vfio_pci.c 40.4 KB
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/*
 * Copyright (C) 2012 Red Hat, Inc.  All rights reserved.
 *     Author: Alex Williamson <alex.williamson@redhat.com>
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License version 2 as
 * published by the Free Software Foundation.
 *
 * Derived from original vfio:
 * Copyright 2010 Cisco Systems, Inc.  All rights reserved.
 * Author: Tom Lyon, pugs@cisco.com
 */

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#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt

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#include <linux/device.h>
#include <linux/eventfd.h>
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#include <linux/file.h>
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#include <linux/interrupt.h>
#include <linux/iommu.h>
#include <linux/module.h>
#include <linux/mutex.h>
#include <linux/notifier.h>
#include <linux/pci.h>
#include <linux/pm_runtime.h>
#include <linux/slab.h>
#include <linux/types.h>
#include <linux/uaccess.h>
#include <linux/vfio.h>
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#include <linux/vgaarb.h>
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#include <linux/nospec.h>
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#include "vfio_pci_private.h"

#define DRIVER_VERSION  "0.2"
#define DRIVER_AUTHOR   "Alex Williamson <alex.williamson@redhat.com>"
#define DRIVER_DESC     "VFIO PCI - User Level meta-driver"

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static char ids[1024] __initdata;
module_param_string(ids, ids, sizeof(ids), 0);
MODULE_PARM_DESC(ids, "Initial PCI IDs to add to the vfio driver, format is \"vendor:device[:subvendor[:subdevice[:class[:class_mask]]]]\" and multiple comma separated entries can be specified");

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static bool nointxmask;
module_param_named(nointxmask, nointxmask, bool, S_IRUGO | S_IWUSR);
MODULE_PARM_DESC(nointxmask,
		  "Disable support for PCI 2.3 style INTx masking.  If this resolves problems for specific devices, report lspci -vvvxxx to linux-pci@vger.kernel.org so the device can be fixed automatically via the broken_intx_masking flag.");

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#ifdef CONFIG_VFIO_PCI_VGA
static bool disable_vga;
module_param(disable_vga, bool, S_IRUGO);
MODULE_PARM_DESC(disable_vga, "Disable VGA resource access through vfio-pci");
#endif

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static bool disable_idle_d3;
module_param(disable_idle_d3, bool, S_IRUGO | S_IWUSR);
MODULE_PARM_DESC(disable_idle_d3,
		 "Disable using the PCI D3 low power state for idle, unused devices");

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static inline bool vfio_vga_disabled(void)
{
#ifdef CONFIG_VFIO_PCI_VGA
	return disable_vga;
#else
	return true;
#endif
}

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/*
 * Our VGA arbiter participation is limited since we don't know anything
 * about the device itself.  However, if the device is the only VGA device
 * downstream of a bridge and VFIO VGA support is disabled, then we can
 * safely return legacy VGA IO and memory as not decoded since the user
 * has no way to get to it and routing can be disabled externally at the
 * bridge.
 */
static unsigned int vfio_pci_set_vga_decode(void *opaque, bool single_vga)
{
	struct vfio_pci_device *vdev = opaque;
	struct pci_dev *tmp = NULL, *pdev = vdev->pdev;
	unsigned char max_busnr;
	unsigned int decodes;

	if (single_vga || !vfio_vga_disabled() || pci_is_root_bus(pdev->bus))
		return VGA_RSRC_NORMAL_IO | VGA_RSRC_NORMAL_MEM |
		       VGA_RSRC_LEGACY_IO | VGA_RSRC_LEGACY_MEM;

	max_busnr = pci_bus_max_busnr(pdev->bus);
	decodes = VGA_RSRC_NORMAL_IO | VGA_RSRC_NORMAL_MEM;

	while ((tmp = pci_get_class(PCI_CLASS_DISPLAY_VGA << 8, tmp)) != NULL) {
		if (tmp == pdev ||
		    pci_domain_nr(tmp->bus) != pci_domain_nr(pdev->bus) ||
		    pci_is_root_bus(tmp->bus))
			continue;

		if (tmp->bus->number >= pdev->bus->number &&
		    tmp->bus->number <= max_busnr) {
			pci_dev_put(tmp);
			decodes |= VGA_RSRC_LEGACY_IO | VGA_RSRC_LEGACY_MEM;
			break;
		}
	}

	return decodes;
}

static inline bool vfio_pci_is_vga(struct pci_dev *pdev)
{
	return (pdev->class >> 8) == PCI_CLASS_DISPLAY_VGA;
}

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static void vfio_pci_probe_mmaps(struct vfio_pci_device *vdev)
{
	struct resource *res;
	int bar;
	struct vfio_pci_dummy_resource *dummy_res;

	INIT_LIST_HEAD(&vdev->dummy_resources_list);

	for (bar = PCI_STD_RESOURCES; bar <= PCI_STD_RESOURCE_END; bar++) {
		res = vdev->pdev->resource + bar;

		if (!IS_ENABLED(CONFIG_VFIO_PCI_MMAP))
			goto no_mmap;

		if (!(res->flags & IORESOURCE_MEM))
			goto no_mmap;

		/*
		 * The PCI core shouldn't set up a resource with a
		 * type but zero size. But there may be bugs that
		 * cause us to do that.
		 */
		if (!resource_size(res))
			goto no_mmap;

		if (resource_size(res) >= PAGE_SIZE) {
			vdev->bar_mmap_supported[bar] = true;
			continue;
		}

		if (!(res->start & ~PAGE_MASK)) {
			/*
			 * Add a dummy resource to reserve the remainder
			 * of the exclusive page in case that hot-add
			 * device's bar is assigned into it.
			 */
			dummy_res = kzalloc(sizeof(*dummy_res), GFP_KERNEL);
			if (dummy_res == NULL)
				goto no_mmap;

			dummy_res->resource.name = "vfio sub-page reserved";
			dummy_res->resource.start = res->end + 1;
			dummy_res->resource.end = res->start + PAGE_SIZE - 1;
			dummy_res->resource.flags = res->flags;
			if (request_resource(res->parent,
						&dummy_res->resource)) {
				kfree(dummy_res);
				goto no_mmap;
			}
			dummy_res->index = bar;
			list_add(&dummy_res->res_next,
					&vdev->dummy_resources_list);
			vdev->bar_mmap_supported[bar] = true;
			continue;
		}
		/*
		 * Here we don't handle the case when the BAR is not page
		 * aligned because we can't expect the BAR will be
		 * assigned into the same location in a page in guest
		 * when we passthrough the BAR. And it's hard to access
		 * this BAR in userspace because we have no way to get
		 * the BAR's location in a page.
		 */
no_mmap:
		vdev->bar_mmap_supported[bar] = false;
	}
}

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static void vfio_pci_try_bus_reset(struct vfio_pci_device *vdev);
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static void vfio_pci_disable(struct vfio_pci_device *vdev);
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/*
 * INTx masking requires the ability to disable INTx signaling via PCI_COMMAND
 * _and_ the ability detect when the device is asserting INTx via PCI_STATUS.
 * If a device implements the former but not the latter we would typically
 * expect broken_intx_masking be set and require an exclusive interrupt.
 * However since we do have control of the device's ability to assert INTx,
 * we can instead pretend that the device does not implement INTx, virtualizing
 * the pin register to report zero and maintaining DisINTx set on the host.
 */
static bool vfio_pci_nointx(struct pci_dev *pdev)
{
	switch (pdev->vendor) {
	case PCI_VENDOR_ID_INTEL:
		switch (pdev->device) {
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		/* All i40e (XL710/X710/XXV710) 10/20/25/40GbE NICs */
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		case 0x1572:
		case 0x1574:
		case 0x1580 ... 0x1581:
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		case 0x1583 ... 0x158b:
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		case 0x37d0 ... 0x37d2:
			return true;
		default:
			return false;
		}
	}

	return false;
}

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static int vfio_pci_enable(struct vfio_pci_device *vdev)
{
	struct pci_dev *pdev = vdev->pdev;
	int ret;
	u16 cmd;
	u8 msix_pos;

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	pci_set_power_state(pdev, PCI_D0);

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	/* Don't allow our initial saved state to include busmaster */
	pci_clear_master(pdev);

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	ret = pci_enable_device(pdev);
	if (ret)
		return ret;

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	/* If reset fails because of the device lock, fail this path entirely */
	ret = pci_try_reset_function(pdev);
	if (ret == -EAGAIN) {
		pci_disable_device(pdev);
		return ret;
	}

	vdev->reset_works = !ret;
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	pci_save_state(pdev);
	vdev->pci_saved_state = pci_store_saved_state(pdev);
	if (!vdev->pci_saved_state)
		pr_debug("%s: Couldn't store %s saved state\n",
			 __func__, dev_name(&pdev->dev));

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	if (likely(!nointxmask)) {
		if (vfio_pci_nointx(pdev)) {
			dev_info(&pdev->dev, "Masking broken INTx support\n");
			vdev->nointx = true;
			pci_intx(pdev, 0);
		} else
			vdev->pci_2_3 = pci_intx_mask_supported(pdev);
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	}
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	pci_read_config_word(pdev, PCI_COMMAND, &cmd);
	if (vdev->pci_2_3 && (cmd & PCI_COMMAND_INTX_DISABLE)) {
		cmd &= ~PCI_COMMAND_INTX_DISABLE;
		pci_write_config_word(pdev, PCI_COMMAND, cmd);
	}

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	ret = vfio_config_init(vdev);
	if (ret) {
		kfree(vdev->pci_saved_state);
		vdev->pci_saved_state = NULL;
		pci_disable_device(pdev);
		return ret;
	}

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	msix_pos = pdev->msix_cap;
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	if (msix_pos) {
		u16 flags;
		u32 table;

		pci_read_config_word(pdev, msix_pos + PCI_MSIX_FLAGS, &flags);
		pci_read_config_dword(pdev, msix_pos + PCI_MSIX_TABLE, &table);

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		vdev->msix_bar = table & PCI_MSIX_TABLE_BIR;
		vdev->msix_offset = table & PCI_MSIX_TABLE_OFFSET;
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		vdev->msix_size = ((flags & PCI_MSIX_FLAGS_QSIZE) + 1) * 16;
	} else
		vdev->msix_bar = 0xFF;

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	if (!vfio_vga_disabled() && vfio_pci_is_vga(pdev))
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		vdev->has_vga = true;

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	if (vfio_pci_is_vga(pdev) &&
	    pdev->vendor == PCI_VENDOR_ID_INTEL &&
	    IS_ENABLED(CONFIG_VFIO_PCI_IGD)) {
		ret = vfio_pci_igd_init(vdev);
		if (ret) {
			dev_warn(&vdev->pdev->dev,
				 "Failed to setup Intel IGD regions\n");
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			goto disable_exit;
		}
	}

	if (pdev->vendor == PCI_VENDOR_ID_NVIDIA &&
	    IS_ENABLED(CONFIG_VFIO_PCI_NVLINK2)) {
		ret = vfio_pci_nvdia_v100_nvlink2_init(vdev);
		if (ret && ret != -ENODEV) {
			dev_warn(&vdev->pdev->dev,
				 "Failed to setup NVIDIA NV2 RAM region\n");
			goto disable_exit;
		}
	}

	if (pdev->vendor == PCI_VENDOR_ID_IBM &&
	    IS_ENABLED(CONFIG_VFIO_PCI_NVLINK2)) {
		ret = vfio_pci_ibm_npu2_init(vdev);
		if (ret && ret != -ENODEV) {
			dev_warn(&vdev->pdev->dev,
					"Failed to setup NVIDIA NV2 ATSD region\n");
			goto disable_exit;
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		}
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	}

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	vfio_pci_probe_mmaps(vdev);

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	return 0;
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disable_exit:
	vfio_pci_disable(vdev);
	return ret;
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}

static void vfio_pci_disable(struct vfio_pci_device *vdev)
{
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	struct pci_dev *pdev = vdev->pdev;
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	struct vfio_pci_dummy_resource *dummy_res, *tmp;
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	struct vfio_pci_ioeventfd *ioeventfd, *ioeventfd_tmp;
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	int i, bar;
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	/* Stop the device from further DMA */
	pci_clear_master(pdev);
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	vfio_pci_set_irqs_ioctl(vdev, VFIO_IRQ_SET_DATA_NONE |
				VFIO_IRQ_SET_ACTION_TRIGGER,
				vdev->irq_type, 0, 0, NULL);

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	/* Device closed, don't need mutex here */
	list_for_each_entry_safe(ioeventfd, ioeventfd_tmp,
				 &vdev->ioeventfds_list, next) {
		vfio_virqfd_disable(&ioeventfd->virqfd);
		list_del(&ioeventfd->next);
		kfree(ioeventfd);
	}
	vdev->ioeventfds_nr = 0;

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	vdev->virq_disabled = false;

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	for (i = 0; i < vdev->num_regions; i++)
		vdev->region[i].ops->release(vdev, &vdev->region[i]);

	vdev->num_regions = 0;
	kfree(vdev->region);
	vdev->region = NULL; /* don't krealloc a freed pointer */

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	vfio_config_free(vdev);

	for (bar = PCI_STD_RESOURCES; bar <= PCI_STD_RESOURCE_END; bar++) {
		if (!vdev->barmap[bar])
			continue;
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		pci_iounmap(pdev, vdev->barmap[bar]);
		pci_release_selected_regions(pdev, 1 << bar);
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		vdev->barmap[bar] = NULL;
	}
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	list_for_each_entry_safe(dummy_res, tmp,
				 &vdev->dummy_resources_list, res_next) {
		list_del(&dummy_res->res_next);
		release_resource(&dummy_res->resource);
		kfree(dummy_res);
	}

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	vdev->needs_reset = true;

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	/*
	 * If we have saved state, restore it.  If we can reset the device,
	 * even better.  Resetting with current state seems better than
	 * nothing, but saving and restoring current state without reset
	 * is just busy work.
	 */
	if (pci_load_and_free_saved_state(pdev, &vdev->pci_saved_state)) {
		pr_info("%s: Couldn't reload %s saved state\n",
			__func__, dev_name(&pdev->dev));

		if (!vdev->reset_works)
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			goto out;
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		pci_save_state(pdev);
	}

	/*
	 * Disable INTx and MSI, presumably to avoid spurious interrupts
	 * during reset.  Stolen from pci_reset_function()
	 */
	pci_write_config_word(pdev, PCI_COMMAND, PCI_COMMAND_INTX_DISABLE);

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	/*
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	 * Try to reset the device.  The success of this is dependent on
	 * being able to lock the device, which is not always possible.
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	 */
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	if (vdev->reset_works && !pci_try_reset_function(pdev))
		vdev->needs_reset = false;
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	pci_restore_state(pdev);
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out:
	pci_disable_device(pdev);
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	vfio_pci_try_bus_reset(vdev);
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	if (!disable_idle_d3)
		pci_set_power_state(pdev, PCI_D3hot);
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}

static void vfio_pci_release(void *device_data)
{
	struct vfio_pci_device *vdev = device_data;

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	mutex_lock(&vdev->reflck->lock);
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	if (!(--vdev->refcnt)) {
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		vfio_spapr_pci_eeh_release(vdev->pdev);
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		vfio_pci_disable(vdev);
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	}
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	mutex_unlock(&vdev->reflck->lock);
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	module_put(THIS_MODULE);
}

static int vfio_pci_open(void *device_data)
{
	struct vfio_pci_device *vdev = device_data;
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	int ret = 0;
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	if (!try_module_get(THIS_MODULE))
		return -ENODEV;

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	mutex_lock(&vdev->reflck->lock);
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	if (!vdev->refcnt) {
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		ret = vfio_pci_enable(vdev);
		if (ret)
			goto error;

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		vfio_spapr_pci_eeh_open(vdev->pdev);
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	}
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	vdev->refcnt++;
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error:
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	mutex_unlock(&vdev->reflck->lock);
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	if (ret)
		module_put(THIS_MODULE);
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	return ret;
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}

static int vfio_pci_get_irq_count(struct vfio_pci_device *vdev, int irq_type)
{
	if (irq_type == VFIO_PCI_INTX_IRQ_INDEX) {
		u8 pin;
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		if (!IS_ENABLED(CONFIG_VFIO_PCI_INTX) ||
		    vdev->nointx || vdev->pdev->is_virtfn)
			return 0;

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		pci_read_config_byte(vdev->pdev, PCI_INTERRUPT_PIN, &pin);

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		return pin ? 1 : 0;
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	} else if (irq_type == VFIO_PCI_MSI_IRQ_INDEX) {
		u8 pos;
		u16 flags;

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		pos = vdev->pdev->msi_cap;
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		if (pos) {
			pci_read_config_word(vdev->pdev,
					     pos + PCI_MSI_FLAGS, &flags);
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			return 1 << ((flags & PCI_MSI_FLAGS_QMASK) >> 1);
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		}
	} else if (irq_type == VFIO_PCI_MSIX_IRQ_INDEX) {
		u8 pos;
		u16 flags;

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		pos = vdev->pdev->msix_cap;
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		if (pos) {
			pci_read_config_word(vdev->pdev,
					     pos + PCI_MSIX_FLAGS, &flags);

			return (flags & PCI_MSIX_FLAGS_QSIZE) + 1;
		}
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	} else if (irq_type == VFIO_PCI_ERR_IRQ_INDEX) {
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		if (pci_is_pcie(vdev->pdev))
			return 1;
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	} else if (irq_type == VFIO_PCI_REQ_IRQ_INDEX) {
		return 1;
	}
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	return 0;
}

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static int vfio_pci_count_devs(struct pci_dev *pdev, void *data)
{
	(*(int *)data)++;
	return 0;
}

struct vfio_pci_fill_info {
	int max;
	int cur;
	struct vfio_pci_dependent_device *devices;
};

static int vfio_pci_fill_devs(struct pci_dev *pdev, void *data)
{
	struct vfio_pci_fill_info *fill = data;
	struct iommu_group *iommu_group;

	if (fill->cur == fill->max)
		return -EAGAIN; /* Something changed, try again */

	iommu_group = iommu_group_get(&pdev->dev);
	if (!iommu_group)
		return -EPERM; /* Cannot reset non-isolated devices */

	fill->devices[fill->cur].group_id = iommu_group_id(iommu_group);
	fill->devices[fill->cur].segment = pci_domain_nr(pdev->bus);
	fill->devices[fill->cur].bus = pdev->bus->number;
	fill->devices[fill->cur].devfn = pdev->devfn;
	fill->cur++;
	iommu_group_put(iommu_group);
	return 0;
}

struct vfio_pci_group_entry {
	struct vfio_group *group;
	int id;
};

struct vfio_pci_group_info {
	int count;
	struct vfio_pci_group_entry *groups;
};

static int vfio_pci_validate_devs(struct pci_dev *pdev, void *data)
{
	struct vfio_pci_group_info *info = data;
	struct iommu_group *group;
	int id, i;

	group = iommu_group_get(&pdev->dev);
	if (!group)
		return -EPERM;

	id = iommu_group_id(group);

	for (i = 0; i < info->count; i++)
		if (info->groups[i].id == id)
			break;

	iommu_group_put(group);

	return (i == info->count) ? -EINVAL : 0;
}

static bool vfio_pci_dev_below_slot(struct pci_dev *pdev, struct pci_slot *slot)
{
	for (; pdev; pdev = pdev->bus->self)
		if (pdev->bus == slot->bus)
			return (pdev->slot == slot);
	return false;
}

struct vfio_pci_walk_info {
	int (*fn)(struct pci_dev *, void *data);
	void *data;
	struct pci_dev *pdev;
	bool slot;
	int ret;
};

static int vfio_pci_walk_wrapper(struct pci_dev *pdev, void *data)
{
	struct vfio_pci_walk_info *walk = data;

	if (!walk->slot || vfio_pci_dev_below_slot(pdev, walk->pdev->slot))
		walk->ret = walk->fn(pdev, walk->data);

	return walk->ret;
}

static int vfio_pci_for_each_slot_or_bus(struct pci_dev *pdev,
					 int (*fn)(struct pci_dev *,
						   void *data), void *data,
					 bool slot)
{
	struct vfio_pci_walk_info walk = {
		.fn = fn, .data = data, .pdev = pdev, .slot = slot, .ret = 0,
	};

	pci_walk_bus(pdev->bus, vfio_pci_walk_wrapper, &walk);

	return walk.ret;
}

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static int msix_mmappable_cap(struct vfio_pci_device *vdev,
			      struct vfio_info_cap *caps)
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{
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	struct vfio_info_cap_header header = {
		.id = VFIO_REGION_INFO_CAP_MSIX_MAPPABLE,
		.version = 1
	};
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	return vfio_info_add_capability(caps, &header, sizeof(header));
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}

int vfio_pci_register_dev_region(struct vfio_pci_device *vdev,
				 unsigned int type, unsigned int subtype,
				 const struct vfio_pci_regops *ops,
				 size_t size, u32 flags, void *data)
{
	struct vfio_pci_region *region;

	region = krealloc(vdev->region,
			  (vdev->num_regions + 1) * sizeof(*region),
			  GFP_KERNEL);
	if (!region)
		return -ENOMEM;

	vdev->region = region;
	vdev->region[vdev->num_regions].type = type;
	vdev->region[vdev->num_regions].subtype = subtype;
	vdev->region[vdev->num_regions].ops = ops;
	vdev->region[vdev->num_regions].size = size;
	vdev->region[vdev->num_regions].flags = flags;
	vdev->region[vdev->num_regions].data = data;

	vdev->num_regions++;

	return 0;
}

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static long vfio_pci_ioctl(void *device_data,
			   unsigned int cmd, unsigned long arg)
{
	struct vfio_pci_device *vdev = device_data;
	unsigned long minsz;

	if (cmd == VFIO_DEVICE_GET_INFO) {
		struct vfio_device_info info;

		minsz = offsetofend(struct vfio_device_info, num_irqs);

		if (copy_from_user(&info, (void __user *)arg, minsz))
			return -EFAULT;

		if (info.argsz < minsz)
			return -EINVAL;

		info.flags = VFIO_DEVICE_FLAGS_PCI;

		if (vdev->reset_works)
			info.flags |= VFIO_DEVICE_FLAGS_RESET;

660
		info.num_regions = VFIO_PCI_NUM_REGIONS + vdev->num_regions;
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		info.num_irqs = VFIO_PCI_NUM_IRQS;

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		return copy_to_user((void __user *)arg, &info, minsz) ?
			-EFAULT : 0;
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	} else if (cmd == VFIO_DEVICE_GET_REGION_INFO) {
		struct pci_dev *pdev = vdev->pdev;
		struct vfio_region_info info;
669
		struct vfio_info_cap caps = { .buf = NULL, .size = 0 };
670
		int i, ret;
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		minsz = offsetofend(struct vfio_region_info, offset);

		if (copy_from_user(&info, (void __user *)arg, minsz))
			return -EFAULT;

		if (info.argsz < minsz)
			return -EINVAL;

		switch (info.index) {
		case VFIO_PCI_CONFIG_REGION_INDEX:
			info.offset = VFIO_PCI_INDEX_TO_OFFSET(info.index);
			info.size = pdev->cfg_size;
			info.flags = VFIO_REGION_INFO_FLAG_READ |
				     VFIO_REGION_INFO_FLAG_WRITE;
			break;
		case VFIO_PCI_BAR0_REGION_INDEX ... VFIO_PCI_BAR5_REGION_INDEX:
			info.offset = VFIO_PCI_INDEX_TO_OFFSET(info.index);
			info.size = pci_resource_len(pdev, info.index);
			if (!info.size) {
				info.flags = 0;
				break;
			}

			info.flags = VFIO_REGION_INFO_FLAG_READ |
				     VFIO_REGION_INFO_FLAG_WRITE;
697
			if (vdev->bar_mmap_supported[info.index]) {
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				info.flags |= VFIO_REGION_INFO_FLAG_MMAP;
699
				if (info.index == vdev->msix_bar) {
700
					ret = msix_mmappable_cap(vdev, &caps);
701 702 703 704 705
					if (ret)
						return ret;
				}
			}

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			break;
		case VFIO_PCI_ROM_REGION_INDEX:
		{
			void __iomem *io;
			size_t size;

			info.offset = VFIO_PCI_INDEX_TO_OFFSET(info.index);
			info.flags = 0;

			/* Report the BAR size, not the ROM size */
			info.size = pci_resource_len(pdev, info.index);
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			if (!info.size) {
				/* Shadow ROMs appear as PCI option ROMs */
				if (pdev->resource[PCI_ROM_RESOURCE].flags &
							IORESOURCE_ROM_SHADOW)
					info.size = 0x20000;
				else
					break;
			}
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			/* Is it really there? */
			io = pci_map_rom(pdev, &size);
			if (!io || !size) {
				info.size = 0;
				break;
			}
			pci_unmap_rom(pdev, io);

			info.flags = VFIO_REGION_INFO_FLAG_READ;
			break;
		}
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		case VFIO_PCI_VGA_REGION_INDEX:
			if (!vdev->has_vga)
				return -EINVAL;

			info.offset = VFIO_PCI_INDEX_TO_OFFSET(info.index);
			info.size = 0xc0000;
			info.flags = VFIO_REGION_INFO_FLAG_READ |
				     VFIO_REGION_INFO_FLAG_WRITE;

			break;
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		default:
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		{
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			struct vfio_region_info_cap_type cap_type = {
					.header.id = VFIO_REGION_INFO_CAP_TYPE,
					.header.version = 1 };
752

753 754 755
			if (info.index >=
			    VFIO_PCI_NUM_REGIONS + vdev->num_regions)
				return -EINVAL;
756 757 758
			info.index = array_index_nospec(info.index,
							VFIO_PCI_NUM_REGIONS +
							vdev->num_regions);
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			i = info.index - VFIO_PCI_NUM_REGIONS;

			info.offset = VFIO_PCI_INDEX_TO_OFFSET(info.index);
			info.size = vdev->region[i].size;
			info.flags = vdev->region[i].flags;

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			cap_type.type = vdev->region[i].type;
			cap_type.subtype = vdev->region[i].subtype;

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			ret = vfio_info_add_capability(&caps, &cap_type.header,
						       sizeof(cap_type));
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			if (ret)
				return ret;
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			if (vdev->region[i].ops->add_capability) {
				ret = vdev->region[i].ops->add_capability(vdev,
						&vdev->region[i], &caps);
				if (ret)
					return ret;
			}
780
		}
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		}

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		if (caps.size) {
			info.flags |= VFIO_REGION_INFO_FLAG_CAPS;
			if (info.argsz < sizeof(info) + caps.size) {
				info.argsz = sizeof(info) + caps.size;
				info.cap_offset = 0;
			} else {
				vfio_info_cap_shift(&caps, sizeof(info));
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				if (copy_to_user((void __user *)arg +
						  sizeof(info), caps.buf,
						  caps.size)) {
793
					kfree(caps.buf);
794
					return -EFAULT;
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				}
				info.cap_offset = sizeof(info);
			}

			kfree(caps.buf);
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		}

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		return copy_to_user((void __user *)arg, &info, minsz) ?
			-EFAULT : 0;
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	} else if (cmd == VFIO_DEVICE_GET_IRQ_INFO) {
		struct vfio_irq_info info;

		minsz = offsetofend(struct vfio_irq_info, count);

		if (copy_from_user(&info, (void __user *)arg, minsz))
			return -EFAULT;

		if (info.argsz < minsz || info.index >= VFIO_PCI_NUM_IRQS)
			return -EINVAL;

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		switch (info.index) {
		case VFIO_PCI_INTX_IRQ_INDEX ... VFIO_PCI_MSIX_IRQ_INDEX:
818
		case VFIO_PCI_REQ_IRQ_INDEX:
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			break;
		case VFIO_PCI_ERR_IRQ_INDEX:
			if (pci_is_pcie(vdev->pdev))
				break;
823
		/* fall through */
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		default:
			return -EINVAL;
		}

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		info.flags = VFIO_IRQ_INFO_EVENTFD;

		info.count = vfio_pci_get_irq_count(vdev, info.index);

		if (info.index == VFIO_PCI_INTX_IRQ_INDEX)
			info.flags |= (VFIO_IRQ_INFO_MASKABLE |
				       VFIO_IRQ_INFO_AUTOMASKED);
		else
			info.flags |= VFIO_IRQ_INFO_NORESIZE;

838 839
		return copy_to_user((void __user *)arg, &info, minsz) ?
			-EFAULT : 0;
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	} else if (cmd == VFIO_DEVICE_SET_IRQS) {
		struct vfio_irq_set hdr;
		u8 *data = NULL;
844
		int max, ret = 0;
845
		size_t data_size = 0;
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		minsz = offsetofend(struct vfio_irq_set, count);

		if (copy_from_user(&hdr, (void __user *)arg, minsz))
			return -EFAULT;

852
		max = vfio_pci_get_irq_count(vdev, hdr.index);
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		ret = vfio_set_irqs_validate_and_prepare(&hdr, max,
						 VFIO_PCI_NUM_IRQS, &data_size);
		if (ret)
			return ret;
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859
		if (data_size) {
860
			data = memdup_user((void __user *)(arg + minsz),
861
					    data_size);
862 863
			if (IS_ERR(data))
				return PTR_ERR(data);
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		}

		mutex_lock(&vdev->igate);

		ret = vfio_pci_set_irqs_ioctl(vdev, hdr.flags, hdr.index,
					      hdr.start, hdr.count, data);

		mutex_unlock(&vdev->igate);
		kfree(data);

		return ret;

876
	} else if (cmd == VFIO_DEVICE_RESET) {
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		return vdev->reset_works ?
878
			pci_try_reset_function(vdev->pdev) : -EINVAL;
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	} else if (cmd == VFIO_DEVICE_GET_PCI_HOT_RESET_INFO) {
		struct vfio_pci_hot_reset_info hdr;
		struct vfio_pci_fill_info fill = { 0 };
		struct vfio_pci_dependent_device *devices = NULL;
		bool slot = false;
		int ret = 0;

		minsz = offsetofend(struct vfio_pci_hot_reset_info, count);

		if (copy_from_user(&hdr, (void __user *)arg, minsz))
			return -EFAULT;

		if (hdr.argsz < minsz)
			return -EINVAL;

		hdr.flags = 0;

		/* Can we do a slot or bus reset or neither? */
		if (!pci_probe_reset_slot(vdev->pdev->slot))
			slot = true;
		else if (pci_probe_reset_bus(vdev->pdev->bus))
			return -ENODEV;

		/* How many devices are affected? */
		ret = vfio_pci_for_each_slot_or_bus(vdev->pdev,
						    vfio_pci_count_devs,
						    &fill.max, slot);
		if (ret)
			return ret;

		WARN_ON(!fill.max); /* Should always be at least one */

		/*
		 * If there's enough space, fill it now, otherwise return
		 * -ENOSPC and the number of devices affected.
		 */
		if (hdr.argsz < sizeof(hdr) + (fill.max * sizeof(*devices))) {
			ret = -ENOSPC;
			hdr.count = fill.max;
			goto reset_info_exit;
		}

		devices = kcalloc(fill.max, sizeof(*devices), GFP_KERNEL);
		if (!devices)
			return -ENOMEM;

		fill.devices = devices;

		ret = vfio_pci_for_each_slot_or_bus(vdev->pdev,
						    vfio_pci_fill_devs,
						    &fill, slot);

		/*
		 * If a device was removed between counting and filling,
		 * we may come up short of fill.max.  If a device was
		 * added, we'll have a return of -EAGAIN above.
		 */
		if (!ret)
			hdr.count = fill.cur;

reset_info_exit:
		if (copy_to_user((void __user *)arg, &hdr, minsz))
			ret = -EFAULT;

		if (!ret) {
			if (copy_to_user((void __user *)(arg + minsz), devices,
					 hdr.count * sizeof(*devices)))
				ret = -EFAULT;
		}

		kfree(devices);
		return ret;

	} else if (cmd == VFIO_DEVICE_PCI_HOT_RESET) {
		struct vfio_pci_hot_reset hdr;
		int32_t *group_fds;
		struct vfio_pci_group_entry *groups;
		struct vfio_pci_group_info info;
		bool slot = false;
		int i, count = 0, ret = 0;

		minsz = offsetofend(struct vfio_pci_hot_reset, count);

		if (copy_from_user(&hdr, (void __user *)arg, minsz))
			return -EFAULT;

		if (hdr.argsz < minsz || hdr.flags)
			return -EINVAL;

		/* Can we do a slot or bus reset or neither? */
		if (!pci_probe_reset_slot(vdev->pdev->slot))
			slot = true;
		else if (pci_probe_reset_bus(vdev->pdev->bus))
			return -ENODEV;

		/*
		 * We can't let userspace give us an arbitrarily large
		 * buffer to copy, so verify how many we think there
		 * could be.  Note groups can have multiple devices so
		 * one group per device is the max.
		 */
		ret = vfio_pci_for_each_slot_or_bus(vdev->pdev,
						    vfio_pci_count_devs,
						    &count, slot);
		if (ret)
			return ret;

		/* Somewhere between 1 and count is OK */
		if (!hdr.count || hdr.count > count)
			return -EINVAL;

		group_fds = kcalloc(hdr.count, sizeof(*group_fds), GFP_KERNEL);
		groups = kcalloc(hdr.count, sizeof(*groups), GFP_KERNEL);
		if (!group_fds || !groups) {
			kfree(group_fds);
			kfree(groups);
			return -ENOMEM;
		}

		if (copy_from_user(group_fds, (void __user *)(arg + minsz),
				   hdr.count * sizeof(*group_fds))) {
			kfree(group_fds);
			kfree(groups);
			return -EFAULT;
		}

		/*
		 * For each group_fd, get the group through the vfio external
		 * user interface and store the group and iommu ID.  This
		 * ensures the group is held across the reset.
		 */
		for (i = 0; i < hdr.count; i++) {
			struct vfio_group *group;
			struct fd f = fdget(group_fds[i]);
			if (!f.file) {
				ret = -EBADF;
				break;
			}

			group = vfio_group_get_external_user(f.file);
			fdput(f);
			if (IS_ERR(group)) {
				ret = PTR_ERR(group);
				break;
			}

			groups[i].group = group;
			groups[i].id = vfio_external_user_iommu_id(group);
		}

		kfree(group_fds);

		/* release reference to groups on error */
		if (ret)
			goto hot_reset_release;

		info.count = hdr.count;
		info.groups = groups;

		/*
		 * Test whether all the affected devices are contained
		 * by the set of groups provided by the user.
		 */
		ret = vfio_pci_for_each_slot_or_bus(vdev->pdev,
						    vfio_pci_validate_devs,
						    &info, slot);
		if (!ret)
			/* User has access, do the reset */
1048
			ret = pci_reset_bus(vdev->pdev);
1049 1050 1051 1052 1053 1054 1055

hot_reset_release:
		for (i--; i >= 0; i--)
			vfio_group_put_external_user(groups[i].group);

		kfree(groups);
		return ret;
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	} else if (cmd == VFIO_DEVICE_IOEVENTFD) {
		struct vfio_device_ioeventfd ioeventfd;
		int count;

		minsz = offsetofend(struct vfio_device_ioeventfd, fd);

		if (copy_from_user(&ioeventfd, (void __user *)arg, minsz))
			return -EFAULT;

		if (ioeventfd.argsz < minsz)
			return -EINVAL;

		if (ioeventfd.flags & ~VFIO_DEVICE_IOEVENTFD_SIZE_MASK)
			return -EINVAL;

		count = ioeventfd.flags & VFIO_DEVICE_IOEVENTFD_SIZE_MASK;

		if (hweight8(count) != 1 || ioeventfd.fd < -1)
			return -EINVAL;

		return vfio_pci_ioeventfd(vdev, ioeventfd.offset,
					  ioeventfd.data, count, ioeventfd.fd);
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	}

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	return -ENOTTY;
}

1083 1084
static ssize_t vfio_pci_rw(void *device_data, char __user *buf,
			   size_t count, loff_t *ppos, bool iswrite)
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{
	unsigned int index = VFIO_PCI_OFFSET_TO_INDEX(*ppos);
	struct vfio_pci_device *vdev = device_data;

1089
	if (index >= VFIO_PCI_NUM_REGIONS + vdev->num_regions)
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		return -EINVAL;

1092 1093
	switch (index) {
	case VFIO_PCI_CONFIG_REGION_INDEX:
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		return vfio_pci_config_rw(vdev, buf, count, ppos, iswrite);

1096 1097 1098
	case VFIO_PCI_ROM_REGION_INDEX:
		if (iswrite)
			return -EINVAL;
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		return vfio_pci_bar_rw(vdev, buf, count, ppos, false);
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1101
	case VFIO_PCI_BAR0_REGION_INDEX ... VFIO_PCI_BAR5_REGION_INDEX:
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		return vfio_pci_bar_rw(vdev, buf, count, ppos, iswrite);
1103 1104 1105

	case VFIO_PCI_VGA_REGION_INDEX:
		return vfio_pci_vga_rw(vdev, buf, count, ppos, iswrite);
1106 1107 1108 1109
	default:
		index -= VFIO_PCI_NUM_REGIONS;
		return vdev->region[index].ops->rw(vdev, buf,
						   count, ppos, iswrite);
1110 1111
	}

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	return -EINVAL;
}

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static ssize_t vfio_pci_read(void *device_data, char __user *buf,
			     size_t count, loff_t *ppos)
{
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	if (!count)
		return 0;

1121 1122 1123
	return vfio_pci_rw(device_data, buf, count, ppos, false);
}

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static ssize_t vfio_pci_write(void *device_data, const char __user *buf,
			      size_t count, loff_t *ppos)
{
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	if (!count)
		return 0;

	return vfio_pci_rw(device_data, (char __user *)buf, count, ppos, true);
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}

static int vfio_pci_mmap(void *device_data, struct vm_area_struct *vma)
{
	struct vfio_pci_device *vdev = device_data;
	struct pci_dev *pdev = vdev->pdev;
	unsigned int index;
1138
	u64 phys_len, req_len, pgoff, req_start;
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	int ret;

	index = vma->vm_pgoff >> (VFIO_PCI_OFFSET_SHIFT - PAGE_SHIFT);

	if (vma->vm_end < vma->vm_start)
		return -EINVAL;
	if ((vma->vm_flags & VM_SHARED) == 0)
		return -EINVAL;
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	if (index >= VFIO_PCI_NUM_REGIONS) {
		int regnum = index - VFIO_PCI_NUM_REGIONS;
		struct vfio_pci_region *region = vdev->region + regnum;

		if (region && region->ops && region->ops->mmap &&
		    (region->flags & VFIO_REGION_INFO_FLAG_MMAP))
			return region->ops->mmap(vdev, region, vma);
		return -EINVAL;
	}
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	if (index >= VFIO_PCI_ROM_REGION_INDEX)
		return -EINVAL;
1158
	if (!vdev->bar_mmap_supported[index])
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		return -EINVAL;

1161
	phys_len = PAGE_ALIGN(pci_resource_len(pdev, index));
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	req_len = vma->vm_end - vma->vm_start;
	pgoff = vma->vm_pgoff &
		((1U << (VFIO_PCI_OFFSET_SHIFT - PAGE_SHIFT)) - 1);
	req_start = pgoff << PAGE_SHIFT;

1167
	if (req_start + req_len > phys_len)
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		return -EINVAL;

	/*
	 * Even though we don't make use of the barmap for the mmap,
	 * we need to request the region and the barmap tracks that.
	 */
	if (!vdev->barmap[index]) {
		ret = pci_request_selected_regions(pdev,
						   1 << index, "vfio-pci");
		if (ret)
			return ret;

		vdev->barmap[index] = pci_iomap(pdev, index, 0);
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		if (!vdev->barmap[index]) {
			pci_release_selected_regions(pdev, 1 << index);
			return -ENOMEM;
		}
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	}

	vma->vm_private_data = vdev;
	vma->vm_page_prot = pgprot_noncached(vma->vm_page_prot);
1189
	vma->vm_pgoff = (pci_resource_start(pdev, index) >> PAGE_SHIFT) + pgoff;
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Alex Williamson 已提交
1190

1191
	return remap_pfn_range(vma, vma->vm_start, vma->vm_pgoff,
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1192 1193 1194
			       req_len, vma->vm_page_prot);
}

1195 1196 1197 1198 1199 1200 1201
static void vfio_pci_request(void *device_data, unsigned int count)
{
	struct vfio_pci_device *vdev = device_data;

	mutex_lock(&vdev->igate);

	if (vdev->req_trigger) {
1202 1203 1204 1205
		if (!(count % 10))
			dev_notice_ratelimited(&vdev->pdev->dev,
				"Relaying device request to user (#%u)\n",
				count);
1206
		eventfd_signal(vdev->req_trigger, 1);
1207 1208 1209
	} else if (count == 0) {
		dev_warn(&vdev->pdev->dev,
			"No device request channel registered, blocked until released by user\n");
1210 1211 1212 1213 1214
	}

	mutex_unlock(&vdev->igate);
}

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1215 1216 1217 1218 1219 1220 1221 1222
static const struct vfio_device_ops vfio_pci_ops = {
	.name		= "vfio-pci",
	.open		= vfio_pci_open,
	.release	= vfio_pci_release,
	.ioctl		= vfio_pci_ioctl,
	.read		= vfio_pci_read,
	.write		= vfio_pci_write,
	.mmap		= vfio_pci_mmap,
1223
	.request	= vfio_pci_request,
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1224 1225
};

1226 1227 1228
static int vfio_pci_reflck_attach(struct vfio_pci_device *vdev);
static void vfio_pci_reflck_put(struct vfio_pci_reflck *reflck);

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static int vfio_pci_probe(struct pci_dev *pdev, const struct pci_device_id *id)
{
	struct vfio_pci_device *vdev;
	struct iommu_group *group;
	int ret;

1235
	if (pdev->hdr_type != PCI_HEADER_TYPE_NORMAL)
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1236 1237
		return -EINVAL;

1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250
	/*
	 * Prevent binding to PFs with VFs enabled, this too easily allows
	 * userspace instance with VFs and PFs from the same device, which
	 * cannot work.  Disabling SR-IOV here would initiate removing the
	 * VFs, which would unbind the driver, which is prone to blocking
	 * if that VF is also in use by vfio-pci.  Just reject these PFs
	 * and let the user sort it out.
	 */
	if (pci_num_vf(pdev)) {
		pci_warn(pdev, "Cannot bind to PF with SR-IOV enabled\n");
		return -EBUSY;
	}

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	group = vfio_iommu_group_get(&pdev->dev);
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	if (!group)
		return -EINVAL;

	vdev = kzalloc(sizeof(*vdev), GFP_KERNEL);
	if (!vdev) {
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		vfio_iommu_group_put(group, &pdev->dev);
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		return -ENOMEM;
	}

	vdev->pdev = pdev;
	vdev->irq_type = VFIO_PCI_NUM_IRQS;
	mutex_init(&vdev->igate);
	spin_lock_init(&vdev->irqlock);
1265 1266
	mutex_init(&vdev->ioeventfds_lock);
	INIT_LIST_HEAD(&vdev->ioeventfds_list);
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1267 1268 1269

	ret = vfio_add_group_dev(&pdev->dev, &vfio_pci_ops, vdev);
	if (ret) {
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		vfio_iommu_group_put(group, &pdev->dev);
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		kfree(vdev);
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		return ret;
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	}

1275 1276 1277 1278 1279 1280 1281 1282
	ret = vfio_pci_reflck_attach(vdev);
	if (ret) {
		vfio_del_group_dev(&pdev->dev);
		vfio_iommu_group_put(group, &pdev->dev);
		kfree(vdev);
		return ret;
	}

1283 1284 1285 1286 1287 1288
	if (vfio_pci_is_vga(pdev)) {
		vga_client_register(pdev, vdev, NULL, vfio_pci_set_vga_decode);
		vga_set_legacy_decoding(pdev,
					vfio_pci_set_vga_decode(vdev, false));
	}

1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302
	if (!disable_idle_d3) {
		/*
		 * pci-core sets the device power state to an unknown value at
		 * bootup and after being removed from a driver.  The only
		 * transition it allows from this unknown state is to D0, which
		 * typically happens when a driver calls pci_enable_device().
		 * We're not ready to enable the device yet, but we do want to
		 * be able to get to D3.  Therefore first do a D0 transition
		 * before going to D3.
		 */
		pci_set_power_state(pdev, PCI_D0);
		pci_set_power_state(pdev, PCI_D3hot);
	}

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1303 1304 1305 1306 1307 1308 1309 1310
	return ret;
}

static void vfio_pci_remove(struct pci_dev *pdev)
{
	struct vfio_pci_device *vdev;

	vdev = vfio_del_group_dev(&pdev->dev);
1311 1312 1313
	if (!vdev)
		return;

1314 1315
	vfio_pci_reflck_put(vdev->reflck);

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Alex Williamson 已提交
1316
	vfio_iommu_group_put(pdev->dev.iommu_group, &pdev->dev);
1317
	kfree(vdev->region);
1318
	mutex_destroy(&vdev->ioeventfds_lock);
1319 1320 1321 1322 1323 1324 1325
	kfree(vdev);

	if (vfio_pci_is_vga(pdev)) {
		vga_client_register(pdev, NULL, NULL, NULL);
		vga_set_legacy_decoding(pdev,
				VGA_RSRC_NORMAL_IO | VGA_RSRC_NORMAL_MEM |
				VGA_RSRC_LEGACY_IO | VGA_RSRC_LEGACY_MEM);
1326
	}
1327 1328 1329

	if (!disable_idle_d3)
		pci_set_power_state(pdev, PCI_D0);
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Alex Williamson 已提交
1330 1331
}

1332 1333 1334 1335 1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347
static pci_ers_result_t vfio_pci_aer_err_detected(struct pci_dev *pdev,
						  pci_channel_state_t state)
{
	struct vfio_pci_device *vdev;
	struct vfio_device *device;

	device = vfio_device_get_from_dev(&pdev->dev);
	if (device == NULL)
		return PCI_ERS_RESULT_DISCONNECT;

	vdev = vfio_device_data(device);
	if (vdev == NULL) {
		vfio_device_put(device);
		return PCI_ERS_RESULT_DISCONNECT;
	}

1348 1349
	mutex_lock(&vdev->igate);

1350 1351 1352
	if (vdev->err_trigger)
		eventfd_signal(vdev->err_trigger, 1);

1353 1354
	mutex_unlock(&vdev->igate);

1355 1356 1357 1358 1359
	vfio_device_put(device);

	return PCI_ERS_RESULT_CAN_RECOVER;
}

1360
static const struct pci_error_handlers vfio_err_handlers = {
1361 1362 1363
	.error_detected = vfio_pci_aer_err_detected,
};

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1364 1365 1366 1367 1368
static struct pci_driver vfio_pci_driver = {
	.name		= "vfio-pci",
	.id_table	= NULL, /* only dynamic ids */
	.probe		= vfio_pci_probe,
	.remove		= vfio_pci_remove,
1369
	.err_handler	= &vfio_err_handlers,
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Alex Williamson 已提交
1370 1371
};

1372 1373 1374 1375 1376 1377 1378 1379 1380 1381 1382 1383 1384 1385 1386 1387 1388 1389 1390 1391 1392 1393 1394 1395 1396 1397 1398 1399 1400 1401 1402 1403 1404 1405 1406 1407 1408 1409 1410 1411 1412 1413 1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426 1427 1428 1429 1430 1431 1432 1433 1434 1435 1436 1437 1438 1439 1440 1441 1442 1443 1444 1445 1446 1447 1448 1449 1450 1451
static DEFINE_MUTEX(reflck_lock);

static struct vfio_pci_reflck *vfio_pci_reflck_alloc(void)
{
	struct vfio_pci_reflck *reflck;

	reflck = kzalloc(sizeof(*reflck), GFP_KERNEL);
	if (!reflck)
		return ERR_PTR(-ENOMEM);

	kref_init(&reflck->kref);
	mutex_init(&reflck->lock);

	return reflck;
}

static void vfio_pci_reflck_get(struct vfio_pci_reflck *reflck)
{
	kref_get(&reflck->kref);
}

static int vfio_pci_reflck_find(struct pci_dev *pdev, void *data)
{
	struct vfio_pci_reflck **preflck = data;
	struct vfio_device *device;
	struct vfio_pci_device *vdev;

	device = vfio_device_get_from_dev(&pdev->dev);
	if (!device)
		return 0;

	if (pci_dev_driver(pdev) != &vfio_pci_driver) {
		vfio_device_put(device);
		return 0;
	}

	vdev = vfio_device_data(device);

	if (vdev->reflck) {
		vfio_pci_reflck_get(vdev->reflck);
		*preflck = vdev->reflck;
		vfio_device_put(device);
		return 1;
	}

	vfio_device_put(device);
	return 0;
}

static int vfio_pci_reflck_attach(struct vfio_pci_device *vdev)
{
	bool slot = !pci_probe_reset_slot(vdev->pdev->slot);

	mutex_lock(&reflck_lock);

	if (pci_is_root_bus(vdev->pdev->bus) ||
	    vfio_pci_for_each_slot_or_bus(vdev->pdev, vfio_pci_reflck_find,
					  &vdev->reflck, slot) <= 0)
		vdev->reflck = vfio_pci_reflck_alloc();

	mutex_unlock(&reflck_lock);

	return PTR_ERR_OR_ZERO(vdev->reflck);
}

static void vfio_pci_reflck_release(struct kref *kref)
{
	struct vfio_pci_reflck *reflck = container_of(kref,
						      struct vfio_pci_reflck,
						      kref);

	kfree(reflck);
	mutex_unlock(&reflck_lock);
}

static void vfio_pci_reflck_put(struct vfio_pci_reflck *reflck)
{
	kref_put_mutex(&reflck->kref, vfio_pci_reflck_release, &reflck_lock);
}

1452 1453 1454 1455 1456
struct vfio_devices {
	struct vfio_device **devices;
	int cur_index;
	int max_index;
};
1457

1458
static int vfio_pci_get_unused_devs(struct pci_dev *pdev, void *data)
1459
{
1460
	struct vfio_devices *devs = data;
1461
	struct vfio_device *device;
1462
	struct vfio_pci_device *vdev;
1463

1464 1465
	if (devs->cur_index == devs->max_index)
		return -ENOSPC;
1466

1467 1468
	device = vfio_device_get_from_dev(&pdev->dev);
	if (!device)
1469
		return -EINVAL;
1470

1471 1472 1473 1474 1475
	if (pci_dev_driver(pdev) != &vfio_pci_driver) {
		vfio_device_put(device);
		return -EBUSY;
	}

1476 1477 1478 1479 1480 1481 1482 1483
	vdev = vfio_device_data(device);

	/* Fault if the device is not unused */
	if (vdev->refcnt) {
		vfio_device_put(device);
		return -EBUSY;
	}

1484
	devs->devices[devs->cur_index++] = device;
1485 1486 1487 1488
	return 0;
}

/*
1489 1490 1491 1492 1493 1494 1495 1496 1497
 * If a bus or slot reset is available for the provided device and:
 *  - All of the devices affected by that bus or slot reset are unused
 *    (!refcnt)
 *  - At least one of the affected devices is marked dirty via
 *    needs_reset (such as by lack of FLR support)
 * Then attempt to perform that bus or slot reset.  Callers are required
 * to hold vdev->reflck->lock, protecting the bus/slot reset group from
 * concurrent opens.  A vfio_device reference is acquired for each device
 * to prevent unbinds during the reset operation.
1498 1499 1500 1501 1502
 *
 * NB: vfio-core considers a group to be viable even if some devices are
 * bound to drivers like pci-stub or pcieport.  Here we require all devices
 * to be bound to vfio_pci since that's the only way we can be sure they
 * stay put.
1503 1504 1505
 */
static void vfio_pci_try_bus_reset(struct vfio_pci_device *vdev)
{
1506 1507
	struct vfio_devices devs = { .cur_index = 0 };
	int i = 0, ret = -EINVAL;
1508
	bool slot = false;
1509
	struct vfio_pci_device *tmp;
1510 1511 1512 1513 1514 1515

	if (!pci_probe_reset_slot(vdev->pdev->slot))
		slot = true;
	else if (pci_probe_reset_bus(vdev->pdev->bus))
		return;

1516 1517
	if (vfio_pci_for_each_slot_or_bus(vdev->pdev, vfio_pci_count_devs,
					  &i, slot) || !i)
1518 1519
		return;

1520 1521 1522
	devs.max_index = i;
	devs.devices = kcalloc(i, sizeof(struct vfio_device *), GFP_KERNEL);
	if (!devs.devices)
1523 1524
		return;

1525
	if (vfio_pci_for_each_slot_or_bus(vdev->pdev,
1526 1527
					  vfio_pci_get_unused_devs,
					  &devs, slot))
1528 1529
		goto put_devs;

1530
	/* Does at least one need a reset? */
1531 1532
	for (i = 0; i < devs.cur_index; i++) {
		tmp = vfio_device_data(devs.devices[i]);
1533 1534 1535 1536
		if (tmp->needs_reset) {
			ret = pci_reset_bus(vdev->pdev);
			break;
		}
1537 1538 1539 1540
	}

put_devs:
	for (i = 0; i < devs.cur_index; i++) {
1541
		tmp = vfio_device_data(devs.devices[i]);
1542 1543 1544 1545 1546 1547 1548 1549 1550

		/*
		 * If reset was successful, affected devices no longer need
		 * a reset and we should return all the collateral devices
		 * to low power.  If not successful, we either didn't reset
		 * the bus or timed out waiting for it, so let's not touch
		 * the power state.
		 */
		if (!ret) {
1551
			tmp->needs_reset = false;
1552

1553 1554 1555
			if (tmp != vdev && !disable_idle_d3)
				pci_set_power_state(tmp->pdev, PCI_D3hot);
		}
1556

1557 1558 1559 1560
		vfio_device_put(devs.devices[i]);
	}

	kfree(devs.devices);
1561 1562
}

A
Alex Williamson 已提交
1563 1564 1565 1566 1567 1568
static void __exit vfio_pci_cleanup(void)
{
	pci_unregister_driver(&vfio_pci_driver);
	vfio_pci_uninit_perm_bits();
}

1569 1570 1571 1572 1573 1574 1575 1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600 1601 1602 1603 1604 1605 1606 1607 1608 1609
static void __init vfio_pci_fill_ids(void)
{
	char *p, *id;
	int rc;

	/* no ids passed actually */
	if (ids[0] == '\0')
		return;

	/* add ids specified in the module parameter */
	p = ids;
	while ((id = strsep(&p, ","))) {
		unsigned int vendor, device, subvendor = PCI_ANY_ID,
			subdevice = PCI_ANY_ID, class = 0, class_mask = 0;
		int fields;

		if (!strlen(id))
			continue;

		fields = sscanf(id, "%x:%x:%x:%x:%x:%x",
				&vendor, &device, &subvendor, &subdevice,
				&class, &class_mask);

		if (fields < 2) {
			pr_warn("invalid id string \"%s\"\n", id);
			continue;
		}

		rc = pci_add_dynid(&vfio_pci_driver, vendor, device,
				   subvendor, subdevice, class, class_mask, 0);
		if (rc)
			pr_warn("failed to add dynamic id [%04hx:%04hx[%04hx:%04hx]] class %#08x/%08x (%d)\n",
				vendor, device, subvendor, subdevice,
				class, class_mask, rc);
		else
			pr_info("add [%04hx:%04hx[%04hx:%04hx]] class %#08x/%08x\n",
				vendor, device, subvendor, subdevice,
				class, class_mask);
	}
}

A
Alex Williamson 已提交
1610 1611 1612 1613 1614 1615 1616 1617 1618 1619 1620 1621 1622 1623
static int __init vfio_pci_init(void)
{
	int ret;

	/* Allocate shared config space permision data used by all devices */
	ret = vfio_pci_init_perm_bits();
	if (ret)
		return ret;

	/* Register and scan for devices */
	ret = pci_register_driver(&vfio_pci_driver);
	if (ret)
		goto out_driver;

1624 1625
	vfio_pci_fill_ids();

A
Alex Williamson 已提交
1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637 1638 1639
	return 0;

out_driver:
	vfio_pci_uninit_perm_bits();
	return ret;
}

module_init(vfio_pci_init);
module_exit(vfio_pci_cleanup);

MODULE_VERSION(DRIVER_VERSION);
MODULE_LICENSE("GPL v2");
MODULE_AUTHOR(DRIVER_AUTHOR);
MODULE_DESCRIPTION(DRIVER_DESC);