mmutrace.h 6.2 KB

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  1. #if !defined(_TRACE_KVMMMU_H) || defined(TRACE_HEADER_MULTI_READ)
  2. #define _TRACE_KVMMMU_H
  3. #include <linux/tracepoint.h>
  4. #include <linux/ftrace_event.h>
  5. #undef TRACE_SYSTEM
  6. #define TRACE_SYSTEM kvmmmu
  7. #define KVM_MMU_PAGE_FIELDS \
  8. __field(__u64, gfn) \
  9. __field(__u32, role) \
  10. __field(__u32, root_count) \
  11. __field(bool, unsync)
  12. #define KVM_MMU_PAGE_ASSIGN(sp) \
  13. __entry->gfn = sp->gfn; \
  14. __entry->role = sp->role.word; \
  15. __entry->root_count = sp->root_count; \
  16. __entry->unsync = sp->unsync;
  17. #define KVM_MMU_PAGE_PRINTK() ({ \
  18. const char *ret = p->buffer + p->len; \
  19. static const char *access_str[] = { \
  20. "---", "--x", "w--", "w-x", "-u-", "-ux", "wu-", "wux" \
  21. }; \
  22. union kvm_mmu_page_role role; \
  23. \
  24. role.word = __entry->role; \
  25. \
  26. trace_seq_printf(p, "sp gfn %llx %u%s q%u%s %s%s" \
  27. " %snxe root %u %s%c", \
  28. __entry->gfn, role.level, \
  29. role.cr4_pae ? " pae" : "", \
  30. role.quadrant, \
  31. role.direct ? " direct" : "", \
  32. access_str[role.access], \
  33. role.invalid ? " invalid" : "", \
  34. role.nxe ? "" : "!", \
  35. __entry->root_count, \
  36. __entry->unsync ? "unsync" : "sync", 0); \
  37. ret; \
  38. })
  39. #define kvm_mmu_trace_pferr_flags \
  40. { PFERR_PRESENT_MASK, "P" }, \
  41. { PFERR_WRITE_MASK, "W" }, \
  42. { PFERR_USER_MASK, "U" }, \
  43. { PFERR_RSVD_MASK, "RSVD" }, \
  44. { PFERR_FETCH_MASK, "F" }
  45. /*
  46. * A pagetable walk has started
  47. */
  48. TRACE_EVENT(
  49. kvm_mmu_pagetable_walk,
  50. TP_PROTO(u64 addr, u32 pferr),
  51. TP_ARGS(addr, pferr),
  52. TP_STRUCT__entry(
  53. __field(__u64, addr)
  54. __field(__u32, pferr)
  55. ),
  56. TP_fast_assign(
  57. __entry->addr = addr;
  58. __entry->pferr = pferr;
  59. ),
  60. TP_printk("addr %llx pferr %x %s", __entry->addr, __entry->pferr,
  61. __print_flags(__entry->pferr, "|", kvm_mmu_trace_pferr_flags))
  62. );
  63. /* We just walked a paging element */
  64. TRACE_EVENT(
  65. kvm_mmu_paging_element,
  66. TP_PROTO(u64 pte, int level),
  67. TP_ARGS(pte, level),
  68. TP_STRUCT__entry(
  69. __field(__u64, pte)
  70. __field(__u32, level)
  71. ),
  72. TP_fast_assign(
  73. __entry->pte = pte;
  74. __entry->level = level;
  75. ),
  76. TP_printk("pte %llx level %u", __entry->pte, __entry->level)
  77. );
  78. DECLARE_EVENT_CLASS(kvm_mmu_set_bit_class,
  79. TP_PROTO(unsigned long table_gfn, unsigned index, unsigned size),
  80. TP_ARGS(table_gfn, index, size),
  81. TP_STRUCT__entry(
  82. __field(__u64, gpa)
  83. ),
  84. TP_fast_assign(
  85. __entry->gpa = ((u64)table_gfn << PAGE_SHIFT)
  86. + index * size;
  87. ),
  88. TP_printk("gpa %llx", __entry->gpa)
  89. );
  90. /* We set a pte accessed bit */
  91. DEFINE_EVENT(kvm_mmu_set_bit_class, kvm_mmu_set_accessed_bit,
  92. TP_PROTO(unsigned long table_gfn, unsigned index, unsigned size),
  93. TP_ARGS(table_gfn, index, size)
  94. );
  95. /* We set a pte dirty bit */
  96. DEFINE_EVENT(kvm_mmu_set_bit_class, kvm_mmu_set_dirty_bit,
  97. TP_PROTO(unsigned long table_gfn, unsigned index, unsigned size),
  98. TP_ARGS(table_gfn, index, size)
  99. );
  100. TRACE_EVENT(
  101. kvm_mmu_walker_error,
  102. TP_PROTO(u32 pferr),
  103. TP_ARGS(pferr),
  104. TP_STRUCT__entry(
  105. __field(__u32, pferr)
  106. ),
  107. TP_fast_assign(
  108. __entry->pferr = pferr;
  109. ),
  110. TP_printk("pferr %x %s", __entry->pferr,
  111. __print_flags(__entry->pferr, "|", kvm_mmu_trace_pferr_flags))
  112. );
  113. TRACE_EVENT(
  114. kvm_mmu_get_page,
  115. TP_PROTO(struct kvm_mmu_page *sp, bool created),
  116. TP_ARGS(sp, created),
  117. TP_STRUCT__entry(
  118. KVM_MMU_PAGE_FIELDS
  119. __field(bool, created)
  120. ),
  121. TP_fast_assign(
  122. KVM_MMU_PAGE_ASSIGN(sp)
  123. __entry->created = created;
  124. ),
  125. TP_printk("%s %s", KVM_MMU_PAGE_PRINTK(),
  126. __entry->created ? "new" : "existing")
  127. );
  128. DECLARE_EVENT_CLASS(kvm_mmu_page_class,
  129. TP_PROTO(struct kvm_mmu_page *sp),
  130. TP_ARGS(sp),
  131. TP_STRUCT__entry(
  132. KVM_MMU_PAGE_FIELDS
  133. ),
  134. TP_fast_assign(
  135. KVM_MMU_PAGE_ASSIGN(sp)
  136. ),
  137. TP_printk("%s", KVM_MMU_PAGE_PRINTK())
  138. );
  139. DEFINE_EVENT(kvm_mmu_page_class, kvm_mmu_sync_page,
  140. TP_PROTO(struct kvm_mmu_page *sp),
  141. TP_ARGS(sp)
  142. );
  143. DEFINE_EVENT(kvm_mmu_page_class, kvm_mmu_unsync_page,
  144. TP_PROTO(struct kvm_mmu_page *sp),
  145. TP_ARGS(sp)
  146. );
  147. DEFINE_EVENT(kvm_mmu_page_class, kvm_mmu_prepare_zap_page,
  148. TP_PROTO(struct kvm_mmu_page *sp),
  149. TP_ARGS(sp)
  150. );
  151. DEFINE_EVENT(kvm_mmu_page_class, kvm_mmu_delay_free_pages,
  152. TP_PROTO(struct kvm_mmu_page *sp),
  153. TP_ARGS(sp)
  154. );
  155. TRACE_EVENT(
  156. mark_mmio_spte,
  157. TP_PROTO(u64 *sptep, gfn_t gfn, unsigned access),
  158. TP_ARGS(sptep, gfn, access),
  159. TP_STRUCT__entry(
  160. __field(void *, sptep)
  161. __field(gfn_t, gfn)
  162. __field(unsigned, access)
  163. ),
  164. TP_fast_assign(
  165. __entry->sptep = sptep;
  166. __entry->gfn = gfn;
  167. __entry->access = access;
  168. ),
  169. TP_printk("sptep:%p gfn %llx access %x", __entry->sptep, __entry->gfn,
  170. __entry->access)
  171. );
  172. TRACE_EVENT(
  173. handle_mmio_page_fault,
  174. TP_PROTO(u64 addr, gfn_t gfn, unsigned access),
  175. TP_ARGS(addr, gfn, access),
  176. TP_STRUCT__entry(
  177. __field(u64, addr)
  178. __field(gfn_t, gfn)
  179. __field(unsigned, access)
  180. ),
  181. TP_fast_assign(
  182. __entry->addr = addr;
  183. __entry->gfn = gfn;
  184. __entry->access = access;
  185. ),
  186. TP_printk("addr:%llx gfn %llx access %x", __entry->addr, __entry->gfn,
  187. __entry->access)
  188. );
  189. #define __spte_satisfied(__spte) \
  190. (__entry->retry && is_writable_pte(__entry->__spte))
  191. TRACE_EVENT(
  192. fast_page_fault,
  193. TP_PROTO(struct kvm_vcpu *vcpu, gva_t gva, u32 error_code,
  194. u64 *sptep, u64 old_spte, bool retry),
  195. TP_ARGS(vcpu, gva, error_code, sptep, old_spte, retry),
  196. TP_STRUCT__entry(
  197. __field(int, vcpu_id)
  198. __field(gva_t, gva)
  199. __field(u32, error_code)
  200. __field(u64 *, sptep)
  201. __field(u64, old_spte)
  202. __field(u64, new_spte)
  203. __field(bool, retry)
  204. ),
  205. TP_fast_assign(
  206. __entry->vcpu_id = vcpu->vcpu_id;
  207. __entry->gva = gva;
  208. __entry->error_code = error_code;
  209. __entry->sptep = sptep;
  210. __entry->old_spte = old_spte;
  211. __entry->new_spte = *sptep;
  212. __entry->retry = retry;
  213. ),
  214. TP_printk("vcpu %d gva %lx error_code %s sptep %p old %#llx"
  215. " new %llx spurious %d fixed %d", __entry->vcpu_id,
  216. __entry->gva, __print_flags(__entry->error_code, "|",
  217. kvm_mmu_trace_pferr_flags), __entry->sptep,
  218. __entry->old_spte, __entry->new_spte,
  219. __spte_satisfied(old_spte), __spte_satisfied(new_spte)
  220. )
  221. );
  222. #endif /* _TRACE_KVMMMU_H */
  223. #undef TRACE_INCLUDE_PATH
  224. #define TRACE_INCLUDE_PATH .
  225. #undef TRACE_INCLUDE_FILE
  226. #define TRACE_INCLUDE_FILE mmutrace
  227. /* This part must be outside protection */
  228. #include <trace/define_trace.h>