trace.h 44 KB

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  1. /* SPDX-License-Identifier: GPL-2.0 */
  2. #if !defined(_TRACE_KVM_H) || defined(TRACE_HEADER_MULTI_READ)
  3. #define _TRACE_KVM_H
  4. #include <linux/tracepoint.h>
  5. #include <asm/vmx.h>
  6. #include <asm/svm.h>
  7. #include <asm/clocksource.h>
  8. #include <asm/pvclock-abi.h>
  9. #undef TRACE_SYSTEM
  10. #define TRACE_SYSTEM kvm
  11. /*
  12. * Tracepoint for guest mode entry.
  13. */
  14. TRACE_EVENT(kvm_entry,
  15. TP_PROTO(struct kvm_vcpu *vcpu),
  16. TP_ARGS(vcpu),
  17. TP_STRUCT__entry(
  18. __field( unsigned int, vcpu_id )
  19. __field( unsigned long, rip )
  20. ),
  21. TP_fast_assign(
  22. __entry->vcpu_id = vcpu->vcpu_id;
  23. __entry->rip = kvm_rip_read(vcpu);
  24. ),
  25. TP_printk("vcpu %u, rip 0x%lx", __entry->vcpu_id, __entry->rip)
  26. );
  27. /*
  28. * Tracepoint for hypercall.
  29. */
  30. TRACE_EVENT(kvm_hypercall,
  31. TP_PROTO(unsigned long nr, unsigned long a0, unsigned long a1,
  32. unsigned long a2, unsigned long a3),
  33. TP_ARGS(nr, a0, a1, a2, a3),
  34. TP_STRUCT__entry(
  35. __field( unsigned long, nr )
  36. __field( unsigned long, a0 )
  37. __field( unsigned long, a1 )
  38. __field( unsigned long, a2 )
  39. __field( unsigned long, a3 )
  40. ),
  41. TP_fast_assign(
  42. __entry->nr = nr;
  43. __entry->a0 = a0;
  44. __entry->a1 = a1;
  45. __entry->a2 = a2;
  46. __entry->a3 = a3;
  47. ),
  48. TP_printk("nr 0x%lx a0 0x%lx a1 0x%lx a2 0x%lx a3 0x%lx",
  49. __entry->nr, __entry->a0, __entry->a1, __entry->a2,
  50. __entry->a3)
  51. );
  52. /*
  53. * Tracepoint for hypercall.
  54. */
  55. TRACE_EVENT(kvm_hv_hypercall,
  56. TP_PROTO(__u16 code, bool fast, __u16 var_cnt, __u16 rep_cnt,
  57. __u16 rep_idx, __u64 ingpa, __u64 outgpa),
  58. TP_ARGS(code, fast, var_cnt, rep_cnt, rep_idx, ingpa, outgpa),
  59. TP_STRUCT__entry(
  60. __field( __u16, rep_cnt )
  61. __field( __u16, rep_idx )
  62. __field( __u64, ingpa )
  63. __field( __u64, outgpa )
  64. __field( __u16, code )
  65. __field( __u16, var_cnt )
  66. __field( bool, fast )
  67. ),
  68. TP_fast_assign(
  69. __entry->rep_cnt = rep_cnt;
  70. __entry->rep_idx = rep_idx;
  71. __entry->ingpa = ingpa;
  72. __entry->outgpa = outgpa;
  73. __entry->code = code;
  74. __entry->var_cnt = var_cnt;
  75. __entry->fast = fast;
  76. ),
  77. TP_printk("code 0x%x %s var_cnt 0x%x rep_cnt 0x%x idx 0x%x in 0x%llx out 0x%llx",
  78. __entry->code, __entry->fast ? "fast" : "slow",
  79. __entry->var_cnt, __entry->rep_cnt, __entry->rep_idx,
  80. __entry->ingpa, __entry->outgpa)
  81. );
  82. TRACE_EVENT(kvm_hv_hypercall_done,
  83. TP_PROTO(u64 result),
  84. TP_ARGS(result),
  85. TP_STRUCT__entry(
  86. __field(__u64, result)
  87. ),
  88. TP_fast_assign(
  89. __entry->result = result;
  90. ),
  91. TP_printk("result 0x%llx", __entry->result)
  92. );
  93. /*
  94. * Tracepoint for Xen hypercall.
  95. */
  96. TRACE_EVENT(kvm_xen_hypercall,
  97. TP_PROTO(unsigned long nr, unsigned long a0, unsigned long a1,
  98. unsigned long a2, unsigned long a3, unsigned long a4,
  99. unsigned long a5),
  100. TP_ARGS(nr, a0, a1, a2, a3, a4, a5),
  101. TP_STRUCT__entry(
  102. __field(unsigned long, nr)
  103. __field(unsigned long, a0)
  104. __field(unsigned long, a1)
  105. __field(unsigned long, a2)
  106. __field(unsigned long, a3)
  107. __field(unsigned long, a4)
  108. __field(unsigned long, a5)
  109. ),
  110. TP_fast_assign(
  111. __entry->nr = nr;
  112. __entry->a0 = a0;
  113. __entry->a1 = a1;
  114. __entry->a2 = a2;
  115. __entry->a3 = a3;
  116. __entry->a4 = a4;
  117. __entry->a4 = a5;
  118. ),
  119. TP_printk("nr 0x%lx a0 0x%lx a1 0x%lx a2 0x%lx a3 0x%lx a4 0x%lx a5 %lx",
  120. __entry->nr, __entry->a0, __entry->a1, __entry->a2,
  121. __entry->a3, __entry->a4, __entry->a5)
  122. );
  123. /*
  124. * Tracepoint for PIO.
  125. */
  126. #define KVM_PIO_IN 0
  127. #define KVM_PIO_OUT 1
  128. TRACE_EVENT(kvm_pio,
  129. TP_PROTO(unsigned int rw, unsigned int port, unsigned int size,
  130. unsigned int count, const void *data),
  131. TP_ARGS(rw, port, size, count, data),
  132. TP_STRUCT__entry(
  133. __field( unsigned int, rw )
  134. __field( unsigned int, port )
  135. __field( unsigned int, size )
  136. __field( unsigned int, count )
  137. __field( unsigned int, val )
  138. ),
  139. TP_fast_assign(
  140. __entry->rw = rw;
  141. __entry->port = port;
  142. __entry->size = size;
  143. __entry->count = count;
  144. if (size == 1)
  145. __entry->val = *(unsigned char *)data;
  146. else if (size == 2)
  147. __entry->val = *(unsigned short *)data;
  148. else
  149. __entry->val = *(unsigned int *)data;
  150. ),
  151. TP_printk("pio_%s at 0x%x size %d count %d val 0x%x %s",
  152. __entry->rw ? "write" : "read",
  153. __entry->port, __entry->size, __entry->count, __entry->val,
  154. __entry->count > 1 ? "(...)" : "")
  155. );
  156. /*
  157. * Tracepoint for fast mmio.
  158. */
  159. TRACE_EVENT(kvm_fast_mmio,
  160. TP_PROTO(u64 gpa),
  161. TP_ARGS(gpa),
  162. TP_STRUCT__entry(
  163. __field(u64, gpa)
  164. ),
  165. TP_fast_assign(
  166. __entry->gpa = gpa;
  167. ),
  168. TP_printk("fast mmio at gpa 0x%llx", __entry->gpa)
  169. );
  170. /*
  171. * Tracepoint for cpuid.
  172. */
  173. TRACE_EVENT(kvm_cpuid,
  174. TP_PROTO(unsigned int function, unsigned int index, unsigned long rax,
  175. unsigned long rbx, unsigned long rcx, unsigned long rdx,
  176. bool found, bool used_max_basic),
  177. TP_ARGS(function, index, rax, rbx, rcx, rdx, found, used_max_basic),
  178. TP_STRUCT__entry(
  179. __field( unsigned int, function )
  180. __field( unsigned int, index )
  181. __field( unsigned long, rax )
  182. __field( unsigned long, rbx )
  183. __field( unsigned long, rcx )
  184. __field( unsigned long, rdx )
  185. __field( bool, found )
  186. __field( bool, used_max_basic )
  187. ),
  188. TP_fast_assign(
  189. __entry->function = function;
  190. __entry->index = index;
  191. __entry->rax = rax;
  192. __entry->rbx = rbx;
  193. __entry->rcx = rcx;
  194. __entry->rdx = rdx;
  195. __entry->found = found;
  196. __entry->used_max_basic = used_max_basic;
  197. ),
  198. TP_printk("func %x idx %x rax %lx rbx %lx rcx %lx rdx %lx, cpuid entry %s%s",
  199. __entry->function, __entry->index, __entry->rax,
  200. __entry->rbx, __entry->rcx, __entry->rdx,
  201. __entry->found ? "found" : "not found",
  202. __entry->used_max_basic ? ", used max basic" : "")
  203. );
  204. #define AREG(x) { APIC_##x, "APIC_" #x }
  205. #define kvm_trace_symbol_apic \
  206. AREG(ID), AREG(LVR), AREG(TASKPRI), AREG(ARBPRI), AREG(PROCPRI), \
  207. AREG(EOI), AREG(RRR), AREG(LDR), AREG(DFR), AREG(SPIV), AREG(ISR), \
  208. AREG(TMR), AREG(IRR), AREG(ESR), AREG(ICR), AREG(ICR2), AREG(LVTT), \
  209. AREG(LVTTHMR), AREG(LVTPC), AREG(LVT0), AREG(LVT1), AREG(LVTERR), \
  210. AREG(TMICT), AREG(TMCCT), AREG(TDCR), AREG(SELF_IPI), AREG(EFEAT), \
  211. AREG(ECTRL)
  212. /*
  213. * Tracepoint for apic access.
  214. */
  215. TRACE_EVENT(kvm_apic,
  216. TP_PROTO(unsigned int rw, unsigned int reg, u64 val),
  217. TP_ARGS(rw, reg, val),
  218. TP_STRUCT__entry(
  219. __field( unsigned int, rw )
  220. __field( unsigned int, reg )
  221. __field( u64, val )
  222. ),
  223. TP_fast_assign(
  224. __entry->rw = rw;
  225. __entry->reg = reg;
  226. __entry->val = val;
  227. ),
  228. TP_printk("apic_%s %s = 0x%llx",
  229. __entry->rw ? "write" : "read",
  230. __print_symbolic(__entry->reg, kvm_trace_symbol_apic),
  231. __entry->val)
  232. );
  233. #define trace_kvm_apic_read(reg, val) trace_kvm_apic(0, reg, val)
  234. #define trace_kvm_apic_write(reg, val) trace_kvm_apic(1, reg, val)
  235. #define KVM_ISA_VMX 1
  236. #define KVM_ISA_SVM 2
  237. #define kvm_print_exit_reason(exit_reason, isa) \
  238. (isa == KVM_ISA_VMX) ? \
  239. __print_symbolic(exit_reason & 0xffff, VMX_EXIT_REASONS) : \
  240. __print_symbolic(exit_reason, SVM_EXIT_REASONS), \
  241. (isa == KVM_ISA_VMX && exit_reason & ~0xffff) ? " " : "", \
  242. (isa == KVM_ISA_VMX) ? \
  243. __print_flags(exit_reason & ~0xffff, " ", VMX_EXIT_REASON_FLAGS) : ""
  244. #define TRACE_EVENT_KVM_EXIT(name) \
  245. TRACE_EVENT(name, \
  246. TP_PROTO(struct kvm_vcpu *vcpu, u32 isa), \
  247. TP_ARGS(vcpu, isa), \
  248. \
  249. TP_STRUCT__entry( \
  250. __field( unsigned int, exit_reason ) \
  251. __field( unsigned long, guest_rip ) \
  252. __field( u32, isa ) \
  253. __field( u64, info1 ) \
  254. __field( u64, info2 ) \
  255. __field( u32, intr_info ) \
  256. __field( u32, error_code ) \
  257. __field( unsigned int, vcpu_id ) \
  258. ), \
  259. \
  260. TP_fast_assign( \
  261. __entry->guest_rip = kvm_rip_read(vcpu); \
  262. __entry->isa = isa; \
  263. __entry->vcpu_id = vcpu->vcpu_id; \
  264. static_call(kvm_x86_get_exit_info)(vcpu, \
  265. &__entry->exit_reason, \
  266. &__entry->info1, \
  267. &__entry->info2, \
  268. &__entry->intr_info, \
  269. &__entry->error_code); \
  270. ), \
  271. \
  272. TP_printk("vcpu %u reason %s%s%s rip 0x%lx info1 0x%016llx " \
  273. "info2 0x%016llx intr_info 0x%08x error_code 0x%08x", \
  274. __entry->vcpu_id, \
  275. kvm_print_exit_reason(__entry->exit_reason, __entry->isa), \
  276. __entry->guest_rip, __entry->info1, __entry->info2, \
  277. __entry->intr_info, __entry->error_code) \
  278. )
  279. /*
  280. * Tracepoint for kvm guest exit:
  281. */
  282. TRACE_EVENT_KVM_EXIT(kvm_exit);
  283. /*
  284. * Tracepoint for kvm interrupt injection:
  285. */
  286. TRACE_EVENT(kvm_inj_virq,
  287. TP_PROTO(unsigned int vector, bool soft, bool reinjected),
  288. TP_ARGS(vector, soft, reinjected),
  289. TP_STRUCT__entry(
  290. __field( unsigned int, vector )
  291. __field( bool, soft )
  292. __field( bool, reinjected )
  293. ),
  294. TP_fast_assign(
  295. __entry->vector = vector;
  296. __entry->soft = soft;
  297. __entry->reinjected = reinjected;
  298. ),
  299. TP_printk("%s 0x%x%s",
  300. __entry->soft ? "Soft/INTn" : "IRQ", __entry->vector,
  301. __entry->reinjected ? " [reinjected]" : "")
  302. );
  303. #define EXS(x) { x##_VECTOR, "#" #x }
  304. #define kvm_trace_sym_exc \
  305. EXS(DE), EXS(DB), EXS(BP), EXS(OF), EXS(BR), EXS(UD), EXS(NM), \
  306. EXS(DF), EXS(TS), EXS(NP), EXS(SS), EXS(GP), EXS(PF), \
  307. EXS(MF), EXS(AC), EXS(MC)
  308. /*
  309. * Tracepoint for kvm interrupt injection:
  310. */
  311. TRACE_EVENT(kvm_inj_exception,
  312. TP_PROTO(unsigned exception, bool has_error, unsigned error_code,
  313. bool reinjected),
  314. TP_ARGS(exception, has_error, error_code, reinjected),
  315. TP_STRUCT__entry(
  316. __field( u8, exception )
  317. __field( u8, has_error )
  318. __field( u32, error_code )
  319. __field( bool, reinjected )
  320. ),
  321. TP_fast_assign(
  322. __entry->exception = exception;
  323. __entry->has_error = has_error;
  324. __entry->error_code = error_code;
  325. __entry->reinjected = reinjected;
  326. ),
  327. TP_printk("%s%s%s%s%s",
  328. __print_symbolic(__entry->exception, kvm_trace_sym_exc),
  329. !__entry->has_error ? "" : " (",
  330. !__entry->has_error ? "" : __print_symbolic(__entry->error_code, { }),
  331. !__entry->has_error ? "" : ")",
  332. __entry->reinjected ? " [reinjected]" : "")
  333. );
  334. /*
  335. * Tracepoint for page fault.
  336. */
  337. TRACE_EVENT(kvm_page_fault,
  338. TP_PROTO(struct kvm_vcpu *vcpu, u64 fault_address, u64 error_code),
  339. TP_ARGS(vcpu, fault_address, error_code),
  340. TP_STRUCT__entry(
  341. __field( unsigned int, vcpu_id )
  342. __field( unsigned long, guest_rip )
  343. __field( u64, fault_address )
  344. __field( u64, error_code )
  345. ),
  346. TP_fast_assign(
  347. __entry->vcpu_id = vcpu->vcpu_id;
  348. __entry->guest_rip = kvm_rip_read(vcpu);
  349. __entry->fault_address = fault_address;
  350. __entry->error_code = error_code;
  351. ),
  352. TP_printk("vcpu %u rip 0x%lx address 0x%016llx error_code 0x%llx",
  353. __entry->vcpu_id, __entry->guest_rip,
  354. __entry->fault_address, __entry->error_code)
  355. );
  356. /*
  357. * Tracepoint for guest MSR access.
  358. */
  359. TRACE_EVENT(kvm_msr,
  360. TP_PROTO(unsigned write, u32 ecx, u64 data, bool exception),
  361. TP_ARGS(write, ecx, data, exception),
  362. TP_STRUCT__entry(
  363. __field( unsigned, write )
  364. __field( u32, ecx )
  365. __field( u64, data )
  366. __field( u8, exception )
  367. ),
  368. TP_fast_assign(
  369. __entry->write = write;
  370. __entry->ecx = ecx;
  371. __entry->data = data;
  372. __entry->exception = exception;
  373. ),
  374. TP_printk("msr_%s %x = 0x%llx%s",
  375. __entry->write ? "write" : "read",
  376. __entry->ecx, __entry->data,
  377. __entry->exception ? " (#GP)" : "")
  378. );
  379. #define trace_kvm_msr_read(ecx, data) trace_kvm_msr(0, ecx, data, false)
  380. #define trace_kvm_msr_write(ecx, data) trace_kvm_msr(1, ecx, data, false)
  381. #define trace_kvm_msr_read_ex(ecx) trace_kvm_msr(0, ecx, 0, true)
  382. #define trace_kvm_msr_write_ex(ecx, data) trace_kvm_msr(1, ecx, data, true)
  383. /*
  384. * Tracepoint for guest CR access.
  385. */
  386. TRACE_EVENT(kvm_cr,
  387. TP_PROTO(unsigned int rw, unsigned int cr, unsigned long val),
  388. TP_ARGS(rw, cr, val),
  389. TP_STRUCT__entry(
  390. __field( unsigned int, rw )
  391. __field( unsigned int, cr )
  392. __field( unsigned long, val )
  393. ),
  394. TP_fast_assign(
  395. __entry->rw = rw;
  396. __entry->cr = cr;
  397. __entry->val = val;
  398. ),
  399. TP_printk("cr_%s %x = 0x%lx",
  400. __entry->rw ? "write" : "read",
  401. __entry->cr, __entry->val)
  402. );
  403. #define trace_kvm_cr_read(cr, val) trace_kvm_cr(0, cr, val)
  404. #define trace_kvm_cr_write(cr, val) trace_kvm_cr(1, cr, val)
  405. TRACE_EVENT(kvm_pic_set_irq,
  406. TP_PROTO(__u8 chip, __u8 pin, __u8 elcr, __u8 imr, bool coalesced),
  407. TP_ARGS(chip, pin, elcr, imr, coalesced),
  408. TP_STRUCT__entry(
  409. __field( __u8, chip )
  410. __field( __u8, pin )
  411. __field( __u8, elcr )
  412. __field( __u8, imr )
  413. __field( bool, coalesced )
  414. ),
  415. TP_fast_assign(
  416. __entry->chip = chip;
  417. __entry->pin = pin;
  418. __entry->elcr = elcr;
  419. __entry->imr = imr;
  420. __entry->coalesced = coalesced;
  421. ),
  422. TP_printk("chip %u pin %u (%s%s)%s",
  423. __entry->chip, __entry->pin,
  424. (__entry->elcr & (1 << __entry->pin)) ? "level":"edge",
  425. (__entry->imr & (1 << __entry->pin)) ? "|masked":"",
  426. __entry->coalesced ? " (coalesced)" : "")
  427. );
  428. #define kvm_apic_dst_shorthand \
  429. {0x0, "dst"}, \
  430. {0x1, "self"}, \
  431. {0x2, "all"}, \
  432. {0x3, "all-but-self"}
  433. TRACE_EVENT(kvm_apic_ipi,
  434. TP_PROTO(__u32 icr_low, __u32 dest_id),
  435. TP_ARGS(icr_low, dest_id),
  436. TP_STRUCT__entry(
  437. __field( __u32, icr_low )
  438. __field( __u32, dest_id )
  439. ),
  440. TP_fast_assign(
  441. __entry->icr_low = icr_low;
  442. __entry->dest_id = dest_id;
  443. ),
  444. TP_printk("dst %x vec %u (%s|%s|%s|%s|%s)",
  445. __entry->dest_id, (u8)__entry->icr_low,
  446. __print_symbolic((__entry->icr_low >> 8 & 0x7),
  447. kvm_deliver_mode),
  448. (__entry->icr_low & (1<<11)) ? "logical" : "physical",
  449. (__entry->icr_low & (1<<14)) ? "assert" : "de-assert",
  450. (__entry->icr_low & (1<<15)) ? "level" : "edge",
  451. __print_symbolic((__entry->icr_low >> 18 & 0x3),
  452. kvm_apic_dst_shorthand))
  453. );
  454. TRACE_EVENT(kvm_apic_accept_irq,
  455. TP_PROTO(__u32 apicid, __u16 dm, __u16 tm, __u8 vec),
  456. TP_ARGS(apicid, dm, tm, vec),
  457. TP_STRUCT__entry(
  458. __field( __u32, apicid )
  459. __field( __u16, dm )
  460. __field( __u16, tm )
  461. __field( __u8, vec )
  462. ),
  463. TP_fast_assign(
  464. __entry->apicid = apicid;
  465. __entry->dm = dm;
  466. __entry->tm = tm;
  467. __entry->vec = vec;
  468. ),
  469. TP_printk("apicid %x vec %u (%s|%s)",
  470. __entry->apicid, __entry->vec,
  471. __print_symbolic((__entry->dm >> 8 & 0x7), kvm_deliver_mode),
  472. __entry->tm ? "level" : "edge")
  473. );
  474. TRACE_EVENT(kvm_eoi,
  475. TP_PROTO(struct kvm_lapic *apic, int vector),
  476. TP_ARGS(apic, vector),
  477. TP_STRUCT__entry(
  478. __field( __u32, apicid )
  479. __field( int, vector )
  480. ),
  481. TP_fast_assign(
  482. __entry->apicid = apic->vcpu->vcpu_id;
  483. __entry->vector = vector;
  484. ),
  485. TP_printk("apicid %x vector %d", __entry->apicid, __entry->vector)
  486. );
  487. TRACE_EVENT(kvm_pv_eoi,
  488. TP_PROTO(struct kvm_lapic *apic, int vector),
  489. TP_ARGS(apic, vector),
  490. TP_STRUCT__entry(
  491. __field( __u32, apicid )
  492. __field( int, vector )
  493. ),
  494. TP_fast_assign(
  495. __entry->apicid = apic->vcpu->vcpu_id;
  496. __entry->vector = vector;
  497. ),
  498. TP_printk("apicid %x vector %d", __entry->apicid, __entry->vector)
  499. );
  500. /*
  501. * Tracepoint for nested VMRUN
  502. */
  503. TRACE_EVENT(kvm_nested_vmenter,
  504. TP_PROTO(__u64 rip, __u64 vmcb, __u64 nested_rip, __u32 int_ctl,
  505. __u32 event_inj, bool tdp_enabled, __u64 guest_tdp_pgd,
  506. __u64 guest_cr3, __u32 isa),
  507. TP_ARGS(rip, vmcb, nested_rip, int_ctl, event_inj, tdp_enabled,
  508. guest_tdp_pgd, guest_cr3, isa),
  509. TP_STRUCT__entry(
  510. __field( __u64, rip )
  511. __field( __u64, vmcb )
  512. __field( __u64, nested_rip )
  513. __field( __u32, int_ctl )
  514. __field( __u32, event_inj )
  515. __field( bool, tdp_enabled )
  516. __field( __u64, guest_pgd )
  517. __field( __u32, isa )
  518. ),
  519. TP_fast_assign(
  520. __entry->rip = rip;
  521. __entry->vmcb = vmcb;
  522. __entry->nested_rip = nested_rip;
  523. __entry->int_ctl = int_ctl;
  524. __entry->event_inj = event_inj;
  525. __entry->tdp_enabled = tdp_enabled;
  526. __entry->guest_pgd = tdp_enabled ? guest_tdp_pgd : guest_cr3;
  527. __entry->isa = isa;
  528. ),
  529. TP_printk("rip: 0x%016llx %s: 0x%016llx nested_rip: 0x%016llx "
  530. "int_ctl: 0x%08x event_inj: 0x%08x nested_%s=%s %s: 0x%016llx",
  531. __entry->rip,
  532. __entry->isa == KVM_ISA_VMX ? "vmcs" : "vmcb",
  533. __entry->vmcb,
  534. __entry->nested_rip,
  535. __entry->int_ctl,
  536. __entry->event_inj,
  537. __entry->isa == KVM_ISA_VMX ? "ept" : "npt",
  538. __entry->tdp_enabled ? "y" : "n",
  539. !__entry->tdp_enabled ? "guest_cr3" :
  540. __entry->isa == KVM_ISA_VMX ? "nested_eptp" : "nested_cr3",
  541. __entry->guest_pgd)
  542. );
  543. TRACE_EVENT(kvm_nested_intercepts,
  544. TP_PROTO(__u16 cr_read, __u16 cr_write, __u32 exceptions,
  545. __u32 intercept1, __u32 intercept2, __u32 intercept3),
  546. TP_ARGS(cr_read, cr_write, exceptions, intercept1,
  547. intercept2, intercept3),
  548. TP_STRUCT__entry(
  549. __field( __u16, cr_read )
  550. __field( __u16, cr_write )
  551. __field( __u32, exceptions )
  552. __field( __u32, intercept1 )
  553. __field( __u32, intercept2 )
  554. __field( __u32, intercept3 )
  555. ),
  556. TP_fast_assign(
  557. __entry->cr_read = cr_read;
  558. __entry->cr_write = cr_write;
  559. __entry->exceptions = exceptions;
  560. __entry->intercept1 = intercept1;
  561. __entry->intercept2 = intercept2;
  562. __entry->intercept3 = intercept3;
  563. ),
  564. TP_printk("cr_read: %04x cr_write: %04x excp: %08x "
  565. "intercepts: %08x %08x %08x",
  566. __entry->cr_read, __entry->cr_write, __entry->exceptions,
  567. __entry->intercept1, __entry->intercept2, __entry->intercept3)
  568. );
  569. /*
  570. * Tracepoint for #VMEXIT while nested
  571. */
  572. TRACE_EVENT_KVM_EXIT(kvm_nested_vmexit);
  573. /*
  574. * Tracepoint for #VMEXIT reinjected to the guest
  575. */
  576. TRACE_EVENT(kvm_nested_vmexit_inject,
  577. TP_PROTO(__u32 exit_code,
  578. __u64 exit_info1, __u64 exit_info2,
  579. __u32 exit_int_info, __u32 exit_int_info_err, __u32 isa),
  580. TP_ARGS(exit_code, exit_info1, exit_info2,
  581. exit_int_info, exit_int_info_err, isa),
  582. TP_STRUCT__entry(
  583. __field( __u32, exit_code )
  584. __field( __u64, exit_info1 )
  585. __field( __u64, exit_info2 )
  586. __field( __u32, exit_int_info )
  587. __field( __u32, exit_int_info_err )
  588. __field( __u32, isa )
  589. ),
  590. TP_fast_assign(
  591. __entry->exit_code = exit_code;
  592. __entry->exit_info1 = exit_info1;
  593. __entry->exit_info2 = exit_info2;
  594. __entry->exit_int_info = exit_int_info;
  595. __entry->exit_int_info_err = exit_int_info_err;
  596. __entry->isa = isa;
  597. ),
  598. TP_printk("reason: %s%s%s ext_inf1: 0x%016llx "
  599. "ext_inf2: 0x%016llx ext_int: 0x%08x ext_int_err: 0x%08x",
  600. kvm_print_exit_reason(__entry->exit_code, __entry->isa),
  601. __entry->exit_info1, __entry->exit_info2,
  602. __entry->exit_int_info, __entry->exit_int_info_err)
  603. );
  604. /*
  605. * Tracepoint for nested #vmexit because of interrupt pending
  606. */
  607. TRACE_EVENT(kvm_nested_intr_vmexit,
  608. TP_PROTO(__u64 rip),
  609. TP_ARGS(rip),
  610. TP_STRUCT__entry(
  611. __field( __u64, rip )
  612. ),
  613. TP_fast_assign(
  614. __entry->rip = rip
  615. ),
  616. TP_printk("rip: 0x%016llx", __entry->rip)
  617. );
  618. /*
  619. * Tracepoint for nested #vmexit because of interrupt pending
  620. */
  621. TRACE_EVENT(kvm_invlpga,
  622. TP_PROTO(__u64 rip, int asid, u64 address),
  623. TP_ARGS(rip, asid, address),
  624. TP_STRUCT__entry(
  625. __field( __u64, rip )
  626. __field( int, asid )
  627. __field( __u64, address )
  628. ),
  629. TP_fast_assign(
  630. __entry->rip = rip;
  631. __entry->asid = asid;
  632. __entry->address = address;
  633. ),
  634. TP_printk("rip: 0x%016llx asid: %d address: 0x%016llx",
  635. __entry->rip, __entry->asid, __entry->address)
  636. );
  637. /*
  638. * Tracepoint for nested #vmexit because of interrupt pending
  639. */
  640. TRACE_EVENT(kvm_skinit,
  641. TP_PROTO(__u64 rip, __u32 slb),
  642. TP_ARGS(rip, slb),
  643. TP_STRUCT__entry(
  644. __field( __u64, rip )
  645. __field( __u32, slb )
  646. ),
  647. TP_fast_assign(
  648. __entry->rip = rip;
  649. __entry->slb = slb;
  650. ),
  651. TP_printk("rip: 0x%016llx slb: 0x%08x",
  652. __entry->rip, __entry->slb)
  653. );
  654. #define KVM_EMUL_INSN_F_CR0_PE (1 << 0)
  655. #define KVM_EMUL_INSN_F_EFL_VM (1 << 1)
  656. #define KVM_EMUL_INSN_F_CS_D (1 << 2)
  657. #define KVM_EMUL_INSN_F_CS_L (1 << 3)
  658. #define kvm_trace_symbol_emul_flags \
  659. { 0, "real" }, \
  660. { KVM_EMUL_INSN_F_CR0_PE \
  661. | KVM_EMUL_INSN_F_EFL_VM, "vm16" }, \
  662. { KVM_EMUL_INSN_F_CR0_PE, "prot16" }, \
  663. { KVM_EMUL_INSN_F_CR0_PE \
  664. | KVM_EMUL_INSN_F_CS_D, "prot32" }, \
  665. { KVM_EMUL_INSN_F_CR0_PE \
  666. | KVM_EMUL_INSN_F_CS_L, "prot64" }
  667. #define kei_decode_mode(mode) ({ \
  668. u8 flags = 0xff; \
  669. switch (mode) { \
  670. case X86EMUL_MODE_REAL: \
  671. flags = 0; \
  672. break; \
  673. case X86EMUL_MODE_VM86: \
  674. flags = KVM_EMUL_INSN_F_EFL_VM; \
  675. break; \
  676. case X86EMUL_MODE_PROT16: \
  677. flags = KVM_EMUL_INSN_F_CR0_PE; \
  678. break; \
  679. case X86EMUL_MODE_PROT32: \
  680. flags = KVM_EMUL_INSN_F_CR0_PE \
  681. | KVM_EMUL_INSN_F_CS_D; \
  682. break; \
  683. case X86EMUL_MODE_PROT64: \
  684. flags = KVM_EMUL_INSN_F_CR0_PE \
  685. | KVM_EMUL_INSN_F_CS_L; \
  686. break; \
  687. } \
  688. flags; \
  689. })
  690. TRACE_EVENT(kvm_emulate_insn,
  691. TP_PROTO(struct kvm_vcpu *vcpu, __u8 failed),
  692. TP_ARGS(vcpu, failed),
  693. TP_STRUCT__entry(
  694. __field( __u64, rip )
  695. __field( __u32, csbase )
  696. __field( __u8, len )
  697. __array( __u8, insn, 15 )
  698. __field( __u8, flags )
  699. __field( __u8, failed )
  700. ),
  701. TP_fast_assign(
  702. __entry->csbase = static_call(kvm_x86_get_segment_base)(vcpu, VCPU_SREG_CS);
  703. __entry->len = vcpu->arch.emulate_ctxt->fetch.ptr
  704. - vcpu->arch.emulate_ctxt->fetch.data;
  705. __entry->rip = vcpu->arch.emulate_ctxt->_eip - __entry->len;
  706. memcpy(__entry->insn,
  707. vcpu->arch.emulate_ctxt->fetch.data,
  708. 15);
  709. __entry->flags = kei_decode_mode(vcpu->arch.emulate_ctxt->mode);
  710. __entry->failed = failed;
  711. ),
  712. TP_printk("%x:%llx:%s (%s)%s",
  713. __entry->csbase, __entry->rip,
  714. __print_hex(__entry->insn, __entry->len),
  715. __print_symbolic(__entry->flags,
  716. kvm_trace_symbol_emul_flags),
  717. __entry->failed ? " failed" : ""
  718. )
  719. );
  720. #define trace_kvm_emulate_insn_start(vcpu) trace_kvm_emulate_insn(vcpu, 0)
  721. #define trace_kvm_emulate_insn_failed(vcpu) trace_kvm_emulate_insn(vcpu, 1)
  722. TRACE_EVENT(
  723. vcpu_match_mmio,
  724. TP_PROTO(gva_t gva, gpa_t gpa, bool write, bool gpa_match),
  725. TP_ARGS(gva, gpa, write, gpa_match),
  726. TP_STRUCT__entry(
  727. __field(gva_t, gva)
  728. __field(gpa_t, gpa)
  729. __field(bool, write)
  730. __field(bool, gpa_match)
  731. ),
  732. TP_fast_assign(
  733. __entry->gva = gva;
  734. __entry->gpa = gpa;
  735. __entry->write = write;
  736. __entry->gpa_match = gpa_match
  737. ),
  738. TP_printk("gva %#lx gpa %#llx %s %s", __entry->gva, __entry->gpa,
  739. __entry->write ? "Write" : "Read",
  740. __entry->gpa_match ? "GPA" : "GVA")
  741. );
  742. TRACE_EVENT(kvm_write_tsc_offset,
  743. TP_PROTO(unsigned int vcpu_id, __u64 previous_tsc_offset,
  744. __u64 next_tsc_offset),
  745. TP_ARGS(vcpu_id, previous_tsc_offset, next_tsc_offset),
  746. TP_STRUCT__entry(
  747. __field( unsigned int, vcpu_id )
  748. __field( __u64, previous_tsc_offset )
  749. __field( __u64, next_tsc_offset )
  750. ),
  751. TP_fast_assign(
  752. __entry->vcpu_id = vcpu_id;
  753. __entry->previous_tsc_offset = previous_tsc_offset;
  754. __entry->next_tsc_offset = next_tsc_offset;
  755. ),
  756. TP_printk("vcpu=%u prev=%llu next=%llu", __entry->vcpu_id,
  757. __entry->previous_tsc_offset, __entry->next_tsc_offset)
  758. );
  759. #ifdef CONFIG_X86_64
  760. #define host_clocks \
  761. {VDSO_CLOCKMODE_NONE, "none"}, \
  762. {VDSO_CLOCKMODE_TSC, "tsc"} \
  763. TRACE_EVENT(kvm_update_master_clock,
  764. TP_PROTO(bool use_master_clock, unsigned int host_clock, bool offset_matched),
  765. TP_ARGS(use_master_clock, host_clock, offset_matched),
  766. TP_STRUCT__entry(
  767. __field( bool, use_master_clock )
  768. __field( unsigned int, host_clock )
  769. __field( bool, offset_matched )
  770. ),
  771. TP_fast_assign(
  772. __entry->use_master_clock = use_master_clock;
  773. __entry->host_clock = host_clock;
  774. __entry->offset_matched = offset_matched;
  775. ),
  776. TP_printk("masterclock %d hostclock %s offsetmatched %u",
  777. __entry->use_master_clock,
  778. __print_symbolic(__entry->host_clock, host_clocks),
  779. __entry->offset_matched)
  780. );
  781. TRACE_EVENT(kvm_track_tsc,
  782. TP_PROTO(unsigned int vcpu_id, unsigned int nr_matched,
  783. unsigned int online_vcpus, bool use_master_clock,
  784. unsigned int host_clock),
  785. TP_ARGS(vcpu_id, nr_matched, online_vcpus, use_master_clock,
  786. host_clock),
  787. TP_STRUCT__entry(
  788. __field( unsigned int, vcpu_id )
  789. __field( unsigned int, nr_vcpus_matched_tsc )
  790. __field( unsigned int, online_vcpus )
  791. __field( bool, use_master_clock )
  792. __field( unsigned int, host_clock )
  793. ),
  794. TP_fast_assign(
  795. __entry->vcpu_id = vcpu_id;
  796. __entry->nr_vcpus_matched_tsc = nr_matched;
  797. __entry->online_vcpus = online_vcpus;
  798. __entry->use_master_clock = use_master_clock;
  799. __entry->host_clock = host_clock;
  800. ),
  801. TP_printk("vcpu_id %u masterclock %u offsetmatched %u nr_online %u"
  802. " hostclock %s",
  803. __entry->vcpu_id, __entry->use_master_clock,
  804. __entry->nr_vcpus_matched_tsc, __entry->online_vcpus,
  805. __print_symbolic(__entry->host_clock, host_clocks))
  806. );
  807. #endif /* CONFIG_X86_64 */
  808. /*
  809. * Tracepoint for PML full VMEXIT.
  810. */
  811. TRACE_EVENT(kvm_pml_full,
  812. TP_PROTO(unsigned int vcpu_id),
  813. TP_ARGS(vcpu_id),
  814. TP_STRUCT__entry(
  815. __field( unsigned int, vcpu_id )
  816. ),
  817. TP_fast_assign(
  818. __entry->vcpu_id = vcpu_id;
  819. ),
  820. TP_printk("vcpu %d: PML full", __entry->vcpu_id)
  821. );
  822. TRACE_EVENT(kvm_ple_window_update,
  823. TP_PROTO(unsigned int vcpu_id, unsigned int new, unsigned int old),
  824. TP_ARGS(vcpu_id, new, old),
  825. TP_STRUCT__entry(
  826. __field( unsigned int, vcpu_id )
  827. __field( unsigned int, new )
  828. __field( unsigned int, old )
  829. ),
  830. TP_fast_assign(
  831. __entry->vcpu_id = vcpu_id;
  832. __entry->new = new;
  833. __entry->old = old;
  834. ),
  835. TP_printk("vcpu %u old %u new %u (%s)",
  836. __entry->vcpu_id, __entry->old, __entry->new,
  837. __entry->old < __entry->new ? "growed" : "shrinked")
  838. );
  839. TRACE_EVENT(kvm_pvclock_update,
  840. TP_PROTO(unsigned int vcpu_id, struct pvclock_vcpu_time_info *pvclock),
  841. TP_ARGS(vcpu_id, pvclock),
  842. TP_STRUCT__entry(
  843. __field( unsigned int, vcpu_id )
  844. __field( __u32, version )
  845. __field( __u64, tsc_timestamp )
  846. __field( __u64, system_time )
  847. __field( __u32, tsc_to_system_mul )
  848. __field( __s8, tsc_shift )
  849. __field( __u8, flags )
  850. ),
  851. TP_fast_assign(
  852. __entry->vcpu_id = vcpu_id;
  853. __entry->version = pvclock->version;
  854. __entry->tsc_timestamp = pvclock->tsc_timestamp;
  855. __entry->system_time = pvclock->system_time;
  856. __entry->tsc_to_system_mul = pvclock->tsc_to_system_mul;
  857. __entry->tsc_shift = pvclock->tsc_shift;
  858. __entry->flags = pvclock->flags;
  859. ),
  860. TP_printk("vcpu_id %u, pvclock { version %u, tsc_timestamp 0x%llx, "
  861. "system_time 0x%llx, tsc_to_system_mul 0x%x, tsc_shift %d, "
  862. "flags 0x%x }",
  863. __entry->vcpu_id,
  864. __entry->version,
  865. __entry->tsc_timestamp,
  866. __entry->system_time,
  867. __entry->tsc_to_system_mul,
  868. __entry->tsc_shift,
  869. __entry->flags)
  870. );
  871. TRACE_EVENT(kvm_wait_lapic_expire,
  872. TP_PROTO(unsigned int vcpu_id, s64 delta),
  873. TP_ARGS(vcpu_id, delta),
  874. TP_STRUCT__entry(
  875. __field( unsigned int, vcpu_id )
  876. __field( s64, delta )
  877. ),
  878. TP_fast_assign(
  879. __entry->vcpu_id = vcpu_id;
  880. __entry->delta = delta;
  881. ),
  882. TP_printk("vcpu %u: delta %lld (%s)",
  883. __entry->vcpu_id,
  884. __entry->delta,
  885. __entry->delta < 0 ? "early" : "late")
  886. );
  887. TRACE_EVENT(kvm_smm_transition,
  888. TP_PROTO(unsigned int vcpu_id, u64 smbase, bool entering),
  889. TP_ARGS(vcpu_id, smbase, entering),
  890. TP_STRUCT__entry(
  891. __field( unsigned int, vcpu_id )
  892. __field( u64, smbase )
  893. __field( bool, entering )
  894. ),
  895. TP_fast_assign(
  896. __entry->vcpu_id = vcpu_id;
  897. __entry->smbase = smbase;
  898. __entry->entering = entering;
  899. ),
  900. TP_printk("vcpu %u: %s SMM, smbase 0x%llx",
  901. __entry->vcpu_id,
  902. __entry->entering ? "entering" : "leaving",
  903. __entry->smbase)
  904. );
  905. /*
  906. * Tracepoint for VT-d posted-interrupts.
  907. */
  908. TRACE_EVENT(kvm_pi_irte_update,
  909. TP_PROTO(unsigned int host_irq, unsigned int vcpu_id,
  910. unsigned int gsi, unsigned int gvec,
  911. u64 pi_desc_addr, bool set),
  912. TP_ARGS(host_irq, vcpu_id, gsi, gvec, pi_desc_addr, set),
  913. TP_STRUCT__entry(
  914. __field( unsigned int, host_irq )
  915. __field( unsigned int, vcpu_id )
  916. __field( unsigned int, gsi )
  917. __field( unsigned int, gvec )
  918. __field( u64, pi_desc_addr )
  919. __field( bool, set )
  920. ),
  921. TP_fast_assign(
  922. __entry->host_irq = host_irq;
  923. __entry->vcpu_id = vcpu_id;
  924. __entry->gsi = gsi;
  925. __entry->gvec = gvec;
  926. __entry->pi_desc_addr = pi_desc_addr;
  927. __entry->set = set;
  928. ),
  929. TP_printk("VT-d PI is %s for irq %u, vcpu %u, gsi: 0x%x, "
  930. "gvec: 0x%x, pi_desc_addr: 0x%llx",
  931. __entry->set ? "enabled and being updated" : "disabled",
  932. __entry->host_irq,
  933. __entry->vcpu_id,
  934. __entry->gsi,
  935. __entry->gvec,
  936. __entry->pi_desc_addr)
  937. );
  938. /*
  939. * Tracepoint for kvm_hv_notify_acked_sint.
  940. */
  941. TRACE_EVENT(kvm_hv_notify_acked_sint,
  942. TP_PROTO(int vcpu_id, u32 sint),
  943. TP_ARGS(vcpu_id, sint),
  944. TP_STRUCT__entry(
  945. __field(int, vcpu_id)
  946. __field(u32, sint)
  947. ),
  948. TP_fast_assign(
  949. __entry->vcpu_id = vcpu_id;
  950. __entry->sint = sint;
  951. ),
  952. TP_printk("vcpu_id %d sint %u", __entry->vcpu_id, __entry->sint)
  953. );
  954. /*
  955. * Tracepoint for synic_set_irq.
  956. */
  957. TRACE_EVENT(kvm_hv_synic_set_irq,
  958. TP_PROTO(int vcpu_id, u32 sint, int vector, int ret),
  959. TP_ARGS(vcpu_id, sint, vector, ret),
  960. TP_STRUCT__entry(
  961. __field(int, vcpu_id)
  962. __field(u32, sint)
  963. __field(int, vector)
  964. __field(int, ret)
  965. ),
  966. TP_fast_assign(
  967. __entry->vcpu_id = vcpu_id;
  968. __entry->sint = sint;
  969. __entry->vector = vector;
  970. __entry->ret = ret;
  971. ),
  972. TP_printk("vcpu_id %d sint %u vector %d ret %d",
  973. __entry->vcpu_id, __entry->sint, __entry->vector,
  974. __entry->ret)
  975. );
  976. /*
  977. * Tracepoint for kvm_hv_synic_send_eoi.
  978. */
  979. TRACE_EVENT(kvm_hv_synic_send_eoi,
  980. TP_PROTO(int vcpu_id, int vector),
  981. TP_ARGS(vcpu_id, vector),
  982. TP_STRUCT__entry(
  983. __field(int, vcpu_id)
  984. __field(u32, sint)
  985. __field(int, vector)
  986. __field(int, ret)
  987. ),
  988. TP_fast_assign(
  989. __entry->vcpu_id = vcpu_id;
  990. __entry->vector = vector;
  991. ),
  992. TP_printk("vcpu_id %d vector %d", __entry->vcpu_id, __entry->vector)
  993. );
  994. /*
  995. * Tracepoint for synic_set_msr.
  996. */
  997. TRACE_EVENT(kvm_hv_synic_set_msr,
  998. TP_PROTO(int vcpu_id, u32 msr, u64 data, bool host),
  999. TP_ARGS(vcpu_id, msr, data, host),
  1000. TP_STRUCT__entry(
  1001. __field(int, vcpu_id)
  1002. __field(u32, msr)
  1003. __field(u64, data)
  1004. __field(bool, host)
  1005. ),
  1006. TP_fast_assign(
  1007. __entry->vcpu_id = vcpu_id;
  1008. __entry->msr = msr;
  1009. __entry->data = data;
  1010. __entry->host = host
  1011. ),
  1012. TP_printk("vcpu_id %d msr 0x%x data 0x%llx host %d",
  1013. __entry->vcpu_id, __entry->msr, __entry->data, __entry->host)
  1014. );
  1015. /*
  1016. * Tracepoint for stimer_set_config.
  1017. */
  1018. TRACE_EVENT(kvm_hv_stimer_set_config,
  1019. TP_PROTO(int vcpu_id, int timer_index, u64 config, bool host),
  1020. TP_ARGS(vcpu_id, timer_index, config, host),
  1021. TP_STRUCT__entry(
  1022. __field(int, vcpu_id)
  1023. __field(int, timer_index)
  1024. __field(u64, config)
  1025. __field(bool, host)
  1026. ),
  1027. TP_fast_assign(
  1028. __entry->vcpu_id = vcpu_id;
  1029. __entry->timer_index = timer_index;
  1030. __entry->config = config;
  1031. __entry->host = host;
  1032. ),
  1033. TP_printk("vcpu_id %d timer %d config 0x%llx host %d",
  1034. __entry->vcpu_id, __entry->timer_index, __entry->config,
  1035. __entry->host)
  1036. );
  1037. /*
  1038. * Tracepoint for stimer_set_count.
  1039. */
  1040. TRACE_EVENT(kvm_hv_stimer_set_count,
  1041. TP_PROTO(int vcpu_id, int timer_index, u64 count, bool host),
  1042. TP_ARGS(vcpu_id, timer_index, count, host),
  1043. TP_STRUCT__entry(
  1044. __field(int, vcpu_id)
  1045. __field(int, timer_index)
  1046. __field(u64, count)
  1047. __field(bool, host)
  1048. ),
  1049. TP_fast_assign(
  1050. __entry->vcpu_id = vcpu_id;
  1051. __entry->timer_index = timer_index;
  1052. __entry->count = count;
  1053. __entry->host = host;
  1054. ),
  1055. TP_printk("vcpu_id %d timer %d count %llu host %d",
  1056. __entry->vcpu_id, __entry->timer_index, __entry->count,
  1057. __entry->host)
  1058. );
  1059. /*
  1060. * Tracepoint for stimer_start(periodic timer case).
  1061. */
  1062. TRACE_EVENT(kvm_hv_stimer_start_periodic,
  1063. TP_PROTO(int vcpu_id, int timer_index, u64 time_now, u64 exp_time),
  1064. TP_ARGS(vcpu_id, timer_index, time_now, exp_time),
  1065. TP_STRUCT__entry(
  1066. __field(int, vcpu_id)
  1067. __field(int, timer_index)
  1068. __field(u64, time_now)
  1069. __field(u64, exp_time)
  1070. ),
  1071. TP_fast_assign(
  1072. __entry->vcpu_id = vcpu_id;
  1073. __entry->timer_index = timer_index;
  1074. __entry->time_now = time_now;
  1075. __entry->exp_time = exp_time;
  1076. ),
  1077. TP_printk("vcpu_id %d timer %d time_now %llu exp_time %llu",
  1078. __entry->vcpu_id, __entry->timer_index, __entry->time_now,
  1079. __entry->exp_time)
  1080. );
  1081. /*
  1082. * Tracepoint for stimer_start(one-shot timer case).
  1083. */
  1084. TRACE_EVENT(kvm_hv_stimer_start_one_shot,
  1085. TP_PROTO(int vcpu_id, int timer_index, u64 time_now, u64 count),
  1086. TP_ARGS(vcpu_id, timer_index, time_now, count),
  1087. TP_STRUCT__entry(
  1088. __field(int, vcpu_id)
  1089. __field(int, timer_index)
  1090. __field(u64, time_now)
  1091. __field(u64, count)
  1092. ),
  1093. TP_fast_assign(
  1094. __entry->vcpu_id = vcpu_id;
  1095. __entry->timer_index = timer_index;
  1096. __entry->time_now = time_now;
  1097. __entry->count = count;
  1098. ),
  1099. TP_printk("vcpu_id %d timer %d time_now %llu count %llu",
  1100. __entry->vcpu_id, __entry->timer_index, __entry->time_now,
  1101. __entry->count)
  1102. );
  1103. /*
  1104. * Tracepoint for stimer_timer_callback.
  1105. */
  1106. TRACE_EVENT(kvm_hv_stimer_callback,
  1107. TP_PROTO(int vcpu_id, int timer_index),
  1108. TP_ARGS(vcpu_id, timer_index),
  1109. TP_STRUCT__entry(
  1110. __field(int, vcpu_id)
  1111. __field(int, timer_index)
  1112. ),
  1113. TP_fast_assign(
  1114. __entry->vcpu_id = vcpu_id;
  1115. __entry->timer_index = timer_index;
  1116. ),
  1117. TP_printk("vcpu_id %d timer %d",
  1118. __entry->vcpu_id, __entry->timer_index)
  1119. );
  1120. /*
  1121. * Tracepoint for stimer_expiration.
  1122. */
  1123. TRACE_EVENT(kvm_hv_stimer_expiration,
  1124. TP_PROTO(int vcpu_id, int timer_index, int direct, int msg_send_result),
  1125. TP_ARGS(vcpu_id, timer_index, direct, msg_send_result),
  1126. TP_STRUCT__entry(
  1127. __field(int, vcpu_id)
  1128. __field(int, timer_index)
  1129. __field(int, direct)
  1130. __field(int, msg_send_result)
  1131. ),
  1132. TP_fast_assign(
  1133. __entry->vcpu_id = vcpu_id;
  1134. __entry->timer_index = timer_index;
  1135. __entry->direct = direct;
  1136. __entry->msg_send_result = msg_send_result;
  1137. ),
  1138. TP_printk("vcpu_id %d timer %d direct %d send result %d",
  1139. __entry->vcpu_id, __entry->timer_index,
  1140. __entry->direct, __entry->msg_send_result)
  1141. );
  1142. /*
  1143. * Tracepoint for stimer_cleanup.
  1144. */
  1145. TRACE_EVENT(kvm_hv_stimer_cleanup,
  1146. TP_PROTO(int vcpu_id, int timer_index),
  1147. TP_ARGS(vcpu_id, timer_index),
  1148. TP_STRUCT__entry(
  1149. __field(int, vcpu_id)
  1150. __field(int, timer_index)
  1151. ),
  1152. TP_fast_assign(
  1153. __entry->vcpu_id = vcpu_id;
  1154. __entry->timer_index = timer_index;
  1155. ),
  1156. TP_printk("vcpu_id %d timer %d",
  1157. __entry->vcpu_id, __entry->timer_index)
  1158. );
  1159. TRACE_EVENT(kvm_apicv_inhibit_changed,
  1160. TP_PROTO(int reason, bool set, unsigned long inhibits),
  1161. TP_ARGS(reason, set, inhibits),
  1162. TP_STRUCT__entry(
  1163. __field(int, reason)
  1164. __field(bool, set)
  1165. __field(unsigned long, inhibits)
  1166. ),
  1167. TP_fast_assign(
  1168. __entry->reason = reason;
  1169. __entry->set = set;
  1170. __entry->inhibits = inhibits;
  1171. ),
  1172. TP_printk("%s reason=%u, inhibits=0x%lx",
  1173. __entry->set ? "set" : "cleared",
  1174. __entry->reason, __entry->inhibits)
  1175. );
  1176. TRACE_EVENT(kvm_apicv_accept_irq,
  1177. TP_PROTO(__u32 apicid, __u16 dm, __u16 tm, __u8 vec),
  1178. TP_ARGS(apicid, dm, tm, vec),
  1179. TP_STRUCT__entry(
  1180. __field( __u32, apicid )
  1181. __field( __u16, dm )
  1182. __field( __u16, tm )
  1183. __field( __u8, vec )
  1184. ),
  1185. TP_fast_assign(
  1186. __entry->apicid = apicid;
  1187. __entry->dm = dm;
  1188. __entry->tm = tm;
  1189. __entry->vec = vec;
  1190. ),
  1191. TP_printk("apicid %x vec %u (%s|%s)",
  1192. __entry->apicid, __entry->vec,
  1193. __print_symbolic((__entry->dm >> 8 & 0x7), kvm_deliver_mode),
  1194. __entry->tm ? "level" : "edge")
  1195. );
  1196. /*
  1197. * Tracepoint for AMD AVIC
  1198. */
  1199. TRACE_EVENT(kvm_avic_incomplete_ipi,
  1200. TP_PROTO(u32 vcpu, u32 icrh, u32 icrl, u32 id, u32 index),
  1201. TP_ARGS(vcpu, icrh, icrl, id, index),
  1202. TP_STRUCT__entry(
  1203. __field(u32, vcpu)
  1204. __field(u32, icrh)
  1205. __field(u32, icrl)
  1206. __field(u32, id)
  1207. __field(u32, index)
  1208. ),
  1209. TP_fast_assign(
  1210. __entry->vcpu = vcpu;
  1211. __entry->icrh = icrh;
  1212. __entry->icrl = icrl;
  1213. __entry->id = id;
  1214. __entry->index = index;
  1215. ),
  1216. TP_printk("vcpu=%u, icrh:icrl=%#010x:%08x, id=%u, index=%u",
  1217. __entry->vcpu, __entry->icrh, __entry->icrl,
  1218. __entry->id, __entry->index)
  1219. );
  1220. TRACE_EVENT(kvm_avic_unaccelerated_access,
  1221. TP_PROTO(u32 vcpu, u32 offset, bool ft, bool rw, u32 vec),
  1222. TP_ARGS(vcpu, offset, ft, rw, vec),
  1223. TP_STRUCT__entry(
  1224. __field(u32, vcpu)
  1225. __field(u32, offset)
  1226. __field(bool, ft)
  1227. __field(bool, rw)
  1228. __field(u32, vec)
  1229. ),
  1230. TP_fast_assign(
  1231. __entry->vcpu = vcpu;
  1232. __entry->offset = offset;
  1233. __entry->ft = ft;
  1234. __entry->rw = rw;
  1235. __entry->vec = vec;
  1236. ),
  1237. TP_printk("vcpu=%u, offset=%#x(%s), %s, %s, vec=%#x",
  1238. __entry->vcpu,
  1239. __entry->offset,
  1240. __print_symbolic(__entry->offset, kvm_trace_symbol_apic),
  1241. __entry->ft ? "trap" : "fault",
  1242. __entry->rw ? "write" : "read",
  1243. __entry->vec)
  1244. );
  1245. TRACE_EVENT(kvm_avic_ga_log,
  1246. TP_PROTO(u32 vmid, u32 vcpuid),
  1247. TP_ARGS(vmid, vcpuid),
  1248. TP_STRUCT__entry(
  1249. __field(u32, vmid)
  1250. __field(u32, vcpuid)
  1251. ),
  1252. TP_fast_assign(
  1253. __entry->vmid = vmid;
  1254. __entry->vcpuid = vcpuid;
  1255. ),
  1256. TP_printk("vmid=%u, vcpuid=%u",
  1257. __entry->vmid, __entry->vcpuid)
  1258. );
  1259. TRACE_EVENT(kvm_avic_kick_vcpu_slowpath,
  1260. TP_PROTO(u32 icrh, u32 icrl, u32 index),
  1261. TP_ARGS(icrh, icrl, index),
  1262. TP_STRUCT__entry(
  1263. __field(u32, icrh)
  1264. __field(u32, icrl)
  1265. __field(u32, index)
  1266. ),
  1267. TP_fast_assign(
  1268. __entry->icrh = icrh;
  1269. __entry->icrl = icrl;
  1270. __entry->index = index;
  1271. ),
  1272. TP_printk("icrh:icrl=%#08x:%08x, index=%u",
  1273. __entry->icrh, __entry->icrl, __entry->index)
  1274. );
  1275. TRACE_EVENT(kvm_avic_doorbell,
  1276. TP_PROTO(u32 vcpuid, u32 apicid),
  1277. TP_ARGS(vcpuid, apicid),
  1278. TP_STRUCT__entry(
  1279. __field(u32, vcpuid)
  1280. __field(u32, apicid)
  1281. ),
  1282. TP_fast_assign(
  1283. __entry->vcpuid = vcpuid;
  1284. __entry->apicid = apicid;
  1285. ),
  1286. TP_printk("vcpuid=%u, apicid=%u",
  1287. __entry->vcpuid, __entry->apicid)
  1288. );
  1289. TRACE_EVENT(kvm_hv_timer_state,
  1290. TP_PROTO(unsigned int vcpu_id, unsigned int hv_timer_in_use),
  1291. TP_ARGS(vcpu_id, hv_timer_in_use),
  1292. TP_STRUCT__entry(
  1293. __field(unsigned int, vcpu_id)
  1294. __field(unsigned int, hv_timer_in_use)
  1295. ),
  1296. TP_fast_assign(
  1297. __entry->vcpu_id = vcpu_id;
  1298. __entry->hv_timer_in_use = hv_timer_in_use;
  1299. ),
  1300. TP_printk("vcpu_id %x hv_timer %x",
  1301. __entry->vcpu_id,
  1302. __entry->hv_timer_in_use)
  1303. );
  1304. /*
  1305. * Tracepoint for kvm_hv_flush_tlb.
  1306. */
  1307. TRACE_EVENT(kvm_hv_flush_tlb,
  1308. TP_PROTO(u64 processor_mask, u64 address_space, u64 flags),
  1309. TP_ARGS(processor_mask, address_space, flags),
  1310. TP_STRUCT__entry(
  1311. __field(u64, processor_mask)
  1312. __field(u64, address_space)
  1313. __field(u64, flags)
  1314. ),
  1315. TP_fast_assign(
  1316. __entry->processor_mask = processor_mask;
  1317. __entry->address_space = address_space;
  1318. __entry->flags = flags;
  1319. ),
  1320. TP_printk("processor_mask 0x%llx address_space 0x%llx flags 0x%llx",
  1321. __entry->processor_mask, __entry->address_space,
  1322. __entry->flags)
  1323. );
  1324. /*
  1325. * Tracepoint for kvm_hv_flush_tlb_ex.
  1326. */
  1327. TRACE_EVENT(kvm_hv_flush_tlb_ex,
  1328. TP_PROTO(u64 valid_bank_mask, u64 format, u64 address_space, u64 flags),
  1329. TP_ARGS(valid_bank_mask, format, address_space, flags),
  1330. TP_STRUCT__entry(
  1331. __field(u64, valid_bank_mask)
  1332. __field(u64, format)
  1333. __field(u64, address_space)
  1334. __field(u64, flags)
  1335. ),
  1336. TP_fast_assign(
  1337. __entry->valid_bank_mask = valid_bank_mask;
  1338. __entry->format = format;
  1339. __entry->address_space = address_space;
  1340. __entry->flags = flags;
  1341. ),
  1342. TP_printk("valid_bank_mask 0x%llx format 0x%llx "
  1343. "address_space 0x%llx flags 0x%llx",
  1344. __entry->valid_bank_mask, __entry->format,
  1345. __entry->address_space, __entry->flags)
  1346. );
  1347. /*
  1348. * Tracepoints for kvm_hv_send_ipi.
  1349. */
  1350. TRACE_EVENT(kvm_hv_send_ipi,
  1351. TP_PROTO(u32 vector, u64 processor_mask),
  1352. TP_ARGS(vector, processor_mask),
  1353. TP_STRUCT__entry(
  1354. __field(u32, vector)
  1355. __field(u64, processor_mask)
  1356. ),
  1357. TP_fast_assign(
  1358. __entry->vector = vector;
  1359. __entry->processor_mask = processor_mask;
  1360. ),
  1361. TP_printk("vector %x processor_mask 0x%llx",
  1362. __entry->vector, __entry->processor_mask)
  1363. );
  1364. TRACE_EVENT(kvm_hv_send_ipi_ex,
  1365. TP_PROTO(u32 vector, u64 format, u64 valid_bank_mask),
  1366. TP_ARGS(vector, format, valid_bank_mask),
  1367. TP_STRUCT__entry(
  1368. __field(u32, vector)
  1369. __field(u64, format)
  1370. __field(u64, valid_bank_mask)
  1371. ),
  1372. TP_fast_assign(
  1373. __entry->vector = vector;
  1374. __entry->format = format;
  1375. __entry->valid_bank_mask = valid_bank_mask;
  1376. ),
  1377. TP_printk("vector %x format %llx valid_bank_mask 0x%llx",
  1378. __entry->vector, __entry->format,
  1379. __entry->valid_bank_mask)
  1380. );
  1381. TRACE_EVENT(kvm_pv_tlb_flush,
  1382. TP_PROTO(unsigned int vcpu_id, bool need_flush_tlb),
  1383. TP_ARGS(vcpu_id, need_flush_tlb),
  1384. TP_STRUCT__entry(
  1385. __field( unsigned int, vcpu_id )
  1386. __field( bool, need_flush_tlb )
  1387. ),
  1388. TP_fast_assign(
  1389. __entry->vcpu_id = vcpu_id;
  1390. __entry->need_flush_tlb = need_flush_tlb;
  1391. ),
  1392. TP_printk("vcpu %u need_flush_tlb %s", __entry->vcpu_id,
  1393. __entry->need_flush_tlb ? "true" : "false")
  1394. );
  1395. /*
  1396. * Tracepoint for failed nested VMX VM-Enter.
  1397. */
  1398. TRACE_EVENT(kvm_nested_vmenter_failed,
  1399. TP_PROTO(const char *msg, u32 err),
  1400. TP_ARGS(msg, err),
  1401. TP_STRUCT__entry(
  1402. __string(msg, msg)
  1403. __field(u32, err)
  1404. ),
  1405. TP_fast_assign(
  1406. __assign_str(msg, msg);
  1407. __entry->err = err;
  1408. ),
  1409. TP_printk("%s%s", __get_str(msg), !__entry->err ? "" :
  1410. __print_symbolic(__entry->err, VMX_VMENTER_INSTRUCTION_ERRORS))
  1411. );
  1412. /*
  1413. * Tracepoint for syndbg_set_msr.
  1414. */
  1415. TRACE_EVENT(kvm_hv_syndbg_set_msr,
  1416. TP_PROTO(int vcpu_id, u32 vp_index, u32 msr, u64 data),
  1417. TP_ARGS(vcpu_id, vp_index, msr, data),
  1418. TP_STRUCT__entry(
  1419. __field(int, vcpu_id)
  1420. __field(u32, vp_index)
  1421. __field(u32, msr)
  1422. __field(u64, data)
  1423. ),
  1424. TP_fast_assign(
  1425. __entry->vcpu_id = vcpu_id;
  1426. __entry->vp_index = vp_index;
  1427. __entry->msr = msr;
  1428. __entry->data = data;
  1429. ),
  1430. TP_printk("vcpu_id %d vp_index %u msr 0x%x data 0x%llx",
  1431. __entry->vcpu_id, __entry->vp_index, __entry->msr,
  1432. __entry->data)
  1433. );
  1434. /*
  1435. * Tracepoint for syndbg_get_msr.
  1436. */
  1437. TRACE_EVENT(kvm_hv_syndbg_get_msr,
  1438. TP_PROTO(int vcpu_id, u32 vp_index, u32 msr, u64 data),
  1439. TP_ARGS(vcpu_id, vp_index, msr, data),
  1440. TP_STRUCT__entry(
  1441. __field(int, vcpu_id)
  1442. __field(u32, vp_index)
  1443. __field(u32, msr)
  1444. __field(u64, data)
  1445. ),
  1446. TP_fast_assign(
  1447. __entry->vcpu_id = vcpu_id;
  1448. __entry->vp_index = vp_index;
  1449. __entry->msr = msr;
  1450. __entry->data = data;
  1451. ),
  1452. TP_printk("vcpu_id %d vp_index %u msr 0x%x data 0x%llx",
  1453. __entry->vcpu_id, __entry->vp_index, __entry->msr,
  1454. __entry->data)
  1455. );
  1456. /*
  1457. * Tracepoint for the start of VMGEXIT processing
  1458. */
  1459. TRACE_EVENT(kvm_vmgexit_enter,
  1460. TP_PROTO(unsigned int vcpu_id, struct ghcb *ghcb),
  1461. TP_ARGS(vcpu_id, ghcb),
  1462. TP_STRUCT__entry(
  1463. __field(unsigned int, vcpu_id)
  1464. __field(u64, exit_reason)
  1465. __field(u64, info1)
  1466. __field(u64, info2)
  1467. ),
  1468. TP_fast_assign(
  1469. __entry->vcpu_id = vcpu_id;
  1470. __entry->exit_reason = ghcb->save.sw_exit_code;
  1471. __entry->info1 = ghcb->save.sw_exit_info_1;
  1472. __entry->info2 = ghcb->save.sw_exit_info_2;
  1473. ),
  1474. TP_printk("vcpu %u, exit_reason %llx, exit_info1 %llx, exit_info2 %llx",
  1475. __entry->vcpu_id, __entry->exit_reason,
  1476. __entry->info1, __entry->info2)
  1477. );
  1478. /*
  1479. * Tracepoint for the end of VMGEXIT processing
  1480. */
  1481. TRACE_EVENT(kvm_vmgexit_exit,
  1482. TP_PROTO(unsigned int vcpu_id, struct ghcb *ghcb),
  1483. TP_ARGS(vcpu_id, ghcb),
  1484. TP_STRUCT__entry(
  1485. __field(unsigned int, vcpu_id)
  1486. __field(u64, exit_reason)
  1487. __field(u64, info1)
  1488. __field(u64, info2)
  1489. ),
  1490. TP_fast_assign(
  1491. __entry->vcpu_id = vcpu_id;
  1492. __entry->exit_reason = ghcb->save.sw_exit_code;
  1493. __entry->info1 = ghcb->save.sw_exit_info_1;
  1494. __entry->info2 = ghcb->save.sw_exit_info_2;
  1495. ),
  1496. TP_printk("vcpu %u, exit_reason %llx, exit_info1 %llx, exit_info2 %llx",
  1497. __entry->vcpu_id, __entry->exit_reason,
  1498. __entry->info1, __entry->info2)
  1499. );
  1500. /*
  1501. * Tracepoint for the start of VMGEXIT MSR procotol processing
  1502. */
  1503. TRACE_EVENT(kvm_vmgexit_msr_protocol_enter,
  1504. TP_PROTO(unsigned int vcpu_id, u64 ghcb_gpa),
  1505. TP_ARGS(vcpu_id, ghcb_gpa),
  1506. TP_STRUCT__entry(
  1507. __field(unsigned int, vcpu_id)
  1508. __field(u64, ghcb_gpa)
  1509. ),
  1510. TP_fast_assign(
  1511. __entry->vcpu_id = vcpu_id;
  1512. __entry->ghcb_gpa = ghcb_gpa;
  1513. ),
  1514. TP_printk("vcpu %u, ghcb_gpa %016llx",
  1515. __entry->vcpu_id, __entry->ghcb_gpa)
  1516. );
  1517. /*
  1518. * Tracepoint for the end of VMGEXIT MSR procotol processing
  1519. */
  1520. TRACE_EVENT(kvm_vmgexit_msr_protocol_exit,
  1521. TP_PROTO(unsigned int vcpu_id, u64 ghcb_gpa, int result),
  1522. TP_ARGS(vcpu_id, ghcb_gpa, result),
  1523. TP_STRUCT__entry(
  1524. __field(unsigned int, vcpu_id)
  1525. __field(u64, ghcb_gpa)
  1526. __field(int, result)
  1527. ),
  1528. TP_fast_assign(
  1529. __entry->vcpu_id = vcpu_id;
  1530. __entry->ghcb_gpa = ghcb_gpa;
  1531. __entry->result = result;
  1532. ),
  1533. TP_printk("vcpu %u, ghcb_gpa %016llx, result %d",
  1534. __entry->vcpu_id, __entry->ghcb_gpa, __entry->result)
  1535. );
  1536. #endif /* _TRACE_KVM_H */
  1537. #undef TRACE_INCLUDE_PATH
  1538. #define TRACE_INCLUDE_PATH ../../arch/x86/kvm
  1539. #undef TRACE_INCLUDE_FILE
  1540. #define TRACE_INCLUDE_FILE trace
  1541. /* This part must be outside protection */
  1542. #include <trace/define_trace.h>