iommu.c 68.8 KB
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// SPDX-License-Identifier: GPL-2.0-only
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/*
 * Copyright (C) 2007-2008 Advanced Micro Devices, Inc.
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 * Author: Joerg Roedel <jroedel@suse.de>
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 */

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#define pr_fmt(fmt)    "iommu: " fmt
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#include <linux/device.h>
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#include <linux/kernel.h>
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#include <linux/bug.h>
#include <linux/types.h>
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#include <linux/init.h>
#include <linux/export.h>
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#include <linux/slab.h>
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#include <linux/errno.h>
#include <linux/iommu.h>
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#include <linux/idr.h>
#include <linux/notifier.h>
#include <linux/err.h>
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#include <linux/pci.h>
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#include <linux/bitops.h>
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#include <linux/property.h>
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#include <linux/fsl/mc.h>
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#include <linux/module.h>
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#include <trace/events/iommu.h>
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static struct kset *iommu_group_kset;
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static DEFINE_IDA(iommu_group_ida);
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static unsigned int iommu_def_domain_type __read_mostly;
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static bool iommu_dma_strict __read_mostly = true;
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static u32 iommu_cmd_line __read_mostly;
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struct iommu_group {
	struct kobject kobj;
	struct kobject *devices_kobj;
	struct list_head devices;
	struct mutex mutex;
	struct blocking_notifier_head notifier;
	void *iommu_data;
	void (*iommu_data_release)(void *iommu_data);
	char *name;
	int id;
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	struct iommu_domain *default_domain;
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	struct iommu_domain *domain;
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	struct list_head entry;
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};

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struct group_device {
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	struct list_head list;
	struct device *dev;
	char *name;
};

struct iommu_group_attribute {
	struct attribute attr;
	ssize_t (*show)(struct iommu_group *group, char *buf);
	ssize_t (*store)(struct iommu_group *group,
			 const char *buf, size_t count);
};

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static const char * const iommu_group_resv_type_string[] = {
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	[IOMMU_RESV_DIRECT]			= "direct",
	[IOMMU_RESV_DIRECT_RELAXABLE]		= "direct-relaxable",
	[IOMMU_RESV_RESERVED]			= "reserved",
	[IOMMU_RESV_MSI]			= "msi",
	[IOMMU_RESV_SW_MSI]			= "msi",
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};

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#define IOMMU_CMD_LINE_DMA_API		BIT(0)

static void iommu_set_cmd_line_dma_api(void)
{
	iommu_cmd_line |= IOMMU_CMD_LINE_DMA_API;
}

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static bool iommu_cmd_line_dma_api(void)
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{
	return !!(iommu_cmd_line & IOMMU_CMD_LINE_DMA_API);
}

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static int iommu_alloc_default_domain(struct device *dev);
static struct iommu_domain *__iommu_domain_alloc(struct bus_type *bus,
						 unsigned type);
static int __iommu_attach_device(struct iommu_domain *domain,
				 struct device *dev);
static int __iommu_attach_group(struct iommu_domain *domain,
				struct iommu_group *group);
static void __iommu_detach_group(struct iommu_domain *domain,
				 struct iommu_group *group);

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#define IOMMU_GROUP_ATTR(_name, _mode, _show, _store)		\
struct iommu_group_attribute iommu_group_attr_##_name =		\
	__ATTR(_name, _mode, _show, _store)
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#define to_iommu_group_attr(_attr)	\
	container_of(_attr, struct iommu_group_attribute, attr)
#define to_iommu_group(_kobj)		\
	container_of(_kobj, struct iommu_group, kobj)
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static LIST_HEAD(iommu_device_list);
static DEFINE_SPINLOCK(iommu_device_lock);

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/*
 * Use a function instead of an array here because the domain-type is a
 * bit-field, so an array would waste memory.
 */
static const char *iommu_domain_type_str(unsigned int t)
{
	switch (t) {
	case IOMMU_DOMAIN_BLOCKED:
		return "Blocked";
	case IOMMU_DOMAIN_IDENTITY:
		return "Passthrough";
	case IOMMU_DOMAIN_UNMANAGED:
		return "Unmanaged";
	case IOMMU_DOMAIN_DMA:
		return "Translated";
	default:
		return "Unknown";
	}
}

static int __init iommu_subsys_init(void)
{
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	bool cmd_line = iommu_cmd_line_dma_api();

	if (!cmd_line) {
		if (IS_ENABLED(CONFIG_IOMMU_DEFAULT_PASSTHROUGH))
			iommu_set_default_passthrough(false);
		else
			iommu_set_default_translated(false);
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		if (iommu_default_passthrough() && mem_encrypt_active()) {
			pr_info("Memory encryption detected - Disabling default IOMMU Passthrough\n");
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			iommu_set_default_translated(false);
		}
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	}

	pr_info("Default domain type: %s %s\n",
		iommu_domain_type_str(iommu_def_domain_type),
		cmd_line ? "(set via kernel command line)" : "");
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	return 0;
}
subsys_initcall(iommu_subsys_init);

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int iommu_device_register(struct iommu_device *iommu)
{
	spin_lock(&iommu_device_lock);
	list_add_tail(&iommu->list, &iommu_device_list);
	spin_unlock(&iommu_device_lock);
	return 0;
}
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EXPORT_SYMBOL_GPL(iommu_device_register);
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void iommu_device_unregister(struct iommu_device *iommu)
{
	spin_lock(&iommu_device_lock);
	list_del(&iommu->list);
	spin_unlock(&iommu_device_lock);
}
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EXPORT_SYMBOL_GPL(iommu_device_unregister);
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static struct dev_iommu *dev_iommu_get(struct device *dev)
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{
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	struct dev_iommu *param = dev->iommu;
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	if (param)
		return param;

	param = kzalloc(sizeof(*param), GFP_KERNEL);
	if (!param)
		return NULL;

	mutex_init(&param->lock);
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	dev->iommu = param;
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	return param;
}

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static void dev_iommu_free(struct device *dev)
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{
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	kfree(dev->iommu);
	dev->iommu = NULL;
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}

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static int __iommu_probe_device(struct device *dev, struct list_head *group_list)
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{
	const struct iommu_ops *ops = dev->bus->iommu_ops;
	struct iommu_device *iommu_dev;
	struct iommu_group *group;
	int ret;

	iommu_dev = ops->probe_device(dev);
	if (IS_ERR(iommu_dev))
		return PTR_ERR(iommu_dev);

	dev->iommu->iommu_dev = iommu_dev;

	group = iommu_group_get_for_dev(dev);
	if (!IS_ERR(group)) {
		ret = PTR_ERR(group);
		goto out_release;
	}
	iommu_group_put(group);

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	if (group_list && !group->default_domain && list_empty(&group->entry))
		list_add_tail(&group->entry, group_list);

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	iommu_device_link(iommu_dev, dev);

	return 0;

out_release:
	ops->release_device(dev);

	return ret;
}

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static int __iommu_probe_device_helper(struct device *dev)
{
	const struct iommu_ops *ops = dev->bus->iommu_ops;
	struct iommu_group *group;
	int ret;

	ret = __iommu_probe_device(dev, NULL);
	if (ret)
		goto err_out;

	/*
	 * Try to allocate a default domain - needs support from the
	 * IOMMU driver. There are still some drivers which don't
	 * support default domains, so the return value is not yet
	 * checked.
	 */
	iommu_alloc_default_domain(dev);

	group = iommu_group_get(dev);
	if (!group)
		goto err_release;

	if (group->default_domain)
		ret = __iommu_attach_device(group->default_domain, dev);

	iommu_group_put(group);

	if (ret)
		goto err_release;

	if (ops->probe_finalize)
		ops->probe_finalize(dev);

	return 0;

err_release:
	iommu_release_device(dev);
err_out:
	return ret;

}

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int iommu_probe_device(struct device *dev)
{
	const struct iommu_ops *ops = dev->bus->iommu_ops;
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	int ret;
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	WARN_ON(dev->iommu_group);
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	if (!ops)
		return -EINVAL;
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	if (!dev_iommu_get(dev))
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		return -ENOMEM;
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	if (!try_module_get(ops->owner)) {
		ret = -EINVAL;
		goto err_free_dev_param;
	}

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	if (ops->probe_device)
		return __iommu_probe_device_helper(dev);
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	ret = ops->add_device(dev);
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	if (ret)
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		goto err_module_put;

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	if (ops->probe_finalize)
		ops->probe_finalize(dev);

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	return 0;
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err_module_put:
	module_put(ops->owner);
err_free_dev_param:
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	dev_iommu_free(dev);
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	return ret;
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}

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static void __iommu_release_device(struct device *dev)
{
	const struct iommu_ops *ops = dev->bus->iommu_ops;

	iommu_device_unlink(dev->iommu->iommu_dev, dev);

	iommu_group_remove_device(dev);

	ops->release_device(dev);
}

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void iommu_release_device(struct device *dev)
{
	const struct iommu_ops *ops = dev->bus->iommu_ops;

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	if (!dev->iommu)
		return;

	if (ops->release_device)
		__iommu_release_device(dev);
	else if (dev->iommu_group)
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		ops->remove_device(dev);
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	module_put(ops->owner);
	dev_iommu_free(dev);
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}

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static int __init iommu_set_def_domain_type(char *str)
{
	bool pt;
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	int ret;
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	ret = kstrtobool(str, &pt);
	if (ret)
		return ret;
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	if (pt)
		iommu_set_default_passthrough(true);
	else
		iommu_set_default_translated(true);
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	return 0;
}
early_param("iommu.passthrough", iommu_set_def_domain_type);

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static int __init iommu_dma_setup(char *str)
{
	return kstrtobool(str, &iommu_dma_strict);
}
early_param("iommu.strict", iommu_dma_setup);

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static ssize_t iommu_group_attr_show(struct kobject *kobj,
				     struct attribute *__attr, char *buf)
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{
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	struct iommu_group_attribute *attr = to_iommu_group_attr(__attr);
	struct iommu_group *group = to_iommu_group(kobj);
	ssize_t ret = -EIO;
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	if (attr->show)
		ret = attr->show(group, buf);
	return ret;
}

static ssize_t iommu_group_attr_store(struct kobject *kobj,
				      struct attribute *__attr,
				      const char *buf, size_t count)
{
	struct iommu_group_attribute *attr = to_iommu_group_attr(__attr);
	struct iommu_group *group = to_iommu_group(kobj);
	ssize_t ret = -EIO;
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	if (attr->store)
		ret = attr->store(group, buf, count);
	return ret;
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}

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static const struct sysfs_ops iommu_group_sysfs_ops = {
	.show = iommu_group_attr_show,
	.store = iommu_group_attr_store,
};
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static int iommu_group_create_file(struct iommu_group *group,
				   struct iommu_group_attribute *attr)
{
	return sysfs_create_file(&group->kobj, &attr->attr);
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}

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static void iommu_group_remove_file(struct iommu_group *group,
				    struct iommu_group_attribute *attr)
{
	sysfs_remove_file(&group->kobj, &attr->attr);
}

static ssize_t iommu_group_show_name(struct iommu_group *group, char *buf)
{
	return sprintf(buf, "%s\n", group->name);
}

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/**
 * iommu_insert_resv_region - Insert a new region in the
 * list of reserved regions.
 * @new: new region to insert
 * @regions: list of regions
 *
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 * Elements are sorted by start address and overlapping segments
 * of the same type are merged.
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 */
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int iommu_insert_resv_region(struct iommu_resv_region *new,
			     struct list_head *regions)
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{
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	struct iommu_resv_region *iter, *tmp, *nr, *top;
	LIST_HEAD(stack);

	nr = iommu_alloc_resv_region(new->start, new->length,
				     new->prot, new->type);
	if (!nr)
		return -ENOMEM;

	/* First add the new element based on start address sorting */
	list_for_each_entry(iter, regions, list) {
		if (nr->start < iter->start ||
		    (nr->start == iter->start && nr->type <= iter->type))
			break;
	}
	list_add_tail(&nr->list, &iter->list);

	/* Merge overlapping segments of type nr->type in @regions, if any */
	list_for_each_entry_safe(iter, tmp, regions, list) {
		phys_addr_t top_end, iter_end = iter->start + iter->length - 1;

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		/* no merge needed on elements of different types than @new */
		if (iter->type != new->type) {
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			list_move_tail(&iter->list, &stack);
			continue;
		}

		/* look for the last stack element of same type as @iter */
		list_for_each_entry_reverse(top, &stack, list)
			if (top->type == iter->type)
				goto check_overlap;

		list_move_tail(&iter->list, &stack);
		continue;

check_overlap:
		top_end = top->start + top->length - 1;

		if (iter->start > top_end + 1) {
			list_move_tail(&iter->list, &stack);
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		} else {
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			top->length = max(top_end, iter_end) - top->start + 1;
			list_del(&iter->list);
			kfree(iter);
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		}
	}
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	list_splice(&stack, regions);
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	return 0;
}

static int
iommu_insert_device_resv_regions(struct list_head *dev_resv_regions,
				 struct list_head *group_resv_regions)
{
	struct iommu_resv_region *entry;
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	int ret = 0;
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	list_for_each_entry(entry, dev_resv_regions, list) {
		ret = iommu_insert_resv_region(entry, group_resv_regions);
		if (ret)
			break;
	}
	return ret;
}

int iommu_get_group_resv_regions(struct iommu_group *group,
				 struct list_head *head)
{
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	struct group_device *device;
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	int ret = 0;

	mutex_lock(&group->mutex);
	list_for_each_entry(device, &group->devices, list) {
		struct list_head dev_resv_regions;

		INIT_LIST_HEAD(&dev_resv_regions);
		iommu_get_resv_regions(device->dev, &dev_resv_regions);
		ret = iommu_insert_device_resv_regions(&dev_resv_regions, head);
		iommu_put_resv_regions(device->dev, &dev_resv_regions);
		if (ret)
			break;
	}
	mutex_unlock(&group->mutex);
	return ret;
}
EXPORT_SYMBOL_GPL(iommu_get_group_resv_regions);

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static ssize_t iommu_group_show_resv_regions(struct iommu_group *group,
					     char *buf)
{
	struct iommu_resv_region *region, *next;
	struct list_head group_resv_regions;
	char *str = buf;

	INIT_LIST_HEAD(&group_resv_regions);
	iommu_get_group_resv_regions(group, &group_resv_regions);

	list_for_each_entry_safe(region, next, &group_resv_regions, list) {
		str += sprintf(str, "0x%016llx 0x%016llx %s\n",
			       (long long int)region->start,
			       (long long int)(region->start +
						region->length - 1),
			       iommu_group_resv_type_string[region->type]);
		kfree(region);
	}

	return (str - buf);
}

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static ssize_t iommu_group_show_type(struct iommu_group *group,
				     char *buf)
{
	char *type = "unknown\n";

	if (group->default_domain) {
		switch (group->default_domain->type) {
		case IOMMU_DOMAIN_BLOCKED:
			type = "blocked\n";
			break;
		case IOMMU_DOMAIN_IDENTITY:
			type = "identity\n";
			break;
		case IOMMU_DOMAIN_UNMANAGED:
			type = "unmanaged\n";
			break;
		case IOMMU_DOMAIN_DMA:
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			type = "DMA\n";
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			break;
		}
	}
	strcpy(buf, type);

	return strlen(type);
}

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static IOMMU_GROUP_ATTR(name, S_IRUGO, iommu_group_show_name, NULL);

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static IOMMU_GROUP_ATTR(reserved_regions, 0444,
			iommu_group_show_resv_regions, NULL);

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static IOMMU_GROUP_ATTR(type, 0444, iommu_group_show_type, NULL);

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static void iommu_group_release(struct kobject *kobj)
{
	struct iommu_group *group = to_iommu_group(kobj);

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	pr_debug("Releasing group %d\n", group->id);

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	if (group->iommu_data_release)
		group->iommu_data_release(group->iommu_data);

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	ida_simple_remove(&iommu_group_ida, group->id);
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	if (group->default_domain)
		iommu_domain_free(group->default_domain);

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	kfree(group->name);
	kfree(group);
}

static struct kobj_type iommu_group_ktype = {
	.sysfs_ops = &iommu_group_sysfs_ops,
	.release = iommu_group_release,
};

/**
 * iommu_group_alloc - Allocate a new group
 *
 * This function is called by an iommu driver to allocate a new iommu
 * group.  The iommu group represents the minimum granularity of the iommu.
 * Upon successful return, the caller holds a reference to the supplied
 * group in order to hold the group until devices are added.  Use
 * iommu_group_put() to release this extra reference count, allowing the
 * group to be automatically reclaimed once it has no devices or external
 * references.
 */
struct iommu_group *iommu_group_alloc(void)
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{
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	struct iommu_group *group;
	int ret;

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

	group->kobj.kset = iommu_group_kset;
	mutex_init(&group->mutex);
	INIT_LIST_HEAD(&group->devices);
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	INIT_LIST_HEAD(&group->entry);
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	BLOCKING_INIT_NOTIFIER_HEAD(&group->notifier);

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	ret = ida_simple_get(&iommu_group_ida, 0, 0, GFP_KERNEL);
	if (ret < 0) {
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		kfree(group);
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		return ERR_PTR(ret);
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	}
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	group->id = ret;
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	ret = kobject_init_and_add(&group->kobj, &iommu_group_ktype,
				   NULL, "%d", group->id);
	if (ret) {
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		ida_simple_remove(&iommu_group_ida, group->id);
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		kfree(group);
		return ERR_PTR(ret);
	}

	group->devices_kobj = kobject_create_and_add("devices", &group->kobj);
	if (!group->devices_kobj) {
		kobject_put(&group->kobj); /* triggers .release & free */
		return ERR_PTR(-ENOMEM);
	}

	/*
	 * The devices_kobj holds a reference on the group kobject, so
	 * as long as that exists so will the group.  We can therefore
	 * use the devices_kobj for reference counting.
	 */
	kobject_put(&group->kobj);

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	ret = iommu_group_create_file(group,
				      &iommu_group_attr_reserved_regions);
	if (ret)
		return ERR_PTR(ret);

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	ret = iommu_group_create_file(group, &iommu_group_attr_type);
	if (ret)
		return ERR_PTR(ret);

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	pr_debug("Allocated group %d\n", group->id);

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	return group;
}
EXPORT_SYMBOL_GPL(iommu_group_alloc);

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struct iommu_group *iommu_group_get_by_id(int id)
{
	struct kobject *group_kobj;
	struct iommu_group *group;
	const char *name;

	if (!iommu_group_kset)
		return NULL;

	name = kasprintf(GFP_KERNEL, "%d", id);
	if (!name)
		return NULL;

	group_kobj = kset_find_obj(iommu_group_kset, name);
	kfree(name);

	if (!group_kobj)
		return NULL;

	group = container_of(group_kobj, struct iommu_group, kobj);
	BUG_ON(group->id != id);

	kobject_get(group->devices_kobj);
	kobject_put(&group->kobj);

	return group;
}
EXPORT_SYMBOL_GPL(iommu_group_get_by_id);

A
Alex Williamson 已提交
672 673 674 675 676 677 678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696 697
/**
 * iommu_group_get_iommudata - retrieve iommu_data registered for a group
 * @group: the group
 *
 * iommu drivers can store data in the group for use when doing iommu
 * operations.  This function provides a way to retrieve it.  Caller
 * should hold a group reference.
 */
void *iommu_group_get_iommudata(struct iommu_group *group)
{
	return group->iommu_data;
}
EXPORT_SYMBOL_GPL(iommu_group_get_iommudata);

/**
 * iommu_group_set_iommudata - set iommu_data for a group
 * @group: the group
 * @iommu_data: new data
 * @release: release function for iommu_data
 *
 * iommu drivers can store data in the group for use when doing iommu
 * operations.  This function provides a way to set the data after
 * the group has been allocated.  Caller should hold a group reference.
 */
void iommu_group_set_iommudata(struct iommu_group *group, void *iommu_data,
			       void (*release)(void *iommu_data))
698
{
A
Alex Williamson 已提交
699 700 701 702
	group->iommu_data = iommu_data;
	group->iommu_data_release = release;
}
EXPORT_SYMBOL_GPL(iommu_group_set_iommudata);
703

A
Alex Williamson 已提交
704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733
/**
 * iommu_group_set_name - set name for a group
 * @group: the group
 * @name: name
 *
 * Allow iommu driver to set a name for a group.  When set it will
 * appear in a name attribute file under the group in sysfs.
 */
int iommu_group_set_name(struct iommu_group *group, const char *name)
{
	int ret;

	if (group->name) {
		iommu_group_remove_file(group, &iommu_group_attr_name);
		kfree(group->name);
		group->name = NULL;
		if (!name)
			return 0;
	}

	group->name = kstrdup(name, GFP_KERNEL);
	if (!group->name)
		return -ENOMEM;

	ret = iommu_group_create_file(group, &iommu_group_attr_name);
	if (ret) {
		kfree(group->name);
		group->name = NULL;
		return ret;
	}
734 735 736

	return 0;
}
A
Alex Williamson 已提交
737
EXPORT_SYMBOL_GPL(iommu_group_set_name);
738

739 740 741 742
static int iommu_group_create_direct_mappings(struct iommu_group *group,
					      struct device *dev)
{
	struct iommu_domain *domain = group->default_domain;
743
	struct iommu_resv_region *entry;
744 745 746 747 748 749 750
	struct list_head mappings;
	unsigned long pg_size;
	int ret = 0;

	if (!domain || domain->type != IOMMU_DOMAIN_DMA)
		return 0;

751
	BUG_ON(!domain->pgsize_bitmap);
752

753
	pg_size = 1UL << __ffs(domain->pgsize_bitmap);
754 755
	INIT_LIST_HEAD(&mappings);

756
	iommu_get_resv_regions(dev, &mappings);
757 758 759 760 761

	/* We need to consider overlapping regions for different devices */
	list_for_each_entry(entry, &mappings, list) {
		dma_addr_t start, end, addr;

762 763
		if (domain->ops->apply_resv_region)
			domain->ops->apply_resv_region(dev, domain, entry);
764

765 766 767
		start = ALIGN(entry->start, pg_size);
		end   = ALIGN(entry->start + entry->length, pg_size);

768 769
		if (entry->type != IOMMU_RESV_DIRECT &&
		    entry->type != IOMMU_RESV_DIRECT_RELAXABLE)
770 771
			continue;

772 773 774 775 776 777 778 779 780 781 782 783 784 785
		for (addr = start; addr < end; addr += pg_size) {
			phys_addr_t phys_addr;

			phys_addr = iommu_iova_to_phys(domain, addr);
			if (phys_addr)
				continue;

			ret = iommu_map(domain, addr, addr, pg_size, entry->prot);
			if (ret)
				goto out;
		}

	}

786 787
	iommu_flush_tlb_all(domain);

788
out:
789
	iommu_put_resv_regions(dev, &mappings);
790 791 792 793

	return ret;
}

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Alex Williamson 已提交
794 795 796 797 798 799 800 801 802
/**
 * iommu_group_add_device - add a device to an iommu group
 * @group: the group into which to add the device (reference should be held)
 * @dev: the device
 *
 * This function is called by an iommu driver to add a device into a
 * group.  Adding a device increments the group reference count.
 */
int iommu_group_add_device(struct iommu_group *group, struct device *dev)
803
{
A
Alex Williamson 已提交
804
	int ret, i = 0;
J
Joerg Roedel 已提交
805
	struct group_device *device;
A
Alex Williamson 已提交
806 807 808 809 810 811

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

	device->dev = dev;
812

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Alex Williamson 已提交
813
	ret = sysfs_create_link(&dev->kobj, &group->kobj, "iommu_group");
814 815
	if (ret)
		goto err_free_device;
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Alex Williamson 已提交
816 817 818 819

	device->name = kasprintf(GFP_KERNEL, "%s", kobject_name(&dev->kobj));
rename:
	if (!device->name) {
820 821
		ret = -ENOMEM;
		goto err_remove_link;
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Alex Williamson 已提交
822
	}
823

A
Alex Williamson 已提交
824 825 826 827 828 829 830 831
	ret = sysfs_create_link_nowarn(group->devices_kobj,
				       &dev->kobj, device->name);
	if (ret) {
		if (ret == -EEXIST && i >= 0) {
			/*
			 * Account for the slim chance of collision
			 * and append an instance to the name.
			 */
832
			kfree(device->name);
A
Alex Williamson 已提交
833 834 835 836
			device->name = kasprintf(GFP_KERNEL, "%s.%d",
						 kobject_name(&dev->kobj), i++);
			goto rename;
		}
837
		goto err_free_name;
A
Alex Williamson 已提交
838 839 840 841 842 843
	}

	kobject_get(group->devices_kobj);

	dev->iommu_group = group;

844 845
	iommu_group_create_direct_mappings(group, dev);

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Alex Williamson 已提交
846 847
	mutex_lock(&group->mutex);
	list_add_tail(&device->list, &group->devices);
848
	if (group->domain)
849
		ret = __iommu_attach_device(group->domain, dev);
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Alex Williamson 已提交
850
	mutex_unlock(&group->mutex);
851 852
	if (ret)
		goto err_put_group;
A
Alex Williamson 已提交
853 854 855 856

	/* Notify any listeners about change to group. */
	blocking_notifier_call_chain(&group->notifier,
				     IOMMU_GROUP_NOTIFY_ADD_DEVICE, dev);
857 858

	trace_add_device_to_group(group->id, dev);
859

860
	dev_info(dev, "Adding to iommu group %d\n", group->id);
861

862
	return 0;
863 864 865 866 867 868 869

err_put_group:
	mutex_lock(&group->mutex);
	list_del(&device->list);
	mutex_unlock(&group->mutex);
	dev->iommu_group = NULL;
	kobject_put(group->devices_kobj);
870
	sysfs_remove_link(group->devices_kobj, device->name);
871 872 873 874 875 876
err_free_name:
	kfree(device->name);
err_remove_link:
	sysfs_remove_link(&dev->kobj, "iommu_group");
err_free_device:
	kfree(device);
877
	dev_err(dev, "Failed to add to iommu group %d: %d\n", group->id, ret);
878
	return ret;
879
}
A
Alex Williamson 已提交
880
EXPORT_SYMBOL_GPL(iommu_group_add_device);
881

A
Alex Williamson 已提交
882 883 884 885 886 887 888 889 890 891
/**
 * iommu_group_remove_device - remove a device from it's current group
 * @dev: device to be removed
 *
 * This function is called by an iommu driver to remove the device from
 * it's current group.  This decrements the iommu group reference count.
 */
void iommu_group_remove_device(struct device *dev)
{
	struct iommu_group *group = dev->iommu_group;
J
Joerg Roedel 已提交
892
	struct group_device *tmp_device, *device = NULL;
A
Alex Williamson 已提交
893

894
	dev_info(dev, "Removing from iommu group %d\n", group->id);
895

A
Alex Williamson 已提交
896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915
	/* Pre-notify listeners that a device is being removed. */
	blocking_notifier_call_chain(&group->notifier,
				     IOMMU_GROUP_NOTIFY_DEL_DEVICE, dev);

	mutex_lock(&group->mutex);
	list_for_each_entry(tmp_device, &group->devices, list) {
		if (tmp_device->dev == dev) {
			device = tmp_device;
			list_del(&device->list);
			break;
		}
	}
	mutex_unlock(&group->mutex);

	if (!device)
		return;

	sysfs_remove_link(group->devices_kobj, device->name);
	sysfs_remove_link(&dev->kobj, "iommu_group");

916 917
	trace_remove_device_from_group(group->id, dev);

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Alex Williamson 已提交
918 919 920 921 922 923 924
	kfree(device->name);
	kfree(device);
	dev->iommu_group = NULL;
	kobject_put(group->devices_kobj);
}
EXPORT_SYMBOL_GPL(iommu_group_remove_device);

925 926
static int iommu_group_device_count(struct iommu_group *group)
{
J
Joerg Roedel 已提交
927
	struct group_device *entry;
928 929 930 931 932 933 934 935
	int ret = 0;

	list_for_each_entry(entry, &group->devices, list)
		ret++;

	return ret;
}

A
Alex Williamson 已提交
936 937 938 939 940 941 942 943 944 945 946
/**
 * iommu_group_for_each_dev - iterate over each device in the group
 * @group: the group
 * @data: caller opaque data to be passed to callback function
 * @fn: caller supplied callback function
 *
 * This function is called by group users to iterate over group devices.
 * Callers should hold a reference count to the group during callback.
 * The group->mutex is held across callbacks, which will block calls to
 * iommu_group_add/remove_device.
 */
947 948
static int __iommu_group_for_each_dev(struct iommu_group *group, void *data,
				      int (*fn)(struct device *, void *))
A
Alex Williamson 已提交
949
{
J
Joerg Roedel 已提交
950
	struct group_device *device;
A
Alex Williamson 已提交
951 952 953 954 955 956 957
	int ret = 0;

	list_for_each_entry(device, &group->devices, list) {
		ret = fn(device->dev, data);
		if (ret)
			break;
	}
958 959 960 961 962 963 964 965 966 967 968
	return ret;
}


int iommu_group_for_each_dev(struct iommu_group *group, void *data,
			     int (*fn)(struct device *, void *))
{
	int ret;

	mutex_lock(&group->mutex);
	ret = __iommu_group_for_each_dev(group, data, fn);
A
Alex Williamson 已提交
969
	mutex_unlock(&group->mutex);
970

A
Alex Williamson 已提交
971 972 973 974 975 976 977 978 979 980 981 982 983 984 985 986 987 988 989 990 991 992 993
	return ret;
}
EXPORT_SYMBOL_GPL(iommu_group_for_each_dev);

/**
 * iommu_group_get - Return the group for a device and increment reference
 * @dev: get the group that this device belongs to
 *
 * This function is called by iommu drivers and users to get the group
 * for the specified device.  If found, the group is returned and the group
 * reference in incremented, else NULL.
 */
struct iommu_group *iommu_group_get(struct device *dev)
{
	struct iommu_group *group = dev->iommu_group;

	if (group)
		kobject_get(group->devices_kobj);

	return group;
}
EXPORT_SYMBOL_GPL(iommu_group_get);

994 995 996 997 998 999 1000 1001 1002 1003 1004 1005
/**
 * iommu_group_ref_get - Increment reference on a group
 * @group: the group to use, must not be NULL
 *
 * This function is called by iommu drivers to take additional references on an
 * existing group.  Returns the given group for convenience.
 */
struct iommu_group *iommu_group_ref_get(struct iommu_group *group)
{
	kobject_get(group->devices_kobj);
	return group;
}
1006
EXPORT_SYMBOL_GPL(iommu_group_ref_get);
1007

A
Alex Williamson 已提交
1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048 1049 1050 1051
/**
 * iommu_group_put - Decrement group reference
 * @group: the group to use
 *
 * This function is called by iommu drivers and users to release the
 * iommu group.  Once the reference count is zero, the group is released.
 */
void iommu_group_put(struct iommu_group *group)
{
	if (group)
		kobject_put(group->devices_kobj);
}
EXPORT_SYMBOL_GPL(iommu_group_put);

/**
 * iommu_group_register_notifier - Register a notifier for group changes
 * @group: the group to watch
 * @nb: notifier block to signal
 *
 * This function allows iommu group users to track changes in a group.
 * See include/linux/iommu.h for actions sent via this notifier.  Caller
 * should hold a reference to the group throughout notifier registration.
 */
int iommu_group_register_notifier(struct iommu_group *group,
				  struct notifier_block *nb)
{
	return blocking_notifier_chain_register(&group->notifier, nb);
}
EXPORT_SYMBOL_GPL(iommu_group_register_notifier);

/**
 * iommu_group_unregister_notifier - Unregister a notifier
 * @group: the group to watch
 * @nb: notifier block to signal
 *
 * Unregister a previously registered group notifier block.
 */
int iommu_group_unregister_notifier(struct iommu_group *group,
				    struct notifier_block *nb)
{
	return blocking_notifier_chain_unregister(&group->notifier, nb);
}
EXPORT_SYMBOL_GPL(iommu_group_unregister_notifier);

1052 1053 1054 1055 1056 1057 1058
/**
 * iommu_register_device_fault_handler() - Register a device fault handler
 * @dev: the device
 * @handler: the fault handler
 * @data: private data passed as argument to the handler
 *
 * When an IOMMU fault event is received, this handler gets called with the
1059 1060 1061 1062 1063 1064 1065 1066
 * fault event and data as argument. The handler should return 0 on success. If
 * the fault is recoverable (IOMMU_FAULT_PAGE_REQ), the consumer should also
 * complete the fault by calling iommu_page_response() with one of the following
 * response code:
 * - IOMMU_PAGE_RESP_SUCCESS: retry the translation
 * - IOMMU_PAGE_RESP_INVALID: terminate the fault
 * - IOMMU_PAGE_RESP_FAILURE: terminate the fault and stop reporting
 *   page faults if possible.
1067 1068 1069 1070 1071 1072 1073
 *
 * Return 0 if the fault handler was installed successfully, or an error.
 */
int iommu_register_device_fault_handler(struct device *dev,
					iommu_dev_fault_handler_t handler,
					void *data)
{
1074
	struct dev_iommu *param = dev->iommu;
1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095
	int ret = 0;

	if (!param)
		return -EINVAL;

	mutex_lock(&param->lock);
	/* Only allow one fault handler registered for each device */
	if (param->fault_param) {
		ret = -EBUSY;
		goto done_unlock;
	}

	get_device(dev);
	param->fault_param = kzalloc(sizeof(*param->fault_param), GFP_KERNEL);
	if (!param->fault_param) {
		put_device(dev);
		ret = -ENOMEM;
		goto done_unlock;
	}
	param->fault_param->handler = handler;
	param->fault_param->data = data;
1096 1097
	mutex_init(&param->fault_param->lock);
	INIT_LIST_HEAD(&param->fault_param->faults);
1098 1099 1100 1101 1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116

done_unlock:
	mutex_unlock(&param->lock);

	return ret;
}
EXPORT_SYMBOL_GPL(iommu_register_device_fault_handler);

/**
 * iommu_unregister_device_fault_handler() - Unregister the device fault handler
 * @dev: the device
 *
 * Remove the device fault handler installed with
 * iommu_register_device_fault_handler().
 *
 * Return 0 on success, or an error.
 */
int iommu_unregister_device_fault_handler(struct device *dev)
{
1117
	struct dev_iommu *param = dev->iommu;
1118 1119 1120 1121 1122 1123 1124 1125 1126 1127
	int ret = 0;

	if (!param)
		return -EINVAL;

	mutex_lock(&param->lock);

	if (!param->fault_param)
		goto unlock;

1128 1129 1130 1131 1132 1133
	/* we cannot unregister handler if there are pending faults */
	if (!list_empty(&param->fault_param->faults)) {
		ret = -EBUSY;
		goto unlock;
	}

1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149
	kfree(param->fault_param);
	param->fault_param = NULL;
	put_device(dev);
unlock:
	mutex_unlock(&param->lock);

	return ret;
}
EXPORT_SYMBOL_GPL(iommu_unregister_device_fault_handler);

/**
 * iommu_report_device_fault() - Report fault event to device driver
 * @dev: the device
 * @evt: fault event data
 *
 * Called by IOMMU drivers when a fault is detected, typically in a threaded IRQ
1150 1151
 * handler. When this function fails and the fault is recoverable, it is the
 * caller's responsibility to complete the fault.
1152 1153 1154 1155 1156
 *
 * Return 0 on success, or an error.
 */
int iommu_report_device_fault(struct device *dev, struct iommu_fault_event *evt)
{
1157
	struct dev_iommu *param = dev->iommu;
1158
	struct iommu_fault_event *evt_pending = NULL;
1159 1160 1161 1162 1163 1164 1165 1166 1167 1168 1169 1170 1171
	struct iommu_fault_param *fparam;
	int ret = 0;

	if (!param || !evt)
		return -EINVAL;

	/* we only report device fault if there is a handler registered */
	mutex_lock(&param->lock);
	fparam = param->fault_param;
	if (!fparam || !fparam->handler) {
		ret = -EINVAL;
		goto done_unlock;
	}
1172 1173 1174 1175 1176 1177 1178 1179 1180 1181 1182 1183 1184 1185

	if (evt->fault.type == IOMMU_FAULT_PAGE_REQ &&
	    (evt->fault.prm.flags & IOMMU_FAULT_PAGE_REQUEST_LAST_PAGE)) {
		evt_pending = kmemdup(evt, sizeof(struct iommu_fault_event),
				      GFP_KERNEL);
		if (!evt_pending) {
			ret = -ENOMEM;
			goto done_unlock;
		}
		mutex_lock(&fparam->lock);
		list_add_tail(&evt_pending->list, &fparam->faults);
		mutex_unlock(&fparam->lock);
	}

1186
	ret = fparam->handler(&evt->fault, fparam->data);
1187 1188 1189 1190 1191 1192
	if (ret && evt_pending) {
		mutex_lock(&fparam->lock);
		list_del(&evt_pending->list);
		mutex_unlock(&fparam->lock);
		kfree(evt_pending);
	}
1193 1194 1195 1196 1197 1198
done_unlock:
	mutex_unlock(&param->lock);
	return ret;
}
EXPORT_SYMBOL_GPL(iommu_report_device_fault);

1199 1200 1201 1202 1203 1204 1205
int iommu_page_response(struct device *dev,
			struct iommu_page_response *msg)
{
	bool pasid_valid;
	int ret = -EINVAL;
	struct iommu_fault_event *evt;
	struct iommu_fault_page_request *prm;
1206
	struct dev_iommu *param = dev->iommu;
1207 1208 1209 1210 1211 1212 1213 1214 1215 1216 1217 1218 1219 1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231 1232 1233 1234 1235 1236 1237 1238 1239 1240 1241 1242 1243 1244 1245 1246 1247 1248 1249 1250 1251
	struct iommu_domain *domain = iommu_get_domain_for_dev(dev);

	if (!domain || !domain->ops->page_response)
		return -ENODEV;

	if (!param || !param->fault_param)
		return -EINVAL;

	if (msg->version != IOMMU_PAGE_RESP_VERSION_1 ||
	    msg->flags & ~IOMMU_PAGE_RESP_PASID_VALID)
		return -EINVAL;

	/* Only send response if there is a fault report pending */
	mutex_lock(&param->fault_param->lock);
	if (list_empty(&param->fault_param->faults)) {
		dev_warn_ratelimited(dev, "no pending PRQ, drop response\n");
		goto done_unlock;
	}
	/*
	 * Check if we have a matching page request pending to respond,
	 * otherwise return -EINVAL
	 */
	list_for_each_entry(evt, &param->fault_param->faults, list) {
		prm = &evt->fault.prm;
		pasid_valid = prm->flags & IOMMU_FAULT_PAGE_REQUEST_PASID_VALID;

		if ((pasid_valid && prm->pasid != msg->pasid) ||
		    prm->grpid != msg->grpid)
			continue;

		/* Sanitize the reply */
		msg->flags = pasid_valid ? IOMMU_PAGE_RESP_PASID_VALID : 0;

		ret = domain->ops->page_response(dev, evt, msg);
		list_del(&evt->list);
		kfree(evt);
		break;
	}

done_unlock:
	mutex_unlock(&param->fault_param->lock);
	return ret;
}
EXPORT_SYMBOL_GPL(iommu_page_response);

A
Alex Williamson 已提交
1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262
/**
 * iommu_group_id - Return ID for a group
 * @group: the group to ID
 *
 * Return the unique ID for the group matching the sysfs group number.
 */
int iommu_group_id(struct iommu_group *group)
{
	return group->id;
}
EXPORT_SYMBOL_GPL(iommu_group_id);
1263

1264 1265 1266
static struct iommu_group *get_pci_alias_group(struct pci_dev *pdev,
					       unsigned long *devfns);

1267 1268 1269 1270 1271 1272 1273 1274 1275 1276
/*
 * To consider a PCI device isolated, we require ACS to support Source
 * Validation, Request Redirection, Completer Redirection, and Upstream
 * Forwarding.  This effectively means that devices cannot spoof their
 * requester ID, requests and completions cannot be redirected, and all
 * transactions are forwarded upstream, even as it passes through a
 * bridge where the target device is downstream.
 */
#define REQ_ACS_FLAGS   (PCI_ACS_SV | PCI_ACS_RR | PCI_ACS_CR | PCI_ACS_UF)

1277 1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292 1293 1294 1295 1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306 1307 1308
/*
 * For multifunction devices which are not isolated from each other, find
 * all the other non-isolated functions and look for existing groups.  For
 * each function, we also need to look for aliases to or from other devices
 * that may already have a group.
 */
static struct iommu_group *get_pci_function_alias_group(struct pci_dev *pdev,
							unsigned long *devfns)
{
	struct pci_dev *tmp = NULL;
	struct iommu_group *group;

	if (!pdev->multifunction || pci_acs_enabled(pdev, REQ_ACS_FLAGS))
		return NULL;

	for_each_pci_dev(tmp) {
		if (tmp == pdev || tmp->bus != pdev->bus ||
		    PCI_SLOT(tmp->devfn) != PCI_SLOT(pdev->devfn) ||
		    pci_acs_enabled(tmp, REQ_ACS_FLAGS))
			continue;

		group = get_pci_alias_group(tmp, devfns);
		if (group) {
			pci_dev_put(tmp);
			return group;
		}
	}

	return NULL;
}

/*
1309 1310
 * Look for aliases to or from the given device for existing groups. DMA
 * aliases are only supported on the same bus, therefore the search
1311 1312 1313 1314 1315 1316 1317 1318 1319 1320 1321 1322 1323 1324 1325 1326 1327 1328 1329 1330 1331 1332 1333 1334
 * space is quite small (especially since we're really only looking at pcie
 * device, and therefore only expect multiple slots on the root complex or
 * downstream switch ports).  It's conceivable though that a pair of
 * multifunction devices could have aliases between them that would cause a
 * loop.  To prevent this, we use a bitmap to track where we've been.
 */
static struct iommu_group *get_pci_alias_group(struct pci_dev *pdev,
					       unsigned long *devfns)
{
	struct pci_dev *tmp = NULL;
	struct iommu_group *group;

	if (test_and_set_bit(pdev->devfn & 0xff, devfns))
		return NULL;

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

	for_each_pci_dev(tmp) {
		if (tmp == pdev || tmp->bus != pdev->bus)
			continue;

		/* We alias them or they alias us */
1335
		if (pci_devs_are_dma_aliases(pdev, tmp)) {
1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346 1347 1348 1349 1350 1351 1352
			group = get_pci_alias_group(tmp, devfns);
			if (group) {
				pci_dev_put(tmp);
				return group;
			}

			group = get_pci_function_alias_group(tmp, devfns);
			if (group) {
				pci_dev_put(tmp);
				return group;
			}
		}
	}

	return NULL;
}

1353 1354 1355 1356 1357 1358 1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371
struct group_for_pci_data {
	struct pci_dev *pdev;
	struct iommu_group *group;
};

/*
 * DMA alias iterator callback, return the last seen device.  Stop and return
 * the IOMMU group if we find one along the way.
 */
static int get_pci_alias_or_group(struct pci_dev *pdev, u16 alias, void *opaque)
{
	struct group_for_pci_data *data = opaque;

	data->pdev = pdev;
	data->group = iommu_group_get(&pdev->dev);

	return data->group != NULL;
}

1372 1373 1374 1375 1376 1377
/*
 * Generic device_group call-back function. It just allocates one
 * iommu-group per device.
 */
struct iommu_group *generic_device_group(struct device *dev)
{
1378
	return iommu_group_alloc();
1379
}
1380
EXPORT_SYMBOL_GPL(generic_device_group);
1381

1382 1383 1384 1385
/*
 * Use standard PCI bus topology, isolation features, and DMA alias quirks
 * to find or create an IOMMU group for a device.
 */
1386
struct iommu_group *pci_device_group(struct device *dev)
1387
{
1388
	struct pci_dev *pdev = to_pci_dev(dev);
1389 1390 1391
	struct group_for_pci_data data;
	struct pci_bus *bus;
	struct iommu_group *group = NULL;
1392
	u64 devfns[4] = { 0 };
1393

1394 1395 1396
	if (WARN_ON(!dev_is_pci(dev)))
		return ERR_PTR(-EINVAL);

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
	/*
	 * Find the upstream DMA alias for the device.  A device must not
	 * be aliased due to topology in order to have its own IOMMU group.
	 * If we find an alias along the way that already belongs to a
	 * group, use it.
	 */
	if (pci_for_each_dma_alias(pdev, get_pci_alias_or_group, &data))
		return data.group;

	pdev = data.pdev;

	/*
	 * Continue upstream from the point of minimum IOMMU granularity
	 * due to aliases to the point where devices are protected from
	 * peer-to-peer DMA by PCI ACS.  Again, if we find an existing
	 * group, use it.
	 */
	for (bus = pdev->bus; !pci_is_root_bus(bus); bus = bus->parent) {
		if (!bus->self)
			continue;

		if (pci_acs_path_enabled(bus->self, NULL, REQ_ACS_FLAGS))
			break;

		pdev = bus->self;

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

	/*
1429 1430
	 * Look for existing groups on device aliases.  If we alias another
	 * device or another device aliases us, use the same group.
1431
	 */
1432 1433 1434
	group = get_pci_alias_group(pdev, (unsigned long *)devfns);
	if (group)
		return group;
1435 1436

	/*
1437 1438 1439
	 * Look for existing groups on non-isolated functions on the same
	 * slot and aliases of those funcions, if any.  No need to clear
	 * the search bitmap, the tested devfns are still valid.
1440
	 */
1441 1442 1443
	group = get_pci_function_alias_group(pdev, (unsigned long *)devfns);
	if (group)
		return group;
1444 1445

	/* No shared group found, allocate new */
1446
	return iommu_group_alloc();
1447
}
1448
EXPORT_SYMBOL_GPL(pci_device_group);
1449

1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460
/* Get the IOMMU group for device on fsl-mc bus */
struct iommu_group *fsl_mc_device_group(struct device *dev)
{
	struct device *cont_dev = fsl_mc_cont_dev(dev);
	struct iommu_group *group;

	group = iommu_group_get(cont_dev);
	if (!group)
		group = iommu_group_alloc();
	return group;
}
1461
EXPORT_SYMBOL_GPL(fsl_mc_device_group);
1462

1463 1464 1465 1466 1467 1468 1469 1470 1471 1472 1473
static int iommu_get_def_domain_type(struct device *dev)
{
	const struct iommu_ops *ops = dev->bus->iommu_ops;
	unsigned int type = 0;

	if (ops->def_domain_type)
		type = ops->def_domain_type(dev);

	return (type == 0) ? iommu_def_domain_type : type;
}

1474 1475 1476
static int iommu_group_alloc_default_domain(struct bus_type *bus,
					    struct iommu_group *group,
					    unsigned int type)
1477 1478 1479
{
	struct iommu_domain *dom;

1480
	dom = __iommu_domain_alloc(bus, type);
1481
	if (!dom && type != IOMMU_DOMAIN_DMA) {
1482 1483 1484 1485
		dom = __iommu_domain_alloc(bus, IOMMU_DOMAIN_DMA);
		if (dom)
			pr_warn("Failed to allocate default IOMMU domain of type %u for group %s - Falling back to IOMMU_DOMAIN_DMA",
				type, group->name);
1486 1487 1488 1489 1490 1491 1492 1493 1494 1495 1496 1497 1498 1499 1500 1501 1502 1503 1504
	}

	if (!dom)
		return -ENOMEM;

	group->default_domain = dom;
	if (!group->domain)
		group->domain = dom;

	if (!iommu_dma_strict) {
		int attr = 1;
		iommu_domain_set_attr(dom,
				      DOMAIN_ATTR_DMA_USE_FLUSH_QUEUE,
				      &attr);
	}

	return 0;
}

1505 1506 1507 1508 1509 1510 1511 1512 1513 1514 1515 1516 1517 1518 1519 1520 1521
static int iommu_alloc_default_domain(struct device *dev)
{
	struct iommu_group *group;
	unsigned int type;

	group = iommu_group_get(dev);
	if (!group)
		return -ENODEV;

	if (group->default_domain)
		return 0;

	type = iommu_get_def_domain_type(dev);

	return iommu_group_alloc_default_domain(dev->bus, group, type);
}

1522 1523 1524 1525 1526 1527 1528 1529 1530 1531 1532 1533
/**
 * iommu_group_get_for_dev - Find or create the IOMMU group for a device
 * @dev: target device
 *
 * This function is intended to be called by IOMMU drivers and extended to
 * support common, bus-defined algorithms when determining or creating the
 * IOMMU group for a device.  On success, the caller will hold a reference
 * to the returned IOMMU group, which will already include the provided
 * device.  The reference should be released with iommu_group_put().
 */
struct iommu_group *iommu_group_get_for_dev(struct device *dev)
{
1534
	const struct iommu_ops *ops = dev->bus->iommu_ops;
1535
	struct iommu_group *group;
1536 1537 1538 1539 1540 1541
	int ret;

	group = iommu_group_get(dev);
	if (group)
		return group;

1542 1543
	if (!ops)
		return ERR_PTR(-EINVAL);
1544

1545
	group = ops->device_group(dev);
1546 1547 1548
	if (WARN_ON_ONCE(group == NULL))
		return ERR_PTR(-EINVAL);

1549 1550 1551
	if (IS_ERR(group))
		return group;

1552 1553 1554 1555
	ret = iommu_group_add_device(group, dev);
	if (ret)
		goto out_put_group;

1556 1557
	/*
	 * Try to allocate a default domain - needs support from the
1558
	 * IOMMU driver. There are still some drivers which don't support
1559 1560 1561
	 * default domains, so the return value is not yet checked. Only
	 * allocate the domain here when the driver still has the
	 * add_device/remove_device call-backs implemented.
1562
	 */
1563 1564
	if (!ops->probe_device) {
		iommu_alloc_default_domain(dev);
1565

1566 1567 1568 1569 1570 1571
		if (group->default_domain)
			ret = __iommu_attach_device(group->default_domain, dev);

		if (ret)
			goto out_put_group;
	}
1572 1573

	return group;
1574 1575 1576 1577 1578

out_put_group:
	iommu_group_put(group);

	return ERR_PTR(ret);
1579
}
1580
EXPORT_SYMBOL(iommu_group_get_for_dev);
1581

1582 1583 1584 1585 1586
struct iommu_domain *iommu_group_default_domain(struct iommu_group *group)
{
	return group->default_domain;
}

A
Alex Williamson 已提交
1587
static int add_iommu_group(struct device *dev, void *data)
1588
{
1589
	int ret = iommu_probe_device(dev);
1590 1591 1592 1593 1594 1595 1596 1597 1598 1599

	/*
	 * We ignore -ENODEV errors for now, as they just mean that the
	 * device is not translated by an IOMMU. We still care about
	 * other errors and fail to initialize when they happen.
	 */
	if (ret == -ENODEV)
		ret = 0;

	return ret;
1600 1601
}

1602 1603
static int remove_iommu_group(struct device *dev, void *data)
{
1604
	iommu_release_device(dev);
1605 1606 1607 1608

	return 0;
}

A
Alex Williamson 已提交
1609 1610
static int iommu_bus_notifier(struct notifier_block *nb,
			      unsigned long action, void *data)
1611
{
1612
	unsigned long group_action = 0;
1613
	struct device *dev = data;
A
Alex Williamson 已提交
1614 1615 1616 1617 1618 1619 1620
	struct iommu_group *group;

	/*
	 * ADD/DEL call into iommu driver ops if provided, which may
	 * result in ADD/DEL notifiers to group->notifier
	 */
	if (action == BUS_NOTIFY_ADD_DEVICE) {
1621
		int ret;
1622

1623 1624
		ret = iommu_probe_device(dev);
		return (ret) ? NOTIFY_DONE : NOTIFY_OK;
1625
	} else if (action == BUS_NOTIFY_REMOVED_DEVICE) {
1626 1627
		iommu_release_device(dev);
		return NOTIFY_OK;
A
Alex Williamson 已提交
1628
	}
1629

A
Alex Williamson 已提交
1630 1631 1632 1633 1634 1635 1636
	/*
	 * Remaining BUS_NOTIFYs get filtered and republished to the
	 * group, if anyone is listening
	 */
	group = iommu_group_get(dev);
	if (!group)
		return 0;
1637

A
Alex Williamson 已提交
1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651
	switch (action) {
	case BUS_NOTIFY_BIND_DRIVER:
		group_action = IOMMU_GROUP_NOTIFY_BIND_DRIVER;
		break;
	case BUS_NOTIFY_BOUND_DRIVER:
		group_action = IOMMU_GROUP_NOTIFY_BOUND_DRIVER;
		break;
	case BUS_NOTIFY_UNBIND_DRIVER:
		group_action = IOMMU_GROUP_NOTIFY_UNBIND_DRIVER;
		break;
	case BUS_NOTIFY_UNBOUND_DRIVER:
		group_action = IOMMU_GROUP_NOTIFY_UNBOUND_DRIVER;
		break;
	}
1652

A
Alex Williamson 已提交
1653 1654 1655
	if (group_action)
		blocking_notifier_call_chain(&group->notifier,
					     group_action, dev);
1656

A
Alex Williamson 已提交
1657
	iommu_group_put(group);
1658 1659 1660
	return 0;
}

M
Mark Salter 已提交
1661
static int iommu_bus_init(struct bus_type *bus, const struct iommu_ops *ops)
1662
{
M
Mark Salter 已提交
1663 1664
	int err;
	struct notifier_block *nb;
1665

M
Mark Salter 已提交
1666 1667 1668 1669 1670 1671 1672
	nb = kzalloc(sizeof(struct notifier_block), GFP_KERNEL);
	if (!nb)
		return -ENOMEM;

	nb->notifier_call = iommu_bus_notifier;

	err = bus_register_notifier(bus, nb);
1673 1674
	if (err)
		goto out_free;
1675

L
Lu Baolu 已提交
1676
	err = bus_for_each_dev(bus, NULL, NULL, add_iommu_group);
1677 1678 1679
	if (err)
		goto out_err;

1680 1681

	return 0;
1682 1683 1684

out_err:
	/* Clean up */
L
Lu Baolu 已提交
1685
	bus_for_each_dev(bus, NULL, NULL, remove_iommu_group);
1686 1687 1688 1689 1690 1691
	bus_unregister_notifier(bus, nb);

out_free:
	kfree(nb);

	return err;
1692
}
1693

1694 1695 1696 1697 1698 1699 1700 1701 1702 1703 1704 1705 1706
/**
 * bus_set_iommu - set iommu-callbacks for the bus
 * @bus: bus.
 * @ops: the callbacks provided by the iommu-driver
 *
 * This function is called by an iommu driver to set the iommu methods
 * used for a particular bus. Drivers for devices on that bus can use
 * the iommu-api after these ops are registered.
 * This special function is needed because IOMMUs are usually devices on
 * the bus itself, so the iommu drivers are not initialized when the bus
 * is set up. With this function the iommu-driver can set the iommu-ops
 * afterwards.
 */
1707
int bus_set_iommu(struct bus_type *bus, const struct iommu_ops *ops)
1708
{
1709 1710
	int err;

1711 1712 1713 1714 1715
	if (ops == NULL) {
		bus->iommu_ops = NULL;
		return 0;
	}

1716 1717
	if (bus->iommu_ops != NULL)
		return -EBUSY;
1718

1719 1720 1721
	bus->iommu_ops = ops;

	/* Do IOMMU specific setup for this bus-type */
1722 1723 1724 1725 1726
	err = iommu_bus_init(bus, ops);
	if (err)
		bus->iommu_ops = NULL;

	return err;
1727
}
1728
EXPORT_SYMBOL_GPL(bus_set_iommu);
1729

1730
bool iommu_present(struct bus_type *bus)
1731
{
1732
	return bus->iommu_ops != NULL;
1733
}
1734
EXPORT_SYMBOL_GPL(iommu_present);
1735

1736 1737 1738 1739 1740 1741 1742 1743 1744
bool iommu_capable(struct bus_type *bus, enum iommu_cap cap)
{
	if (!bus->iommu_ops || !bus->iommu_ops->capable)
		return false;

	return bus->iommu_ops->capable(cap);
}
EXPORT_SYMBOL_GPL(iommu_capable);

1745 1746 1747 1748
/**
 * iommu_set_fault_handler() - set a fault handler for an iommu domain
 * @domain: iommu domain
 * @handler: fault handler
1749
 * @token: user data, will be passed back to the fault handler
1750 1751 1752 1753 1754 1755
 *
 * This function should be used by IOMMU users which want to be notified
 * whenever an IOMMU fault happens.
 *
 * The fault handler itself should return 0 on success, and an appropriate
 * error code otherwise.
1756 1757
 */
void iommu_set_fault_handler(struct iommu_domain *domain,
1758 1759
					iommu_fault_handler_t handler,
					void *token)
1760 1761 1762 1763
{
	BUG_ON(!domain);

	domain->handler = handler;
1764
	domain->handler_token = token;
1765
}
1766
EXPORT_SYMBOL_GPL(iommu_set_fault_handler);
1767

1768 1769
static struct iommu_domain *__iommu_domain_alloc(struct bus_type *bus,
						 unsigned type)
1770 1771 1772
{
	struct iommu_domain *domain;

1773
	if (bus == NULL || bus->iommu_ops == NULL)
1774 1775
		return NULL;

1776
	domain = bus->iommu_ops->domain_alloc(type);
1777 1778 1779
	if (!domain)
		return NULL;

1780
	domain->ops  = bus->iommu_ops;
1781
	domain->type = type;
1782 1783
	/* Assume all sizes by default; the driver may override this later */
	domain->pgsize_bitmap  = bus->iommu_ops->pgsize_bitmap;
1784

1785 1786 1787
	return domain;
}

1788 1789 1790
struct iommu_domain *iommu_domain_alloc(struct bus_type *bus)
{
	return __iommu_domain_alloc(bus, IOMMU_DOMAIN_UNMANAGED);
1791 1792 1793 1794 1795
}
EXPORT_SYMBOL_GPL(iommu_domain_alloc);

void iommu_domain_free(struct iommu_domain *domain)
{
1796
	domain->ops->domain_free(domain);
1797 1798 1799
}
EXPORT_SYMBOL_GPL(iommu_domain_free);

1800 1801
static int __iommu_attach_device(struct iommu_domain *domain,
				 struct device *dev)
1802
{
1803
	int ret;
1804 1805 1806 1807
	if ((domain->ops->is_attach_deferred != NULL) &&
	    domain->ops->is_attach_deferred(domain, dev))
		return 0;

1808 1809 1810
	if (unlikely(domain->ops->attach_dev == NULL))
		return -ENODEV;

1811 1812 1813 1814
	ret = domain->ops->attach_dev(domain, dev);
	if (!ret)
		trace_attach_device_to_domain(dev);
	return ret;
1815
}
1816 1817 1818 1819 1820 1821 1822

int iommu_attach_device(struct iommu_domain *domain, struct device *dev)
{
	struct iommu_group *group;
	int ret;

	group = iommu_group_get(dev);
1823 1824 1825
	if (!group)
		return -ENODEV;

1826
	/*
1827
	 * Lock the group to make sure the device-count doesn't
1828 1829 1830 1831 1832 1833 1834
	 * change while we are attaching
	 */
	mutex_lock(&group->mutex);
	ret = -EINVAL;
	if (iommu_group_device_count(group) != 1)
		goto out_unlock;

1835
	ret = __iommu_attach_group(domain, group);
1836 1837 1838 1839 1840 1841 1842

out_unlock:
	mutex_unlock(&group->mutex);
	iommu_group_put(group);

	return ret;
}
1843 1844
EXPORT_SYMBOL_GPL(iommu_attach_device);

Y
Yi L Liu 已提交
1845 1846 1847 1848 1849 1850 1851 1852 1853 1854
int iommu_cache_invalidate(struct iommu_domain *domain, struct device *dev,
			   struct iommu_cache_invalidate_info *inv_info)
{
	if (unlikely(!domain->ops->cache_invalidate))
		return -ENODEV;

	return domain->ops->cache_invalidate(domain, dev, inv_info);
}
EXPORT_SYMBOL_GPL(iommu_cache_invalidate);

1855 1856 1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874
int iommu_sva_bind_gpasid(struct iommu_domain *domain,
			   struct device *dev, struct iommu_gpasid_bind_data *data)
{
	if (unlikely(!domain->ops->sva_bind_gpasid))
		return -ENODEV;

	return domain->ops->sva_bind_gpasid(domain, dev, data);
}
EXPORT_SYMBOL_GPL(iommu_sva_bind_gpasid);

int iommu_sva_unbind_gpasid(struct iommu_domain *domain, struct device *dev,
			     ioasid_t pasid)
{
	if (unlikely(!domain->ops->sva_unbind_gpasid))
		return -ENODEV;

	return domain->ops->sva_unbind_gpasid(dev, pasid);
}
EXPORT_SYMBOL_GPL(iommu_sva_unbind_gpasid);

1875 1876
static void __iommu_detach_device(struct iommu_domain *domain,
				  struct device *dev)
1877
{
1878 1879 1880 1881
	if ((domain->ops->is_attach_deferred != NULL) &&
	    domain->ops->is_attach_deferred(domain, dev))
		return;

1882 1883 1884 1885
	if (unlikely(domain->ops->detach_dev == NULL))
		return;

	domain->ops->detach_dev(domain, dev);
1886
	trace_detach_device_from_domain(dev);
1887
}
1888 1889 1890 1891 1892 1893

void iommu_detach_device(struct iommu_domain *domain, struct device *dev)
{
	struct iommu_group *group;

	group = iommu_group_get(dev);
1894 1895
	if (!group)
		return;
1896 1897 1898 1899 1900 1901 1902

	mutex_lock(&group->mutex);
	if (iommu_group_device_count(group) != 1) {
		WARN_ON(1);
		goto out_unlock;
	}

1903
	__iommu_detach_group(domain, group);
1904 1905 1906 1907 1908

out_unlock:
	mutex_unlock(&group->mutex);
	iommu_group_put(group);
}
1909 1910
EXPORT_SYMBOL_GPL(iommu_detach_device);

1911 1912 1913 1914 1915 1916
struct iommu_domain *iommu_get_domain_for_dev(struct device *dev)
{
	struct iommu_domain *domain;
	struct iommu_group *group;

	group = iommu_group_get(dev);
1917
	if (!group)
1918 1919 1920 1921 1922 1923 1924 1925 1926
		return NULL;

	domain = group->domain;

	iommu_group_put(group);

	return domain;
}
EXPORT_SYMBOL_GPL(iommu_get_domain_for_dev);
1927

A
Alex Williamson 已提交
1928
/*
1929 1930 1931 1932 1933 1934 1935 1936
 * For IOMMU_DOMAIN_DMA implementations which already provide their own
 * guarantees that the group and its default domain are valid and correct.
 */
struct iommu_domain *iommu_get_dma_domain(struct device *dev)
{
	return dev->iommu_group->default_domain;
}

A
Alex Williamson 已提交
1937
/*
R
Rami Rosen 已提交
1938
 * IOMMU groups are really the natural working unit of the IOMMU, but
A
Alex Williamson 已提交
1939 1940 1941 1942 1943 1944 1945 1946 1947 1948 1949 1950
 * the IOMMU API works on domains and devices.  Bridge that gap by
 * iterating over the devices in a group.  Ideally we'd have a single
 * device which represents the requestor ID of the group, but we also
 * allow IOMMU drivers to create policy defined minimum sets, where
 * the physical hardware may be able to distiguish members, but we
 * wish to group them at a higher level (ex. untrusted multi-function
 * PCI devices).  Thus we attach each device.
 */
static int iommu_group_do_attach_device(struct device *dev, void *data)
{
	struct iommu_domain *domain = data;

1951
	return __iommu_attach_device(domain, dev);
A
Alex Williamson 已提交
1952 1953
}

1954 1955 1956 1957 1958 1959 1960 1961 1962 1963 1964 1965 1966 1967
static int __iommu_attach_group(struct iommu_domain *domain,
				struct iommu_group *group)
{
	int ret;

	if (group->default_domain && group->domain != group->default_domain)
		return -EBUSY;

	ret = __iommu_group_for_each_dev(group, domain,
					 iommu_group_do_attach_device);
	if (ret == 0)
		group->domain = domain;

	return ret;
A
Alex Williamson 已提交
1968 1969 1970 1971
}

int iommu_attach_group(struct iommu_domain *domain, struct iommu_group *group)
{
1972 1973 1974 1975 1976 1977 1978
	int ret;

	mutex_lock(&group->mutex);
	ret = __iommu_attach_group(domain, group);
	mutex_unlock(&group->mutex);

	return ret;
A
Alex Williamson 已提交
1979 1980 1981 1982 1983 1984 1985
}
EXPORT_SYMBOL_GPL(iommu_attach_group);

static int iommu_group_do_detach_device(struct device *dev, void *data)
{
	struct iommu_domain *domain = data;

1986
	__iommu_detach_device(domain, dev);
A
Alex Williamson 已提交
1987 1988 1989 1990

	return 0;
}

1991 1992 1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014
static void __iommu_detach_group(struct iommu_domain *domain,
				 struct iommu_group *group)
{
	int ret;

	if (!group->default_domain) {
		__iommu_group_for_each_dev(group, domain,
					   iommu_group_do_detach_device);
		group->domain = NULL;
		return;
	}

	if (group->domain == group->default_domain)
		return;

	/* Detach by re-attaching to the default domain */
	ret = __iommu_group_for_each_dev(group, group->default_domain,
					 iommu_group_do_attach_device);
	if (ret != 0)
		WARN_ON(1);
	else
		group->domain = group->default_domain;
}

A
Alex Williamson 已提交
2015 2016
void iommu_detach_group(struct iommu_domain *domain, struct iommu_group *group)
{
2017 2018 2019
	mutex_lock(&group->mutex);
	__iommu_detach_group(domain, group);
	mutex_unlock(&group->mutex);
A
Alex Williamson 已提交
2020 2021 2022
}
EXPORT_SYMBOL_GPL(iommu_detach_group);

2023
phys_addr_t iommu_iova_to_phys(struct iommu_domain *domain, dma_addr_t iova)
2024
{
2025 2026 2027 2028
	if (unlikely(domain->ops->iova_to_phys == NULL))
		return 0;

	return domain->ops->iova_to_phys(domain, iova);
2029 2030
}
EXPORT_SYMBOL_GPL(iommu_iova_to_phys);
S
Sheng Yang 已提交
2031

A
Alex Williamson 已提交
2032 2033 2034 2035 2036 2037 2038 2039 2040 2041 2042 2043 2044 2045 2046 2047 2048 2049 2050 2051
static size_t iommu_pgsize(struct iommu_domain *domain,
			   unsigned long addr_merge, size_t size)
{
	unsigned int pgsize_idx;
	size_t pgsize;

	/* Max page size that still fits into 'size' */
	pgsize_idx = __fls(size);

	/* need to consider alignment requirements ? */
	if (likely(addr_merge)) {
		/* Max page size allowed by address */
		unsigned int align_pgsize_idx = __ffs(addr_merge);
		pgsize_idx = min(pgsize_idx, align_pgsize_idx);
	}

	/* build a mask of acceptable page sizes */
	pgsize = (1UL << (pgsize_idx + 1)) - 1;

	/* throw away page sizes not supported by the hardware */
2052
	pgsize &= domain->pgsize_bitmap;
A
Alex Williamson 已提交
2053 2054 2055 2056 2057 2058 2059 2060 2061 2062 2063

	/* make sure we're still sane */
	BUG_ON(!pgsize);

	/* pick the biggest page */
	pgsize_idx = __fls(pgsize);
	pgsize = 1UL << pgsize_idx;

	return pgsize;
}

2064 2065
int __iommu_map(struct iommu_domain *domain, unsigned long iova,
	      phys_addr_t paddr, size_t size, int prot, gfp_t gfp)
2066
{
2067
	const struct iommu_ops *ops = domain->ops;
2068 2069 2070
	unsigned long orig_iova = iova;
	unsigned int min_pagesz;
	size_t orig_size = size;
2071
	phys_addr_t orig_paddr = paddr;
2072
	int ret = 0;
2073

2074
	if (unlikely(ops->map == NULL ||
2075
		     domain->pgsize_bitmap == 0UL))
2076
		return -ENODEV;
2077

2078 2079 2080
	if (unlikely(!(domain->type & __IOMMU_DOMAIN_PAGING)))
		return -EINVAL;

2081
	/* find out the minimum page size supported */
2082
	min_pagesz = 1 << __ffs(domain->pgsize_bitmap);
2083 2084 2085 2086 2087 2088 2089

	/*
	 * both the virtual address and the physical one, as well as
	 * the size of the mapping, must be aligned (at least) to the
	 * size of the smallest page supported by the hardware
	 */
	if (!IS_ALIGNED(iova | paddr | size, min_pagesz)) {
2090
		pr_err("unaligned: iova 0x%lx pa %pa size 0x%zx min_pagesz 0x%x\n",
2091
		       iova, &paddr, size, min_pagesz);
2092 2093 2094
		return -EINVAL;
	}

2095
	pr_debug("map: iova 0x%lx pa %pa size 0x%zx\n", iova, &paddr, size);
2096 2097

	while (size) {
A
Alex Williamson 已提交
2098
		size_t pgsize = iommu_pgsize(domain, iova | paddr, size);
2099

2100
		pr_debug("mapping: iova 0x%lx pa %pa pgsize 0x%zx\n",
2101
			 iova, &paddr, pgsize);
2102
		ret = ops->map(domain, iova, paddr, pgsize, prot, gfp);
2103 2104 2105 2106 2107 2108 2109 2110 2111

		if (ret)
			break;

		iova += pgsize;
		paddr += pgsize;
		size -= pgsize;
	}

2112 2113 2114
	if (ops->iotlb_sync_map)
		ops->iotlb_sync_map(domain);

2115 2116 2117
	/* unroll mapping in case something went wrong */
	if (ret)
		iommu_unmap(domain, orig_iova, orig_size - size);
2118
	else
2119
		trace_map(orig_iova, orig_paddr, orig_size);
2120 2121

	return ret;
2122
}
2123 2124 2125 2126 2127 2128 2129

int iommu_map(struct iommu_domain *domain, unsigned long iova,
	      phys_addr_t paddr, size_t size, int prot)
{
	might_sleep();
	return __iommu_map(domain, iova, paddr, size, prot, GFP_KERNEL);
}
2130 2131
EXPORT_SYMBOL_GPL(iommu_map);

2132 2133 2134 2135 2136 2137 2138
int iommu_map_atomic(struct iommu_domain *domain, unsigned long iova,
	      phys_addr_t paddr, size_t size, int prot)
{
	return __iommu_map(domain, iova, paddr, size, prot, GFP_ATOMIC);
}
EXPORT_SYMBOL_GPL(iommu_map_atomic);

2139 2140
static size_t __iommu_unmap(struct iommu_domain *domain,
			    unsigned long iova, size_t size,
2141
			    struct iommu_iotlb_gather *iotlb_gather)
2142
{
2143
	const struct iommu_ops *ops = domain->ops;
2144
	size_t unmapped_page, unmapped = 0;
2145
	unsigned long orig_iova = iova;
2146
	unsigned int min_pagesz;
2147

2148
	if (unlikely(ops->unmap == NULL ||
2149
		     domain->pgsize_bitmap == 0UL))
2150
		return 0;
2151

2152
	if (unlikely(!(domain->type & __IOMMU_DOMAIN_PAGING)))
2153
		return 0;
2154

2155
	/* find out the minimum page size supported */
2156
	min_pagesz = 1 << __ffs(domain->pgsize_bitmap);
2157 2158 2159 2160 2161 2162 2163

	/*
	 * The virtual address, as well as the size of the mapping, must be
	 * aligned (at least) to the size of the smallest page supported
	 * by the hardware
	 */
	if (!IS_ALIGNED(iova | size, min_pagesz)) {
2164 2165
		pr_err("unaligned: iova 0x%lx size 0x%zx min_pagesz 0x%x\n",
		       iova, size, min_pagesz);
2166
		return 0;
2167 2168
	}

2169
	pr_debug("unmap this: iova 0x%lx size 0x%zx\n", iova, size);
2170 2171 2172 2173 2174 2175

	/*
	 * Keep iterating until we either unmap 'size' bytes (or more)
	 * or we hit an area that isn't mapped.
	 */
	while (unmapped < size) {
A
Alex Williamson 已提交
2176
		size_t pgsize = iommu_pgsize(domain, iova, size - unmapped);
2177

2178
		unmapped_page = ops->unmap(domain, iova, pgsize, iotlb_gather);
2179 2180 2181
		if (!unmapped_page)
			break;

2182 2183
		pr_debug("unmapped: iova 0x%lx size 0x%zx\n",
			 iova, unmapped_page);
2184 2185 2186 2187 2188

		iova += unmapped_page;
		unmapped += unmapped_page;
	}

2189
	trace_unmap(orig_iova, size, unmapped);
2190
	return unmapped;
2191
}
2192 2193 2194 2195

size_t iommu_unmap(struct iommu_domain *domain,
		   unsigned long iova, size_t size)
{
2196 2197 2198 2199 2200 2201 2202 2203
	struct iommu_iotlb_gather iotlb_gather;
	size_t ret;

	iommu_iotlb_gather_init(&iotlb_gather);
	ret = __iommu_unmap(domain, iova, size, &iotlb_gather);
	iommu_tlb_sync(domain, &iotlb_gather);

	return ret;
2204
}
2205
EXPORT_SYMBOL_GPL(iommu_unmap);
2206

2207
size_t iommu_unmap_fast(struct iommu_domain *domain,
2208 2209
			unsigned long iova, size_t size,
			struct iommu_iotlb_gather *iotlb_gather)
2210
{
2211
	return __iommu_unmap(domain, iova, size, iotlb_gather);
2212 2213 2214
}
EXPORT_SYMBOL_GPL(iommu_unmap_fast);

2215 2216 2217
size_t __iommu_map_sg(struct iommu_domain *domain, unsigned long iova,
		    struct scatterlist *sg, unsigned int nents, int prot,
		    gfp_t gfp)
O
Olav Haugan 已提交
2218
{
2219 2220 2221
	size_t len = 0, mapped = 0;
	phys_addr_t start;
	unsigned int i = 0;
2222
	int ret;
O
Olav Haugan 已提交
2223

2224 2225
	while (i <= nents) {
		phys_addr_t s_phys = sg_phys(sg);
2226

2227
		if (len && s_phys != start + len) {
2228 2229 2230
			ret = __iommu_map(domain, iova + mapped, start,
					len, prot, gfp);

2231 2232
			if (ret)
				goto out_err;
2233

2234 2235 2236
			mapped += len;
			len = 0;
		}
2237

2238 2239 2240 2241 2242 2243
		if (len) {
			len += sg->length;
		} else {
			len = sg->length;
			start = s_phys;
		}
2244

2245 2246
		if (++i < nents)
			sg = sg_next(sg);
O
Olav Haugan 已提交
2247 2248 2249
	}

	return mapped;
2250 2251 2252 2253 2254 2255 2256

out_err:
	/* undo mappings already done */
	iommu_unmap(domain, iova, mapped);

	return 0;

O
Olav Haugan 已提交
2257
}
2258 2259 2260 2261 2262 2263 2264

size_t iommu_map_sg(struct iommu_domain *domain, unsigned long iova,
		    struct scatterlist *sg, unsigned int nents, int prot)
{
	might_sleep();
	return __iommu_map_sg(domain, iova, sg, nents, prot, GFP_KERNEL);
}
2265
EXPORT_SYMBOL_GPL(iommu_map_sg);
2266

2267 2268 2269 2270 2271 2272 2273
size_t iommu_map_sg_atomic(struct iommu_domain *domain, unsigned long iova,
		    struct scatterlist *sg, unsigned int nents, int prot)
{
	return __iommu_map_sg(domain, iova, sg, nents, prot, GFP_ATOMIC);
}
EXPORT_SYMBOL_GPL(iommu_map_sg_atomic);

2274
int iommu_domain_window_enable(struct iommu_domain *domain, u32 wnd_nr,
2275
			       phys_addr_t paddr, u64 size, int prot)
2276 2277 2278 2279
{
	if (unlikely(domain->ops->domain_window_enable == NULL))
		return -ENODEV;

2280 2281
	return domain->ops->domain_window_enable(domain, wnd_nr, paddr, size,
						 prot);
2282 2283 2284 2285 2286 2287 2288 2289 2290 2291 2292 2293
}
EXPORT_SYMBOL_GPL(iommu_domain_window_enable);

void iommu_domain_window_disable(struct iommu_domain *domain, u32 wnd_nr)
{
	if (unlikely(domain->ops->domain_window_disable == NULL))
		return;

	return domain->ops->domain_window_disable(domain, wnd_nr);
}
EXPORT_SYMBOL_GPL(iommu_domain_window_disable);

2294 2295 2296 2297 2298 2299 2300 2301 2302 2303 2304 2305 2306 2307 2308 2309 2310 2311 2312 2313 2314 2315 2316 2317 2318 2319 2320 2321 2322 2323 2324 2325 2326 2327 2328 2329 2330 2331 2332 2333 2334 2335
/**
 * report_iommu_fault() - report about an IOMMU fault to the IOMMU framework
 * @domain: the iommu domain where the fault has happened
 * @dev: the device where the fault has happened
 * @iova: the faulting address
 * @flags: mmu fault flags (e.g. IOMMU_FAULT_READ/IOMMU_FAULT_WRITE/...)
 *
 * This function should be called by the low-level IOMMU implementations
 * whenever IOMMU faults happen, to allow high-level users, that are
 * interested in such events, to know about them.
 *
 * This event may be useful for several possible use cases:
 * - mere logging of the event
 * - dynamic TLB/PTE loading
 * - if restarting of the faulting device is required
 *
 * Returns 0 on success and an appropriate error code otherwise (if dynamic
 * PTE/TLB loading will one day be supported, implementations will be able
 * to tell whether it succeeded or not according to this return value).
 *
 * Specifically, -ENOSYS is returned if a fault handler isn't installed
 * (though fault handlers can also return -ENOSYS, in case they want to
 * elicit the default behavior of the IOMMU drivers).
 */
int report_iommu_fault(struct iommu_domain *domain, struct device *dev,
		       unsigned long iova, int flags)
{
	int ret = -ENOSYS;

	/*
	 * if upper layers showed interest and installed a fault handler,
	 * invoke it.
	 */
	if (domain->handler)
		ret = domain->handler(domain, dev, iova, flags,
						domain->handler_token);

	trace_io_page_fault(dev, iova, flags);
	return ret;
}
EXPORT_SYMBOL_GPL(report_iommu_fault);

A
Alex Williamson 已提交
2336
static int __init iommu_init(void)
2337
{
A
Alex Williamson 已提交
2338 2339 2340 2341
	iommu_group_kset = kset_create_and_add("iommu_groups",
					       NULL, kernel_kobj);
	BUG_ON(!iommu_group_kset);

2342 2343
	iommu_debugfs_setup();

A
Alex Williamson 已提交
2344
	return 0;
2345
}
2346
core_initcall(iommu_init);
2347 2348 2349 2350

int iommu_domain_get_attr(struct iommu_domain *domain,
			  enum iommu_attr attr, void *data)
{
2351
	struct iommu_domain_geometry *geometry;
2352
	bool *paging;
2353 2354 2355 2356 2357 2358 2359
	int ret = 0;

	switch (attr) {
	case DOMAIN_ATTR_GEOMETRY:
		geometry  = data;
		*geometry = domain->geometry;

2360 2361 2362
		break;
	case DOMAIN_ATTR_PAGING:
		paging  = data;
2363
		*paging = (domain->pgsize_bitmap != 0UL);
2364 2365 2366 2367
		break;
	default:
		if (!domain->ops->domain_get_attr)
			return -EINVAL;
2368

2369 2370 2371 2372
		ret = domain->ops->domain_get_attr(domain, attr, data);
	}

	return ret;
2373 2374 2375 2376 2377 2378
}
EXPORT_SYMBOL_GPL(iommu_domain_get_attr);

int iommu_domain_set_attr(struct iommu_domain *domain,
			  enum iommu_attr attr, void *data)
{
2379 2380 2381 2382 2383 2384 2385 2386 2387 2388 2389
	int ret = 0;

	switch (attr) {
	default:
		if (domain->ops->domain_set_attr == NULL)
			return -EINVAL;

		ret = domain->ops->domain_set_attr(domain, attr, data);
	}

	return ret;
2390
}
2391
EXPORT_SYMBOL_GPL(iommu_domain_set_attr);
2392

2393
void iommu_get_resv_regions(struct device *dev, struct list_head *list)
2394 2395 2396
{
	const struct iommu_ops *ops = dev->bus->iommu_ops;

2397 2398
	if (ops && ops->get_resv_regions)
		ops->get_resv_regions(dev, list);
2399 2400
}

2401
void iommu_put_resv_regions(struct device *dev, struct list_head *list)
2402 2403 2404
{
	const struct iommu_ops *ops = dev->bus->iommu_ops;

2405 2406
	if (ops && ops->put_resv_regions)
		ops->put_resv_regions(dev, list);
2407
}
2408

2409 2410 2411 2412 2413 2414 2415 2416 2417 2418 2419 2420 2421 2422 2423 2424 2425 2426 2427
/**
 * generic_iommu_put_resv_regions - Reserved region driver helper
 * @dev: device for which to free reserved regions
 * @list: reserved region list for device
 *
 * IOMMU drivers can use this to implement their .put_resv_regions() callback
 * for simple reservations. Memory allocated for each reserved region will be
 * freed. If an IOMMU driver allocates additional resources per region, it is
 * going to have to implement a custom callback.
 */
void generic_iommu_put_resv_regions(struct device *dev, struct list_head *list)
{
	struct iommu_resv_region *entry, *next;

	list_for_each_entry_safe(entry, next, list, list)
		kfree(entry);
}
EXPORT_SYMBOL(generic_iommu_put_resv_regions);

E
Eric Auger 已提交
2428
struct iommu_resv_region *iommu_alloc_resv_region(phys_addr_t start,
2429 2430
						  size_t length, int prot,
						  enum iommu_resv_type type)
E
Eric Auger 已提交
2431 2432 2433 2434 2435 2436 2437 2438 2439 2440 2441 2442 2443
{
	struct iommu_resv_region *region;

	region = kzalloc(sizeof(*region), GFP_KERNEL);
	if (!region)
		return NULL;

	INIT_LIST_HEAD(&region->list);
	region->start = start;
	region->length = length;
	region->prot = prot;
	region->type = type;
	return region;
2444
}
2445
EXPORT_SYMBOL_GPL(iommu_alloc_resv_region);
2446

2447 2448
static int
request_default_domain_for_dev(struct device *dev, unsigned long type)
2449
{
2450
	struct iommu_domain *domain;
2451 2452 2453 2454
	struct iommu_group *group;
	int ret;

	/* Device must already be in a group before calling this function */
2455 2456 2457
	group = iommu_group_get(dev);
	if (!group)
		return -EINVAL;
2458 2459 2460 2461

	mutex_lock(&group->mutex);

	ret = 0;
2462
	if (group->default_domain && group->default_domain->type == type)
2463 2464 2465 2466 2467 2468 2469 2470
		goto out;

	/* Don't change mappings of existing devices */
	ret = -EBUSY;
	if (iommu_group_device_count(group) != 1)
		goto out;

	ret = -ENOMEM;
2471 2472
	domain = __iommu_domain_alloc(dev->bus, type);
	if (!domain)
2473 2474 2475
		goto out;

	/* Attach the device to the domain */
2476
	ret = __iommu_attach_group(domain, group);
2477
	if (ret) {
2478
		iommu_domain_free(domain);
2479 2480 2481
		goto out;
	}

2482
	/* Make the domain the default for this group */
2483 2484
	if (group->default_domain)
		iommu_domain_free(group->default_domain);
2485
	group->default_domain = domain;
2486

2487 2488
	iommu_group_create_direct_mappings(group, dev);

2489 2490
	dev_info(dev, "Using iommu %s mapping\n",
		 type == IOMMU_DOMAIN_DMA ? "dma" : "direct");
2491 2492 2493 2494 2495 2496 2497 2498

	ret = 0;
out:
	mutex_unlock(&group->mutex);
	iommu_group_put(group);

	return ret;
}
R
Robin Murphy 已提交
2499

2500 2501 2502 2503 2504 2505 2506 2507 2508 2509 2510 2511
/* Request that a device is direct mapped by the IOMMU */
int iommu_request_dm_for_dev(struct device *dev)
{
	return request_default_domain_for_dev(dev, IOMMU_DOMAIN_IDENTITY);
}

/* Request that a device can't be direct mapped by the IOMMU */
int iommu_request_dma_domain_for_dev(struct device *dev)
{
	return request_default_domain_for_dev(dev, IOMMU_DOMAIN_DMA);
}

2512 2513 2514 2515 2516 2517 2518 2519 2520 2521 2522 2523 2524 2525 2526 2527 2528 2529 2530 2531 2532 2533
void iommu_set_default_passthrough(bool cmd_line)
{
	if (cmd_line)
		iommu_set_cmd_line_dma_api();

	iommu_def_domain_type = IOMMU_DOMAIN_IDENTITY;
}

void iommu_set_default_translated(bool cmd_line)
{
	if (cmd_line)
		iommu_set_cmd_line_dma_api();

	iommu_def_domain_type = IOMMU_DOMAIN_DMA;
}

bool iommu_default_passthrough(void)
{
	return iommu_def_domain_type == IOMMU_DOMAIN_IDENTITY;
}
EXPORT_SYMBOL_GPL(iommu_default_passthrough);

2534
const struct iommu_ops *iommu_ops_from_fwnode(struct fwnode_handle *fwnode)
2535 2536
{
	const struct iommu_ops *ops = NULL;
2537
	struct iommu_device *iommu;
2538

2539 2540 2541 2542
	spin_lock(&iommu_device_lock);
	list_for_each_entry(iommu, &iommu_device_list, list)
		if (iommu->fwnode == fwnode) {
			ops = iommu->ops;
2543 2544
			break;
		}
2545
	spin_unlock(&iommu_device_lock);
2546 2547 2548
	return ops;
}

R
Robin Murphy 已提交
2549 2550 2551
int iommu_fwspec_init(struct device *dev, struct fwnode_handle *iommu_fwnode,
		      const struct iommu_ops *ops)
{
2552
	struct iommu_fwspec *fwspec = dev_iommu_fwspec_get(dev);
R
Robin Murphy 已提交
2553 2554 2555 2556

	if (fwspec)
		return ops == fwspec->ops ? 0 : -EINVAL;

2557 2558 2559
	if (!dev_iommu_get(dev))
		return -ENOMEM;

2560 2561
	/* Preallocate for the overwhelmingly common case of 1 ID */
	fwspec = kzalloc(struct_size(fwspec, ids, 1), GFP_KERNEL);
R
Robin Murphy 已提交
2562 2563 2564 2565 2566 2567
	if (!fwspec)
		return -ENOMEM;

	of_node_get(to_of_node(iommu_fwnode));
	fwspec->iommu_fwnode = iommu_fwnode;
	fwspec->ops = ops;
2568
	dev_iommu_fwspec_set(dev, fwspec);
R
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	return 0;
}
EXPORT_SYMBOL_GPL(iommu_fwspec_init);

void iommu_fwspec_free(struct device *dev)
{
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	struct iommu_fwspec *fwspec = dev_iommu_fwspec_get(dev);
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	if (fwspec) {
		fwnode_handle_put(fwspec->iommu_fwnode);
		kfree(fwspec);
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		dev_iommu_fwspec_set(dev, NULL);
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	}
}
EXPORT_SYMBOL_GPL(iommu_fwspec_free);

int iommu_fwspec_add_ids(struct device *dev, u32 *ids, int num_ids)
{
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	struct iommu_fwspec *fwspec = dev_iommu_fwspec_get(dev);
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	int i, new_num;
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	if (!fwspec)
		return -EINVAL;

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	new_num = fwspec->num_ids + num_ids;
	if (new_num > 1) {
		fwspec = krealloc(fwspec, struct_size(fwspec, ids, new_num),
				  GFP_KERNEL);
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		if (!fwspec)
			return -ENOMEM;
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		dev_iommu_fwspec_set(dev, fwspec);
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	}

	for (i = 0; i < num_ids; i++)
		fwspec->ids[fwspec->num_ids + i] = ids[i];

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	fwspec->num_ids = new_num;
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	return 0;
}
EXPORT_SYMBOL_GPL(iommu_fwspec_add_ids);
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/*
 * Per device IOMMU features.
 */
bool iommu_dev_has_feature(struct device *dev, enum iommu_dev_features feat)
{
	const struct iommu_ops *ops = dev->bus->iommu_ops;

	if (ops && ops->dev_has_feat)
		return ops->dev_has_feat(dev, feat);

	return false;
}
EXPORT_SYMBOL_GPL(iommu_dev_has_feature);

int iommu_dev_enable_feature(struct device *dev, enum iommu_dev_features feat)
{
	const struct iommu_ops *ops = dev->bus->iommu_ops;

	if (ops && ops->dev_enable_feat)
		return ops->dev_enable_feat(dev, feat);

	return -ENODEV;
}
EXPORT_SYMBOL_GPL(iommu_dev_enable_feature);

/*
 * The device drivers should do the necessary cleanups before calling this.
 * For example, before disabling the aux-domain feature, the device driver
 * should detach all aux-domains. Otherwise, this will return -EBUSY.
 */
int iommu_dev_disable_feature(struct device *dev, enum iommu_dev_features feat)
{
	const struct iommu_ops *ops = dev->bus->iommu_ops;

	if (ops && ops->dev_disable_feat)
		return ops->dev_disable_feat(dev, feat);

	return -EBUSY;
}
EXPORT_SYMBOL_GPL(iommu_dev_disable_feature);

bool iommu_dev_feature_enabled(struct device *dev, enum iommu_dev_features feat)
{
	const struct iommu_ops *ops = dev->bus->iommu_ops;

	if (ops && ops->dev_feat_enabled)
		return ops->dev_feat_enabled(dev, feat);

	return false;
}
EXPORT_SYMBOL_GPL(iommu_dev_feature_enabled);

/*
 * Aux-domain specific attach/detach.
 *
 * Only works if iommu_dev_feature_enabled(dev, IOMMU_DEV_FEAT_AUX) returns
 * true. Also, as long as domains are attached to a device through this
 * interface, any tries to call iommu_attach_device() should fail
 * (iommu_detach_device() can't fail, so we fail when trying to re-attach).
 * This should make us safe against a device being attached to a guest as a
 * whole while there are still pasid users on it (aux and sva).
 */
int iommu_aux_attach_device(struct iommu_domain *domain, struct device *dev)
{
	int ret = -ENODEV;

	if (domain->ops->aux_attach_dev)
		ret = domain->ops->aux_attach_dev(domain, dev);

	if (!ret)
		trace_attach_device_to_domain(dev);

	return ret;
}
EXPORT_SYMBOL_GPL(iommu_aux_attach_device);

void iommu_aux_detach_device(struct iommu_domain *domain, struct device *dev)
{
	if (domain->ops->aux_detach_dev) {
		domain->ops->aux_detach_dev(domain, dev);
		trace_detach_device_from_domain(dev);
	}
}
EXPORT_SYMBOL_GPL(iommu_aux_detach_device);

int iommu_aux_get_pasid(struct iommu_domain *domain, struct device *dev)
{
	int ret = -ENODEV;

	if (domain->ops->aux_get_pasid)
		ret = domain->ops->aux_get_pasid(domain, dev);

	return ret;
}
EXPORT_SYMBOL_GPL(iommu_aux_get_pasid);
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/**
 * iommu_sva_bind_device() - Bind a process address space to a device
 * @dev: the device
 * @mm: the mm to bind, caller must hold a reference to it
 *
 * Create a bond between device and address space, allowing the device to access
 * the mm using the returned PASID. If a bond already exists between @device and
 * @mm, it is returned and an additional reference is taken. Caller must call
 * iommu_sva_unbind_device() to release each reference.
 *
 * iommu_dev_enable_feature(dev, IOMMU_DEV_FEAT_SVA) must be called first, to
 * initialize the required SVA features.
 *
 * On error, returns an ERR_PTR value.
 */
struct iommu_sva *
iommu_sva_bind_device(struct device *dev, struct mm_struct *mm, void *drvdata)
{
	struct iommu_group *group;
	struct iommu_sva *handle = ERR_PTR(-EINVAL);
	const struct iommu_ops *ops = dev->bus->iommu_ops;

	if (!ops || !ops->sva_bind)
		return ERR_PTR(-ENODEV);

	group = iommu_group_get(dev);
	if (!group)
		return ERR_PTR(-ENODEV);

	/* Ensure device count and domain don't change while we're binding */
	mutex_lock(&group->mutex);

	/*
	 * To keep things simple, SVA currently doesn't support IOMMU groups
	 * with more than one device. Existing SVA-capable systems are not
	 * affected by the problems that required IOMMU groups (lack of ACS
	 * isolation, device ID aliasing and other hardware issues).
	 */
	if (iommu_group_device_count(group) != 1)
		goto out_unlock;

	handle = ops->sva_bind(dev, mm, drvdata);

out_unlock:
	mutex_unlock(&group->mutex);
	iommu_group_put(group);

	return handle;
}
EXPORT_SYMBOL_GPL(iommu_sva_bind_device);

/**
 * iommu_sva_unbind_device() - Remove a bond created with iommu_sva_bind_device
 * @handle: the handle returned by iommu_sva_bind_device()
 *
 * Put reference to a bond between device and address space. The device should
 * not be issuing any more transaction for this PASID. All outstanding page
 * requests for this PASID must have been flushed to the IOMMU.
 *
 * Returns 0 on success, or an error value
 */
void iommu_sva_unbind_device(struct iommu_sva *handle)
{
	struct iommu_group *group;
	struct device *dev = handle->dev;
	const struct iommu_ops *ops = dev->bus->iommu_ops;

	if (!ops || !ops->sva_unbind)
		return;

	group = iommu_group_get(dev);
	if (!group)
		return;

	mutex_lock(&group->mutex);
	ops->sva_unbind(handle);
	mutex_unlock(&group->mutex);

	iommu_group_put(group);
}
EXPORT_SYMBOL_GPL(iommu_sva_unbind_device);

int iommu_sva_set_ops(struct iommu_sva *handle,
		      const struct iommu_sva_ops *sva_ops)
{
	if (handle->ops && handle->ops != sva_ops)
		return -EEXIST;

	handle->ops = sva_ops;
	return 0;
}
EXPORT_SYMBOL_GPL(iommu_sva_set_ops);

int iommu_sva_get_pasid(struct iommu_sva *handle)
{
	const struct iommu_ops *ops = handle->dev->bus->iommu_ops;

	if (!ops || !ops->sva_get_pasid)
		return IOMMU_PASID_INVALID;

	return ops->sva_get_pasid(handle);
}
EXPORT_SYMBOL_GPL(iommu_sva_get_pasid);