Pull vfs pile (part one) from Al Viro: "Assorted stuff - cleaning namei.c up a bit, fixing ->d_name/->d_parent locking violations, etc. The most visible changes here are death of FS_REVAL_DOT (replaced with "has ->d_weak_revalidate()") and a new helper getting from struct file to inode. Some bits of preparation to xattr method interface changes. Misc patches by various people sent this cycle *and* ocfs2 fixes from several cycles ago that should've been upstream right then. PS: the next vfs pile will be xattr stuff." * 'for-linus' of git://git.kernel.org/pub/scm/linux/kernel/git/viro/vfs: (46 commits) saner proc_get_inode() calling conventions proc: avoid extra pde_put() in proc_fill_super() fs: change return values from -EACCES to -EPERM fs/exec.c: make bprm_mm_init() static ocfs2/dlm: use GFP_ATOMIC inside a spin_lock ocfs2: fix possible use-after-free with AIO ocfs2: Fix oops in ocfs2_fast_symlink_readpage() code path get_empty_filp()/alloc_file() leave both ->f_pos and ->f_version zero target: writev() on single-element vector is pointless export kernel_write(), convert open-coded instances fs: encode_fh: return FILEID_INVALID if invalid fid_type kill f_vfsmnt vfs: kill FS_REVAL_DOT by adding a d_weak_revalidate dentry op nfsd: handle vfs_getattr errors in acl protocol switch vfs_getattr() to struct path default SET_PERSONALITY() in linux/elf.h ceph: prepopulate inodes only when request is aborted d_hash_and_lookup(): export, switch open-coded instances 9p: switch v9fs_set_create_acl() to inode+fid, do it before d_instantiate() 9p: split dropping the acls from v9fs_set_create_acl() ...
		
			
				
	
	
		
			654 lines
		
	
	
	
		
			16 KiB
			
		
	
	
	
		
			C
		
	
	
	
	
	
			
		
		
	
	
			654 lines
		
	
	
	
		
			16 KiB
			
		
	
	
	
		
			C
		
	
	
	
	
	
| /*
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|  *  linux/fs/ext4/file.c
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|  *
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|  * Copyright (C) 1992, 1993, 1994, 1995
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|  * Remy Card (card@masi.ibp.fr)
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|  * Laboratoire MASI - Institut Blaise Pascal
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|  * Universite Pierre et Marie Curie (Paris VI)
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|  *
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|  *  from
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|  *
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|  *  linux/fs/minix/file.c
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|  *
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|  *  Copyright (C) 1991, 1992  Linus Torvalds
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|  *
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|  *  ext4 fs regular file handling primitives
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|  *
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|  *  64-bit file support on 64-bit platforms by Jakub Jelinek
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|  *	(jj@sunsite.ms.mff.cuni.cz)
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|  */
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| 
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| #include <linux/time.h>
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| #include <linux/fs.h>
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| #include <linux/jbd2.h>
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| #include <linux/mount.h>
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| #include <linux/path.h>
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| #include <linux/quotaops.h>
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| #include <linux/pagevec.h>
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| #include "ext4.h"
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| #include "ext4_jbd2.h"
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| #include "xattr.h"
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| #include "acl.h"
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| 
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| /*
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|  * Called when an inode is released. Note that this is different
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|  * from ext4_file_open: open gets called at every open, but release
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|  * gets called only when /all/ the files are closed.
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|  */
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| static int ext4_release_file(struct inode *inode, struct file *filp)
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| {
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| 	if (ext4_test_inode_state(inode, EXT4_STATE_DA_ALLOC_CLOSE)) {
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| 		ext4_alloc_da_blocks(inode);
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| 		ext4_clear_inode_state(inode, EXT4_STATE_DA_ALLOC_CLOSE);
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| 	}
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| 	/* if we are the last writer on the inode, drop the block reservation */
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| 	if ((filp->f_mode & FMODE_WRITE) &&
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| 			(atomic_read(&inode->i_writecount) == 1) &&
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| 		        !EXT4_I(inode)->i_reserved_data_blocks)
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| 	{
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| 		down_write(&EXT4_I(inode)->i_data_sem);
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| 		ext4_discard_preallocations(inode);
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| 		up_write(&EXT4_I(inode)->i_data_sem);
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| 	}
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| 	if (is_dx(inode) && filp->private_data)
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| 		ext4_htree_free_dir_info(filp->private_data);
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| 
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| 	return 0;
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| }
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| 
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| void ext4_unwritten_wait(struct inode *inode)
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| {
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| 	wait_queue_head_t *wq = ext4_ioend_wq(inode);
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| 
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| 	wait_event(*wq, (atomic_read(&EXT4_I(inode)->i_unwritten) == 0));
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| }
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| 
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| /*
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|  * This tests whether the IO in question is block-aligned or not.
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|  * Ext4 utilizes unwritten extents when hole-filling during direct IO, and they
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|  * are converted to written only after the IO is complete.  Until they are
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|  * mapped, these blocks appear as holes, so dio_zero_block() will assume that
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|  * it needs to zero out portions of the start and/or end block.  If 2 AIO
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|  * threads are at work on the same unwritten block, they must be synchronized
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|  * or one thread will zero the other's data, causing corruption.
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|  */
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| static int
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| ext4_unaligned_aio(struct inode *inode, const struct iovec *iov,
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| 		   unsigned long nr_segs, loff_t pos)
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| {
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| 	struct super_block *sb = inode->i_sb;
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| 	int blockmask = sb->s_blocksize - 1;
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| 	size_t count = iov_length(iov, nr_segs);
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| 	loff_t final_size = pos + count;
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| 
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| 	if (pos >= inode->i_size)
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| 		return 0;
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| 
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| 	if ((pos & blockmask) || (final_size & blockmask))
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| 		return 1;
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| 
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| 	return 0;
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| }
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| 
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| static ssize_t
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| ext4_file_dio_write(struct kiocb *iocb, const struct iovec *iov,
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| 		    unsigned long nr_segs, loff_t pos)
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| {
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| 	struct file *file = iocb->ki_filp;
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| 	struct inode *inode = file->f_mapping->host;
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| 	struct blk_plug plug;
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| 	int unaligned_aio = 0;
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| 	ssize_t ret;
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| 	int overwrite = 0;
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| 	size_t length = iov_length(iov, nr_segs);
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| 
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| 	if (ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS) &&
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| 	    !is_sync_kiocb(iocb))
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| 		unaligned_aio = ext4_unaligned_aio(inode, iov, nr_segs, pos);
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| 
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| 	/* Unaligned direct AIO must be serialized; see comment above */
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| 	if (unaligned_aio) {
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| 		mutex_lock(ext4_aio_mutex(inode));
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| 		ext4_unwritten_wait(inode);
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| 	}
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| 
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| 	BUG_ON(iocb->ki_pos != pos);
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| 
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| 	mutex_lock(&inode->i_mutex);
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| 	blk_start_plug(&plug);
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| 
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| 	iocb->private = &overwrite;
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| 
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| 	/* check whether we do a DIO overwrite or not */
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| 	if (ext4_should_dioread_nolock(inode) && !unaligned_aio &&
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| 	    !file->f_mapping->nrpages && pos + length <= i_size_read(inode)) {
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| 		struct ext4_map_blocks map;
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| 		unsigned int blkbits = inode->i_blkbits;
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| 		int err, len;
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| 
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| 		map.m_lblk = pos >> blkbits;
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| 		map.m_len = (EXT4_BLOCK_ALIGN(pos + length, blkbits) >> blkbits)
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| 			- map.m_lblk;
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| 		len = map.m_len;
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| 
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| 		err = ext4_map_blocks(NULL, inode, &map, 0);
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| 		/*
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| 		 * 'err==len' means that all of blocks has been preallocated no
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| 		 * matter they are initialized or not.  For excluding
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| 		 * uninitialized extents, we need to check m_flags.  There are
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| 		 * two conditions that indicate for initialized extents.
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| 		 * 1) If we hit extent cache, EXT4_MAP_MAPPED flag is returned;
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| 		 * 2) If we do a real lookup, non-flags are returned.
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| 		 * So we should check these two conditions.
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| 		 */
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| 		if (err == len && (map.m_flags & EXT4_MAP_MAPPED))
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| 			overwrite = 1;
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| 	}
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| 
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| 	ret = __generic_file_aio_write(iocb, iov, nr_segs, &iocb->ki_pos);
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| 	mutex_unlock(&inode->i_mutex);
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| 
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| 	if (ret > 0 || ret == -EIOCBQUEUED) {
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| 		ssize_t err;
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| 
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| 		err = generic_write_sync(file, pos, ret);
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| 		if (err < 0 && ret > 0)
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| 			ret = err;
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| 	}
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| 	blk_finish_plug(&plug);
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| 
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| 	if (unaligned_aio)
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| 		mutex_unlock(ext4_aio_mutex(inode));
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| 
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| 	return ret;
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| }
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| 
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| static ssize_t
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| ext4_file_write(struct kiocb *iocb, const struct iovec *iov,
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| 		unsigned long nr_segs, loff_t pos)
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| {
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| 	struct inode *inode = file_inode(iocb->ki_filp);
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| 	ssize_t ret;
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| 
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| 	/*
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| 	 * If we have encountered a bitmap-format file, the size limit
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| 	 * is smaller than s_maxbytes, which is for extent-mapped files.
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| 	 */
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| 
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| 	if (!(ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS))) {
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| 		struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb);
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| 		size_t length = iov_length(iov, nr_segs);
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| 
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| 		if ((pos > sbi->s_bitmap_maxbytes ||
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| 		    (pos == sbi->s_bitmap_maxbytes && length > 0)))
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| 			return -EFBIG;
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| 
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| 		if (pos + length > sbi->s_bitmap_maxbytes) {
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| 			nr_segs = iov_shorten((struct iovec *)iov, nr_segs,
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| 					      sbi->s_bitmap_maxbytes - pos);
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| 		}
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| 	}
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| 
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| 	if (unlikely(iocb->ki_filp->f_flags & O_DIRECT))
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| 		ret = ext4_file_dio_write(iocb, iov, nr_segs, pos);
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| 	else
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| 		ret = generic_file_aio_write(iocb, iov, nr_segs, pos);
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| 
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| 	return ret;
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| }
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| 
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| static const struct vm_operations_struct ext4_file_vm_ops = {
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| 	.fault		= filemap_fault,
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| 	.page_mkwrite   = ext4_page_mkwrite,
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| 	.remap_pages	= generic_file_remap_pages,
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| };
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| 
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| static int ext4_file_mmap(struct file *file, struct vm_area_struct *vma)
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| {
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| 	struct address_space *mapping = file->f_mapping;
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| 
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| 	if (!mapping->a_ops->readpage)
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| 		return -ENOEXEC;
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| 	file_accessed(file);
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| 	vma->vm_ops = &ext4_file_vm_ops;
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| 	return 0;
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| }
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| 
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| static int ext4_file_open(struct inode * inode, struct file * filp)
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| {
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| 	struct super_block *sb = inode->i_sb;
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| 	struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb);
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| 	struct ext4_inode_info *ei = EXT4_I(inode);
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| 	struct vfsmount *mnt = filp->f_path.mnt;
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| 	struct path path;
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| 	char buf[64], *cp;
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| 
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| 	if (unlikely(!(sbi->s_mount_flags & EXT4_MF_MNTDIR_SAMPLED) &&
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| 		     !(sb->s_flags & MS_RDONLY))) {
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| 		sbi->s_mount_flags |= EXT4_MF_MNTDIR_SAMPLED;
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| 		/*
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| 		 * Sample where the filesystem has been mounted and
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| 		 * store it in the superblock for sysadmin convenience
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| 		 * when trying to sort through large numbers of block
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| 		 * devices or filesystem images.
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| 		 */
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| 		memset(buf, 0, sizeof(buf));
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| 		path.mnt = mnt;
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| 		path.dentry = mnt->mnt_root;
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| 		cp = d_path(&path, buf, sizeof(buf));
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| 		if (!IS_ERR(cp)) {
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| 			handle_t *handle;
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| 			int err;
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| 
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| 			handle = ext4_journal_start_sb(sb, EXT4_HT_MISC, 1);
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| 			if (IS_ERR(handle))
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| 				return PTR_ERR(handle);
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| 			err = ext4_journal_get_write_access(handle, sbi->s_sbh);
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| 			if (err) {
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| 				ext4_journal_stop(handle);
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| 				return err;
 | |
| 			}
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| 			strlcpy(sbi->s_es->s_last_mounted, cp,
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| 				sizeof(sbi->s_es->s_last_mounted));
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| 			ext4_handle_dirty_super(handle, sb);
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| 			ext4_journal_stop(handle);
 | |
| 		}
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| 	}
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| 	/*
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| 	 * Set up the jbd2_inode if we are opening the inode for
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| 	 * writing and the journal is present
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| 	 */
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| 	if (sbi->s_journal && !ei->jinode && (filp->f_mode & FMODE_WRITE)) {
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| 		struct jbd2_inode *jinode = jbd2_alloc_inode(GFP_KERNEL);
 | |
| 
 | |
| 		spin_lock(&inode->i_lock);
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| 		if (!ei->jinode) {
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| 			if (!jinode) {
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| 				spin_unlock(&inode->i_lock);
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| 				return -ENOMEM;
 | |
| 			}
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| 			ei->jinode = jinode;
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| 			jbd2_journal_init_jbd_inode(ei->jinode, inode);
 | |
| 			jinode = NULL;
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| 		}
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| 		spin_unlock(&inode->i_lock);
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| 		if (unlikely(jinode != NULL))
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| 			jbd2_free_inode(jinode);
 | |
| 	}
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| 	return dquot_file_open(inode, filp);
 | |
| }
 | |
| 
 | |
| /*
 | |
|  * Here we use ext4_map_blocks() to get a block mapping for a extent-based
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|  * file rather than ext4_ext_walk_space() because we can introduce
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|  * SEEK_DATA/SEEK_HOLE for block-mapped and extent-mapped file at the same
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|  * function.  When extent status tree has been fully implemented, it will
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|  * track all extent status for a file and we can directly use it to
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|  * retrieve the offset for SEEK_DATA/SEEK_HOLE.
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|  */
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| 
 | |
| /*
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|  * When we retrieve the offset for SEEK_DATA/SEEK_HOLE, we would need to
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|  * lookup page cache to check whether or not there has some data between
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|  * [startoff, endoff] because, if this range contains an unwritten extent,
 | |
|  * we determine this extent as a data or a hole according to whether the
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|  * page cache has data or not.
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|  */
 | |
| static int ext4_find_unwritten_pgoff(struct inode *inode,
 | |
| 				     int whence,
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| 				     struct ext4_map_blocks *map,
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| 				     loff_t *offset)
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| {
 | |
| 	struct pagevec pvec;
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| 	unsigned int blkbits;
 | |
| 	pgoff_t index;
 | |
| 	pgoff_t end;
 | |
| 	loff_t endoff;
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| 	loff_t startoff;
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| 	loff_t lastoff;
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| 	int found = 0;
 | |
| 
 | |
| 	blkbits = inode->i_sb->s_blocksize_bits;
 | |
| 	startoff = *offset;
 | |
| 	lastoff = startoff;
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| 	endoff = (map->m_lblk + map->m_len) << blkbits;
 | |
| 
 | |
| 	index = startoff >> PAGE_CACHE_SHIFT;
 | |
| 	end = endoff >> PAGE_CACHE_SHIFT;
 | |
| 
 | |
| 	pagevec_init(&pvec, 0);
 | |
| 	do {
 | |
| 		int i, num;
 | |
| 		unsigned long nr_pages;
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| 
 | |
| 		num = min_t(pgoff_t, end - index, PAGEVEC_SIZE);
 | |
| 		nr_pages = pagevec_lookup(&pvec, inode->i_mapping, index,
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| 					  (pgoff_t)num);
 | |
| 		if (nr_pages == 0) {
 | |
| 			if (whence == SEEK_DATA)
 | |
| 				break;
 | |
| 
 | |
| 			BUG_ON(whence != SEEK_HOLE);
 | |
| 			/*
 | |
| 			 * If this is the first time to go into the loop and
 | |
| 			 * offset is not beyond the end offset, it will be a
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| 			 * hole at this offset
 | |
| 			 */
 | |
| 			if (lastoff == startoff || lastoff < endoff)
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| 				found = 1;
 | |
| 			break;
 | |
| 		}
 | |
| 
 | |
| 		/*
 | |
| 		 * If this is the first time to go into the loop and
 | |
| 		 * offset is smaller than the first page offset, it will be a
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| 		 * hole at this offset.
 | |
| 		 */
 | |
| 		if (lastoff == startoff && whence == SEEK_HOLE &&
 | |
| 		    lastoff < page_offset(pvec.pages[0])) {
 | |
| 			found = 1;
 | |
| 			break;
 | |
| 		}
 | |
| 
 | |
| 		for (i = 0; i < nr_pages; i++) {
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| 			struct page *page = pvec.pages[i];
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| 			struct buffer_head *bh, *head;
 | |
| 
 | |
| 			/*
 | |
| 			 * If the current offset is not beyond the end of given
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| 			 * range, it will be a hole.
 | |
| 			 */
 | |
| 			if (lastoff < endoff && whence == SEEK_HOLE &&
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| 			    page->index > end) {
 | |
| 				found = 1;
 | |
| 				*offset = lastoff;
 | |
| 				goto out;
 | |
| 			}
 | |
| 
 | |
| 			lock_page(page);
 | |
| 
 | |
| 			if (unlikely(page->mapping != inode->i_mapping)) {
 | |
| 				unlock_page(page);
 | |
| 				continue;
 | |
| 			}
 | |
| 
 | |
| 			if (!page_has_buffers(page)) {
 | |
| 				unlock_page(page);
 | |
| 				continue;
 | |
| 			}
 | |
| 
 | |
| 			if (page_has_buffers(page)) {
 | |
| 				lastoff = page_offset(page);
 | |
| 				bh = head = page_buffers(page);
 | |
| 				do {
 | |
| 					if (buffer_uptodate(bh) ||
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| 					    buffer_unwritten(bh)) {
 | |
| 						if (whence == SEEK_DATA)
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| 							found = 1;
 | |
| 					} else {
 | |
| 						if (whence == SEEK_HOLE)
 | |
| 							found = 1;
 | |
| 					}
 | |
| 					if (found) {
 | |
| 						*offset = max_t(loff_t,
 | |
| 							startoff, lastoff);
 | |
| 						unlock_page(page);
 | |
| 						goto out;
 | |
| 					}
 | |
| 					lastoff += bh->b_size;
 | |
| 					bh = bh->b_this_page;
 | |
| 				} while (bh != head);
 | |
| 			}
 | |
| 
 | |
| 			lastoff = page_offset(page) + PAGE_SIZE;
 | |
| 			unlock_page(page);
 | |
| 		}
 | |
| 
 | |
| 		/*
 | |
| 		 * The no. of pages is less than our desired, that would be a
 | |
| 		 * hole in there.
 | |
| 		 */
 | |
| 		if (nr_pages < num && whence == SEEK_HOLE) {
 | |
| 			found = 1;
 | |
| 			*offset = lastoff;
 | |
| 			break;
 | |
| 		}
 | |
| 
 | |
| 		index = pvec.pages[i - 1]->index + 1;
 | |
| 		pagevec_release(&pvec);
 | |
| 	} while (index <= end);
 | |
| 
 | |
| out:
 | |
| 	pagevec_release(&pvec);
 | |
| 	return found;
 | |
| }
 | |
| 
 | |
| /*
 | |
|  * ext4_seek_data() retrieves the offset for SEEK_DATA.
 | |
|  */
 | |
| static loff_t ext4_seek_data(struct file *file, loff_t offset, loff_t maxsize)
 | |
| {
 | |
| 	struct inode *inode = file->f_mapping->host;
 | |
| 	struct ext4_map_blocks map;
 | |
| 	struct extent_status es;
 | |
| 	ext4_lblk_t start, last, end;
 | |
| 	loff_t dataoff, isize;
 | |
| 	int blkbits;
 | |
| 	int ret = 0;
 | |
| 
 | |
| 	mutex_lock(&inode->i_mutex);
 | |
| 
 | |
| 	isize = i_size_read(inode);
 | |
| 	if (offset >= isize) {
 | |
| 		mutex_unlock(&inode->i_mutex);
 | |
| 		return -ENXIO;
 | |
| 	}
 | |
| 
 | |
| 	blkbits = inode->i_sb->s_blocksize_bits;
 | |
| 	start = offset >> blkbits;
 | |
| 	last = start;
 | |
| 	end = isize >> blkbits;
 | |
| 	dataoff = offset;
 | |
| 
 | |
| 	do {
 | |
| 		map.m_lblk = last;
 | |
| 		map.m_len = end - last + 1;
 | |
| 		ret = ext4_map_blocks(NULL, inode, &map, 0);
 | |
| 		if (ret > 0 && !(map.m_flags & EXT4_MAP_UNWRITTEN)) {
 | |
| 			if (last != start)
 | |
| 				dataoff = last << blkbits;
 | |
| 			break;
 | |
| 		}
 | |
| 
 | |
| 		/*
 | |
| 		 * If there is a delay extent at this offset,
 | |
| 		 * it will be as a data.
 | |
| 		 */
 | |
| 		ext4_es_find_delayed_extent(inode, last, &es);
 | |
| 		if (es.es_len != 0 && in_range(last, es.es_lblk, es.es_len)) {
 | |
| 			if (last != start)
 | |
| 				dataoff = last << blkbits;
 | |
| 			break;
 | |
| 		}
 | |
| 
 | |
| 		/*
 | |
| 		 * If there is a unwritten extent at this offset,
 | |
| 		 * it will be as a data or a hole according to page
 | |
| 		 * cache that has data or not.
 | |
| 		 */
 | |
| 		if (map.m_flags & EXT4_MAP_UNWRITTEN) {
 | |
| 			int unwritten;
 | |
| 			unwritten = ext4_find_unwritten_pgoff(inode, SEEK_DATA,
 | |
| 							      &map, &dataoff);
 | |
| 			if (unwritten)
 | |
| 				break;
 | |
| 		}
 | |
| 
 | |
| 		last++;
 | |
| 		dataoff = last << blkbits;
 | |
| 	} while (last <= end);
 | |
| 
 | |
| 	mutex_unlock(&inode->i_mutex);
 | |
| 
 | |
| 	if (dataoff > isize)
 | |
| 		return -ENXIO;
 | |
| 
 | |
| 	if (dataoff < 0 && !(file->f_mode & FMODE_UNSIGNED_OFFSET))
 | |
| 		return -EINVAL;
 | |
| 	if (dataoff > maxsize)
 | |
| 		return -EINVAL;
 | |
| 
 | |
| 	if (dataoff != file->f_pos) {
 | |
| 		file->f_pos = dataoff;
 | |
| 		file->f_version = 0;
 | |
| 	}
 | |
| 
 | |
| 	return dataoff;
 | |
| }
 | |
| 
 | |
| /*
 | |
|  * ext4_seek_hole() retrieves the offset for SEEK_HOLE.
 | |
|  */
 | |
| static loff_t ext4_seek_hole(struct file *file, loff_t offset, loff_t maxsize)
 | |
| {
 | |
| 	struct inode *inode = file->f_mapping->host;
 | |
| 	struct ext4_map_blocks map;
 | |
| 	struct extent_status es;
 | |
| 	ext4_lblk_t start, last, end;
 | |
| 	loff_t holeoff, isize;
 | |
| 	int blkbits;
 | |
| 	int ret = 0;
 | |
| 
 | |
| 	mutex_lock(&inode->i_mutex);
 | |
| 
 | |
| 	isize = i_size_read(inode);
 | |
| 	if (offset >= isize) {
 | |
| 		mutex_unlock(&inode->i_mutex);
 | |
| 		return -ENXIO;
 | |
| 	}
 | |
| 
 | |
| 	blkbits = inode->i_sb->s_blocksize_bits;
 | |
| 	start = offset >> blkbits;
 | |
| 	last = start;
 | |
| 	end = isize >> blkbits;
 | |
| 	holeoff = offset;
 | |
| 
 | |
| 	do {
 | |
| 		map.m_lblk = last;
 | |
| 		map.m_len = end - last + 1;
 | |
| 		ret = ext4_map_blocks(NULL, inode, &map, 0);
 | |
| 		if (ret > 0 && !(map.m_flags & EXT4_MAP_UNWRITTEN)) {
 | |
| 			last += ret;
 | |
| 			holeoff = last << blkbits;
 | |
| 			continue;
 | |
| 		}
 | |
| 
 | |
| 		/*
 | |
| 		 * If there is a delay extent at this offset,
 | |
| 		 * we will skip this extent.
 | |
| 		 */
 | |
| 		ext4_es_find_delayed_extent(inode, last, &es);
 | |
| 		if (es.es_len != 0 && in_range(last, es.es_lblk, es.es_len)) {
 | |
| 			last = es.es_lblk + es.es_len;
 | |
| 			holeoff = last << blkbits;
 | |
| 			continue;
 | |
| 		}
 | |
| 
 | |
| 		/*
 | |
| 		 * If there is a unwritten extent at this offset,
 | |
| 		 * it will be as a data or a hole according to page
 | |
| 		 * cache that has data or not.
 | |
| 		 */
 | |
| 		if (map.m_flags & EXT4_MAP_UNWRITTEN) {
 | |
| 			int unwritten;
 | |
| 			unwritten = ext4_find_unwritten_pgoff(inode, SEEK_HOLE,
 | |
| 							      &map, &holeoff);
 | |
| 			if (!unwritten) {
 | |
| 				last += ret;
 | |
| 				holeoff = last << blkbits;
 | |
| 				continue;
 | |
| 			}
 | |
| 		}
 | |
| 
 | |
| 		/* find a hole */
 | |
| 		break;
 | |
| 	} while (last <= end);
 | |
| 
 | |
| 	mutex_unlock(&inode->i_mutex);
 | |
| 
 | |
| 	if (holeoff > isize)
 | |
| 		holeoff = isize;
 | |
| 
 | |
| 	if (holeoff < 0 && !(file->f_mode & FMODE_UNSIGNED_OFFSET))
 | |
| 		return -EINVAL;
 | |
| 	if (holeoff > maxsize)
 | |
| 		return -EINVAL;
 | |
| 
 | |
| 	if (holeoff != file->f_pos) {
 | |
| 		file->f_pos = holeoff;
 | |
| 		file->f_version = 0;
 | |
| 	}
 | |
| 
 | |
| 	return holeoff;
 | |
| }
 | |
| 
 | |
| /*
 | |
|  * ext4_llseek() handles both block-mapped and extent-mapped maxbytes values
 | |
|  * by calling generic_file_llseek_size() with the appropriate maxbytes
 | |
|  * value for each.
 | |
|  */
 | |
| loff_t ext4_llseek(struct file *file, loff_t offset, int whence)
 | |
| {
 | |
| 	struct inode *inode = file->f_mapping->host;
 | |
| 	loff_t maxbytes;
 | |
| 
 | |
| 	if (!(ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)))
 | |
| 		maxbytes = EXT4_SB(inode->i_sb)->s_bitmap_maxbytes;
 | |
| 	else
 | |
| 		maxbytes = inode->i_sb->s_maxbytes;
 | |
| 
 | |
| 	switch (whence) {
 | |
| 	case SEEK_SET:
 | |
| 	case SEEK_CUR:
 | |
| 	case SEEK_END:
 | |
| 		return generic_file_llseek_size(file, offset, whence,
 | |
| 						maxbytes, i_size_read(inode));
 | |
| 	case SEEK_DATA:
 | |
| 		return ext4_seek_data(file, offset, maxbytes);
 | |
| 	case SEEK_HOLE:
 | |
| 		return ext4_seek_hole(file, offset, maxbytes);
 | |
| 	}
 | |
| 
 | |
| 	return -EINVAL;
 | |
| }
 | |
| 
 | |
| const struct file_operations ext4_file_operations = {
 | |
| 	.llseek		= ext4_llseek,
 | |
| 	.read		= do_sync_read,
 | |
| 	.write		= do_sync_write,
 | |
| 	.aio_read	= generic_file_aio_read,
 | |
| 	.aio_write	= ext4_file_write,
 | |
| 	.unlocked_ioctl = ext4_ioctl,
 | |
| #ifdef CONFIG_COMPAT
 | |
| 	.compat_ioctl	= ext4_compat_ioctl,
 | |
| #endif
 | |
| 	.mmap		= ext4_file_mmap,
 | |
| 	.open		= ext4_file_open,
 | |
| 	.release	= ext4_release_file,
 | |
| 	.fsync		= ext4_sync_file,
 | |
| 	.splice_read	= generic_file_splice_read,
 | |
| 	.splice_write	= generic_file_splice_write,
 | |
| 	.fallocate	= ext4_fallocate,
 | |
| };
 | |
| 
 | |
| const struct inode_operations ext4_file_inode_operations = {
 | |
| 	.setattr	= ext4_setattr,
 | |
| 	.getattr	= ext4_getattr,
 | |
| 	.setxattr	= generic_setxattr,
 | |
| 	.getxattr	= generic_getxattr,
 | |
| 	.listxattr	= ext4_listxattr,
 | |
| 	.removexattr	= generic_removexattr,
 | |
| 	.get_acl	= ext4_get_acl,
 | |
| 	.fiemap		= ext4_fiemap,
 | |
| };
 | |
| 
 |