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path: root/drivers/infiniband/core/umem_odp.c
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Diffstat (limited to 'drivers/infiniband/core/umem_odp.c')
-rw-r--r--drivers/infiniband/core/umem_odp.c271
1 files changed, 106 insertions, 165 deletions
diff --git a/drivers/infiniband/core/umem_odp.c b/drivers/infiniband/core/umem_odp.c
index c48ef6083020..c752ae9fad6c 100644
--- a/drivers/infiniband/core/umem_odp.c
+++ b/drivers/infiniband/core/umem_odp.c
@@ -41,67 +41,72 @@
#include <linux/hugetlb.h>
#include <linux/interval_tree.h>
#include <linux/hmm.h>
+#include <linux/hmm-dma.h>
#include <linux/pagemap.h>
#include <rdma/ib_umem_odp.h>
#include "uverbs.h"
-static inline int ib_init_umem_odp(struct ib_umem_odp *umem_odp,
- const struct mmu_interval_notifier_ops *ops)
+static void ib_init_umem_implicit_odp(struct ib_umem_odp *umem_odp)
{
- int ret;
+ umem_odp->is_implicit_odp = 1;
+ umem_odp->umem.is_odp = 1;
+ mutex_init(&umem_odp->umem_mutex);
+}
+
+static int ib_init_umem_odp(struct ib_umem_odp *umem_odp,
+ const struct mmu_interval_notifier_ops *ops)
+{
+ struct ib_device *dev = umem_odp->umem.ibdev;
+ size_t page_size = 1UL << umem_odp->page_shift;
+ struct hmm_dma_map *map;
+ unsigned long start;
+ unsigned long end;
+ size_t nr_entries;
+ int ret = 0;
umem_odp->umem.is_odp = 1;
mutex_init(&umem_odp->umem_mutex);
- if (!umem_odp->is_implicit_odp) {
- size_t page_size = 1UL << umem_odp->page_shift;
- unsigned long start;
- unsigned long end;
- size_t ndmas, npfns;
-
- start = ALIGN_DOWN(umem_odp->umem.address, page_size);
- if (check_add_overflow(umem_odp->umem.address,
- (unsigned long)umem_odp->umem.length,
- &end))
- return -EOVERFLOW;
- end = ALIGN(end, page_size);
- if (unlikely(end < page_size))
- return -EOVERFLOW;
-
- ndmas = (end - start) >> umem_odp->page_shift;
- if (!ndmas)
- return -EINVAL;
-
- npfns = (end - start) >> PAGE_SHIFT;
- umem_odp->pfn_list = kvcalloc(
- npfns, sizeof(*umem_odp->pfn_list),
- GFP_KERNEL | __GFP_NOWARN);
- if (!umem_odp->pfn_list)
- return -ENOMEM;
-
- umem_odp->dma_list = kvcalloc(
- ndmas, sizeof(*umem_odp->dma_list),
- GFP_KERNEL | __GFP_NOWARN);
- if (!umem_odp->dma_list) {
+ start = ALIGN_DOWN(umem_odp->umem.address, page_size);
+ if (check_add_overflow(umem_odp->umem.address,
+ (unsigned long)umem_odp->umem.length, &end))
+ return -EOVERFLOW;
+ end = ALIGN(end, page_size);
+ if (unlikely(end < page_size))
+ return -EOVERFLOW;
+
+ nr_entries = (end - start) >> PAGE_SHIFT;
+ if (!(nr_entries * PAGE_SIZE / page_size))
+ return -EINVAL;
+
+ map = &umem_odp->map;
+ if (ib_uses_virt_dma(dev)) {
+ map->pfn_list = kvcalloc(nr_entries, sizeof(*map->pfn_list),
+ GFP_KERNEL | __GFP_NOWARN);
+ if (!map->pfn_list)
ret = -ENOMEM;
- goto out_pfn_list;
- }
+ } else
+ ret = hmm_dma_map_alloc(dev->dma_device, map,
+ (end - start) >> PAGE_SHIFT,
+ 1 << umem_odp->page_shift);
+ if (ret)
+ return ret;
- ret = mmu_interval_notifier_insert(&umem_odp->notifier,
- umem_odp->umem.owning_mm,
- start, end - start, ops);
- if (ret)
- goto out_dma_list;
- }
+ ret = mmu_interval_notifier_insert(&umem_odp->notifier,
+ umem_odp->umem.owning_mm, start,
+ end - start, ops);
+ if (ret)
+ goto out_free_map;
return 0;
-out_dma_list:
- kvfree(umem_odp->dma_list);
-out_pfn_list:
- kvfree(umem_odp->pfn_list);
+out_free_map:
+ if (ib_uses_virt_dma(dev))
+ kfree(map->pfn_list);
+ else
+ hmm_dma_map_free(dev->dma_device, map);
return ret;
}
@@ -120,7 +125,6 @@ struct ib_umem_odp *ib_umem_odp_alloc_implicit(struct ib_device *device,
{
struct ib_umem *umem;
struct ib_umem_odp *umem_odp;
- int ret;
if (access & IB_ACCESS_HUGETLB)
return ERR_PTR(-EINVAL);
@@ -132,16 +136,10 @@ struct ib_umem_odp *ib_umem_odp_alloc_implicit(struct ib_device *device,
umem->ibdev = device;
umem->writable = ib_access_writable(access);
umem->owning_mm = current->mm;
- umem_odp->is_implicit_odp = 1;
umem_odp->page_shift = PAGE_SHIFT;
umem_odp->tgid = get_task_pid(current->group_leader, PIDTYPE_PID);
- ret = ib_init_umem_odp(umem_odp, NULL);
- if (ret) {
- put_pid(umem_odp->tgid);
- kfree(umem_odp);
- return ERR_PTR(ret);
- }
+ ib_init_umem_implicit_odp(umem_odp);
return umem_odp;
}
EXPORT_SYMBOL(ib_umem_odp_alloc_implicit);
@@ -262,74 +260,41 @@ err_put_pid:
}
EXPORT_SYMBOL(ib_umem_odp_get);
-void ib_umem_odp_release(struct ib_umem_odp *umem_odp)
+static void ib_umem_odp_free(struct ib_umem_odp *umem_odp)
{
+ struct ib_device *dev = umem_odp->umem.ibdev;
+
/*
* Ensure that no more pages are mapped in the umem.
*
* It is the driver's responsibility to ensure, before calling us,
* that the hardware will not attempt to access the MR any more.
*/
- if (!umem_odp->is_implicit_odp) {
- mutex_lock(&umem_odp->umem_mutex);
- ib_umem_odp_unmap_dma_pages(umem_odp, ib_umem_start(umem_odp),
- ib_umem_end(umem_odp));
- mutex_unlock(&umem_odp->umem_mutex);
- mmu_interval_notifier_remove(&umem_odp->notifier);
- kvfree(umem_odp->dma_list);
- kvfree(umem_odp->pfn_list);
- }
- put_pid(umem_odp->tgid);
- kfree(umem_odp);
+ mutex_lock(&umem_odp->umem_mutex);
+ ib_umem_odp_unmap_dma_pages(umem_odp, ib_umem_start(umem_odp),
+ ib_umem_end(umem_odp));
+ mutex_unlock(&umem_odp->umem_mutex);
+ mmu_interval_notifier_remove(&umem_odp->notifier);
+ if (ib_uses_virt_dma(dev))
+ kfree(umem_odp->map.pfn_list);
+ else
+ hmm_dma_map_free(dev->dma_device, &umem_odp->map);
}
-EXPORT_SYMBOL(ib_umem_odp_release);
-/*
- * Map for DMA and insert a single page into the on-demand paging page tables.
- *
- * @umem: the umem to insert the page to.
- * @dma_index: index in the umem to add the dma to.
- * @page: the page struct to map and add.
- * @access_mask: access permissions needed for this page.
- *
- * The function returns -EFAULT if the DMA mapping operation fails.
- *
- */
-static int ib_umem_odp_map_dma_single_page(
- struct ib_umem_odp *umem_odp,
- unsigned int dma_index,
- struct page *page,
- u64 access_mask)
+void ib_umem_odp_release(struct ib_umem_odp *umem_odp)
{
- struct ib_device *dev = umem_odp->umem.ibdev;
- dma_addr_t *dma_addr = &umem_odp->dma_list[dma_index];
-
- if (*dma_addr) {
- /*
- * If the page is already dma mapped it means it went through
- * a non-invalidating trasition, like read-only to writable.
- * Resync the flags.
- */
- *dma_addr = (*dma_addr & ODP_DMA_ADDR_MASK) | access_mask;
- return 0;
- }
+ if (!umem_odp->is_implicit_odp)
+ ib_umem_odp_free(umem_odp);
- *dma_addr = ib_dma_map_page(dev, page, 0, 1 << umem_odp->page_shift,
- DMA_BIDIRECTIONAL);
- if (ib_dma_mapping_error(dev, *dma_addr)) {
- *dma_addr = 0;
- return -EFAULT;
- }
- umem_odp->npages++;
- *dma_addr |= access_mask;
- return 0;
+ put_pid(umem_odp->tgid);
+ kfree(umem_odp);
}
+EXPORT_SYMBOL(ib_umem_odp_release);
/**
* ib_umem_odp_map_dma_and_lock - DMA map userspace memory in an ODP MR and lock it.
*
* Maps the range passed in the argument to DMA addresses.
- * The DMA addresses of the mapped pages is updated in umem_odp->dma_list.
* Upon success the ODP MR will be locked to let caller complete its device
* page table update.
*
@@ -357,9 +322,6 @@ int ib_umem_odp_map_dma_and_lock(struct ib_umem_odp *umem_odp, u64 user_virt,
struct hmm_range range = {};
unsigned long timeout;
- if (access_mask == 0)
- return -EINVAL;
-
if (user_virt < ib_umem_start(umem_odp) ||
user_virt + bcnt > ib_umem_end(umem_odp))
return -EFAULT;
@@ -385,11 +347,11 @@ int ib_umem_odp_map_dma_and_lock(struct ib_umem_odp *umem_odp, u64 user_virt,
if (fault) {
range.default_flags = HMM_PFN_REQ_FAULT;
- if (access_mask & ODP_WRITE_ALLOWED_BIT)
+ if (access_mask & HMM_PFN_WRITE)
range.default_flags |= HMM_PFN_REQ_WRITE;
}
- range.hmm_pfns = &(umem_odp->pfn_list[pfn_start_idx]);
+ range.hmm_pfns = &(umem_odp->map.pfn_list[pfn_start_idx]);
timeout = jiffies + msecs_to_jiffies(HMM_RANGE_DEFAULT_TIMEOUT);
retry:
@@ -417,22 +379,17 @@ retry:
for (pfn_index = 0; pfn_index < num_pfns;
pfn_index += 1 << (page_shift - PAGE_SHIFT), dma_index++) {
- if (fault) {
- /*
- * Since we asked for hmm_range_fault() to populate
- * pages it shouldn't return an error entry on success.
- */
- WARN_ON(range.hmm_pfns[pfn_index] & HMM_PFN_ERROR);
- WARN_ON(!(range.hmm_pfns[pfn_index] & HMM_PFN_VALID));
- } else {
- if (!(range.hmm_pfns[pfn_index] & HMM_PFN_VALID)) {
- WARN_ON(umem_odp->dma_list[dma_index]);
- continue;
- }
- access_mask = ODP_READ_ALLOWED_BIT;
- if (range.hmm_pfns[pfn_index] & HMM_PFN_WRITE)
- access_mask |= ODP_WRITE_ALLOWED_BIT;
- }
+ /*
+ * Since we asked for hmm_range_fault() to populate
+ * pages it shouldn't return an error entry on success.
+ */
+ WARN_ON(fault && range.hmm_pfns[pfn_index] & HMM_PFN_ERROR);
+ WARN_ON(fault && !(range.hmm_pfns[pfn_index] & HMM_PFN_VALID));
+ if (!(range.hmm_pfns[pfn_index] & HMM_PFN_VALID))
+ continue;
+
+ if (range.hmm_pfns[pfn_index] & HMM_PFN_DMA_MAPPED)
+ continue;
hmm_order = hmm_pfn_to_map_order(range.hmm_pfns[pfn_index]);
/* If a hugepage was detected and ODP wasn't set for, the umem
@@ -445,15 +402,6 @@ retry:
__func__, hmm_order, page_shift);
break;
}
-
- ret = ib_umem_odp_map_dma_single_page(
- umem_odp, dma_index, hmm_pfn_to_page(range.hmm_pfns[pfn_index]),
- access_mask);
- if (ret < 0) {
- ibdev_dbg(umem_odp->umem.ibdev,
- "ib_umem_odp_map_dma_single_page failed with error %d\n", ret);
- break;
- }
}
/* upon success lock should stay on hold for the callee */
if (!ret)
@@ -473,45 +421,38 @@ EXPORT_SYMBOL(ib_umem_odp_map_dma_and_lock);
void ib_umem_odp_unmap_dma_pages(struct ib_umem_odp *umem_odp, u64 virt,
u64 bound)
{
- dma_addr_t dma_addr;
- dma_addr_t dma;
- int idx;
- u64 addr;
struct ib_device *dev = umem_odp->umem.ibdev;
+ u64 addr;
lockdep_assert_held(&umem_odp->umem_mutex);
virt = max_t(u64, virt, ib_umem_start(umem_odp));
bound = min_t(u64, bound, ib_umem_end(umem_odp));
for (addr = virt; addr < bound; addr += BIT(umem_odp->page_shift)) {
- idx = (addr - ib_umem_start(umem_odp)) >> umem_odp->page_shift;
- dma = umem_odp->dma_list[idx];
-
- /* The access flags guaranteed a valid DMA address in case was NULL */
- if (dma) {
- unsigned long pfn_idx = (addr - ib_umem_start(umem_odp)) >> PAGE_SHIFT;
- struct page *page = hmm_pfn_to_page(umem_odp->pfn_list[pfn_idx]);
-
- dma_addr = dma & ODP_DMA_ADDR_MASK;
- ib_dma_unmap_page(dev, dma_addr,
- BIT(umem_odp->page_shift),
- DMA_BIDIRECTIONAL);
- if (dma & ODP_WRITE_ALLOWED_BIT) {
- struct page *head_page = compound_head(page);
- /*
- * set_page_dirty prefers being called with
- * the page lock. However, MMU notifiers are
- * called sometimes with and sometimes without
- * the lock. We rely on the umem_mutex instead
- * to prevent other mmu notifiers from
- * continuing and allowing the page mapping to
- * be removed.
- */
- set_page_dirty(head_page);
- }
- umem_odp->dma_list[idx] = 0;
- umem_odp->npages--;
+ u64 offset = addr - ib_umem_start(umem_odp);
+ size_t idx = offset >> umem_odp->page_shift;
+ unsigned long pfn = umem_odp->map.pfn_list[idx];
+
+ if (!hmm_dma_unmap_pfn(dev->dma_device, &umem_odp->map, idx))
+ goto clear;
+
+ if (pfn & HMM_PFN_WRITE) {
+ struct page *page = hmm_pfn_to_page(pfn);
+ struct page *head_page = compound_head(page);
+ /*
+ * set_page_dirty prefers being called with
+ * the page lock. However, MMU notifiers are
+ * called sometimes with and sometimes without
+ * the lock. We rely on the umem_mutex instead
+ * to prevent other mmu notifiers from
+ * continuing and allowing the page mapping to
+ * be removed.
+ */
+ set_page_dirty(head_page);
}
+ umem_odp->npages--;
+clear:
+ umem_odp->map.pfn_list[idx] &= ~HMM_PFN_FLAGS;
}
}
EXPORT_SYMBOL(ib_umem_odp_unmap_dma_pages);