xref: /openbmc/linux/fs/xfs/libxfs/xfs_ag.c (revision 27df4f5045fc68766980c4dfba5ffc9ad1f71ebb)
1b16817b6SDave Chinner /* SPDX-License-Identifier: GPL-2.0 */
2b16817b6SDave Chinner /*
3b16817b6SDave Chinner  * Copyright (c) 2000-2005 Silicon Graphics, Inc.
4b16817b6SDave Chinner  * Copyright (c) 2018 Red Hat, Inc.
5b16817b6SDave Chinner  * All rights reserved.
6b16817b6SDave Chinner  */
7b16817b6SDave Chinner 
8b16817b6SDave Chinner #include "xfs.h"
9b16817b6SDave Chinner #include "xfs_fs.h"
10b16817b6SDave Chinner #include "xfs_shared.h"
11b16817b6SDave Chinner #include "xfs_format.h"
12b16817b6SDave Chinner #include "xfs_trans_resv.h"
13b16817b6SDave Chinner #include "xfs_sb.h"
14b16817b6SDave Chinner #include "xfs_mount.h"
15b16817b6SDave Chinner #include "xfs_btree.h"
16b16817b6SDave Chinner #include "xfs_alloc_btree.h"
17b16817b6SDave Chinner #include "xfs_rmap_btree.h"
18b16817b6SDave Chinner #include "xfs_alloc.h"
1949dd56f2SDave Chinner #include "xfs_ialloc.h"
20b16817b6SDave Chinner #include "xfs_rmap.h"
21b16817b6SDave Chinner #include "xfs_ag.h"
22b16817b6SDave Chinner 
23b16817b6SDave Chinner static struct xfs_buf *
24b16817b6SDave Chinner xfs_get_aghdr_buf(
25b16817b6SDave Chinner 	struct xfs_mount	*mp,
26b16817b6SDave Chinner 	xfs_daddr_t		blkno,
27b16817b6SDave Chinner 	size_t			numblks,
28b16817b6SDave Chinner 	int			flags,
29b16817b6SDave Chinner 	const struct xfs_buf_ops *ops)
30b16817b6SDave Chinner {
31b16817b6SDave Chinner 	struct xfs_buf		*bp;
32b16817b6SDave Chinner 
33b16817b6SDave Chinner 	bp = xfs_buf_get_uncached(mp->m_ddev_targp, numblks, flags);
34b16817b6SDave Chinner 	if (!bp)
35b16817b6SDave Chinner 		return NULL;
36b16817b6SDave Chinner 
37b16817b6SDave Chinner 	xfs_buf_zero(bp, 0, BBTOB(bp->b_length));
38b16817b6SDave Chinner 	bp->b_bn = blkno;
39b16817b6SDave Chinner 	bp->b_maps[0].bm_bn = blkno;
40b16817b6SDave Chinner 	bp->b_ops = ops;
41b16817b6SDave Chinner 
42b16817b6SDave Chinner 	return bp;
43b16817b6SDave Chinner }
44b16817b6SDave Chinner 
45b16817b6SDave Chinner /*
46b16817b6SDave Chinner  * Generic btree root block init function
47b16817b6SDave Chinner  */
48b16817b6SDave Chinner static void
49b16817b6SDave Chinner xfs_btroot_init(
50b16817b6SDave Chinner 	struct xfs_mount	*mp,
51b16817b6SDave Chinner 	struct xfs_buf		*bp,
52b16817b6SDave Chinner 	struct aghdr_init_data	*id)
53b16817b6SDave Chinner {
54b16817b6SDave Chinner 	xfs_btree_init_block(mp, bp, id->type, 0, 0, id->agno, 0);
55b16817b6SDave Chinner }
56b16817b6SDave Chinner 
57b16817b6SDave Chinner /*
58b16817b6SDave Chinner  * Alloc btree root block init functions
59b16817b6SDave Chinner  */
60b16817b6SDave Chinner static void
61b16817b6SDave Chinner xfs_bnoroot_init(
62b16817b6SDave Chinner 	struct xfs_mount	*mp,
63b16817b6SDave Chinner 	struct xfs_buf		*bp,
64b16817b6SDave Chinner 	struct aghdr_init_data	*id)
65b16817b6SDave Chinner {
66b16817b6SDave Chinner 	struct xfs_alloc_rec	*arec;
67b16817b6SDave Chinner 
68b16817b6SDave Chinner 	xfs_btree_init_block(mp, bp, XFS_BTNUM_BNO, 0, 1, id->agno, 0);
69b16817b6SDave Chinner 	arec = XFS_ALLOC_REC_ADDR(mp, XFS_BUF_TO_BLOCK(bp), 1);
70b16817b6SDave Chinner 	arec->ar_startblock = cpu_to_be32(mp->m_ag_prealloc_blocks);
71b16817b6SDave Chinner 	arec->ar_blockcount = cpu_to_be32(id->agsize -
72b16817b6SDave Chinner 					  be32_to_cpu(arec->ar_startblock));
73b16817b6SDave Chinner }
74b16817b6SDave Chinner 
75b16817b6SDave Chinner static void
76b16817b6SDave Chinner xfs_cntroot_init(
77b16817b6SDave Chinner 	struct xfs_mount	*mp,
78b16817b6SDave Chinner 	struct xfs_buf		*bp,
79b16817b6SDave Chinner 	struct aghdr_init_data	*id)
80b16817b6SDave Chinner {
81b16817b6SDave Chinner 	struct xfs_alloc_rec	*arec;
82b16817b6SDave Chinner 
83b16817b6SDave Chinner 	xfs_btree_init_block(mp, bp, XFS_BTNUM_CNT, 0, 1, id->agno, 0);
84b16817b6SDave Chinner 	arec = XFS_ALLOC_REC_ADDR(mp, XFS_BUF_TO_BLOCK(bp), 1);
85b16817b6SDave Chinner 	arec->ar_startblock = cpu_to_be32(mp->m_ag_prealloc_blocks);
86b16817b6SDave Chinner 	arec->ar_blockcount = cpu_to_be32(id->agsize -
87b16817b6SDave Chinner 					  be32_to_cpu(arec->ar_startblock));
88b16817b6SDave Chinner }
89b16817b6SDave Chinner 
90b16817b6SDave Chinner /*
91b16817b6SDave Chinner  * Reverse map root block init
92b16817b6SDave Chinner  */
93b16817b6SDave Chinner static void
94b16817b6SDave Chinner xfs_rmaproot_init(
95b16817b6SDave Chinner 	struct xfs_mount	*mp,
96b16817b6SDave Chinner 	struct xfs_buf		*bp,
97b16817b6SDave Chinner 	struct aghdr_init_data	*id)
98b16817b6SDave Chinner {
99b16817b6SDave Chinner 	struct xfs_btree_block	*block = XFS_BUF_TO_BLOCK(bp);
100b16817b6SDave Chinner 	struct xfs_rmap_rec	*rrec;
101b16817b6SDave Chinner 
102b16817b6SDave Chinner 	xfs_btree_init_block(mp, bp, XFS_BTNUM_RMAP, 0, 4, id->agno, 0);
103b16817b6SDave Chinner 
104b16817b6SDave Chinner 	/*
105b16817b6SDave Chinner 	 * mark the AG header regions as static metadata The BNO
106b16817b6SDave Chinner 	 * btree block is the first block after the headers, so
107b16817b6SDave Chinner 	 * it's location defines the size of region the static
108b16817b6SDave Chinner 	 * metadata consumes.
109b16817b6SDave Chinner 	 *
110b16817b6SDave Chinner 	 * Note: unlike mkfs, we never have to account for log
111b16817b6SDave Chinner 	 * space when growing the data regions
112b16817b6SDave Chinner 	 */
113b16817b6SDave Chinner 	rrec = XFS_RMAP_REC_ADDR(block, 1);
114b16817b6SDave Chinner 	rrec->rm_startblock = 0;
115b16817b6SDave Chinner 	rrec->rm_blockcount = cpu_to_be32(XFS_BNO_BLOCK(mp));
116b16817b6SDave Chinner 	rrec->rm_owner = cpu_to_be64(XFS_RMAP_OWN_FS);
117b16817b6SDave Chinner 	rrec->rm_offset = 0;
118b16817b6SDave Chinner 
119b16817b6SDave Chinner 	/* account freespace btree root blocks */
120b16817b6SDave Chinner 	rrec = XFS_RMAP_REC_ADDR(block, 2);
121b16817b6SDave Chinner 	rrec->rm_startblock = cpu_to_be32(XFS_BNO_BLOCK(mp));
122b16817b6SDave Chinner 	rrec->rm_blockcount = cpu_to_be32(2);
123b16817b6SDave Chinner 	rrec->rm_owner = cpu_to_be64(XFS_RMAP_OWN_AG);
124b16817b6SDave Chinner 	rrec->rm_offset = 0;
125b16817b6SDave Chinner 
126b16817b6SDave Chinner 	/* account inode btree root blocks */
127b16817b6SDave Chinner 	rrec = XFS_RMAP_REC_ADDR(block, 3);
128b16817b6SDave Chinner 	rrec->rm_startblock = cpu_to_be32(XFS_IBT_BLOCK(mp));
129b16817b6SDave Chinner 	rrec->rm_blockcount = cpu_to_be32(XFS_RMAP_BLOCK(mp) -
130b16817b6SDave Chinner 					  XFS_IBT_BLOCK(mp));
131b16817b6SDave Chinner 	rrec->rm_owner = cpu_to_be64(XFS_RMAP_OWN_INOBT);
132b16817b6SDave Chinner 	rrec->rm_offset = 0;
133b16817b6SDave Chinner 
134b16817b6SDave Chinner 	/* account for rmap btree root */
135b16817b6SDave Chinner 	rrec = XFS_RMAP_REC_ADDR(block, 4);
136b16817b6SDave Chinner 	rrec->rm_startblock = cpu_to_be32(XFS_RMAP_BLOCK(mp));
137b16817b6SDave Chinner 	rrec->rm_blockcount = cpu_to_be32(1);
138b16817b6SDave Chinner 	rrec->rm_owner = cpu_to_be64(XFS_RMAP_OWN_AG);
139b16817b6SDave Chinner 	rrec->rm_offset = 0;
140b16817b6SDave Chinner 
141b16817b6SDave Chinner 	/* account for refc btree root */
142b16817b6SDave Chinner 	if (xfs_sb_version_hasreflink(&mp->m_sb)) {
143b16817b6SDave Chinner 		rrec = XFS_RMAP_REC_ADDR(block, 5);
144b16817b6SDave Chinner 		rrec->rm_startblock = cpu_to_be32(xfs_refc_block(mp));
145b16817b6SDave Chinner 		rrec->rm_blockcount = cpu_to_be32(1);
146b16817b6SDave Chinner 		rrec->rm_owner = cpu_to_be64(XFS_RMAP_OWN_REFC);
147b16817b6SDave Chinner 		rrec->rm_offset = 0;
148b16817b6SDave Chinner 		be16_add_cpu(&block->bb_numrecs, 1);
149b16817b6SDave Chinner 	}
150b16817b6SDave Chinner }
151b16817b6SDave Chinner 
152b16817b6SDave Chinner /*
153b16817b6SDave Chinner  * Initialise new secondary superblocks with the pre-grow geometry, but mark
154b16817b6SDave Chinner  * them as "in progress" so we know they haven't yet been activated. This will
155b16817b6SDave Chinner  * get cleared when the update with the new geometry information is done after
156b16817b6SDave Chinner  * changes to the primary are committed. This isn't strictly necessary, but we
157b16817b6SDave Chinner  * get it for free with the delayed buffer write lists and it means we can tell
158b16817b6SDave Chinner  * if a grow operation didn't complete properly after the fact.
159b16817b6SDave Chinner  */
160b16817b6SDave Chinner static void
161b16817b6SDave Chinner xfs_sbblock_init(
162b16817b6SDave Chinner 	struct xfs_mount	*mp,
163b16817b6SDave Chinner 	struct xfs_buf		*bp,
164b16817b6SDave Chinner 	struct aghdr_init_data	*id)
165b16817b6SDave Chinner {
166b16817b6SDave Chinner 	struct xfs_dsb		*dsb = XFS_BUF_TO_SBP(bp);
167b16817b6SDave Chinner 
168b16817b6SDave Chinner 	xfs_sb_to_disk(dsb, &mp->m_sb);
169b16817b6SDave Chinner 	dsb->sb_inprogress = 1;
170b16817b6SDave Chinner }
171b16817b6SDave Chinner 
172b16817b6SDave Chinner static void
173b16817b6SDave Chinner xfs_agfblock_init(
174b16817b6SDave Chinner 	struct xfs_mount	*mp,
175b16817b6SDave Chinner 	struct xfs_buf		*bp,
176b16817b6SDave Chinner 	struct aghdr_init_data	*id)
177b16817b6SDave Chinner {
178b16817b6SDave Chinner 	struct xfs_agf		*agf = XFS_BUF_TO_AGF(bp);
179b16817b6SDave Chinner 	xfs_extlen_t		tmpsize;
180b16817b6SDave Chinner 
181b16817b6SDave Chinner 	agf->agf_magicnum = cpu_to_be32(XFS_AGF_MAGIC);
182b16817b6SDave Chinner 	agf->agf_versionnum = cpu_to_be32(XFS_AGF_VERSION);
183b16817b6SDave Chinner 	agf->agf_seqno = cpu_to_be32(id->agno);
184b16817b6SDave Chinner 	agf->agf_length = cpu_to_be32(id->agsize);
185b16817b6SDave Chinner 	agf->agf_roots[XFS_BTNUM_BNOi] = cpu_to_be32(XFS_BNO_BLOCK(mp));
186b16817b6SDave Chinner 	agf->agf_roots[XFS_BTNUM_CNTi] = cpu_to_be32(XFS_CNT_BLOCK(mp));
187b16817b6SDave Chinner 	agf->agf_levels[XFS_BTNUM_BNOi] = cpu_to_be32(1);
188b16817b6SDave Chinner 	agf->agf_levels[XFS_BTNUM_CNTi] = cpu_to_be32(1);
189b16817b6SDave Chinner 	if (xfs_sb_version_hasrmapbt(&mp->m_sb)) {
190b16817b6SDave Chinner 		agf->agf_roots[XFS_BTNUM_RMAPi] =
191b16817b6SDave Chinner 					cpu_to_be32(XFS_RMAP_BLOCK(mp));
192b16817b6SDave Chinner 		agf->agf_levels[XFS_BTNUM_RMAPi] = cpu_to_be32(1);
193b16817b6SDave Chinner 		agf->agf_rmap_blocks = cpu_to_be32(1);
194b16817b6SDave Chinner 	}
195b16817b6SDave Chinner 
196b16817b6SDave Chinner 	agf->agf_flfirst = cpu_to_be32(1);
197b16817b6SDave Chinner 	agf->agf_fllast = 0;
198b16817b6SDave Chinner 	agf->agf_flcount = 0;
199b16817b6SDave Chinner 	tmpsize = id->agsize - mp->m_ag_prealloc_blocks;
200b16817b6SDave Chinner 	agf->agf_freeblks = cpu_to_be32(tmpsize);
201b16817b6SDave Chinner 	agf->agf_longest = cpu_to_be32(tmpsize);
202b16817b6SDave Chinner 	if (xfs_sb_version_hascrc(&mp->m_sb))
203b16817b6SDave Chinner 		uuid_copy(&agf->agf_uuid, &mp->m_sb.sb_meta_uuid);
204b16817b6SDave Chinner 	if (xfs_sb_version_hasreflink(&mp->m_sb)) {
205b16817b6SDave Chinner 		agf->agf_refcount_root = cpu_to_be32(
206b16817b6SDave Chinner 				xfs_refc_block(mp));
207b16817b6SDave Chinner 		agf->agf_refcount_level = cpu_to_be32(1);
208b16817b6SDave Chinner 		agf->agf_refcount_blocks = cpu_to_be32(1);
209b16817b6SDave Chinner 	}
210b16817b6SDave Chinner }
211b16817b6SDave Chinner 
212b16817b6SDave Chinner static void
213b16817b6SDave Chinner xfs_agflblock_init(
214b16817b6SDave Chinner 	struct xfs_mount	*mp,
215b16817b6SDave Chinner 	struct xfs_buf		*bp,
216b16817b6SDave Chinner 	struct aghdr_init_data	*id)
217b16817b6SDave Chinner {
218b16817b6SDave Chinner 	struct xfs_agfl		*agfl = XFS_BUF_TO_AGFL(bp);
219b16817b6SDave Chinner 	__be32			*agfl_bno;
220b16817b6SDave Chinner 	int			bucket;
221b16817b6SDave Chinner 
222b16817b6SDave Chinner 	if (xfs_sb_version_hascrc(&mp->m_sb)) {
223b16817b6SDave Chinner 		agfl->agfl_magicnum = cpu_to_be32(XFS_AGFL_MAGIC);
224b16817b6SDave Chinner 		agfl->agfl_seqno = cpu_to_be32(id->agno);
225b16817b6SDave Chinner 		uuid_copy(&agfl->agfl_uuid, &mp->m_sb.sb_meta_uuid);
226b16817b6SDave Chinner 	}
227b16817b6SDave Chinner 
228b16817b6SDave Chinner 	agfl_bno = XFS_BUF_TO_AGFL_BNO(mp, bp);
229b16817b6SDave Chinner 	for (bucket = 0; bucket < xfs_agfl_size(mp); bucket++)
230b16817b6SDave Chinner 		agfl_bno[bucket] = cpu_to_be32(NULLAGBLOCK);
231b16817b6SDave Chinner }
232b16817b6SDave Chinner 
233b16817b6SDave Chinner static void
234b16817b6SDave Chinner xfs_agiblock_init(
235b16817b6SDave Chinner 	struct xfs_mount	*mp,
236b16817b6SDave Chinner 	struct xfs_buf		*bp,
237b16817b6SDave Chinner 	struct aghdr_init_data	*id)
238b16817b6SDave Chinner {
239b16817b6SDave Chinner 	struct xfs_agi		*agi = XFS_BUF_TO_AGI(bp);
240b16817b6SDave Chinner 	int			bucket;
241b16817b6SDave Chinner 
242b16817b6SDave Chinner 	agi->agi_magicnum = cpu_to_be32(XFS_AGI_MAGIC);
243b16817b6SDave Chinner 	agi->agi_versionnum = cpu_to_be32(XFS_AGI_VERSION);
244b16817b6SDave Chinner 	agi->agi_seqno = cpu_to_be32(id->agno);
245b16817b6SDave Chinner 	agi->agi_length = cpu_to_be32(id->agsize);
246b16817b6SDave Chinner 	agi->agi_count = 0;
247b16817b6SDave Chinner 	agi->agi_root = cpu_to_be32(XFS_IBT_BLOCK(mp));
248b16817b6SDave Chinner 	agi->agi_level = cpu_to_be32(1);
249b16817b6SDave Chinner 	agi->agi_freecount = 0;
250b16817b6SDave Chinner 	agi->agi_newino = cpu_to_be32(NULLAGINO);
251b16817b6SDave Chinner 	agi->agi_dirino = cpu_to_be32(NULLAGINO);
252b16817b6SDave Chinner 	if (xfs_sb_version_hascrc(&mp->m_sb))
253b16817b6SDave Chinner 		uuid_copy(&agi->agi_uuid, &mp->m_sb.sb_meta_uuid);
254b16817b6SDave Chinner 	if (xfs_sb_version_hasfinobt(&mp->m_sb)) {
255b16817b6SDave Chinner 		agi->agi_free_root = cpu_to_be32(XFS_FIBT_BLOCK(mp));
256b16817b6SDave Chinner 		agi->agi_free_level = cpu_to_be32(1);
257b16817b6SDave Chinner 	}
258b16817b6SDave Chinner 	for (bucket = 0; bucket < XFS_AGI_UNLINKED_BUCKETS; bucket++)
259b16817b6SDave Chinner 		agi->agi_unlinked[bucket] = cpu_to_be32(NULLAGINO);
260b16817b6SDave Chinner }
261b16817b6SDave Chinner 
262b16817b6SDave Chinner typedef void (*aghdr_init_work_f)(struct xfs_mount *mp, struct xfs_buf *bp,
263b16817b6SDave Chinner 				  struct aghdr_init_data *id);
264b16817b6SDave Chinner static int
265b16817b6SDave Chinner xfs_ag_init_hdr(
266b16817b6SDave Chinner 	struct xfs_mount	*mp,
267b16817b6SDave Chinner 	struct aghdr_init_data	*id,
268b16817b6SDave Chinner 	aghdr_init_work_f	work,
269b16817b6SDave Chinner 	const struct xfs_buf_ops *ops)
270b16817b6SDave Chinner 
271b16817b6SDave Chinner {
272b16817b6SDave Chinner 	struct xfs_buf		*bp;
273b16817b6SDave Chinner 
274b16817b6SDave Chinner 	bp = xfs_get_aghdr_buf(mp, id->daddr, id->numblks, 0, ops);
275b16817b6SDave Chinner 	if (!bp)
276b16817b6SDave Chinner 		return -ENOMEM;
277b16817b6SDave Chinner 
278b16817b6SDave Chinner 	(*work)(mp, bp, id);
279b16817b6SDave Chinner 
280b16817b6SDave Chinner 	xfs_buf_delwri_queue(bp, &id->buffer_list);
281b16817b6SDave Chinner 	xfs_buf_relse(bp);
282b16817b6SDave Chinner 	return 0;
283b16817b6SDave Chinner }
284b16817b6SDave Chinner 
285b16817b6SDave Chinner struct xfs_aghdr_grow_data {
286b16817b6SDave Chinner 	xfs_daddr_t		daddr;
287b16817b6SDave Chinner 	size_t			numblks;
288b16817b6SDave Chinner 	const struct xfs_buf_ops *ops;
289b16817b6SDave Chinner 	aghdr_init_work_f	work;
290b16817b6SDave Chinner 	xfs_btnum_t		type;
291b16817b6SDave Chinner 	bool			need_init;
292b16817b6SDave Chinner };
293b16817b6SDave Chinner 
294b16817b6SDave Chinner /*
295b16817b6SDave Chinner  * Prepare new AG headers to be written to disk. We use uncached buffers here,
296b16817b6SDave Chinner  * as it is assumed these new AG headers are currently beyond the currently
297b16817b6SDave Chinner  * valid filesystem address space. Using cached buffers would trip over EOFS
298b16817b6SDave Chinner  * corruption detection alogrithms in the buffer cache lookup routines.
299b16817b6SDave Chinner  *
300b16817b6SDave Chinner  * This is a non-transactional function, but the prepared buffers are added to a
301b16817b6SDave Chinner  * delayed write buffer list supplied by the caller so they can submit them to
302b16817b6SDave Chinner  * disk and wait on them as required.
303b16817b6SDave Chinner  */
304b16817b6SDave Chinner int
305b16817b6SDave Chinner xfs_ag_init_headers(
306b16817b6SDave Chinner 	struct xfs_mount	*mp,
307b16817b6SDave Chinner 	struct aghdr_init_data	*id)
308b16817b6SDave Chinner 
309b16817b6SDave Chinner {
310b16817b6SDave Chinner 	struct xfs_aghdr_grow_data aghdr_data[] = {
311b16817b6SDave Chinner 	{ /* SB */
312b16817b6SDave Chinner 		.daddr = XFS_AG_DADDR(mp, id->agno, XFS_SB_DADDR),
313b16817b6SDave Chinner 		.numblks = XFS_FSS_TO_BB(mp, 1),
314b16817b6SDave Chinner 		.ops = &xfs_sb_buf_ops,
315b16817b6SDave Chinner 		.work = &xfs_sbblock_init,
316b16817b6SDave Chinner 		.need_init = true
317b16817b6SDave Chinner 	},
318b16817b6SDave Chinner 	{ /* AGF */
319b16817b6SDave Chinner 		.daddr = XFS_AG_DADDR(mp, id->agno, XFS_AGF_DADDR(mp)),
320b16817b6SDave Chinner 		.numblks = XFS_FSS_TO_BB(mp, 1),
321b16817b6SDave Chinner 		.ops = &xfs_agf_buf_ops,
322b16817b6SDave Chinner 		.work = &xfs_agfblock_init,
323b16817b6SDave Chinner 		.need_init = true
324b16817b6SDave Chinner 	},
325b16817b6SDave Chinner 	{ /* AGFL */
326b16817b6SDave Chinner 		.daddr = XFS_AG_DADDR(mp, id->agno, XFS_AGFL_DADDR(mp)),
327b16817b6SDave Chinner 		.numblks = XFS_FSS_TO_BB(mp, 1),
328b16817b6SDave Chinner 		.ops = &xfs_agfl_buf_ops,
329b16817b6SDave Chinner 		.work = &xfs_agflblock_init,
330b16817b6SDave Chinner 		.need_init = true
331b16817b6SDave Chinner 	},
332b16817b6SDave Chinner 	{ /* AGI */
333b16817b6SDave Chinner 		.daddr = XFS_AG_DADDR(mp, id->agno, XFS_AGI_DADDR(mp)),
334b16817b6SDave Chinner 		.numblks = XFS_FSS_TO_BB(mp, 1),
335b16817b6SDave Chinner 		.ops = &xfs_agi_buf_ops,
336b16817b6SDave Chinner 		.work = &xfs_agiblock_init,
337b16817b6SDave Chinner 		.need_init = true
338b16817b6SDave Chinner 	},
339b16817b6SDave Chinner 	{ /* BNO root block */
340b16817b6SDave Chinner 		.daddr = XFS_AGB_TO_DADDR(mp, id->agno, XFS_BNO_BLOCK(mp)),
341b16817b6SDave Chinner 		.numblks = BTOBB(mp->m_sb.sb_blocksize),
342*27df4f50SBrian Foster 		.ops = &xfs_bnobt_buf_ops,
343b16817b6SDave Chinner 		.work = &xfs_bnoroot_init,
344b16817b6SDave Chinner 		.need_init = true
345b16817b6SDave Chinner 	},
346b16817b6SDave Chinner 	{ /* CNT root block */
347b16817b6SDave Chinner 		.daddr = XFS_AGB_TO_DADDR(mp, id->agno, XFS_CNT_BLOCK(mp)),
348b16817b6SDave Chinner 		.numblks = BTOBB(mp->m_sb.sb_blocksize),
349*27df4f50SBrian Foster 		.ops = &xfs_cntbt_buf_ops,
350b16817b6SDave Chinner 		.work = &xfs_cntroot_init,
351b16817b6SDave Chinner 		.need_init = true
352b16817b6SDave Chinner 	},
353b16817b6SDave Chinner 	{ /* INO root block */
354b16817b6SDave Chinner 		.daddr = XFS_AGB_TO_DADDR(mp, id->agno, XFS_IBT_BLOCK(mp)),
355b16817b6SDave Chinner 		.numblks = BTOBB(mp->m_sb.sb_blocksize),
356b16817b6SDave Chinner 		.ops = &xfs_inobt_buf_ops,
357b16817b6SDave Chinner 		.work = &xfs_btroot_init,
358b16817b6SDave Chinner 		.type = XFS_BTNUM_INO,
359b16817b6SDave Chinner 		.need_init = true
360b16817b6SDave Chinner 	},
361b16817b6SDave Chinner 	{ /* FINO root block */
362b16817b6SDave Chinner 		.daddr = XFS_AGB_TO_DADDR(mp, id->agno, XFS_FIBT_BLOCK(mp)),
363b16817b6SDave Chinner 		.numblks = BTOBB(mp->m_sb.sb_blocksize),
36401e68f40SBrian Foster 		.ops = &xfs_finobt_buf_ops,
365b16817b6SDave Chinner 		.work = &xfs_btroot_init,
366b16817b6SDave Chinner 		.type = XFS_BTNUM_FINO,
367b16817b6SDave Chinner 		.need_init =  xfs_sb_version_hasfinobt(&mp->m_sb)
368b16817b6SDave Chinner 	},
369b16817b6SDave Chinner 	{ /* RMAP root block */
370b16817b6SDave Chinner 		.daddr = XFS_AGB_TO_DADDR(mp, id->agno, XFS_RMAP_BLOCK(mp)),
371b16817b6SDave Chinner 		.numblks = BTOBB(mp->m_sb.sb_blocksize),
372b16817b6SDave Chinner 		.ops = &xfs_rmapbt_buf_ops,
373b16817b6SDave Chinner 		.work = &xfs_rmaproot_init,
374b16817b6SDave Chinner 		.need_init = xfs_sb_version_hasrmapbt(&mp->m_sb)
375b16817b6SDave Chinner 	},
376b16817b6SDave Chinner 	{ /* REFC root block */
377b16817b6SDave Chinner 		.daddr = XFS_AGB_TO_DADDR(mp, id->agno, xfs_refc_block(mp)),
378b16817b6SDave Chinner 		.numblks = BTOBB(mp->m_sb.sb_blocksize),
379b16817b6SDave Chinner 		.ops = &xfs_refcountbt_buf_ops,
380b16817b6SDave Chinner 		.work = &xfs_btroot_init,
381b16817b6SDave Chinner 		.type = XFS_BTNUM_REFC,
382b16817b6SDave Chinner 		.need_init = xfs_sb_version_hasreflink(&mp->m_sb)
383b16817b6SDave Chinner 	},
384b16817b6SDave Chinner 	{ /* NULL terminating block */
385b16817b6SDave Chinner 		.daddr = XFS_BUF_DADDR_NULL,
386b16817b6SDave Chinner 	}
387b16817b6SDave Chinner 	};
388b16817b6SDave Chinner 	struct  xfs_aghdr_grow_data *dp;
389b16817b6SDave Chinner 	int			error = 0;
390b16817b6SDave Chinner 
391b16817b6SDave Chinner 	/* Account for AG free space in new AG */
392b16817b6SDave Chinner 	id->nfree += id->agsize - mp->m_ag_prealloc_blocks;
393b16817b6SDave Chinner 	for (dp = &aghdr_data[0]; dp->daddr != XFS_BUF_DADDR_NULL; dp++) {
394b16817b6SDave Chinner 		if (!dp->need_init)
395b16817b6SDave Chinner 			continue;
396b16817b6SDave Chinner 
397b16817b6SDave Chinner 		id->daddr = dp->daddr;
398b16817b6SDave Chinner 		id->numblks = dp->numblks;
399b16817b6SDave Chinner 		id->type = dp->type;
400b16817b6SDave Chinner 		error = xfs_ag_init_hdr(mp, id, dp->work, dp->ops);
401b16817b6SDave Chinner 		if (error)
402b16817b6SDave Chinner 			break;
403b16817b6SDave Chinner 	}
404b16817b6SDave Chinner 	return error;
405b16817b6SDave Chinner }
40649dd56f2SDave Chinner 
40749dd56f2SDave Chinner /*
40849dd56f2SDave Chinner  * Extent the AG indicated by the @id by the length passed in
40949dd56f2SDave Chinner  */
41049dd56f2SDave Chinner int
41149dd56f2SDave Chinner xfs_ag_extend_space(
41249dd56f2SDave Chinner 	struct xfs_mount	*mp,
41349dd56f2SDave Chinner 	struct xfs_trans	*tp,
41449dd56f2SDave Chinner 	struct aghdr_init_data	*id,
41549dd56f2SDave Chinner 	xfs_extlen_t		len)
41649dd56f2SDave Chinner {
41749dd56f2SDave Chinner 	struct xfs_buf		*bp;
41849dd56f2SDave Chinner 	struct xfs_agi		*agi;
41949dd56f2SDave Chinner 	struct xfs_agf		*agf;
42049dd56f2SDave Chinner 	int			error;
42149dd56f2SDave Chinner 
42249dd56f2SDave Chinner 	/*
42349dd56f2SDave Chinner 	 * Change the agi length.
42449dd56f2SDave Chinner 	 */
42549dd56f2SDave Chinner 	error = xfs_ialloc_read_agi(mp, tp, id->agno, &bp);
42649dd56f2SDave Chinner 	if (error)
42749dd56f2SDave Chinner 		return error;
42849dd56f2SDave Chinner 
42949dd56f2SDave Chinner 	agi = XFS_BUF_TO_AGI(bp);
43049dd56f2SDave Chinner 	be32_add_cpu(&agi->agi_length, len);
43149dd56f2SDave Chinner 	ASSERT(id->agno == mp->m_sb.sb_agcount - 1 ||
43249dd56f2SDave Chinner 	       be32_to_cpu(agi->agi_length) == mp->m_sb.sb_agblocks);
43349dd56f2SDave Chinner 	xfs_ialloc_log_agi(tp, bp, XFS_AGI_LENGTH);
43449dd56f2SDave Chinner 
43549dd56f2SDave Chinner 	/*
43649dd56f2SDave Chinner 	 * Change agf length.
43749dd56f2SDave Chinner 	 */
43849dd56f2SDave Chinner 	error = xfs_alloc_read_agf(mp, tp, id->agno, 0, &bp);
43949dd56f2SDave Chinner 	if (error)
44049dd56f2SDave Chinner 		return error;
44149dd56f2SDave Chinner 
44249dd56f2SDave Chinner 	agf = XFS_BUF_TO_AGF(bp);
44349dd56f2SDave Chinner 	be32_add_cpu(&agf->agf_length, len);
44449dd56f2SDave Chinner 	ASSERT(agf->agf_length == agi->agi_length);
44549dd56f2SDave Chinner 	xfs_alloc_log_agf(tp, bp, XFS_AGF_LENGTH);
44649dd56f2SDave Chinner 
44749dd56f2SDave Chinner 	/*
44849dd56f2SDave Chinner 	 * Free the new space.
44949dd56f2SDave Chinner 	 *
4507280fedaSDarrick J. Wong 	 * XFS_RMAP_OINFO_SKIP_UPDATE is used here to tell the rmap btree that
45149dd56f2SDave Chinner 	 * this doesn't actually exist in the rmap btree.
45249dd56f2SDave Chinner 	 */
45349dd56f2SDave Chinner 	error = xfs_rmap_free(tp, bp, id->agno,
45449dd56f2SDave Chinner 				be32_to_cpu(agf->agf_length) - len,
4557280fedaSDarrick J. Wong 				len, &XFS_RMAP_OINFO_SKIP_UPDATE);
45649dd56f2SDave Chinner 	if (error)
45749dd56f2SDave Chinner 		return error;
45849dd56f2SDave Chinner 
45949dd56f2SDave Chinner 	return  xfs_free_extent(tp, XFS_AGB_TO_FSB(mp, id->agno,
46049dd56f2SDave Chinner 					be32_to_cpu(agf->agf_length) - len),
4617280fedaSDarrick J. Wong 				len, &XFS_RMAP_OINFO_SKIP_UPDATE,
4627280fedaSDarrick J. Wong 				XFS_AG_RESV_NONE);
46349dd56f2SDave Chinner }
464