assigned-dev.c 19 KB

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  1. /*
  2. * Kernel-based Virtual Machine - device assignment support
  3. *
  4. * Copyright (C) 2010 Red Hat, Inc. and/or its affiliates.
  5. *
  6. * This work is licensed under the terms of the GNU GPL, version 2. See
  7. * the COPYING file in the top-level directory.
  8. *
  9. */
  10. #include <linux/kvm_host.h>
  11. #include <linux/kvm.h>
  12. #include <linux/uaccess.h>
  13. #include <linux/vmalloc.h>
  14. #include <linux/errno.h>
  15. #include <linux/spinlock.h>
  16. #include <linux/pci.h>
  17. #include <linux/interrupt.h>
  18. #include <linux/slab.h>
  19. #include "irq.h"
  20. static struct kvm_assigned_dev_kernel *kvm_find_assigned_dev(struct list_head *head,
  21. int assigned_dev_id)
  22. {
  23. struct list_head *ptr;
  24. struct kvm_assigned_dev_kernel *match;
  25. list_for_each(ptr, head) {
  26. match = list_entry(ptr, struct kvm_assigned_dev_kernel, list);
  27. if (match->assigned_dev_id == assigned_dev_id)
  28. return match;
  29. }
  30. return NULL;
  31. }
  32. static int find_index_from_host_irq(struct kvm_assigned_dev_kernel
  33. *assigned_dev, int irq)
  34. {
  35. int i, index;
  36. struct msix_entry *host_msix_entries;
  37. host_msix_entries = assigned_dev->host_msix_entries;
  38. index = -1;
  39. for (i = 0; i < assigned_dev->entries_nr; i++)
  40. if (irq == host_msix_entries[i].vector) {
  41. index = i;
  42. break;
  43. }
  44. if (index < 0) {
  45. printk(KERN_WARNING "Fail to find correlated MSI-X entry!\n");
  46. return 0;
  47. }
  48. return index;
  49. }
  50. static irqreturn_t kvm_assigned_dev_thread(int irq, void *dev_id)
  51. {
  52. struct kvm_assigned_dev_kernel *assigned_dev = dev_id;
  53. u32 vector;
  54. int index;
  55. if (assigned_dev->irq_requested_type & KVM_DEV_IRQ_HOST_INTX) {
  56. spin_lock(&assigned_dev->intx_lock);
  57. disable_irq_nosync(irq);
  58. assigned_dev->host_irq_disabled = true;
  59. spin_unlock(&assigned_dev->intx_lock);
  60. }
  61. if (assigned_dev->irq_requested_type & KVM_DEV_IRQ_HOST_MSIX) {
  62. index = find_index_from_host_irq(assigned_dev, irq);
  63. if (index >= 0) {
  64. vector = assigned_dev->
  65. guest_msix_entries[index].vector;
  66. kvm_set_irq(assigned_dev->kvm,
  67. assigned_dev->irq_source_id, vector, 1);
  68. }
  69. } else
  70. kvm_set_irq(assigned_dev->kvm, assigned_dev->irq_source_id,
  71. assigned_dev->guest_irq, 1);
  72. return IRQ_HANDLED;
  73. }
  74. /* Ack the irq line for an assigned device */
  75. static void kvm_assigned_dev_ack_irq(struct kvm_irq_ack_notifier *kian)
  76. {
  77. struct kvm_assigned_dev_kernel *dev;
  78. if (kian->gsi == -1)
  79. return;
  80. dev = container_of(kian, struct kvm_assigned_dev_kernel,
  81. ack_notifier);
  82. kvm_set_irq(dev->kvm, dev->irq_source_id, dev->guest_irq, 0);
  83. /* The guest irq may be shared so this ack may be
  84. * from another device.
  85. */
  86. spin_lock(&dev->intx_lock);
  87. if (dev->host_irq_disabled) {
  88. enable_irq(dev->host_irq);
  89. dev->host_irq_disabled = false;
  90. }
  91. spin_unlock(&dev->intx_lock);
  92. }
  93. static void deassign_guest_irq(struct kvm *kvm,
  94. struct kvm_assigned_dev_kernel *assigned_dev)
  95. {
  96. kvm_unregister_irq_ack_notifier(kvm, &assigned_dev->ack_notifier);
  97. assigned_dev->ack_notifier.gsi = -1;
  98. kvm_set_irq(assigned_dev->kvm, assigned_dev->irq_source_id,
  99. assigned_dev->guest_irq, 0);
  100. if (assigned_dev->irq_source_id != -1)
  101. kvm_free_irq_source_id(kvm, assigned_dev->irq_source_id);
  102. assigned_dev->irq_source_id = -1;
  103. assigned_dev->irq_requested_type &= ~(KVM_DEV_IRQ_GUEST_MASK);
  104. }
  105. /* The function implicit hold kvm->lock mutex due to cancel_work_sync() */
  106. static void deassign_host_irq(struct kvm *kvm,
  107. struct kvm_assigned_dev_kernel *assigned_dev)
  108. {
  109. /*
  110. * We disable irq here to prevent further events.
  111. *
  112. * Notice this maybe result in nested disable if the interrupt type is
  113. * INTx, but it's OK for we are going to free it.
  114. *
  115. * If this function is a part of VM destroy, please ensure that till
  116. * now, the kvm state is still legal for probably we also have to wait
  117. * on a currently running IRQ handler.
  118. */
  119. if (assigned_dev->irq_requested_type & KVM_DEV_IRQ_HOST_MSIX) {
  120. int i;
  121. for (i = 0; i < assigned_dev->entries_nr; i++)
  122. disable_irq(assigned_dev->host_msix_entries[i].vector);
  123. for (i = 0; i < assigned_dev->entries_nr; i++)
  124. free_irq(assigned_dev->host_msix_entries[i].vector,
  125. (void *)assigned_dev);
  126. assigned_dev->entries_nr = 0;
  127. kfree(assigned_dev->host_msix_entries);
  128. kfree(assigned_dev->guest_msix_entries);
  129. pci_disable_msix(assigned_dev->dev);
  130. } else {
  131. /* Deal with MSI and INTx */
  132. disable_irq(assigned_dev->host_irq);
  133. free_irq(assigned_dev->host_irq, (void *)assigned_dev);
  134. if (assigned_dev->irq_requested_type & KVM_DEV_IRQ_HOST_MSI)
  135. pci_disable_msi(assigned_dev->dev);
  136. }
  137. assigned_dev->irq_requested_type &= ~(KVM_DEV_IRQ_HOST_MASK);
  138. }
  139. static int kvm_deassign_irq(struct kvm *kvm,
  140. struct kvm_assigned_dev_kernel *assigned_dev,
  141. unsigned long irq_requested_type)
  142. {
  143. unsigned long guest_irq_type, host_irq_type;
  144. if (!irqchip_in_kernel(kvm))
  145. return -EINVAL;
  146. /* no irq assignment to deassign */
  147. if (!assigned_dev->irq_requested_type)
  148. return -ENXIO;
  149. host_irq_type = irq_requested_type & KVM_DEV_IRQ_HOST_MASK;
  150. guest_irq_type = irq_requested_type & KVM_DEV_IRQ_GUEST_MASK;
  151. if (host_irq_type)
  152. deassign_host_irq(kvm, assigned_dev);
  153. if (guest_irq_type)
  154. deassign_guest_irq(kvm, assigned_dev);
  155. return 0;
  156. }
  157. static void kvm_free_assigned_irq(struct kvm *kvm,
  158. struct kvm_assigned_dev_kernel *assigned_dev)
  159. {
  160. kvm_deassign_irq(kvm, assigned_dev, assigned_dev->irq_requested_type);
  161. }
  162. static void kvm_free_assigned_device(struct kvm *kvm,
  163. struct kvm_assigned_dev_kernel
  164. *assigned_dev)
  165. {
  166. kvm_free_assigned_irq(kvm, assigned_dev);
  167. __pci_reset_function(assigned_dev->dev);
  168. pci_restore_state(assigned_dev->dev);
  169. pci_release_regions(assigned_dev->dev);
  170. pci_disable_device(assigned_dev->dev);
  171. pci_dev_put(assigned_dev->dev);
  172. list_del(&assigned_dev->list);
  173. kfree(assigned_dev);
  174. }
  175. void kvm_free_all_assigned_devices(struct kvm *kvm)
  176. {
  177. struct list_head *ptr, *ptr2;
  178. struct kvm_assigned_dev_kernel *assigned_dev;
  179. list_for_each_safe(ptr, ptr2, &kvm->arch.assigned_dev_head) {
  180. assigned_dev = list_entry(ptr,
  181. struct kvm_assigned_dev_kernel,
  182. list);
  183. kvm_free_assigned_device(kvm, assigned_dev);
  184. }
  185. }
  186. static int assigned_device_enable_host_intx(struct kvm *kvm,
  187. struct kvm_assigned_dev_kernel *dev)
  188. {
  189. dev->host_irq = dev->dev->irq;
  190. /* Even though this is PCI, we don't want to use shared
  191. * interrupts. Sharing host devices with guest-assigned devices
  192. * on the same interrupt line is not a happy situation: there
  193. * are going to be long delays in accepting, acking, etc.
  194. */
  195. if (request_threaded_irq(dev->host_irq, NULL, kvm_assigned_dev_thread,
  196. IRQF_ONESHOT, dev->irq_name, (void *)dev))
  197. return -EIO;
  198. return 0;
  199. }
  200. #ifdef __KVM_HAVE_MSI
  201. static int assigned_device_enable_host_msi(struct kvm *kvm,
  202. struct kvm_assigned_dev_kernel *dev)
  203. {
  204. int r;
  205. if (!dev->dev->msi_enabled) {
  206. r = pci_enable_msi(dev->dev);
  207. if (r)
  208. return r;
  209. }
  210. dev->host_irq = dev->dev->irq;
  211. if (request_threaded_irq(dev->host_irq, NULL, kvm_assigned_dev_thread,
  212. 0, dev->irq_name, (void *)dev)) {
  213. pci_disable_msi(dev->dev);
  214. return -EIO;
  215. }
  216. return 0;
  217. }
  218. #endif
  219. #ifdef __KVM_HAVE_MSIX
  220. static int assigned_device_enable_host_msix(struct kvm *kvm,
  221. struct kvm_assigned_dev_kernel *dev)
  222. {
  223. int i, r = -EINVAL;
  224. /* host_msix_entries and guest_msix_entries should have been
  225. * initialized */
  226. if (dev->entries_nr == 0)
  227. return r;
  228. r = pci_enable_msix(dev->dev, dev->host_msix_entries, dev->entries_nr);
  229. if (r)
  230. return r;
  231. for (i = 0; i < dev->entries_nr; i++) {
  232. r = request_threaded_irq(dev->host_msix_entries[i].vector,
  233. NULL, kvm_assigned_dev_thread,
  234. 0, dev->irq_name, (void *)dev);
  235. if (r)
  236. goto err;
  237. }
  238. return 0;
  239. err:
  240. for (i -= 1; i >= 0; i--)
  241. free_irq(dev->host_msix_entries[i].vector, (void *)dev);
  242. pci_disable_msix(dev->dev);
  243. return r;
  244. }
  245. #endif
  246. static int assigned_device_enable_guest_intx(struct kvm *kvm,
  247. struct kvm_assigned_dev_kernel *dev,
  248. struct kvm_assigned_irq *irq)
  249. {
  250. dev->guest_irq = irq->guest_irq;
  251. dev->ack_notifier.gsi = irq->guest_irq;
  252. return 0;
  253. }
  254. #ifdef __KVM_HAVE_MSI
  255. static int assigned_device_enable_guest_msi(struct kvm *kvm,
  256. struct kvm_assigned_dev_kernel *dev,
  257. struct kvm_assigned_irq *irq)
  258. {
  259. dev->guest_irq = irq->guest_irq;
  260. dev->ack_notifier.gsi = -1;
  261. dev->host_irq_disabled = false;
  262. return 0;
  263. }
  264. #endif
  265. #ifdef __KVM_HAVE_MSIX
  266. static int assigned_device_enable_guest_msix(struct kvm *kvm,
  267. struct kvm_assigned_dev_kernel *dev,
  268. struct kvm_assigned_irq *irq)
  269. {
  270. dev->guest_irq = irq->guest_irq;
  271. dev->ack_notifier.gsi = -1;
  272. dev->host_irq_disabled = false;
  273. return 0;
  274. }
  275. #endif
  276. static int assign_host_irq(struct kvm *kvm,
  277. struct kvm_assigned_dev_kernel *dev,
  278. __u32 host_irq_type)
  279. {
  280. int r = -EEXIST;
  281. if (dev->irq_requested_type & KVM_DEV_IRQ_HOST_MASK)
  282. return r;
  283. snprintf(dev->irq_name, sizeof(dev->irq_name), "kvm:%s",
  284. pci_name(dev->dev));
  285. switch (host_irq_type) {
  286. case KVM_DEV_IRQ_HOST_INTX:
  287. r = assigned_device_enable_host_intx(kvm, dev);
  288. break;
  289. #ifdef __KVM_HAVE_MSI
  290. case KVM_DEV_IRQ_HOST_MSI:
  291. r = assigned_device_enable_host_msi(kvm, dev);
  292. break;
  293. #endif
  294. #ifdef __KVM_HAVE_MSIX
  295. case KVM_DEV_IRQ_HOST_MSIX:
  296. r = assigned_device_enable_host_msix(kvm, dev);
  297. break;
  298. #endif
  299. default:
  300. r = -EINVAL;
  301. }
  302. if (!r)
  303. dev->irq_requested_type |= host_irq_type;
  304. return r;
  305. }
  306. static int assign_guest_irq(struct kvm *kvm,
  307. struct kvm_assigned_dev_kernel *dev,
  308. struct kvm_assigned_irq *irq,
  309. unsigned long guest_irq_type)
  310. {
  311. int id;
  312. int r = -EEXIST;
  313. if (dev->irq_requested_type & KVM_DEV_IRQ_GUEST_MASK)
  314. return r;
  315. id = kvm_request_irq_source_id(kvm);
  316. if (id < 0)
  317. return id;
  318. dev->irq_source_id = id;
  319. switch (guest_irq_type) {
  320. case KVM_DEV_IRQ_GUEST_INTX:
  321. r = assigned_device_enable_guest_intx(kvm, dev, irq);
  322. break;
  323. #ifdef __KVM_HAVE_MSI
  324. case KVM_DEV_IRQ_GUEST_MSI:
  325. r = assigned_device_enable_guest_msi(kvm, dev, irq);
  326. break;
  327. #endif
  328. #ifdef __KVM_HAVE_MSIX
  329. case KVM_DEV_IRQ_GUEST_MSIX:
  330. r = assigned_device_enable_guest_msix(kvm, dev, irq);
  331. break;
  332. #endif
  333. default:
  334. r = -EINVAL;
  335. }
  336. if (!r) {
  337. dev->irq_requested_type |= guest_irq_type;
  338. kvm_register_irq_ack_notifier(kvm, &dev->ack_notifier);
  339. } else
  340. kvm_free_irq_source_id(kvm, dev->irq_source_id);
  341. return r;
  342. }
  343. /* TODO Deal with KVM_DEV_IRQ_ASSIGNED_MASK_MSIX */
  344. static int kvm_vm_ioctl_assign_irq(struct kvm *kvm,
  345. struct kvm_assigned_irq *assigned_irq)
  346. {
  347. int r = -EINVAL;
  348. struct kvm_assigned_dev_kernel *match;
  349. unsigned long host_irq_type, guest_irq_type;
  350. if (!irqchip_in_kernel(kvm))
  351. return r;
  352. mutex_lock(&kvm->lock);
  353. r = -ENODEV;
  354. match = kvm_find_assigned_dev(&kvm->arch.assigned_dev_head,
  355. assigned_irq->assigned_dev_id);
  356. if (!match)
  357. goto out;
  358. host_irq_type = (assigned_irq->flags & KVM_DEV_IRQ_HOST_MASK);
  359. guest_irq_type = (assigned_irq->flags & KVM_DEV_IRQ_GUEST_MASK);
  360. r = -EINVAL;
  361. /* can only assign one type at a time */
  362. if (hweight_long(host_irq_type) > 1)
  363. goto out;
  364. if (hweight_long(guest_irq_type) > 1)
  365. goto out;
  366. if (host_irq_type == 0 && guest_irq_type == 0)
  367. goto out;
  368. r = 0;
  369. if (host_irq_type)
  370. r = assign_host_irq(kvm, match, host_irq_type);
  371. if (r)
  372. goto out;
  373. if (guest_irq_type)
  374. r = assign_guest_irq(kvm, match, assigned_irq, guest_irq_type);
  375. out:
  376. mutex_unlock(&kvm->lock);
  377. return r;
  378. }
  379. static int kvm_vm_ioctl_deassign_dev_irq(struct kvm *kvm,
  380. struct kvm_assigned_irq
  381. *assigned_irq)
  382. {
  383. int r = -ENODEV;
  384. struct kvm_assigned_dev_kernel *match;
  385. mutex_lock(&kvm->lock);
  386. match = kvm_find_assigned_dev(&kvm->arch.assigned_dev_head,
  387. assigned_irq->assigned_dev_id);
  388. if (!match)
  389. goto out;
  390. r = kvm_deassign_irq(kvm, match, assigned_irq->flags);
  391. out:
  392. mutex_unlock(&kvm->lock);
  393. return r;
  394. }
  395. static int kvm_vm_ioctl_assign_device(struct kvm *kvm,
  396. struct kvm_assigned_pci_dev *assigned_dev)
  397. {
  398. int r = 0, idx;
  399. struct kvm_assigned_dev_kernel *match;
  400. struct pci_dev *dev;
  401. mutex_lock(&kvm->lock);
  402. idx = srcu_read_lock(&kvm->srcu);
  403. match = kvm_find_assigned_dev(&kvm->arch.assigned_dev_head,
  404. assigned_dev->assigned_dev_id);
  405. if (match) {
  406. /* device already assigned */
  407. r = -EEXIST;
  408. goto out;
  409. }
  410. match = kzalloc(sizeof(struct kvm_assigned_dev_kernel), GFP_KERNEL);
  411. if (match == NULL) {
  412. printk(KERN_INFO "%s: Couldn't allocate memory\n",
  413. __func__);
  414. r = -ENOMEM;
  415. goto out;
  416. }
  417. dev = pci_get_domain_bus_and_slot(assigned_dev->segnr,
  418. assigned_dev->busnr,
  419. assigned_dev->devfn);
  420. if (!dev) {
  421. printk(KERN_INFO "%s: host device not found\n", __func__);
  422. r = -EINVAL;
  423. goto out_free;
  424. }
  425. if (pci_enable_device(dev)) {
  426. printk(KERN_INFO "%s: Could not enable PCI device\n", __func__);
  427. r = -EBUSY;
  428. goto out_put;
  429. }
  430. r = pci_request_regions(dev, "kvm_assigned_device");
  431. if (r) {
  432. printk(KERN_INFO "%s: Could not get access to device regions\n",
  433. __func__);
  434. goto out_disable;
  435. }
  436. pci_reset_function(dev);
  437. pci_save_state(dev);
  438. match->assigned_dev_id = assigned_dev->assigned_dev_id;
  439. match->host_segnr = assigned_dev->segnr;
  440. match->host_busnr = assigned_dev->busnr;
  441. match->host_devfn = assigned_dev->devfn;
  442. match->flags = assigned_dev->flags;
  443. match->dev = dev;
  444. spin_lock_init(&match->intx_lock);
  445. match->irq_source_id = -1;
  446. match->kvm = kvm;
  447. match->ack_notifier.irq_acked = kvm_assigned_dev_ack_irq;
  448. list_add(&match->list, &kvm->arch.assigned_dev_head);
  449. if (assigned_dev->flags & KVM_DEV_ASSIGN_ENABLE_IOMMU) {
  450. if (!kvm->arch.iommu_domain) {
  451. r = kvm_iommu_map_guest(kvm);
  452. if (r)
  453. goto out_list_del;
  454. }
  455. r = kvm_assign_device(kvm, match);
  456. if (r)
  457. goto out_list_del;
  458. }
  459. out:
  460. srcu_read_unlock(&kvm->srcu, idx);
  461. mutex_unlock(&kvm->lock);
  462. return r;
  463. out_list_del:
  464. pci_restore_state(dev);
  465. list_del(&match->list);
  466. pci_release_regions(dev);
  467. out_disable:
  468. pci_disable_device(dev);
  469. out_put:
  470. pci_dev_put(dev);
  471. out_free:
  472. kfree(match);
  473. srcu_read_unlock(&kvm->srcu, idx);
  474. mutex_unlock(&kvm->lock);
  475. return r;
  476. }
  477. static int kvm_vm_ioctl_deassign_device(struct kvm *kvm,
  478. struct kvm_assigned_pci_dev *assigned_dev)
  479. {
  480. int r = 0;
  481. struct kvm_assigned_dev_kernel *match;
  482. mutex_lock(&kvm->lock);
  483. match = kvm_find_assigned_dev(&kvm->arch.assigned_dev_head,
  484. assigned_dev->assigned_dev_id);
  485. if (!match) {
  486. printk(KERN_INFO "%s: device hasn't been assigned before, "
  487. "so cannot be deassigned\n", __func__);
  488. r = -EINVAL;
  489. goto out;
  490. }
  491. if (match->flags & KVM_DEV_ASSIGN_ENABLE_IOMMU)
  492. kvm_deassign_device(kvm, match);
  493. kvm_free_assigned_device(kvm, match);
  494. out:
  495. mutex_unlock(&kvm->lock);
  496. return r;
  497. }
  498. #ifdef __KVM_HAVE_MSIX
  499. static int kvm_vm_ioctl_set_msix_nr(struct kvm *kvm,
  500. struct kvm_assigned_msix_nr *entry_nr)
  501. {
  502. int r = 0;
  503. struct kvm_assigned_dev_kernel *adev;
  504. mutex_lock(&kvm->lock);
  505. adev = kvm_find_assigned_dev(&kvm->arch.assigned_dev_head,
  506. entry_nr->assigned_dev_id);
  507. if (!adev) {
  508. r = -EINVAL;
  509. goto msix_nr_out;
  510. }
  511. if (adev->entries_nr == 0) {
  512. adev->entries_nr = entry_nr->entry_nr;
  513. if (adev->entries_nr == 0 ||
  514. adev->entries_nr >= KVM_MAX_MSIX_PER_DEV) {
  515. r = -EINVAL;
  516. goto msix_nr_out;
  517. }
  518. adev->host_msix_entries = kzalloc(sizeof(struct msix_entry) *
  519. entry_nr->entry_nr,
  520. GFP_KERNEL);
  521. if (!adev->host_msix_entries) {
  522. r = -ENOMEM;
  523. goto msix_nr_out;
  524. }
  525. adev->guest_msix_entries =
  526. kzalloc(sizeof(struct msix_entry) * entry_nr->entry_nr,
  527. GFP_KERNEL);
  528. if (!adev->guest_msix_entries) {
  529. kfree(adev->host_msix_entries);
  530. r = -ENOMEM;
  531. goto msix_nr_out;
  532. }
  533. } else /* Not allowed set MSI-X number twice */
  534. r = -EINVAL;
  535. msix_nr_out:
  536. mutex_unlock(&kvm->lock);
  537. return r;
  538. }
  539. static int kvm_vm_ioctl_set_msix_entry(struct kvm *kvm,
  540. struct kvm_assigned_msix_entry *entry)
  541. {
  542. int r = 0, i;
  543. struct kvm_assigned_dev_kernel *adev;
  544. mutex_lock(&kvm->lock);
  545. adev = kvm_find_assigned_dev(&kvm->arch.assigned_dev_head,
  546. entry->assigned_dev_id);
  547. if (!adev) {
  548. r = -EINVAL;
  549. goto msix_entry_out;
  550. }
  551. for (i = 0; i < adev->entries_nr; i++)
  552. if (adev->guest_msix_entries[i].vector == 0 ||
  553. adev->guest_msix_entries[i].entry == entry->entry) {
  554. adev->guest_msix_entries[i].entry = entry->entry;
  555. adev->guest_msix_entries[i].vector = entry->gsi;
  556. adev->host_msix_entries[i].entry = entry->entry;
  557. break;
  558. }
  559. if (i == adev->entries_nr) {
  560. r = -ENOSPC;
  561. goto msix_entry_out;
  562. }
  563. msix_entry_out:
  564. mutex_unlock(&kvm->lock);
  565. return r;
  566. }
  567. #endif
  568. long kvm_vm_ioctl_assigned_device(struct kvm *kvm, unsigned ioctl,
  569. unsigned long arg)
  570. {
  571. void __user *argp = (void __user *)arg;
  572. int r;
  573. switch (ioctl) {
  574. case KVM_ASSIGN_PCI_DEVICE: {
  575. struct kvm_assigned_pci_dev assigned_dev;
  576. r = -EFAULT;
  577. if (copy_from_user(&assigned_dev, argp, sizeof assigned_dev))
  578. goto out;
  579. r = kvm_vm_ioctl_assign_device(kvm, &assigned_dev);
  580. if (r)
  581. goto out;
  582. break;
  583. }
  584. case KVM_ASSIGN_IRQ: {
  585. r = -EOPNOTSUPP;
  586. break;
  587. }
  588. case KVM_ASSIGN_DEV_IRQ: {
  589. struct kvm_assigned_irq assigned_irq;
  590. r = -EFAULT;
  591. if (copy_from_user(&assigned_irq, argp, sizeof assigned_irq))
  592. goto out;
  593. r = kvm_vm_ioctl_assign_irq(kvm, &assigned_irq);
  594. if (r)
  595. goto out;
  596. break;
  597. }
  598. case KVM_DEASSIGN_DEV_IRQ: {
  599. struct kvm_assigned_irq assigned_irq;
  600. r = -EFAULT;
  601. if (copy_from_user(&assigned_irq, argp, sizeof assigned_irq))
  602. goto out;
  603. r = kvm_vm_ioctl_deassign_dev_irq(kvm, &assigned_irq);
  604. if (r)
  605. goto out;
  606. break;
  607. }
  608. case KVM_DEASSIGN_PCI_DEVICE: {
  609. struct kvm_assigned_pci_dev assigned_dev;
  610. r = -EFAULT;
  611. if (copy_from_user(&assigned_dev, argp, sizeof assigned_dev))
  612. goto out;
  613. r = kvm_vm_ioctl_deassign_device(kvm, &assigned_dev);
  614. if (r)
  615. goto out;
  616. break;
  617. }
  618. #ifdef KVM_CAP_IRQ_ROUTING
  619. case KVM_SET_GSI_ROUTING: {
  620. struct kvm_irq_routing routing;
  621. struct kvm_irq_routing __user *urouting;
  622. struct kvm_irq_routing_entry *entries;
  623. r = -EFAULT;
  624. if (copy_from_user(&routing, argp, sizeof(routing)))
  625. goto out;
  626. r = -EINVAL;
  627. if (routing.nr >= KVM_MAX_IRQ_ROUTES)
  628. goto out;
  629. if (routing.flags)
  630. goto out;
  631. r = -ENOMEM;
  632. entries = vmalloc(routing.nr * sizeof(*entries));
  633. if (!entries)
  634. goto out;
  635. r = -EFAULT;
  636. urouting = argp;
  637. if (copy_from_user(entries, urouting->entries,
  638. routing.nr * sizeof(*entries)))
  639. goto out_free_irq_routing;
  640. r = kvm_set_irq_routing(kvm, entries, routing.nr,
  641. routing.flags);
  642. out_free_irq_routing:
  643. vfree(entries);
  644. break;
  645. }
  646. #endif /* KVM_CAP_IRQ_ROUTING */
  647. #ifdef __KVM_HAVE_MSIX
  648. case KVM_ASSIGN_SET_MSIX_NR: {
  649. struct kvm_assigned_msix_nr entry_nr;
  650. r = -EFAULT;
  651. if (copy_from_user(&entry_nr, argp, sizeof entry_nr))
  652. goto out;
  653. r = kvm_vm_ioctl_set_msix_nr(kvm, &entry_nr);
  654. if (r)
  655. goto out;
  656. break;
  657. }
  658. case KVM_ASSIGN_SET_MSIX_ENTRY: {
  659. struct kvm_assigned_msix_entry entry;
  660. r = -EFAULT;
  661. if (copy_from_user(&entry, argp, sizeof entry))
  662. goto out;
  663. r = kvm_vm_ioctl_set_msix_entry(kvm, &entry);
  664. if (r)
  665. goto out;
  666. break;
  667. }
  668. #endif
  669. default:
  670. r = -ENOTTY;
  671. break;
  672. }
  673. out:
  674. return r;
  675. }