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synced 2026-05-22 01:26:30 -04:00
iommufd/access: Bypass access->ops->unmap for internal use
The access object has been used externally by VFIO mdev devices, allowing them to pin/unpin physical pages (via needs_pin_pages). Meanwhile, a racy unmap can occur in this case, so these devices usually implement an unmap handler, invoked by iommufd_access_notify_unmap(). The new HW queue object will need the same pin/unpin feature, although it (unlike the mdev case) wants to reject any unmap attempt, during its life cycle. Instead, it would not implement an unmap handler. Thus, bypass any access->ops->unmap access call when the access is marked as internal. Also, an area being pinned by an internal access should reject any unmap request. This cannot be done inside iommufd_access_notify_unmap() as it's a per-iopt action. Add a "num_locks" counter in the struct iopt_area, set that in iopt_area_add_access() when the caller is an internal access. Link: https://patch.msgid.link/r/6df9a43febf79c0379091ec59747276ce9d2493b.1752126748.git.nicolinc@nvidia.com Suggested-by: Jason Gunthorpe <jgg@nvidia.com> Reviewed-by: Pranjal Shrivastava <praan@google.com> Reviewed-by: Jason Gunthorpe <jgg@nvidia.com> Reviewed-by: Lu Baolu <baolu.lu@linux.intel.com> Reviewed-by: Kevin Tian <kevin.tian@intel.com> Signed-off-by: Nicolin Chen <nicolinc@nvidia.com> Signed-off-by: Jason Gunthorpe <jgg@nvidia.com>
This commit is contained in:
committed by
Jason Gunthorpe
parent
1c26c3bbde
commit
27b77ea5fe
@@ -1048,7 +1048,7 @@ static int iommufd_access_change_ioas(struct iommufd_access *access,
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}
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if (cur_ioas) {
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if (access->ops->unmap) {
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if (!iommufd_access_is_internal(access) && access->ops->unmap) {
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mutex_unlock(&access->ioas_lock);
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access->ops->unmap(access->data, 0, ULONG_MAX);
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mutex_lock(&access->ioas_lock);
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@@ -1255,7 +1255,8 @@ void iommufd_access_notify_unmap(struct io_pagetable *iopt, unsigned long iova,
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xa_lock(&ioas->iopt.access_list);
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xa_for_each(&ioas->iopt.access_list, index, access) {
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if (!iommufd_lock_obj(&access->obj))
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if (!iommufd_lock_obj(&access->obj) ||
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iommufd_access_is_internal(access))
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continue;
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xa_unlock(&ioas->iopt.access_list);
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@@ -1279,6 +1280,7 @@ void iommufd_access_notify_unmap(struct io_pagetable *iopt, unsigned long iova,
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void iommufd_access_unpin_pages(struct iommufd_access *access,
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unsigned long iova, unsigned long length)
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{
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bool internal = iommufd_access_is_internal(access);
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struct iopt_area_contig_iter iter;
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struct io_pagetable *iopt;
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unsigned long last_iova;
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@@ -1305,7 +1307,8 @@ void iommufd_access_unpin_pages(struct iommufd_access *access,
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area, iopt_area_iova_to_index(area, iter.cur_iova),
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iopt_area_iova_to_index(
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area,
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min(last_iova, iopt_area_last_iova(area))));
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min(last_iova, iopt_area_last_iova(area))),
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internal);
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WARN_ON(!iopt_area_contig_done(&iter));
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up_read(&iopt->iova_rwsem);
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mutex_unlock(&access->ioas_lock);
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@@ -1354,6 +1357,7 @@ int iommufd_access_pin_pages(struct iommufd_access *access, unsigned long iova,
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unsigned long length, struct page **out_pages,
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unsigned int flags)
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{
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bool internal = iommufd_access_is_internal(access);
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struct iopt_area_contig_iter iter;
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struct io_pagetable *iopt;
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unsigned long last_iova;
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@@ -1362,7 +1366,8 @@ int iommufd_access_pin_pages(struct iommufd_access *access, unsigned long iova,
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/* Driver's ops don't support pin_pages */
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if (IS_ENABLED(CONFIG_IOMMUFD_TEST) &&
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WARN_ON(access->iova_alignment != PAGE_SIZE || !access->ops->unmap))
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WARN_ON(access->iova_alignment != PAGE_SIZE ||
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(!internal && !access->ops->unmap)))
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return -EINVAL;
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if (!length)
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@@ -1396,7 +1401,7 @@ int iommufd_access_pin_pages(struct iommufd_access *access, unsigned long iova,
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}
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rc = iopt_area_add_access(area, index, last_index, out_pages,
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flags);
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flags, internal);
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if (rc)
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goto err_remove;
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out_pages += last_index - index + 1;
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@@ -1419,7 +1424,8 @@ int iommufd_access_pin_pages(struct iommufd_access *access, unsigned long iova,
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iopt_area_iova_to_index(area, iter.cur_iova),
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iopt_area_iova_to_index(
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area, min(last_iova,
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iopt_area_last_iova(area))));
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iopt_area_last_iova(area))),
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internal);
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}
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up_read(&iopt->iova_rwsem);
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mutex_unlock(&access->ioas_lock);
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@@ -719,6 +719,12 @@ static int iopt_unmap_iova_range(struct io_pagetable *iopt, unsigned long start,
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goto out_unlock_iova;
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}
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/* The area is locked by an object that has not been destroyed */
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if (area->num_locks) {
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rc = -EBUSY;
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goto out_unlock_iova;
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}
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if (area_first < start || area_last > last) {
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rc = -ENOENT;
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goto out_unlock_iova;
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@@ -48,6 +48,7 @@ struct iopt_area {
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int iommu_prot;
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bool prevent_access : 1;
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unsigned int num_accesses;
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unsigned int num_locks;
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};
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struct iopt_allowed {
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@@ -238,9 +239,9 @@ void iopt_pages_unfill_xarray(struct iopt_pages *pages, unsigned long start,
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int iopt_area_add_access(struct iopt_area *area, unsigned long start,
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unsigned long last, struct page **out_pages,
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unsigned int flags);
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unsigned int flags, bool lock_area);
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void iopt_area_remove_access(struct iopt_area *area, unsigned long start,
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unsigned long last);
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unsigned long last, bool unlock_area);
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int iopt_pages_rw_access(struct iopt_pages *pages, unsigned long start_byte,
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void *data, unsigned long length, unsigned int flags);
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@@ -2103,6 +2103,7 @@ iopt_pages_get_exact_access(struct iopt_pages *pages, unsigned long index,
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* @last_index: Inclusive last page index
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* @out_pages: Output list of struct page's representing the PFNs
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* @flags: IOMMUFD_ACCESS_RW_* flags
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* @lock_area: Fail userspace munmap on this area
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*
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* Record that an in-kernel access will be accessing the pages, ensure they are
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* pinned, and return the PFNs as a simple list of 'struct page *'.
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@@ -2111,7 +2112,7 @@ iopt_pages_get_exact_access(struct iopt_pages *pages, unsigned long index,
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*/
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int iopt_area_add_access(struct iopt_area *area, unsigned long start_index,
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unsigned long last_index, struct page **out_pages,
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unsigned int flags)
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unsigned int flags, bool lock_area)
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{
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struct iopt_pages *pages = area->pages;
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struct iopt_pages_access *access;
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@@ -2124,6 +2125,8 @@ int iopt_area_add_access(struct iopt_area *area, unsigned long start_index,
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access = iopt_pages_get_exact_access(pages, start_index, last_index);
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if (access) {
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area->num_accesses++;
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if (lock_area)
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area->num_locks++;
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access->users++;
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iopt_pages_fill_from_xarray(pages, start_index, last_index,
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out_pages);
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@@ -2145,6 +2148,8 @@ int iopt_area_add_access(struct iopt_area *area, unsigned long start_index,
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access->node.last = last_index;
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access->users = 1;
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area->num_accesses++;
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if (lock_area)
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area->num_locks++;
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interval_tree_insert(&access->node, &pages->access_itree);
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mutex_unlock(&pages->mutex);
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return 0;
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@@ -2161,12 +2166,13 @@ int iopt_area_add_access(struct iopt_area *area, unsigned long start_index,
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* @area: The source of PFNs
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* @start_index: First page index
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* @last_index: Inclusive last page index
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* @unlock_area: Must match the matching iopt_area_add_access()'s lock_area
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*
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* Undo iopt_area_add_access() and unpin the pages if necessary. The caller
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* must stop using the PFNs before calling this.
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*/
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void iopt_area_remove_access(struct iopt_area *area, unsigned long start_index,
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unsigned long last_index)
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unsigned long last_index, bool unlock_area)
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{
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struct iopt_pages *pages = area->pages;
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struct iopt_pages_access *access;
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@@ -2177,6 +2183,10 @@ void iopt_area_remove_access(struct iopt_area *area, unsigned long start_index,
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goto out_unlock;
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WARN_ON(area->num_accesses == 0 || access->users == 0);
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if (unlock_area) {
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WARN_ON(area->num_locks == 0);
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area->num_locks--;
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}
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area->num_accesses--;
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access->users--;
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if (access->users)
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