dir.c 51.9 KB
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// SPDX-License-Identifier: GPL-2.0-or-later
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/* dir.c: AFS filesystem directory handling
 *
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 * Copyright (C) 2002, 2018 Red Hat, Inc. All Rights Reserved.
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 * Written by David Howells (dhowells@redhat.com)
 */

#include <linux/kernel.h>
#include <linux/fs.h>
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#include <linux/namei.h>
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#include <linux/pagemap.h>
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#include <linux/swap.h>
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#include <linux/ctype.h>
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#include <linux/sched.h>
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#include <linux/task_io_accounting_ops.h>
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#include "internal.h"
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#include "afs_fs.h"
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#include "xdr_fs.h"
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static struct dentry *afs_lookup(struct inode *dir, struct dentry *dentry,
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				 unsigned int flags);
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static int afs_dir_open(struct inode *inode, struct file *file);
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static int afs_readdir(struct file *file, struct dir_context *ctx);
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static int afs_d_revalidate(struct dentry *dentry, unsigned int flags);
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static int afs_d_delete(const struct dentry *dentry);
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static void afs_d_iput(struct dentry *dentry, struct inode *inode);
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static int afs_lookup_one_filldir(struct dir_context *ctx, const char *name, int nlen,
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				  loff_t fpos, u64 ino, unsigned dtype);
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static int afs_lookup_filldir(struct dir_context *ctx, const char *name, int nlen,
			      loff_t fpos, u64 ino, unsigned dtype);
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static int afs_create(struct inode *dir, struct dentry *dentry, umode_t mode,
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		      bool excl);
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static int afs_mkdir(struct inode *dir, struct dentry *dentry, umode_t mode);
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static int afs_rmdir(struct inode *dir, struct dentry *dentry);
static int afs_unlink(struct inode *dir, struct dentry *dentry);
static int afs_link(struct dentry *from, struct inode *dir,
		    struct dentry *dentry);
static int afs_symlink(struct inode *dir, struct dentry *dentry,
		       const char *content);
static int afs_rename(struct inode *old_dir, struct dentry *old_dentry,
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		      struct inode *new_dir, struct dentry *new_dentry,
		      unsigned int flags);
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static int afs_dir_releasepage(struct page *page, gfp_t gfp_flags);
static void afs_dir_invalidatepage(struct page *page, unsigned int offset,
				   unsigned int length);

static int afs_dir_set_page_dirty(struct page *page)
{
	BUG(); /* This should never happen. */
}
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const struct file_operations afs_dir_file_operations = {
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	.open		= afs_dir_open,
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	.release	= afs_release,
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	.iterate_shared	= afs_readdir,
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	.lock		= afs_lock,
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	.llseek		= generic_file_llseek,
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};

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const struct inode_operations afs_dir_inode_operations = {
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	.create		= afs_create,
	.lookup		= afs_lookup,
	.link		= afs_link,
	.unlink		= afs_unlink,
	.symlink	= afs_symlink,
	.mkdir		= afs_mkdir,
	.rmdir		= afs_rmdir,
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	.rename		= afs_rename,
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	.permission	= afs_permission,
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	.getattr	= afs_getattr,
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	.setattr	= afs_setattr,
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	.listxattr	= afs_listxattr,
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};

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const struct address_space_operations afs_dir_aops = {
	.set_page_dirty	= afs_dir_set_page_dirty,
	.releasepage	= afs_dir_releasepage,
	.invalidatepage	= afs_dir_invalidatepage,
};

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const struct dentry_operations afs_fs_dentry_operations = {
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	.d_revalidate	= afs_d_revalidate,
	.d_delete	= afs_d_delete,
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	.d_release	= afs_d_release,
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	.d_automount	= afs_d_automount,
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	.d_iput		= afs_d_iput,
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};

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struct afs_lookup_one_cookie {
	struct dir_context	ctx;
	struct qstr		name;
	bool			found;
	struct afs_fid		fid;
};

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struct afs_lookup_cookie {
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	struct dir_context	ctx;
	struct qstr		name;
	bool			found;
	bool			one_only;
	unsigned short		nr_fids;
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	struct inode		**inodes;
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	struct afs_status_cb	*statuses;
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	struct afs_fid		fids[50];
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};

/*
 * check that a directory page is valid
 */
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static bool afs_dir_check_page(struct afs_vnode *dvnode, struct page *page,
			       loff_t i_size)
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{
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	struct afs_xdr_dir_page *dbuf;
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	loff_t latter, off;
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	int tmp, qty;

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	/* Determine how many magic numbers there should be in this page, but
	 * we must take care because the directory may change size under us.
	 */
	off = page_offset(page);
	if (i_size <= off)
		goto checked;

	latter = i_size - off;
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	if (latter >= PAGE_SIZE)
		qty = PAGE_SIZE;
	else
		qty = latter;
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	qty /= sizeof(union afs_xdr_dir_block);
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	/* check them */
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	dbuf = kmap(page);
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	for (tmp = 0; tmp < qty; tmp++) {
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		if (dbuf->blocks[tmp].hdr.magic != AFS_DIR_MAGIC) {
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			printk("kAFS: %s(%lx): bad magic %d/%d is %04hx\n",
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			       __func__, dvnode->vfs_inode.i_ino, tmp, qty,
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			       ntohs(dbuf->blocks[tmp].hdr.magic));
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			trace_afs_dir_check_failed(dvnode, off, i_size);
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			kunmap(page);
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			trace_afs_file_error(dvnode, -EIO, afs_file_error_dir_bad_magic);
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			goto error;
		}
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		/* Make sure each block is NUL terminated so we can reasonably
		 * use string functions on it.  The filenames in the page
		 * *should* be NUL-terminated anyway.
		 */
		((u8 *)&dbuf->blocks[tmp])[AFS_DIR_BLOCK_SIZE - 1] = 0;
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	}

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	kunmap(page);

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checked:
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	afs_stat_v(dvnode, n_read_dir);
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	return true;
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error:
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	return false;
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}
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/*
 * Check the contents of a directory that we've just read.
 */
static bool afs_dir_check_pages(struct afs_vnode *dvnode, struct afs_read *req)
{
	struct afs_xdr_dir_page *dbuf;
	unsigned int i, j, qty = PAGE_SIZE / sizeof(union afs_xdr_dir_block);

	for (i = 0; i < req->nr_pages; i++)
		if (!afs_dir_check_page(dvnode, req->pages[i], req->actual_len))
			goto bad;
	return true;

bad:
	pr_warn("DIR %llx:%llx f=%llx l=%llx al=%llx r=%llx\n",
		dvnode->fid.vid, dvnode->fid.vnode,
		req->file_size, req->len, req->actual_len, req->remain);
	pr_warn("DIR %llx %x %x %x\n",
		req->pos, req->index, req->nr_pages, req->offset);

	for (i = 0; i < req->nr_pages; i++) {
		dbuf = kmap(req->pages[i]);
		for (j = 0; j < qty; j++) {
			union afs_xdr_dir_block *block = &dbuf->blocks[j];

			pr_warn("[%02x] %32phN\n", i * qty + j, block);
		}
		kunmap(req->pages[i]);
	}
	return false;
}

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/*
 * open an AFS directory file
 */
static int afs_dir_open(struct inode *inode, struct file *file)
{
	_enter("{%lu}", inode->i_ino);

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	BUILD_BUG_ON(sizeof(union afs_xdr_dir_block) != 2048);
	BUILD_BUG_ON(sizeof(union afs_xdr_dirent) != 32);
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	if (test_bit(AFS_VNODE_DELETED, &AFS_FS_I(inode)->flags))
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		return -ENOENT;

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	return afs_open(inode, file);
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}
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/*
 * Read the directory into the pagecache in one go, scrubbing the previous
 * contents.  The list of pages is returned, pinning them so that they don't
 * get reclaimed during the iteration.
 */
static struct afs_read *afs_read_dir(struct afs_vnode *dvnode, struct key *key)
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	__acquires(&dvnode->validate_lock)
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{
	struct afs_read *req;
	loff_t i_size;
	int nr_pages, nr_inline, i, n;
	int ret = -ENOMEM;

retry:
	i_size = i_size_read(&dvnode->vfs_inode);
	if (i_size < 2048)
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		return ERR_PTR(afs_bad(dvnode, afs_file_error_dir_small));
	if (i_size > 2048 * 1024) {
		trace_afs_file_error(dvnode, -EFBIG, afs_file_error_dir_big);
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		return ERR_PTR(-EFBIG);
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	}
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	_enter("%llu", i_size);

	/* Get a request record to hold the page list.  We want to hold it
	 * inline if we can, but we don't want to make an order 1 allocation.
	 */
	nr_pages = (i_size + PAGE_SIZE - 1) / PAGE_SIZE;
	nr_inline = nr_pages;
	if (nr_inline > (PAGE_SIZE - sizeof(*req)) / sizeof(struct page *))
		nr_inline = 0;

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	req = kzalloc(struct_size(req, array, nr_inline), GFP_KERNEL);
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	if (!req)
		return ERR_PTR(-ENOMEM);

	refcount_set(&req->usage, 1);
	req->nr_pages = nr_pages;
	req->actual_len = i_size; /* May change */
	req->len = nr_pages * PAGE_SIZE; /* We can ask for more than there is */
	req->data_version = dvnode->status.data_version; /* May change */
	if (nr_inline > 0) {
		req->pages = req->array;
	} else {
		req->pages = kcalloc(nr_pages, sizeof(struct page *),
				     GFP_KERNEL);
		if (!req->pages)
			goto error;
	}

	/* Get a list of all the pages that hold or will hold the directory
	 * content.  We need to fill in any gaps that we might find where the
	 * memory reclaimer has been at work.  If there are any gaps, we will
	 * need to reread the entire directory contents.
	 */
	i = 0;
	do {
		n = find_get_pages_contig(dvnode->vfs_inode.i_mapping, i,
					  req->nr_pages - i,
					  req->pages + i);
		_debug("find %u at %u/%u", n, i, req->nr_pages);
		if (n == 0) {
			gfp_t gfp = dvnode->vfs_inode.i_mapping->gfp_mask;

			if (test_and_clear_bit(AFS_VNODE_DIR_VALID, &dvnode->flags))
				afs_stat_v(dvnode, n_inval);

			ret = -ENOMEM;
			req->pages[i] = __page_cache_alloc(gfp);
			if (!req->pages[i])
				goto error;
			ret = add_to_page_cache_lru(req->pages[i],
						    dvnode->vfs_inode.i_mapping,
						    i, gfp);
			if (ret < 0)
				goto error;

			set_page_private(req->pages[i], 1);
			SetPagePrivate(req->pages[i]);
			unlock_page(req->pages[i]);
			i++;
		} else {
			i += n;
		}
	} while (i < req->nr_pages);

	/* If we're going to reload, we need to lock all the pages to prevent
	 * races.
	 */
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	ret = -ERESTARTSYS;
	if (down_read_killable(&dvnode->validate_lock) < 0)
		goto error;
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	if (test_bit(AFS_VNODE_DIR_VALID, &dvnode->flags))
		goto success;
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	up_read(&dvnode->validate_lock);
	if (down_write_killable(&dvnode->validate_lock) < 0)
		goto error;

	if (!test_bit(AFS_VNODE_DIR_VALID, &dvnode->flags)) {
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		trace_afs_reload_dir(dvnode);
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		ret = afs_fetch_data(dvnode, key, req);
		if (ret < 0)
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			goto error_unlock;
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		task_io_account_read(PAGE_SIZE * req->nr_pages);

		if (req->len < req->file_size)
			goto content_has_grown;

		/* Validate the data we just read. */
		ret = -EIO;
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		if (!afs_dir_check_pages(dvnode, req))
			goto error_unlock;
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		// TODO: Trim excess pages

		set_bit(AFS_VNODE_DIR_VALID, &dvnode->flags);
	}

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	downgrade_write(&dvnode->validate_lock);
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success:
	return req;

error_unlock:
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	up_write(&dvnode->validate_lock);
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error:
	afs_put_read(req);
	_leave(" = %d", ret);
	return ERR_PTR(ret);

content_has_grown:
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	up_write(&dvnode->validate_lock);
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	afs_put_read(req);
	goto retry;
}

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/*
 * deal with one block in an AFS directory
 */
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static int afs_dir_iterate_block(struct afs_vnode *dvnode,
				 struct dir_context *ctx,
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				 union afs_xdr_dir_block *block,
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				 unsigned blkoff)
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{
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	union afs_xdr_dirent *dire;
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	unsigned offset, next, curr;
	size_t nlen;
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	int tmp;
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	_enter("%u,%x,%p,,",(unsigned)ctx->pos,blkoff,block);
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	curr = (ctx->pos - blkoff) / sizeof(union afs_xdr_dirent);
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	/* walk through the block, an entry at a time */
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	for (offset = (blkoff == 0 ? AFS_DIR_RESV_BLOCKS0 : AFS_DIR_RESV_BLOCKS);
	     offset < AFS_DIR_SLOTS_PER_BLOCK;
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	     offset = next
	     ) {
		next = offset + 1;

		/* skip entries marked unused in the bitmap */
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		if (!(block->hdr.bitmap[offset / 8] &
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		      (1 << (offset % 8)))) {
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			_debug("ENT[%zu.%u]: unused",
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			       blkoff / sizeof(union afs_xdr_dir_block), offset);
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			if (offset >= curr)
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				ctx->pos = blkoff +
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					next * sizeof(union afs_xdr_dirent);
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			continue;
		}

		/* got a valid entry */
		dire = &block->dirents[offset];
		nlen = strnlen(dire->u.name,
			       sizeof(*block) -
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			       offset * sizeof(union afs_xdr_dirent));
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		_debug("ENT[%zu.%u]: %s %zu \"%s\"",
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		       blkoff / sizeof(union afs_xdr_dir_block), offset,
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		       (offset < curr ? "skip" : "fill"),
		       nlen, dire->u.name);

		/* work out where the next possible entry is */
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		for (tmp = nlen; tmp > 15; tmp -= sizeof(union afs_xdr_dirent)) {
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			if (next >= AFS_DIR_SLOTS_PER_BLOCK) {
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				_debug("ENT[%zu.%u]:"
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				       " %u travelled beyond end dir block"
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				       " (len %u/%zu)",
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				       blkoff / sizeof(union afs_xdr_dir_block),
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				       offset, next, tmp, nlen);
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				return afs_bad(dvnode, afs_file_error_dir_over_end);
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			}
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			if (!(block->hdr.bitmap[next / 8] &
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			      (1 << (next % 8)))) {
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				_debug("ENT[%zu.%u]:"
				       " %u unmarked extension (len %u/%zu)",
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				       blkoff / sizeof(union afs_xdr_dir_block),
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				       offset, next, tmp, nlen);
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				return afs_bad(dvnode, afs_file_error_dir_unmarked_ext);
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			}

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			_debug("ENT[%zu.%u]: ext %u/%zu",
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			       blkoff / sizeof(union afs_xdr_dir_block),
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			       next, tmp, nlen);
			next++;
		}

		/* skip if starts before the current position */
		if (offset < curr)
			continue;

		/* found the next entry */
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		if (!dir_emit(ctx, dire->u.name, nlen,
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			      ntohl(dire->u.vnode),
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			      (ctx->actor == afs_lookup_filldir ||
			       ctx->actor == afs_lookup_one_filldir)?
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			      ntohl(dire->u.unique) : DT_UNKNOWN)) {
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			_leave(" = 0 [full]");
			return 0;
		}

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		ctx->pos = blkoff + next * sizeof(union afs_xdr_dirent);
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	}

	_leave(" = 1 [more]");
	return 1;
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}
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/*
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 * iterate through the data blob that lists the contents of an AFS directory
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 */
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static int afs_dir_iterate(struct inode *dir, struct dir_context *ctx,
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			   struct key *key, afs_dataversion_t *_dir_version)
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{
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	struct afs_vnode *dvnode = AFS_FS_I(dir);
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	struct afs_xdr_dir_page *dbuf;
	union afs_xdr_dir_block *dblock;
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	struct afs_read *req;
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	struct page *page;
	unsigned blkoff, limit;
	int ret;

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	_enter("{%lu},%u,,", dir->i_ino, (unsigned)ctx->pos);
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	if (test_bit(AFS_VNODE_DELETED, &AFS_FS_I(dir)->flags)) {
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		_leave(" = -ESTALE");
		return -ESTALE;
	}

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	req = afs_read_dir(dvnode, key);
	if (IS_ERR(req))
		return PTR_ERR(req);
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	*_dir_version = req->data_version;
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	/* round the file position up to the next entry boundary */
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	ctx->pos += sizeof(union afs_xdr_dirent) - 1;
	ctx->pos &= ~(sizeof(union afs_xdr_dirent) - 1);
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	/* walk through the blocks in sequence */
	ret = 0;
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	while (ctx->pos < req->actual_len) {
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		blkoff = ctx->pos & ~(sizeof(union afs_xdr_dir_block) - 1);
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		/* Fetch the appropriate page from the directory and re-add it
		 * to the LRU.
		 */
		page = req->pages[blkoff / PAGE_SIZE];
		if (!page) {
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			ret = afs_bad(dvnode, afs_file_error_dir_missing_page);
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			break;
		}
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		mark_page_accessed(page);
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		limit = blkoff & ~(PAGE_SIZE - 1);

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		dbuf = kmap(page);
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		/* deal with the individual blocks stashed on this page */
		do {
			dblock = &dbuf->blocks[(blkoff % PAGE_SIZE) /
491
					       sizeof(union afs_xdr_dir_block)];
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			ret = afs_dir_iterate_block(dvnode, ctx, dblock, blkoff);
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			if (ret != 1) {
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				kunmap(page);
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				goto out;
			}

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			blkoff += sizeof(union afs_xdr_dir_block);
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		} while (ctx->pos < dir->i_size && blkoff < limit);
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		kunmap(page);
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		ret = 0;
	}

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out:
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	up_read(&dvnode->validate_lock);
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	afs_put_read(req);
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	_leave(" = %d", ret);
	return ret;
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}
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/*
 * read an AFS directory
 */
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static int afs_readdir(struct file *file, struct dir_context *ctx)
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{
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	afs_dataversion_t dir_version;

	return afs_dir_iterate(file_inode(file), ctx, afs_file_key(file),
			       &dir_version);
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}
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/*
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 * Search the directory for a single name
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 * - if afs_dir_iterate_block() spots this function, it'll pass the FID
 *   uniquifier through dtype
 */
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static int afs_lookup_one_filldir(struct dir_context *ctx, const char *name,
				  int nlen, loff_t fpos, u64 ino, unsigned dtype)
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{
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	struct afs_lookup_one_cookie *cookie =
		container_of(ctx, struct afs_lookup_one_cookie, ctx);
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	_enter("{%s,%u},%s,%u,,%llu,%u",
	       cookie->name.name, cookie->name.len, name, nlen,
537
	       (unsigned long long) ino, dtype);
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	/* insanity checks first */
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	BUILD_BUG_ON(sizeof(union afs_xdr_dir_block) != 2048);
	BUILD_BUG_ON(sizeof(union afs_xdr_dirent) != 32);
542

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	if (cookie->name.len != nlen ||
	    memcmp(cookie->name.name, name, nlen) != 0) {
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		_leave(" = 0 [no]");
		return 0;
	}

	cookie->fid.vnode = ino;
	cookie->fid.unique = dtype;
	cookie->found = 1;

	_leave(" = -1 [found]");
	return -1;
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}
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/*
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 * Do a lookup of a single name in a directory
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 * - just returns the FID the dentry name maps to if found
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 */
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static int afs_do_lookup_one(struct inode *dir, struct dentry *dentry,
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			     struct afs_fid *fid, struct key *key,
			     afs_dataversion_t *_dir_version)
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{
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	struct afs_super_info *as = dir->i_sb->s_fs_info;
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	struct afs_lookup_one_cookie cookie = {
		.ctx.actor = afs_lookup_one_filldir,
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		.name = dentry->d_name,
		.fid.vid = as->volume->vid
	};
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	int ret;

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	_enter("{%lu},%p{%pd},", dir->i_ino, dentry, dentry);
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	/* search the directory */
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	ret = afs_dir_iterate(dir, &cookie.ctx, key, _dir_version);
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	if (ret < 0) {
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		_leave(" = %d [iter]", ret);
		return ret;
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	}

	ret = -ENOENT;
	if (!cookie.found) {
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		_leave(" = -ENOENT [not found]");
		return -ENOENT;
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	}

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	*fid = cookie.fid;
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	_leave(" = 0 { vn=%llu u=%u }", fid->vnode, fid->unique);
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	return 0;
}

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/*
 * search the directory for a name
 * - if afs_dir_iterate_block() spots this function, it'll pass the FID
 *   uniquifier through dtype
 */
static int afs_lookup_filldir(struct dir_context *ctx, const char *name,
			      int nlen, loff_t fpos, u64 ino, unsigned dtype)
{
	struct afs_lookup_cookie *cookie =
		container_of(ctx, struct afs_lookup_cookie, ctx);
	int ret;

	_enter("{%s,%u},%s,%u,,%llu,%u",
	       cookie->name.name, cookie->name.len, name, nlen,
	       (unsigned long long) ino, dtype);

	/* insanity checks first */
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	BUILD_BUG_ON(sizeof(union afs_xdr_dir_block) != 2048);
	BUILD_BUG_ON(sizeof(union afs_xdr_dirent) != 32);
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	if (cookie->found) {
		if (cookie->nr_fids < 50) {
			cookie->fids[cookie->nr_fids].vnode	= ino;
			cookie->fids[cookie->nr_fids].unique	= dtype;
			cookie->nr_fids++;
		}
	} else if (cookie->name.len == nlen &&
		   memcmp(cookie->name.name, name, nlen) == 0) {
		cookie->fids[0].vnode	= ino;
		cookie->fids[0].unique	= dtype;
		cookie->found = 1;
		if (cookie->one_only)
			return -1;
	}

	ret = cookie->nr_fids >= 50 ? -1 : 0;
	_leave(" = %d", ret);
	return ret;
}

/*
 * Do a lookup in a directory.  We make use of bulk lookup to query a slew of
 * files in one go and create inodes for them.  The inode of the file we were
 * asked for is returned.
 */
static struct inode *afs_do_lookup(struct inode *dir, struct dentry *dentry,
				   struct key *key)
{
	struct afs_lookup_cookie *cookie;
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	struct afs_cb_interest *dcbi, *cbi = NULL;
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	struct afs_super_info *as = dir->i_sb->s_fs_info;
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	struct afs_status_cb *scb;
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	struct afs_iget_data iget_data;
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	struct afs_fs_cursor fc;
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	struct afs_server *server;
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	struct afs_vnode *dvnode = AFS_FS_I(dir), *vnode;
	struct inode *inode = NULL, *ti;
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	afs_dataversion_t data_version = READ_ONCE(dvnode->status.data_version);
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	int ret, i;

	_enter("{%lu},%p{%pd},", dir->i_ino, dentry, dentry);

	cookie = kzalloc(sizeof(struct afs_lookup_cookie), GFP_KERNEL);
	if (!cookie)
		return ERR_PTR(-ENOMEM);

	cookie->ctx.actor = afs_lookup_filldir;
	cookie->name = dentry->d_name;
	cookie->nr_fids = 1; /* slot 0 is saved for the fid we actually want */

	read_seqlock_excl(&dvnode->cb_lock);
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	dcbi = rcu_dereference_protected(dvnode->cb_interest,
					 lockdep_is_held(&dvnode->cb_lock.lock));
	if (dcbi) {
		server = dcbi->server;
		if (server &&
		    test_bit(AFS_SERVER_FL_NO_IBULK, &server->flags))
			cookie->one_only = true;
	}
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	read_sequnlock_excl(&dvnode->cb_lock);

	for (i = 0; i < 50; i++)
		cookie->fids[i].vid = as->volume->vid;

	/* search the directory */
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	ret = afs_dir_iterate(dir, &cookie->ctx, key, &data_version);
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	if (ret < 0) {
		inode = ERR_PTR(ret);
		goto out;
	}

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	dentry->d_fsdata = (void *)(unsigned long)data_version;

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	inode = ERR_PTR(-ENOENT);
	if (!cookie->found)
		goto out;

	/* Check to see if we already have an inode for the primary fid. */
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	iget_data.fid = cookie->fids[0];
	iget_data.volume = dvnode->volume;
	iget_data.cb_v_break = dvnode->volume->cb_v_break;
	iget_data.cb_s_break = 0;
	inode = ilookup5(dir->i_sb, cookie->fids[0].vnode,
			 afs_iget5_test, &iget_data);
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	if (inode)
		goto out;

	/* Need space for examining all the selected files */
	inode = ERR_PTR(-ENOMEM);
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	cookie->statuses = kvcalloc(cookie->nr_fids, sizeof(struct afs_status_cb),
				    GFP_KERNEL);
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	if (!cookie->statuses)
		goto out;

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	cookie->inodes = kcalloc(cookie->nr_fids, sizeof(struct inode *),
				 GFP_KERNEL);
	if (!cookie->inodes)
		goto out_s;

	for (i = 1; i < cookie->nr_fids; i++) {
		scb = &cookie->statuses[i];

		/* Find any inodes that already exist and get their
		 * callback counters.
		 */
		iget_data.fid = cookie->fids[i];
		ti = ilookup5_nowait(dir->i_sb, iget_data.fid.vnode,
				     afs_iget5_test, &iget_data);
		if (!IS_ERR_OR_NULL(ti)) {
			vnode = AFS_FS_I(ti);
			scb->cb_break = afs_calc_vnode_cb_break(vnode);
			cookie->inodes[i] = ti;
		}
	}

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	/* Try FS.InlineBulkStatus first.  Abort codes for the individual
	 * lookups contained therein are stored in the reply without aborting
	 * the whole operation.
	 */
	if (cookie->one_only)
		goto no_inline_bulk_status;

	inode = ERR_PTR(-ERESTARTSYS);
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	if (afs_begin_vnode_operation(&fc, dvnode, key, true)) {
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		while (afs_select_fileserver(&fc)) {
			if (test_bit(AFS_SERVER_FL_NO_IBULK,
				      &fc.cbi->server->flags)) {
				fc.ac.abort_code = RX_INVALID_OPERATION;
				fc.ac.error = -ECONNABORTED;
				break;
			}
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			iget_data.cb_v_break = dvnode->volume->cb_v_break;
			iget_data.cb_s_break = fc.cbi->server->cb_s_break;
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			afs_fs_inline_bulk_status(&fc,
						  afs_v2net(dvnode),
						  cookie->fids,
						  cookie->statuses,
						  cookie->nr_fids, NULL);
		}

		if (fc.ac.error == 0)
			cbi = afs_get_cb_interest(fc.cbi);
		if (fc.ac.abort_code == RX_INVALID_OPERATION)
			set_bit(AFS_SERVER_FL_NO_IBULK, &fc.cbi->server->flags);
		inode = ERR_PTR(afs_end_vnode_operation(&fc));
	}

	if (!IS_ERR(inode))
		goto success;
	if (fc.ac.abort_code != RX_INVALID_OPERATION)
		goto out_c;

no_inline_bulk_status:
	/* We could try FS.BulkStatus next, but this aborts the entire op if
	 * any of the lookups fails - so, for the moment, revert to
	 * FS.FetchStatus for just the primary fid.
	 */
	inode = ERR_PTR(-ERESTARTSYS);
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	if (afs_begin_vnode_operation(&fc, dvnode, key, true)) {
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		while (afs_select_fileserver(&fc)) {
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			iget_data.cb_v_break = dvnode->volume->cb_v_break;
			iget_data.cb_s_break = fc.cbi->server->cb_s_break;
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			scb = &cookie->statuses[0];
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			afs_fs_fetch_status(&fc,
					    afs_v2net(dvnode),
					    cookie->fids,
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					    scb,
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					    NULL);
		}

		if (fc.ac.error == 0)
			cbi = afs_get_cb_interest(fc.cbi);
		inode = ERR_PTR(afs_end_vnode_operation(&fc));
	}

	if (IS_ERR(inode))
		goto out_c;

success:
	/* Turn all the files into inodes and save the first one - which is the
	 * one we actually want.
	 */
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	scb = &cookie->statuses[0];
	if (scb->status.abort_code != 0)
		inode = ERR_PTR(afs_abort_to_error(scb->status.abort_code));
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	for (i = 0; i < cookie->nr_fids; i++) {
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		struct afs_status_cb *scb = &cookie->statuses[i];
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		if (!scb->have_status && !scb->have_error)
			continue;

		if (cookie->inodes[i]) {
			afs_vnode_commit_status(&fc, AFS_FS_I(cookie->inodes[i]),
						scb->cb_break, NULL, scb);
			continue;
		}
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811
		if (scb->status.abort_code != 0)
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			continue;

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		iget_data.fid = cookie->fids[i];
		ti = afs_iget(dir->i_sb, key, &iget_data, scb, cbi, dvnode);
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		if (!IS_ERR(ti))
			afs_cache_permit(AFS_FS_I(ti), key,
					 0 /* Assume vnode->cb_break is 0 */ +
					 iget_data.cb_v_break,
					 scb);
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		if (i == 0) {
			inode = ti;
		} else {
			if (!IS_ERR(ti))
				iput(ti);
		}
	}

out_c:
	afs_put_cb_interest(afs_v2net(dvnode), cbi);
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	if (cookie->inodes) {
		for (i = 0; i < cookie->nr_fids; i++)
			iput(cookie->inodes[i]);
		kfree(cookie->inodes);
	}
out_s:
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	kvfree(cookie->statuses);
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out:
	kfree(cookie);
	return inode;
}

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/*
 * Look up an entry in a directory with @sys substitution.
 */
static struct dentry *afs_lookup_atsys(struct inode *dir, struct dentry *dentry,
				       struct key *key)
{
	struct afs_sysnames *subs;
	struct afs_net *net = afs_i2net(dir);
	struct dentry *ret;
	char *buf, *p, *name;
	int len, i;

	_enter("");

	ret = ERR_PTR(-ENOMEM);
	p = buf = kmalloc(AFSNAMEMAX, GFP_KERNEL);
	if (!buf)
		goto out_p;
	if (dentry->d_name.len > 4) {
		memcpy(p, dentry->d_name.name, dentry->d_name.len - 4);
		p += dentry->d_name.len - 4;
	}

	/* There is an ordered list of substitutes that we have to try. */
	read_lock(&net->sysnames_lock);
	subs = net->sysnames;
	refcount_inc(&subs->usage);
	read_unlock(&net->sysnames_lock);

	for (i = 0; i < subs->nr; i++) {
		name = subs->subs[i];
		len = dentry->d_name.len - 4 + strlen(name);
		if (len >= AFSNAMEMAX) {
			ret = ERR_PTR(-ENAMETOOLONG);
			goto out_s;
		}

		strcpy(p, name);
		ret = lookup_one_len(buf, dentry->d_parent, len);
		if (IS_ERR(ret) || d_is_positive(ret))
			goto out_s;
		dput(ret);
	}

	/* We don't want to d_add() the @sys dentry here as we don't want to
	 * the cached dentry to hide changes to the sysnames list.
	 */
	ret = NULL;
out_s:
	afs_put_sysnames(subs);
	kfree(buf);
out_p:
	key_put(key);
	return ret;
}

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/*
 * look up an entry in a directory
 */
902
static struct dentry *afs_lookup(struct inode *dir, struct dentry *dentry,
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				 unsigned int flags)
904
{
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	struct afs_vnode *dvnode = AFS_FS_I(dir);
906
	struct inode *inode;
907
	struct dentry *d;
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	struct key *key;
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	int ret;

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	_enter("{%llx:%llu},%p{%pd},",
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	       dvnode->fid.vid, dvnode->fid.vnode, dentry, dentry);
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914
	ASSERTCMP(d_inode(dentry), ==, NULL);
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	if (dentry->d_name.len >= AFSNAMEMAX) {
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		_leave(" = -ENAMETOOLONG");
		return ERR_PTR(-ENAMETOOLONG);
	}

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	if (test_bit(AFS_VNODE_DELETED, &dvnode->flags)) {
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		_leave(" = -ESTALE");
		return ERR_PTR(-ESTALE);
	}

926
	key = afs_request_key(dvnode->volume->cell);
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	if (IS_ERR(key)) {
		_leave(" = %ld [key]", PTR_ERR(key));
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		return ERR_CAST(key);
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	}

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	ret = afs_validate(dvnode, key);
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	if (ret < 0) {
		key_put(key);
		_leave(" = %d [val]", ret);
		return ERR_PTR(ret);
	}

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	if (dentry->d_name.len >= 4 &&
	    dentry->d_name.name[dentry->d_name.len - 4] == '@' &&
	    dentry->d_name.name[dentry->d_name.len - 3] == 's' &&
	    dentry->d_name.name[dentry->d_name.len - 2] == 'y' &&
	    dentry->d_name.name[dentry->d_name.len - 1] == 's')
		return afs_lookup_atsys(dir, dentry, key);

946
	afs_stat_v(dvnode, n_lookup);
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	inode = afs_do_lookup(dir, dentry, key);
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	key_put(key);
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	if (inode == ERR_PTR(-ENOENT)) {
		inode = afs_try_auto_mntpt(dentry, dir);
	} else {
		dentry->d_fsdata =
			(void *)(unsigned long)dvnode->status.data_version;
954
	}
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	d = d_splice_alias(inode, dentry);
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	if (!IS_ERR_OR_NULL(d)) {
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		d->d_fsdata = dentry->d_fsdata;
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		trace_afs_lookup(dvnode, &d->d_name,
				 inode ? AFS_FS_I(inode) : NULL);
	} else {
		trace_afs_lookup(dvnode, &dentry->d_name,
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				 IS_ERR_OR_NULL(inode) ? NULL
				 : AFS_FS_I(inode));
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	}
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	return d;
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}
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/*
 * Check the validity of a dentry under RCU conditions.
 */
static int afs_d_revalidate_rcu(struct dentry *dentry)
{
	struct afs_vnode *dvnode, *vnode;
	struct dentry *parent;
	struct inode *dir, *inode;
	long dir_version, de_version;

	_enter("%p", dentry);

	/* Check the parent directory is still valid first. */
	parent = READ_ONCE(dentry->d_parent);
	dir = d_inode_rcu(parent);
	if (!dir)
		return -ECHILD;
	dvnode = AFS_FS_I(dir);
	if (test_bit(AFS_VNODE_DELETED, &dvnode->flags))
		return -ECHILD;

	if (!afs_check_validity(dvnode))
		return -ECHILD;

	/* We only need to invalidate a dentry if the server's copy changed
	 * behind our back.  If we made the change, it's no problem.  Note that
	 * on a 32-bit system, we only have 32 bits in the dentry to store the
	 * version.
	 */
	dir_version = (long)READ_ONCE(dvnode->status.data_version);
	de_version = (long)READ_ONCE(dentry->d_fsdata);
	if (de_version != dir_version) {
		dir_version = (long)READ_ONCE(dvnode->invalid_before);
		if (de_version - dir_version < 0)
			return -ECHILD;
	}

	/* Check to see if the vnode referred to by the dentry still
	 * has a callback.
	 */
	if (d_really_is_positive(dentry)) {
		inode = d_inode_rcu(dentry);
		if (inode) {
			vnode = AFS_FS_I(inode);
			if (!afs_check_validity(vnode))
				return -ECHILD;
		}
	}

	return 1; /* Still valid */
}

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1020 1021 1022 1023 1024
/*
 * check that a dentry lookup hit has found a valid entry
 * - NOTE! the hit can be a negative hit too, so we can't assume we have an
 *   inode
 */
1025
static int afs_d_revalidate(struct dentry *dentry, unsigned int flags)
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1026
{
1027
	struct afs_vnode *vnode, *dir;
1028
	struct afs_fid uninitialized_var(fid);
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1029
	struct dentry *parent;
1030
	struct inode *inode;
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1031
	struct key *key;
1032 1033
	afs_dataversion_t dir_version;
	long de_version;
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1034 1035
	int ret;

1036
	if (flags & LOOKUP_RCU)
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1037
		return afs_d_revalidate_rcu(dentry);
1038

1039 1040
	if (d_really_is_positive(dentry)) {
		vnode = AFS_FS_I(d_inode(dentry));
1041
		_enter("{v={%llx:%llu} n=%pd fl=%lx},",
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1042
		       vnode->fid.vid, vnode->fid.vnode, dentry,
1043
		       vnode->flags);
1044
	} else {
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1045
		_enter("{neg n=%pd}", dentry);
1046
	}
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1047

1048
	key = afs_request_key(AFS_FS_S(dentry->d_sb)->volume->cell);
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1049 1050 1051
	if (IS_ERR(key))
		key = NULL;

1052 1053 1054 1055 1056 1057 1058 1059 1060 1061
	if (d_really_is_positive(dentry)) {
		inode = d_inode(dentry);
		if (inode) {
			vnode = AFS_FS_I(inode);
			afs_validate(vnode, key);
			if (test_bit(AFS_VNODE_DELETED, &vnode->flags))
				goto out_bad;
		}
	}

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1062
	/* lock down the parent dentry so we can peer at it */
1063
	parent = dget_parent(dentry);
1064
	dir = AFS_FS_I(d_inode(parent));
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1065

1066
	/* validate the parent directory */
1067
	afs_validate(dir, key);
1068 1069

	if (test_bit(AFS_VNODE_DELETED, &dir->flags)) {
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1070
		_debug("%pd: parent dir deleted", dentry);
1071
		goto out_bad_parent;
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1072 1073
	}

1074 1075 1076 1077 1078
	/* We only need to invalidate a dentry if the server's copy changed
	 * behind our back.  If we made the change, it's no problem.  Note that
	 * on a 32-bit system, we only have 32 bits in the dentry to store the
	 * version.
	 */
1079
	dir_version = dir->status.data_version;
1080
	de_version = (long)dentry->d_fsdata;
1081
	if (de_version == (long)dir_version)
1082
		goto out_valid_noupdate;
1083

1084 1085
	dir_version = dir->invalid_before;
	if (de_version - (long)dir_version >= 0)
1086
		goto out_valid;
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1087

1088
	_debug("dir modified");
1089
	afs_stat_v(dir, n_reval);
1090 1091

	/* search the directory for this vnode */
1092
	ret = afs_do_lookup_one(&dir->vfs_inode, dentry, &fid, key, &dir_version);
1093 1094 1095
	switch (ret) {
	case 0:
		/* the filename maps to something */
1096
		if (d_really_is_negative(dentry))
1097 1098 1099
			goto out_bad_parent;
		inode = d_inode(dentry);
		if (is_bad_inode(inode)) {
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1100 1101
			printk("kAFS: afs_d_revalidate: %pd2 has bad inode\n",
			       dentry);
1102
			goto out_bad_parent;
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1103 1104
		}

1105 1106
		vnode = AFS_FS_I(inode);

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1107 1108
		/* if the vnode ID has changed, then the dirent points to a
		 * different file */
1109
		if (fid.vnode != vnode->fid.vnode) {
1110
			_debug("%pd: dirent changed [%llu != %llu]",
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1111
			       dentry, fid.vnode,
1112
			       vnode->fid.vnode);
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1113 1114 1115 1116
			goto not_found;
		}

		/* if the vnode ID uniqifier has changed, then the file has
1117 1118
		 * been deleted and replaced, and the original vnode ID has
		 * been reused */
1119
		if (fid.unique != vnode->fid.unique) {
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1120 1121
			_debug("%pd: file deleted (uq %u -> %u I:%u)",
			       dentry, fid.unique,
1122
			       vnode->fid.unique,
1123 1124
			       vnode->vfs_inode.i_generation);
			write_seqlock(&vnode->cb_lock);
1125
			set_bit(AFS_VNODE_DELETED, &vnode->flags);
1126
			write_sequnlock(&vnode->cb_lock);
1127
			goto not_found;
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1128
		}
1129
		goto out_valid;
1130

1131 1132
	case -ENOENT:
		/* the filename is unknown */
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1133
		_debug("%pd: dirent not found", dentry);
1134
		if (d_really_is_positive(dentry))
1135 1136
			goto not_found;
		goto out_valid;
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1137

1138
	default:
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1139 1140
		_debug("failed to iterate dir %pd: %d",
		       parent, ret);
1141
		goto out_bad_parent;
1142 1143
	}

1144
out_valid:
1145
	dentry->d_fsdata = (void *)(unsigned long)dir_version;
1146
out_valid_noupdate:
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1147
	dput(parent);
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1148
	key_put(key);
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1149 1150 1151 1152
	_leave(" = 1 [valid]");
	return 1;

	/* the dirent, if it exists, now points to a different vnode */
1153
not_found:
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1154 1155 1156 1157
	spin_lock(&dentry->d_lock);
	dentry->d_flags |= DCACHE_NFSFS_RENAMED;
	spin_unlock(&dentry->d_lock);

1158
out_bad_parent:
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1159
	_debug("dropping dentry %pd2", dentry);
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1160
	dput(parent);
1161
out_bad:
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1162
	key_put(key);
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1163 1164 1165

	_leave(" = 0 [bad]");
	return 0;
1166
}
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1167 1168 1169 1170 1171 1172 1173

/*
 * allow the VFS to enquire as to whether a dentry should be unhashed (mustn't
 * sleep)
 * - called from dput() when d_count is going to 0.
 * - return 1 to request dentry be unhashed, 0 otherwise
 */
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1174
static int afs_d_delete(const struct dentry *dentry)
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1175
{
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1176
	_enter("%pd", dentry);
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1177 1178 1179 1180

	if (dentry->d_flags & DCACHE_NFSFS_RENAMED)
		goto zap;

1181 1182 1183
	if (d_really_is_positive(dentry) &&
	    (test_bit(AFS_VNODE_DELETED,   &AFS_FS_I(d_inode(dentry))->flags) ||
	     test_bit(AFS_VNODE_PSEUDODIR, &AFS_FS_I(d_inode(dentry))->flags)))
1184
		goto zap;
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1185 1186 1187 1188

	_leave(" = 0 [keep]");
	return 0;

1189
zap:
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1190 1191
	_leave(" = 1 [zap]");
	return 1;
1192
}
1193

1194 1195 1196 1197 1198 1199 1200 1201 1202 1203
/*
 * Clean up sillyrename files on dentry removal.
 */
static void afs_d_iput(struct dentry *dentry, struct inode *inode)
{
	if (dentry->d_flags & DCACHE_NFSFS_RENAMED)
		afs_silly_iput(dentry, inode);
	iput(inode);
}

1204 1205 1206
/*
 * handle dentry release
 */
1207
void afs_d_release(struct dentry *dentry)
1208
{
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1209
	_enter("%pd", dentry);
1210 1211
}

1212 1213 1214 1215 1216
/*
 * Create a new inode for create/mkdir/symlink
 */
static void afs_vnode_new_inode(struct afs_fs_cursor *fc,
				struct dentry *new_dentry,
1217
				struct afs_iget_data *new_data,
1218
				struct afs_status_cb *new_scb)
1219
{
1220
	struct afs_vnode *vnode;
1221 1222 1223 1224 1225 1226
	struct inode *inode;

	if (fc->ac.error < 0)
		return;

	inode = afs_iget(fc->vnode->vfs_inode.i_sb, fc->key,
1227
			 new_data, new_scb, fc->cbi, fc->vnode);
1228 1229 1230 1231 1232 1233 1234 1235
	if (IS_ERR(inode)) {
		/* ENOMEM or EINTR at a really inconvenient time - just abandon
		 * the new directory on the server.
		 */
		fc->ac.error = PTR_ERR(inode);
		return;
	}

1236 1237
	vnode = AFS_FS_I(inode);
	set_bit(AFS_VNODE_NEW_CONTENT, &vnode->flags);
1238 1239
	if (fc->ac.error == 0)
		afs_cache_permit(vnode, fc->key, vnode->cb_break, new_scb);
1240
	d_instantiate(new_dentry, inode);
1241 1242
}

1243 1244 1245 1246 1247 1248 1249 1250
static void afs_prep_for_new_inode(struct afs_fs_cursor *fc,
				   struct afs_iget_data *iget_data)
{
	iget_data->volume = fc->vnode->volume;
	iget_data->cb_v_break = fc->vnode->volume->cb_v_break;
	iget_data->cb_s_break = fc->cbi->server->cb_s_break;
}

1251 1252 1253 1254 1255 1256 1257 1258 1259 1260 1261 1262 1263 1264
/*
 * Note that a dentry got changed.  We need to set d_fsdata to the data version
 * number derived from the result of the operation.  It doesn't matter if
 * d_fsdata goes backwards as we'll just revalidate.
 */
static void afs_update_dentry_version(struct afs_fs_cursor *fc,
				      struct dentry *dentry,
				      struct afs_status_cb *scb)
{
	if (fc->ac.error == 0)
		dentry->d_fsdata =
			(void *)(unsigned long)scb->status.data_version;
}

1265 1266 1267
/*
 * create a directory on an AFS filesystem
 */
1268
static int afs_mkdir(struct inode *dir, struct dentry *dentry, umode_t mode)
1269
{
1270
	struct afs_iget_data iget_data;
1271
	struct afs_status_cb *scb;
1272 1273
	struct afs_fs_cursor fc;
	struct afs_vnode *dvnode = AFS_FS_I(dir);
1274 1275 1276
	struct key *key;
	int ret;

1277
	mode |= S_IFDIR;
1278

1279
	_enter("{%llx:%llu},{%pd},%ho",
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1280
	       dvnode->fid.vid, dvnode->fid.vnode, dentry, mode);
1281

1282 1283 1284 1285 1286
	ret = -ENOMEM;
	scb = kcalloc(2, sizeof(struct afs_status_cb), GFP_KERNEL);
	if (!scb)
		goto error;

1287 1288 1289
	key = afs_request_key(dvnode->volume->cell);
	if (IS_ERR(key)) {
		ret = PTR_ERR(key);
1290
		goto error_scb;
1291 1292
	}

1293
	ret = -ERESTARTSYS;
1294
	if (afs_begin_vnode_operation(&fc, dvnode, key, true)) {
1295 1296
		afs_dataversion_t data_version = dvnode->status.data_version + 1;

1297
		while (afs_select_fileserver(&fc)) {
1298
			fc.cb_break = afs_calc_vnode_cb_break(dvnode);
1299
			afs_prep_for_new_inode(&fc, &iget_data);
1300
			afs_fs_create(&fc, dentry->d_name.name, mode,
1301
				      &scb[0], &iget_data.fid, &scb[1]);
1302
		}
1303

1304 1305 1306
		afs_check_for_remote_deletion(&fc, dvnode);
		afs_vnode_commit_status(&fc, dvnode, fc.cb_break,
					&data_version, &scb[0]);
1307
		afs_update_dentry_version(&fc, dentry, &scb[0]);
1308
		afs_vnode_new_inode(&fc, dentry, &iget_data, &scb[1]);
1309 1310 1311
		ret = afs_end_vnode_operation(&fc);
		if (ret < 0)
			goto error_key;
1312 1313
	} else {
		goto error_key;
1314 1315
	}

1316 1317
	if (ret == 0 &&
	    test_bit(AFS_VNODE_DIR_VALID, &dvnode->flags))
1318
		afs_edit_dir_add(dvnode, &dentry->d_name, &iget_data.fid,
1319 1320
				 afs_edit_dir_for_create);

1321
	key_put(key);
1322
	kfree(scb);
1323 1324 1325
	_leave(" = 0");
	return 0;

1326
error_key:
1327
	key_put(key);
1328 1329
error_scb:
	kfree(scb);
1330 1331 1332 1333 1334 1335
error:
	d_drop(dentry);
	_leave(" = %d", ret);
	return ret;
}

1336 1337 1338 1339 1340 1341 1342 1343 1344 1345 1346
/*
 * Remove a subdir from a directory.
 */
static void afs_dir_remove_subdir(struct dentry *dentry)
{
	if (d_really_is_positive(dentry)) {
		struct afs_vnode *vnode = AFS_FS_I(d_inode(dentry));

		clear_nlink(&vnode->vfs_inode);
		set_bit(AFS_VNODE_DELETED, &vnode->flags);
		clear_bit(AFS_VNODE_CB_PROMISED, &vnode->flags);
1347
		clear_bit(AFS_VNODE_DIR_VALID, &vnode->flags);
1348 1349 1350
	}
}

1351 1352 1353 1354 1355
/*
 * remove a directory from an AFS filesystem
 */
static int afs_rmdir(struct inode *dir, struct dentry *dentry)
{
1356
	struct afs_status_cb *scb;
1357
	struct afs_fs_cursor fc;
1358
	struct afs_vnode *dvnode = AFS_FS_I(dir), *vnode = NULL;
1359 1360 1361
	struct key *key;
	int ret;

1362
	_enter("{%llx:%llu},{%pd}",
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Al Viro committed
1363
	       dvnode->fid.vid, dvnode->fid.vnode, dentry);
1364

1365 1366 1367 1368
	scb = kzalloc(sizeof(struct afs_status_cb), GFP_KERNEL);
	if (!scb)
		return -ENOMEM;

1369 1370 1371 1372 1373 1374
	key = afs_request_key(dvnode->volume->cell);
	if (IS_ERR(key)) {
		ret = PTR_ERR(key);
		goto error;
	}

1375 1376 1377 1378 1379 1380 1381 1382
	/* Try to make sure we have a callback promise on the victim. */
	if (d_really_is_positive(dentry)) {
		vnode = AFS_FS_I(d_inode(dentry));
		ret = afs_validate(vnode, key);
		if (ret < 0)
			goto error_key;
	}

1383 1384 1385 1386 1387 1388
	if (vnode) {
		ret = down_write_killable(&vnode->rmdir_lock);
		if (ret < 0)
			goto error_key;
	}

1389
	ret = -ERESTARTSYS;
1390
	if (afs_begin_vnode_operation(&fc, dvnode, key, true)) {
1391 1392
		afs_dataversion_t data_version = dvnode->status.data_version + 1;

1393
		while (afs_select_fileserver(&fc)) {
1394
			fc.cb_break = afs_calc_vnode_cb_break(dvnode);
1395
			afs_fs_remove(&fc, vnode, dentry->d_name.name, true, scb);
1396
		}
1397

1398 1399
		afs_vnode_commit_status(&fc, dvnode, fc.cb_break,
					&data_version, scb);
1400
		afs_update_dentry_version(&fc, dentry, scb);
1401
		ret = afs_end_vnode_operation(&fc);
1402
		if (ret == 0) {
1403
			afs_dir_remove_subdir(dentry);
1404 1405 1406 1407
			if (test_bit(AFS_VNODE_DIR_VALID, &dvnode->flags))
				afs_edit_dir_remove(dvnode, &dentry->d_name,
						    afs_edit_dir_for_rmdir);
		}
1408 1409
	}

1410 1411
	if (vnode)
		up_write(&vnode->rmdir_lock);
1412
error_key:
1413 1414
	key_put(key);
error:
1415
	kfree(scb);
1416 1417 1418 1419
	return ret;
}

/*
1420 1421 1422 1423 1424 1425 1426 1427 1428
 * Remove a link to a file or symlink from a directory.
 *
 * If the file was not deleted due to excess hard links, the fileserver will
 * break the callback promise on the file - if it had one - before it returns
 * to us, and if it was deleted, it won't
 *
 * However, if we didn't have a callback promise outstanding, or it was
 * outstanding on a different server, then it won't break it either...
 */
1429 1430
static int afs_dir_remove_link(struct afs_vnode *dvnode, struct dentry *dentry,
			       struct key *key)
1431 1432 1433 1434 1435 1436
{
	int ret = 0;

	if (d_really_is_positive(dentry)) {
		struct afs_vnode *vnode = AFS_FS_I(d_inode(dentry));

1437 1438
		if (test_bit(AFS_VNODE_DELETED, &vnode->flags)) {
			/* Already done */
1439 1440
		} else if (test_bit(AFS_VNODE_DIR_VALID, &dvnode->flags)) {
			write_seqlock(&vnode->cb_lock);
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1441 1442 1443
			drop_nlink(&vnode->vfs_inode);
			if (vnode->vfs_inode.i_nlink == 0) {
				set_bit(AFS_VNODE_DELETED, &vnode->flags);
1444
				__afs_break_callback(vnode, afs_cb_break_for_unlink);
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1445
			}
1446
			write_sequnlock(&vnode->cb_lock);
1447
			ret = 0;
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1448
		} else {
1449
			afs_break_callback(vnode, afs_cb_break_for_unlink);
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1450 1451 1452 1453 1454 1455 1456 1457

			if (test_bit(AFS_VNODE_DELETED, &vnode->flags))
				kdebug("AFS_VNODE_DELETED");

			ret = afs_validate(vnode, key);
			if (ret == -ESTALE)
				ret = 0;
		}
1458 1459 1460 1461 1462 1463 1464 1465
		_debug("nlink %d [val %d]", vnode->vfs_inode.i_nlink, ret);
	}

	return ret;
}

/*
 * Remove a file or symlink from an AFS filesystem.
1466 1467 1468
 */
static int afs_unlink(struct inode *dir, struct dentry *dentry)
{
1469
	struct afs_fs_cursor fc;
1470
	struct afs_status_cb *scb;
1471 1472
	struct afs_vnode *dvnode = AFS_FS_I(dir);
	struct afs_vnode *vnode = AFS_FS_I(d_inode(dentry));
1473
	struct key *key;
1474
	bool need_rehash = false;
1475 1476
	int ret;

1477
	_enter("{%llx:%llu},{%pd}",
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1478
	       dvnode->fid.vid, dvnode->fid.vnode, dentry);
1479

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1480
	if (dentry->d_name.len >= AFSNAMEMAX)
1481
		return -ENAMETOOLONG;
1482

1483 1484 1485 1486 1487
	ret = -ENOMEM;
	scb = kcalloc(2, sizeof(struct afs_status_cb), GFP_KERNEL);
	if (!scb)
		goto error;

1488 1489 1490
	key = afs_request_key(dvnode->volume->cell);
	if (IS_ERR(key)) {
		ret = PTR_ERR(key);
1491
		goto error_scb;
1492 1493
	}

1494
	/* Try to make sure we have a callback promise on the victim. */
1495 1496 1497
	ret = afs_validate(vnode, key);
	if (ret < 0)
		goto error_key;
1498

1499
	spin_lock(&dentry->d_lock);
1500
	if (d_count(dentry) > 1) {
1501 1502 1503 1504 1505 1506 1507 1508 1509 1510 1511 1512 1513
		spin_unlock(&dentry->d_lock);
		/* Start asynchronous writeout of the inode */
		write_inode_now(d_inode(dentry), 0);
		ret = afs_sillyrename(dvnode, vnode, dentry, key);
		goto error_key;
	}
	if (!d_unhashed(dentry)) {
		/* Prevent a race with RCU lookup. */
		__d_drop(dentry);
		need_rehash = true;
	}
	spin_unlock(&dentry->d_lock);

1514
	ret = -ERESTARTSYS;
1515
	if (afs_begin_vnode_operation(&fc, dvnode, key, true)) {
1516
		afs_dataversion_t data_version = dvnode->status.data_version + 1;
1517
		afs_dataversion_t data_version_2 = vnode->status.data_version;
1518

1519
		while (afs_select_fileserver(&fc)) {
1520
			fc.cb_break = afs_calc_vnode_cb_break(dvnode);
1521
			fc.cb_break_2 = afs_calc_vnode_cb_break(vnode);
1522 1523 1524 1525

			if (test_bit(AFS_SERVER_FL_IS_YFS, &fc.cbi->server->flags) &&
			    !test_bit(AFS_SERVER_FL_NO_RM2, &fc.cbi->server->flags)) {
				yfs_fs_remove_file2(&fc, vnode, dentry->d_name.name,
1526
						    &scb[0], &scb[1]);
1527 1528 1529 1530 1531 1532
				if (fc.ac.error != -ECONNABORTED ||
				    fc.ac.abort_code != RXGEN_OPCODE)
					continue;
				set_bit(AFS_SERVER_FL_NO_RM2, &fc.cbi->server->flags);
			}

1533
			afs_fs_remove(&fc, vnode, dentry->d_name.name, false, &scb[0]);
1534
		}
1535

1536 1537
		afs_vnode_commit_status(&fc, dvnode, fc.cb_break,
					&data_version, &scb[0]);
1538 1539
		afs_vnode_commit_status(&fc, vnode, fc.cb_break_2,
					&data_version_2, &scb[1]);
1540
		afs_update_dentry_version(&fc, dentry, &scb[0]);
1541
		ret = afs_end_vnode_operation(&fc);
1542 1543
		if (ret == 0 && !(scb[1].have_status || scb[1].have_error))
			ret = afs_dir_remove_link(dvnode, dentry, key);
1544 1545 1546 1547
		if (ret == 0 &&
		    test_bit(AFS_VNODE_DIR_VALID, &dvnode->flags))
			afs_edit_dir_remove(dvnode, &dentry->d_name,
					    afs_edit_dir_for_unlink);
1548 1549
	}

1550 1551 1552
	if (need_rehash && ret < 0 && ret != -ENOENT)
		d_rehash(dentry);

1553
error_key:
1554
	key_put(key);
1555 1556
error_scb:
	kfree(scb);
1557 1558 1559 1560 1561 1562 1563 1564
error:
	_leave(" = %d", ret);
	return ret;
}

/*
 * create a regular file on an AFS filesystem
 */
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1565
static int afs_create(struct inode *dir, struct dentry *dentry, umode_t mode,
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1566
		      bool excl)
1567
{
1568
	struct afs_iget_data iget_data;
1569
	struct afs_fs_cursor fc;
1570
	struct afs_status_cb *scb;
1571
	struct afs_vnode *dvnode = AFS_FS_I(dir);
1572 1573 1574
	struct key *key;
	int ret;

1575
	mode |= S_IFREG;
1576

1577
	_enter("{%llx:%llu},{%pd},%ho,",
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1578
	       dvnode->fid.vid, dvnode->fid.vnode, dentry, mode);
1579

1580 1581 1582 1583
	ret = -ENAMETOOLONG;
	if (dentry->d_name.len >= AFSNAMEMAX)
		goto error;

1584 1585 1586 1587 1588 1589
	key = afs_request_key(dvnode->volume->cell);
	if (IS_ERR(key)) {
		ret = PTR_ERR(key);
		goto error;
	}

1590 1591 1592 1593 1594
	ret = -ENOMEM;
	scb = kcalloc(2, sizeof(struct afs_status_cb), GFP_KERNEL);
	if (!scb)
		goto error_scb;

1595
	ret = -ERESTARTSYS;
1596
	if (afs_begin_vnode_operation(&fc, dvnode, key, true)) {
1597 1598
		afs_dataversion_t data_version = dvnode->status.data_version + 1;

1599
		while (afs_select_fileserver(&fc)) {
1600
			fc.cb_break = afs_calc_vnode_cb_break(dvnode);
1601
			afs_prep_for_new_inode(&fc, &iget_data);
1602
			afs_fs_create(&fc, dentry->d_name.name, mode,
1603
				      &scb[0], &iget_data.fid, &scb[1]);
1604
		}
1605

1606 1607 1608
		afs_check_for_remote_deletion(&fc, dvnode);
		afs_vnode_commit_status(&fc, dvnode, fc.cb_break,
					&data_version, &scb[0]);
1609
		afs_update_dentry_version(&fc, dentry, &scb[0]);
1610
		afs_vnode_new_inode(&fc, dentry, &iget_data, &scb[1]);
1611 1612 1613
		ret = afs_end_vnode_operation(&fc);
		if (ret < 0)
			goto error_key;
1614 1615
	} else {
		goto error_key;
1616 1617
	}

1618
	if (test_bit(AFS_VNODE_DIR_VALID, &dvnode->flags))
1619
		afs_edit_dir_add(dvnode, &dentry->d_name, &iget_data.fid,
1620 1621
				 afs_edit_dir_for_create);

1622
	kfree(scb);
1623 1624 1625 1626
	key_put(key);
	_leave(" = 0");
	return 0;

1627 1628
error_scb:
	kfree(scb);
1629
error_key:
1630 1631 1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642
	key_put(key);
error:
	d_drop(dentry);
	_leave(" = %d", ret);
	return ret;
}

/*
 * create a hard link between files in an AFS filesystem
 */
static int afs_link(struct dentry *from, struct inode *dir,
		    struct dentry *dentry)
{
1643
	struct afs_fs_cursor fc;
1644 1645 1646
	struct afs_status_cb *scb;
	struct afs_vnode *dvnode = AFS_FS_I(dir);
	struct afs_vnode *vnode = AFS_FS_I(d_inode(from));
1647 1648 1649
	struct key *key;
	int ret;

1650
	_enter("{%llx:%llu},{%llx:%llu},{%pd}",
1651 1652
	       vnode->fid.vid, vnode->fid.vnode,
	       dvnode->fid.vid, dvnode->fid.vnode,
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1653
	       dentry);
1654

1655 1656 1657 1658
	ret = -ENAMETOOLONG;
	if (dentry->d_name.len >= AFSNAMEMAX)
		goto error;

1659 1660 1661 1662 1663
	ret = -ENOMEM;
	scb = kcalloc(2, sizeof(struct afs_status_cb), GFP_KERNEL);
	if (!scb)
		goto error;

1664 1665 1666
	key = afs_request_key(dvnode->volume->cell);
	if (IS_ERR(key)) {
		ret = PTR_ERR(key);
1667
		goto error_scb;
1668 1669
	}

1670
	ret = -ERESTARTSYS;
1671
	if (afs_begin_vnode_operation(&fc, dvnode, key, true)) {
1672 1673
		afs_dataversion_t data_version = dvnode->status.data_version + 1;

1674 1675
		if (mutex_lock_interruptible_nested(&vnode->io_lock, 1) < 0) {
			afs_end_vnode_operation(&fc);
1676
			goto error_key;
1677 1678 1679
		}

		while (afs_select_fileserver(&fc)) {
1680 1681
			fc.cb_break = afs_calc_vnode_cb_break(dvnode);
			fc.cb_break_2 = afs_calc_vnode_cb_break(vnode);
1682 1683
			afs_fs_link(&fc, vnode, dentry->d_name.name,
				    &scb[0], &scb[1]);
1684 1685
		}

1686 1687 1688 1689
		afs_vnode_commit_status(&fc, dvnode, fc.cb_break,
					&data_version, &scb[0]);
		afs_vnode_commit_status(&fc, vnode, fc.cb_break_2,
					NULL, &scb[1]);
1690
		ihold(&vnode->vfs_inode);
1691
		afs_update_dentry_version(&fc, dentry, &scb[0]);
1692 1693 1694 1695 1696 1697
		d_instantiate(dentry, &vnode->vfs_inode);

		mutex_unlock(&vnode->io_lock);
		ret = afs_end_vnode_operation(&fc);
		if (ret < 0)
			goto error_key;
1698 1699
	} else {
		goto error_key;
1700
	}
1701

1702 1703 1704 1705
	if (test_bit(AFS_VNODE_DIR_VALID, &dvnode->flags))
		afs_edit_dir_add(dvnode, &dentry->d_name, &vnode->fid,
				 afs_edit_dir_for_link);

1706
	key_put(key);
1707
	kfree(scb);
1708 1709 1710
	_leave(" = 0");
	return 0;

1711
error_key:
1712
	key_put(key);
1713 1714
error_scb:
	kfree(scb);
1715 1716 1717 1718 1719 1720 1721 1722 1723 1724 1725 1726
error:
	d_drop(dentry);
	_leave(" = %d", ret);
	return ret;
}

/*
 * create a symlink in an AFS filesystem
 */
static int afs_symlink(struct inode *dir, struct dentry *dentry,
		       const char *content)
{
1727
	struct afs_iget_data iget_data;
1728
	struct afs_fs_cursor fc;
1729
	struct afs_status_cb *scb;
1730
	struct afs_vnode *dvnode = AFS_FS_I(dir);
1731 1732 1733
	struct key *key;
	int ret;

1734
	_enter("{%llx:%llu},{%pd},%s",
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1735
	       dvnode->fid.vid, dvnode->fid.vnode, dentry,
1736 1737
	       content);

1738 1739 1740 1741
	ret = -ENAMETOOLONG;
	if (dentry->d_name.len >= AFSNAMEMAX)
		goto error;

1742
	ret = -EINVAL;
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1743
	if (strlen(content) >= AFSPATHMAX)
1744 1745
		goto error;

1746 1747 1748 1749 1750
	ret = -ENOMEM;
	scb = kcalloc(2, sizeof(struct afs_status_cb), GFP_KERNEL);
	if (!scb)
		goto error;

1751 1752 1753
	key = afs_request_key(dvnode->volume->cell);
	if (IS_ERR(key)) {
		ret = PTR_ERR(key);
1754
		goto error_scb;
1755 1756
	}

1757
	ret = -ERESTARTSYS;
1758
	if (afs_begin_vnode_operation(&fc, dvnode, key, true)) {
1759 1760
		afs_dataversion_t data_version = dvnode->status.data_version + 1;

1761
		while (afs_select_fileserver(&fc)) {
1762
			fc.cb_break = afs_calc_vnode_cb_break(dvnode);
1763
			afs_prep_for_new_inode(&fc, &iget_data);
1764
			afs_fs_symlink(&fc, dentry->d_name.name, content,
1765
				       &scb[0], &iget_data.fid, &scb[1]);
1766
		}
1767

1768 1769 1770
		afs_check_for_remote_deletion(&fc, dvnode);
		afs_vnode_commit_status(&fc, dvnode, fc.cb_break,
					&data_version, &scb[0]);
1771
		afs_update_dentry_version(&fc, dentry, &scb[0]);
1772
		afs_vnode_new_inode(&fc, dentry, &iget_data, &scb[1]);
1773 1774 1775
		ret = afs_end_vnode_operation(&fc);
		if (ret < 0)
			goto error_key;
1776 1777
	} else {
		goto error_key;
1778 1779
	}

1780
	if (test_bit(AFS_VNODE_DIR_VALID, &dvnode->flags))
1781
		afs_edit_dir_add(dvnode, &dentry->d_name, &iget_data.fid,
1782 1783
				 afs_edit_dir_for_symlink);

1784
	key_put(key);
1785
	kfree(scb);
1786 1787 1788
	_leave(" = 0");
	return 0;

1789
error_key:
1790
	key_put(key);
1791 1792
error_scb:
	kfree(scb);
1793 1794 1795 1796 1797 1798 1799 1800 1801 1802
error:
	d_drop(dentry);
	_leave(" = %d", ret);
	return ret;
}

/*
 * rename a file in an AFS filesystem and/or move it between directories
 */
static int afs_rename(struct inode *old_dir, struct dentry *old_dentry,
1803 1804
		      struct inode *new_dir, struct dentry *new_dentry,
		      unsigned int flags)
1805
{
1806
	struct afs_fs_cursor fc;
1807
	struct afs_status_cb *scb;
1808
	struct afs_vnode *orig_dvnode, *new_dvnode, *vnode;
1809 1810
	struct dentry *tmp = NULL, *rehash = NULL;
	struct inode *new_inode;
1811
	struct key *key;
1812
	bool new_negative = d_is_negative(new_dentry);
1813 1814
	int ret;

1815 1816 1817
	if (flags)
		return -EINVAL;

1818 1819 1820 1821
	/* Don't allow silly-rename files be moved around. */
	if (old_dentry->d_flags & DCACHE_NFSFS_RENAMED)
		return -EINVAL;

1822
	vnode = AFS_FS_I(d_inode(old_dentry));
1823 1824 1825
	orig_dvnode = AFS_FS_I(old_dir);
	new_dvnode = AFS_FS_I(new_dir);

1826
	_enter("{%llx:%llu},{%llx:%llu},{%llx:%llu},{%pd}",
1827 1828 1829
	       orig_dvnode->fid.vid, orig_dvnode->fid.vnode,
	       vnode->fid.vid, vnode->fid.vnode,
	       new_dvnode->fid.vid, new_dvnode->fid.vnode,
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1830
	       new_dentry);
1831

1832 1833 1834 1835 1836
	ret = -ENOMEM;
	scb = kcalloc(2, sizeof(struct afs_status_cb), GFP_KERNEL);
	if (!scb)
		goto error;

1837 1838 1839
	key = afs_request_key(orig_dvnode->volume->cell);
	if (IS_ERR(key)) {
		ret = PTR_ERR(key);
1840
		goto error_scb;
1841 1842
	}

1843 1844 1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855 1856 1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867 1868 1869 1870 1871 1872 1873 1874 1875 1876
	/* For non-directories, check whether the target is busy and if so,
	 * make a copy of the dentry and then do a silly-rename.  If the
	 * silly-rename succeeds, the copied dentry is hashed and becomes the
	 * new target.
	 */
	if (d_is_positive(new_dentry) && !d_is_dir(new_dentry)) {
		/* To prevent any new references to the target during the
		 * rename, we unhash the dentry in advance.
		 */
		if (!d_unhashed(new_dentry)) {
			d_drop(new_dentry);
			rehash = new_dentry;
		}

		if (d_count(new_dentry) > 2) {
			/* copy the target dentry's name */
			ret = -ENOMEM;
			tmp = d_alloc(new_dentry->d_parent,
				      &new_dentry->d_name);
			if (!tmp)
				goto error_rehash;

			ret = afs_sillyrename(new_dvnode,
					      AFS_FS_I(d_inode(new_dentry)),
					      new_dentry, key);
			if (ret)
				goto error_rehash;

			new_dentry = tmp;
			rehash = NULL;
			new_negative = true;
		}
	}

1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887
	/* This bit is potentially nasty as there's a potential race with
	 * afs_d_revalidate{,_rcu}().  We have to change d_fsdata on the dentry
	 * to reflect it's new parent's new data_version after the op, but
	 * d_revalidate may see old_dentry between the op having taken place
	 * and the version being updated.
	 *
	 * So drop the old_dentry for now to make other threads go through
	 * lookup instead - which we hold a lock against.
	 */
	d_drop(old_dentry);

1888
	ret = -ERESTARTSYS;
1889
	if (afs_begin_vnode_operation(&fc, orig_dvnode, key, true)) {
1890 1891 1892 1893 1894 1895
		afs_dataversion_t orig_data_version;
		afs_dataversion_t new_data_version;
		struct afs_status_cb *new_scb = &scb[1];

		orig_data_version = orig_dvnode->status.data_version + 1;

1896 1897 1898
		if (orig_dvnode != new_dvnode) {
			if (mutex_lock_interruptible_nested(&new_dvnode->io_lock, 1) < 0) {
				afs_end_vnode_operation(&fc);
1899
				goto error_rehash_old;
1900
			}
1901
			new_data_version = new_dvnode->status.data_version + 1;
1902 1903 1904
		} else {
			new_data_version = orig_data_version;
			new_scb = &scb[0];
1905
		}
1906

1907
		while (afs_select_fileserver(&fc)) {
1908 1909
			fc.cb_break = afs_calc_vnode_cb_break(orig_dvnode);
			fc.cb_break_2 = afs_calc_vnode_cb_break(new_dvnode);
1910
			afs_fs_rename(&fc, old_dentry->d_name.name,
1911
				      new_dvnode, new_dentry->d_name.name,
1912
				      &scb[0], new_scb);
1913 1914
		}

1915 1916 1917 1918 1919
		afs_vnode_commit_status(&fc, orig_dvnode, fc.cb_break,
					&orig_data_version, &scb[0]);
		if (new_dvnode != orig_dvnode) {
			afs_vnode_commit_status(&fc, new_dvnode, fc.cb_break_2,
						&new_data_version, &scb[1]);
1920
			mutex_unlock(&new_dvnode->io_lock);
1921
		}
1922 1923
		ret = afs_end_vnode_operation(&fc);
		if (ret < 0)
1924
			goto error_rehash_old;
1925 1926
	}

1927
	if (ret == 0) {
1928 1929
		if (rehash)
			d_rehash(rehash);
1930 1931
		if (test_bit(AFS_VNODE_DIR_VALID, &orig_dvnode->flags))
		    afs_edit_dir_remove(orig_dvnode, &old_dentry->d_name,
1932
					afs_edit_dir_for_rename_0);
1933 1934 1935 1936

		if (!new_negative &&
		    test_bit(AFS_VNODE_DIR_VALID, &new_dvnode->flags))
			afs_edit_dir_remove(new_dvnode, &new_dentry->d_name,
1937
					    afs_edit_dir_for_rename_1);
1938 1939 1940

		if (test_bit(AFS_VNODE_DIR_VALID, &new_dvnode->flags))
			afs_edit_dir_add(new_dvnode, &new_dentry->d_name,
1941 1942 1943 1944 1945 1946 1947 1948 1949
					 &vnode->fid, afs_edit_dir_for_rename_2);

		new_inode = d_inode(new_dentry);
		if (new_inode) {
			spin_lock(&new_inode->i_lock);
			if (new_inode->i_nlink > 0)
				drop_nlink(new_inode);
			spin_unlock(&new_inode->i_lock);
		}
1950 1951 1952 1953 1954 1955 1956 1957 1958 1959 1960 1961 1962 1963

		/* Now we can update d_fsdata on the dentries to reflect their
		 * new parent's data_version.
		 *
		 * Note that if we ever implement RENAME_EXCHANGE, we'll have
		 * to update both dentries with opposing dir versions.
		 */
		if (new_dvnode != orig_dvnode) {
			afs_update_dentry_version(&fc, old_dentry, &scb[1]);
			afs_update_dentry_version(&fc, new_dentry, &scb[1]);
		} else {
			afs_update_dentry_version(&fc, old_dentry, &scb[0]);
			afs_update_dentry_version(&fc, new_dentry, &scb[0]);
		}
1964 1965
		d_move(old_dentry, new_dentry);
		goto error_tmp;
1966 1967
	}

1968 1969
error_rehash_old:
	d_rehash(new_dentry);
1970 1971 1972 1973 1974 1975
error_rehash:
	if (rehash)
		d_rehash(rehash);
error_tmp:
	if (tmp)
		dput(tmp);
1976
	key_put(key);
1977 1978
error_scb:
	kfree(scb);
1979 1980 1981 1982
error:
	_leave(" = %d", ret);
	return ret;
}
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1983 1984 1985 1986 1987 1988 1989 1990 1991

/*
 * Release a directory page and clean up its private state if it's not busy
 * - return true if the page can now be released, false if not
 */
static int afs_dir_releasepage(struct page *page, gfp_t gfp_flags)
{
	struct afs_vnode *dvnode = AFS_FS_I(page->mapping->host);

1992
	_enter("{{%llx:%llu}[%lu]}", dvnode->fid.vid, dvnode->fid.vnode, page->index);
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1993 1994 1995 1996 1997 1998 1999 2000 2001 2002 2003 2004 2005 2006 2007 2008 2009 2010 2011 2012 2013 2014 2015 2016 2017 2018 2019 2020 2021 2022 2023 2024 2025 2026

	set_page_private(page, 0);
	ClearPagePrivate(page);

	/* The directory will need reloading. */
	if (test_and_clear_bit(AFS_VNODE_DIR_VALID, &dvnode->flags))
		afs_stat_v(dvnode, n_relpg);
	return 1;
}

/*
 * invalidate part or all of a page
 * - release a page and clean up its private data if offset is 0 (indicating
 *   the entire page)
 */
static void afs_dir_invalidatepage(struct page *page, unsigned int offset,
				   unsigned int length)
{
	struct afs_vnode *dvnode = AFS_FS_I(page->mapping->host);

	_enter("{%lu},%u,%u", page->index, offset, length);

	BUG_ON(!PageLocked(page));

	/* The directory will need reloading. */
	if (test_and_clear_bit(AFS_VNODE_DIR_VALID, &dvnode->flags))
		afs_stat_v(dvnode, n_inval);

	/* we clean up only if the entire page is being invalidated */
	if (offset == 0 && length == PAGE_SIZE) {
		set_page_private(page, 0);
		ClearPagePrivate(page);
	}
}