pm-debug.c 13 KB

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  1. /*
  2. * OMAP Power Management debug routines
  3. *
  4. * Copyright (C) 2005 Texas Instruments, Inc.
  5. * Copyright (C) 2006-2008 Nokia Corporation
  6. *
  7. * Written by:
  8. * Richard Woodruff <r-woodruff2@ti.com>
  9. * Tony Lindgren
  10. * Juha Yrjola
  11. * Amit Kucheria <amit.kucheria@nokia.com>
  12. * Igor Stoppa <igor.stoppa@nokia.com>
  13. * Jouni Hogander
  14. *
  15. * Based on pm.c for omap2
  16. *
  17. * This program is free software; you can redistribute it and/or modify
  18. * it under the terms of the GNU General Public License version 2 as
  19. * published by the Free Software Foundation.
  20. */
  21. #include <linux/kernel.h>
  22. #include <linux/sched.h>
  23. #include <linux/clk.h>
  24. #include <linux/err.h>
  25. #include <linux/io.h>
  26. #include <mach/clock.h>
  27. #include <mach/board.h>
  28. #include <mach/powerdomain.h>
  29. #include <mach/clockdomain.h>
  30. #include "prm.h"
  31. #include "cm.h"
  32. #include "pm.h"
  33. int omap2_pm_debug;
  34. #define DUMP_PRM_MOD_REG(mod, reg) \
  35. regs[reg_count].name = #mod "." #reg; \
  36. regs[reg_count++].val = prm_read_mod_reg(mod, reg)
  37. #define DUMP_CM_MOD_REG(mod, reg) \
  38. regs[reg_count].name = #mod "." #reg; \
  39. regs[reg_count++].val = cm_read_mod_reg(mod, reg)
  40. #define DUMP_PRM_REG(reg) \
  41. regs[reg_count].name = #reg; \
  42. regs[reg_count++].val = __raw_readl(reg)
  43. #define DUMP_CM_REG(reg) \
  44. regs[reg_count].name = #reg; \
  45. regs[reg_count++].val = __raw_readl(reg)
  46. #define DUMP_INTC_REG(reg, off) \
  47. regs[reg_count].name = #reg; \
  48. regs[reg_count++].val = __raw_readl(OMAP2_IO_ADDRESS(0x480fe000 + (off)))
  49. static int __init pm_dbg_init(void);
  50. void omap2_pm_dump(int mode, int resume, unsigned int us)
  51. {
  52. struct reg {
  53. const char *name;
  54. u32 val;
  55. } regs[32];
  56. int reg_count = 0, i;
  57. const char *s1 = NULL, *s2 = NULL;
  58. if (!resume) {
  59. #if 0
  60. /* MPU */
  61. DUMP_PRM_MOD_REG(OCP_MOD, OMAP2_PRM_IRQENABLE_MPU_OFFSET);
  62. DUMP_CM_MOD_REG(MPU_MOD, CM_CLKSTCTRL);
  63. DUMP_PRM_MOD_REG(MPU_MOD, PM_PWSTCTRL);
  64. DUMP_PRM_MOD_REG(MPU_MOD, PM_PWSTST);
  65. DUMP_PRM_MOD_REG(MPU_MOD, PM_WKDEP);
  66. #endif
  67. #if 0
  68. /* INTC */
  69. DUMP_INTC_REG(INTC_MIR0, 0x0084);
  70. DUMP_INTC_REG(INTC_MIR1, 0x00a4);
  71. DUMP_INTC_REG(INTC_MIR2, 0x00c4);
  72. #endif
  73. #if 0
  74. DUMP_CM_MOD_REG(CORE_MOD, CM_FCLKEN1);
  75. if (cpu_is_omap24xx()) {
  76. DUMP_CM_MOD_REG(CORE_MOD, OMAP24XX_CM_FCLKEN2);
  77. DUMP_PRM_MOD_REG(OMAP24XX_GR_MOD,
  78. OMAP2_PRCM_CLKEMUL_CTRL_OFFSET);
  79. DUMP_PRM_MOD_REG(OMAP24XX_GR_MOD,
  80. OMAP2_PRCM_CLKSRC_CTRL_OFFSET);
  81. }
  82. DUMP_CM_MOD_REG(WKUP_MOD, CM_FCLKEN);
  83. DUMP_CM_MOD_REG(CORE_MOD, CM_ICLKEN1);
  84. DUMP_CM_MOD_REG(CORE_MOD, CM_ICLKEN2);
  85. DUMP_CM_MOD_REG(WKUP_MOD, CM_ICLKEN);
  86. DUMP_CM_MOD_REG(PLL_MOD, CM_CLKEN);
  87. DUMP_CM_MOD_REG(PLL_MOD, CM_AUTOIDLE);
  88. DUMP_PRM_MOD_REG(CORE_MOD, PM_PWSTST);
  89. #endif
  90. #if 0
  91. /* DSP */
  92. if (cpu_is_omap24xx()) {
  93. DUMP_CM_MOD_REG(OMAP24XX_DSP_MOD, CM_FCLKEN);
  94. DUMP_CM_MOD_REG(OMAP24XX_DSP_MOD, CM_ICLKEN);
  95. DUMP_CM_MOD_REG(OMAP24XX_DSP_MOD, CM_IDLEST);
  96. DUMP_CM_MOD_REG(OMAP24XX_DSP_MOD, CM_AUTOIDLE);
  97. DUMP_CM_MOD_REG(OMAP24XX_DSP_MOD, CM_CLKSEL);
  98. DUMP_CM_MOD_REG(OMAP24XX_DSP_MOD, CM_CLKSTCTRL);
  99. DUMP_PRM_MOD_REG(OMAP24XX_DSP_MOD, RM_RSTCTRL);
  100. DUMP_PRM_MOD_REG(OMAP24XX_DSP_MOD, RM_RSTST);
  101. DUMP_PRM_MOD_REG(OMAP24XX_DSP_MOD, PM_PWSTCTRL);
  102. DUMP_PRM_MOD_REG(OMAP24XX_DSP_MOD, PM_PWSTST);
  103. }
  104. #endif
  105. } else {
  106. DUMP_PRM_MOD_REG(CORE_MOD, PM_WKST1);
  107. if (cpu_is_omap24xx())
  108. DUMP_PRM_MOD_REG(CORE_MOD, OMAP24XX_PM_WKST2);
  109. DUMP_PRM_MOD_REG(WKUP_MOD, PM_WKST);
  110. DUMP_PRM_MOD_REG(OCP_MOD, OMAP2_PRCM_IRQSTATUS_MPU_OFFSET);
  111. #if 1
  112. DUMP_INTC_REG(INTC_PENDING_IRQ0, 0x0098);
  113. DUMP_INTC_REG(INTC_PENDING_IRQ1, 0x00b8);
  114. DUMP_INTC_REG(INTC_PENDING_IRQ2, 0x00d8);
  115. #endif
  116. }
  117. switch (mode) {
  118. case 0:
  119. s1 = "full";
  120. s2 = "retention";
  121. break;
  122. case 1:
  123. s1 = "MPU";
  124. s2 = "retention";
  125. break;
  126. case 2:
  127. s1 = "MPU";
  128. s2 = "idle";
  129. break;
  130. }
  131. if (!resume)
  132. #ifdef CONFIG_NO_HZ
  133. printk(KERN_INFO
  134. "--- Going to %s %s (next timer after %u ms)\n", s1, s2,
  135. jiffies_to_msecs(get_next_timer_interrupt(jiffies) -
  136. jiffies));
  137. #else
  138. printk(KERN_INFO "--- Going to %s %s\n", s1, s2);
  139. #endif
  140. else
  141. printk(KERN_INFO "--- Woke up (slept for %u.%03u ms)\n",
  142. us / 1000, us % 1000);
  143. for (i = 0; i < reg_count; i++)
  144. printk(KERN_INFO "%-20s: 0x%08x\n", regs[i].name, regs[i].val);
  145. }
  146. #ifdef CONFIG_DEBUG_FS
  147. #include <linux/debugfs.h>
  148. #include <linux/seq_file.h>
  149. static void pm_dbg_regset_store(u32 *ptr);
  150. struct dentry *pm_dbg_dir;
  151. static int pm_dbg_init_done;
  152. enum {
  153. DEBUG_FILE_COUNTERS = 0,
  154. DEBUG_FILE_TIMERS,
  155. };
  156. struct pm_module_def {
  157. char name[8]; /* Name of the module */
  158. short type; /* CM or PRM */
  159. unsigned short offset;
  160. int low; /* First register address on this module */
  161. int high; /* Last register address on this module */
  162. };
  163. #define MOD_CM 0
  164. #define MOD_PRM 1
  165. static const struct pm_module_def *pm_dbg_reg_modules;
  166. static const struct pm_module_def omap3_pm_reg_modules[] = {
  167. { "IVA2", MOD_CM, OMAP3430_IVA2_MOD, 0, 0x4c },
  168. { "OCP", MOD_CM, OCP_MOD, 0, 0x10 },
  169. { "MPU", MOD_CM, MPU_MOD, 4, 0x4c },
  170. { "CORE", MOD_CM, CORE_MOD, 0, 0x4c },
  171. { "SGX", MOD_CM, OMAP3430ES2_SGX_MOD, 0, 0x4c },
  172. { "WKUP", MOD_CM, WKUP_MOD, 0, 0x40 },
  173. { "CCR", MOD_CM, PLL_MOD, 0, 0x70 },
  174. { "DSS", MOD_CM, OMAP3430_DSS_MOD, 0, 0x4c },
  175. { "CAM", MOD_CM, OMAP3430_CAM_MOD, 0, 0x4c },
  176. { "PER", MOD_CM, OMAP3430_PER_MOD, 0, 0x4c },
  177. { "EMU", MOD_CM, OMAP3430_EMU_MOD, 0x40, 0x54 },
  178. { "NEON", MOD_CM, OMAP3430_NEON_MOD, 0x20, 0x48 },
  179. { "USB", MOD_CM, OMAP3430ES2_USBHOST_MOD, 0, 0x4c },
  180. { "IVA2", MOD_PRM, OMAP3430_IVA2_MOD, 0x50, 0xfc },
  181. { "OCP", MOD_PRM, OCP_MOD, 4, 0x1c },
  182. { "MPU", MOD_PRM, MPU_MOD, 0x58, 0xe8 },
  183. { "CORE", MOD_PRM, CORE_MOD, 0x58, 0xf8 },
  184. { "SGX", MOD_PRM, OMAP3430ES2_SGX_MOD, 0x58, 0xe8 },
  185. { "WKUP", MOD_PRM, WKUP_MOD, 0xa0, 0xb0 },
  186. { "CCR", MOD_PRM, PLL_MOD, 0x40, 0x70 },
  187. { "DSS", MOD_PRM, OMAP3430_DSS_MOD, 0x58, 0xe8 },
  188. { "CAM", MOD_PRM, OMAP3430_CAM_MOD, 0x58, 0xe8 },
  189. { "PER", MOD_PRM, OMAP3430_PER_MOD, 0x58, 0xe8 },
  190. { "EMU", MOD_PRM, OMAP3430_EMU_MOD, 0x58, 0xe4 },
  191. { "GLBL", MOD_PRM, OMAP3430_GR_MOD, 0x20, 0xe4 },
  192. { "NEON", MOD_PRM, OMAP3430_NEON_MOD, 0x58, 0xe8 },
  193. { "USB", MOD_PRM, OMAP3430ES2_USBHOST_MOD, 0x58, 0xe8 },
  194. { "", 0, 0, 0, 0 },
  195. };
  196. #define PM_DBG_MAX_REG_SETS 4
  197. static void *pm_dbg_reg_set[PM_DBG_MAX_REG_SETS];
  198. static int pm_dbg_get_regset_size(void)
  199. {
  200. static int regset_size;
  201. if (regset_size == 0) {
  202. int i = 0;
  203. while (pm_dbg_reg_modules[i].name[0] != 0) {
  204. regset_size += pm_dbg_reg_modules[i].high +
  205. 4 - pm_dbg_reg_modules[i].low;
  206. i++;
  207. }
  208. }
  209. return regset_size;
  210. }
  211. static int pm_dbg_show_regs(struct seq_file *s, void *unused)
  212. {
  213. int i, j;
  214. unsigned long val;
  215. int reg_set = (int)s->private;
  216. u32 *ptr;
  217. void *store = NULL;
  218. int regs;
  219. int linefeed;
  220. if (reg_set == 0) {
  221. store = kmalloc(pm_dbg_get_regset_size(), GFP_KERNEL);
  222. ptr = store;
  223. pm_dbg_regset_store(ptr);
  224. } else {
  225. ptr = pm_dbg_reg_set[reg_set - 1];
  226. }
  227. i = 0;
  228. while (pm_dbg_reg_modules[i].name[0] != 0) {
  229. regs = 0;
  230. linefeed = 0;
  231. if (pm_dbg_reg_modules[i].type == MOD_CM)
  232. seq_printf(s, "MOD: CM_%s (%08x)\n",
  233. pm_dbg_reg_modules[i].name,
  234. (u32)(OMAP3430_CM_BASE +
  235. pm_dbg_reg_modules[i].offset));
  236. else
  237. seq_printf(s, "MOD: PRM_%s (%08x)\n",
  238. pm_dbg_reg_modules[i].name,
  239. (u32)(OMAP3430_PRM_BASE +
  240. pm_dbg_reg_modules[i].offset));
  241. for (j = pm_dbg_reg_modules[i].low;
  242. j <= pm_dbg_reg_modules[i].high; j += 4) {
  243. val = *(ptr++);
  244. if (val != 0) {
  245. regs++;
  246. if (linefeed) {
  247. seq_printf(s, "\n");
  248. linefeed = 0;
  249. }
  250. seq_printf(s, " %02x => %08lx", j, val);
  251. if (regs % 4 == 0)
  252. linefeed = 1;
  253. }
  254. }
  255. seq_printf(s, "\n");
  256. i++;
  257. }
  258. if (store != NULL)
  259. kfree(store);
  260. return 0;
  261. }
  262. static void pm_dbg_regset_store(u32 *ptr)
  263. {
  264. int i, j;
  265. u32 val;
  266. i = 0;
  267. while (pm_dbg_reg_modules[i].name[0] != 0) {
  268. for (j = pm_dbg_reg_modules[i].low;
  269. j <= pm_dbg_reg_modules[i].high; j += 4) {
  270. if (pm_dbg_reg_modules[i].type == MOD_CM)
  271. val = cm_read_mod_reg(
  272. pm_dbg_reg_modules[i].offset, j);
  273. else
  274. val = prm_read_mod_reg(
  275. pm_dbg_reg_modules[i].offset, j);
  276. *(ptr++) = val;
  277. }
  278. i++;
  279. }
  280. }
  281. int pm_dbg_regset_save(int reg_set)
  282. {
  283. if (pm_dbg_reg_set[reg_set-1] == NULL)
  284. return -EINVAL;
  285. pm_dbg_regset_store(pm_dbg_reg_set[reg_set-1]);
  286. return 0;
  287. }
  288. static const char pwrdm_state_names[][4] = {
  289. "OFF",
  290. "RET",
  291. "INA",
  292. "ON"
  293. };
  294. void pm_dbg_update_time(struct powerdomain *pwrdm, int prev)
  295. {
  296. s64 t;
  297. if (!pm_dbg_init_done)
  298. return ;
  299. /* Update timer for previous state */
  300. t = sched_clock();
  301. pwrdm->state_timer[prev] += t - pwrdm->timer;
  302. pwrdm->timer = t;
  303. }
  304. static int clkdm_dbg_show_counter(struct clockdomain *clkdm, void *user)
  305. {
  306. struct seq_file *s = (struct seq_file *)user;
  307. if (strcmp(clkdm->name, "emu_clkdm") == 0 ||
  308. strcmp(clkdm->name, "wkup_clkdm") == 0 ||
  309. strncmp(clkdm->name, "dpll", 4) == 0)
  310. return 0;
  311. seq_printf(s, "%s->%s (%d)", clkdm->name,
  312. clkdm->pwrdm.ptr->name,
  313. atomic_read(&clkdm->usecount));
  314. seq_printf(s, "\n");
  315. return 0;
  316. }
  317. static int pwrdm_dbg_show_counter(struct powerdomain *pwrdm, void *user)
  318. {
  319. struct seq_file *s = (struct seq_file *)user;
  320. int i;
  321. if (strcmp(pwrdm->name, "emu_pwrdm") == 0 ||
  322. strcmp(pwrdm->name, "wkup_pwrdm") == 0 ||
  323. strncmp(pwrdm->name, "dpll", 4) == 0)
  324. return 0;
  325. if (pwrdm->state != pwrdm_read_pwrst(pwrdm))
  326. printk(KERN_ERR "pwrdm state mismatch(%s) %d != %d\n",
  327. pwrdm->name, pwrdm->state, pwrdm_read_pwrst(pwrdm));
  328. seq_printf(s, "%s (%s)", pwrdm->name,
  329. pwrdm_state_names[pwrdm->state]);
  330. for (i = 0; i < 4; i++)
  331. seq_printf(s, ",%s:%d", pwrdm_state_names[i],
  332. pwrdm->state_counter[i]);
  333. seq_printf(s, "\n");
  334. return 0;
  335. }
  336. static int pwrdm_dbg_show_timer(struct powerdomain *pwrdm, void *user)
  337. {
  338. struct seq_file *s = (struct seq_file *)user;
  339. int i;
  340. if (strcmp(pwrdm->name, "emu_pwrdm") == 0 ||
  341. strcmp(pwrdm->name, "wkup_pwrdm") == 0 ||
  342. strncmp(pwrdm->name, "dpll", 4) == 0)
  343. return 0;
  344. pwrdm_state_switch(pwrdm);
  345. seq_printf(s, "%s (%s)", pwrdm->name,
  346. pwrdm_state_names[pwrdm->state]);
  347. for (i = 0; i < 4; i++)
  348. seq_printf(s, ",%s:%lld", pwrdm_state_names[i],
  349. pwrdm->state_timer[i]);
  350. seq_printf(s, "\n");
  351. return 0;
  352. }
  353. static int pm_dbg_show_counters(struct seq_file *s, void *unused)
  354. {
  355. pwrdm_for_each(pwrdm_dbg_show_counter, s);
  356. clkdm_for_each(clkdm_dbg_show_counter, s);
  357. return 0;
  358. }
  359. static int pm_dbg_show_timers(struct seq_file *s, void *unused)
  360. {
  361. pwrdm_for_each(pwrdm_dbg_show_timer, s);
  362. return 0;
  363. }
  364. static int pm_dbg_open(struct inode *inode, struct file *file)
  365. {
  366. switch ((int)inode->i_private) {
  367. case DEBUG_FILE_COUNTERS:
  368. return single_open(file, pm_dbg_show_counters,
  369. &inode->i_private);
  370. case DEBUG_FILE_TIMERS:
  371. default:
  372. return single_open(file, pm_dbg_show_timers,
  373. &inode->i_private);
  374. };
  375. }
  376. static int pm_dbg_reg_open(struct inode *inode, struct file *file)
  377. {
  378. return single_open(file, pm_dbg_show_regs, inode->i_private);
  379. }
  380. static const struct file_operations debug_fops = {
  381. .open = pm_dbg_open,
  382. .read = seq_read,
  383. .llseek = seq_lseek,
  384. .release = single_release,
  385. };
  386. static const struct file_operations debug_reg_fops = {
  387. .open = pm_dbg_reg_open,
  388. .read = seq_read,
  389. .llseek = seq_lseek,
  390. .release = single_release,
  391. };
  392. int pm_dbg_regset_init(int reg_set)
  393. {
  394. char name[2];
  395. if (!pm_dbg_init_done)
  396. pm_dbg_init();
  397. if (reg_set < 1 || reg_set > PM_DBG_MAX_REG_SETS ||
  398. pm_dbg_reg_set[reg_set-1] != NULL)
  399. return -EINVAL;
  400. pm_dbg_reg_set[reg_set-1] =
  401. kmalloc(pm_dbg_get_regset_size(), GFP_KERNEL);
  402. if (pm_dbg_reg_set[reg_set-1] == NULL)
  403. return -ENOMEM;
  404. if (pm_dbg_dir != NULL) {
  405. sprintf(name, "%d", reg_set);
  406. (void) debugfs_create_file(name, S_IRUGO,
  407. pm_dbg_dir, (void *)reg_set, &debug_reg_fops);
  408. }
  409. return 0;
  410. }
  411. static int __init pwrdms_setup(struct powerdomain *pwrdm, void *unused)
  412. {
  413. int i;
  414. s64 t;
  415. t = sched_clock();
  416. for (i = 0; i < 4; i++)
  417. pwrdm->state_timer[i] = 0;
  418. pwrdm->timer = t;
  419. return 0;
  420. }
  421. static int __init pm_dbg_init(void)
  422. {
  423. int i;
  424. struct dentry *d;
  425. char name[2];
  426. if (pm_dbg_init_done)
  427. return 0;
  428. if (cpu_is_omap34xx())
  429. pm_dbg_reg_modules = omap3_pm_reg_modules;
  430. else {
  431. printk(KERN_ERR "%s: only OMAP3 supported\n", __func__);
  432. return -ENODEV;
  433. }
  434. d = debugfs_create_dir("pm_debug", NULL);
  435. if (IS_ERR(d))
  436. return PTR_ERR(d);
  437. (void) debugfs_create_file("count", S_IRUGO,
  438. d, (void *)DEBUG_FILE_COUNTERS, &debug_fops);
  439. (void) debugfs_create_file("time", S_IRUGO,
  440. d, (void *)DEBUG_FILE_TIMERS, &debug_fops);
  441. pwrdm_for_each(pwrdms_setup, NULL);
  442. pm_dbg_dir = debugfs_create_dir("registers", d);
  443. if (IS_ERR(pm_dbg_dir))
  444. return PTR_ERR(pm_dbg_dir);
  445. (void) debugfs_create_file("current", S_IRUGO,
  446. pm_dbg_dir, (void *)0, &debug_reg_fops);
  447. for (i = 0; i < PM_DBG_MAX_REG_SETS; i++)
  448. if (pm_dbg_reg_set[i] != NULL) {
  449. sprintf(name, "%d", i+1);
  450. (void) debugfs_create_file(name, S_IRUGO,
  451. pm_dbg_dir, (void *)(i+1), &debug_reg_fops);
  452. }
  453. pm_dbg_init_done = 1;
  454. return 0;
  455. }
  456. arch_initcall(pm_dbg_init);
  457. #else
  458. void pm_dbg_update_time(struct powerdomain *pwrdm, int prev) {}
  459. #endif