virtio_pci.c 12 KB

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  1. /*
  2. * Virtio PCI driver
  3. *
  4. * This module allows virtio devices to be used over a virtual PCI device.
  5. * This can be used with QEMU based VMMs like KVM or Xen.
  6. *
  7. * Copyright IBM Corp. 2007
  8. *
  9. * Authors:
  10. * Anthony Liguori <aliguori@us.ibm.com>
  11. *
  12. * This work is licensed under the terms of the GNU GPL, version 2 or later.
  13. * See the COPYING file in the top-level directory.
  14. *
  15. */
  16. #include <linux/module.h>
  17. #include <linux/list.h>
  18. #include <linux/pci.h>
  19. #include <linux/interrupt.h>
  20. #include <linux/virtio.h>
  21. #include <linux/virtio_config.h>
  22. #include <linux/virtio_ring.h>
  23. #include <linux/virtio_pci.h>
  24. #include <linux/highmem.h>
  25. #include <linux/spinlock.h>
  26. MODULE_AUTHOR("Anthony Liguori <aliguori@us.ibm.com>");
  27. MODULE_DESCRIPTION("virtio-pci");
  28. MODULE_LICENSE("GPL");
  29. MODULE_VERSION("1");
  30. /* Our device structure */
  31. struct virtio_pci_device
  32. {
  33. struct virtio_device vdev;
  34. struct pci_dev *pci_dev;
  35. /* the IO mapping for the PCI config space */
  36. void __iomem *ioaddr;
  37. /* a list of queues so we can dispatch IRQs */
  38. spinlock_t lock;
  39. struct list_head virtqueues;
  40. };
  41. struct virtio_pci_vq_info
  42. {
  43. /* the actual virtqueue */
  44. struct virtqueue *vq;
  45. /* the number of entries in the queue */
  46. int num;
  47. /* the index of the queue */
  48. int queue_index;
  49. /* the virtual address of the ring queue */
  50. void *queue;
  51. /* the list node for the virtqueues list */
  52. struct list_head node;
  53. };
  54. /* Qumranet donated their vendor ID for devices 0x1000 thru 0x10FF. */
  55. static struct pci_device_id virtio_pci_id_table[] = {
  56. { 0x1af4, PCI_ANY_ID, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0 },
  57. { 0 },
  58. };
  59. MODULE_DEVICE_TABLE(pci, virtio_pci_id_table);
  60. /* A PCI device has it's own struct device and so does a virtio device so
  61. * we create a place for the virtio devices to show up in sysfs. I think it
  62. * would make more sense for virtio to not insist on having it's own device. */
  63. static struct device virtio_pci_root = {
  64. .parent = NULL,
  65. .bus_id = "virtio-pci",
  66. };
  67. /* Unique numbering for devices under the kvm root */
  68. static unsigned int dev_index;
  69. /* Convert a generic virtio device to our structure */
  70. static struct virtio_pci_device *to_vp_device(struct virtio_device *vdev)
  71. {
  72. return container_of(vdev, struct virtio_pci_device, vdev);
  73. }
  74. /* virtio config->feature() implementation */
  75. static bool vp_feature(struct virtio_device *vdev, unsigned bit)
  76. {
  77. struct virtio_pci_device *vp_dev = to_vp_device(vdev);
  78. u32 mask;
  79. /* Since this function is supposed to have the side effect of
  80. * enabling a queried feature, we simulate that by doing a read
  81. * from the host feature bitmask and then writing to the guest
  82. * feature bitmask */
  83. mask = ioread32(vp_dev->ioaddr + VIRTIO_PCI_HOST_FEATURES);
  84. if (mask & (1 << bit)) {
  85. mask |= (1 << bit);
  86. iowrite32(mask, vp_dev->ioaddr + VIRTIO_PCI_GUEST_FEATURES);
  87. }
  88. return !!(mask & (1 << bit));
  89. }
  90. /* virtio config->get() implementation */
  91. static void vp_get(struct virtio_device *vdev, unsigned offset,
  92. void *buf, unsigned len)
  93. {
  94. struct virtio_pci_device *vp_dev = to_vp_device(vdev);
  95. void __iomem *ioaddr = vp_dev->ioaddr + VIRTIO_PCI_CONFIG + offset;
  96. u8 *ptr = buf;
  97. int i;
  98. for (i = 0; i < len; i++)
  99. ptr[i] = ioread8(ioaddr + i);
  100. }
  101. /* the config->set() implementation. it's symmetric to the config->get()
  102. * implementation */
  103. static void vp_set(struct virtio_device *vdev, unsigned offset,
  104. const void *buf, unsigned len)
  105. {
  106. struct virtio_pci_device *vp_dev = to_vp_device(vdev);
  107. void __iomem *ioaddr = vp_dev->ioaddr + VIRTIO_PCI_CONFIG + offset;
  108. const u8 *ptr = buf;
  109. int i;
  110. for (i = 0; i < len; i++)
  111. iowrite8(ptr[i], ioaddr + i);
  112. }
  113. /* config->{get,set}_status() implementations */
  114. static u8 vp_get_status(struct virtio_device *vdev)
  115. {
  116. struct virtio_pci_device *vp_dev = to_vp_device(vdev);
  117. return ioread8(vp_dev->ioaddr + VIRTIO_PCI_STATUS);
  118. }
  119. static void vp_set_status(struct virtio_device *vdev, u8 status)
  120. {
  121. struct virtio_pci_device *vp_dev = to_vp_device(vdev);
  122. /* We should never be setting status to 0. */
  123. BUG_ON(status == 0);
  124. iowrite8(status, vp_dev->ioaddr + VIRTIO_PCI_STATUS);
  125. }
  126. static void vp_reset(struct virtio_device *vdev)
  127. {
  128. struct virtio_pci_device *vp_dev = to_vp_device(vdev);
  129. /* 0 status means a reset. */
  130. iowrite8(0, vp_dev->ioaddr + VIRTIO_PCI_STATUS);
  131. }
  132. /* the notify function used when creating a virt queue */
  133. static void vp_notify(struct virtqueue *vq)
  134. {
  135. struct virtio_pci_device *vp_dev = to_vp_device(vq->vdev);
  136. struct virtio_pci_vq_info *info = vq->priv;
  137. /* we write the queue's selector into the notification register to
  138. * signal the other end */
  139. iowrite16(info->queue_index, vp_dev->ioaddr + VIRTIO_PCI_QUEUE_NOTIFY);
  140. }
  141. /* A small wrapper to also acknowledge the interrupt when it's handled.
  142. * I really need an EIO hook for the vring so I can ack the interrupt once we
  143. * know that we'll be handling the IRQ but before we invoke the callback since
  144. * the callback may notify the host which results in the host attempting to
  145. * raise an interrupt that we would then mask once we acknowledged the
  146. * interrupt. */
  147. static irqreturn_t vp_interrupt(int irq, void *opaque)
  148. {
  149. struct virtio_pci_device *vp_dev = opaque;
  150. struct virtio_pci_vq_info *info;
  151. irqreturn_t ret = IRQ_NONE;
  152. unsigned long flags;
  153. u8 isr;
  154. /* reading the ISR has the effect of also clearing it so it's very
  155. * important to save off the value. */
  156. isr = ioread8(vp_dev->ioaddr + VIRTIO_PCI_ISR);
  157. /* It's definitely not us if the ISR was not high */
  158. if (!isr)
  159. return IRQ_NONE;
  160. /* Configuration change? Tell driver if it wants to know. */
  161. if (isr & VIRTIO_PCI_ISR_CONFIG) {
  162. struct virtio_driver *drv;
  163. drv = container_of(vp_dev->vdev.dev.driver,
  164. struct virtio_driver, driver);
  165. if (drv->config_changed)
  166. drv->config_changed(&vp_dev->vdev);
  167. }
  168. spin_lock_irqsave(&vp_dev->lock, flags);
  169. list_for_each_entry(info, &vp_dev->virtqueues, node) {
  170. if (vring_interrupt(irq, info->vq) == IRQ_HANDLED)
  171. ret = IRQ_HANDLED;
  172. }
  173. spin_unlock_irqrestore(&vp_dev->lock, flags);
  174. return ret;
  175. }
  176. /* the config->find_vq() implementation */
  177. static struct virtqueue *vp_find_vq(struct virtio_device *vdev, unsigned index,
  178. void (*callback)(struct virtqueue *vq))
  179. {
  180. struct virtio_pci_device *vp_dev = to_vp_device(vdev);
  181. struct virtio_pci_vq_info *info;
  182. struct virtqueue *vq;
  183. unsigned long flags;
  184. u16 num;
  185. int err;
  186. /* Select the queue we're interested in */
  187. iowrite16(index, vp_dev->ioaddr + VIRTIO_PCI_QUEUE_SEL);
  188. /* Check if queue is either not available or already active. */
  189. num = ioread16(vp_dev->ioaddr + VIRTIO_PCI_QUEUE_NUM);
  190. if (!num || ioread32(vp_dev->ioaddr + VIRTIO_PCI_QUEUE_PFN))
  191. return ERR_PTR(-ENOENT);
  192. /* allocate and fill out our structure the represents an active
  193. * queue */
  194. info = kmalloc(sizeof(struct virtio_pci_vq_info), GFP_KERNEL);
  195. if (!info)
  196. return ERR_PTR(-ENOMEM);
  197. info->queue_index = index;
  198. info->num = num;
  199. info->queue = kzalloc(PAGE_ALIGN(vring_size(num,PAGE_SIZE)), GFP_KERNEL);
  200. if (info->queue == NULL) {
  201. err = -ENOMEM;
  202. goto out_info;
  203. }
  204. /* activate the queue */
  205. iowrite32(virt_to_phys(info->queue) >> PAGE_SHIFT,
  206. vp_dev->ioaddr + VIRTIO_PCI_QUEUE_PFN);
  207. /* create the vring */
  208. vq = vring_new_virtqueue(info->num, vdev, info->queue,
  209. vp_notify, callback);
  210. if (!vq) {
  211. err = -ENOMEM;
  212. goto out_activate_queue;
  213. }
  214. vq->priv = info;
  215. info->vq = vq;
  216. spin_lock_irqsave(&vp_dev->lock, flags);
  217. list_add(&info->node, &vp_dev->virtqueues);
  218. spin_unlock_irqrestore(&vp_dev->lock, flags);
  219. return vq;
  220. out_activate_queue:
  221. iowrite32(0, vp_dev->ioaddr + VIRTIO_PCI_QUEUE_PFN);
  222. kfree(info->queue);
  223. out_info:
  224. kfree(info);
  225. return ERR_PTR(err);
  226. }
  227. /* the config->del_vq() implementation */
  228. static void vp_del_vq(struct virtqueue *vq)
  229. {
  230. struct virtio_pci_device *vp_dev = to_vp_device(vq->vdev);
  231. struct virtio_pci_vq_info *info = vq->priv;
  232. unsigned long flags;
  233. spin_lock_irqsave(&vp_dev->lock, flags);
  234. list_del(&info->node);
  235. spin_unlock_irqrestore(&vp_dev->lock, flags);
  236. vring_del_virtqueue(vq);
  237. /* Select and deactivate the queue */
  238. iowrite16(info->queue_index, vp_dev->ioaddr + VIRTIO_PCI_QUEUE_SEL);
  239. iowrite32(0, vp_dev->ioaddr + VIRTIO_PCI_QUEUE_PFN);
  240. kfree(info->queue);
  241. kfree(info);
  242. }
  243. static struct virtio_config_ops virtio_pci_config_ops = {
  244. .feature = vp_feature,
  245. .get = vp_get,
  246. .set = vp_set,
  247. .get_status = vp_get_status,
  248. .set_status = vp_set_status,
  249. .reset = vp_reset,
  250. .find_vq = vp_find_vq,
  251. .del_vq = vp_del_vq,
  252. };
  253. /* the PCI probing function */
  254. static int __devinit virtio_pci_probe(struct pci_dev *pci_dev,
  255. const struct pci_device_id *id)
  256. {
  257. struct virtio_pci_device *vp_dev;
  258. int err;
  259. /* We only own devices >= 0x1000 and <= 0x103f: leave the rest. */
  260. if (pci_dev->device < 0x1000 || pci_dev->device > 0x103f)
  261. return -ENODEV;
  262. if (pci_dev->revision != VIRTIO_PCI_ABI_VERSION) {
  263. printk(KERN_ERR "virtio_pci: expected ABI version %d, got %d\n",
  264. VIRTIO_PCI_ABI_VERSION, pci_dev->revision);
  265. return -ENODEV;
  266. }
  267. /* allocate our structure and fill it out */
  268. vp_dev = kzalloc(sizeof(struct virtio_pci_device), GFP_KERNEL);
  269. if (vp_dev == NULL)
  270. return -ENOMEM;
  271. snprintf(vp_dev->vdev.dev.bus_id, BUS_ID_SIZE, "virtio%d", dev_index);
  272. vp_dev->vdev.index = dev_index;
  273. dev_index++;
  274. vp_dev->vdev.dev.parent = &virtio_pci_root;
  275. vp_dev->vdev.config = &virtio_pci_config_ops;
  276. vp_dev->pci_dev = pci_dev;
  277. INIT_LIST_HEAD(&vp_dev->virtqueues);
  278. spin_lock_init(&vp_dev->lock);
  279. /* enable the device */
  280. err = pci_enable_device(pci_dev);
  281. if (err)
  282. goto out;
  283. err = pci_request_regions(pci_dev, "virtio-pci");
  284. if (err)
  285. goto out_enable_device;
  286. vp_dev->ioaddr = pci_iomap(pci_dev, 0, 0);
  287. if (vp_dev->ioaddr == NULL)
  288. goto out_req_regions;
  289. pci_set_drvdata(pci_dev, vp_dev);
  290. /* we use the subsystem vendor/device id as the virtio vendor/device
  291. * id. this allows us to use the same PCI vendor/device id for all
  292. * virtio devices and to identify the particular virtio driver by
  293. * the subsytem ids */
  294. vp_dev->vdev.id.vendor = pci_dev->subsystem_vendor;
  295. vp_dev->vdev.id.device = pci_dev->subsystem_device;
  296. /* register a handler for the queue with the PCI device's interrupt */
  297. err = request_irq(vp_dev->pci_dev->irq, vp_interrupt, IRQF_SHARED,
  298. vp_dev->vdev.dev.bus_id, vp_dev);
  299. if (err)
  300. goto out_set_drvdata;
  301. /* finally register the virtio device */
  302. err = register_virtio_device(&vp_dev->vdev);
  303. if (err)
  304. goto out_req_irq;
  305. return 0;
  306. out_req_irq:
  307. free_irq(pci_dev->irq, vp_dev);
  308. out_set_drvdata:
  309. pci_set_drvdata(pci_dev, NULL);
  310. pci_iounmap(pci_dev, vp_dev->ioaddr);
  311. out_req_regions:
  312. pci_release_regions(pci_dev);
  313. out_enable_device:
  314. pci_disable_device(pci_dev);
  315. out:
  316. kfree(vp_dev);
  317. return err;
  318. }
  319. static void __devexit virtio_pci_remove(struct pci_dev *pci_dev)
  320. {
  321. struct virtio_pci_device *vp_dev = pci_get_drvdata(pci_dev);
  322. unregister_virtio_device(&vp_dev->vdev);
  323. free_irq(pci_dev->irq, vp_dev);
  324. pci_set_drvdata(pci_dev, NULL);
  325. pci_iounmap(pci_dev, vp_dev->ioaddr);
  326. pci_release_regions(pci_dev);
  327. pci_disable_device(pci_dev);
  328. kfree(vp_dev);
  329. }
  330. #ifdef CONFIG_PM
  331. static int virtio_pci_suspend(struct pci_dev *pci_dev, pm_message_t state)
  332. {
  333. pci_save_state(pci_dev);
  334. pci_set_power_state(pci_dev, PCI_D3hot);
  335. return 0;
  336. }
  337. static int virtio_pci_resume(struct pci_dev *pci_dev)
  338. {
  339. pci_restore_state(pci_dev);
  340. pci_set_power_state(pci_dev, PCI_D0);
  341. return 0;
  342. }
  343. #endif
  344. static struct pci_driver virtio_pci_driver = {
  345. .name = "virtio-pci",
  346. .id_table = virtio_pci_id_table,
  347. .probe = virtio_pci_probe,
  348. .remove = virtio_pci_remove,
  349. #ifdef CONFIG_PM
  350. .suspend = virtio_pci_suspend,
  351. .resume = virtio_pci_resume,
  352. #endif
  353. };
  354. static int __init virtio_pci_init(void)
  355. {
  356. int err;
  357. err = device_register(&virtio_pci_root);
  358. if (err)
  359. return err;
  360. err = pci_register_driver(&virtio_pci_driver);
  361. if (err)
  362. device_unregister(&virtio_pci_root);
  363. return err;
  364. }
  365. module_init(virtio_pci_init);
  366. static void __exit virtio_pci_exit(void)
  367. {
  368. device_unregister(&virtio_pci_root);
  369. pci_unregister_driver(&virtio_pci_driver);
  370. }
  371. module_exit(virtio_pci_exit);