ras_event.h 6.1 KB

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  1. #undef TRACE_SYSTEM
  2. #define TRACE_SYSTEM ras
  3. #define TRACE_INCLUDE_FILE ras_event
  4. #if !defined(_TRACE_HW_EVENT_MC_H) || defined(TRACE_HEADER_MULTI_READ)
  5. #define _TRACE_HW_EVENT_MC_H
  6. #include <linux/tracepoint.h>
  7. #include <linux/edac.h>
  8. #include <linux/ktime.h>
  9. #include <linux/aer.h>
  10. #include <linux/cper.h>
  11. /*
  12. * MCE Extended Error Log trace event
  13. *
  14. * These events are generated when hardware detects a corrected or
  15. * uncorrected event.
  16. */
  17. /* memory trace event */
  18. #if defined(CONFIG_ACPI_EXTLOG) || defined(CONFIG_ACPI_EXTLOG_MODULE)
  19. TRACE_EVENT(extlog_mem_event,
  20. TP_PROTO(struct cper_sec_mem_err *mem,
  21. u32 err_seq,
  22. const uuid_le *fru_id,
  23. const char *fru_text,
  24. u8 sev),
  25. TP_ARGS(mem, err_seq, fru_id, fru_text, sev),
  26. TP_STRUCT__entry(
  27. __field(u32, err_seq)
  28. __field(u8, etype)
  29. __field(u8, sev)
  30. __field(u64, pa)
  31. __field(u8, pa_mask_lsb)
  32. __field_struct(uuid_le, fru_id)
  33. __string(fru_text, fru_text)
  34. __field_struct(struct cper_mem_err_compact, data)
  35. ),
  36. TP_fast_assign(
  37. __entry->err_seq = err_seq;
  38. if (mem->validation_bits & CPER_MEM_VALID_ERROR_TYPE)
  39. __entry->etype = mem->error_type;
  40. else
  41. __entry->etype = ~0;
  42. __entry->sev = sev;
  43. if (mem->validation_bits & CPER_MEM_VALID_PA)
  44. __entry->pa = mem->physical_addr;
  45. else
  46. __entry->pa = ~0ull;
  47. if (mem->validation_bits & CPER_MEM_VALID_PA_MASK)
  48. __entry->pa_mask_lsb = (u8)__ffs64(mem->physical_addr_mask);
  49. else
  50. __entry->pa_mask_lsb = ~0;
  51. __entry->fru_id = *fru_id;
  52. __assign_str(fru_text, fru_text);
  53. cper_mem_err_pack(mem, &__entry->data);
  54. ),
  55. TP_printk("{%d} %s error: %s physical addr: %016llx (mask lsb: %x) %sFRU: %pUl %.20s",
  56. __entry->err_seq,
  57. cper_severity_str(__entry->sev),
  58. cper_mem_err_type_str(__entry->etype),
  59. __entry->pa,
  60. __entry->pa_mask_lsb,
  61. cper_mem_err_unpack(p, &__entry->data),
  62. &__entry->fru_id,
  63. __get_str(fru_text))
  64. );
  65. #endif
  66. /*
  67. * Hardware Events Report
  68. *
  69. * Those events are generated when hardware detected a corrected or
  70. * uncorrected event, and are meant to replace the current API to report
  71. * errors defined on both EDAC and MCE subsystems.
  72. *
  73. * FIXME: Add events for handling memory errors originated from the
  74. * MCE subsystem.
  75. */
  76. /*
  77. * Hardware-independent Memory Controller specific events
  78. */
  79. /*
  80. * Default error mechanisms for Memory Controller errors (CE and UE)
  81. */
  82. TRACE_EVENT(mc_event,
  83. TP_PROTO(const unsigned int err_type,
  84. const char *error_msg,
  85. const char *label,
  86. const int error_count,
  87. const u8 mc_index,
  88. const s8 top_layer,
  89. const s8 mid_layer,
  90. const s8 low_layer,
  91. unsigned long address,
  92. const u8 grain_bits,
  93. unsigned long syndrome,
  94. const char *driver_detail),
  95. TP_ARGS(err_type, error_msg, label, error_count, mc_index,
  96. top_layer, mid_layer, low_layer, address, grain_bits,
  97. syndrome, driver_detail),
  98. TP_STRUCT__entry(
  99. __field( unsigned int, error_type )
  100. __string( msg, error_msg )
  101. __string( label, label )
  102. __field( u16, error_count )
  103. __field( u8, mc_index )
  104. __field( s8, top_layer )
  105. __field( s8, middle_layer )
  106. __field( s8, lower_layer )
  107. __field( long, address )
  108. __field( u8, grain_bits )
  109. __field( long, syndrome )
  110. __string( driver_detail, driver_detail )
  111. ),
  112. TP_fast_assign(
  113. __entry->error_type = err_type;
  114. __assign_str(msg, error_msg);
  115. __assign_str(label, label);
  116. __entry->error_count = error_count;
  117. __entry->mc_index = mc_index;
  118. __entry->top_layer = top_layer;
  119. __entry->middle_layer = mid_layer;
  120. __entry->lower_layer = low_layer;
  121. __entry->address = address;
  122. __entry->grain_bits = grain_bits;
  123. __entry->syndrome = syndrome;
  124. __assign_str(driver_detail, driver_detail);
  125. ),
  126. TP_printk("%d %s error%s:%s%s on %s (mc:%d location:%d:%d:%d address:0x%08lx grain:%d syndrome:0x%08lx%s%s)",
  127. __entry->error_count,
  128. mc_event_error_type(__entry->error_type),
  129. __entry->error_count > 1 ? "s" : "",
  130. ((char *)__get_str(msg))[0] ? " " : "",
  131. __get_str(msg),
  132. __get_str(label),
  133. __entry->mc_index,
  134. __entry->top_layer,
  135. __entry->middle_layer,
  136. __entry->lower_layer,
  137. __entry->address,
  138. 1 << __entry->grain_bits,
  139. __entry->syndrome,
  140. ((char *)__get_str(driver_detail))[0] ? " " : "",
  141. __get_str(driver_detail))
  142. );
  143. /*
  144. * PCIe AER Trace event
  145. *
  146. * These events are generated when hardware detects a corrected or
  147. * uncorrected event on a PCIe device. The event report has
  148. * the following structure:
  149. *
  150. * char * dev_name - The name of the slot where the device resides
  151. * ([domain:]bus:device.function).
  152. * u32 status - Either the correctable or uncorrectable register
  153. * indicating what error or errors have been seen
  154. * u8 severity - error severity 0:NONFATAL 1:FATAL 2:CORRECTED
  155. */
  156. #define aer_correctable_errors \
  157. {BIT(0), "Receiver Error"}, \
  158. {BIT(6), "Bad TLP"}, \
  159. {BIT(7), "Bad DLLP"}, \
  160. {BIT(8), "RELAY_NUM Rollover"}, \
  161. {BIT(12), "Replay Timer Timeout"}, \
  162. {BIT(13), "Advisory Non-Fatal"}
  163. #define aer_uncorrectable_errors \
  164. {BIT(4), "Data Link Protocol"}, \
  165. {BIT(12), "Poisoned TLP"}, \
  166. {BIT(13), "Flow Control Protocol"}, \
  167. {BIT(14), "Completion Timeout"}, \
  168. {BIT(15), "Completer Abort"}, \
  169. {BIT(16), "Unexpected Completion"}, \
  170. {BIT(17), "Receiver Overflow"}, \
  171. {BIT(18), "Malformed TLP"}, \
  172. {BIT(19), "ECRC"}, \
  173. {BIT(20), "Unsupported Request"}
  174. TRACE_EVENT(aer_event,
  175. TP_PROTO(const char *dev_name,
  176. const u32 status,
  177. const u8 severity),
  178. TP_ARGS(dev_name, status, severity),
  179. TP_STRUCT__entry(
  180. __string( dev_name, dev_name )
  181. __field( u32, status )
  182. __field( u8, severity )
  183. ),
  184. TP_fast_assign(
  185. __assign_str(dev_name, dev_name);
  186. __entry->status = status;
  187. __entry->severity = severity;
  188. ),
  189. TP_printk("%s PCIe Bus Error: severity=%s, %s\n",
  190. __get_str(dev_name),
  191. __entry->severity == AER_CORRECTABLE ? "Corrected" :
  192. __entry->severity == AER_FATAL ?
  193. "Fatal" : "Uncorrected, non-fatal",
  194. __entry->severity == AER_CORRECTABLE ?
  195. __print_flags(__entry->status, "|", aer_correctable_errors) :
  196. __print_flags(__entry->status, "|", aer_uncorrectable_errors))
  197. );
  198. #endif /* _TRACE_HW_EVENT_MC_H */
  199. /* This part must be outside protection */
  200. #include <trace/define_trace.h>