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abf08576af
Convert to struct mnt_idmap.
Last cycle we merged the necessary infrastructure in
256c8aed2b
("fs: introduce dedicated idmap type for mounts").
This is just the conversion to struct mnt_idmap.
Currently we still pass around the plain namespace that was attached to a
mount. This is in general pretty convenient but it makes it easy to
conflate namespaces that are relevant on the filesystem with namespaces
that are relevent on the mount level. Especially for non-vfs developers
without detailed knowledge in this area this can be a potential source for
bugs.
Once the conversion to struct mnt_idmap is done all helpers down to the
really low-level helpers will take a struct mnt_idmap argument instead of
two namespace arguments. This way it becomes impossible to conflate the two
eliminating the possibility of any bugs. All of the vfs and all filesystems
only operate on struct mnt_idmap.
Acked-by: Dave Chinner <dchinner@redhat.com>
Reviewed-by: Christoph Hellwig <hch@lst.de>
Signed-off-by: Christian Brauner (Microsoft) <brauner@kernel.org>
448 lines
12 KiB
C
448 lines
12 KiB
C
// SPDX-License-Identifier: GPL-2.0-or-later
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/* FS-Cache interface to CacheFiles
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*
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* Copyright (C) 2021 Red Hat, Inc. All Rights Reserved.
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* Written by David Howells (dhowells@redhat.com)
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*/
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#include <linux/slab.h>
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#include <linux/mount.h>
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#include <linux/xattr.h>
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#include <linux/file.h>
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#include <linux/falloc.h>
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#include <trace/events/fscache.h>
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#include "internal.h"
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static atomic_t cachefiles_object_debug_id;
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/*
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* Allocate a cache object record.
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*/
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static
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struct cachefiles_object *cachefiles_alloc_object(struct fscache_cookie *cookie)
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{
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struct fscache_volume *vcookie = cookie->volume;
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struct cachefiles_volume *volume = vcookie->cache_priv;
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struct cachefiles_object *object;
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_enter("{%s},%x,", vcookie->key, cookie->debug_id);
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object = kmem_cache_zalloc(cachefiles_object_jar, GFP_KERNEL);
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if (!object)
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return NULL;
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refcount_set(&object->ref, 1);
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spin_lock_init(&object->lock);
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INIT_LIST_HEAD(&object->cache_link);
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object->volume = volume;
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object->debug_id = atomic_inc_return(&cachefiles_object_debug_id);
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object->cookie = fscache_get_cookie(cookie, fscache_cookie_get_attach_object);
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fscache_count_object(vcookie->cache);
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trace_cachefiles_ref(object->debug_id, cookie->debug_id, 1,
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cachefiles_obj_new);
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return object;
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}
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/*
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* Note that an object has been seen.
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*/
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void cachefiles_see_object(struct cachefiles_object *object,
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enum cachefiles_obj_ref_trace why)
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{
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trace_cachefiles_ref(object->debug_id, object->cookie->debug_id,
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refcount_read(&object->ref), why);
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}
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/*
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* Increment the usage count on an object;
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*/
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struct cachefiles_object *cachefiles_grab_object(struct cachefiles_object *object,
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enum cachefiles_obj_ref_trace why)
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{
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int r;
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__refcount_inc(&object->ref, &r);
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trace_cachefiles_ref(object->debug_id, object->cookie->debug_id, r, why);
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return object;
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}
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/*
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* dispose of a reference to an object
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*/
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void cachefiles_put_object(struct cachefiles_object *object,
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enum cachefiles_obj_ref_trace why)
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{
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unsigned int object_debug_id = object->debug_id;
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unsigned int cookie_debug_id = object->cookie->debug_id;
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struct fscache_cache *cache;
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bool done;
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int r;
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done = __refcount_dec_and_test(&object->ref, &r);
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trace_cachefiles_ref(object_debug_id, cookie_debug_id, r, why);
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if (done) {
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_debug("- kill object OBJ%x", object_debug_id);
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ASSERTCMP(object->file, ==, NULL);
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kfree(object->d_name);
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cache = object->volume->cache->cache;
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fscache_put_cookie(object->cookie, fscache_cookie_put_object);
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object->cookie = NULL;
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kmem_cache_free(cachefiles_object_jar, object);
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fscache_uncount_object(cache);
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}
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_leave("");
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}
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/*
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* Adjust the size of a cache file if necessary to match the DIO size. We keep
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* the EOF marker a multiple of DIO blocks so that we don't fall back to doing
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* non-DIO for a partial block straddling the EOF, but we also have to be
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* careful of someone expanding the file and accidentally accreting the
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* padding.
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*/
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static int cachefiles_adjust_size(struct cachefiles_object *object)
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{
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struct iattr newattrs;
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struct file *file = object->file;
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uint64_t ni_size;
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loff_t oi_size;
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int ret;
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ni_size = object->cookie->object_size;
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ni_size = round_up(ni_size, CACHEFILES_DIO_BLOCK_SIZE);
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_enter("{OBJ%x},[%llu]",
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object->debug_id, (unsigned long long) ni_size);
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if (!file)
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return -ENOBUFS;
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oi_size = i_size_read(file_inode(file));
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if (oi_size == ni_size)
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return 0;
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inode_lock(file_inode(file));
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/* if there's an extension to a partial page at the end of the backing
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* file, we need to discard the partial page so that we pick up new
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* data after it */
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if (oi_size & ~PAGE_MASK && ni_size > oi_size) {
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_debug("discard tail %llx", oi_size);
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newattrs.ia_valid = ATTR_SIZE;
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newattrs.ia_size = oi_size & PAGE_MASK;
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ret = cachefiles_inject_remove_error();
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if (ret == 0)
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ret = notify_change(&nop_mnt_idmap, file->f_path.dentry,
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&newattrs, NULL);
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if (ret < 0)
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goto truncate_failed;
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}
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newattrs.ia_valid = ATTR_SIZE;
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newattrs.ia_size = ni_size;
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ret = cachefiles_inject_write_error();
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if (ret == 0)
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ret = notify_change(&nop_mnt_idmap, file->f_path.dentry,
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&newattrs, NULL);
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truncate_failed:
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inode_unlock(file_inode(file));
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if (ret < 0)
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trace_cachefiles_io_error(NULL, file_inode(file), ret,
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cachefiles_trace_notify_change_error);
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if (ret == -EIO) {
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cachefiles_io_error_obj(object, "Size set failed");
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ret = -ENOBUFS;
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}
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_leave(" = %d", ret);
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return ret;
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}
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/*
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* Attempt to look up the nominated node in this cache
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*/
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static bool cachefiles_lookup_cookie(struct fscache_cookie *cookie)
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{
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struct cachefiles_object *object;
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struct cachefiles_cache *cache = cookie->volume->cache->cache_priv;
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const struct cred *saved_cred;
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bool success;
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object = cachefiles_alloc_object(cookie);
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if (!object)
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goto fail;
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_enter("{OBJ%x}", object->debug_id);
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if (!cachefiles_cook_key(object))
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goto fail_put;
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cookie->cache_priv = object;
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cachefiles_begin_secure(cache, &saved_cred);
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success = cachefiles_look_up_object(object);
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if (!success)
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goto fail_withdraw;
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cachefiles_see_object(object, cachefiles_obj_see_lookup_cookie);
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spin_lock(&cache->object_list_lock);
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list_add(&object->cache_link, &cache->object_list);
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spin_unlock(&cache->object_list_lock);
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cachefiles_adjust_size(object);
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cachefiles_end_secure(cache, saved_cred);
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_leave(" = t");
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return true;
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fail_withdraw:
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cachefiles_end_secure(cache, saved_cred);
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cachefiles_see_object(object, cachefiles_obj_see_lookup_failed);
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fscache_caching_failed(cookie);
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_debug("failed c=%08x o=%08x", cookie->debug_id, object->debug_id);
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/* The caller holds an access count on the cookie, so we need them to
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* drop it before we can withdraw the object.
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*/
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return false;
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fail_put:
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cachefiles_put_object(object, cachefiles_obj_put_alloc_fail);
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fail:
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return false;
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}
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/*
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* Shorten the backing object to discard any dirty data and free up
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* any unused granules.
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*/
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static bool cachefiles_shorten_object(struct cachefiles_object *object,
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struct file *file, loff_t new_size)
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{
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struct cachefiles_cache *cache = object->volume->cache;
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struct inode *inode = file_inode(file);
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loff_t i_size, dio_size;
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int ret;
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dio_size = round_up(new_size, CACHEFILES_DIO_BLOCK_SIZE);
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i_size = i_size_read(inode);
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trace_cachefiles_trunc(object, inode, i_size, dio_size,
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cachefiles_trunc_shrink);
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ret = cachefiles_inject_remove_error();
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if (ret == 0)
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ret = vfs_truncate(&file->f_path, dio_size);
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if (ret < 0) {
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trace_cachefiles_io_error(object, file_inode(file), ret,
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cachefiles_trace_trunc_error);
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cachefiles_io_error_obj(object, "Trunc-to-size failed %d", ret);
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cachefiles_remove_object_xattr(cache, object, file->f_path.dentry);
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return false;
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}
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if (new_size < dio_size) {
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trace_cachefiles_trunc(object, inode, dio_size, new_size,
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cachefiles_trunc_dio_adjust);
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ret = cachefiles_inject_write_error();
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if (ret == 0)
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ret = vfs_fallocate(file, FALLOC_FL_ZERO_RANGE,
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new_size, dio_size - new_size);
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if (ret < 0) {
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trace_cachefiles_io_error(object, file_inode(file), ret,
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cachefiles_trace_fallocate_error);
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cachefiles_io_error_obj(object, "Trunc-to-dio-size failed %d", ret);
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cachefiles_remove_object_xattr(cache, object, file->f_path.dentry);
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return false;
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}
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}
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return true;
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}
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/*
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* Resize the backing object.
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*/
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static void cachefiles_resize_cookie(struct netfs_cache_resources *cres,
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loff_t new_size)
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{
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struct cachefiles_object *object = cachefiles_cres_object(cres);
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struct cachefiles_cache *cache = object->volume->cache;
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struct fscache_cookie *cookie = object->cookie;
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const struct cred *saved_cred;
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struct file *file = cachefiles_cres_file(cres);
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loff_t old_size = cookie->object_size;
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_enter("%llu->%llu", old_size, new_size);
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if (new_size < old_size) {
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cachefiles_begin_secure(cache, &saved_cred);
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cachefiles_shorten_object(object, file, new_size);
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cachefiles_end_secure(cache, saved_cred);
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object->cookie->object_size = new_size;
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return;
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}
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/* The file is being expanded. We don't need to do anything
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* particularly. cookie->initial_size doesn't change and so the point
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* at which we have to download before doesn't change.
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*/
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cookie->object_size = new_size;
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}
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/*
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* Commit changes to the object as we drop it.
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*/
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static void cachefiles_commit_object(struct cachefiles_object *object,
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struct cachefiles_cache *cache)
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{
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bool update = false;
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if (test_and_clear_bit(FSCACHE_COOKIE_LOCAL_WRITE, &object->cookie->flags))
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update = true;
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if (test_and_clear_bit(FSCACHE_COOKIE_NEEDS_UPDATE, &object->cookie->flags))
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update = true;
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if (update)
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cachefiles_set_object_xattr(object);
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if (test_bit(CACHEFILES_OBJECT_USING_TMPFILE, &object->flags))
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cachefiles_commit_tmpfile(cache, object);
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}
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/*
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* Finalise and object and close the VFS structs that we have.
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*/
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static void cachefiles_clean_up_object(struct cachefiles_object *object,
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struct cachefiles_cache *cache)
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{
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if (test_bit(FSCACHE_COOKIE_RETIRED, &object->cookie->flags)) {
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if (!test_bit(CACHEFILES_OBJECT_USING_TMPFILE, &object->flags)) {
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cachefiles_see_object(object, cachefiles_obj_see_clean_delete);
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_debug("- inval object OBJ%x", object->debug_id);
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cachefiles_delete_object(object, FSCACHE_OBJECT_WAS_RETIRED);
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} else {
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cachefiles_see_object(object, cachefiles_obj_see_clean_drop_tmp);
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_debug("- inval object OBJ%x tmpfile", object->debug_id);
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}
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} else {
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cachefiles_see_object(object, cachefiles_obj_see_clean_commit);
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cachefiles_commit_object(object, cache);
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}
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cachefiles_unmark_inode_in_use(object, object->file);
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if (object->file) {
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fput(object->file);
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object->file = NULL;
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}
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}
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/*
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* Withdraw caching for a cookie.
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*/
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static void cachefiles_withdraw_cookie(struct fscache_cookie *cookie)
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{
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struct cachefiles_object *object = cookie->cache_priv;
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struct cachefiles_cache *cache = object->volume->cache;
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const struct cred *saved_cred;
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_enter("o=%x", object->debug_id);
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cachefiles_see_object(object, cachefiles_obj_see_withdraw_cookie);
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if (!list_empty(&object->cache_link)) {
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spin_lock(&cache->object_list_lock);
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cachefiles_see_object(object, cachefiles_obj_see_withdrawal);
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list_del_init(&object->cache_link);
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spin_unlock(&cache->object_list_lock);
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}
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cachefiles_ondemand_clean_object(object);
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if (object->file) {
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cachefiles_begin_secure(cache, &saved_cred);
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cachefiles_clean_up_object(object, cache);
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cachefiles_end_secure(cache, saved_cred);
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}
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cookie->cache_priv = NULL;
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cachefiles_put_object(object, cachefiles_obj_put_detach);
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}
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/*
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* Invalidate the storage associated with a cookie.
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*/
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static bool cachefiles_invalidate_cookie(struct fscache_cookie *cookie)
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{
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struct cachefiles_object *object = cookie->cache_priv;
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struct file *new_file, *old_file;
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bool old_tmpfile;
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_enter("o=%x,[%llu]", object->debug_id, object->cookie->object_size);
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old_tmpfile = test_bit(CACHEFILES_OBJECT_USING_TMPFILE, &object->flags);
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if (!object->file) {
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fscache_resume_after_invalidation(cookie);
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_leave(" = t [light]");
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return true;
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}
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new_file = cachefiles_create_tmpfile(object);
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if (IS_ERR(new_file))
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goto failed;
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/* Substitute the VFS target */
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_debug("sub");
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spin_lock(&object->lock);
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old_file = object->file;
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object->file = new_file;
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object->content_info = CACHEFILES_CONTENT_NO_DATA;
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set_bit(CACHEFILES_OBJECT_USING_TMPFILE, &object->flags);
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set_bit(FSCACHE_COOKIE_NEEDS_UPDATE, &object->cookie->flags);
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spin_unlock(&object->lock);
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_debug("subbed");
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/* Allow I/O to take place again */
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fscache_resume_after_invalidation(cookie);
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if (old_file) {
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if (!old_tmpfile) {
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struct cachefiles_volume *volume = object->volume;
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struct dentry *fan = volume->fanout[(u8)cookie->key_hash];
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inode_lock_nested(d_inode(fan), I_MUTEX_PARENT);
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cachefiles_bury_object(volume->cache, object, fan,
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old_file->f_path.dentry,
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FSCACHE_OBJECT_INVALIDATED);
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}
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fput(old_file);
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}
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_leave(" = t");
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return true;
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failed:
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_leave(" = f");
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return false;
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}
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const struct fscache_cache_ops cachefiles_cache_ops = {
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.name = "cachefiles",
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.acquire_volume = cachefiles_acquire_volume,
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.free_volume = cachefiles_free_volume,
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.lookup_cookie = cachefiles_lookup_cookie,
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.withdraw_cookie = cachefiles_withdraw_cookie,
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.invalidate_cookie = cachefiles_invalidate_cookie,
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.begin_operation = cachefiles_begin_operation,
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.resize_cookie = cachefiles_resize_cookie,
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.prepare_to_write = cachefiles_prepare_to_write,
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};
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