iov.c 16 KB

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  1. /*
  2. * drivers/pci/iov.c
  3. *
  4. * Copyright (C) 2009 Intel Corporation, Yu Zhao <yu.zhao@intel.com>
  5. *
  6. * PCI Express I/O Virtualization (IOV) support.
  7. * Single Root IOV 1.0
  8. * Address Translation Service 1.0
  9. */
  10. #include <linux/pci.h>
  11. #include <linux/slab.h>
  12. #include <linux/mutex.h>
  13. #include <linux/export.h>
  14. #include <linux/string.h>
  15. #include <linux/delay.h>
  16. #include <linux/pci-ats.h>
  17. #include "pci.h"
  18. #define VIRTFN_ID_LEN 16
  19. static inline u8 virtfn_bus(struct pci_dev *dev, int id)
  20. {
  21. return dev->bus->number + ((dev->devfn + dev->sriov->offset +
  22. dev->sriov->stride * id) >> 8);
  23. }
  24. static inline u8 virtfn_devfn(struct pci_dev *dev, int id)
  25. {
  26. return (dev->devfn + dev->sriov->offset +
  27. dev->sriov->stride * id) & 0xff;
  28. }
  29. static struct pci_bus *virtfn_add_bus(struct pci_bus *bus, int busnr)
  30. {
  31. int rc;
  32. struct pci_bus *child;
  33. if (bus->number == busnr)
  34. return bus;
  35. child = pci_find_bus(pci_domain_nr(bus), busnr);
  36. if (child)
  37. return child;
  38. child = pci_add_new_bus(bus, NULL, busnr);
  39. if (!child)
  40. return NULL;
  41. child->subordinate = busnr;
  42. child->dev.parent = bus->bridge;
  43. rc = pci_bus_add_child(child);
  44. if (rc) {
  45. pci_remove_bus(child);
  46. return NULL;
  47. }
  48. return child;
  49. }
  50. static void virtfn_remove_bus(struct pci_bus *bus, int busnr)
  51. {
  52. struct pci_bus *child;
  53. if (bus->number == busnr)
  54. return;
  55. child = pci_find_bus(pci_domain_nr(bus), busnr);
  56. BUG_ON(!child);
  57. if (list_empty(&child->devices))
  58. pci_remove_bus(child);
  59. }
  60. static int virtfn_add(struct pci_dev *dev, int id, int reset)
  61. {
  62. int i;
  63. int rc;
  64. u64 size;
  65. char buf[VIRTFN_ID_LEN];
  66. struct pci_dev *virtfn;
  67. struct resource *res;
  68. struct pci_sriov *iov = dev->sriov;
  69. virtfn = alloc_pci_dev();
  70. if (!virtfn)
  71. return -ENOMEM;
  72. mutex_lock(&iov->dev->sriov->lock);
  73. virtfn->bus = virtfn_add_bus(dev->bus, virtfn_bus(dev, id));
  74. if (!virtfn->bus) {
  75. kfree(virtfn);
  76. mutex_unlock(&iov->dev->sriov->lock);
  77. return -ENOMEM;
  78. }
  79. virtfn->devfn = virtfn_devfn(dev, id);
  80. virtfn->vendor = dev->vendor;
  81. pci_read_config_word(dev, iov->pos + PCI_SRIOV_VF_DID, &virtfn->device);
  82. pci_setup_device(virtfn);
  83. virtfn->dev.parent = dev->dev.parent;
  84. for (i = 0; i < PCI_SRIOV_NUM_BARS; i++) {
  85. res = dev->resource + PCI_IOV_RESOURCES + i;
  86. if (!res->parent)
  87. continue;
  88. virtfn->resource[i].name = pci_name(virtfn);
  89. virtfn->resource[i].flags = res->flags;
  90. size = resource_size(res);
  91. do_div(size, iov->total);
  92. virtfn->resource[i].start = res->start + size * id;
  93. virtfn->resource[i].end = virtfn->resource[i].start + size - 1;
  94. rc = request_resource(res, &virtfn->resource[i]);
  95. BUG_ON(rc);
  96. }
  97. if (reset)
  98. __pci_reset_function(virtfn);
  99. pci_device_add(virtfn, virtfn->bus);
  100. mutex_unlock(&iov->dev->sriov->lock);
  101. virtfn->physfn = pci_dev_get(dev);
  102. virtfn->is_virtfn = 1;
  103. rc = pci_bus_add_device(virtfn);
  104. if (rc)
  105. goto failed1;
  106. sprintf(buf, "virtfn%u", id);
  107. rc = sysfs_create_link(&dev->dev.kobj, &virtfn->dev.kobj, buf);
  108. if (rc)
  109. goto failed1;
  110. rc = sysfs_create_link(&virtfn->dev.kobj, &dev->dev.kobj, "physfn");
  111. if (rc)
  112. goto failed2;
  113. kobject_uevent(&virtfn->dev.kobj, KOBJ_CHANGE);
  114. return 0;
  115. failed2:
  116. sysfs_remove_link(&dev->dev.kobj, buf);
  117. failed1:
  118. pci_dev_put(dev);
  119. mutex_lock(&iov->dev->sriov->lock);
  120. pci_remove_bus_device(virtfn);
  121. virtfn_remove_bus(dev->bus, virtfn_bus(dev, id));
  122. mutex_unlock(&iov->dev->sriov->lock);
  123. return rc;
  124. }
  125. static void virtfn_remove(struct pci_dev *dev, int id, int reset)
  126. {
  127. char buf[VIRTFN_ID_LEN];
  128. struct pci_bus *bus;
  129. struct pci_dev *virtfn;
  130. struct pci_sriov *iov = dev->sriov;
  131. bus = pci_find_bus(pci_domain_nr(dev->bus), virtfn_bus(dev, id));
  132. if (!bus)
  133. return;
  134. virtfn = pci_get_slot(bus, virtfn_devfn(dev, id));
  135. if (!virtfn)
  136. return;
  137. pci_dev_put(virtfn);
  138. if (reset) {
  139. device_release_driver(&virtfn->dev);
  140. __pci_reset_function(virtfn);
  141. }
  142. sprintf(buf, "virtfn%u", id);
  143. sysfs_remove_link(&dev->dev.kobj, buf);
  144. sysfs_remove_link(&virtfn->dev.kobj, "physfn");
  145. mutex_lock(&iov->dev->sriov->lock);
  146. pci_remove_bus_device(virtfn);
  147. virtfn_remove_bus(dev->bus, virtfn_bus(dev, id));
  148. mutex_unlock(&iov->dev->sriov->lock);
  149. pci_dev_put(dev);
  150. }
  151. static int sriov_migration(struct pci_dev *dev)
  152. {
  153. u16 status;
  154. struct pci_sriov *iov = dev->sriov;
  155. if (!iov->nr_virtfn)
  156. return 0;
  157. if (!(iov->cap & PCI_SRIOV_CAP_VFM))
  158. return 0;
  159. pci_read_config_word(dev, iov->pos + PCI_SRIOV_STATUS, &status);
  160. if (!(status & PCI_SRIOV_STATUS_VFM))
  161. return 0;
  162. schedule_work(&iov->mtask);
  163. return 1;
  164. }
  165. static void sriov_migration_task(struct work_struct *work)
  166. {
  167. int i;
  168. u8 state;
  169. u16 status;
  170. struct pci_sriov *iov = container_of(work, struct pci_sriov, mtask);
  171. for (i = iov->initial; i < iov->nr_virtfn; i++) {
  172. state = readb(iov->mstate + i);
  173. if (state == PCI_SRIOV_VFM_MI) {
  174. writeb(PCI_SRIOV_VFM_AV, iov->mstate + i);
  175. state = readb(iov->mstate + i);
  176. if (state == PCI_SRIOV_VFM_AV)
  177. virtfn_add(iov->self, i, 1);
  178. } else if (state == PCI_SRIOV_VFM_MO) {
  179. virtfn_remove(iov->self, i, 1);
  180. writeb(PCI_SRIOV_VFM_UA, iov->mstate + i);
  181. state = readb(iov->mstate + i);
  182. if (state == PCI_SRIOV_VFM_AV)
  183. virtfn_add(iov->self, i, 0);
  184. }
  185. }
  186. pci_read_config_word(iov->self, iov->pos + PCI_SRIOV_STATUS, &status);
  187. status &= ~PCI_SRIOV_STATUS_VFM;
  188. pci_write_config_word(iov->self, iov->pos + PCI_SRIOV_STATUS, status);
  189. }
  190. static int sriov_enable_migration(struct pci_dev *dev, int nr_virtfn)
  191. {
  192. int bir;
  193. u32 table;
  194. resource_size_t pa;
  195. struct pci_sriov *iov = dev->sriov;
  196. if (nr_virtfn <= iov->initial)
  197. return 0;
  198. pci_read_config_dword(dev, iov->pos + PCI_SRIOV_VFM, &table);
  199. bir = PCI_SRIOV_VFM_BIR(table);
  200. if (bir > PCI_STD_RESOURCE_END)
  201. return -EIO;
  202. table = PCI_SRIOV_VFM_OFFSET(table);
  203. if (table + nr_virtfn > pci_resource_len(dev, bir))
  204. return -EIO;
  205. pa = pci_resource_start(dev, bir) + table;
  206. iov->mstate = ioremap(pa, nr_virtfn);
  207. if (!iov->mstate)
  208. return -ENOMEM;
  209. INIT_WORK(&iov->mtask, sriov_migration_task);
  210. iov->ctrl |= PCI_SRIOV_CTRL_VFM | PCI_SRIOV_CTRL_INTR;
  211. pci_write_config_word(dev, iov->pos + PCI_SRIOV_CTRL, iov->ctrl);
  212. return 0;
  213. }
  214. static void sriov_disable_migration(struct pci_dev *dev)
  215. {
  216. struct pci_sriov *iov = dev->sriov;
  217. iov->ctrl &= ~(PCI_SRIOV_CTRL_VFM | PCI_SRIOV_CTRL_INTR);
  218. pci_write_config_word(dev, iov->pos + PCI_SRIOV_CTRL, iov->ctrl);
  219. cancel_work_sync(&iov->mtask);
  220. iounmap(iov->mstate);
  221. }
  222. static int sriov_enable(struct pci_dev *dev, int nr_virtfn)
  223. {
  224. int rc;
  225. int i, j;
  226. int nres;
  227. u16 offset, stride, initial;
  228. struct resource *res;
  229. struct pci_dev *pdev;
  230. struct pci_sriov *iov = dev->sriov;
  231. int bars = 0;
  232. if (!nr_virtfn)
  233. return 0;
  234. if (iov->nr_virtfn)
  235. return -EINVAL;
  236. pci_read_config_word(dev, iov->pos + PCI_SRIOV_INITIAL_VF, &initial);
  237. if (initial > iov->total ||
  238. (!(iov->cap & PCI_SRIOV_CAP_VFM) && (initial != iov->total)))
  239. return -EIO;
  240. if (nr_virtfn < 0 || nr_virtfn > iov->total ||
  241. (!(iov->cap & PCI_SRIOV_CAP_VFM) && (nr_virtfn > initial)))
  242. return -EINVAL;
  243. pci_write_config_word(dev, iov->pos + PCI_SRIOV_NUM_VF, nr_virtfn);
  244. pci_read_config_word(dev, iov->pos + PCI_SRIOV_VF_OFFSET, &offset);
  245. pci_read_config_word(dev, iov->pos + PCI_SRIOV_VF_STRIDE, &stride);
  246. if (!offset || (nr_virtfn > 1 && !stride))
  247. return -EIO;
  248. nres = 0;
  249. for (i = 0; i < PCI_SRIOV_NUM_BARS; i++) {
  250. bars |= (1 << (i + PCI_IOV_RESOURCES));
  251. res = dev->resource + PCI_IOV_RESOURCES + i;
  252. if (res->parent)
  253. nres++;
  254. }
  255. if (nres != iov->nres) {
  256. dev_err(&dev->dev, "not enough MMIO resources for SR-IOV\n");
  257. return -ENOMEM;
  258. }
  259. iov->offset = offset;
  260. iov->stride = stride;
  261. if (virtfn_bus(dev, nr_virtfn - 1) > dev->bus->subordinate) {
  262. dev_err(&dev->dev, "SR-IOV: bus number out of range\n");
  263. return -ENOMEM;
  264. }
  265. if (pci_enable_resources(dev, bars)) {
  266. dev_err(&dev->dev, "SR-IOV: IOV BARS not allocated\n");
  267. return -ENOMEM;
  268. }
  269. if (iov->link != dev->devfn) {
  270. pdev = pci_get_slot(dev->bus, iov->link);
  271. if (!pdev)
  272. return -ENODEV;
  273. pci_dev_put(pdev);
  274. if (!pdev->is_physfn)
  275. return -ENODEV;
  276. rc = sysfs_create_link(&dev->dev.kobj,
  277. &pdev->dev.kobj, "dep_link");
  278. if (rc)
  279. return rc;
  280. }
  281. pci_write_config_dword(dev, iov->pos + PCI_SRIOV_SYS_PGSIZE, iov->pgsz);
  282. iov->ctrl |= PCI_SRIOV_CTRL_VFE | PCI_SRIOV_CTRL_MSE;
  283. pci_cfg_access_lock(dev);
  284. pci_write_config_word(dev, iov->pos + PCI_SRIOV_CTRL, iov->ctrl);
  285. msleep(100);
  286. pci_cfg_access_unlock(dev);
  287. iov->initial = initial;
  288. if (nr_virtfn < initial)
  289. initial = nr_virtfn;
  290. for (i = 0; i < initial; i++) {
  291. rc = virtfn_add(dev, i, 0);
  292. if (rc)
  293. goto failed;
  294. }
  295. if (iov->cap & PCI_SRIOV_CAP_VFM) {
  296. rc = sriov_enable_migration(dev, nr_virtfn);
  297. if (rc)
  298. goto failed;
  299. }
  300. kobject_uevent(&dev->dev.kobj, KOBJ_CHANGE);
  301. iov->nr_virtfn = nr_virtfn;
  302. return 0;
  303. failed:
  304. for (j = 0; j < i; j++)
  305. virtfn_remove(dev, j, 0);
  306. iov->ctrl &= ~(PCI_SRIOV_CTRL_VFE | PCI_SRIOV_CTRL_MSE);
  307. pci_cfg_access_lock(dev);
  308. pci_write_config_word(dev, iov->pos + PCI_SRIOV_CTRL, iov->ctrl);
  309. ssleep(1);
  310. pci_cfg_access_unlock(dev);
  311. if (iov->link != dev->devfn)
  312. sysfs_remove_link(&dev->dev.kobj, "dep_link");
  313. return rc;
  314. }
  315. static void sriov_disable(struct pci_dev *dev)
  316. {
  317. int i;
  318. struct pci_sriov *iov = dev->sriov;
  319. if (!iov->nr_virtfn)
  320. return;
  321. if (iov->cap & PCI_SRIOV_CAP_VFM)
  322. sriov_disable_migration(dev);
  323. for (i = 0; i < iov->nr_virtfn; i++)
  324. virtfn_remove(dev, i, 0);
  325. iov->ctrl &= ~(PCI_SRIOV_CTRL_VFE | PCI_SRIOV_CTRL_MSE);
  326. pci_cfg_access_lock(dev);
  327. pci_write_config_word(dev, iov->pos + PCI_SRIOV_CTRL, iov->ctrl);
  328. ssleep(1);
  329. pci_cfg_access_unlock(dev);
  330. if (iov->link != dev->devfn)
  331. sysfs_remove_link(&dev->dev.kobj, "dep_link");
  332. iov->nr_virtfn = 0;
  333. }
  334. static int sriov_init(struct pci_dev *dev, int pos)
  335. {
  336. int i;
  337. int rc;
  338. int nres;
  339. u32 pgsz;
  340. u16 ctrl, total, offset, stride;
  341. struct pci_sriov *iov;
  342. struct resource *res;
  343. struct pci_dev *pdev;
  344. if (dev->pcie_type != PCI_EXP_TYPE_RC_END &&
  345. dev->pcie_type != PCI_EXP_TYPE_ENDPOINT)
  346. return -ENODEV;
  347. pci_read_config_word(dev, pos + PCI_SRIOV_CTRL, &ctrl);
  348. if (ctrl & PCI_SRIOV_CTRL_VFE) {
  349. pci_write_config_word(dev, pos + PCI_SRIOV_CTRL, 0);
  350. ssleep(1);
  351. }
  352. pci_read_config_word(dev, pos + PCI_SRIOV_TOTAL_VF, &total);
  353. if (!total)
  354. return 0;
  355. ctrl = 0;
  356. list_for_each_entry(pdev, &dev->bus->devices, bus_list)
  357. if (pdev->is_physfn)
  358. goto found;
  359. pdev = NULL;
  360. if (pci_ari_enabled(dev->bus))
  361. ctrl |= PCI_SRIOV_CTRL_ARI;
  362. found:
  363. pci_write_config_word(dev, pos + PCI_SRIOV_CTRL, ctrl);
  364. pci_read_config_word(dev, pos + PCI_SRIOV_VF_OFFSET, &offset);
  365. pci_read_config_word(dev, pos + PCI_SRIOV_VF_STRIDE, &stride);
  366. if (!offset || (total > 1 && !stride))
  367. return -EIO;
  368. pci_read_config_dword(dev, pos + PCI_SRIOV_SUP_PGSIZE, &pgsz);
  369. i = PAGE_SHIFT > 12 ? PAGE_SHIFT - 12 : 0;
  370. pgsz &= ~((1 << i) - 1);
  371. if (!pgsz)
  372. return -EIO;
  373. pgsz &= ~(pgsz - 1);
  374. nres = 0;
  375. for (i = 0; i < PCI_SRIOV_NUM_BARS; i++) {
  376. res = dev->resource + PCI_IOV_RESOURCES + i;
  377. i += __pci_read_base(dev, pci_bar_unknown, res,
  378. pos + PCI_SRIOV_BAR + i * 4);
  379. if (!res->flags)
  380. continue;
  381. if (resource_size(res) & (PAGE_SIZE - 1)) {
  382. rc = -EIO;
  383. goto failed;
  384. }
  385. res->end = res->start + resource_size(res) * total - 1;
  386. nres++;
  387. }
  388. iov = kzalloc(sizeof(*iov), GFP_KERNEL);
  389. if (!iov) {
  390. rc = -ENOMEM;
  391. goto failed;
  392. }
  393. iov->pos = pos;
  394. iov->nres = nres;
  395. iov->ctrl = ctrl;
  396. iov->total = total;
  397. iov->offset = offset;
  398. iov->stride = stride;
  399. iov->pgsz = pgsz;
  400. iov->self = dev;
  401. pci_read_config_dword(dev, pos + PCI_SRIOV_CAP, &iov->cap);
  402. pci_read_config_byte(dev, pos + PCI_SRIOV_FUNC_LINK, &iov->link);
  403. if (dev->pcie_type == PCI_EXP_TYPE_RC_END)
  404. iov->link = PCI_DEVFN(PCI_SLOT(dev->devfn), iov->link);
  405. if (pdev)
  406. iov->dev = pci_dev_get(pdev);
  407. else
  408. iov->dev = dev;
  409. mutex_init(&iov->lock);
  410. dev->sriov = iov;
  411. dev->is_physfn = 1;
  412. return 0;
  413. failed:
  414. for (i = 0; i < PCI_SRIOV_NUM_BARS; i++) {
  415. res = dev->resource + PCI_IOV_RESOURCES + i;
  416. res->flags = 0;
  417. }
  418. return rc;
  419. }
  420. static void sriov_release(struct pci_dev *dev)
  421. {
  422. BUG_ON(dev->sriov->nr_virtfn);
  423. if (dev != dev->sriov->dev)
  424. pci_dev_put(dev->sriov->dev);
  425. mutex_destroy(&dev->sriov->lock);
  426. kfree(dev->sriov);
  427. dev->sriov = NULL;
  428. }
  429. static void sriov_restore_state(struct pci_dev *dev)
  430. {
  431. int i;
  432. u16 ctrl;
  433. struct pci_sriov *iov = dev->sriov;
  434. pci_read_config_word(dev, iov->pos + PCI_SRIOV_CTRL, &ctrl);
  435. if (ctrl & PCI_SRIOV_CTRL_VFE)
  436. return;
  437. for (i = PCI_IOV_RESOURCES; i <= PCI_IOV_RESOURCE_END; i++)
  438. pci_update_resource(dev, i);
  439. pci_write_config_dword(dev, iov->pos + PCI_SRIOV_SYS_PGSIZE, iov->pgsz);
  440. pci_write_config_word(dev, iov->pos + PCI_SRIOV_NUM_VF, iov->nr_virtfn);
  441. pci_write_config_word(dev, iov->pos + PCI_SRIOV_CTRL, iov->ctrl);
  442. if (iov->ctrl & PCI_SRIOV_CTRL_VFE)
  443. msleep(100);
  444. }
  445. /**
  446. * pci_iov_init - initialize the IOV capability
  447. * @dev: the PCI device
  448. *
  449. * Returns 0 on success, or negative on failure.
  450. */
  451. int pci_iov_init(struct pci_dev *dev)
  452. {
  453. int pos;
  454. if (!pci_is_pcie(dev))
  455. return -ENODEV;
  456. pos = pci_find_ext_capability(dev, PCI_EXT_CAP_ID_SRIOV);
  457. if (pos)
  458. return sriov_init(dev, pos);
  459. return -ENODEV;
  460. }
  461. /**
  462. * pci_iov_release - release resources used by the IOV capability
  463. * @dev: the PCI device
  464. */
  465. void pci_iov_release(struct pci_dev *dev)
  466. {
  467. if (dev->is_physfn)
  468. sriov_release(dev);
  469. }
  470. /**
  471. * pci_iov_resource_bar - get position of the SR-IOV BAR
  472. * @dev: the PCI device
  473. * @resno: the resource number
  474. * @type: the BAR type to be filled in
  475. *
  476. * Returns position of the BAR encapsulated in the SR-IOV capability.
  477. */
  478. int pci_iov_resource_bar(struct pci_dev *dev, int resno,
  479. enum pci_bar_type *type)
  480. {
  481. if (resno < PCI_IOV_RESOURCES || resno > PCI_IOV_RESOURCE_END)
  482. return 0;
  483. BUG_ON(!dev->is_physfn);
  484. *type = pci_bar_unknown;
  485. return dev->sriov->pos + PCI_SRIOV_BAR +
  486. 4 * (resno - PCI_IOV_RESOURCES);
  487. }
  488. /**
  489. * pci_sriov_resource_alignment - get resource alignment for VF BAR
  490. * @dev: the PCI device
  491. * @resno: the resource number
  492. *
  493. * Returns the alignment of the VF BAR found in the SR-IOV capability.
  494. * This is not the same as the resource size which is defined as
  495. * the VF BAR size multiplied by the number of VFs. The alignment
  496. * is just the VF BAR size.
  497. */
  498. resource_size_t pci_sriov_resource_alignment(struct pci_dev *dev, int resno)
  499. {
  500. struct resource tmp;
  501. enum pci_bar_type type;
  502. int reg = pci_iov_resource_bar(dev, resno, &type);
  503. if (!reg)
  504. return 0;
  505. __pci_read_base(dev, type, &tmp, reg);
  506. return resource_alignment(&tmp);
  507. }
  508. /**
  509. * pci_restore_iov_state - restore the state of the IOV capability
  510. * @dev: the PCI device
  511. */
  512. void pci_restore_iov_state(struct pci_dev *dev)
  513. {
  514. if (dev->is_physfn)
  515. sriov_restore_state(dev);
  516. }
  517. /**
  518. * pci_iov_bus_range - find bus range used by Virtual Function
  519. * @bus: the PCI bus
  520. *
  521. * Returns max number of buses (exclude current one) used by Virtual
  522. * Functions.
  523. */
  524. int pci_iov_bus_range(struct pci_bus *bus)
  525. {
  526. int max = 0;
  527. u8 busnr;
  528. struct pci_dev *dev;
  529. list_for_each_entry(dev, &bus->devices, bus_list) {
  530. if (!dev->is_physfn)
  531. continue;
  532. busnr = virtfn_bus(dev, dev->sriov->total - 1);
  533. if (busnr > max)
  534. max = busnr;
  535. }
  536. return max ? max - bus->number : 0;
  537. }
  538. /**
  539. * pci_enable_sriov - enable the SR-IOV capability
  540. * @dev: the PCI device
  541. * @nr_virtfn: number of virtual functions to enable
  542. *
  543. * Returns 0 on success, or negative on failure.
  544. */
  545. int pci_enable_sriov(struct pci_dev *dev, int nr_virtfn)
  546. {
  547. might_sleep();
  548. if (!dev->is_physfn)
  549. return -ENODEV;
  550. return sriov_enable(dev, nr_virtfn);
  551. }
  552. EXPORT_SYMBOL_GPL(pci_enable_sriov);
  553. /**
  554. * pci_disable_sriov - disable the SR-IOV capability
  555. * @dev: the PCI device
  556. */
  557. void pci_disable_sriov(struct pci_dev *dev)
  558. {
  559. might_sleep();
  560. if (!dev->is_physfn)
  561. return;
  562. sriov_disable(dev);
  563. }
  564. EXPORT_SYMBOL_GPL(pci_disable_sriov);
  565. /**
  566. * pci_sriov_migration - notify SR-IOV core of Virtual Function Migration
  567. * @dev: the PCI device
  568. *
  569. * Returns IRQ_HANDLED if the IRQ is handled, or IRQ_NONE if not.
  570. *
  571. * Physical Function driver is responsible to register IRQ handler using
  572. * VF Migration Interrupt Message Number, and call this function when the
  573. * interrupt is generated by the hardware.
  574. */
  575. irqreturn_t pci_sriov_migration(struct pci_dev *dev)
  576. {
  577. if (!dev->is_physfn)
  578. return IRQ_NONE;
  579. return sriov_migration(dev) ? IRQ_HANDLED : IRQ_NONE;
  580. }
  581. EXPORT_SYMBOL_GPL(pci_sriov_migration);
  582. /**
  583. * pci_num_vf - return number of VFs associated with a PF device_release_driver
  584. * @dev: the PCI device
  585. *
  586. * Returns number of VFs, or 0 if SR-IOV is not enabled.
  587. */
  588. int pci_num_vf(struct pci_dev *dev)
  589. {
  590. if (!dev || !dev->is_physfn)
  591. return 0;
  592. else
  593. return dev->sriov->nr_virtfn;
  594. }
  595. EXPORT_SYMBOL_GPL(pci_num_vf);