xen.h 15 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501
  1. #undef TRACE_SYSTEM
  2. #define TRACE_SYSTEM xen
  3. #if !defined(_TRACE_XEN_H) || defined(TRACE_HEADER_MULTI_READ)
  4. #define _TRACE_XEN_H
  5. #include <linux/tracepoint.h>
  6. #include <asm/paravirt_types.h>
  7. #include <asm/xen/trace_types.h>
  8. struct multicall_entry;
  9. /* Multicalls */
  10. DECLARE_EVENT_CLASS(xen_mc__batch,
  11. TP_PROTO(enum paravirt_lazy_mode mode),
  12. TP_ARGS(mode),
  13. TP_STRUCT__entry(
  14. __field(enum paravirt_lazy_mode, mode)
  15. ),
  16. TP_fast_assign(__entry->mode = mode),
  17. TP_printk("start batch LAZY_%s",
  18. (__entry->mode == PARAVIRT_LAZY_MMU) ? "MMU" :
  19. (__entry->mode == PARAVIRT_LAZY_CPU) ? "CPU" : "NONE")
  20. );
  21. #define DEFINE_XEN_MC_BATCH(name) \
  22. DEFINE_EVENT(xen_mc__batch, name, \
  23. TP_PROTO(enum paravirt_lazy_mode mode), \
  24. TP_ARGS(mode))
  25. DEFINE_XEN_MC_BATCH(xen_mc_batch);
  26. DEFINE_XEN_MC_BATCH(xen_mc_issue);
  27. TRACE_EVENT(xen_mc_entry,
  28. TP_PROTO(struct multicall_entry *mc, unsigned nargs),
  29. TP_ARGS(mc, nargs),
  30. TP_STRUCT__entry(
  31. __field(unsigned int, op)
  32. __field(unsigned int, nargs)
  33. __array(unsigned long, args, 6)
  34. ),
  35. TP_fast_assign(__entry->op = mc->op;
  36. __entry->nargs = nargs;
  37. memcpy(__entry->args, mc->args, sizeof(unsigned long) * nargs);
  38. memset(__entry->args + nargs, 0, sizeof(unsigned long) * (6 - nargs));
  39. ),
  40. TP_printk("op %u%s args [%lx, %lx, %lx, %lx, %lx, %lx]",
  41. __entry->op, xen_hypercall_name(__entry->op),
  42. __entry->args[0], __entry->args[1], __entry->args[2],
  43. __entry->args[3], __entry->args[4], __entry->args[5])
  44. );
  45. TRACE_EVENT(xen_mc_entry_alloc,
  46. TP_PROTO(size_t args),
  47. TP_ARGS(args),
  48. TP_STRUCT__entry(
  49. __field(size_t, args)
  50. ),
  51. TP_fast_assign(__entry->args = args),
  52. TP_printk("alloc entry %zu arg bytes", __entry->args)
  53. );
  54. TRACE_EVENT(xen_mc_callback,
  55. TP_PROTO(xen_mc_callback_fn_t fn, void *data),
  56. TP_ARGS(fn, data),
  57. TP_STRUCT__entry(
  58. __field(xen_mc_callback_fn_t, fn)
  59. __field(void *, data)
  60. ),
  61. TP_fast_assign(
  62. __entry->fn = fn;
  63. __entry->data = data;
  64. ),
  65. TP_printk("callback %pf, data %p",
  66. __entry->fn, __entry->data)
  67. );
  68. TRACE_EVENT(xen_mc_flush_reason,
  69. TP_PROTO(enum xen_mc_flush_reason reason),
  70. TP_ARGS(reason),
  71. TP_STRUCT__entry(
  72. __field(enum xen_mc_flush_reason, reason)
  73. ),
  74. TP_fast_assign(__entry->reason = reason),
  75. TP_printk("flush reason %s",
  76. (__entry->reason == XEN_MC_FL_NONE) ? "NONE" :
  77. (__entry->reason == XEN_MC_FL_BATCH) ? "BATCH" :
  78. (__entry->reason == XEN_MC_FL_ARGS) ? "ARGS" :
  79. (__entry->reason == XEN_MC_FL_CALLBACK) ? "CALLBACK" : "??")
  80. );
  81. TRACE_EVENT(xen_mc_flush,
  82. TP_PROTO(unsigned mcidx, unsigned argidx, unsigned cbidx),
  83. TP_ARGS(mcidx, argidx, cbidx),
  84. TP_STRUCT__entry(
  85. __field(unsigned, mcidx)
  86. __field(unsigned, argidx)
  87. __field(unsigned, cbidx)
  88. ),
  89. TP_fast_assign(__entry->mcidx = mcidx;
  90. __entry->argidx = argidx;
  91. __entry->cbidx = cbidx),
  92. TP_printk("flushing %u hypercalls, %u arg bytes, %u callbacks",
  93. __entry->mcidx, __entry->argidx, __entry->cbidx)
  94. );
  95. TRACE_EVENT(xen_mc_extend_args,
  96. TP_PROTO(unsigned long op, size_t args, enum xen_mc_extend_args res),
  97. TP_ARGS(op, args, res),
  98. TP_STRUCT__entry(
  99. __field(unsigned int, op)
  100. __field(size_t, args)
  101. __field(enum xen_mc_extend_args, res)
  102. ),
  103. TP_fast_assign(__entry->op = op;
  104. __entry->args = args;
  105. __entry->res = res),
  106. TP_printk("extending op %u%s by %zu bytes res %s",
  107. __entry->op, xen_hypercall_name(__entry->op),
  108. __entry->args,
  109. __entry->res == XEN_MC_XE_OK ? "OK" :
  110. __entry->res == XEN_MC_XE_BAD_OP ? "BAD_OP" :
  111. __entry->res == XEN_MC_XE_NO_SPACE ? "NO_SPACE" : "???")
  112. );
  113. /* mmu */
  114. DECLARE_EVENT_CLASS(xen_mmu__set_pte,
  115. TP_PROTO(pte_t *ptep, pte_t pteval),
  116. TP_ARGS(ptep, pteval),
  117. TP_STRUCT__entry(
  118. __field(pte_t *, ptep)
  119. __field(pteval_t, pteval)
  120. ),
  121. TP_fast_assign(__entry->ptep = ptep;
  122. __entry->pteval = pteval.pte),
  123. TP_printk("ptep %p pteval %0*llx (raw %0*llx)",
  124. __entry->ptep,
  125. (int)sizeof(pteval_t) * 2, (unsigned long long)pte_val(native_make_pte(__entry->pteval)),
  126. (int)sizeof(pteval_t) * 2, (unsigned long long)__entry->pteval)
  127. );
  128. #define DEFINE_XEN_MMU_SET_PTE(name) \
  129. DEFINE_EVENT(xen_mmu__set_pte, name, \
  130. TP_PROTO(pte_t *ptep, pte_t pteval), \
  131. TP_ARGS(ptep, pteval))
  132. DEFINE_XEN_MMU_SET_PTE(xen_mmu_set_pte);
  133. DEFINE_XEN_MMU_SET_PTE(xen_mmu_set_pte_atomic);
  134. TRACE_EVENT(xen_mmu_set_domain_pte,
  135. TP_PROTO(pte_t *ptep, pte_t pteval, unsigned domid),
  136. TP_ARGS(ptep, pteval, domid),
  137. TP_STRUCT__entry(
  138. __field(pte_t *, ptep)
  139. __field(pteval_t, pteval)
  140. __field(unsigned, domid)
  141. ),
  142. TP_fast_assign(__entry->ptep = ptep;
  143. __entry->pteval = pteval.pte;
  144. __entry->domid = domid),
  145. TP_printk("ptep %p pteval %0*llx (raw %0*llx) domid %u",
  146. __entry->ptep,
  147. (int)sizeof(pteval_t) * 2, (unsigned long long)pte_val(native_make_pte(__entry->pteval)),
  148. (int)sizeof(pteval_t) * 2, (unsigned long long)__entry->pteval,
  149. __entry->domid)
  150. );
  151. TRACE_EVENT(xen_mmu_set_pte_at,
  152. TP_PROTO(struct mm_struct *mm, unsigned long addr,
  153. pte_t *ptep, pte_t pteval),
  154. TP_ARGS(mm, addr, ptep, pteval),
  155. TP_STRUCT__entry(
  156. __field(struct mm_struct *, mm)
  157. __field(unsigned long, addr)
  158. __field(pte_t *, ptep)
  159. __field(pteval_t, pteval)
  160. ),
  161. TP_fast_assign(__entry->mm = mm;
  162. __entry->addr = addr;
  163. __entry->ptep = ptep;
  164. __entry->pteval = pteval.pte),
  165. TP_printk("mm %p addr %lx ptep %p pteval %0*llx (raw %0*llx)",
  166. __entry->mm, __entry->addr, __entry->ptep,
  167. (int)sizeof(pteval_t) * 2, (unsigned long long)pte_val(native_make_pte(__entry->pteval)),
  168. (int)sizeof(pteval_t) * 2, (unsigned long long)__entry->pteval)
  169. );
  170. TRACE_EVENT(xen_mmu_pte_clear,
  171. TP_PROTO(struct mm_struct *mm, unsigned long addr, pte_t *ptep),
  172. TP_ARGS(mm, addr, ptep),
  173. TP_STRUCT__entry(
  174. __field(struct mm_struct *, mm)
  175. __field(unsigned long, addr)
  176. __field(pte_t *, ptep)
  177. ),
  178. TP_fast_assign(__entry->mm = mm;
  179. __entry->addr = addr;
  180. __entry->ptep = ptep),
  181. TP_printk("mm %p addr %lx ptep %p",
  182. __entry->mm, __entry->addr, __entry->ptep)
  183. );
  184. TRACE_EVENT(xen_mmu_set_pmd,
  185. TP_PROTO(pmd_t *pmdp, pmd_t pmdval),
  186. TP_ARGS(pmdp, pmdval),
  187. TP_STRUCT__entry(
  188. __field(pmd_t *, pmdp)
  189. __field(pmdval_t, pmdval)
  190. ),
  191. TP_fast_assign(__entry->pmdp = pmdp;
  192. __entry->pmdval = pmdval.pmd),
  193. TP_printk("pmdp %p pmdval %0*llx (raw %0*llx)",
  194. __entry->pmdp,
  195. (int)sizeof(pmdval_t) * 2, (unsigned long long)pmd_val(native_make_pmd(__entry->pmdval)),
  196. (int)sizeof(pmdval_t) * 2, (unsigned long long)__entry->pmdval)
  197. );
  198. TRACE_EVENT(xen_mmu_pmd_clear,
  199. TP_PROTO(pmd_t *pmdp),
  200. TP_ARGS(pmdp),
  201. TP_STRUCT__entry(
  202. __field(pmd_t *, pmdp)
  203. ),
  204. TP_fast_assign(__entry->pmdp = pmdp),
  205. TP_printk("pmdp %p", __entry->pmdp)
  206. );
  207. #if CONFIG_PGTABLE_LEVELS >= 4
  208. TRACE_EVENT(xen_mmu_set_pud,
  209. TP_PROTO(pud_t *pudp, pud_t pudval),
  210. TP_ARGS(pudp, pudval),
  211. TP_STRUCT__entry(
  212. __field(pud_t *, pudp)
  213. __field(pudval_t, pudval)
  214. ),
  215. TP_fast_assign(__entry->pudp = pudp;
  216. __entry->pudval = native_pud_val(pudval)),
  217. TP_printk("pudp %p pudval %0*llx (raw %0*llx)",
  218. __entry->pudp,
  219. (int)sizeof(pudval_t) * 2, (unsigned long long)pud_val(native_make_pud(__entry->pudval)),
  220. (int)sizeof(pudval_t) * 2, (unsigned long long)__entry->pudval)
  221. );
  222. TRACE_EVENT(xen_mmu_set_pgd,
  223. TP_PROTO(pgd_t *pgdp, pgd_t *user_pgdp, pgd_t pgdval),
  224. TP_ARGS(pgdp, user_pgdp, pgdval),
  225. TP_STRUCT__entry(
  226. __field(pgd_t *, pgdp)
  227. __field(pgd_t *, user_pgdp)
  228. __field(pgdval_t, pgdval)
  229. ),
  230. TP_fast_assign(__entry->pgdp = pgdp;
  231. __entry->user_pgdp = user_pgdp;
  232. __entry->pgdval = pgdval.pgd),
  233. TP_printk("pgdp %p user_pgdp %p pgdval %0*llx (raw %0*llx)",
  234. __entry->pgdp, __entry->user_pgdp,
  235. (int)sizeof(pgdval_t) * 2, (unsigned long long)pgd_val(native_make_pgd(__entry->pgdval)),
  236. (int)sizeof(pgdval_t) * 2, (unsigned long long)__entry->pgdval)
  237. );
  238. TRACE_EVENT(xen_mmu_pud_clear,
  239. TP_PROTO(pud_t *pudp),
  240. TP_ARGS(pudp),
  241. TP_STRUCT__entry(
  242. __field(pud_t *, pudp)
  243. ),
  244. TP_fast_assign(__entry->pudp = pudp),
  245. TP_printk("pudp %p", __entry->pudp)
  246. );
  247. #else
  248. TRACE_EVENT(xen_mmu_set_pud,
  249. TP_PROTO(pud_t *pudp, pud_t pudval),
  250. TP_ARGS(pudp, pudval),
  251. TP_STRUCT__entry(
  252. __field(pud_t *, pudp)
  253. __field(pudval_t, pudval)
  254. ),
  255. TP_fast_assign(__entry->pudp = pudp;
  256. __entry->pudval = native_pud_val(pudval)),
  257. TP_printk("pudp %p pudval %0*llx (raw %0*llx)",
  258. __entry->pudp,
  259. (int)sizeof(pudval_t) * 2, (unsigned long long)pgd_val(native_make_pgd(__entry->pudval)),
  260. (int)sizeof(pudval_t) * 2, (unsigned long long)__entry->pudval)
  261. );
  262. #endif
  263. TRACE_EVENT(xen_mmu_pgd_clear,
  264. TP_PROTO(pgd_t *pgdp),
  265. TP_ARGS(pgdp),
  266. TP_STRUCT__entry(
  267. __field(pgd_t *, pgdp)
  268. ),
  269. TP_fast_assign(__entry->pgdp = pgdp),
  270. TP_printk("pgdp %p", __entry->pgdp)
  271. );
  272. DECLARE_EVENT_CLASS(xen_mmu_ptep_modify_prot,
  273. TP_PROTO(struct mm_struct *mm, unsigned long addr,
  274. pte_t *ptep, pte_t pteval),
  275. TP_ARGS(mm, addr, ptep, pteval),
  276. TP_STRUCT__entry(
  277. __field(struct mm_struct *, mm)
  278. __field(unsigned long, addr)
  279. __field(pte_t *, ptep)
  280. __field(pteval_t, pteval)
  281. ),
  282. TP_fast_assign(__entry->mm = mm;
  283. __entry->addr = addr;
  284. __entry->ptep = ptep;
  285. __entry->pteval = pteval.pte),
  286. TP_printk("mm %p addr %lx ptep %p pteval %0*llx (raw %0*llx)",
  287. __entry->mm, __entry->addr, __entry->ptep,
  288. (int)sizeof(pteval_t) * 2, (unsigned long long)pte_val(native_make_pte(__entry->pteval)),
  289. (int)sizeof(pteval_t) * 2, (unsigned long long)__entry->pteval)
  290. );
  291. #define DEFINE_XEN_MMU_PTEP_MODIFY_PROT(name) \
  292. DEFINE_EVENT(xen_mmu_ptep_modify_prot, name, \
  293. TP_PROTO(struct mm_struct *mm, unsigned long addr, \
  294. pte_t *ptep, pte_t pteval), \
  295. TP_ARGS(mm, addr, ptep, pteval))
  296. DEFINE_XEN_MMU_PTEP_MODIFY_PROT(xen_mmu_ptep_modify_prot_start);
  297. DEFINE_XEN_MMU_PTEP_MODIFY_PROT(xen_mmu_ptep_modify_prot_commit);
  298. TRACE_EVENT(xen_mmu_alloc_ptpage,
  299. TP_PROTO(struct mm_struct *mm, unsigned long pfn, unsigned level, bool pinned),
  300. TP_ARGS(mm, pfn, level, pinned),
  301. TP_STRUCT__entry(
  302. __field(struct mm_struct *, mm)
  303. __field(unsigned long, pfn)
  304. __field(unsigned, level)
  305. __field(bool, pinned)
  306. ),
  307. TP_fast_assign(__entry->mm = mm;
  308. __entry->pfn = pfn;
  309. __entry->level = level;
  310. __entry->pinned = pinned),
  311. TP_printk("mm %p pfn %lx level %d %spinned",
  312. __entry->mm, __entry->pfn, __entry->level,
  313. __entry->pinned ? "" : "un")
  314. );
  315. TRACE_EVENT(xen_mmu_release_ptpage,
  316. TP_PROTO(unsigned long pfn, unsigned level, bool pinned),
  317. TP_ARGS(pfn, level, pinned),
  318. TP_STRUCT__entry(
  319. __field(unsigned long, pfn)
  320. __field(unsigned, level)
  321. __field(bool, pinned)
  322. ),
  323. TP_fast_assign(__entry->pfn = pfn;
  324. __entry->level = level;
  325. __entry->pinned = pinned),
  326. TP_printk("pfn %lx level %d %spinned",
  327. __entry->pfn, __entry->level,
  328. __entry->pinned ? "" : "un")
  329. );
  330. DECLARE_EVENT_CLASS(xen_mmu_pgd,
  331. TP_PROTO(struct mm_struct *mm, pgd_t *pgd),
  332. TP_ARGS(mm, pgd),
  333. TP_STRUCT__entry(
  334. __field(struct mm_struct *, mm)
  335. __field(pgd_t *, pgd)
  336. ),
  337. TP_fast_assign(__entry->mm = mm;
  338. __entry->pgd = pgd),
  339. TP_printk("mm %p pgd %p", __entry->mm, __entry->pgd)
  340. );
  341. #define DEFINE_XEN_MMU_PGD_EVENT(name) \
  342. DEFINE_EVENT(xen_mmu_pgd, name, \
  343. TP_PROTO(struct mm_struct *mm, pgd_t *pgd), \
  344. TP_ARGS(mm, pgd))
  345. DEFINE_XEN_MMU_PGD_EVENT(xen_mmu_pgd_pin);
  346. DEFINE_XEN_MMU_PGD_EVENT(xen_mmu_pgd_unpin);
  347. TRACE_EVENT(xen_mmu_flush_tlb_single,
  348. TP_PROTO(unsigned long addr),
  349. TP_ARGS(addr),
  350. TP_STRUCT__entry(
  351. __field(unsigned long, addr)
  352. ),
  353. TP_fast_assign(__entry->addr = addr),
  354. TP_printk("addr %lx", __entry->addr)
  355. );
  356. TRACE_EVENT(xen_mmu_flush_tlb_others,
  357. TP_PROTO(const struct cpumask *cpus, struct mm_struct *mm,
  358. unsigned long addr, unsigned long end),
  359. TP_ARGS(cpus, mm, addr, end),
  360. TP_STRUCT__entry(
  361. __field(unsigned, ncpus)
  362. __field(struct mm_struct *, mm)
  363. __field(unsigned long, addr)
  364. __field(unsigned long, end)
  365. ),
  366. TP_fast_assign(__entry->ncpus = cpumask_weight(cpus);
  367. __entry->mm = mm;
  368. __entry->addr = addr,
  369. __entry->end = end),
  370. TP_printk("ncpus %d mm %p addr %lx, end %lx",
  371. __entry->ncpus, __entry->mm, __entry->addr, __entry->end)
  372. );
  373. TRACE_EVENT(xen_mmu_write_cr3,
  374. TP_PROTO(bool kernel, unsigned long cr3),
  375. TP_ARGS(kernel, cr3),
  376. TP_STRUCT__entry(
  377. __field(bool, kernel)
  378. __field(unsigned long, cr3)
  379. ),
  380. TP_fast_assign(__entry->kernel = kernel;
  381. __entry->cr3 = cr3),
  382. TP_printk("%s cr3 %lx",
  383. __entry->kernel ? "kernel" : "user", __entry->cr3)
  384. );
  385. /* CPU */
  386. TRACE_EVENT(xen_cpu_write_ldt_entry,
  387. TP_PROTO(struct desc_struct *dt, int entrynum, u64 desc),
  388. TP_ARGS(dt, entrynum, desc),
  389. TP_STRUCT__entry(
  390. __field(struct desc_struct *, dt)
  391. __field(int, entrynum)
  392. __field(u64, desc)
  393. ),
  394. TP_fast_assign(__entry->dt = dt;
  395. __entry->entrynum = entrynum;
  396. __entry->desc = desc;
  397. ),
  398. TP_printk("dt %p entrynum %d entry %016llx",
  399. __entry->dt, __entry->entrynum,
  400. (unsigned long long)__entry->desc)
  401. );
  402. TRACE_EVENT(xen_cpu_write_idt_entry,
  403. TP_PROTO(gate_desc *dt, int entrynum, const gate_desc *ent),
  404. TP_ARGS(dt, entrynum, ent),
  405. TP_STRUCT__entry(
  406. __field(gate_desc *, dt)
  407. __field(int, entrynum)
  408. ),
  409. TP_fast_assign(__entry->dt = dt;
  410. __entry->entrynum = entrynum;
  411. ),
  412. TP_printk("dt %p entrynum %d",
  413. __entry->dt, __entry->entrynum)
  414. );
  415. TRACE_EVENT(xen_cpu_load_idt,
  416. TP_PROTO(const struct desc_ptr *desc),
  417. TP_ARGS(desc),
  418. TP_STRUCT__entry(
  419. __field(unsigned long, addr)
  420. ),
  421. TP_fast_assign(__entry->addr = desc->address),
  422. TP_printk("addr %lx", __entry->addr)
  423. );
  424. TRACE_EVENT(xen_cpu_write_gdt_entry,
  425. TP_PROTO(struct desc_struct *dt, int entrynum, const void *desc, int type),
  426. TP_ARGS(dt, entrynum, desc, type),
  427. TP_STRUCT__entry(
  428. __field(u64, desc)
  429. __field(struct desc_struct *, dt)
  430. __field(int, entrynum)
  431. __field(int, type)
  432. ),
  433. TP_fast_assign(__entry->dt = dt;
  434. __entry->entrynum = entrynum;
  435. __entry->desc = *(u64 *)desc;
  436. __entry->type = type;
  437. ),
  438. TP_printk("dt %p entrynum %d type %d desc %016llx",
  439. __entry->dt, __entry->entrynum, __entry->type,
  440. (unsigned long long)__entry->desc)
  441. );
  442. TRACE_EVENT(xen_cpu_set_ldt,
  443. TP_PROTO(const void *addr, unsigned entries),
  444. TP_ARGS(addr, entries),
  445. TP_STRUCT__entry(
  446. __field(const void *, addr)
  447. __field(unsigned, entries)
  448. ),
  449. TP_fast_assign(__entry->addr = addr;
  450. __entry->entries = entries),
  451. TP_printk("addr %p entries %u",
  452. __entry->addr, __entry->entries)
  453. );
  454. #endif /* _TRACE_XEN_H */
  455. /* This part must be outside protection */
  456. #include <trace/define_trace.h>