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(&init_user_ns, 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(&init_user_ns, 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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