trace.h 19 KB

123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320321322323324325326327328329330331332333334335336337338339340341342343344345346347348349350351352353354355356357358359360361362363364365366367368369370371372373374375376377378379380381382383384385386387388389390391392393394395396397398399400401402403404405406407408409410411412413414415416417418419420421422423424425426427428429430431432433434435436437438439440441442443444445446447448449450451452453454455456457458459460461462463464465466467468469470471472473474475476477478479480481482483484485486487488489490491492493494495496497498499500501502503504505506507508509510511512513514515516517518519520521522523524525526527528529530531532533534535536537538539540541542543544545546547548549550551552553554555556557558559560561562563564565566567568569570571572573574575576577578579580581582583584585586587588589590591592593594595596597598599600601602603604605606607608609610611612613614615616617618619620621622623624625626627628629630631632633634635636637638639640641642643644645646647648649650651652653654655656657658659660661662663664665666667668669670671672673674675676677678679680681682683684685686687688689690691692693694695696697698699700701702703704705706707708709710711712713714715716717718719720721722723724725726727728729730731732733734735736737738739740741742743744745746747748749750751752753754755756757758759760761762763764765
  1. #if !defined(_TRACE_KVM_H) || defined(TRACE_HEADER_MULTI_READ)
  2. #define _TRACE_KVM_H
  3. #include <linux/tracepoint.h>
  4. #include <asm/vmx.h>
  5. #include <asm/svm.h>
  6. #undef TRACE_SYSTEM
  7. #define TRACE_SYSTEM kvm
  8. /*
  9. * Tracepoint for guest mode entry.
  10. */
  11. TRACE_EVENT(kvm_entry,
  12. TP_PROTO(unsigned int vcpu_id),
  13. TP_ARGS(vcpu_id),
  14. TP_STRUCT__entry(
  15. __field( unsigned int, vcpu_id )
  16. ),
  17. TP_fast_assign(
  18. __entry->vcpu_id = vcpu_id;
  19. ),
  20. TP_printk("vcpu %u", __entry->vcpu_id)
  21. );
  22. /*
  23. * Tracepoint for hypercall.
  24. */
  25. TRACE_EVENT(kvm_hypercall,
  26. TP_PROTO(unsigned long nr, unsigned long a0, unsigned long a1,
  27. unsigned long a2, unsigned long a3),
  28. TP_ARGS(nr, a0, a1, a2, a3),
  29. TP_STRUCT__entry(
  30. __field( unsigned long, nr )
  31. __field( unsigned long, a0 )
  32. __field( unsigned long, a1 )
  33. __field( unsigned long, a2 )
  34. __field( unsigned long, a3 )
  35. ),
  36. TP_fast_assign(
  37. __entry->nr = nr;
  38. __entry->a0 = a0;
  39. __entry->a1 = a1;
  40. __entry->a2 = a2;
  41. __entry->a3 = a3;
  42. ),
  43. TP_printk("nr 0x%lx a0 0x%lx a1 0x%lx a2 0x%lx a3 0x%lx",
  44. __entry->nr, __entry->a0, __entry->a1, __entry->a2,
  45. __entry->a3)
  46. );
  47. /*
  48. * Tracepoint for hypercall.
  49. */
  50. TRACE_EVENT(kvm_hv_hypercall,
  51. TP_PROTO(__u16 code, bool fast, __u16 rep_cnt, __u16 rep_idx,
  52. __u64 ingpa, __u64 outgpa),
  53. TP_ARGS(code, fast, rep_cnt, rep_idx, ingpa, outgpa),
  54. TP_STRUCT__entry(
  55. __field( __u16, rep_cnt )
  56. __field( __u16, rep_idx )
  57. __field( __u64, ingpa )
  58. __field( __u64, outgpa )
  59. __field( __u16, code )
  60. __field( bool, fast )
  61. ),
  62. TP_fast_assign(
  63. __entry->rep_cnt = rep_cnt;
  64. __entry->rep_idx = rep_idx;
  65. __entry->ingpa = ingpa;
  66. __entry->outgpa = outgpa;
  67. __entry->code = code;
  68. __entry->fast = fast;
  69. ),
  70. TP_printk("code 0x%x %s cnt 0x%x idx 0x%x in 0x%llx out 0x%llx",
  71. __entry->code, __entry->fast ? "fast" : "slow",
  72. __entry->rep_cnt, __entry->rep_idx, __entry->ingpa,
  73. __entry->outgpa)
  74. );
  75. /*
  76. * Tracepoint for PIO.
  77. */
  78. TRACE_EVENT(kvm_pio,
  79. TP_PROTO(unsigned int rw, unsigned int port, unsigned int size,
  80. unsigned int count),
  81. TP_ARGS(rw, port, size, count),
  82. TP_STRUCT__entry(
  83. __field( unsigned int, rw )
  84. __field( unsigned int, port )
  85. __field( unsigned int, size )
  86. __field( unsigned int, count )
  87. ),
  88. TP_fast_assign(
  89. __entry->rw = rw;
  90. __entry->port = port;
  91. __entry->size = size;
  92. __entry->count = count;
  93. ),
  94. TP_printk("pio_%s at 0x%x size %d count %d",
  95. __entry->rw ? "write" : "read",
  96. __entry->port, __entry->size, __entry->count)
  97. );
  98. /*
  99. * Tracepoint for cpuid.
  100. */
  101. TRACE_EVENT(kvm_cpuid,
  102. TP_PROTO(unsigned int function, unsigned long rax, unsigned long rbx,
  103. unsigned long rcx, unsigned long rdx),
  104. TP_ARGS(function, rax, rbx, rcx, rdx),
  105. TP_STRUCT__entry(
  106. __field( unsigned int, function )
  107. __field( unsigned long, rax )
  108. __field( unsigned long, rbx )
  109. __field( unsigned long, rcx )
  110. __field( unsigned long, rdx )
  111. ),
  112. TP_fast_assign(
  113. __entry->function = function;
  114. __entry->rax = rax;
  115. __entry->rbx = rbx;
  116. __entry->rcx = rcx;
  117. __entry->rdx = rdx;
  118. ),
  119. TP_printk("func %x rax %lx rbx %lx rcx %lx rdx %lx",
  120. __entry->function, __entry->rax,
  121. __entry->rbx, __entry->rcx, __entry->rdx)
  122. );
  123. #define AREG(x) { APIC_##x, "APIC_" #x }
  124. #define kvm_trace_symbol_apic \
  125. AREG(ID), AREG(LVR), AREG(TASKPRI), AREG(ARBPRI), AREG(PROCPRI), \
  126. AREG(EOI), AREG(RRR), AREG(LDR), AREG(DFR), AREG(SPIV), AREG(ISR), \
  127. AREG(TMR), AREG(IRR), AREG(ESR), AREG(ICR), AREG(ICR2), AREG(LVTT), \
  128. AREG(LVTTHMR), AREG(LVTPC), AREG(LVT0), AREG(LVT1), AREG(LVTERR), \
  129. AREG(TMICT), AREG(TMCCT), AREG(TDCR), AREG(SELF_IPI), AREG(EFEAT), \
  130. AREG(ECTRL)
  131. /*
  132. * Tracepoint for apic access.
  133. */
  134. TRACE_EVENT(kvm_apic,
  135. TP_PROTO(unsigned int rw, unsigned int reg, unsigned int val),
  136. TP_ARGS(rw, reg, val),
  137. TP_STRUCT__entry(
  138. __field( unsigned int, rw )
  139. __field( unsigned int, reg )
  140. __field( unsigned int, val )
  141. ),
  142. TP_fast_assign(
  143. __entry->rw = rw;
  144. __entry->reg = reg;
  145. __entry->val = val;
  146. ),
  147. TP_printk("apic_%s %s = 0x%x",
  148. __entry->rw ? "write" : "read",
  149. __print_symbolic(__entry->reg, kvm_trace_symbol_apic),
  150. __entry->val)
  151. );
  152. #define trace_kvm_apic_read(reg, val) trace_kvm_apic(0, reg, val)
  153. #define trace_kvm_apic_write(reg, val) trace_kvm_apic(1, reg, val)
  154. #define KVM_ISA_VMX 1
  155. #define KVM_ISA_SVM 2
  156. /*
  157. * Tracepoint for kvm guest exit:
  158. */
  159. TRACE_EVENT(kvm_exit,
  160. TP_PROTO(unsigned int exit_reason, struct kvm_vcpu *vcpu, u32 isa),
  161. TP_ARGS(exit_reason, vcpu, isa),
  162. TP_STRUCT__entry(
  163. __field( unsigned int, exit_reason )
  164. __field( unsigned long, guest_rip )
  165. __field( u32, isa )
  166. __field( u64, info1 )
  167. __field( u64, info2 )
  168. ),
  169. TP_fast_assign(
  170. __entry->exit_reason = exit_reason;
  171. __entry->guest_rip = kvm_rip_read(vcpu);
  172. __entry->isa = isa;
  173. kvm_x86_ops->get_exit_info(vcpu, &__entry->info1,
  174. &__entry->info2);
  175. ),
  176. TP_printk("reason %s rip 0x%lx info %llx %llx",
  177. (__entry->isa == KVM_ISA_VMX) ?
  178. __print_symbolic(__entry->exit_reason, VMX_EXIT_REASONS) :
  179. __print_symbolic(__entry->exit_reason, SVM_EXIT_REASONS),
  180. __entry->guest_rip, __entry->info1, __entry->info2)
  181. );
  182. /*
  183. * Tracepoint for kvm interrupt injection:
  184. */
  185. TRACE_EVENT(kvm_inj_virq,
  186. TP_PROTO(unsigned int irq),
  187. TP_ARGS(irq),
  188. TP_STRUCT__entry(
  189. __field( unsigned int, irq )
  190. ),
  191. TP_fast_assign(
  192. __entry->irq = irq;
  193. ),
  194. TP_printk("irq %u", __entry->irq)
  195. );
  196. #define EXS(x) { x##_VECTOR, "#" #x }
  197. #define kvm_trace_sym_exc \
  198. EXS(DE), EXS(DB), EXS(BP), EXS(OF), EXS(BR), EXS(UD), EXS(NM), \
  199. EXS(DF), EXS(TS), EXS(NP), EXS(SS), EXS(GP), EXS(PF), \
  200. EXS(MF), EXS(MC)
  201. /*
  202. * Tracepoint for kvm interrupt injection:
  203. */
  204. TRACE_EVENT(kvm_inj_exception,
  205. TP_PROTO(unsigned exception, bool has_error, unsigned error_code),
  206. TP_ARGS(exception, has_error, error_code),
  207. TP_STRUCT__entry(
  208. __field( u8, exception )
  209. __field( u8, has_error )
  210. __field( u32, error_code )
  211. ),
  212. TP_fast_assign(
  213. __entry->exception = exception;
  214. __entry->has_error = has_error;
  215. __entry->error_code = error_code;
  216. ),
  217. TP_printk("%s (0x%x)",
  218. __print_symbolic(__entry->exception, kvm_trace_sym_exc),
  219. /* FIXME: don't print error_code if not present */
  220. __entry->has_error ? __entry->error_code : 0)
  221. );
  222. /*
  223. * Tracepoint for page fault.
  224. */
  225. TRACE_EVENT(kvm_page_fault,
  226. TP_PROTO(unsigned long fault_address, unsigned int error_code),
  227. TP_ARGS(fault_address, error_code),
  228. TP_STRUCT__entry(
  229. __field( unsigned long, fault_address )
  230. __field( unsigned int, error_code )
  231. ),
  232. TP_fast_assign(
  233. __entry->fault_address = fault_address;
  234. __entry->error_code = error_code;
  235. ),
  236. TP_printk("address %lx error_code %x",
  237. __entry->fault_address, __entry->error_code)
  238. );
  239. /*
  240. * Tracepoint for guest MSR access.
  241. */
  242. TRACE_EVENT(kvm_msr,
  243. TP_PROTO(unsigned write, u32 ecx, u64 data, bool exception),
  244. TP_ARGS(write, ecx, data, exception),
  245. TP_STRUCT__entry(
  246. __field( unsigned, write )
  247. __field( u32, ecx )
  248. __field( u64, data )
  249. __field( u8, exception )
  250. ),
  251. TP_fast_assign(
  252. __entry->write = write;
  253. __entry->ecx = ecx;
  254. __entry->data = data;
  255. __entry->exception = exception;
  256. ),
  257. TP_printk("msr_%s %x = 0x%llx%s",
  258. __entry->write ? "write" : "read",
  259. __entry->ecx, __entry->data,
  260. __entry->exception ? " (#GP)" : "")
  261. );
  262. #define trace_kvm_msr_read(ecx, data) trace_kvm_msr(0, ecx, data, false)
  263. #define trace_kvm_msr_write(ecx, data) trace_kvm_msr(1, ecx, data, false)
  264. #define trace_kvm_msr_read_ex(ecx) trace_kvm_msr(0, ecx, 0, true)
  265. #define trace_kvm_msr_write_ex(ecx, data) trace_kvm_msr(1, ecx, data, true)
  266. /*
  267. * Tracepoint for guest CR access.
  268. */
  269. TRACE_EVENT(kvm_cr,
  270. TP_PROTO(unsigned int rw, unsigned int cr, unsigned long val),
  271. TP_ARGS(rw, cr, val),
  272. TP_STRUCT__entry(
  273. __field( unsigned int, rw )
  274. __field( unsigned int, cr )
  275. __field( unsigned long, val )
  276. ),
  277. TP_fast_assign(
  278. __entry->rw = rw;
  279. __entry->cr = cr;
  280. __entry->val = val;
  281. ),
  282. TP_printk("cr_%s %x = 0x%lx",
  283. __entry->rw ? "write" : "read",
  284. __entry->cr, __entry->val)
  285. );
  286. #define trace_kvm_cr_read(cr, val) trace_kvm_cr(0, cr, val)
  287. #define trace_kvm_cr_write(cr, val) trace_kvm_cr(1, cr, val)
  288. TRACE_EVENT(kvm_pic_set_irq,
  289. TP_PROTO(__u8 chip, __u8 pin, __u8 elcr, __u8 imr, bool coalesced),
  290. TP_ARGS(chip, pin, elcr, imr, coalesced),
  291. TP_STRUCT__entry(
  292. __field( __u8, chip )
  293. __field( __u8, pin )
  294. __field( __u8, elcr )
  295. __field( __u8, imr )
  296. __field( bool, coalesced )
  297. ),
  298. TP_fast_assign(
  299. __entry->chip = chip;
  300. __entry->pin = pin;
  301. __entry->elcr = elcr;
  302. __entry->imr = imr;
  303. __entry->coalesced = coalesced;
  304. ),
  305. TP_printk("chip %u pin %u (%s%s)%s",
  306. __entry->chip, __entry->pin,
  307. (__entry->elcr & (1 << __entry->pin)) ? "level":"edge",
  308. (__entry->imr & (1 << __entry->pin)) ? "|masked":"",
  309. __entry->coalesced ? " (coalesced)" : "")
  310. );
  311. #define kvm_apic_dst_shorthand \
  312. {0x0, "dst"}, \
  313. {0x1, "self"}, \
  314. {0x2, "all"}, \
  315. {0x3, "all-but-self"}
  316. TRACE_EVENT(kvm_apic_ipi,
  317. TP_PROTO(__u32 icr_low, __u32 dest_id),
  318. TP_ARGS(icr_low, dest_id),
  319. TP_STRUCT__entry(
  320. __field( __u32, icr_low )
  321. __field( __u32, dest_id )
  322. ),
  323. TP_fast_assign(
  324. __entry->icr_low = icr_low;
  325. __entry->dest_id = dest_id;
  326. ),
  327. TP_printk("dst %x vec %u (%s|%s|%s|%s|%s)",
  328. __entry->dest_id, (u8)__entry->icr_low,
  329. __print_symbolic((__entry->icr_low >> 8 & 0x7),
  330. kvm_deliver_mode),
  331. (__entry->icr_low & (1<<11)) ? "logical" : "physical",
  332. (__entry->icr_low & (1<<14)) ? "assert" : "de-assert",
  333. (__entry->icr_low & (1<<15)) ? "level" : "edge",
  334. __print_symbolic((__entry->icr_low >> 18 & 0x3),
  335. kvm_apic_dst_shorthand))
  336. );
  337. TRACE_EVENT(kvm_apic_accept_irq,
  338. TP_PROTO(__u32 apicid, __u16 dm, __u8 tm, __u8 vec, bool coalesced),
  339. TP_ARGS(apicid, dm, tm, vec, coalesced),
  340. TP_STRUCT__entry(
  341. __field( __u32, apicid )
  342. __field( __u16, dm )
  343. __field( __u8, tm )
  344. __field( __u8, vec )
  345. __field( bool, coalesced )
  346. ),
  347. TP_fast_assign(
  348. __entry->apicid = apicid;
  349. __entry->dm = dm;
  350. __entry->tm = tm;
  351. __entry->vec = vec;
  352. __entry->coalesced = coalesced;
  353. ),
  354. TP_printk("apicid %x vec %u (%s|%s)%s",
  355. __entry->apicid, __entry->vec,
  356. __print_symbolic((__entry->dm >> 8 & 0x7), kvm_deliver_mode),
  357. __entry->tm ? "level" : "edge",
  358. __entry->coalesced ? " (coalesced)" : "")
  359. );
  360. TRACE_EVENT(kvm_eoi,
  361. TP_PROTO(struct kvm_lapic *apic, int vector),
  362. TP_ARGS(apic, vector),
  363. TP_STRUCT__entry(
  364. __field( __u32, apicid )
  365. __field( int, vector )
  366. ),
  367. TP_fast_assign(
  368. __entry->apicid = apic->vcpu->vcpu_id;
  369. __entry->vector = vector;
  370. ),
  371. TP_printk("apicid %x vector %d", __entry->apicid, __entry->vector)
  372. );
  373. TRACE_EVENT(kvm_pv_eoi,
  374. TP_PROTO(struct kvm_lapic *apic, int vector),
  375. TP_ARGS(apic, vector),
  376. TP_STRUCT__entry(
  377. __field( __u32, apicid )
  378. __field( int, vector )
  379. ),
  380. TP_fast_assign(
  381. __entry->apicid = apic->vcpu->vcpu_id;
  382. __entry->vector = vector;
  383. ),
  384. TP_printk("apicid %x vector %d", __entry->apicid, __entry->vector)
  385. );
  386. /*
  387. * Tracepoint for nested VMRUN
  388. */
  389. TRACE_EVENT(kvm_nested_vmrun,
  390. TP_PROTO(__u64 rip, __u64 vmcb, __u64 nested_rip, __u32 int_ctl,
  391. __u32 event_inj, bool npt),
  392. TP_ARGS(rip, vmcb, nested_rip, int_ctl, event_inj, npt),
  393. TP_STRUCT__entry(
  394. __field( __u64, rip )
  395. __field( __u64, vmcb )
  396. __field( __u64, nested_rip )
  397. __field( __u32, int_ctl )
  398. __field( __u32, event_inj )
  399. __field( bool, npt )
  400. ),
  401. TP_fast_assign(
  402. __entry->rip = rip;
  403. __entry->vmcb = vmcb;
  404. __entry->nested_rip = nested_rip;
  405. __entry->int_ctl = int_ctl;
  406. __entry->event_inj = event_inj;
  407. __entry->npt = npt;
  408. ),
  409. TP_printk("rip: 0x%016llx vmcb: 0x%016llx nrip: 0x%016llx int_ctl: 0x%08x "
  410. "event_inj: 0x%08x npt: %s",
  411. __entry->rip, __entry->vmcb, __entry->nested_rip,
  412. __entry->int_ctl, __entry->event_inj,
  413. __entry->npt ? "on" : "off")
  414. );
  415. TRACE_EVENT(kvm_nested_intercepts,
  416. TP_PROTO(__u16 cr_read, __u16 cr_write, __u32 exceptions, __u64 intercept),
  417. TP_ARGS(cr_read, cr_write, exceptions, intercept),
  418. TP_STRUCT__entry(
  419. __field( __u16, cr_read )
  420. __field( __u16, cr_write )
  421. __field( __u32, exceptions )
  422. __field( __u64, intercept )
  423. ),
  424. TP_fast_assign(
  425. __entry->cr_read = cr_read;
  426. __entry->cr_write = cr_write;
  427. __entry->exceptions = exceptions;
  428. __entry->intercept = intercept;
  429. ),
  430. TP_printk("cr_read: %04x cr_write: %04x excp: %08x intercept: %016llx",
  431. __entry->cr_read, __entry->cr_write, __entry->exceptions,
  432. __entry->intercept)
  433. );
  434. /*
  435. * Tracepoint for #VMEXIT while nested
  436. */
  437. TRACE_EVENT(kvm_nested_vmexit,
  438. TP_PROTO(__u64 rip, __u32 exit_code,
  439. __u64 exit_info1, __u64 exit_info2,
  440. __u32 exit_int_info, __u32 exit_int_info_err, __u32 isa),
  441. TP_ARGS(rip, exit_code, exit_info1, exit_info2,
  442. exit_int_info, exit_int_info_err, isa),
  443. TP_STRUCT__entry(
  444. __field( __u64, rip )
  445. __field( __u32, exit_code )
  446. __field( __u64, exit_info1 )
  447. __field( __u64, exit_info2 )
  448. __field( __u32, exit_int_info )
  449. __field( __u32, exit_int_info_err )
  450. __field( __u32, isa )
  451. ),
  452. TP_fast_assign(
  453. __entry->rip = rip;
  454. __entry->exit_code = exit_code;
  455. __entry->exit_info1 = exit_info1;
  456. __entry->exit_info2 = exit_info2;
  457. __entry->exit_int_info = exit_int_info;
  458. __entry->exit_int_info_err = exit_int_info_err;
  459. __entry->isa = isa;
  460. ),
  461. TP_printk("rip: 0x%016llx reason: %s ext_inf1: 0x%016llx "
  462. "ext_inf2: 0x%016llx ext_int: 0x%08x ext_int_err: 0x%08x",
  463. __entry->rip,
  464. (__entry->isa == KVM_ISA_VMX) ?
  465. __print_symbolic(__entry->exit_code, VMX_EXIT_REASONS) :
  466. __print_symbolic(__entry->exit_code, SVM_EXIT_REASONS),
  467. __entry->exit_info1, __entry->exit_info2,
  468. __entry->exit_int_info, __entry->exit_int_info_err)
  469. );
  470. /*
  471. * Tracepoint for #VMEXIT reinjected to the guest
  472. */
  473. TRACE_EVENT(kvm_nested_vmexit_inject,
  474. TP_PROTO(__u32 exit_code,
  475. __u64 exit_info1, __u64 exit_info2,
  476. __u32 exit_int_info, __u32 exit_int_info_err, __u32 isa),
  477. TP_ARGS(exit_code, exit_info1, exit_info2,
  478. exit_int_info, exit_int_info_err, isa),
  479. TP_STRUCT__entry(
  480. __field( __u32, exit_code )
  481. __field( __u64, exit_info1 )
  482. __field( __u64, exit_info2 )
  483. __field( __u32, exit_int_info )
  484. __field( __u32, exit_int_info_err )
  485. __field( __u32, isa )
  486. ),
  487. TP_fast_assign(
  488. __entry->exit_code = exit_code;
  489. __entry->exit_info1 = exit_info1;
  490. __entry->exit_info2 = exit_info2;
  491. __entry->exit_int_info = exit_int_info;
  492. __entry->exit_int_info_err = exit_int_info_err;
  493. __entry->isa = isa;
  494. ),
  495. TP_printk("reason: %s ext_inf1: 0x%016llx "
  496. "ext_inf2: 0x%016llx ext_int: 0x%08x ext_int_err: 0x%08x",
  497. (__entry->isa == KVM_ISA_VMX) ?
  498. __print_symbolic(__entry->exit_code, VMX_EXIT_REASONS) :
  499. __print_symbolic(__entry->exit_code, SVM_EXIT_REASONS),
  500. __entry->exit_info1, __entry->exit_info2,
  501. __entry->exit_int_info, __entry->exit_int_info_err)
  502. );
  503. /*
  504. * Tracepoint for nested #vmexit because of interrupt pending
  505. */
  506. TRACE_EVENT(kvm_nested_intr_vmexit,
  507. TP_PROTO(__u64 rip),
  508. TP_ARGS(rip),
  509. TP_STRUCT__entry(
  510. __field( __u64, rip )
  511. ),
  512. TP_fast_assign(
  513. __entry->rip = rip
  514. ),
  515. TP_printk("rip: 0x%016llx", __entry->rip)
  516. );
  517. /*
  518. * Tracepoint for nested #vmexit because of interrupt pending
  519. */
  520. TRACE_EVENT(kvm_invlpga,
  521. TP_PROTO(__u64 rip, int asid, u64 address),
  522. TP_ARGS(rip, asid, address),
  523. TP_STRUCT__entry(
  524. __field( __u64, rip )
  525. __field( int, asid )
  526. __field( __u64, address )
  527. ),
  528. TP_fast_assign(
  529. __entry->rip = rip;
  530. __entry->asid = asid;
  531. __entry->address = address;
  532. ),
  533. TP_printk("rip: 0x%016llx asid: %d address: 0x%016llx",
  534. __entry->rip, __entry->asid, __entry->address)
  535. );
  536. /*
  537. * Tracepoint for nested #vmexit because of interrupt pending
  538. */
  539. TRACE_EVENT(kvm_skinit,
  540. TP_PROTO(__u64 rip, __u32 slb),
  541. TP_ARGS(rip, slb),
  542. TP_STRUCT__entry(
  543. __field( __u64, rip )
  544. __field( __u32, slb )
  545. ),
  546. TP_fast_assign(
  547. __entry->rip = rip;
  548. __entry->slb = slb;
  549. ),
  550. TP_printk("rip: 0x%016llx slb: 0x%08x",
  551. __entry->rip, __entry->slb)
  552. );
  553. #define KVM_EMUL_INSN_F_CR0_PE (1 << 0)
  554. #define KVM_EMUL_INSN_F_EFL_VM (1 << 1)
  555. #define KVM_EMUL_INSN_F_CS_D (1 << 2)
  556. #define KVM_EMUL_INSN_F_CS_L (1 << 3)
  557. #define kvm_trace_symbol_emul_flags \
  558. { 0, "real" }, \
  559. { KVM_EMUL_INSN_F_CR0_PE \
  560. | KVM_EMUL_INSN_F_EFL_VM, "vm16" }, \
  561. { KVM_EMUL_INSN_F_CR0_PE, "prot16" }, \
  562. { KVM_EMUL_INSN_F_CR0_PE \
  563. | KVM_EMUL_INSN_F_CS_D, "prot32" }, \
  564. { KVM_EMUL_INSN_F_CR0_PE \
  565. | KVM_EMUL_INSN_F_CS_L, "prot64" }
  566. #define kei_decode_mode(mode) ({ \
  567. u8 flags = 0xff; \
  568. switch (mode) { \
  569. case X86EMUL_MODE_REAL: \
  570. flags = 0; \
  571. break; \
  572. case X86EMUL_MODE_VM86: \
  573. flags = KVM_EMUL_INSN_F_EFL_VM; \
  574. break; \
  575. case X86EMUL_MODE_PROT16: \
  576. flags = KVM_EMUL_INSN_F_CR0_PE; \
  577. break; \
  578. case X86EMUL_MODE_PROT32: \
  579. flags = KVM_EMUL_INSN_F_CR0_PE \
  580. | KVM_EMUL_INSN_F_CS_D; \
  581. break; \
  582. case X86EMUL_MODE_PROT64: \
  583. flags = KVM_EMUL_INSN_F_CR0_PE \
  584. | KVM_EMUL_INSN_F_CS_L; \
  585. break; \
  586. } \
  587. flags; \
  588. })
  589. TRACE_EVENT(kvm_emulate_insn,
  590. TP_PROTO(struct kvm_vcpu *vcpu, __u8 failed),
  591. TP_ARGS(vcpu, failed),
  592. TP_STRUCT__entry(
  593. __field( __u64, rip )
  594. __field( __u32, csbase )
  595. __field( __u8, len )
  596. __array( __u8, insn, 15 )
  597. __field( __u8, flags )
  598. __field( __u8, failed )
  599. ),
  600. TP_fast_assign(
  601. __entry->rip = vcpu->arch.emulate_ctxt.fetch.start;
  602. __entry->csbase = kvm_x86_ops->get_segment_base(vcpu, VCPU_SREG_CS);
  603. __entry->len = vcpu->arch.emulate_ctxt._eip
  604. - vcpu->arch.emulate_ctxt.fetch.start;
  605. memcpy(__entry->insn,
  606. vcpu->arch.emulate_ctxt.fetch.data,
  607. 15);
  608. __entry->flags = kei_decode_mode(vcpu->arch.emulate_ctxt.mode);
  609. __entry->failed = failed;
  610. ),
  611. TP_printk("%x:%llx:%s (%s)%s",
  612. __entry->csbase, __entry->rip,
  613. __print_hex(__entry->insn, __entry->len),
  614. __print_symbolic(__entry->flags,
  615. kvm_trace_symbol_emul_flags),
  616. __entry->failed ? " failed" : ""
  617. )
  618. );
  619. #define trace_kvm_emulate_insn_start(vcpu) trace_kvm_emulate_insn(vcpu, 0)
  620. #define trace_kvm_emulate_insn_failed(vcpu) trace_kvm_emulate_insn(vcpu, 1)
  621. TRACE_EVENT(
  622. vcpu_match_mmio,
  623. TP_PROTO(gva_t gva, gpa_t gpa, bool write, bool gpa_match),
  624. TP_ARGS(gva, gpa, write, gpa_match),
  625. TP_STRUCT__entry(
  626. __field(gva_t, gva)
  627. __field(gpa_t, gpa)
  628. __field(bool, write)
  629. __field(bool, gpa_match)
  630. ),
  631. TP_fast_assign(
  632. __entry->gva = gva;
  633. __entry->gpa = gpa;
  634. __entry->write = write;
  635. __entry->gpa_match = gpa_match
  636. ),
  637. TP_printk("gva %#lx gpa %#llx %s %s", __entry->gva, __entry->gpa,
  638. __entry->write ? "Write" : "Read",
  639. __entry->gpa_match ? "GPA" : "GVA")
  640. );
  641. #endif /* _TRACE_KVM_H */
  642. #undef TRACE_INCLUDE_PATH
  643. #define TRACE_INCLUDE_PATH arch/x86/kvm
  644. #undef TRACE_INCLUDE_FILE
  645. #define TRACE_INCLUDE_FILE trace
  646. /* This part must be outside protection */
  647. #include <trace/define_trace.h>