booke.c 33 KB

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  1. /*
  2. * This program is free software; you can redistribute it and/or modify
  3. * it under the terms of the GNU General Public License, version 2, as
  4. * published by the Free Software Foundation.
  5. *
  6. * This program is distributed in the hope that it will be useful,
  7. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  8. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  9. * GNU General Public License for more details.
  10. *
  11. * You should have received a copy of the GNU General Public License
  12. * along with this program; if not, write to the Free Software
  13. * Foundation, 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301, USA.
  14. *
  15. * Copyright IBM Corp. 2007
  16. * Copyright 2010-2011 Freescale Semiconductor, Inc.
  17. *
  18. * Authors: Hollis Blanchard <hollisb@us.ibm.com>
  19. * Christian Ehrhardt <ehrhardt@linux.vnet.ibm.com>
  20. * Scott Wood <scottwood@freescale.com>
  21. * Varun Sethi <varun.sethi@freescale.com>
  22. */
  23. #include <linux/errno.h>
  24. #include <linux/err.h>
  25. #include <linux/kvm_host.h>
  26. #include <linux/gfp.h>
  27. #include <linux/module.h>
  28. #include <linux/vmalloc.h>
  29. #include <linux/fs.h>
  30. #include <asm/cputable.h>
  31. #include <asm/uaccess.h>
  32. #include <asm/kvm_ppc.h>
  33. #include <asm/cacheflush.h>
  34. #include <asm/dbell.h>
  35. #include <asm/hw_irq.h>
  36. #include <asm/irq.h>
  37. #include "timing.h"
  38. #include "booke.h"
  39. unsigned long kvmppc_booke_handlers;
  40. #define VM_STAT(x) offsetof(struct kvm, stat.x), KVM_STAT_VM
  41. #define VCPU_STAT(x) offsetof(struct kvm_vcpu, stat.x), KVM_STAT_VCPU
  42. struct kvm_stats_debugfs_item debugfs_entries[] = {
  43. { "mmio", VCPU_STAT(mmio_exits) },
  44. { "dcr", VCPU_STAT(dcr_exits) },
  45. { "sig", VCPU_STAT(signal_exits) },
  46. { "itlb_r", VCPU_STAT(itlb_real_miss_exits) },
  47. { "itlb_v", VCPU_STAT(itlb_virt_miss_exits) },
  48. { "dtlb_r", VCPU_STAT(dtlb_real_miss_exits) },
  49. { "dtlb_v", VCPU_STAT(dtlb_virt_miss_exits) },
  50. { "sysc", VCPU_STAT(syscall_exits) },
  51. { "isi", VCPU_STAT(isi_exits) },
  52. { "dsi", VCPU_STAT(dsi_exits) },
  53. { "inst_emu", VCPU_STAT(emulated_inst_exits) },
  54. { "dec", VCPU_STAT(dec_exits) },
  55. { "ext_intr", VCPU_STAT(ext_intr_exits) },
  56. { "halt_wakeup", VCPU_STAT(halt_wakeup) },
  57. { "doorbell", VCPU_STAT(dbell_exits) },
  58. { "guest doorbell", VCPU_STAT(gdbell_exits) },
  59. { NULL }
  60. };
  61. /* TODO: use vcpu_printf() */
  62. void kvmppc_dump_vcpu(struct kvm_vcpu *vcpu)
  63. {
  64. int i;
  65. printk("pc: %08lx msr: %08llx\n", vcpu->arch.pc, vcpu->arch.shared->msr);
  66. printk("lr: %08lx ctr: %08lx\n", vcpu->arch.lr, vcpu->arch.ctr);
  67. printk("srr0: %08llx srr1: %08llx\n", vcpu->arch.shared->srr0,
  68. vcpu->arch.shared->srr1);
  69. printk("exceptions: %08lx\n", vcpu->arch.pending_exceptions);
  70. for (i = 0; i < 32; i += 4) {
  71. printk("gpr%02d: %08lx %08lx %08lx %08lx\n", i,
  72. kvmppc_get_gpr(vcpu, i),
  73. kvmppc_get_gpr(vcpu, i+1),
  74. kvmppc_get_gpr(vcpu, i+2),
  75. kvmppc_get_gpr(vcpu, i+3));
  76. }
  77. }
  78. #ifdef CONFIG_SPE
  79. void kvmppc_vcpu_disable_spe(struct kvm_vcpu *vcpu)
  80. {
  81. preempt_disable();
  82. enable_kernel_spe();
  83. kvmppc_save_guest_spe(vcpu);
  84. vcpu->arch.shadow_msr &= ~MSR_SPE;
  85. preempt_enable();
  86. }
  87. static void kvmppc_vcpu_enable_spe(struct kvm_vcpu *vcpu)
  88. {
  89. preempt_disable();
  90. enable_kernel_spe();
  91. kvmppc_load_guest_spe(vcpu);
  92. vcpu->arch.shadow_msr |= MSR_SPE;
  93. preempt_enable();
  94. }
  95. static void kvmppc_vcpu_sync_spe(struct kvm_vcpu *vcpu)
  96. {
  97. if (vcpu->arch.shared->msr & MSR_SPE) {
  98. if (!(vcpu->arch.shadow_msr & MSR_SPE))
  99. kvmppc_vcpu_enable_spe(vcpu);
  100. } else if (vcpu->arch.shadow_msr & MSR_SPE) {
  101. kvmppc_vcpu_disable_spe(vcpu);
  102. }
  103. }
  104. #else
  105. static void kvmppc_vcpu_sync_spe(struct kvm_vcpu *vcpu)
  106. {
  107. }
  108. #endif
  109. /*
  110. * Helper function for "full" MSR writes. No need to call this if only
  111. * EE/CE/ME/DE/RI are changing.
  112. */
  113. void kvmppc_set_msr(struct kvm_vcpu *vcpu, u32 new_msr)
  114. {
  115. u32 old_msr = vcpu->arch.shared->msr;
  116. #ifdef CONFIG_KVM_BOOKE_HV
  117. new_msr |= MSR_GS;
  118. #endif
  119. vcpu->arch.shared->msr = new_msr;
  120. kvmppc_mmu_msr_notify(vcpu, old_msr);
  121. kvmppc_vcpu_sync_spe(vcpu);
  122. }
  123. static void kvmppc_booke_queue_irqprio(struct kvm_vcpu *vcpu,
  124. unsigned int priority)
  125. {
  126. set_bit(priority, &vcpu->arch.pending_exceptions);
  127. }
  128. static void kvmppc_core_queue_dtlb_miss(struct kvm_vcpu *vcpu,
  129. ulong dear_flags, ulong esr_flags)
  130. {
  131. vcpu->arch.queued_dear = dear_flags;
  132. vcpu->arch.queued_esr = esr_flags;
  133. kvmppc_booke_queue_irqprio(vcpu, BOOKE_IRQPRIO_DTLB_MISS);
  134. }
  135. static void kvmppc_core_queue_data_storage(struct kvm_vcpu *vcpu,
  136. ulong dear_flags, ulong esr_flags)
  137. {
  138. vcpu->arch.queued_dear = dear_flags;
  139. vcpu->arch.queued_esr = esr_flags;
  140. kvmppc_booke_queue_irqprio(vcpu, BOOKE_IRQPRIO_DATA_STORAGE);
  141. }
  142. static void kvmppc_core_queue_inst_storage(struct kvm_vcpu *vcpu,
  143. ulong esr_flags)
  144. {
  145. vcpu->arch.queued_esr = esr_flags;
  146. kvmppc_booke_queue_irqprio(vcpu, BOOKE_IRQPRIO_INST_STORAGE);
  147. }
  148. void kvmppc_core_queue_program(struct kvm_vcpu *vcpu, ulong esr_flags)
  149. {
  150. vcpu->arch.queued_esr = esr_flags;
  151. kvmppc_booke_queue_irqprio(vcpu, BOOKE_IRQPRIO_PROGRAM);
  152. }
  153. void kvmppc_core_queue_dec(struct kvm_vcpu *vcpu)
  154. {
  155. kvmppc_booke_queue_irqprio(vcpu, BOOKE_IRQPRIO_DECREMENTER);
  156. }
  157. int kvmppc_core_pending_dec(struct kvm_vcpu *vcpu)
  158. {
  159. return test_bit(BOOKE_IRQPRIO_DECREMENTER, &vcpu->arch.pending_exceptions);
  160. }
  161. void kvmppc_core_dequeue_dec(struct kvm_vcpu *vcpu)
  162. {
  163. clear_bit(BOOKE_IRQPRIO_DECREMENTER, &vcpu->arch.pending_exceptions);
  164. }
  165. void kvmppc_core_queue_external(struct kvm_vcpu *vcpu,
  166. struct kvm_interrupt *irq)
  167. {
  168. unsigned int prio = BOOKE_IRQPRIO_EXTERNAL;
  169. if (irq->irq == KVM_INTERRUPT_SET_LEVEL)
  170. prio = BOOKE_IRQPRIO_EXTERNAL_LEVEL;
  171. kvmppc_booke_queue_irqprio(vcpu, prio);
  172. }
  173. void kvmppc_core_dequeue_external(struct kvm_vcpu *vcpu,
  174. struct kvm_interrupt *irq)
  175. {
  176. clear_bit(BOOKE_IRQPRIO_EXTERNAL, &vcpu->arch.pending_exceptions);
  177. clear_bit(BOOKE_IRQPRIO_EXTERNAL_LEVEL, &vcpu->arch.pending_exceptions);
  178. }
  179. static void set_guest_srr(struct kvm_vcpu *vcpu, unsigned long srr0, u32 srr1)
  180. {
  181. #ifdef CONFIG_KVM_BOOKE_HV
  182. mtspr(SPRN_GSRR0, srr0);
  183. mtspr(SPRN_GSRR1, srr1);
  184. #else
  185. vcpu->arch.shared->srr0 = srr0;
  186. vcpu->arch.shared->srr1 = srr1;
  187. #endif
  188. }
  189. static void set_guest_csrr(struct kvm_vcpu *vcpu, unsigned long srr0, u32 srr1)
  190. {
  191. vcpu->arch.csrr0 = srr0;
  192. vcpu->arch.csrr1 = srr1;
  193. }
  194. static void set_guest_dsrr(struct kvm_vcpu *vcpu, unsigned long srr0, u32 srr1)
  195. {
  196. if (cpu_has_feature(CPU_FTR_DEBUG_LVL_EXC)) {
  197. vcpu->arch.dsrr0 = srr0;
  198. vcpu->arch.dsrr1 = srr1;
  199. } else {
  200. set_guest_csrr(vcpu, srr0, srr1);
  201. }
  202. }
  203. static void set_guest_mcsrr(struct kvm_vcpu *vcpu, unsigned long srr0, u32 srr1)
  204. {
  205. vcpu->arch.mcsrr0 = srr0;
  206. vcpu->arch.mcsrr1 = srr1;
  207. }
  208. static unsigned long get_guest_dear(struct kvm_vcpu *vcpu)
  209. {
  210. #ifdef CONFIG_KVM_BOOKE_HV
  211. return mfspr(SPRN_GDEAR);
  212. #else
  213. return vcpu->arch.shared->dar;
  214. #endif
  215. }
  216. static void set_guest_dear(struct kvm_vcpu *vcpu, unsigned long dear)
  217. {
  218. #ifdef CONFIG_KVM_BOOKE_HV
  219. mtspr(SPRN_GDEAR, dear);
  220. #else
  221. vcpu->arch.shared->dar = dear;
  222. #endif
  223. }
  224. static unsigned long get_guest_esr(struct kvm_vcpu *vcpu)
  225. {
  226. #ifdef CONFIG_KVM_BOOKE_HV
  227. return mfspr(SPRN_GESR);
  228. #else
  229. return vcpu->arch.shared->esr;
  230. #endif
  231. }
  232. static void set_guest_esr(struct kvm_vcpu *vcpu, u32 esr)
  233. {
  234. #ifdef CONFIG_KVM_BOOKE_HV
  235. mtspr(SPRN_GESR, esr);
  236. #else
  237. vcpu->arch.shared->esr = esr;
  238. #endif
  239. }
  240. /* Deliver the interrupt of the corresponding priority, if possible. */
  241. static int kvmppc_booke_irqprio_deliver(struct kvm_vcpu *vcpu,
  242. unsigned int priority)
  243. {
  244. int allowed = 0;
  245. ulong msr_mask = 0;
  246. bool update_esr = false, update_dear = false;
  247. ulong crit_raw = vcpu->arch.shared->critical;
  248. ulong crit_r1 = kvmppc_get_gpr(vcpu, 1);
  249. bool crit;
  250. bool keep_irq = false;
  251. enum int_class int_class;
  252. /* Truncate crit indicators in 32 bit mode */
  253. if (!(vcpu->arch.shared->msr & MSR_SF)) {
  254. crit_raw &= 0xffffffff;
  255. crit_r1 &= 0xffffffff;
  256. }
  257. /* Critical section when crit == r1 */
  258. crit = (crit_raw == crit_r1);
  259. /* ... and we're in supervisor mode */
  260. crit = crit && !(vcpu->arch.shared->msr & MSR_PR);
  261. if (priority == BOOKE_IRQPRIO_EXTERNAL_LEVEL) {
  262. priority = BOOKE_IRQPRIO_EXTERNAL;
  263. keep_irq = true;
  264. }
  265. switch (priority) {
  266. case BOOKE_IRQPRIO_DTLB_MISS:
  267. case BOOKE_IRQPRIO_DATA_STORAGE:
  268. update_dear = true;
  269. /* fall through */
  270. case BOOKE_IRQPRIO_INST_STORAGE:
  271. case BOOKE_IRQPRIO_PROGRAM:
  272. update_esr = true;
  273. /* fall through */
  274. case BOOKE_IRQPRIO_ITLB_MISS:
  275. case BOOKE_IRQPRIO_SYSCALL:
  276. case BOOKE_IRQPRIO_FP_UNAVAIL:
  277. case BOOKE_IRQPRIO_SPE_UNAVAIL:
  278. case BOOKE_IRQPRIO_SPE_FP_DATA:
  279. case BOOKE_IRQPRIO_SPE_FP_ROUND:
  280. case BOOKE_IRQPRIO_AP_UNAVAIL:
  281. case BOOKE_IRQPRIO_ALIGNMENT:
  282. allowed = 1;
  283. msr_mask = MSR_CE | MSR_ME | MSR_DE;
  284. int_class = INT_CLASS_NONCRIT;
  285. break;
  286. case BOOKE_IRQPRIO_CRITICAL:
  287. case BOOKE_IRQPRIO_DBELL_CRIT:
  288. allowed = vcpu->arch.shared->msr & MSR_CE;
  289. allowed = allowed && !crit;
  290. msr_mask = MSR_ME;
  291. int_class = INT_CLASS_CRIT;
  292. break;
  293. case BOOKE_IRQPRIO_MACHINE_CHECK:
  294. allowed = vcpu->arch.shared->msr & MSR_ME;
  295. allowed = allowed && !crit;
  296. int_class = INT_CLASS_MC;
  297. break;
  298. case BOOKE_IRQPRIO_DECREMENTER:
  299. case BOOKE_IRQPRIO_FIT:
  300. keep_irq = true;
  301. /* fall through */
  302. case BOOKE_IRQPRIO_EXTERNAL:
  303. case BOOKE_IRQPRIO_DBELL:
  304. allowed = vcpu->arch.shared->msr & MSR_EE;
  305. allowed = allowed && !crit;
  306. msr_mask = MSR_CE | MSR_ME | MSR_DE;
  307. int_class = INT_CLASS_NONCRIT;
  308. break;
  309. case BOOKE_IRQPRIO_DEBUG:
  310. allowed = vcpu->arch.shared->msr & MSR_DE;
  311. allowed = allowed && !crit;
  312. msr_mask = MSR_ME;
  313. int_class = INT_CLASS_CRIT;
  314. break;
  315. }
  316. if (allowed) {
  317. switch (int_class) {
  318. case INT_CLASS_NONCRIT:
  319. set_guest_srr(vcpu, vcpu->arch.pc,
  320. vcpu->arch.shared->msr);
  321. break;
  322. case INT_CLASS_CRIT:
  323. set_guest_csrr(vcpu, vcpu->arch.pc,
  324. vcpu->arch.shared->msr);
  325. break;
  326. case INT_CLASS_DBG:
  327. set_guest_dsrr(vcpu, vcpu->arch.pc,
  328. vcpu->arch.shared->msr);
  329. break;
  330. case INT_CLASS_MC:
  331. set_guest_mcsrr(vcpu, vcpu->arch.pc,
  332. vcpu->arch.shared->msr);
  333. break;
  334. }
  335. vcpu->arch.pc = vcpu->arch.ivpr | vcpu->arch.ivor[priority];
  336. if (update_esr == true)
  337. set_guest_esr(vcpu, vcpu->arch.queued_esr);
  338. if (update_dear == true)
  339. set_guest_dear(vcpu, vcpu->arch.queued_dear);
  340. kvmppc_set_msr(vcpu, vcpu->arch.shared->msr & msr_mask);
  341. if (!keep_irq)
  342. clear_bit(priority, &vcpu->arch.pending_exceptions);
  343. }
  344. #ifdef CONFIG_KVM_BOOKE_HV
  345. /*
  346. * If an interrupt is pending but masked, raise a guest doorbell
  347. * so that we are notified when the guest enables the relevant
  348. * MSR bit.
  349. */
  350. if (vcpu->arch.pending_exceptions & BOOKE_IRQMASK_EE)
  351. kvmppc_set_pending_interrupt(vcpu, INT_CLASS_NONCRIT);
  352. if (vcpu->arch.pending_exceptions & BOOKE_IRQMASK_CE)
  353. kvmppc_set_pending_interrupt(vcpu, INT_CLASS_CRIT);
  354. if (vcpu->arch.pending_exceptions & BOOKE_IRQPRIO_MACHINE_CHECK)
  355. kvmppc_set_pending_interrupt(vcpu, INT_CLASS_MC);
  356. #endif
  357. return allowed;
  358. }
  359. static void update_timer_ints(struct kvm_vcpu *vcpu)
  360. {
  361. if ((vcpu->arch.tcr & TCR_DIE) && (vcpu->arch.tsr & TSR_DIS))
  362. kvmppc_core_queue_dec(vcpu);
  363. else
  364. kvmppc_core_dequeue_dec(vcpu);
  365. }
  366. static void kvmppc_core_check_exceptions(struct kvm_vcpu *vcpu)
  367. {
  368. unsigned long *pending = &vcpu->arch.pending_exceptions;
  369. unsigned int priority;
  370. if (vcpu->requests) {
  371. if (kvm_check_request(KVM_REQ_PENDING_TIMER, vcpu)) {
  372. smp_mb();
  373. update_timer_ints(vcpu);
  374. }
  375. }
  376. priority = __ffs(*pending);
  377. while (priority <= BOOKE_IRQPRIO_MAX) {
  378. if (kvmppc_booke_irqprio_deliver(vcpu, priority))
  379. break;
  380. priority = find_next_bit(pending,
  381. BITS_PER_BYTE * sizeof(*pending),
  382. priority + 1);
  383. }
  384. /* Tell the guest about our interrupt status */
  385. vcpu->arch.shared->int_pending = !!*pending;
  386. }
  387. /* Check pending exceptions and deliver one, if possible. */
  388. void kvmppc_core_prepare_to_enter(struct kvm_vcpu *vcpu)
  389. {
  390. WARN_ON_ONCE(!irqs_disabled());
  391. kvmppc_core_check_exceptions(vcpu);
  392. if (vcpu->arch.shared->msr & MSR_WE) {
  393. local_irq_enable();
  394. kvm_vcpu_block(vcpu);
  395. local_irq_disable();
  396. kvmppc_set_exit_type(vcpu, EMULATED_MTMSRWE_EXITS);
  397. kvmppc_core_check_exceptions(vcpu);
  398. };
  399. }
  400. int kvmppc_vcpu_run(struct kvm_run *kvm_run, struct kvm_vcpu *vcpu)
  401. {
  402. int ret;
  403. #ifdef CONFIG_PPC_FPU
  404. unsigned int fpscr;
  405. int fpexc_mode;
  406. u64 fpr[32];
  407. #endif
  408. if (!vcpu->arch.sane) {
  409. kvm_run->exit_reason = KVM_EXIT_INTERNAL_ERROR;
  410. return -EINVAL;
  411. }
  412. if (!current->thread.kvm_vcpu) {
  413. WARN(1, "no vcpu\n");
  414. return -EPERM;
  415. }
  416. local_irq_disable();
  417. kvmppc_core_prepare_to_enter(vcpu);
  418. if (signal_pending(current)) {
  419. kvm_run->exit_reason = KVM_EXIT_INTR;
  420. ret = -EINTR;
  421. goto out;
  422. }
  423. kvm_guest_enter();
  424. #ifdef CONFIG_PPC_FPU
  425. /* Save userspace FPU state in stack */
  426. enable_kernel_fp();
  427. memcpy(fpr, current->thread.fpr, sizeof(current->thread.fpr));
  428. fpscr = current->thread.fpscr.val;
  429. fpexc_mode = current->thread.fpexc_mode;
  430. /* Restore guest FPU state to thread */
  431. memcpy(current->thread.fpr, vcpu->arch.fpr, sizeof(vcpu->arch.fpr));
  432. current->thread.fpscr.val = vcpu->arch.fpscr;
  433. /*
  434. * Since we can't trap on MSR_FP in GS-mode, we consider the guest
  435. * as always using the FPU. Kernel usage of FP (via
  436. * enable_kernel_fp()) in this thread must not occur while
  437. * vcpu->fpu_active is set.
  438. */
  439. vcpu->fpu_active = 1;
  440. kvmppc_load_guest_fp(vcpu);
  441. #endif
  442. ret = __kvmppc_vcpu_run(kvm_run, vcpu);
  443. #ifdef CONFIG_PPC_FPU
  444. kvmppc_save_guest_fp(vcpu);
  445. vcpu->fpu_active = 0;
  446. /* Save guest FPU state from thread */
  447. memcpy(vcpu->arch.fpr, current->thread.fpr, sizeof(vcpu->arch.fpr));
  448. vcpu->arch.fpscr = current->thread.fpscr.val;
  449. /* Restore userspace FPU state from stack */
  450. memcpy(current->thread.fpr, fpr, sizeof(current->thread.fpr));
  451. current->thread.fpscr.val = fpscr;
  452. current->thread.fpexc_mode = fpexc_mode;
  453. #endif
  454. kvm_guest_exit();
  455. out:
  456. local_irq_enable();
  457. return ret;
  458. }
  459. static int emulation_exit(struct kvm_run *run, struct kvm_vcpu *vcpu)
  460. {
  461. enum emulation_result er;
  462. er = kvmppc_emulate_instruction(run, vcpu);
  463. switch (er) {
  464. case EMULATE_DONE:
  465. /* don't overwrite subtypes, just account kvm_stats */
  466. kvmppc_account_exit_stat(vcpu, EMULATED_INST_EXITS);
  467. /* Future optimization: only reload non-volatiles if
  468. * they were actually modified by emulation. */
  469. return RESUME_GUEST_NV;
  470. case EMULATE_DO_DCR:
  471. run->exit_reason = KVM_EXIT_DCR;
  472. return RESUME_HOST;
  473. case EMULATE_FAIL:
  474. /* XXX Deliver Program interrupt to guest. */
  475. printk(KERN_CRIT "%s: emulation at %lx failed (%08x)\n",
  476. __func__, vcpu->arch.pc, vcpu->arch.last_inst);
  477. /* For debugging, encode the failing instruction and
  478. * report it to userspace. */
  479. run->hw.hardware_exit_reason = ~0ULL << 32;
  480. run->hw.hardware_exit_reason |= vcpu->arch.last_inst;
  481. return RESUME_HOST;
  482. default:
  483. BUG();
  484. }
  485. }
  486. /**
  487. * kvmppc_handle_exit
  488. *
  489. * Return value is in the form (errcode<<2 | RESUME_FLAG_HOST | RESUME_FLAG_NV)
  490. */
  491. int kvmppc_handle_exit(struct kvm_run *run, struct kvm_vcpu *vcpu,
  492. unsigned int exit_nr)
  493. {
  494. int r = RESUME_HOST;
  495. /* update before a new last_exit_type is rewritten */
  496. kvmppc_update_timing_stats(vcpu);
  497. switch (exit_nr) {
  498. case BOOKE_INTERRUPT_EXTERNAL:
  499. do_IRQ(current->thread.regs);
  500. break;
  501. case BOOKE_INTERRUPT_DECREMENTER:
  502. timer_interrupt(current->thread.regs);
  503. break;
  504. #if defined(CONFIG_PPC_FSL_BOOK3E) || defined(CONFIG_PPC_BOOK3E_64)
  505. case BOOKE_INTERRUPT_DOORBELL:
  506. doorbell_exception(current->thread.regs);
  507. break;
  508. #endif
  509. case BOOKE_INTERRUPT_MACHINE_CHECK:
  510. /* FIXME */
  511. break;
  512. }
  513. local_irq_enable();
  514. run->exit_reason = KVM_EXIT_UNKNOWN;
  515. run->ready_for_interrupt_injection = 1;
  516. switch (exit_nr) {
  517. case BOOKE_INTERRUPT_MACHINE_CHECK:
  518. kvm_resched(vcpu);
  519. r = RESUME_GUEST;
  520. break;
  521. case BOOKE_INTERRUPT_EXTERNAL:
  522. kvmppc_account_exit(vcpu, EXT_INTR_EXITS);
  523. kvm_resched(vcpu);
  524. r = RESUME_GUEST;
  525. break;
  526. case BOOKE_INTERRUPT_DECREMENTER:
  527. kvmppc_account_exit(vcpu, DEC_EXITS);
  528. kvm_resched(vcpu);
  529. r = RESUME_GUEST;
  530. break;
  531. case BOOKE_INTERRUPT_DOORBELL:
  532. kvmppc_account_exit(vcpu, DBELL_EXITS);
  533. kvm_resched(vcpu);
  534. r = RESUME_GUEST;
  535. break;
  536. case BOOKE_INTERRUPT_GUEST_DBELL_CRIT:
  537. kvmppc_account_exit(vcpu, GDBELL_EXITS);
  538. /*
  539. * We are here because there is a pending guest interrupt
  540. * which could not be delivered as MSR_CE or MSR_ME was not
  541. * set. Once we break from here we will retry delivery.
  542. */
  543. r = RESUME_GUEST;
  544. break;
  545. case BOOKE_INTERRUPT_GUEST_DBELL:
  546. kvmppc_account_exit(vcpu, GDBELL_EXITS);
  547. /*
  548. * We are here because there is a pending guest interrupt
  549. * which could not be delivered as MSR_EE was not set. Once
  550. * we break from here we will retry delivery.
  551. */
  552. r = RESUME_GUEST;
  553. break;
  554. case BOOKE_INTERRUPT_HV_PRIV:
  555. r = emulation_exit(run, vcpu);
  556. break;
  557. case BOOKE_INTERRUPT_PROGRAM:
  558. if (vcpu->arch.shared->msr & (MSR_PR | MSR_GS)) {
  559. /* Program traps generated by user-level software must be handled
  560. * by the guest kernel. */
  561. kvmppc_core_queue_program(vcpu, vcpu->arch.fault_esr);
  562. r = RESUME_GUEST;
  563. kvmppc_account_exit(vcpu, USR_PR_INST);
  564. break;
  565. }
  566. r = emulation_exit(run, vcpu);
  567. break;
  568. case BOOKE_INTERRUPT_FP_UNAVAIL:
  569. kvmppc_booke_queue_irqprio(vcpu, BOOKE_IRQPRIO_FP_UNAVAIL);
  570. kvmppc_account_exit(vcpu, FP_UNAVAIL);
  571. r = RESUME_GUEST;
  572. break;
  573. #ifdef CONFIG_SPE
  574. case BOOKE_INTERRUPT_SPE_UNAVAIL: {
  575. if (vcpu->arch.shared->msr & MSR_SPE)
  576. kvmppc_vcpu_enable_spe(vcpu);
  577. else
  578. kvmppc_booke_queue_irqprio(vcpu,
  579. BOOKE_IRQPRIO_SPE_UNAVAIL);
  580. r = RESUME_GUEST;
  581. break;
  582. }
  583. case BOOKE_INTERRUPT_SPE_FP_DATA:
  584. kvmppc_booke_queue_irqprio(vcpu, BOOKE_IRQPRIO_SPE_FP_DATA);
  585. r = RESUME_GUEST;
  586. break;
  587. case BOOKE_INTERRUPT_SPE_FP_ROUND:
  588. kvmppc_booke_queue_irqprio(vcpu, BOOKE_IRQPRIO_SPE_FP_ROUND);
  589. r = RESUME_GUEST;
  590. break;
  591. #else
  592. case BOOKE_INTERRUPT_SPE_UNAVAIL:
  593. /*
  594. * Guest wants SPE, but host kernel doesn't support it. Send
  595. * an "unimplemented operation" program check to the guest.
  596. */
  597. kvmppc_core_queue_program(vcpu, ESR_PUO | ESR_SPV);
  598. r = RESUME_GUEST;
  599. break;
  600. /*
  601. * These really should never happen without CONFIG_SPE,
  602. * as we should never enable the real MSR[SPE] in the guest.
  603. */
  604. case BOOKE_INTERRUPT_SPE_FP_DATA:
  605. case BOOKE_INTERRUPT_SPE_FP_ROUND:
  606. printk(KERN_CRIT "%s: unexpected SPE interrupt %u at %08lx\n",
  607. __func__, exit_nr, vcpu->arch.pc);
  608. run->hw.hardware_exit_reason = exit_nr;
  609. r = RESUME_HOST;
  610. break;
  611. #endif
  612. case BOOKE_INTERRUPT_DATA_STORAGE:
  613. kvmppc_core_queue_data_storage(vcpu, vcpu->arch.fault_dear,
  614. vcpu->arch.fault_esr);
  615. kvmppc_account_exit(vcpu, DSI_EXITS);
  616. r = RESUME_GUEST;
  617. break;
  618. case BOOKE_INTERRUPT_INST_STORAGE:
  619. kvmppc_core_queue_inst_storage(vcpu, vcpu->arch.fault_esr);
  620. kvmppc_account_exit(vcpu, ISI_EXITS);
  621. r = RESUME_GUEST;
  622. break;
  623. #ifdef CONFIG_KVM_BOOKE_HV
  624. case BOOKE_INTERRUPT_HV_SYSCALL:
  625. if (!(vcpu->arch.shared->msr & MSR_PR)) {
  626. kvmppc_set_gpr(vcpu, 3, kvmppc_kvm_pv(vcpu));
  627. } else {
  628. /*
  629. * hcall from guest userspace -- send privileged
  630. * instruction program check.
  631. */
  632. kvmppc_core_queue_program(vcpu, ESR_PPR);
  633. }
  634. r = RESUME_GUEST;
  635. break;
  636. #else
  637. case BOOKE_INTERRUPT_SYSCALL:
  638. if (!(vcpu->arch.shared->msr & MSR_PR) &&
  639. (((u32)kvmppc_get_gpr(vcpu, 0)) == KVM_SC_MAGIC_R0)) {
  640. /* KVM PV hypercalls */
  641. kvmppc_set_gpr(vcpu, 3, kvmppc_kvm_pv(vcpu));
  642. r = RESUME_GUEST;
  643. } else {
  644. /* Guest syscalls */
  645. kvmppc_booke_queue_irqprio(vcpu, BOOKE_IRQPRIO_SYSCALL);
  646. }
  647. kvmppc_account_exit(vcpu, SYSCALL_EXITS);
  648. r = RESUME_GUEST;
  649. break;
  650. #endif
  651. case BOOKE_INTERRUPT_DTLB_MISS: {
  652. unsigned long eaddr = vcpu->arch.fault_dear;
  653. int gtlb_index;
  654. gpa_t gpaddr;
  655. gfn_t gfn;
  656. #ifdef CONFIG_KVM_E500V2
  657. if (!(vcpu->arch.shared->msr & MSR_PR) &&
  658. (eaddr & PAGE_MASK) == vcpu->arch.magic_page_ea) {
  659. kvmppc_map_magic(vcpu);
  660. kvmppc_account_exit(vcpu, DTLB_VIRT_MISS_EXITS);
  661. r = RESUME_GUEST;
  662. break;
  663. }
  664. #endif
  665. /* Check the guest TLB. */
  666. gtlb_index = kvmppc_mmu_dtlb_index(vcpu, eaddr);
  667. if (gtlb_index < 0) {
  668. /* The guest didn't have a mapping for it. */
  669. kvmppc_core_queue_dtlb_miss(vcpu,
  670. vcpu->arch.fault_dear,
  671. vcpu->arch.fault_esr);
  672. kvmppc_mmu_dtlb_miss(vcpu);
  673. kvmppc_account_exit(vcpu, DTLB_REAL_MISS_EXITS);
  674. r = RESUME_GUEST;
  675. break;
  676. }
  677. gpaddr = kvmppc_mmu_xlate(vcpu, gtlb_index, eaddr);
  678. gfn = gpaddr >> PAGE_SHIFT;
  679. if (kvm_is_visible_gfn(vcpu->kvm, gfn)) {
  680. /* The guest TLB had a mapping, but the shadow TLB
  681. * didn't, and it is RAM. This could be because:
  682. * a) the entry is mapping the host kernel, or
  683. * b) the guest used a large mapping which we're faking
  684. * Either way, we need to satisfy the fault without
  685. * invoking the guest. */
  686. kvmppc_mmu_map(vcpu, eaddr, gpaddr, gtlb_index);
  687. kvmppc_account_exit(vcpu, DTLB_VIRT_MISS_EXITS);
  688. r = RESUME_GUEST;
  689. } else {
  690. /* Guest has mapped and accessed a page which is not
  691. * actually RAM. */
  692. vcpu->arch.paddr_accessed = gpaddr;
  693. r = kvmppc_emulate_mmio(run, vcpu);
  694. kvmppc_account_exit(vcpu, MMIO_EXITS);
  695. }
  696. break;
  697. }
  698. case BOOKE_INTERRUPT_ITLB_MISS: {
  699. unsigned long eaddr = vcpu->arch.pc;
  700. gpa_t gpaddr;
  701. gfn_t gfn;
  702. int gtlb_index;
  703. r = RESUME_GUEST;
  704. /* Check the guest TLB. */
  705. gtlb_index = kvmppc_mmu_itlb_index(vcpu, eaddr);
  706. if (gtlb_index < 0) {
  707. /* The guest didn't have a mapping for it. */
  708. kvmppc_booke_queue_irqprio(vcpu, BOOKE_IRQPRIO_ITLB_MISS);
  709. kvmppc_mmu_itlb_miss(vcpu);
  710. kvmppc_account_exit(vcpu, ITLB_REAL_MISS_EXITS);
  711. break;
  712. }
  713. kvmppc_account_exit(vcpu, ITLB_VIRT_MISS_EXITS);
  714. gpaddr = kvmppc_mmu_xlate(vcpu, gtlb_index, eaddr);
  715. gfn = gpaddr >> PAGE_SHIFT;
  716. if (kvm_is_visible_gfn(vcpu->kvm, gfn)) {
  717. /* The guest TLB had a mapping, but the shadow TLB
  718. * didn't. This could be because:
  719. * a) the entry is mapping the host kernel, or
  720. * b) the guest used a large mapping which we're faking
  721. * Either way, we need to satisfy the fault without
  722. * invoking the guest. */
  723. kvmppc_mmu_map(vcpu, eaddr, gpaddr, gtlb_index);
  724. } else {
  725. /* Guest mapped and leaped at non-RAM! */
  726. kvmppc_booke_queue_irqprio(vcpu, BOOKE_IRQPRIO_MACHINE_CHECK);
  727. }
  728. break;
  729. }
  730. case BOOKE_INTERRUPT_DEBUG: {
  731. u32 dbsr;
  732. vcpu->arch.pc = mfspr(SPRN_CSRR0);
  733. /* clear IAC events in DBSR register */
  734. dbsr = mfspr(SPRN_DBSR);
  735. dbsr &= DBSR_IAC1 | DBSR_IAC2 | DBSR_IAC3 | DBSR_IAC4;
  736. mtspr(SPRN_DBSR, dbsr);
  737. run->exit_reason = KVM_EXIT_DEBUG;
  738. kvmppc_account_exit(vcpu, DEBUG_EXITS);
  739. r = RESUME_HOST;
  740. break;
  741. }
  742. default:
  743. printk(KERN_EMERG "exit_nr %d\n", exit_nr);
  744. BUG();
  745. }
  746. local_irq_disable();
  747. kvmppc_core_prepare_to_enter(vcpu);
  748. if (!(r & RESUME_HOST)) {
  749. /* To avoid clobbering exit_reason, only check for signals if
  750. * we aren't already exiting to userspace for some other
  751. * reason. */
  752. if (signal_pending(current)) {
  753. run->exit_reason = KVM_EXIT_INTR;
  754. r = (-EINTR << 2) | RESUME_HOST | (r & RESUME_FLAG_NV);
  755. kvmppc_account_exit(vcpu, SIGNAL_EXITS);
  756. }
  757. }
  758. return r;
  759. }
  760. /* Initial guest state: 16MB mapping 0 -> 0, PC = 0, MSR = 0, R1 = 16MB */
  761. int kvm_arch_vcpu_setup(struct kvm_vcpu *vcpu)
  762. {
  763. int i;
  764. int r;
  765. vcpu->arch.pc = 0;
  766. vcpu->arch.shared->pir = vcpu->vcpu_id;
  767. kvmppc_set_gpr(vcpu, 1, (16<<20) - 8); /* -8 for the callee-save LR slot */
  768. kvmppc_set_msr(vcpu, 0);
  769. #ifndef CONFIG_KVM_BOOKE_HV
  770. vcpu->arch.shadow_msr = MSR_USER | MSR_DE | MSR_IS | MSR_DS;
  771. vcpu->arch.shadow_pid = 1;
  772. vcpu->arch.shared->msr = 0;
  773. #endif
  774. /* Eye-catching numbers so we know if the guest takes an interrupt
  775. * before it's programmed its own IVPR/IVORs. */
  776. vcpu->arch.ivpr = 0x55550000;
  777. for (i = 0; i < BOOKE_IRQPRIO_MAX; i++)
  778. vcpu->arch.ivor[i] = 0x7700 | i * 4;
  779. kvmppc_init_timing_stats(vcpu);
  780. r = kvmppc_core_vcpu_setup(vcpu);
  781. kvmppc_sanity_check(vcpu);
  782. return r;
  783. }
  784. int kvm_arch_vcpu_ioctl_get_regs(struct kvm_vcpu *vcpu, struct kvm_regs *regs)
  785. {
  786. int i;
  787. regs->pc = vcpu->arch.pc;
  788. regs->cr = kvmppc_get_cr(vcpu);
  789. regs->ctr = vcpu->arch.ctr;
  790. regs->lr = vcpu->arch.lr;
  791. regs->xer = kvmppc_get_xer(vcpu);
  792. regs->msr = vcpu->arch.shared->msr;
  793. regs->srr0 = vcpu->arch.shared->srr0;
  794. regs->srr1 = vcpu->arch.shared->srr1;
  795. regs->pid = vcpu->arch.pid;
  796. regs->sprg0 = vcpu->arch.shared->sprg0;
  797. regs->sprg1 = vcpu->arch.shared->sprg1;
  798. regs->sprg2 = vcpu->arch.shared->sprg2;
  799. regs->sprg3 = vcpu->arch.shared->sprg3;
  800. regs->sprg4 = vcpu->arch.shared->sprg4;
  801. regs->sprg5 = vcpu->arch.shared->sprg5;
  802. regs->sprg6 = vcpu->arch.shared->sprg6;
  803. regs->sprg7 = vcpu->arch.shared->sprg7;
  804. for (i = 0; i < ARRAY_SIZE(regs->gpr); i++)
  805. regs->gpr[i] = kvmppc_get_gpr(vcpu, i);
  806. return 0;
  807. }
  808. int kvm_arch_vcpu_ioctl_set_regs(struct kvm_vcpu *vcpu, struct kvm_regs *regs)
  809. {
  810. int i;
  811. vcpu->arch.pc = regs->pc;
  812. kvmppc_set_cr(vcpu, regs->cr);
  813. vcpu->arch.ctr = regs->ctr;
  814. vcpu->arch.lr = regs->lr;
  815. kvmppc_set_xer(vcpu, regs->xer);
  816. kvmppc_set_msr(vcpu, regs->msr);
  817. vcpu->arch.shared->srr0 = regs->srr0;
  818. vcpu->arch.shared->srr1 = regs->srr1;
  819. kvmppc_set_pid(vcpu, regs->pid);
  820. vcpu->arch.shared->sprg0 = regs->sprg0;
  821. vcpu->arch.shared->sprg1 = regs->sprg1;
  822. vcpu->arch.shared->sprg2 = regs->sprg2;
  823. vcpu->arch.shared->sprg3 = regs->sprg3;
  824. vcpu->arch.shared->sprg4 = regs->sprg4;
  825. vcpu->arch.shared->sprg5 = regs->sprg5;
  826. vcpu->arch.shared->sprg6 = regs->sprg6;
  827. vcpu->arch.shared->sprg7 = regs->sprg7;
  828. for (i = 0; i < ARRAY_SIZE(regs->gpr); i++)
  829. kvmppc_set_gpr(vcpu, i, regs->gpr[i]);
  830. return 0;
  831. }
  832. static void get_sregs_base(struct kvm_vcpu *vcpu,
  833. struct kvm_sregs *sregs)
  834. {
  835. u64 tb = get_tb();
  836. sregs->u.e.features |= KVM_SREGS_E_BASE;
  837. sregs->u.e.csrr0 = vcpu->arch.csrr0;
  838. sregs->u.e.csrr1 = vcpu->arch.csrr1;
  839. sregs->u.e.mcsr = vcpu->arch.mcsr;
  840. sregs->u.e.esr = get_guest_esr(vcpu);
  841. sregs->u.e.dear = get_guest_dear(vcpu);
  842. sregs->u.e.tsr = vcpu->arch.tsr;
  843. sregs->u.e.tcr = vcpu->arch.tcr;
  844. sregs->u.e.dec = kvmppc_get_dec(vcpu, tb);
  845. sregs->u.e.tb = tb;
  846. sregs->u.e.vrsave = vcpu->arch.vrsave;
  847. }
  848. static int set_sregs_base(struct kvm_vcpu *vcpu,
  849. struct kvm_sregs *sregs)
  850. {
  851. if (!(sregs->u.e.features & KVM_SREGS_E_BASE))
  852. return 0;
  853. vcpu->arch.csrr0 = sregs->u.e.csrr0;
  854. vcpu->arch.csrr1 = sregs->u.e.csrr1;
  855. vcpu->arch.mcsr = sregs->u.e.mcsr;
  856. set_guest_esr(vcpu, sregs->u.e.esr);
  857. set_guest_dear(vcpu, sregs->u.e.dear);
  858. vcpu->arch.vrsave = sregs->u.e.vrsave;
  859. kvmppc_set_tcr(vcpu, sregs->u.e.tcr);
  860. if (sregs->u.e.update_special & KVM_SREGS_E_UPDATE_DEC) {
  861. vcpu->arch.dec = sregs->u.e.dec;
  862. kvmppc_emulate_dec(vcpu);
  863. }
  864. if (sregs->u.e.update_special & KVM_SREGS_E_UPDATE_TSR) {
  865. vcpu->arch.tsr = sregs->u.e.tsr;
  866. update_timer_ints(vcpu);
  867. }
  868. return 0;
  869. }
  870. static void get_sregs_arch206(struct kvm_vcpu *vcpu,
  871. struct kvm_sregs *sregs)
  872. {
  873. sregs->u.e.features |= KVM_SREGS_E_ARCH206;
  874. sregs->u.e.pir = vcpu->vcpu_id;
  875. sregs->u.e.mcsrr0 = vcpu->arch.mcsrr0;
  876. sregs->u.e.mcsrr1 = vcpu->arch.mcsrr1;
  877. sregs->u.e.decar = vcpu->arch.decar;
  878. sregs->u.e.ivpr = vcpu->arch.ivpr;
  879. }
  880. static int set_sregs_arch206(struct kvm_vcpu *vcpu,
  881. struct kvm_sregs *sregs)
  882. {
  883. if (!(sregs->u.e.features & KVM_SREGS_E_ARCH206))
  884. return 0;
  885. if (sregs->u.e.pir != vcpu->vcpu_id)
  886. return -EINVAL;
  887. vcpu->arch.mcsrr0 = sregs->u.e.mcsrr0;
  888. vcpu->arch.mcsrr1 = sregs->u.e.mcsrr1;
  889. vcpu->arch.decar = sregs->u.e.decar;
  890. vcpu->arch.ivpr = sregs->u.e.ivpr;
  891. return 0;
  892. }
  893. void kvmppc_get_sregs_ivor(struct kvm_vcpu *vcpu, struct kvm_sregs *sregs)
  894. {
  895. sregs->u.e.features |= KVM_SREGS_E_IVOR;
  896. sregs->u.e.ivor_low[0] = vcpu->arch.ivor[BOOKE_IRQPRIO_CRITICAL];
  897. sregs->u.e.ivor_low[1] = vcpu->arch.ivor[BOOKE_IRQPRIO_MACHINE_CHECK];
  898. sregs->u.e.ivor_low[2] = vcpu->arch.ivor[BOOKE_IRQPRIO_DATA_STORAGE];
  899. sregs->u.e.ivor_low[3] = vcpu->arch.ivor[BOOKE_IRQPRIO_INST_STORAGE];
  900. sregs->u.e.ivor_low[4] = vcpu->arch.ivor[BOOKE_IRQPRIO_EXTERNAL];
  901. sregs->u.e.ivor_low[5] = vcpu->arch.ivor[BOOKE_IRQPRIO_ALIGNMENT];
  902. sregs->u.e.ivor_low[6] = vcpu->arch.ivor[BOOKE_IRQPRIO_PROGRAM];
  903. sregs->u.e.ivor_low[7] = vcpu->arch.ivor[BOOKE_IRQPRIO_FP_UNAVAIL];
  904. sregs->u.e.ivor_low[8] = vcpu->arch.ivor[BOOKE_IRQPRIO_SYSCALL];
  905. sregs->u.e.ivor_low[9] = vcpu->arch.ivor[BOOKE_IRQPRIO_AP_UNAVAIL];
  906. sregs->u.e.ivor_low[10] = vcpu->arch.ivor[BOOKE_IRQPRIO_DECREMENTER];
  907. sregs->u.e.ivor_low[11] = vcpu->arch.ivor[BOOKE_IRQPRIO_FIT];
  908. sregs->u.e.ivor_low[12] = vcpu->arch.ivor[BOOKE_IRQPRIO_WATCHDOG];
  909. sregs->u.e.ivor_low[13] = vcpu->arch.ivor[BOOKE_IRQPRIO_DTLB_MISS];
  910. sregs->u.e.ivor_low[14] = vcpu->arch.ivor[BOOKE_IRQPRIO_ITLB_MISS];
  911. sregs->u.e.ivor_low[15] = vcpu->arch.ivor[BOOKE_IRQPRIO_DEBUG];
  912. }
  913. int kvmppc_set_sregs_ivor(struct kvm_vcpu *vcpu, struct kvm_sregs *sregs)
  914. {
  915. if (!(sregs->u.e.features & KVM_SREGS_E_IVOR))
  916. return 0;
  917. vcpu->arch.ivor[BOOKE_IRQPRIO_CRITICAL] = sregs->u.e.ivor_low[0];
  918. vcpu->arch.ivor[BOOKE_IRQPRIO_MACHINE_CHECK] = sregs->u.e.ivor_low[1];
  919. vcpu->arch.ivor[BOOKE_IRQPRIO_DATA_STORAGE] = sregs->u.e.ivor_low[2];
  920. vcpu->arch.ivor[BOOKE_IRQPRIO_INST_STORAGE] = sregs->u.e.ivor_low[3];
  921. vcpu->arch.ivor[BOOKE_IRQPRIO_EXTERNAL] = sregs->u.e.ivor_low[4];
  922. vcpu->arch.ivor[BOOKE_IRQPRIO_ALIGNMENT] = sregs->u.e.ivor_low[5];
  923. vcpu->arch.ivor[BOOKE_IRQPRIO_PROGRAM] = sregs->u.e.ivor_low[6];
  924. vcpu->arch.ivor[BOOKE_IRQPRIO_FP_UNAVAIL] = sregs->u.e.ivor_low[7];
  925. vcpu->arch.ivor[BOOKE_IRQPRIO_SYSCALL] = sregs->u.e.ivor_low[8];
  926. vcpu->arch.ivor[BOOKE_IRQPRIO_AP_UNAVAIL] = sregs->u.e.ivor_low[9];
  927. vcpu->arch.ivor[BOOKE_IRQPRIO_DECREMENTER] = sregs->u.e.ivor_low[10];
  928. vcpu->arch.ivor[BOOKE_IRQPRIO_FIT] = sregs->u.e.ivor_low[11];
  929. vcpu->arch.ivor[BOOKE_IRQPRIO_WATCHDOG] = sregs->u.e.ivor_low[12];
  930. vcpu->arch.ivor[BOOKE_IRQPRIO_DTLB_MISS] = sregs->u.e.ivor_low[13];
  931. vcpu->arch.ivor[BOOKE_IRQPRIO_ITLB_MISS] = sregs->u.e.ivor_low[14];
  932. vcpu->arch.ivor[BOOKE_IRQPRIO_DEBUG] = sregs->u.e.ivor_low[15];
  933. return 0;
  934. }
  935. int kvm_arch_vcpu_ioctl_get_sregs(struct kvm_vcpu *vcpu,
  936. struct kvm_sregs *sregs)
  937. {
  938. sregs->pvr = vcpu->arch.pvr;
  939. get_sregs_base(vcpu, sregs);
  940. get_sregs_arch206(vcpu, sregs);
  941. kvmppc_core_get_sregs(vcpu, sregs);
  942. return 0;
  943. }
  944. int kvm_arch_vcpu_ioctl_set_sregs(struct kvm_vcpu *vcpu,
  945. struct kvm_sregs *sregs)
  946. {
  947. int ret;
  948. if (vcpu->arch.pvr != sregs->pvr)
  949. return -EINVAL;
  950. ret = set_sregs_base(vcpu, sregs);
  951. if (ret < 0)
  952. return ret;
  953. ret = set_sregs_arch206(vcpu, sregs);
  954. if (ret < 0)
  955. return ret;
  956. return kvmppc_core_set_sregs(vcpu, sregs);
  957. }
  958. int kvm_vcpu_ioctl_get_one_reg(struct kvm_vcpu *vcpu, struct kvm_one_reg *reg)
  959. {
  960. return -EINVAL;
  961. }
  962. int kvm_vcpu_ioctl_set_one_reg(struct kvm_vcpu *vcpu, struct kvm_one_reg *reg)
  963. {
  964. return -EINVAL;
  965. }
  966. int kvm_arch_vcpu_ioctl_get_fpu(struct kvm_vcpu *vcpu, struct kvm_fpu *fpu)
  967. {
  968. return -ENOTSUPP;
  969. }
  970. int kvm_arch_vcpu_ioctl_set_fpu(struct kvm_vcpu *vcpu, struct kvm_fpu *fpu)
  971. {
  972. return -ENOTSUPP;
  973. }
  974. int kvm_arch_vcpu_ioctl_translate(struct kvm_vcpu *vcpu,
  975. struct kvm_translation *tr)
  976. {
  977. int r;
  978. r = kvmppc_core_vcpu_translate(vcpu, tr);
  979. return r;
  980. }
  981. int kvm_vm_ioctl_get_dirty_log(struct kvm *kvm, struct kvm_dirty_log *log)
  982. {
  983. return -ENOTSUPP;
  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. void kvmppc_set_tcr(struct kvm_vcpu *vcpu, u32 new_tcr)
  995. {
  996. vcpu->arch.tcr = new_tcr;
  997. update_timer_ints(vcpu);
  998. }
  999. void kvmppc_set_tsr_bits(struct kvm_vcpu *vcpu, u32 tsr_bits)
  1000. {
  1001. set_bits(tsr_bits, &vcpu->arch.tsr);
  1002. smp_wmb();
  1003. kvm_make_request(KVM_REQ_PENDING_TIMER, vcpu);
  1004. kvm_vcpu_kick(vcpu);
  1005. }
  1006. void kvmppc_clr_tsr_bits(struct kvm_vcpu *vcpu, u32 tsr_bits)
  1007. {
  1008. clear_bits(tsr_bits, &vcpu->arch.tsr);
  1009. update_timer_ints(vcpu);
  1010. }
  1011. void kvmppc_decrementer_func(unsigned long data)
  1012. {
  1013. struct kvm_vcpu *vcpu = (struct kvm_vcpu *)data;
  1014. kvmppc_set_tsr_bits(vcpu, TSR_DIS);
  1015. }
  1016. void kvmppc_booke_vcpu_load(struct kvm_vcpu *vcpu, int cpu)
  1017. {
  1018. current->thread.kvm_vcpu = vcpu;
  1019. }
  1020. void kvmppc_booke_vcpu_put(struct kvm_vcpu *vcpu)
  1021. {
  1022. current->thread.kvm_vcpu = NULL;
  1023. }
  1024. int __init kvmppc_booke_init(void)
  1025. {
  1026. #ifndef CONFIG_KVM_BOOKE_HV
  1027. unsigned long ivor[16];
  1028. unsigned long max_ivor = 0;
  1029. int i;
  1030. /* We install our own exception handlers by hijacking IVPR. IVPR must
  1031. * be 16-bit aligned, so we need a 64KB allocation. */
  1032. kvmppc_booke_handlers = __get_free_pages(GFP_KERNEL | __GFP_ZERO,
  1033. VCPU_SIZE_ORDER);
  1034. if (!kvmppc_booke_handlers)
  1035. return -ENOMEM;
  1036. /* XXX make sure our handlers are smaller than Linux's */
  1037. /* Copy our interrupt handlers to match host IVORs. That way we don't
  1038. * have to swap the IVORs on every guest/host transition. */
  1039. ivor[0] = mfspr(SPRN_IVOR0);
  1040. ivor[1] = mfspr(SPRN_IVOR1);
  1041. ivor[2] = mfspr(SPRN_IVOR2);
  1042. ivor[3] = mfspr(SPRN_IVOR3);
  1043. ivor[4] = mfspr(SPRN_IVOR4);
  1044. ivor[5] = mfspr(SPRN_IVOR5);
  1045. ivor[6] = mfspr(SPRN_IVOR6);
  1046. ivor[7] = mfspr(SPRN_IVOR7);
  1047. ivor[8] = mfspr(SPRN_IVOR8);
  1048. ivor[9] = mfspr(SPRN_IVOR9);
  1049. ivor[10] = mfspr(SPRN_IVOR10);
  1050. ivor[11] = mfspr(SPRN_IVOR11);
  1051. ivor[12] = mfspr(SPRN_IVOR12);
  1052. ivor[13] = mfspr(SPRN_IVOR13);
  1053. ivor[14] = mfspr(SPRN_IVOR14);
  1054. ivor[15] = mfspr(SPRN_IVOR15);
  1055. for (i = 0; i < 16; i++) {
  1056. if (ivor[i] > max_ivor)
  1057. max_ivor = ivor[i];
  1058. memcpy((void *)kvmppc_booke_handlers + ivor[i],
  1059. kvmppc_handlers_start + i * kvmppc_handler_len,
  1060. kvmppc_handler_len);
  1061. }
  1062. flush_icache_range(kvmppc_booke_handlers,
  1063. kvmppc_booke_handlers + max_ivor + kvmppc_handler_len);
  1064. #endif /* !BOOKE_HV */
  1065. return 0;
  1066. }
  1067. void __exit kvmppc_booke_exit(void)
  1068. {
  1069. free_pages(kvmppc_booke_handlers, VCPU_SIZE_ORDER);
  1070. kvm_exit();
  1071. }