1 // SPDX-License-Identifier: GPL-2.0-only
4 * Phillip Lougher <phillip@squashfs.org.uk>
9 #include <linux/kernel.h>
10 #include <linux/slab.h>
11 #include <linux/string.h>
12 #include <linux/pagemap.h>
13 #include <linux/mutex.h>
15 #include "squashfs_fs.h"
16 #include "squashfs_fs_sb.h"
17 #include "squashfs_fs_i.h"
19 #include "page_actor.h"
21 static int squashfs_read_cache(struct page *target_page, u64 block, int bsize,
22 int pages, struct page **page, int bytes);
24 /* Read separately compressed datablock directly into page cache */
25 int squashfs_readpage_block(struct page *target_page, u64 block, int bsize,
29 struct inode *inode = target_page->mapping->host;
30 struct squashfs_sb_info *msblk = inode->i_sb->s_fs_info;
32 int file_end = (i_size_read(inode) - 1) >> PAGE_SHIFT;
33 int mask = (1 << (msblk->block_log - PAGE_SHIFT)) - 1;
34 int start_index = target_page->index & ~mask;
35 int end_index = start_index | mask;
36 int i, n, pages, missing_pages, bytes, res = -ENOMEM;
38 struct squashfs_page_actor *actor;
41 if (end_index > file_end)
44 pages = end_index - start_index + 1;
46 page = kmalloc_array(pages, sizeof(void *), GFP_KERNEL);
51 * Create a "page actor" which will kmap and kunmap the
52 * page cache pages appropriately within the decompressor
54 actor = squashfs_page_actor_init_special(page, pages, 0);
58 /* Try to grab all the pages covered by the Squashfs block */
59 for (missing_pages = 0, i = 0, n = start_index; i < pages; i++, n++) {
60 page[i] = (n == target_page->index) ? target_page :
61 grab_cache_page_nowait(target_page->mapping, n);
63 if (page[i] == NULL) {
68 if (PageUptodate(page[i])) {
78 * Couldn't get one or more pages, this page has either
79 * been VM reclaimed, but others are still in the page cache
80 * and uptodate, or we're racing with another thread in
81 * squashfs_readpage also trying to grab them. Fall back to
82 * using an intermediate buffer.
84 res = squashfs_read_cache(target_page, block, bsize, pages,
92 /* Decompress directly into the page cache buffers */
93 res = squashfs_read_data(inode->i_sb, block, bsize, NULL, actor);
97 if (res != expected) {
102 /* Last page may have trailing bytes not filled */
103 bytes = res % PAGE_SIZE;
105 pageaddr = kmap_atomic(page[pages - 1]);
106 memset(pageaddr + bytes, 0, PAGE_SIZE - bytes);
107 kunmap_atomic(pageaddr);
110 /* Mark pages as uptodate, unlock and release */
111 for (i = 0; i < pages; i++) {
112 flush_dcache_page(page[i]);
113 SetPageUptodate(page[i]);
114 unlock_page(page[i]);
115 if (page[i] != target_page)
125 /* Decompression failed, mark pages as errored. Target_page is
126 * dealt with by the caller
128 for (i = 0; i < pages; i++) {
129 if (page[i] == NULL || page[i] == target_page)
131 flush_dcache_page(page[i]);
132 SetPageError(page[i]);
133 unlock_page(page[i]);
144 static int squashfs_read_cache(struct page *target_page, u64 block, int bsize,
145 int pages, struct page **page, int bytes)
147 struct inode *i = target_page->mapping->host;
148 struct squashfs_cache_entry *buffer = squashfs_get_datablock(i->i_sb,
150 int res = buffer->error, n, offset = 0;
153 ERROR("Unable to read page, block %llx, size %x\n", block,
158 for (n = 0; n < pages && bytes > 0; n++,
159 bytes -= PAGE_SIZE, offset += PAGE_SIZE) {
160 int avail = min_t(int, bytes, PAGE_SIZE);
165 squashfs_fill_page(page[n], buffer, offset, avail);
166 unlock_page(page[n]);
167 if (page[n] != target_page)
172 squashfs_cache_put(buffer);