irq_comm.c 11 KB

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  1. /*
  2. * irq_comm.c: Common API for in kernel interrupt controller
  3. * Copyright (c) 2007, Intel Corporation.
  4. *
  5. * This program is free software; you can redistribute it and/or modify it
  6. * under the terms and conditions of the GNU General Public License,
  7. * version 2, as published by the Free Software Foundation.
  8. *
  9. * This program is distributed in the hope it will be useful, but WITHOUT
  10. * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
  11. * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for
  12. * more details.
  13. *
  14. * You should have received a copy of the GNU General Public License along with
  15. * this program; if not, write to the Free Software Foundation, Inc., 59 Temple
  16. * Place - Suite 330, Boston, MA 02111-1307 USA.
  17. * Authors:
  18. * Yaozu (Eddie) Dong <Eddie.dong@intel.com>
  19. *
  20. */
  21. #include <linux/kvm_host.h>
  22. #include <trace/events/kvm.h>
  23. #include <asm/msidef.h>
  24. #ifdef CONFIG_IA64
  25. #include <asm/iosapic.h>
  26. #endif
  27. #include "irq.h"
  28. #include "ioapic.h"
  29. static inline int kvm_irq_line_state(unsigned long *irq_state,
  30. int irq_source_id, int level)
  31. {
  32. /* Logical OR for level trig interrupt */
  33. if (level)
  34. set_bit(irq_source_id, irq_state);
  35. else
  36. clear_bit(irq_source_id, irq_state);
  37. return !!(*irq_state);
  38. }
  39. static int kvm_set_pic_irq(struct kvm_kernel_irq_routing_entry *e,
  40. struct kvm *kvm, int irq_source_id, int level)
  41. {
  42. #ifdef CONFIG_X86
  43. struct kvm_pic *pic = pic_irqchip(kvm);
  44. level = kvm_irq_line_state(&pic->irq_states[e->irqchip.pin],
  45. irq_source_id, level);
  46. return kvm_pic_set_irq(pic, e->irqchip.pin, level);
  47. #else
  48. return -1;
  49. #endif
  50. }
  51. static int kvm_set_ioapic_irq(struct kvm_kernel_irq_routing_entry *e,
  52. struct kvm *kvm, int irq_source_id, int level)
  53. {
  54. struct kvm_ioapic *ioapic = kvm->arch.vioapic;
  55. level = kvm_irq_line_state(&ioapic->irq_states[e->irqchip.pin],
  56. irq_source_id, level);
  57. return kvm_ioapic_set_irq(ioapic, e->irqchip.pin, level);
  58. }
  59. inline static bool kvm_is_dm_lowest_prio(struct kvm_lapic_irq *irq)
  60. {
  61. #ifdef CONFIG_IA64
  62. return irq->delivery_mode ==
  63. (IOSAPIC_LOWEST_PRIORITY << IOSAPIC_DELIVERY_SHIFT);
  64. #else
  65. return irq->delivery_mode == APIC_DM_LOWEST;
  66. #endif
  67. }
  68. int kvm_irq_delivery_to_apic(struct kvm *kvm, struct kvm_lapic *src,
  69. struct kvm_lapic_irq *irq)
  70. {
  71. int i, r = -1;
  72. struct kvm_vcpu *vcpu, *lowest = NULL;
  73. WARN_ON(!mutex_is_locked(&kvm->irq_lock));
  74. if (irq->dest_mode == 0 && irq->dest_id == 0xff &&
  75. kvm_is_dm_lowest_prio(irq))
  76. printk(KERN_INFO "kvm: apic: phys broadcast and lowest prio\n");
  77. kvm_for_each_vcpu(i, vcpu, kvm) {
  78. if (!kvm_apic_present(vcpu))
  79. continue;
  80. if (!kvm_apic_match_dest(vcpu, src, irq->shorthand,
  81. irq->dest_id, irq->dest_mode))
  82. continue;
  83. if (!kvm_is_dm_lowest_prio(irq)) {
  84. if (r < 0)
  85. r = 0;
  86. r += kvm_apic_set_irq(vcpu, irq);
  87. } else {
  88. if (!lowest)
  89. lowest = vcpu;
  90. else if (kvm_apic_compare_prio(vcpu, lowest) < 0)
  91. lowest = vcpu;
  92. }
  93. }
  94. if (lowest)
  95. r = kvm_apic_set_irq(lowest, irq);
  96. return r;
  97. }
  98. static int kvm_set_msi(struct kvm_kernel_irq_routing_entry *e,
  99. struct kvm *kvm, int irq_source_id, int level)
  100. {
  101. struct kvm_lapic_irq irq;
  102. if (!level)
  103. return -1;
  104. trace_kvm_msi_set_irq(e->msi.address_lo, e->msi.data);
  105. irq.dest_id = (e->msi.address_lo &
  106. MSI_ADDR_DEST_ID_MASK) >> MSI_ADDR_DEST_ID_SHIFT;
  107. irq.vector = (e->msi.data &
  108. MSI_DATA_VECTOR_MASK) >> MSI_DATA_VECTOR_SHIFT;
  109. irq.dest_mode = (1 << MSI_ADDR_DEST_MODE_SHIFT) & e->msi.address_lo;
  110. irq.trig_mode = (1 << MSI_DATA_TRIGGER_SHIFT) & e->msi.data;
  111. irq.delivery_mode = e->msi.data & 0x700;
  112. irq.level = 1;
  113. irq.shorthand = 0;
  114. /* TODO Deal with RH bit of MSI message address */
  115. return kvm_irq_delivery_to_apic(kvm, NULL, &irq);
  116. }
  117. /* This should be called with the kvm->irq_lock mutex held
  118. * Return value:
  119. * < 0 Interrupt was ignored (masked or not delivered for other reasons)
  120. * = 0 Interrupt was coalesced (previous irq is still pending)
  121. * > 0 Number of CPUs interrupt was delivered to
  122. */
  123. int kvm_set_irq(struct kvm *kvm, int irq_source_id, int irq, int level)
  124. {
  125. struct kvm_kernel_irq_routing_entry *e;
  126. int ret = -1;
  127. trace_kvm_set_irq(irq, level, irq_source_id);
  128. WARN_ON(!mutex_is_locked(&kvm->irq_lock));
  129. /* Not possible to detect if the guest uses the PIC or the
  130. * IOAPIC. So set the bit in both. The guest will ignore
  131. * writes to the unused one.
  132. */
  133. list_for_each_entry(e, &kvm->irq_routing, link)
  134. if (e->gsi == irq) {
  135. int r = e->set(e, kvm, irq_source_id, level);
  136. if (r < 0)
  137. continue;
  138. ret = r + ((ret < 0) ? 0 : ret);
  139. }
  140. return ret;
  141. }
  142. void kvm_notify_acked_irq(struct kvm *kvm, unsigned irqchip, unsigned pin)
  143. {
  144. struct kvm_kernel_irq_routing_entry *e;
  145. struct kvm_irq_ack_notifier *kian;
  146. struct hlist_node *n;
  147. unsigned gsi = pin;
  148. trace_kvm_ack_irq(irqchip, pin);
  149. list_for_each_entry(e, &kvm->irq_routing, link)
  150. if (e->type == KVM_IRQ_ROUTING_IRQCHIP &&
  151. e->irqchip.irqchip == irqchip &&
  152. e->irqchip.pin == pin) {
  153. gsi = e->gsi;
  154. break;
  155. }
  156. hlist_for_each_entry(kian, n, &kvm->arch.irq_ack_notifier_list, link)
  157. if (kian->gsi == gsi)
  158. kian->irq_acked(kian);
  159. }
  160. void kvm_register_irq_ack_notifier(struct kvm *kvm,
  161. struct kvm_irq_ack_notifier *kian)
  162. {
  163. mutex_lock(&kvm->irq_lock);
  164. hlist_add_head(&kian->link, &kvm->arch.irq_ack_notifier_list);
  165. mutex_unlock(&kvm->irq_lock);
  166. }
  167. void kvm_unregister_irq_ack_notifier(struct kvm *kvm,
  168. struct kvm_irq_ack_notifier *kian)
  169. {
  170. mutex_lock(&kvm->irq_lock);
  171. hlist_del_init(&kian->link);
  172. mutex_unlock(&kvm->irq_lock);
  173. }
  174. int kvm_request_irq_source_id(struct kvm *kvm)
  175. {
  176. unsigned long *bitmap = &kvm->arch.irq_sources_bitmap;
  177. int irq_source_id;
  178. mutex_lock(&kvm->irq_lock);
  179. irq_source_id = find_first_zero_bit(bitmap,
  180. sizeof(kvm->arch.irq_sources_bitmap));
  181. if (irq_source_id >= sizeof(kvm->arch.irq_sources_bitmap)) {
  182. printk(KERN_WARNING "kvm: exhaust allocatable IRQ sources!\n");
  183. return -EFAULT;
  184. }
  185. ASSERT(irq_source_id != KVM_USERSPACE_IRQ_SOURCE_ID);
  186. set_bit(irq_source_id, bitmap);
  187. mutex_unlock(&kvm->irq_lock);
  188. return irq_source_id;
  189. }
  190. void kvm_free_irq_source_id(struct kvm *kvm, int irq_source_id)
  191. {
  192. int i;
  193. ASSERT(irq_source_id != KVM_USERSPACE_IRQ_SOURCE_ID);
  194. mutex_lock(&kvm->irq_lock);
  195. if (irq_source_id < 0 ||
  196. irq_source_id >= sizeof(kvm->arch.irq_sources_bitmap)) {
  197. printk(KERN_ERR "kvm: IRQ source ID out of range!\n");
  198. return;
  199. }
  200. for (i = 0; i < KVM_IOAPIC_NUM_PINS; i++) {
  201. clear_bit(irq_source_id, &kvm->arch.vioapic->irq_states[i]);
  202. if (i >= 16)
  203. continue;
  204. #ifdef CONFIG_X86
  205. clear_bit(irq_source_id, &pic_irqchip(kvm)->irq_states[i]);
  206. #endif
  207. }
  208. clear_bit(irq_source_id, &kvm->arch.irq_sources_bitmap);
  209. mutex_unlock(&kvm->irq_lock);
  210. }
  211. void kvm_register_irq_mask_notifier(struct kvm *kvm, int irq,
  212. struct kvm_irq_mask_notifier *kimn)
  213. {
  214. mutex_lock(&kvm->irq_lock);
  215. kimn->irq = irq;
  216. hlist_add_head(&kimn->link, &kvm->mask_notifier_list);
  217. mutex_unlock(&kvm->irq_lock);
  218. }
  219. void kvm_unregister_irq_mask_notifier(struct kvm *kvm, int irq,
  220. struct kvm_irq_mask_notifier *kimn)
  221. {
  222. mutex_lock(&kvm->irq_lock);
  223. hlist_del(&kimn->link);
  224. mutex_unlock(&kvm->irq_lock);
  225. }
  226. void kvm_fire_mask_notifiers(struct kvm *kvm, int irq, bool mask)
  227. {
  228. struct kvm_irq_mask_notifier *kimn;
  229. struct hlist_node *n;
  230. WARN_ON(!mutex_is_locked(&kvm->irq_lock));
  231. hlist_for_each_entry(kimn, n, &kvm->mask_notifier_list, link)
  232. if (kimn->irq == irq)
  233. kimn->func(kimn, mask);
  234. }
  235. static void __kvm_free_irq_routing(struct list_head *irq_routing)
  236. {
  237. struct kvm_kernel_irq_routing_entry *e, *n;
  238. list_for_each_entry_safe(e, n, irq_routing, link)
  239. kfree(e);
  240. }
  241. void kvm_free_irq_routing(struct kvm *kvm)
  242. {
  243. mutex_lock(&kvm->irq_lock);
  244. __kvm_free_irq_routing(&kvm->irq_routing);
  245. mutex_unlock(&kvm->irq_lock);
  246. }
  247. static int setup_routing_entry(struct kvm_kernel_irq_routing_entry *e,
  248. const struct kvm_irq_routing_entry *ue)
  249. {
  250. int r = -EINVAL;
  251. int delta;
  252. e->gsi = ue->gsi;
  253. e->type = ue->type;
  254. switch (ue->type) {
  255. case KVM_IRQ_ROUTING_IRQCHIP:
  256. delta = 0;
  257. switch (ue->u.irqchip.irqchip) {
  258. case KVM_IRQCHIP_PIC_MASTER:
  259. e->set = kvm_set_pic_irq;
  260. break;
  261. case KVM_IRQCHIP_PIC_SLAVE:
  262. e->set = kvm_set_pic_irq;
  263. delta = 8;
  264. break;
  265. case KVM_IRQCHIP_IOAPIC:
  266. e->set = kvm_set_ioapic_irq;
  267. break;
  268. default:
  269. goto out;
  270. }
  271. e->irqchip.irqchip = ue->u.irqchip.irqchip;
  272. e->irqchip.pin = ue->u.irqchip.pin + delta;
  273. break;
  274. case KVM_IRQ_ROUTING_MSI:
  275. e->set = kvm_set_msi;
  276. e->msi.address_lo = ue->u.msi.address_lo;
  277. e->msi.address_hi = ue->u.msi.address_hi;
  278. e->msi.data = ue->u.msi.data;
  279. break;
  280. default:
  281. goto out;
  282. }
  283. r = 0;
  284. out:
  285. return r;
  286. }
  287. int kvm_set_irq_routing(struct kvm *kvm,
  288. const struct kvm_irq_routing_entry *ue,
  289. unsigned nr,
  290. unsigned flags)
  291. {
  292. struct list_head irq_list = LIST_HEAD_INIT(irq_list);
  293. struct list_head tmp = LIST_HEAD_INIT(tmp);
  294. struct kvm_kernel_irq_routing_entry *e = NULL;
  295. unsigned i;
  296. int r;
  297. for (i = 0; i < nr; ++i) {
  298. r = -EINVAL;
  299. if (ue->gsi >= KVM_MAX_IRQ_ROUTES)
  300. goto out;
  301. if (ue->flags)
  302. goto out;
  303. r = -ENOMEM;
  304. e = kzalloc(sizeof(*e), GFP_KERNEL);
  305. if (!e)
  306. goto out;
  307. r = setup_routing_entry(e, ue);
  308. if (r)
  309. goto out;
  310. ++ue;
  311. list_add(&e->link, &irq_list);
  312. e = NULL;
  313. }
  314. mutex_lock(&kvm->irq_lock);
  315. list_splice(&kvm->irq_routing, &tmp);
  316. INIT_LIST_HEAD(&kvm->irq_routing);
  317. list_splice(&irq_list, &kvm->irq_routing);
  318. INIT_LIST_HEAD(&irq_list);
  319. list_splice(&tmp, &irq_list);
  320. mutex_unlock(&kvm->irq_lock);
  321. r = 0;
  322. out:
  323. kfree(e);
  324. __kvm_free_irq_routing(&irq_list);
  325. return r;
  326. }
  327. #define IOAPIC_ROUTING_ENTRY(irq) \
  328. { .gsi = irq, .type = KVM_IRQ_ROUTING_IRQCHIP, \
  329. .u.irqchip.irqchip = KVM_IRQCHIP_IOAPIC, .u.irqchip.pin = (irq) }
  330. #define ROUTING_ENTRY1(irq) IOAPIC_ROUTING_ENTRY(irq)
  331. #ifdef CONFIG_X86
  332. # define PIC_ROUTING_ENTRY(irq) \
  333. { .gsi = irq, .type = KVM_IRQ_ROUTING_IRQCHIP, \
  334. .u.irqchip.irqchip = SELECT_PIC(irq), .u.irqchip.pin = (irq) % 8 }
  335. # define ROUTING_ENTRY2(irq) \
  336. IOAPIC_ROUTING_ENTRY(irq), PIC_ROUTING_ENTRY(irq)
  337. #else
  338. # define ROUTING_ENTRY2(irq) \
  339. IOAPIC_ROUTING_ENTRY(irq)
  340. #endif
  341. static const struct kvm_irq_routing_entry default_routing[] = {
  342. ROUTING_ENTRY2(0), ROUTING_ENTRY2(1),
  343. ROUTING_ENTRY2(2), ROUTING_ENTRY2(3),
  344. ROUTING_ENTRY2(4), ROUTING_ENTRY2(5),
  345. ROUTING_ENTRY2(6), ROUTING_ENTRY2(7),
  346. ROUTING_ENTRY2(8), ROUTING_ENTRY2(9),
  347. ROUTING_ENTRY2(10), ROUTING_ENTRY2(11),
  348. ROUTING_ENTRY2(12), ROUTING_ENTRY2(13),
  349. ROUTING_ENTRY2(14), ROUTING_ENTRY2(15),
  350. ROUTING_ENTRY1(16), ROUTING_ENTRY1(17),
  351. ROUTING_ENTRY1(18), ROUTING_ENTRY1(19),
  352. ROUTING_ENTRY1(20), ROUTING_ENTRY1(21),
  353. ROUTING_ENTRY1(22), ROUTING_ENTRY1(23),
  354. #ifdef CONFIG_IA64
  355. ROUTING_ENTRY1(24), ROUTING_ENTRY1(25),
  356. ROUTING_ENTRY1(26), ROUTING_ENTRY1(27),
  357. ROUTING_ENTRY1(28), ROUTING_ENTRY1(29),
  358. ROUTING_ENTRY1(30), ROUTING_ENTRY1(31),
  359. ROUTING_ENTRY1(32), ROUTING_ENTRY1(33),
  360. ROUTING_ENTRY1(34), ROUTING_ENTRY1(35),
  361. ROUTING_ENTRY1(36), ROUTING_ENTRY1(37),
  362. ROUTING_ENTRY1(38), ROUTING_ENTRY1(39),
  363. ROUTING_ENTRY1(40), ROUTING_ENTRY1(41),
  364. ROUTING_ENTRY1(42), ROUTING_ENTRY1(43),
  365. ROUTING_ENTRY1(44), ROUTING_ENTRY1(45),
  366. ROUTING_ENTRY1(46), ROUTING_ENTRY1(47),
  367. #endif
  368. };
  369. int kvm_setup_default_irq_routing(struct kvm *kvm)
  370. {
  371. return kvm_set_irq_routing(kvm, default_routing,
  372. ARRAY_SIZE(default_routing), 0);
  373. }