lapic.c 25 KB

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  1. /*
  2. * Local APIC virtualization
  3. *
  4. * Copyright (C) 2006 Qumranet, Inc.
  5. * Copyright (C) 2007 Novell
  6. * Copyright (C) 2007 Intel
  7. *
  8. * Authors:
  9. * Dor Laor <dor.laor@qumranet.com>
  10. * Gregory Haskins <ghaskins@novell.com>
  11. * Yaozu (Eddie) Dong <eddie.dong@intel.com>
  12. *
  13. * Based on Xen 3.1 code, Copyright (c) 2004, Intel Corporation.
  14. *
  15. * This work is licensed under the terms of the GNU GPL, version 2. See
  16. * the COPYING file in the top-level directory.
  17. */
  18. #include "kvm.h"
  19. #include <linux/kvm.h>
  20. #include <linux/mm.h>
  21. #include <linux/highmem.h>
  22. #include <linux/smp.h>
  23. #include <linux/hrtimer.h>
  24. #include <linux/io.h>
  25. #include <linux/module.h>
  26. #include <asm/processor.h>
  27. #include <asm/msr.h>
  28. #include <asm/page.h>
  29. #include <asm/current.h>
  30. #include <asm/apicdef.h>
  31. #include <asm/atomic.h>
  32. #include <asm/div64.h>
  33. #include "irq.h"
  34. #define PRId64 "d"
  35. #define PRIx64 "llx"
  36. #define PRIu64 "u"
  37. #define PRIo64 "o"
  38. #define APIC_BUS_CYCLE_NS 1
  39. /* #define apic_debug(fmt,arg...) printk(KERN_WARNING fmt,##arg) */
  40. #define apic_debug(fmt, arg...)
  41. #define APIC_LVT_NUM 6
  42. /* 14 is the version for Xeon and Pentium 8.4.8*/
  43. #define APIC_VERSION (0x14UL | ((APIC_LVT_NUM - 1) << 16))
  44. #define LAPIC_MMIO_LENGTH (1 << 12)
  45. /* followed define is not in apicdef.h */
  46. #define APIC_SHORT_MASK 0xc0000
  47. #define APIC_DEST_NOSHORT 0x0
  48. #define APIC_DEST_MASK 0x800
  49. #define MAX_APIC_VECTOR 256
  50. #define VEC_POS(v) ((v) & (32 - 1))
  51. #define REG_POS(v) (((v) >> 5) << 4)
  52. static inline u32 apic_get_reg(struct kvm_lapic *apic, int reg_off)
  53. {
  54. return *((u32 *) (apic->regs + reg_off));
  55. }
  56. static inline void apic_set_reg(struct kvm_lapic *apic, int reg_off, u32 val)
  57. {
  58. *((u32 *) (apic->regs + reg_off)) = val;
  59. }
  60. static inline int apic_test_and_set_vector(int vec, void *bitmap)
  61. {
  62. return test_and_set_bit(VEC_POS(vec), (bitmap) + REG_POS(vec));
  63. }
  64. static inline int apic_test_and_clear_vector(int vec, void *bitmap)
  65. {
  66. return test_and_clear_bit(VEC_POS(vec), (bitmap) + REG_POS(vec));
  67. }
  68. static inline void apic_set_vector(int vec, void *bitmap)
  69. {
  70. set_bit(VEC_POS(vec), (bitmap) + REG_POS(vec));
  71. }
  72. static inline void apic_clear_vector(int vec, void *bitmap)
  73. {
  74. clear_bit(VEC_POS(vec), (bitmap) + REG_POS(vec));
  75. }
  76. static inline int apic_hw_enabled(struct kvm_lapic *apic)
  77. {
  78. return (apic)->vcpu->apic_base & MSR_IA32_APICBASE_ENABLE;
  79. }
  80. static inline int apic_sw_enabled(struct kvm_lapic *apic)
  81. {
  82. return apic_get_reg(apic, APIC_SPIV) & APIC_SPIV_APIC_ENABLED;
  83. }
  84. static inline int apic_enabled(struct kvm_lapic *apic)
  85. {
  86. return apic_sw_enabled(apic) && apic_hw_enabled(apic);
  87. }
  88. #define LVT_MASK \
  89. (APIC_LVT_MASKED | APIC_SEND_PENDING | APIC_VECTOR_MASK)
  90. #define LINT_MASK \
  91. (LVT_MASK | APIC_MODE_MASK | APIC_INPUT_POLARITY | \
  92. APIC_LVT_REMOTE_IRR | APIC_LVT_LEVEL_TRIGGER)
  93. static inline int kvm_apic_id(struct kvm_lapic *apic)
  94. {
  95. return (apic_get_reg(apic, APIC_ID) >> 24) & 0xff;
  96. }
  97. static inline int apic_lvt_enabled(struct kvm_lapic *apic, int lvt_type)
  98. {
  99. return !(apic_get_reg(apic, lvt_type) & APIC_LVT_MASKED);
  100. }
  101. static inline int apic_lvt_vector(struct kvm_lapic *apic, int lvt_type)
  102. {
  103. return apic_get_reg(apic, lvt_type) & APIC_VECTOR_MASK;
  104. }
  105. static inline int apic_lvtt_period(struct kvm_lapic *apic)
  106. {
  107. return apic_get_reg(apic, APIC_LVTT) & APIC_LVT_TIMER_PERIODIC;
  108. }
  109. static unsigned int apic_lvt_mask[APIC_LVT_NUM] = {
  110. LVT_MASK | APIC_LVT_TIMER_PERIODIC, /* LVTT */
  111. LVT_MASK | APIC_MODE_MASK, /* LVTTHMR */
  112. LVT_MASK | APIC_MODE_MASK, /* LVTPC */
  113. LINT_MASK, LINT_MASK, /* LVT0-1 */
  114. LVT_MASK /* LVTERR */
  115. };
  116. static int find_highest_vector(void *bitmap)
  117. {
  118. u32 *word = bitmap;
  119. int word_offset = MAX_APIC_VECTOR >> 5;
  120. while ((word_offset != 0) && (word[(--word_offset) << 2] == 0))
  121. continue;
  122. if (likely(!word_offset && !word[0]))
  123. return -1;
  124. else
  125. return fls(word[word_offset << 2]) - 1 + (word_offset << 5);
  126. }
  127. static inline int apic_test_and_set_irr(int vec, struct kvm_lapic *apic)
  128. {
  129. return apic_test_and_set_vector(vec, apic->regs + APIC_IRR);
  130. }
  131. static inline void apic_clear_irr(int vec, struct kvm_lapic *apic)
  132. {
  133. apic_clear_vector(vec, apic->regs + APIC_IRR);
  134. }
  135. static inline int apic_find_highest_irr(struct kvm_lapic *apic)
  136. {
  137. int result;
  138. result = find_highest_vector(apic->regs + APIC_IRR);
  139. ASSERT(result == -1 || result >= 16);
  140. return result;
  141. }
  142. int kvm_lapic_find_highest_irr(struct kvm_vcpu *vcpu)
  143. {
  144. struct kvm_lapic *apic = vcpu->apic;
  145. int highest_irr;
  146. if (!apic)
  147. return 0;
  148. highest_irr = apic_find_highest_irr(apic);
  149. return highest_irr;
  150. }
  151. EXPORT_SYMBOL_GPL(kvm_lapic_find_highest_irr);
  152. int kvm_apic_set_irq(struct kvm_lapic *apic, u8 vec, u8 trig)
  153. {
  154. if (!apic_test_and_set_irr(vec, apic)) {
  155. /* a new pending irq is set in IRR */
  156. if (trig)
  157. apic_set_vector(vec, apic->regs + APIC_TMR);
  158. else
  159. apic_clear_vector(vec, apic->regs + APIC_TMR);
  160. kvm_vcpu_kick(apic->vcpu);
  161. return 1;
  162. }
  163. return 0;
  164. }
  165. static inline int apic_find_highest_isr(struct kvm_lapic *apic)
  166. {
  167. int result;
  168. result = find_highest_vector(apic->regs + APIC_ISR);
  169. ASSERT(result == -1 || result >= 16);
  170. return result;
  171. }
  172. static void apic_update_ppr(struct kvm_lapic *apic)
  173. {
  174. u32 tpr, isrv, ppr;
  175. int isr;
  176. tpr = apic_get_reg(apic, APIC_TASKPRI);
  177. isr = apic_find_highest_isr(apic);
  178. isrv = (isr != -1) ? isr : 0;
  179. if ((tpr & 0xf0) >= (isrv & 0xf0))
  180. ppr = tpr & 0xff;
  181. else
  182. ppr = isrv & 0xf0;
  183. apic_debug("vlapic %p, ppr 0x%x, isr 0x%x, isrv 0x%x",
  184. apic, ppr, isr, isrv);
  185. apic_set_reg(apic, APIC_PROCPRI, ppr);
  186. }
  187. static void apic_set_tpr(struct kvm_lapic *apic, u32 tpr)
  188. {
  189. apic_set_reg(apic, APIC_TASKPRI, tpr);
  190. apic_update_ppr(apic);
  191. }
  192. int kvm_apic_match_physical_addr(struct kvm_lapic *apic, u16 dest)
  193. {
  194. return kvm_apic_id(apic) == dest;
  195. }
  196. int kvm_apic_match_logical_addr(struct kvm_lapic *apic, u8 mda)
  197. {
  198. int result = 0;
  199. u8 logical_id;
  200. logical_id = GET_APIC_LOGICAL_ID(apic_get_reg(apic, APIC_LDR));
  201. switch (apic_get_reg(apic, APIC_DFR)) {
  202. case APIC_DFR_FLAT:
  203. if (logical_id & mda)
  204. result = 1;
  205. break;
  206. case APIC_DFR_CLUSTER:
  207. if (((logical_id >> 4) == (mda >> 0x4))
  208. && (logical_id & mda & 0xf))
  209. result = 1;
  210. break;
  211. default:
  212. printk(KERN_WARNING "Bad DFR vcpu %d: %08x\n",
  213. apic->vcpu->vcpu_id, apic_get_reg(apic, APIC_DFR));
  214. break;
  215. }
  216. return result;
  217. }
  218. static int apic_match_dest(struct kvm_vcpu *vcpu, struct kvm_lapic *source,
  219. int short_hand, int dest, int dest_mode)
  220. {
  221. int result = 0;
  222. struct kvm_lapic *target = vcpu->apic;
  223. apic_debug("target %p, source %p, dest 0x%x, "
  224. "dest_mode 0x%x, short_hand 0x%x",
  225. target, source, dest, dest_mode, short_hand);
  226. ASSERT(!target);
  227. switch (short_hand) {
  228. case APIC_DEST_NOSHORT:
  229. if (dest_mode == 0) {
  230. /* Physical mode. */
  231. if ((dest == 0xFF) || (dest == kvm_apic_id(target)))
  232. result = 1;
  233. } else
  234. /* Logical mode. */
  235. result = kvm_apic_match_logical_addr(target, dest);
  236. break;
  237. case APIC_DEST_SELF:
  238. if (target == source)
  239. result = 1;
  240. break;
  241. case APIC_DEST_ALLINC:
  242. result = 1;
  243. break;
  244. case APIC_DEST_ALLBUT:
  245. if (target != source)
  246. result = 1;
  247. break;
  248. default:
  249. printk(KERN_WARNING "Bad dest shorthand value %x\n",
  250. short_hand);
  251. break;
  252. }
  253. return result;
  254. }
  255. /*
  256. * Add a pending IRQ into lapic.
  257. * Return 1 if successfully added and 0 if discarded.
  258. */
  259. static int __apic_accept_irq(struct kvm_lapic *apic, int delivery_mode,
  260. int vector, int level, int trig_mode)
  261. {
  262. int orig_irr, result = 0;
  263. struct kvm_vcpu *vcpu = apic->vcpu;
  264. switch (delivery_mode) {
  265. case APIC_DM_FIXED:
  266. case APIC_DM_LOWEST:
  267. /* FIXME add logic for vcpu on reset */
  268. if (unlikely(!apic_enabled(apic)))
  269. break;
  270. orig_irr = apic_test_and_set_irr(vector, apic);
  271. if (orig_irr && trig_mode) {
  272. apic_debug("level trig mode repeatedly for vector %d",
  273. vector);
  274. break;
  275. }
  276. if (trig_mode) {
  277. apic_debug("level trig mode for vector %d", vector);
  278. apic_set_vector(vector, apic->regs + APIC_TMR);
  279. } else
  280. apic_clear_vector(vector, apic->regs + APIC_TMR);
  281. if (vcpu->mp_state == VCPU_MP_STATE_RUNNABLE)
  282. kvm_vcpu_kick(vcpu);
  283. else if (vcpu->mp_state == VCPU_MP_STATE_HALTED) {
  284. vcpu->mp_state = VCPU_MP_STATE_RUNNABLE;
  285. if (waitqueue_active(&vcpu->wq))
  286. wake_up_interruptible(&vcpu->wq);
  287. }
  288. result = (orig_irr == 0);
  289. break;
  290. case APIC_DM_REMRD:
  291. printk(KERN_DEBUG "Ignoring delivery mode 3\n");
  292. break;
  293. case APIC_DM_SMI:
  294. printk(KERN_DEBUG "Ignoring guest SMI\n");
  295. break;
  296. case APIC_DM_NMI:
  297. printk(KERN_DEBUG "Ignoring guest NMI\n");
  298. break;
  299. case APIC_DM_INIT:
  300. if (level) {
  301. if (vcpu->mp_state == VCPU_MP_STATE_RUNNABLE)
  302. printk(KERN_DEBUG
  303. "INIT on a runnable vcpu %d\n",
  304. vcpu->vcpu_id);
  305. vcpu->mp_state = VCPU_MP_STATE_INIT_RECEIVED;
  306. kvm_vcpu_kick(vcpu);
  307. } else {
  308. printk(KERN_DEBUG
  309. "Ignoring de-assert INIT to vcpu %d\n",
  310. vcpu->vcpu_id);
  311. }
  312. break;
  313. case APIC_DM_STARTUP:
  314. printk(KERN_DEBUG "SIPI to vcpu %d vector 0x%02x\n",
  315. vcpu->vcpu_id, vector);
  316. if (vcpu->mp_state == VCPU_MP_STATE_INIT_RECEIVED) {
  317. vcpu->sipi_vector = vector;
  318. vcpu->mp_state = VCPU_MP_STATE_SIPI_RECEIVED;
  319. if (waitqueue_active(&vcpu->wq))
  320. wake_up_interruptible(&vcpu->wq);
  321. }
  322. break;
  323. default:
  324. printk(KERN_ERR "TODO: unsupported delivery mode %x\n",
  325. delivery_mode);
  326. break;
  327. }
  328. return result;
  329. }
  330. struct kvm_lapic *kvm_apic_round_robin(struct kvm *kvm, u8 vector,
  331. unsigned long bitmap)
  332. {
  333. int last;
  334. int next;
  335. struct kvm_lapic *apic = NULL;
  336. last = kvm->round_robin_prev_vcpu;
  337. next = last;
  338. do {
  339. if (++next == KVM_MAX_VCPUS)
  340. next = 0;
  341. if (kvm->vcpus[next] == NULL || !test_bit(next, &bitmap))
  342. continue;
  343. apic = kvm->vcpus[next]->apic;
  344. if (apic && apic_enabled(apic))
  345. break;
  346. apic = NULL;
  347. } while (next != last);
  348. kvm->round_robin_prev_vcpu = next;
  349. if (!apic)
  350. printk(KERN_DEBUG "vcpu not ready for apic_round_robin\n");
  351. return apic;
  352. }
  353. static void apic_set_eoi(struct kvm_lapic *apic)
  354. {
  355. int vector = apic_find_highest_isr(apic);
  356. /*
  357. * Not every write EOI will has corresponding ISR,
  358. * one example is when Kernel check timer on setup_IO_APIC
  359. */
  360. if (vector == -1)
  361. return;
  362. apic_clear_vector(vector, apic->regs + APIC_ISR);
  363. apic_update_ppr(apic);
  364. if (apic_test_and_clear_vector(vector, apic->regs + APIC_TMR))
  365. kvm_ioapic_update_eoi(apic->vcpu->kvm, vector);
  366. }
  367. static void apic_send_ipi(struct kvm_lapic *apic)
  368. {
  369. u32 icr_low = apic_get_reg(apic, APIC_ICR);
  370. u32 icr_high = apic_get_reg(apic, APIC_ICR2);
  371. unsigned int dest = GET_APIC_DEST_FIELD(icr_high);
  372. unsigned int short_hand = icr_low & APIC_SHORT_MASK;
  373. unsigned int trig_mode = icr_low & APIC_INT_LEVELTRIG;
  374. unsigned int level = icr_low & APIC_INT_ASSERT;
  375. unsigned int dest_mode = icr_low & APIC_DEST_MASK;
  376. unsigned int delivery_mode = icr_low & APIC_MODE_MASK;
  377. unsigned int vector = icr_low & APIC_VECTOR_MASK;
  378. struct kvm_lapic *target;
  379. struct kvm_vcpu *vcpu;
  380. unsigned long lpr_map = 0;
  381. int i;
  382. apic_debug("icr_high 0x%x, icr_low 0x%x, "
  383. "short_hand 0x%x, dest 0x%x, trig_mode 0x%x, level 0x%x, "
  384. "dest_mode 0x%x, delivery_mode 0x%x, vector 0x%x\n",
  385. icr_high, icr_low, short_hand, dest,
  386. trig_mode, level, dest_mode, delivery_mode, vector);
  387. for (i = 0; i < KVM_MAX_VCPUS; i++) {
  388. vcpu = apic->vcpu->kvm->vcpus[i];
  389. if (!vcpu)
  390. continue;
  391. if (vcpu->apic &&
  392. apic_match_dest(vcpu, apic, short_hand, dest, dest_mode)) {
  393. if (delivery_mode == APIC_DM_LOWEST)
  394. set_bit(vcpu->vcpu_id, &lpr_map);
  395. else
  396. __apic_accept_irq(vcpu->apic, delivery_mode,
  397. vector, level, trig_mode);
  398. }
  399. }
  400. if (delivery_mode == APIC_DM_LOWEST) {
  401. target = kvm_apic_round_robin(vcpu->kvm, vector, lpr_map);
  402. if (target != NULL)
  403. __apic_accept_irq(target, delivery_mode,
  404. vector, level, trig_mode);
  405. }
  406. }
  407. static u32 apic_get_tmcct(struct kvm_lapic *apic)
  408. {
  409. u64 counter_passed;
  410. ktime_t passed, now;
  411. u32 tmcct;
  412. ASSERT(apic != NULL);
  413. now = apic->timer.dev.base->get_time();
  414. tmcct = apic_get_reg(apic, APIC_TMICT);
  415. /* if initial count is 0, current count should also be 0 */
  416. if (tmcct == 0)
  417. return 0;
  418. if (unlikely(ktime_to_ns(now) <=
  419. ktime_to_ns(apic->timer.last_update))) {
  420. /* Wrap around */
  421. passed = ktime_add(( {
  422. (ktime_t) {
  423. .tv64 = KTIME_MAX -
  424. (apic->timer.last_update).tv64}; }
  425. ), now);
  426. apic_debug("time elapsed\n");
  427. } else
  428. passed = ktime_sub(now, apic->timer.last_update);
  429. counter_passed = div64_64(ktime_to_ns(passed),
  430. (APIC_BUS_CYCLE_NS * apic->timer.divide_count));
  431. if (counter_passed > tmcct) {
  432. if (unlikely(!apic_lvtt_period(apic))) {
  433. /* one-shot timers stick at 0 until reset */
  434. tmcct = 0;
  435. } else {
  436. /*
  437. * periodic timers reset to APIC_TMICT when they
  438. * hit 0. The while loop simulates this happening N
  439. * times. (counter_passed %= tmcct) would also work,
  440. * but might be slower or not work on 32-bit??
  441. */
  442. while (counter_passed > tmcct)
  443. counter_passed -= tmcct;
  444. tmcct -= counter_passed;
  445. }
  446. } else {
  447. tmcct -= counter_passed;
  448. }
  449. return tmcct;
  450. }
  451. static u32 __apic_read(struct kvm_lapic *apic, unsigned int offset)
  452. {
  453. u32 val = 0;
  454. if (offset >= LAPIC_MMIO_LENGTH)
  455. return 0;
  456. switch (offset) {
  457. case APIC_ARBPRI:
  458. printk(KERN_WARNING "Access APIC ARBPRI register "
  459. "which is for P6\n");
  460. break;
  461. case APIC_TMCCT: /* Timer CCR */
  462. val = apic_get_tmcct(apic);
  463. break;
  464. default:
  465. apic_update_ppr(apic);
  466. val = apic_get_reg(apic, offset);
  467. break;
  468. }
  469. return val;
  470. }
  471. static void apic_mmio_read(struct kvm_io_device *this,
  472. gpa_t address, int len, void *data)
  473. {
  474. struct kvm_lapic *apic = (struct kvm_lapic *)this->private;
  475. unsigned int offset = address - apic->base_address;
  476. unsigned char alignment = offset & 0xf;
  477. u32 result;
  478. if ((alignment + len) > 4) {
  479. printk(KERN_ERR "KVM_APIC_READ: alignment error %lx %d",
  480. (unsigned long)address, len);
  481. return;
  482. }
  483. result = __apic_read(apic, offset & ~0xf);
  484. switch (len) {
  485. case 1:
  486. case 2:
  487. case 4:
  488. memcpy(data, (char *)&result + alignment, len);
  489. break;
  490. default:
  491. printk(KERN_ERR "Local APIC read with len = %x, "
  492. "should be 1,2, or 4 instead\n", len);
  493. break;
  494. }
  495. }
  496. static void update_divide_count(struct kvm_lapic *apic)
  497. {
  498. u32 tmp1, tmp2, tdcr;
  499. tdcr = apic_get_reg(apic, APIC_TDCR);
  500. tmp1 = tdcr & 0xf;
  501. tmp2 = ((tmp1 & 0x3) | ((tmp1 & 0x8) >> 1)) + 1;
  502. apic->timer.divide_count = 0x1 << (tmp2 & 0x7);
  503. apic_debug("timer divide count is 0x%x\n",
  504. apic->timer.divide_count);
  505. }
  506. static void start_apic_timer(struct kvm_lapic *apic)
  507. {
  508. ktime_t now = apic->timer.dev.base->get_time();
  509. apic->timer.last_update = now;
  510. apic->timer.period = apic_get_reg(apic, APIC_TMICT) *
  511. APIC_BUS_CYCLE_NS * apic->timer.divide_count;
  512. atomic_set(&apic->timer.pending, 0);
  513. hrtimer_start(&apic->timer.dev,
  514. ktime_add_ns(now, apic->timer.period),
  515. HRTIMER_MODE_ABS);
  516. apic_debug("%s: bus cycle is %" PRId64 "ns, now 0x%016"
  517. PRIx64 ", "
  518. "timer initial count 0x%x, period %lldns, "
  519. "expire @ 0x%016" PRIx64 ".\n", __FUNCTION__,
  520. APIC_BUS_CYCLE_NS, ktime_to_ns(now),
  521. apic_get_reg(apic, APIC_TMICT),
  522. apic->timer.period,
  523. ktime_to_ns(ktime_add_ns(now,
  524. apic->timer.period)));
  525. }
  526. static void apic_mmio_write(struct kvm_io_device *this,
  527. gpa_t address, int len, const void *data)
  528. {
  529. struct kvm_lapic *apic = (struct kvm_lapic *)this->private;
  530. unsigned int offset = address - apic->base_address;
  531. unsigned char alignment = offset & 0xf;
  532. u32 val;
  533. /*
  534. * APIC register must be aligned on 128-bits boundary.
  535. * 32/64/128 bits registers must be accessed thru 32 bits.
  536. * Refer SDM 8.4.1
  537. */
  538. if (len != 4 || alignment) {
  539. if (printk_ratelimit())
  540. printk(KERN_ERR "apic write: bad size=%d %lx\n",
  541. len, (long)address);
  542. return;
  543. }
  544. val = *(u32 *) data;
  545. /* too common printing */
  546. if (offset != APIC_EOI)
  547. apic_debug("%s: offset 0x%x with length 0x%x, and value is "
  548. "0x%x\n", __FUNCTION__, offset, len, val);
  549. offset &= 0xff0;
  550. switch (offset) {
  551. case APIC_ID: /* Local APIC ID */
  552. apic_set_reg(apic, APIC_ID, val);
  553. break;
  554. case APIC_TASKPRI:
  555. apic_set_tpr(apic, val & 0xff);
  556. break;
  557. case APIC_EOI:
  558. apic_set_eoi(apic);
  559. break;
  560. case APIC_LDR:
  561. apic_set_reg(apic, APIC_LDR, val & APIC_LDR_MASK);
  562. break;
  563. case APIC_DFR:
  564. apic_set_reg(apic, APIC_DFR, val | 0x0FFFFFFF);
  565. break;
  566. case APIC_SPIV:
  567. apic_set_reg(apic, APIC_SPIV, val & 0x3ff);
  568. if (!(val & APIC_SPIV_APIC_ENABLED)) {
  569. int i;
  570. u32 lvt_val;
  571. for (i = 0; i < APIC_LVT_NUM; i++) {
  572. lvt_val = apic_get_reg(apic,
  573. APIC_LVTT + 0x10 * i);
  574. apic_set_reg(apic, APIC_LVTT + 0x10 * i,
  575. lvt_val | APIC_LVT_MASKED);
  576. }
  577. atomic_set(&apic->timer.pending, 0);
  578. }
  579. break;
  580. case APIC_ICR:
  581. /* No delay here, so we always clear the pending bit */
  582. apic_set_reg(apic, APIC_ICR, val & ~(1 << 12));
  583. apic_send_ipi(apic);
  584. break;
  585. case APIC_ICR2:
  586. apic_set_reg(apic, APIC_ICR2, val & 0xff000000);
  587. break;
  588. case APIC_LVTT:
  589. case APIC_LVTTHMR:
  590. case APIC_LVTPC:
  591. case APIC_LVT0:
  592. case APIC_LVT1:
  593. case APIC_LVTERR:
  594. /* TODO: Check vector */
  595. if (!apic_sw_enabled(apic))
  596. val |= APIC_LVT_MASKED;
  597. val &= apic_lvt_mask[(offset - APIC_LVTT) >> 4];
  598. apic_set_reg(apic, offset, val);
  599. break;
  600. case APIC_TMICT:
  601. hrtimer_cancel(&apic->timer.dev);
  602. apic_set_reg(apic, APIC_TMICT, val);
  603. start_apic_timer(apic);
  604. return;
  605. case APIC_TDCR:
  606. if (val & 4)
  607. printk(KERN_ERR "KVM_WRITE:TDCR %x\n", val);
  608. apic_set_reg(apic, APIC_TDCR, val);
  609. update_divide_count(apic);
  610. break;
  611. default:
  612. apic_debug("Local APIC Write to read-only register %x\n",
  613. offset);
  614. break;
  615. }
  616. }
  617. static int apic_mmio_range(struct kvm_io_device *this, gpa_t addr)
  618. {
  619. struct kvm_lapic *apic = (struct kvm_lapic *)this->private;
  620. int ret = 0;
  621. if (apic_hw_enabled(apic) &&
  622. (addr >= apic->base_address) &&
  623. (addr < (apic->base_address + LAPIC_MMIO_LENGTH)))
  624. ret = 1;
  625. return ret;
  626. }
  627. void kvm_free_lapic(struct kvm_vcpu *vcpu)
  628. {
  629. if (!vcpu->apic)
  630. return;
  631. hrtimer_cancel(&vcpu->apic->timer.dev);
  632. if (vcpu->apic->regs_page)
  633. __free_page(vcpu->apic->regs_page);
  634. kfree(vcpu->apic);
  635. }
  636. /*
  637. *----------------------------------------------------------------------
  638. * LAPIC interface
  639. *----------------------------------------------------------------------
  640. */
  641. void kvm_lapic_set_tpr(struct kvm_vcpu *vcpu, unsigned long cr8)
  642. {
  643. struct kvm_lapic *apic = vcpu->apic;
  644. if (!apic)
  645. return;
  646. apic_set_tpr(apic, ((cr8 & 0x0f) << 4));
  647. }
  648. u64 kvm_lapic_get_cr8(struct kvm_vcpu *vcpu)
  649. {
  650. struct kvm_lapic *apic = vcpu->apic;
  651. u64 tpr;
  652. if (!apic)
  653. return 0;
  654. tpr = (u64) apic_get_reg(apic, APIC_TASKPRI);
  655. return (tpr & 0xf0) >> 4;
  656. }
  657. EXPORT_SYMBOL_GPL(kvm_lapic_get_cr8);
  658. void kvm_lapic_set_base(struct kvm_vcpu *vcpu, u64 value)
  659. {
  660. struct kvm_lapic *apic = vcpu->apic;
  661. if (!apic) {
  662. value |= MSR_IA32_APICBASE_BSP;
  663. vcpu->apic_base = value;
  664. return;
  665. }
  666. if (apic->vcpu->vcpu_id)
  667. value &= ~MSR_IA32_APICBASE_BSP;
  668. vcpu->apic_base = value;
  669. apic->base_address = apic->vcpu->apic_base &
  670. MSR_IA32_APICBASE_BASE;
  671. /* with FSB delivery interrupt, we can restart APIC functionality */
  672. apic_debug("apic base msr is 0x%016" PRIx64 ", and base address is "
  673. "0x%lx.\n", apic->apic_base, apic->base_address);
  674. }
  675. u64 kvm_lapic_get_base(struct kvm_vcpu *vcpu)
  676. {
  677. return vcpu->apic_base;
  678. }
  679. EXPORT_SYMBOL_GPL(kvm_lapic_get_base);
  680. void kvm_lapic_reset(struct kvm_vcpu *vcpu)
  681. {
  682. struct kvm_lapic *apic;
  683. int i;
  684. apic_debug("%s\n", __FUNCTION__);
  685. ASSERT(vcpu);
  686. apic = vcpu->apic;
  687. ASSERT(apic != NULL);
  688. /* Stop the timer in case it's a reset to an active apic */
  689. hrtimer_cancel(&apic->timer.dev);
  690. apic_set_reg(apic, APIC_ID, vcpu->vcpu_id << 24);
  691. apic_set_reg(apic, APIC_LVR, APIC_VERSION);
  692. for (i = 0; i < APIC_LVT_NUM; i++)
  693. apic_set_reg(apic, APIC_LVTT + 0x10 * i, APIC_LVT_MASKED);
  694. apic_set_reg(apic, APIC_LVT0,
  695. SET_APIC_DELIVERY_MODE(0, APIC_MODE_EXTINT));
  696. apic_set_reg(apic, APIC_DFR, 0xffffffffU);
  697. apic_set_reg(apic, APIC_SPIV, 0xff);
  698. apic_set_reg(apic, APIC_TASKPRI, 0);
  699. apic_set_reg(apic, APIC_LDR, 0);
  700. apic_set_reg(apic, APIC_ESR, 0);
  701. apic_set_reg(apic, APIC_ICR, 0);
  702. apic_set_reg(apic, APIC_ICR2, 0);
  703. apic_set_reg(apic, APIC_TDCR, 0);
  704. apic_set_reg(apic, APIC_TMICT, 0);
  705. for (i = 0; i < 8; i++) {
  706. apic_set_reg(apic, APIC_IRR + 0x10 * i, 0);
  707. apic_set_reg(apic, APIC_ISR + 0x10 * i, 0);
  708. apic_set_reg(apic, APIC_TMR + 0x10 * i, 0);
  709. }
  710. update_divide_count(apic);
  711. atomic_set(&apic->timer.pending, 0);
  712. if (vcpu->vcpu_id == 0)
  713. vcpu->apic_base |= MSR_IA32_APICBASE_BSP;
  714. apic_update_ppr(apic);
  715. apic_debug(KERN_INFO "%s: vcpu=%p, id=%d, base_msr="
  716. "0x%016" PRIx64 ", base_address=0x%0lx.\n", __FUNCTION__,
  717. vcpu, kvm_apic_id(apic),
  718. vcpu->apic_base, apic->base_address);
  719. }
  720. EXPORT_SYMBOL_GPL(kvm_lapic_reset);
  721. int kvm_lapic_enabled(struct kvm_vcpu *vcpu)
  722. {
  723. struct kvm_lapic *apic = vcpu->apic;
  724. int ret = 0;
  725. if (!apic)
  726. return 0;
  727. ret = apic_enabled(apic);
  728. return ret;
  729. }
  730. EXPORT_SYMBOL_GPL(kvm_lapic_enabled);
  731. /*
  732. *----------------------------------------------------------------------
  733. * timer interface
  734. *----------------------------------------------------------------------
  735. */
  736. /* TODO: make sure __apic_timer_fn runs in current pCPU */
  737. static int __apic_timer_fn(struct kvm_lapic *apic)
  738. {
  739. int result = 0;
  740. wait_queue_head_t *q = &apic->vcpu->wq;
  741. atomic_inc(&apic->timer.pending);
  742. if (waitqueue_active(q)) {
  743. apic->vcpu->mp_state = VCPU_MP_STATE_RUNNABLE;
  744. wake_up_interruptible(q);
  745. }
  746. if (apic_lvtt_period(apic)) {
  747. result = 1;
  748. apic->timer.dev.expires = ktime_add_ns(
  749. apic->timer.dev.expires,
  750. apic->timer.period);
  751. }
  752. return result;
  753. }
  754. static int __inject_apic_timer_irq(struct kvm_lapic *apic)
  755. {
  756. int vector;
  757. vector = apic_lvt_vector(apic, APIC_LVTT);
  758. return __apic_accept_irq(apic, APIC_DM_FIXED, vector, 1, 0);
  759. }
  760. static enum hrtimer_restart apic_timer_fn(struct hrtimer *data)
  761. {
  762. struct kvm_lapic *apic;
  763. int restart_timer = 0;
  764. apic = container_of(data, struct kvm_lapic, timer.dev);
  765. restart_timer = __apic_timer_fn(apic);
  766. if (restart_timer)
  767. return HRTIMER_RESTART;
  768. else
  769. return HRTIMER_NORESTART;
  770. }
  771. int kvm_create_lapic(struct kvm_vcpu *vcpu)
  772. {
  773. struct kvm_lapic *apic;
  774. ASSERT(vcpu != NULL);
  775. apic_debug("apic_init %d\n", vcpu->vcpu_id);
  776. apic = kzalloc(sizeof(*apic), GFP_KERNEL);
  777. if (!apic)
  778. goto nomem;
  779. vcpu->apic = apic;
  780. apic->regs_page = alloc_page(GFP_KERNEL);
  781. if (apic->regs_page == NULL) {
  782. printk(KERN_ERR "malloc apic regs error for vcpu %x\n",
  783. vcpu->vcpu_id);
  784. goto nomem_free_apic;
  785. }
  786. apic->regs = page_address(apic->regs_page);
  787. memset(apic->regs, 0, PAGE_SIZE);
  788. apic->vcpu = vcpu;
  789. hrtimer_init(&apic->timer.dev, CLOCK_MONOTONIC, HRTIMER_MODE_ABS);
  790. apic->timer.dev.function = apic_timer_fn;
  791. apic->base_address = APIC_DEFAULT_PHYS_BASE;
  792. vcpu->apic_base = APIC_DEFAULT_PHYS_BASE;
  793. kvm_lapic_reset(vcpu);
  794. apic->dev.read = apic_mmio_read;
  795. apic->dev.write = apic_mmio_write;
  796. apic->dev.in_range = apic_mmio_range;
  797. apic->dev.private = apic;
  798. return 0;
  799. nomem_free_apic:
  800. kfree(apic);
  801. nomem:
  802. return -ENOMEM;
  803. }
  804. EXPORT_SYMBOL_GPL(kvm_create_lapic);
  805. int kvm_apic_has_interrupt(struct kvm_vcpu *vcpu)
  806. {
  807. struct kvm_lapic *apic = vcpu->apic;
  808. int highest_irr;
  809. if (!apic || !apic_enabled(apic))
  810. return -1;
  811. apic_update_ppr(apic);
  812. highest_irr = apic_find_highest_irr(apic);
  813. if ((highest_irr == -1) ||
  814. ((highest_irr & 0xF0) <= apic_get_reg(apic, APIC_PROCPRI)))
  815. return -1;
  816. return highest_irr;
  817. }
  818. int kvm_apic_accept_pic_intr(struct kvm_vcpu *vcpu)
  819. {
  820. u32 lvt0 = apic_get_reg(vcpu->apic, APIC_LVT0);
  821. int r = 0;
  822. if (vcpu->vcpu_id == 0) {
  823. if (!apic_hw_enabled(vcpu->apic))
  824. r = 1;
  825. if ((lvt0 & APIC_LVT_MASKED) == 0 &&
  826. GET_APIC_DELIVERY_MODE(lvt0) == APIC_MODE_EXTINT)
  827. r = 1;
  828. }
  829. return r;
  830. }
  831. void kvm_inject_apic_timer_irqs(struct kvm_vcpu *vcpu)
  832. {
  833. struct kvm_lapic *apic = vcpu->apic;
  834. if (apic && apic_lvt_enabled(apic, APIC_LVTT) &&
  835. atomic_read(&apic->timer.pending) > 0) {
  836. if (__inject_apic_timer_irq(apic))
  837. atomic_dec(&apic->timer.pending);
  838. }
  839. }
  840. void kvm_apic_timer_intr_post(struct kvm_vcpu *vcpu, int vec)
  841. {
  842. struct kvm_lapic *apic = vcpu->apic;
  843. if (apic && apic_lvt_vector(apic, APIC_LVTT) == vec)
  844. apic->timer.last_update = ktime_add_ns(
  845. apic->timer.last_update,
  846. apic->timer.period);
  847. }
  848. int kvm_get_apic_interrupt(struct kvm_vcpu *vcpu)
  849. {
  850. int vector = kvm_apic_has_interrupt(vcpu);
  851. struct kvm_lapic *apic = vcpu->apic;
  852. if (vector == -1)
  853. return -1;
  854. apic_set_vector(vector, apic->regs + APIC_ISR);
  855. apic_update_ppr(apic);
  856. apic_clear_irr(vector, apic);
  857. return vector;
  858. }
  859. void kvm_apic_post_state_restore(struct kvm_vcpu *vcpu)
  860. {
  861. struct kvm_lapic *apic = vcpu->apic;
  862. apic->base_address = vcpu->apic_base &
  863. MSR_IA32_APICBASE_BASE;
  864. apic_set_reg(apic, APIC_LVR, APIC_VERSION);
  865. apic_update_ppr(apic);
  866. hrtimer_cancel(&apic->timer.dev);
  867. update_divide_count(apic);
  868. start_apic_timer(apic);
  869. }
  870. void kvm_migrate_apic_timer(struct kvm_vcpu *vcpu)
  871. {
  872. struct kvm_lapic *apic = vcpu->apic;
  873. struct hrtimer *timer;
  874. if (!apic)
  875. return;
  876. timer = &apic->timer.dev;
  877. if (hrtimer_cancel(timer))
  878. hrtimer_start(timer, timer->expires, HRTIMER_MODE_ABS);
  879. }
  880. EXPORT_SYMBOL_GPL(kvm_migrate_apic_timer);