xref: /openbmc/linux/fs/ext4/inode.c (revision 56d35a4cd13e7bc5eca5b2dba5a41794afb17e11)
1ac27a0ecSDave Kleikamp /*
2617ba13bSMingming Cao  *  linux/fs/ext4/inode.c
3ac27a0ecSDave Kleikamp  *
4ac27a0ecSDave Kleikamp  * Copyright (C) 1992, 1993, 1994, 1995
5ac27a0ecSDave Kleikamp  * Remy Card (card@masi.ibp.fr)
6ac27a0ecSDave Kleikamp  * Laboratoire MASI - Institut Blaise Pascal
7ac27a0ecSDave Kleikamp  * Universite Pierre et Marie Curie (Paris VI)
8ac27a0ecSDave Kleikamp  *
9ac27a0ecSDave Kleikamp  *  from
10ac27a0ecSDave Kleikamp  *
11ac27a0ecSDave Kleikamp  *  linux/fs/minix/inode.c
12ac27a0ecSDave Kleikamp  *
13ac27a0ecSDave Kleikamp  *  Copyright (C) 1991, 1992  Linus Torvalds
14ac27a0ecSDave Kleikamp  *
15ac27a0ecSDave Kleikamp  *  Goal-directed block allocation by Stephen Tweedie
16ac27a0ecSDave Kleikamp  *	(sct@redhat.com), 1993, 1998
17ac27a0ecSDave Kleikamp  *  Big-endian to little-endian byte-swapping/bitmaps by
18ac27a0ecSDave Kleikamp  *        David S. Miller (davem@caip.rutgers.edu), 1995
19ac27a0ecSDave Kleikamp  *  64-bit file support on 64-bit platforms by Jakub Jelinek
20ac27a0ecSDave Kleikamp  *	(jj@sunsite.ms.mff.cuni.cz)
21ac27a0ecSDave Kleikamp  *
22617ba13bSMingming Cao  *  Assorted race fixes, rewrite of ext4_get_block() by Al Viro, 2000
23ac27a0ecSDave Kleikamp  */
24ac27a0ecSDave Kleikamp 
25ac27a0ecSDave Kleikamp #include <linux/module.h>
26ac27a0ecSDave Kleikamp #include <linux/fs.h>
27ac27a0ecSDave Kleikamp #include <linux/time.h>
28dab291afSMingming Cao #include <linux/jbd2.h>
29ac27a0ecSDave Kleikamp #include <linux/highuid.h>
30ac27a0ecSDave Kleikamp #include <linux/pagemap.h>
31ac27a0ecSDave Kleikamp #include <linux/quotaops.h>
32ac27a0ecSDave Kleikamp #include <linux/string.h>
33ac27a0ecSDave Kleikamp #include <linux/buffer_head.h>
34ac27a0ecSDave Kleikamp #include <linux/writeback.h>
3564769240SAlex Tomas #include <linux/pagevec.h>
36ac27a0ecSDave Kleikamp #include <linux/mpage.h>
37e83c1397SDuane Griffin #include <linux/namei.h>
38ac27a0ecSDave Kleikamp #include <linux/uio.h>
39ac27a0ecSDave Kleikamp #include <linux/bio.h>
404c0425ffSMingming Cao #include <linux/workqueue.h>
41744692dcSJiaying Zhang #include <linux/kernel.h>
425a0e3ad6STejun Heo #include <linux/slab.h>
439bffad1eSTheodore Ts'o 
443dcf5451SChristoph Hellwig #include "ext4_jbd2.h"
45ac27a0ecSDave Kleikamp #include "xattr.h"
46ac27a0ecSDave Kleikamp #include "acl.h"
47d2a17637SMingming Cao #include "ext4_extents.h"
48ac27a0ecSDave Kleikamp 
499bffad1eSTheodore Ts'o #include <trace/events/ext4.h>
509bffad1eSTheodore Ts'o 
51a1d6cc56SAneesh Kumar K.V #define MPAGE_DA_EXTENT_TAIL 0x01
52a1d6cc56SAneesh Kumar K.V 
53678aaf48SJan Kara static inline int ext4_begin_ordered_truncate(struct inode *inode,
54678aaf48SJan Kara 					      loff_t new_size)
55678aaf48SJan Kara {
567f5aa215SJan Kara 	return jbd2_journal_begin_ordered_truncate(
577f5aa215SJan Kara 					EXT4_SB(inode->i_sb)->s_journal,
587f5aa215SJan Kara 					&EXT4_I(inode)->jinode,
59678aaf48SJan Kara 					new_size);
60678aaf48SJan Kara }
61678aaf48SJan Kara 
6264769240SAlex Tomas static void ext4_invalidatepage(struct page *page, unsigned long offset);
6364769240SAlex Tomas 
64ac27a0ecSDave Kleikamp /*
65ac27a0ecSDave Kleikamp  * Test whether an inode is a fast symlink.
66ac27a0ecSDave Kleikamp  */
67617ba13bSMingming Cao static int ext4_inode_is_fast_symlink(struct inode *inode)
68ac27a0ecSDave Kleikamp {
69617ba13bSMingming Cao 	int ea_blocks = EXT4_I(inode)->i_file_acl ?
70ac27a0ecSDave Kleikamp 		(inode->i_sb->s_blocksize >> 9) : 0;
71ac27a0ecSDave Kleikamp 
72ac27a0ecSDave Kleikamp 	return (S_ISLNK(inode->i_mode) && inode->i_blocks - ea_blocks == 0);
73ac27a0ecSDave Kleikamp }
74ac27a0ecSDave Kleikamp 
75ac27a0ecSDave Kleikamp /*
76ac27a0ecSDave Kleikamp  * Work out how many blocks we need to proceed with the next chunk of a
77ac27a0ecSDave Kleikamp  * truncate transaction.
78ac27a0ecSDave Kleikamp  */
79ac27a0ecSDave Kleikamp static unsigned long blocks_for_truncate(struct inode *inode)
80ac27a0ecSDave Kleikamp {
81725d26d3SAneesh Kumar K.V 	ext4_lblk_t needed;
82ac27a0ecSDave Kleikamp 
83ac27a0ecSDave Kleikamp 	needed = inode->i_blocks >> (inode->i_sb->s_blocksize_bits - 9);
84ac27a0ecSDave Kleikamp 
85ac27a0ecSDave Kleikamp 	/* Give ourselves just enough room to cope with inodes in which
86ac27a0ecSDave Kleikamp 	 * i_blocks is corrupt: we've seen disk corruptions in the past
87ac27a0ecSDave Kleikamp 	 * which resulted in random data in an inode which looked enough
88617ba13bSMingming Cao 	 * like a regular file for ext4 to try to delete it.  Things
89ac27a0ecSDave Kleikamp 	 * will go a bit crazy if that happens, but at least we should
90ac27a0ecSDave Kleikamp 	 * try not to panic the whole kernel. */
91ac27a0ecSDave Kleikamp 	if (needed < 2)
92ac27a0ecSDave Kleikamp 		needed = 2;
93ac27a0ecSDave Kleikamp 
94ac27a0ecSDave Kleikamp 	/* But we need to bound the transaction so we don't overflow the
95ac27a0ecSDave Kleikamp 	 * journal. */
96617ba13bSMingming Cao 	if (needed > EXT4_MAX_TRANS_DATA)
97617ba13bSMingming Cao 		needed = EXT4_MAX_TRANS_DATA;
98ac27a0ecSDave Kleikamp 
99617ba13bSMingming Cao 	return EXT4_DATA_TRANS_BLOCKS(inode->i_sb) + needed;
100ac27a0ecSDave Kleikamp }
101ac27a0ecSDave Kleikamp 
102ac27a0ecSDave Kleikamp /*
103ac27a0ecSDave Kleikamp  * Truncate transactions can be complex and absolutely huge.  So we need to
104ac27a0ecSDave Kleikamp  * be able to restart the transaction at a conventient checkpoint to make
105ac27a0ecSDave Kleikamp  * sure we don't overflow the journal.
106ac27a0ecSDave Kleikamp  *
107ac27a0ecSDave Kleikamp  * start_transaction gets us a new handle for a truncate transaction,
108ac27a0ecSDave Kleikamp  * and extend_transaction tries to extend the existing one a bit.  If
109ac27a0ecSDave Kleikamp  * extend fails, we need to propagate the failure up and restart the
110ac27a0ecSDave Kleikamp  * transaction in the top-level truncate loop. --sct
111ac27a0ecSDave Kleikamp  */
112ac27a0ecSDave Kleikamp static handle_t *start_transaction(struct inode *inode)
113ac27a0ecSDave Kleikamp {
114ac27a0ecSDave Kleikamp 	handle_t *result;
115ac27a0ecSDave Kleikamp 
116617ba13bSMingming Cao 	result = ext4_journal_start(inode, blocks_for_truncate(inode));
117ac27a0ecSDave Kleikamp 	if (!IS_ERR(result))
118ac27a0ecSDave Kleikamp 		return result;
119ac27a0ecSDave Kleikamp 
120617ba13bSMingming Cao 	ext4_std_error(inode->i_sb, PTR_ERR(result));
121ac27a0ecSDave Kleikamp 	return result;
122ac27a0ecSDave Kleikamp }
123ac27a0ecSDave Kleikamp 
124ac27a0ecSDave Kleikamp /*
125ac27a0ecSDave Kleikamp  * Try to extend this transaction for the purposes of truncation.
126ac27a0ecSDave Kleikamp  *
127ac27a0ecSDave Kleikamp  * Returns 0 if we managed to create more room.  If we can't create more
128ac27a0ecSDave Kleikamp  * room, and the transaction must be restarted we return 1.
129ac27a0ecSDave Kleikamp  */
130ac27a0ecSDave Kleikamp static int try_to_extend_transaction(handle_t *handle, struct inode *inode)
131ac27a0ecSDave Kleikamp {
1320390131bSFrank Mayhar 	if (!ext4_handle_valid(handle))
1330390131bSFrank Mayhar 		return 0;
1340390131bSFrank Mayhar 	if (ext4_handle_has_enough_credits(handle, EXT4_RESERVE_TRANS_BLOCKS+1))
135ac27a0ecSDave Kleikamp 		return 0;
136617ba13bSMingming Cao 	if (!ext4_journal_extend(handle, blocks_for_truncate(inode)))
137ac27a0ecSDave Kleikamp 		return 0;
138ac27a0ecSDave Kleikamp 	return 1;
139ac27a0ecSDave Kleikamp }
140ac27a0ecSDave Kleikamp 
141ac27a0ecSDave Kleikamp /*
142ac27a0ecSDave Kleikamp  * Restart the transaction associated with *handle.  This does a commit,
143ac27a0ecSDave Kleikamp  * so before we call here everything must be consistently dirtied against
144ac27a0ecSDave Kleikamp  * this transaction.
145ac27a0ecSDave Kleikamp  */
146487caeefSJan Kara int ext4_truncate_restart_trans(handle_t *handle, struct inode *inode,
147487caeefSJan Kara 				 int nblocks)
148ac27a0ecSDave Kleikamp {
149487caeefSJan Kara 	int ret;
150487caeefSJan Kara 
151487caeefSJan Kara 	/*
152e35fd660STheodore Ts'o 	 * Drop i_data_sem to avoid deadlock with ext4_map_blocks.  At this
153487caeefSJan Kara 	 * moment, get_block can be called only for blocks inside i_size since
154487caeefSJan Kara 	 * page cache has been already dropped and writes are blocked by
155487caeefSJan Kara 	 * i_mutex. So we can safely drop the i_data_sem here.
156487caeefSJan Kara 	 */
1570390131bSFrank Mayhar 	BUG_ON(EXT4_JOURNAL(inode) == NULL);
158ac27a0ecSDave Kleikamp 	jbd_debug(2, "restarting handle %p\n", handle);
159487caeefSJan Kara 	up_write(&EXT4_I(inode)->i_data_sem);
160487caeefSJan Kara 	ret = ext4_journal_restart(handle, blocks_for_truncate(inode));
161487caeefSJan Kara 	down_write(&EXT4_I(inode)->i_data_sem);
162fa5d1113SAneesh Kumar K.V 	ext4_discard_preallocations(inode);
163487caeefSJan Kara 
164487caeefSJan Kara 	return ret;
165ac27a0ecSDave Kleikamp }
166ac27a0ecSDave Kleikamp 
167ac27a0ecSDave Kleikamp /*
168ac27a0ecSDave Kleikamp  * Called at the last iput() if i_nlink is zero.
169ac27a0ecSDave Kleikamp  */
170617ba13bSMingming Cao void ext4_delete_inode(struct inode *inode)
171ac27a0ecSDave Kleikamp {
172ac27a0ecSDave Kleikamp 	handle_t *handle;
173bc965ab3STheodore Ts'o 	int err;
174ac27a0ecSDave Kleikamp 
175907f4554SChristoph Hellwig 	if (!is_bad_inode(inode))
176871a2931SChristoph Hellwig 		dquot_initialize(inode);
177907f4554SChristoph Hellwig 
178678aaf48SJan Kara 	if (ext4_should_order_data(inode))
179678aaf48SJan Kara 		ext4_begin_ordered_truncate(inode, 0);
180ac27a0ecSDave Kleikamp 	truncate_inode_pages(&inode->i_data, 0);
181ac27a0ecSDave Kleikamp 
182ac27a0ecSDave Kleikamp 	if (is_bad_inode(inode))
183ac27a0ecSDave Kleikamp 		goto no_delete;
184ac27a0ecSDave Kleikamp 
185bc965ab3STheodore Ts'o 	handle = ext4_journal_start(inode, blocks_for_truncate(inode)+3);
186ac27a0ecSDave Kleikamp 	if (IS_ERR(handle)) {
187bc965ab3STheodore Ts'o 		ext4_std_error(inode->i_sb, PTR_ERR(handle));
188ac27a0ecSDave Kleikamp 		/*
189ac27a0ecSDave Kleikamp 		 * If we're going to skip the normal cleanup, we still need to
190ac27a0ecSDave Kleikamp 		 * make sure that the in-core orphan linked list is properly
191ac27a0ecSDave Kleikamp 		 * cleaned up.
192ac27a0ecSDave Kleikamp 		 */
193617ba13bSMingming Cao 		ext4_orphan_del(NULL, inode);
194ac27a0ecSDave Kleikamp 		goto no_delete;
195ac27a0ecSDave Kleikamp 	}
196ac27a0ecSDave Kleikamp 
197ac27a0ecSDave Kleikamp 	if (IS_SYNC(inode))
1980390131bSFrank Mayhar 		ext4_handle_sync(handle);
199ac27a0ecSDave Kleikamp 	inode->i_size = 0;
200bc965ab3STheodore Ts'o 	err = ext4_mark_inode_dirty(handle, inode);
201bc965ab3STheodore Ts'o 	if (err) {
20212062dddSEric Sandeen 		ext4_warning(inode->i_sb,
203bc965ab3STheodore Ts'o 			     "couldn't mark inode dirty (err %d)", err);
204bc965ab3STheodore Ts'o 		goto stop_handle;
205bc965ab3STheodore Ts'o 	}
206ac27a0ecSDave Kleikamp 	if (inode->i_blocks)
207617ba13bSMingming Cao 		ext4_truncate(inode);
208bc965ab3STheodore Ts'o 
209bc965ab3STheodore Ts'o 	/*
210bc965ab3STheodore Ts'o 	 * ext4_ext_truncate() doesn't reserve any slop when it
211bc965ab3STheodore Ts'o 	 * restarts journal transactions; therefore there may not be
212bc965ab3STheodore Ts'o 	 * enough credits left in the handle to remove the inode from
213bc965ab3STheodore Ts'o 	 * the orphan list and set the dtime field.
214bc965ab3STheodore Ts'o 	 */
2150390131bSFrank Mayhar 	if (!ext4_handle_has_enough_credits(handle, 3)) {
216bc965ab3STheodore Ts'o 		err = ext4_journal_extend(handle, 3);
217bc965ab3STheodore Ts'o 		if (err > 0)
218bc965ab3STheodore Ts'o 			err = ext4_journal_restart(handle, 3);
219bc965ab3STheodore Ts'o 		if (err != 0) {
22012062dddSEric Sandeen 			ext4_warning(inode->i_sb,
221bc965ab3STheodore Ts'o 				     "couldn't extend journal (err %d)", err);
222bc965ab3STheodore Ts'o 		stop_handle:
223bc965ab3STheodore Ts'o 			ext4_journal_stop(handle);
22445388219STheodore Ts'o 			ext4_orphan_del(NULL, inode);
225bc965ab3STheodore Ts'o 			goto no_delete;
226bc965ab3STheodore Ts'o 		}
227bc965ab3STheodore Ts'o 	}
228bc965ab3STheodore Ts'o 
229ac27a0ecSDave Kleikamp 	/*
230617ba13bSMingming Cao 	 * Kill off the orphan record which ext4_truncate created.
231ac27a0ecSDave Kleikamp 	 * AKPM: I think this can be inside the above `if'.
232617ba13bSMingming Cao 	 * Note that ext4_orphan_del() has to be able to cope with the
233ac27a0ecSDave Kleikamp 	 * deletion of a non-existent orphan - this is because we don't
234617ba13bSMingming Cao 	 * know if ext4_truncate() actually created an orphan record.
235ac27a0ecSDave Kleikamp 	 * (Well, we could do this if we need to, but heck - it works)
236ac27a0ecSDave Kleikamp 	 */
237617ba13bSMingming Cao 	ext4_orphan_del(handle, inode);
238617ba13bSMingming Cao 	EXT4_I(inode)->i_dtime	= get_seconds();
239ac27a0ecSDave Kleikamp 
240ac27a0ecSDave Kleikamp 	/*
241ac27a0ecSDave Kleikamp 	 * One subtle ordering requirement: if anything has gone wrong
242ac27a0ecSDave Kleikamp 	 * (transaction abort, IO errors, whatever), then we can still
243ac27a0ecSDave Kleikamp 	 * do these next steps (the fs will already have been marked as
244ac27a0ecSDave Kleikamp 	 * having errors), but we can't free the inode if the mark_dirty
245ac27a0ecSDave Kleikamp 	 * fails.
246ac27a0ecSDave Kleikamp 	 */
247617ba13bSMingming Cao 	if (ext4_mark_inode_dirty(handle, inode))
248ac27a0ecSDave Kleikamp 		/* If that failed, just do the required in-core inode clear. */
249ac27a0ecSDave Kleikamp 		clear_inode(inode);
250ac27a0ecSDave Kleikamp 	else
251617ba13bSMingming Cao 		ext4_free_inode(handle, inode);
252617ba13bSMingming Cao 	ext4_journal_stop(handle);
253ac27a0ecSDave Kleikamp 	return;
254ac27a0ecSDave Kleikamp no_delete:
255ac27a0ecSDave Kleikamp 	clear_inode(inode);	/* We must guarantee clearing of inode... */
256ac27a0ecSDave Kleikamp }
257ac27a0ecSDave Kleikamp 
258ac27a0ecSDave Kleikamp typedef struct {
259ac27a0ecSDave Kleikamp 	__le32	*p;
260ac27a0ecSDave Kleikamp 	__le32	key;
261ac27a0ecSDave Kleikamp 	struct buffer_head *bh;
262ac27a0ecSDave Kleikamp } Indirect;
263ac27a0ecSDave Kleikamp 
264ac27a0ecSDave Kleikamp static inline void add_chain(Indirect *p, struct buffer_head *bh, __le32 *v)
265ac27a0ecSDave Kleikamp {
266ac27a0ecSDave Kleikamp 	p->key = *(p->p = v);
267ac27a0ecSDave Kleikamp 	p->bh = bh;
268ac27a0ecSDave Kleikamp }
269ac27a0ecSDave Kleikamp 
270ac27a0ecSDave Kleikamp /**
271617ba13bSMingming Cao  *	ext4_block_to_path - parse the block number into array of offsets
272ac27a0ecSDave Kleikamp  *	@inode: inode in question (we are only interested in its superblock)
273ac27a0ecSDave Kleikamp  *	@i_block: block number to be parsed
274ac27a0ecSDave Kleikamp  *	@offsets: array to store the offsets in
275ac27a0ecSDave Kleikamp  *	@boundary: set this non-zero if the referred-to block is likely to be
276ac27a0ecSDave Kleikamp  *	       followed (on disk) by an indirect block.
277ac27a0ecSDave Kleikamp  *
278617ba13bSMingming Cao  *	To store the locations of file's data ext4 uses a data structure common
279ac27a0ecSDave Kleikamp  *	for UNIX filesystems - tree of pointers anchored in the inode, with
280ac27a0ecSDave Kleikamp  *	data blocks at leaves and indirect blocks in intermediate nodes.
281ac27a0ecSDave Kleikamp  *	This function translates the block number into path in that tree -
282ac27a0ecSDave Kleikamp  *	return value is the path length and @offsets[n] is the offset of
283ac27a0ecSDave Kleikamp  *	pointer to (n+1)th node in the nth one. If @block is out of range
284ac27a0ecSDave Kleikamp  *	(negative or too large) warning is printed and zero returned.
285ac27a0ecSDave Kleikamp  *
286ac27a0ecSDave Kleikamp  *	Note: function doesn't find node addresses, so no IO is needed. All
287ac27a0ecSDave Kleikamp  *	we need to know is the capacity of indirect blocks (taken from the
288ac27a0ecSDave Kleikamp  *	inode->i_sb).
289ac27a0ecSDave Kleikamp  */
290ac27a0ecSDave Kleikamp 
291ac27a0ecSDave Kleikamp /*
292ac27a0ecSDave Kleikamp  * Portability note: the last comparison (check that we fit into triple
293ac27a0ecSDave Kleikamp  * indirect block) is spelled differently, because otherwise on an
294ac27a0ecSDave Kleikamp  * architecture with 32-bit longs and 8Kb pages we might get into trouble
295ac27a0ecSDave Kleikamp  * if our filesystem had 8Kb blocks. We might use long long, but that would
296ac27a0ecSDave Kleikamp  * kill us on x86. Oh, well, at least the sign propagation does not matter -
297ac27a0ecSDave Kleikamp  * i_block would have to be negative in the very beginning, so we would not
298ac27a0ecSDave Kleikamp  * get there at all.
299ac27a0ecSDave Kleikamp  */
300ac27a0ecSDave Kleikamp 
301617ba13bSMingming Cao static int ext4_block_to_path(struct inode *inode,
302725d26d3SAneesh Kumar K.V 			      ext4_lblk_t i_block,
303725d26d3SAneesh Kumar K.V 			      ext4_lblk_t offsets[4], int *boundary)
304ac27a0ecSDave Kleikamp {
305617ba13bSMingming Cao 	int ptrs = EXT4_ADDR_PER_BLOCK(inode->i_sb);
306617ba13bSMingming Cao 	int ptrs_bits = EXT4_ADDR_PER_BLOCK_BITS(inode->i_sb);
307617ba13bSMingming Cao 	const long direct_blocks = EXT4_NDIR_BLOCKS,
308ac27a0ecSDave Kleikamp 		indirect_blocks = ptrs,
309ac27a0ecSDave Kleikamp 		double_blocks = (1 << (ptrs_bits * 2));
310ac27a0ecSDave Kleikamp 	int n = 0;
311ac27a0ecSDave Kleikamp 	int final = 0;
312ac27a0ecSDave Kleikamp 
313c333e073SRoel Kluin 	if (i_block < direct_blocks) {
314ac27a0ecSDave Kleikamp 		offsets[n++] = i_block;
315ac27a0ecSDave Kleikamp 		final = direct_blocks;
316ac27a0ecSDave Kleikamp 	} else if ((i_block -= direct_blocks) < indirect_blocks) {
317617ba13bSMingming Cao 		offsets[n++] = EXT4_IND_BLOCK;
318ac27a0ecSDave Kleikamp 		offsets[n++] = i_block;
319ac27a0ecSDave Kleikamp 		final = ptrs;
320ac27a0ecSDave Kleikamp 	} else if ((i_block -= indirect_blocks) < double_blocks) {
321617ba13bSMingming Cao 		offsets[n++] = EXT4_DIND_BLOCK;
322ac27a0ecSDave Kleikamp 		offsets[n++] = i_block >> ptrs_bits;
323ac27a0ecSDave Kleikamp 		offsets[n++] = i_block & (ptrs - 1);
324ac27a0ecSDave Kleikamp 		final = ptrs;
325ac27a0ecSDave Kleikamp 	} else if (((i_block -= double_blocks) >> (ptrs_bits * 2)) < ptrs) {
326617ba13bSMingming Cao 		offsets[n++] = EXT4_TIND_BLOCK;
327ac27a0ecSDave Kleikamp 		offsets[n++] = i_block >> (ptrs_bits * 2);
328ac27a0ecSDave Kleikamp 		offsets[n++] = (i_block >> ptrs_bits) & (ptrs - 1);
329ac27a0ecSDave Kleikamp 		offsets[n++] = i_block & (ptrs - 1);
330ac27a0ecSDave Kleikamp 		final = ptrs;
331ac27a0ecSDave Kleikamp 	} else {
33212062dddSEric Sandeen 		ext4_warning(inode->i_sb, "block %lu > max in inode %lu",
333e2b46574SEric Sandeen 			     i_block + direct_blocks +
33406a279d6STheodore Ts'o 			     indirect_blocks + double_blocks, inode->i_ino);
335ac27a0ecSDave Kleikamp 	}
336ac27a0ecSDave Kleikamp 	if (boundary)
337ac27a0ecSDave Kleikamp 		*boundary = final - 1 - (i_block & (ptrs - 1));
338ac27a0ecSDave Kleikamp 	return n;
339ac27a0ecSDave Kleikamp }
340ac27a0ecSDave Kleikamp 
341c398eda0STheodore Ts'o static int __ext4_check_blockref(const char *function, unsigned int line,
342c398eda0STheodore Ts'o 				 struct inode *inode,
3436fd058f7STheodore Ts'o 				 __le32 *p, unsigned int max)
3446fd058f7STheodore Ts'o {
3451c13d5c0STheodore Ts'o 	struct ext4_super_block *es = EXT4_SB(inode->i_sb)->s_es;
346f73953c0SThiemo Nagel 	__le32 *bref = p;
3476fd058f7STheodore Ts'o 	unsigned int blk;
3486fd058f7STheodore Ts'o 
349fe2c8191SThiemo Nagel 	while (bref < p+max) {
3506fd058f7STheodore Ts'o 		blk = le32_to_cpu(*bref++);
3516fd058f7STheodore Ts'o 		if (blk &&
3526fd058f7STheodore Ts'o 		    unlikely(!ext4_data_block_valid(EXT4_SB(inode->i_sb),
3536fd058f7STheodore Ts'o 						    blk, 1))) {
3541c13d5c0STheodore Ts'o 			es->s_last_error_block = cpu_to_le64(blk);
355c398eda0STheodore Ts'o 			ext4_error_inode(inode, function, line, blk,
356c398eda0STheodore Ts'o 					 "invalid block");
357fe2c8191SThiemo Nagel 			return -EIO;
358fe2c8191SThiemo Nagel 		}
359fe2c8191SThiemo Nagel 	}
360fe2c8191SThiemo Nagel 	return 0;
361fe2c8191SThiemo Nagel }
362fe2c8191SThiemo Nagel 
363fe2c8191SThiemo Nagel 
364fe2c8191SThiemo Nagel #define ext4_check_indirect_blockref(inode, bh)                         \
365c398eda0STheodore Ts'o 	__ext4_check_blockref(__func__, __LINE__, inode,		\
366c398eda0STheodore Ts'o 			      (__le32 *)(bh)->b_data,			\
367fe2c8191SThiemo Nagel 			      EXT4_ADDR_PER_BLOCK((inode)->i_sb))
368fe2c8191SThiemo Nagel 
369fe2c8191SThiemo Nagel #define ext4_check_inode_blockref(inode)                                \
370c398eda0STheodore Ts'o 	__ext4_check_blockref(__func__, __LINE__, inode,		\
371c398eda0STheodore Ts'o 			      EXT4_I(inode)->i_data,			\
372fe2c8191SThiemo Nagel 			      EXT4_NDIR_BLOCKS)
373fe2c8191SThiemo Nagel 
374ac27a0ecSDave Kleikamp /**
375617ba13bSMingming Cao  *	ext4_get_branch - read the chain of indirect blocks leading to data
376ac27a0ecSDave Kleikamp  *	@inode: inode in question
377ac27a0ecSDave Kleikamp  *	@depth: depth of the chain (1 - direct pointer, etc.)
378ac27a0ecSDave Kleikamp  *	@offsets: offsets of pointers in inode/indirect blocks
379ac27a0ecSDave Kleikamp  *	@chain: place to store the result
380ac27a0ecSDave Kleikamp  *	@err: here we store the error value
381ac27a0ecSDave Kleikamp  *
382ac27a0ecSDave Kleikamp  *	Function fills the array of triples <key, p, bh> and returns %NULL
383ac27a0ecSDave Kleikamp  *	if everything went OK or the pointer to the last filled triple
384ac27a0ecSDave Kleikamp  *	(incomplete one) otherwise. Upon the return chain[i].key contains
385ac27a0ecSDave Kleikamp  *	the number of (i+1)-th block in the chain (as it is stored in memory,
386ac27a0ecSDave Kleikamp  *	i.e. little-endian 32-bit), chain[i].p contains the address of that
387ac27a0ecSDave Kleikamp  *	number (it points into struct inode for i==0 and into the bh->b_data
388ac27a0ecSDave Kleikamp  *	for i>0) and chain[i].bh points to the buffer_head of i-th indirect
389ac27a0ecSDave Kleikamp  *	block for i>0 and NULL for i==0. In other words, it holds the block
390ac27a0ecSDave Kleikamp  *	numbers of the chain, addresses they were taken from (and where we can
391ac27a0ecSDave Kleikamp  *	verify that chain did not change) and buffer_heads hosting these
392ac27a0ecSDave Kleikamp  *	numbers.
393ac27a0ecSDave Kleikamp  *
394ac27a0ecSDave Kleikamp  *	Function stops when it stumbles upon zero pointer (absent block)
395ac27a0ecSDave Kleikamp  *		(pointer to last triple returned, *@err == 0)
396ac27a0ecSDave Kleikamp  *	or when it gets an IO error reading an indirect block
397ac27a0ecSDave Kleikamp  *		(ditto, *@err == -EIO)
398ac27a0ecSDave Kleikamp  *	or when it reads all @depth-1 indirect blocks successfully and finds
399ac27a0ecSDave Kleikamp  *	the whole chain, all way to the data (returns %NULL, *err == 0).
400c278bfecSAneesh Kumar K.V  *
401c278bfecSAneesh Kumar K.V  *      Need to be called with
4020e855ac8SAneesh Kumar K.V  *      down_read(&EXT4_I(inode)->i_data_sem)
403ac27a0ecSDave Kleikamp  */
404725d26d3SAneesh Kumar K.V static Indirect *ext4_get_branch(struct inode *inode, int depth,
405725d26d3SAneesh Kumar K.V 				 ext4_lblk_t  *offsets,
406ac27a0ecSDave Kleikamp 				 Indirect chain[4], int *err)
407ac27a0ecSDave Kleikamp {
408ac27a0ecSDave Kleikamp 	struct super_block *sb = inode->i_sb;
409ac27a0ecSDave Kleikamp 	Indirect *p = chain;
410ac27a0ecSDave Kleikamp 	struct buffer_head *bh;
411ac27a0ecSDave Kleikamp 
412ac27a0ecSDave Kleikamp 	*err = 0;
413ac27a0ecSDave Kleikamp 	/* i_data is not going away, no lock needed */
414617ba13bSMingming Cao 	add_chain(chain, NULL, EXT4_I(inode)->i_data + *offsets);
415ac27a0ecSDave Kleikamp 	if (!p->key)
416ac27a0ecSDave Kleikamp 		goto no_block;
417ac27a0ecSDave Kleikamp 	while (--depth) {
418fe2c8191SThiemo Nagel 		bh = sb_getblk(sb, le32_to_cpu(p->key));
419fe2c8191SThiemo Nagel 		if (unlikely(!bh))
420ac27a0ecSDave Kleikamp 			goto failure;
421fe2c8191SThiemo Nagel 
422fe2c8191SThiemo Nagel 		if (!bh_uptodate_or_lock(bh)) {
423fe2c8191SThiemo Nagel 			if (bh_submit_read(bh) < 0) {
424fe2c8191SThiemo Nagel 				put_bh(bh);
425fe2c8191SThiemo Nagel 				goto failure;
426fe2c8191SThiemo Nagel 			}
427fe2c8191SThiemo Nagel 			/* validate block references */
428fe2c8191SThiemo Nagel 			if (ext4_check_indirect_blockref(inode, bh)) {
429fe2c8191SThiemo Nagel 				put_bh(bh);
430fe2c8191SThiemo Nagel 				goto failure;
431fe2c8191SThiemo Nagel 			}
432fe2c8191SThiemo Nagel 		}
433fe2c8191SThiemo Nagel 
434ac27a0ecSDave Kleikamp 		add_chain(++p, bh, (__le32 *)bh->b_data + *++offsets);
435ac27a0ecSDave Kleikamp 		/* Reader: end */
436ac27a0ecSDave Kleikamp 		if (!p->key)
437ac27a0ecSDave Kleikamp 			goto no_block;
438ac27a0ecSDave Kleikamp 	}
439ac27a0ecSDave Kleikamp 	return NULL;
440ac27a0ecSDave Kleikamp 
441ac27a0ecSDave Kleikamp failure:
442ac27a0ecSDave Kleikamp 	*err = -EIO;
443ac27a0ecSDave Kleikamp no_block:
444ac27a0ecSDave Kleikamp 	return p;
445ac27a0ecSDave Kleikamp }
446ac27a0ecSDave Kleikamp 
447ac27a0ecSDave Kleikamp /**
448617ba13bSMingming Cao  *	ext4_find_near - find a place for allocation with sufficient locality
449ac27a0ecSDave Kleikamp  *	@inode: owner
450ac27a0ecSDave Kleikamp  *	@ind: descriptor of indirect block.
451ac27a0ecSDave Kleikamp  *
4521cc8dcf5SBenoit Boissinot  *	This function returns the preferred place for block allocation.
453ac27a0ecSDave Kleikamp  *	It is used when heuristic for sequential allocation fails.
454ac27a0ecSDave Kleikamp  *	Rules are:
455ac27a0ecSDave Kleikamp  *	  + if there is a block to the left of our position - allocate near it.
456ac27a0ecSDave Kleikamp  *	  + if pointer will live in indirect block - allocate near that block.
457ac27a0ecSDave Kleikamp  *	  + if pointer will live in inode - allocate in the same
458ac27a0ecSDave Kleikamp  *	    cylinder group.
459ac27a0ecSDave Kleikamp  *
460ac27a0ecSDave Kleikamp  * In the latter case we colour the starting block by the callers PID to
461ac27a0ecSDave Kleikamp  * prevent it from clashing with concurrent allocations for a different inode
462ac27a0ecSDave Kleikamp  * in the same block group.   The PID is used here so that functionally related
463ac27a0ecSDave Kleikamp  * files will be close-by on-disk.
464ac27a0ecSDave Kleikamp  *
465ac27a0ecSDave Kleikamp  *	Caller must make sure that @ind is valid and will stay that way.
466ac27a0ecSDave Kleikamp  */
467617ba13bSMingming Cao static ext4_fsblk_t ext4_find_near(struct inode *inode, Indirect *ind)
468ac27a0ecSDave Kleikamp {
469617ba13bSMingming Cao 	struct ext4_inode_info *ei = EXT4_I(inode);
470ac27a0ecSDave Kleikamp 	__le32 *start = ind->bh ? (__le32 *) ind->bh->b_data : ei->i_data;
471ac27a0ecSDave Kleikamp 	__le32 *p;
472617ba13bSMingming Cao 	ext4_fsblk_t bg_start;
47374d3487fSValerie Clement 	ext4_fsblk_t last_block;
474617ba13bSMingming Cao 	ext4_grpblk_t colour;
475a4912123STheodore Ts'o 	ext4_group_t block_group;
476a4912123STheodore Ts'o 	int flex_size = ext4_flex_bg_size(EXT4_SB(inode->i_sb));
477ac27a0ecSDave Kleikamp 
478ac27a0ecSDave Kleikamp 	/* Try to find previous block */
479ac27a0ecSDave Kleikamp 	for (p = ind->p - 1; p >= start; p--) {
480ac27a0ecSDave Kleikamp 		if (*p)
481ac27a0ecSDave Kleikamp 			return le32_to_cpu(*p);
482ac27a0ecSDave Kleikamp 	}
483ac27a0ecSDave Kleikamp 
484ac27a0ecSDave Kleikamp 	/* No such thing, so let's try location of indirect block */
485ac27a0ecSDave Kleikamp 	if (ind->bh)
486ac27a0ecSDave Kleikamp 		return ind->bh->b_blocknr;
487ac27a0ecSDave Kleikamp 
488ac27a0ecSDave Kleikamp 	/*
489ac27a0ecSDave Kleikamp 	 * It is going to be referred to from the inode itself? OK, just put it
490ac27a0ecSDave Kleikamp 	 * into the same cylinder group then.
491ac27a0ecSDave Kleikamp 	 */
492a4912123STheodore Ts'o 	block_group = ei->i_block_group;
493a4912123STheodore Ts'o 	if (flex_size >= EXT4_FLEX_SIZE_DIR_ALLOC_SCHEME) {
494a4912123STheodore Ts'o 		block_group &= ~(flex_size-1);
495a4912123STheodore Ts'o 		if (S_ISREG(inode->i_mode))
496a4912123STheodore Ts'o 			block_group++;
497a4912123STheodore Ts'o 	}
498a4912123STheodore Ts'o 	bg_start = ext4_group_first_block_no(inode->i_sb, block_group);
49974d3487fSValerie Clement 	last_block = ext4_blocks_count(EXT4_SB(inode->i_sb)->s_es) - 1;
50074d3487fSValerie Clement 
501a4912123STheodore Ts'o 	/*
502a4912123STheodore Ts'o 	 * If we are doing delayed allocation, we don't need take
503a4912123STheodore Ts'o 	 * colour into account.
504a4912123STheodore Ts'o 	 */
505a4912123STheodore Ts'o 	if (test_opt(inode->i_sb, DELALLOC))
506a4912123STheodore Ts'o 		return bg_start;
507a4912123STheodore Ts'o 
50874d3487fSValerie Clement 	if (bg_start + EXT4_BLOCKS_PER_GROUP(inode->i_sb) <= last_block)
509ac27a0ecSDave Kleikamp 		colour = (current->pid % 16) *
510617ba13bSMingming Cao 			(EXT4_BLOCKS_PER_GROUP(inode->i_sb) / 16);
51174d3487fSValerie Clement 	else
51274d3487fSValerie Clement 		colour = (current->pid % 16) * ((last_block - bg_start) / 16);
513ac27a0ecSDave Kleikamp 	return bg_start + colour;
514ac27a0ecSDave Kleikamp }
515ac27a0ecSDave Kleikamp 
516ac27a0ecSDave Kleikamp /**
5171cc8dcf5SBenoit Boissinot  *	ext4_find_goal - find a preferred place for allocation.
518ac27a0ecSDave Kleikamp  *	@inode: owner
519ac27a0ecSDave Kleikamp  *	@block:  block we want
520ac27a0ecSDave Kleikamp  *	@partial: pointer to the last triple within a chain
521ac27a0ecSDave Kleikamp  *
5221cc8dcf5SBenoit Boissinot  *	Normally this function find the preferred place for block allocation,
523fb01bfdaSAkinobu Mita  *	returns it.
524fb0a387dSEric Sandeen  *	Because this is only used for non-extent files, we limit the block nr
525fb0a387dSEric Sandeen  *	to 32 bits.
526ac27a0ecSDave Kleikamp  */
527725d26d3SAneesh Kumar K.V static ext4_fsblk_t ext4_find_goal(struct inode *inode, ext4_lblk_t block,
528fb01bfdaSAkinobu Mita 				   Indirect *partial)
529ac27a0ecSDave Kleikamp {
530fb0a387dSEric Sandeen 	ext4_fsblk_t goal;
531fb0a387dSEric Sandeen 
532ac27a0ecSDave Kleikamp 	/*
533c2ea3fdeSTheodore Ts'o 	 * XXX need to get goal block from mballoc's data structures
534ac27a0ecSDave Kleikamp 	 */
535ac27a0ecSDave Kleikamp 
536fb0a387dSEric Sandeen 	goal = ext4_find_near(inode, partial);
537fb0a387dSEric Sandeen 	goal = goal & EXT4_MAX_BLOCK_FILE_PHYS;
538fb0a387dSEric Sandeen 	return goal;
539ac27a0ecSDave Kleikamp }
540ac27a0ecSDave Kleikamp 
541ac27a0ecSDave Kleikamp /**
542617ba13bSMingming Cao  *	ext4_blks_to_allocate: Look up the block map and count the number
543ac27a0ecSDave Kleikamp  *	of direct blocks need to be allocated for the given branch.
544ac27a0ecSDave Kleikamp  *
545ac27a0ecSDave Kleikamp  *	@branch: chain of indirect blocks
546ac27a0ecSDave Kleikamp  *	@k: number of blocks need for indirect blocks
547ac27a0ecSDave Kleikamp  *	@blks: number of data blocks to be mapped.
548ac27a0ecSDave Kleikamp  *	@blocks_to_boundary:  the offset in the indirect block
549ac27a0ecSDave Kleikamp  *
550ac27a0ecSDave Kleikamp  *	return the total number of blocks to be allocate, including the
551ac27a0ecSDave Kleikamp  *	direct and indirect blocks.
552ac27a0ecSDave Kleikamp  */
553498e5f24STheodore Ts'o static int ext4_blks_to_allocate(Indirect *branch, int k, unsigned int blks,
554ac27a0ecSDave Kleikamp 				 int blocks_to_boundary)
555ac27a0ecSDave Kleikamp {
556498e5f24STheodore Ts'o 	unsigned int count = 0;
557ac27a0ecSDave Kleikamp 
558ac27a0ecSDave Kleikamp 	/*
559ac27a0ecSDave Kleikamp 	 * Simple case, [t,d]Indirect block(s) has not allocated yet
560ac27a0ecSDave Kleikamp 	 * then it's clear blocks on that path have not allocated
561ac27a0ecSDave Kleikamp 	 */
562ac27a0ecSDave Kleikamp 	if (k > 0) {
563ac27a0ecSDave Kleikamp 		/* right now we don't handle cross boundary allocation */
564ac27a0ecSDave Kleikamp 		if (blks < blocks_to_boundary + 1)
565ac27a0ecSDave Kleikamp 			count += blks;
566ac27a0ecSDave Kleikamp 		else
567ac27a0ecSDave Kleikamp 			count += blocks_to_boundary + 1;
568ac27a0ecSDave Kleikamp 		return count;
569ac27a0ecSDave Kleikamp 	}
570ac27a0ecSDave Kleikamp 
571ac27a0ecSDave Kleikamp 	count++;
572ac27a0ecSDave Kleikamp 	while (count < blks && count <= blocks_to_boundary &&
573ac27a0ecSDave Kleikamp 		le32_to_cpu(*(branch[0].p + count)) == 0) {
574ac27a0ecSDave Kleikamp 		count++;
575ac27a0ecSDave Kleikamp 	}
576ac27a0ecSDave Kleikamp 	return count;
577ac27a0ecSDave Kleikamp }
578ac27a0ecSDave Kleikamp 
579ac27a0ecSDave Kleikamp /**
580617ba13bSMingming Cao  *	ext4_alloc_blocks: multiple allocate blocks needed for a branch
581ac27a0ecSDave Kleikamp  *	@indirect_blks: the number of blocks need to allocate for indirect
582ac27a0ecSDave Kleikamp  *			blocks
583ac27a0ecSDave Kleikamp  *
584ac27a0ecSDave Kleikamp  *	@new_blocks: on return it will store the new block numbers for
585ac27a0ecSDave Kleikamp  *	the indirect blocks(if needed) and the first direct block,
586ac27a0ecSDave Kleikamp  *	@blks:	on return it will store the total number of allocated
587ac27a0ecSDave Kleikamp  *		direct blocks
588ac27a0ecSDave Kleikamp  */
589617ba13bSMingming Cao static int ext4_alloc_blocks(handle_t *handle, struct inode *inode,
5907061eba7SAneesh Kumar K.V 			     ext4_lblk_t iblock, ext4_fsblk_t goal,
5917061eba7SAneesh Kumar K.V 			     int indirect_blks, int blks,
592617ba13bSMingming Cao 			     ext4_fsblk_t new_blocks[4], int *err)
593ac27a0ecSDave Kleikamp {
594815a1130STheodore Ts'o 	struct ext4_allocation_request ar;
595ac27a0ecSDave Kleikamp 	int target, i;
5967061eba7SAneesh Kumar K.V 	unsigned long count = 0, blk_allocated = 0;
597ac27a0ecSDave Kleikamp 	int index = 0;
598617ba13bSMingming Cao 	ext4_fsblk_t current_block = 0;
599ac27a0ecSDave Kleikamp 	int ret = 0;
600ac27a0ecSDave Kleikamp 
601ac27a0ecSDave Kleikamp 	/*
602ac27a0ecSDave Kleikamp 	 * Here we try to allocate the requested multiple blocks at once,
603ac27a0ecSDave Kleikamp 	 * on a best-effort basis.
604ac27a0ecSDave Kleikamp 	 * To build a branch, we should allocate blocks for
605ac27a0ecSDave Kleikamp 	 * the indirect blocks(if not allocated yet), and at least
606ac27a0ecSDave Kleikamp 	 * the first direct block of this branch.  That's the
607ac27a0ecSDave Kleikamp 	 * minimum number of blocks need to allocate(required)
608ac27a0ecSDave Kleikamp 	 */
6097061eba7SAneesh Kumar K.V 	/* first we try to allocate the indirect blocks */
6107061eba7SAneesh Kumar K.V 	target = indirect_blks;
6117061eba7SAneesh Kumar K.V 	while (target > 0) {
612ac27a0ecSDave Kleikamp 		count = target;
613ac27a0ecSDave Kleikamp 		/* allocating blocks for indirect blocks and direct blocks */
6147061eba7SAneesh Kumar K.V 		current_block = ext4_new_meta_blocks(handle, inode,
6157061eba7SAneesh Kumar K.V 							goal, &count, err);
616ac27a0ecSDave Kleikamp 		if (*err)
617ac27a0ecSDave Kleikamp 			goto failed_out;
618ac27a0ecSDave Kleikamp 
619273df556SFrank Mayhar 		if (unlikely(current_block + count > EXT4_MAX_BLOCK_FILE_PHYS)) {
620273df556SFrank Mayhar 			EXT4_ERROR_INODE(inode,
621273df556SFrank Mayhar 					 "current_block %llu + count %lu > %d!",
622273df556SFrank Mayhar 					 current_block, count,
623273df556SFrank Mayhar 					 EXT4_MAX_BLOCK_FILE_PHYS);
624273df556SFrank Mayhar 			*err = -EIO;
625273df556SFrank Mayhar 			goto failed_out;
626273df556SFrank Mayhar 		}
627fb0a387dSEric Sandeen 
628ac27a0ecSDave Kleikamp 		target -= count;
629ac27a0ecSDave Kleikamp 		/* allocate blocks for indirect blocks */
630ac27a0ecSDave Kleikamp 		while (index < indirect_blks && count) {
631ac27a0ecSDave Kleikamp 			new_blocks[index++] = current_block++;
632ac27a0ecSDave Kleikamp 			count--;
633ac27a0ecSDave Kleikamp 		}
6347061eba7SAneesh Kumar K.V 		if (count > 0) {
6357061eba7SAneesh Kumar K.V 			/*
6367061eba7SAneesh Kumar K.V 			 * save the new block number
6377061eba7SAneesh Kumar K.V 			 * for the first direct block
6387061eba7SAneesh Kumar K.V 			 */
6397061eba7SAneesh Kumar K.V 			new_blocks[index] = current_block;
6407061eba7SAneesh Kumar K.V 			printk(KERN_INFO "%s returned more blocks than "
6417061eba7SAneesh Kumar K.V 						"requested\n", __func__);
6427061eba7SAneesh Kumar K.V 			WARN_ON(1);
643ac27a0ecSDave Kleikamp 			break;
644ac27a0ecSDave Kleikamp 		}
6457061eba7SAneesh Kumar K.V 	}
646ac27a0ecSDave Kleikamp 
6477061eba7SAneesh Kumar K.V 	target = blks - count ;
6487061eba7SAneesh Kumar K.V 	blk_allocated = count;
6497061eba7SAneesh Kumar K.V 	if (!target)
6507061eba7SAneesh Kumar K.V 		goto allocated;
6517061eba7SAneesh Kumar K.V 	/* Now allocate data blocks */
652815a1130STheodore Ts'o 	memset(&ar, 0, sizeof(ar));
653815a1130STheodore Ts'o 	ar.inode = inode;
654815a1130STheodore Ts'o 	ar.goal = goal;
655815a1130STheodore Ts'o 	ar.len = target;
656815a1130STheodore Ts'o 	ar.logical = iblock;
657815a1130STheodore Ts'o 	if (S_ISREG(inode->i_mode))
658815a1130STheodore Ts'o 		/* enable in-core preallocation only for regular files */
659815a1130STheodore Ts'o 		ar.flags = EXT4_MB_HINT_DATA;
660815a1130STheodore Ts'o 
661815a1130STheodore Ts'o 	current_block = ext4_mb_new_blocks(handle, &ar, err);
662273df556SFrank Mayhar 	if (unlikely(current_block + ar.len > EXT4_MAX_BLOCK_FILE_PHYS)) {
663273df556SFrank Mayhar 		EXT4_ERROR_INODE(inode,
664273df556SFrank Mayhar 				 "current_block %llu + ar.len %d > %d!",
665273df556SFrank Mayhar 				 current_block, ar.len,
666273df556SFrank Mayhar 				 EXT4_MAX_BLOCK_FILE_PHYS);
667273df556SFrank Mayhar 		*err = -EIO;
668273df556SFrank Mayhar 		goto failed_out;
669273df556SFrank Mayhar 	}
670815a1130STheodore Ts'o 
6717061eba7SAneesh Kumar K.V 	if (*err && (target == blks)) {
6727061eba7SAneesh Kumar K.V 		/*
6737061eba7SAneesh Kumar K.V 		 * if the allocation failed and we didn't allocate
6747061eba7SAneesh Kumar K.V 		 * any blocks before
6757061eba7SAneesh Kumar K.V 		 */
6767061eba7SAneesh Kumar K.V 		goto failed_out;
6777061eba7SAneesh Kumar K.V 	}
6787061eba7SAneesh Kumar K.V 	if (!*err) {
6797061eba7SAneesh Kumar K.V 		if (target == blks) {
6807061eba7SAneesh Kumar K.V 			/*
6817061eba7SAneesh Kumar K.V 			 * save the new block number
6827061eba7SAneesh Kumar K.V 			 * for the first direct block
6837061eba7SAneesh Kumar K.V 			 */
684ac27a0ecSDave Kleikamp 			new_blocks[index] = current_block;
6857061eba7SAneesh Kumar K.V 		}
686815a1130STheodore Ts'o 		blk_allocated += ar.len;
6877061eba7SAneesh Kumar K.V 	}
6887061eba7SAneesh Kumar K.V allocated:
689ac27a0ecSDave Kleikamp 	/* total number of blocks allocated for direct blocks */
6907061eba7SAneesh Kumar K.V 	ret = blk_allocated;
691ac27a0ecSDave Kleikamp 	*err = 0;
692ac27a0ecSDave Kleikamp 	return ret;
693ac27a0ecSDave Kleikamp failed_out:
694ac27a0ecSDave Kleikamp 	for (i = 0; i < index; i++)
695e6362609STheodore Ts'o 		ext4_free_blocks(handle, inode, 0, new_blocks[i], 1, 0);
696ac27a0ecSDave Kleikamp 	return ret;
697ac27a0ecSDave Kleikamp }
698ac27a0ecSDave Kleikamp 
699ac27a0ecSDave Kleikamp /**
700617ba13bSMingming Cao  *	ext4_alloc_branch - allocate and set up a chain of blocks.
701ac27a0ecSDave Kleikamp  *	@inode: owner
702ac27a0ecSDave Kleikamp  *	@indirect_blks: number of allocated indirect blocks
703ac27a0ecSDave Kleikamp  *	@blks: number of allocated direct blocks
704ac27a0ecSDave Kleikamp  *	@offsets: offsets (in the blocks) to store the pointers to next.
705ac27a0ecSDave Kleikamp  *	@branch: place to store the chain in.
706ac27a0ecSDave Kleikamp  *
707ac27a0ecSDave Kleikamp  *	This function allocates blocks, zeroes out all but the last one,
708ac27a0ecSDave Kleikamp  *	links them into chain and (if we are synchronous) writes them to disk.
709ac27a0ecSDave Kleikamp  *	In other words, it prepares a branch that can be spliced onto the
710ac27a0ecSDave Kleikamp  *	inode. It stores the information about that chain in the branch[], in
711617ba13bSMingming Cao  *	the same format as ext4_get_branch() would do. We are calling it after
712ac27a0ecSDave Kleikamp  *	we had read the existing part of chain and partial points to the last
713ac27a0ecSDave Kleikamp  *	triple of that (one with zero ->key). Upon the exit we have the same
714617ba13bSMingming Cao  *	picture as after the successful ext4_get_block(), except that in one
715ac27a0ecSDave Kleikamp  *	place chain is disconnected - *branch->p is still zero (we did not
716ac27a0ecSDave Kleikamp  *	set the last link), but branch->key contains the number that should
717ac27a0ecSDave Kleikamp  *	be placed into *branch->p to fill that gap.
718ac27a0ecSDave Kleikamp  *
719ac27a0ecSDave Kleikamp  *	If allocation fails we free all blocks we've allocated (and forget
720ac27a0ecSDave Kleikamp  *	their buffer_heads) and return the error value the from failed
721617ba13bSMingming Cao  *	ext4_alloc_block() (normally -ENOSPC). Otherwise we set the chain
722ac27a0ecSDave Kleikamp  *	as described above and return 0.
723ac27a0ecSDave Kleikamp  */
724617ba13bSMingming Cao static int ext4_alloc_branch(handle_t *handle, struct inode *inode,
7257061eba7SAneesh Kumar K.V 			     ext4_lblk_t iblock, int indirect_blks,
7267061eba7SAneesh Kumar K.V 			     int *blks, ext4_fsblk_t goal,
727725d26d3SAneesh Kumar K.V 			     ext4_lblk_t *offsets, Indirect *branch)
728ac27a0ecSDave Kleikamp {
729ac27a0ecSDave Kleikamp 	int blocksize = inode->i_sb->s_blocksize;
730ac27a0ecSDave Kleikamp 	int i, n = 0;
731ac27a0ecSDave Kleikamp 	int err = 0;
732ac27a0ecSDave Kleikamp 	struct buffer_head *bh;
733ac27a0ecSDave Kleikamp 	int num;
734617ba13bSMingming Cao 	ext4_fsblk_t new_blocks[4];
735617ba13bSMingming Cao 	ext4_fsblk_t current_block;
736ac27a0ecSDave Kleikamp 
7377061eba7SAneesh Kumar K.V 	num = ext4_alloc_blocks(handle, inode, iblock, goal, indirect_blks,
738ac27a0ecSDave Kleikamp 				*blks, new_blocks, &err);
739ac27a0ecSDave Kleikamp 	if (err)
740ac27a0ecSDave Kleikamp 		return err;
741ac27a0ecSDave Kleikamp 
742ac27a0ecSDave Kleikamp 	branch[0].key = cpu_to_le32(new_blocks[0]);
743ac27a0ecSDave Kleikamp 	/*
744ac27a0ecSDave Kleikamp 	 * metadata blocks and data blocks are allocated.
745ac27a0ecSDave Kleikamp 	 */
746ac27a0ecSDave Kleikamp 	for (n = 1; n <= indirect_blks;  n++) {
747ac27a0ecSDave Kleikamp 		/*
748ac27a0ecSDave Kleikamp 		 * Get buffer_head for parent block, zero it out
749ac27a0ecSDave Kleikamp 		 * and set the pointer to new one, then send
750ac27a0ecSDave Kleikamp 		 * parent to disk.
751ac27a0ecSDave Kleikamp 		 */
752ac27a0ecSDave Kleikamp 		bh = sb_getblk(inode->i_sb, new_blocks[n-1]);
753ac27a0ecSDave Kleikamp 		branch[n].bh = bh;
754ac27a0ecSDave Kleikamp 		lock_buffer(bh);
755ac27a0ecSDave Kleikamp 		BUFFER_TRACE(bh, "call get_create_access");
756617ba13bSMingming Cao 		err = ext4_journal_get_create_access(handle, bh);
757ac27a0ecSDave Kleikamp 		if (err) {
7586487a9d3SCurt Wohlgemuth 			/* Don't brelse(bh) here; it's done in
7596487a9d3SCurt Wohlgemuth 			 * ext4_journal_forget() below */
760ac27a0ecSDave Kleikamp 			unlock_buffer(bh);
761ac27a0ecSDave Kleikamp 			goto failed;
762ac27a0ecSDave Kleikamp 		}
763ac27a0ecSDave Kleikamp 
764ac27a0ecSDave Kleikamp 		memset(bh->b_data, 0, blocksize);
765ac27a0ecSDave Kleikamp 		branch[n].p = (__le32 *) bh->b_data + offsets[n];
766ac27a0ecSDave Kleikamp 		branch[n].key = cpu_to_le32(new_blocks[n]);
767ac27a0ecSDave Kleikamp 		*branch[n].p = branch[n].key;
768ac27a0ecSDave Kleikamp 		if (n == indirect_blks) {
769ac27a0ecSDave Kleikamp 			current_block = new_blocks[n];
770ac27a0ecSDave Kleikamp 			/*
771ac27a0ecSDave Kleikamp 			 * End of chain, update the last new metablock of
772ac27a0ecSDave Kleikamp 			 * the chain to point to the new allocated
773ac27a0ecSDave Kleikamp 			 * data blocks numbers
774ac27a0ecSDave Kleikamp 			 */
775ac27a0ecSDave Kleikamp 			for (i = 1; i < num; i++)
776ac27a0ecSDave Kleikamp 				*(branch[n].p + i) = cpu_to_le32(++current_block);
777ac27a0ecSDave Kleikamp 		}
778ac27a0ecSDave Kleikamp 		BUFFER_TRACE(bh, "marking uptodate");
779ac27a0ecSDave Kleikamp 		set_buffer_uptodate(bh);
780ac27a0ecSDave Kleikamp 		unlock_buffer(bh);
781ac27a0ecSDave Kleikamp 
7820390131bSFrank Mayhar 		BUFFER_TRACE(bh, "call ext4_handle_dirty_metadata");
7830390131bSFrank Mayhar 		err = ext4_handle_dirty_metadata(handle, inode, bh);
784ac27a0ecSDave Kleikamp 		if (err)
785ac27a0ecSDave Kleikamp 			goto failed;
786ac27a0ecSDave Kleikamp 	}
787ac27a0ecSDave Kleikamp 	*blks = num;
788ac27a0ecSDave Kleikamp 	return err;
789ac27a0ecSDave Kleikamp failed:
790ac27a0ecSDave Kleikamp 	/* Allocation failed, free what we already allocated */
791e6362609STheodore Ts'o 	ext4_free_blocks(handle, inode, 0, new_blocks[0], 1, 0);
792ac27a0ecSDave Kleikamp 	for (i = 1; i <= n ; i++) {
793b7e57e7cSTheodore Ts'o 		/*
794e6362609STheodore Ts'o 		 * branch[i].bh is newly allocated, so there is no
795e6362609STheodore Ts'o 		 * need to revoke the block, which is why we don't
796e6362609STheodore Ts'o 		 * need to set EXT4_FREE_BLOCKS_METADATA.
797b7e57e7cSTheodore Ts'o 		 */
798e6362609STheodore Ts'o 		ext4_free_blocks(handle, inode, 0, new_blocks[i], 1,
799e6362609STheodore Ts'o 				 EXT4_FREE_BLOCKS_FORGET);
800ac27a0ecSDave Kleikamp 	}
801e6362609STheodore Ts'o 	for (i = n+1; i < indirect_blks; i++)
802e6362609STheodore Ts'o 		ext4_free_blocks(handle, inode, 0, new_blocks[i], 1, 0);
803ac27a0ecSDave Kleikamp 
804e6362609STheodore Ts'o 	ext4_free_blocks(handle, inode, 0, new_blocks[i], num, 0);
805ac27a0ecSDave Kleikamp 
806ac27a0ecSDave Kleikamp 	return err;
807ac27a0ecSDave Kleikamp }
808ac27a0ecSDave Kleikamp 
809ac27a0ecSDave Kleikamp /**
810617ba13bSMingming Cao  * ext4_splice_branch - splice the allocated branch onto inode.
811ac27a0ecSDave Kleikamp  * @inode: owner
812ac27a0ecSDave Kleikamp  * @block: (logical) number of block we are adding
813ac27a0ecSDave Kleikamp  * @chain: chain of indirect blocks (with a missing link - see
814617ba13bSMingming Cao  *	ext4_alloc_branch)
815ac27a0ecSDave Kleikamp  * @where: location of missing link
816ac27a0ecSDave Kleikamp  * @num:   number of indirect blocks we are adding
817ac27a0ecSDave Kleikamp  * @blks:  number of direct blocks we are adding
818ac27a0ecSDave Kleikamp  *
819ac27a0ecSDave Kleikamp  * This function fills the missing link and does all housekeeping needed in
820ac27a0ecSDave Kleikamp  * inode (->i_blocks, etc.). In case of success we end up with the full
821ac27a0ecSDave Kleikamp  * chain to new block and return 0.
822ac27a0ecSDave Kleikamp  */
823617ba13bSMingming Cao static int ext4_splice_branch(handle_t *handle, struct inode *inode,
824de9a55b8STheodore Ts'o 			      ext4_lblk_t block, Indirect *where, int num,
825de9a55b8STheodore Ts'o 			      int blks)
826ac27a0ecSDave Kleikamp {
827ac27a0ecSDave Kleikamp 	int i;
828ac27a0ecSDave Kleikamp 	int err = 0;
829617ba13bSMingming Cao 	ext4_fsblk_t current_block;
830ac27a0ecSDave Kleikamp 
831ac27a0ecSDave Kleikamp 	/*
832ac27a0ecSDave Kleikamp 	 * If we're splicing into a [td]indirect block (as opposed to the
833ac27a0ecSDave Kleikamp 	 * inode) then we need to get write access to the [td]indirect block
834ac27a0ecSDave Kleikamp 	 * before the splice.
835ac27a0ecSDave Kleikamp 	 */
836ac27a0ecSDave Kleikamp 	if (where->bh) {
837ac27a0ecSDave Kleikamp 		BUFFER_TRACE(where->bh, "get_write_access");
838617ba13bSMingming Cao 		err = ext4_journal_get_write_access(handle, where->bh);
839ac27a0ecSDave Kleikamp 		if (err)
840ac27a0ecSDave Kleikamp 			goto err_out;
841ac27a0ecSDave Kleikamp 	}
842ac27a0ecSDave Kleikamp 	/* That's it */
843ac27a0ecSDave Kleikamp 
844ac27a0ecSDave Kleikamp 	*where->p = where->key;
845ac27a0ecSDave Kleikamp 
846ac27a0ecSDave Kleikamp 	/*
847ac27a0ecSDave Kleikamp 	 * Update the host buffer_head or inode to point to more just allocated
848ac27a0ecSDave Kleikamp 	 * direct blocks blocks
849ac27a0ecSDave Kleikamp 	 */
850ac27a0ecSDave Kleikamp 	if (num == 0 && blks > 1) {
851ac27a0ecSDave Kleikamp 		current_block = le32_to_cpu(where->key) + 1;
852ac27a0ecSDave Kleikamp 		for (i = 1; i < blks; i++)
853ac27a0ecSDave Kleikamp 			*(where->p + i) = cpu_to_le32(current_block++);
854ac27a0ecSDave Kleikamp 	}
855ac27a0ecSDave Kleikamp 
856ac27a0ecSDave Kleikamp 	/* We are done with atomic stuff, now do the rest of housekeeping */
857ac27a0ecSDave Kleikamp 	/* had we spliced it onto indirect block? */
858ac27a0ecSDave Kleikamp 	if (where->bh) {
859ac27a0ecSDave Kleikamp 		/*
860ac27a0ecSDave Kleikamp 		 * If we spliced it onto an indirect block, we haven't
861ac27a0ecSDave Kleikamp 		 * altered the inode.  Note however that if it is being spliced
862ac27a0ecSDave Kleikamp 		 * onto an indirect block at the very end of the file (the
863ac27a0ecSDave Kleikamp 		 * file is growing) then we *will* alter the inode to reflect
864ac27a0ecSDave Kleikamp 		 * the new i_size.  But that is not done here - it is done in
865617ba13bSMingming Cao 		 * generic_commit_write->__mark_inode_dirty->ext4_dirty_inode.
866ac27a0ecSDave Kleikamp 		 */
867ac27a0ecSDave Kleikamp 		jbd_debug(5, "splicing indirect only\n");
8680390131bSFrank Mayhar 		BUFFER_TRACE(where->bh, "call ext4_handle_dirty_metadata");
8690390131bSFrank Mayhar 		err = ext4_handle_dirty_metadata(handle, inode, where->bh);
870ac27a0ecSDave Kleikamp 		if (err)
871ac27a0ecSDave Kleikamp 			goto err_out;
872ac27a0ecSDave Kleikamp 	} else {
873ac27a0ecSDave Kleikamp 		/*
874ac27a0ecSDave Kleikamp 		 * OK, we spliced it into the inode itself on a direct block.
875ac27a0ecSDave Kleikamp 		 */
87641591750STheodore Ts'o 		ext4_mark_inode_dirty(handle, inode);
877ac27a0ecSDave Kleikamp 		jbd_debug(5, "splicing direct\n");
878ac27a0ecSDave Kleikamp 	}
879ac27a0ecSDave Kleikamp 	return err;
880ac27a0ecSDave Kleikamp 
881ac27a0ecSDave Kleikamp err_out:
882ac27a0ecSDave Kleikamp 	for (i = 1; i <= num; i++) {
883b7e57e7cSTheodore Ts'o 		/*
884e6362609STheodore Ts'o 		 * branch[i].bh is newly allocated, so there is no
885e6362609STheodore Ts'o 		 * need to revoke the block, which is why we don't
886e6362609STheodore Ts'o 		 * need to set EXT4_FREE_BLOCKS_METADATA.
887b7e57e7cSTheodore Ts'o 		 */
888e6362609STheodore Ts'o 		ext4_free_blocks(handle, inode, where[i].bh, 0, 1,
889e6362609STheodore Ts'o 				 EXT4_FREE_BLOCKS_FORGET);
890ac27a0ecSDave Kleikamp 	}
891e6362609STheodore Ts'o 	ext4_free_blocks(handle, inode, 0, le32_to_cpu(where[num].key),
892e6362609STheodore Ts'o 			 blks, 0);
893ac27a0ecSDave Kleikamp 
894ac27a0ecSDave Kleikamp 	return err;
895ac27a0ecSDave Kleikamp }
896ac27a0ecSDave Kleikamp 
897ac27a0ecSDave Kleikamp /*
898e35fd660STheodore Ts'o  * The ext4_ind_map_blocks() function handles non-extents inodes
899b920c755STheodore Ts'o  * (i.e., using the traditional indirect/double-indirect i_blocks
900e35fd660STheodore Ts'o  * scheme) for ext4_map_blocks().
901b920c755STheodore Ts'o  *
902ac27a0ecSDave Kleikamp  * Allocation strategy is simple: if we have to allocate something, we will
903ac27a0ecSDave Kleikamp  * have to go the whole way to leaf. So let's do it before attaching anything
904ac27a0ecSDave Kleikamp  * to tree, set linkage between the newborn blocks, write them if sync is
905ac27a0ecSDave Kleikamp  * required, recheck the path, free and repeat if check fails, otherwise
906ac27a0ecSDave Kleikamp  * set the last missing link (that will protect us from any truncate-generated
907ac27a0ecSDave Kleikamp  * removals - all blocks on the path are immune now) and possibly force the
908ac27a0ecSDave Kleikamp  * write on the parent block.
909ac27a0ecSDave Kleikamp  * That has a nice additional property: no special recovery from the failed
910ac27a0ecSDave Kleikamp  * allocations is needed - we simply release blocks and do not touch anything
911ac27a0ecSDave Kleikamp  * reachable from inode.
912ac27a0ecSDave Kleikamp  *
913ac27a0ecSDave Kleikamp  * `handle' can be NULL if create == 0.
914ac27a0ecSDave Kleikamp  *
915ac27a0ecSDave Kleikamp  * return > 0, # of blocks mapped or allocated.
916ac27a0ecSDave Kleikamp  * return = 0, if plain lookup failed.
917ac27a0ecSDave Kleikamp  * return < 0, error case.
918c278bfecSAneesh Kumar K.V  *
919b920c755STheodore Ts'o  * The ext4_ind_get_blocks() function should be called with
920b920c755STheodore Ts'o  * down_write(&EXT4_I(inode)->i_data_sem) if allocating filesystem
921b920c755STheodore Ts'o  * blocks (i.e., flags has EXT4_GET_BLOCKS_CREATE set) or
922b920c755STheodore Ts'o  * down_read(&EXT4_I(inode)->i_data_sem) if not allocating file system
923b920c755STheodore Ts'o  * blocks.
924ac27a0ecSDave Kleikamp  */
925e35fd660STheodore Ts'o static int ext4_ind_map_blocks(handle_t *handle, struct inode *inode,
926e35fd660STheodore Ts'o 			       struct ext4_map_blocks *map,
927c2177057STheodore Ts'o 			       int flags)
928ac27a0ecSDave Kleikamp {
929ac27a0ecSDave Kleikamp 	int err = -EIO;
930725d26d3SAneesh Kumar K.V 	ext4_lblk_t offsets[4];
931ac27a0ecSDave Kleikamp 	Indirect chain[4];
932ac27a0ecSDave Kleikamp 	Indirect *partial;
933617ba13bSMingming Cao 	ext4_fsblk_t goal;
934ac27a0ecSDave Kleikamp 	int indirect_blks;
935ac27a0ecSDave Kleikamp 	int blocks_to_boundary = 0;
936ac27a0ecSDave Kleikamp 	int depth;
937ac27a0ecSDave Kleikamp 	int count = 0;
938617ba13bSMingming Cao 	ext4_fsblk_t first_block = 0;
939ac27a0ecSDave Kleikamp 
94012e9b892SDmitry Monakhov 	J_ASSERT(!(ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)));
941c2177057STheodore Ts'o 	J_ASSERT(handle != NULL || (flags & EXT4_GET_BLOCKS_CREATE) == 0);
942e35fd660STheodore Ts'o 	depth = ext4_block_to_path(inode, map->m_lblk, offsets,
943725d26d3SAneesh Kumar K.V 				   &blocks_to_boundary);
944ac27a0ecSDave Kleikamp 
945ac27a0ecSDave Kleikamp 	if (depth == 0)
946ac27a0ecSDave Kleikamp 		goto out;
947ac27a0ecSDave Kleikamp 
948617ba13bSMingming Cao 	partial = ext4_get_branch(inode, depth, offsets, chain, &err);
949ac27a0ecSDave Kleikamp 
950ac27a0ecSDave Kleikamp 	/* Simplest case - block found, no allocation needed */
951ac27a0ecSDave Kleikamp 	if (!partial) {
952ac27a0ecSDave Kleikamp 		first_block = le32_to_cpu(chain[depth - 1].key);
953ac27a0ecSDave Kleikamp 		count++;
954ac27a0ecSDave Kleikamp 		/*map more blocks*/
955e35fd660STheodore Ts'o 		while (count < map->m_len && count <= blocks_to_boundary) {
956617ba13bSMingming Cao 			ext4_fsblk_t blk;
957ac27a0ecSDave Kleikamp 
958ac27a0ecSDave Kleikamp 			blk = le32_to_cpu(*(chain[depth-1].p + count));
959ac27a0ecSDave Kleikamp 
960ac27a0ecSDave Kleikamp 			if (blk == first_block + count)
961ac27a0ecSDave Kleikamp 				count++;
962ac27a0ecSDave Kleikamp 			else
963ac27a0ecSDave Kleikamp 				break;
964ac27a0ecSDave Kleikamp 		}
965ac27a0ecSDave Kleikamp 		goto got_it;
966ac27a0ecSDave Kleikamp 	}
967ac27a0ecSDave Kleikamp 
968ac27a0ecSDave Kleikamp 	/* Next simple case - plain lookup or failed read of indirect block */
969c2177057STheodore Ts'o 	if ((flags & EXT4_GET_BLOCKS_CREATE) == 0 || err == -EIO)
970ac27a0ecSDave Kleikamp 		goto cleanup;
971ac27a0ecSDave Kleikamp 
972ac27a0ecSDave Kleikamp 	/*
973c2ea3fdeSTheodore Ts'o 	 * Okay, we need to do block allocation.
974ac27a0ecSDave Kleikamp 	*/
975e35fd660STheodore Ts'o 	goal = ext4_find_goal(inode, map->m_lblk, partial);
976ac27a0ecSDave Kleikamp 
977ac27a0ecSDave Kleikamp 	/* the number of blocks need to allocate for [d,t]indirect blocks */
978ac27a0ecSDave Kleikamp 	indirect_blks = (chain + depth) - partial - 1;
979ac27a0ecSDave Kleikamp 
980ac27a0ecSDave Kleikamp 	/*
981ac27a0ecSDave Kleikamp 	 * Next look up the indirect map to count the totoal number of
982ac27a0ecSDave Kleikamp 	 * direct blocks to allocate for this branch.
983ac27a0ecSDave Kleikamp 	 */
984617ba13bSMingming Cao 	count = ext4_blks_to_allocate(partial, indirect_blks,
985e35fd660STheodore Ts'o 				      map->m_len, blocks_to_boundary);
986ac27a0ecSDave Kleikamp 	/*
987617ba13bSMingming Cao 	 * Block out ext4_truncate while we alter the tree
988ac27a0ecSDave Kleikamp 	 */
989e35fd660STheodore Ts'o 	err = ext4_alloc_branch(handle, inode, map->m_lblk, indirect_blks,
9907061eba7SAneesh Kumar K.V 				&count, goal,
991ac27a0ecSDave Kleikamp 				offsets + (partial - chain), partial);
992ac27a0ecSDave Kleikamp 
993ac27a0ecSDave Kleikamp 	/*
994617ba13bSMingming Cao 	 * The ext4_splice_branch call will free and forget any buffers
995ac27a0ecSDave Kleikamp 	 * on the new chain if there is a failure, but that risks using
996ac27a0ecSDave Kleikamp 	 * up transaction credits, especially for bitmaps where the
997ac27a0ecSDave Kleikamp 	 * credits cannot be returned.  Can we handle this somehow?  We
998ac27a0ecSDave Kleikamp 	 * may need to return -EAGAIN upwards in the worst case.  --sct
999ac27a0ecSDave Kleikamp 	 */
1000ac27a0ecSDave Kleikamp 	if (!err)
1001e35fd660STheodore Ts'o 		err = ext4_splice_branch(handle, inode, map->m_lblk,
1002ac27a0ecSDave Kleikamp 					 partial, indirect_blks, count);
10032bba702dSJan Kara 	if (err)
1004ac27a0ecSDave Kleikamp 		goto cleanup;
1005ac27a0ecSDave Kleikamp 
1006e35fd660STheodore Ts'o 	map->m_flags |= EXT4_MAP_NEW;
1007b436b9beSJan Kara 
1008b436b9beSJan Kara 	ext4_update_inode_fsync_trans(handle, inode, 1);
1009ac27a0ecSDave Kleikamp got_it:
1010e35fd660STheodore Ts'o 	map->m_flags |= EXT4_MAP_MAPPED;
1011e35fd660STheodore Ts'o 	map->m_pblk = le32_to_cpu(chain[depth-1].key);
1012e35fd660STheodore Ts'o 	map->m_len = count;
1013ac27a0ecSDave Kleikamp 	if (count > blocks_to_boundary)
1014e35fd660STheodore Ts'o 		map->m_flags |= EXT4_MAP_BOUNDARY;
1015ac27a0ecSDave Kleikamp 	err = count;
1016ac27a0ecSDave Kleikamp 	/* Clean up and exit */
1017ac27a0ecSDave Kleikamp 	partial = chain + depth - 1;	/* the whole chain */
1018ac27a0ecSDave Kleikamp cleanup:
1019ac27a0ecSDave Kleikamp 	while (partial > chain) {
1020ac27a0ecSDave Kleikamp 		BUFFER_TRACE(partial->bh, "call brelse");
1021ac27a0ecSDave Kleikamp 		brelse(partial->bh);
1022ac27a0ecSDave Kleikamp 		partial--;
1023ac27a0ecSDave Kleikamp 	}
1024ac27a0ecSDave Kleikamp out:
1025ac27a0ecSDave Kleikamp 	return err;
1026ac27a0ecSDave Kleikamp }
1027ac27a0ecSDave Kleikamp 
1028a9e7f447SDmitry Monakhov #ifdef CONFIG_QUOTA
1029a9e7f447SDmitry Monakhov qsize_t *ext4_get_reserved_space(struct inode *inode)
103060e58e0fSMingming Cao {
1031a9e7f447SDmitry Monakhov 	return &EXT4_I(inode)->i_reserved_quota;
103260e58e0fSMingming Cao }
1033a9e7f447SDmitry Monakhov #endif
10349d0be502STheodore Ts'o 
103512219aeaSAneesh Kumar K.V /*
103612219aeaSAneesh Kumar K.V  * Calculate the number of metadata blocks need to reserve
10379d0be502STheodore Ts'o  * to allocate a new block at @lblocks for non extent file based file
103812219aeaSAneesh Kumar K.V  */
10399d0be502STheodore Ts'o static int ext4_indirect_calc_metadata_amount(struct inode *inode,
10409d0be502STheodore Ts'o 					      sector_t lblock)
104112219aeaSAneesh Kumar K.V {
10429d0be502STheodore Ts'o 	struct ext4_inode_info *ei = EXT4_I(inode);
1043d330a5beSJan Kara 	sector_t dind_mask = ~((sector_t)EXT4_ADDR_PER_BLOCK(inode->i_sb) - 1);
10449d0be502STheodore Ts'o 	int blk_bits;
104512219aeaSAneesh Kumar K.V 
10469d0be502STheodore Ts'o 	if (lblock < EXT4_NDIR_BLOCKS)
10479d0be502STheodore Ts'o 		return 0;
104812219aeaSAneesh Kumar K.V 
10499d0be502STheodore Ts'o 	lblock -= EXT4_NDIR_BLOCKS;
105012219aeaSAneesh Kumar K.V 
10519d0be502STheodore Ts'o 	if (ei->i_da_metadata_calc_len &&
10529d0be502STheodore Ts'o 	    (lblock & dind_mask) == ei->i_da_metadata_calc_last_lblock) {
10539d0be502STheodore Ts'o 		ei->i_da_metadata_calc_len++;
10549d0be502STheodore Ts'o 		return 0;
10559d0be502STheodore Ts'o 	}
10569d0be502STheodore Ts'o 	ei->i_da_metadata_calc_last_lblock = lblock & dind_mask;
10579d0be502STheodore Ts'o 	ei->i_da_metadata_calc_len = 1;
1058d330a5beSJan Kara 	blk_bits = order_base_2(lblock);
10599d0be502STheodore Ts'o 	return (blk_bits / EXT4_ADDR_PER_BLOCK_BITS(inode->i_sb)) + 1;
106012219aeaSAneesh Kumar K.V }
106112219aeaSAneesh Kumar K.V 
106212219aeaSAneesh Kumar K.V /*
106312219aeaSAneesh Kumar K.V  * Calculate the number of metadata blocks need to reserve
10649d0be502STheodore Ts'o  * to allocate a block located at @lblock
106512219aeaSAneesh Kumar K.V  */
10669d0be502STheodore Ts'o static int ext4_calc_metadata_amount(struct inode *inode, sector_t lblock)
106712219aeaSAneesh Kumar K.V {
106812e9b892SDmitry Monakhov 	if (ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS))
10699d0be502STheodore Ts'o 		return ext4_ext_calc_metadata_amount(inode, lblock);
107012219aeaSAneesh Kumar K.V 
10719d0be502STheodore Ts'o 	return ext4_indirect_calc_metadata_amount(inode, lblock);
107212219aeaSAneesh Kumar K.V }
107312219aeaSAneesh Kumar K.V 
10740637c6f4STheodore Ts'o /*
10750637c6f4STheodore Ts'o  * Called with i_data_sem down, which is important since we can call
10760637c6f4STheodore Ts'o  * ext4_discard_preallocations() from here.
10770637c6f4STheodore Ts'o  */
10785f634d06SAneesh Kumar K.V void ext4_da_update_reserve_space(struct inode *inode,
10795f634d06SAneesh Kumar K.V 					int used, int quota_claim)
108012219aeaSAneesh Kumar K.V {
108112219aeaSAneesh Kumar K.V 	struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb);
10820637c6f4STheodore Ts'o 	struct ext4_inode_info *ei = EXT4_I(inode);
108312219aeaSAneesh Kumar K.V 
10840637c6f4STheodore Ts'o 	spin_lock(&ei->i_block_reservation_lock);
1085f8ec9d68STheodore Ts'o 	trace_ext4_da_update_reserve_space(inode, used);
10860637c6f4STheodore Ts'o 	if (unlikely(used > ei->i_reserved_data_blocks)) {
10870637c6f4STheodore Ts'o 		ext4_msg(inode->i_sb, KERN_NOTICE, "%s: ino %lu, used %d "
10880637c6f4STheodore Ts'o 			 "with only %d reserved data blocks\n",
10890637c6f4STheodore Ts'o 			 __func__, inode->i_ino, used,
10900637c6f4STheodore Ts'o 			 ei->i_reserved_data_blocks);
10910637c6f4STheodore Ts'o 		WARN_ON(1);
10920637c6f4STheodore Ts'o 		used = ei->i_reserved_data_blocks;
10936bc6e63fSAneesh Kumar K.V 	}
109412219aeaSAneesh Kumar K.V 
10950637c6f4STheodore Ts'o 	/* Update per-inode reservations */
10960637c6f4STheodore Ts'o 	ei->i_reserved_data_blocks -= used;
10970637c6f4STheodore Ts'o 	ei->i_reserved_meta_blocks -= ei->i_allocated_meta_blocks;
109872b8ab9dSEric Sandeen 	percpu_counter_sub(&sbi->s_dirtyblocks_counter,
109972b8ab9dSEric Sandeen 			   used + ei->i_allocated_meta_blocks);
11000637c6f4STheodore Ts'o 	ei->i_allocated_meta_blocks = 0;
11010637c6f4STheodore Ts'o 
11020637c6f4STheodore Ts'o 	if (ei->i_reserved_data_blocks == 0) {
11030637c6f4STheodore Ts'o 		/*
11040637c6f4STheodore Ts'o 		 * We can release all of the reserved metadata blocks
11050637c6f4STheodore Ts'o 		 * only when we have written all of the delayed
11060637c6f4STheodore Ts'o 		 * allocation blocks.
11070637c6f4STheodore Ts'o 		 */
110872b8ab9dSEric Sandeen 		percpu_counter_sub(&sbi->s_dirtyblocks_counter,
110972b8ab9dSEric Sandeen 				   ei->i_reserved_meta_blocks);
1110ee5f4d9cSTheodore Ts'o 		ei->i_reserved_meta_blocks = 0;
11119d0be502STheodore Ts'o 		ei->i_da_metadata_calc_len = 0;
11120637c6f4STheodore Ts'o 	}
111312219aeaSAneesh Kumar K.V 	spin_unlock(&EXT4_I(inode)->i_block_reservation_lock);
111460e58e0fSMingming Cao 
111572b8ab9dSEric Sandeen 	/* Update quota subsystem for data blocks */
111672b8ab9dSEric Sandeen 	if (quota_claim)
11175dd4056dSChristoph Hellwig 		dquot_claim_block(inode, used);
111872b8ab9dSEric Sandeen 	else {
11195f634d06SAneesh Kumar K.V 		/*
11205f634d06SAneesh Kumar K.V 		 * We did fallocate with an offset that is already delayed
11215f634d06SAneesh Kumar K.V 		 * allocated. So on delayed allocated writeback we should
112272b8ab9dSEric Sandeen 		 * not re-claim the quota for fallocated blocks.
11235f634d06SAneesh Kumar K.V 		 */
112472b8ab9dSEric Sandeen 		dquot_release_reservation_block(inode, used);
11255f634d06SAneesh Kumar K.V 	}
1126d6014301SAneesh Kumar K.V 
1127d6014301SAneesh Kumar K.V 	/*
1128d6014301SAneesh Kumar K.V 	 * If we have done all the pending block allocations and if
1129d6014301SAneesh Kumar K.V 	 * there aren't any writers on the inode, we can discard the
1130d6014301SAneesh Kumar K.V 	 * inode's preallocations.
1131d6014301SAneesh Kumar K.V 	 */
11320637c6f4STheodore Ts'o 	if ((ei->i_reserved_data_blocks == 0) &&
11330637c6f4STheodore Ts'o 	    (atomic_read(&inode->i_writecount) == 0))
1134d6014301SAneesh Kumar K.V 		ext4_discard_preallocations(inode);
113512219aeaSAneesh Kumar K.V }
113612219aeaSAneesh Kumar K.V 
1137e29136f8STheodore Ts'o static int __check_block_validity(struct inode *inode, const char *func,
1138c398eda0STheodore Ts'o 				unsigned int line,
113924676da4STheodore Ts'o 				struct ext4_map_blocks *map)
11406fd058f7STheodore Ts'o {
114124676da4STheodore Ts'o 	if (!ext4_data_block_valid(EXT4_SB(inode->i_sb), map->m_pblk,
114224676da4STheodore Ts'o 				   map->m_len)) {
1143c398eda0STheodore Ts'o 		ext4_error_inode(inode, func, line, map->m_pblk,
1144c398eda0STheodore Ts'o 				 "lblock %lu mapped to illegal pblock "
114524676da4STheodore Ts'o 				 "(length %d)", (unsigned long) map->m_lblk,
1146c398eda0STheodore Ts'o 				 map->m_len);
11476fd058f7STheodore Ts'o 		return -EIO;
11486fd058f7STheodore Ts'o 	}
11496fd058f7STheodore Ts'o 	return 0;
11506fd058f7STheodore Ts'o }
11516fd058f7STheodore Ts'o 
1152e29136f8STheodore Ts'o #define check_block_validity(inode, map)	\
1153c398eda0STheodore Ts'o 	__check_block_validity((inode), __func__, __LINE__, (map))
1154e29136f8STheodore Ts'o 
1155f5ab0d1fSMingming Cao /*
11561f94533dSTheodore Ts'o  * Return the number of contiguous dirty pages in a given inode
11571f94533dSTheodore Ts'o  * starting at page frame idx.
115855138e0bSTheodore Ts'o  */
115955138e0bSTheodore Ts'o static pgoff_t ext4_num_dirty_pages(struct inode *inode, pgoff_t idx,
116055138e0bSTheodore Ts'o 				    unsigned int max_pages)
116155138e0bSTheodore Ts'o {
116255138e0bSTheodore Ts'o 	struct address_space *mapping = inode->i_mapping;
116355138e0bSTheodore Ts'o 	pgoff_t	index;
116455138e0bSTheodore Ts'o 	struct pagevec pvec;
116555138e0bSTheodore Ts'o 	pgoff_t num = 0;
116655138e0bSTheodore Ts'o 	int i, nr_pages, done = 0;
116755138e0bSTheodore Ts'o 
116855138e0bSTheodore Ts'o 	if (max_pages == 0)
116955138e0bSTheodore Ts'o 		return 0;
117055138e0bSTheodore Ts'o 	pagevec_init(&pvec, 0);
117155138e0bSTheodore Ts'o 	while (!done) {
117255138e0bSTheodore Ts'o 		index = idx;
117355138e0bSTheodore Ts'o 		nr_pages = pagevec_lookup_tag(&pvec, mapping, &index,
117455138e0bSTheodore Ts'o 					      PAGECACHE_TAG_DIRTY,
117555138e0bSTheodore Ts'o 					      (pgoff_t)PAGEVEC_SIZE);
117655138e0bSTheodore Ts'o 		if (nr_pages == 0)
117755138e0bSTheodore Ts'o 			break;
117855138e0bSTheodore Ts'o 		for (i = 0; i < nr_pages; i++) {
117955138e0bSTheodore Ts'o 			struct page *page = pvec.pages[i];
118055138e0bSTheodore Ts'o 			struct buffer_head *bh, *head;
118155138e0bSTheodore Ts'o 
118255138e0bSTheodore Ts'o 			lock_page(page);
118355138e0bSTheodore Ts'o 			if (unlikely(page->mapping != mapping) ||
118455138e0bSTheodore Ts'o 			    !PageDirty(page) ||
118555138e0bSTheodore Ts'o 			    PageWriteback(page) ||
118655138e0bSTheodore Ts'o 			    page->index != idx) {
118755138e0bSTheodore Ts'o 				done = 1;
118855138e0bSTheodore Ts'o 				unlock_page(page);
118955138e0bSTheodore Ts'o 				break;
119055138e0bSTheodore Ts'o 			}
11911f94533dSTheodore Ts'o 			if (page_has_buffers(page)) {
11921f94533dSTheodore Ts'o 				bh = head = page_buffers(page);
119355138e0bSTheodore Ts'o 				do {
119455138e0bSTheodore Ts'o 					if (!buffer_delay(bh) &&
11951f94533dSTheodore Ts'o 					    !buffer_unwritten(bh))
119655138e0bSTheodore Ts'o 						done = 1;
11971f94533dSTheodore Ts'o 					bh = bh->b_this_page;
11981f94533dSTheodore Ts'o 				} while (!done && (bh != head));
119955138e0bSTheodore Ts'o 			}
120055138e0bSTheodore Ts'o 			unlock_page(page);
120155138e0bSTheodore Ts'o 			if (done)
120255138e0bSTheodore Ts'o 				break;
120355138e0bSTheodore Ts'o 			idx++;
120455138e0bSTheodore Ts'o 			num++;
120555138e0bSTheodore Ts'o 			if (num >= max_pages)
120655138e0bSTheodore Ts'o 				break;
120755138e0bSTheodore Ts'o 		}
120855138e0bSTheodore Ts'o 		pagevec_release(&pvec);
120955138e0bSTheodore Ts'o 	}
121055138e0bSTheodore Ts'o 	return num;
121155138e0bSTheodore Ts'o }
121255138e0bSTheodore Ts'o 
121355138e0bSTheodore Ts'o /*
1214e35fd660STheodore Ts'o  * The ext4_map_blocks() function tries to look up the requested blocks,
12152b2d6d01STheodore Ts'o  * and returns if the blocks are already mapped.
1216f5ab0d1fSMingming Cao  *
1217f5ab0d1fSMingming Cao  * Otherwise it takes the write lock of the i_data_sem and allocate blocks
1218f5ab0d1fSMingming Cao  * and store the allocated blocks in the result buffer head and mark it
1219f5ab0d1fSMingming Cao  * mapped.
1220f5ab0d1fSMingming Cao  *
1221e35fd660STheodore Ts'o  * If file type is extents based, it will call ext4_ext_map_blocks(),
1222e35fd660STheodore Ts'o  * Otherwise, call with ext4_ind_map_blocks() to handle indirect mapping
1223f5ab0d1fSMingming Cao  * based files
1224f5ab0d1fSMingming Cao  *
1225f5ab0d1fSMingming Cao  * On success, it returns the number of blocks being mapped or allocate.
1226f5ab0d1fSMingming Cao  * if create==0 and the blocks are pre-allocated and uninitialized block,
1227f5ab0d1fSMingming Cao  * the result buffer head is unmapped. If the create ==1, it will make sure
1228f5ab0d1fSMingming Cao  * the buffer head is mapped.
1229f5ab0d1fSMingming Cao  *
1230f5ab0d1fSMingming Cao  * It returns 0 if plain look up failed (blocks have not been allocated), in
1231f5ab0d1fSMingming Cao  * that casem, buffer head is unmapped
1232f5ab0d1fSMingming Cao  *
1233f5ab0d1fSMingming Cao  * It returns the error in case of allocation failure.
1234f5ab0d1fSMingming Cao  */
1235e35fd660STheodore Ts'o int ext4_map_blocks(handle_t *handle, struct inode *inode,
1236e35fd660STheodore Ts'o 		    struct ext4_map_blocks *map, int flags)
12370e855ac8SAneesh Kumar K.V {
12380e855ac8SAneesh Kumar K.V 	int retval;
1239f5ab0d1fSMingming Cao 
1240e35fd660STheodore Ts'o 	map->m_flags = 0;
1241e35fd660STheodore Ts'o 	ext_debug("ext4_map_blocks(): inode %lu, flag %d, max_blocks %u,"
1242e35fd660STheodore Ts'o 		  "logical block %lu\n", inode->i_ino, flags, map->m_len,
1243e35fd660STheodore Ts'o 		  (unsigned long) map->m_lblk);
12444df3d265SAneesh Kumar K.V 	/*
1245b920c755STheodore Ts'o 	 * Try to see if we can get the block without requesting a new
1246b920c755STheodore Ts'o 	 * file system block.
12474df3d265SAneesh Kumar K.V 	 */
12480e855ac8SAneesh Kumar K.V 	down_read((&EXT4_I(inode)->i_data_sem));
124912e9b892SDmitry Monakhov 	if (ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)) {
1250e35fd660STheodore Ts'o 		retval = ext4_ext_map_blocks(handle, inode, map, 0);
12514df3d265SAneesh Kumar K.V 	} else {
1252e35fd660STheodore Ts'o 		retval = ext4_ind_map_blocks(handle, inode, map, 0);
12530e855ac8SAneesh Kumar K.V 	}
12544df3d265SAneesh Kumar K.V 	up_read((&EXT4_I(inode)->i_data_sem));
1255f5ab0d1fSMingming Cao 
1256e35fd660STheodore Ts'o 	if (retval > 0 && map->m_flags & EXT4_MAP_MAPPED) {
1257e29136f8STheodore Ts'o 		int ret = check_block_validity(inode, map);
12586fd058f7STheodore Ts'o 		if (ret != 0)
12596fd058f7STheodore Ts'o 			return ret;
12606fd058f7STheodore Ts'o 	}
12616fd058f7STheodore Ts'o 
1262f5ab0d1fSMingming Cao 	/* If it is only a block(s) look up */
1263c2177057STheodore Ts'o 	if ((flags & EXT4_GET_BLOCKS_CREATE) == 0)
12644df3d265SAneesh Kumar K.V 		return retval;
12654df3d265SAneesh Kumar K.V 
12664df3d265SAneesh Kumar K.V 	/*
1267f5ab0d1fSMingming Cao 	 * Returns if the blocks have already allocated
1268f5ab0d1fSMingming Cao 	 *
1269f5ab0d1fSMingming Cao 	 * Note that if blocks have been preallocated
1270f5ab0d1fSMingming Cao 	 * ext4_ext_get_block() returns th create = 0
1271f5ab0d1fSMingming Cao 	 * with buffer head unmapped.
1272f5ab0d1fSMingming Cao 	 */
1273e35fd660STheodore Ts'o 	if (retval > 0 && map->m_flags & EXT4_MAP_MAPPED)
1274f5ab0d1fSMingming Cao 		return retval;
1275f5ab0d1fSMingming Cao 
1276f5ab0d1fSMingming Cao 	/*
12772a8964d6SAneesh Kumar K.V 	 * When we call get_blocks without the create flag, the
12782a8964d6SAneesh Kumar K.V 	 * BH_Unwritten flag could have gotten set if the blocks
12792a8964d6SAneesh Kumar K.V 	 * requested were part of a uninitialized extent.  We need to
12802a8964d6SAneesh Kumar K.V 	 * clear this flag now that we are committed to convert all or
12812a8964d6SAneesh Kumar K.V 	 * part of the uninitialized extent to be an initialized
12822a8964d6SAneesh Kumar K.V 	 * extent.  This is because we need to avoid the combination
12832a8964d6SAneesh Kumar K.V 	 * of BH_Unwritten and BH_Mapped flags being simultaneously
12842a8964d6SAneesh Kumar K.V 	 * set on the buffer_head.
12852a8964d6SAneesh Kumar K.V 	 */
1286e35fd660STheodore Ts'o 	map->m_flags &= ~EXT4_MAP_UNWRITTEN;
12872a8964d6SAneesh Kumar K.V 
12882a8964d6SAneesh Kumar K.V 	/*
1289f5ab0d1fSMingming Cao 	 * New blocks allocate and/or writing to uninitialized extent
1290f5ab0d1fSMingming Cao 	 * will possibly result in updating i_data, so we take
1291f5ab0d1fSMingming Cao 	 * the write lock of i_data_sem, and call get_blocks()
1292f5ab0d1fSMingming Cao 	 * with create == 1 flag.
12934df3d265SAneesh Kumar K.V 	 */
12944df3d265SAneesh Kumar K.V 	down_write((&EXT4_I(inode)->i_data_sem));
1295d2a17637SMingming Cao 
1296d2a17637SMingming Cao 	/*
1297d2a17637SMingming Cao 	 * if the caller is from delayed allocation writeout path
1298d2a17637SMingming Cao 	 * we have already reserved fs blocks for allocation
1299d2a17637SMingming Cao 	 * let the underlying get_block() function know to
1300d2a17637SMingming Cao 	 * avoid double accounting
1301d2a17637SMingming Cao 	 */
1302c2177057STheodore Ts'o 	if (flags & EXT4_GET_BLOCKS_DELALLOC_RESERVE)
1303d2a17637SMingming Cao 		EXT4_I(inode)->i_delalloc_reserved_flag = 1;
13044df3d265SAneesh Kumar K.V 	/*
13054df3d265SAneesh Kumar K.V 	 * We need to check for EXT4 here because migrate
13064df3d265SAneesh Kumar K.V 	 * could have changed the inode type in between
13074df3d265SAneesh Kumar K.V 	 */
130812e9b892SDmitry Monakhov 	if (ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)) {
1309e35fd660STheodore Ts'o 		retval = ext4_ext_map_blocks(handle, inode, map, flags);
13100e855ac8SAneesh Kumar K.V 	} else {
1311e35fd660STheodore Ts'o 		retval = ext4_ind_map_blocks(handle, inode, map, flags);
1312267e4db9SAneesh Kumar K.V 
1313e35fd660STheodore Ts'o 		if (retval > 0 && map->m_flags & EXT4_MAP_NEW) {
1314267e4db9SAneesh Kumar K.V 			/*
1315267e4db9SAneesh Kumar K.V 			 * We allocated new blocks which will result in
1316267e4db9SAneesh Kumar K.V 			 * i_data's format changing.  Force the migrate
1317267e4db9SAneesh Kumar K.V 			 * to fail by clearing migrate flags
1318267e4db9SAneesh Kumar K.V 			 */
131919f5fb7aSTheodore Ts'o 			ext4_clear_inode_state(inode, EXT4_STATE_EXT_MIGRATE);
1320267e4db9SAneesh Kumar K.V 		}
13212ac3b6e0STheodore Ts'o 
1322d2a17637SMingming Cao 		/*
13232ac3b6e0STheodore Ts'o 		 * Update reserved blocks/metadata blocks after successful
13245f634d06SAneesh Kumar K.V 		 * block allocation which had been deferred till now. We don't
13255f634d06SAneesh Kumar K.V 		 * support fallocate for non extent files. So we can update
13265f634d06SAneesh Kumar K.V 		 * reserve space here.
1327d2a17637SMingming Cao 		 */
13285f634d06SAneesh Kumar K.V 		if ((retval > 0) &&
13291296cc85SAneesh Kumar K.V 			(flags & EXT4_GET_BLOCKS_DELALLOC_RESERVE))
13305f634d06SAneesh Kumar K.V 			ext4_da_update_reserve_space(inode, retval, 1);
13315f634d06SAneesh Kumar K.V 	}
13325f634d06SAneesh Kumar K.V 	if (flags & EXT4_GET_BLOCKS_DELALLOC_RESERVE)
13335f634d06SAneesh Kumar K.V 		EXT4_I(inode)->i_delalloc_reserved_flag = 0;
1334d2a17637SMingming Cao 
13350e855ac8SAneesh Kumar K.V 	up_write((&EXT4_I(inode)->i_data_sem));
1336e35fd660STheodore Ts'o 	if (retval > 0 && map->m_flags & EXT4_MAP_MAPPED) {
1337e29136f8STheodore Ts'o 		int ret = check_block_validity(inode, map);
13386fd058f7STheodore Ts'o 		if (ret != 0)
13396fd058f7STheodore Ts'o 			return ret;
13406fd058f7STheodore Ts'o 	}
13410e855ac8SAneesh Kumar K.V 	return retval;
13420e855ac8SAneesh Kumar K.V }
13430e855ac8SAneesh Kumar K.V 
1344f3bd1f3fSMingming Cao /* Maximum number of blocks we map for direct IO at once. */
1345f3bd1f3fSMingming Cao #define DIO_MAX_BLOCKS 4096
1346f3bd1f3fSMingming Cao 
13472ed88685STheodore Ts'o static int _ext4_get_block(struct inode *inode, sector_t iblock,
13482ed88685STheodore Ts'o 			   struct buffer_head *bh, int flags)
1349ac27a0ecSDave Kleikamp {
13503e4fdaf8SDmitriy Monakhov 	handle_t *handle = ext4_journal_current_handle();
13512ed88685STheodore Ts'o 	struct ext4_map_blocks map;
13527fb5409dSJan Kara 	int ret = 0, started = 0;
1353f3bd1f3fSMingming Cao 	int dio_credits;
1354ac27a0ecSDave Kleikamp 
13552ed88685STheodore Ts'o 	map.m_lblk = iblock;
13562ed88685STheodore Ts'o 	map.m_len = bh->b_size >> inode->i_blkbits;
13572ed88685STheodore Ts'o 
13582ed88685STheodore Ts'o 	if (flags && !handle) {
13597fb5409dSJan Kara 		/* Direct IO write... */
13602ed88685STheodore Ts'o 		if (map.m_len > DIO_MAX_BLOCKS)
13612ed88685STheodore Ts'o 			map.m_len = DIO_MAX_BLOCKS;
13622ed88685STheodore Ts'o 		dio_credits = ext4_chunk_trans_blocks(inode, map.m_len);
1363f3bd1f3fSMingming Cao 		handle = ext4_journal_start(inode, dio_credits);
13647fb5409dSJan Kara 		if (IS_ERR(handle)) {
1365ac27a0ecSDave Kleikamp 			ret = PTR_ERR(handle);
13662ed88685STheodore Ts'o 			return ret;
13677fb5409dSJan Kara 		}
13687fb5409dSJan Kara 		started = 1;
1369ac27a0ecSDave Kleikamp 	}
1370ac27a0ecSDave Kleikamp 
13712ed88685STheodore Ts'o 	ret = ext4_map_blocks(handle, inode, &map, flags);
1372ac27a0ecSDave Kleikamp 	if (ret > 0) {
13732ed88685STheodore Ts'o 		map_bh(bh, inode->i_sb, map.m_pblk);
13742ed88685STheodore Ts'o 		bh->b_state = (bh->b_state & ~EXT4_MAP_FLAGS) | map.m_flags;
13752ed88685STheodore Ts'o 		bh->b_size = inode->i_sb->s_blocksize * map.m_len;
1376ac27a0ecSDave Kleikamp 		ret = 0;
1377ac27a0ecSDave Kleikamp 	}
13787fb5409dSJan Kara 	if (started)
13797fb5409dSJan Kara 		ext4_journal_stop(handle);
1380ac27a0ecSDave Kleikamp 	return ret;
1381ac27a0ecSDave Kleikamp }
1382ac27a0ecSDave Kleikamp 
13832ed88685STheodore Ts'o int ext4_get_block(struct inode *inode, sector_t iblock,
13842ed88685STheodore Ts'o 		   struct buffer_head *bh, int create)
13852ed88685STheodore Ts'o {
13862ed88685STheodore Ts'o 	return _ext4_get_block(inode, iblock, bh,
13872ed88685STheodore Ts'o 			       create ? EXT4_GET_BLOCKS_CREATE : 0);
13882ed88685STheodore Ts'o }
13892ed88685STheodore Ts'o 
1390ac27a0ecSDave Kleikamp /*
1391ac27a0ecSDave Kleikamp  * `handle' can be NULL if create is zero
1392ac27a0ecSDave Kleikamp  */
1393617ba13bSMingming Cao struct buffer_head *ext4_getblk(handle_t *handle, struct inode *inode,
1394725d26d3SAneesh Kumar K.V 				ext4_lblk_t block, int create, int *errp)
1395ac27a0ecSDave Kleikamp {
13962ed88685STheodore Ts'o 	struct ext4_map_blocks map;
13972ed88685STheodore Ts'o 	struct buffer_head *bh;
1398ac27a0ecSDave Kleikamp 	int fatal = 0, err;
1399ac27a0ecSDave Kleikamp 
1400ac27a0ecSDave Kleikamp 	J_ASSERT(handle != NULL || create == 0);
1401ac27a0ecSDave Kleikamp 
14022ed88685STheodore Ts'o 	map.m_lblk = block;
14032ed88685STheodore Ts'o 	map.m_len = 1;
14042ed88685STheodore Ts'o 	err = ext4_map_blocks(handle, inode, &map,
14052ed88685STheodore Ts'o 			      create ? EXT4_GET_BLOCKS_CREATE : 0);
14062ed88685STheodore Ts'o 
14072ed88685STheodore Ts'o 	if (err < 0)
1408ac27a0ecSDave Kleikamp 		*errp = err;
14092ed88685STheodore Ts'o 	if (err <= 0)
14102ed88685STheodore Ts'o 		return NULL;
14112ed88685STheodore Ts'o 	*errp = 0;
14122ed88685STheodore Ts'o 
14132ed88685STheodore Ts'o 	bh = sb_getblk(inode->i_sb, map.m_pblk);
1414ac27a0ecSDave Kleikamp 	if (!bh) {
1415ac27a0ecSDave Kleikamp 		*errp = -EIO;
14162ed88685STheodore Ts'o 		return NULL;
1417ac27a0ecSDave Kleikamp 	}
14182ed88685STheodore Ts'o 	if (map.m_flags & EXT4_MAP_NEW) {
1419ac27a0ecSDave Kleikamp 		J_ASSERT(create != 0);
1420ac39849dSAneesh Kumar K.V 		J_ASSERT(handle != NULL);
1421ac27a0ecSDave Kleikamp 
1422ac27a0ecSDave Kleikamp 		/*
1423ac27a0ecSDave Kleikamp 		 * Now that we do not always journal data, we should
1424ac27a0ecSDave Kleikamp 		 * keep in mind whether this should always journal the
1425ac27a0ecSDave Kleikamp 		 * new buffer as metadata.  For now, regular file
1426617ba13bSMingming Cao 		 * writes use ext4_get_block instead, so it's not a
1427ac27a0ecSDave Kleikamp 		 * problem.
1428ac27a0ecSDave Kleikamp 		 */
1429ac27a0ecSDave Kleikamp 		lock_buffer(bh);
1430ac27a0ecSDave Kleikamp 		BUFFER_TRACE(bh, "call get_create_access");
1431617ba13bSMingming Cao 		fatal = ext4_journal_get_create_access(handle, bh);
1432ac27a0ecSDave Kleikamp 		if (!fatal && !buffer_uptodate(bh)) {
1433ac27a0ecSDave Kleikamp 			memset(bh->b_data, 0, inode->i_sb->s_blocksize);
1434ac27a0ecSDave Kleikamp 			set_buffer_uptodate(bh);
1435ac27a0ecSDave Kleikamp 		}
1436ac27a0ecSDave Kleikamp 		unlock_buffer(bh);
14370390131bSFrank Mayhar 		BUFFER_TRACE(bh, "call ext4_handle_dirty_metadata");
14380390131bSFrank Mayhar 		err = ext4_handle_dirty_metadata(handle, inode, bh);
1439ac27a0ecSDave Kleikamp 		if (!fatal)
1440ac27a0ecSDave Kleikamp 			fatal = err;
1441ac27a0ecSDave Kleikamp 	} else {
1442ac27a0ecSDave Kleikamp 		BUFFER_TRACE(bh, "not a new buffer");
1443ac27a0ecSDave Kleikamp 	}
1444ac27a0ecSDave Kleikamp 	if (fatal) {
1445ac27a0ecSDave Kleikamp 		*errp = fatal;
1446ac27a0ecSDave Kleikamp 		brelse(bh);
1447ac27a0ecSDave Kleikamp 		bh = NULL;
1448ac27a0ecSDave Kleikamp 	}
1449ac27a0ecSDave Kleikamp 	return bh;
1450ac27a0ecSDave Kleikamp }
1451ac27a0ecSDave Kleikamp 
1452617ba13bSMingming Cao struct buffer_head *ext4_bread(handle_t *handle, struct inode *inode,
1453725d26d3SAneesh Kumar K.V 			       ext4_lblk_t block, int create, int *err)
1454ac27a0ecSDave Kleikamp {
1455ac27a0ecSDave Kleikamp 	struct buffer_head *bh;
1456ac27a0ecSDave Kleikamp 
1457617ba13bSMingming Cao 	bh = ext4_getblk(handle, inode, block, create, err);
1458ac27a0ecSDave Kleikamp 	if (!bh)
1459ac27a0ecSDave Kleikamp 		return bh;
1460ac27a0ecSDave Kleikamp 	if (buffer_uptodate(bh))
1461ac27a0ecSDave Kleikamp 		return bh;
1462ac27a0ecSDave Kleikamp 	ll_rw_block(READ_META, 1, &bh);
1463ac27a0ecSDave Kleikamp 	wait_on_buffer(bh);
1464ac27a0ecSDave Kleikamp 	if (buffer_uptodate(bh))
1465ac27a0ecSDave Kleikamp 		return bh;
1466ac27a0ecSDave Kleikamp 	put_bh(bh);
1467ac27a0ecSDave Kleikamp 	*err = -EIO;
1468ac27a0ecSDave Kleikamp 	return NULL;
1469ac27a0ecSDave Kleikamp }
1470ac27a0ecSDave Kleikamp 
1471ac27a0ecSDave Kleikamp static int walk_page_buffers(handle_t *handle,
1472ac27a0ecSDave Kleikamp 			     struct buffer_head *head,
1473ac27a0ecSDave Kleikamp 			     unsigned from,
1474ac27a0ecSDave Kleikamp 			     unsigned to,
1475ac27a0ecSDave Kleikamp 			     int *partial,
1476ac27a0ecSDave Kleikamp 			     int (*fn)(handle_t *handle,
1477ac27a0ecSDave Kleikamp 				       struct buffer_head *bh))
1478ac27a0ecSDave Kleikamp {
1479ac27a0ecSDave Kleikamp 	struct buffer_head *bh;
1480ac27a0ecSDave Kleikamp 	unsigned block_start, block_end;
1481ac27a0ecSDave Kleikamp 	unsigned blocksize = head->b_size;
1482ac27a0ecSDave Kleikamp 	int err, ret = 0;
1483ac27a0ecSDave Kleikamp 	struct buffer_head *next;
1484ac27a0ecSDave Kleikamp 
1485ac27a0ecSDave Kleikamp 	for (bh = head, block_start = 0;
1486ac27a0ecSDave Kleikamp 	     ret == 0 && (bh != head || !block_start);
1487de9a55b8STheodore Ts'o 	     block_start = block_end, bh = next) {
1488ac27a0ecSDave Kleikamp 		next = bh->b_this_page;
1489ac27a0ecSDave Kleikamp 		block_end = block_start + blocksize;
1490ac27a0ecSDave Kleikamp 		if (block_end <= from || block_start >= to) {
1491ac27a0ecSDave Kleikamp 			if (partial && !buffer_uptodate(bh))
1492ac27a0ecSDave Kleikamp 				*partial = 1;
1493ac27a0ecSDave Kleikamp 			continue;
1494ac27a0ecSDave Kleikamp 		}
1495ac27a0ecSDave Kleikamp 		err = (*fn)(handle, bh);
1496ac27a0ecSDave Kleikamp 		if (!ret)
1497ac27a0ecSDave Kleikamp 			ret = err;
1498ac27a0ecSDave Kleikamp 	}
1499ac27a0ecSDave Kleikamp 	return ret;
1500ac27a0ecSDave Kleikamp }
1501ac27a0ecSDave Kleikamp 
1502ac27a0ecSDave Kleikamp /*
1503ac27a0ecSDave Kleikamp  * To preserve ordering, it is essential that the hole instantiation and
1504ac27a0ecSDave Kleikamp  * the data write be encapsulated in a single transaction.  We cannot
1505617ba13bSMingming Cao  * close off a transaction and start a new one between the ext4_get_block()
1506dab291afSMingming Cao  * and the commit_write().  So doing the jbd2_journal_start at the start of
1507ac27a0ecSDave Kleikamp  * prepare_write() is the right place.
1508ac27a0ecSDave Kleikamp  *
1509617ba13bSMingming Cao  * Also, this function can nest inside ext4_writepage() ->
1510617ba13bSMingming Cao  * block_write_full_page(). In that case, we *know* that ext4_writepage()
1511ac27a0ecSDave Kleikamp  * has generated enough buffer credits to do the whole page.  So we won't
1512ac27a0ecSDave Kleikamp  * block on the journal in that case, which is good, because the caller may
1513ac27a0ecSDave Kleikamp  * be PF_MEMALLOC.
1514ac27a0ecSDave Kleikamp  *
1515617ba13bSMingming Cao  * By accident, ext4 can be reentered when a transaction is open via
1516ac27a0ecSDave Kleikamp  * quota file writes.  If we were to commit the transaction while thus
1517ac27a0ecSDave Kleikamp  * reentered, there can be a deadlock - we would be holding a quota
1518ac27a0ecSDave Kleikamp  * lock, and the commit would never complete if another thread had a
1519ac27a0ecSDave Kleikamp  * transaction open and was blocking on the quota lock - a ranking
1520ac27a0ecSDave Kleikamp  * violation.
1521ac27a0ecSDave Kleikamp  *
1522dab291afSMingming Cao  * So what we do is to rely on the fact that jbd2_journal_stop/journal_start
1523ac27a0ecSDave Kleikamp  * will _not_ run commit under these circumstances because handle->h_ref
1524ac27a0ecSDave Kleikamp  * is elevated.  We'll still have enough credits for the tiny quotafile
1525ac27a0ecSDave Kleikamp  * write.
1526ac27a0ecSDave Kleikamp  */
1527ac27a0ecSDave Kleikamp static int do_journal_get_write_access(handle_t *handle,
1528ac27a0ecSDave Kleikamp 				       struct buffer_head *bh)
1529ac27a0ecSDave Kleikamp {
1530*56d35a4cSJan Kara 	int dirty = buffer_dirty(bh);
1531*56d35a4cSJan Kara 	int ret;
1532*56d35a4cSJan Kara 
1533ac27a0ecSDave Kleikamp 	if (!buffer_mapped(bh) || buffer_freed(bh))
1534ac27a0ecSDave Kleikamp 		return 0;
1535*56d35a4cSJan Kara 	/*
1536*56d35a4cSJan Kara 	 * __block_prepare_write() could have dirtied some buffers. Clean
1537*56d35a4cSJan Kara 	 * the dirty bit as jbd2_journal_get_write_access() could complain
1538*56d35a4cSJan Kara 	 * otherwise about fs integrity issues. Setting of the dirty bit
1539*56d35a4cSJan Kara 	 * by __block_prepare_write() isn't a real problem here as we clear
1540*56d35a4cSJan Kara 	 * the bit before releasing a page lock and thus writeback cannot
1541*56d35a4cSJan Kara 	 * ever write the buffer.
1542*56d35a4cSJan Kara 	 */
1543*56d35a4cSJan Kara 	if (dirty)
1544*56d35a4cSJan Kara 		clear_buffer_dirty(bh);
1545*56d35a4cSJan Kara 	ret = ext4_journal_get_write_access(handle, bh);
1546*56d35a4cSJan Kara 	if (!ret && dirty)
1547*56d35a4cSJan Kara 		ret = ext4_handle_dirty_metadata(handle, NULL, bh);
1548*56d35a4cSJan Kara 	return ret;
1549ac27a0ecSDave Kleikamp }
1550ac27a0ecSDave Kleikamp 
1551b9a4207dSJan Kara /*
1552b9a4207dSJan Kara  * Truncate blocks that were not used by write. We have to truncate the
1553b9a4207dSJan Kara  * pagecache as well so that corresponding buffers get properly unmapped.
1554b9a4207dSJan Kara  */
1555b9a4207dSJan Kara static void ext4_truncate_failed_write(struct inode *inode)
1556b9a4207dSJan Kara {
1557b9a4207dSJan Kara 	truncate_inode_pages(inode->i_mapping, inode->i_size);
1558b9a4207dSJan Kara 	ext4_truncate(inode);
1559b9a4207dSJan Kara }
1560b9a4207dSJan Kara 
1561744692dcSJiaying Zhang static int ext4_get_block_write(struct inode *inode, sector_t iblock,
1562744692dcSJiaying Zhang 		   struct buffer_head *bh_result, int create);
1563bfc1af65SNick Piggin static int ext4_write_begin(struct file *file, struct address_space *mapping,
1564bfc1af65SNick Piggin 			    loff_t pos, unsigned len, unsigned flags,
1565bfc1af65SNick Piggin 			    struct page **pagep, void **fsdata)
1566ac27a0ecSDave Kleikamp {
1567bfc1af65SNick Piggin 	struct inode *inode = mapping->host;
15681938a150SAneesh Kumar K.V 	int ret, needed_blocks;
1569ac27a0ecSDave Kleikamp 	handle_t *handle;
1570ac27a0ecSDave Kleikamp 	int retries = 0;
1571bfc1af65SNick Piggin 	struct page *page;
1572bfc1af65SNick Piggin 	pgoff_t index;
1573bfc1af65SNick Piggin 	unsigned from, to;
1574bfc1af65SNick Piggin 
15759bffad1eSTheodore Ts'o 	trace_ext4_write_begin(inode, pos, len, flags);
15761938a150SAneesh Kumar K.V 	/*
15771938a150SAneesh Kumar K.V 	 * Reserve one block more for addition to orphan list in case
15781938a150SAneesh Kumar K.V 	 * we allocate blocks but write fails for some reason
15791938a150SAneesh Kumar K.V 	 */
15801938a150SAneesh Kumar K.V 	needed_blocks = ext4_writepage_trans_blocks(inode) + 1;
1581bfc1af65SNick Piggin 	index = pos >> PAGE_CACHE_SHIFT;
1582bfc1af65SNick Piggin 	from = pos & (PAGE_CACHE_SIZE - 1);
1583bfc1af65SNick Piggin 	to = from + len;
1584ac27a0ecSDave Kleikamp 
1585ac27a0ecSDave Kleikamp retry:
1586617ba13bSMingming Cao 	handle = ext4_journal_start(inode, needed_blocks);
15877479d2b9SAndrew Morton 	if (IS_ERR(handle)) {
15887479d2b9SAndrew Morton 		ret = PTR_ERR(handle);
15897479d2b9SAndrew Morton 		goto out;
15907479d2b9SAndrew Morton 	}
1591ac27a0ecSDave Kleikamp 
1592ebd3610bSJan Kara 	/* We cannot recurse into the filesystem as the transaction is already
1593ebd3610bSJan Kara 	 * started */
1594ebd3610bSJan Kara 	flags |= AOP_FLAG_NOFS;
1595ebd3610bSJan Kara 
159654566b2cSNick Piggin 	page = grab_cache_page_write_begin(mapping, index, flags);
1597cf108bcaSJan Kara 	if (!page) {
1598cf108bcaSJan Kara 		ext4_journal_stop(handle);
1599cf108bcaSJan Kara 		ret = -ENOMEM;
1600cf108bcaSJan Kara 		goto out;
1601cf108bcaSJan Kara 	}
1602cf108bcaSJan Kara 	*pagep = page;
1603cf108bcaSJan Kara 
1604744692dcSJiaying Zhang 	if (ext4_should_dioread_nolock(inode))
1605744692dcSJiaying Zhang 		ret = block_write_begin(file, mapping, pos, len, flags, pagep,
1606744692dcSJiaying Zhang 				fsdata, ext4_get_block_write);
1607744692dcSJiaying Zhang 	else
1608744692dcSJiaying Zhang 		ret = block_write_begin(file, mapping, pos, len, flags, pagep,
1609744692dcSJiaying Zhang 				fsdata, ext4_get_block);
1610bfc1af65SNick Piggin 
1611bfc1af65SNick Piggin 	if (!ret && ext4_should_journal_data(inode)) {
1612ac27a0ecSDave Kleikamp 		ret = walk_page_buffers(handle, page_buffers(page),
1613ac27a0ecSDave Kleikamp 				from, to, NULL, do_journal_get_write_access);
1614b46be050SAndrey Savochkin 	}
1615bfc1af65SNick Piggin 
1616bfc1af65SNick Piggin 	if (ret) {
1617bfc1af65SNick Piggin 		unlock_page(page);
1618bfc1af65SNick Piggin 		page_cache_release(page);
1619ae4d5372SAneesh Kumar K.V 		/*
1620ae4d5372SAneesh Kumar K.V 		 * block_write_begin may have instantiated a few blocks
1621ae4d5372SAneesh Kumar K.V 		 * outside i_size.  Trim these off again. Don't need
1622ae4d5372SAneesh Kumar K.V 		 * i_size_read because we hold i_mutex.
16231938a150SAneesh Kumar K.V 		 *
16241938a150SAneesh Kumar K.V 		 * Add inode to orphan list in case we crash before
16251938a150SAneesh Kumar K.V 		 * truncate finishes
1626ae4d5372SAneesh Kumar K.V 		 */
1627ffacfa7aSJan Kara 		if (pos + len > inode->i_size && ext4_can_truncate(inode))
16281938a150SAneesh Kumar K.V 			ext4_orphan_add(handle, inode);
16291938a150SAneesh Kumar K.V 
16301938a150SAneesh Kumar K.V 		ext4_journal_stop(handle);
16311938a150SAneesh Kumar K.V 		if (pos + len > inode->i_size) {
1632b9a4207dSJan Kara 			ext4_truncate_failed_write(inode);
16331938a150SAneesh Kumar K.V 			/*
1634ffacfa7aSJan Kara 			 * If truncate failed early the inode might
16351938a150SAneesh Kumar K.V 			 * still be on the orphan list; we need to
16361938a150SAneesh Kumar K.V 			 * make sure the inode is removed from the
16371938a150SAneesh Kumar K.V 			 * orphan list in that case.
16381938a150SAneesh Kumar K.V 			 */
16391938a150SAneesh Kumar K.V 			if (inode->i_nlink)
16401938a150SAneesh Kumar K.V 				ext4_orphan_del(NULL, inode);
16411938a150SAneesh Kumar K.V 		}
1642bfc1af65SNick Piggin 	}
1643bfc1af65SNick Piggin 
1644617ba13bSMingming Cao 	if (ret == -ENOSPC && ext4_should_retry_alloc(inode->i_sb, &retries))
1645ac27a0ecSDave Kleikamp 		goto retry;
16467479d2b9SAndrew Morton out:
1647ac27a0ecSDave Kleikamp 	return ret;
1648ac27a0ecSDave Kleikamp }
1649ac27a0ecSDave Kleikamp 
1650bfc1af65SNick Piggin /* For write_end() in data=journal mode */
1651bfc1af65SNick Piggin static int write_end_fn(handle_t *handle, struct buffer_head *bh)
1652ac27a0ecSDave Kleikamp {
1653ac27a0ecSDave Kleikamp 	if (!buffer_mapped(bh) || buffer_freed(bh))
1654ac27a0ecSDave Kleikamp 		return 0;
1655ac27a0ecSDave Kleikamp 	set_buffer_uptodate(bh);
16560390131bSFrank Mayhar 	return ext4_handle_dirty_metadata(handle, NULL, bh);
1657ac27a0ecSDave Kleikamp }
1658ac27a0ecSDave Kleikamp 
1659f8514083SAneesh Kumar K.V static int ext4_generic_write_end(struct file *file,
1660f8514083SAneesh Kumar K.V 				  struct address_space *mapping,
1661f8514083SAneesh Kumar K.V 				  loff_t pos, unsigned len, unsigned copied,
1662f8514083SAneesh Kumar K.V 				  struct page *page, void *fsdata)
1663f8514083SAneesh Kumar K.V {
1664f8514083SAneesh Kumar K.V 	int i_size_changed = 0;
1665f8514083SAneesh Kumar K.V 	struct inode *inode = mapping->host;
1666f8514083SAneesh Kumar K.V 	handle_t *handle = ext4_journal_current_handle();
1667f8514083SAneesh Kumar K.V 
1668f8514083SAneesh Kumar K.V 	copied = block_write_end(file, mapping, pos, len, copied, page, fsdata);
1669f8514083SAneesh Kumar K.V 
1670f8514083SAneesh Kumar K.V 	/*
1671f8514083SAneesh Kumar K.V 	 * No need to use i_size_read() here, the i_size
1672f8514083SAneesh Kumar K.V 	 * cannot change under us because we hold i_mutex.
1673f8514083SAneesh Kumar K.V 	 *
1674f8514083SAneesh Kumar K.V 	 * But it's important to update i_size while still holding page lock:
1675f8514083SAneesh Kumar K.V 	 * page writeout could otherwise come in and zero beyond i_size.
1676f8514083SAneesh Kumar K.V 	 */
1677f8514083SAneesh Kumar K.V 	if (pos + copied > inode->i_size) {
1678f8514083SAneesh Kumar K.V 		i_size_write(inode, pos + copied);
1679f8514083SAneesh Kumar K.V 		i_size_changed = 1;
1680f8514083SAneesh Kumar K.V 	}
1681f8514083SAneesh Kumar K.V 
1682f8514083SAneesh Kumar K.V 	if (pos + copied >  EXT4_I(inode)->i_disksize) {
1683f8514083SAneesh Kumar K.V 		/* We need to mark inode dirty even if
1684f8514083SAneesh Kumar K.V 		 * new_i_size is less that inode->i_size
1685f8514083SAneesh Kumar K.V 		 * bu greater than i_disksize.(hint delalloc)
1686f8514083SAneesh Kumar K.V 		 */
1687f8514083SAneesh Kumar K.V 		ext4_update_i_disksize(inode, (pos + copied));
1688f8514083SAneesh Kumar K.V 		i_size_changed = 1;
1689f8514083SAneesh Kumar K.V 	}
1690f8514083SAneesh Kumar K.V 	unlock_page(page);
1691f8514083SAneesh Kumar K.V 	page_cache_release(page);
1692f8514083SAneesh Kumar K.V 
1693f8514083SAneesh Kumar K.V 	/*
1694f8514083SAneesh Kumar K.V 	 * Don't mark the inode dirty under page lock. First, it unnecessarily
1695f8514083SAneesh Kumar K.V 	 * makes the holding time of page lock longer. Second, it forces lock
1696f8514083SAneesh Kumar K.V 	 * ordering of page lock and transaction start for journaling
1697f8514083SAneesh Kumar K.V 	 * filesystems.
1698f8514083SAneesh Kumar K.V 	 */
1699f8514083SAneesh Kumar K.V 	if (i_size_changed)
1700f8514083SAneesh Kumar K.V 		ext4_mark_inode_dirty(handle, inode);
1701f8514083SAneesh Kumar K.V 
1702f8514083SAneesh Kumar K.V 	return copied;
1703f8514083SAneesh Kumar K.V }
1704f8514083SAneesh Kumar K.V 
1705ac27a0ecSDave Kleikamp /*
1706ac27a0ecSDave Kleikamp  * We need to pick up the new inode size which generic_commit_write gave us
1707ac27a0ecSDave Kleikamp  * `file' can be NULL - eg, when called from page_symlink().
1708ac27a0ecSDave Kleikamp  *
1709617ba13bSMingming Cao  * ext4 never places buffers on inode->i_mapping->private_list.  metadata
1710ac27a0ecSDave Kleikamp  * buffers are managed internally.
1711ac27a0ecSDave Kleikamp  */
1712bfc1af65SNick Piggin static int ext4_ordered_write_end(struct file *file,
1713bfc1af65SNick Piggin 				  struct address_space *mapping,
1714bfc1af65SNick Piggin 				  loff_t pos, unsigned len, unsigned copied,
1715bfc1af65SNick Piggin 				  struct page *page, void *fsdata)
1716ac27a0ecSDave Kleikamp {
1717617ba13bSMingming Cao 	handle_t *handle = ext4_journal_current_handle();
1718cf108bcaSJan Kara 	struct inode *inode = mapping->host;
1719ac27a0ecSDave Kleikamp 	int ret = 0, ret2;
1720ac27a0ecSDave Kleikamp 
17219bffad1eSTheodore Ts'o 	trace_ext4_ordered_write_end(inode, pos, len, copied);
1722678aaf48SJan Kara 	ret = ext4_jbd2_file_inode(handle, inode);
1723ac27a0ecSDave Kleikamp 
1724ac27a0ecSDave Kleikamp 	if (ret == 0) {
1725f8514083SAneesh Kumar K.V 		ret2 = ext4_generic_write_end(file, mapping, pos, len, copied,
1726bfc1af65SNick Piggin 							page, fsdata);
1727f8a87d89SRoel Kluin 		copied = ret2;
1728ffacfa7aSJan Kara 		if (pos + len > inode->i_size && ext4_can_truncate(inode))
1729f8514083SAneesh Kumar K.V 			/* if we have allocated more blocks and copied
1730f8514083SAneesh Kumar K.V 			 * less. We will have blocks allocated outside
1731f8514083SAneesh Kumar K.V 			 * inode->i_size. So truncate them
1732f8514083SAneesh Kumar K.V 			 */
1733f8514083SAneesh Kumar K.V 			ext4_orphan_add(handle, inode);
1734f8a87d89SRoel Kluin 		if (ret2 < 0)
1735f8a87d89SRoel Kluin 			ret = ret2;
1736ac27a0ecSDave Kleikamp 	}
1737617ba13bSMingming Cao 	ret2 = ext4_journal_stop(handle);
1738ac27a0ecSDave Kleikamp 	if (!ret)
1739ac27a0ecSDave Kleikamp 		ret = ret2;
1740bfc1af65SNick Piggin 
1741f8514083SAneesh Kumar K.V 	if (pos + len > inode->i_size) {
1742b9a4207dSJan Kara 		ext4_truncate_failed_write(inode);
1743f8514083SAneesh Kumar K.V 		/*
1744ffacfa7aSJan Kara 		 * If truncate failed early the inode might still be
1745f8514083SAneesh Kumar K.V 		 * on the orphan list; we need to make sure the inode
1746f8514083SAneesh Kumar K.V 		 * is removed from the orphan list in that case.
1747f8514083SAneesh Kumar K.V 		 */
1748f8514083SAneesh Kumar K.V 		if (inode->i_nlink)
1749f8514083SAneesh Kumar K.V 			ext4_orphan_del(NULL, inode);
1750f8514083SAneesh Kumar K.V 	}
1751f8514083SAneesh Kumar K.V 
1752f8514083SAneesh Kumar K.V 
1753bfc1af65SNick Piggin 	return ret ? ret : copied;
1754ac27a0ecSDave Kleikamp }
1755ac27a0ecSDave Kleikamp 
1756bfc1af65SNick Piggin static int ext4_writeback_write_end(struct file *file,
1757bfc1af65SNick Piggin 				    struct address_space *mapping,
1758bfc1af65SNick Piggin 				    loff_t pos, unsigned len, unsigned copied,
1759bfc1af65SNick Piggin 				    struct page *page, void *fsdata)
1760ac27a0ecSDave Kleikamp {
1761617ba13bSMingming Cao 	handle_t *handle = ext4_journal_current_handle();
1762cf108bcaSJan Kara 	struct inode *inode = mapping->host;
1763ac27a0ecSDave Kleikamp 	int ret = 0, ret2;
1764ac27a0ecSDave Kleikamp 
17659bffad1eSTheodore Ts'o 	trace_ext4_writeback_write_end(inode, pos, len, copied);
1766f8514083SAneesh Kumar K.V 	ret2 = ext4_generic_write_end(file, mapping, pos, len, copied,
1767bfc1af65SNick Piggin 							page, fsdata);
1768f8a87d89SRoel Kluin 	copied = ret2;
1769ffacfa7aSJan Kara 	if (pos + len > inode->i_size && ext4_can_truncate(inode))
1770f8514083SAneesh Kumar K.V 		/* if we have allocated more blocks and copied
1771f8514083SAneesh Kumar K.V 		 * less. We will have blocks allocated outside
1772f8514083SAneesh Kumar K.V 		 * inode->i_size. So truncate them
1773f8514083SAneesh Kumar K.V 		 */
1774f8514083SAneesh Kumar K.V 		ext4_orphan_add(handle, inode);
1775f8514083SAneesh Kumar K.V 
1776f8a87d89SRoel Kluin 	if (ret2 < 0)
1777f8a87d89SRoel Kluin 		ret = ret2;
1778ac27a0ecSDave Kleikamp 
1779617ba13bSMingming Cao 	ret2 = ext4_journal_stop(handle);
1780ac27a0ecSDave Kleikamp 	if (!ret)
1781ac27a0ecSDave Kleikamp 		ret = ret2;
1782bfc1af65SNick Piggin 
1783f8514083SAneesh Kumar K.V 	if (pos + len > inode->i_size) {
1784b9a4207dSJan Kara 		ext4_truncate_failed_write(inode);
1785f8514083SAneesh Kumar K.V 		/*
1786ffacfa7aSJan Kara 		 * If truncate failed early the inode might still be
1787f8514083SAneesh Kumar K.V 		 * on the orphan list; we need to make sure the inode
1788f8514083SAneesh Kumar K.V 		 * is removed from the orphan list in that case.
1789f8514083SAneesh Kumar K.V 		 */
1790f8514083SAneesh Kumar K.V 		if (inode->i_nlink)
1791f8514083SAneesh Kumar K.V 			ext4_orphan_del(NULL, inode);
1792f8514083SAneesh Kumar K.V 	}
1793f8514083SAneesh Kumar K.V 
1794bfc1af65SNick Piggin 	return ret ? ret : copied;
1795ac27a0ecSDave Kleikamp }
1796ac27a0ecSDave Kleikamp 
1797bfc1af65SNick Piggin static int ext4_journalled_write_end(struct file *file,
1798bfc1af65SNick Piggin 				     struct address_space *mapping,
1799bfc1af65SNick Piggin 				     loff_t pos, unsigned len, unsigned copied,
1800bfc1af65SNick Piggin 				     struct page *page, void *fsdata)
1801ac27a0ecSDave Kleikamp {
1802617ba13bSMingming Cao 	handle_t *handle = ext4_journal_current_handle();
1803bfc1af65SNick Piggin 	struct inode *inode = mapping->host;
1804ac27a0ecSDave Kleikamp 	int ret = 0, ret2;
1805ac27a0ecSDave Kleikamp 	int partial = 0;
1806bfc1af65SNick Piggin 	unsigned from, to;
1807cf17fea6SAneesh Kumar K.V 	loff_t new_i_size;
1808ac27a0ecSDave Kleikamp 
18099bffad1eSTheodore Ts'o 	trace_ext4_journalled_write_end(inode, pos, len, copied);
1810bfc1af65SNick Piggin 	from = pos & (PAGE_CACHE_SIZE - 1);
1811bfc1af65SNick Piggin 	to = from + len;
1812bfc1af65SNick Piggin 
1813bfc1af65SNick Piggin 	if (copied < len) {
1814bfc1af65SNick Piggin 		if (!PageUptodate(page))
1815bfc1af65SNick Piggin 			copied = 0;
1816bfc1af65SNick Piggin 		page_zero_new_buffers(page, from+copied, to);
1817bfc1af65SNick Piggin 	}
1818ac27a0ecSDave Kleikamp 
1819ac27a0ecSDave Kleikamp 	ret = walk_page_buffers(handle, page_buffers(page), from,
1820bfc1af65SNick Piggin 				to, &partial, write_end_fn);
1821ac27a0ecSDave Kleikamp 	if (!partial)
1822ac27a0ecSDave Kleikamp 		SetPageUptodate(page);
1823cf17fea6SAneesh Kumar K.V 	new_i_size = pos + copied;
1824cf17fea6SAneesh Kumar K.V 	if (new_i_size > inode->i_size)
1825bfc1af65SNick Piggin 		i_size_write(inode, pos+copied);
182619f5fb7aSTheodore Ts'o 	ext4_set_inode_state(inode, EXT4_STATE_JDATA);
1827cf17fea6SAneesh Kumar K.V 	if (new_i_size > EXT4_I(inode)->i_disksize) {
1828cf17fea6SAneesh Kumar K.V 		ext4_update_i_disksize(inode, new_i_size);
1829617ba13bSMingming Cao 		ret2 = ext4_mark_inode_dirty(handle, inode);
1830ac27a0ecSDave Kleikamp 		if (!ret)
1831ac27a0ecSDave Kleikamp 			ret = ret2;
1832ac27a0ecSDave Kleikamp 	}
1833bfc1af65SNick Piggin 
1834cf108bcaSJan Kara 	unlock_page(page);
1835f8514083SAneesh Kumar K.V 	page_cache_release(page);
1836ffacfa7aSJan Kara 	if (pos + len > inode->i_size && ext4_can_truncate(inode))
1837f8514083SAneesh Kumar K.V 		/* if we have allocated more blocks and copied
1838f8514083SAneesh Kumar K.V 		 * less. We will have blocks allocated outside
1839f8514083SAneesh Kumar K.V 		 * inode->i_size. So truncate them
1840f8514083SAneesh Kumar K.V 		 */
1841f8514083SAneesh Kumar K.V 		ext4_orphan_add(handle, inode);
1842f8514083SAneesh Kumar K.V 
1843617ba13bSMingming Cao 	ret2 = ext4_journal_stop(handle);
1844ac27a0ecSDave Kleikamp 	if (!ret)
1845ac27a0ecSDave Kleikamp 		ret = ret2;
1846f8514083SAneesh Kumar K.V 	if (pos + len > inode->i_size) {
1847b9a4207dSJan Kara 		ext4_truncate_failed_write(inode);
1848f8514083SAneesh Kumar K.V 		/*
1849ffacfa7aSJan Kara 		 * If truncate failed early the inode might still be
1850f8514083SAneesh Kumar K.V 		 * on the orphan list; we need to make sure the inode
1851f8514083SAneesh Kumar K.V 		 * is removed from the orphan list in that case.
1852f8514083SAneesh Kumar K.V 		 */
1853f8514083SAneesh Kumar K.V 		if (inode->i_nlink)
1854f8514083SAneesh Kumar K.V 			ext4_orphan_del(NULL, inode);
1855f8514083SAneesh Kumar K.V 	}
1856bfc1af65SNick Piggin 
1857bfc1af65SNick Piggin 	return ret ? ret : copied;
1858ac27a0ecSDave Kleikamp }
1859d2a17637SMingming Cao 
18609d0be502STheodore Ts'o /*
18619d0be502STheodore Ts'o  * Reserve a single block located at lblock
18629d0be502STheodore Ts'o  */
18639d0be502STheodore Ts'o static int ext4_da_reserve_space(struct inode *inode, sector_t lblock)
1864d2a17637SMingming Cao {
1865030ba6bcSAneesh Kumar K.V 	int retries = 0;
1866d2a17637SMingming Cao 	struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb);
18670637c6f4STheodore Ts'o 	struct ext4_inode_info *ei = EXT4_I(inode);
186872b8ab9dSEric Sandeen 	unsigned long md_needed;
18695dd4056dSChristoph Hellwig 	int ret;
1870d2a17637SMingming Cao 
1871d2a17637SMingming Cao 	/*
1872d2a17637SMingming Cao 	 * recalculate the amount of metadata blocks to reserve
1873d2a17637SMingming Cao 	 * in order to allocate nrblocks
1874d2a17637SMingming Cao 	 * worse case is one extent per block
1875d2a17637SMingming Cao 	 */
1876030ba6bcSAneesh Kumar K.V repeat:
18770637c6f4STheodore Ts'o 	spin_lock(&ei->i_block_reservation_lock);
18789d0be502STheodore Ts'o 	md_needed = ext4_calc_metadata_amount(inode, lblock);
1879f8ec9d68STheodore Ts'o 	trace_ext4_da_reserve_space(inode, md_needed);
18800637c6f4STheodore Ts'o 	spin_unlock(&ei->i_block_reservation_lock);
1881d2a17637SMingming Cao 
188260e58e0fSMingming Cao 	/*
188372b8ab9dSEric Sandeen 	 * We will charge metadata quota at writeout time; this saves
188472b8ab9dSEric Sandeen 	 * us from metadata over-estimation, though we may go over by
188572b8ab9dSEric Sandeen 	 * a small amount in the end.  Here we just reserve for data.
188660e58e0fSMingming Cao 	 */
188772b8ab9dSEric Sandeen 	ret = dquot_reserve_block(inode, 1);
18885dd4056dSChristoph Hellwig 	if (ret)
18895dd4056dSChristoph Hellwig 		return ret;
189072b8ab9dSEric Sandeen 	/*
189172b8ab9dSEric Sandeen 	 * We do still charge estimated metadata to the sb though;
189272b8ab9dSEric Sandeen 	 * we cannot afford to run out of free blocks.
189372b8ab9dSEric Sandeen 	 */
18949d0be502STheodore Ts'o 	if (ext4_claim_free_blocks(sbi, md_needed + 1)) {
189572b8ab9dSEric Sandeen 		dquot_release_reservation_block(inode, 1);
1896030ba6bcSAneesh Kumar K.V 		if (ext4_should_retry_alloc(inode->i_sb, &retries)) {
1897030ba6bcSAneesh Kumar K.V 			yield();
1898030ba6bcSAneesh Kumar K.V 			goto repeat;
1899030ba6bcSAneesh Kumar K.V 		}
1900d2a17637SMingming Cao 		return -ENOSPC;
1901d2a17637SMingming Cao 	}
19020637c6f4STheodore Ts'o 	spin_lock(&ei->i_block_reservation_lock);
19039d0be502STheodore Ts'o 	ei->i_reserved_data_blocks++;
19040637c6f4STheodore Ts'o 	ei->i_reserved_meta_blocks += md_needed;
19050637c6f4STheodore Ts'o 	spin_unlock(&ei->i_block_reservation_lock);
190639bc680aSDmitry Monakhov 
1907d2a17637SMingming Cao 	return 0;       /* success */
1908d2a17637SMingming Cao }
1909d2a17637SMingming Cao 
191012219aeaSAneesh Kumar K.V static void ext4_da_release_space(struct inode *inode, int to_free)
1911d2a17637SMingming Cao {
1912d2a17637SMingming Cao 	struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb);
19130637c6f4STheodore Ts'o 	struct ext4_inode_info *ei = EXT4_I(inode);
1914d2a17637SMingming Cao 
1915cd213226SMingming Cao 	if (!to_free)
1916cd213226SMingming Cao 		return;		/* Nothing to release, exit */
1917cd213226SMingming Cao 
1918d2a17637SMingming Cao 	spin_lock(&EXT4_I(inode)->i_block_reservation_lock);
1919cd213226SMingming Cao 
19205a58ec87SLi Zefan 	trace_ext4_da_release_space(inode, to_free);
19210637c6f4STheodore Ts'o 	if (unlikely(to_free > ei->i_reserved_data_blocks)) {
1922cd213226SMingming Cao 		/*
19230637c6f4STheodore Ts'o 		 * if there aren't enough reserved blocks, then the
19240637c6f4STheodore Ts'o 		 * counter is messed up somewhere.  Since this
19250637c6f4STheodore Ts'o 		 * function is called from invalidate page, it's
19260637c6f4STheodore Ts'o 		 * harmless to return without any action.
1927cd213226SMingming Cao 		 */
19280637c6f4STheodore Ts'o 		ext4_msg(inode->i_sb, KERN_NOTICE, "ext4_da_release_space: "
19290637c6f4STheodore Ts'o 			 "ino %lu, to_free %d with only %d reserved "
19300637c6f4STheodore Ts'o 			 "data blocks\n", inode->i_ino, to_free,
19310637c6f4STheodore Ts'o 			 ei->i_reserved_data_blocks);
19320637c6f4STheodore Ts'o 		WARN_ON(1);
19330637c6f4STheodore Ts'o 		to_free = ei->i_reserved_data_blocks;
19340637c6f4STheodore Ts'o 	}
19350637c6f4STheodore Ts'o 	ei->i_reserved_data_blocks -= to_free;
19360637c6f4STheodore Ts'o 
19370637c6f4STheodore Ts'o 	if (ei->i_reserved_data_blocks == 0) {
19380637c6f4STheodore Ts'o 		/*
19390637c6f4STheodore Ts'o 		 * We can release all of the reserved metadata blocks
19400637c6f4STheodore Ts'o 		 * only when we have written all of the delayed
19410637c6f4STheodore Ts'o 		 * allocation blocks.
19420637c6f4STheodore Ts'o 		 */
194372b8ab9dSEric Sandeen 		percpu_counter_sub(&sbi->s_dirtyblocks_counter,
194472b8ab9dSEric Sandeen 				   ei->i_reserved_meta_blocks);
1945ee5f4d9cSTheodore Ts'o 		ei->i_reserved_meta_blocks = 0;
19469d0be502STheodore Ts'o 		ei->i_da_metadata_calc_len = 0;
1947cd213226SMingming Cao 	}
1948cd213226SMingming Cao 
194972b8ab9dSEric Sandeen 	/* update fs dirty data blocks counter */
19500637c6f4STheodore Ts'o 	percpu_counter_sub(&sbi->s_dirtyblocks_counter, to_free);
1951d2a17637SMingming Cao 
1952d2a17637SMingming Cao 	spin_unlock(&EXT4_I(inode)->i_block_reservation_lock);
195360e58e0fSMingming Cao 
19545dd4056dSChristoph Hellwig 	dquot_release_reservation_block(inode, to_free);
1955d2a17637SMingming Cao }
1956d2a17637SMingming Cao 
1957d2a17637SMingming Cao static void ext4_da_page_release_reservation(struct page *page,
1958d2a17637SMingming Cao 					     unsigned long offset)
1959d2a17637SMingming Cao {
1960d2a17637SMingming Cao 	int to_release = 0;
1961d2a17637SMingming Cao 	struct buffer_head *head, *bh;
1962d2a17637SMingming Cao 	unsigned int curr_off = 0;
1963d2a17637SMingming Cao 
1964d2a17637SMingming Cao 	head = page_buffers(page);
1965d2a17637SMingming Cao 	bh = head;
1966d2a17637SMingming Cao 	do {
1967d2a17637SMingming Cao 		unsigned int next_off = curr_off + bh->b_size;
1968d2a17637SMingming Cao 
1969d2a17637SMingming Cao 		if ((offset <= curr_off) && (buffer_delay(bh))) {
1970d2a17637SMingming Cao 			to_release++;
1971d2a17637SMingming Cao 			clear_buffer_delay(bh);
1972d2a17637SMingming Cao 		}
1973d2a17637SMingming Cao 		curr_off = next_off;
1974d2a17637SMingming Cao 	} while ((bh = bh->b_this_page) != head);
197512219aeaSAneesh Kumar K.V 	ext4_da_release_space(page->mapping->host, to_release);
1976d2a17637SMingming Cao }
1977ac27a0ecSDave Kleikamp 
1978ac27a0ecSDave Kleikamp /*
197964769240SAlex Tomas  * Delayed allocation stuff
198064769240SAlex Tomas  */
198164769240SAlex Tomas 
198264769240SAlex Tomas /*
198364769240SAlex Tomas  * mpage_da_submit_io - walks through extent of pages and try to write
1984a1d6cc56SAneesh Kumar K.V  * them with writepage() call back
198564769240SAlex Tomas  *
198664769240SAlex Tomas  * @mpd->inode: inode
198764769240SAlex Tomas  * @mpd->first_page: first page of the extent
198864769240SAlex Tomas  * @mpd->next_page: page after the last page of the extent
198964769240SAlex Tomas  *
199064769240SAlex Tomas  * By the time mpage_da_submit_io() is called we expect all blocks
199164769240SAlex Tomas  * to be allocated. this may be wrong if allocation failed.
199264769240SAlex Tomas  *
199364769240SAlex Tomas  * As pages are already locked by write_cache_pages(), we can't use it
199464769240SAlex Tomas  */
199564769240SAlex Tomas static int mpage_da_submit_io(struct mpage_da_data *mpd)
199664769240SAlex Tomas {
199722208dedSAneesh Kumar K.V 	long pages_skipped;
1998791b7f08SAneesh Kumar K.V 	struct pagevec pvec;
1999791b7f08SAneesh Kumar K.V 	unsigned long index, end;
2000791b7f08SAneesh Kumar K.V 	int ret = 0, err, nr_pages, i;
2001791b7f08SAneesh Kumar K.V 	struct inode *inode = mpd->inode;
2002791b7f08SAneesh Kumar K.V 	struct address_space *mapping = inode->i_mapping;
200364769240SAlex Tomas 
200464769240SAlex Tomas 	BUG_ON(mpd->next_page <= mpd->first_page);
2005791b7f08SAneesh Kumar K.V 	/*
2006791b7f08SAneesh Kumar K.V 	 * We need to start from the first_page to the next_page - 1
2007791b7f08SAneesh Kumar K.V 	 * to make sure we also write the mapped dirty buffer_heads.
20088dc207c0STheodore Ts'o 	 * If we look at mpd->b_blocknr we would only be looking
2009791b7f08SAneesh Kumar K.V 	 * at the currently mapped buffer_heads.
2010791b7f08SAneesh Kumar K.V 	 */
201164769240SAlex Tomas 	index = mpd->first_page;
201264769240SAlex Tomas 	end = mpd->next_page - 1;
201364769240SAlex Tomas 
2014791b7f08SAneesh Kumar K.V 	pagevec_init(&pvec, 0);
201564769240SAlex Tomas 	while (index <= end) {
2016791b7f08SAneesh Kumar K.V 		nr_pages = pagevec_lookup(&pvec, mapping, index, PAGEVEC_SIZE);
201764769240SAlex Tomas 		if (nr_pages == 0)
201864769240SAlex Tomas 			break;
201964769240SAlex Tomas 		for (i = 0; i < nr_pages; i++) {
202064769240SAlex Tomas 			struct page *page = pvec.pages[i];
202164769240SAlex Tomas 
2022791b7f08SAneesh Kumar K.V 			index = page->index;
2023791b7f08SAneesh Kumar K.V 			if (index > end)
2024791b7f08SAneesh Kumar K.V 				break;
2025791b7f08SAneesh Kumar K.V 			index++;
2026791b7f08SAneesh Kumar K.V 
2027791b7f08SAneesh Kumar K.V 			BUG_ON(!PageLocked(page));
2028791b7f08SAneesh Kumar K.V 			BUG_ON(PageWriteback(page));
2029791b7f08SAneesh Kumar K.V 
203022208dedSAneesh Kumar K.V 			pages_skipped = mpd->wbc->pages_skipped;
2031a1d6cc56SAneesh Kumar K.V 			err = mapping->a_ops->writepage(page, mpd->wbc);
203222208dedSAneesh Kumar K.V 			if (!err && (pages_skipped == mpd->wbc->pages_skipped))
203322208dedSAneesh Kumar K.V 				/*
203422208dedSAneesh Kumar K.V 				 * have successfully written the page
203522208dedSAneesh Kumar K.V 				 * without skipping the same
203622208dedSAneesh Kumar K.V 				 */
2037a1d6cc56SAneesh Kumar K.V 				mpd->pages_written++;
203864769240SAlex Tomas 			/*
203964769240SAlex Tomas 			 * In error case, we have to continue because
204064769240SAlex Tomas 			 * remaining pages are still locked
204164769240SAlex Tomas 			 * XXX: unlock and re-dirty them?
204264769240SAlex Tomas 			 */
204364769240SAlex Tomas 			if (ret == 0)
204464769240SAlex Tomas 				ret = err;
204564769240SAlex Tomas 		}
204664769240SAlex Tomas 		pagevec_release(&pvec);
204764769240SAlex Tomas 	}
204864769240SAlex Tomas 	return ret;
204964769240SAlex Tomas }
205064769240SAlex Tomas 
205164769240SAlex Tomas /*
205264769240SAlex Tomas  * mpage_put_bnr_to_bhs - walk blocks and assign them actual numbers
205364769240SAlex Tomas  *
205464769240SAlex Tomas  * the function goes through all passed space and put actual disk
205529fa89d0SAneesh Kumar K.V  * block numbers into buffer heads, dropping BH_Delay and BH_Unwritten
205664769240SAlex Tomas  */
20572ed88685STheodore Ts'o static void mpage_put_bnr_to_bhs(struct mpage_da_data *mpd,
20582ed88685STheodore Ts'o 				 struct ext4_map_blocks *map)
205964769240SAlex Tomas {
206064769240SAlex Tomas 	struct inode *inode = mpd->inode;
206164769240SAlex Tomas 	struct address_space *mapping = inode->i_mapping;
20622ed88685STheodore Ts'o 	int blocks = map->m_len;
20632ed88685STheodore Ts'o 	sector_t pblock = map->m_pblk, cur_logical;
206464769240SAlex Tomas 	struct buffer_head *head, *bh;
2065a1d6cc56SAneesh Kumar K.V 	pgoff_t index, end;
206664769240SAlex Tomas 	struct pagevec pvec;
206764769240SAlex Tomas 	int nr_pages, i;
206864769240SAlex Tomas 
20692ed88685STheodore Ts'o 	index = map->m_lblk >> (PAGE_CACHE_SHIFT - inode->i_blkbits);
20702ed88685STheodore Ts'o 	end = (map->m_lblk + blocks - 1) >> (PAGE_CACHE_SHIFT - inode->i_blkbits);
207164769240SAlex Tomas 	cur_logical = index << (PAGE_CACHE_SHIFT - inode->i_blkbits);
207264769240SAlex Tomas 
207364769240SAlex Tomas 	pagevec_init(&pvec, 0);
207464769240SAlex Tomas 
207564769240SAlex Tomas 	while (index <= end) {
207664769240SAlex Tomas 		/* XXX: optimize tail */
207764769240SAlex Tomas 		nr_pages = pagevec_lookup(&pvec, mapping, index, PAGEVEC_SIZE);
207864769240SAlex Tomas 		if (nr_pages == 0)
207964769240SAlex Tomas 			break;
208064769240SAlex Tomas 		for (i = 0; i < nr_pages; i++) {
208164769240SAlex Tomas 			struct page *page = pvec.pages[i];
208264769240SAlex Tomas 
208364769240SAlex Tomas 			index = page->index;
208464769240SAlex Tomas 			if (index > end)
208564769240SAlex Tomas 				break;
208664769240SAlex Tomas 			index++;
208764769240SAlex Tomas 
208864769240SAlex Tomas 			BUG_ON(!PageLocked(page));
208964769240SAlex Tomas 			BUG_ON(PageWriteback(page));
209064769240SAlex Tomas 			BUG_ON(!page_has_buffers(page));
209164769240SAlex Tomas 
209264769240SAlex Tomas 			bh = page_buffers(page);
209364769240SAlex Tomas 			head = bh;
209464769240SAlex Tomas 
209564769240SAlex Tomas 			/* skip blocks out of the range */
209664769240SAlex Tomas 			do {
20972ed88685STheodore Ts'o 				if (cur_logical >= map->m_lblk)
209864769240SAlex Tomas 					break;
209964769240SAlex Tomas 				cur_logical++;
210064769240SAlex Tomas 			} while ((bh = bh->b_this_page) != head);
210164769240SAlex Tomas 
210264769240SAlex Tomas 			do {
21032ed88685STheodore Ts'o 				if (cur_logical >= map->m_lblk + blocks)
210464769240SAlex Tomas 					break;
210529fa89d0SAneesh Kumar K.V 
21062ed88685STheodore Ts'o 				if (buffer_delay(bh) || buffer_unwritten(bh)) {
210729fa89d0SAneesh Kumar K.V 
210829fa89d0SAneesh Kumar K.V 					BUG_ON(bh->b_bdev != inode->i_sb->s_bdev);
210929fa89d0SAneesh Kumar K.V 
211064769240SAlex Tomas 					if (buffer_delay(bh)) {
211164769240SAlex Tomas 						clear_buffer_delay(bh);
2112bf068ee2SAneesh Kumar K.V 						bh->b_blocknr = pblock;
211329fa89d0SAneesh Kumar K.V 					} else {
211429fa89d0SAneesh Kumar K.V 						/*
211529fa89d0SAneesh Kumar K.V 						 * unwritten already should have
211629fa89d0SAneesh Kumar K.V 						 * blocknr assigned. Verify that
211729fa89d0SAneesh Kumar K.V 						 */
2118bf068ee2SAneesh Kumar K.V 						clear_buffer_unwritten(bh);
211929fa89d0SAneesh Kumar K.V 						BUG_ON(bh->b_blocknr != pblock);
212029fa89d0SAneesh Kumar K.V 					}
212129fa89d0SAneesh Kumar K.V 
212261628a3fSMingming Cao 				} else if (buffer_mapped(bh))
212364769240SAlex Tomas 					BUG_ON(bh->b_blocknr != pblock);
212464769240SAlex Tomas 
21252ed88685STheodore Ts'o 				if (map->m_flags & EXT4_MAP_UNINIT)
2126744692dcSJiaying Zhang 					set_buffer_uninit(bh);
212764769240SAlex Tomas 				cur_logical++;
212864769240SAlex Tomas 				pblock++;
212964769240SAlex Tomas 			} while ((bh = bh->b_this_page) != head);
213064769240SAlex Tomas 		}
213164769240SAlex Tomas 		pagevec_release(&pvec);
213264769240SAlex Tomas 	}
213364769240SAlex Tomas }
213464769240SAlex Tomas 
213564769240SAlex Tomas 
2136c4a0c46eSAneesh Kumar K.V static void ext4_da_block_invalidatepages(struct mpage_da_data *mpd,
2137c4a0c46eSAneesh Kumar K.V 					sector_t logical, long blk_cnt)
2138c4a0c46eSAneesh Kumar K.V {
2139c4a0c46eSAneesh Kumar K.V 	int nr_pages, i;
2140c4a0c46eSAneesh Kumar K.V 	pgoff_t index, end;
2141c4a0c46eSAneesh Kumar K.V 	struct pagevec pvec;
2142c4a0c46eSAneesh Kumar K.V 	struct inode *inode = mpd->inode;
2143c4a0c46eSAneesh Kumar K.V 	struct address_space *mapping = inode->i_mapping;
2144c4a0c46eSAneesh Kumar K.V 
2145c4a0c46eSAneesh Kumar K.V 	index = logical >> (PAGE_CACHE_SHIFT - inode->i_blkbits);
2146c4a0c46eSAneesh Kumar K.V 	end   = (logical + blk_cnt - 1) >>
2147c4a0c46eSAneesh Kumar K.V 				(PAGE_CACHE_SHIFT - inode->i_blkbits);
2148c4a0c46eSAneesh Kumar K.V 	while (index <= end) {
2149c4a0c46eSAneesh Kumar K.V 		nr_pages = pagevec_lookup(&pvec, mapping, index, PAGEVEC_SIZE);
2150c4a0c46eSAneesh Kumar K.V 		if (nr_pages == 0)
2151c4a0c46eSAneesh Kumar K.V 			break;
2152c4a0c46eSAneesh Kumar K.V 		for (i = 0; i < nr_pages; i++) {
2153c4a0c46eSAneesh Kumar K.V 			struct page *page = pvec.pages[i];
21549b1d0998SJan Kara 			if (page->index > end)
2155c4a0c46eSAneesh Kumar K.V 				break;
2156c4a0c46eSAneesh Kumar K.V 			BUG_ON(!PageLocked(page));
2157c4a0c46eSAneesh Kumar K.V 			BUG_ON(PageWriteback(page));
2158c4a0c46eSAneesh Kumar K.V 			block_invalidatepage(page, 0);
2159c4a0c46eSAneesh Kumar K.V 			ClearPageUptodate(page);
2160c4a0c46eSAneesh Kumar K.V 			unlock_page(page);
2161c4a0c46eSAneesh Kumar K.V 		}
21629b1d0998SJan Kara 		index = pvec.pages[nr_pages - 1]->index + 1;
21639b1d0998SJan Kara 		pagevec_release(&pvec);
2164c4a0c46eSAneesh Kumar K.V 	}
2165c4a0c46eSAneesh Kumar K.V 	return;
2166c4a0c46eSAneesh Kumar K.V }
2167c4a0c46eSAneesh Kumar K.V 
2168df22291fSAneesh Kumar K.V static void ext4_print_free_blocks(struct inode *inode)
2169df22291fSAneesh Kumar K.V {
2170df22291fSAneesh Kumar K.V 	struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb);
21711693918eSTheodore Ts'o 	printk(KERN_CRIT "Total free blocks count %lld\n",
2172df22291fSAneesh Kumar K.V 	       ext4_count_free_blocks(inode->i_sb));
21731693918eSTheodore Ts'o 	printk(KERN_CRIT "Free/Dirty block details\n");
21741693918eSTheodore Ts'o 	printk(KERN_CRIT "free_blocks=%lld\n",
21758f72fbdfSAlexander Beregalov 	       (long long) percpu_counter_sum(&sbi->s_freeblocks_counter));
21761693918eSTheodore Ts'o 	printk(KERN_CRIT "dirty_blocks=%lld\n",
21778f72fbdfSAlexander Beregalov 	       (long long) percpu_counter_sum(&sbi->s_dirtyblocks_counter));
21781693918eSTheodore Ts'o 	printk(KERN_CRIT "Block reservation details\n");
21791693918eSTheodore Ts'o 	printk(KERN_CRIT "i_reserved_data_blocks=%u\n",
2180df22291fSAneesh Kumar K.V 	       EXT4_I(inode)->i_reserved_data_blocks);
21811693918eSTheodore Ts'o 	printk(KERN_CRIT "i_reserved_meta_blocks=%u\n",
2182df22291fSAneesh Kumar K.V 	       EXT4_I(inode)->i_reserved_meta_blocks);
2183df22291fSAneesh Kumar K.V 	return;
2184df22291fSAneesh Kumar K.V }
2185df22291fSAneesh Kumar K.V 
2186b920c755STheodore Ts'o /*
218764769240SAlex Tomas  * mpage_da_map_blocks - go through given space
218864769240SAlex Tomas  *
21898dc207c0STheodore Ts'o  * @mpd - bh describing space
219064769240SAlex Tomas  *
219164769240SAlex Tomas  * The function skips space we know is already mapped to disk blocks.
219264769240SAlex Tomas  *
219364769240SAlex Tomas  */
2194c4a0c46eSAneesh Kumar K.V static int mpage_da_map_blocks(struct mpage_da_data *mpd)
219564769240SAlex Tomas {
21962ac3b6e0STheodore Ts'o 	int err, blks, get_blocks_flags;
21972ed88685STheodore Ts'o 	struct ext4_map_blocks map;
21982fa3cdfbSTheodore Ts'o 	sector_t next = mpd->b_blocknr;
21992fa3cdfbSTheodore Ts'o 	unsigned max_blocks = mpd->b_size >> mpd->inode->i_blkbits;
22002fa3cdfbSTheodore Ts'o 	loff_t disksize = EXT4_I(mpd->inode)->i_disksize;
22012fa3cdfbSTheodore Ts'o 	handle_t *handle = NULL;
220264769240SAlex Tomas 
220364769240SAlex Tomas 	/*
220464769240SAlex Tomas 	 * We consider only non-mapped and non-allocated blocks
220564769240SAlex Tomas 	 */
22068dc207c0STheodore Ts'o 	if ((mpd->b_state  & (1 << BH_Mapped)) &&
220729fa89d0SAneesh Kumar K.V 		!(mpd->b_state & (1 << BH_Delay)) &&
220829fa89d0SAneesh Kumar K.V 		!(mpd->b_state & (1 << BH_Unwritten)))
2209c4a0c46eSAneesh Kumar K.V 		return 0;
22102fa3cdfbSTheodore Ts'o 
22112fa3cdfbSTheodore Ts'o 	/*
22122fa3cdfbSTheodore Ts'o 	 * If we didn't accumulate anything to write simply return
22132fa3cdfbSTheodore Ts'o 	 */
22142fa3cdfbSTheodore Ts'o 	if (!mpd->b_size)
22152fa3cdfbSTheodore Ts'o 		return 0;
22162fa3cdfbSTheodore Ts'o 
22172fa3cdfbSTheodore Ts'o 	handle = ext4_journal_current_handle();
22182fa3cdfbSTheodore Ts'o 	BUG_ON(!handle);
22192fa3cdfbSTheodore Ts'o 
222079ffab34SAneesh Kumar K.V 	/*
222179e83036SEric Sandeen 	 * Call ext4_map_blocks() to allocate any delayed allocation
22222ac3b6e0STheodore Ts'o 	 * blocks, or to convert an uninitialized extent to be
22232ac3b6e0STheodore Ts'o 	 * initialized (in the case where we have written into
22242ac3b6e0STheodore Ts'o 	 * one or more preallocated blocks).
22252ac3b6e0STheodore Ts'o 	 *
22262ac3b6e0STheodore Ts'o 	 * We pass in the magic EXT4_GET_BLOCKS_DELALLOC_RESERVE to
22272ac3b6e0STheodore Ts'o 	 * indicate that we are on the delayed allocation path.  This
22282ac3b6e0STheodore Ts'o 	 * affects functions in many different parts of the allocation
22292ac3b6e0STheodore Ts'o 	 * call path.  This flag exists primarily because we don't
223079e83036SEric Sandeen 	 * want to change *many* call functions, so ext4_map_blocks()
22312ac3b6e0STheodore Ts'o 	 * will set the magic i_delalloc_reserved_flag once the
22322ac3b6e0STheodore Ts'o 	 * inode's allocation semaphore is taken.
22332ac3b6e0STheodore Ts'o 	 *
22342ac3b6e0STheodore Ts'o 	 * If the blocks in questions were delalloc blocks, set
22352ac3b6e0STheodore Ts'o 	 * EXT4_GET_BLOCKS_DELALLOC_RESERVE so the delalloc accounting
22362ac3b6e0STheodore Ts'o 	 * variables are updated after the blocks have been allocated.
223779ffab34SAneesh Kumar K.V 	 */
22382ed88685STheodore Ts'o 	map.m_lblk = next;
22392ed88685STheodore Ts'o 	map.m_len = max_blocks;
22401296cc85SAneesh Kumar K.V 	get_blocks_flags = EXT4_GET_BLOCKS_CREATE;
2241744692dcSJiaying Zhang 	if (ext4_should_dioread_nolock(mpd->inode))
2242744692dcSJiaying Zhang 		get_blocks_flags |= EXT4_GET_BLOCKS_IO_CREATE_EXT;
22432ac3b6e0STheodore Ts'o 	if (mpd->b_state & (1 << BH_Delay))
22441296cc85SAneesh Kumar K.V 		get_blocks_flags |= EXT4_GET_BLOCKS_DELALLOC_RESERVE;
22451296cc85SAneesh Kumar K.V 
22462ed88685STheodore Ts'o 	blks = ext4_map_blocks(handle, mpd->inode, &map, get_blocks_flags);
22472fa3cdfbSTheodore Ts'o 	if (blks < 0) {
2248e3570639SEric Sandeen 		struct super_block *sb = mpd->inode->i_sb;
2249e3570639SEric Sandeen 
22502fa3cdfbSTheodore Ts'o 		err = blks;
2251ed5bde0bSTheodore Ts'o 		/*
2252ed5bde0bSTheodore Ts'o 		 * If get block returns with error we simply
2253ed5bde0bSTheodore Ts'o 		 * return. Later writepage will redirty the page and
2254ed5bde0bSTheodore Ts'o 		 * writepages will find the dirty page again
2255c4a0c46eSAneesh Kumar K.V 		 */
2256c4a0c46eSAneesh Kumar K.V 		if (err == -EAGAIN)
2257c4a0c46eSAneesh Kumar K.V 			return 0;
2258df22291fSAneesh Kumar K.V 
2259df22291fSAneesh Kumar K.V 		if (err == -ENOSPC &&
2260e3570639SEric Sandeen 		    ext4_count_free_blocks(sb)) {
2261df22291fSAneesh Kumar K.V 			mpd->retval = err;
2262df22291fSAneesh Kumar K.V 			return 0;
2263df22291fSAneesh Kumar K.V 		}
2264df22291fSAneesh Kumar K.V 
2265c4a0c46eSAneesh Kumar K.V 		/*
2266ed5bde0bSTheodore Ts'o 		 * get block failure will cause us to loop in
2267ed5bde0bSTheodore Ts'o 		 * writepages, because a_ops->writepage won't be able
2268ed5bde0bSTheodore Ts'o 		 * to make progress. The page will be redirtied by
2269ed5bde0bSTheodore Ts'o 		 * writepage and writepages will again try to write
2270ed5bde0bSTheodore Ts'o 		 * the same.
2271c4a0c46eSAneesh Kumar K.V 		 */
2272e3570639SEric Sandeen 		if (!(EXT4_SB(sb)->s_mount_flags & EXT4_MF_FS_ABORTED)) {
2273e3570639SEric Sandeen 			ext4_msg(sb, KERN_CRIT,
2274e3570639SEric Sandeen 				 "delayed block allocation failed for inode %lu "
2275e3570639SEric Sandeen 				 "at logical offset %llu with max blocks %zd "
2276e3570639SEric Sandeen 				 "with error %d", mpd->inode->i_ino,
2277c4a0c46eSAneesh Kumar K.V 				 (unsigned long long) next,
22788dc207c0STheodore Ts'o 				 mpd->b_size >> mpd->inode->i_blkbits, err);
2279e3570639SEric Sandeen 			ext4_msg(sb, KERN_CRIT,
2280e3570639SEric Sandeen 				"This should not happen!! Data will be lost\n");
2281e3570639SEric Sandeen 			if (err == -ENOSPC)
2282df22291fSAneesh Kumar K.V 				ext4_print_free_blocks(mpd->inode);
2283030ba6bcSAneesh Kumar K.V 		}
22842fa3cdfbSTheodore Ts'o 		/* invalidate all the pages */
2285c4a0c46eSAneesh Kumar K.V 		ext4_da_block_invalidatepages(mpd, next,
22868dc207c0STheodore Ts'o 				mpd->b_size >> mpd->inode->i_blkbits);
2287c4a0c46eSAneesh Kumar K.V 		return err;
2288c4a0c46eSAneesh Kumar K.V 	}
22892fa3cdfbSTheodore Ts'o 	BUG_ON(blks == 0);
22902fa3cdfbSTheodore Ts'o 
22912ed88685STheodore Ts'o 	if (map.m_flags & EXT4_MAP_NEW) {
22922ed88685STheodore Ts'o 		struct block_device *bdev = mpd->inode->i_sb->s_bdev;
22932ed88685STheodore Ts'o 		int i;
229464769240SAlex Tomas 
22952ed88685STheodore Ts'o 		for (i = 0; i < map.m_len; i++)
22962ed88685STheodore Ts'o 			unmap_underlying_metadata(bdev, map.m_pblk + i);
22972ed88685STheodore Ts'o 	}
229864769240SAlex Tomas 
229964769240SAlex Tomas 	/*
230064769240SAlex Tomas 	 * If blocks are delayed marked, we need to
230164769240SAlex Tomas 	 * put actual blocknr and drop delayed bit
230264769240SAlex Tomas 	 */
23038dc207c0STheodore Ts'o 	if ((mpd->b_state & (1 << BH_Delay)) ||
23048dc207c0STheodore Ts'o 	    (mpd->b_state & (1 << BH_Unwritten)))
23052ed88685STheodore Ts'o 		mpage_put_bnr_to_bhs(mpd, &map);
230664769240SAlex Tomas 
23072fa3cdfbSTheodore Ts'o 	if (ext4_should_order_data(mpd->inode)) {
23082fa3cdfbSTheodore Ts'o 		err = ext4_jbd2_file_inode(handle, mpd->inode);
23092fa3cdfbSTheodore Ts'o 		if (err)
23102fa3cdfbSTheodore Ts'o 			return err;
23112fa3cdfbSTheodore Ts'o 	}
23122fa3cdfbSTheodore Ts'o 
23132fa3cdfbSTheodore Ts'o 	/*
231403f5d8bcSJan Kara 	 * Update on-disk size along with block allocation.
23152fa3cdfbSTheodore Ts'o 	 */
23162fa3cdfbSTheodore Ts'o 	disksize = ((loff_t) next + blks) << mpd->inode->i_blkbits;
23172fa3cdfbSTheodore Ts'o 	if (disksize > i_size_read(mpd->inode))
23182fa3cdfbSTheodore Ts'o 		disksize = i_size_read(mpd->inode);
23192fa3cdfbSTheodore Ts'o 	if (disksize > EXT4_I(mpd->inode)->i_disksize) {
23202fa3cdfbSTheodore Ts'o 		ext4_update_i_disksize(mpd->inode, disksize);
23212fa3cdfbSTheodore Ts'o 		return ext4_mark_inode_dirty(handle, mpd->inode);
23222fa3cdfbSTheodore Ts'o 	}
23232fa3cdfbSTheodore Ts'o 
2324c4a0c46eSAneesh Kumar K.V 	return 0;
232564769240SAlex Tomas }
232664769240SAlex Tomas 
2327bf068ee2SAneesh Kumar K.V #define BH_FLAGS ((1 << BH_Uptodate) | (1 << BH_Mapped) | \
2328bf068ee2SAneesh Kumar K.V 		(1 << BH_Delay) | (1 << BH_Unwritten))
232964769240SAlex Tomas 
233064769240SAlex Tomas /*
233164769240SAlex Tomas  * mpage_add_bh_to_extent - try to add one more block to extent of blocks
233264769240SAlex Tomas  *
233364769240SAlex Tomas  * @mpd->lbh - extent of blocks
233464769240SAlex Tomas  * @logical - logical number of the block in the file
233564769240SAlex Tomas  * @bh - bh of the block (used to access block's state)
233664769240SAlex Tomas  *
233764769240SAlex Tomas  * the function is used to collect contig. blocks in same state
233864769240SAlex Tomas  */
233964769240SAlex Tomas static void mpage_add_bh_to_extent(struct mpage_da_data *mpd,
23408dc207c0STheodore Ts'o 				   sector_t logical, size_t b_size,
23418dc207c0STheodore Ts'o 				   unsigned long b_state)
234264769240SAlex Tomas {
234364769240SAlex Tomas 	sector_t next;
23448dc207c0STheodore Ts'o 	int nrblocks = mpd->b_size >> mpd->inode->i_blkbits;
234564769240SAlex Tomas 
2346c445e3e0SEric Sandeen 	/*
2347c445e3e0SEric Sandeen 	 * XXX Don't go larger than mballoc is willing to allocate
2348c445e3e0SEric Sandeen 	 * This is a stopgap solution.  We eventually need to fold
2349c445e3e0SEric Sandeen 	 * mpage_da_submit_io() into this function and then call
235079e83036SEric Sandeen 	 * ext4_map_blocks() multiple times in a loop
2351c445e3e0SEric Sandeen 	 */
2352c445e3e0SEric Sandeen 	if (nrblocks >= 8*1024*1024/mpd->inode->i_sb->s_blocksize)
2353c445e3e0SEric Sandeen 		goto flush_it;
2354c445e3e0SEric Sandeen 
2355525f4ed8SMingming Cao 	/* check if thereserved journal credits might overflow */
235612e9b892SDmitry Monakhov 	if (!(ext4_test_inode_flag(mpd->inode, EXT4_INODE_EXTENTS))) {
2357525f4ed8SMingming Cao 		if (nrblocks >= EXT4_MAX_TRANS_DATA) {
2358525f4ed8SMingming Cao 			/*
2359525f4ed8SMingming Cao 			 * With non-extent format we are limited by the journal
2360525f4ed8SMingming Cao 			 * credit available.  Total credit needed to insert
2361525f4ed8SMingming Cao 			 * nrblocks contiguous blocks is dependent on the
2362525f4ed8SMingming Cao 			 * nrblocks.  So limit nrblocks.
2363525f4ed8SMingming Cao 			 */
2364525f4ed8SMingming Cao 			goto flush_it;
2365525f4ed8SMingming Cao 		} else if ((nrblocks + (b_size >> mpd->inode->i_blkbits)) >
2366525f4ed8SMingming Cao 				EXT4_MAX_TRANS_DATA) {
2367525f4ed8SMingming Cao 			/*
2368525f4ed8SMingming Cao 			 * Adding the new buffer_head would make it cross the
2369525f4ed8SMingming Cao 			 * allowed limit for which we have journal credit
2370525f4ed8SMingming Cao 			 * reserved. So limit the new bh->b_size
2371525f4ed8SMingming Cao 			 */
2372525f4ed8SMingming Cao 			b_size = (EXT4_MAX_TRANS_DATA - nrblocks) <<
2373525f4ed8SMingming Cao 						mpd->inode->i_blkbits;
2374525f4ed8SMingming Cao 			/* we will do mpage_da_submit_io in the next loop */
2375525f4ed8SMingming Cao 		}
2376525f4ed8SMingming Cao 	}
237764769240SAlex Tomas 	/*
237864769240SAlex Tomas 	 * First block in the extent
237964769240SAlex Tomas 	 */
23808dc207c0STheodore Ts'o 	if (mpd->b_size == 0) {
23818dc207c0STheodore Ts'o 		mpd->b_blocknr = logical;
23828dc207c0STheodore Ts'o 		mpd->b_size = b_size;
23838dc207c0STheodore Ts'o 		mpd->b_state = b_state & BH_FLAGS;
238464769240SAlex Tomas 		return;
238564769240SAlex Tomas 	}
238664769240SAlex Tomas 
23878dc207c0STheodore Ts'o 	next = mpd->b_blocknr + nrblocks;
238864769240SAlex Tomas 	/*
238964769240SAlex Tomas 	 * Can we merge the block to our big extent?
239064769240SAlex Tomas 	 */
23918dc207c0STheodore Ts'o 	if (logical == next && (b_state & BH_FLAGS) == mpd->b_state) {
23928dc207c0STheodore Ts'o 		mpd->b_size += b_size;
239364769240SAlex Tomas 		return;
239464769240SAlex Tomas 	}
239564769240SAlex Tomas 
2396525f4ed8SMingming Cao flush_it:
239764769240SAlex Tomas 	/*
239864769240SAlex Tomas 	 * We couldn't merge the block to our extent, so we
239964769240SAlex Tomas 	 * need to flush current  extent and start new one
240064769240SAlex Tomas 	 */
2401c4a0c46eSAneesh Kumar K.V 	if (mpage_da_map_blocks(mpd) == 0)
2402a1d6cc56SAneesh Kumar K.V 		mpage_da_submit_io(mpd);
2403a1d6cc56SAneesh Kumar K.V 	mpd->io_done = 1;
2404a1d6cc56SAneesh Kumar K.V 	return;
240564769240SAlex Tomas }
240664769240SAlex Tomas 
2407c364b22cSAneesh Kumar K.V static int ext4_bh_delay_or_unwritten(handle_t *handle, struct buffer_head *bh)
240829fa89d0SAneesh Kumar K.V {
2409c364b22cSAneesh Kumar K.V 	return (buffer_delay(bh) || buffer_unwritten(bh)) && buffer_dirty(bh);
241029fa89d0SAneesh Kumar K.V }
241129fa89d0SAneesh Kumar K.V 
241264769240SAlex Tomas /*
241364769240SAlex Tomas  * __mpage_da_writepage - finds extent of pages and blocks
241464769240SAlex Tomas  *
241564769240SAlex Tomas  * @page: page to consider
241664769240SAlex Tomas  * @wbc: not used, we just follow rules
241764769240SAlex Tomas  * @data: context
241864769240SAlex Tomas  *
241964769240SAlex Tomas  * The function finds extents of pages and scan them for all blocks.
242064769240SAlex Tomas  */
242164769240SAlex Tomas static int __mpage_da_writepage(struct page *page,
242264769240SAlex Tomas 				struct writeback_control *wbc, void *data)
242364769240SAlex Tomas {
242464769240SAlex Tomas 	struct mpage_da_data *mpd = data;
242564769240SAlex Tomas 	struct inode *inode = mpd->inode;
24268dc207c0STheodore Ts'o 	struct buffer_head *bh, *head;
242764769240SAlex Tomas 	sector_t logical;
242864769240SAlex Tomas 
242964769240SAlex Tomas 	/*
243064769240SAlex Tomas 	 * Can we merge this page to current extent?
243164769240SAlex Tomas 	 */
243264769240SAlex Tomas 	if (mpd->next_page != page->index) {
243364769240SAlex Tomas 		/*
243464769240SAlex Tomas 		 * Nope, we can't. So, we map non-allocated blocks
2435a1d6cc56SAneesh Kumar K.V 		 * and start IO on them using writepage()
243664769240SAlex Tomas 		 */
243764769240SAlex Tomas 		if (mpd->next_page != mpd->first_page) {
2438c4a0c46eSAneesh Kumar K.V 			if (mpage_da_map_blocks(mpd) == 0)
243964769240SAlex Tomas 				mpage_da_submit_io(mpd);
2440a1d6cc56SAneesh Kumar K.V 			/*
2441a1d6cc56SAneesh Kumar K.V 			 * skip rest of the page in the page_vec
2442a1d6cc56SAneesh Kumar K.V 			 */
2443a1d6cc56SAneesh Kumar K.V 			mpd->io_done = 1;
2444a1d6cc56SAneesh Kumar K.V 			redirty_page_for_writepage(wbc, page);
2445a1d6cc56SAneesh Kumar K.V 			unlock_page(page);
2446a1d6cc56SAneesh Kumar K.V 			return MPAGE_DA_EXTENT_TAIL;
244764769240SAlex Tomas 		}
244864769240SAlex Tomas 
244964769240SAlex Tomas 		/*
245064769240SAlex Tomas 		 * Start next extent of pages ...
245164769240SAlex Tomas 		 */
245264769240SAlex Tomas 		mpd->first_page = page->index;
245364769240SAlex Tomas 
245464769240SAlex Tomas 		/*
245564769240SAlex Tomas 		 * ... and blocks
245664769240SAlex Tomas 		 */
24578dc207c0STheodore Ts'o 		mpd->b_size = 0;
24588dc207c0STheodore Ts'o 		mpd->b_state = 0;
24598dc207c0STheodore Ts'o 		mpd->b_blocknr = 0;
246064769240SAlex Tomas 	}
246164769240SAlex Tomas 
246264769240SAlex Tomas 	mpd->next_page = page->index + 1;
246364769240SAlex Tomas 	logical = (sector_t) page->index <<
246464769240SAlex Tomas 		  (PAGE_CACHE_SHIFT - inode->i_blkbits);
246564769240SAlex Tomas 
246664769240SAlex Tomas 	if (!page_has_buffers(page)) {
24678dc207c0STheodore Ts'o 		mpage_add_bh_to_extent(mpd, logical, PAGE_CACHE_SIZE,
24688dc207c0STheodore Ts'o 				       (1 << BH_Dirty) | (1 << BH_Uptodate));
2469a1d6cc56SAneesh Kumar K.V 		if (mpd->io_done)
2470a1d6cc56SAneesh Kumar K.V 			return MPAGE_DA_EXTENT_TAIL;
247164769240SAlex Tomas 	} else {
247264769240SAlex Tomas 		/*
247364769240SAlex Tomas 		 * Page with regular buffer heads, just add all dirty ones
247464769240SAlex Tomas 		 */
247564769240SAlex Tomas 		head = page_buffers(page);
247664769240SAlex Tomas 		bh = head;
247764769240SAlex Tomas 		do {
247864769240SAlex Tomas 			BUG_ON(buffer_locked(bh));
2479791b7f08SAneesh Kumar K.V 			/*
2480791b7f08SAneesh Kumar K.V 			 * We need to try to allocate
2481791b7f08SAneesh Kumar K.V 			 * unmapped blocks in the same page.
2482791b7f08SAneesh Kumar K.V 			 * Otherwise we won't make progress
248343ce1d23SAneesh Kumar K.V 			 * with the page in ext4_writepage
2484791b7f08SAneesh Kumar K.V 			 */
2485c364b22cSAneesh Kumar K.V 			if (ext4_bh_delay_or_unwritten(NULL, bh)) {
24868dc207c0STheodore Ts'o 				mpage_add_bh_to_extent(mpd, logical,
24878dc207c0STheodore Ts'o 						       bh->b_size,
24888dc207c0STheodore Ts'o 						       bh->b_state);
2489a1d6cc56SAneesh Kumar K.V 				if (mpd->io_done)
2490a1d6cc56SAneesh Kumar K.V 					return MPAGE_DA_EXTENT_TAIL;
2491791b7f08SAneesh Kumar K.V 			} else if (buffer_dirty(bh) && (buffer_mapped(bh))) {
2492791b7f08SAneesh Kumar K.V 				/*
2493791b7f08SAneesh Kumar K.V 				 * mapped dirty buffer. We need to update
2494791b7f08SAneesh Kumar K.V 				 * the b_state because we look at
2495791b7f08SAneesh Kumar K.V 				 * b_state in mpage_da_map_blocks. We don't
2496791b7f08SAneesh Kumar K.V 				 * update b_size because if we find an
2497791b7f08SAneesh Kumar K.V 				 * unmapped buffer_head later we need to
2498791b7f08SAneesh Kumar K.V 				 * use the b_state flag of that buffer_head.
2499791b7f08SAneesh Kumar K.V 				 */
25008dc207c0STheodore Ts'o 				if (mpd->b_size == 0)
25018dc207c0STheodore Ts'o 					mpd->b_state = bh->b_state & BH_FLAGS;
2502a1d6cc56SAneesh Kumar K.V 			}
250364769240SAlex Tomas 			logical++;
250464769240SAlex Tomas 		} while ((bh = bh->b_this_page) != head);
250564769240SAlex Tomas 	}
250664769240SAlex Tomas 
250764769240SAlex Tomas 	return 0;
250864769240SAlex Tomas }
250964769240SAlex Tomas 
251064769240SAlex Tomas /*
2511b920c755STheodore Ts'o  * This is a special get_blocks_t callback which is used by
2512b920c755STheodore Ts'o  * ext4_da_write_begin().  It will either return mapped block or
2513b920c755STheodore Ts'o  * reserve space for a single block.
251429fa89d0SAneesh Kumar K.V  *
251529fa89d0SAneesh Kumar K.V  * For delayed buffer_head we have BH_Mapped, BH_New, BH_Delay set.
251629fa89d0SAneesh Kumar K.V  * We also have b_blocknr = -1 and b_bdev initialized properly
251729fa89d0SAneesh Kumar K.V  *
251829fa89d0SAneesh Kumar K.V  * For unwritten buffer_head we have BH_Mapped, BH_New, BH_Unwritten set.
251929fa89d0SAneesh Kumar K.V  * We also have b_blocknr = physicalblock mapping unwritten extent and b_bdev
252029fa89d0SAneesh Kumar K.V  * initialized properly.
252164769240SAlex Tomas  */
252264769240SAlex Tomas static int ext4_da_get_block_prep(struct inode *inode, sector_t iblock,
25232ed88685STheodore Ts'o 				  struct buffer_head *bh, int create)
252464769240SAlex Tomas {
25252ed88685STheodore Ts'o 	struct ext4_map_blocks map;
252664769240SAlex Tomas 	int ret = 0;
252733b9817eSAneesh Kumar K.V 	sector_t invalid_block = ~((sector_t) 0xffff);
252833b9817eSAneesh Kumar K.V 
252933b9817eSAneesh Kumar K.V 	if (invalid_block < ext4_blocks_count(EXT4_SB(inode->i_sb)->s_es))
253033b9817eSAneesh Kumar K.V 		invalid_block = ~0;
253164769240SAlex Tomas 
253264769240SAlex Tomas 	BUG_ON(create == 0);
25332ed88685STheodore Ts'o 	BUG_ON(bh->b_size != inode->i_sb->s_blocksize);
25342ed88685STheodore Ts'o 
25352ed88685STheodore Ts'o 	map.m_lblk = iblock;
25362ed88685STheodore Ts'o 	map.m_len = 1;
253764769240SAlex Tomas 
253864769240SAlex Tomas 	/*
253964769240SAlex Tomas 	 * first, we need to know whether the block is allocated already
254064769240SAlex Tomas 	 * preallocated blocks are unmapped but should treated
254164769240SAlex Tomas 	 * the same as allocated blocks.
254264769240SAlex Tomas 	 */
25432ed88685STheodore Ts'o 	ret = ext4_map_blocks(NULL, inode, &map, 0);
25442ed88685STheodore Ts'o 	if (ret < 0)
25452ed88685STheodore Ts'o 		return ret;
25462ed88685STheodore Ts'o 	if (ret == 0) {
25472ed88685STheodore Ts'o 		if (buffer_delay(bh))
25482ed88685STheodore Ts'o 			return 0; /* Not sure this could or should happen */
254964769240SAlex Tomas 		/*
255064769240SAlex Tomas 		 * XXX: __block_prepare_write() unmaps passed block,
255164769240SAlex Tomas 		 * is it OK?
255264769240SAlex Tomas 		 */
25539d0be502STheodore Ts'o 		ret = ext4_da_reserve_space(inode, iblock);
2554d2a17637SMingming Cao 		if (ret)
2555d2a17637SMingming Cao 			/* not enough space to reserve */
2556d2a17637SMingming Cao 			return ret;
2557d2a17637SMingming Cao 
25582ed88685STheodore Ts'o 		map_bh(bh, inode->i_sb, invalid_block);
25592ed88685STheodore Ts'o 		set_buffer_new(bh);
25602ed88685STheodore Ts'o 		set_buffer_delay(bh);
25612ed88685STheodore Ts'o 		return 0;
256264769240SAlex Tomas 	}
256364769240SAlex Tomas 
25642ed88685STheodore Ts'o 	map_bh(bh, inode->i_sb, map.m_pblk);
25652ed88685STheodore Ts'o 	bh->b_state = (bh->b_state & ~EXT4_MAP_FLAGS) | map.m_flags;
25662ed88685STheodore Ts'o 
25672ed88685STheodore Ts'o 	if (buffer_unwritten(bh)) {
25682ed88685STheodore Ts'o 		/* A delayed write to unwritten bh should be marked
25692ed88685STheodore Ts'o 		 * new and mapped.  Mapped ensures that we don't do
25702ed88685STheodore Ts'o 		 * get_block multiple times when we write to the same
25712ed88685STheodore Ts'o 		 * offset and new ensures that we do proper zero out
25722ed88685STheodore Ts'o 		 * for partial write.
25732ed88685STheodore Ts'o 		 */
25742ed88685STheodore Ts'o 		set_buffer_new(bh);
25752ed88685STheodore Ts'o 		set_buffer_mapped(bh);
25762ed88685STheodore Ts'o 	}
25772ed88685STheodore Ts'o 	return 0;
257864769240SAlex Tomas }
257961628a3fSMingming Cao 
2580b920c755STheodore Ts'o /*
2581b920c755STheodore Ts'o  * This function is used as a standard get_block_t calback function
2582b920c755STheodore Ts'o  * when there is no desire to allocate any blocks.  It is used as a
2583206f7ab4SChristoph Hellwig  * callback function for block_prepare_write() and block_write_full_page().
2584206f7ab4SChristoph Hellwig  * These functions should only try to map a single block at a time.
2585b920c755STheodore Ts'o  *
2586b920c755STheodore Ts'o  * Since this function doesn't do block allocations even if the caller
2587b920c755STheodore Ts'o  * requests it by passing in create=1, it is critically important that
2588b920c755STheodore Ts'o  * any caller checks to make sure that any buffer heads are returned
2589b920c755STheodore Ts'o  * by this function are either all already mapped or marked for
2590206f7ab4SChristoph Hellwig  * delayed allocation before calling  block_write_full_page().  Otherwise,
2591206f7ab4SChristoph Hellwig  * b_blocknr could be left unitialized, and the page write functions will
2592206f7ab4SChristoph Hellwig  * be taken by surprise.
2593b920c755STheodore Ts'o  */
2594b920c755STheodore Ts'o static int noalloc_get_block_write(struct inode *inode, sector_t iblock,
2595f0e6c985SAneesh Kumar K.V 				   struct buffer_head *bh_result, int create)
2596f0e6c985SAneesh Kumar K.V {
2597a2dc52b5STheodore Ts'o 	BUG_ON(bh_result->b_size != inode->i_sb->s_blocksize);
25982ed88685STheodore Ts'o 	return _ext4_get_block(inode, iblock, bh_result, 0);
259961628a3fSMingming Cao }
260061628a3fSMingming Cao 
260162e086beSAneesh Kumar K.V static int bget_one(handle_t *handle, struct buffer_head *bh)
260262e086beSAneesh Kumar K.V {
260362e086beSAneesh Kumar K.V 	get_bh(bh);
260462e086beSAneesh Kumar K.V 	return 0;
260562e086beSAneesh Kumar K.V }
260662e086beSAneesh Kumar K.V 
260762e086beSAneesh Kumar K.V static int bput_one(handle_t *handle, struct buffer_head *bh)
260862e086beSAneesh Kumar K.V {
260962e086beSAneesh Kumar K.V 	put_bh(bh);
261062e086beSAneesh Kumar K.V 	return 0;
261162e086beSAneesh Kumar K.V }
261262e086beSAneesh Kumar K.V 
261362e086beSAneesh Kumar K.V static int __ext4_journalled_writepage(struct page *page,
261462e086beSAneesh Kumar K.V 				       unsigned int len)
261562e086beSAneesh Kumar K.V {
261662e086beSAneesh Kumar K.V 	struct address_space *mapping = page->mapping;
261762e086beSAneesh Kumar K.V 	struct inode *inode = mapping->host;
261862e086beSAneesh Kumar K.V 	struct buffer_head *page_bufs;
261962e086beSAneesh Kumar K.V 	handle_t *handle = NULL;
262062e086beSAneesh Kumar K.V 	int ret = 0;
262162e086beSAneesh Kumar K.V 	int err;
262262e086beSAneesh Kumar K.V 
262362e086beSAneesh Kumar K.V 	page_bufs = page_buffers(page);
262462e086beSAneesh Kumar K.V 	BUG_ON(!page_bufs);
262562e086beSAneesh Kumar K.V 	walk_page_buffers(handle, page_bufs, 0, len, NULL, bget_one);
262662e086beSAneesh Kumar K.V 	/* As soon as we unlock the page, it can go away, but we have
262762e086beSAneesh Kumar K.V 	 * references to buffers so we are safe */
262862e086beSAneesh Kumar K.V 	unlock_page(page);
262962e086beSAneesh Kumar K.V 
263062e086beSAneesh Kumar K.V 	handle = ext4_journal_start(inode, ext4_writepage_trans_blocks(inode));
263162e086beSAneesh Kumar K.V 	if (IS_ERR(handle)) {
263262e086beSAneesh Kumar K.V 		ret = PTR_ERR(handle);
263362e086beSAneesh Kumar K.V 		goto out;
263462e086beSAneesh Kumar K.V 	}
263562e086beSAneesh Kumar K.V 
263662e086beSAneesh Kumar K.V 	ret = walk_page_buffers(handle, page_bufs, 0, len, NULL,
263762e086beSAneesh Kumar K.V 				do_journal_get_write_access);
263862e086beSAneesh Kumar K.V 
263962e086beSAneesh Kumar K.V 	err = walk_page_buffers(handle, page_bufs, 0, len, NULL,
264062e086beSAneesh Kumar K.V 				write_end_fn);
264162e086beSAneesh Kumar K.V 	if (ret == 0)
264262e086beSAneesh Kumar K.V 		ret = err;
264362e086beSAneesh Kumar K.V 	err = ext4_journal_stop(handle);
264462e086beSAneesh Kumar K.V 	if (!ret)
264562e086beSAneesh Kumar K.V 		ret = err;
264662e086beSAneesh Kumar K.V 
264762e086beSAneesh Kumar K.V 	walk_page_buffers(handle, page_bufs, 0, len, NULL, bput_one);
264819f5fb7aSTheodore Ts'o 	ext4_set_inode_state(inode, EXT4_STATE_JDATA);
264962e086beSAneesh Kumar K.V out:
265062e086beSAneesh Kumar K.V 	return ret;
265162e086beSAneesh Kumar K.V }
265262e086beSAneesh Kumar K.V 
2653744692dcSJiaying Zhang static int ext4_set_bh_endio(struct buffer_head *bh, struct inode *inode);
2654744692dcSJiaying Zhang static void ext4_end_io_buffer_write(struct buffer_head *bh, int uptodate);
2655744692dcSJiaying Zhang 
265661628a3fSMingming Cao /*
265743ce1d23SAneesh Kumar K.V  * Note that we don't need to start a transaction unless we're journaling data
265843ce1d23SAneesh Kumar K.V  * because we should have holes filled from ext4_page_mkwrite(). We even don't
265943ce1d23SAneesh Kumar K.V  * need to file the inode to the transaction's list in ordered mode because if
266043ce1d23SAneesh Kumar K.V  * we are writing back data added by write(), the inode is already there and if
266143ce1d23SAneesh Kumar K.V  * we are writing back data modified via mmap(), noone guarantees in which
266243ce1d23SAneesh Kumar K.V  * transaction the data will hit the disk. In case we are journaling data, we
266343ce1d23SAneesh Kumar K.V  * cannot start transaction directly because transaction start ranks above page
266443ce1d23SAneesh Kumar K.V  * lock so we have to do some magic.
266543ce1d23SAneesh Kumar K.V  *
2666b920c755STheodore Ts'o  * This function can get called via...
2667b920c755STheodore Ts'o  *   - ext4_da_writepages after taking page lock (have journal handle)
2668b920c755STheodore Ts'o  *   - journal_submit_inode_data_buffers (no journal handle)
2669b920c755STheodore Ts'o  *   - shrink_page_list via pdflush (no journal handle)
2670b920c755STheodore Ts'o  *   - grab_page_cache when doing write_begin (have journal handle)
267143ce1d23SAneesh Kumar K.V  *
267243ce1d23SAneesh Kumar K.V  * We don't do any block allocation in this function. If we have page with
267343ce1d23SAneesh Kumar K.V  * multiple blocks we need to write those buffer_heads that are mapped. This
267443ce1d23SAneesh Kumar K.V  * is important for mmaped based write. So if we do with blocksize 1K
267543ce1d23SAneesh Kumar K.V  * truncate(f, 1024);
267643ce1d23SAneesh Kumar K.V  * a = mmap(f, 0, 4096);
267743ce1d23SAneesh Kumar K.V  * a[0] = 'a';
267843ce1d23SAneesh Kumar K.V  * truncate(f, 4096);
267943ce1d23SAneesh Kumar K.V  * we have in the page first buffer_head mapped via page_mkwrite call back
268043ce1d23SAneesh Kumar K.V  * but other bufer_heads would be unmapped but dirty(dirty done via the
268143ce1d23SAneesh Kumar K.V  * do_wp_page). So writepage should write the first block. If we modify
268243ce1d23SAneesh Kumar K.V  * the mmap area beyond 1024 we will again get a page_fault and the
268343ce1d23SAneesh Kumar K.V  * page_mkwrite callback will do the block allocation and mark the
268443ce1d23SAneesh Kumar K.V  * buffer_heads mapped.
268543ce1d23SAneesh Kumar K.V  *
268643ce1d23SAneesh Kumar K.V  * We redirty the page if we have any buffer_heads that is either delay or
268743ce1d23SAneesh Kumar K.V  * unwritten in the page.
268843ce1d23SAneesh Kumar K.V  *
268943ce1d23SAneesh Kumar K.V  * We can get recursively called as show below.
269043ce1d23SAneesh Kumar K.V  *
269143ce1d23SAneesh Kumar K.V  *	ext4_writepage() -> kmalloc() -> __alloc_pages() -> page_launder() ->
269243ce1d23SAneesh Kumar K.V  *		ext4_writepage()
269343ce1d23SAneesh Kumar K.V  *
269443ce1d23SAneesh Kumar K.V  * But since we don't do any block allocation we should not deadlock.
269543ce1d23SAneesh Kumar K.V  * Page also have the dirty flag cleared so we don't get recurive page_lock.
269661628a3fSMingming Cao  */
269743ce1d23SAneesh Kumar K.V static int ext4_writepage(struct page *page,
269864769240SAlex Tomas 			  struct writeback_control *wbc)
269964769240SAlex Tomas {
270064769240SAlex Tomas 	int ret = 0;
270161628a3fSMingming Cao 	loff_t size;
2702498e5f24STheodore Ts'o 	unsigned int len;
2703744692dcSJiaying Zhang 	struct buffer_head *page_bufs = NULL;
270461628a3fSMingming Cao 	struct inode *inode = page->mapping->host;
270564769240SAlex Tomas 
270643ce1d23SAneesh Kumar K.V 	trace_ext4_writepage(inode, page);
270761628a3fSMingming Cao 	size = i_size_read(inode);
270861628a3fSMingming Cao 	if (page->index == size >> PAGE_CACHE_SHIFT)
270961628a3fSMingming Cao 		len = size & ~PAGE_CACHE_MASK;
271061628a3fSMingming Cao 	else
271161628a3fSMingming Cao 		len = PAGE_CACHE_SIZE;
271261628a3fSMingming Cao 
2713f0e6c985SAneesh Kumar K.V 	if (page_has_buffers(page)) {
2714f0e6c985SAneesh Kumar K.V 		page_bufs = page_buffers(page);
2715f0e6c985SAneesh Kumar K.V 		if (walk_page_buffers(NULL, page_bufs, 0, len, NULL,
2716c364b22cSAneesh Kumar K.V 					ext4_bh_delay_or_unwritten)) {
271761628a3fSMingming Cao 			/*
2718f0e6c985SAneesh Kumar K.V 			 * We don't want to do  block allocation
2719f0e6c985SAneesh Kumar K.V 			 * So redirty the page and return
2720cd1aac32SAneesh Kumar K.V 			 * We may reach here when we do a journal commit
2721cd1aac32SAneesh Kumar K.V 			 * via journal_submit_inode_data_buffers.
2722cd1aac32SAneesh Kumar K.V 			 * If we don't have mapping block we just ignore
2723f0e6c985SAneesh Kumar K.V 			 * them. We can also reach here via shrink_page_list
2724f0e6c985SAneesh Kumar K.V 			 */
2725f0e6c985SAneesh Kumar K.V 			redirty_page_for_writepage(wbc, page);
2726f0e6c985SAneesh Kumar K.V 			unlock_page(page);
2727f0e6c985SAneesh Kumar K.V 			return 0;
2728f0e6c985SAneesh Kumar K.V 		}
2729f0e6c985SAneesh Kumar K.V 	} else {
2730f0e6c985SAneesh Kumar K.V 		/*
2731f0e6c985SAneesh Kumar K.V 		 * The test for page_has_buffers() is subtle:
2732f0e6c985SAneesh Kumar K.V 		 * We know the page is dirty but it lost buffers. That means
2733f0e6c985SAneesh Kumar K.V 		 * that at some moment in time after write_begin()/write_end()
2734f0e6c985SAneesh Kumar K.V 		 * has been called all buffers have been clean and thus they
2735f0e6c985SAneesh Kumar K.V 		 * must have been written at least once. So they are all
2736f0e6c985SAneesh Kumar K.V 		 * mapped and we can happily proceed with mapping them
2737f0e6c985SAneesh Kumar K.V 		 * and writing the page.
2738f0e6c985SAneesh Kumar K.V 		 *
2739f0e6c985SAneesh Kumar K.V 		 * Try to initialize the buffer_heads and check whether
2740f0e6c985SAneesh Kumar K.V 		 * all are mapped and non delay. We don't want to
2741f0e6c985SAneesh Kumar K.V 		 * do block allocation here.
2742f0e6c985SAneesh Kumar K.V 		 */
2743b767e78aSAneesh Kumar K.V 		ret = block_prepare_write(page, 0, len,
2744b920c755STheodore Ts'o 					  noalloc_get_block_write);
2745f0e6c985SAneesh Kumar K.V 		if (!ret) {
2746f0e6c985SAneesh Kumar K.V 			page_bufs = page_buffers(page);
2747f0e6c985SAneesh Kumar K.V 			/* check whether all are mapped and non delay */
2748f0e6c985SAneesh Kumar K.V 			if (walk_page_buffers(NULL, page_bufs, 0, len, NULL,
2749c364b22cSAneesh Kumar K.V 						ext4_bh_delay_or_unwritten)) {
2750f0e6c985SAneesh Kumar K.V 				redirty_page_for_writepage(wbc, page);
2751f0e6c985SAneesh Kumar K.V 				unlock_page(page);
2752f0e6c985SAneesh Kumar K.V 				return 0;
2753f0e6c985SAneesh Kumar K.V 			}
2754f0e6c985SAneesh Kumar K.V 		} else {
2755f0e6c985SAneesh Kumar K.V 			/*
2756f0e6c985SAneesh Kumar K.V 			 * We can't do block allocation here
2757f0e6c985SAneesh Kumar K.V 			 * so just redity the page and unlock
2758f0e6c985SAneesh Kumar K.V 			 * and return
275961628a3fSMingming Cao 			 */
276061628a3fSMingming Cao 			redirty_page_for_writepage(wbc, page);
276161628a3fSMingming Cao 			unlock_page(page);
276261628a3fSMingming Cao 			return 0;
276361628a3fSMingming Cao 		}
2764ed9b3e33SAneesh Kumar K.V 		/* now mark the buffer_heads as dirty and uptodate */
2765b767e78aSAneesh Kumar K.V 		block_commit_write(page, 0, len);
276664769240SAlex Tomas 	}
276764769240SAlex Tomas 
276843ce1d23SAneesh Kumar K.V 	if (PageChecked(page) && ext4_should_journal_data(inode)) {
276943ce1d23SAneesh Kumar K.V 		/*
277043ce1d23SAneesh Kumar K.V 		 * It's mmapped pagecache.  Add buffers and journal it.  There
277143ce1d23SAneesh Kumar K.V 		 * doesn't seem much point in redirtying the page here.
277243ce1d23SAneesh Kumar K.V 		 */
277343ce1d23SAneesh Kumar K.V 		ClearPageChecked(page);
27743f0ca309SWu Fengguang 		return __ext4_journalled_writepage(page, len);
277543ce1d23SAneesh Kumar K.V 	}
277643ce1d23SAneesh Kumar K.V 
2777206f7ab4SChristoph Hellwig 	if (page_bufs && buffer_uninit(page_bufs)) {
2778744692dcSJiaying Zhang 		ext4_set_bh_endio(page_bufs, inode);
2779744692dcSJiaying Zhang 		ret = block_write_full_page_endio(page, noalloc_get_block_write,
2780744692dcSJiaying Zhang 					    wbc, ext4_end_io_buffer_write);
2781744692dcSJiaying Zhang 	} else
2782b920c755STheodore Ts'o 		ret = block_write_full_page(page, noalloc_get_block_write,
2783f0e6c985SAneesh Kumar K.V 					    wbc);
278464769240SAlex Tomas 
278564769240SAlex Tomas 	return ret;
278664769240SAlex Tomas }
278764769240SAlex Tomas 
278861628a3fSMingming Cao /*
2789525f4ed8SMingming Cao  * This is called via ext4_da_writepages() to
2790525f4ed8SMingming Cao  * calulate the total number of credits to reserve to fit
2791525f4ed8SMingming Cao  * a single extent allocation into a single transaction,
2792525f4ed8SMingming Cao  * ext4_da_writpeages() will loop calling this before
2793525f4ed8SMingming Cao  * the block allocation.
279461628a3fSMingming Cao  */
2795525f4ed8SMingming Cao 
2796525f4ed8SMingming Cao static int ext4_da_writepages_trans_blocks(struct inode *inode)
2797525f4ed8SMingming Cao {
2798525f4ed8SMingming Cao 	int max_blocks = EXT4_I(inode)->i_reserved_data_blocks;
2799525f4ed8SMingming Cao 
2800525f4ed8SMingming Cao 	/*
2801525f4ed8SMingming Cao 	 * With non-extent format the journal credit needed to
2802525f4ed8SMingming Cao 	 * insert nrblocks contiguous block is dependent on
2803525f4ed8SMingming Cao 	 * number of contiguous block. So we will limit
2804525f4ed8SMingming Cao 	 * number of contiguous block to a sane value
2805525f4ed8SMingming Cao 	 */
280612e9b892SDmitry Monakhov 	if (!(ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)) &&
2807525f4ed8SMingming Cao 	    (max_blocks > EXT4_MAX_TRANS_DATA))
2808525f4ed8SMingming Cao 		max_blocks = EXT4_MAX_TRANS_DATA;
2809525f4ed8SMingming Cao 
2810525f4ed8SMingming Cao 	return ext4_chunk_trans_blocks(inode, max_blocks);
2811525f4ed8SMingming Cao }
281261628a3fSMingming Cao 
28138e48dcfbSTheodore Ts'o /*
28148e48dcfbSTheodore Ts'o  * write_cache_pages_da - walk the list of dirty pages of the given
28158e48dcfbSTheodore Ts'o  * address space and call the callback function (which usually writes
28168e48dcfbSTheodore Ts'o  * the pages).
28178e48dcfbSTheodore Ts'o  *
28188e48dcfbSTheodore Ts'o  * This is a forked version of write_cache_pages().  Differences:
28198e48dcfbSTheodore Ts'o  *	Range cyclic is ignored.
28208e48dcfbSTheodore Ts'o  *	no_nrwrite_index_update is always presumed true
28218e48dcfbSTheodore Ts'o  */
28228e48dcfbSTheodore Ts'o static int write_cache_pages_da(struct address_space *mapping,
28238e48dcfbSTheodore Ts'o 				struct writeback_control *wbc,
28248e48dcfbSTheodore Ts'o 				struct mpage_da_data *mpd)
28258e48dcfbSTheodore Ts'o {
28268e48dcfbSTheodore Ts'o 	int ret = 0;
28278e48dcfbSTheodore Ts'o 	int done = 0;
28288e48dcfbSTheodore Ts'o 	struct pagevec pvec;
28298e48dcfbSTheodore Ts'o 	int nr_pages;
28308e48dcfbSTheodore Ts'o 	pgoff_t index;
28318e48dcfbSTheodore Ts'o 	pgoff_t end;		/* Inclusive */
28328e48dcfbSTheodore Ts'o 	long nr_to_write = wbc->nr_to_write;
28338e48dcfbSTheodore Ts'o 
28348e48dcfbSTheodore Ts'o 	pagevec_init(&pvec, 0);
28358e48dcfbSTheodore Ts'o 	index = wbc->range_start >> PAGE_CACHE_SHIFT;
28368e48dcfbSTheodore Ts'o 	end = wbc->range_end >> PAGE_CACHE_SHIFT;
28378e48dcfbSTheodore Ts'o 
28388e48dcfbSTheodore Ts'o 	while (!done && (index <= end)) {
28398e48dcfbSTheodore Ts'o 		int i;
28408e48dcfbSTheodore Ts'o 
28418e48dcfbSTheodore Ts'o 		nr_pages = pagevec_lookup_tag(&pvec, mapping, &index,
28428e48dcfbSTheodore Ts'o 			      PAGECACHE_TAG_DIRTY,
28438e48dcfbSTheodore Ts'o 			      min(end - index, (pgoff_t)PAGEVEC_SIZE-1) + 1);
28448e48dcfbSTheodore Ts'o 		if (nr_pages == 0)
28458e48dcfbSTheodore Ts'o 			break;
28468e48dcfbSTheodore Ts'o 
28478e48dcfbSTheodore Ts'o 		for (i = 0; i < nr_pages; i++) {
28488e48dcfbSTheodore Ts'o 			struct page *page = pvec.pages[i];
28498e48dcfbSTheodore Ts'o 
28508e48dcfbSTheodore Ts'o 			/*
28518e48dcfbSTheodore Ts'o 			 * At this point, the page may be truncated or
28528e48dcfbSTheodore Ts'o 			 * invalidated (changing page->mapping to NULL), or
28538e48dcfbSTheodore Ts'o 			 * even swizzled back from swapper_space to tmpfs file
28548e48dcfbSTheodore Ts'o 			 * mapping. However, page->index will not change
28558e48dcfbSTheodore Ts'o 			 * because we have a reference on the page.
28568e48dcfbSTheodore Ts'o 			 */
28578e48dcfbSTheodore Ts'o 			if (page->index > end) {
28588e48dcfbSTheodore Ts'o 				done = 1;
28598e48dcfbSTheodore Ts'o 				break;
28608e48dcfbSTheodore Ts'o 			}
28618e48dcfbSTheodore Ts'o 
28628e48dcfbSTheodore Ts'o 			lock_page(page);
28638e48dcfbSTheodore Ts'o 
28648e48dcfbSTheodore Ts'o 			/*
28658e48dcfbSTheodore Ts'o 			 * Page truncated or invalidated. We can freely skip it
28668e48dcfbSTheodore Ts'o 			 * then, even for data integrity operations: the page
28678e48dcfbSTheodore Ts'o 			 * has disappeared concurrently, so there could be no
28688e48dcfbSTheodore Ts'o 			 * real expectation of this data interity operation
28698e48dcfbSTheodore Ts'o 			 * even if there is now a new, dirty page at the same
28708e48dcfbSTheodore Ts'o 			 * pagecache address.
28718e48dcfbSTheodore Ts'o 			 */
28728e48dcfbSTheodore Ts'o 			if (unlikely(page->mapping != mapping)) {
28738e48dcfbSTheodore Ts'o continue_unlock:
28748e48dcfbSTheodore Ts'o 				unlock_page(page);
28758e48dcfbSTheodore Ts'o 				continue;
28768e48dcfbSTheodore Ts'o 			}
28778e48dcfbSTheodore Ts'o 
28788e48dcfbSTheodore Ts'o 			if (!PageDirty(page)) {
28798e48dcfbSTheodore Ts'o 				/* someone wrote it for us */
28808e48dcfbSTheodore Ts'o 				goto continue_unlock;
28818e48dcfbSTheodore Ts'o 			}
28828e48dcfbSTheodore Ts'o 
28838e48dcfbSTheodore Ts'o 			if (PageWriteback(page)) {
28848e48dcfbSTheodore Ts'o 				if (wbc->sync_mode != WB_SYNC_NONE)
28858e48dcfbSTheodore Ts'o 					wait_on_page_writeback(page);
28868e48dcfbSTheodore Ts'o 				else
28878e48dcfbSTheodore Ts'o 					goto continue_unlock;
28888e48dcfbSTheodore Ts'o 			}
28898e48dcfbSTheodore Ts'o 
28908e48dcfbSTheodore Ts'o 			BUG_ON(PageWriteback(page));
28918e48dcfbSTheodore Ts'o 			if (!clear_page_dirty_for_io(page))
28928e48dcfbSTheodore Ts'o 				goto continue_unlock;
28938e48dcfbSTheodore Ts'o 
28948e48dcfbSTheodore Ts'o 			ret = __mpage_da_writepage(page, wbc, mpd);
28958e48dcfbSTheodore Ts'o 			if (unlikely(ret)) {
28968e48dcfbSTheodore Ts'o 				if (ret == AOP_WRITEPAGE_ACTIVATE) {
28978e48dcfbSTheodore Ts'o 					unlock_page(page);
28988e48dcfbSTheodore Ts'o 					ret = 0;
28998e48dcfbSTheodore Ts'o 				} else {
29008e48dcfbSTheodore Ts'o 					done = 1;
29018e48dcfbSTheodore Ts'o 					break;
29028e48dcfbSTheodore Ts'o 				}
29038e48dcfbSTheodore Ts'o 			}
29048e48dcfbSTheodore Ts'o 
29058e48dcfbSTheodore Ts'o 			if (nr_to_write > 0) {
29068e48dcfbSTheodore Ts'o 				nr_to_write--;
29078e48dcfbSTheodore Ts'o 				if (nr_to_write == 0 &&
29088e48dcfbSTheodore Ts'o 				    wbc->sync_mode == WB_SYNC_NONE) {
29098e48dcfbSTheodore Ts'o 					/*
29108e48dcfbSTheodore Ts'o 					 * We stop writing back only if we are
29118e48dcfbSTheodore Ts'o 					 * not doing integrity sync. In case of
29128e48dcfbSTheodore Ts'o 					 * integrity sync we have to keep going
29138e48dcfbSTheodore Ts'o 					 * because someone may be concurrently
29148e48dcfbSTheodore Ts'o 					 * dirtying pages, and we might have
29158e48dcfbSTheodore Ts'o 					 * synced a lot of newly appeared dirty
29168e48dcfbSTheodore Ts'o 					 * pages, but have not synced all of the
29178e48dcfbSTheodore Ts'o 					 * old dirty pages.
29188e48dcfbSTheodore Ts'o 					 */
29198e48dcfbSTheodore Ts'o 					done = 1;
29208e48dcfbSTheodore Ts'o 					break;
29218e48dcfbSTheodore Ts'o 				}
29228e48dcfbSTheodore Ts'o 			}
29238e48dcfbSTheodore Ts'o 		}
29248e48dcfbSTheodore Ts'o 		pagevec_release(&pvec);
29258e48dcfbSTheodore Ts'o 		cond_resched();
29268e48dcfbSTheodore Ts'o 	}
29278e48dcfbSTheodore Ts'o 	return ret;
29288e48dcfbSTheodore Ts'o }
29298e48dcfbSTheodore Ts'o 
29308e48dcfbSTheodore Ts'o 
293164769240SAlex Tomas static int ext4_da_writepages(struct address_space *mapping,
293264769240SAlex Tomas 			      struct writeback_control *wbc)
293364769240SAlex Tomas {
293422208dedSAneesh Kumar K.V 	pgoff_t	index;
293522208dedSAneesh Kumar K.V 	int range_whole = 0;
293661628a3fSMingming Cao 	handle_t *handle = NULL;
2937df22291fSAneesh Kumar K.V 	struct mpage_da_data mpd;
29385e745b04SAneesh Kumar K.V 	struct inode *inode = mapping->host;
2939498e5f24STheodore Ts'o 	int pages_written = 0;
2940498e5f24STheodore Ts'o 	long pages_skipped;
294155138e0bSTheodore Ts'o 	unsigned int max_pages;
29422acf2c26SAneesh Kumar K.V 	int range_cyclic, cycled = 1, io_done = 0;
294355138e0bSTheodore Ts'o 	int needed_blocks, ret = 0;
294455138e0bSTheodore Ts'o 	long desired_nr_to_write, nr_to_writebump = 0;
2945de89de6eSTheodore Ts'o 	loff_t range_start = wbc->range_start;
29465e745b04SAneesh Kumar K.V 	struct ext4_sb_info *sbi = EXT4_SB(mapping->host->i_sb);
294761628a3fSMingming Cao 
29489bffad1eSTheodore Ts'o 	trace_ext4_da_writepages(inode, wbc);
2949ba80b101STheodore Ts'o 
295061628a3fSMingming Cao 	/*
295161628a3fSMingming Cao 	 * No pages to write? This is mainly a kludge to avoid starting
295261628a3fSMingming Cao 	 * a transaction for special inodes like journal inode on last iput()
295361628a3fSMingming Cao 	 * because that could violate lock ordering on umount
295461628a3fSMingming Cao 	 */
2955a1d6cc56SAneesh Kumar K.V 	if (!mapping->nrpages || !mapping_tagged(mapping, PAGECACHE_TAG_DIRTY))
295661628a3fSMingming Cao 		return 0;
29572a21e37eSTheodore Ts'o 
29582a21e37eSTheodore Ts'o 	/*
29592a21e37eSTheodore Ts'o 	 * If the filesystem has aborted, it is read-only, so return
29602a21e37eSTheodore Ts'o 	 * right away instead of dumping stack traces later on that
29612a21e37eSTheodore Ts'o 	 * will obscure the real source of the problem.  We test
29624ab2f15bSTheodore Ts'o 	 * EXT4_MF_FS_ABORTED instead of sb->s_flag's MS_RDONLY because
29632a21e37eSTheodore Ts'o 	 * the latter could be true if the filesystem is mounted
29642a21e37eSTheodore Ts'o 	 * read-only, and in that case, ext4_da_writepages should
29652a21e37eSTheodore Ts'o 	 * *never* be called, so if that ever happens, we would want
29662a21e37eSTheodore Ts'o 	 * the stack trace.
29672a21e37eSTheodore Ts'o 	 */
29684ab2f15bSTheodore Ts'o 	if (unlikely(sbi->s_mount_flags & EXT4_MF_FS_ABORTED))
29692a21e37eSTheodore Ts'o 		return -EROFS;
29702a21e37eSTheodore Ts'o 
297122208dedSAneesh Kumar K.V 	if (wbc->range_start == 0 && wbc->range_end == LLONG_MAX)
297222208dedSAneesh Kumar K.V 		range_whole = 1;
297361628a3fSMingming Cao 
29742acf2c26SAneesh Kumar K.V 	range_cyclic = wbc->range_cyclic;
29752acf2c26SAneesh Kumar K.V 	if (wbc->range_cyclic) {
297622208dedSAneesh Kumar K.V 		index = mapping->writeback_index;
29772acf2c26SAneesh Kumar K.V 		if (index)
29782acf2c26SAneesh Kumar K.V 			cycled = 0;
29792acf2c26SAneesh Kumar K.V 		wbc->range_start = index << PAGE_CACHE_SHIFT;
29802acf2c26SAneesh Kumar K.V 		wbc->range_end  = LLONG_MAX;
29812acf2c26SAneesh Kumar K.V 		wbc->range_cyclic = 0;
29822acf2c26SAneesh Kumar K.V 	} else
298322208dedSAneesh Kumar K.V 		index = wbc->range_start >> PAGE_CACHE_SHIFT;
2984a1d6cc56SAneesh Kumar K.V 
298555138e0bSTheodore Ts'o 	/*
298655138e0bSTheodore Ts'o 	 * This works around two forms of stupidity.  The first is in
298755138e0bSTheodore Ts'o 	 * the writeback code, which caps the maximum number of pages
298855138e0bSTheodore Ts'o 	 * written to be 1024 pages.  This is wrong on multiple
298955138e0bSTheodore Ts'o 	 * levels; different architectues have a different page size,
299055138e0bSTheodore Ts'o 	 * which changes the maximum amount of data which gets
299155138e0bSTheodore Ts'o 	 * written.  Secondly, 4 megabytes is way too small.  XFS
299255138e0bSTheodore Ts'o 	 * forces this value to be 16 megabytes by multiplying
299355138e0bSTheodore Ts'o 	 * nr_to_write parameter by four, and then relies on its
299455138e0bSTheodore Ts'o 	 * allocator to allocate larger extents to make them
299555138e0bSTheodore Ts'o 	 * contiguous.  Unfortunately this brings us to the second
299655138e0bSTheodore Ts'o 	 * stupidity, which is that ext4's mballoc code only allocates
299755138e0bSTheodore Ts'o 	 * at most 2048 blocks.  So we force contiguous writes up to
299855138e0bSTheodore Ts'o 	 * the number of dirty blocks in the inode, or
299955138e0bSTheodore Ts'o 	 * sbi->max_writeback_mb_bump whichever is smaller.
300055138e0bSTheodore Ts'o 	 */
300155138e0bSTheodore Ts'o 	max_pages = sbi->s_max_writeback_mb_bump << (20 - PAGE_CACHE_SHIFT);
300255138e0bSTheodore Ts'o 	if (!range_cyclic && range_whole)
300355138e0bSTheodore Ts'o 		desired_nr_to_write = wbc->nr_to_write * 8;
300455138e0bSTheodore Ts'o 	else
300555138e0bSTheodore Ts'o 		desired_nr_to_write = ext4_num_dirty_pages(inode, index,
300655138e0bSTheodore Ts'o 							   max_pages);
300755138e0bSTheodore Ts'o 	if (desired_nr_to_write > max_pages)
300855138e0bSTheodore Ts'o 		desired_nr_to_write = max_pages;
300955138e0bSTheodore Ts'o 
301055138e0bSTheodore Ts'o 	if (wbc->nr_to_write < desired_nr_to_write) {
301155138e0bSTheodore Ts'o 		nr_to_writebump = desired_nr_to_write - wbc->nr_to_write;
301255138e0bSTheodore Ts'o 		wbc->nr_to_write = desired_nr_to_write;
301355138e0bSTheodore Ts'o 	}
301455138e0bSTheodore Ts'o 
3015df22291fSAneesh Kumar K.V 	mpd.wbc = wbc;
3016df22291fSAneesh Kumar K.V 	mpd.inode = mapping->host;
3017df22291fSAneesh Kumar K.V 
301822208dedSAneesh Kumar K.V 	pages_skipped = wbc->pages_skipped;
301922208dedSAneesh Kumar K.V 
30202acf2c26SAneesh Kumar K.V retry:
302122208dedSAneesh Kumar K.V 	while (!ret && wbc->nr_to_write > 0) {
3022a1d6cc56SAneesh Kumar K.V 
3023a1d6cc56SAneesh Kumar K.V 		/*
3024a1d6cc56SAneesh Kumar K.V 		 * we  insert one extent at a time. So we need
3025a1d6cc56SAneesh Kumar K.V 		 * credit needed for single extent allocation.
3026a1d6cc56SAneesh Kumar K.V 		 * journalled mode is currently not supported
3027a1d6cc56SAneesh Kumar K.V 		 * by delalloc
3028a1d6cc56SAneesh Kumar K.V 		 */
3029a1d6cc56SAneesh Kumar K.V 		BUG_ON(ext4_should_journal_data(inode));
3030525f4ed8SMingming Cao 		needed_blocks = ext4_da_writepages_trans_blocks(inode);
3031a1d6cc56SAneesh Kumar K.V 
303261628a3fSMingming Cao 		/* start a new transaction*/
303361628a3fSMingming Cao 		handle = ext4_journal_start(inode, needed_blocks);
303461628a3fSMingming Cao 		if (IS_ERR(handle)) {
303561628a3fSMingming Cao 			ret = PTR_ERR(handle);
30361693918eSTheodore Ts'o 			ext4_msg(inode->i_sb, KERN_CRIT, "%s: jbd2_start: "
3037fbe845ddSCurt Wohlgemuth 			       "%ld pages, ino %lu; err %d", __func__,
3038a1d6cc56SAneesh Kumar K.V 				wbc->nr_to_write, inode->i_ino, ret);
303961628a3fSMingming Cao 			goto out_writepages;
304061628a3fSMingming Cao 		}
3041f63e6005STheodore Ts'o 
3042f63e6005STheodore Ts'o 		/*
3043f63e6005STheodore Ts'o 		 * Now call __mpage_da_writepage to find the next
3044f63e6005STheodore Ts'o 		 * contiguous region of logical blocks that need
3045f63e6005STheodore Ts'o 		 * blocks to be allocated by ext4.  We don't actually
3046f63e6005STheodore Ts'o 		 * submit the blocks for I/O here, even though
3047f63e6005STheodore Ts'o 		 * write_cache_pages thinks it will, and will set the
3048f63e6005STheodore Ts'o 		 * pages as clean for write before calling
3049f63e6005STheodore Ts'o 		 * __mpage_da_writepage().
3050f63e6005STheodore Ts'o 		 */
3051f63e6005STheodore Ts'o 		mpd.b_size = 0;
3052f63e6005STheodore Ts'o 		mpd.b_state = 0;
3053f63e6005STheodore Ts'o 		mpd.b_blocknr = 0;
3054f63e6005STheodore Ts'o 		mpd.first_page = 0;
3055f63e6005STheodore Ts'o 		mpd.next_page = 0;
3056f63e6005STheodore Ts'o 		mpd.io_done = 0;
3057f63e6005STheodore Ts'o 		mpd.pages_written = 0;
3058f63e6005STheodore Ts'o 		mpd.retval = 0;
30598e48dcfbSTheodore Ts'o 		ret = write_cache_pages_da(mapping, wbc, &mpd);
3060f63e6005STheodore Ts'o 		/*
3061af901ca1SAndré Goddard Rosa 		 * If we have a contiguous extent of pages and we
3062f63e6005STheodore Ts'o 		 * haven't done the I/O yet, map the blocks and submit
3063f63e6005STheodore Ts'o 		 * them for I/O.
3064f63e6005STheodore Ts'o 		 */
3065f63e6005STheodore Ts'o 		if (!mpd.io_done && mpd.next_page != mpd.first_page) {
3066f63e6005STheodore Ts'o 			if (mpage_da_map_blocks(&mpd) == 0)
3067f63e6005STheodore Ts'o 				mpage_da_submit_io(&mpd);
3068f63e6005STheodore Ts'o 			mpd.io_done = 1;
3069f63e6005STheodore Ts'o 			ret = MPAGE_DA_EXTENT_TAIL;
3070f63e6005STheodore Ts'o 		}
3071b3a3ca8cSTheodore Ts'o 		trace_ext4_da_write_pages(inode, &mpd);
3072f63e6005STheodore Ts'o 		wbc->nr_to_write -= mpd.pages_written;
3073df22291fSAneesh Kumar K.V 
307461628a3fSMingming Cao 		ext4_journal_stop(handle);
3075df22291fSAneesh Kumar K.V 
30768f64b32eSEric Sandeen 		if ((mpd.retval == -ENOSPC) && sbi->s_journal) {
307722208dedSAneesh Kumar K.V 			/* commit the transaction which would
307822208dedSAneesh Kumar K.V 			 * free blocks released in the transaction
307922208dedSAneesh Kumar K.V 			 * and try again
308022208dedSAneesh Kumar K.V 			 */
3081df22291fSAneesh Kumar K.V 			jbd2_journal_force_commit_nested(sbi->s_journal);
308222208dedSAneesh Kumar K.V 			wbc->pages_skipped = pages_skipped;
308322208dedSAneesh Kumar K.V 			ret = 0;
308422208dedSAneesh Kumar K.V 		} else if (ret == MPAGE_DA_EXTENT_TAIL) {
3085a1d6cc56SAneesh Kumar K.V 			/*
3086a1d6cc56SAneesh Kumar K.V 			 * got one extent now try with
3087a1d6cc56SAneesh Kumar K.V 			 * rest of the pages
3088a1d6cc56SAneesh Kumar K.V 			 */
308922208dedSAneesh Kumar K.V 			pages_written += mpd.pages_written;
309022208dedSAneesh Kumar K.V 			wbc->pages_skipped = pages_skipped;
3091a1d6cc56SAneesh Kumar K.V 			ret = 0;
30922acf2c26SAneesh Kumar K.V 			io_done = 1;
309322208dedSAneesh Kumar K.V 		} else if (wbc->nr_to_write)
309461628a3fSMingming Cao 			/*
309561628a3fSMingming Cao 			 * There is no more writeout needed
309661628a3fSMingming Cao 			 * or we requested for a noblocking writeout
309761628a3fSMingming Cao 			 * and we found the device congested
309861628a3fSMingming Cao 			 */
309961628a3fSMingming Cao 			break;
310061628a3fSMingming Cao 	}
31012acf2c26SAneesh Kumar K.V 	if (!io_done && !cycled) {
31022acf2c26SAneesh Kumar K.V 		cycled = 1;
31032acf2c26SAneesh Kumar K.V 		index = 0;
31042acf2c26SAneesh Kumar K.V 		wbc->range_start = index << PAGE_CACHE_SHIFT;
31052acf2c26SAneesh Kumar K.V 		wbc->range_end  = mapping->writeback_index - 1;
31062acf2c26SAneesh Kumar K.V 		goto retry;
31072acf2c26SAneesh Kumar K.V 	}
310822208dedSAneesh Kumar K.V 	if (pages_skipped != wbc->pages_skipped)
31091693918eSTheodore Ts'o 		ext4_msg(inode->i_sb, KERN_CRIT,
31101693918eSTheodore Ts'o 			 "This should not happen leaving %s "
3111fbe845ddSCurt Wohlgemuth 			 "with nr_to_write = %ld ret = %d",
311222208dedSAneesh Kumar K.V 			 __func__, wbc->nr_to_write, ret);
311361628a3fSMingming Cao 
311422208dedSAneesh Kumar K.V 	/* Update index */
311522208dedSAneesh Kumar K.V 	index += pages_written;
31162acf2c26SAneesh Kumar K.V 	wbc->range_cyclic = range_cyclic;
311722208dedSAneesh Kumar K.V 	if (wbc->range_cyclic || (range_whole && wbc->nr_to_write > 0))
311822208dedSAneesh Kumar K.V 		/*
311922208dedSAneesh Kumar K.V 		 * set the writeback_index so that range_cyclic
312022208dedSAneesh Kumar K.V 		 * mode will write it back later
312122208dedSAneesh Kumar K.V 		 */
312222208dedSAneesh Kumar K.V 		mapping->writeback_index = index;
3123a1d6cc56SAneesh Kumar K.V 
312461628a3fSMingming Cao out_writepages:
312522208dedSAneesh Kumar K.V 	wbc->nr_to_write -= nr_to_writebump;
3126de89de6eSTheodore Ts'o 	wbc->range_start = range_start;
31279bffad1eSTheodore Ts'o 	trace_ext4_da_writepages_result(inode, wbc, ret, pages_written);
312861628a3fSMingming Cao 	return ret;
312964769240SAlex Tomas }
313064769240SAlex Tomas 
313179f0be8dSAneesh Kumar K.V #define FALL_BACK_TO_NONDELALLOC 1
313279f0be8dSAneesh Kumar K.V static int ext4_nonda_switch(struct super_block *sb)
313379f0be8dSAneesh Kumar K.V {
313479f0be8dSAneesh Kumar K.V 	s64 free_blocks, dirty_blocks;
313579f0be8dSAneesh Kumar K.V 	struct ext4_sb_info *sbi = EXT4_SB(sb);
313679f0be8dSAneesh Kumar K.V 
313779f0be8dSAneesh Kumar K.V 	/*
313879f0be8dSAneesh Kumar K.V 	 * switch to non delalloc mode if we are running low
313979f0be8dSAneesh Kumar K.V 	 * on free block. The free block accounting via percpu
3140179f7ebfSEric Dumazet 	 * counters can get slightly wrong with percpu_counter_batch getting
314179f0be8dSAneesh Kumar K.V 	 * accumulated on each CPU without updating global counters
314279f0be8dSAneesh Kumar K.V 	 * Delalloc need an accurate free block accounting. So switch
314379f0be8dSAneesh Kumar K.V 	 * to non delalloc when we are near to error range.
314479f0be8dSAneesh Kumar K.V 	 */
314579f0be8dSAneesh Kumar K.V 	free_blocks  = percpu_counter_read_positive(&sbi->s_freeblocks_counter);
314679f0be8dSAneesh Kumar K.V 	dirty_blocks = percpu_counter_read_positive(&sbi->s_dirtyblocks_counter);
314779f0be8dSAneesh Kumar K.V 	if (2 * free_blocks < 3 * dirty_blocks ||
314879f0be8dSAneesh Kumar K.V 		free_blocks < (dirty_blocks + EXT4_FREEBLOCKS_WATERMARK)) {
314979f0be8dSAneesh Kumar K.V 		/*
3150c8afb446SEric Sandeen 		 * free block count is less than 150% of dirty blocks
3151c8afb446SEric Sandeen 		 * or free blocks is less than watermark
315279f0be8dSAneesh Kumar K.V 		 */
315379f0be8dSAneesh Kumar K.V 		return 1;
315479f0be8dSAneesh Kumar K.V 	}
3155c8afb446SEric Sandeen 	/*
3156c8afb446SEric Sandeen 	 * Even if we don't switch but are nearing capacity,
3157c8afb446SEric Sandeen 	 * start pushing delalloc when 1/2 of free blocks are dirty.
3158c8afb446SEric Sandeen 	 */
3159c8afb446SEric Sandeen 	if (free_blocks < 2 * dirty_blocks)
3160c8afb446SEric Sandeen 		writeback_inodes_sb_if_idle(sb);
3161c8afb446SEric Sandeen 
316279f0be8dSAneesh Kumar K.V 	return 0;
316379f0be8dSAneesh Kumar K.V }
316479f0be8dSAneesh Kumar K.V 
316564769240SAlex Tomas static int ext4_da_write_begin(struct file *file, struct address_space *mapping,
316664769240SAlex Tomas 			       loff_t pos, unsigned len, unsigned flags,
316764769240SAlex Tomas 			       struct page **pagep, void **fsdata)
316864769240SAlex Tomas {
316972b8ab9dSEric Sandeen 	int ret, retries = 0;
317064769240SAlex Tomas 	struct page *page;
317164769240SAlex Tomas 	pgoff_t index;
317264769240SAlex Tomas 	struct inode *inode = mapping->host;
317364769240SAlex Tomas 	handle_t *handle;
317464769240SAlex Tomas 
317564769240SAlex Tomas 	index = pos >> PAGE_CACHE_SHIFT;
317679f0be8dSAneesh Kumar K.V 
317779f0be8dSAneesh Kumar K.V 	if (ext4_nonda_switch(inode->i_sb)) {
317879f0be8dSAneesh Kumar K.V 		*fsdata = (void *)FALL_BACK_TO_NONDELALLOC;
317979f0be8dSAneesh Kumar K.V 		return ext4_write_begin(file, mapping, pos,
318079f0be8dSAneesh Kumar K.V 					len, flags, pagep, fsdata);
318179f0be8dSAneesh Kumar K.V 	}
318279f0be8dSAneesh Kumar K.V 	*fsdata = (void *)0;
31839bffad1eSTheodore Ts'o 	trace_ext4_da_write_begin(inode, pos, len, flags);
3184d2a17637SMingming Cao retry:
318564769240SAlex Tomas 	/*
318664769240SAlex Tomas 	 * With delayed allocation, we don't log the i_disksize update
318764769240SAlex Tomas 	 * if there is delayed block allocation. But we still need
318864769240SAlex Tomas 	 * to journalling the i_disksize update if writes to the end
318964769240SAlex Tomas 	 * of file which has an already mapped buffer.
319064769240SAlex Tomas 	 */
319164769240SAlex Tomas 	handle = ext4_journal_start(inode, 1);
319264769240SAlex Tomas 	if (IS_ERR(handle)) {
319364769240SAlex Tomas 		ret = PTR_ERR(handle);
319464769240SAlex Tomas 		goto out;
319564769240SAlex Tomas 	}
3196ebd3610bSJan Kara 	/* We cannot recurse into the filesystem as the transaction is already
3197ebd3610bSJan Kara 	 * started */
3198ebd3610bSJan Kara 	flags |= AOP_FLAG_NOFS;
319964769240SAlex Tomas 
320054566b2cSNick Piggin 	page = grab_cache_page_write_begin(mapping, index, flags);
3201d5a0d4f7SEric Sandeen 	if (!page) {
3202d5a0d4f7SEric Sandeen 		ext4_journal_stop(handle);
3203d5a0d4f7SEric Sandeen 		ret = -ENOMEM;
3204d5a0d4f7SEric Sandeen 		goto out;
3205d5a0d4f7SEric Sandeen 	}
320664769240SAlex Tomas 	*pagep = page;
320764769240SAlex Tomas 
320864769240SAlex Tomas 	ret = block_write_begin(file, mapping, pos, len, flags, pagep, fsdata,
320964769240SAlex Tomas 				ext4_da_get_block_prep);
321064769240SAlex Tomas 	if (ret < 0) {
321164769240SAlex Tomas 		unlock_page(page);
321264769240SAlex Tomas 		ext4_journal_stop(handle);
321364769240SAlex Tomas 		page_cache_release(page);
3214ae4d5372SAneesh Kumar K.V 		/*
3215ae4d5372SAneesh Kumar K.V 		 * block_write_begin may have instantiated a few blocks
3216ae4d5372SAneesh Kumar K.V 		 * outside i_size.  Trim these off again. Don't need
3217ae4d5372SAneesh Kumar K.V 		 * i_size_read because we hold i_mutex.
3218ae4d5372SAneesh Kumar K.V 		 */
3219ae4d5372SAneesh Kumar K.V 		if (pos + len > inode->i_size)
3220b9a4207dSJan Kara 			ext4_truncate_failed_write(inode);
322164769240SAlex Tomas 	}
322264769240SAlex Tomas 
3223d2a17637SMingming Cao 	if (ret == -ENOSPC && ext4_should_retry_alloc(inode->i_sb, &retries))
3224d2a17637SMingming Cao 		goto retry;
322564769240SAlex Tomas out:
322664769240SAlex Tomas 	return ret;
322764769240SAlex Tomas }
322864769240SAlex Tomas 
3229632eaeabSMingming Cao /*
3230632eaeabSMingming Cao  * Check if we should update i_disksize
3231632eaeabSMingming Cao  * when write to the end of file but not require block allocation
3232632eaeabSMingming Cao  */
3233632eaeabSMingming Cao static int ext4_da_should_update_i_disksize(struct page *page,
3234632eaeabSMingming Cao 					    unsigned long offset)
3235632eaeabSMingming Cao {
3236632eaeabSMingming Cao 	struct buffer_head *bh;
3237632eaeabSMingming Cao 	struct inode *inode = page->mapping->host;
3238632eaeabSMingming Cao 	unsigned int idx;
3239632eaeabSMingming Cao 	int i;
3240632eaeabSMingming Cao 
3241632eaeabSMingming Cao 	bh = page_buffers(page);
3242632eaeabSMingming Cao 	idx = offset >> inode->i_blkbits;
3243632eaeabSMingming Cao 
3244632eaeabSMingming Cao 	for (i = 0; i < idx; i++)
3245632eaeabSMingming Cao 		bh = bh->b_this_page;
3246632eaeabSMingming Cao 
324729fa89d0SAneesh Kumar K.V 	if (!buffer_mapped(bh) || (buffer_delay(bh)) || buffer_unwritten(bh))
3248632eaeabSMingming Cao 		return 0;
3249632eaeabSMingming Cao 	return 1;
3250632eaeabSMingming Cao }
3251632eaeabSMingming Cao 
325264769240SAlex Tomas static int ext4_da_write_end(struct file *file,
325364769240SAlex Tomas 			     struct address_space *mapping,
325464769240SAlex Tomas 			     loff_t pos, unsigned len, unsigned copied,
325564769240SAlex Tomas 			     struct page *page, void *fsdata)
325664769240SAlex Tomas {
325764769240SAlex Tomas 	struct inode *inode = mapping->host;
325864769240SAlex Tomas 	int ret = 0, ret2;
325964769240SAlex Tomas 	handle_t *handle = ext4_journal_current_handle();
326064769240SAlex Tomas 	loff_t new_i_size;
3261632eaeabSMingming Cao 	unsigned long start, end;
326279f0be8dSAneesh Kumar K.V 	int write_mode = (int)(unsigned long)fsdata;
326379f0be8dSAneesh Kumar K.V 
326479f0be8dSAneesh Kumar K.V 	if (write_mode == FALL_BACK_TO_NONDELALLOC) {
326579f0be8dSAneesh Kumar K.V 		if (ext4_should_order_data(inode)) {
326679f0be8dSAneesh Kumar K.V 			return ext4_ordered_write_end(file, mapping, pos,
326779f0be8dSAneesh Kumar K.V 					len, copied, page, fsdata);
326879f0be8dSAneesh Kumar K.V 		} else if (ext4_should_writeback_data(inode)) {
326979f0be8dSAneesh Kumar K.V 			return ext4_writeback_write_end(file, mapping, pos,
327079f0be8dSAneesh Kumar K.V 					len, copied, page, fsdata);
327179f0be8dSAneesh Kumar K.V 		} else {
327279f0be8dSAneesh Kumar K.V 			BUG();
327379f0be8dSAneesh Kumar K.V 		}
327479f0be8dSAneesh Kumar K.V 	}
3275632eaeabSMingming Cao 
32769bffad1eSTheodore Ts'o 	trace_ext4_da_write_end(inode, pos, len, copied);
3277632eaeabSMingming Cao 	start = pos & (PAGE_CACHE_SIZE - 1);
3278632eaeabSMingming Cao 	end = start + copied - 1;
327964769240SAlex Tomas 
328064769240SAlex Tomas 	/*
328164769240SAlex Tomas 	 * generic_write_end() will run mark_inode_dirty() if i_size
328264769240SAlex Tomas 	 * changes.  So let's piggyback the i_disksize mark_inode_dirty
328364769240SAlex Tomas 	 * into that.
328464769240SAlex Tomas 	 */
328564769240SAlex Tomas 
328664769240SAlex Tomas 	new_i_size = pos + copied;
3287632eaeabSMingming Cao 	if (new_i_size > EXT4_I(inode)->i_disksize) {
3288632eaeabSMingming Cao 		if (ext4_da_should_update_i_disksize(page, end)) {
3289632eaeabSMingming Cao 			down_write(&EXT4_I(inode)->i_data_sem);
3290632eaeabSMingming Cao 			if (new_i_size > EXT4_I(inode)->i_disksize) {
329164769240SAlex Tomas 				/*
3292632eaeabSMingming Cao 				 * Updating i_disksize when extending file
3293632eaeabSMingming Cao 				 * without needing block allocation
329464769240SAlex Tomas 				 */
329564769240SAlex Tomas 				if (ext4_should_order_data(inode))
3296632eaeabSMingming Cao 					ret = ext4_jbd2_file_inode(handle,
3297632eaeabSMingming Cao 								   inode);
329864769240SAlex Tomas 
329964769240SAlex Tomas 				EXT4_I(inode)->i_disksize = new_i_size;
330064769240SAlex Tomas 			}
3301632eaeabSMingming Cao 			up_write(&EXT4_I(inode)->i_data_sem);
3302cf17fea6SAneesh Kumar K.V 			/* We need to mark inode dirty even if
3303cf17fea6SAneesh Kumar K.V 			 * new_i_size is less that inode->i_size
3304cf17fea6SAneesh Kumar K.V 			 * bu greater than i_disksize.(hint delalloc)
3305cf17fea6SAneesh Kumar K.V 			 */
3306cf17fea6SAneesh Kumar K.V 			ext4_mark_inode_dirty(handle, inode);
3307632eaeabSMingming Cao 		}
3308632eaeabSMingming Cao 	}
330964769240SAlex Tomas 	ret2 = generic_write_end(file, mapping, pos, len, copied,
331064769240SAlex Tomas 							page, fsdata);
331164769240SAlex Tomas 	copied = ret2;
331264769240SAlex Tomas 	if (ret2 < 0)
331364769240SAlex Tomas 		ret = ret2;
331464769240SAlex Tomas 	ret2 = ext4_journal_stop(handle);
331564769240SAlex Tomas 	if (!ret)
331664769240SAlex Tomas 		ret = ret2;
331764769240SAlex Tomas 
331864769240SAlex Tomas 	return ret ? ret : copied;
331964769240SAlex Tomas }
332064769240SAlex Tomas 
332164769240SAlex Tomas static void ext4_da_invalidatepage(struct page *page, unsigned long offset)
332264769240SAlex Tomas {
332364769240SAlex Tomas 	/*
332464769240SAlex Tomas 	 * Drop reserved blocks
332564769240SAlex Tomas 	 */
332664769240SAlex Tomas 	BUG_ON(!PageLocked(page));
332764769240SAlex Tomas 	if (!page_has_buffers(page))
332864769240SAlex Tomas 		goto out;
332964769240SAlex Tomas 
3330d2a17637SMingming Cao 	ext4_da_page_release_reservation(page, offset);
333164769240SAlex Tomas 
333264769240SAlex Tomas out:
333364769240SAlex Tomas 	ext4_invalidatepage(page, offset);
333464769240SAlex Tomas 
333564769240SAlex Tomas 	return;
333664769240SAlex Tomas }
333764769240SAlex Tomas 
3338ccd2506bSTheodore Ts'o /*
3339ccd2506bSTheodore Ts'o  * Force all delayed allocation blocks to be allocated for a given inode.
3340ccd2506bSTheodore Ts'o  */
3341ccd2506bSTheodore Ts'o int ext4_alloc_da_blocks(struct inode *inode)
3342ccd2506bSTheodore Ts'o {
3343fb40ba0dSTheodore Ts'o 	trace_ext4_alloc_da_blocks(inode);
3344fb40ba0dSTheodore Ts'o 
3345ccd2506bSTheodore Ts'o 	if (!EXT4_I(inode)->i_reserved_data_blocks &&
3346ccd2506bSTheodore Ts'o 	    !EXT4_I(inode)->i_reserved_meta_blocks)
3347ccd2506bSTheodore Ts'o 		return 0;
3348ccd2506bSTheodore Ts'o 
3349ccd2506bSTheodore Ts'o 	/*
3350ccd2506bSTheodore Ts'o 	 * We do something simple for now.  The filemap_flush() will
3351ccd2506bSTheodore Ts'o 	 * also start triggering a write of the data blocks, which is
3352ccd2506bSTheodore Ts'o 	 * not strictly speaking necessary (and for users of
3353ccd2506bSTheodore Ts'o 	 * laptop_mode, not even desirable).  However, to do otherwise
3354ccd2506bSTheodore Ts'o 	 * would require replicating code paths in:
3355ccd2506bSTheodore Ts'o 	 *
3356ccd2506bSTheodore Ts'o 	 * ext4_da_writepages() ->
3357ccd2506bSTheodore Ts'o 	 *    write_cache_pages() ---> (via passed in callback function)
3358ccd2506bSTheodore Ts'o 	 *        __mpage_da_writepage() -->
3359ccd2506bSTheodore Ts'o 	 *           mpage_add_bh_to_extent()
3360ccd2506bSTheodore Ts'o 	 *           mpage_da_map_blocks()
3361ccd2506bSTheodore Ts'o 	 *
3362ccd2506bSTheodore Ts'o 	 * The problem is that write_cache_pages(), located in
3363ccd2506bSTheodore Ts'o 	 * mm/page-writeback.c, marks pages clean in preparation for
3364ccd2506bSTheodore Ts'o 	 * doing I/O, which is not desirable if we're not planning on
3365ccd2506bSTheodore Ts'o 	 * doing I/O at all.
3366ccd2506bSTheodore Ts'o 	 *
3367ccd2506bSTheodore Ts'o 	 * We could call write_cache_pages(), and then redirty all of
3368ccd2506bSTheodore Ts'o 	 * the pages by calling redirty_page_for_writeback() but that
3369ccd2506bSTheodore Ts'o 	 * would be ugly in the extreme.  So instead we would need to
3370ccd2506bSTheodore Ts'o 	 * replicate parts of the code in the above functions,
3371ccd2506bSTheodore Ts'o 	 * simplifying them becuase we wouldn't actually intend to
3372ccd2506bSTheodore Ts'o 	 * write out the pages, but rather only collect contiguous
3373ccd2506bSTheodore Ts'o 	 * logical block extents, call the multi-block allocator, and
3374ccd2506bSTheodore Ts'o 	 * then update the buffer heads with the block allocations.
3375ccd2506bSTheodore Ts'o 	 *
3376ccd2506bSTheodore Ts'o 	 * For now, though, we'll cheat by calling filemap_flush(),
3377ccd2506bSTheodore Ts'o 	 * which will map the blocks, and start the I/O, but not
3378ccd2506bSTheodore Ts'o 	 * actually wait for the I/O to complete.
3379ccd2506bSTheodore Ts'o 	 */
3380ccd2506bSTheodore Ts'o 	return filemap_flush(inode->i_mapping);
3381ccd2506bSTheodore Ts'o }
338264769240SAlex Tomas 
338364769240SAlex Tomas /*
3384ac27a0ecSDave Kleikamp  * bmap() is special.  It gets used by applications such as lilo and by
3385ac27a0ecSDave Kleikamp  * the swapper to find the on-disk block of a specific piece of data.
3386ac27a0ecSDave Kleikamp  *
3387ac27a0ecSDave Kleikamp  * Naturally, this is dangerous if the block concerned is still in the
3388617ba13bSMingming Cao  * journal.  If somebody makes a swapfile on an ext4 data-journaling
3389ac27a0ecSDave Kleikamp  * filesystem and enables swap, then they may get a nasty shock when the
3390ac27a0ecSDave Kleikamp  * data getting swapped to that swapfile suddenly gets overwritten by
3391ac27a0ecSDave Kleikamp  * the original zero's written out previously to the journal and
3392ac27a0ecSDave Kleikamp  * awaiting writeback in the kernel's buffer cache.
3393ac27a0ecSDave Kleikamp  *
3394ac27a0ecSDave Kleikamp  * So, if we see any bmap calls here on a modified, data-journaled file,
3395ac27a0ecSDave Kleikamp  * take extra steps to flush any blocks which might be in the cache.
3396ac27a0ecSDave Kleikamp  */
3397617ba13bSMingming Cao static sector_t ext4_bmap(struct address_space *mapping, sector_t block)
3398ac27a0ecSDave Kleikamp {
3399ac27a0ecSDave Kleikamp 	struct inode *inode = mapping->host;
3400ac27a0ecSDave Kleikamp 	journal_t *journal;
3401ac27a0ecSDave Kleikamp 	int err;
3402ac27a0ecSDave Kleikamp 
340364769240SAlex Tomas 	if (mapping_tagged(mapping, PAGECACHE_TAG_DIRTY) &&
340464769240SAlex Tomas 			test_opt(inode->i_sb, DELALLOC)) {
340564769240SAlex Tomas 		/*
340664769240SAlex Tomas 		 * With delalloc we want to sync the file
340764769240SAlex Tomas 		 * so that we can make sure we allocate
340864769240SAlex Tomas 		 * blocks for file
340964769240SAlex Tomas 		 */
341064769240SAlex Tomas 		filemap_write_and_wait(mapping);
341164769240SAlex Tomas 	}
341264769240SAlex Tomas 
341319f5fb7aSTheodore Ts'o 	if (EXT4_JOURNAL(inode) &&
341419f5fb7aSTheodore Ts'o 	    ext4_test_inode_state(inode, EXT4_STATE_JDATA)) {
3415ac27a0ecSDave Kleikamp 		/*
3416ac27a0ecSDave Kleikamp 		 * This is a REALLY heavyweight approach, but the use of
3417ac27a0ecSDave Kleikamp 		 * bmap on dirty files is expected to be extremely rare:
3418ac27a0ecSDave Kleikamp 		 * only if we run lilo or swapon on a freshly made file
3419ac27a0ecSDave Kleikamp 		 * do we expect this to happen.
3420ac27a0ecSDave Kleikamp 		 *
3421ac27a0ecSDave Kleikamp 		 * (bmap requires CAP_SYS_RAWIO so this does not
3422ac27a0ecSDave Kleikamp 		 * represent an unprivileged user DOS attack --- we'd be
3423ac27a0ecSDave Kleikamp 		 * in trouble if mortal users could trigger this path at
3424ac27a0ecSDave Kleikamp 		 * will.)
3425ac27a0ecSDave Kleikamp 		 *
3426617ba13bSMingming Cao 		 * NB. EXT4_STATE_JDATA is not set on files other than
3427ac27a0ecSDave Kleikamp 		 * regular files.  If somebody wants to bmap a directory
3428ac27a0ecSDave Kleikamp 		 * or symlink and gets confused because the buffer
3429ac27a0ecSDave Kleikamp 		 * hasn't yet been flushed to disk, they deserve
3430ac27a0ecSDave Kleikamp 		 * everything they get.
3431ac27a0ecSDave Kleikamp 		 */
3432ac27a0ecSDave Kleikamp 
343319f5fb7aSTheodore Ts'o 		ext4_clear_inode_state(inode, EXT4_STATE_JDATA);
3434617ba13bSMingming Cao 		journal = EXT4_JOURNAL(inode);
3435dab291afSMingming Cao 		jbd2_journal_lock_updates(journal);
3436dab291afSMingming Cao 		err = jbd2_journal_flush(journal);
3437dab291afSMingming Cao 		jbd2_journal_unlock_updates(journal);
3438ac27a0ecSDave Kleikamp 
3439ac27a0ecSDave Kleikamp 		if (err)
3440ac27a0ecSDave Kleikamp 			return 0;
3441ac27a0ecSDave Kleikamp 	}
3442ac27a0ecSDave Kleikamp 
3443617ba13bSMingming Cao 	return generic_block_bmap(mapping, block, ext4_get_block);
3444ac27a0ecSDave Kleikamp }
3445ac27a0ecSDave Kleikamp 
3446617ba13bSMingming Cao static int ext4_readpage(struct file *file, struct page *page)
3447ac27a0ecSDave Kleikamp {
3448617ba13bSMingming Cao 	return mpage_readpage(page, ext4_get_block);
3449ac27a0ecSDave Kleikamp }
3450ac27a0ecSDave Kleikamp 
3451ac27a0ecSDave Kleikamp static int
3452617ba13bSMingming Cao ext4_readpages(struct file *file, struct address_space *mapping,
3453ac27a0ecSDave Kleikamp 		struct list_head *pages, unsigned nr_pages)
3454ac27a0ecSDave Kleikamp {
3455617ba13bSMingming Cao 	return mpage_readpages(mapping, pages, nr_pages, ext4_get_block);
3456ac27a0ecSDave Kleikamp }
3457ac27a0ecSDave Kleikamp 
3458744692dcSJiaying Zhang static void ext4_free_io_end(ext4_io_end_t *io)
3459744692dcSJiaying Zhang {
3460744692dcSJiaying Zhang 	BUG_ON(!io);
3461744692dcSJiaying Zhang 	if (io->page)
3462744692dcSJiaying Zhang 		put_page(io->page);
3463744692dcSJiaying Zhang 	iput(io->inode);
3464744692dcSJiaying Zhang 	kfree(io);
3465744692dcSJiaying Zhang }
3466744692dcSJiaying Zhang 
3467744692dcSJiaying Zhang static void ext4_invalidatepage_free_endio(struct page *page, unsigned long offset)
3468744692dcSJiaying Zhang {
3469744692dcSJiaying Zhang 	struct buffer_head *head, *bh;
3470744692dcSJiaying Zhang 	unsigned int curr_off = 0;
3471744692dcSJiaying Zhang 
3472744692dcSJiaying Zhang 	if (!page_has_buffers(page))
3473744692dcSJiaying Zhang 		return;
3474744692dcSJiaying Zhang 	head = bh = page_buffers(page);
3475744692dcSJiaying Zhang 	do {
3476744692dcSJiaying Zhang 		if (offset <= curr_off && test_clear_buffer_uninit(bh)
3477744692dcSJiaying Zhang 					&& bh->b_private) {
3478744692dcSJiaying Zhang 			ext4_free_io_end(bh->b_private);
3479744692dcSJiaying Zhang 			bh->b_private = NULL;
3480744692dcSJiaying Zhang 			bh->b_end_io = NULL;
3481744692dcSJiaying Zhang 		}
3482744692dcSJiaying Zhang 		curr_off = curr_off + bh->b_size;
3483744692dcSJiaying Zhang 		bh = bh->b_this_page;
3484744692dcSJiaying Zhang 	} while (bh != head);
3485744692dcSJiaying Zhang }
3486744692dcSJiaying Zhang 
3487617ba13bSMingming Cao static void ext4_invalidatepage(struct page *page, unsigned long offset)
3488ac27a0ecSDave Kleikamp {
3489617ba13bSMingming Cao 	journal_t *journal = EXT4_JOURNAL(page->mapping->host);
3490ac27a0ecSDave Kleikamp 
3491ac27a0ecSDave Kleikamp 	/*
3492744692dcSJiaying Zhang 	 * free any io_end structure allocated for buffers to be discarded
3493744692dcSJiaying Zhang 	 */
3494744692dcSJiaying Zhang 	if (ext4_should_dioread_nolock(page->mapping->host))
3495744692dcSJiaying Zhang 		ext4_invalidatepage_free_endio(page, offset);
3496744692dcSJiaying Zhang 	/*
3497ac27a0ecSDave Kleikamp 	 * If it's a full truncate we just forget about the pending dirtying
3498ac27a0ecSDave Kleikamp 	 */
3499ac27a0ecSDave Kleikamp 	if (offset == 0)
3500ac27a0ecSDave Kleikamp 		ClearPageChecked(page);
3501ac27a0ecSDave Kleikamp 
35020390131bSFrank Mayhar 	if (journal)
3503dab291afSMingming Cao 		jbd2_journal_invalidatepage(journal, page, offset);
35040390131bSFrank Mayhar 	else
35050390131bSFrank Mayhar 		block_invalidatepage(page, offset);
3506ac27a0ecSDave Kleikamp }
3507ac27a0ecSDave Kleikamp 
3508617ba13bSMingming Cao static int ext4_releasepage(struct page *page, gfp_t wait)
3509ac27a0ecSDave Kleikamp {
3510617ba13bSMingming Cao 	journal_t *journal = EXT4_JOURNAL(page->mapping->host);
3511ac27a0ecSDave Kleikamp 
3512ac27a0ecSDave Kleikamp 	WARN_ON(PageChecked(page));
3513ac27a0ecSDave Kleikamp 	if (!page_has_buffers(page))
3514ac27a0ecSDave Kleikamp 		return 0;
35150390131bSFrank Mayhar 	if (journal)
3516dab291afSMingming Cao 		return jbd2_journal_try_to_free_buffers(journal, page, wait);
35170390131bSFrank Mayhar 	else
35180390131bSFrank Mayhar 		return try_to_free_buffers(page);
3519ac27a0ecSDave Kleikamp }
3520ac27a0ecSDave Kleikamp 
3521ac27a0ecSDave Kleikamp /*
35224c0425ffSMingming Cao  * O_DIRECT for ext3 (or indirect map) based files
35234c0425ffSMingming Cao  *
3524ac27a0ecSDave Kleikamp  * If the O_DIRECT write will extend the file then add this inode to the
3525ac27a0ecSDave Kleikamp  * orphan list.  So recovery will truncate it back to the original size
3526ac27a0ecSDave Kleikamp  * if the machine crashes during the write.
3527ac27a0ecSDave Kleikamp  *
3528ac27a0ecSDave Kleikamp  * If the O_DIRECT write is intantiating holes inside i_size and the machine
35297fb5409dSJan Kara  * crashes then stale disk data _may_ be exposed inside the file. But current
35307fb5409dSJan Kara  * VFS code falls back into buffered path in that case so we are safe.
3531ac27a0ecSDave Kleikamp  */
35324c0425ffSMingming Cao static ssize_t ext4_ind_direct_IO(int rw, struct kiocb *iocb,
3533ac27a0ecSDave Kleikamp 			      const struct iovec *iov, loff_t offset,
3534ac27a0ecSDave Kleikamp 			      unsigned long nr_segs)
3535ac27a0ecSDave Kleikamp {
3536ac27a0ecSDave Kleikamp 	struct file *file = iocb->ki_filp;
3537ac27a0ecSDave Kleikamp 	struct inode *inode = file->f_mapping->host;
3538617ba13bSMingming Cao 	struct ext4_inode_info *ei = EXT4_I(inode);
35397fb5409dSJan Kara 	handle_t *handle;
3540ac27a0ecSDave Kleikamp 	ssize_t ret;
3541ac27a0ecSDave Kleikamp 	int orphan = 0;
3542ac27a0ecSDave Kleikamp 	size_t count = iov_length(iov, nr_segs);
3543fbbf6945SEric Sandeen 	int retries = 0;
3544ac27a0ecSDave Kleikamp 
3545ac27a0ecSDave Kleikamp 	if (rw == WRITE) {
3546ac27a0ecSDave Kleikamp 		loff_t final_size = offset + count;
3547ac27a0ecSDave Kleikamp 
35487fb5409dSJan Kara 		if (final_size > inode->i_size) {
35497fb5409dSJan Kara 			/* Credits for sb + inode write */
35507fb5409dSJan Kara 			handle = ext4_journal_start(inode, 2);
3551ac27a0ecSDave Kleikamp 			if (IS_ERR(handle)) {
3552ac27a0ecSDave Kleikamp 				ret = PTR_ERR(handle);
3553ac27a0ecSDave Kleikamp 				goto out;
3554ac27a0ecSDave Kleikamp 			}
3555617ba13bSMingming Cao 			ret = ext4_orphan_add(handle, inode);
35567fb5409dSJan Kara 			if (ret) {
35577fb5409dSJan Kara 				ext4_journal_stop(handle);
35587fb5409dSJan Kara 				goto out;
35597fb5409dSJan Kara 			}
3560ac27a0ecSDave Kleikamp 			orphan = 1;
3561ac27a0ecSDave Kleikamp 			ei->i_disksize = inode->i_size;
35627fb5409dSJan Kara 			ext4_journal_stop(handle);
3563ac27a0ecSDave Kleikamp 		}
3564ac27a0ecSDave Kleikamp 	}
3565ac27a0ecSDave Kleikamp 
3566fbbf6945SEric Sandeen retry:
3567b7adc1f3SJiaying Zhang 	if (rw == READ && ext4_should_dioread_nolock(inode))
3568b7adc1f3SJiaying Zhang 		ret = blockdev_direct_IO_no_locking(rw, iocb, inode,
3569b7adc1f3SJiaying Zhang 				 inode->i_sb->s_bdev, iov,
3570b7adc1f3SJiaying Zhang 				 offset, nr_segs,
3571b7adc1f3SJiaying Zhang 				 ext4_get_block, NULL);
3572b7adc1f3SJiaying Zhang 	else
3573b7adc1f3SJiaying Zhang 		ret = blockdev_direct_IO(rw, iocb, inode,
3574b7adc1f3SJiaying Zhang 				 inode->i_sb->s_bdev, iov,
3575ac27a0ecSDave Kleikamp 				 offset, nr_segs,
3576617ba13bSMingming Cao 				 ext4_get_block, NULL);
3577fbbf6945SEric Sandeen 	if (ret == -ENOSPC && ext4_should_retry_alloc(inode->i_sb, &retries))
3578fbbf6945SEric Sandeen 		goto retry;
3579ac27a0ecSDave Kleikamp 
35807fb5409dSJan Kara 	if (orphan) {
3581ac27a0ecSDave Kleikamp 		int err;
3582ac27a0ecSDave Kleikamp 
35837fb5409dSJan Kara 		/* Credits for sb + inode write */
35847fb5409dSJan Kara 		handle = ext4_journal_start(inode, 2);
35857fb5409dSJan Kara 		if (IS_ERR(handle)) {
35867fb5409dSJan Kara 			/* This is really bad luck. We've written the data
35877fb5409dSJan Kara 			 * but cannot extend i_size. Bail out and pretend
35887fb5409dSJan Kara 			 * the write failed... */
35897fb5409dSJan Kara 			ret = PTR_ERR(handle);
3590da1dafcaSDmitry Monakhov 			if (inode->i_nlink)
3591da1dafcaSDmitry Monakhov 				ext4_orphan_del(NULL, inode);
3592da1dafcaSDmitry Monakhov 
35937fb5409dSJan Kara 			goto out;
35947fb5409dSJan Kara 		}
35957fb5409dSJan Kara 		if (inode->i_nlink)
3596617ba13bSMingming Cao 			ext4_orphan_del(handle, inode);
35977fb5409dSJan Kara 		if (ret > 0) {
3598ac27a0ecSDave Kleikamp 			loff_t end = offset + ret;
3599ac27a0ecSDave Kleikamp 			if (end > inode->i_size) {
3600ac27a0ecSDave Kleikamp 				ei->i_disksize = end;
3601ac27a0ecSDave Kleikamp 				i_size_write(inode, end);
3602ac27a0ecSDave Kleikamp 				/*
3603ac27a0ecSDave Kleikamp 				 * We're going to return a positive `ret'
3604ac27a0ecSDave Kleikamp 				 * here due to non-zero-length I/O, so there's
3605ac27a0ecSDave Kleikamp 				 * no way of reporting error returns from
3606617ba13bSMingming Cao 				 * ext4_mark_inode_dirty() to userspace.  So
3607ac27a0ecSDave Kleikamp 				 * ignore it.
3608ac27a0ecSDave Kleikamp 				 */
3609617ba13bSMingming Cao 				ext4_mark_inode_dirty(handle, inode);
3610ac27a0ecSDave Kleikamp 			}
3611ac27a0ecSDave Kleikamp 		}
3612617ba13bSMingming Cao 		err = ext4_journal_stop(handle);
3613ac27a0ecSDave Kleikamp 		if (ret == 0)
3614ac27a0ecSDave Kleikamp 			ret = err;
3615ac27a0ecSDave Kleikamp 	}
3616ac27a0ecSDave Kleikamp out:
3617ac27a0ecSDave Kleikamp 	return ret;
3618ac27a0ecSDave Kleikamp }
3619ac27a0ecSDave Kleikamp 
36202ed88685STheodore Ts'o /*
36212ed88685STheodore Ts'o  * ext4_get_block used when preparing for a DIO write or buffer write.
36222ed88685STheodore Ts'o  * We allocate an uinitialized extent if blocks haven't been allocated.
36232ed88685STheodore Ts'o  * The extent will be converted to initialized after the IO is complete.
36242ed88685STheodore Ts'o  */
3625c7064ef1SJiaying Zhang static int ext4_get_block_write(struct inode *inode, sector_t iblock,
36264c0425ffSMingming Cao 		   struct buffer_head *bh_result, int create)
36274c0425ffSMingming Cao {
3628c7064ef1SJiaying Zhang 	ext4_debug("ext4_get_block_write: inode %lu, create flag %d\n",
36298d5d02e6SMingming Cao 		   inode->i_ino, create);
36302ed88685STheodore Ts'o 	return _ext4_get_block(inode, iblock, bh_result,
36312ed88685STheodore Ts'o 			       EXT4_GET_BLOCKS_IO_CREATE_EXT);
36324c0425ffSMingming Cao }
36334c0425ffSMingming Cao 
3634c7064ef1SJiaying Zhang static void dump_completed_IO(struct inode * inode)
36358d5d02e6SMingming Cao {
36368d5d02e6SMingming Cao #ifdef	EXT4_DEBUG
36378d5d02e6SMingming Cao 	struct list_head *cur, *before, *after;
36388d5d02e6SMingming Cao 	ext4_io_end_t *io, *io0, *io1;
3639744692dcSJiaying Zhang 	unsigned long flags;
36408d5d02e6SMingming Cao 
3641c7064ef1SJiaying Zhang 	if (list_empty(&EXT4_I(inode)->i_completed_io_list)){
3642c7064ef1SJiaying Zhang 		ext4_debug("inode %lu completed_io list is empty\n", inode->i_ino);
36438d5d02e6SMingming Cao 		return;
36448d5d02e6SMingming Cao 	}
36458d5d02e6SMingming Cao 
3646c7064ef1SJiaying Zhang 	ext4_debug("Dump inode %lu completed_io list \n", inode->i_ino);
3647744692dcSJiaying Zhang 	spin_lock_irqsave(&EXT4_I(inode)->i_completed_io_lock, flags);
3648c7064ef1SJiaying Zhang 	list_for_each_entry(io, &EXT4_I(inode)->i_completed_io_list, list){
36498d5d02e6SMingming Cao 		cur = &io->list;
36508d5d02e6SMingming Cao 		before = cur->prev;
36518d5d02e6SMingming Cao 		io0 = container_of(before, ext4_io_end_t, list);
36528d5d02e6SMingming Cao 		after = cur->next;
36538d5d02e6SMingming Cao 		io1 = container_of(after, ext4_io_end_t, list);
36548d5d02e6SMingming Cao 
36558d5d02e6SMingming Cao 		ext4_debug("io 0x%p from inode %lu,prev 0x%p,next 0x%p\n",
36568d5d02e6SMingming Cao 			    io, inode->i_ino, io0, io1);
36578d5d02e6SMingming Cao 	}
3658744692dcSJiaying Zhang 	spin_unlock_irqrestore(&EXT4_I(inode)->i_completed_io_lock, flags);
36598d5d02e6SMingming Cao #endif
36608d5d02e6SMingming Cao }
36614c0425ffSMingming Cao 
36624c0425ffSMingming Cao /*
36634c0425ffSMingming Cao  * check a range of space and convert unwritten extents to written.
36644c0425ffSMingming Cao  */
3665c7064ef1SJiaying Zhang static int ext4_end_io_nolock(ext4_io_end_t *io)
36664c0425ffSMingming Cao {
36674c0425ffSMingming Cao 	struct inode *inode = io->inode;
36684c0425ffSMingming Cao 	loff_t offset = io->offset;
3669a1de02dcSEric Sandeen 	ssize_t size = io->size;
36704c0425ffSMingming Cao 	int ret = 0;
36714c0425ffSMingming Cao 
3672c7064ef1SJiaying Zhang 	ext4_debug("ext4_end_io_nolock: io 0x%p from inode %lu,list->next 0x%p,"
36738d5d02e6SMingming Cao 		   "list->prev 0x%p\n",
36748d5d02e6SMingming Cao 	           io, inode->i_ino, io->list.next, io->list.prev);
36758d5d02e6SMingming Cao 
36768d5d02e6SMingming Cao 	if (list_empty(&io->list))
36778d5d02e6SMingming Cao 		return ret;
36788d5d02e6SMingming Cao 
3679c7064ef1SJiaying Zhang 	if (io->flag != EXT4_IO_UNWRITTEN)
36808d5d02e6SMingming Cao 		return ret;
36818d5d02e6SMingming Cao 
36824c0425ffSMingming Cao 	ret = ext4_convert_unwritten_extents(inode, offset, size);
36838d5d02e6SMingming Cao 	if (ret < 0) {
36844c0425ffSMingming Cao 		printk(KERN_EMERG "%s: failed to convert unwritten"
36858d5d02e6SMingming Cao 			"extents to written extents, error is %d"
36868d5d02e6SMingming Cao 			" io is still on inode %lu aio dio list\n",
36878d5d02e6SMingming Cao                        __func__, ret, inode->i_ino);
36888d5d02e6SMingming Cao 		return ret;
36894c0425ffSMingming Cao 	}
36904c0425ffSMingming Cao 
36915b3ff237Sjiayingz@google.com (Jiaying Zhang) 	if (io->iocb)
36925b3ff237Sjiayingz@google.com (Jiaying Zhang) 		aio_complete(io->iocb, io->result, 0);
36938d5d02e6SMingming Cao 	/* clear the DIO AIO unwritten flag */
36948d5d02e6SMingming Cao 	io->flag = 0;
36958d5d02e6SMingming Cao 	return ret;
36968d5d02e6SMingming Cao }
3697c7064ef1SJiaying Zhang 
36988d5d02e6SMingming Cao /*
36998d5d02e6SMingming Cao  * work on completed aio dio IO, to convert unwritten extents to extents
37008d5d02e6SMingming Cao  */
3701c7064ef1SJiaying Zhang static void ext4_end_io_work(struct work_struct *work)
37028d5d02e6SMingming Cao {
37038d5d02e6SMingming Cao 	ext4_io_end_t		*io = container_of(work, ext4_io_end_t, work);
37048d5d02e6SMingming Cao 	struct inode		*inode = io->inode;
3705744692dcSJiaying Zhang 	struct ext4_inode_info	*ei = EXT4_I(inode);
3706744692dcSJiaying Zhang 	unsigned long		flags;
3707744692dcSJiaying Zhang 	int			ret;
37088d5d02e6SMingming Cao 
37098d5d02e6SMingming Cao 	mutex_lock(&inode->i_mutex);
3710c7064ef1SJiaying Zhang 	ret = ext4_end_io_nolock(io);
3711744692dcSJiaying Zhang 	if (ret < 0) {
3712744692dcSJiaying Zhang 		mutex_unlock(&inode->i_mutex);
3713744692dcSJiaying Zhang 		return;
3714744692dcSJiaying Zhang 	}
3715744692dcSJiaying Zhang 
3716744692dcSJiaying Zhang 	spin_lock_irqsave(&ei->i_completed_io_lock, flags);
37178d5d02e6SMingming Cao 	if (!list_empty(&io->list))
37188d5d02e6SMingming Cao 		list_del_init(&io->list);
3719744692dcSJiaying Zhang 	spin_unlock_irqrestore(&ei->i_completed_io_lock, flags);
37208d5d02e6SMingming Cao 	mutex_unlock(&inode->i_mutex);
3721744692dcSJiaying Zhang 	ext4_free_io_end(io);
37228d5d02e6SMingming Cao }
3723c7064ef1SJiaying Zhang 
37248d5d02e6SMingming Cao /*
37258d5d02e6SMingming Cao  * This function is called from ext4_sync_file().
37268d5d02e6SMingming Cao  *
3727c7064ef1SJiaying Zhang  * When IO is completed, the work to convert unwritten extents to
3728c7064ef1SJiaying Zhang  * written is queued on workqueue but may not get immediately
37298d5d02e6SMingming Cao  * scheduled. When fsync is called, we need to ensure the
37308d5d02e6SMingming Cao  * conversion is complete before fsync returns.
3731c7064ef1SJiaying Zhang  * The inode keeps track of a list of pending/completed IO that
3732c7064ef1SJiaying Zhang  * might needs to do the conversion. This function walks through
3733c7064ef1SJiaying Zhang  * the list and convert the related unwritten extents for completed IO
3734c7064ef1SJiaying Zhang  * to written.
3735c7064ef1SJiaying Zhang  * The function return the number of pending IOs on success.
37368d5d02e6SMingming Cao  */
3737c7064ef1SJiaying Zhang int flush_completed_IO(struct inode *inode)
37388d5d02e6SMingming Cao {
37398d5d02e6SMingming Cao 	ext4_io_end_t *io;
3740744692dcSJiaying Zhang 	struct ext4_inode_info *ei = EXT4_I(inode);
3741744692dcSJiaying Zhang 	unsigned long flags;
37428d5d02e6SMingming Cao 	int ret = 0;
37438d5d02e6SMingming Cao 	int ret2 = 0;
37448d5d02e6SMingming Cao 
3745744692dcSJiaying Zhang 	if (list_empty(&ei->i_completed_io_list))
37468d5d02e6SMingming Cao 		return ret;
37478d5d02e6SMingming Cao 
3748c7064ef1SJiaying Zhang 	dump_completed_IO(inode);
3749744692dcSJiaying Zhang 	spin_lock_irqsave(&ei->i_completed_io_lock, flags);
3750744692dcSJiaying Zhang 	while (!list_empty(&ei->i_completed_io_list)){
3751744692dcSJiaying Zhang 		io = list_entry(ei->i_completed_io_list.next,
37528d5d02e6SMingming Cao 				ext4_io_end_t, list);
37538d5d02e6SMingming Cao 		/*
3754c7064ef1SJiaying Zhang 		 * Calling ext4_end_io_nolock() to convert completed
37558d5d02e6SMingming Cao 		 * IO to written.
37568d5d02e6SMingming Cao 		 *
37578d5d02e6SMingming Cao 		 * When ext4_sync_file() is called, run_queue() may already
37588d5d02e6SMingming Cao 		 * about to flush the work corresponding to this io structure.
37598d5d02e6SMingming Cao 		 * It will be upset if it founds the io structure related
37608d5d02e6SMingming Cao 		 * to the work-to-be schedule is freed.
37618d5d02e6SMingming Cao 		 *
37628d5d02e6SMingming Cao 		 * Thus we need to keep the io structure still valid here after
37638d5d02e6SMingming Cao 		 * convertion finished. The io structure has a flag to
37648d5d02e6SMingming Cao 		 * avoid double converting from both fsync and background work
37658d5d02e6SMingming Cao 		 * queue work.
37668d5d02e6SMingming Cao 		 */
3767744692dcSJiaying Zhang 		spin_unlock_irqrestore(&ei->i_completed_io_lock, flags);
3768c7064ef1SJiaying Zhang 		ret = ext4_end_io_nolock(io);
3769744692dcSJiaying Zhang 		spin_lock_irqsave(&ei->i_completed_io_lock, flags);
37708d5d02e6SMingming Cao 		if (ret < 0)
37718d5d02e6SMingming Cao 			ret2 = ret;
37728d5d02e6SMingming Cao 		else
37738d5d02e6SMingming Cao 			list_del_init(&io->list);
37748d5d02e6SMingming Cao 	}
3775744692dcSJiaying Zhang 	spin_unlock_irqrestore(&ei->i_completed_io_lock, flags);
37768d5d02e6SMingming Cao 	return (ret2 < 0) ? ret2 : 0;
37778d5d02e6SMingming Cao }
37788d5d02e6SMingming Cao 
3779744692dcSJiaying Zhang static ext4_io_end_t *ext4_init_io_end (struct inode *inode, gfp_t flags)
37804c0425ffSMingming Cao {
37814c0425ffSMingming Cao 	ext4_io_end_t *io = NULL;
37824c0425ffSMingming Cao 
3783744692dcSJiaying Zhang 	io = kmalloc(sizeof(*io), flags);
37844c0425ffSMingming Cao 
37854c0425ffSMingming Cao 	if (io) {
37868d5d02e6SMingming Cao 		igrab(inode);
37874c0425ffSMingming Cao 		io->inode = inode;
37888d5d02e6SMingming Cao 		io->flag = 0;
37894c0425ffSMingming Cao 		io->offset = 0;
37904c0425ffSMingming Cao 		io->size = 0;
3791744692dcSJiaying Zhang 		io->page = NULL;
37925b3ff237Sjiayingz@google.com (Jiaying Zhang) 		io->iocb = NULL;
37935b3ff237Sjiayingz@google.com (Jiaying Zhang) 		io->result = 0;
3794c7064ef1SJiaying Zhang 		INIT_WORK(&io->work, ext4_end_io_work);
37958d5d02e6SMingming Cao 		INIT_LIST_HEAD(&io->list);
37964c0425ffSMingming Cao 	}
37974c0425ffSMingming Cao 
37984c0425ffSMingming Cao 	return io;
37994c0425ffSMingming Cao }
38004c0425ffSMingming Cao 
38014c0425ffSMingming Cao static void ext4_end_io_dio(struct kiocb *iocb, loff_t offset,
3802552ef802SChristoph Hellwig 			    ssize_t size, void *private, int ret,
3803552ef802SChristoph Hellwig 			    bool is_async)
38044c0425ffSMingming Cao {
38054c0425ffSMingming Cao         ext4_io_end_t *io_end = iocb->private;
38064c0425ffSMingming Cao 	struct workqueue_struct *wq;
3807744692dcSJiaying Zhang 	unsigned long flags;
3808744692dcSJiaying Zhang 	struct ext4_inode_info *ei;
38094c0425ffSMingming Cao 
38104b70df18SMingming 	/* if not async direct IO or dio with 0 bytes write, just return */
38114b70df18SMingming 	if (!io_end || !size)
3812552ef802SChristoph Hellwig 		goto out;
38134b70df18SMingming 
38148d5d02e6SMingming Cao 	ext_debug("ext4_end_io_dio(): io_end 0x%p"
38158d5d02e6SMingming Cao 		  "for inode %lu, iocb 0x%p, offset %llu, size %llu\n",
38168d5d02e6SMingming Cao  		  iocb->private, io_end->inode->i_ino, iocb, offset,
38178d5d02e6SMingming Cao 		  size);
38188d5d02e6SMingming Cao 
38198d5d02e6SMingming Cao 	/* if not aio dio with unwritten extents, just free io and return */
3820c7064ef1SJiaying Zhang 	if (io_end->flag != EXT4_IO_UNWRITTEN){
38218d5d02e6SMingming Cao 		ext4_free_io_end(io_end);
38228d5d02e6SMingming Cao 		iocb->private = NULL;
38235b3ff237Sjiayingz@google.com (Jiaying Zhang) out:
38245b3ff237Sjiayingz@google.com (Jiaying Zhang) 		if (is_async)
38255b3ff237Sjiayingz@google.com (Jiaying Zhang) 			aio_complete(iocb, ret, 0);
38265b3ff237Sjiayingz@google.com (Jiaying Zhang) 		return;
38278d5d02e6SMingming Cao 	}
38288d5d02e6SMingming Cao 
38294c0425ffSMingming Cao 	io_end->offset = offset;
38304c0425ffSMingming Cao 	io_end->size = size;
38315b3ff237Sjiayingz@google.com (Jiaying Zhang) 	if (is_async) {
38325b3ff237Sjiayingz@google.com (Jiaying Zhang) 		io_end->iocb = iocb;
38335b3ff237Sjiayingz@google.com (Jiaying Zhang) 		io_end->result = ret;
38345b3ff237Sjiayingz@google.com (Jiaying Zhang) 	}
38354c0425ffSMingming Cao 	wq = EXT4_SB(io_end->inode->i_sb)->dio_unwritten_wq;
38364c0425ffSMingming Cao 
38378d5d02e6SMingming Cao 	/* queue the work to convert unwritten extents to written */
38384c0425ffSMingming Cao 	queue_work(wq, &io_end->work);
38394c0425ffSMingming Cao 
38408d5d02e6SMingming Cao 	/* Add the io_end to per-inode completed aio dio list*/
3841744692dcSJiaying Zhang 	ei = EXT4_I(io_end->inode);
3842744692dcSJiaying Zhang 	spin_lock_irqsave(&ei->i_completed_io_lock, flags);
3843744692dcSJiaying Zhang 	list_add_tail(&io_end->list, &ei->i_completed_io_list);
3844744692dcSJiaying Zhang 	spin_unlock_irqrestore(&ei->i_completed_io_lock, flags);
38454c0425ffSMingming Cao 	iocb->private = NULL;
38464c0425ffSMingming Cao }
3847c7064ef1SJiaying Zhang 
3848744692dcSJiaying Zhang static void ext4_end_io_buffer_write(struct buffer_head *bh, int uptodate)
3849744692dcSJiaying Zhang {
3850744692dcSJiaying Zhang 	ext4_io_end_t *io_end = bh->b_private;
3851744692dcSJiaying Zhang 	struct workqueue_struct *wq;
3852744692dcSJiaying Zhang 	struct inode *inode;
3853744692dcSJiaying Zhang 	unsigned long flags;
3854744692dcSJiaying Zhang 
3855744692dcSJiaying Zhang 	if (!test_clear_buffer_uninit(bh) || !io_end)
3856744692dcSJiaying Zhang 		goto out;
3857744692dcSJiaying Zhang 
3858744692dcSJiaying Zhang 	if (!(io_end->inode->i_sb->s_flags & MS_ACTIVE)) {
3859744692dcSJiaying Zhang 		printk("sb umounted, discard end_io request for inode %lu\n",
3860744692dcSJiaying Zhang 			io_end->inode->i_ino);
3861744692dcSJiaying Zhang 		ext4_free_io_end(io_end);
3862744692dcSJiaying Zhang 		goto out;
3863744692dcSJiaying Zhang 	}
3864744692dcSJiaying Zhang 
3865744692dcSJiaying Zhang 	io_end->flag = EXT4_IO_UNWRITTEN;
3866744692dcSJiaying Zhang 	inode = io_end->inode;
3867744692dcSJiaying Zhang 
3868744692dcSJiaying Zhang 	/* Add the io_end to per-inode completed io list*/
3869744692dcSJiaying Zhang 	spin_lock_irqsave(&EXT4_I(inode)->i_completed_io_lock, flags);
3870744692dcSJiaying Zhang 	list_add_tail(&io_end->list, &EXT4_I(inode)->i_completed_io_list);
3871744692dcSJiaying Zhang 	spin_unlock_irqrestore(&EXT4_I(inode)->i_completed_io_lock, flags);
3872744692dcSJiaying Zhang 
3873744692dcSJiaying Zhang 	wq = EXT4_SB(inode->i_sb)->dio_unwritten_wq;
3874744692dcSJiaying Zhang 	/* queue the work to convert unwritten extents to written */
3875744692dcSJiaying Zhang 	queue_work(wq, &io_end->work);
3876744692dcSJiaying Zhang out:
3877744692dcSJiaying Zhang 	bh->b_private = NULL;
3878744692dcSJiaying Zhang 	bh->b_end_io = NULL;
3879744692dcSJiaying Zhang 	clear_buffer_uninit(bh);
3880744692dcSJiaying Zhang 	end_buffer_async_write(bh, uptodate);
3881744692dcSJiaying Zhang }
3882744692dcSJiaying Zhang 
3883744692dcSJiaying Zhang static int ext4_set_bh_endio(struct buffer_head *bh, struct inode *inode)
3884744692dcSJiaying Zhang {
3885744692dcSJiaying Zhang 	ext4_io_end_t *io_end;
3886744692dcSJiaying Zhang 	struct page *page = bh->b_page;
3887744692dcSJiaying Zhang 	loff_t offset = (sector_t)page->index << PAGE_CACHE_SHIFT;
3888744692dcSJiaying Zhang 	size_t size = bh->b_size;
3889744692dcSJiaying Zhang 
3890744692dcSJiaying Zhang retry:
3891744692dcSJiaying Zhang 	io_end = ext4_init_io_end(inode, GFP_ATOMIC);
3892744692dcSJiaying Zhang 	if (!io_end) {
3893744692dcSJiaying Zhang 		if (printk_ratelimit())
3894744692dcSJiaying Zhang 			printk(KERN_WARNING "%s: allocation fail\n", __func__);
3895744692dcSJiaying Zhang 		schedule();
3896744692dcSJiaying Zhang 		goto retry;
3897744692dcSJiaying Zhang 	}
3898744692dcSJiaying Zhang 	io_end->offset = offset;
3899744692dcSJiaying Zhang 	io_end->size = size;
3900744692dcSJiaying Zhang 	/*
3901744692dcSJiaying Zhang 	 * We need to hold a reference to the page to make sure it
3902744692dcSJiaying Zhang 	 * doesn't get evicted before ext4_end_io_work() has a chance
3903744692dcSJiaying Zhang 	 * to convert the extent from written to unwritten.
3904744692dcSJiaying Zhang 	 */
3905744692dcSJiaying Zhang 	io_end->page = page;
3906744692dcSJiaying Zhang 	get_page(io_end->page);
3907744692dcSJiaying Zhang 
3908744692dcSJiaying Zhang 	bh->b_private = io_end;
3909744692dcSJiaying Zhang 	bh->b_end_io = ext4_end_io_buffer_write;
3910744692dcSJiaying Zhang 	return 0;
3911744692dcSJiaying Zhang }
3912744692dcSJiaying Zhang 
39134c0425ffSMingming Cao /*
39144c0425ffSMingming Cao  * For ext4 extent files, ext4 will do direct-io write to holes,
39154c0425ffSMingming Cao  * preallocated extents, and those write extend the file, no need to
39164c0425ffSMingming Cao  * fall back to buffered IO.
39174c0425ffSMingming Cao  *
39184c0425ffSMingming Cao  * For holes, we fallocate those blocks, mark them as unintialized
39194c0425ffSMingming Cao  * If those blocks were preallocated, we mark sure they are splited, but
39204c0425ffSMingming Cao  * still keep the range to write as unintialized.
39214c0425ffSMingming Cao  *
39228d5d02e6SMingming Cao  * The unwrritten extents will be converted to written when DIO is completed.
39238d5d02e6SMingming Cao  * For async direct IO, since the IO may still pending when return, we
39248d5d02e6SMingming Cao  * set up an end_io call back function, which will do the convertion
39258d5d02e6SMingming Cao  * when async direct IO completed.
39264c0425ffSMingming Cao  *
39274c0425ffSMingming Cao  * If the O_DIRECT write will extend the file then add this inode to the
39284c0425ffSMingming Cao  * orphan list.  So recovery will truncate it back to the original size
39294c0425ffSMingming Cao  * if the machine crashes during the write.
39304c0425ffSMingming Cao  *
39314c0425ffSMingming Cao  */
39324c0425ffSMingming Cao static ssize_t ext4_ext_direct_IO(int rw, struct kiocb *iocb,
39334c0425ffSMingming Cao 			      const struct iovec *iov, loff_t offset,
39344c0425ffSMingming Cao 			      unsigned long nr_segs)
39354c0425ffSMingming Cao {
39364c0425ffSMingming Cao 	struct file *file = iocb->ki_filp;
39374c0425ffSMingming Cao 	struct inode *inode = file->f_mapping->host;
39384c0425ffSMingming Cao 	ssize_t ret;
39394c0425ffSMingming Cao 	size_t count = iov_length(iov, nr_segs);
39404c0425ffSMingming Cao 
39414c0425ffSMingming Cao 	loff_t final_size = offset + count;
39424c0425ffSMingming Cao 	if (rw == WRITE && final_size <= inode->i_size) {
39434c0425ffSMingming Cao 		/*
39448d5d02e6SMingming Cao  		 * We could direct write to holes and fallocate.
39458d5d02e6SMingming Cao 		 *
39468d5d02e6SMingming Cao  		 * Allocated blocks to fill the hole are marked as uninitialized
39474c0425ffSMingming Cao  		 * to prevent paralel buffered read to expose the stale data
39484c0425ffSMingming Cao  		 * before DIO complete the data IO.
39498d5d02e6SMingming Cao 		 *
39508d5d02e6SMingming Cao  		 * As to previously fallocated extents, ext4 get_block
39514c0425ffSMingming Cao  		 * will just simply mark the buffer mapped but still
39524c0425ffSMingming Cao  		 * keep the extents uninitialized.
39534c0425ffSMingming Cao  		 *
39548d5d02e6SMingming Cao 		 * for non AIO case, we will convert those unwritten extents
39558d5d02e6SMingming Cao 		 * to written after return back from blockdev_direct_IO.
39564c0425ffSMingming Cao 		 *
39578d5d02e6SMingming Cao 		 * for async DIO, the conversion needs to be defered when
39588d5d02e6SMingming Cao 		 * the IO is completed. The ext4 end_io callback function
39598d5d02e6SMingming Cao 		 * will be called to take care of the conversion work.
39608d5d02e6SMingming Cao 		 * Here for async case, we allocate an io_end structure to
39618d5d02e6SMingming Cao 		 * hook to the iocb.
39624c0425ffSMingming Cao  		 */
39638d5d02e6SMingming Cao 		iocb->private = NULL;
39648d5d02e6SMingming Cao 		EXT4_I(inode)->cur_aio_dio = NULL;
39658d5d02e6SMingming Cao 		if (!is_sync_kiocb(iocb)) {
3966744692dcSJiaying Zhang 			iocb->private = ext4_init_io_end(inode, GFP_NOFS);
39674c0425ffSMingming Cao 			if (!iocb->private)
39684c0425ffSMingming Cao 				return -ENOMEM;
39698d5d02e6SMingming Cao 			/*
39708d5d02e6SMingming Cao 			 * we save the io structure for current async
397179e83036SEric Sandeen 			 * direct IO, so that later ext4_map_blocks()
39728d5d02e6SMingming Cao 			 * could flag the io structure whether there
39738d5d02e6SMingming Cao 			 * is a unwritten extents needs to be converted
39748d5d02e6SMingming Cao 			 * when IO is completed.
39758d5d02e6SMingming Cao 			 */
39768d5d02e6SMingming Cao 			EXT4_I(inode)->cur_aio_dio = iocb->private;
39778d5d02e6SMingming Cao 		}
39788d5d02e6SMingming Cao 
39794c0425ffSMingming Cao 		ret = blockdev_direct_IO(rw, iocb, inode,
39804c0425ffSMingming Cao 					 inode->i_sb->s_bdev, iov,
39814c0425ffSMingming Cao 					 offset, nr_segs,
3982c7064ef1SJiaying Zhang 					 ext4_get_block_write,
39834c0425ffSMingming Cao 					 ext4_end_io_dio);
39848d5d02e6SMingming Cao 		if (iocb->private)
39858d5d02e6SMingming Cao 			EXT4_I(inode)->cur_aio_dio = NULL;
39868d5d02e6SMingming Cao 		/*
39878d5d02e6SMingming Cao 		 * The io_end structure takes a reference to the inode,
39888d5d02e6SMingming Cao 		 * that structure needs to be destroyed and the
39898d5d02e6SMingming Cao 		 * reference to the inode need to be dropped, when IO is
39908d5d02e6SMingming Cao 		 * complete, even with 0 byte write, or failed.
39918d5d02e6SMingming Cao 		 *
39928d5d02e6SMingming Cao 		 * In the successful AIO DIO case, the io_end structure will be
39938d5d02e6SMingming Cao 		 * desctroyed and the reference to the inode will be dropped
39948d5d02e6SMingming Cao 		 * after the end_io call back function is called.
39958d5d02e6SMingming Cao 		 *
39968d5d02e6SMingming Cao 		 * In the case there is 0 byte write, or error case, since
39978d5d02e6SMingming Cao 		 * VFS direct IO won't invoke the end_io call back function,
39988d5d02e6SMingming Cao 		 * we need to free the end_io structure here.
39998d5d02e6SMingming Cao 		 */
40008d5d02e6SMingming Cao 		if (ret != -EIOCBQUEUED && ret <= 0 && iocb->private) {
40018d5d02e6SMingming Cao 			ext4_free_io_end(iocb->private);
40028d5d02e6SMingming Cao 			iocb->private = NULL;
400319f5fb7aSTheodore Ts'o 		} else if (ret > 0 && ext4_test_inode_state(inode,
40045f524950SMingming 						EXT4_STATE_DIO_UNWRITTEN)) {
4005109f5565SMingming 			int err;
40068d5d02e6SMingming Cao 			/*
40078d5d02e6SMingming Cao 			 * for non AIO case, since the IO is already
40088d5d02e6SMingming Cao 			 * completed, we could do the convertion right here
40098d5d02e6SMingming Cao 			 */
4010109f5565SMingming 			err = ext4_convert_unwritten_extents(inode,
40118d5d02e6SMingming Cao 							     offset, ret);
4012109f5565SMingming 			if (err < 0)
4013109f5565SMingming 				ret = err;
401419f5fb7aSTheodore Ts'o 			ext4_clear_inode_state(inode, EXT4_STATE_DIO_UNWRITTEN);
4015109f5565SMingming 		}
40164c0425ffSMingming Cao 		return ret;
40174c0425ffSMingming Cao 	}
40188d5d02e6SMingming Cao 
40198d5d02e6SMingming Cao 	/* for write the the end of file case, we fall back to old way */
40204c0425ffSMingming Cao 	return ext4_ind_direct_IO(rw, iocb, iov, offset, nr_segs);
40214c0425ffSMingming Cao }
40224c0425ffSMingming Cao 
40234c0425ffSMingming Cao static ssize_t ext4_direct_IO(int rw, struct kiocb *iocb,
40244c0425ffSMingming Cao 			      const struct iovec *iov, loff_t offset,
40254c0425ffSMingming Cao 			      unsigned long nr_segs)
40264c0425ffSMingming Cao {
40274c0425ffSMingming Cao 	struct file *file = iocb->ki_filp;
40284c0425ffSMingming Cao 	struct inode *inode = file->f_mapping->host;
40294c0425ffSMingming Cao 
403012e9b892SDmitry Monakhov 	if (ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS))
40314c0425ffSMingming Cao 		return ext4_ext_direct_IO(rw, iocb, iov, offset, nr_segs);
40324c0425ffSMingming Cao 
40334c0425ffSMingming Cao 	return ext4_ind_direct_IO(rw, iocb, iov, offset, nr_segs);
40344c0425ffSMingming Cao }
40354c0425ffSMingming Cao 
4036ac27a0ecSDave Kleikamp /*
4037617ba13bSMingming Cao  * Pages can be marked dirty completely asynchronously from ext4's journalling
4038ac27a0ecSDave Kleikamp  * activity.  By filemap_sync_pte(), try_to_unmap_one(), etc.  We cannot do
4039ac27a0ecSDave Kleikamp  * much here because ->set_page_dirty is called under VFS locks.  The page is
4040ac27a0ecSDave Kleikamp  * not necessarily locked.
4041ac27a0ecSDave Kleikamp  *
4042ac27a0ecSDave Kleikamp  * We cannot just dirty the page and leave attached buffers clean, because the
4043ac27a0ecSDave Kleikamp  * buffers' dirty state is "definitive".  We cannot just set the buffers dirty
4044ac27a0ecSDave Kleikamp  * or jbddirty because all the journalling code will explode.
4045ac27a0ecSDave Kleikamp  *
4046ac27a0ecSDave Kleikamp  * So what we do is to mark the page "pending dirty" and next time writepage
4047ac27a0ecSDave Kleikamp  * is called, propagate that into the buffers appropriately.
4048ac27a0ecSDave Kleikamp  */
4049617ba13bSMingming Cao static int ext4_journalled_set_page_dirty(struct page *page)
4050ac27a0ecSDave Kleikamp {
4051ac27a0ecSDave Kleikamp 	SetPageChecked(page);
4052ac27a0ecSDave Kleikamp 	return __set_page_dirty_nobuffers(page);
4053ac27a0ecSDave Kleikamp }
4054ac27a0ecSDave Kleikamp 
4055617ba13bSMingming Cao static const struct address_space_operations ext4_ordered_aops = {
4056617ba13bSMingming Cao 	.readpage		= ext4_readpage,
4057617ba13bSMingming Cao 	.readpages		= ext4_readpages,
405843ce1d23SAneesh Kumar K.V 	.writepage		= ext4_writepage,
4059ac27a0ecSDave Kleikamp 	.sync_page		= block_sync_page,
4060bfc1af65SNick Piggin 	.write_begin		= ext4_write_begin,
4061bfc1af65SNick Piggin 	.write_end		= ext4_ordered_write_end,
4062617ba13bSMingming Cao 	.bmap			= ext4_bmap,
4063617ba13bSMingming Cao 	.invalidatepage		= ext4_invalidatepage,
4064617ba13bSMingming Cao 	.releasepage		= ext4_releasepage,
4065617ba13bSMingming Cao 	.direct_IO		= ext4_direct_IO,
4066ac27a0ecSDave Kleikamp 	.migratepage		= buffer_migrate_page,
40678ab22b9aSHisashi Hifumi 	.is_partially_uptodate  = block_is_partially_uptodate,
4068aa261f54SAndi Kleen 	.error_remove_page	= generic_error_remove_page,
4069ac27a0ecSDave Kleikamp };
4070ac27a0ecSDave Kleikamp 
4071617ba13bSMingming Cao static const struct address_space_operations ext4_writeback_aops = {
4072617ba13bSMingming Cao 	.readpage		= ext4_readpage,
4073617ba13bSMingming Cao 	.readpages		= ext4_readpages,
407443ce1d23SAneesh Kumar K.V 	.writepage		= ext4_writepage,
4075ac27a0ecSDave Kleikamp 	.sync_page		= block_sync_page,
4076bfc1af65SNick Piggin 	.write_begin		= ext4_write_begin,
4077bfc1af65SNick Piggin 	.write_end		= ext4_writeback_write_end,
4078617ba13bSMingming Cao 	.bmap			= ext4_bmap,
4079617ba13bSMingming Cao 	.invalidatepage		= ext4_invalidatepage,
4080617ba13bSMingming Cao 	.releasepage		= ext4_releasepage,
4081617ba13bSMingming Cao 	.direct_IO		= ext4_direct_IO,
4082ac27a0ecSDave Kleikamp 	.migratepage		= buffer_migrate_page,
40838ab22b9aSHisashi Hifumi 	.is_partially_uptodate  = block_is_partially_uptodate,
4084aa261f54SAndi Kleen 	.error_remove_page	= generic_error_remove_page,
4085ac27a0ecSDave Kleikamp };
4086ac27a0ecSDave Kleikamp 
4087617ba13bSMingming Cao static const struct address_space_operations ext4_journalled_aops = {
4088617ba13bSMingming Cao 	.readpage		= ext4_readpage,
4089617ba13bSMingming Cao 	.readpages		= ext4_readpages,
409043ce1d23SAneesh Kumar K.V 	.writepage		= ext4_writepage,
4091ac27a0ecSDave Kleikamp 	.sync_page		= block_sync_page,
4092bfc1af65SNick Piggin 	.write_begin		= ext4_write_begin,
4093bfc1af65SNick Piggin 	.write_end		= ext4_journalled_write_end,
4094617ba13bSMingming Cao 	.set_page_dirty		= ext4_journalled_set_page_dirty,
4095617ba13bSMingming Cao 	.bmap			= ext4_bmap,
4096617ba13bSMingming Cao 	.invalidatepage		= ext4_invalidatepage,
4097617ba13bSMingming Cao 	.releasepage		= ext4_releasepage,
40988ab22b9aSHisashi Hifumi 	.is_partially_uptodate  = block_is_partially_uptodate,
4099aa261f54SAndi Kleen 	.error_remove_page	= generic_error_remove_page,
4100ac27a0ecSDave Kleikamp };
4101ac27a0ecSDave Kleikamp 
410264769240SAlex Tomas static const struct address_space_operations ext4_da_aops = {
410364769240SAlex Tomas 	.readpage		= ext4_readpage,
410464769240SAlex Tomas 	.readpages		= ext4_readpages,
410543ce1d23SAneesh Kumar K.V 	.writepage		= ext4_writepage,
410664769240SAlex Tomas 	.writepages		= ext4_da_writepages,
410764769240SAlex Tomas 	.sync_page		= block_sync_page,
410864769240SAlex Tomas 	.write_begin		= ext4_da_write_begin,
410964769240SAlex Tomas 	.write_end		= ext4_da_write_end,
411064769240SAlex Tomas 	.bmap			= ext4_bmap,
411164769240SAlex Tomas 	.invalidatepage		= ext4_da_invalidatepage,
411264769240SAlex Tomas 	.releasepage		= ext4_releasepage,
411364769240SAlex Tomas 	.direct_IO		= ext4_direct_IO,
411464769240SAlex Tomas 	.migratepage		= buffer_migrate_page,
41158ab22b9aSHisashi Hifumi 	.is_partially_uptodate  = block_is_partially_uptodate,
4116aa261f54SAndi Kleen 	.error_remove_page	= generic_error_remove_page,
411764769240SAlex Tomas };
411864769240SAlex Tomas 
4119617ba13bSMingming Cao void ext4_set_aops(struct inode *inode)
4120ac27a0ecSDave Kleikamp {
4121cd1aac32SAneesh Kumar K.V 	if (ext4_should_order_data(inode) &&
4122cd1aac32SAneesh Kumar K.V 		test_opt(inode->i_sb, DELALLOC))
4123cd1aac32SAneesh Kumar K.V 		inode->i_mapping->a_ops = &ext4_da_aops;
4124cd1aac32SAneesh Kumar K.V 	else if (ext4_should_order_data(inode))
4125617ba13bSMingming Cao 		inode->i_mapping->a_ops = &ext4_ordered_aops;
412664769240SAlex Tomas 	else if (ext4_should_writeback_data(inode) &&
412764769240SAlex Tomas 		 test_opt(inode->i_sb, DELALLOC))
412864769240SAlex Tomas 		inode->i_mapping->a_ops = &ext4_da_aops;
4129617ba13bSMingming Cao 	else if (ext4_should_writeback_data(inode))
4130617ba13bSMingming Cao 		inode->i_mapping->a_ops = &ext4_writeback_aops;
4131ac27a0ecSDave Kleikamp 	else
4132617ba13bSMingming Cao 		inode->i_mapping->a_ops = &ext4_journalled_aops;
4133ac27a0ecSDave Kleikamp }
4134ac27a0ecSDave Kleikamp 
4135ac27a0ecSDave Kleikamp /*
4136617ba13bSMingming Cao  * ext4_block_truncate_page() zeroes out a mapping from file offset `from'
4137ac27a0ecSDave Kleikamp  * up to the end of the block which corresponds to `from'.
4138ac27a0ecSDave Kleikamp  * This required during truncate. We need to physically zero the tail end
4139ac27a0ecSDave Kleikamp  * of that block so it doesn't yield old data if the file is later grown.
4140ac27a0ecSDave Kleikamp  */
4141cf108bcaSJan Kara int ext4_block_truncate_page(handle_t *handle,
4142ac27a0ecSDave Kleikamp 		struct address_space *mapping, loff_t from)
4143ac27a0ecSDave Kleikamp {
4144617ba13bSMingming Cao 	ext4_fsblk_t index = from >> PAGE_CACHE_SHIFT;
4145ac27a0ecSDave Kleikamp 	unsigned offset = from & (PAGE_CACHE_SIZE-1);
4146725d26d3SAneesh Kumar K.V 	unsigned blocksize, length, pos;
4147725d26d3SAneesh Kumar K.V 	ext4_lblk_t iblock;
4148ac27a0ecSDave Kleikamp 	struct inode *inode = mapping->host;
4149ac27a0ecSDave Kleikamp 	struct buffer_head *bh;
4150cf108bcaSJan Kara 	struct page *page;
4151ac27a0ecSDave Kleikamp 	int err = 0;
4152ac27a0ecSDave Kleikamp 
4153f4a01017STheodore Ts'o 	page = find_or_create_page(mapping, from >> PAGE_CACHE_SHIFT,
4154f4a01017STheodore Ts'o 				   mapping_gfp_mask(mapping) & ~__GFP_FS);
4155cf108bcaSJan Kara 	if (!page)
4156cf108bcaSJan Kara 		return -EINVAL;
4157cf108bcaSJan Kara 
4158ac27a0ecSDave Kleikamp 	blocksize = inode->i_sb->s_blocksize;
4159ac27a0ecSDave Kleikamp 	length = blocksize - (offset & (blocksize - 1));
4160ac27a0ecSDave Kleikamp 	iblock = index << (PAGE_CACHE_SHIFT - inode->i_sb->s_blocksize_bits);
4161ac27a0ecSDave Kleikamp 
4162ac27a0ecSDave Kleikamp 	if (!page_has_buffers(page))
4163ac27a0ecSDave Kleikamp 		create_empty_buffers(page, blocksize, 0);
4164ac27a0ecSDave Kleikamp 
4165ac27a0ecSDave Kleikamp 	/* Find the buffer that contains "offset" */
4166ac27a0ecSDave Kleikamp 	bh = page_buffers(page);
4167ac27a0ecSDave Kleikamp 	pos = blocksize;
4168ac27a0ecSDave Kleikamp 	while (offset >= pos) {
4169ac27a0ecSDave Kleikamp 		bh = bh->b_this_page;
4170ac27a0ecSDave Kleikamp 		iblock++;
4171ac27a0ecSDave Kleikamp 		pos += blocksize;
4172ac27a0ecSDave Kleikamp 	}
4173ac27a0ecSDave Kleikamp 
4174ac27a0ecSDave Kleikamp 	err = 0;
4175ac27a0ecSDave Kleikamp 	if (buffer_freed(bh)) {
4176ac27a0ecSDave Kleikamp 		BUFFER_TRACE(bh, "freed: skip");
4177ac27a0ecSDave Kleikamp 		goto unlock;
4178ac27a0ecSDave Kleikamp 	}
4179ac27a0ecSDave Kleikamp 
4180ac27a0ecSDave Kleikamp 	if (!buffer_mapped(bh)) {
4181ac27a0ecSDave Kleikamp 		BUFFER_TRACE(bh, "unmapped");
4182617ba13bSMingming Cao 		ext4_get_block(inode, iblock, bh, 0);
4183ac27a0ecSDave Kleikamp 		/* unmapped? It's a hole - nothing to do */
4184ac27a0ecSDave Kleikamp 		if (!buffer_mapped(bh)) {
4185ac27a0ecSDave Kleikamp 			BUFFER_TRACE(bh, "still unmapped");
4186ac27a0ecSDave Kleikamp 			goto unlock;
4187ac27a0ecSDave Kleikamp 		}
4188ac27a0ecSDave Kleikamp 	}
4189ac27a0ecSDave Kleikamp 
4190ac27a0ecSDave Kleikamp 	/* Ok, it's mapped. Make sure it's up-to-date */
4191ac27a0ecSDave Kleikamp 	if (PageUptodate(page))
4192ac27a0ecSDave Kleikamp 		set_buffer_uptodate(bh);
4193ac27a0ecSDave Kleikamp 
4194ac27a0ecSDave Kleikamp 	if (!buffer_uptodate(bh)) {
4195ac27a0ecSDave Kleikamp 		err = -EIO;
4196ac27a0ecSDave Kleikamp 		ll_rw_block(READ, 1, &bh);
4197ac27a0ecSDave Kleikamp 		wait_on_buffer(bh);
4198ac27a0ecSDave Kleikamp 		/* Uhhuh. Read error. Complain and punt. */
4199ac27a0ecSDave Kleikamp 		if (!buffer_uptodate(bh))
4200ac27a0ecSDave Kleikamp 			goto unlock;
4201ac27a0ecSDave Kleikamp 	}
4202ac27a0ecSDave Kleikamp 
4203617ba13bSMingming Cao 	if (ext4_should_journal_data(inode)) {
4204ac27a0ecSDave Kleikamp 		BUFFER_TRACE(bh, "get write access");
4205617ba13bSMingming Cao 		err = ext4_journal_get_write_access(handle, bh);
4206ac27a0ecSDave Kleikamp 		if (err)
4207ac27a0ecSDave Kleikamp 			goto unlock;
4208ac27a0ecSDave Kleikamp 	}
4209ac27a0ecSDave Kleikamp 
4210eebd2aa3SChristoph Lameter 	zero_user(page, offset, length);
4211ac27a0ecSDave Kleikamp 
4212ac27a0ecSDave Kleikamp 	BUFFER_TRACE(bh, "zeroed end of block");
4213ac27a0ecSDave Kleikamp 
4214ac27a0ecSDave Kleikamp 	err = 0;
4215617ba13bSMingming Cao 	if (ext4_should_journal_data(inode)) {
42160390131bSFrank Mayhar 		err = ext4_handle_dirty_metadata(handle, inode, bh);
4217ac27a0ecSDave Kleikamp 	} else {
4218617ba13bSMingming Cao 		if (ext4_should_order_data(inode))
4219678aaf48SJan Kara 			err = ext4_jbd2_file_inode(handle, inode);
4220ac27a0ecSDave Kleikamp 		mark_buffer_dirty(bh);
4221ac27a0ecSDave Kleikamp 	}
4222ac27a0ecSDave Kleikamp 
4223ac27a0ecSDave Kleikamp unlock:
4224ac27a0ecSDave Kleikamp 	unlock_page(page);
4225ac27a0ecSDave Kleikamp 	page_cache_release(page);
4226ac27a0ecSDave Kleikamp 	return err;
4227ac27a0ecSDave Kleikamp }
4228ac27a0ecSDave Kleikamp 
4229ac27a0ecSDave Kleikamp /*
4230ac27a0ecSDave Kleikamp  * Probably it should be a library function... search for first non-zero word
4231ac27a0ecSDave Kleikamp  * or memcmp with zero_page, whatever is better for particular architecture.
4232ac27a0ecSDave Kleikamp  * Linus?
4233ac27a0ecSDave Kleikamp  */
4234ac27a0ecSDave Kleikamp static inline int all_zeroes(__le32 *p, __le32 *q)
4235ac27a0ecSDave Kleikamp {
4236ac27a0ecSDave Kleikamp 	while (p < q)
4237ac27a0ecSDave Kleikamp 		if (*p++)
4238ac27a0ecSDave Kleikamp 			return 0;
4239ac27a0ecSDave Kleikamp 	return 1;
4240ac27a0ecSDave Kleikamp }
4241ac27a0ecSDave Kleikamp 
4242ac27a0ecSDave Kleikamp /**
4243617ba13bSMingming Cao  *	ext4_find_shared - find the indirect blocks for partial truncation.
4244ac27a0ecSDave Kleikamp  *	@inode:	  inode in question
4245ac27a0ecSDave Kleikamp  *	@depth:	  depth of the affected branch
4246617ba13bSMingming Cao  *	@offsets: offsets of pointers in that branch (see ext4_block_to_path)
4247ac27a0ecSDave Kleikamp  *	@chain:	  place to store the pointers to partial indirect blocks
4248ac27a0ecSDave Kleikamp  *	@top:	  place to the (detached) top of branch
4249ac27a0ecSDave Kleikamp  *
4250617ba13bSMingming Cao  *	This is a helper function used by ext4_truncate().
4251ac27a0ecSDave Kleikamp  *
4252ac27a0ecSDave Kleikamp  *	When we do truncate() we may have to clean the ends of several
4253ac27a0ecSDave Kleikamp  *	indirect blocks but leave the blocks themselves alive. Block is
4254ac27a0ecSDave Kleikamp  *	partially truncated if some data below the new i_size is refered
4255ac27a0ecSDave Kleikamp  *	from it (and it is on the path to the first completely truncated
4256ac27a0ecSDave Kleikamp  *	data block, indeed).  We have to free the top of that path along
4257ac27a0ecSDave Kleikamp  *	with everything to the right of the path. Since no allocation
4258617ba13bSMingming Cao  *	past the truncation point is possible until ext4_truncate()
4259ac27a0ecSDave Kleikamp  *	finishes, we may safely do the latter, but top of branch may
4260ac27a0ecSDave Kleikamp  *	require special attention - pageout below the truncation point
4261ac27a0ecSDave Kleikamp  *	might try to populate it.
4262ac27a0ecSDave Kleikamp  *
4263ac27a0ecSDave Kleikamp  *	We atomically detach the top of branch from the tree, store the
4264ac27a0ecSDave Kleikamp  *	block number of its root in *@top, pointers to buffer_heads of
4265ac27a0ecSDave Kleikamp  *	partially truncated blocks - in @chain[].bh and pointers to
4266ac27a0ecSDave Kleikamp  *	their last elements that should not be removed - in
4267ac27a0ecSDave Kleikamp  *	@chain[].p. Return value is the pointer to last filled element
4268ac27a0ecSDave Kleikamp  *	of @chain.
4269ac27a0ecSDave Kleikamp  *
4270ac27a0ecSDave Kleikamp  *	The work left to caller to do the actual freeing of subtrees:
4271ac27a0ecSDave Kleikamp  *		a) free the subtree starting from *@top
4272ac27a0ecSDave Kleikamp  *		b) free the subtrees whose roots are stored in
4273ac27a0ecSDave Kleikamp  *			(@chain[i].p+1 .. end of @chain[i].bh->b_data)
4274ac27a0ecSDave Kleikamp  *		c) free the subtrees growing from the inode past the @chain[0].
4275ac27a0ecSDave Kleikamp  *			(no partially truncated stuff there).  */
4276ac27a0ecSDave Kleikamp 
4277617ba13bSMingming Cao static Indirect *ext4_find_shared(struct inode *inode, int depth,
4278de9a55b8STheodore Ts'o 				  ext4_lblk_t offsets[4], Indirect chain[4],
4279de9a55b8STheodore Ts'o 				  __le32 *top)
4280ac27a0ecSDave Kleikamp {
4281ac27a0ecSDave Kleikamp 	Indirect *partial, *p;
4282ac27a0ecSDave Kleikamp 	int k, err;
4283ac27a0ecSDave Kleikamp 
4284ac27a0ecSDave Kleikamp 	*top = 0;
4285bf48aabbSUwe Kleine-König 	/* Make k index the deepest non-null offset + 1 */
4286ac27a0ecSDave Kleikamp 	for (k = depth; k > 1 && !offsets[k-1]; k--)
4287ac27a0ecSDave Kleikamp 		;
4288617ba13bSMingming Cao 	partial = ext4_get_branch(inode, k, offsets, chain, &err);
4289ac27a0ecSDave Kleikamp 	/* Writer: pointers */
4290ac27a0ecSDave Kleikamp 	if (!partial)
4291ac27a0ecSDave Kleikamp 		partial = chain + k-1;
4292ac27a0ecSDave Kleikamp 	/*
4293ac27a0ecSDave Kleikamp 	 * If the branch acquired continuation since we've looked at it -
4294ac27a0ecSDave Kleikamp 	 * fine, it should all survive and (new) top doesn't belong to us.
4295ac27a0ecSDave Kleikamp 	 */
4296ac27a0ecSDave Kleikamp 	if (!partial->key && *partial->p)
4297ac27a0ecSDave Kleikamp 		/* Writer: end */
4298ac27a0ecSDave Kleikamp 		goto no_top;
4299af5bc92dSTheodore Ts'o 	for (p = partial; (p > chain) && all_zeroes((__le32 *) p->bh->b_data, p->p); p--)
4300ac27a0ecSDave Kleikamp 		;
4301ac27a0ecSDave Kleikamp 	/*
4302ac27a0ecSDave Kleikamp 	 * OK, we've found the last block that must survive. The rest of our
4303ac27a0ecSDave Kleikamp 	 * branch should be detached before unlocking. However, if that rest
4304ac27a0ecSDave Kleikamp 	 * of branch is all ours and does not grow immediately from the inode
4305ac27a0ecSDave Kleikamp 	 * it's easier to cheat and just decrement partial->p.
4306ac27a0ecSDave Kleikamp 	 */
4307ac27a0ecSDave Kleikamp 	if (p == chain + k - 1 && p > chain) {
4308ac27a0ecSDave Kleikamp 		p->p--;
4309ac27a0ecSDave Kleikamp 	} else {
4310ac27a0ecSDave Kleikamp 		*top = *p->p;
4311617ba13bSMingming Cao 		/* Nope, don't do this in ext4.  Must leave the tree intact */
4312ac27a0ecSDave Kleikamp #if 0
4313ac27a0ecSDave Kleikamp 		*p->p = 0;
4314ac27a0ecSDave Kleikamp #endif
4315ac27a0ecSDave Kleikamp 	}
4316ac27a0ecSDave Kleikamp 	/* Writer: end */
4317ac27a0ecSDave Kleikamp 
4318ac27a0ecSDave Kleikamp 	while (partial > p) {
4319ac27a0ecSDave Kleikamp 		brelse(partial->bh);
4320ac27a0ecSDave Kleikamp 		partial--;
4321ac27a0ecSDave Kleikamp 	}
4322ac27a0ecSDave Kleikamp no_top:
4323ac27a0ecSDave Kleikamp 	return partial;
4324ac27a0ecSDave Kleikamp }
4325ac27a0ecSDave Kleikamp 
4326ac27a0ecSDave Kleikamp /*
4327ac27a0ecSDave Kleikamp  * Zero a number of block pointers in either an inode or an indirect block.
4328ac27a0ecSDave Kleikamp  * If we restart the transaction we must again get write access to the
4329ac27a0ecSDave Kleikamp  * indirect block for further modification.
4330ac27a0ecSDave Kleikamp  *
4331ac27a0ecSDave Kleikamp  * We release `count' blocks on disk, but (last - first) may be greater
4332ac27a0ecSDave Kleikamp  * than `count' because there can be holes in there.
4333ac27a0ecSDave Kleikamp  */
43341f2acb60STheodore Ts'o static int ext4_clear_blocks(handle_t *handle, struct inode *inode,
4335de9a55b8STheodore Ts'o 			     struct buffer_head *bh,
4336de9a55b8STheodore Ts'o 			     ext4_fsblk_t block_to_free,
4337de9a55b8STheodore Ts'o 			     unsigned long count, __le32 *first,
4338de9a55b8STheodore Ts'o 			     __le32 *last)
4339ac27a0ecSDave Kleikamp {
4340ac27a0ecSDave Kleikamp 	__le32 *p;
43411f2acb60STheodore Ts'o 	int	flags = EXT4_FREE_BLOCKS_FORGET | EXT4_FREE_BLOCKS_VALIDATED;
4342e6362609STheodore Ts'o 
4343e6362609STheodore Ts'o 	if (S_ISDIR(inode->i_mode) || S_ISLNK(inode->i_mode))
4344e6362609STheodore Ts'o 		flags |= EXT4_FREE_BLOCKS_METADATA;
434550689696STheodore Ts'o 
43461f2acb60STheodore Ts'o 	if (!ext4_data_block_valid(EXT4_SB(inode->i_sb), block_to_free,
43471f2acb60STheodore Ts'o 				   count)) {
434824676da4STheodore Ts'o 		EXT4_ERROR_INODE(inode, "attempt to clear invalid "
434924676da4STheodore Ts'o 				 "blocks %llu len %lu",
435024676da4STheodore Ts'o 				 (unsigned long long) block_to_free, count);
43511f2acb60STheodore Ts'o 		return 1;
43521f2acb60STheodore Ts'o 	}
43531f2acb60STheodore Ts'o 
4354ac27a0ecSDave Kleikamp 	if (try_to_extend_transaction(handle, inode)) {
4355ac27a0ecSDave Kleikamp 		if (bh) {
43560390131bSFrank Mayhar 			BUFFER_TRACE(bh, "call ext4_handle_dirty_metadata");
43570390131bSFrank Mayhar 			ext4_handle_dirty_metadata(handle, inode, bh);
4358ac27a0ecSDave Kleikamp 		}
4359617ba13bSMingming Cao 		ext4_mark_inode_dirty(handle, inode);
4360487caeefSJan Kara 		ext4_truncate_restart_trans(handle, inode,
4361487caeefSJan Kara 					    blocks_for_truncate(inode));
4362ac27a0ecSDave Kleikamp 		if (bh) {
4363ac27a0ecSDave Kleikamp 			BUFFER_TRACE(bh, "retaking write access");
4364617ba13bSMingming Cao 			ext4_journal_get_write_access(handle, bh);
4365ac27a0ecSDave Kleikamp 		}
4366ac27a0ecSDave Kleikamp 	}
4367ac27a0ecSDave Kleikamp 
4368e6362609STheodore Ts'o 	for (p = first; p < last; p++)
4369ac27a0ecSDave Kleikamp 		*p = 0;
4370ac27a0ecSDave Kleikamp 
4371e6362609STheodore Ts'o 	ext4_free_blocks(handle, inode, 0, block_to_free, count, flags);
43721f2acb60STheodore Ts'o 	return 0;
4373ac27a0ecSDave Kleikamp }
4374ac27a0ecSDave Kleikamp 
4375ac27a0ecSDave Kleikamp /**
4376617ba13bSMingming Cao  * ext4_free_data - free a list of data blocks
4377ac27a0ecSDave Kleikamp  * @handle:	handle for this transaction
4378ac27a0ecSDave Kleikamp  * @inode:	inode we are dealing with
4379ac27a0ecSDave Kleikamp  * @this_bh:	indirect buffer_head which contains *@first and *@last
4380ac27a0ecSDave Kleikamp  * @first:	array of block numbers
4381ac27a0ecSDave Kleikamp  * @last:	points immediately past the end of array
4382ac27a0ecSDave Kleikamp  *
4383ac27a0ecSDave Kleikamp  * We are freeing all blocks refered from that array (numbers are stored as
4384ac27a0ecSDave Kleikamp  * little-endian 32-bit) and updating @inode->i_blocks appropriately.
4385ac27a0ecSDave Kleikamp  *
4386ac27a0ecSDave Kleikamp  * We accumulate contiguous runs of blocks to free.  Conveniently, if these
4387ac27a0ecSDave Kleikamp  * blocks are contiguous then releasing them at one time will only affect one
4388ac27a0ecSDave Kleikamp  * or two bitmap blocks (+ group descriptor(s) and superblock) and we won't
4389ac27a0ecSDave Kleikamp  * actually use a lot of journal space.
4390ac27a0ecSDave Kleikamp  *
4391ac27a0ecSDave Kleikamp  * @this_bh will be %NULL if @first and @last point into the inode's direct
4392ac27a0ecSDave Kleikamp  * block pointers.
4393ac27a0ecSDave Kleikamp  */
4394617ba13bSMingming Cao static void ext4_free_data(handle_t *handle, struct inode *inode,
4395ac27a0ecSDave Kleikamp 			   struct buffer_head *this_bh,
4396ac27a0ecSDave Kleikamp 			   __le32 *first, __le32 *last)
4397ac27a0ecSDave Kleikamp {
4398617ba13bSMingming Cao 	ext4_fsblk_t block_to_free = 0;    /* Starting block # of a run */
4399ac27a0ecSDave Kleikamp 	unsigned long count = 0;	    /* Number of blocks in the run */
4400ac27a0ecSDave Kleikamp 	__le32 *block_to_free_p = NULL;	    /* Pointer into inode/ind
4401ac27a0ecSDave Kleikamp 					       corresponding to
4402ac27a0ecSDave Kleikamp 					       block_to_free */
4403617ba13bSMingming Cao 	ext4_fsblk_t nr;		    /* Current block # */
4404ac27a0ecSDave Kleikamp 	__le32 *p;			    /* Pointer into inode/ind
4405ac27a0ecSDave Kleikamp 					       for current block */
4406ac27a0ecSDave Kleikamp 	int err;
4407ac27a0ecSDave Kleikamp 
4408ac27a0ecSDave Kleikamp 	if (this_bh) {				/* For indirect block */
4409ac27a0ecSDave Kleikamp 		BUFFER_TRACE(this_bh, "get_write_access");
4410617ba13bSMingming Cao 		err = ext4_journal_get_write_access(handle, this_bh);
4411ac27a0ecSDave Kleikamp 		/* Important: if we can't update the indirect pointers
4412ac27a0ecSDave Kleikamp 		 * to the blocks, we can't free them. */
4413ac27a0ecSDave Kleikamp 		if (err)
4414ac27a0ecSDave Kleikamp 			return;
4415ac27a0ecSDave Kleikamp 	}
4416ac27a0ecSDave Kleikamp 
4417ac27a0ecSDave Kleikamp 	for (p = first; p < last; p++) {
4418ac27a0ecSDave Kleikamp 		nr = le32_to_cpu(*p);
4419ac27a0ecSDave Kleikamp 		if (nr) {
4420ac27a0ecSDave Kleikamp 			/* accumulate blocks to free if they're contiguous */
4421ac27a0ecSDave Kleikamp 			if (count == 0) {
4422ac27a0ecSDave Kleikamp 				block_to_free = nr;
4423ac27a0ecSDave Kleikamp 				block_to_free_p = p;
4424ac27a0ecSDave Kleikamp 				count = 1;
4425ac27a0ecSDave Kleikamp 			} else if (nr == block_to_free + count) {
4426ac27a0ecSDave Kleikamp 				count++;
4427ac27a0ecSDave Kleikamp 			} else {
44281f2acb60STheodore Ts'o 				if (ext4_clear_blocks(handle, inode, this_bh,
44291f2acb60STheodore Ts'o 						      block_to_free, count,
44301f2acb60STheodore Ts'o 						      block_to_free_p, p))
44311f2acb60STheodore Ts'o 					break;
4432ac27a0ecSDave Kleikamp 				block_to_free = nr;
4433ac27a0ecSDave Kleikamp 				block_to_free_p = p;
4434ac27a0ecSDave Kleikamp 				count = 1;
4435ac27a0ecSDave Kleikamp 			}
4436ac27a0ecSDave Kleikamp 		}
4437ac27a0ecSDave Kleikamp 	}
4438ac27a0ecSDave Kleikamp 
4439ac27a0ecSDave Kleikamp 	if (count > 0)
4440617ba13bSMingming Cao 		ext4_clear_blocks(handle, inode, this_bh, block_to_free,
4441ac27a0ecSDave Kleikamp 				  count, block_to_free_p, p);
4442ac27a0ecSDave Kleikamp 
4443ac27a0ecSDave Kleikamp 	if (this_bh) {
44440390131bSFrank Mayhar 		BUFFER_TRACE(this_bh, "call ext4_handle_dirty_metadata");
444571dc8fbcSDuane Griffin 
444671dc8fbcSDuane Griffin 		/*
444771dc8fbcSDuane Griffin 		 * The buffer head should have an attached journal head at this
444871dc8fbcSDuane Griffin 		 * point. However, if the data is corrupted and an indirect
444971dc8fbcSDuane Griffin 		 * block pointed to itself, it would have been detached when
445071dc8fbcSDuane Griffin 		 * the block was cleared. Check for this instead of OOPSing.
445171dc8fbcSDuane Griffin 		 */
4452e7f07968STheodore Ts'o 		if ((EXT4_JOURNAL(inode) == NULL) || bh2jh(this_bh))
44530390131bSFrank Mayhar 			ext4_handle_dirty_metadata(handle, inode, this_bh);
445471dc8fbcSDuane Griffin 		else
445524676da4STheodore Ts'o 			EXT4_ERROR_INODE(inode,
445624676da4STheodore Ts'o 					 "circular indirect block detected at "
445724676da4STheodore Ts'o 					 "block %llu",
445871dc8fbcSDuane Griffin 				(unsigned long long) this_bh->b_blocknr);
4459ac27a0ecSDave Kleikamp 	}
4460ac27a0ecSDave Kleikamp }
4461ac27a0ecSDave Kleikamp 
4462ac27a0ecSDave Kleikamp /**
4463617ba13bSMingming Cao  *	ext4_free_branches - free an array of branches
4464ac27a0ecSDave Kleikamp  *	@handle: JBD handle for this transaction
4465ac27a0ecSDave Kleikamp  *	@inode:	inode we are dealing with
4466ac27a0ecSDave Kleikamp  *	@parent_bh: the buffer_head which contains *@first and *@last
4467ac27a0ecSDave Kleikamp  *	@first:	array of block numbers
4468ac27a0ecSDave Kleikamp  *	@last:	pointer immediately past the end of array
4469ac27a0ecSDave Kleikamp  *	@depth:	depth of the branches to free
4470ac27a0ecSDave Kleikamp  *
4471ac27a0ecSDave Kleikamp  *	We are freeing all blocks refered from these branches (numbers are
4472ac27a0ecSDave Kleikamp  *	stored as little-endian 32-bit) and updating @inode->i_blocks
4473ac27a0ecSDave Kleikamp  *	appropriately.
4474ac27a0ecSDave Kleikamp  */
4475617ba13bSMingming Cao static void ext4_free_branches(handle_t *handle, struct inode *inode,
4476ac27a0ecSDave Kleikamp 			       struct buffer_head *parent_bh,
4477ac27a0ecSDave Kleikamp 			       __le32 *first, __le32 *last, int depth)
4478ac27a0ecSDave Kleikamp {
4479617ba13bSMingming Cao 	ext4_fsblk_t nr;
4480ac27a0ecSDave Kleikamp 	__le32 *p;
4481ac27a0ecSDave Kleikamp 
44820390131bSFrank Mayhar 	if (ext4_handle_is_aborted(handle))
4483ac27a0ecSDave Kleikamp 		return;
4484ac27a0ecSDave Kleikamp 
4485ac27a0ecSDave Kleikamp 	if (depth--) {
4486ac27a0ecSDave Kleikamp 		struct buffer_head *bh;
4487617ba13bSMingming Cao 		int addr_per_block = EXT4_ADDR_PER_BLOCK(inode->i_sb);
4488ac27a0ecSDave Kleikamp 		p = last;
4489ac27a0ecSDave Kleikamp 		while (--p >= first) {
4490ac27a0ecSDave Kleikamp 			nr = le32_to_cpu(*p);
4491ac27a0ecSDave Kleikamp 			if (!nr)
4492ac27a0ecSDave Kleikamp 				continue;		/* A hole */
4493ac27a0ecSDave Kleikamp 
44941f2acb60STheodore Ts'o 			if (!ext4_data_block_valid(EXT4_SB(inode->i_sb),
44951f2acb60STheodore Ts'o 						   nr, 1)) {
449624676da4STheodore Ts'o 				EXT4_ERROR_INODE(inode,
449724676da4STheodore Ts'o 						 "invalid indirect mapped "
449824676da4STheodore Ts'o 						 "block %lu (level %d)",
449924676da4STheodore Ts'o 						 (unsigned long) nr, depth);
45001f2acb60STheodore Ts'o 				break;
45011f2acb60STheodore Ts'o 			}
45021f2acb60STheodore Ts'o 
4503ac27a0ecSDave Kleikamp 			/* Go read the buffer for the next level down */
4504ac27a0ecSDave Kleikamp 			bh = sb_bread(inode->i_sb, nr);
4505ac27a0ecSDave Kleikamp 
4506ac27a0ecSDave Kleikamp 			/*
4507ac27a0ecSDave Kleikamp 			 * A read failure? Report error and clear slot
4508ac27a0ecSDave Kleikamp 			 * (should be rare).
4509ac27a0ecSDave Kleikamp 			 */
4510ac27a0ecSDave Kleikamp 			if (!bh) {
4511c398eda0STheodore Ts'o 				EXT4_ERROR_INODE_BLOCK(inode, nr,
4512c398eda0STheodore Ts'o 						       "Read failure");
4513ac27a0ecSDave Kleikamp 				continue;
4514ac27a0ecSDave Kleikamp 			}
4515ac27a0ecSDave Kleikamp 
4516ac27a0ecSDave Kleikamp 			/* This zaps the entire block.  Bottom up. */
4517ac27a0ecSDave Kleikamp 			BUFFER_TRACE(bh, "free child branches");
4518617ba13bSMingming Cao 			ext4_free_branches(handle, inode, bh,
4519ac27a0ecSDave Kleikamp 					(__le32 *) bh->b_data,
4520ac27a0ecSDave Kleikamp 					(__le32 *) bh->b_data + addr_per_block,
4521ac27a0ecSDave Kleikamp 					depth);
4522ac27a0ecSDave Kleikamp 
4523ac27a0ecSDave Kleikamp 			/*
4524ac27a0ecSDave Kleikamp 			 * Everything below this this pointer has been
4525ac27a0ecSDave Kleikamp 			 * released.  Now let this top-of-subtree go.
4526ac27a0ecSDave Kleikamp 			 *
4527ac27a0ecSDave Kleikamp 			 * We want the freeing of this indirect block to be
4528ac27a0ecSDave Kleikamp 			 * atomic in the journal with the updating of the
4529ac27a0ecSDave Kleikamp 			 * bitmap block which owns it.  So make some room in
4530ac27a0ecSDave Kleikamp 			 * the journal.
4531ac27a0ecSDave Kleikamp 			 *
4532ac27a0ecSDave Kleikamp 			 * We zero the parent pointer *after* freeing its
4533ac27a0ecSDave Kleikamp 			 * pointee in the bitmaps, so if extend_transaction()
4534ac27a0ecSDave Kleikamp 			 * for some reason fails to put the bitmap changes and
4535ac27a0ecSDave Kleikamp 			 * the release into the same transaction, recovery
4536ac27a0ecSDave Kleikamp 			 * will merely complain about releasing a free block,
4537ac27a0ecSDave Kleikamp 			 * rather than leaking blocks.
4538ac27a0ecSDave Kleikamp 			 */
45390390131bSFrank Mayhar 			if (ext4_handle_is_aborted(handle))
4540ac27a0ecSDave Kleikamp 				return;
4541ac27a0ecSDave Kleikamp 			if (try_to_extend_transaction(handle, inode)) {
4542617ba13bSMingming Cao 				ext4_mark_inode_dirty(handle, inode);
4543487caeefSJan Kara 				ext4_truncate_restart_trans(handle, inode,
4544487caeefSJan Kara 					    blocks_for_truncate(inode));
4545ac27a0ecSDave Kleikamp 			}
4546ac27a0ecSDave Kleikamp 
454740389687SAmir G 			/*
454840389687SAmir G 			 * The forget flag here is critical because if
454940389687SAmir G 			 * we are journaling (and not doing data
455040389687SAmir G 			 * journaling), we have to make sure a revoke
455140389687SAmir G 			 * record is written to prevent the journal
455240389687SAmir G 			 * replay from overwriting the (former)
455340389687SAmir G 			 * indirect block if it gets reallocated as a
455440389687SAmir G 			 * data block.  This must happen in the same
455540389687SAmir G 			 * transaction where the data blocks are
455640389687SAmir G 			 * actually freed.
455740389687SAmir G 			 */
4558e6362609STheodore Ts'o 			ext4_free_blocks(handle, inode, 0, nr, 1,
455940389687SAmir G 					 EXT4_FREE_BLOCKS_METADATA|
456040389687SAmir G 					 EXT4_FREE_BLOCKS_FORGET);
4561ac27a0ecSDave Kleikamp 
4562ac27a0ecSDave Kleikamp 			if (parent_bh) {
4563ac27a0ecSDave Kleikamp 				/*
4564ac27a0ecSDave Kleikamp 				 * The block which we have just freed is
4565ac27a0ecSDave Kleikamp 				 * pointed to by an indirect block: journal it
4566ac27a0ecSDave Kleikamp 				 */
4567ac27a0ecSDave Kleikamp 				BUFFER_TRACE(parent_bh, "get_write_access");
4568617ba13bSMingming Cao 				if (!ext4_journal_get_write_access(handle,
4569ac27a0ecSDave Kleikamp 								   parent_bh)){
4570ac27a0ecSDave Kleikamp 					*p = 0;
4571ac27a0ecSDave Kleikamp 					BUFFER_TRACE(parent_bh,
45720390131bSFrank Mayhar 					"call ext4_handle_dirty_metadata");
45730390131bSFrank Mayhar 					ext4_handle_dirty_metadata(handle,
45740390131bSFrank Mayhar 								   inode,
4575ac27a0ecSDave Kleikamp 								   parent_bh);
4576ac27a0ecSDave Kleikamp 				}
4577ac27a0ecSDave Kleikamp 			}
4578ac27a0ecSDave Kleikamp 		}
4579ac27a0ecSDave Kleikamp 	} else {
4580ac27a0ecSDave Kleikamp 		/* We have reached the bottom of the tree. */
4581ac27a0ecSDave Kleikamp 		BUFFER_TRACE(parent_bh, "free data blocks");
4582617ba13bSMingming Cao 		ext4_free_data(handle, inode, parent_bh, first, last);
4583ac27a0ecSDave Kleikamp 	}
4584ac27a0ecSDave Kleikamp }
4585ac27a0ecSDave Kleikamp 
458691ef4cafSDuane Griffin int ext4_can_truncate(struct inode *inode)
458791ef4cafSDuane Griffin {
458891ef4cafSDuane Griffin 	if (IS_APPEND(inode) || IS_IMMUTABLE(inode))
458991ef4cafSDuane Griffin 		return 0;
459091ef4cafSDuane Griffin 	if (S_ISREG(inode->i_mode))
459191ef4cafSDuane Griffin 		return 1;
459291ef4cafSDuane Griffin 	if (S_ISDIR(inode->i_mode))
459391ef4cafSDuane Griffin 		return 1;
459491ef4cafSDuane Griffin 	if (S_ISLNK(inode->i_mode))
459591ef4cafSDuane Griffin 		return !ext4_inode_is_fast_symlink(inode);
459691ef4cafSDuane Griffin 	return 0;
459791ef4cafSDuane Griffin }
459891ef4cafSDuane Griffin 
4599ac27a0ecSDave Kleikamp /*
4600617ba13bSMingming Cao  * ext4_truncate()
4601ac27a0ecSDave Kleikamp  *
4602617ba13bSMingming Cao  * We block out ext4_get_block() block instantiations across the entire
4603617ba13bSMingming Cao  * transaction, and VFS/VM ensures that ext4_truncate() cannot run
4604ac27a0ecSDave Kleikamp  * simultaneously on behalf of the same inode.
4605ac27a0ecSDave Kleikamp  *
4606ac27a0ecSDave Kleikamp  * As we work through the truncate and commmit bits of it to the journal there
4607ac27a0ecSDave Kleikamp  * is one core, guiding principle: the file's tree must always be consistent on
4608ac27a0ecSDave Kleikamp  * disk.  We must be able to restart the truncate after a crash.
4609ac27a0ecSDave Kleikamp  *
4610ac27a0ecSDave Kleikamp  * The file's tree may be transiently inconsistent in memory (although it
4611ac27a0ecSDave Kleikamp  * probably isn't), but whenever we close off and commit a journal transaction,
4612ac27a0ecSDave Kleikamp  * the contents of (the filesystem + the journal) must be consistent and
4613ac27a0ecSDave Kleikamp  * restartable.  It's pretty simple, really: bottom up, right to left (although
4614ac27a0ecSDave Kleikamp  * left-to-right works OK too).
4615ac27a0ecSDave Kleikamp  *
4616ac27a0ecSDave Kleikamp  * Note that at recovery time, journal replay occurs *before* the restart of
4617ac27a0ecSDave Kleikamp  * truncate against the orphan inode list.
4618ac27a0ecSDave Kleikamp  *
4619ac27a0ecSDave Kleikamp  * The committed inode has the new, desired i_size (which is the same as
4620617ba13bSMingming Cao  * i_disksize in this case).  After a crash, ext4_orphan_cleanup() will see
4621ac27a0ecSDave Kleikamp  * that this inode's truncate did not complete and it will again call
4622617ba13bSMingming Cao  * ext4_truncate() to have another go.  So there will be instantiated blocks
4623617ba13bSMingming Cao  * to the right of the truncation point in a crashed ext4 filesystem.  But
4624ac27a0ecSDave Kleikamp  * that's fine - as long as they are linked from the inode, the post-crash
4625617ba13bSMingming Cao  * ext4_truncate() run will find them and release them.
4626ac27a0ecSDave Kleikamp  */
4627617ba13bSMingming Cao void ext4_truncate(struct inode *inode)
4628ac27a0ecSDave Kleikamp {
4629ac27a0ecSDave Kleikamp 	handle_t *handle;
4630617ba13bSMingming Cao 	struct ext4_inode_info *ei = EXT4_I(inode);
4631ac27a0ecSDave Kleikamp 	__le32 *i_data = ei->i_data;
4632617ba13bSMingming Cao 	int addr_per_block = EXT4_ADDR_PER_BLOCK(inode->i_sb);
4633ac27a0ecSDave Kleikamp 	struct address_space *mapping = inode->i_mapping;
4634725d26d3SAneesh Kumar K.V 	ext4_lblk_t offsets[4];
4635ac27a0ecSDave Kleikamp 	Indirect chain[4];
4636ac27a0ecSDave Kleikamp 	Indirect *partial;
4637ac27a0ecSDave Kleikamp 	__le32 nr = 0;
4638ac27a0ecSDave Kleikamp 	int n;
4639725d26d3SAneesh Kumar K.V 	ext4_lblk_t last_block;
4640ac27a0ecSDave Kleikamp 	unsigned blocksize = inode->i_sb->s_blocksize;
4641ac27a0ecSDave Kleikamp 
464291ef4cafSDuane Griffin 	if (!ext4_can_truncate(inode))
4643ac27a0ecSDave Kleikamp 		return;
4644ac27a0ecSDave Kleikamp 
464512e9b892SDmitry Monakhov 	ext4_clear_inode_flag(inode, EXT4_INODE_EOFBLOCKS);
4646c8d46e41SJiaying Zhang 
46475534fb5bSTheodore Ts'o 	if (inode->i_size == 0 && !test_opt(inode->i_sb, NO_AUTO_DA_ALLOC))
464819f5fb7aSTheodore Ts'o 		ext4_set_inode_state(inode, EXT4_STATE_DA_ALLOC_CLOSE);
46497d8f9f7dSTheodore Ts'o 
465012e9b892SDmitry Monakhov 	if (ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)) {
4651cf108bcaSJan Kara 		ext4_ext_truncate(inode);
46521d03ec98SAneesh Kumar K.V 		return;
46531d03ec98SAneesh Kumar K.V 	}
4654a86c6181SAlex Tomas 
4655ac27a0ecSDave Kleikamp 	handle = start_transaction(inode);
4656cf108bcaSJan Kara 	if (IS_ERR(handle))
4657ac27a0ecSDave Kleikamp 		return;		/* AKPM: return what? */
4658ac27a0ecSDave Kleikamp 
4659ac27a0ecSDave Kleikamp 	last_block = (inode->i_size + blocksize-1)
4660617ba13bSMingming Cao 					>> EXT4_BLOCK_SIZE_BITS(inode->i_sb);
4661ac27a0ecSDave Kleikamp 
4662cf108bcaSJan Kara 	if (inode->i_size & (blocksize - 1))
4663cf108bcaSJan Kara 		if (ext4_block_truncate_page(handle, mapping, inode->i_size))
4664cf108bcaSJan Kara 			goto out_stop;
4665ac27a0ecSDave Kleikamp 
4666617ba13bSMingming Cao 	n = ext4_block_to_path(inode, last_block, offsets, NULL);
4667ac27a0ecSDave Kleikamp 	if (n == 0)
4668ac27a0ecSDave Kleikamp 		goto out_stop;	/* error */
4669ac27a0ecSDave Kleikamp 
4670ac27a0ecSDave Kleikamp 	/*
4671ac27a0ecSDave Kleikamp 	 * OK.  This truncate is going to happen.  We add the inode to the
4672ac27a0ecSDave Kleikamp 	 * orphan list, so that if this truncate spans multiple transactions,
4673ac27a0ecSDave Kleikamp 	 * and we crash, we will resume the truncate when the filesystem
4674ac27a0ecSDave Kleikamp 	 * recovers.  It also marks the inode dirty, to catch the new size.
4675ac27a0ecSDave Kleikamp 	 *
4676ac27a0ecSDave Kleikamp 	 * Implication: the file must always be in a sane, consistent
4677ac27a0ecSDave Kleikamp 	 * truncatable state while each transaction commits.
4678ac27a0ecSDave Kleikamp 	 */
4679617ba13bSMingming Cao 	if (ext4_orphan_add(handle, inode))
4680ac27a0ecSDave Kleikamp 		goto out_stop;
4681ac27a0ecSDave Kleikamp 
4682ac27a0ecSDave Kleikamp 	/*
4683632eaeabSMingming Cao 	 * From here we block out all ext4_get_block() callers who want to
4684632eaeabSMingming Cao 	 * modify the block allocation tree.
4685632eaeabSMingming Cao 	 */
4686632eaeabSMingming Cao 	down_write(&ei->i_data_sem);
4687b4df2030STheodore Ts'o 
4688c2ea3fdeSTheodore Ts'o 	ext4_discard_preallocations(inode);
4689b4df2030STheodore Ts'o 
4690632eaeabSMingming Cao 	/*
4691ac27a0ecSDave Kleikamp 	 * The orphan list entry will now protect us from any crash which
4692ac27a0ecSDave Kleikamp 	 * occurs before the truncate completes, so it is now safe to propagate
4693ac27a0ecSDave Kleikamp 	 * the new, shorter inode size (held for now in i_size) into the
4694ac27a0ecSDave Kleikamp 	 * on-disk inode. We do this via i_disksize, which is the value which
4695617ba13bSMingming Cao 	 * ext4 *really* writes onto the disk inode.
4696ac27a0ecSDave Kleikamp 	 */
4697ac27a0ecSDave Kleikamp 	ei->i_disksize = inode->i_size;
4698ac27a0ecSDave Kleikamp 
4699ac27a0ecSDave Kleikamp 	if (n == 1) {		/* direct blocks */
4700617ba13bSMingming Cao 		ext4_free_data(handle, inode, NULL, i_data+offsets[0],
4701617ba13bSMingming Cao 			       i_data + EXT4_NDIR_BLOCKS);
4702ac27a0ecSDave Kleikamp 		goto do_indirects;
4703ac27a0ecSDave Kleikamp 	}
4704ac27a0ecSDave Kleikamp 
4705617ba13bSMingming Cao 	partial = ext4_find_shared(inode, n, offsets, chain, &nr);
4706ac27a0ecSDave Kleikamp 	/* Kill the top of shared branch (not detached) */
4707ac27a0ecSDave Kleikamp 	if (nr) {
4708ac27a0ecSDave Kleikamp 		if (partial == chain) {
4709ac27a0ecSDave Kleikamp 			/* Shared branch grows from the inode */
4710617ba13bSMingming Cao 			ext4_free_branches(handle, inode, NULL,
4711ac27a0ecSDave Kleikamp 					   &nr, &nr+1, (chain+n-1) - partial);
4712ac27a0ecSDave Kleikamp 			*partial->p = 0;
4713ac27a0ecSDave Kleikamp 			/*
4714ac27a0ecSDave Kleikamp 			 * We mark the inode dirty prior to restart,
4715ac27a0ecSDave Kleikamp 			 * and prior to stop.  No need for it here.
4716ac27a0ecSDave Kleikamp 			 */
4717ac27a0ecSDave Kleikamp 		} else {
4718ac27a0ecSDave Kleikamp 			/* Shared branch grows from an indirect block */
4719ac27a0ecSDave Kleikamp 			BUFFER_TRACE(partial->bh, "get_write_access");
4720617ba13bSMingming Cao 			ext4_free_branches(handle, inode, partial->bh,
4721ac27a0ecSDave Kleikamp 					partial->p,
4722ac27a0ecSDave Kleikamp 					partial->p+1, (chain+n-1) - partial);
4723ac27a0ecSDave Kleikamp 		}
4724ac27a0ecSDave Kleikamp 	}
4725ac27a0ecSDave Kleikamp 	/* Clear the ends of indirect blocks on the shared branch */
4726ac27a0ecSDave Kleikamp 	while (partial > chain) {
4727617ba13bSMingming Cao 		ext4_free_branches(handle, inode, partial->bh, partial->p + 1,
4728ac27a0ecSDave Kleikamp 				   (__le32*)partial->bh->b_data+addr_per_block,
4729ac27a0ecSDave Kleikamp 				   (chain+n-1) - partial);
4730ac27a0ecSDave Kleikamp 		BUFFER_TRACE(partial->bh, "call brelse");
4731ac27a0ecSDave Kleikamp 		brelse(partial->bh);
4732ac27a0ecSDave Kleikamp 		partial--;
4733ac27a0ecSDave Kleikamp 	}
4734ac27a0ecSDave Kleikamp do_indirects:
4735ac27a0ecSDave Kleikamp 	/* Kill the remaining (whole) subtrees */
4736ac27a0ecSDave Kleikamp 	switch (offsets[0]) {
4737ac27a0ecSDave Kleikamp 	default:
4738617ba13bSMingming Cao 		nr = i_data[EXT4_IND_BLOCK];
4739ac27a0ecSDave Kleikamp 		if (nr) {
4740617ba13bSMingming Cao 			ext4_free_branches(handle, inode, NULL, &nr, &nr+1, 1);
4741617ba13bSMingming Cao 			i_data[EXT4_IND_BLOCK] = 0;
4742ac27a0ecSDave Kleikamp 		}
4743617ba13bSMingming Cao 	case EXT4_IND_BLOCK:
4744617ba13bSMingming Cao 		nr = i_data[EXT4_DIND_BLOCK];
4745ac27a0ecSDave Kleikamp 		if (nr) {
4746617ba13bSMingming Cao 			ext4_free_branches(handle, inode, NULL, &nr, &nr+1, 2);
4747617ba13bSMingming Cao 			i_data[EXT4_DIND_BLOCK] = 0;
4748ac27a0ecSDave Kleikamp 		}
4749617ba13bSMingming Cao 	case EXT4_DIND_BLOCK:
4750617ba13bSMingming Cao 		nr = i_data[EXT4_TIND_BLOCK];
4751ac27a0ecSDave Kleikamp 		if (nr) {
4752617ba13bSMingming Cao 			ext4_free_branches(handle, inode, NULL, &nr, &nr+1, 3);
4753617ba13bSMingming Cao 			i_data[EXT4_TIND_BLOCK] = 0;
4754ac27a0ecSDave Kleikamp 		}
4755617ba13bSMingming Cao 	case EXT4_TIND_BLOCK:
4756ac27a0ecSDave Kleikamp 		;
4757ac27a0ecSDave Kleikamp 	}
4758ac27a0ecSDave Kleikamp 
47590e855ac8SAneesh Kumar K.V 	up_write(&ei->i_data_sem);
4760ef7f3835SKalpak Shah 	inode->i_mtime = inode->i_ctime = ext4_current_time(inode);
4761617ba13bSMingming Cao 	ext4_mark_inode_dirty(handle, inode);
4762ac27a0ecSDave Kleikamp 
4763ac27a0ecSDave Kleikamp 	/*
4764ac27a0ecSDave Kleikamp 	 * In a multi-transaction truncate, we only make the final transaction
4765ac27a0ecSDave Kleikamp 	 * synchronous
4766ac27a0ecSDave Kleikamp 	 */
4767ac27a0ecSDave Kleikamp 	if (IS_SYNC(inode))
47680390131bSFrank Mayhar 		ext4_handle_sync(handle);
4769ac27a0ecSDave Kleikamp out_stop:
4770ac27a0ecSDave Kleikamp 	/*
4771ac27a0ecSDave Kleikamp 	 * If this was a simple ftruncate(), and the file will remain alive
4772ac27a0ecSDave Kleikamp 	 * then we need to clear up the orphan record which we created above.
4773ac27a0ecSDave Kleikamp 	 * However, if this was a real unlink then we were called by
4774617ba13bSMingming Cao 	 * ext4_delete_inode(), and we allow that function to clean up the
4775ac27a0ecSDave Kleikamp 	 * orphan info for us.
4776ac27a0ecSDave Kleikamp 	 */
4777ac27a0ecSDave Kleikamp 	if (inode->i_nlink)
4778617ba13bSMingming Cao 		ext4_orphan_del(handle, inode);
4779ac27a0ecSDave Kleikamp 
4780617ba13bSMingming Cao 	ext4_journal_stop(handle);
4781ac27a0ecSDave Kleikamp }
4782ac27a0ecSDave Kleikamp 
4783ac27a0ecSDave Kleikamp /*
4784617ba13bSMingming Cao  * ext4_get_inode_loc returns with an extra refcount against the inode's
4785ac27a0ecSDave Kleikamp  * underlying buffer_head on success. If 'in_mem' is true, we have all
4786ac27a0ecSDave Kleikamp  * data in memory that is needed to recreate the on-disk version of this
4787ac27a0ecSDave Kleikamp  * inode.
4788ac27a0ecSDave Kleikamp  */
4789617ba13bSMingming Cao static int __ext4_get_inode_loc(struct inode *inode,
4790617ba13bSMingming Cao 				struct ext4_iloc *iloc, int in_mem)
4791ac27a0ecSDave Kleikamp {
4792240799cdSTheodore Ts'o 	struct ext4_group_desc	*gdp;
4793ac27a0ecSDave Kleikamp 	struct buffer_head	*bh;
4794240799cdSTheodore Ts'o 	struct super_block	*sb = inode->i_sb;
4795240799cdSTheodore Ts'o 	ext4_fsblk_t		block;
4796240799cdSTheodore Ts'o 	int			inodes_per_block, inode_offset;
4797ac27a0ecSDave Kleikamp 
47983a06d778SAneesh Kumar K.V 	iloc->bh = NULL;
4799240799cdSTheodore Ts'o 	if (!ext4_valid_inum(sb, inode->i_ino))
4800ac27a0ecSDave Kleikamp 		return -EIO;
4801ac27a0ecSDave Kleikamp 
4802240799cdSTheodore Ts'o 	iloc->block_group = (inode->i_ino - 1) / EXT4_INODES_PER_GROUP(sb);
4803240799cdSTheodore Ts'o 	gdp = ext4_get_group_desc(sb, iloc->block_group, NULL);
4804240799cdSTheodore Ts'o 	if (!gdp)
4805240799cdSTheodore Ts'o 		return -EIO;
4806240799cdSTheodore Ts'o 
4807240799cdSTheodore Ts'o 	/*
4808240799cdSTheodore Ts'o 	 * Figure out the offset within the block group inode table
4809240799cdSTheodore Ts'o 	 */
4810240799cdSTheodore Ts'o 	inodes_per_block = (EXT4_BLOCK_SIZE(sb) / EXT4_INODE_SIZE(sb));
4811240799cdSTheodore Ts'o 	inode_offset = ((inode->i_ino - 1) %
4812240799cdSTheodore Ts'o 			EXT4_INODES_PER_GROUP(sb));
4813240799cdSTheodore Ts'o 	block = ext4_inode_table(sb, gdp) + (inode_offset / inodes_per_block);
4814240799cdSTheodore Ts'o 	iloc->offset = (inode_offset % inodes_per_block) * EXT4_INODE_SIZE(sb);
4815240799cdSTheodore Ts'o 
4816240799cdSTheodore Ts'o 	bh = sb_getblk(sb, block);
4817ac27a0ecSDave Kleikamp 	if (!bh) {
4818c398eda0STheodore Ts'o 		EXT4_ERROR_INODE_BLOCK(inode, block,
4819c398eda0STheodore Ts'o 				       "unable to read itable block");
4820ac27a0ecSDave Kleikamp 		return -EIO;
4821ac27a0ecSDave Kleikamp 	}
4822ac27a0ecSDave Kleikamp 	if (!buffer_uptodate(bh)) {
4823ac27a0ecSDave Kleikamp 		lock_buffer(bh);
48249c83a923SHidehiro Kawai 
48259c83a923SHidehiro Kawai 		/*
48269c83a923SHidehiro Kawai 		 * If the buffer has the write error flag, we have failed
48279c83a923SHidehiro Kawai 		 * to write out another inode in the same block.  In this
48289c83a923SHidehiro Kawai 		 * case, we don't have to read the block because we may
48299c83a923SHidehiro Kawai 		 * read the old inode data successfully.
48309c83a923SHidehiro Kawai 		 */
48319c83a923SHidehiro Kawai 		if (buffer_write_io_error(bh) && !buffer_uptodate(bh))
48329c83a923SHidehiro Kawai 			set_buffer_uptodate(bh);
48339c83a923SHidehiro Kawai 
4834ac27a0ecSDave Kleikamp 		if (buffer_uptodate(bh)) {
4835ac27a0ecSDave Kleikamp 			/* someone brought it uptodate while we waited */
4836ac27a0ecSDave Kleikamp 			unlock_buffer(bh);
4837ac27a0ecSDave Kleikamp 			goto has_buffer;
4838ac27a0ecSDave Kleikamp 		}
4839ac27a0ecSDave Kleikamp 
4840ac27a0ecSDave Kleikamp 		/*
4841ac27a0ecSDave Kleikamp 		 * If we have all information of the inode in memory and this
4842ac27a0ecSDave Kleikamp 		 * is the only valid inode in the block, we need not read the
4843ac27a0ecSDave Kleikamp 		 * block.
4844ac27a0ecSDave Kleikamp 		 */
4845ac27a0ecSDave Kleikamp 		if (in_mem) {
4846ac27a0ecSDave Kleikamp 			struct buffer_head *bitmap_bh;
4847240799cdSTheodore Ts'o 			int i, start;
4848ac27a0ecSDave Kleikamp 
4849240799cdSTheodore Ts'o 			start = inode_offset & ~(inodes_per_block - 1);
4850ac27a0ecSDave Kleikamp 
4851ac27a0ecSDave Kleikamp 			/* Is the inode bitmap in cache? */
4852240799cdSTheodore Ts'o 			bitmap_bh = sb_getblk(sb, ext4_inode_bitmap(sb, gdp));
4853ac27a0ecSDave Kleikamp 			if (!bitmap_bh)
4854ac27a0ecSDave Kleikamp 				goto make_io;
4855ac27a0ecSDave Kleikamp 
4856ac27a0ecSDave Kleikamp 			/*
4857ac27a0ecSDave Kleikamp 			 * If the inode bitmap isn't in cache then the
4858ac27a0ecSDave Kleikamp 			 * optimisation may end up performing two reads instead
4859ac27a0ecSDave Kleikamp 			 * of one, so skip it.
4860ac27a0ecSDave Kleikamp 			 */
4861ac27a0ecSDave Kleikamp 			if (!buffer_uptodate(bitmap_bh)) {
4862ac27a0ecSDave Kleikamp 				brelse(bitmap_bh);
4863ac27a0ecSDave Kleikamp 				goto make_io;
4864ac27a0ecSDave Kleikamp 			}
4865240799cdSTheodore Ts'o 			for (i = start; i < start + inodes_per_block; i++) {
4866ac27a0ecSDave Kleikamp 				if (i == inode_offset)
4867ac27a0ecSDave Kleikamp 					continue;
4868617ba13bSMingming Cao 				if (ext4_test_bit(i, bitmap_bh->b_data))
4869ac27a0ecSDave Kleikamp 					break;
4870ac27a0ecSDave Kleikamp 			}
4871ac27a0ecSDave Kleikamp 			brelse(bitmap_bh);
4872240799cdSTheodore Ts'o 			if (i == start + inodes_per_block) {
4873ac27a0ecSDave Kleikamp 				/* all other inodes are free, so skip I/O */
4874ac27a0ecSDave Kleikamp 				memset(bh->b_data, 0, bh->b_size);
4875ac27a0ecSDave Kleikamp 				set_buffer_uptodate(bh);
4876ac27a0ecSDave Kleikamp 				unlock_buffer(bh);
4877ac27a0ecSDave Kleikamp 				goto has_buffer;
4878ac27a0ecSDave Kleikamp 			}
4879ac27a0ecSDave Kleikamp 		}
4880ac27a0ecSDave Kleikamp 
4881ac27a0ecSDave Kleikamp make_io:
4882ac27a0ecSDave Kleikamp 		/*
4883240799cdSTheodore Ts'o 		 * If we need to do any I/O, try to pre-readahead extra
4884240799cdSTheodore Ts'o 		 * blocks from the inode table.
4885240799cdSTheodore Ts'o 		 */
4886240799cdSTheodore Ts'o 		if (EXT4_SB(sb)->s_inode_readahead_blks) {
4887240799cdSTheodore Ts'o 			ext4_fsblk_t b, end, table;
4888240799cdSTheodore Ts'o 			unsigned num;
4889240799cdSTheodore Ts'o 
4890240799cdSTheodore Ts'o 			table = ext4_inode_table(sb, gdp);
4891b713a5ecSTheodore Ts'o 			/* s_inode_readahead_blks is always a power of 2 */
4892240799cdSTheodore Ts'o 			b = block & ~(EXT4_SB(sb)->s_inode_readahead_blks-1);
4893240799cdSTheodore Ts'o 			if (table > b)
4894240799cdSTheodore Ts'o 				b = table;
4895240799cdSTheodore Ts'o 			end = b + EXT4_SB(sb)->s_inode_readahead_blks;
4896240799cdSTheodore Ts'o 			num = EXT4_INODES_PER_GROUP(sb);
4897240799cdSTheodore Ts'o 			if (EXT4_HAS_RO_COMPAT_FEATURE(sb,
4898240799cdSTheodore Ts'o 				       EXT4_FEATURE_RO_COMPAT_GDT_CSUM))
4899560671a0SAneesh Kumar K.V 				num -= ext4_itable_unused_count(sb, gdp);
4900240799cdSTheodore Ts'o 			table += num / inodes_per_block;
4901240799cdSTheodore Ts'o 			if (end > table)
4902240799cdSTheodore Ts'o 				end = table;
4903240799cdSTheodore Ts'o 			while (b <= end)
4904240799cdSTheodore Ts'o 				sb_breadahead(sb, b++);
4905240799cdSTheodore Ts'o 		}
4906240799cdSTheodore Ts'o 
4907240799cdSTheodore Ts'o 		/*
4908ac27a0ecSDave Kleikamp 		 * There are other valid inodes in the buffer, this inode
4909ac27a0ecSDave Kleikamp 		 * has in-inode xattrs, or we don't have this inode in memory.
4910ac27a0ecSDave Kleikamp 		 * Read the block from disk.
4911ac27a0ecSDave Kleikamp 		 */
4912ac27a0ecSDave Kleikamp 		get_bh(bh);
4913ac27a0ecSDave Kleikamp 		bh->b_end_io = end_buffer_read_sync;
4914ac27a0ecSDave Kleikamp 		submit_bh(READ_META, bh);
4915ac27a0ecSDave Kleikamp 		wait_on_buffer(bh);
4916ac27a0ecSDave Kleikamp 		if (!buffer_uptodate(bh)) {
4917c398eda0STheodore Ts'o 			EXT4_ERROR_INODE_BLOCK(inode, block,
4918c398eda0STheodore Ts'o 					       "unable to read itable block");
4919ac27a0ecSDave Kleikamp 			brelse(bh);
4920ac27a0ecSDave Kleikamp 			return -EIO;
4921ac27a0ecSDave Kleikamp 		}
4922ac27a0ecSDave Kleikamp 	}
4923ac27a0ecSDave Kleikamp has_buffer:
4924ac27a0ecSDave Kleikamp 	iloc->bh = bh;
4925ac27a0ecSDave Kleikamp 	return 0;
4926ac27a0ecSDave Kleikamp }
4927ac27a0ecSDave Kleikamp 
4928617ba13bSMingming Cao int ext4_get_inode_loc(struct inode *inode, struct ext4_iloc *iloc)
4929ac27a0ecSDave Kleikamp {
4930ac27a0ecSDave Kleikamp 	/* We have all inode data except xattrs in memory here. */
4931617ba13bSMingming Cao 	return __ext4_get_inode_loc(inode, iloc,
493219f5fb7aSTheodore Ts'o 		!ext4_test_inode_state(inode, EXT4_STATE_XATTR));
4933ac27a0ecSDave Kleikamp }
4934ac27a0ecSDave Kleikamp 
4935617ba13bSMingming Cao void ext4_set_inode_flags(struct inode *inode)
4936ac27a0ecSDave Kleikamp {
4937617ba13bSMingming Cao 	unsigned int flags = EXT4_I(inode)->i_flags;
4938ac27a0ecSDave Kleikamp 
4939ac27a0ecSDave Kleikamp 	inode->i_flags &= ~(S_SYNC|S_APPEND|S_IMMUTABLE|S_NOATIME|S_DIRSYNC);
4940617ba13bSMingming Cao 	if (flags & EXT4_SYNC_FL)
4941ac27a0ecSDave Kleikamp 		inode->i_flags |= S_SYNC;
4942617ba13bSMingming Cao 	if (flags & EXT4_APPEND_FL)
4943ac27a0ecSDave Kleikamp 		inode->i_flags |= S_APPEND;
4944617ba13bSMingming Cao 	if (flags & EXT4_IMMUTABLE_FL)
4945ac27a0ecSDave Kleikamp 		inode->i_flags |= S_IMMUTABLE;
4946617ba13bSMingming Cao 	if (flags & EXT4_NOATIME_FL)
4947ac27a0ecSDave Kleikamp 		inode->i_flags |= S_NOATIME;
4948617ba13bSMingming Cao 	if (flags & EXT4_DIRSYNC_FL)
4949ac27a0ecSDave Kleikamp 		inode->i_flags |= S_DIRSYNC;
4950ac27a0ecSDave Kleikamp }
4951ac27a0ecSDave Kleikamp 
4952ff9ddf7eSJan Kara /* Propagate flags from i_flags to EXT4_I(inode)->i_flags */
4953ff9ddf7eSJan Kara void ext4_get_inode_flags(struct ext4_inode_info *ei)
4954ff9ddf7eSJan Kara {
495584a8dce2SDmitry Monakhov 	unsigned int vfs_fl;
495684a8dce2SDmitry Monakhov 	unsigned long old_fl, new_fl;
4957ff9ddf7eSJan Kara 
495884a8dce2SDmitry Monakhov 	do {
495984a8dce2SDmitry Monakhov 		vfs_fl = ei->vfs_inode.i_flags;
496084a8dce2SDmitry Monakhov 		old_fl = ei->i_flags;
496184a8dce2SDmitry Monakhov 		new_fl = old_fl & ~(EXT4_SYNC_FL|EXT4_APPEND_FL|
496284a8dce2SDmitry Monakhov 				EXT4_IMMUTABLE_FL|EXT4_NOATIME_FL|
496384a8dce2SDmitry Monakhov 				EXT4_DIRSYNC_FL);
496484a8dce2SDmitry Monakhov 		if (vfs_fl & S_SYNC)
496584a8dce2SDmitry Monakhov 			new_fl |= EXT4_SYNC_FL;
496684a8dce2SDmitry Monakhov 		if (vfs_fl & S_APPEND)
496784a8dce2SDmitry Monakhov 			new_fl |= EXT4_APPEND_FL;
496884a8dce2SDmitry Monakhov 		if (vfs_fl & S_IMMUTABLE)
496984a8dce2SDmitry Monakhov 			new_fl |= EXT4_IMMUTABLE_FL;
497084a8dce2SDmitry Monakhov 		if (vfs_fl & S_NOATIME)
497184a8dce2SDmitry Monakhov 			new_fl |= EXT4_NOATIME_FL;
497284a8dce2SDmitry Monakhov 		if (vfs_fl & S_DIRSYNC)
497384a8dce2SDmitry Monakhov 			new_fl |= EXT4_DIRSYNC_FL;
497484a8dce2SDmitry Monakhov 	} while (cmpxchg(&ei->i_flags, old_fl, new_fl) != old_fl);
4975ff9ddf7eSJan Kara }
4976de9a55b8STheodore Ts'o 
49770fc1b451SAneesh Kumar K.V static blkcnt_t ext4_inode_blocks(struct ext4_inode *raw_inode,
49780fc1b451SAneesh Kumar K.V 				  struct ext4_inode_info *ei)
49790fc1b451SAneesh Kumar K.V {
49800fc1b451SAneesh Kumar K.V 	blkcnt_t i_blocks ;
49818180a562SAneesh Kumar K.V 	struct inode *inode = &(ei->vfs_inode);
49828180a562SAneesh Kumar K.V 	struct super_block *sb = inode->i_sb;
49830fc1b451SAneesh Kumar K.V 
49840fc1b451SAneesh Kumar K.V 	if (EXT4_HAS_RO_COMPAT_FEATURE(sb,
49850fc1b451SAneesh Kumar K.V 				EXT4_FEATURE_RO_COMPAT_HUGE_FILE)) {
49860fc1b451SAneesh Kumar K.V 		/* we are using combined 48 bit field */
49870fc1b451SAneesh Kumar K.V 		i_blocks = ((u64)le16_to_cpu(raw_inode->i_blocks_high)) << 32 |
49880fc1b451SAneesh Kumar K.V 					le32_to_cpu(raw_inode->i_blocks_lo);
498907a03824STheodore Ts'o 		if (ext4_test_inode_flag(inode, EXT4_INODE_HUGE_FILE)) {
49908180a562SAneesh Kumar K.V 			/* i_blocks represent file system block size */
49918180a562SAneesh Kumar K.V 			return i_blocks  << (inode->i_blkbits - 9);
49928180a562SAneesh Kumar K.V 		} else {
49930fc1b451SAneesh Kumar K.V 			return i_blocks;
49948180a562SAneesh Kumar K.V 		}
49950fc1b451SAneesh Kumar K.V 	} else {
49960fc1b451SAneesh Kumar K.V 		return le32_to_cpu(raw_inode->i_blocks_lo);
49970fc1b451SAneesh Kumar K.V 	}
49980fc1b451SAneesh Kumar K.V }
4999ff9ddf7eSJan Kara 
50001d1fe1eeSDavid Howells struct inode *ext4_iget(struct super_block *sb, unsigned long ino)
5001ac27a0ecSDave Kleikamp {
5002617ba13bSMingming Cao 	struct ext4_iloc iloc;
5003617ba13bSMingming Cao 	struct ext4_inode *raw_inode;
50041d1fe1eeSDavid Howells 	struct ext4_inode_info *ei;
50051d1fe1eeSDavid Howells 	struct inode *inode;
5006b436b9beSJan Kara 	journal_t *journal = EXT4_SB(sb)->s_journal;
50071d1fe1eeSDavid Howells 	long ret;
5008ac27a0ecSDave Kleikamp 	int block;
5009ac27a0ecSDave Kleikamp 
50101d1fe1eeSDavid Howells 	inode = iget_locked(sb, ino);
50111d1fe1eeSDavid Howells 	if (!inode)
50121d1fe1eeSDavid Howells 		return ERR_PTR(-ENOMEM);
50131d1fe1eeSDavid Howells 	if (!(inode->i_state & I_NEW))
50141d1fe1eeSDavid Howells 		return inode;
50151d1fe1eeSDavid Howells 
50161d1fe1eeSDavid Howells 	ei = EXT4_I(inode);
5017567f3e9aSTheodore Ts'o 	iloc.bh = 0;
5018ac27a0ecSDave Kleikamp 
50191d1fe1eeSDavid Howells 	ret = __ext4_get_inode_loc(inode, &iloc, 0);
50201d1fe1eeSDavid Howells 	if (ret < 0)
5021ac27a0ecSDave Kleikamp 		goto bad_inode;
5022617ba13bSMingming Cao 	raw_inode = ext4_raw_inode(&iloc);
5023ac27a0ecSDave Kleikamp 	inode->i_mode = le16_to_cpu(raw_inode->i_mode);
5024ac27a0ecSDave Kleikamp 	inode->i_uid = (uid_t)le16_to_cpu(raw_inode->i_uid_low);
5025ac27a0ecSDave Kleikamp 	inode->i_gid = (gid_t)le16_to_cpu(raw_inode->i_gid_low);
5026ac27a0ecSDave Kleikamp 	if (!(test_opt(inode->i_sb, NO_UID32))) {
5027ac27a0ecSDave Kleikamp 		inode->i_uid |= le16_to_cpu(raw_inode->i_uid_high) << 16;
5028ac27a0ecSDave Kleikamp 		inode->i_gid |= le16_to_cpu(raw_inode->i_gid_high) << 16;
5029ac27a0ecSDave Kleikamp 	}
5030ac27a0ecSDave Kleikamp 	inode->i_nlink = le16_to_cpu(raw_inode->i_links_count);
5031ac27a0ecSDave Kleikamp 
503219f5fb7aSTheodore Ts'o 	ei->i_state_flags = 0;
5033ac27a0ecSDave Kleikamp 	ei->i_dir_start_lookup = 0;
5034ac27a0ecSDave Kleikamp 	ei->i_dtime = le32_to_cpu(raw_inode->i_dtime);
5035ac27a0ecSDave Kleikamp 	/* We now have enough fields to check if the inode was active or not.
5036ac27a0ecSDave Kleikamp 	 * This is needed because nfsd might try to access dead inodes
5037ac27a0ecSDave Kleikamp 	 * the test is that same one that e2fsck uses
5038ac27a0ecSDave Kleikamp 	 * NeilBrown 1999oct15
5039ac27a0ecSDave Kleikamp 	 */
5040ac27a0ecSDave Kleikamp 	if (inode->i_nlink == 0) {
5041ac27a0ecSDave Kleikamp 		if (inode->i_mode == 0 ||
5042617ba13bSMingming Cao 		    !(EXT4_SB(inode->i_sb)->s_mount_state & EXT4_ORPHAN_FS)) {
5043ac27a0ecSDave Kleikamp 			/* this inode is deleted */
50441d1fe1eeSDavid Howells 			ret = -ESTALE;
5045ac27a0ecSDave Kleikamp 			goto bad_inode;
5046ac27a0ecSDave Kleikamp 		}
5047ac27a0ecSDave Kleikamp 		/* The only unlinked inodes we let through here have
5048ac27a0ecSDave Kleikamp 		 * valid i_mode and are being read by the orphan
5049ac27a0ecSDave Kleikamp 		 * recovery code: that's fine, we're about to complete
5050ac27a0ecSDave Kleikamp 		 * the process of deleting those. */
5051ac27a0ecSDave Kleikamp 	}
5052ac27a0ecSDave Kleikamp 	ei->i_flags = le32_to_cpu(raw_inode->i_flags);
50530fc1b451SAneesh Kumar K.V 	inode->i_blocks = ext4_inode_blocks(raw_inode, ei);
50547973c0c1SAneesh Kumar K.V 	ei->i_file_acl = le32_to_cpu(raw_inode->i_file_acl_lo);
5055a9e81742STheodore Ts'o 	if (EXT4_HAS_INCOMPAT_FEATURE(sb, EXT4_FEATURE_INCOMPAT_64BIT))
5056a1ddeb7eSBadari Pulavarty 		ei->i_file_acl |=
5057a1ddeb7eSBadari Pulavarty 			((__u64)le16_to_cpu(raw_inode->i_file_acl_high)) << 32;
5058a48380f7SAneesh Kumar K.V 	inode->i_size = ext4_isize(raw_inode);
5059ac27a0ecSDave Kleikamp 	ei->i_disksize = inode->i_size;
5060a9e7f447SDmitry Monakhov #ifdef CONFIG_QUOTA
5061a9e7f447SDmitry Monakhov 	ei->i_reserved_quota = 0;
5062a9e7f447SDmitry Monakhov #endif
5063ac27a0ecSDave Kleikamp 	inode->i_generation = le32_to_cpu(raw_inode->i_generation);
5064ac27a0ecSDave Kleikamp 	ei->i_block_group = iloc.block_group;
5065a4912123STheodore Ts'o 	ei->i_last_alloc_group = ~0;
5066ac27a0ecSDave Kleikamp 	/*
5067ac27a0ecSDave Kleikamp 	 * NOTE! The in-memory inode i_data array is in little-endian order
5068ac27a0ecSDave Kleikamp 	 * even on big-endian machines: we do NOT byteswap the block numbers!
5069ac27a0ecSDave Kleikamp 	 */
5070617ba13bSMingming Cao 	for (block = 0; block < EXT4_N_BLOCKS; block++)
5071ac27a0ecSDave Kleikamp 		ei->i_data[block] = raw_inode->i_block[block];
5072ac27a0ecSDave Kleikamp 	INIT_LIST_HEAD(&ei->i_orphan);
5073ac27a0ecSDave Kleikamp 
5074b436b9beSJan Kara 	/*
5075b436b9beSJan Kara 	 * Set transaction id's of transactions that have to be committed
5076b436b9beSJan Kara 	 * to finish f[data]sync. We set them to currently running transaction
5077b436b9beSJan Kara 	 * as we cannot be sure that the inode or some of its metadata isn't
5078b436b9beSJan Kara 	 * part of the transaction - the inode could have been reclaimed and
5079b436b9beSJan Kara 	 * now it is reread from disk.
5080b436b9beSJan Kara 	 */
5081b436b9beSJan Kara 	if (journal) {
5082b436b9beSJan Kara 		transaction_t *transaction;
5083b436b9beSJan Kara 		tid_t tid;
5084b436b9beSJan Kara 
5085a931da6aSTheodore Ts'o 		read_lock(&journal->j_state_lock);
5086b436b9beSJan Kara 		if (journal->j_running_transaction)
5087b436b9beSJan Kara 			transaction = journal->j_running_transaction;
5088b436b9beSJan Kara 		else
5089b436b9beSJan Kara 			transaction = journal->j_committing_transaction;
5090b436b9beSJan Kara 		if (transaction)
5091b436b9beSJan Kara 			tid = transaction->t_tid;
5092b436b9beSJan Kara 		else
5093b436b9beSJan Kara 			tid = journal->j_commit_sequence;
5094a931da6aSTheodore Ts'o 		read_unlock(&journal->j_state_lock);
5095b436b9beSJan Kara 		ei->i_sync_tid = tid;
5096b436b9beSJan Kara 		ei->i_datasync_tid = tid;
5097b436b9beSJan Kara 	}
5098b436b9beSJan Kara 
50990040d987SEric Sandeen 	if (EXT4_INODE_SIZE(inode->i_sb) > EXT4_GOOD_OLD_INODE_SIZE) {
5100ac27a0ecSDave Kleikamp 		ei->i_extra_isize = le16_to_cpu(raw_inode->i_extra_isize);
5101617ba13bSMingming Cao 		if (EXT4_GOOD_OLD_INODE_SIZE + ei->i_extra_isize >
5102e5d2861fSKirill Korotaev 		    EXT4_INODE_SIZE(inode->i_sb)) {
51031d1fe1eeSDavid Howells 			ret = -EIO;
5104ac27a0ecSDave Kleikamp 			goto bad_inode;
5105e5d2861fSKirill Korotaev 		}
5106ac27a0ecSDave Kleikamp 		if (ei->i_extra_isize == 0) {
5107ac27a0ecSDave Kleikamp 			/* The extra space is currently unused. Use it. */
5108617ba13bSMingming Cao 			ei->i_extra_isize = sizeof(struct ext4_inode) -
5109617ba13bSMingming Cao 					    EXT4_GOOD_OLD_INODE_SIZE;
5110ac27a0ecSDave Kleikamp 		} else {
5111ac27a0ecSDave Kleikamp 			__le32 *magic = (void *)raw_inode +
5112617ba13bSMingming Cao 					EXT4_GOOD_OLD_INODE_SIZE +
5113ac27a0ecSDave Kleikamp 					ei->i_extra_isize;
5114617ba13bSMingming Cao 			if (*magic == cpu_to_le32(EXT4_XATTR_MAGIC))
511519f5fb7aSTheodore Ts'o 				ext4_set_inode_state(inode, EXT4_STATE_XATTR);
5116ac27a0ecSDave Kleikamp 		}
5117ac27a0ecSDave Kleikamp 	} else
5118ac27a0ecSDave Kleikamp 		ei->i_extra_isize = 0;
5119ac27a0ecSDave Kleikamp 
5120ef7f3835SKalpak Shah 	EXT4_INODE_GET_XTIME(i_ctime, inode, raw_inode);
5121ef7f3835SKalpak Shah 	EXT4_INODE_GET_XTIME(i_mtime, inode, raw_inode);
5122ef7f3835SKalpak Shah 	EXT4_INODE_GET_XTIME(i_atime, inode, raw_inode);
5123ef7f3835SKalpak Shah 	EXT4_EINODE_GET_XTIME(i_crtime, ei, raw_inode);
5124ef7f3835SKalpak Shah 
512525ec56b5SJean Noel Cordenner 	inode->i_version = le32_to_cpu(raw_inode->i_disk_version);
512625ec56b5SJean Noel Cordenner 	if (EXT4_INODE_SIZE(inode->i_sb) > EXT4_GOOD_OLD_INODE_SIZE) {
512725ec56b5SJean Noel Cordenner 		if (EXT4_FITS_IN_INODE(raw_inode, ei, i_version_hi))
512825ec56b5SJean Noel Cordenner 			inode->i_version |=
512925ec56b5SJean Noel Cordenner 			(__u64)(le32_to_cpu(raw_inode->i_version_hi)) << 32;
513025ec56b5SJean Noel Cordenner 	}
513125ec56b5SJean Noel Cordenner 
5132c4b5a614STheodore Ts'o 	ret = 0;
5133485c26ecSTheodore Ts'o 	if (ei->i_file_acl &&
51341032988cSTheodore Ts'o 	    !ext4_data_block_valid(EXT4_SB(sb), ei->i_file_acl, 1)) {
513524676da4STheodore Ts'o 		EXT4_ERROR_INODE(inode, "bad extended attribute block %llu",
513624676da4STheodore Ts'o 				 ei->i_file_acl);
5137485c26ecSTheodore Ts'o 		ret = -EIO;
5138485c26ecSTheodore Ts'o 		goto bad_inode;
513907a03824STheodore Ts'o 	} else if (ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)) {
5140c4b5a614STheodore Ts'o 		if (S_ISREG(inode->i_mode) || S_ISDIR(inode->i_mode) ||
5141c4b5a614STheodore Ts'o 		    (S_ISLNK(inode->i_mode) &&
5142c4b5a614STheodore Ts'o 		     !ext4_inode_is_fast_symlink(inode)))
51437a262f7cSAneesh Kumar K.V 			/* Validate extent which is part of inode */
51447a262f7cSAneesh Kumar K.V 			ret = ext4_ext_check_inode(inode);
5145fe2c8191SThiemo Nagel 	} else if (S_ISREG(inode->i_mode) || S_ISDIR(inode->i_mode) ||
5146fe2c8191SThiemo Nagel 		   (S_ISLNK(inode->i_mode) &&
5147fe2c8191SThiemo Nagel 		    !ext4_inode_is_fast_symlink(inode))) {
5148fe2c8191SThiemo Nagel 		/* Validate block references which are part of inode */
5149fe2c8191SThiemo Nagel 		ret = ext4_check_inode_blockref(inode);
5150fe2c8191SThiemo Nagel 	}
5151567f3e9aSTheodore Ts'o 	if (ret)
51527a262f7cSAneesh Kumar K.V 		goto bad_inode;
51537a262f7cSAneesh Kumar K.V 
5154ac27a0ecSDave Kleikamp 	if (S_ISREG(inode->i_mode)) {
5155617ba13bSMingming Cao 		inode->i_op = &ext4_file_inode_operations;
5156617ba13bSMingming Cao 		inode->i_fop = &ext4_file_operations;
5157617ba13bSMingming Cao 		ext4_set_aops(inode);
5158ac27a0ecSDave Kleikamp 	} else if (S_ISDIR(inode->i_mode)) {
5159617ba13bSMingming Cao 		inode->i_op = &ext4_dir_inode_operations;
5160617ba13bSMingming Cao 		inode->i_fop = &ext4_dir_operations;
5161ac27a0ecSDave Kleikamp 	} else if (S_ISLNK(inode->i_mode)) {
5162e83c1397SDuane Griffin 		if (ext4_inode_is_fast_symlink(inode)) {
5163617ba13bSMingming Cao 			inode->i_op = &ext4_fast_symlink_inode_operations;
5164e83c1397SDuane Griffin 			nd_terminate_link(ei->i_data, inode->i_size,
5165e83c1397SDuane Griffin 				sizeof(ei->i_data) - 1);
5166e83c1397SDuane Griffin 		} else {
5167617ba13bSMingming Cao 			inode->i_op = &ext4_symlink_inode_operations;
5168617ba13bSMingming Cao 			ext4_set_aops(inode);
5169ac27a0ecSDave Kleikamp 		}
5170563bdd61STheodore Ts'o 	} else if (S_ISCHR(inode->i_mode) || S_ISBLK(inode->i_mode) ||
5171563bdd61STheodore Ts'o 	      S_ISFIFO(inode->i_mode) || S_ISSOCK(inode->i_mode)) {
5172617ba13bSMingming Cao 		inode->i_op = &ext4_special_inode_operations;
5173ac27a0ecSDave Kleikamp 		if (raw_inode->i_block[0])
5174ac27a0ecSDave Kleikamp 			init_special_inode(inode, inode->i_mode,
5175ac27a0ecSDave Kleikamp 			   old_decode_dev(le32_to_cpu(raw_inode->i_block[0])));
5176ac27a0ecSDave Kleikamp 		else
5177ac27a0ecSDave Kleikamp 			init_special_inode(inode, inode->i_mode,
5178ac27a0ecSDave Kleikamp 			   new_decode_dev(le32_to_cpu(raw_inode->i_block[1])));
5179563bdd61STheodore Ts'o 	} else {
5180563bdd61STheodore Ts'o 		ret = -EIO;
518124676da4STheodore Ts'o 		EXT4_ERROR_INODE(inode, "bogus i_mode (%o)", inode->i_mode);
5182563bdd61STheodore Ts'o 		goto bad_inode;
5183ac27a0ecSDave Kleikamp 	}
5184ac27a0ecSDave Kleikamp 	brelse(iloc.bh);
5185617ba13bSMingming Cao 	ext4_set_inode_flags(inode);
51861d1fe1eeSDavid Howells 	unlock_new_inode(inode);
51871d1fe1eeSDavid Howells 	return inode;
5188ac27a0ecSDave Kleikamp 
5189ac27a0ecSDave Kleikamp bad_inode:
5190567f3e9aSTheodore Ts'o 	brelse(iloc.bh);
51911d1fe1eeSDavid Howells 	iget_failed(inode);
51921d1fe1eeSDavid Howells 	return ERR_PTR(ret);
5193ac27a0ecSDave Kleikamp }
5194ac27a0ecSDave Kleikamp 
51950fc1b451SAneesh Kumar K.V static int ext4_inode_blocks_set(handle_t *handle,
51960fc1b451SAneesh Kumar K.V 				struct ext4_inode *raw_inode,
51970fc1b451SAneesh Kumar K.V 				struct ext4_inode_info *ei)
51980fc1b451SAneesh Kumar K.V {
51990fc1b451SAneesh Kumar K.V 	struct inode *inode = &(ei->vfs_inode);
52000fc1b451SAneesh Kumar K.V 	u64 i_blocks = inode->i_blocks;
52010fc1b451SAneesh Kumar K.V 	struct super_block *sb = inode->i_sb;
52020fc1b451SAneesh Kumar K.V 
52030fc1b451SAneesh Kumar K.V 	if (i_blocks <= ~0U) {
52040fc1b451SAneesh Kumar K.V 		/*
52050fc1b451SAneesh Kumar K.V 		 * i_blocks can be represnted in a 32 bit variable
52060fc1b451SAneesh Kumar K.V 		 * as multiple of 512 bytes
52070fc1b451SAneesh Kumar K.V 		 */
52088180a562SAneesh Kumar K.V 		raw_inode->i_blocks_lo   = cpu_to_le32(i_blocks);
52090fc1b451SAneesh Kumar K.V 		raw_inode->i_blocks_high = 0;
521084a8dce2SDmitry Monakhov 		ext4_clear_inode_flag(inode, EXT4_INODE_HUGE_FILE);
5211f287a1a5STheodore Ts'o 		return 0;
5212f287a1a5STheodore Ts'o 	}
5213f287a1a5STheodore Ts'o 	if (!EXT4_HAS_RO_COMPAT_FEATURE(sb, EXT4_FEATURE_RO_COMPAT_HUGE_FILE))
5214f287a1a5STheodore Ts'o 		return -EFBIG;
5215f287a1a5STheodore Ts'o 
5216f287a1a5STheodore Ts'o 	if (i_blocks <= 0xffffffffffffULL) {
52170fc1b451SAneesh Kumar K.V 		/*
52180fc1b451SAneesh Kumar K.V 		 * i_blocks can be represented in a 48 bit variable
52190fc1b451SAneesh Kumar K.V 		 * as multiple of 512 bytes
52200fc1b451SAneesh Kumar K.V 		 */
52218180a562SAneesh Kumar K.V 		raw_inode->i_blocks_lo   = cpu_to_le32(i_blocks);
52220fc1b451SAneesh Kumar K.V 		raw_inode->i_blocks_high = cpu_to_le16(i_blocks >> 32);
522384a8dce2SDmitry Monakhov 		ext4_clear_inode_flag(inode, EXT4_INODE_HUGE_FILE);
52240fc1b451SAneesh Kumar K.V 	} else {
522584a8dce2SDmitry Monakhov 		ext4_set_inode_flag(inode, EXT4_INODE_HUGE_FILE);
52268180a562SAneesh Kumar K.V 		/* i_block is stored in file system block size */
52278180a562SAneesh Kumar K.V 		i_blocks = i_blocks >> (inode->i_blkbits - 9);
52288180a562SAneesh Kumar K.V 		raw_inode->i_blocks_lo   = cpu_to_le32(i_blocks);
52298180a562SAneesh Kumar K.V 		raw_inode->i_blocks_high = cpu_to_le16(i_blocks >> 32);
52300fc1b451SAneesh Kumar K.V 	}
5231f287a1a5STheodore Ts'o 	return 0;
52320fc1b451SAneesh Kumar K.V }
52330fc1b451SAneesh Kumar K.V 
5234ac27a0ecSDave Kleikamp /*
5235ac27a0ecSDave Kleikamp  * Post the struct inode info into an on-disk inode location in the
5236ac27a0ecSDave Kleikamp  * buffer-cache.  This gobbles the caller's reference to the
5237ac27a0ecSDave Kleikamp  * buffer_head in the inode location struct.
5238ac27a0ecSDave Kleikamp  *
5239ac27a0ecSDave Kleikamp  * The caller must have write access to iloc->bh.
5240ac27a0ecSDave Kleikamp  */
5241617ba13bSMingming Cao static int ext4_do_update_inode(handle_t *handle,
5242ac27a0ecSDave Kleikamp 				struct inode *inode,
5243830156c7SFrank Mayhar 				struct ext4_iloc *iloc)
5244ac27a0ecSDave Kleikamp {
5245617ba13bSMingming Cao 	struct ext4_inode *raw_inode = ext4_raw_inode(iloc);
5246617ba13bSMingming Cao 	struct ext4_inode_info *ei = EXT4_I(inode);
5247ac27a0ecSDave Kleikamp 	struct buffer_head *bh = iloc->bh;
5248ac27a0ecSDave Kleikamp 	int err = 0, rc, block;
5249ac27a0ecSDave Kleikamp 
5250ac27a0ecSDave Kleikamp 	/* For fields not not tracking in the in-memory inode,
5251ac27a0ecSDave Kleikamp 	 * initialise them to zero for new inodes. */
525219f5fb7aSTheodore Ts'o 	if (ext4_test_inode_state(inode, EXT4_STATE_NEW))
5253617ba13bSMingming Cao 		memset(raw_inode, 0, EXT4_SB(inode->i_sb)->s_inode_size);
5254ac27a0ecSDave Kleikamp 
5255ff9ddf7eSJan Kara 	ext4_get_inode_flags(ei);
5256ac27a0ecSDave Kleikamp 	raw_inode->i_mode = cpu_to_le16(inode->i_mode);
5257ac27a0ecSDave Kleikamp 	if (!(test_opt(inode->i_sb, NO_UID32))) {
5258ac27a0ecSDave Kleikamp 		raw_inode->i_uid_low = cpu_to_le16(low_16_bits(inode->i_uid));
5259ac27a0ecSDave Kleikamp 		raw_inode->i_gid_low = cpu_to_le16(low_16_bits(inode->i_gid));
5260ac27a0ecSDave Kleikamp /*
5261ac27a0ecSDave Kleikamp  * Fix up interoperability with old kernels. Otherwise, old inodes get
5262ac27a0ecSDave Kleikamp  * re-used with the upper 16 bits of the uid/gid intact
5263ac27a0ecSDave Kleikamp  */
5264ac27a0ecSDave Kleikamp 		if (!ei->i_dtime) {
5265ac27a0ecSDave Kleikamp 			raw_inode->i_uid_high =
5266ac27a0ecSDave Kleikamp 				cpu_to_le16(high_16_bits(inode->i_uid));
5267ac27a0ecSDave Kleikamp 			raw_inode->i_gid_high =
5268ac27a0ecSDave Kleikamp 				cpu_to_le16(high_16_bits(inode->i_gid));
5269ac27a0ecSDave Kleikamp 		} else {
5270ac27a0ecSDave Kleikamp 			raw_inode->i_uid_high = 0;
5271ac27a0ecSDave Kleikamp 			raw_inode->i_gid_high = 0;
5272ac27a0ecSDave Kleikamp 		}
5273ac27a0ecSDave Kleikamp 	} else {
5274ac27a0ecSDave Kleikamp 		raw_inode->i_uid_low =
5275ac27a0ecSDave Kleikamp 			cpu_to_le16(fs_high2lowuid(inode->i_uid));
5276ac27a0ecSDave Kleikamp 		raw_inode->i_gid_low =
5277ac27a0ecSDave Kleikamp 			cpu_to_le16(fs_high2lowgid(inode->i_gid));
5278ac27a0ecSDave Kleikamp 		raw_inode->i_uid_high = 0;
5279ac27a0ecSDave Kleikamp 		raw_inode->i_gid_high = 0;
5280ac27a0ecSDave Kleikamp 	}
5281ac27a0ecSDave Kleikamp 	raw_inode->i_links_count = cpu_to_le16(inode->i_nlink);
5282ef7f3835SKalpak Shah 
5283ef7f3835SKalpak Shah 	EXT4_INODE_SET_XTIME(i_ctime, inode, raw_inode);
5284ef7f3835SKalpak Shah 	EXT4_INODE_SET_XTIME(i_mtime, inode, raw_inode);
5285ef7f3835SKalpak Shah 	EXT4_INODE_SET_XTIME(i_atime, inode, raw_inode);
5286ef7f3835SKalpak Shah 	EXT4_EINODE_SET_XTIME(i_crtime, ei, raw_inode);
5287ef7f3835SKalpak Shah 
52880fc1b451SAneesh Kumar K.V 	if (ext4_inode_blocks_set(handle, raw_inode, ei))
52890fc1b451SAneesh Kumar K.V 		goto out_brelse;
5290ac27a0ecSDave Kleikamp 	raw_inode->i_dtime = cpu_to_le32(ei->i_dtime);
52911b9c12f4STheodore Ts'o 	raw_inode->i_flags = cpu_to_le32(ei->i_flags);
52929b8f1f01SMingming Cao 	if (EXT4_SB(inode->i_sb)->s_es->s_creator_os !=
52939b8f1f01SMingming Cao 	    cpu_to_le32(EXT4_OS_HURD))
5294a1ddeb7eSBadari Pulavarty 		raw_inode->i_file_acl_high =
5295a1ddeb7eSBadari Pulavarty 			cpu_to_le16(ei->i_file_acl >> 32);
52967973c0c1SAneesh Kumar K.V 	raw_inode->i_file_acl_lo = cpu_to_le32(ei->i_file_acl);
5297a48380f7SAneesh Kumar K.V 	ext4_isize_set(raw_inode, ei->i_disksize);
5298ac27a0ecSDave Kleikamp 	if (ei->i_disksize > 0x7fffffffULL) {
5299ac27a0ecSDave Kleikamp 		struct super_block *sb = inode->i_sb;
5300617ba13bSMingming Cao 		if (!EXT4_HAS_RO_COMPAT_FEATURE(sb,
5301617ba13bSMingming Cao 				EXT4_FEATURE_RO_COMPAT_LARGE_FILE) ||
5302617ba13bSMingming Cao 				EXT4_SB(sb)->s_es->s_rev_level ==
5303617ba13bSMingming Cao 				cpu_to_le32(EXT4_GOOD_OLD_REV)) {
5304ac27a0ecSDave Kleikamp 			/* If this is the first large file
5305ac27a0ecSDave Kleikamp 			 * created, add a flag to the superblock.
5306ac27a0ecSDave Kleikamp 			 */
5307617ba13bSMingming Cao 			err = ext4_journal_get_write_access(handle,
5308617ba13bSMingming Cao 					EXT4_SB(sb)->s_sbh);
5309ac27a0ecSDave Kleikamp 			if (err)
5310ac27a0ecSDave Kleikamp 				goto out_brelse;
5311617ba13bSMingming Cao 			ext4_update_dynamic_rev(sb);
5312617ba13bSMingming Cao 			EXT4_SET_RO_COMPAT_FEATURE(sb,
5313617ba13bSMingming Cao 					EXT4_FEATURE_RO_COMPAT_LARGE_FILE);
5314ac27a0ecSDave Kleikamp 			sb->s_dirt = 1;
53150390131bSFrank Mayhar 			ext4_handle_sync(handle);
531673b50c1cSCurt Wohlgemuth 			err = ext4_handle_dirty_metadata(handle, NULL,
5317617ba13bSMingming Cao 					EXT4_SB(sb)->s_sbh);
5318ac27a0ecSDave Kleikamp 		}
5319ac27a0ecSDave Kleikamp 	}
5320ac27a0ecSDave Kleikamp 	raw_inode->i_generation = cpu_to_le32(inode->i_generation);
5321ac27a0ecSDave Kleikamp 	if (S_ISCHR(inode->i_mode) || S_ISBLK(inode->i_mode)) {
5322ac27a0ecSDave Kleikamp 		if (old_valid_dev(inode->i_rdev)) {
5323ac27a0ecSDave Kleikamp 			raw_inode->i_block[0] =
5324ac27a0ecSDave Kleikamp 				cpu_to_le32(old_encode_dev(inode->i_rdev));
5325ac27a0ecSDave Kleikamp 			raw_inode->i_block[1] = 0;
5326ac27a0ecSDave Kleikamp 		} else {
5327ac27a0ecSDave Kleikamp 			raw_inode->i_block[0] = 0;
5328ac27a0ecSDave Kleikamp 			raw_inode->i_block[1] =
5329ac27a0ecSDave Kleikamp 				cpu_to_le32(new_encode_dev(inode->i_rdev));
5330ac27a0ecSDave Kleikamp 			raw_inode->i_block[2] = 0;
5331ac27a0ecSDave Kleikamp 		}
5332de9a55b8STheodore Ts'o 	} else
5333de9a55b8STheodore Ts'o 		for (block = 0; block < EXT4_N_BLOCKS; block++)
5334ac27a0ecSDave Kleikamp 			raw_inode->i_block[block] = ei->i_data[block];
5335ac27a0ecSDave Kleikamp 
533625ec56b5SJean Noel Cordenner 	raw_inode->i_disk_version = cpu_to_le32(inode->i_version);
533725ec56b5SJean Noel Cordenner 	if (ei->i_extra_isize) {
533825ec56b5SJean Noel Cordenner 		if (EXT4_FITS_IN_INODE(raw_inode, ei, i_version_hi))
533925ec56b5SJean Noel Cordenner 			raw_inode->i_version_hi =
534025ec56b5SJean Noel Cordenner 			cpu_to_le32(inode->i_version >> 32);
5341ac27a0ecSDave Kleikamp 		raw_inode->i_extra_isize = cpu_to_le16(ei->i_extra_isize);
534225ec56b5SJean Noel Cordenner 	}
534325ec56b5SJean Noel Cordenner 
53440390131bSFrank Mayhar 	BUFFER_TRACE(bh, "call ext4_handle_dirty_metadata");
534573b50c1cSCurt Wohlgemuth 	rc = ext4_handle_dirty_metadata(handle, NULL, bh);
5346ac27a0ecSDave Kleikamp 	if (!err)
5347ac27a0ecSDave Kleikamp 		err = rc;
534819f5fb7aSTheodore Ts'o 	ext4_clear_inode_state(inode, EXT4_STATE_NEW);
5349ac27a0ecSDave Kleikamp 
5350b436b9beSJan Kara 	ext4_update_inode_fsync_trans(handle, inode, 0);
5351ac27a0ecSDave Kleikamp out_brelse:
5352ac27a0ecSDave Kleikamp 	brelse(bh);
5353617ba13bSMingming Cao 	ext4_std_error(inode->i_sb, err);
5354ac27a0ecSDave Kleikamp 	return err;
5355ac27a0ecSDave Kleikamp }
5356ac27a0ecSDave Kleikamp 
5357ac27a0ecSDave Kleikamp /*
5358617ba13bSMingming Cao  * ext4_write_inode()
5359ac27a0ecSDave Kleikamp  *
5360ac27a0ecSDave Kleikamp  * We are called from a few places:
5361ac27a0ecSDave Kleikamp  *
5362ac27a0ecSDave Kleikamp  * - Within generic_file_write() for O_SYNC files.
5363ac27a0ecSDave Kleikamp  *   Here, there will be no transaction running. We wait for any running
5364ac27a0ecSDave Kleikamp  *   trasnaction to commit.
5365ac27a0ecSDave Kleikamp  *
5366ac27a0ecSDave Kleikamp  * - Within sys_sync(), kupdate and such.
5367ac27a0ecSDave Kleikamp  *   We wait on commit, if tol to.
5368ac27a0ecSDave Kleikamp  *
5369ac27a0ecSDave Kleikamp  * - Within prune_icache() (PF_MEMALLOC == true)
5370ac27a0ecSDave Kleikamp  *   Here we simply return.  We can't afford to block kswapd on the
5371ac27a0ecSDave Kleikamp  *   journal commit.
5372ac27a0ecSDave Kleikamp  *
5373ac27a0ecSDave Kleikamp  * In all cases it is actually safe for us to return without doing anything,
5374ac27a0ecSDave Kleikamp  * because the inode has been copied into a raw inode buffer in
5375617ba13bSMingming Cao  * ext4_mark_inode_dirty().  This is a correctness thing for O_SYNC and for
5376ac27a0ecSDave Kleikamp  * knfsd.
5377ac27a0ecSDave Kleikamp  *
5378ac27a0ecSDave Kleikamp  * Note that we are absolutely dependent upon all inode dirtiers doing the
5379ac27a0ecSDave Kleikamp  * right thing: they *must* call mark_inode_dirty() after dirtying info in
5380ac27a0ecSDave Kleikamp  * which we are interested.
5381ac27a0ecSDave Kleikamp  *
5382ac27a0ecSDave Kleikamp  * It would be a bug for them to not do this.  The code:
5383ac27a0ecSDave Kleikamp  *
5384ac27a0ecSDave Kleikamp  *	mark_inode_dirty(inode)
5385ac27a0ecSDave Kleikamp  *	stuff();
5386ac27a0ecSDave Kleikamp  *	inode->i_size = expr;
5387ac27a0ecSDave Kleikamp  *
5388ac27a0ecSDave Kleikamp  * is in error because a kswapd-driven write_inode() could occur while
5389ac27a0ecSDave Kleikamp  * `stuff()' is running, and the new i_size will be lost.  Plus the inode
5390ac27a0ecSDave Kleikamp  * will no longer be on the superblock's dirty inode list.
5391ac27a0ecSDave Kleikamp  */
5392a9185b41SChristoph Hellwig int ext4_write_inode(struct inode *inode, struct writeback_control *wbc)
5393ac27a0ecSDave Kleikamp {
539491ac6f43SFrank Mayhar 	int err;
539591ac6f43SFrank Mayhar 
5396ac27a0ecSDave Kleikamp 	if (current->flags & PF_MEMALLOC)
5397ac27a0ecSDave Kleikamp 		return 0;
5398ac27a0ecSDave Kleikamp 
539991ac6f43SFrank Mayhar 	if (EXT4_SB(inode->i_sb)->s_journal) {
5400617ba13bSMingming Cao 		if (ext4_journal_current_handle()) {
5401b38bd33aSMingming Cao 			jbd_debug(1, "called recursively, non-PF_MEMALLOC!\n");
5402ac27a0ecSDave Kleikamp 			dump_stack();
5403ac27a0ecSDave Kleikamp 			return -EIO;
5404ac27a0ecSDave Kleikamp 		}
5405ac27a0ecSDave Kleikamp 
5406a9185b41SChristoph Hellwig 		if (wbc->sync_mode != WB_SYNC_ALL)
5407ac27a0ecSDave Kleikamp 			return 0;
5408ac27a0ecSDave Kleikamp 
540991ac6f43SFrank Mayhar 		err = ext4_force_commit(inode->i_sb);
541091ac6f43SFrank Mayhar 	} else {
541191ac6f43SFrank Mayhar 		struct ext4_iloc iloc;
541291ac6f43SFrank Mayhar 
54138b472d73SCurt Wohlgemuth 		err = __ext4_get_inode_loc(inode, &iloc, 0);
541491ac6f43SFrank Mayhar 		if (err)
541591ac6f43SFrank Mayhar 			return err;
5416a9185b41SChristoph Hellwig 		if (wbc->sync_mode == WB_SYNC_ALL)
5417830156c7SFrank Mayhar 			sync_dirty_buffer(iloc.bh);
5418830156c7SFrank Mayhar 		if (buffer_req(iloc.bh) && !buffer_uptodate(iloc.bh)) {
5419c398eda0STheodore Ts'o 			EXT4_ERROR_INODE_BLOCK(inode, iloc.bh->b_blocknr,
5420c398eda0STheodore Ts'o 					 "IO error syncing inode");
5421830156c7SFrank Mayhar 			err = -EIO;
5422830156c7SFrank Mayhar 		}
5423fd2dd9fbSCurt Wohlgemuth 		brelse(iloc.bh);
542491ac6f43SFrank Mayhar 	}
542591ac6f43SFrank Mayhar 	return err;
5426ac27a0ecSDave Kleikamp }
5427ac27a0ecSDave Kleikamp 
5428ac27a0ecSDave Kleikamp /*
5429617ba13bSMingming Cao  * ext4_setattr()
5430ac27a0ecSDave Kleikamp  *
5431ac27a0ecSDave Kleikamp  * Called from notify_change.
5432ac27a0ecSDave Kleikamp  *
5433ac27a0ecSDave Kleikamp  * We want to trap VFS attempts to truncate the file as soon as
5434ac27a0ecSDave Kleikamp  * possible.  In particular, we want to make sure that when the VFS
5435ac27a0ecSDave Kleikamp  * shrinks i_size, we put the inode on the orphan list and modify
5436ac27a0ecSDave Kleikamp  * i_disksize immediately, so that during the subsequent flushing of
5437ac27a0ecSDave Kleikamp  * dirty pages and freeing of disk blocks, we can guarantee that any
5438ac27a0ecSDave Kleikamp  * commit will leave the blocks being flushed in an unused state on
5439ac27a0ecSDave Kleikamp  * disk.  (On recovery, the inode will get truncated and the blocks will
5440ac27a0ecSDave Kleikamp  * be freed, so we have a strong guarantee that no future commit will
5441ac27a0ecSDave Kleikamp  * leave these blocks visible to the user.)
5442ac27a0ecSDave Kleikamp  *
5443678aaf48SJan Kara  * Another thing we have to assure is that if we are in ordered mode
5444678aaf48SJan Kara  * and inode is still attached to the committing transaction, we must
5445678aaf48SJan Kara  * we start writeout of all the dirty pages which are being truncated.
5446678aaf48SJan Kara  * This way we are sure that all the data written in the previous
5447678aaf48SJan Kara  * transaction are already on disk (truncate waits for pages under
5448678aaf48SJan Kara  * writeback).
5449678aaf48SJan Kara  *
5450678aaf48SJan Kara  * Called with inode->i_mutex down.
5451ac27a0ecSDave Kleikamp  */
5452617ba13bSMingming Cao int ext4_setattr(struct dentry *dentry, struct iattr *attr)
5453ac27a0ecSDave Kleikamp {
5454ac27a0ecSDave Kleikamp 	struct inode *inode = dentry->d_inode;
5455ac27a0ecSDave Kleikamp 	int error, rc = 0;
5456ac27a0ecSDave Kleikamp 	const unsigned int ia_valid = attr->ia_valid;
5457ac27a0ecSDave Kleikamp 
5458ac27a0ecSDave Kleikamp 	error = inode_change_ok(inode, attr);
5459ac27a0ecSDave Kleikamp 	if (error)
5460ac27a0ecSDave Kleikamp 		return error;
5461ac27a0ecSDave Kleikamp 
546212755627SDmitry Monakhov 	if (is_quota_modification(inode, attr))
5463871a2931SChristoph Hellwig 		dquot_initialize(inode);
5464ac27a0ecSDave Kleikamp 	if ((ia_valid & ATTR_UID && attr->ia_uid != inode->i_uid) ||
5465ac27a0ecSDave Kleikamp 		(ia_valid & ATTR_GID && attr->ia_gid != inode->i_gid)) {
5466ac27a0ecSDave Kleikamp 		handle_t *handle;
5467ac27a0ecSDave Kleikamp 
5468ac27a0ecSDave Kleikamp 		/* (user+group)*(old+new) structure, inode write (sb,
5469ac27a0ecSDave Kleikamp 		 * inode block, ? - but truncate inode update has it) */
54705aca07ebSDmitry Monakhov 		handle = ext4_journal_start(inode, (EXT4_MAXQUOTAS_INIT_BLOCKS(inode->i_sb)+
5471194074acSDmitry Monakhov 					EXT4_MAXQUOTAS_DEL_BLOCKS(inode->i_sb))+3);
5472ac27a0ecSDave Kleikamp 		if (IS_ERR(handle)) {
5473ac27a0ecSDave Kleikamp 			error = PTR_ERR(handle);
5474ac27a0ecSDave Kleikamp 			goto err_out;
5475ac27a0ecSDave Kleikamp 		}
5476b43fa828SChristoph Hellwig 		error = dquot_transfer(inode, attr);
5477ac27a0ecSDave Kleikamp 		if (error) {
5478617ba13bSMingming Cao 			ext4_journal_stop(handle);
5479ac27a0ecSDave Kleikamp 			return error;
5480ac27a0ecSDave Kleikamp 		}
5481ac27a0ecSDave Kleikamp 		/* Update corresponding info in inode so that everything is in
5482ac27a0ecSDave Kleikamp 		 * one transaction */
5483ac27a0ecSDave Kleikamp 		if (attr->ia_valid & ATTR_UID)
5484ac27a0ecSDave Kleikamp 			inode->i_uid = attr->ia_uid;
5485ac27a0ecSDave Kleikamp 		if (attr->ia_valid & ATTR_GID)
5486ac27a0ecSDave Kleikamp 			inode->i_gid = attr->ia_gid;
5487617ba13bSMingming Cao 		error = ext4_mark_inode_dirty(handle, inode);
5488617ba13bSMingming Cao 		ext4_journal_stop(handle);
5489ac27a0ecSDave Kleikamp 	}
5490ac27a0ecSDave Kleikamp 
5491e2b46574SEric Sandeen 	if (attr->ia_valid & ATTR_SIZE) {
549212e9b892SDmitry Monakhov 		if (!(ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS))) {
5493e2b46574SEric Sandeen 			struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb);
5494e2b46574SEric Sandeen 
54950c095c7fSTheodore Ts'o 			if (attr->ia_size > sbi->s_bitmap_maxbytes)
54960c095c7fSTheodore Ts'o 				return -EFBIG;
5497e2b46574SEric Sandeen 		}
5498e2b46574SEric Sandeen 	}
5499e2b46574SEric Sandeen 
5500ac27a0ecSDave Kleikamp 	if (S_ISREG(inode->i_mode) &&
5501c8d46e41SJiaying Zhang 	    attr->ia_valid & ATTR_SIZE &&
5502c8d46e41SJiaying Zhang 	    (attr->ia_size < inode->i_size ||
550312e9b892SDmitry Monakhov 	     (ext4_test_inode_flag(inode, EXT4_INODE_EOFBLOCKS)))) {
5504ac27a0ecSDave Kleikamp 		handle_t *handle;
5505ac27a0ecSDave Kleikamp 
5506617ba13bSMingming Cao 		handle = ext4_journal_start(inode, 3);
5507ac27a0ecSDave Kleikamp 		if (IS_ERR(handle)) {
5508ac27a0ecSDave Kleikamp 			error = PTR_ERR(handle);
5509ac27a0ecSDave Kleikamp 			goto err_out;
5510ac27a0ecSDave Kleikamp 		}
5511ac27a0ecSDave Kleikamp 
5512617ba13bSMingming Cao 		error = ext4_orphan_add(handle, inode);
5513617ba13bSMingming Cao 		EXT4_I(inode)->i_disksize = attr->ia_size;
5514617ba13bSMingming Cao 		rc = ext4_mark_inode_dirty(handle, inode);
5515ac27a0ecSDave Kleikamp 		if (!error)
5516ac27a0ecSDave Kleikamp 			error = rc;
5517617ba13bSMingming Cao 		ext4_journal_stop(handle);
5518678aaf48SJan Kara 
5519678aaf48SJan Kara 		if (ext4_should_order_data(inode)) {
5520678aaf48SJan Kara 			error = ext4_begin_ordered_truncate(inode,
5521678aaf48SJan Kara 							    attr->ia_size);
5522678aaf48SJan Kara 			if (error) {
5523678aaf48SJan Kara 				/* Do as much error cleanup as possible */
5524678aaf48SJan Kara 				handle = ext4_journal_start(inode, 3);
5525678aaf48SJan Kara 				if (IS_ERR(handle)) {
5526678aaf48SJan Kara 					ext4_orphan_del(NULL, inode);
5527678aaf48SJan Kara 					goto err_out;
5528678aaf48SJan Kara 				}
5529678aaf48SJan Kara 				ext4_orphan_del(handle, inode);
5530678aaf48SJan Kara 				ext4_journal_stop(handle);
5531678aaf48SJan Kara 				goto err_out;
5532678aaf48SJan Kara 			}
5533678aaf48SJan Kara 		}
5534c8d46e41SJiaying Zhang 		/* ext4_truncate will clear the flag */
553512e9b892SDmitry Monakhov 		if ((ext4_test_inode_flag(inode, EXT4_INODE_EOFBLOCKS)))
5536c8d46e41SJiaying Zhang 			ext4_truncate(inode);
5537ac27a0ecSDave Kleikamp 	}
5538ac27a0ecSDave Kleikamp 
5539ac27a0ecSDave Kleikamp 	rc = inode_setattr(inode, attr);
5540ac27a0ecSDave Kleikamp 
5541617ba13bSMingming Cao 	/* If inode_setattr's call to ext4_truncate failed to get a
5542ac27a0ecSDave Kleikamp 	 * transaction handle at all, we need to clean up the in-core
5543ac27a0ecSDave Kleikamp 	 * orphan list manually. */
5544ac27a0ecSDave Kleikamp 	if (inode->i_nlink)
5545617ba13bSMingming Cao 		ext4_orphan_del(NULL, inode);
5546ac27a0ecSDave Kleikamp 
5547ac27a0ecSDave Kleikamp 	if (!rc && (ia_valid & ATTR_MODE))
5548617ba13bSMingming Cao 		rc = ext4_acl_chmod(inode);
5549ac27a0ecSDave Kleikamp 
5550ac27a0ecSDave Kleikamp err_out:
5551617ba13bSMingming Cao 	ext4_std_error(inode->i_sb, error);
5552ac27a0ecSDave Kleikamp 	if (!error)
5553ac27a0ecSDave Kleikamp 		error = rc;
5554ac27a0ecSDave Kleikamp 	return error;
5555ac27a0ecSDave Kleikamp }
5556ac27a0ecSDave Kleikamp 
55573e3398a0SMingming Cao int ext4_getattr(struct vfsmount *mnt, struct dentry *dentry,
55583e3398a0SMingming Cao 		 struct kstat *stat)
55593e3398a0SMingming Cao {
55603e3398a0SMingming Cao 	struct inode *inode;
55613e3398a0SMingming Cao 	unsigned long delalloc_blocks;
55623e3398a0SMingming Cao 
55633e3398a0SMingming Cao 	inode = dentry->d_inode;
55643e3398a0SMingming Cao 	generic_fillattr(inode, stat);
55653e3398a0SMingming Cao 
55663e3398a0SMingming Cao 	/*
55673e3398a0SMingming Cao 	 * We can't update i_blocks if the block allocation is delayed
55683e3398a0SMingming Cao 	 * otherwise in the case of system crash before the real block
55693e3398a0SMingming Cao 	 * allocation is done, we will have i_blocks inconsistent with
55703e3398a0SMingming Cao 	 * on-disk file blocks.
55713e3398a0SMingming Cao 	 * We always keep i_blocks updated together with real
55723e3398a0SMingming Cao 	 * allocation. But to not confuse with user, stat
55733e3398a0SMingming Cao 	 * will return the blocks that include the delayed allocation
55743e3398a0SMingming Cao 	 * blocks for this file.
55753e3398a0SMingming Cao 	 */
55763e3398a0SMingming Cao 	spin_lock(&EXT4_I(inode)->i_block_reservation_lock);
55773e3398a0SMingming Cao 	delalloc_blocks = EXT4_I(inode)->i_reserved_data_blocks;
55783e3398a0SMingming Cao 	spin_unlock(&EXT4_I(inode)->i_block_reservation_lock);
55793e3398a0SMingming Cao 
55803e3398a0SMingming Cao 	stat->blocks += (delalloc_blocks << inode->i_sb->s_blocksize_bits)>>9;
55813e3398a0SMingming Cao 	return 0;
55823e3398a0SMingming Cao }
5583ac27a0ecSDave Kleikamp 
5584a02908f1SMingming Cao static int ext4_indirect_trans_blocks(struct inode *inode, int nrblocks,
5585a02908f1SMingming Cao 				      int chunk)
5586ac27a0ecSDave Kleikamp {
5587a02908f1SMingming Cao 	int indirects;
5588ac27a0ecSDave Kleikamp 
5589a02908f1SMingming Cao 	/* if nrblocks are contiguous */
5590a02908f1SMingming Cao 	if (chunk) {
5591a02908f1SMingming Cao 		/*
5592a02908f1SMingming Cao 		 * With N contiguous data blocks, it need at most
5593a02908f1SMingming Cao 		 * N/EXT4_ADDR_PER_BLOCK(inode->i_sb) indirect blocks
5594a02908f1SMingming Cao 		 * 2 dindirect blocks
5595a02908f1SMingming Cao 		 * 1 tindirect block
5596a02908f1SMingming Cao 		 */
5597a02908f1SMingming Cao 		indirects = nrblocks / EXT4_ADDR_PER_BLOCK(inode->i_sb);
5598a02908f1SMingming Cao 		return indirects + 3;
5599a02908f1SMingming Cao 	}
5600a02908f1SMingming Cao 	/*
5601a02908f1SMingming Cao 	 * if nrblocks are not contiguous, worse case, each block touch
5602a02908f1SMingming Cao 	 * a indirect block, and each indirect block touch a double indirect
5603a02908f1SMingming Cao 	 * block, plus a triple indirect block
5604a02908f1SMingming Cao 	 */
5605a02908f1SMingming Cao 	indirects = nrblocks * 2 + 1;
5606a02908f1SMingming Cao 	return indirects;
5607a02908f1SMingming Cao }
5608a86c6181SAlex Tomas 
5609a02908f1SMingming Cao static int ext4_index_trans_blocks(struct inode *inode, int nrblocks, int chunk)
5610a02908f1SMingming Cao {
561112e9b892SDmitry Monakhov 	if (!(ext4_test_inode_flag(inode, EXT4_INODE_EXTENTS)))
5612ac51d837STheodore Ts'o 		return ext4_indirect_trans_blocks(inode, nrblocks, chunk);
5613ac51d837STheodore Ts'o 	return ext4_ext_index_trans_blocks(inode, nrblocks, chunk);
5614a02908f1SMingming Cao }
5615ac51d837STheodore Ts'o 
5616a02908f1SMingming Cao /*
5617a02908f1SMingming Cao  * Account for index blocks, block groups bitmaps and block group
5618a02908f1SMingming Cao  * descriptor blocks if modify datablocks and index blocks
5619a02908f1SMingming Cao  * worse case, the indexs blocks spread over different block groups
5620a02908f1SMingming Cao  *
5621a02908f1SMingming Cao  * If datablocks are discontiguous, they are possible to spread over
5622af901ca1SAndré Goddard Rosa  * different block groups too. If they are contiuguous, with flexbg,
5623a02908f1SMingming Cao  * they could still across block group boundary.
5624a02908f1SMingming Cao  *
5625a02908f1SMingming Cao  * Also account for superblock, inode, quota and xattr blocks
5626a02908f1SMingming Cao  */
5627a02908f1SMingming Cao int ext4_meta_trans_blocks(struct inode *inode, int nrblocks, int chunk)
5628a02908f1SMingming Cao {
56298df9675fSTheodore Ts'o 	ext4_group_t groups, ngroups = ext4_get_groups_count(inode->i_sb);
56308df9675fSTheodore Ts'o 	int gdpblocks;
5631a02908f1SMingming Cao 	int idxblocks;
5632a02908f1SMingming Cao 	int ret = 0;
5633a02908f1SMingming Cao 
5634a02908f1SMingming Cao 	/*
5635a02908f1SMingming Cao 	 * How many index blocks need to touch to modify nrblocks?
5636a02908f1SMingming Cao 	 * The "Chunk" flag indicating whether the nrblocks is
5637a02908f1SMingming Cao 	 * physically contiguous on disk
5638a02908f1SMingming Cao 	 *
5639a02908f1SMingming Cao 	 * For Direct IO and fallocate, they calls get_block to allocate
5640a02908f1SMingming Cao 	 * one single extent at a time, so they could set the "Chunk" flag
5641a02908f1SMingming Cao 	 */
5642a02908f1SMingming Cao 	idxblocks = ext4_index_trans_blocks(inode, nrblocks, chunk);
5643a02908f1SMingming Cao 
5644a02908f1SMingming Cao 	ret = idxblocks;
5645a02908f1SMingming Cao 
5646a02908f1SMingming Cao 	/*
5647a02908f1SMingming Cao 	 * Now let's see how many group bitmaps and group descriptors need
5648a02908f1SMingming Cao 	 * to account
5649a02908f1SMingming Cao 	 */
5650a02908f1SMingming Cao 	groups = idxblocks;
5651a02908f1SMingming Cao 	if (chunk)
5652a02908f1SMingming Cao 		groups += 1;
5653ac27a0ecSDave Kleikamp 	else
5654a02908f1SMingming Cao 		groups += nrblocks;
5655ac27a0ecSDave Kleikamp 
5656a02908f1SMingming Cao 	gdpblocks = groups;
56578df9675fSTheodore Ts'o 	if (groups > ngroups)
56588df9675fSTheodore Ts'o 		groups = ngroups;
5659a02908f1SMingming Cao 	if (groups > EXT4_SB(inode->i_sb)->s_gdb_count)
5660a02908f1SMingming Cao 		gdpblocks = EXT4_SB(inode->i_sb)->s_gdb_count;
5661a02908f1SMingming Cao 
5662a02908f1SMingming Cao 	/* bitmaps and block group descriptor blocks */
5663a02908f1SMingming Cao 	ret += groups + gdpblocks;
5664a02908f1SMingming Cao 
5665a02908f1SMingming Cao 	/* Blocks for super block, inode, quota and xattr blocks */
5666a02908f1SMingming Cao 	ret += EXT4_META_TRANS_BLOCKS(inode->i_sb);
5667ac27a0ecSDave Kleikamp 
5668ac27a0ecSDave Kleikamp 	return ret;
5669ac27a0ecSDave Kleikamp }
5670ac27a0ecSDave Kleikamp 
5671ac27a0ecSDave Kleikamp /*
5672a02908f1SMingming Cao  * Calulate the total number of credits to reserve to fit
5673f3bd1f3fSMingming Cao  * the modification of a single pages into a single transaction,
5674f3bd1f3fSMingming Cao  * which may include multiple chunks of block allocations.
5675a02908f1SMingming Cao  *
5676525f4ed8SMingming Cao  * This could be called via ext4_write_begin()
5677a02908f1SMingming Cao  *
5678525f4ed8SMingming Cao  * We need to consider the worse case, when
5679a02908f1SMingming Cao  * one new block per extent.
5680a02908f1SMingming Cao  */
5681a02908f1SMingming Cao int ext4_writepage_trans_blocks(struct inode *inode)
5682a02908f1SMingming Cao {
5683a02908f1SMingming Cao 	int bpp = ext4_journal_blocks_per_page(inode);
5684a02908f1SMingming Cao 	int ret;
5685a02908f1SMingming Cao 
5686a02908f1SMingming Cao 	ret = ext4_meta_trans_blocks(inode, bpp, 0);
5687a02908f1SMingming Cao 
5688a02908f1SMingming Cao 	/* Account for data blocks for journalled mode */
5689a02908f1SMingming Cao 	if (ext4_should_journal_data(inode))
5690a02908f1SMingming Cao 		ret += bpp;
5691a02908f1SMingming Cao 	return ret;
5692a02908f1SMingming Cao }
5693f3bd1f3fSMingming Cao 
5694f3bd1f3fSMingming Cao /*
5695f3bd1f3fSMingming Cao  * Calculate the journal credits for a chunk of data modification.
5696f3bd1f3fSMingming Cao  *
5697f3bd1f3fSMingming Cao  * This is called from DIO, fallocate or whoever calling
569879e83036SEric Sandeen  * ext4_map_blocks() to map/allocate a chunk of contiguous disk blocks.
5699f3bd1f3fSMingming Cao  *
5700f3bd1f3fSMingming Cao  * journal buffers for data blocks are not included here, as DIO
5701f3bd1f3fSMingming Cao  * and fallocate do no need to journal data buffers.
5702f3bd1f3fSMingming Cao  */
5703f3bd1f3fSMingming Cao int ext4_chunk_trans_blocks(struct inode *inode, int nrblocks)
5704f3bd1f3fSMingming Cao {
5705f3bd1f3fSMingming Cao 	return ext4_meta_trans_blocks(inode, nrblocks, 1);
5706f3bd1f3fSMingming Cao }
5707f3bd1f3fSMingming Cao 
5708a02908f1SMingming Cao /*
5709617ba13bSMingming Cao  * The caller must have previously called ext4_reserve_inode_write().
5710ac27a0ecSDave Kleikamp  * Give this, we know that the caller already has write access to iloc->bh.
5711ac27a0ecSDave Kleikamp  */
5712617ba13bSMingming Cao int ext4_mark_iloc_dirty(handle_t *handle,
5713617ba13bSMingming Cao 			 struct inode *inode, struct ext4_iloc *iloc)
5714ac27a0ecSDave Kleikamp {
5715ac27a0ecSDave Kleikamp 	int err = 0;
5716ac27a0ecSDave Kleikamp 
571725ec56b5SJean Noel Cordenner 	if (test_opt(inode->i_sb, I_VERSION))
571825ec56b5SJean Noel Cordenner 		inode_inc_iversion(inode);
571925ec56b5SJean Noel Cordenner 
5720ac27a0ecSDave Kleikamp 	/* the do_update_inode consumes one bh->b_count */
5721ac27a0ecSDave Kleikamp 	get_bh(iloc->bh);
5722ac27a0ecSDave Kleikamp 
5723dab291afSMingming Cao 	/* ext4_do_update_inode() does jbd2_journal_dirty_metadata */
5724830156c7SFrank Mayhar 	err = ext4_do_update_inode(handle, inode, iloc);
5725ac27a0ecSDave Kleikamp 	put_bh(iloc->bh);
5726ac27a0ecSDave Kleikamp 	return err;
5727ac27a0ecSDave Kleikamp }
5728ac27a0ecSDave Kleikamp 
5729ac27a0ecSDave Kleikamp /*
5730ac27a0ecSDave Kleikamp  * On success, We end up with an outstanding reference count against
5731ac27a0ecSDave Kleikamp  * iloc->bh.  This _must_ be cleaned up later.
5732ac27a0ecSDave Kleikamp  */
5733ac27a0ecSDave Kleikamp 
5734ac27a0ecSDave Kleikamp int
5735617ba13bSMingming Cao ext4_reserve_inode_write(handle_t *handle, struct inode *inode,
5736617ba13bSMingming Cao 			 struct ext4_iloc *iloc)
5737ac27a0ecSDave Kleikamp {
57380390131bSFrank Mayhar 	int err;
57390390131bSFrank Mayhar 
5740617ba13bSMingming Cao 	err = ext4_get_inode_loc(inode, iloc);
5741ac27a0ecSDave Kleikamp 	if (!err) {
5742ac27a0ecSDave Kleikamp 		BUFFER_TRACE(iloc->bh, "get_write_access");
5743617ba13bSMingming Cao 		err = ext4_journal_get_write_access(handle, iloc->bh);
5744ac27a0ecSDave Kleikamp 		if (err) {
5745ac27a0ecSDave Kleikamp 			brelse(iloc->bh);
5746ac27a0ecSDave Kleikamp 			iloc->bh = NULL;
5747ac27a0ecSDave Kleikamp 		}
5748ac27a0ecSDave Kleikamp 	}
5749617ba13bSMingming Cao 	ext4_std_error(inode->i_sb, err);
5750ac27a0ecSDave Kleikamp 	return err;
5751ac27a0ecSDave Kleikamp }
5752ac27a0ecSDave Kleikamp 
5753ac27a0ecSDave Kleikamp /*
57546dd4ee7cSKalpak Shah  * Expand an inode by new_extra_isize bytes.
57556dd4ee7cSKalpak Shah  * Returns 0 on success or negative error number on failure.
57566dd4ee7cSKalpak Shah  */
57571d03ec98SAneesh Kumar K.V static int ext4_expand_extra_isize(struct inode *inode,
57581d03ec98SAneesh Kumar K.V 				   unsigned int new_extra_isize,
57591d03ec98SAneesh Kumar K.V 				   struct ext4_iloc iloc,
57601d03ec98SAneesh Kumar K.V 				   handle_t *handle)
57616dd4ee7cSKalpak Shah {
57626dd4ee7cSKalpak Shah 	struct ext4_inode *raw_inode;
57636dd4ee7cSKalpak Shah 	struct ext4_xattr_ibody_header *header;
57646dd4ee7cSKalpak Shah 
57656dd4ee7cSKalpak Shah 	if (EXT4_I(inode)->i_extra_isize >= new_extra_isize)
57666dd4ee7cSKalpak Shah 		return 0;
57676dd4ee7cSKalpak Shah 
57686dd4ee7cSKalpak Shah 	raw_inode = ext4_raw_inode(&iloc);
57696dd4ee7cSKalpak Shah 
57706dd4ee7cSKalpak Shah 	header = IHDR(inode, raw_inode);
57716dd4ee7cSKalpak Shah 
57726dd4ee7cSKalpak Shah 	/* No extended attributes present */
577319f5fb7aSTheodore Ts'o 	if (!ext4_test_inode_state(inode, EXT4_STATE_XATTR) ||
57746dd4ee7cSKalpak Shah 	    header->h_magic != cpu_to_le32(EXT4_XATTR_MAGIC)) {
57756dd4ee7cSKalpak Shah 		memset((void *)raw_inode + EXT4_GOOD_OLD_INODE_SIZE, 0,
57766dd4ee7cSKalpak Shah 			new_extra_isize);
57776dd4ee7cSKalpak Shah 		EXT4_I(inode)->i_extra_isize = new_extra_isize;
57786dd4ee7cSKalpak Shah 		return 0;
57796dd4ee7cSKalpak Shah 	}
57806dd4ee7cSKalpak Shah 
57816dd4ee7cSKalpak Shah 	/* try to expand with EAs present */
57826dd4ee7cSKalpak Shah 	return ext4_expand_extra_isize_ea(inode, new_extra_isize,
57836dd4ee7cSKalpak Shah 					  raw_inode, handle);
57846dd4ee7cSKalpak Shah }
57856dd4ee7cSKalpak Shah 
57866dd4ee7cSKalpak Shah /*
5787ac27a0ecSDave Kleikamp  * What we do here is to mark the in-core inode as clean with respect to inode
5788ac27a0ecSDave Kleikamp  * dirtiness (it may still be data-dirty).
5789ac27a0ecSDave Kleikamp  * This means that the in-core inode may be reaped by prune_icache
5790ac27a0ecSDave Kleikamp  * without having to perform any I/O.  This is a very good thing,
5791ac27a0ecSDave Kleikamp  * because *any* task may call prune_icache - even ones which
5792ac27a0ecSDave Kleikamp  * have a transaction open against a different journal.
5793ac27a0ecSDave Kleikamp  *
5794ac27a0ecSDave Kleikamp  * Is this cheating?  Not really.  Sure, we haven't written the
5795ac27a0ecSDave Kleikamp  * inode out, but prune_icache isn't a user-visible syncing function.
5796ac27a0ecSDave Kleikamp  * Whenever the user wants stuff synced (sys_sync, sys_msync, sys_fsync)
5797ac27a0ecSDave Kleikamp  * we start and wait on commits.
5798ac27a0ecSDave Kleikamp  *
5799ac27a0ecSDave Kleikamp  * Is this efficient/effective?  Well, we're being nice to the system
5800ac27a0ecSDave Kleikamp  * by cleaning up our inodes proactively so they can be reaped
5801ac27a0ecSDave Kleikamp  * without I/O.  But we are potentially leaving up to five seconds'
5802ac27a0ecSDave Kleikamp  * worth of inodes floating about which prune_icache wants us to
5803ac27a0ecSDave Kleikamp  * write out.  One way to fix that would be to get prune_icache()
5804ac27a0ecSDave Kleikamp  * to do a write_super() to free up some memory.  It has the desired
5805ac27a0ecSDave Kleikamp  * effect.
5806ac27a0ecSDave Kleikamp  */
5807617ba13bSMingming Cao int ext4_mark_inode_dirty(handle_t *handle, struct inode *inode)
5808ac27a0ecSDave Kleikamp {
5809617ba13bSMingming Cao 	struct ext4_iloc iloc;
58106dd4ee7cSKalpak Shah 	struct ext4_sb_info *sbi = EXT4_SB(inode->i_sb);
58116dd4ee7cSKalpak Shah 	static unsigned int mnt_count;
58126dd4ee7cSKalpak Shah 	int err, ret;
5813ac27a0ecSDave Kleikamp 
5814ac27a0ecSDave Kleikamp 	might_sleep();
5815617ba13bSMingming Cao 	err = ext4_reserve_inode_write(handle, inode, &iloc);
58160390131bSFrank Mayhar 	if (ext4_handle_valid(handle) &&
58170390131bSFrank Mayhar 	    EXT4_I(inode)->i_extra_isize < sbi->s_want_extra_isize &&
581819f5fb7aSTheodore Ts'o 	    !ext4_test_inode_state(inode, EXT4_STATE_NO_EXPAND)) {
58196dd4ee7cSKalpak Shah 		/*
58206dd4ee7cSKalpak Shah 		 * We need extra buffer credits since we may write into EA block
58216dd4ee7cSKalpak Shah 		 * with this same handle. If journal_extend fails, then it will
58226dd4ee7cSKalpak Shah 		 * only result in a minor loss of functionality for that inode.
58236dd4ee7cSKalpak Shah 		 * If this is felt to be critical, then e2fsck should be run to
58246dd4ee7cSKalpak Shah 		 * force a large enough s_min_extra_isize.
58256dd4ee7cSKalpak Shah 		 */
58266dd4ee7cSKalpak Shah 		if ((jbd2_journal_extend(handle,
58276dd4ee7cSKalpak Shah 			     EXT4_DATA_TRANS_BLOCKS(inode->i_sb))) == 0) {
58286dd4ee7cSKalpak Shah 			ret = ext4_expand_extra_isize(inode,
58296dd4ee7cSKalpak Shah 						      sbi->s_want_extra_isize,
58306dd4ee7cSKalpak Shah 						      iloc, handle);
58316dd4ee7cSKalpak Shah 			if (ret) {
583219f5fb7aSTheodore Ts'o 				ext4_set_inode_state(inode,
583319f5fb7aSTheodore Ts'o 						     EXT4_STATE_NO_EXPAND);
5834c1bddad9SAneesh Kumar K.V 				if (mnt_count !=
5835c1bddad9SAneesh Kumar K.V 					le16_to_cpu(sbi->s_es->s_mnt_count)) {
583612062dddSEric Sandeen 					ext4_warning(inode->i_sb,
58376dd4ee7cSKalpak Shah 					"Unable to expand inode %lu. Delete"
58386dd4ee7cSKalpak Shah 					" some EAs or run e2fsck.",
58396dd4ee7cSKalpak Shah 					inode->i_ino);
5840c1bddad9SAneesh Kumar K.V 					mnt_count =
5841c1bddad9SAneesh Kumar K.V 					  le16_to_cpu(sbi->s_es->s_mnt_count);
58426dd4ee7cSKalpak Shah 				}
58436dd4ee7cSKalpak Shah 			}
58446dd4ee7cSKalpak Shah 		}
58456dd4ee7cSKalpak Shah 	}
5846ac27a0ecSDave Kleikamp 	if (!err)
5847617ba13bSMingming Cao 		err = ext4_mark_iloc_dirty(handle, inode, &iloc);
5848ac27a0ecSDave Kleikamp 	return err;
5849ac27a0ecSDave Kleikamp }
5850ac27a0ecSDave Kleikamp 
5851ac27a0ecSDave Kleikamp /*
5852617ba13bSMingming Cao  * ext4_dirty_inode() is called from __mark_inode_dirty()
5853ac27a0ecSDave Kleikamp  *
5854ac27a0ecSDave Kleikamp  * We're really interested in the case where a file is being extended.
5855ac27a0ecSDave Kleikamp  * i_size has been changed by generic_commit_write() and we thus need
5856ac27a0ecSDave Kleikamp  * to include the updated inode in the current transaction.
5857ac27a0ecSDave Kleikamp  *
58585dd4056dSChristoph Hellwig  * Also, dquot_alloc_block() will always dirty the inode when blocks
5859ac27a0ecSDave Kleikamp  * are allocated to the file.
5860ac27a0ecSDave Kleikamp  *
5861ac27a0ecSDave Kleikamp  * If the inode is marked synchronous, we don't honour that here - doing
5862ac27a0ecSDave Kleikamp  * so would cause a commit on atime updates, which we don't bother doing.
5863ac27a0ecSDave Kleikamp  * We handle synchronous inodes at the highest possible level.
5864ac27a0ecSDave Kleikamp  */
5865617ba13bSMingming Cao void ext4_dirty_inode(struct inode *inode)
5866ac27a0ecSDave Kleikamp {
5867ac27a0ecSDave Kleikamp 	handle_t *handle;
5868ac27a0ecSDave Kleikamp 
5869617ba13bSMingming Cao 	handle = ext4_journal_start(inode, 2);
5870ac27a0ecSDave Kleikamp 	if (IS_ERR(handle))
5871ac27a0ecSDave Kleikamp 		goto out;
5872f3dc272fSCurt Wohlgemuth 
5873617ba13bSMingming Cao 	ext4_mark_inode_dirty(handle, inode);
5874f3dc272fSCurt Wohlgemuth 
5875617ba13bSMingming Cao 	ext4_journal_stop(handle);
5876ac27a0ecSDave Kleikamp out:
5877ac27a0ecSDave Kleikamp 	return;
5878ac27a0ecSDave Kleikamp }
5879ac27a0ecSDave Kleikamp 
5880ac27a0ecSDave Kleikamp #if 0
5881ac27a0ecSDave Kleikamp /*
5882ac27a0ecSDave Kleikamp  * Bind an inode's backing buffer_head into this transaction, to prevent
5883ac27a0ecSDave Kleikamp  * it from being flushed to disk early.  Unlike
5884617ba13bSMingming Cao  * ext4_reserve_inode_write, this leaves behind no bh reference and
5885ac27a0ecSDave Kleikamp  * returns no iloc structure, so the caller needs to repeat the iloc
5886ac27a0ecSDave Kleikamp  * lookup to mark the inode dirty later.
5887ac27a0ecSDave Kleikamp  */
5888617ba13bSMingming Cao static int ext4_pin_inode(handle_t *handle, struct inode *inode)
5889ac27a0ecSDave Kleikamp {
5890617ba13bSMingming Cao 	struct ext4_iloc iloc;
5891ac27a0ecSDave Kleikamp 
5892ac27a0ecSDave Kleikamp 	int err = 0;
5893ac27a0ecSDave Kleikamp 	if (handle) {
5894617ba13bSMingming Cao 		err = ext4_get_inode_loc(inode, &iloc);
5895ac27a0ecSDave Kleikamp 		if (!err) {
5896ac27a0ecSDave Kleikamp 			BUFFER_TRACE(iloc.bh, "get_write_access");
5897dab291afSMingming Cao 			err = jbd2_journal_get_write_access(handle, iloc.bh);
5898ac27a0ecSDave Kleikamp 			if (!err)
58990390131bSFrank Mayhar 				err = ext4_handle_dirty_metadata(handle,
590073b50c1cSCurt Wohlgemuth 								 NULL,
5901ac27a0ecSDave Kleikamp 								 iloc.bh);
5902ac27a0ecSDave Kleikamp 			brelse(iloc.bh);
5903ac27a0ecSDave Kleikamp 		}
5904ac27a0ecSDave Kleikamp 	}
5905617ba13bSMingming Cao 	ext4_std_error(inode->i_sb, err);
5906ac27a0ecSDave Kleikamp 	return err;
5907ac27a0ecSDave Kleikamp }
5908ac27a0ecSDave Kleikamp #endif
5909ac27a0ecSDave Kleikamp 
5910617ba13bSMingming Cao int ext4_change_inode_journal_flag(struct inode *inode, int val)
5911ac27a0ecSDave Kleikamp {
5912ac27a0ecSDave Kleikamp 	journal_t *journal;
5913ac27a0ecSDave Kleikamp 	handle_t *handle;
5914ac27a0ecSDave Kleikamp 	int err;
5915ac27a0ecSDave Kleikamp 
5916ac27a0ecSDave Kleikamp 	/*
5917ac27a0ecSDave Kleikamp 	 * We have to be very careful here: changing a data block's
5918ac27a0ecSDave Kleikamp 	 * journaling status dynamically is dangerous.  If we write a
5919ac27a0ecSDave Kleikamp 	 * data block to the journal, change the status and then delete
5920ac27a0ecSDave Kleikamp 	 * that block, we risk forgetting to revoke the old log record
5921ac27a0ecSDave Kleikamp 	 * from the journal and so a subsequent replay can corrupt data.
5922ac27a0ecSDave Kleikamp 	 * So, first we make sure that the journal is empty and that
5923ac27a0ecSDave Kleikamp 	 * nobody is changing anything.
5924ac27a0ecSDave Kleikamp 	 */
5925ac27a0ecSDave Kleikamp 
5926617ba13bSMingming Cao 	journal = EXT4_JOURNAL(inode);
59270390131bSFrank Mayhar 	if (!journal)
59280390131bSFrank Mayhar 		return 0;
5929d699594dSDave Hansen 	if (is_journal_aborted(journal))
5930ac27a0ecSDave Kleikamp 		return -EROFS;
5931ac27a0ecSDave Kleikamp 
5932dab291afSMingming Cao 	jbd2_journal_lock_updates(journal);
5933dab291afSMingming Cao 	jbd2_journal_flush(journal);
5934ac27a0ecSDave Kleikamp 
5935ac27a0ecSDave Kleikamp 	/*
5936ac27a0ecSDave Kleikamp 	 * OK, there are no updates running now, and all cached data is
5937ac27a0ecSDave Kleikamp 	 * synced to disk.  We are now in a completely consistent state
5938ac27a0ecSDave Kleikamp 	 * which doesn't have anything in the journal, and we know that
5939ac27a0ecSDave Kleikamp 	 * no filesystem updates are running, so it is safe to modify
5940ac27a0ecSDave Kleikamp 	 * the inode's in-core data-journaling state flag now.
5941ac27a0ecSDave Kleikamp 	 */
5942ac27a0ecSDave Kleikamp 
5943ac27a0ecSDave Kleikamp 	if (val)
594412e9b892SDmitry Monakhov 		ext4_set_inode_flag(inode, EXT4_INODE_JOURNAL_DATA);
5945ac27a0ecSDave Kleikamp 	else
594612e9b892SDmitry Monakhov 		ext4_clear_inode_flag(inode, EXT4_INODE_JOURNAL_DATA);
5947617ba13bSMingming Cao 	ext4_set_aops(inode);
5948ac27a0ecSDave Kleikamp 
5949dab291afSMingming Cao 	jbd2_journal_unlock_updates(journal);
5950ac27a0ecSDave Kleikamp 
5951ac27a0ecSDave Kleikamp 	/* Finally we can mark the inode as dirty. */
5952ac27a0ecSDave Kleikamp 
5953617ba13bSMingming Cao 	handle = ext4_journal_start(inode, 1);
5954ac27a0ecSDave Kleikamp 	if (IS_ERR(handle))
5955ac27a0ecSDave Kleikamp 		return PTR_ERR(handle);
5956ac27a0ecSDave Kleikamp 
5957617ba13bSMingming Cao 	err = ext4_mark_inode_dirty(handle, inode);
59580390131bSFrank Mayhar 	ext4_handle_sync(handle);
5959617ba13bSMingming Cao 	ext4_journal_stop(handle);
5960617ba13bSMingming Cao 	ext4_std_error(inode->i_sb, err);
5961ac27a0ecSDave Kleikamp 
5962ac27a0ecSDave Kleikamp 	return err;
5963ac27a0ecSDave Kleikamp }
59642e9ee850SAneesh Kumar K.V 
59652e9ee850SAneesh Kumar K.V static int ext4_bh_unmapped(handle_t *handle, struct buffer_head *bh)
59662e9ee850SAneesh Kumar K.V {
59672e9ee850SAneesh Kumar K.V 	return !buffer_mapped(bh);
59682e9ee850SAneesh Kumar K.V }
59692e9ee850SAneesh Kumar K.V 
5970c2ec175cSNick Piggin int ext4_page_mkwrite(struct vm_area_struct *vma, struct vm_fault *vmf)
59712e9ee850SAneesh Kumar K.V {
5972c2ec175cSNick Piggin 	struct page *page = vmf->page;
59732e9ee850SAneesh Kumar K.V 	loff_t size;
59742e9ee850SAneesh Kumar K.V 	unsigned long len;
59752e9ee850SAneesh Kumar K.V 	int ret = -EINVAL;
597679f0be8dSAneesh Kumar K.V 	void *fsdata;
59772e9ee850SAneesh Kumar K.V 	struct file *file = vma->vm_file;
59782e9ee850SAneesh Kumar K.V 	struct inode *inode = file->f_path.dentry->d_inode;
59792e9ee850SAneesh Kumar K.V 	struct address_space *mapping = inode->i_mapping;
59802e9ee850SAneesh Kumar K.V 
59812e9ee850SAneesh Kumar K.V 	/*
59822e9ee850SAneesh Kumar K.V 	 * Get i_alloc_sem to stop truncates messing with the inode. We cannot
59832e9ee850SAneesh Kumar K.V 	 * get i_mutex because we are already holding mmap_sem.
59842e9ee850SAneesh Kumar K.V 	 */
59852e9ee850SAneesh Kumar K.V 	down_read(&inode->i_alloc_sem);
59862e9ee850SAneesh Kumar K.V 	size = i_size_read(inode);
59872e9ee850SAneesh Kumar K.V 	if (page->mapping != mapping || size <= page_offset(page)
59882e9ee850SAneesh Kumar K.V 	    || !PageUptodate(page)) {
59892e9ee850SAneesh Kumar K.V 		/* page got truncated from under us? */
59902e9ee850SAneesh Kumar K.V 		goto out_unlock;
59912e9ee850SAneesh Kumar K.V 	}
59922e9ee850SAneesh Kumar K.V 	ret = 0;
59932e9ee850SAneesh Kumar K.V 	if (PageMappedToDisk(page))
59942e9ee850SAneesh Kumar K.V 		goto out_unlock;
59952e9ee850SAneesh Kumar K.V 
59962e9ee850SAneesh Kumar K.V 	if (page->index == size >> PAGE_CACHE_SHIFT)
59972e9ee850SAneesh Kumar K.V 		len = size & ~PAGE_CACHE_MASK;
59982e9ee850SAneesh Kumar K.V 	else
59992e9ee850SAneesh Kumar K.V 		len = PAGE_CACHE_SIZE;
60002e9ee850SAneesh Kumar K.V 
6001a827eaffSAneesh Kumar K.V 	lock_page(page);
6002a827eaffSAneesh Kumar K.V 	/*
6003a827eaffSAneesh Kumar K.V 	 * return if we have all the buffers mapped. This avoid
6004a827eaffSAneesh Kumar K.V 	 * the need to call write_begin/write_end which does a
6005a827eaffSAneesh Kumar K.V 	 * journal_start/journal_stop which can block and take
6006a827eaffSAneesh Kumar K.V 	 * long time
6007a827eaffSAneesh Kumar K.V 	 */
60082e9ee850SAneesh Kumar K.V 	if (page_has_buffers(page)) {
60092e9ee850SAneesh Kumar K.V 		if (!walk_page_buffers(NULL, page_buffers(page), 0, len, NULL,
6010a827eaffSAneesh Kumar K.V 					ext4_bh_unmapped)) {
6011a827eaffSAneesh Kumar K.V 			unlock_page(page);
60122e9ee850SAneesh Kumar K.V 			goto out_unlock;
60132e9ee850SAneesh Kumar K.V 		}
6014a827eaffSAneesh Kumar K.V 	}
6015a827eaffSAneesh Kumar K.V 	unlock_page(page);
60162e9ee850SAneesh Kumar K.V 	/*
60172e9ee850SAneesh Kumar K.V 	 * OK, we need to fill the hole... Do write_begin write_end
60182e9ee850SAneesh Kumar K.V 	 * to do block allocation/reservation.We are not holding
60192e9ee850SAneesh Kumar K.V 	 * inode.i__mutex here. That allow * parallel write_begin,
60202e9ee850SAneesh Kumar K.V 	 * write_end call. lock_page prevent this from happening
60212e9ee850SAneesh Kumar K.V 	 * on the same page though
60222e9ee850SAneesh Kumar K.V 	 */
60232e9ee850SAneesh Kumar K.V 	ret = mapping->a_ops->write_begin(file, mapping, page_offset(page),
602479f0be8dSAneesh Kumar K.V 			len, AOP_FLAG_UNINTERRUPTIBLE, &page, &fsdata);
60252e9ee850SAneesh Kumar K.V 	if (ret < 0)
60262e9ee850SAneesh Kumar K.V 		goto out_unlock;
60272e9ee850SAneesh Kumar K.V 	ret = mapping->a_ops->write_end(file, mapping, page_offset(page),
602879f0be8dSAneesh Kumar K.V 			len, len, page, fsdata);
60292e9ee850SAneesh Kumar K.V 	if (ret < 0)
60302e9ee850SAneesh Kumar K.V 		goto out_unlock;
60312e9ee850SAneesh Kumar K.V 	ret = 0;
60322e9ee850SAneesh Kumar K.V out_unlock:
6033c2ec175cSNick Piggin 	if (ret)
6034c2ec175cSNick Piggin 		ret = VM_FAULT_SIGBUS;
60352e9ee850SAneesh Kumar K.V 	up_read(&inode->i_alloc_sem);
60362e9ee850SAneesh Kumar K.V 	return ret;
60372e9ee850SAneesh Kumar K.V }
6038