book3s_pr.c 30 KB

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  1. /*
  2. * Copyright (C) 2009. SUSE Linux Products GmbH. All rights reserved.
  3. *
  4. * Authors:
  5. * Alexander Graf <agraf@suse.de>
  6. * Kevin Wolf <mail@kevin-wolf.de>
  7. * Paul Mackerras <paulus@samba.org>
  8. *
  9. * Description:
  10. * Functions relating to running KVM on Book 3S processors where
  11. * we don't have access to hypervisor mode, and we run the guest
  12. * in problem state (user mode).
  13. *
  14. * This file is derived from arch/powerpc/kvm/44x.c,
  15. * by Hollis Blanchard <hollisb@us.ibm.com>.
  16. *
  17. * This program is free software; you can redistribute it and/or modify
  18. * it under the terms of the GNU General Public License, version 2, as
  19. * published by the Free Software Foundation.
  20. */
  21. #include <linux/kvm_host.h>
  22. #include <linux/export.h>
  23. #include <linux/err.h>
  24. #include <linux/slab.h>
  25. #include <asm/reg.h>
  26. #include <asm/cputable.h>
  27. #include <asm/cacheflush.h>
  28. #include <asm/tlbflush.h>
  29. #include <asm/uaccess.h>
  30. #include <asm/io.h>
  31. #include <asm/kvm_ppc.h>
  32. #include <asm/kvm_book3s.h>
  33. #include <asm/mmu_context.h>
  34. #include <asm/switch_to.h>
  35. #include <linux/gfp.h>
  36. #include <linux/sched.h>
  37. #include <linux/vmalloc.h>
  38. #include <linux/highmem.h>
  39. #include "trace.h"
  40. /* #define EXIT_DEBUG */
  41. /* #define DEBUG_EXT */
  42. static int kvmppc_handle_ext(struct kvm_vcpu *vcpu, unsigned int exit_nr,
  43. ulong msr);
  44. /* Some compatibility defines */
  45. #ifdef CONFIG_PPC_BOOK3S_32
  46. #define MSR_USER32 MSR_USER
  47. #define MSR_USER64 MSR_USER
  48. #define HW_PAGE_SIZE PAGE_SIZE
  49. #define __hard_irq_disable local_irq_disable
  50. #define __hard_irq_enable local_irq_enable
  51. #endif
  52. void kvmppc_core_vcpu_load(struct kvm_vcpu *vcpu, int cpu)
  53. {
  54. #ifdef CONFIG_PPC_BOOK3S_64
  55. struct kvmppc_book3s_shadow_vcpu *svcpu = svcpu_get(vcpu);
  56. memcpy(svcpu->slb, to_book3s(vcpu)->slb_shadow, sizeof(svcpu->slb));
  57. memcpy(&get_paca()->shadow_vcpu, to_book3s(vcpu)->shadow_vcpu,
  58. sizeof(get_paca()->shadow_vcpu));
  59. svcpu->slb_max = to_book3s(vcpu)->slb_shadow_max;
  60. svcpu_put(svcpu);
  61. #endif
  62. #ifdef CONFIG_PPC_BOOK3S_32
  63. current->thread.kvm_shadow_vcpu = to_book3s(vcpu)->shadow_vcpu;
  64. #endif
  65. }
  66. void kvmppc_core_vcpu_put(struct kvm_vcpu *vcpu)
  67. {
  68. #ifdef CONFIG_PPC_BOOK3S_64
  69. struct kvmppc_book3s_shadow_vcpu *svcpu = svcpu_get(vcpu);
  70. memcpy(to_book3s(vcpu)->slb_shadow, svcpu->slb, sizeof(svcpu->slb));
  71. memcpy(to_book3s(vcpu)->shadow_vcpu, &get_paca()->shadow_vcpu,
  72. sizeof(get_paca()->shadow_vcpu));
  73. to_book3s(vcpu)->slb_shadow_max = svcpu->slb_max;
  74. svcpu_put(svcpu);
  75. #endif
  76. kvmppc_giveup_ext(vcpu, MSR_FP);
  77. kvmppc_giveup_ext(vcpu, MSR_VEC);
  78. kvmppc_giveup_ext(vcpu, MSR_VSX);
  79. }
  80. static void kvmppc_recalc_shadow_msr(struct kvm_vcpu *vcpu)
  81. {
  82. ulong smsr = vcpu->arch.shared->msr;
  83. /* Guest MSR values */
  84. smsr &= MSR_FE0 | MSR_FE1 | MSR_SF | MSR_SE | MSR_BE | MSR_DE;
  85. /* Process MSR values */
  86. smsr |= MSR_ME | MSR_RI | MSR_IR | MSR_DR | MSR_PR | MSR_EE;
  87. /* External providers the guest reserved */
  88. smsr |= (vcpu->arch.shared->msr & vcpu->arch.guest_owned_ext);
  89. /* 64-bit Process MSR values */
  90. #ifdef CONFIG_PPC_BOOK3S_64
  91. smsr |= MSR_ISF | MSR_HV;
  92. #endif
  93. vcpu->arch.shadow_msr = smsr;
  94. }
  95. void kvmppc_set_msr(struct kvm_vcpu *vcpu, u64 msr)
  96. {
  97. ulong old_msr = vcpu->arch.shared->msr;
  98. #ifdef EXIT_DEBUG
  99. printk(KERN_INFO "KVM: Set MSR to 0x%llx\n", msr);
  100. #endif
  101. msr &= to_book3s(vcpu)->msr_mask;
  102. vcpu->arch.shared->msr = msr;
  103. kvmppc_recalc_shadow_msr(vcpu);
  104. if (msr & MSR_POW) {
  105. if (!vcpu->arch.pending_exceptions) {
  106. kvm_vcpu_block(vcpu);
  107. vcpu->stat.halt_wakeup++;
  108. /* Unset POW bit after we woke up */
  109. msr &= ~MSR_POW;
  110. vcpu->arch.shared->msr = msr;
  111. }
  112. }
  113. if ((vcpu->arch.shared->msr & (MSR_PR|MSR_IR|MSR_DR)) !=
  114. (old_msr & (MSR_PR|MSR_IR|MSR_DR))) {
  115. kvmppc_mmu_flush_segments(vcpu);
  116. kvmppc_mmu_map_segment(vcpu, kvmppc_get_pc(vcpu));
  117. /* Preload magic page segment when in kernel mode */
  118. if (!(msr & MSR_PR) && vcpu->arch.magic_page_pa) {
  119. struct kvm_vcpu_arch *a = &vcpu->arch;
  120. if (msr & MSR_DR)
  121. kvmppc_mmu_map_segment(vcpu, a->magic_page_ea);
  122. else
  123. kvmppc_mmu_map_segment(vcpu, a->magic_page_pa);
  124. }
  125. }
  126. /* Preload FPU if it's enabled */
  127. if (vcpu->arch.shared->msr & MSR_FP)
  128. kvmppc_handle_ext(vcpu, BOOK3S_INTERRUPT_FP_UNAVAIL, MSR_FP);
  129. }
  130. void kvmppc_set_pvr(struct kvm_vcpu *vcpu, u32 pvr)
  131. {
  132. u32 host_pvr;
  133. vcpu->arch.hflags &= ~BOOK3S_HFLAG_SLB;
  134. vcpu->arch.pvr = pvr;
  135. #ifdef CONFIG_PPC_BOOK3S_64
  136. if ((pvr >= 0x330000) && (pvr < 0x70330000)) {
  137. kvmppc_mmu_book3s_64_init(vcpu);
  138. if (!to_book3s(vcpu)->hior_explicit)
  139. to_book3s(vcpu)->hior = 0xfff00000;
  140. to_book3s(vcpu)->msr_mask = 0xffffffffffffffffULL;
  141. vcpu->arch.cpu_type = KVM_CPU_3S_64;
  142. } else
  143. #endif
  144. {
  145. kvmppc_mmu_book3s_32_init(vcpu);
  146. if (!to_book3s(vcpu)->hior_explicit)
  147. to_book3s(vcpu)->hior = 0;
  148. to_book3s(vcpu)->msr_mask = 0xffffffffULL;
  149. vcpu->arch.cpu_type = KVM_CPU_3S_32;
  150. }
  151. kvmppc_sanity_check(vcpu);
  152. /* If we are in hypervisor level on 970, we can tell the CPU to
  153. * treat DCBZ as 32 bytes store */
  154. vcpu->arch.hflags &= ~BOOK3S_HFLAG_DCBZ32;
  155. if (vcpu->arch.mmu.is_dcbz32(vcpu) && (mfmsr() & MSR_HV) &&
  156. !strcmp(cur_cpu_spec->platform, "ppc970"))
  157. vcpu->arch.hflags |= BOOK3S_HFLAG_DCBZ32;
  158. /* Cell performs badly if MSR_FEx are set. So let's hope nobody
  159. really needs them in a VM on Cell and force disable them. */
  160. if (!strcmp(cur_cpu_spec->platform, "ppc-cell-be"))
  161. to_book3s(vcpu)->msr_mask &= ~(MSR_FE0 | MSR_FE1);
  162. #ifdef CONFIG_PPC_BOOK3S_32
  163. /* 32 bit Book3S always has 32 byte dcbz */
  164. vcpu->arch.hflags |= BOOK3S_HFLAG_DCBZ32;
  165. #endif
  166. /* On some CPUs we can execute paired single operations natively */
  167. asm ( "mfpvr %0" : "=r"(host_pvr));
  168. switch (host_pvr) {
  169. case 0x00080200: /* lonestar 2.0 */
  170. case 0x00088202: /* lonestar 2.2 */
  171. case 0x70000100: /* gekko 1.0 */
  172. case 0x00080100: /* gekko 2.0 */
  173. case 0x00083203: /* gekko 2.3a */
  174. case 0x00083213: /* gekko 2.3b */
  175. case 0x00083204: /* gekko 2.4 */
  176. case 0x00083214: /* gekko 2.4e (8SE) - retail HW2 */
  177. case 0x00087200: /* broadway */
  178. vcpu->arch.hflags |= BOOK3S_HFLAG_NATIVE_PS;
  179. /* Enable HID2.PSE - in case we need it later */
  180. mtspr(SPRN_HID2_GEKKO, mfspr(SPRN_HID2_GEKKO) | (1 << 29));
  181. }
  182. }
  183. /* Book3s_32 CPUs always have 32 bytes cache line size, which Linux assumes. To
  184. * make Book3s_32 Linux work on Book3s_64, we have to make sure we trap dcbz to
  185. * emulate 32 bytes dcbz length.
  186. *
  187. * The Book3s_64 inventors also realized this case and implemented a special bit
  188. * in the HID5 register, which is a hypervisor ressource. Thus we can't use it.
  189. *
  190. * My approach here is to patch the dcbz instruction on executing pages.
  191. */
  192. static void kvmppc_patch_dcbz(struct kvm_vcpu *vcpu, struct kvmppc_pte *pte)
  193. {
  194. struct page *hpage;
  195. u64 hpage_offset;
  196. u32 *page;
  197. int i;
  198. hpage = gfn_to_page(vcpu->kvm, pte->raddr >> PAGE_SHIFT);
  199. if (is_error_page(hpage)) {
  200. kvm_release_page_clean(hpage);
  201. return;
  202. }
  203. hpage_offset = pte->raddr & ~PAGE_MASK;
  204. hpage_offset &= ~0xFFFULL;
  205. hpage_offset /= 4;
  206. get_page(hpage);
  207. page = kmap_atomic(hpage);
  208. /* patch dcbz into reserved instruction, so we trap */
  209. for (i=hpage_offset; i < hpage_offset + (HW_PAGE_SIZE / 4); i++)
  210. if ((page[i] & 0xff0007ff) == INS_DCBZ)
  211. page[i] &= 0xfffffff7;
  212. kunmap_atomic(page);
  213. put_page(hpage);
  214. }
  215. static int kvmppc_visible_gfn(struct kvm_vcpu *vcpu, gfn_t gfn)
  216. {
  217. ulong mp_pa = vcpu->arch.magic_page_pa;
  218. if (unlikely(mp_pa) &&
  219. unlikely((mp_pa & KVM_PAM) >> PAGE_SHIFT == gfn)) {
  220. return 1;
  221. }
  222. return kvm_is_visible_gfn(vcpu->kvm, gfn);
  223. }
  224. int kvmppc_handle_pagefault(struct kvm_run *run, struct kvm_vcpu *vcpu,
  225. ulong eaddr, int vec)
  226. {
  227. bool data = (vec == BOOK3S_INTERRUPT_DATA_STORAGE);
  228. int r = RESUME_GUEST;
  229. int relocated;
  230. int page_found = 0;
  231. struct kvmppc_pte pte;
  232. bool is_mmio = false;
  233. bool dr = (vcpu->arch.shared->msr & MSR_DR) ? true : false;
  234. bool ir = (vcpu->arch.shared->msr & MSR_IR) ? true : false;
  235. u64 vsid;
  236. relocated = data ? dr : ir;
  237. /* Resolve real address if translation turned on */
  238. if (relocated) {
  239. page_found = vcpu->arch.mmu.xlate(vcpu, eaddr, &pte, data);
  240. } else {
  241. pte.may_execute = true;
  242. pte.may_read = true;
  243. pte.may_write = true;
  244. pte.raddr = eaddr & KVM_PAM;
  245. pte.eaddr = eaddr;
  246. pte.vpage = eaddr >> 12;
  247. }
  248. switch (vcpu->arch.shared->msr & (MSR_DR|MSR_IR)) {
  249. case 0:
  250. pte.vpage |= ((u64)VSID_REAL << (SID_SHIFT - 12));
  251. break;
  252. case MSR_DR:
  253. case MSR_IR:
  254. vcpu->arch.mmu.esid_to_vsid(vcpu, eaddr >> SID_SHIFT, &vsid);
  255. if ((vcpu->arch.shared->msr & (MSR_DR|MSR_IR)) == MSR_DR)
  256. pte.vpage |= ((u64)VSID_REAL_DR << (SID_SHIFT - 12));
  257. else
  258. pte.vpage |= ((u64)VSID_REAL_IR << (SID_SHIFT - 12));
  259. pte.vpage |= vsid;
  260. if (vsid == -1)
  261. page_found = -EINVAL;
  262. break;
  263. }
  264. if (vcpu->arch.mmu.is_dcbz32(vcpu) &&
  265. (!(vcpu->arch.hflags & BOOK3S_HFLAG_DCBZ32))) {
  266. /*
  267. * If we do the dcbz hack, we have to NX on every execution,
  268. * so we can patch the executing code. This renders our guest
  269. * NX-less.
  270. */
  271. pte.may_execute = !data;
  272. }
  273. if (page_found == -ENOENT) {
  274. /* Page not found in guest PTE entries */
  275. struct kvmppc_book3s_shadow_vcpu *svcpu = svcpu_get(vcpu);
  276. vcpu->arch.shared->dar = kvmppc_get_fault_dar(vcpu);
  277. vcpu->arch.shared->dsisr = svcpu->fault_dsisr;
  278. vcpu->arch.shared->msr |=
  279. (svcpu->shadow_srr1 & 0x00000000f8000000ULL);
  280. svcpu_put(svcpu);
  281. kvmppc_book3s_queue_irqprio(vcpu, vec);
  282. } else if (page_found == -EPERM) {
  283. /* Storage protection */
  284. struct kvmppc_book3s_shadow_vcpu *svcpu = svcpu_get(vcpu);
  285. vcpu->arch.shared->dar = kvmppc_get_fault_dar(vcpu);
  286. vcpu->arch.shared->dsisr = svcpu->fault_dsisr & ~DSISR_NOHPTE;
  287. vcpu->arch.shared->dsisr |= DSISR_PROTFAULT;
  288. vcpu->arch.shared->msr |=
  289. svcpu->shadow_srr1 & 0x00000000f8000000ULL;
  290. svcpu_put(svcpu);
  291. kvmppc_book3s_queue_irqprio(vcpu, vec);
  292. } else if (page_found == -EINVAL) {
  293. /* Page not found in guest SLB */
  294. vcpu->arch.shared->dar = kvmppc_get_fault_dar(vcpu);
  295. kvmppc_book3s_queue_irqprio(vcpu, vec + 0x80);
  296. } else if (!is_mmio &&
  297. kvmppc_visible_gfn(vcpu, pte.raddr >> PAGE_SHIFT)) {
  298. /* The guest's PTE is not mapped yet. Map on the host */
  299. kvmppc_mmu_map_page(vcpu, &pte);
  300. if (data)
  301. vcpu->stat.sp_storage++;
  302. else if (vcpu->arch.mmu.is_dcbz32(vcpu) &&
  303. (!(vcpu->arch.hflags & BOOK3S_HFLAG_DCBZ32)))
  304. kvmppc_patch_dcbz(vcpu, &pte);
  305. } else {
  306. /* MMIO */
  307. vcpu->stat.mmio_exits++;
  308. vcpu->arch.paddr_accessed = pte.raddr;
  309. vcpu->arch.vaddr_accessed = pte.eaddr;
  310. r = kvmppc_emulate_mmio(run, vcpu);
  311. if ( r == RESUME_HOST_NV )
  312. r = RESUME_HOST;
  313. }
  314. return r;
  315. }
  316. static inline int get_fpr_index(int i)
  317. {
  318. #ifdef CONFIG_VSX
  319. i *= 2;
  320. #endif
  321. return i;
  322. }
  323. /* Give up external provider (FPU, Altivec, VSX) */
  324. void kvmppc_giveup_ext(struct kvm_vcpu *vcpu, ulong msr)
  325. {
  326. struct thread_struct *t = &current->thread;
  327. u64 *vcpu_fpr = vcpu->arch.fpr;
  328. #ifdef CONFIG_VSX
  329. u64 *vcpu_vsx = vcpu->arch.vsr;
  330. #endif
  331. u64 *thread_fpr = (u64*)t->fpr;
  332. int i;
  333. if (!(vcpu->arch.guest_owned_ext & msr))
  334. return;
  335. #ifdef DEBUG_EXT
  336. printk(KERN_INFO "Giving up ext 0x%lx\n", msr);
  337. #endif
  338. switch (msr) {
  339. case MSR_FP:
  340. giveup_fpu(current);
  341. for (i = 0; i < ARRAY_SIZE(vcpu->arch.fpr); i++)
  342. vcpu_fpr[i] = thread_fpr[get_fpr_index(i)];
  343. vcpu->arch.fpscr = t->fpscr.val;
  344. break;
  345. case MSR_VEC:
  346. #ifdef CONFIG_ALTIVEC
  347. giveup_altivec(current);
  348. memcpy(vcpu->arch.vr, t->vr, sizeof(vcpu->arch.vr));
  349. vcpu->arch.vscr = t->vscr;
  350. #endif
  351. break;
  352. case MSR_VSX:
  353. #ifdef CONFIG_VSX
  354. __giveup_vsx(current);
  355. for (i = 0; i < ARRAY_SIZE(vcpu->arch.vsr); i++)
  356. vcpu_vsx[i] = thread_fpr[get_fpr_index(i) + 1];
  357. #endif
  358. break;
  359. default:
  360. BUG();
  361. }
  362. vcpu->arch.guest_owned_ext &= ~msr;
  363. current->thread.regs->msr &= ~msr;
  364. kvmppc_recalc_shadow_msr(vcpu);
  365. }
  366. static int kvmppc_read_inst(struct kvm_vcpu *vcpu)
  367. {
  368. ulong srr0 = kvmppc_get_pc(vcpu);
  369. u32 last_inst = kvmppc_get_last_inst(vcpu);
  370. int ret;
  371. ret = kvmppc_ld(vcpu, &srr0, sizeof(u32), &last_inst, false);
  372. if (ret == -ENOENT) {
  373. ulong msr = vcpu->arch.shared->msr;
  374. msr = kvmppc_set_field(msr, 33, 33, 1);
  375. msr = kvmppc_set_field(msr, 34, 36, 0);
  376. vcpu->arch.shared->msr = kvmppc_set_field(msr, 42, 47, 0);
  377. kvmppc_book3s_queue_irqprio(vcpu, BOOK3S_INTERRUPT_INST_STORAGE);
  378. return EMULATE_AGAIN;
  379. }
  380. return EMULATE_DONE;
  381. }
  382. static int kvmppc_check_ext(struct kvm_vcpu *vcpu, unsigned int exit_nr)
  383. {
  384. /* Need to do paired single emulation? */
  385. if (!(vcpu->arch.hflags & BOOK3S_HFLAG_PAIRED_SINGLE))
  386. return EMULATE_DONE;
  387. /* Read out the instruction */
  388. if (kvmppc_read_inst(vcpu) == EMULATE_DONE)
  389. /* Need to emulate */
  390. return EMULATE_FAIL;
  391. return EMULATE_AGAIN;
  392. }
  393. /* Handle external providers (FPU, Altivec, VSX) */
  394. static int kvmppc_handle_ext(struct kvm_vcpu *vcpu, unsigned int exit_nr,
  395. ulong msr)
  396. {
  397. struct thread_struct *t = &current->thread;
  398. u64 *vcpu_fpr = vcpu->arch.fpr;
  399. #ifdef CONFIG_VSX
  400. u64 *vcpu_vsx = vcpu->arch.vsr;
  401. #endif
  402. u64 *thread_fpr = (u64*)t->fpr;
  403. int i;
  404. /* When we have paired singles, we emulate in software */
  405. if (vcpu->arch.hflags & BOOK3S_HFLAG_PAIRED_SINGLE)
  406. return RESUME_GUEST;
  407. if (!(vcpu->arch.shared->msr & msr)) {
  408. kvmppc_book3s_queue_irqprio(vcpu, exit_nr);
  409. return RESUME_GUEST;
  410. }
  411. /* We already own the ext */
  412. if (vcpu->arch.guest_owned_ext & msr) {
  413. return RESUME_GUEST;
  414. }
  415. #ifdef DEBUG_EXT
  416. printk(KERN_INFO "Loading up ext 0x%lx\n", msr);
  417. #endif
  418. current->thread.regs->msr |= msr;
  419. switch (msr) {
  420. case MSR_FP:
  421. for (i = 0; i < ARRAY_SIZE(vcpu->arch.fpr); i++)
  422. thread_fpr[get_fpr_index(i)] = vcpu_fpr[i];
  423. t->fpscr.val = vcpu->arch.fpscr;
  424. t->fpexc_mode = 0;
  425. kvmppc_load_up_fpu();
  426. break;
  427. case MSR_VEC:
  428. #ifdef CONFIG_ALTIVEC
  429. memcpy(t->vr, vcpu->arch.vr, sizeof(vcpu->arch.vr));
  430. t->vscr = vcpu->arch.vscr;
  431. t->vrsave = -1;
  432. kvmppc_load_up_altivec();
  433. #endif
  434. break;
  435. case MSR_VSX:
  436. #ifdef CONFIG_VSX
  437. for (i = 0; i < ARRAY_SIZE(vcpu->arch.vsr); i++)
  438. thread_fpr[get_fpr_index(i) + 1] = vcpu_vsx[i];
  439. kvmppc_load_up_vsx();
  440. #endif
  441. break;
  442. default:
  443. BUG();
  444. }
  445. vcpu->arch.guest_owned_ext |= msr;
  446. kvmppc_recalc_shadow_msr(vcpu);
  447. return RESUME_GUEST;
  448. }
  449. int kvmppc_handle_exit(struct kvm_run *run, struct kvm_vcpu *vcpu,
  450. unsigned int exit_nr)
  451. {
  452. int r = RESUME_HOST;
  453. vcpu->stat.sum_exits++;
  454. run->exit_reason = KVM_EXIT_UNKNOWN;
  455. run->ready_for_interrupt_injection = 1;
  456. trace_kvm_book3s_exit(exit_nr, vcpu);
  457. preempt_enable();
  458. kvm_resched(vcpu);
  459. switch (exit_nr) {
  460. case BOOK3S_INTERRUPT_INST_STORAGE:
  461. {
  462. struct kvmppc_book3s_shadow_vcpu *svcpu = svcpu_get(vcpu);
  463. ulong shadow_srr1 = svcpu->shadow_srr1;
  464. vcpu->stat.pf_instruc++;
  465. #ifdef CONFIG_PPC_BOOK3S_32
  466. /* We set segments as unused segments when invalidating them. So
  467. * treat the respective fault as segment fault. */
  468. if (svcpu->sr[kvmppc_get_pc(vcpu) >> SID_SHIFT] == SR_INVALID) {
  469. kvmppc_mmu_map_segment(vcpu, kvmppc_get_pc(vcpu));
  470. r = RESUME_GUEST;
  471. svcpu_put(svcpu);
  472. break;
  473. }
  474. #endif
  475. svcpu_put(svcpu);
  476. /* only care about PTEG not found errors, but leave NX alone */
  477. if (shadow_srr1 & 0x40000000) {
  478. r = kvmppc_handle_pagefault(run, vcpu, kvmppc_get_pc(vcpu), exit_nr);
  479. vcpu->stat.sp_instruc++;
  480. } else if (vcpu->arch.mmu.is_dcbz32(vcpu) &&
  481. (!(vcpu->arch.hflags & BOOK3S_HFLAG_DCBZ32))) {
  482. /*
  483. * XXX If we do the dcbz hack we use the NX bit to flush&patch the page,
  484. * so we can't use the NX bit inside the guest. Let's cross our fingers,
  485. * that no guest that needs the dcbz hack does NX.
  486. */
  487. kvmppc_mmu_pte_flush(vcpu, kvmppc_get_pc(vcpu), ~0xFFFUL);
  488. r = RESUME_GUEST;
  489. } else {
  490. vcpu->arch.shared->msr |= shadow_srr1 & 0x58000000;
  491. kvmppc_book3s_queue_irqprio(vcpu, exit_nr);
  492. r = RESUME_GUEST;
  493. }
  494. break;
  495. }
  496. case BOOK3S_INTERRUPT_DATA_STORAGE:
  497. {
  498. ulong dar = kvmppc_get_fault_dar(vcpu);
  499. struct kvmppc_book3s_shadow_vcpu *svcpu = svcpu_get(vcpu);
  500. u32 fault_dsisr = svcpu->fault_dsisr;
  501. vcpu->stat.pf_storage++;
  502. #ifdef CONFIG_PPC_BOOK3S_32
  503. /* We set segments as unused segments when invalidating them. So
  504. * treat the respective fault as segment fault. */
  505. if ((svcpu->sr[dar >> SID_SHIFT]) == SR_INVALID) {
  506. kvmppc_mmu_map_segment(vcpu, dar);
  507. r = RESUME_GUEST;
  508. svcpu_put(svcpu);
  509. break;
  510. }
  511. #endif
  512. svcpu_put(svcpu);
  513. /* The only case we need to handle is missing shadow PTEs */
  514. if (fault_dsisr & DSISR_NOHPTE) {
  515. r = kvmppc_handle_pagefault(run, vcpu, dar, exit_nr);
  516. } else {
  517. vcpu->arch.shared->dar = dar;
  518. vcpu->arch.shared->dsisr = fault_dsisr;
  519. kvmppc_book3s_queue_irqprio(vcpu, exit_nr);
  520. r = RESUME_GUEST;
  521. }
  522. break;
  523. }
  524. case BOOK3S_INTERRUPT_DATA_SEGMENT:
  525. if (kvmppc_mmu_map_segment(vcpu, kvmppc_get_fault_dar(vcpu)) < 0) {
  526. vcpu->arch.shared->dar = kvmppc_get_fault_dar(vcpu);
  527. kvmppc_book3s_queue_irqprio(vcpu,
  528. BOOK3S_INTERRUPT_DATA_SEGMENT);
  529. }
  530. r = RESUME_GUEST;
  531. break;
  532. case BOOK3S_INTERRUPT_INST_SEGMENT:
  533. if (kvmppc_mmu_map_segment(vcpu, kvmppc_get_pc(vcpu)) < 0) {
  534. kvmppc_book3s_queue_irqprio(vcpu,
  535. BOOK3S_INTERRUPT_INST_SEGMENT);
  536. }
  537. r = RESUME_GUEST;
  538. break;
  539. /* We're good on these - the host merely wanted to get our attention */
  540. case BOOK3S_INTERRUPT_DECREMENTER:
  541. vcpu->stat.dec_exits++;
  542. r = RESUME_GUEST;
  543. break;
  544. case BOOK3S_INTERRUPT_EXTERNAL:
  545. vcpu->stat.ext_intr_exits++;
  546. r = RESUME_GUEST;
  547. break;
  548. case BOOK3S_INTERRUPT_PERFMON:
  549. r = RESUME_GUEST;
  550. break;
  551. case BOOK3S_INTERRUPT_PROGRAM:
  552. {
  553. enum emulation_result er;
  554. struct kvmppc_book3s_shadow_vcpu *svcpu;
  555. ulong flags;
  556. program_interrupt:
  557. svcpu = svcpu_get(vcpu);
  558. flags = svcpu->shadow_srr1 & 0x1f0000ull;
  559. svcpu_put(svcpu);
  560. if (vcpu->arch.shared->msr & MSR_PR) {
  561. #ifdef EXIT_DEBUG
  562. printk(KERN_INFO "Userspace triggered 0x700 exception at 0x%lx (0x%x)\n", kvmppc_get_pc(vcpu), kvmppc_get_last_inst(vcpu));
  563. #endif
  564. if ((kvmppc_get_last_inst(vcpu) & 0xff0007ff) !=
  565. (INS_DCBZ & 0xfffffff7)) {
  566. kvmppc_core_queue_program(vcpu, flags);
  567. r = RESUME_GUEST;
  568. break;
  569. }
  570. }
  571. vcpu->stat.emulated_inst_exits++;
  572. er = kvmppc_emulate_instruction(run, vcpu);
  573. switch (er) {
  574. case EMULATE_DONE:
  575. r = RESUME_GUEST_NV;
  576. break;
  577. case EMULATE_AGAIN:
  578. r = RESUME_GUEST;
  579. break;
  580. case EMULATE_FAIL:
  581. printk(KERN_CRIT "%s: emulation at %lx failed (%08x)\n",
  582. __func__, kvmppc_get_pc(vcpu), kvmppc_get_last_inst(vcpu));
  583. kvmppc_core_queue_program(vcpu, flags);
  584. r = RESUME_GUEST;
  585. break;
  586. case EMULATE_DO_MMIO:
  587. run->exit_reason = KVM_EXIT_MMIO;
  588. r = RESUME_HOST_NV;
  589. break;
  590. default:
  591. BUG();
  592. }
  593. break;
  594. }
  595. case BOOK3S_INTERRUPT_SYSCALL:
  596. if (vcpu->arch.papr_enabled &&
  597. (kvmppc_get_last_inst(vcpu) == 0x44000022) &&
  598. !(vcpu->arch.shared->msr & MSR_PR)) {
  599. /* SC 1 papr hypercalls */
  600. ulong cmd = kvmppc_get_gpr(vcpu, 3);
  601. int i;
  602. #ifdef CONFIG_KVM_BOOK3S_64_PR
  603. if (kvmppc_h_pr(vcpu, cmd) == EMULATE_DONE) {
  604. r = RESUME_GUEST;
  605. break;
  606. }
  607. #endif
  608. run->papr_hcall.nr = cmd;
  609. for (i = 0; i < 9; ++i) {
  610. ulong gpr = kvmppc_get_gpr(vcpu, 4 + i);
  611. run->papr_hcall.args[i] = gpr;
  612. }
  613. run->exit_reason = KVM_EXIT_PAPR_HCALL;
  614. vcpu->arch.hcall_needed = 1;
  615. r = RESUME_HOST;
  616. } else if (vcpu->arch.osi_enabled &&
  617. (((u32)kvmppc_get_gpr(vcpu, 3)) == OSI_SC_MAGIC_R3) &&
  618. (((u32)kvmppc_get_gpr(vcpu, 4)) == OSI_SC_MAGIC_R4)) {
  619. /* MOL hypercalls */
  620. u64 *gprs = run->osi.gprs;
  621. int i;
  622. run->exit_reason = KVM_EXIT_OSI;
  623. for (i = 0; i < 32; i++)
  624. gprs[i] = kvmppc_get_gpr(vcpu, i);
  625. vcpu->arch.osi_needed = 1;
  626. r = RESUME_HOST_NV;
  627. } else if (!(vcpu->arch.shared->msr & MSR_PR) &&
  628. (((u32)kvmppc_get_gpr(vcpu, 0)) == KVM_SC_MAGIC_R0)) {
  629. /* KVM PV hypercalls */
  630. kvmppc_set_gpr(vcpu, 3, kvmppc_kvm_pv(vcpu));
  631. r = RESUME_GUEST;
  632. } else {
  633. /* Guest syscalls */
  634. vcpu->stat.syscall_exits++;
  635. kvmppc_book3s_queue_irqprio(vcpu, exit_nr);
  636. r = RESUME_GUEST;
  637. }
  638. break;
  639. case BOOK3S_INTERRUPT_FP_UNAVAIL:
  640. case BOOK3S_INTERRUPT_ALTIVEC:
  641. case BOOK3S_INTERRUPT_VSX:
  642. {
  643. int ext_msr = 0;
  644. switch (exit_nr) {
  645. case BOOK3S_INTERRUPT_FP_UNAVAIL: ext_msr = MSR_FP; break;
  646. case BOOK3S_INTERRUPT_ALTIVEC: ext_msr = MSR_VEC; break;
  647. case BOOK3S_INTERRUPT_VSX: ext_msr = MSR_VSX; break;
  648. }
  649. switch (kvmppc_check_ext(vcpu, exit_nr)) {
  650. case EMULATE_DONE:
  651. /* everything ok - let's enable the ext */
  652. r = kvmppc_handle_ext(vcpu, exit_nr, ext_msr);
  653. break;
  654. case EMULATE_FAIL:
  655. /* we need to emulate this instruction */
  656. goto program_interrupt;
  657. break;
  658. default:
  659. /* nothing to worry about - go again */
  660. break;
  661. }
  662. break;
  663. }
  664. case BOOK3S_INTERRUPT_ALIGNMENT:
  665. if (kvmppc_read_inst(vcpu) == EMULATE_DONE) {
  666. vcpu->arch.shared->dsisr = kvmppc_alignment_dsisr(vcpu,
  667. kvmppc_get_last_inst(vcpu));
  668. vcpu->arch.shared->dar = kvmppc_alignment_dar(vcpu,
  669. kvmppc_get_last_inst(vcpu));
  670. kvmppc_book3s_queue_irqprio(vcpu, exit_nr);
  671. }
  672. r = RESUME_GUEST;
  673. break;
  674. case BOOK3S_INTERRUPT_MACHINE_CHECK:
  675. case BOOK3S_INTERRUPT_TRACE:
  676. kvmppc_book3s_queue_irqprio(vcpu, exit_nr);
  677. r = RESUME_GUEST;
  678. break;
  679. default:
  680. {
  681. struct kvmppc_book3s_shadow_vcpu *svcpu = svcpu_get(vcpu);
  682. ulong shadow_srr1 = svcpu->shadow_srr1;
  683. svcpu_put(svcpu);
  684. /* Ugh - bork here! What did we get? */
  685. printk(KERN_EMERG "exit_nr=0x%x | pc=0x%lx | msr=0x%lx\n",
  686. exit_nr, kvmppc_get_pc(vcpu), shadow_srr1);
  687. r = RESUME_HOST;
  688. BUG();
  689. break;
  690. }
  691. }
  692. preempt_disable();
  693. if (!(r & RESUME_HOST)) {
  694. /* To avoid clobbering exit_reason, only check for signals if
  695. * we aren't already exiting to userspace for some other
  696. * reason. */
  697. /*
  698. * Interrupts could be timers for the guest which we have to
  699. * inject again, so let's postpone them until we're in the guest
  700. * and if we really did time things so badly, then we just exit
  701. * again due to a host external interrupt.
  702. */
  703. __hard_irq_disable();
  704. if (signal_pending(current)) {
  705. __hard_irq_enable();
  706. #ifdef EXIT_DEBUG
  707. printk(KERN_EMERG "KVM: Going back to host\n");
  708. #endif
  709. vcpu->stat.signal_exits++;
  710. run->exit_reason = KVM_EXIT_INTR;
  711. r = -EINTR;
  712. } else {
  713. /* In case an interrupt came in that was triggered
  714. * from userspace (like DEC), we need to check what
  715. * to inject now! */
  716. kvmppc_core_prepare_to_enter(vcpu);
  717. }
  718. }
  719. trace_kvm_book3s_reenter(r, vcpu);
  720. return r;
  721. }
  722. int kvm_arch_vcpu_ioctl_get_sregs(struct kvm_vcpu *vcpu,
  723. struct kvm_sregs *sregs)
  724. {
  725. struct kvmppc_vcpu_book3s *vcpu3s = to_book3s(vcpu);
  726. int i;
  727. sregs->pvr = vcpu->arch.pvr;
  728. sregs->u.s.sdr1 = to_book3s(vcpu)->sdr1;
  729. if (vcpu->arch.hflags & BOOK3S_HFLAG_SLB) {
  730. for (i = 0; i < 64; i++) {
  731. sregs->u.s.ppc64.slb[i].slbe = vcpu->arch.slb[i].orige | i;
  732. sregs->u.s.ppc64.slb[i].slbv = vcpu->arch.slb[i].origv;
  733. }
  734. } else {
  735. for (i = 0; i < 16; i++)
  736. sregs->u.s.ppc32.sr[i] = vcpu->arch.shared->sr[i];
  737. for (i = 0; i < 8; i++) {
  738. sregs->u.s.ppc32.ibat[i] = vcpu3s->ibat[i].raw;
  739. sregs->u.s.ppc32.dbat[i] = vcpu3s->dbat[i].raw;
  740. }
  741. }
  742. return 0;
  743. }
  744. int kvm_arch_vcpu_ioctl_set_sregs(struct kvm_vcpu *vcpu,
  745. struct kvm_sregs *sregs)
  746. {
  747. struct kvmppc_vcpu_book3s *vcpu3s = to_book3s(vcpu);
  748. int i;
  749. kvmppc_set_pvr(vcpu, sregs->pvr);
  750. vcpu3s->sdr1 = sregs->u.s.sdr1;
  751. if (vcpu->arch.hflags & BOOK3S_HFLAG_SLB) {
  752. for (i = 0; i < 64; i++) {
  753. vcpu->arch.mmu.slbmte(vcpu, sregs->u.s.ppc64.slb[i].slbv,
  754. sregs->u.s.ppc64.slb[i].slbe);
  755. }
  756. } else {
  757. for (i = 0; i < 16; i++) {
  758. vcpu->arch.mmu.mtsrin(vcpu, i, sregs->u.s.ppc32.sr[i]);
  759. }
  760. for (i = 0; i < 8; i++) {
  761. kvmppc_set_bat(vcpu, &(vcpu3s->ibat[i]), false,
  762. (u32)sregs->u.s.ppc32.ibat[i]);
  763. kvmppc_set_bat(vcpu, &(vcpu3s->ibat[i]), true,
  764. (u32)(sregs->u.s.ppc32.ibat[i] >> 32));
  765. kvmppc_set_bat(vcpu, &(vcpu3s->dbat[i]), false,
  766. (u32)sregs->u.s.ppc32.dbat[i]);
  767. kvmppc_set_bat(vcpu, &(vcpu3s->dbat[i]), true,
  768. (u32)(sregs->u.s.ppc32.dbat[i] >> 32));
  769. }
  770. }
  771. /* Flush the MMU after messing with the segments */
  772. kvmppc_mmu_pte_flush(vcpu, 0, 0);
  773. return 0;
  774. }
  775. int kvm_vcpu_ioctl_get_one_reg(struct kvm_vcpu *vcpu, struct kvm_one_reg *reg)
  776. {
  777. int r = -EINVAL;
  778. switch (reg->id) {
  779. case KVM_REG_PPC_HIOR:
  780. r = copy_to_user((u64 __user *)(long)reg->addr,
  781. &to_book3s(vcpu)->hior, sizeof(u64));
  782. break;
  783. default:
  784. break;
  785. }
  786. return r;
  787. }
  788. int kvm_vcpu_ioctl_set_one_reg(struct kvm_vcpu *vcpu, struct kvm_one_reg *reg)
  789. {
  790. int r = -EINVAL;
  791. switch (reg->id) {
  792. case KVM_REG_PPC_HIOR:
  793. r = copy_from_user(&to_book3s(vcpu)->hior,
  794. (u64 __user *)(long)reg->addr, sizeof(u64));
  795. if (!r)
  796. to_book3s(vcpu)->hior_explicit = true;
  797. break;
  798. default:
  799. break;
  800. }
  801. return r;
  802. }
  803. int kvmppc_core_check_processor_compat(void)
  804. {
  805. return 0;
  806. }
  807. struct kvm_vcpu *kvmppc_core_vcpu_create(struct kvm *kvm, unsigned int id)
  808. {
  809. struct kvmppc_vcpu_book3s *vcpu_book3s;
  810. struct kvm_vcpu *vcpu;
  811. int err = -ENOMEM;
  812. unsigned long p;
  813. vcpu_book3s = vzalloc(sizeof(struct kvmppc_vcpu_book3s));
  814. if (!vcpu_book3s)
  815. goto out;
  816. vcpu_book3s->shadow_vcpu = (struct kvmppc_book3s_shadow_vcpu *)
  817. kzalloc(sizeof(*vcpu_book3s->shadow_vcpu), GFP_KERNEL);
  818. if (!vcpu_book3s->shadow_vcpu)
  819. goto free_vcpu;
  820. vcpu = &vcpu_book3s->vcpu;
  821. err = kvm_vcpu_init(vcpu, kvm, id);
  822. if (err)
  823. goto free_shadow_vcpu;
  824. p = __get_free_page(GFP_KERNEL|__GFP_ZERO);
  825. /* the real shared page fills the last 4k of our page */
  826. vcpu->arch.shared = (void*)(p + PAGE_SIZE - 4096);
  827. if (!p)
  828. goto uninit_vcpu;
  829. #ifdef CONFIG_PPC_BOOK3S_64
  830. /* default to book3s_64 (970fx) */
  831. vcpu->arch.pvr = 0x3C0301;
  832. #else
  833. /* default to book3s_32 (750) */
  834. vcpu->arch.pvr = 0x84202;
  835. #endif
  836. kvmppc_set_pvr(vcpu, vcpu->arch.pvr);
  837. vcpu->arch.slb_nr = 64;
  838. vcpu->arch.shadow_msr = MSR_USER64;
  839. err = kvmppc_mmu_init(vcpu);
  840. if (err < 0)
  841. goto uninit_vcpu;
  842. return vcpu;
  843. uninit_vcpu:
  844. kvm_vcpu_uninit(vcpu);
  845. free_shadow_vcpu:
  846. kfree(vcpu_book3s->shadow_vcpu);
  847. free_vcpu:
  848. vfree(vcpu_book3s);
  849. out:
  850. return ERR_PTR(err);
  851. }
  852. void kvmppc_core_vcpu_free(struct kvm_vcpu *vcpu)
  853. {
  854. struct kvmppc_vcpu_book3s *vcpu_book3s = to_book3s(vcpu);
  855. free_page((unsigned long)vcpu->arch.shared & PAGE_MASK);
  856. kvm_vcpu_uninit(vcpu);
  857. kfree(vcpu_book3s->shadow_vcpu);
  858. vfree(vcpu_book3s);
  859. }
  860. int kvmppc_vcpu_run(struct kvm_run *kvm_run, struct kvm_vcpu *vcpu)
  861. {
  862. int ret;
  863. double fpr[32][TS_FPRWIDTH];
  864. unsigned int fpscr;
  865. int fpexc_mode;
  866. #ifdef CONFIG_ALTIVEC
  867. vector128 vr[32];
  868. vector128 vscr;
  869. unsigned long uninitialized_var(vrsave);
  870. int used_vr;
  871. #endif
  872. #ifdef CONFIG_VSX
  873. int used_vsr;
  874. #endif
  875. ulong ext_msr;
  876. preempt_disable();
  877. /* Check if we can run the vcpu at all */
  878. if (!vcpu->arch.sane) {
  879. kvm_run->exit_reason = KVM_EXIT_INTERNAL_ERROR;
  880. ret = -EINVAL;
  881. goto out;
  882. }
  883. kvmppc_core_prepare_to_enter(vcpu);
  884. /*
  885. * Interrupts could be timers for the guest which we have to inject
  886. * again, so let's postpone them until we're in the guest and if we
  887. * really did time things so badly, then we just exit again due to
  888. * a host external interrupt.
  889. */
  890. __hard_irq_disable();
  891. /* No need to go into the guest when all we do is going out */
  892. if (signal_pending(current)) {
  893. __hard_irq_enable();
  894. kvm_run->exit_reason = KVM_EXIT_INTR;
  895. ret = -EINTR;
  896. goto out;
  897. }
  898. /* Save FPU state in stack */
  899. if (current->thread.regs->msr & MSR_FP)
  900. giveup_fpu(current);
  901. memcpy(fpr, current->thread.fpr, sizeof(current->thread.fpr));
  902. fpscr = current->thread.fpscr.val;
  903. fpexc_mode = current->thread.fpexc_mode;
  904. #ifdef CONFIG_ALTIVEC
  905. /* Save Altivec state in stack */
  906. used_vr = current->thread.used_vr;
  907. if (used_vr) {
  908. if (current->thread.regs->msr & MSR_VEC)
  909. giveup_altivec(current);
  910. memcpy(vr, current->thread.vr, sizeof(current->thread.vr));
  911. vscr = current->thread.vscr;
  912. vrsave = current->thread.vrsave;
  913. }
  914. #endif
  915. #ifdef CONFIG_VSX
  916. /* Save VSX state in stack */
  917. used_vsr = current->thread.used_vsr;
  918. if (used_vsr && (current->thread.regs->msr & MSR_VSX))
  919. __giveup_vsx(current);
  920. #endif
  921. /* Remember the MSR with disabled extensions */
  922. ext_msr = current->thread.regs->msr;
  923. /* Preload FPU if it's enabled */
  924. if (vcpu->arch.shared->msr & MSR_FP)
  925. kvmppc_handle_ext(vcpu, BOOK3S_INTERRUPT_FP_UNAVAIL, MSR_FP);
  926. kvm_guest_enter();
  927. ret = __kvmppc_vcpu_run(kvm_run, vcpu);
  928. kvm_guest_exit();
  929. current->thread.regs->msr = ext_msr;
  930. /* Make sure we save the guest FPU/Altivec/VSX state */
  931. kvmppc_giveup_ext(vcpu, MSR_FP);
  932. kvmppc_giveup_ext(vcpu, MSR_VEC);
  933. kvmppc_giveup_ext(vcpu, MSR_VSX);
  934. /* Restore FPU state from stack */
  935. memcpy(current->thread.fpr, fpr, sizeof(current->thread.fpr));
  936. current->thread.fpscr.val = fpscr;
  937. current->thread.fpexc_mode = fpexc_mode;
  938. #ifdef CONFIG_ALTIVEC
  939. /* Restore Altivec state from stack */
  940. if (used_vr && current->thread.used_vr) {
  941. memcpy(current->thread.vr, vr, sizeof(current->thread.vr));
  942. current->thread.vscr = vscr;
  943. current->thread.vrsave = vrsave;
  944. }
  945. current->thread.used_vr = used_vr;
  946. #endif
  947. #ifdef CONFIG_VSX
  948. current->thread.used_vsr = used_vsr;
  949. #endif
  950. out:
  951. preempt_enable();
  952. return ret;
  953. }
  954. /*
  955. * Get (and clear) the dirty memory log for a memory slot.
  956. */
  957. int kvm_vm_ioctl_get_dirty_log(struct kvm *kvm,
  958. struct kvm_dirty_log *log)
  959. {
  960. struct kvm_memory_slot *memslot;
  961. struct kvm_vcpu *vcpu;
  962. ulong ga, ga_end;
  963. int is_dirty = 0;
  964. int r;
  965. unsigned long n;
  966. mutex_lock(&kvm->slots_lock);
  967. r = kvm_get_dirty_log(kvm, log, &is_dirty);
  968. if (r)
  969. goto out;
  970. /* If nothing is dirty, don't bother messing with page tables. */
  971. if (is_dirty) {
  972. memslot = id_to_memslot(kvm->memslots, log->slot);
  973. ga = memslot->base_gfn << PAGE_SHIFT;
  974. ga_end = ga + (memslot->npages << PAGE_SHIFT);
  975. kvm_for_each_vcpu(n, vcpu, kvm)
  976. kvmppc_mmu_pte_pflush(vcpu, ga, ga_end);
  977. n = kvm_dirty_bitmap_bytes(memslot);
  978. memset(memslot->dirty_bitmap, 0, n);
  979. }
  980. r = 0;
  981. out:
  982. mutex_unlock(&kvm->slots_lock);
  983. return r;
  984. }
  985. int kvmppc_core_prepare_memory_region(struct kvm *kvm,
  986. struct kvm_userspace_memory_region *mem)
  987. {
  988. return 0;
  989. }
  990. void kvmppc_core_commit_memory_region(struct kvm *kvm,
  991. struct kvm_userspace_memory_region *mem)
  992. {
  993. }
  994. int kvmppc_core_init_vm(struct kvm *kvm)
  995. {
  996. return 0;
  997. }
  998. void kvmppc_core_destroy_vm(struct kvm *kvm)
  999. {
  1000. }
  1001. static int kvmppc_book3s_init(void)
  1002. {
  1003. int r;
  1004. r = kvm_init(NULL, sizeof(struct kvmppc_vcpu_book3s), 0,
  1005. THIS_MODULE);
  1006. if (r)
  1007. return r;
  1008. r = kvmppc_mmu_hpte_sysinit();
  1009. return r;
  1010. }
  1011. static void kvmppc_book3s_exit(void)
  1012. {
  1013. kvmppc_mmu_hpte_sysexit();
  1014. kvm_exit();
  1015. }
  1016. module_init(kvmppc_book3s_init);
  1017. module_exit(kvmppc_book3s_exit);