type=0x%X->0x%X\n",
  449. __func__, type, state, init_dcm_type_pre, init_dcm_type);
  450. dcm_smc_msg_send(init_dcm_type);
  451. }
  452. mutex_unlock(&dcm_lock);
  453. }
  454. void dcm_disable(unsigned int type)
  455. {
  456. int i;
  457. DCM *dcm;
  458. unsigned int init_dcm_type_pre = init_dcm_type;
  459. dcm_warn("[%s]type:0x%X\n", __func__, type);
  460. mutex_lock(&dcm_lock);
  461. for (i = 0, dcm = &dcm_array[0]; type && (i < NR_DCM_TYPE); i++, dcm++) {
  462. if (type & dcm->typeid) {
  463. type &= ~(dcm->typeid);
  464. dcm->current_state = DCM_OFF;
  465. if (dcm->disable_refcnt++ == 0)
  466. init_dcm_type &= ~(dcm->typeid);
  467. dcm->func(dcm->current_state);
  468. dcm_info("[%s 0x%X] current state:%d (%d)\n",
  469. dcm->name, dcm->typeid, dcm->current_state,
  470. dcm->disable_refcnt);
  471. }
  472. }
  473. if (init_dcm_type_pre != init_dcm_type) {
  474. dcm_warn("[%s]type:0x%X, init_dcm_type=0x%X->0x%X\n",
  475. __func__, type, init_dcm_type_pre, init_dcm_type);
  476. dcm_smc_msg_send(init_dcm_type);
  477. }
  478. mutex_unlock(&dcm_lock);
  479. }
  480. void dcm_restore(unsigned int type)
  481. {
  482. int i;
  483. DCM *dcm;
  484. unsigned int init_dcm_type_pre = init_dcm_type;
  485. dcm_warn("[%s]type:0x%X\n", __func__, type);
  486. mutex_lock(&dcm_lock);
  487. for (i = 0, dcm = &dcm_array[0]; type && (i < NR_DCM_TYPE); i++, dcm++) {
  488. if (type & dcm->typeid) {
  489. type &= ~(dcm->typeid);
  490. if (dcm->disable_refcnt > 0)
  491. dcm->disable_refcnt--;
  492. if (dcm->disable_refcnt == 0) {
  493. if (dcm->saved_state)
  494. init_dcm_type |= dcm->typeid;
  495. else
  496. init_dcm_type &= ~(dcm->typeid);
  497. dcm->current_state = dcm->saved_state;
  498. dcm->func(dcm->current_state);
  499. }
  500. dcm_info("[%s 0x%X] current state:%d (%d)\n",
  501. dcm->name, dcm->typeid, dcm->current_state,
  502. dcm->disable_refcnt);
  503. }
  504. }
  505. if (init_dcm_type_pre != init_dcm_type) {
  506. dcm_warn("[%s]type:0x%X, init_dcm_type=0x%X->0x%X\n",
  507. __func__, type, init_dcm_type_pre, init_dcm_type);
  508. dcm_smc_msg_send(init_dcm_type);
  509. }
  510. mutex_unlock(&dcm_lock);
  511. }
  512. void dcm_dump_state(int type)
  513. {
  514. int i;
  515. DCM *dcm;
  516. dcm_info("\n******** dcm dump state *********\n");
  517. for (i = 0, dcm = &dcm_array[0]; i < NR_DCM_TYPE; i++, dcm++) {
  518. if (type & dcm->typeid) {
  519. dcm_info("[%s 0x%X] current state:%d (%d)\n",
  520. dcm->name, dcm->typeid, dcm->current_state,
  521. dcm->disable_refcnt);
  522. }
  523. }
  524. }
  525. void dcm_dump_regs(void)
  526. {
  527. dcm_info("\n******** dcm dump register *********\n");
  528. /*
  529. REG_DUMP(CPUSYS_RGU_SYNC_DCM);
  530. */
  531. REG_DUMP(L2C_SRAM_CTRL);
  532. REG_DUMP(CCI_CLK_CTRL);
  533. REG_DUMP(BUS_FABRIC_DCM_CTRL);
  534. REG_DUMP(MCU_MISC_DCM_CTRL);
  535. REG_DUMP(CCI_ADB400_DCM_CONFIG);
  536. REG_DUMP(SYNC_DCM_CONFIG);
  537. REG_DUMP(SYNC_DCM_CLUSTER_CONFIG);
  538. REG_DUMP(MP_GIC_RGU_SYNC_DCM);
  539. REG_DUMP(MP0_PLL_DIVIDER_CFG);
  540. REG_DUMP(MP1_PLL_DIVIDER_CFG);
  541. REG_DUMP(BUS_PLL_DIVIDER_CFG);
  542. REG_DUMP(MCSIA_DCM_EN);
  543. REG_DUMP(INFRA_BUS_DCM_CTRL);
  544. REG_DUMP(PERI_BUS_DCM_CTRL);
  545. REG_DUMP(MEM_DCM_CTRL);
  546. REG_DUMP(P2P_RX_CLK_ON);
  547. /* Not gen'ed
  548. REG_DUMP(EMI_CONM);
  549. REG_DUMP(EMI_CONN);
  550. */
  551. REG_DUMP(CHN0_EMI_CHN_EMI_CONB);
  552. REG_DUMP(CHN1_EMI_CHN_EMI_CONB);
  553. /* Not gen'ed
  554. REG_DUMP(DRAMC_CH0_TOP1_DRAMC_PD_CTRL);
  555. REG_DUMP(DRAMC_CH0_TOP1_CLKAR);
  556. REG_DUMP(DRAMC_CH1_TOP1_DRAMC_PD_CTRL);
  557. REG_DUMP(DRAMC_CH1_TOP1_CLKAR);
  558. REG_DUMP(DRAMC_CH0_TOP0_MISC_CG_CTRL0);
  559. REG_DUMP(DRAMC_CH0_TOP0_MISC_CG_CTRL2);
  560. REG_DUMP(DRAMC_CH0_TOP0_MISC_CTRL3);
  561. REG_DUMP(DRAMC_CH0_TOP0_SHU1_B0_DQ8);
  562. REG_DUMP(DRAMC_CH0_TOP0_SHU1_B1_DQ8);
  563. REG_DUMP(DRAMC_CH0_TOP0_SHU1_CA_CMD8);
  564. REG_DUMP(DRAMC_CH0_TOP0_SHU2_B0_DQ8);
  565. REG_DUMP(DRAMC_CH0_TOP0_SHU2_B1_DQ8);
  566. REG_DUMP(DRAMC_CH0_TOP0_SHU2_CA_CMD8);
  567. REG_DUMP(DRAMC_CH0_TOP0_SHU3_B0_DQ8);
  568. REG_DUMP(DRAMC_CH0_TOP0_SHU3_B1_DQ8);
  569. REG_DUMP(DRAMC_CH0_TOP0_SHU3_CA_CMD8);
  570. REG_DUMP(DRAMC_CH0_TOP0_SHU4_B0_DQ8);
  571. REG_DUMP(DRAMC_CH0_TOP0_SHU4_B1_DQ8);
  572. REG_DUMP(DRAMC_CH0_TOP0_SHU4_CA_CMD8);
  573. REG_DUMP(DRAMC_CH1_TOP0_MISC_CG_CTRL0);
  574. REG_DUMP(DRAMC_CH1_TOP0_MISC_CG_CTRL2);
  575. REG_DUMP(DRAMC_CH1_TOP0_MISC_CTRL3);
  576. REG_DUMP(DRAMC_CH1_TOP0_SHU1_B0_DQ8);
  577. REG_DUMP(DRAMC_CH1_TOP0_SHU1_B1_DQ8);
  578. REG_DUMP(DRAMC_CH1_TOP0_SHU1_CA_CMD8);
  579. REG_DUMP(DRAMC_CH1_TOP0_SHU2_B0_DQ8);
  580. REG_DUMP(DRAMC_CH1_TOP0_SHU2_B1_DQ8);
  581. REG_DUMP(DRAMC_CH1_TOP0_SHU2_CA_CMD8);
  582. REG_DUMP(DRAMC_CH1_TOP0_SHU3_B0_DQ8);
  583. REG_DUMP(DRAMC_CH1_TOP0_SHU3_B1_DQ8);
  584. REG_DUMP(DRAMC_CH1_TOP0_SHU3_CA_CMD8);
  585. REG_DUMP(DRAMC_CH1_TOP0_SHU4_B0_DQ8);
  586. REG_DUMP(DRAMC_CH1_TOP0_SHU4_B1_DQ8);
  587. REG_DUMP(DRAMC_CH1_TOP0_SHU4_CA_CMD8);
  588. */
  589. REG_DUMP(MP0_CPUCFG_MP0_RGU_DCM_CONFIG);
  590. REG_DUMP(MP1_CPUCFG_MP1_RGU_DCM_CONFIG);
  591. }
  592. static int mt_dcm_dts_map(void)
  593. {
  594. return 0;
  595. }
  596. int mt_dcm_init(void)
  597. {
  598. #ifdef DCM_BRINGUP
  599. dcm_warn("%s: skipped for bring up\n", __func__);
  600. return 0;
  601. #endif
  602. if (dcm_initiated)
  603. return 0;
  604. if (mt_dcm_dts_map()) {
  605. dcm_err("%s: failed due to DTS failed\n", __func__);
  606. return -1;
  607. }
  608. #if 0 /* WORKAROUND: Disable big core reg protection */
  609. reg_write(0x10202008, aor(reg_read(0x10202008), ~(0x3), 0x1));
  610. dcm_info("%s: 0x10202008=0x%x\n", __func__, reg_read(0x10202008));
  611. #endif
  612. #if 0
  613. #ifdef CTRL_BIGCORE_DCM_IN_KERNEL
  614. /* big ext buck iso power on */
  615. reg_write(0x10B00260, reg_read(0x10B00260) & ~(0x1 << 2));
  616. dcm_info("%s: 0x10B00260=0x%x\n", __func__, reg_read(0x10B00260));
  617. dcm_cpu_cluster_stat |= DCM_CPU_CLUSTER_B;
  618. #endif
  619. #endif
  620. #ifndef DCM_DEFAULT_ALL_OFF
  621. /** enable all dcm **/
  622. dcm_set_default(init_dcm_type);
  623. #else /* DCM_DEFAULT_ALL_OFF */
  624. dcm_set_state(all_dcm_type, DCM_OFF);
  625. #endif /* #ifndef DCM_DEFAULT_ALL_OFF */
  626. dcm_dump_regs();
  627. dcm_initiated = 1;
  628. return 0;
  629. }
  630. late_initcall(mt_dcm_init);
  631. /**** public APIs *****/
  632. void mt_dcm_disable(void)
  633. {
  634. if (!dcm_initiated)
  635. return;
  636. dcm_disable(all_dcm_type);
  637. }
  638. void mt_dcm_restore(void)
  639. {
  640. if (!dcm_initiated)
  641. return;
  642. dcm_restore(all_dcm_type);
  643. }
  644. unsigned int sync_dcm_convert_freq2div(unsigned int freq)
  645. {
  646. unsigned int div = 0, min_freq = SYNC_DCM_CLK_MIN_FREQ;
  647. if (freq < min_freq)
  648. return 0;
  649. /* max divided ratio = Floor (CPU Frequency / (4 or 5) * system timer Frequency) */
  650. div = (freq / min_freq) - 1;
  651. if (div > SYNC_DCM_MAX_DIV_VAL)
  652. return SYNC_DCM_MAX_DIV_VAL;
  653. return div;
  654. }
  655. int sync_dcm_set_cci_div(unsigned int cci)
  656. {
  657. if (!dcm_initiated)
  658. return -1;
  659. /*
  660. * 1. set xxx_sync_dcm_div first
  661. * 2. set xxx_sync_dcm_tog from 0 to 1 for making sure it is toggled
  662. */
  663. reg_write(MCUCFG_SYNC_DCM_CCI_REG,
  664. aor(reg_read(MCUCFG_SYNC_DCM_CCI_REG),
  665. ~MCUCFG_SYNC_DCM_SEL_CCI_MASK,
  666. cci << MCUCFG_SYNC_DCM_SEL_CCI));
  667. reg_write(MCUCFG_SYNC_DCM_CCI_REG, aor(reg_read(MCUCFG_SYNC_DCM_CCI_REG),
  668. ~MCUCFG_SYNC_DCM_CCI_TOGMASK,
  669. MCUCFG_SYNC_DCM_CCI_TOG0));
  670. reg_write(MCUCFG_SYNC_DCM_CCI_REG, aor(reg_read(MCUCFG_SYNC_DCM_CCI_REG),
  671. ~MCUCFG_SYNC_DCM_CCI_TOGMASK,
  672. MCUCFG_SYNC_DCM_CCI_TOG1));
  673. dcm_dbg("%s: MCUCFG_SYNC_DCM_CCI_REG=0x%X, cci_div_sel=%u/%u\n",
  674. __func__, reg_read(MCUCFG_SYNC_DCM_CCI_REG),
  675. (and(reg_read(MCUCFG_SYNC_DCM_CCI_REG),
  676. MCUCFG_SYNC_DCM_SEL_CCI_MASK) >> MCUCFG_SYNC_DCM_SEL_CCI),
  677. cci);
  678. return 0;
  679. }
  680. int sync_dcm_set_cci_freq(unsigned int cci)
  681. {
  682. dcm_dbg("%s: cci=%u\n", __func__, cci);
  683. sync_dcm_set_cci_div(sync_dcm_convert_freq2div(cci));
  684. return 0;
  685. }
  686. int sync_dcm_set_mp0_div(unsigned int mp0)
  687. {
  688. if (!dcm_initiated)
  689. return -1;
  690. /*
  691. * 1. set xxx_sync_dcm_div first
  692. * 2. set xxx_sync_dcm_tog from 0 to 1 for making sure it is toggled
  693. */
  694. reg_write(MCUCFG_SYNC_DCM_MP0_REG,
  695. aor(reg_read(MCUCFG_SYNC_DCM_MP0_REG),
  696. ~MCUCFG_SYNC_DCM_SEL_MP0_MASK,
  697. mp0 << MCUCFG_SYNC_DCM_SEL_MP0));
  698. reg_write(MCUCFG_SYNC_DCM_MP0_REG, aor(reg_read(MCUCFG_SYNC_DCM_MP0_REG),
  699. ~MCUCFG_SYNC_DCM_MP0_TOGMASK,
  700. MCUCFG_SYNC_DCM_MP0_TOG0));
  701. reg_write(MCUCFG_SYNC_DCM_MP0_REG, aor(reg_read(MCUCFG_SYNC_DCM_MP0_REG),
  702. ~MCUCFG_SYNC_DCM_MP0_TOGMASK,
  703. MCUCFG_SYNC_DCM_MP0_TOG1));
  704. #ifdef __KERNEL__
  705. dcm_dbg("%s: MCUCFG_SYNC_DCM_MP0_REG=0x%08x, mp0_div_sel=%u, mp0 =%u\n",
  706. #else
  707. dcm_dbg("%s: MCUCFG_SYNC_DCM_MP0_REG=0x%X, mp0_div_sel=%u, mp0 =%u\n",
  708. #endif
  709. __func__, reg_read(MCUCFG_SYNC_DCM_MP0_REG),
  710. (and(reg_read(MCUCFG_SYNC_DCM_MP0_REG),
  711. MCUCFG_SYNC_DCM_SEL_MP0_MASK) >> MCUCFG_SYNC_DCM_SEL_MP0),
  712. mp0);
  713. return 0;
  714. }
  715. int sync_dcm_set_mp0_freq(unsigned int mp0)
  716. {
  717. dcm_dbg("%s: mp0=%u\n", __func__, mp0);
  718. sync_dcm_set_mp0_div(sync_dcm_convert_freq2div(mp0));
  719. return 0;
  720. }
  721. int sync_dcm_set_mp1_div(unsigned int mp1)
  722. {
  723. if (!dcm_initiated)
  724. return -1;
  725. /*
  726. * 1. set xxx_sync_dcm_div first
  727. * 2. set xxx_sync_dcm_tog from 0 to 1 for making sure it is toggled
  728. */
  729. reg_write(MCUCFG_SYNC_DCM_MP1_REG,
  730. aor(reg_read(MCUCFG_SYNC_DCM_MP1_REG),
  731. ~MCUCFG_SYNC_DCM_SEL_MP1_MASK,
  732. mp1 << MCUCFG_SYNC_DCM_SEL_MP1));
  733. reg_write(MCUCFG_SYNC_DCM_MP1_REG, aor(reg_read(MCUCFG_SYNC_DCM_MP1_REG),
  734. ~MCUCFG_SYNC_DCM_MP1_TOGMASK,
  735. MCUCFG_SYNC_DCM_MP1_TOG0));
  736. reg_write(MCUCFG_SYNC_DCM_MP1_REG, aor(reg_read(MCUCFG_SYNC_DCM_MP1_REG),
  737. ~MCUCFG_SYNC_DCM_MP1_TOGMASK,
  738. MCUCFG_SYNC_DCM_MP1_TOG1));
  739. #ifdef __KERNEL__
  740. dcm_dbg("%s: MCUCFG_SYNC_DCM_MP1_REG=0x%08x, mp1_div_sel=%u, mp1 =%u\n",
  741. #else
  742. dcm_dbg("%s: MCUCFG_SYNC_DCM_MP1_REG=0x%X, mp1_div_sel=%u, mp1 =%u\n",
  743. #endif
  744. __func__, reg_read(MCUCFG_SYNC_DCM_MP1_REG),
  745. (and(reg_read(MCUCFG_SYNC_DCM_MP1_REG),
  746. MCUCFG_SYNC_DCM_SEL_MP1_MASK) >> MCUCFG_SYNC_DCM_SEL_MP1),
  747. mp1);
  748. return 0;
  749. }
  750. int sync_dcm_set_mp1_freq(unsigned int mp1)
  751. {
  752. dcm_dbg("%s: mp1=%u\n", __func__, mp1);
  753. sync_dcm_set_mp1_div(sync_dcm_convert_freq2div(mp1));
  754. return 0;
  755. }
  756. int sync_dcm_set_mp2_div(unsigned int mp2)
  757. {
  758. return 0;
  759. }
  760. int sync_dcm_set_mp2_freq(unsigned int mp2)
  761. {
  762. return 0;
  763. }
  764. /* unit of frequency is MHz */
  765. int sync_dcm_set_cpu_freq(unsigned int cci, unsigned int mp0, unsigned int mp1, unsigned int mp2)
  766. {
  767. sync_dcm_set_cci_freq(cci);
  768. sync_dcm_set_mp0_freq(mp0);
  769. sync_dcm_set_mp1_freq(mp1);
  770. sync_dcm_set_mp2_freq(mp2);
  771. return 0;
  772. }
  773. int sync_dcm_set_cpu_div(unsigned int cci, unsigned int mp0, unsigned int mp1, unsigned int mp2)
  774. {
  775. sync_dcm_set_cci_div(cci);
  776. sync_dcm_set_mp0_div(mp0);
  777. sync_dcm_set_mp1_div(mp1);
  778. sync_dcm_set_mp2_div(mp2);
  779. return 0;
  780. }