mtk_wdt.c 13 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 <platform/mt_reg_base.h>
  32. #include <platform/mt_typedefs.h>
  33. #include <platform/mtk_wdt.h>
  34. #include <platform/boot_mode.h>
  35. #include <platform/mt_gpt.h>
  36. #include <platform/mt_pmic.h>
  37. #include <platform/upmu_common.h>
  38. #include <debug.h>
  39. #define WDTTAG "[WDT] "
  40. #define WDTLOG(fmt, arg...) dprintf(INFO, WDTTAG fmt, ##arg)
  41. #define WDTCRI(fmt, arg...) dprintf(CRITICAL,WDTTAG fmt, ##arg)
  42. #define WDTMSG(fmt, arg...) dprintf(INFO, fmt, ##arg)
  43. #define WDTERR(fmt, arg...) dprintf(INFO, WDTTAG "%5d: "fmt, __LINE__, ##arg)
  44. #if ENABLE_WDT_MODULE
  45. static unsigned int timeout;
  46. void mtk_wdt_disable(void)
  47. {
  48. u32 tmp;
  49. tmp = DRV_Reg32(MTK_WDT_MODE);
  50. tmp &= ~MTK_WDT_MODE_ENABLE; /* disable watchdog */
  51. tmp |= (MTK_WDT_MODE_KEY); /* need key then write is allowed */
  52. DRV_WriteReg32(MTK_WDT_MODE, tmp);
  53. }
  54. static void mtk_wdt_reset(char bypass_power_key)
  55. {
  56. WDTCRI("%s\n", __func__);
  57. /* Watchdog Rest */
  58. unsigned int wdt_mode_val;
  59. DRV_WriteReg32(MTK_WDT_RESTART, MTK_WDT_RESTART_KEY);
  60. /*set latch register to 0 before sw reset*/
  61. /* DRV_WriteReg32(MTK_WDT_LATCH_CTL, (MTK_WDT_LENGTH_CTL_KEY | 0x0)); */
  62. wdt_mode_val = DRV_Reg32(MTK_WDT_MODE);
  63. /* clear autorestart bit: autoretart: 1, bypass power key, 0: not bypass power key */
  64. wdt_mode_val &= (~MTK_WDT_MODE_AUTO_RESTART);
  65. /* make sure WDT mode is hw reboot mode, can not config isr mode */
  66. wdt_mode_val &= (~(MTK_WDT_MODE_IRQ | MTK_WDT_MODE_IRQ_LEVEL_EN |
  67. MTK_WDT_MODE_ENABLE | MTK_WDT_MODE_DUAL_MODE));
  68. wdt_mode_val = wdt_mode_val | (MTK_WDT_MODE_KEY | MTK_WDT_MODE_EXTEN);
  69. if (bypass_power_key) /* bypass power key reboot. We using auto_restart bit as bypass power key flag */
  70. wdt_mode_val = wdt_mode_val | MTK_WDT_MODE_AUTO_RESTART;
  71. DRV_WriteReg32(MTK_WDT_MODE, wdt_mode_val);
  72. gpt_busy_wait_us(100);
  73. WDTCRI("%s: MODE: 0x%x\n", __func__, DRV_Reg32(MTK_WDT_MODE));
  74. WDTCRI("%s: SW reset happen!\n", __func__);
  75. DRV_WriteReg32(MTK_WDT_SWRST, MTK_WDT_SWRST_KEY);
  76. }
  77. unsigned int mtk_wdt_check_status(void)
  78. {
  79. unsigned int status;
  80. status = DRV_Reg32(MTK_WDT_STATUS);
  81. return status;
  82. }
  83. static void mtk_wdt_mode_config(BOOL dual_mode_en,
  84. BOOL irq,
  85. BOOL ext_en,
  86. BOOL ext_pol,
  87. BOOL wdt_en)
  88. {
  89. unsigned int tmp;
  90. WDTLOG(" mtk_wdt_mode LK config mode value=%x\n", DRV_Reg32(MTK_WDT_MODE));
  91. tmp = DRV_Reg32(MTK_WDT_MODE);
  92. tmp |= MTK_WDT_MODE_KEY;
  93. /* Bit 0 : Whether enable watchdog or not */
  94. if (wdt_en == TRUE)
  95. tmp |= MTK_WDT_MODE_ENABLE;
  96. else
  97. tmp &= ~MTK_WDT_MODE_ENABLE;
  98. /* Bit 1 : Configure extern reset signal polarity. */
  99. if (ext_pol == TRUE)
  100. tmp |= MTK_WDT_MODE_EXT_POL;
  101. else
  102. tmp &= ~MTK_WDT_MODE_EXT_POL;
  103. /* Bit 2 : Whether enable external reset signal */
  104. if (ext_en == TRUE)
  105. tmp |= MTK_WDT_MODE_EXTEN;
  106. else
  107. tmp &= ~MTK_WDT_MODE_EXTEN;
  108. /* Bit 3 : Whether generating interrupt instead of reset signal */
  109. if (irq == TRUE)
  110. tmp |= MTK_WDT_MODE_IRQ;
  111. else
  112. tmp &= ~MTK_WDT_MODE_IRQ;
  113. /* Bit 6 : Whether enable debug module reset */
  114. if (dual_mode_en == TRUE)
  115. tmp |= MTK_WDT_MODE_DUAL_MODE;
  116. else
  117. tmp &= ~MTK_WDT_MODE_DUAL_MODE;
  118. /* Bit 4: WDT_Auto_restart, this is a reserved bit, we use it as bypass powerkey flag. */
  119. /* Because HW reboot always need reboot to kernel, we set it always. */
  120. tmp |= MTK_WDT_MODE_AUTO_RESTART;
  121. DRV_WriteReg32(MTK_WDT_MODE, tmp);
  122. /* dual_mode(1); //always dual mode */
  123. /* mdelay(100); */
  124. WDTLOG(" mtk_wdt_mode_config LK mode value=%x, tmp:%x\n", DRV_Reg32(MTK_WDT_MODE), tmp);
  125. }
  126. #if 0
  127. static void mtk_wdt_mode_config(BOOL debug_en,
  128. BOOL irq,
  129. BOOL ext_en,
  130. BOOL ext_pol,
  131. BOOL wdt_en)
  132. {
  133. unsigned short tmp;
  134. tmp = DRV_Reg32(MTK_WDT_MODE);
  135. tmp |= MTK_WDT_MODE_KEY;
  136. /* Bit 0 : Whether enable watchdog or not */
  137. if (wdt_en == TRUE)
  138. tmp |= MTK_WDT_MODE_ENABLE;
  139. else
  140. tmp &= ~MTK_WDT_MODE_ENABLE;
  141. /* Bit 1 : Configure extern reset signal polarity. */
  142. if (ext_pol == TRUE)
  143. tmp |= MTK_WDT_MODE_EXT_POL;
  144. else
  145. tmp &= ~MTK_WDT_MODE_EXT_POL;
  146. /* Bit 2 : Whether enable external reset signal */
  147. if (ext_en == TRUE)
  148. tmp |= MTK_WDT_MODE_EXTEN;
  149. else
  150. tmp &= ~MTK_WDT_MODE_EXTEN;
  151. /* Bit 3 : Whether generating interrupt instead of reset signal */
  152. if (irq == TRUE)
  153. tmp |= MTK_WDT_MODE_IRQ;
  154. else
  155. tmp &= ~MTK_WDT_MODE_IRQ;
  156. /* Bit 6 : Whether enable debug module reset */
  157. if (debug_en == TRUE)
  158. tmp |= MTK_WDT_MODE_DEBUG_EN;
  159. else
  160. tmp &= ~MTK_WDT_MODE_DEBUG_EN;
  161. DRV_WriteReg32(MTK_WDT_MODE, tmp);
  162. }
  163. #endif
  164. void mtk_wdt_set_time_out_value(UINT32 value)
  165. {
  166. /*
  167. * TimeOut = BitField 15:5
  168. * Key = BitField 4:0 = 0x08
  169. */
  170. /* sec * 32768 / 512 = sec * 64 = sec * 1 << 6 */
  171. timeout = (unsigned int)(value * (1 << 6));
  172. timeout = timeout << 5;
  173. DRV_WriteReg32(MTK_WDT_LENGTH, (timeout | MTK_WDT_LENGTH_KEY));
  174. }
  175. void mtk_wdt_restart(void)
  176. {
  177. /* Reset WatchDogTimer's counting value to time out value */
  178. /* ie., keepalive() */
  179. DRV_WriteReg32(MTK_WDT_RESTART, MTK_WDT_RESTART_KEY);
  180. }
  181. static void mtk_wdt_sw_reset(void)
  182. {
  183. WDTLOG("WDT SW RESET\n");
  184. /* DRV_WriteReg32 (0x70025000, 0x2201); */
  185. /* DRV_WriteReg32 (0x70025008, 0x1971); */
  186. /* DRV_WriteReg32 (0x7002501C, 0x1209); */
  187. mtk_wdt_reset(1);/* NOTE here, this reset will cause by pass power key */
  188. /* system will reset */
  189. while (1) {
  190. WDTLOG("SW reset fail ...\n");
  191. };
  192. }
  193. static void mtk_wdt_hw_reset(void)
  194. {
  195. WDTLOG("WDT_HW_Reset\n");
  196. /* 1. set WDT timeout 1 secs, 1*64*512/32768 = 1sec */
  197. mtk_wdt_set_time_out_value(1);
  198. /* 2. enable WDT debug reset enable, generating irq disable, ext reset disable */
  199. /* ext reset signal low, wdt enalbe */
  200. mtk_wdt_mode_config(TRUE, FALSE, FALSE, FALSE, TRUE);
  201. /* 3. reset the watch dog timer to the value set in WDT_LENGTH register */
  202. mtk_wdt_restart();
  203. /* 4. system will reset */
  204. while (1);
  205. }
  206. const char *mtk_wdt_get_last_stage(void)
  207. {
  208. unsigned int reg;
  209. unsigned int last_stage;
  210. /* check reboot source */
  211. reg = DRV_Reg32(MTK_WDT_NONRST_REG2);
  212. last_stage = (reg >> MTK_WDT_NONRST2_LAST_STAGE_OFS) & RGU_STAGE_MASK;
  213. if (last_stage == RGU_STAGE_PRELOADER)
  214. return "rst from: pl";
  215. else if (last_stage == RGU_STAGE_LK)
  216. return "rst from: lk";
  217. else if (last_stage == RGU_STAGE_KERNEL)
  218. return "rst from: kernel";
  219. return "rst from: unknown";
  220. }
  221. static void mtk_wdt_mark_stage(unsigned int stage)
  222. {
  223. unsigned int reg = DRV_Reg32(MTK_WDT_NONRST_REG2);
  224. reg = (reg & ~(RGU_STAGE_MASK << MTK_WDT_NONRST2_STAGE_OFS))
  225. | (stage << MTK_WDT_NONRST2_STAGE_OFS);
  226. DRV_WriteReg32(MTK_WDT_NONRST_REG2, reg);
  227. }
  228. #ifdef MTK_ENTER_FASTBOOT_VIA_RGU
  229. int mtk_wdt_fastboot_check(void)
  230. {
  231. unsigned int reg;
  232. int is_fastboot = 0;
  233. reg = DRV_Reg32(MTK_WDT_NONRST_REG2);
  234. reg = reg & MTK_WDT_NONRST2_FASTBOOT;
  235. if (reg)
  236. is_fastboot = 1;
  237. return is_fastboot;
  238. }
  239. /* set fastboot rgu bit. 1: fastboot mode. 0: non-fastboot mode */
  240. void mtk_wdt_fastboot_set(int fastboot_en)
  241. {
  242. unsigned int reg = DRV_Reg32(MTK_WDT_NONRST_REG2);
  243. if (fastboot_en)
  244. reg = reg | MTK_WDT_NONRST2_FASTBOOT;
  245. else
  246. reg = reg & ~(MTK_WDT_NONRST2_FASTBOOT);
  247. DRV_WriteReg32(MTK_WDT_NONRST_REG2, reg);
  248. }
  249. #endif
  250. void mtk_wdt_init(void)
  251. {
  252. unsigned int tmp;
  253. mtk_wdt_mode_config(FALSE, FALSE, FALSE, FALSE, FALSE);
  254. WDTLOG("wdt init\n");
  255. /* mark stage */
  256. mtk_wdt_mark_stage(RGU_STAGE_LK);
  257. /* Setting timeout 10s */
  258. mtk_wdt_set_time_out_value(10);
  259. /*set SPM_SCPSYS_rst to be enable, thermal_ctl_rst to be disable*/
  260. tmp = DRV_Reg32(MTK_WDT_REQ_MODE);
  261. tmp |= MTK_WDT_REQ_MODE_KEY;
  262. tmp |= MTK_WDT_REQ_MODE_SPM_SCPSYS;
  263. tmp &= (~MTK_WDT_REQ_MODE_THERMAL);
  264. DRV_WriteReg32(MTK_WDT_REQ_MODE, tmp);
  265. /*set thermal_ctl_rst & SPM_SCPSYS_rst to be reset mode*/
  266. tmp = DRV_Reg32(MTK_WDT_REQ_IRQ_EN);
  267. tmp |= MTK_WDT_REQ_IRQ_KEY;
  268. tmp &= ~(MTK_WDT_REQ_IRQ_THERMAL_EN | MTK_WDT_REQ_IRQ_SPM_SCPSYS_EN);
  269. DRV_WriteReg32(MTK_WDT_REQ_IRQ_EN, tmp);
  270. #ifdef WDT_ENABLED
  271. mtk_wdt_mode_config(TRUE, TRUE, TRUE, FALSE, TRUE);
  272. mtk_wdt_restart();
  273. #endif
  274. #if 0
  275. int i = 0;
  276. /* lk wdt test */
  277. while (1) {
  278. i++;
  279. mdelay(1000);
  280. WDTLOG("wdt test %d\n", i);
  281. /* Dump RGU regisers */
  282. WDTLOG("==== fwq Dump RGU Reg ========\n");
  283. WDTLOG("RGU MODE: %x\n", DRV_Reg32(MTK_WDT_MODE));
  284. WDTLOG("RGU LENGTH: %x\n", DRV_Reg32(MTK_WDT_LENGTH));
  285. WDTLOG("RGU STA: %x\n", DRV_Reg32(MTK_WDT_STATUS));
  286. WDTLOG("RGU INTERVAL: %x\n", DRV_Reg32(MTK_WDT_INTERVAL));
  287. WDTLOG("RGU SWSYSRST: %x\n", DRV_Reg32(MTK_WDT_SWSYSRST));
  288. WDTLOG("==== Dump RGU Reg End ====\n");
  289. if (i < 60) {
  290. WDTLOG("kick lk ext\n");
  291. mtk_wdt_restart();
  292. }
  293. }
  294. #endif
  295. }
  296. extern BOOT_ARGUMENT *g_boot_arg;
  297. int mtk_wdt_boot_check(void)
  298. {
  299. int boot_reason;
  300. if (g_boot_arg->maggic_number == BOOT_ARGUMENT_MAGIC) {
  301. boot_reason = g_boot_arg->boot_reason;
  302. WDTLOG("WDT get boot reason is %d from pre-loader\n", boot_reason);
  303. if (boot_reason == BR_WDT) {
  304. return WDT_NORMAL_REBOOT;
  305. } else if (boot_reason == BR_WDT_BY_PASS_PWK || BR_KERNEL_PANIC == boot_reason || BR_WDT_SW == boot_reason || BR_WDT_HW == boot_reason) {
  306. return WDT_BY_PASS_PWK_REBOOT;
  307. } else {
  308. return WDT_NOT_WDT_REBOOT;
  309. }
  310. }
  311. return WDT_NOT_WDT_REBOOT;
  312. }
  313. void mtk_arch_reset(char mode)
  314. {
  315. WDTLOG("mtk_arch_reset\n");
  316. mtk_wdt_reset(mode);
  317. while (1);
  318. }
  319. void mtk_arch_full_reset(void)
  320. {
  321. #ifdef MTK_PMIC_FULL_RESET
  322. WDTCRI("mtk_arch_full_reset\n");
  323. /* PMIC full reset will happen (reset immediately) inside. */
  324. pmic_cold_reset();
  325. while (1);
  326. #else
  327. WDTCRI("mtk_arch_full_reset: PMIC full reset is not supported.\n");
  328. #endif
  329. }
  330. void rgu_swsys_reset(WD_SYS_RST_TYPE reset_type)
  331. {
  332. if (reset_type == WD_MD_RST) {
  333. unsigned int wdt_dbg_ctrl;
  334. wdt_dbg_ctrl = DRV_Reg32(MTK_WDT_SWSYSRST);
  335. wdt_dbg_ctrl |= MTK_WDT_SWSYS_RST_KEY;
  336. wdt_dbg_ctrl |= 0x80;/* 1<<7 */
  337. DRV_WriteReg32(MTK_WDT_SWSYSRST, wdt_dbg_ctrl);
  338. udelay(1000);
  339. wdt_dbg_ctrl = DRV_Reg32(MTK_WDT_SWSYSRST);
  340. wdt_dbg_ctrl |= MTK_WDT_SWSYS_RST_KEY;
  341. wdt_dbg_ctrl &= (~0x80);/* ~(1<<7) */
  342. DRV_WriteReg32(MTK_WDT_SWSYSRST, wdt_dbg_ctrl);
  343. dprintf(CRITICAL, "fwq rgu lk md reset\n");
  344. }
  345. }
  346. void rgu_release_rg_mcu_pwr_on(void)
  347. {
  348. unsigned int wdt_dbg_ctrl;
  349. wdt_dbg_ctrl = DRV_Reg32(MTK_WDT_DEBUG_CTL);
  350. wdt_dbg_ctrl &= (~MTK_RG_MCU_PWR_ON);
  351. wdt_dbg_ctrl |= MTK_DEBUG_CTL_KEY;
  352. DRV_WriteReg32(MTK_WDT_DEBUG_CTL, wdt_dbg_ctrl);
  353. WDTLOG("RGU %s:MTK_WDT_DEBUG_CTL(%x)\n", __func__, wdt_dbg_ctrl);
  354. }
  355. void rgu_release_rg_mcu_pwr_iso_dis(void)
  356. {
  357. unsigned int wdt_dbg_ctrl;
  358. wdt_dbg_ctrl = DRV_Reg32(MTK_WDT_DEBUG_CTL);
  359. wdt_dbg_ctrl &= (~MTK_RG_MCU_PWR_ISO_DIS);
  360. wdt_dbg_ctrl |= MTK_DEBUG_CTL_KEY;
  361. DRV_WriteReg32(MTK_WDT_DEBUG_CTL, wdt_dbg_ctrl);
  362. WDTLOG("RGU %s:MTK_WDT_DEBUG_CTL(%x)\n", __func__, wdt_dbg_ctrl);
  363. }
  364. #else
  365. void mtk_wdt_init(void)
  366. {
  367. WDTLOG("WDT Dummy init called\n");
  368. }
  369. BOOL mtk_is_rgu_trigger_reset(void)
  370. {
  371. WDTLOG("Dummy mtk_is_rgu_trigger_reset called\n");
  372. return FALSE;
  373. }
  374. void mtk_arch_reset(char mode)
  375. {
  376. WDTLOG("WDT Dummy arch reset called\n");
  377. }
  378. void mtk_arch_full_reset(void)
  379. {
  380. WDTLOG("WDT Dummy arch full reset called\n");
  381. }
  382. int mtk_wdt_boot_check(void)
  383. {
  384. WDTLOG("WDT Dummy mtk_wdt_boot_check called\n");
  385. return WDT_NOT_WDT_REBOOT;
  386. }
  387. void mtk_wdt_disable(void)
  388. {
  389. WDTLOG("WDT Dummy mtk_wdt_disable called\n");
  390. }
  391. const char *mtk_wdt_get_last_stage(void)
  392. {
  393. return "rst from: not supported";
  394. }
  395. void mtk_wdt_restart(void)
  396. {
  397. WDTLOG("WDT Dummy mtk_wdt_restart called\n");
  398. }
  399. static void mtk_wdt_sw_reset(void)
  400. {
  401. WDTLOG("WDT Dummy mtk_wdt_sw_reset called\n");
  402. }
  403. static void mtk_wdt_hw_reset(void)
  404. {
  405. WDTLOG("WDT Dummy mtk_wdt_hw_reset called\n");
  406. }
  407. void rgu_swsys_reset(WD_SYS_RST_TYPE reset_type)
  408. {
  409. WDTLOG("WDT Dummy rgu_swsys_reset called\n");
  410. }
  411. #endif