vfio.h 25 KB

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  1. /* SPDX-License-Identifier: GPL-2.0 WITH Linux-syscall-note */
  2. /*
  3. * VFIO API definition
  4. *
  5. * Copyright (C) 2012 Red Hat, Inc. All rights reserved.
  6. * Author: Alex Williamson <alex.williamson@redhat.com>
  7. *
  8. * This program is free software; you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License version 2 as
  10. * published by the Free Software Foundation.
  11. */
  12. #ifndef VFIO_H
  13. #define VFIO_H
  14. #include <linux/types.h>
  15. #include <linux/ioctl.h>
  16. #define VFIO_API_VERSION 0
  17. /* Kernel & User level defines for VFIO IOCTLs. */
  18. /* Extensions */
  19. #define VFIO_TYPE1_IOMMU 1
  20. #define VFIO_SPAPR_TCE_IOMMU 2
  21. #define VFIO_TYPE1v2_IOMMU 3
  22. /*
  23. * IOMMU enforces DMA cache coherence (ex. PCIe NoSnoop stripping). This
  24. * capability is subject to change as groups are added or removed.
  25. */
  26. #define VFIO_DMA_CC_IOMMU 4
  27. /* Check if EEH is supported */
  28. #define VFIO_EEH 5
  29. /* Two-stage IOMMU */
  30. #define VFIO_TYPE1_NESTING_IOMMU 6 /* Implies v2 */
  31. #define VFIO_SPAPR_TCE_v2_IOMMU 7
  32. /*
  33. * The No-IOMMU IOMMU offers no translation or isolation for devices and
  34. * supports no ioctls outside of VFIO_CHECK_EXTENSION. Use of VFIO's No-IOMMU
  35. * code will taint the host kernel and should be used with extreme caution.
  36. */
  37. #define VFIO_NOIOMMU_IOMMU 8
  38. /*
  39. * The IOCTL interface is designed for extensibility by embedding the
  40. * structure length (argsz) and flags into structures passed between
  41. * kernel and userspace. We therefore use the _IO() macro for these
  42. * defines to avoid implicitly embedding a size into the ioctl request.
  43. * As structure fields are added, argsz will increase to match and flag
  44. * bits will be defined to indicate additional fields with valid data.
  45. * It's *always* the caller's responsibility to indicate the size of
  46. * the structure passed by setting argsz appropriately.
  47. */
  48. #define VFIO_TYPE (';')
  49. #define VFIO_BASE 100
  50. /*
  51. * For extension of INFO ioctls, VFIO makes use of a capability chain
  52. * designed after PCI/e capabilities. A flag bit indicates whether
  53. * this capability chain is supported and a field defined in the fixed
  54. * structure defines the offset of the first capability in the chain.
  55. * This field is only valid when the corresponding bit in the flags
  56. * bitmap is set. This offset field is relative to the start of the
  57. * INFO buffer, as is the next field within each capability header.
  58. * The id within the header is a shared address space per INFO ioctl,
  59. * while the version field is specific to the capability id. The
  60. * contents following the header are specific to the capability id.
  61. */
  62. struct vfio_info_cap_header {
  63. __u16 id; /* Identifies capability */
  64. __u16 version; /* Version specific to the capability ID */
  65. __u32 next; /* Offset of next capability */
  66. };
  67. /*
  68. * Callers of INFO ioctls passing insufficiently sized buffers will see
  69. * the capability chain flag bit set, a zero value for the first capability
  70. * offset (if available within the provided argsz), and argsz will be
  71. * updated to report the necessary buffer size. For compatibility, the
  72. * INFO ioctl will not report error in this case, but the capability chain
  73. * will not be available.
  74. */
  75. /* -------- IOCTLs for VFIO file descriptor (/dev/vfio/vfio) -------- */
  76. /**
  77. * VFIO_GET_API_VERSION - _IO(VFIO_TYPE, VFIO_BASE + 0)
  78. *
  79. * Report the version of the VFIO API. This allows us to bump the entire
  80. * API version should we later need to add or change features in incompatible
  81. * ways.
  82. * Return: VFIO_API_VERSION
  83. * Availability: Always
  84. */
  85. #define VFIO_GET_API_VERSION _IO(VFIO_TYPE, VFIO_BASE + 0)
  86. /**
  87. * VFIO_CHECK_EXTENSION - _IOW(VFIO_TYPE, VFIO_BASE + 1, __u32)
  88. *
  89. * Check whether an extension is supported.
  90. * Return: 0 if not supported, 1 (or some other positive integer) if supported.
  91. * Availability: Always
  92. */
  93. #define VFIO_CHECK_EXTENSION _IO(VFIO_TYPE, VFIO_BASE + 1)
  94. /**
  95. * VFIO_SET_IOMMU - _IOW(VFIO_TYPE, VFIO_BASE + 2, __s32)
  96. *
  97. * Set the iommu to the given type. The type must be supported by an
  98. * iommu driver as verified by calling CHECK_EXTENSION using the same
  99. * type. A group must be set to this file descriptor before this
  100. * ioctl is available. The IOMMU interfaces enabled by this call are
  101. * specific to the value set.
  102. * Return: 0 on success, -errno on failure
  103. * Availability: When VFIO group attached
  104. */
  105. #define VFIO_SET_IOMMU _IO(VFIO_TYPE, VFIO_BASE + 2)
  106. /* -------- IOCTLs for GROUP file descriptors (/dev/vfio/$GROUP) -------- */
  107. /**
  108. * VFIO_GROUP_GET_STATUS - _IOR(VFIO_TYPE, VFIO_BASE + 3,
  109. * struct vfio_group_status)
  110. *
  111. * Retrieve information about the group. Fills in provided
  112. * struct vfio_group_info. Caller sets argsz.
  113. * Return: 0 on succes, -errno on failure.
  114. * Availability: Always
  115. */
  116. struct vfio_group_status {
  117. __u32 argsz;
  118. __u32 flags;
  119. #define VFIO_GROUP_FLAGS_VIABLE (1 << 0)
  120. #define VFIO_GROUP_FLAGS_CONTAINER_SET (1 << 1)
  121. };
  122. #define VFIO_GROUP_GET_STATUS _IO(VFIO_TYPE, VFIO_BASE + 3)
  123. /**
  124. * VFIO_GROUP_SET_CONTAINER - _IOW(VFIO_TYPE, VFIO_BASE + 4, __s32)
  125. *
  126. * Set the container for the VFIO group to the open VFIO file
  127. * descriptor provided. Groups may only belong to a single
  128. * container. Containers may, at their discretion, support multiple
  129. * groups. Only when a container is set are all of the interfaces
  130. * of the VFIO file descriptor and the VFIO group file descriptor
  131. * available to the user.
  132. * Return: 0 on success, -errno on failure.
  133. * Availability: Always
  134. */
  135. #define VFIO_GROUP_SET_CONTAINER _IO(VFIO_TYPE, VFIO_BASE + 4)
  136. /**
  137. * VFIO_GROUP_UNSET_CONTAINER - _IO(VFIO_TYPE, VFIO_BASE + 5)
  138. *
  139. * Remove the group from the attached container. This is the
  140. * opposite of the SET_CONTAINER call and returns the group to
  141. * an initial state. All device file descriptors must be released
  142. * prior to calling this interface. When removing the last group
  143. * from a container, the IOMMU will be disabled and all state lost,
  144. * effectively also returning the VFIO file descriptor to an initial
  145. * state.
  146. * Return: 0 on success, -errno on failure.
  147. * Availability: When attached to container
  148. */
  149. #define VFIO_GROUP_UNSET_CONTAINER _IO(VFIO_TYPE, VFIO_BASE + 5)
  150. /**
  151. * VFIO_GROUP_GET_DEVICE_FD - _IOW(VFIO_TYPE, VFIO_BASE + 6, char)
  152. *
  153. * Return a new file descriptor for the device object described by
  154. * the provided string. The string should match a device listed in
  155. * the devices subdirectory of the IOMMU group sysfs entry. The
  156. * group containing the device must already be added to this context.
  157. * Return: new file descriptor on success, -errno on failure.
  158. * Availability: When attached to container
  159. */
  160. #define VFIO_GROUP_GET_DEVICE_FD _IO(VFIO_TYPE, VFIO_BASE + 6)
  161. /* --------------- IOCTLs for DEVICE file descriptors --------------- */
  162. /**
  163. * VFIO_DEVICE_GET_INFO - _IOR(VFIO_TYPE, VFIO_BASE + 7,
  164. * struct vfio_device_info)
  165. *
  166. * Retrieve information about the device. Fills in provided
  167. * struct vfio_device_info. Caller sets argsz.
  168. * Return: 0 on success, -errno on failure.
  169. */
  170. struct vfio_device_info {
  171. __u32 argsz;
  172. __u32 flags;
  173. #define VFIO_DEVICE_FLAGS_RESET (1 << 0) /* Device supports reset */
  174. #define VFIO_DEVICE_FLAGS_PCI (1 << 1) /* vfio-pci device */
  175. #define VFIO_DEVICE_FLAGS_PLATFORM (1 << 2) /* vfio-platform device */
  176. #define VFIO_DEVICE_FLAGS_AMBA (1 << 3) /* vfio-amba device */
  177. #define VFIO_DEVICE_FLAGS_CCW (1 << 4) /* vfio-ccw device */
  178. __u32 num_regions; /* Max region index + 1 */
  179. __u32 num_irqs; /* Max IRQ index + 1 */
  180. };
  181. #define VFIO_DEVICE_GET_INFO _IO(VFIO_TYPE, VFIO_BASE + 7)
  182. /*
  183. * Vendor driver using Mediated device framework should provide device_api
  184. * attribute in supported type attribute groups. Device API string should be one
  185. * of the following corresponding to device flags in vfio_device_info structure.
  186. */
  187. #define VFIO_DEVICE_API_PCI_STRING "vfio-pci"
  188. #define VFIO_DEVICE_API_PLATFORM_STRING "vfio-platform"
  189. #define VFIO_DEVICE_API_AMBA_STRING "vfio-amba"
  190. #define VFIO_DEVICE_API_CCW_STRING "vfio-ccw"
  191. /**
  192. * VFIO_DEVICE_GET_REGION_INFO - _IOWR(VFIO_TYPE, VFIO_BASE + 8,
  193. * struct vfio_region_info)
  194. *
  195. * Retrieve information about a device region. Caller provides
  196. * struct vfio_region_info with index value set. Caller sets argsz.
  197. * Implementation of region mapping is bus driver specific. This is
  198. * intended to describe MMIO, I/O port, as well as bus specific
  199. * regions (ex. PCI config space). Zero sized regions may be used
  200. * to describe unimplemented regions (ex. unimplemented PCI BARs).
  201. * Return: 0 on success, -errno on failure.
  202. */
  203. struct vfio_region_info {
  204. __u32 argsz;
  205. __u32 flags;
  206. #define VFIO_REGION_INFO_FLAG_READ (1 << 0) /* Region supports read */
  207. #define VFIO_REGION_INFO_FLAG_WRITE (1 << 1) /* Region supports write */
  208. #define VFIO_REGION_INFO_FLAG_MMAP (1 << 2) /* Region supports mmap */
  209. #define VFIO_REGION_INFO_FLAG_CAPS (1 << 3) /* Info supports caps */
  210. __u32 index; /* Region index */
  211. __u32 cap_offset; /* Offset within info struct of first cap */
  212. __u64 size; /* Region size (bytes) */
  213. __u64 offset; /* Region offset from start of device fd */
  214. };
  215. #define VFIO_DEVICE_GET_REGION_INFO _IO(VFIO_TYPE, VFIO_BASE + 8)
  216. /*
  217. * The sparse mmap capability allows finer granularity of specifying areas
  218. * within a region with mmap support. When specified, the user should only
  219. * mmap the offset ranges specified by the areas array. mmaps outside of the
  220. * areas specified may fail (such as the range covering a PCI MSI-X table) or
  221. * may result in improper device behavior.
  222. *
  223. * The structures below define version 1 of this capability.
  224. */
  225. #define VFIO_REGION_INFO_CAP_SPARSE_MMAP 1
  226. struct vfio_region_sparse_mmap_area {
  227. __u64 offset; /* Offset of mmap'able area within region */
  228. __u64 size; /* Size of mmap'able area */
  229. };
  230. struct vfio_region_info_cap_sparse_mmap {
  231. struct vfio_info_cap_header header;
  232. __u32 nr_areas;
  233. __u32 reserved;
  234. struct vfio_region_sparse_mmap_area areas[];
  235. };
  236. /*
  237. * The device specific type capability allows regions unique to a specific
  238. * device or class of devices to be exposed. This helps solve the problem for
  239. * vfio bus drivers of defining which region indexes correspond to which region
  240. * on the device, without needing to resort to static indexes, as done by
  241. * vfio-pci. For instance, if we were to go back in time, we might remove
  242. * VFIO_PCI_VGA_REGION_INDEX and let vfio-pci simply define that all indexes
  243. * greater than or equal to VFIO_PCI_NUM_REGIONS are device specific and we'd
  244. * make a "VGA" device specific type to describe the VGA access space. This
  245. * means that non-VGA devices wouldn't need to waste this index, and thus the
  246. * address space associated with it due to implementation of device file
  247. * descriptor offsets in vfio-pci.
  248. *
  249. * The current implementation is now part of the user ABI, so we can't use this
  250. * for VGA, but there are other upcoming use cases, such as opregions for Intel
  251. * IGD devices and framebuffers for vGPU devices. We missed VGA, but we'll
  252. * use this for future additions.
  253. *
  254. * The structure below defines version 1 of this capability.
  255. */
  256. #define VFIO_REGION_INFO_CAP_TYPE 2
  257. struct vfio_region_info_cap_type {
  258. struct vfio_info_cap_header header;
  259. __u32 type; /* global per bus driver */
  260. __u32 subtype; /* type specific */
  261. };
  262. #define VFIO_REGION_TYPE_PCI_VENDOR_TYPE (1 << 31)
  263. #define VFIO_REGION_TYPE_PCI_VENDOR_MASK (0xffff)
  264. /* 8086 Vendor sub-types */
  265. #define VFIO_REGION_SUBTYPE_INTEL_IGD_OPREGION (1)
  266. #define VFIO_REGION_SUBTYPE_INTEL_IGD_HOST_CFG (2)
  267. #define VFIO_REGION_SUBTYPE_INTEL_IGD_LPC_CFG (3)
  268. /**
  269. * VFIO_DEVICE_GET_IRQ_INFO - _IOWR(VFIO_TYPE, VFIO_BASE + 9,
  270. * struct vfio_irq_info)
  271. *
  272. * Retrieve information about a device IRQ. Caller provides
  273. * struct vfio_irq_info with index value set. Caller sets argsz.
  274. * Implementation of IRQ mapping is bus driver specific. Indexes
  275. * using multiple IRQs are primarily intended to support MSI-like
  276. * interrupt blocks. Zero count irq blocks may be used to describe
  277. * unimplemented interrupt types.
  278. *
  279. * The EVENTFD flag indicates the interrupt index supports eventfd based
  280. * signaling.
  281. *
  282. * The MASKABLE flags indicates the index supports MASK and UNMASK
  283. * actions described below.
  284. *
  285. * AUTOMASKED indicates that after signaling, the interrupt line is
  286. * automatically masked by VFIO and the user needs to unmask the line
  287. * to receive new interrupts. This is primarily intended to distinguish
  288. * level triggered interrupts.
  289. *
  290. * The NORESIZE flag indicates that the interrupt lines within the index
  291. * are setup as a set and new subindexes cannot be enabled without first
  292. * disabling the entire index. This is used for interrupts like PCI MSI
  293. * and MSI-X where the driver may only use a subset of the available
  294. * indexes, but VFIO needs to enable a specific number of vectors
  295. * upfront. In the case of MSI-X, where the user can enable MSI-X and
  296. * then add and unmask vectors, it's up to userspace to make the decision
  297. * whether to allocate the maximum supported number of vectors or tear
  298. * down setup and incrementally increase the vectors as each is enabled.
  299. */
  300. struct vfio_irq_info {
  301. __u32 argsz;
  302. __u32 flags;
  303. #define VFIO_IRQ_INFO_EVENTFD (1 << 0)
  304. #define VFIO_IRQ_INFO_MASKABLE (1 << 1)
  305. #define VFIO_IRQ_INFO_AUTOMASKED (1 << 2)
  306. #define VFIO_IRQ_INFO_NORESIZE (1 << 3)
  307. __u32 index; /* IRQ index */
  308. __u32 count; /* Number of IRQs within this index */
  309. };
  310. #define VFIO_DEVICE_GET_IRQ_INFO _IO(VFIO_TYPE, VFIO_BASE + 9)
  311. /**
  312. * VFIO_DEVICE_SET_IRQS - _IOW(VFIO_TYPE, VFIO_BASE + 10, struct vfio_irq_set)
  313. *
  314. * Set signaling, masking, and unmasking of interrupts. Caller provides
  315. * struct vfio_irq_set with all fields set. 'start' and 'count' indicate
  316. * the range of subindexes being specified.
  317. *
  318. * The DATA flags specify the type of data provided. If DATA_NONE, the
  319. * operation performs the specified action immediately on the specified
  320. * interrupt(s). For example, to unmask AUTOMASKED interrupt [0,0]:
  321. * flags = (DATA_NONE|ACTION_UNMASK), index = 0, start = 0, count = 1.
  322. *
  323. * DATA_BOOL allows sparse support for the same on arrays of interrupts.
  324. * For example, to mask interrupts [0,1] and [0,3] (but not [0,2]):
  325. * flags = (DATA_BOOL|ACTION_MASK), index = 0, start = 1, count = 3,
  326. * data = {1,0,1}
  327. *
  328. * DATA_EVENTFD binds the specified ACTION to the provided __s32 eventfd.
  329. * A value of -1 can be used to either de-assign interrupts if already
  330. * assigned or skip un-assigned interrupts. For example, to set an eventfd
  331. * to be trigger for interrupts [0,0] and [0,2]:
  332. * flags = (DATA_EVENTFD|ACTION_TRIGGER), index = 0, start = 0, count = 3,
  333. * data = {fd1, -1, fd2}
  334. * If index [0,1] is previously set, two count = 1 ioctls calls would be
  335. * required to set [0,0] and [0,2] without changing [0,1].
  336. *
  337. * Once a signaling mechanism is set, DATA_BOOL or DATA_NONE can be used
  338. * with ACTION_TRIGGER to perform kernel level interrupt loopback testing
  339. * from userspace (ie. simulate hardware triggering).
  340. *
  341. * Setting of an event triggering mechanism to userspace for ACTION_TRIGGER
  342. * enables the interrupt index for the device. Individual subindex interrupts
  343. * can be disabled using the -1 value for DATA_EVENTFD or the index can be
  344. * disabled as a whole with: flags = (DATA_NONE|ACTION_TRIGGER), count = 0.
  345. *
  346. * Note that ACTION_[UN]MASK specify user->kernel signaling (irqfds) while
  347. * ACTION_TRIGGER specifies kernel->user signaling.
  348. */
  349. struct vfio_irq_set {
  350. __u32 argsz;
  351. __u32 flags;
  352. #define VFIO_IRQ_SET_DATA_NONE (1 << 0) /* Data not present */
  353. #define VFIO_IRQ_SET_DATA_BOOL (1 << 1) /* Data is bool (u8) */
  354. #define VFIO_IRQ_SET_DATA_EVENTFD (1 << 2) /* Data is eventfd (s32) */
  355. #define VFIO_IRQ_SET_ACTION_MASK (1 << 3) /* Mask interrupt */
  356. #define VFIO_IRQ_SET_ACTION_UNMASK (1 << 4) /* Unmask interrupt */
  357. #define VFIO_IRQ_SET_ACTION_TRIGGER (1 << 5) /* Trigger interrupt */
  358. __u32 index;
  359. __u32 start;
  360. __u32 count;
  361. __u8 data[];
  362. };
  363. #define VFIO_DEVICE_SET_IRQS _IO(VFIO_TYPE, VFIO_BASE + 10)
  364. #define VFIO_IRQ_SET_DATA_TYPE_MASK (VFIO_IRQ_SET_DATA_NONE | \
  365. VFIO_IRQ_SET_DATA_BOOL | \
  366. VFIO_IRQ_SET_DATA_EVENTFD)
  367. #define VFIO_IRQ_SET_ACTION_TYPE_MASK (VFIO_IRQ_SET_ACTION_MASK | \
  368. VFIO_IRQ_SET_ACTION_UNMASK | \
  369. VFIO_IRQ_SET_ACTION_TRIGGER)
  370. /**
  371. * VFIO_DEVICE_RESET - _IO(VFIO_TYPE, VFIO_BASE + 11)
  372. *
  373. * Reset a device.
  374. */
  375. #define VFIO_DEVICE_RESET _IO(VFIO_TYPE, VFIO_BASE + 11)
  376. /*
  377. * The VFIO-PCI bus driver makes use of the following fixed region and
  378. * IRQ index mapping. Unimplemented regions return a size of zero.
  379. * Unimplemented IRQ types return a count of zero.
  380. */
  381. enum {
  382. VFIO_PCI_BAR0_REGION_INDEX,
  383. VFIO_PCI_BAR1_REGION_INDEX,
  384. VFIO_PCI_BAR2_REGION_INDEX,
  385. VFIO_PCI_BAR3_REGION_INDEX,
  386. VFIO_PCI_BAR4_REGION_INDEX,
  387. VFIO_PCI_BAR5_REGION_INDEX,
  388. VFIO_PCI_ROM_REGION_INDEX,
  389. VFIO_PCI_CONFIG_REGION_INDEX,
  390. /*
  391. * Expose VGA regions defined for PCI base class 03, subclass 00.
  392. * This includes I/O port ranges 0x3b0 to 0x3bb and 0x3c0 to 0x3df
  393. * as well as the MMIO range 0xa0000 to 0xbffff. Each implemented
  394. * range is found at it's identity mapped offset from the region
  395. * offset, for example 0x3b0 is region_info.offset + 0x3b0. Areas
  396. * between described ranges are unimplemented.
  397. */
  398. VFIO_PCI_VGA_REGION_INDEX,
  399. VFIO_PCI_NUM_REGIONS = 9 /* Fixed user ABI, region indexes >=9 use */
  400. /* device specific cap to define content. */
  401. };
  402. enum {
  403. VFIO_PCI_INTX_IRQ_INDEX,
  404. VFIO_PCI_MSI_IRQ_INDEX,
  405. VFIO_PCI_MSIX_IRQ_INDEX,
  406. VFIO_PCI_ERR_IRQ_INDEX,
  407. VFIO_PCI_REQ_IRQ_INDEX,
  408. VFIO_PCI_NUM_IRQS
  409. };
  410. /*
  411. * The vfio-ccw bus driver makes use of the following fixed region and
  412. * IRQ index mapping. Unimplemented regions return a size of zero.
  413. * Unimplemented IRQ types return a count of zero.
  414. */
  415. enum {
  416. VFIO_CCW_CONFIG_REGION_INDEX,
  417. VFIO_CCW_NUM_REGIONS
  418. };
  419. enum {
  420. VFIO_CCW_IO_IRQ_INDEX,
  421. VFIO_CCW_NUM_IRQS
  422. };
  423. /**
  424. * VFIO_DEVICE_GET_PCI_HOT_RESET_INFO - _IORW(VFIO_TYPE, VFIO_BASE + 12,
  425. * struct vfio_pci_hot_reset_info)
  426. *
  427. * Return: 0 on success, -errno on failure:
  428. * -enospc = insufficient buffer, -enodev = unsupported for device.
  429. */
  430. struct vfio_pci_dependent_device {
  431. __u32 group_id;
  432. __u16 segment;
  433. __u8 bus;
  434. __u8 devfn; /* Use PCI_SLOT/PCI_FUNC */
  435. };
  436. struct vfio_pci_hot_reset_info {
  437. __u32 argsz;
  438. __u32 flags;
  439. __u32 count;
  440. struct vfio_pci_dependent_device devices[];
  441. };
  442. #define VFIO_DEVICE_GET_PCI_HOT_RESET_INFO _IO(VFIO_TYPE, VFIO_BASE + 12)
  443. /**
  444. * VFIO_DEVICE_PCI_HOT_RESET - _IOW(VFIO_TYPE, VFIO_BASE + 13,
  445. * struct vfio_pci_hot_reset)
  446. *
  447. * Return: 0 on success, -errno on failure.
  448. */
  449. struct vfio_pci_hot_reset {
  450. __u32 argsz;
  451. __u32 flags;
  452. __u32 count;
  453. __s32 group_fds[];
  454. };
  455. #define VFIO_DEVICE_PCI_HOT_RESET _IO(VFIO_TYPE, VFIO_BASE + 13)
  456. /* -------- API for Type1 VFIO IOMMU -------- */
  457. /**
  458. * VFIO_IOMMU_GET_INFO - _IOR(VFIO_TYPE, VFIO_BASE + 12, struct vfio_iommu_info)
  459. *
  460. * Retrieve information about the IOMMU object. Fills in provided
  461. * struct vfio_iommu_info. Caller sets argsz.
  462. *
  463. * XXX Should we do these by CHECK_EXTENSION too?
  464. */
  465. struct vfio_iommu_type1_info {
  466. __u32 argsz;
  467. __u32 flags;
  468. #define VFIO_IOMMU_INFO_PGSIZES (1 << 0) /* supported page sizes info */
  469. __u64 iova_pgsizes; /* Bitmap of supported page sizes */
  470. };
  471. #define VFIO_IOMMU_GET_INFO _IO(VFIO_TYPE, VFIO_BASE + 12)
  472. /**
  473. * VFIO_IOMMU_MAP_DMA - _IOW(VFIO_TYPE, VFIO_BASE + 13, struct vfio_dma_map)
  474. *
  475. * Map process virtual addresses to IO virtual addresses using the
  476. * provided struct vfio_dma_map. Caller sets argsz. READ &/ WRITE required.
  477. */
  478. struct vfio_iommu_type1_dma_map {
  479. __u32 argsz;
  480. __u32 flags;
  481. #define VFIO_DMA_MAP_FLAG_READ (1 << 0) /* readable from device */
  482. #define VFIO_DMA_MAP_FLAG_WRITE (1 << 1) /* writable from device */
  483. __u64 vaddr; /* Process virtual address */
  484. __u64 iova; /* IO virtual address */
  485. __u64 size; /* Size of mapping (bytes) */
  486. };
  487. #define VFIO_IOMMU_MAP_DMA _IO(VFIO_TYPE, VFIO_BASE + 13)
  488. /**
  489. * VFIO_IOMMU_UNMAP_DMA - _IOWR(VFIO_TYPE, VFIO_BASE + 14,
  490. * struct vfio_dma_unmap)
  491. *
  492. * Unmap IO virtual addresses using the provided struct vfio_dma_unmap.
  493. * Caller sets argsz. The actual unmapped size is returned in the size
  494. * field. No guarantee is made to the user that arbitrary unmaps of iova
  495. * or size different from those used in the original mapping call will
  496. * succeed.
  497. */
  498. struct vfio_iommu_type1_dma_unmap {
  499. __u32 argsz;
  500. __u32 flags;
  501. __u64 iova; /* IO virtual address */
  502. __u64 size; /* Size of mapping (bytes) */
  503. };
  504. #define VFIO_IOMMU_UNMAP_DMA _IO(VFIO_TYPE, VFIO_BASE + 14)
  505. /*
  506. * IOCTLs to enable/disable IOMMU container usage.
  507. * No parameters are supported.
  508. */
  509. #define VFIO_IOMMU_ENABLE _IO(VFIO_TYPE, VFIO_BASE + 15)
  510. #define VFIO_IOMMU_DISABLE _IO(VFIO_TYPE, VFIO_BASE + 16)
  511. /* -------- Additional API for SPAPR TCE (Server POWERPC) IOMMU -------- */
  512. /*
  513. * The SPAPR TCE DDW info struct provides the information about
  514. * the details of Dynamic DMA window capability.
  515. *
  516. * @pgsizes contains a page size bitmask, 4K/64K/16M are supported.
  517. * @max_dynamic_windows_supported tells the maximum number of windows
  518. * which the platform can create.
  519. * @levels tells the maximum number of levels in multi-level IOMMU tables;
  520. * this allows splitting a table into smaller chunks which reduces
  521. * the amount of physically contiguous memory required for the table.
  522. */
  523. struct vfio_iommu_spapr_tce_ddw_info {
  524. __u64 pgsizes; /* Bitmap of supported page sizes */
  525. __u32 max_dynamic_windows_supported;
  526. __u32 levels;
  527. };
  528. /*
  529. * The SPAPR TCE info struct provides the information about the PCI bus
  530. * address ranges available for DMA, these values are programmed into
  531. * the hardware so the guest has to know that information.
  532. *
  533. * The DMA 32 bit window start is an absolute PCI bus address.
  534. * The IOVA address passed via map/unmap ioctls are absolute PCI bus
  535. * addresses too so the window works as a filter rather than an offset
  536. * for IOVA addresses.
  537. *
  538. * Flags supported:
  539. * - VFIO_IOMMU_SPAPR_INFO_DDW: informs the userspace that dynamic DMA windows
  540. * (DDW) support is present. @ddw is only supported when DDW is present.
  541. */
  542. struct vfio_iommu_spapr_tce_info {
  543. __u32 argsz;
  544. __u32 flags;
  545. #define VFIO_IOMMU_SPAPR_INFO_DDW (1 << 0) /* DDW supported */
  546. __u32 dma32_window_start; /* 32 bit window start (bytes) */
  547. __u32 dma32_window_size; /* 32 bit window size (bytes) */
  548. struct vfio_iommu_spapr_tce_ddw_info ddw;
  549. };
  550. #define VFIO_IOMMU_SPAPR_TCE_GET_INFO _IO(VFIO_TYPE, VFIO_BASE + 12)
  551. /*
  552. * EEH PE operation struct provides ways to:
  553. * - enable/disable EEH functionality;
  554. * - unfreeze IO/DMA for frozen PE;
  555. * - read PE state;
  556. * - reset PE;
  557. * - configure PE;
  558. * - inject EEH error.
  559. */
  560. struct vfio_eeh_pe_err {
  561. __u32 type;
  562. __u32 func;
  563. __u64 addr;
  564. __u64 mask;
  565. };
  566. struct vfio_eeh_pe_op {
  567. __u32 argsz;
  568. __u32 flags;
  569. __u32 op;
  570. union {
  571. struct vfio_eeh_pe_err err;
  572. };
  573. };
  574. #define VFIO_EEH_PE_DISABLE 0 /* Disable EEH functionality */
  575. #define VFIO_EEH_PE_ENABLE 1 /* Enable EEH functionality */
  576. #define VFIO_EEH_PE_UNFREEZE_IO 2 /* Enable IO for frozen PE */
  577. #define VFIO_EEH_PE_UNFREEZE_DMA 3 /* Enable DMA for frozen PE */
  578. #define VFIO_EEH_PE_GET_STATE 4 /* PE state retrieval */
  579. #define VFIO_EEH_PE_STATE_NORMAL 0 /* PE in functional state */
  580. #define VFIO_EEH_PE_STATE_RESET 1 /* PE reset in progress */
  581. #define VFIO_EEH_PE_STATE_STOPPED 2 /* Stopped DMA and IO */
  582. #define VFIO_EEH_PE_STATE_STOPPED_DMA 4 /* Stopped DMA only */
  583. #define VFIO_EEH_PE_STATE_UNAVAIL 5 /* State unavailable */
  584. #define VFIO_EEH_PE_RESET_DEACTIVATE 5 /* Deassert PE reset */
  585. #define VFIO_EEH_PE_RESET_HOT 6 /* Assert hot reset */
  586. #define VFIO_EEH_PE_RESET_FUNDAMENTAL 7 /* Assert fundamental reset */
  587. #define VFIO_EEH_PE_CONFIGURE 8 /* PE configuration */
  588. #define VFIO_EEH_PE_INJECT_ERR 9 /* Inject EEH error */
  589. #define VFIO_EEH_PE_OP _IO(VFIO_TYPE, VFIO_BASE + 21)
  590. /**
  591. * VFIO_IOMMU_SPAPR_REGISTER_MEMORY - _IOW(VFIO_TYPE, VFIO_BASE + 17, struct vfio_iommu_spapr_register_memory)
  592. *
  593. * Registers user space memory where DMA is allowed. It pins
  594. * user pages and does the locked memory accounting so
  595. * subsequent VFIO_IOMMU_MAP_DMA/VFIO_IOMMU_UNMAP_DMA calls
  596. * get faster.
  597. */
  598. struct vfio_iommu_spapr_register_memory {
  599. __u32 argsz;
  600. __u32 flags;
  601. __u64 vaddr; /* Process virtual address */
  602. __u64 size; /* Size of mapping (bytes) */
  603. };
  604. #define VFIO_IOMMU_SPAPR_REGISTER_MEMORY _IO(VFIO_TYPE, VFIO_BASE + 17)
  605. /**
  606. * VFIO_IOMMU_SPAPR_UNREGISTER_MEMORY - _IOW(VFIO_TYPE, VFIO_BASE + 18, struct vfio_iommu_spapr_register_memory)
  607. *
  608. * Unregisters user space memory registered with
  609. * VFIO_IOMMU_SPAPR_REGISTER_MEMORY.
  610. * Uses vfio_iommu_spapr_register_memory for parameters.
  611. */
  612. #define VFIO_IOMMU_SPAPR_UNREGISTER_MEMORY _IO(VFIO_TYPE, VFIO_BASE + 18)
  613. /**
  614. * VFIO_IOMMU_SPAPR_TCE_CREATE - _IOWR(VFIO_TYPE, VFIO_BASE + 19, struct vfio_iommu_spapr_tce_create)
  615. *
  616. * Creates an additional TCE table and programs it (sets a new DMA window)
  617. * to every IOMMU group in the container. It receives page shift, window
  618. * size and number of levels in the TCE table being created.
  619. *
  620. * It allocates and returns an offset on a PCI bus of the new DMA window.
  621. */
  622. struct vfio_iommu_spapr_tce_create {
  623. __u32 argsz;
  624. __u32 flags;
  625. /* in */
  626. __u32 page_shift;
  627. __u32 __resv1;
  628. __u64 window_size;
  629. __u32 levels;
  630. __u32 __resv2;
  631. /* out */
  632. __u64 start_addr;
  633. };
  634. #define VFIO_IOMMU_SPAPR_TCE_CREATE _IO(VFIO_TYPE, VFIO_BASE + 19)
  635. /**
  636. * VFIO_IOMMU_SPAPR_TCE_REMOVE - _IOW(VFIO_TYPE, VFIO_BASE + 20, struct vfio_iommu_spapr_tce_remove)
  637. *
  638. * Unprograms a TCE table from all groups in the container and destroys it.
  639. * It receives a PCI bus offset as a window id.
  640. */
  641. struct vfio_iommu_spapr_tce_remove {
  642. __u32 argsz;
  643. __u32 flags;
  644. /* in */
  645. __u64 start_addr;
  646. };
  647. #define VFIO_IOMMU_SPAPR_TCE_REMOVE _IO(VFIO_TYPE, VFIO_BASE + 20)
  648. /* ***************************************************************** */
  649. #endif /* VFIO_H */