rtas.h 14 KB

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  1. #ifndef _POWERPC_RTAS_H
  2. #define _POWERPC_RTAS_H
  3. #ifdef __KERNEL__
  4. #include <linux/spinlock.h>
  5. #include <asm/page.h>
  6. /*
  7. * Definitions for talking to the RTAS on CHRP machines.
  8. *
  9. * Copyright (C) 2001 Peter Bergner
  10. * Copyright (C) 2001 PPC 64 Team, IBM Corp
  11. *
  12. * This program is free software; you can redistribute it and/or
  13. * modify it under the terms of the GNU General Public License
  14. * as published by the Free Software Foundation; either version
  15. * 2 of the License, or (at your option) any later version.
  16. */
  17. #define RTAS_UNKNOWN_SERVICE (-1)
  18. #define RTAS_INSTANTIATE_MAX (1ULL<<30) /* Don't instantiate rtas at/above this value */
  19. /* Buffer size for ppc_rtas system call. */
  20. #define RTAS_RMOBUF_MAX (64 * 1024)
  21. /* RTAS return status codes */
  22. #define RTAS_NOT_SUSPENDABLE -9004
  23. #define RTAS_BUSY -2 /* RTAS Busy */
  24. #define RTAS_EXTENDED_DELAY_MIN 9900
  25. #define RTAS_EXTENDED_DELAY_MAX 9905
  26. /*
  27. * In general to call RTAS use rtas_token("string") to lookup
  28. * an RTAS token for the given string (e.g. "event-scan").
  29. * To actually perform the call use
  30. * ret = rtas_call(token, n_in, n_out, ...)
  31. * Where n_in is the number of input parameters and
  32. * n_out is the number of output parameters
  33. *
  34. * If the "string" is invalid on this system, RTAS_UNKNOWN_SERVICE
  35. * will be returned as a token. rtas_call() does look for this
  36. * token and error out gracefully so rtas_call(rtas_token("str"), ...)
  37. * may be safely used for one-shot calls to RTAS.
  38. *
  39. */
  40. typedef __be32 rtas_arg_t;
  41. struct rtas_args {
  42. __be32 token;
  43. __be32 nargs;
  44. __be32 nret;
  45. rtas_arg_t args[16];
  46. rtas_arg_t *rets; /* Pointer to return values in args[]. */
  47. };
  48. struct rtas_t {
  49. unsigned long entry; /* physical address pointer */
  50. unsigned long base; /* physical address pointer */
  51. unsigned long size;
  52. arch_spinlock_t lock;
  53. struct rtas_args args;
  54. struct device_node *dev; /* virtual address pointer */
  55. };
  56. struct rtas_suspend_me_data {
  57. atomic_t working; /* number of cpus accessing this struct */
  58. atomic_t done;
  59. int token; /* ibm,suspend-me */
  60. atomic_t error;
  61. struct completion *complete; /* wait on this until working == 0 */
  62. };
  63. /* RTAS event classes */
  64. #define RTAS_INTERNAL_ERROR 0x80000000 /* set bit 0 */
  65. #define RTAS_EPOW_WARNING 0x40000000 /* set bit 1 */
  66. #define RTAS_HOTPLUG_EVENTS 0x10000000 /* set bit 3 */
  67. #define RTAS_IO_EVENTS 0x08000000 /* set bit 4 */
  68. #define RTAS_EVENT_SCAN_ALL_EVENTS 0xffffffff
  69. /* RTAS event severity */
  70. #define RTAS_SEVERITY_FATAL 0x5
  71. #define RTAS_SEVERITY_ERROR 0x4
  72. #define RTAS_SEVERITY_ERROR_SYNC 0x3
  73. #define RTAS_SEVERITY_WARNING 0x2
  74. #define RTAS_SEVERITY_EVENT 0x1
  75. #define RTAS_SEVERITY_NO_ERROR 0x0
  76. /* RTAS event disposition */
  77. #define RTAS_DISP_FULLY_RECOVERED 0x0
  78. #define RTAS_DISP_LIMITED_RECOVERY 0x1
  79. #define RTAS_DISP_NOT_RECOVERED 0x2
  80. /* RTAS event initiator */
  81. #define RTAS_INITIATOR_UNKNOWN 0x0
  82. #define RTAS_INITIATOR_CPU 0x1
  83. #define RTAS_INITIATOR_PCI 0x2
  84. #define RTAS_INITIATOR_ISA 0x3
  85. #define RTAS_INITIATOR_MEMORY 0x4
  86. #define RTAS_INITIATOR_POWERMGM 0x5
  87. /* RTAS event target */
  88. #define RTAS_TARGET_UNKNOWN 0x0
  89. #define RTAS_TARGET_CPU 0x1
  90. #define RTAS_TARGET_PCI 0x2
  91. #define RTAS_TARGET_ISA 0x3
  92. #define RTAS_TARGET_MEMORY 0x4
  93. #define RTAS_TARGET_POWERMGM 0x5
  94. /* RTAS event type */
  95. #define RTAS_TYPE_RETRY 0x01
  96. #define RTAS_TYPE_TCE_ERR 0x02
  97. #define RTAS_TYPE_INTERN_DEV_FAIL 0x03
  98. #define RTAS_TYPE_TIMEOUT 0x04
  99. #define RTAS_TYPE_DATA_PARITY 0x05
  100. #define RTAS_TYPE_ADDR_PARITY 0x06
  101. #define RTAS_TYPE_CACHE_PARITY 0x07
  102. #define RTAS_TYPE_ADDR_INVALID 0x08
  103. #define RTAS_TYPE_ECC_UNCORR 0x09
  104. #define RTAS_TYPE_ECC_CORR 0x0a
  105. #define RTAS_TYPE_EPOW 0x40
  106. #define RTAS_TYPE_PLATFORM 0xE0
  107. #define RTAS_TYPE_IO 0xE1
  108. #define RTAS_TYPE_INFO 0xE2
  109. #define RTAS_TYPE_DEALLOC 0xE3
  110. #define RTAS_TYPE_DUMP 0xE4
  111. /* I don't add PowerMGM events right now, this is a different topic */
  112. #define RTAS_TYPE_PMGM_POWER_SW_ON 0x60
  113. #define RTAS_TYPE_PMGM_POWER_SW_OFF 0x61
  114. #define RTAS_TYPE_PMGM_LID_OPEN 0x62
  115. #define RTAS_TYPE_PMGM_LID_CLOSE 0x63
  116. #define RTAS_TYPE_PMGM_SLEEP_BTN 0x64
  117. #define RTAS_TYPE_PMGM_WAKE_BTN 0x65
  118. #define RTAS_TYPE_PMGM_BATTERY_WARN 0x66
  119. #define RTAS_TYPE_PMGM_BATTERY_CRIT 0x67
  120. #define RTAS_TYPE_PMGM_SWITCH_TO_BAT 0x68
  121. #define RTAS_TYPE_PMGM_SWITCH_TO_AC 0x69
  122. #define RTAS_TYPE_PMGM_KBD_OR_MOUSE 0x6a
  123. #define RTAS_TYPE_PMGM_ENCLOS_OPEN 0x6b
  124. #define RTAS_TYPE_PMGM_ENCLOS_CLOSED 0x6c
  125. #define RTAS_TYPE_PMGM_RING_INDICATE 0x6d
  126. #define RTAS_TYPE_PMGM_LAN_ATTENTION 0x6e
  127. #define RTAS_TYPE_PMGM_TIME_ALARM 0x6f
  128. #define RTAS_TYPE_PMGM_CONFIG_CHANGE 0x70
  129. #define RTAS_TYPE_PMGM_SERVICE_PROC 0x71
  130. /* Platform Resource Reassignment Notification */
  131. #define RTAS_TYPE_PRRN 0xA0
  132. /* RTAS check-exception vector offset */
  133. #define RTAS_VECTOR_EXTERNAL_INTERRUPT 0x500
  134. struct rtas_error_log {
  135. /* Byte 0 */
  136. uint8_t byte0; /* Architectural version */
  137. /* Byte 1 */
  138. uint8_t byte1;
  139. /* XXXXXXXX
  140. * XXX 3: Severity level of error
  141. * XX 2: Degree of recovery
  142. * X 1: Extended log present?
  143. * XX 2: Reserved
  144. */
  145. /* Byte 2 */
  146. uint8_t byte2;
  147. /* XXXXXXXX
  148. * XXXX 4: Initiator of event
  149. * XXXX 4: Target of failed operation
  150. */
  151. uint8_t byte3; /* General event or error*/
  152. __be32 extended_log_length; /* length in bytes */
  153. unsigned char buffer[1]; /* Start of extended log */
  154. /* Variable length. */
  155. };
  156. static inline uint8_t rtas_error_severity(const struct rtas_error_log *elog)
  157. {
  158. return (elog->byte1 & 0xE0) >> 5;
  159. }
  160. static inline uint8_t rtas_error_disposition(const struct rtas_error_log *elog)
  161. {
  162. return (elog->byte1 & 0x18) >> 3;
  163. }
  164. static inline uint8_t rtas_error_extended(const struct rtas_error_log *elog)
  165. {
  166. return (elog->byte1 & 0x04) >> 2;
  167. }
  168. #define rtas_error_type(x) ((x)->byte3)
  169. static inline
  170. uint32_t rtas_error_extended_log_length(const struct rtas_error_log *elog)
  171. {
  172. return be32_to_cpu(elog->extended_log_length);
  173. }
  174. #define RTAS_V6EXT_LOG_FORMAT_EVENT_LOG 14
  175. #define RTAS_V6EXT_COMPANY_ID_IBM (('I' << 24) | ('B' << 16) | ('M' << 8))
  176. /* RTAS general extended event log, Version 6. The extended log starts
  177. * from "buffer" field of struct rtas_error_log defined above.
  178. */
  179. struct rtas_ext_event_log_v6 {
  180. /* Byte 0 */
  181. uint8_t byte0;
  182. /* XXXXXXXX
  183. * X 1: Log valid
  184. * X 1: Unrecoverable error
  185. * X 1: Recoverable (correctable or successfully retried)
  186. * X 1: Bypassed unrecoverable error (degraded operation)
  187. * X 1: Predictive error
  188. * X 1: "New" log (always 1 for data returned from RTAS)
  189. * X 1: Big Endian
  190. * X 1: Reserved
  191. */
  192. /* Byte 1 */
  193. uint8_t byte1; /* reserved */
  194. /* Byte 2 */
  195. uint8_t byte2;
  196. /* XXXXXXXX
  197. * X 1: Set to 1 (indicating log is in PowerPC format)
  198. * XXX 3: Reserved
  199. * XXXX 4: Log format used for bytes 12-2047
  200. */
  201. /* Byte 3 */
  202. uint8_t byte3; /* reserved */
  203. /* Byte 4-11 */
  204. uint8_t reserved[8]; /* reserved */
  205. /* Byte 12-15 */
  206. __be32 company_id; /* Company ID of the company */
  207. /* that defines the format for */
  208. /* the vendor specific log type */
  209. /* Byte 16-end of log */
  210. uint8_t vendor_log[1]; /* Start of vendor specific log */
  211. /* Variable length. */
  212. };
  213. static
  214. inline uint8_t rtas_ext_event_log_format(struct rtas_ext_event_log_v6 *ext_log)
  215. {
  216. return ext_log->byte2 & 0x0F;
  217. }
  218. static
  219. inline uint32_t rtas_ext_event_company_id(struct rtas_ext_event_log_v6 *ext_log)
  220. {
  221. return be32_to_cpu(ext_log->company_id);
  222. }
  223. /* pSeries event log format */
  224. /* Two bytes ASCII section IDs */
  225. #define PSERIES_ELOG_SECT_ID_PRIV_HDR (('P' << 8) | 'H')
  226. #define PSERIES_ELOG_SECT_ID_USER_HDR (('U' << 8) | 'H')
  227. #define PSERIES_ELOG_SECT_ID_PRIMARY_SRC (('P' << 8) | 'S')
  228. #define PSERIES_ELOG_SECT_ID_EXTENDED_UH (('E' << 8) | 'H')
  229. #define PSERIES_ELOG_SECT_ID_FAILING_MTMS (('M' << 8) | 'T')
  230. #define PSERIES_ELOG_SECT_ID_SECONDARY_SRC (('S' << 8) | 'S')
  231. #define PSERIES_ELOG_SECT_ID_DUMP_LOCATOR (('D' << 8) | 'H')
  232. #define PSERIES_ELOG_SECT_ID_FW_ERROR (('S' << 8) | 'W')
  233. #define PSERIES_ELOG_SECT_ID_IMPACT_PART_ID (('L' << 8) | 'P')
  234. #define PSERIES_ELOG_SECT_ID_LOGIC_RESOURCE_ID (('L' << 8) | 'R')
  235. #define PSERIES_ELOG_SECT_ID_HMC_ID (('H' << 8) | 'M')
  236. #define PSERIES_ELOG_SECT_ID_EPOW (('E' << 8) | 'P')
  237. #define PSERIES_ELOG_SECT_ID_IO_EVENT (('I' << 8) | 'E')
  238. #define PSERIES_ELOG_SECT_ID_MANUFACT_INFO (('M' << 8) | 'I')
  239. #define PSERIES_ELOG_SECT_ID_CALL_HOME (('C' << 8) | 'H')
  240. #define PSERIES_ELOG_SECT_ID_USER_DEF (('U' << 8) | 'D')
  241. /* Vendor specific Platform Event Log Format, Version 6, section header */
  242. struct pseries_errorlog {
  243. __be16 id; /* 0x00 2-byte ASCII section ID */
  244. __be16 length; /* 0x02 Section length in bytes */
  245. uint8_t version; /* 0x04 Section version */
  246. uint8_t subtype; /* 0x05 Section subtype */
  247. __be16 creator_component; /* 0x06 Creator component ID */
  248. uint8_t data[]; /* 0x08 Start of section data */
  249. };
  250. static
  251. inline uint16_t pseries_errorlog_id(struct pseries_errorlog *sect)
  252. {
  253. return be16_to_cpu(sect->id);
  254. }
  255. static
  256. inline uint16_t pseries_errorlog_length(struct pseries_errorlog *sect)
  257. {
  258. return be16_to_cpu(sect->length);
  259. }
  260. struct pseries_errorlog *get_pseries_errorlog(struct rtas_error_log *log,
  261. uint16_t section_id);
  262. /*
  263. * This can be set by the rtas_flash module so that it can get called
  264. * as the absolutely last thing before the kernel terminates.
  265. */
  266. extern void (*rtas_flash_term_hook)(int);
  267. extern struct rtas_t rtas;
  268. extern void enter_rtas(unsigned long);
  269. extern int rtas_token(const char *service);
  270. extern int rtas_service_present(const char *service);
  271. extern int rtas_call(int token, int, int, int *, ...);
  272. extern void rtas_restart(char *cmd);
  273. extern void rtas_power_off(void);
  274. extern void rtas_halt(void);
  275. extern void rtas_os_term(char *str);
  276. extern int rtas_get_sensor(int sensor, int index, int *state);
  277. extern int rtas_get_power_level(int powerdomain, int *level);
  278. extern int rtas_set_power_level(int powerdomain, int level, int *setlevel);
  279. extern bool rtas_indicator_present(int token, int *maxindex);
  280. extern int rtas_set_indicator(int indicator, int index, int new_value);
  281. extern int rtas_set_indicator_fast(int indicator, int index, int new_value);
  282. extern void rtas_progress(char *s, unsigned short hex);
  283. extern void rtas_initialize(void);
  284. extern int rtas_suspend_cpu(struct rtas_suspend_me_data *data);
  285. extern int rtas_suspend_last_cpu(struct rtas_suspend_me_data *data);
  286. extern int rtas_online_cpus_mask(cpumask_var_t cpus);
  287. extern int rtas_offline_cpus_mask(cpumask_var_t cpus);
  288. extern int rtas_ibm_suspend_me(struct rtas_args *);
  289. struct rtc_time;
  290. extern unsigned long rtas_get_boot_time(void);
  291. extern void rtas_get_rtc_time(struct rtc_time *rtc_time);
  292. extern int rtas_set_rtc_time(struct rtc_time *rtc_time);
  293. extern unsigned int rtas_busy_delay_time(int status);
  294. extern unsigned int rtas_busy_delay(int status);
  295. extern int early_init_dt_scan_rtas(unsigned long node,
  296. const char *uname, int depth, void *data);
  297. extern void pSeries_log_error(char *buf, unsigned int err_type, int fatal);
  298. #ifdef CONFIG_PPC_PSERIES
  299. extern int pseries_devicetree_update(s32 scope);
  300. extern void post_mobility_fixup(void);
  301. #endif
  302. #ifdef CONFIG_PPC_RTAS_DAEMON
  303. extern void rtas_cancel_event_scan(void);
  304. #else
  305. static inline void rtas_cancel_event_scan(void) { }
  306. #endif
  307. /* Error types logged. */
  308. #define ERR_FLAG_ALREADY_LOGGED 0x0
  309. #define ERR_FLAG_BOOT 0x1 /* log was pulled from NVRAM on boot */
  310. #define ERR_TYPE_RTAS_LOG 0x2 /* from rtas event-scan */
  311. #define ERR_TYPE_KERNEL_PANIC 0x4 /* from die()/panic() */
  312. #define ERR_TYPE_KERNEL_PANIC_GZ 0x8 /* ditto, compressed */
  313. /* All the types and not flags */
  314. #define ERR_TYPE_MASK \
  315. (ERR_TYPE_RTAS_LOG | ERR_TYPE_KERNEL_PANIC | ERR_TYPE_KERNEL_PANIC_GZ)
  316. #define RTAS_DEBUG KERN_DEBUG "RTAS: "
  317. #define RTAS_ERROR_LOG_MAX 2048
  318. /*
  319. * Return the firmware-specified size of the error log buffer
  320. * for all rtas calls that require an error buffer argument.
  321. * This includes 'check-exception' and 'rtas-last-error'.
  322. */
  323. extern int rtas_get_error_log_max(void);
  324. /* Event Scan Parameters */
  325. #define EVENT_SCAN_ALL_EVENTS 0xf0000000
  326. #define SURVEILLANCE_TOKEN 9000
  327. #define LOG_NUMBER 64 /* must be a power of two */
  328. #define LOG_NUMBER_MASK (LOG_NUMBER-1)
  329. /* Some RTAS ops require a data buffer and that buffer must be < 4G.
  330. * Rather than having a memory allocator, just use this buffer
  331. * (get the lock first), make the RTAS call. Copy the data instead
  332. * of holding the buffer for long.
  333. */
  334. #define RTAS_DATA_BUF_SIZE 4096
  335. extern spinlock_t rtas_data_buf_lock;
  336. extern char rtas_data_buf[RTAS_DATA_BUF_SIZE];
  337. /* RMO buffer reserved for user-space RTAS use */
  338. extern unsigned long rtas_rmo_buf;
  339. #define GLOBAL_INTERRUPT_QUEUE 9005
  340. /**
  341. * rtas_config_addr - Format a busno, devfn and reg for RTAS.
  342. * @busno: The bus number.
  343. * @devfn: The device and function number as encoded by PCI_DEVFN().
  344. * @reg: The register number.
  345. *
  346. * This function encodes the given busno, devfn and register number as
  347. * required for RTAS calls that take a "config_addr" parameter.
  348. * See PAPR requirement 7.3.4-1 for more info.
  349. */
  350. static inline u32 rtas_config_addr(int busno, int devfn, int reg)
  351. {
  352. return ((reg & 0xf00) << 20) | ((busno & 0xff) << 16) |
  353. (devfn << 8) | (reg & 0xff);
  354. }
  355. extern void rtas_give_timebase(void);
  356. extern void rtas_take_timebase(void);
  357. #ifdef CONFIG_PPC_RTAS
  358. static inline int page_is_rtas_user_buf(unsigned long pfn)
  359. {
  360. unsigned long paddr = (pfn << PAGE_SHIFT);
  361. if (paddr >= rtas_rmo_buf && paddr < (rtas_rmo_buf + RTAS_RMOBUF_MAX))
  362. return 1;
  363. return 0;
  364. }
  365. /* Not the best place to put pSeries_coalesce_init, will be fixed when we
  366. * move some of the rtas suspend-me stuff to pseries */
  367. extern void pSeries_coalesce_init(void);
  368. #else
  369. static inline int page_is_rtas_user_buf(unsigned long pfn) { return 0;}
  370. static inline void pSeries_coalesce_init(void) { }
  371. #endif
  372. extern int call_rtas(const char *, int, int, unsigned long *, ...);
  373. #endif /* __KERNEL__ */
  374. #endif /* _POWERPC_RTAS_H */