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btrfs: factor out allocating an array of pages
Several functions currently populate an array of page pointers one allocated page at a time. Factor out the common code so as to allow improvements to all of the sites at once. Reviewed-by: Nikolay Borisov <nborisov@suse.com> Signed-off-by: Sweet Tea Dorminy <sweettea-kernel@dorminy.me> Reviewed-by: David Sterba <dsterba@suse.com> Signed-off-by: David Sterba <dsterba@suse.com>
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0d031dc4aa
commit
dd137dd1f2
@ -1552,11 +1552,9 @@ static int btrfsic_read_block(struct btrfsic_state *state,
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return -ENOMEM;
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block_ctx->datav = block_ctx->mem_to_free;
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block_ctx->pagev = (struct page **)(block_ctx->datav + num_pages);
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for (i = 0; i < num_pages; i++) {
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block_ctx->pagev[i] = alloc_page(GFP_NOFS);
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if (!block_ctx->pagev[i])
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return -1;
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}
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ret = btrfs_alloc_page_array(num_pages, block_ctx->pagev);
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if (ret)
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return ret;
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dev_bytenr = block_ctx->dev_bytenr;
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for (i = 0; i < num_pages;) {
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@ -809,8 +809,6 @@ blk_status_t btrfs_submit_compressed_read(struct inode *inode, struct bio *bio,
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struct extent_map_tree *em_tree;
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struct compressed_bio *cb;
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unsigned int compressed_len;
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unsigned int nr_pages;
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unsigned int pg_index;
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struct bio *comp_bio = NULL;
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const u64 disk_bytenr = bio->bi_iter.bi_sector << SECTOR_SHIFT;
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u64 cur_disk_byte = disk_bytenr;
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@ -820,7 +818,8 @@ blk_status_t btrfs_submit_compressed_read(struct inode *inode, struct bio *bio,
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u64 em_start;
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struct extent_map *em;
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blk_status_t ret;
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int faili = 0;
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int ret2;
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int i;
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u8 *sums;
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em_tree = &BTRFS_I(inode)->extent_tree;
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@ -863,24 +862,18 @@ blk_status_t btrfs_submit_compressed_read(struct inode *inode, struct bio *bio,
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cb->compress_type = extent_compress_type(bio_flags);
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cb->orig_bio = bio;
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nr_pages = DIV_ROUND_UP(compressed_len, PAGE_SIZE);
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cb->compressed_pages = kcalloc(nr_pages, sizeof(struct page *),
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GFP_NOFS);
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cb->nr_pages = DIV_ROUND_UP(compressed_len, PAGE_SIZE);
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cb->compressed_pages = kcalloc(cb->nr_pages, sizeof(struct page *), GFP_NOFS);
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if (!cb->compressed_pages) {
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ret = BLK_STS_RESOURCE;
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goto fail1;
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goto fail;
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}
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for (pg_index = 0; pg_index < nr_pages; pg_index++) {
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cb->compressed_pages[pg_index] = alloc_page(GFP_NOFS);
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if (!cb->compressed_pages[pg_index]) {
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faili = pg_index - 1;
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ret = BLK_STS_RESOURCE;
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goto fail2;
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}
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ret2 = btrfs_alloc_page_array(cb->nr_pages, cb->compressed_pages);
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if (ret2) {
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ret = BLK_STS_RESOURCE;
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goto fail;
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}
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faili = nr_pages - 1;
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cb->nr_pages = nr_pages;
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add_ra_bio_pages(inode, em_start + em_len, cb);
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@ -957,14 +950,15 @@ blk_status_t btrfs_submit_compressed_read(struct inode *inode, struct bio *bio,
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}
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return BLK_STS_OK;
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fail2:
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while (faili >= 0) {
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__free_page(cb->compressed_pages[faili]);
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faili--;
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fail:
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if (cb->compressed_pages) {
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for (i = 0; i < cb->nr_pages; i++) {
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if (cb->compressed_pages[i])
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__free_page(cb->compressed_pages[i]);
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}
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}
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kfree(cb->compressed_pages);
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fail1:
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kfree(cb);
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out:
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free_extent_map(em);
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@ -3133,6 +3133,34 @@ readpage_ok:
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bio_put(bio);
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}
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/**
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* Populate every free slot in a provided array with pages.
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*
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* @nr_pages: number of pages to allocate
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* @page_array: the array to fill with pages; any existing non-null entries in
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* the array will be skipped
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*
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* Return: 0 if all pages were able to be allocated;
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* -ENOMEM otherwise, and the caller is responsible for freeing all
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* non-null page pointers in the array.
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*/
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int btrfs_alloc_page_array(unsigned int nr_pages, struct page **page_array)
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{
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int i;
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for (i = 0; i < nr_pages; i++) {
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struct page *page;
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if (page_array[i])
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continue;
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page = alloc_page(GFP_NOFS);
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if (!page)
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return -ENOMEM;
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page_array[i] = page;
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}
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return 0;
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}
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/*
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* Initialize the members up to but not including 'bio'. Use after allocating a
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* new bio by bio_alloc_bioset as it does not initialize the bytes outside of
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@ -5912,9 +5940,9 @@ __alloc_extent_buffer(struct btrfs_fs_info *fs_info, u64 start,
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struct extent_buffer *btrfs_clone_extent_buffer(const struct extent_buffer *src)
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{
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int i;
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struct page *p;
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struct extent_buffer *new;
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int num_pages = num_extent_pages(src);
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int ret;
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new = __alloc_extent_buffer(src->fs_info, src->start, src->len);
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if (new == NULL)
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@ -5927,22 +5955,23 @@ struct extent_buffer *btrfs_clone_extent_buffer(const struct extent_buffer *src)
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*/
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set_bit(EXTENT_BUFFER_UNMAPPED, &new->bflags);
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memset(new->pages, 0, sizeof(*new->pages) * num_pages);
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ret = btrfs_alloc_page_array(num_pages, new->pages);
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if (ret) {
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btrfs_release_extent_buffer(new);
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return NULL;
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}
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for (i = 0; i < num_pages; i++) {
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int ret;
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struct page *p = new->pages[i];
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p = alloc_page(GFP_NOFS);
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if (!p) {
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btrfs_release_extent_buffer(new);
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return NULL;
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}
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ret = attach_extent_buffer_page(new, p, NULL);
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if (ret < 0) {
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put_page(p);
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btrfs_release_extent_buffer(new);
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return NULL;
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}
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WARN_ON(PageDirty(p));
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new->pages[i] = p;
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copy_page(page_address(p), page_address(src->pages[i]));
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}
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set_extent_buffer_uptodate(new);
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@ -5956,31 +5985,36 @@ struct extent_buffer *__alloc_dummy_extent_buffer(struct btrfs_fs_info *fs_info,
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struct extent_buffer *eb;
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int num_pages;
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int i;
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int ret;
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eb = __alloc_extent_buffer(fs_info, start, len);
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if (!eb)
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return NULL;
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num_pages = num_extent_pages(eb);
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for (i = 0; i < num_pages; i++) {
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int ret;
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ret = btrfs_alloc_page_array(num_pages, eb->pages);
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if (ret)
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goto err;
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eb->pages[i] = alloc_page(GFP_NOFS);
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if (!eb->pages[i])
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goto err;
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ret = attach_extent_buffer_page(eb, eb->pages[i], NULL);
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for (i = 0; i < num_pages; i++) {
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struct page *p = eb->pages[i];
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ret = attach_extent_buffer_page(eb, p, NULL);
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if (ret < 0)
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goto err;
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}
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set_extent_buffer_uptodate(eb);
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btrfs_set_header_nritems(eb, 0);
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set_bit(EXTENT_BUFFER_UNMAPPED, &eb->bflags);
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return eb;
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err:
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for (; i > 0; i--) {
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detach_extent_buffer_page(eb, eb->pages[i - 1]);
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__free_page(eb->pages[i - 1]);
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for (i = 0; i < num_pages; i++) {
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if (eb->pages[i]) {
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detach_extent_buffer_page(eb, eb->pages[i]);
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__free_page(eb->pages[i]);
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}
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}
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__free_extent_buffer(eb);
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return NULL;
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@ -277,6 +277,8 @@ void extent_range_redirty_for_io(struct inode *inode, u64 start, u64 end);
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void extent_clear_unlock_delalloc(struct btrfs_inode *inode, u64 start, u64 end,
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struct page *locked_page,
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u32 bits_to_clear, unsigned long page_ops);
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int btrfs_alloc_page_array(unsigned int nr_pages, struct page **page_array);
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struct bio *btrfs_bio_alloc(unsigned int nr_iovecs);
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struct bio *btrfs_bio_clone(struct bio *bio);
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struct bio *btrfs_bio_clone_partial(struct bio *orig, u64 offset, u64 size);
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@ -10461,13 +10461,11 @@ static ssize_t btrfs_encoded_read_regular(struct kiocb *iocb,
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pages = kcalloc(nr_pages, sizeof(struct page *), GFP_NOFS);
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if (!pages)
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return -ENOMEM;
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for (i = 0; i < nr_pages; i++) {
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pages[i] = alloc_page(GFP_NOFS);
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if (!pages[i]) {
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ret = -ENOMEM;
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goto out;
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ret = btrfs_alloc_page_array(nr_pages, pages);
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if (ret) {
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ret = -ENOMEM;
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goto out;
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}
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}
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ret = btrfs_encoded_read_regular_fill_pages(inode, start, disk_bytenr,
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disk_io_size, pages);
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@ -1026,37 +1026,16 @@ static struct btrfs_raid_bio *alloc_rbio(struct btrfs_fs_info *fs_info,
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/* allocate pages for all the stripes in the bio, including parity */
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static int alloc_rbio_pages(struct btrfs_raid_bio *rbio)
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{
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int i;
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struct page *page;
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for (i = 0; i < rbio->nr_pages; i++) {
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if (rbio->stripe_pages[i])
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continue;
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page = alloc_page(GFP_NOFS);
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if (!page)
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return -ENOMEM;
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rbio->stripe_pages[i] = page;
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}
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return 0;
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return btrfs_alloc_page_array(rbio->nr_pages, rbio->stripe_pages);
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}
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/* only allocate pages for p/q stripes */
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static int alloc_rbio_parity_pages(struct btrfs_raid_bio *rbio)
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{
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int i;
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struct page *page;
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int data_pages = rbio_stripe_page_index(rbio, rbio->nr_data, 0);
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i = rbio_stripe_page_index(rbio, rbio->nr_data, 0);
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for (; i < rbio->nr_pages; i++) {
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if (rbio->stripe_pages[i])
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continue;
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page = alloc_page(GFP_NOFS);
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if (!page)
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return -ENOMEM;
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rbio->stripe_pages[i] = page;
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}
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return 0;
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return btrfs_alloc_page_array(rbio->nr_pages - data_pages,
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rbio->stripe_pages + data_pages);
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}
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/*
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