vmx.h 15 KB

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  1. /* SPDX-License-Identifier: GPL-2.0-only */
  2. /*
  3. * Copyright (C) 2018, Google LLC.
  4. */
  5. #ifndef SELFTEST_KVM_VMX_H
  6. #define SELFTEST_KVM_VMX_H
  7. #include <asm/vmx.h>
  8. #include <stdint.h>
  9. #include "processor.h"
  10. #include "apic.h"
  11. /*
  12. * Definitions of Primary Processor-Based VM-Execution Controls.
  13. */
  14. #define CPU_BASED_INTR_WINDOW_EXITING 0x00000004
  15. #define CPU_BASED_USE_TSC_OFFSETTING 0x00000008
  16. #define CPU_BASED_HLT_EXITING 0x00000080
  17. #define CPU_BASED_INVLPG_EXITING 0x00000200
  18. #define CPU_BASED_MWAIT_EXITING 0x00000400
  19. #define CPU_BASED_RDPMC_EXITING 0x00000800
  20. #define CPU_BASED_RDTSC_EXITING 0x00001000
  21. #define CPU_BASED_CR3_LOAD_EXITING 0x00008000
  22. #define CPU_BASED_CR3_STORE_EXITING 0x00010000
  23. #define CPU_BASED_CR8_LOAD_EXITING 0x00080000
  24. #define CPU_BASED_CR8_STORE_EXITING 0x00100000
  25. #define CPU_BASED_TPR_SHADOW 0x00200000
  26. #define CPU_BASED_NMI_WINDOW_EXITING 0x00400000
  27. #define CPU_BASED_MOV_DR_EXITING 0x00800000
  28. #define CPU_BASED_UNCOND_IO_EXITING 0x01000000
  29. #define CPU_BASED_USE_IO_BITMAPS 0x02000000
  30. #define CPU_BASED_MONITOR_TRAP 0x08000000
  31. #define CPU_BASED_USE_MSR_BITMAPS 0x10000000
  32. #define CPU_BASED_MONITOR_EXITING 0x20000000
  33. #define CPU_BASED_PAUSE_EXITING 0x40000000
  34. #define CPU_BASED_ACTIVATE_SECONDARY_CONTROLS 0x80000000
  35. #define CPU_BASED_ALWAYSON_WITHOUT_TRUE_MSR 0x0401e172
  36. /*
  37. * Definitions of Secondary Processor-Based VM-Execution Controls.
  38. */
  39. #define SECONDARY_EXEC_VIRTUALIZE_APIC_ACCESSES 0x00000001
  40. #define SECONDARY_EXEC_ENABLE_EPT 0x00000002
  41. #define SECONDARY_EXEC_DESC 0x00000004
  42. #define SECONDARY_EXEC_ENABLE_RDTSCP 0x00000008
  43. #define SECONDARY_EXEC_VIRTUALIZE_X2APIC_MODE 0x00000010
  44. #define SECONDARY_EXEC_ENABLE_VPID 0x00000020
  45. #define SECONDARY_EXEC_WBINVD_EXITING 0x00000040
  46. #define SECONDARY_EXEC_UNRESTRICTED_GUEST 0x00000080
  47. #define SECONDARY_EXEC_APIC_REGISTER_VIRT 0x00000100
  48. #define SECONDARY_EXEC_VIRTUAL_INTR_DELIVERY 0x00000200
  49. #define SECONDARY_EXEC_PAUSE_LOOP_EXITING 0x00000400
  50. #define SECONDARY_EXEC_RDRAND_EXITING 0x00000800
  51. #define SECONDARY_EXEC_ENABLE_INVPCID 0x00001000
  52. #define SECONDARY_EXEC_ENABLE_VMFUNC 0x00002000
  53. #define SECONDARY_EXEC_SHADOW_VMCS 0x00004000
  54. #define SECONDARY_EXEC_RDSEED_EXITING 0x00010000
  55. #define SECONDARY_EXEC_ENABLE_PML 0x00020000
  56. #define SECONDARY_EPT_VE 0x00040000
  57. #define SECONDARY_ENABLE_XSAV_RESTORE 0x00100000
  58. #define SECONDARY_EXEC_TSC_SCALING 0x02000000
  59. #define PIN_BASED_EXT_INTR_MASK 0x00000001
  60. #define PIN_BASED_NMI_EXITING 0x00000008
  61. #define PIN_BASED_VIRTUAL_NMIS 0x00000020
  62. #define PIN_BASED_VMX_PREEMPTION_TIMER 0x00000040
  63. #define PIN_BASED_POSTED_INTR 0x00000080
  64. #define PIN_BASED_ALWAYSON_WITHOUT_TRUE_MSR 0x00000016
  65. #define VM_EXIT_SAVE_DEBUG_CONTROLS 0x00000004
  66. #define VM_EXIT_HOST_ADDR_SPACE_SIZE 0x00000200
  67. #define VM_EXIT_LOAD_IA32_PERF_GLOBAL_CTRL 0x00001000
  68. #define VM_EXIT_ACK_INTR_ON_EXIT 0x00008000
  69. #define VM_EXIT_SAVE_IA32_PAT 0x00040000
  70. #define VM_EXIT_LOAD_IA32_PAT 0x00080000
  71. #define VM_EXIT_SAVE_IA32_EFER 0x00100000
  72. #define VM_EXIT_LOAD_IA32_EFER 0x00200000
  73. #define VM_EXIT_SAVE_VMX_PREEMPTION_TIMER 0x00400000
  74. #define VM_EXIT_ALWAYSON_WITHOUT_TRUE_MSR 0x00036dff
  75. #define VM_ENTRY_LOAD_DEBUG_CONTROLS 0x00000004
  76. #define VM_ENTRY_IA32E_MODE 0x00000200
  77. #define VM_ENTRY_SMM 0x00000400
  78. #define VM_ENTRY_DEACT_DUAL_MONITOR 0x00000800
  79. #define VM_ENTRY_LOAD_IA32_PERF_GLOBAL_CTRL 0x00002000
  80. #define VM_ENTRY_LOAD_IA32_PAT 0x00004000
  81. #define VM_ENTRY_LOAD_IA32_EFER 0x00008000
  82. #define VM_ENTRY_ALWAYSON_WITHOUT_TRUE_MSR 0x000011ff
  83. #define VMX_MISC_PREEMPTION_TIMER_RATE_MASK 0x0000001f
  84. #define VMX_MISC_SAVE_EFER_LMA 0x00000020
  85. #define VMX_EPT_VPID_CAP_1G_PAGES 0x00020000
  86. #define VMX_EPT_VPID_CAP_AD_BITS 0x00200000
  87. #define EXIT_REASON_FAILED_VMENTRY 0x80000000
  88. enum vmcs_field {
  89. VIRTUAL_PROCESSOR_ID = 0x00000000,
  90. POSTED_INTR_NV = 0x00000002,
  91. GUEST_ES_SELECTOR = 0x00000800,
  92. GUEST_CS_SELECTOR = 0x00000802,
  93. GUEST_SS_SELECTOR = 0x00000804,
  94. GUEST_DS_SELECTOR = 0x00000806,
  95. GUEST_FS_SELECTOR = 0x00000808,
  96. GUEST_GS_SELECTOR = 0x0000080a,
  97. GUEST_LDTR_SELECTOR = 0x0000080c,
  98. GUEST_TR_SELECTOR = 0x0000080e,
  99. GUEST_INTR_STATUS = 0x00000810,
  100. GUEST_PML_INDEX = 0x00000812,
  101. HOST_ES_SELECTOR = 0x00000c00,
  102. HOST_CS_SELECTOR = 0x00000c02,
  103. HOST_SS_SELECTOR = 0x00000c04,
  104. HOST_DS_SELECTOR = 0x00000c06,
  105. HOST_FS_SELECTOR = 0x00000c08,
  106. HOST_GS_SELECTOR = 0x00000c0a,
  107. HOST_TR_SELECTOR = 0x00000c0c,
  108. IO_BITMAP_A = 0x00002000,
  109. IO_BITMAP_A_HIGH = 0x00002001,
  110. IO_BITMAP_B = 0x00002002,
  111. IO_BITMAP_B_HIGH = 0x00002003,
  112. MSR_BITMAP = 0x00002004,
  113. MSR_BITMAP_HIGH = 0x00002005,
  114. VM_EXIT_MSR_STORE_ADDR = 0x00002006,
  115. VM_EXIT_MSR_STORE_ADDR_HIGH = 0x00002007,
  116. VM_EXIT_MSR_LOAD_ADDR = 0x00002008,
  117. VM_EXIT_MSR_LOAD_ADDR_HIGH = 0x00002009,
  118. VM_ENTRY_MSR_LOAD_ADDR = 0x0000200a,
  119. VM_ENTRY_MSR_LOAD_ADDR_HIGH = 0x0000200b,
  120. PML_ADDRESS = 0x0000200e,
  121. PML_ADDRESS_HIGH = 0x0000200f,
  122. TSC_OFFSET = 0x00002010,
  123. TSC_OFFSET_HIGH = 0x00002011,
  124. VIRTUAL_APIC_PAGE_ADDR = 0x00002012,
  125. VIRTUAL_APIC_PAGE_ADDR_HIGH = 0x00002013,
  126. APIC_ACCESS_ADDR = 0x00002014,
  127. APIC_ACCESS_ADDR_HIGH = 0x00002015,
  128. POSTED_INTR_DESC_ADDR = 0x00002016,
  129. POSTED_INTR_DESC_ADDR_HIGH = 0x00002017,
  130. EPT_POINTER = 0x0000201a,
  131. EPT_POINTER_HIGH = 0x0000201b,
  132. EOI_EXIT_BITMAP0 = 0x0000201c,
  133. EOI_EXIT_BITMAP0_HIGH = 0x0000201d,
  134. EOI_EXIT_BITMAP1 = 0x0000201e,
  135. EOI_EXIT_BITMAP1_HIGH = 0x0000201f,
  136. EOI_EXIT_BITMAP2 = 0x00002020,
  137. EOI_EXIT_BITMAP2_HIGH = 0x00002021,
  138. EOI_EXIT_BITMAP3 = 0x00002022,
  139. EOI_EXIT_BITMAP3_HIGH = 0x00002023,
  140. VMREAD_BITMAP = 0x00002026,
  141. VMREAD_BITMAP_HIGH = 0x00002027,
  142. VMWRITE_BITMAP = 0x00002028,
  143. VMWRITE_BITMAP_HIGH = 0x00002029,
  144. XSS_EXIT_BITMAP = 0x0000202C,
  145. XSS_EXIT_BITMAP_HIGH = 0x0000202D,
  146. ENCLS_EXITING_BITMAP = 0x0000202E,
  147. ENCLS_EXITING_BITMAP_HIGH = 0x0000202F,
  148. TSC_MULTIPLIER = 0x00002032,
  149. TSC_MULTIPLIER_HIGH = 0x00002033,
  150. GUEST_PHYSICAL_ADDRESS = 0x00002400,
  151. GUEST_PHYSICAL_ADDRESS_HIGH = 0x00002401,
  152. VMCS_LINK_POINTER = 0x00002800,
  153. VMCS_LINK_POINTER_HIGH = 0x00002801,
  154. GUEST_IA32_DEBUGCTL = 0x00002802,
  155. GUEST_IA32_DEBUGCTL_HIGH = 0x00002803,
  156. GUEST_IA32_PAT = 0x00002804,
  157. GUEST_IA32_PAT_HIGH = 0x00002805,
  158. GUEST_IA32_EFER = 0x00002806,
  159. GUEST_IA32_EFER_HIGH = 0x00002807,
  160. GUEST_IA32_PERF_GLOBAL_CTRL = 0x00002808,
  161. GUEST_IA32_PERF_GLOBAL_CTRL_HIGH= 0x00002809,
  162. GUEST_PDPTR0 = 0x0000280a,
  163. GUEST_PDPTR0_HIGH = 0x0000280b,
  164. GUEST_PDPTR1 = 0x0000280c,
  165. GUEST_PDPTR1_HIGH = 0x0000280d,
  166. GUEST_PDPTR2 = 0x0000280e,
  167. GUEST_PDPTR2_HIGH = 0x0000280f,
  168. GUEST_PDPTR3 = 0x00002810,
  169. GUEST_PDPTR3_HIGH = 0x00002811,
  170. GUEST_BNDCFGS = 0x00002812,
  171. GUEST_BNDCFGS_HIGH = 0x00002813,
  172. HOST_IA32_PAT = 0x00002c00,
  173. HOST_IA32_PAT_HIGH = 0x00002c01,
  174. HOST_IA32_EFER = 0x00002c02,
  175. HOST_IA32_EFER_HIGH = 0x00002c03,
  176. HOST_IA32_PERF_GLOBAL_CTRL = 0x00002c04,
  177. HOST_IA32_PERF_GLOBAL_CTRL_HIGH = 0x00002c05,
  178. PIN_BASED_VM_EXEC_CONTROL = 0x00004000,
  179. CPU_BASED_VM_EXEC_CONTROL = 0x00004002,
  180. EXCEPTION_BITMAP = 0x00004004,
  181. PAGE_FAULT_ERROR_CODE_MASK = 0x00004006,
  182. PAGE_FAULT_ERROR_CODE_MATCH = 0x00004008,
  183. CR3_TARGET_COUNT = 0x0000400a,
  184. VM_EXIT_CONTROLS = 0x0000400c,
  185. VM_EXIT_MSR_STORE_COUNT = 0x0000400e,
  186. VM_EXIT_MSR_LOAD_COUNT = 0x00004010,
  187. VM_ENTRY_CONTROLS = 0x00004012,
  188. VM_ENTRY_MSR_LOAD_COUNT = 0x00004014,
  189. VM_ENTRY_INTR_INFO_FIELD = 0x00004016,
  190. VM_ENTRY_EXCEPTION_ERROR_CODE = 0x00004018,
  191. VM_ENTRY_INSTRUCTION_LEN = 0x0000401a,
  192. TPR_THRESHOLD = 0x0000401c,
  193. SECONDARY_VM_EXEC_CONTROL = 0x0000401e,
  194. PLE_GAP = 0x00004020,
  195. PLE_WINDOW = 0x00004022,
  196. VM_INSTRUCTION_ERROR = 0x00004400,
  197. VM_EXIT_REASON = 0x00004402,
  198. VM_EXIT_INTR_INFO = 0x00004404,
  199. VM_EXIT_INTR_ERROR_CODE = 0x00004406,
  200. IDT_VECTORING_INFO_FIELD = 0x00004408,
  201. IDT_VECTORING_ERROR_CODE = 0x0000440a,
  202. VM_EXIT_INSTRUCTION_LEN = 0x0000440c,
  203. VMX_INSTRUCTION_INFO = 0x0000440e,
  204. GUEST_ES_LIMIT = 0x00004800,
  205. GUEST_CS_LIMIT = 0x00004802,
  206. GUEST_SS_LIMIT = 0x00004804,
  207. GUEST_DS_LIMIT = 0x00004806,
  208. GUEST_FS_LIMIT = 0x00004808,
  209. GUEST_GS_LIMIT = 0x0000480a,
  210. GUEST_LDTR_LIMIT = 0x0000480c,
  211. GUEST_TR_LIMIT = 0x0000480e,
  212. GUEST_GDTR_LIMIT = 0x00004810,
  213. GUEST_IDTR_LIMIT = 0x00004812,
  214. GUEST_ES_AR_BYTES = 0x00004814,
  215. GUEST_CS_AR_BYTES = 0x00004816,
  216. GUEST_SS_AR_BYTES = 0x00004818,
  217. GUEST_DS_AR_BYTES = 0x0000481a,
  218. GUEST_FS_AR_BYTES = 0x0000481c,
  219. GUEST_GS_AR_BYTES = 0x0000481e,
  220. GUEST_LDTR_AR_BYTES = 0x00004820,
  221. GUEST_TR_AR_BYTES = 0x00004822,
  222. GUEST_INTERRUPTIBILITY_INFO = 0x00004824,
  223. GUEST_ACTIVITY_STATE = 0X00004826,
  224. GUEST_SYSENTER_CS = 0x0000482A,
  225. VMX_PREEMPTION_TIMER_VALUE = 0x0000482E,
  226. HOST_IA32_SYSENTER_CS = 0x00004c00,
  227. CR0_GUEST_HOST_MASK = 0x00006000,
  228. CR4_GUEST_HOST_MASK = 0x00006002,
  229. CR0_READ_SHADOW = 0x00006004,
  230. CR4_READ_SHADOW = 0x00006006,
  231. CR3_TARGET_VALUE0 = 0x00006008,
  232. CR3_TARGET_VALUE1 = 0x0000600a,
  233. CR3_TARGET_VALUE2 = 0x0000600c,
  234. CR3_TARGET_VALUE3 = 0x0000600e,
  235. EXIT_QUALIFICATION = 0x00006400,
  236. GUEST_LINEAR_ADDRESS = 0x0000640a,
  237. GUEST_CR0 = 0x00006800,
  238. GUEST_CR3 = 0x00006802,
  239. GUEST_CR4 = 0x00006804,
  240. GUEST_ES_BASE = 0x00006806,
  241. GUEST_CS_BASE = 0x00006808,
  242. GUEST_SS_BASE = 0x0000680a,
  243. GUEST_DS_BASE = 0x0000680c,
  244. GUEST_FS_BASE = 0x0000680e,
  245. GUEST_GS_BASE = 0x00006810,
  246. GUEST_LDTR_BASE = 0x00006812,
  247. GUEST_TR_BASE = 0x00006814,
  248. GUEST_GDTR_BASE = 0x00006816,
  249. GUEST_IDTR_BASE = 0x00006818,
  250. GUEST_DR7 = 0x0000681a,
  251. GUEST_RSP = 0x0000681c,
  252. GUEST_RIP = 0x0000681e,
  253. GUEST_RFLAGS = 0x00006820,
  254. GUEST_PENDING_DBG_EXCEPTIONS = 0x00006822,
  255. GUEST_SYSENTER_ESP = 0x00006824,
  256. GUEST_SYSENTER_EIP = 0x00006826,
  257. HOST_CR0 = 0x00006c00,
  258. HOST_CR3 = 0x00006c02,
  259. HOST_CR4 = 0x00006c04,
  260. HOST_FS_BASE = 0x00006c06,
  261. HOST_GS_BASE = 0x00006c08,
  262. HOST_TR_BASE = 0x00006c0a,
  263. HOST_GDTR_BASE = 0x00006c0c,
  264. HOST_IDTR_BASE = 0x00006c0e,
  265. HOST_IA32_SYSENTER_ESP = 0x00006c10,
  266. HOST_IA32_SYSENTER_EIP = 0x00006c12,
  267. HOST_RSP = 0x00006c14,
  268. HOST_RIP = 0x00006c16,
  269. };
  270. struct vmx_msr_entry {
  271. uint32_t index;
  272. uint32_t reserved;
  273. uint64_t value;
  274. } __attribute__ ((aligned(16)));
  275. #include "evmcs.h"
  276. static inline int vmxon(uint64_t phys)
  277. {
  278. uint8_t ret;
  279. __asm__ __volatile__ ("vmxon %[pa]; setna %[ret]"
  280. : [ret]"=rm"(ret)
  281. : [pa]"m"(phys)
  282. : "cc", "memory");
  283. return ret;
  284. }
  285. static inline void vmxoff(void)
  286. {
  287. __asm__ __volatile__("vmxoff");
  288. }
  289. static inline int vmclear(uint64_t vmcs_pa)
  290. {
  291. uint8_t ret;
  292. __asm__ __volatile__ ("vmclear %[pa]; setna %[ret]"
  293. : [ret]"=rm"(ret)
  294. : [pa]"m"(vmcs_pa)
  295. : "cc", "memory");
  296. return ret;
  297. }
  298. static inline int vmptrld(uint64_t vmcs_pa)
  299. {
  300. uint8_t ret;
  301. if (enable_evmcs)
  302. return -1;
  303. __asm__ __volatile__ ("vmptrld %[pa]; setna %[ret]"
  304. : [ret]"=rm"(ret)
  305. : [pa]"m"(vmcs_pa)
  306. : "cc", "memory");
  307. return ret;
  308. }
  309. static inline int vmptrst(uint64_t *value)
  310. {
  311. uint64_t tmp;
  312. uint8_t ret;
  313. if (enable_evmcs)
  314. return evmcs_vmptrst(value);
  315. __asm__ __volatile__("vmptrst %[value]; setna %[ret]"
  316. : [value]"=m"(tmp), [ret]"=rm"(ret)
  317. : : "cc", "memory");
  318. *value = tmp;
  319. return ret;
  320. }
  321. /*
  322. * A wrapper around vmptrst that ignores errors and returns zero if the
  323. * vmptrst instruction fails.
  324. */
  325. static inline uint64_t vmptrstz(void)
  326. {
  327. uint64_t value = 0;
  328. vmptrst(&value);
  329. return value;
  330. }
  331. /*
  332. * No guest state (e.g. GPRs) is established by this vmlaunch.
  333. */
  334. static inline int vmlaunch(void)
  335. {
  336. int ret;
  337. if (enable_evmcs)
  338. return evmcs_vmlaunch();
  339. __asm__ __volatile__("push %%rbp;"
  340. "push %%rcx;"
  341. "push %%rdx;"
  342. "push %%rsi;"
  343. "push %%rdi;"
  344. "push $0;"
  345. "vmwrite %%rsp, %[host_rsp];"
  346. "lea 1f(%%rip), %%rax;"
  347. "vmwrite %%rax, %[host_rip];"
  348. "vmlaunch;"
  349. "incq (%%rsp);"
  350. "1: pop %%rax;"
  351. "pop %%rdi;"
  352. "pop %%rsi;"
  353. "pop %%rdx;"
  354. "pop %%rcx;"
  355. "pop %%rbp;"
  356. : [ret]"=&a"(ret)
  357. : [host_rsp]"r"((uint64_t)HOST_RSP),
  358. [host_rip]"r"((uint64_t)HOST_RIP)
  359. : "memory", "cc", "rbx", "r8", "r9", "r10",
  360. "r11", "r12", "r13", "r14", "r15");
  361. return ret;
  362. }
  363. /*
  364. * No guest state (e.g. GPRs) is established by this vmresume.
  365. */
  366. static inline int vmresume(void)
  367. {
  368. int ret;
  369. if (enable_evmcs)
  370. return evmcs_vmresume();
  371. __asm__ __volatile__("push %%rbp;"
  372. "push %%rcx;"
  373. "push %%rdx;"
  374. "push %%rsi;"
  375. "push %%rdi;"
  376. "push $0;"
  377. "vmwrite %%rsp, %[host_rsp];"
  378. "lea 1f(%%rip), %%rax;"
  379. "vmwrite %%rax, %[host_rip];"
  380. "vmresume;"
  381. "incq (%%rsp);"
  382. "1: pop %%rax;"
  383. "pop %%rdi;"
  384. "pop %%rsi;"
  385. "pop %%rdx;"
  386. "pop %%rcx;"
  387. "pop %%rbp;"
  388. : [ret]"=&a"(ret)
  389. : [host_rsp]"r"((uint64_t)HOST_RSP),
  390. [host_rip]"r"((uint64_t)HOST_RIP)
  391. : "memory", "cc", "rbx", "r8", "r9", "r10",
  392. "r11", "r12", "r13", "r14", "r15");
  393. return ret;
  394. }
  395. static inline void vmcall(void)
  396. {
  397. /*
  398. * Stuff RAX and RCX with "safe" values to make sure L0 doesn't handle
  399. * it as a valid hypercall (e.g. Hyper-V L2 TLB flush) as the intended
  400. * use of this function is to exit to L1 from L2. Clobber all other
  401. * GPRs as L1 doesn't correctly preserve them during vmexits.
  402. */
  403. __asm__ __volatile__("push %%rbp; vmcall; pop %%rbp"
  404. : : "a"(0xdeadbeef), "c"(0xbeefdead)
  405. : "rbx", "rdx", "rsi", "rdi", "r8", "r9",
  406. "r10", "r11", "r12", "r13", "r14", "r15");
  407. }
  408. static inline int vmread(uint64_t encoding, uint64_t *value)
  409. {
  410. uint64_t tmp;
  411. uint8_t ret;
  412. if (enable_evmcs)
  413. return evmcs_vmread(encoding, value);
  414. __asm__ __volatile__("vmread %[encoding], %[value]; setna %[ret]"
  415. : [value]"=rm"(tmp), [ret]"=rm"(ret)
  416. : [encoding]"r"(encoding)
  417. : "cc", "memory");
  418. *value = tmp;
  419. return ret;
  420. }
  421. /*
  422. * A wrapper around vmread that ignores errors and returns zero if the
  423. * vmread instruction fails.
  424. */
  425. static inline uint64_t vmreadz(uint64_t encoding)
  426. {
  427. uint64_t value = 0;
  428. vmread(encoding, &value);
  429. return value;
  430. }
  431. static inline int vmwrite(uint64_t encoding, uint64_t value)
  432. {
  433. uint8_t ret;
  434. if (enable_evmcs)
  435. return evmcs_vmwrite(encoding, value);
  436. __asm__ __volatile__ ("vmwrite %[value], %[encoding]; setna %[ret]"
  437. : [ret]"=rm"(ret)
  438. : [value]"rm"(value), [encoding]"r"(encoding)
  439. : "cc", "memory");
  440. return ret;
  441. }
  442. static inline uint32_t vmcs_revision(void)
  443. {
  444. return rdmsr(MSR_IA32_VMX_BASIC);
  445. }
  446. struct vmx_pages {
  447. void *vmxon_hva;
  448. uint64_t vmxon_gpa;
  449. void *vmxon;
  450. void *vmcs_hva;
  451. uint64_t vmcs_gpa;
  452. void *vmcs;
  453. void *msr_hva;
  454. uint64_t msr_gpa;
  455. void *msr;
  456. void *shadow_vmcs_hva;
  457. uint64_t shadow_vmcs_gpa;
  458. void *shadow_vmcs;
  459. void *vmread_hva;
  460. uint64_t vmread_gpa;
  461. void *vmread;
  462. void *vmwrite_hva;
  463. uint64_t vmwrite_gpa;
  464. void *vmwrite;
  465. void *apic_access_hva;
  466. uint64_t apic_access_gpa;
  467. void *apic_access;
  468. uint64_t eptp_gpa;
  469. };
  470. union vmx_basic {
  471. u64 val;
  472. struct {
  473. u32 revision;
  474. u32 size:13,
  475. reserved1:3,
  476. width:1,
  477. dual:1,
  478. type:4,
  479. insouts:1,
  480. ctrl:1,
  481. vm_entry_exception_ctrl:1,
  482. reserved2:7;
  483. };
  484. };
  485. union vmx_ctrl_msr {
  486. u64 val;
  487. struct {
  488. u32 set, clr;
  489. };
  490. };
  491. struct vmx_pages *vcpu_alloc_vmx(struct kvm_vm *vm, vm_vaddr_t *p_vmx_gva);
  492. bool prepare_for_vmx_operation(struct vmx_pages *vmx);
  493. void prepare_vmcs(struct vmx_pages *vmx, void *guest_rip, void *guest_rsp);
  494. bool load_vmcs(struct vmx_pages *vmx);
  495. bool ept_1g_pages_supported(void);
  496. bool kvm_cpu_has_ept(void);
  497. void vm_enable_ept(struct kvm_vm *vm);
  498. void prepare_virtualize_apic_accesses(struct vmx_pages *vmx, struct kvm_vm *vm);
  499. #endif /* SELFTEST_KVM_VMX_H */