power.h 9.9 KB

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  1. #undef TRACE_SYSTEM
  2. #define TRACE_SYSTEM power
  3. #if !defined(_TRACE_POWER_H) || defined(TRACE_HEADER_MULTI_READ)
  4. #define _TRACE_POWER_H
  5. #include <linux/ktime.h>
  6. #include <linux/pm_qos.h>
  7. #include <linux/tracepoint.h>
  8. DECLARE_EVENT_CLASS(cpu,
  9. TP_PROTO(unsigned int state, unsigned int cpu_id),
  10. TP_ARGS(state, cpu_id),
  11. TP_STRUCT__entry(
  12. __field( u32, state )
  13. __field( u32, cpu_id )
  14. ),
  15. TP_fast_assign(
  16. __entry->state = state;
  17. __entry->cpu_id = cpu_id;
  18. ),
  19. TP_printk("state=%lu cpu_id=%lu", (unsigned long)__entry->state,
  20. (unsigned long)__entry->cpu_id)
  21. );
  22. DEFINE_EVENT(cpu, cpu_idle,
  23. TP_PROTO(unsigned int state, unsigned int cpu_id),
  24. TP_ARGS(state, cpu_id)
  25. );
  26. TRACE_EVENT(pstate_sample,
  27. TP_PROTO(u32 core_busy,
  28. u32 scaled_busy,
  29. u32 state,
  30. u64 mperf,
  31. u64 aperf,
  32. u32 freq
  33. ),
  34. TP_ARGS(core_busy,
  35. scaled_busy,
  36. state,
  37. mperf,
  38. aperf,
  39. freq
  40. ),
  41. TP_STRUCT__entry(
  42. __field(u32, core_busy)
  43. __field(u32, scaled_busy)
  44. __field(u32, state)
  45. __field(u64, mperf)
  46. __field(u64, aperf)
  47. __field(u32, freq)
  48. ),
  49. TP_fast_assign(
  50. __entry->core_busy = core_busy;
  51. __entry->scaled_busy = scaled_busy;
  52. __entry->state = state;
  53. __entry->mperf = mperf;
  54. __entry->aperf = aperf;
  55. __entry->freq = freq;
  56. ),
  57. TP_printk("core_busy=%lu scaled=%lu state=%lu mperf=%llu aperf=%llu freq=%lu ",
  58. (unsigned long)__entry->core_busy,
  59. (unsigned long)__entry->scaled_busy,
  60. (unsigned long)__entry->state,
  61. (unsigned long long)__entry->mperf,
  62. (unsigned long long)__entry->aperf,
  63. (unsigned long)__entry->freq
  64. )
  65. );
  66. /* This file can get included multiple times, TRACE_HEADER_MULTI_READ at top */
  67. #ifndef _PWR_EVENT_AVOID_DOUBLE_DEFINING
  68. #define _PWR_EVENT_AVOID_DOUBLE_DEFINING
  69. #define PWR_EVENT_EXIT -1
  70. #endif
  71. DEFINE_EVENT(cpu, cpu_frequency,
  72. TP_PROTO(unsigned int frequency, unsigned int cpu_id),
  73. TP_ARGS(frequency, cpu_id)
  74. );
  75. TRACE_EVENT(machine_suspend,
  76. TP_PROTO(unsigned int state),
  77. TP_ARGS(state),
  78. TP_STRUCT__entry(
  79. __field( u32, state )
  80. ),
  81. TP_fast_assign(
  82. __entry->state = state;
  83. ),
  84. TP_printk("state=%lu", (unsigned long)__entry->state)
  85. );
  86. TRACE_EVENT(device_pm_report_time,
  87. TP_PROTO(struct device *dev, const char *pm_ops, s64 ops_time,
  88. char *pm_event_str, int error),
  89. TP_ARGS(dev, pm_ops, ops_time, pm_event_str, error),
  90. TP_STRUCT__entry(
  91. __string(device, dev_name(dev))
  92. __string(driver, dev_driver_string(dev))
  93. __string(parent, dev->parent ? dev_name(dev->parent) : "none")
  94. __string(pm_ops, pm_ops ? pm_ops : "none ")
  95. __string(pm_event_str, pm_event_str)
  96. __field(s64, ops_time)
  97. __field(int, error)
  98. ),
  99. TP_fast_assign(
  100. const char *tmp = dev->parent ? dev_name(dev->parent) : "none";
  101. const char *tmp_i = pm_ops ? pm_ops : "none ";
  102. __assign_str(device, dev_name(dev));
  103. __assign_str(driver, dev_driver_string(dev));
  104. __assign_str(parent, tmp);
  105. __assign_str(pm_ops, tmp_i);
  106. __assign_str(pm_event_str, pm_event_str);
  107. __entry->ops_time = ops_time;
  108. __entry->error = error;
  109. ),
  110. /* ops_str has an extra space at the end */
  111. TP_printk("%s %s parent=%s state=%s ops=%snsecs=%lld err=%d",
  112. __get_str(driver), __get_str(device), __get_str(parent),
  113. __get_str(pm_event_str), __get_str(pm_ops),
  114. __entry->ops_time, __entry->error)
  115. );
  116. DECLARE_EVENT_CLASS(wakeup_source,
  117. TP_PROTO(const char *name, unsigned int state),
  118. TP_ARGS(name, state),
  119. TP_STRUCT__entry(
  120. __string( name, name )
  121. __field( u64, state )
  122. ),
  123. TP_fast_assign(
  124. __assign_str(name, name);
  125. __entry->state = state;
  126. ),
  127. TP_printk("%s state=0x%lx", __get_str(name),
  128. (unsigned long)__entry->state)
  129. );
  130. DEFINE_EVENT(wakeup_source, wakeup_source_activate,
  131. TP_PROTO(const char *name, unsigned int state),
  132. TP_ARGS(name, state)
  133. );
  134. DEFINE_EVENT(wakeup_source, wakeup_source_deactivate,
  135. TP_PROTO(const char *name, unsigned int state),
  136. TP_ARGS(name, state)
  137. );
  138. /*
  139. * The clock events are used for clock enable/disable and for
  140. * clock rate change
  141. */
  142. DECLARE_EVENT_CLASS(clock,
  143. TP_PROTO(const char *name, unsigned int state, unsigned int cpu_id),
  144. TP_ARGS(name, state, cpu_id),
  145. TP_STRUCT__entry(
  146. __string( name, name )
  147. __field( u64, state )
  148. __field( u64, cpu_id )
  149. ),
  150. TP_fast_assign(
  151. __assign_str(name, name);
  152. __entry->state = state;
  153. __entry->cpu_id = cpu_id;
  154. ),
  155. TP_printk("%s state=%lu cpu_id=%lu", __get_str(name),
  156. (unsigned long)__entry->state, (unsigned long)__entry->cpu_id)
  157. );
  158. DEFINE_EVENT(clock, clock_enable,
  159. TP_PROTO(const char *name, unsigned int state, unsigned int cpu_id),
  160. TP_ARGS(name, state, cpu_id)
  161. );
  162. DEFINE_EVENT(clock, clock_disable,
  163. TP_PROTO(const char *name, unsigned int state, unsigned int cpu_id),
  164. TP_ARGS(name, state, cpu_id)
  165. );
  166. DEFINE_EVENT(clock, clock_set_rate,
  167. TP_PROTO(const char *name, unsigned int state, unsigned int cpu_id),
  168. TP_ARGS(name, state, cpu_id)
  169. );
  170. /*
  171. * The power domain events are used for power domains transitions
  172. */
  173. DECLARE_EVENT_CLASS(power_domain,
  174. TP_PROTO(const char *name, unsigned int state, unsigned int cpu_id),
  175. TP_ARGS(name, state, cpu_id),
  176. TP_STRUCT__entry(
  177. __string( name, name )
  178. __field( u64, state )
  179. __field( u64, cpu_id )
  180. ),
  181. TP_fast_assign(
  182. __assign_str(name, name);
  183. __entry->state = state;
  184. __entry->cpu_id = cpu_id;
  185. ),
  186. TP_printk("%s state=%lu cpu_id=%lu", __get_str(name),
  187. (unsigned long)__entry->state, (unsigned long)__entry->cpu_id)
  188. );
  189. DEFINE_EVENT(power_domain, power_domain_target,
  190. TP_PROTO(const char *name, unsigned int state, unsigned int cpu_id),
  191. TP_ARGS(name, state, cpu_id)
  192. );
  193. /*
  194. * The pm qos events are used for pm qos update
  195. */
  196. DECLARE_EVENT_CLASS(pm_qos_request,
  197. TP_PROTO(int pm_qos_class, s32 value),
  198. TP_ARGS(pm_qos_class, value),
  199. TP_STRUCT__entry(
  200. __field( int, pm_qos_class )
  201. __field( s32, value )
  202. ),
  203. TP_fast_assign(
  204. __entry->pm_qos_class = pm_qos_class;
  205. __entry->value = value;
  206. ),
  207. TP_printk("pm_qos_class=%s value=%d",
  208. __print_symbolic(__entry->pm_qos_class,
  209. { PM_QOS_CPU_DMA_LATENCY, "CPU_DMA_LATENCY" },
  210. { PM_QOS_NETWORK_LATENCY, "NETWORK_LATENCY" },
  211. { PM_QOS_NETWORK_THROUGHPUT, "NETWORK_THROUGHPUT" }),
  212. __entry->value)
  213. );
  214. DEFINE_EVENT(pm_qos_request, pm_qos_add_request,
  215. TP_PROTO(int pm_qos_class, s32 value),
  216. TP_ARGS(pm_qos_class, value)
  217. );
  218. DEFINE_EVENT(pm_qos_request, pm_qos_update_request,
  219. TP_PROTO(int pm_qos_class, s32 value),
  220. TP_ARGS(pm_qos_class, value)
  221. );
  222. DEFINE_EVENT(pm_qos_request, pm_qos_remove_request,
  223. TP_PROTO(int pm_qos_class, s32 value),
  224. TP_ARGS(pm_qos_class, value)
  225. );
  226. TRACE_EVENT(pm_qos_update_request_timeout,
  227. TP_PROTO(int pm_qos_class, s32 value, unsigned long timeout_us),
  228. TP_ARGS(pm_qos_class, value, timeout_us),
  229. TP_STRUCT__entry(
  230. __field( int, pm_qos_class )
  231. __field( s32, value )
  232. __field( unsigned long, timeout_us )
  233. ),
  234. TP_fast_assign(
  235. __entry->pm_qos_class = pm_qos_class;
  236. __entry->value = value;
  237. __entry->timeout_us = timeout_us;
  238. ),
  239. TP_printk("pm_qos_class=%s value=%d, timeout_us=%ld",
  240. __print_symbolic(__entry->pm_qos_class,
  241. { PM_QOS_CPU_DMA_LATENCY, "CPU_DMA_LATENCY" },
  242. { PM_QOS_NETWORK_LATENCY, "NETWORK_LATENCY" },
  243. { PM_QOS_NETWORK_THROUGHPUT, "NETWORK_THROUGHPUT" }),
  244. __entry->value, __entry->timeout_us)
  245. );
  246. DECLARE_EVENT_CLASS(pm_qos_update,
  247. TP_PROTO(enum pm_qos_req_action action, int prev_value, int curr_value),
  248. TP_ARGS(action, prev_value, curr_value),
  249. TP_STRUCT__entry(
  250. __field( enum pm_qos_req_action, action )
  251. __field( int, prev_value )
  252. __field( int, curr_value )
  253. ),
  254. TP_fast_assign(
  255. __entry->action = action;
  256. __entry->prev_value = prev_value;
  257. __entry->curr_value = curr_value;
  258. ),
  259. TP_printk("action=%s prev_value=%d curr_value=%d",
  260. __print_symbolic(__entry->action,
  261. { PM_QOS_ADD_REQ, "ADD_REQ" },
  262. { PM_QOS_UPDATE_REQ, "UPDATE_REQ" },
  263. { PM_QOS_REMOVE_REQ, "REMOVE_REQ" }),
  264. __entry->prev_value, __entry->curr_value)
  265. );
  266. DEFINE_EVENT(pm_qos_update, pm_qos_update_target,
  267. TP_PROTO(enum pm_qos_req_action action, int prev_value, int curr_value),
  268. TP_ARGS(action, prev_value, curr_value)
  269. );
  270. DEFINE_EVENT_PRINT(pm_qos_update, pm_qos_update_flags,
  271. TP_PROTO(enum pm_qos_req_action action, int prev_value, int curr_value),
  272. TP_ARGS(action, prev_value, curr_value),
  273. TP_printk("action=%s prev_value=0x%x curr_value=0x%x",
  274. __print_symbolic(__entry->action,
  275. { PM_QOS_ADD_REQ, "ADD_REQ" },
  276. { PM_QOS_UPDATE_REQ, "UPDATE_REQ" },
  277. { PM_QOS_REMOVE_REQ, "REMOVE_REQ" }),
  278. __entry->prev_value, __entry->curr_value)
  279. );
  280. DECLARE_EVENT_CLASS(dev_pm_qos_request,
  281. TP_PROTO(const char *name, enum dev_pm_qos_req_type type,
  282. s32 new_value),
  283. TP_ARGS(name, type, new_value),
  284. TP_STRUCT__entry(
  285. __string( name, name )
  286. __field( enum dev_pm_qos_req_type, type )
  287. __field( s32, new_value )
  288. ),
  289. TP_fast_assign(
  290. __assign_str(name, name);
  291. __entry->type = type;
  292. __entry->new_value = new_value;
  293. ),
  294. TP_printk("device=%s type=%s new_value=%d",
  295. __get_str(name),
  296. __print_symbolic(__entry->type,
  297. { DEV_PM_QOS_LATENCY, "DEV_PM_QOS_LATENCY" },
  298. { DEV_PM_QOS_FLAGS, "DEV_PM_QOS_FLAGS" }),
  299. __entry->new_value)
  300. );
  301. DEFINE_EVENT(dev_pm_qos_request, dev_pm_qos_add_request,
  302. TP_PROTO(const char *name, enum dev_pm_qos_req_type type,
  303. s32 new_value),
  304. TP_ARGS(name, type, new_value)
  305. );
  306. DEFINE_EVENT(dev_pm_qos_request, dev_pm_qos_update_request,
  307. TP_PROTO(const char *name, enum dev_pm_qos_req_type type,
  308. s32 new_value),
  309. TP_ARGS(name, type, new_value)
  310. );
  311. DEFINE_EVENT(dev_pm_qos_request, dev_pm_qos_remove_request,
  312. TP_PROTO(const char *name, enum dev_pm_qos_req_type type,
  313. s32 new_value),
  314. TP_ARGS(name, type, new_value)
  315. );
  316. #endif /* _TRACE_POWER_H */
  317. /* This part must be outside protection */
  318. #include <trace/define_trace.h>