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v3.1
 
   1/*
   2 * Copyright (c) 2000-2005 Silicon Graphics, Inc.
   3 * All Rights Reserved.
   4 *
   5 * This program is free software; you can redistribute it and/or
   6 * modify it under the terms of the GNU General Public License as
   7 * published by the Free Software Foundation.
   8 *
   9 * This program is distributed in the hope that it would be useful,
  10 * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
  12 * GNU General Public License for more details.
  13 *
  14 * You should have received a copy of the GNU General Public License
  15 * along with this program; if not, write the Free Software Foundation,
  16 * Inc.,  51 Franklin St, Fifth Floor, Boston, MA  02110-1301  USA
  17 */
  18#include "xfs.h"
  19#include "xfs_fs.h"
  20#include "xfs_types.h"
 
 
 
  21#include "xfs_bit.h"
  22#include "xfs_log.h"
  23#include "xfs_inum.h"
  24#include "xfs_trans.h"
  25#include "xfs_sb.h"
  26#include "xfs_ag.h"
  27#include "xfs_dir2.h"
  28#include "xfs_mount.h"
  29#include "xfs_bmap_btree.h"
  30#include "xfs_dinode.h"
  31#include "xfs_inode.h"
  32#include "xfs_alloc.h"
  33#include "xfs_bmap.h"
 
 
 
 
 
  34#include "xfs_rtalloc.h"
  35#include "xfs_fsops.h"
 
 
 
 
 
 
 
  36#include "xfs_error.h"
  37#include "xfs_rw.h"
  38#include "xfs_inode_item.h"
  39#include "xfs_trans_space.h"
  40#include "xfs_utils.h"
  41#include "xfs_trace.h"
  42#include "xfs_buf.h"
  43
  44
  45/*
  46 * Prototypes for internal functions.
 
  47 */
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
  48
  49
  50STATIC int xfs_rtallocate_range(xfs_mount_t *, xfs_trans_t *, xfs_rtblock_t,
  51		xfs_extlen_t, xfs_buf_t **, xfs_fsblock_t *);
  52STATIC int xfs_rtany_summary(xfs_mount_t *, xfs_trans_t *, int, int,
  53		xfs_rtblock_t, xfs_buf_t **, xfs_fsblock_t *, int *);
  54STATIC int xfs_rtcheck_range(xfs_mount_t *, xfs_trans_t *, xfs_rtblock_t,
  55		xfs_extlen_t, int, xfs_rtblock_t *, int *);
  56STATIC int xfs_rtfind_back(xfs_mount_t *, xfs_trans_t *, xfs_rtblock_t,
  57		xfs_rtblock_t, xfs_rtblock_t *);
  58STATIC int xfs_rtfind_forw(xfs_mount_t *, xfs_trans_t *, xfs_rtblock_t,
  59		xfs_rtblock_t, xfs_rtblock_t *);
  60STATIC int xfs_rtget_summary( xfs_mount_t *, xfs_trans_t *, int,
  61		xfs_rtblock_t, xfs_buf_t **, xfs_fsblock_t *, xfs_suminfo_t *);
  62STATIC int xfs_rtmodify_range(xfs_mount_t *, xfs_trans_t *, xfs_rtblock_t,
  63		xfs_extlen_t, int);
  64STATIC int xfs_rtmodify_summary(xfs_mount_t *, xfs_trans_t *, int,
  65		xfs_rtblock_t, int, xfs_buf_t **, xfs_fsblock_t *);
 
 
 
 
 
 
 
 
 
 
 
 
  66
  67/*
  68 * Internal functions.
 
  69 */
 
 
 
 
 
 
 
 
 
  70
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
  71/*
  72 * Allocate space to the bitmap or summary file, and zero it, for growfs.
 
  73 */
  74STATIC int				/* error */
  75xfs_growfs_rt_alloc(
  76	xfs_mount_t	*mp,		/* file system mount point */
  77	xfs_extlen_t	oblocks,	/* old count of blocks */
  78	xfs_extlen_t	nblocks,	/* new count of blocks */
  79	xfs_inode_t	*ip)		/* inode (bitmap/summary) */
  80{
  81	xfs_fileoff_t	bno;		/* block number in file */
  82	xfs_buf_t	*bp;		/* temporary buffer for zeroing */
  83	int		committed;	/* transaction committed flag */
  84	xfs_daddr_t	d;		/* disk block address */
  85	int		error;		/* error return value */
  86	xfs_fsblock_t	firstblock;	/* first block allocated in xaction */
  87	xfs_bmap_free_t	flist;		/* list of freed blocks */
  88	xfs_fsblock_t	fsbno;		/* filesystem block for bno */
  89	xfs_bmbt_irec_t	map;		/* block map output */
  90	int		nmap;		/* number of block maps */
  91	int		resblks;	/* space reservation */
 
 
 
  92
  93	/*
  94	 * Allocate space to the file, as necessary.
  95	 */
  96	while (oblocks < nblocks) {
  97		int		cancelflags = 0;
  98		xfs_trans_t	*tp;
 
  99
 100		tp = xfs_trans_alloc(mp, XFS_TRANS_GROWFSRT_ALLOC);
 101		resblks = XFS_GROWFSRT_SPACE_RES(mp, nblocks - oblocks);
 102		/*
 103		 * Reserve space & log for one extent added to the file.
 104		 */
 105		if ((error = xfs_trans_reserve(tp, resblks,
 106				XFS_GROWRTALLOC_LOG_RES(mp), 0,
 107				XFS_TRANS_PERM_LOG_RES,
 108				XFS_DEFAULT_PERM_LOG_COUNT)))
 109			goto error_cancel;
 110		cancelflags = XFS_TRANS_RELEASE_LOG_RES;
 111		/*
 112		 * Lock the inode.
 113		 */
 114		xfs_ilock(ip, XFS_ILOCK_EXCL);
 115		xfs_trans_ijoin_ref(tp, ip, XFS_ILOCK_EXCL);
 116
 117		xfs_bmap_init(&flist, &firstblock);
 118		/*
 119		 * Allocate blocks to the bitmap file.
 120		 */
 121		nmap = 1;
 122		cancelflags |= XFS_TRANS_ABORT;
 123		error = xfs_bmapi(tp, ip, oblocks, nblocks - oblocks,
 124			XFS_BMAPI_WRITE | XFS_BMAPI_METADATA, &firstblock,
 125			resblks, &map, &nmap, &flist);
 126		if (!error && nmap < 1)
 127			error = XFS_ERROR(ENOSPC);
 128		if (error)
 129			goto error_cancel;
 130		/*
 131		 * Free any blocks freed up in the transaction, then commit.
 132		 */
 133		error = xfs_bmap_finish(&tp, &flist, &committed);
 134		if (error)
 135			goto error_cancel;
 136		error = xfs_trans_commit(tp, XFS_TRANS_RELEASE_LOG_RES);
 
 
 
 
 
 
 
 
 
 137		if (error)
 138			goto error;
 139		/*
 140		 * Now we need to clear the allocated blocks.
 141		 * Do this one block per transaction, to keep it simple.
 142		 */
 143		cancelflags = 0;
 144		for (bno = map.br_startoff, fsbno = map.br_startblock;
 145		     bno < map.br_startoff + map.br_blockcount;
 146		     bno++, fsbno++) {
 147			tp = xfs_trans_alloc(mp, XFS_TRANS_GROWFSRT_ZERO);
 148			/*
 149			 * Reserve log for one block zeroing.
 150			 */
 151			if ((error = xfs_trans_reserve(tp, 0,
 152					XFS_GROWRTZERO_LOG_RES(mp), 0, 0, 0)))
 153				goto error_cancel;
 154			/*
 155			 * Lock the bitmap inode.
 156			 */
 157			xfs_ilock(ip, XFS_ILOCK_EXCL);
 158			xfs_trans_ijoin_ref(tp, ip, XFS_ILOCK_EXCL);
 159			/*
 160			 * Get a buffer for the block.
 161			 */
 162			d = XFS_FSB_TO_DADDR(mp, fsbno);
 163			bp = xfs_trans_get_buf(tp, mp->m_ddev_targp, d,
 164				mp->m_bsize, 0);
 165			if (bp == NULL) {
 166				error = XFS_ERROR(EIO);
 167error_cancel:
 168				xfs_trans_cancel(tp, cancelflags);
 169				goto error;
 170			}
 171			memset(bp->b_addr, 0, mp->m_sb.sb_blocksize);
 172			xfs_trans_log_buf(tp, bp, 0, mp->m_sb.sb_blocksize - 1);
 173			/*
 174			 * Commit the transaction.
 175			 */
 176			error = xfs_trans_commit(tp, 0);
 177			if (error)
 178				goto error;
 179		}
 180		/*
 181		 * Go on to the next extent, if any.
 182		 */
 183		oblocks = map.br_startoff + map.br_blockcount;
 184	}
 185	return 0;
 186error:
 187	return error;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 188}
 189
 190/*
 191 * Attempt to allocate an extent minlen<=len<=maxlen starting from
 192 * bitmap block bbno.  If we don't get maxlen then use prod to trim
 193 * the length, if given.  Returns error; returns starting block in *rtblock.
 194 * The lengths are all in rtextents.
 195 */
 196STATIC int				/* error */
 197xfs_rtallocate_extent_block(
 198	xfs_mount_t	*mp,		/* file system mount point */
 199	xfs_trans_t	*tp,		/* transaction pointer */
 200	xfs_rtblock_t	bbno,		/* bitmap block number */
 201	xfs_extlen_t	minlen,		/* minimum length to allocate */
 202	xfs_extlen_t	maxlen,		/* maximum length to allocate */
 203	xfs_extlen_t	*len,		/* out: actual length allocated */
 204	xfs_rtblock_t	*nextp,		/* out: next block to try */
 205	xfs_buf_t	**rbpp,		/* in/out: summary block buffer */
 206	xfs_fsblock_t	*rsb,		/* in/out: summary block number */
 207	xfs_extlen_t	prod,		/* extent product factor */
 208	xfs_rtblock_t	*rtblock)	/* out: start block allocated */
 209{
 210	xfs_rtblock_t	besti;		/* best rtblock found so far */
 211	xfs_rtblock_t	bestlen;	/* best length found so far */
 212	xfs_rtblock_t	end;		/* last rtblock in chunk */
 213	int		error;		/* error value */
 214	xfs_rtblock_t	i;		/* current rtblock trying */
 215	xfs_rtblock_t	next;		/* next rtblock to try */
 216	int		stat;		/* status from internal calls */
 217
 218	/*
 219	 * Loop over all the extents starting in this bitmap block,
 220	 * looking for one that's long enough.
 221	 */
 222	for (i = XFS_BLOCKTOBIT(mp, bbno), besti = -1, bestlen = 0,
 223		end = XFS_BLOCKTOBIT(mp, bbno + 1) - 1;
 224	     i <= end;
 225	     i++) {
 
 
 
 226		/*
 227		 * See if there's a free extent of maxlen starting at i.
 228		 * If it's not so then next will contain the first non-free.
 229		 */
 230		error = xfs_rtcheck_range(mp, tp, i, maxlen, 1, &next, &stat);
 231		if (error) {
 232			return error;
 233		}
 234		if (stat) {
 235			/*
 236			 * i for maxlen is all free, allocate and return that.
 237			 */
 238			error = xfs_rtallocate_range(mp, tp, i, maxlen, rbpp,
 239				rsb);
 240			if (error) {
 241				return error;
 242			}
 243			*len = maxlen;
 244			*rtblock = i;
 245			return 0;
 246		}
 
 247		/*
 248		 * In the case where we have a variable-sized allocation
 249		 * request, figure out how big this free piece is,
 250		 * and if it's big enough for the minimum, and the best
 251		 * so far, remember it.
 252		 */
 253		if (minlen < maxlen) {
 254			xfs_rtblock_t	thislen;	/* this extent size */
 255
 256			thislen = next - i;
 257			if (thislen >= minlen && thislen > bestlen) {
 258				besti = i;
 259				bestlen = thislen;
 260			}
 261		}
 262		/*
 263		 * If not done yet, find the start of the next free space.
 264		 */
 265		if (next < end) {
 266			error = xfs_rtfind_forw(mp, tp, next, end, &i);
 267			if (error) {
 268				return error;
 269			}
 270		} else
 271			break;
 
 
 
 272	}
 
 
 
 
 
 273	/*
 274	 * Searched the whole thing & didn't find a maxlen free extent.
 
 275	 */
 276	if (minlen < maxlen && besti != -1) {
 277		xfs_extlen_t	p;	/* amount to trim length by */
 
 278
 279		/*
 280		 * If size should be a multiple of prod, make that so.
 281		 */
 282		if (prod > 1 && (p = do_mod(bestlen, prod)))
 283			bestlen -= p;
 284		/*
 285		 * Allocate besti for bestlen & return that.
 286		 */
 287		error = xfs_rtallocate_range(mp, tp, besti, bestlen, rbpp, rsb);
 288		if (error) {
 289			return error;
 290		}
 291		*len = bestlen;
 292		*rtblock = besti;
 293		return 0;
 294	}
 295	/*
 296	 * Allocation failed.  Set *nextp to the next block to try.
 297	 */
 298	*nextp = next;
 299	*rtblock = NULLRTBLOCK;
 300	return 0;
 
 
 
 
 301}
 302
 303/*
 304 * Allocate an extent of length minlen<=len<=maxlen, starting at block
 305 * bno.  If we don't get maxlen then use prod to trim the length, if given.
 306 * Returns error; returns starting block in *rtblock.
 307 * The lengths are all in rtextents.
 308 */
 309STATIC int				/* error */
 310xfs_rtallocate_extent_exact(
 311	xfs_mount_t	*mp,		/* file system mount point */
 312	xfs_trans_t	*tp,		/* transaction pointer */
 313	xfs_rtblock_t	bno,		/* starting block number to allocate */
 314	xfs_extlen_t	minlen,		/* minimum length to allocate */
 315	xfs_extlen_t	maxlen,		/* maximum length to allocate */
 316	xfs_extlen_t	*len,		/* out: actual length allocated */
 317	xfs_buf_t	**rbpp,		/* in/out: summary block buffer */
 318	xfs_fsblock_t	*rsb,		/* in/out: summary block number */
 319	xfs_extlen_t	prod,		/* extent product factor */
 320	xfs_rtblock_t	*rtblock)	/* out: start block allocated */
 321{
 322	int		error;		/* error value */
 323	xfs_extlen_t	i;		/* extent length trimmed due to prod */
 324	int		isfree;		/* extent is free */
 325	xfs_rtblock_t	next;		/* next block to try (dummy) */
 
 
 
 
 
 
 326
 327	ASSERT(minlen % prod == 0 && maxlen % prod == 0);
 328	/*
 329	 * Check if the range in question (for maxlen) is free.
 330	 */
 331	error = xfs_rtcheck_range(mp, tp, bno, maxlen, 1, &next, &isfree);
 332	if (error) {
 333		return error;
 334	}
 335	if (isfree) {
 336		/*
 337		 * If it is, allocate it and return success.
 338		 */
 339		error = xfs_rtallocate_range(mp, tp, bno, maxlen, rbpp, rsb);
 340		if (error) {
 341			return error;
 342		}
 343		*len = maxlen;
 344		*rtblock = bno;
 345		return 0;
 346	}
 
 347	/*
 348	 * If not, allocate what there is, if it's at least minlen.
 349	 */
 350	maxlen = next - bno;
 351	if (maxlen < minlen) {
 352		/*
 353		 * Failed, return failure status.
 354		 */
 355		*rtblock = NULLRTBLOCK;
 356		return 0;
 357	}
 358	/*
 359	 * Trim off tail of extent, if prod is specified.
 360	 */
 361	if (prod > 1 && (i = maxlen % prod)) {
 362		maxlen -= i;
 363		if (maxlen < minlen) {
 364			/*
 365			 * Now we can't do it, return failure status.
 366			 */
 367			*rtblock = NULLRTBLOCK;
 368			return 0;
 369		}
 370	}
 371	/*
 372	 * Allocate what we can and return it.
 373	 */
 374	error = xfs_rtallocate_range(mp, tp, bno, maxlen, rbpp, rsb);
 375	if (error) {
 376		return error;
 377	}
 378	*len = maxlen;
 379	*rtblock = bno;
 380	return 0;
 381}
 382
 383/*
 384 * Allocate an extent of length minlen<=len<=maxlen, starting as near
 385 * to bno as possible.  If we don't get maxlen then use prod to trim
 386 * the length, if given.  The lengths are all in rtextents.
 387 */
 388STATIC int				/* error */
 389xfs_rtallocate_extent_near(
 390	xfs_mount_t	*mp,		/* file system mount point */
 391	xfs_trans_t	*tp,		/* transaction pointer */
 392	xfs_rtblock_t	bno,		/* starting block number to allocate */
 393	xfs_extlen_t	minlen,		/* minimum length to allocate */
 394	xfs_extlen_t	maxlen,		/* maximum length to allocate */
 395	xfs_extlen_t	*len,		/* out: actual length allocated */
 396	xfs_buf_t	**rbpp,		/* in/out: summary block buffer */
 397	xfs_fsblock_t	*rsb,		/* in/out: summary block number */
 398	xfs_extlen_t	prod,		/* extent product factor */
 399	xfs_rtblock_t	*rtblock)	/* out: start block allocated */
 400{
 401	int		any;		/* any useful extents from summary */
 402	xfs_rtblock_t	bbno;		/* bitmap block number */
 403	int		error;		/* error value */
 404	int		i;		/* bitmap block offset (loop control) */
 405	int		j;		/* secondary loop control */
 406	int		log2len;	/* log2 of minlen */
 407	xfs_rtblock_t	n;		/* next block to try */
 408	xfs_rtblock_t	r;		/* result block */
 409
 410	ASSERT(minlen % prod == 0 && maxlen % prod == 0);
 411	/*
 412	 * If the block number given is off the end, silently set it to
 413	 * the last block.
 414	 */
 415	if (bno >= mp->m_sb.sb_rextents)
 416		bno = mp->m_sb.sb_rextents - 1;
 417	/*
 418	 * Try the exact allocation first.
 419	 */
 420	error = xfs_rtallocate_extent_exact(mp, tp, bno, minlen, maxlen, len,
 421		rbpp, rsb, prod, &r);
 422	if (error) {
 423		return error;
 424	}
 425	/*
 426	 * If the exact allocation worked, return that.
 427	 */
 428	if (r != NULLRTBLOCK) {
 429		*rtblock = r;
 430		return 0;
 431	}
 432	bbno = XFS_BITTOBLOCK(mp, bno);
 433	i = 0;
 
 434	ASSERT(minlen != 0);
 435	log2len = xfs_highbit32(minlen);
 436	/*
 437	 * Loop over all bitmap blocks (bbno + i is current block).
 438	 */
 439	for (;;) {
 440		/*
 441		 * Get summary information of extents of all useful levels
 442		 * starting in this bitmap block.
 443		 */
 444		error = xfs_rtany_summary(mp, tp, log2len, mp->m_rsumlevels - 1,
 445			bbno + i, rbpp, rsb, &any);
 446		if (error) {
 447			return error;
 448		}
 449		/*
 450		 * If there are any useful extents starting here, try
 451		 * allocating one.
 452		 */
 453		if (any) {
 
 
 
 454			/*
 455			 * On the positive side of the starting location.
 456			 */
 457			if (i >= 0) {
 458				/*
 459				 * Try to allocate an extent starting in
 460				 * this block.
 461				 */
 462				error = xfs_rtallocate_extent_block(mp, tp,
 463					bbno + i, minlen, maxlen, len, &n, rbpp,
 464					rsb, prod, &r);
 465				if (error) {
 466					return error;
 467				}
 468				/*
 469				 * If it worked, return it.
 470				 */
 471				if (r != NULLRTBLOCK) {
 472					*rtblock = r;
 473					return 0;
 474				}
 475			}
 476			/*
 477			 * On the negative side of the starting location.
 478			 */
 479			else {		/* i < 0 */
 
 
 480				/*
 481				 * Loop backwards through the bitmap blocks from
 482				 * the starting point-1 up to where we are now.
 483				 * There should be an extent which ends in this
 484				 * bitmap block and is long enough.
 485				 */
 486				for (j = -1; j > i; j--) {
 487					/*
 488					 * Grab the summary information for
 489					 * this bitmap block.
 490					 */
 491					error = xfs_rtany_summary(mp, tp,
 492						log2len, mp->m_rsumlevels - 1,
 493						bbno + j, rbpp, rsb, &any);
 494					if (error) {
 495						return error;
 496					}
 497					/*
 498					 * If there's no extent given in the
 499					 * summary that means the extent we
 500					 * found must carry over from an
 501					 * earlier block.  If there is an
 502					 * extent given, we've already tried
 503					 * that allocation, don't do it again.
 504					 */
 505					if (any)
 506						continue;
 507					error = xfs_rtallocate_extent_block(mp,
 508						tp, bbno + j, minlen, maxlen,
 509						len, &n, rbpp, rsb, prod, &r);
 510					if (error) {
 511						return error;
 512					}
 513					/*
 514					 * If it works, return the extent.
 515					 */
 516					if (r != NULLRTBLOCK) {
 517						*rtblock = r;
 518						return 0;
 519					}
 520				}
 521				/*
 522				 * There weren't intervening bitmap blocks
 523				 * with a long enough extent, or the
 524				 * allocation didn't work for some reason
 525				 * (i.e. it's a little * too short).
 526				 * Try to allocate from the summary block
 527				 * that we found.
 528				 */
 529				error = xfs_rtallocate_extent_block(mp, tp,
 530					bbno + i, minlen, maxlen, len, &n, rbpp,
 531					rsb, prod, &r);
 532				if (error) {
 533					return error;
 534				}
 
 535				/*
 536				 * If it works, return the extent.
 
 
 
 537				 */
 538				if (r != NULLRTBLOCK) {
 539					*rtblock = r;
 540					return 0;
 
 
 
 
 
 541				}
 542			}
 543		}
 544		/*
 545		 * Loop control.  If we were on the positive side, and there's
 546		 * still more blocks on the negative side, go there.
 547		 */
 548		if (i > 0 && (int)bbno - i >= 0)
 549			i = -i;
 550		/*
 551		 * If positive, and no more negative, but there are more
 552		 * positive, go there.
 553		 */
 554		else if (i > 0 && (int)bbno + i < mp->m_sb.sb_rbmblocks - 1)
 555			i++;
 556		/*
 557		 * If negative or 0 (just started), and there are positive
 558		 * blocks to go, go there.  The 0 case moves to block 1.
 559		 */
 560		else if (i <= 0 && (int)bbno - i < mp->m_sb.sb_rbmblocks - 1)
 561			i = 1 - i;
 562		/*
 563		 * If negative or 0 and there are more negative blocks,
 564		 * go there.
 565		 */
 566		else if (i <= 0 && (int)bbno + i > 0)
 567			i--;
 568		/*
 569		 * Must be done.  Return failure.
 570		 */
 571		else
 572			break;
 573	}
 574	*rtblock = NULLRTBLOCK;
 575	return 0;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 576}
 577
 578/*
 579 * Allocate an extent of length minlen<=len<=maxlen, with no position
 580 * specified.  If we don't get maxlen then use prod to trim
 581 * the length, if given.  The lengths are all in rtextents.
 582 */
 583STATIC int				/* error */
 584xfs_rtallocate_extent_size(
 585	xfs_mount_t	*mp,		/* file system mount point */
 586	xfs_trans_t	*tp,		/* transaction pointer */
 587	xfs_extlen_t	minlen,		/* minimum length to allocate */
 588	xfs_extlen_t	maxlen,		/* maximum length to allocate */
 589	xfs_extlen_t	*len,		/* out: actual length allocated */
 590	xfs_buf_t	**rbpp,		/* in/out: summary block buffer */
 591	xfs_fsblock_t	*rsb,		/* in/out: summary block number */
 592	xfs_extlen_t	prod,		/* extent product factor */
 593	xfs_rtblock_t	*rtblock)	/* out: start block allocated */
 594{
 595	int		error;		/* error value */
 596	int		i;		/* bitmap block number */
 597	int		l;		/* level number (loop control) */
 598	xfs_rtblock_t	n;		/* next block to be tried */
 599	xfs_rtblock_t	r;		/* result block number */
 600	xfs_suminfo_t	sum;		/* summary information for extents */
 601
 602	ASSERT(minlen % prod == 0 && maxlen % prod == 0);
 
 603	ASSERT(maxlen != 0);
 604
 605	/*
 606	 * Loop over all the levels starting with maxlen.
 607	 * At each level, look at all the bitmap blocks, to see if there
 608	 * are extents starting there that are long enough (>= maxlen).
 609	 * Note, only on the initial level can the allocation fail if
 610	 * the summary says there's an extent.
 611	 */
 612	for (l = xfs_highbit32(maxlen); l < mp->m_rsumlevels; l++) {
 613		/*
 614		 * Loop over all the bitmap blocks.
 615		 */
 616		for (i = 0; i < mp->m_sb.sb_rbmblocks; i++) {
 617			/*
 618			 * Get the summary for this level/block.
 619			 */
 620			error = xfs_rtget_summary(mp, tp, l, i, rbpp, rsb,
 621				&sum);
 622			if (error) {
 623				return error;
 624			}
 625			/*
 626			 * Nothing there, on to the next block.
 627			 */
 628			if (!sum)
 629				continue;
 630			/*
 631			 * Try allocating the extent.
 632			 */
 633			error = xfs_rtallocate_extent_block(mp, tp, i, maxlen,
 634				maxlen, len, &n, rbpp, rsb, prod, &r);
 635			if (error) {
 636				return error;
 637			}
 638			/*
 639			 * If it worked, return that.
 640			 */
 641			if (r != NULLRTBLOCK) {
 642				*rtblock = r;
 643				return 0;
 644			}
 645			/*
 646			 * If the "next block to try" returned from the
 647			 * allocator is beyond the next bitmap block,
 648			 * skip to that bitmap block.
 649			 */
 650			if (XFS_BITTOBLOCK(mp, n) > i + 1)
 651				i = XFS_BITTOBLOCK(mp, n) - 1;
 652		}
 653	}
 
 654	/*
 655	 * Didn't find any maxlen blocks.  Try smaller ones, unless
 656	 * we're asking for a fixed size extent.
 657	 */
 658	if (minlen > --maxlen) {
 659		*rtblock = NULLRTBLOCK;
 660		return 0;
 661	}
 662	ASSERT(minlen != 0);
 663	ASSERT(maxlen != 0);
 664
 665	/*
 666	 * Loop over sizes, from maxlen down to minlen.
 667	 * This time, when we do the allocations, allow smaller ones
 668	 * to succeed.
 
 
 669	 */
 670	for (l = xfs_highbit32(maxlen); l >= xfs_highbit32(minlen); l--) {
 671		/*
 672		 * Loop over all the bitmap blocks, try an allocation
 673		 * starting in that block.
 674		 */
 675		for (i = 0; i < mp->m_sb.sb_rbmblocks; i++) {
 676			/*
 677			 * Get the summary information for this level/block.
 678			 */
 679			error =	xfs_rtget_summary(mp, tp, l, i, rbpp, rsb,
 680						  &sum);
 681			if (error) {
 682				return error;
 683			}
 684			/*
 685			 * If nothing there, go on to next.
 686			 */
 687			if (!sum)
 688				continue;
 689			/*
 690			 * Try the allocation.  Make sure the specified
 691			 * minlen/maxlen are in the possible range for
 692			 * this summary level.
 693			 */
 694			error = xfs_rtallocate_extent_block(mp, tp, i,
 695					XFS_RTMAX(minlen, 1 << l),
 696					XFS_RTMIN(maxlen, (1 << (l + 1)) - 1),
 697					len, &n, rbpp, rsb, prod, &r);
 698			if (error) {
 699				return error;
 700			}
 701			/*
 702			 * If it worked, return that extent.
 703			 */
 704			if (r != NULLRTBLOCK) {
 705				*rtblock = r;
 706				return 0;
 707			}
 708			/*
 709			 * If the "next block to try" returned from the
 710			 * allocator is beyond the next bitmap block,
 711			 * skip to that bitmap block.
 712			 */
 713			if (XFS_BITTOBLOCK(mp, n) > i + 1)
 714				i = XFS_BITTOBLOCK(mp, n) - 1;
 715		}
 716	}
 717	/*
 718	 * Got nothing, return failure.
 719	 */
 720	*rtblock = NULLRTBLOCK;
 721	return 0;
 722}
 723
 724/*
 725 * Mark an extent specified by start and len allocated.
 726 * Updates all the summary information as well as the bitmap.
 727 */
 728STATIC int				/* error */
 729xfs_rtallocate_range(
 730	xfs_mount_t	*mp,		/* file system mount point */
 731	xfs_trans_t	*tp,		/* transaction pointer */
 732	xfs_rtblock_t	start,		/* start block to allocate */
 733	xfs_extlen_t	len,		/* length to allocate */
 734	xfs_buf_t	**rbpp,		/* in/out: summary block buffer */
 735	xfs_fsblock_t	*rsb)		/* in/out: summary block number */
 736{
 737	xfs_rtblock_t	end;		/* end of the allocated extent */
 738	int		error;		/* error value */
 739	xfs_rtblock_t	postblock;	/* first block allocated > end */
 740	xfs_rtblock_t	preblock;	/* first block allocated < start */
 741
 742	end = start + len - 1;
 743	/*
 744	 * Assume we're allocating out of the middle of a free extent.
 745	 * We need to find the beginning and end of the extent so we can
 746	 * properly update the summary.
 747	 */
 748	error = xfs_rtfind_back(mp, tp, start, 0, &preblock);
 749	if (error) {
 750		return error;
 751	}
 752	/*
 753	 * Find the next allocated block (end of free extent).
 754	 */
 755	error = xfs_rtfind_forw(mp, tp, end, mp->m_sb.sb_rextents - 1,
 756		&postblock);
 757	if (error) {
 758		return error;
 759	}
 760	/*
 761	 * Decrement the summary information corresponding to the entire
 762	 * (old) free extent.
 763	 */
 764	error = xfs_rtmodify_summary(mp, tp,
 765		XFS_RTBLOCKLOG(postblock + 1 - preblock),
 766		XFS_BITTOBLOCK(mp, preblock), -1, rbpp, rsb);
 767	if (error) {
 768		return error;
 769	}
 770	/*
 771	 * If there are blocks not being allocated at the front of the
 772	 * old extent, add summary data for them to be free.
 773	 */
 774	if (preblock < start) {
 775		error = xfs_rtmodify_summary(mp, tp,
 776			XFS_RTBLOCKLOG(start - preblock),
 777			XFS_BITTOBLOCK(mp, preblock), 1, rbpp, rsb);
 778		if (error) {
 779			return error;
 780		}
 781	}
 782	/*
 783	 * If there are blocks not being allocated at the end of the
 784	 * old extent, add summary data for them to be free.
 785	 */
 786	if (postblock > end) {
 787		error = xfs_rtmodify_summary(mp, tp,
 788			XFS_RTBLOCKLOG(postblock - end),
 789			XFS_BITTOBLOCK(mp, end + 1), 1, rbpp, rsb);
 790		if (error) {
 791			return error;
 792		}
 793	}
 794	/*
 795	 * Modify the bitmap to mark this extent allocated.
 796	 */
 797	error = xfs_rtmodify_range(mp, tp, start, len, 0);
 798	return error;
 799}
 800
 801/*
 802 * Return whether there are any free extents in the size range given
 803 * by low and high, for the bitmap block bbno.
 804 */
 805STATIC int				/* error */
 806xfs_rtany_summary(
 807	xfs_mount_t	*mp,		/* file system mount structure */
 808	xfs_trans_t	*tp,		/* transaction pointer */
 809	int		low,		/* low log2 extent size */
 810	int		high,		/* high log2 extent size */
 811	xfs_rtblock_t	bbno,		/* bitmap block number */
 812	xfs_buf_t	**rbpp,		/* in/out: summary block buffer */
 813	xfs_fsblock_t	*rsb,		/* in/out: summary block number */
 814	int		*stat)		/* out: any good extents here? */
 815{
 816	int		error;		/* error value */
 817	int		log;		/* loop counter, log2 of ext. size */
 818	xfs_suminfo_t	sum;		/* summary data */
 819
 820	/*
 821	 * Loop over logs of extent sizes.  Order is irrelevant.
 822	 */
 823	for (log = low; log <= high; log++) {
 824		/*
 825		 * Get one summary datum.
 826		 */
 827		error = xfs_rtget_summary(mp, tp, log, bbno, rbpp, rsb, &sum);
 828		if (error) {
 829			return error;
 830		}
 831		/*
 832		 * If there are any, return success.
 833		 */
 834		if (sum) {
 835			*stat = 1;
 836			return 0;
 837		}
 838	}
 839	/*
 840	 * Found nothing, return failure.
 
 841	 */
 842	*stat = 0;
 
 
 
 843	return 0;
 844}
 845
 846/*
 847 * Get a buffer for the bitmap or summary file block specified.
 848 * The buffer is returned read and locked.
 
 
 849 */
 850STATIC int				/* error */
 851xfs_rtbuf_get(
 852	xfs_mount_t	*mp,		/* file system mount structure */
 853	xfs_trans_t	*tp,		/* transaction pointer */
 854	xfs_rtblock_t	block,		/* block number in bitmap or summary */
 855	int		issum,		/* is summary not bitmap */
 856	xfs_buf_t	**bpp)		/* output: buffer for the block */
 857{
 858	xfs_buf_t	*bp;		/* block buffer, result */
 859	xfs_daddr_t	d;		/* disk addr of block */
 860	int		error;		/* error value */
 861	xfs_fsblock_t	fsb;		/* fs block number for block */
 862	xfs_inode_t	*ip;		/* bitmap or summary inode */
 863
 864	ip = issum ? mp->m_rsumip : mp->m_rbmip;
 865	/*
 866	 * Map from the file offset (block) and inode number to the
 867	 * file system block.
 868	 */
 869	error = xfs_bmapi_single(tp, ip, XFS_DATA_FORK, &fsb, block);
 870	if (error) {
 871		return error;
 872	}
 873	ASSERT(fsb != NULLFSBLOCK);
 874	/*
 875	 * Convert to disk address for buffer cache.
 876	 */
 877	d = XFS_FSB_TO_DADDR(mp, fsb);
 878	/*
 879	 * Read the buffer.
 880	 */
 881	error = xfs_trans_read_buf(mp, tp, mp->m_ddev_targp, d,
 882				   mp->m_bsize, 0, &bp);
 883	if (error) {
 
 
 
 
 
 
 
 
 884		return error;
 885	}
 886	ASSERT(!xfs_buf_geterror(bp));
 887	*bpp = bp;
 888	return 0;
 
 
 889}
 890
 891#ifdef DEBUG
 892/*
 893 * Check that the given extent (block range) is allocated already.
 894 */
 895STATIC int				/* error */
 896xfs_rtcheck_alloc_range(
 897	xfs_mount_t	*mp,		/* file system mount point */
 898	xfs_trans_t	*tp,		/* transaction pointer */
 899	xfs_rtblock_t	bno,		/* starting block number of extent */
 900	xfs_extlen_t	len,		/* length of extent */
 901	int		*stat)		/* out: 1 for allocated, 0 for not */
 902{
 903	xfs_rtblock_t	new;		/* dummy for xfs_rtcheck_range */
 904
 905	return xfs_rtcheck_range(mp, tp, bno, len, 0, &new, stat);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 906}
 907#endif
 908
 909/*
 910 * Check that the given range is either all allocated (val = 0) or
 911 * all free (val = 1).
 912 */
 913STATIC int				/* error */
 914xfs_rtcheck_range(
 915	xfs_mount_t	*mp,		/* file system mount point */
 916	xfs_trans_t	*tp,		/* transaction pointer */
 917	xfs_rtblock_t	start,		/* starting block number of extent */
 918	xfs_extlen_t	len,		/* length of extent */
 919	int		val,		/* 1 for free, 0 for allocated */
 920	xfs_rtblock_t	*new,		/* out: first block not matching */
 921	int		*stat)		/* out: 1 for matches, 0 for not */
 922{
 923	xfs_rtword_t	*b;		/* current word in buffer */
 924	int		bit;		/* bit number in the word */
 925	xfs_rtblock_t	block;		/* bitmap block number */
 926	xfs_buf_t	*bp;		/* buf for the block */
 927	xfs_rtword_t	*bufp;		/* starting word in buffer */
 928	int		error;		/* error value */
 929	xfs_rtblock_t	i;		/* current bit number rel. to start */
 930	xfs_rtblock_t	lastbit;	/* last useful bit in word */
 931	xfs_rtword_t	mask;		/* mask of relevant bits for value */
 932	xfs_rtword_t	wdiff;		/* difference from wanted value */
 933	int		word;		/* word number in the buffer */
 934
 935	/*
 936	 * Compute starting bitmap block number
 937	 */
 938	block = XFS_BITTOBLOCK(mp, start);
 939	/*
 940	 * Read the bitmap block.
 941	 */
 942	error = xfs_rtbuf_get(mp, tp, block, 0, &bp);
 943	if (error) {
 944		return error;
 945	}
 946	bufp = bp->b_addr;
 947	/*
 948	 * Compute the starting word's address, and starting bit.
 949	 */
 950	word = XFS_BITTOWORD(mp, start);
 951	b = &bufp[word];
 952	bit = (int)(start & (XFS_NBWORD - 1));
 953	/*
 954	 * 0 (allocated) => all zero's; 1 (free) => all one's.
 955	 */
 956	val = -val;
 957	/*
 958	 * If not starting on a word boundary, deal with the first
 959	 * (partial) word.
 960	 */
 961	if (bit) {
 962		/*
 963		 * Compute first bit not examined.
 964		 */
 965		lastbit = XFS_RTMIN(bit + len, XFS_NBWORD);
 966		/*
 967		 * Mask of relevant bits.
 968		 */
 969		mask = (((xfs_rtword_t)1 << (lastbit - bit)) - 1) << bit;
 970		/*
 971		 * Compute difference between actual and desired value.
 972		 */
 973		if ((wdiff = (*b ^ val) & mask)) {
 974			/*
 975			 * Different, compute first wrong bit and return.
 976			 */
 977			xfs_trans_brelse(tp, bp);
 978			i = XFS_RTLOBIT(wdiff) - bit;
 979			*new = start + i;
 980			*stat = 0;
 981			return 0;
 982		}
 983		i = lastbit - bit;
 984		/*
 985		 * Go on to next block if that's where the next word is
 986		 * and we need the next word.
 987		 */
 988		if (++word == XFS_BLOCKWSIZE(mp) && i < len) {
 989			/*
 990			 * If done with this block, get the next one.
 991			 */
 992			xfs_trans_brelse(tp, bp);
 993			error = xfs_rtbuf_get(mp, tp, ++block, 0, &bp);
 994			if (error) {
 995				return error;
 996			}
 997			b = bufp = bp->b_addr;
 998			word = 0;
 999		} else {
1000			/*
1001			 * Go on to the next word in the buffer.
1002			 */
1003			b++;
1004		}
1005	} else {
1006		/*
1007		 * Starting on a word boundary, no partial word.
1008		 */
1009		i = 0;
1010	}
1011	/*
1012	 * Loop over whole words in buffers.  When we use up one buffer
1013	 * we move on to the next one.
1014	 */
1015	while (len - i >= XFS_NBWORD) {
1016		/*
1017		 * Compute difference between actual and desired value.
1018		 */
1019		if ((wdiff = *b ^ val)) {
1020			/*
1021			 * Different, compute first wrong bit and return.
1022			 */
1023			xfs_trans_brelse(tp, bp);
1024			i += XFS_RTLOBIT(wdiff);
1025			*new = start + i;
1026			*stat = 0;
1027			return 0;
1028		}
1029		i += XFS_NBWORD;
1030		/*
1031		 * Go on to next block if that's where the next word is
1032		 * and we need the next word.
1033		 */
1034		if (++word == XFS_BLOCKWSIZE(mp) && i < len) {
1035			/*
1036			 * If done with this block, get the next one.
1037			 */
1038			xfs_trans_brelse(tp, bp);
1039			error = xfs_rtbuf_get(mp, tp, ++block, 0, &bp);
1040			if (error) {
1041				return error;
1042			}
1043			b = bufp = bp->b_addr;
1044			word = 0;
1045		} else {
1046			/*
1047			 * Go on to the next word in the buffer.
1048			 */
1049			b++;
1050		}
1051	}
1052	/*
1053	 * If not ending on a word boundary, deal with the last
1054	 * (partial) word.
1055	 */
1056	if ((lastbit = len - i)) {
1057		/*
1058		 * Mask of relevant bits.
1059		 */
1060		mask = ((xfs_rtword_t)1 << lastbit) - 1;
1061		/*
1062		 * Compute difference between actual and desired value.
1063		 */
1064		if ((wdiff = (*b ^ val) & mask)) {
1065			/*
1066			 * Different, compute first wrong bit and return.
1067			 */
1068			xfs_trans_brelse(tp, bp);
1069			i += XFS_RTLOBIT(wdiff);
1070			*new = start + i;
1071			*stat = 0;
1072			return 0;
1073		} else
1074			i = len;
1075	}
1076	/*
1077	 * Successful, return.
1078	 */
1079	xfs_trans_brelse(tp, bp);
1080	*new = start + i;
1081	*stat = 1;
1082	return 0;
1083}
1084
1085/*
1086 * Copy and transform the summary file, given the old and new
1087 * parameters in the mount structures.
1088 */
1089STATIC int				/* error */
1090xfs_rtcopy_summary(
1091	xfs_mount_t	*omp,		/* old file system mount point */
1092	xfs_mount_t	*nmp,		/* new file system mount point */
1093	xfs_trans_t	*tp)		/* transaction pointer */
1094{
1095	xfs_rtblock_t	bbno;		/* bitmap block number */
1096	xfs_buf_t	*bp;		/* summary buffer */
1097	int		error;		/* error return value */
1098	int		log;		/* summary level number (log length) */
1099	xfs_suminfo_t	sum;		/* summary data */
1100	xfs_fsblock_t	sumbno;		/* summary block number */
1101
1102	bp = NULL;
1103	for (log = omp->m_rsumlevels - 1; log >= 0; log--) {
1104		for (bbno = omp->m_sb.sb_rbmblocks - 1;
1105		     (xfs_srtblock_t)bbno >= 0;
1106		     bbno--) {
1107			error = xfs_rtget_summary(omp, tp, log, bbno, &bp,
1108				&sumbno, &sum);
1109			if (error)
1110				return error;
1111			if (sum == 0)
1112				continue;
1113			error = xfs_rtmodify_summary(omp, tp, log, bbno, -sum,
1114				&bp, &sumbno);
1115			if (error)
1116				return error;
1117			error = xfs_rtmodify_summary(nmp, tp, log, bbno, sum,
1118				&bp, &sumbno);
1119			if (error)
1120				return error;
1121			ASSERT(sum > 0);
1122		}
1123	}
1124	return 0;
 
1125}
1126
1127/*
1128 * Searching backward from start to limit, find the first block whose
1129 * allocated/free state is different from start's.
 
1130 */
1131STATIC int				/* error */
1132xfs_rtfind_back(
1133	xfs_mount_t	*mp,		/* file system mount point */
1134	xfs_trans_t	*tp,		/* transaction pointer */
1135	xfs_rtblock_t	start,		/* starting block to look at */
1136	xfs_rtblock_t	limit,		/* last block to look at */
1137	xfs_rtblock_t	*rtblock)	/* out: start block found */
1138{
1139	xfs_rtword_t	*b;		/* current word in buffer */
1140	int		bit;		/* bit number in the word */
1141	xfs_rtblock_t	block;		/* bitmap block number */
1142	xfs_buf_t	*bp;		/* buf for the block */
1143	xfs_rtword_t	*bufp;		/* starting word in buffer */
1144	int		error;		/* error value */
1145	xfs_rtblock_t	firstbit;	/* first useful bit in the word */
1146	xfs_rtblock_t	i;		/* current bit number rel. to start */
1147	xfs_rtblock_t	len;		/* length of inspected area */
1148	xfs_rtword_t	mask;		/* mask of relevant bits for value */
1149	xfs_rtword_t	want;		/* mask for "good" values */
1150	xfs_rtword_t	wdiff;		/* difference from wanted value */
1151	int		word;		/* word number in the buffer */
1152
1153	/*
1154	 * Compute and read in starting bitmap block for starting block.
1155	 */
1156	block = XFS_BITTOBLOCK(mp, start);
1157	error = xfs_rtbuf_get(mp, tp, block, 0, &bp);
1158	if (error) {
 
 
 
 
1159		return error;
1160	}
1161	bufp = bp->b_addr;
1162	/*
1163	 * Get the first word's index & point to it.
1164	 */
1165	word = XFS_BITTOWORD(mp, start);
1166	b = &bufp[word];
1167	bit = (int)(start & (XFS_NBWORD - 1));
1168	len = start - limit + 1;
1169	/*
1170	 * Compute match value, based on the bit at start: if 1 (free)
1171	 * then all-ones, else all-zeroes.
1172	 */
1173	want = (*b & ((xfs_rtword_t)1 << bit)) ? -1 : 0;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1174	/*
1175	 * If the starting position is not word-aligned, deal with the
1176	 * partial word.
 
1177	 */
1178	if (bit < XFS_NBWORD - 1) {
1179		/*
1180		 * Calculate first (leftmost) bit number to look at,
1181		 * and mask for all the relevant bits in this word.
1182		 */
1183		firstbit = XFS_RTMAX((xfs_srtblock_t)(bit - len + 1), 0);
1184		mask = (((xfs_rtword_t)1 << (bit - firstbit + 1)) - 1) <<
1185			firstbit;
1186		/*
1187		 * Calculate the difference between the value there
1188		 * and what we're looking for.
1189		 */
1190		if ((wdiff = (*b ^ want) & mask)) {
1191			/*
1192			 * Different.  Mark where we are and return.
1193			 */
1194			xfs_trans_brelse(tp, bp);
1195			i = bit - XFS_RTHIBIT(wdiff);
1196			*rtblock = start - i + 1;
1197			return 0;
1198		}
1199		i = bit - firstbit + 1;
1200		/*
1201		 * Go on to previous block if that's where the previous word is
1202		 * and we need the previous word.
1203		 */
1204		if (--word == -1 && i < len) {
1205			/*
1206			 * If done with this block, get the previous one.
1207			 */
1208			xfs_trans_brelse(tp, bp);
1209			error = xfs_rtbuf_get(mp, tp, --block, 0, &bp);
1210			if (error) {
1211				return error;
1212			}
1213			bufp = bp->b_addr;
1214			word = XFS_BLOCKWMASK(mp);
1215			b = &bufp[word];
1216		} else {
1217			/*
1218			 * Go on to the previous word in the buffer.
1219			 */
1220			b--;
1221		}
1222	} else {
1223		/*
1224		 * Starting on a word boundary, no partial word.
1225		 */
1226		i = 0;
1227	}
1228	/*
1229	 * Loop over whole words in buffers.  When we use up one buffer
1230	 * we move on to the previous one.
 
1231	 */
1232	while (len - i >= XFS_NBWORD) {
1233		/*
1234		 * Compute difference between actual and desired value.
1235		 */
1236		if ((wdiff = *b ^ want)) {
1237			/*
1238			 * Different, mark where we are and return.
1239			 */
1240			xfs_trans_brelse(tp, bp);
1241			i += XFS_NBWORD - 1 - XFS_RTHIBIT(wdiff);
1242			*rtblock = start - i + 1;
1243			return 0;
1244		}
1245		i += XFS_NBWORD;
1246		/*
1247		 * Go on to previous block if that's where the previous word is
1248		 * and we need the previous word.
1249		 */
1250		if (--word == -1 && i < len) {
1251			/*
1252			 * If done with this block, get the previous one.
1253			 */
1254			xfs_trans_brelse(tp, bp);
1255			error = xfs_rtbuf_get(mp, tp, --block, 0, &bp);
1256			if (error) {
1257				return error;
1258			}
1259			bufp = bp->b_addr;
1260			word = XFS_BLOCKWMASK(mp);
1261			b = &bufp[word];
1262		} else {
1263			/*
1264			 * Go on to the previous word in the buffer.
1265			 */
1266			b--;
1267		}
1268	}
1269	/*
1270	 * If not ending on a word boundary, deal with the last
1271	 * (partial) word.
1272	 */
1273	if (len - i) {
1274		/*
1275		 * Calculate first (leftmost) bit number to look at,
1276		 * and mask for all the relevant bits in this word.
1277		 */
1278		firstbit = XFS_NBWORD - (len - i);
1279		mask = (((xfs_rtword_t)1 << (len - i)) - 1) << firstbit;
1280		/*
1281		 * Compute difference between actual and desired value.
1282		 */
1283		if ((wdiff = (*b ^ want) & mask)) {
1284			/*
1285			 * Different, mark where we are and return.
1286			 */
1287			xfs_trans_brelse(tp, bp);
1288			i += XFS_NBWORD - 1 - XFS_RTHIBIT(wdiff);
1289			*rtblock = start - i + 1;
1290			return 0;
1291		} else
1292			i = len;
1293	}
1294	/*
1295	 * No match, return that we scanned the whole area.
1296	 */
1297	xfs_trans_brelse(tp, bp);
1298	*rtblock = start - i + 1;
1299	return 0;
1300}
1301
1302/*
1303 * Searching forward from start to limit, find the first block whose
1304 * allocated/free state is different from start's.
1305 */
1306STATIC int				/* error */
1307xfs_rtfind_forw(
1308	xfs_mount_t	*mp,		/* file system mount point */
1309	xfs_trans_t	*tp,		/* transaction pointer */
1310	xfs_rtblock_t	start,		/* starting block to look at */
1311	xfs_rtblock_t	limit,		/* last block to look at */
1312	xfs_rtblock_t	*rtblock)	/* out: start block found */
1313{
1314	xfs_rtword_t	*b;		/* current word in buffer */
1315	int		bit;		/* bit number in the word */
1316	xfs_rtblock_t	block;		/* bitmap block number */
1317	xfs_buf_t	*bp;		/* buf for the block */
1318	xfs_rtword_t	*bufp;		/* starting word in buffer */
1319	int		error;		/* error value */
1320	xfs_rtblock_t	i;		/* current bit number rel. to start */
1321	xfs_rtblock_t	lastbit;	/* last useful bit in the word */
1322	xfs_rtblock_t	len;		/* length of inspected area */
1323	xfs_rtword_t	mask;		/* mask of relevant bits for value */
1324	xfs_rtword_t	want;		/* mask for "good" values */
1325	xfs_rtword_t	wdiff;		/* difference from wanted value */
1326	int		word;		/* word number in the buffer */
1327
1328	/*
1329	 * Compute and read in starting bitmap block for starting block.
1330	 */
1331	block = XFS_BITTOBLOCK(mp, start);
1332	error = xfs_rtbuf_get(mp, tp, block, 0, &bp);
1333	if (error) {
1334		return error;
1335	}
1336	bufp = bp->b_addr;
1337	/*
1338	 * Get the first word's index & point to it.
1339	 */
1340	word = XFS_BITTOWORD(mp, start);
1341	b = &bufp[word];
1342	bit = (int)(start & (XFS_NBWORD - 1));
1343	len = limit - start + 1;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1344	/*
1345	 * Compute match value, based on the bit at start: if 1 (free)
1346	 * then all-ones, else all-zeroes.
1347	 */
1348	want = (*b & ((xfs_rtword_t)1 << bit)) ? -1 : 0;
 
 
 
 
1349	/*
1350	 * If the starting position is not word-aligned, deal with the
1351	 * partial word.
1352	 */
1353	if (bit) {
1354		/*
1355		 * Calculate last (rightmost) bit number to look at,
1356		 * and mask for all the relevant bits in this word.
1357		 */
1358		lastbit = XFS_RTMIN(bit + len, XFS_NBWORD);
1359		mask = (((xfs_rtword_t)1 << (lastbit - bit)) - 1) << bit;
1360		/*
1361		 * Calculate the difference between the value there
1362		 * and what we're looking for.
1363		 */
1364		if ((wdiff = (*b ^ want) & mask)) {
1365			/*
1366			 * Different.  Mark where we are and return.
1367			 */
1368			xfs_trans_brelse(tp, bp);
1369			i = XFS_RTLOBIT(wdiff) - bit;
1370			*rtblock = start + i - 1;
1371			return 0;
1372		}
1373		i = lastbit - bit;
1374		/*
1375		 * Go on to next block if that's where the next word is
1376		 * and we need the next word.
1377		 */
1378		if (++word == XFS_BLOCKWSIZE(mp) && i < len) {
1379			/*
1380			 * If done with this block, get the previous one.
1381			 */
1382			xfs_trans_brelse(tp, bp);
1383			error = xfs_rtbuf_get(mp, tp, ++block, 0, &bp);
1384			if (error) {
1385				return error;
1386			}
1387			b = bufp = bp->b_addr;
1388			word = 0;
1389		} else {
1390			/*
1391			 * Go on to the previous word in the buffer.
1392			 */
1393			b++;
1394		}
1395	} else {
1396		/*
1397		 * Starting on a word boundary, no partial word.
1398		 */
1399		i = 0;
1400	}
1401	/*
1402	 * Loop over whole words in buffers.  When we use up one buffer
1403	 * we move on to the next one.
1404	 */
1405	while (len - i >= XFS_NBWORD) {
1406		/*
1407		 * Compute difference between actual and desired value.
1408		 */
1409		if ((wdiff = *b ^ want)) {
1410			/*
1411			 * Different, mark where we are and return.
1412			 */
1413			xfs_trans_brelse(tp, bp);
1414			i += XFS_RTLOBIT(wdiff);
1415			*rtblock = start + i - 1;
1416			return 0;
1417		}
1418		i += XFS_NBWORD;
1419		/*
1420		 * Go on to next block if that's where the next word is
1421		 * and we need the next word.
1422		 */
1423		if (++word == XFS_BLOCKWSIZE(mp) && i < len) {
1424			/*
1425			 * If done with this block, get the next one.
1426			 */
1427			xfs_trans_brelse(tp, bp);
1428			error = xfs_rtbuf_get(mp, tp, ++block, 0, &bp);
1429			if (error) {
1430				return error;
1431			}
1432			b = bufp = bp->b_addr;
1433			word = 0;
1434		} else {
1435			/*
1436			 * Go on to the next word in the buffer.
1437			 */
1438			b++;
1439		}
1440	}
1441	/*
1442	 * If not ending on a word boundary, deal with the last
1443	 * (partial) word.
1444	 */
1445	if ((lastbit = len - i)) {
1446		/*
1447		 * Calculate mask for all the relevant bits in this word.
1448		 */
1449		mask = ((xfs_rtword_t)1 << lastbit) - 1;
1450		/*
1451		 * Compute difference between actual and desired value.
1452		 */
1453		if ((wdiff = (*b ^ want) & mask)) {
1454			/*
1455			 * Different, mark where we are and return.
1456			 */
1457			xfs_trans_brelse(tp, bp);
1458			i += XFS_RTLOBIT(wdiff);
1459			*rtblock = start + i - 1;
1460			return 0;
1461		} else
1462			i = len;
1463	}
1464	/*
1465	 * No match, return that we scanned the whole area.
1466	 */
1467	xfs_trans_brelse(tp, bp);
1468	*rtblock = start + i - 1;
 
1469	return 0;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1470}
1471
1472/*
1473 * Mark an extent specified by start and len freed.
1474 * Updates all the summary information as well as the bitmap.
 
1475 */
1476STATIC int				/* error */
1477xfs_rtfree_range(
1478	xfs_mount_t	*mp,		/* file system mount point */
1479	xfs_trans_t	*tp,		/* transaction pointer */
1480	xfs_rtblock_t	start,		/* starting block to free */
1481	xfs_extlen_t	len,		/* length to free */
1482	xfs_buf_t	**rbpp,		/* in/out: summary block buffer */
1483	xfs_fsblock_t	*rsb)		/* in/out: summary block number */
1484{
1485	xfs_rtblock_t	end;		/* end of the freed extent */
1486	int		error;		/* error value */
1487	xfs_rtblock_t	postblock;	/* first block freed > end */
1488	xfs_rtblock_t	preblock;	/* first block freed < start */
1489
1490	end = start + len - 1;
1491	/*
1492	 * Modify the bitmap to mark this extent freed.
1493	 */
1494	error = xfs_rtmodify_range(mp, tp, start, len, 1);
1495	if (error) {
1496		return error;
1497	}
1498	/*
1499	 * Assume we're freeing out of the middle of an allocated extent.
1500	 * We need to find the beginning and end of the extent so we can
1501	 * properly update the summary.
1502	 */
1503	error = xfs_rtfind_back(mp, tp, start, 0, &preblock);
1504	if (error) {
1505		return error;
1506	}
1507	/*
1508	 * Find the next allocated block (end of allocated extent).
1509	 */
1510	error = xfs_rtfind_forw(mp, tp, end, mp->m_sb.sb_rextents - 1,
1511		&postblock);
1512	if (error)
1513		return error;
1514	/*
1515	 * If there are blocks not being freed at the front of the
1516	 * old extent, add summary data for them to be allocated.
1517	 */
1518	if (preblock < start) {
1519		error = xfs_rtmodify_summary(mp, tp,
1520			XFS_RTBLOCKLOG(start - preblock),
1521			XFS_BITTOBLOCK(mp, preblock), -1, rbpp, rsb);
1522		if (error) {
1523			return error;
1524		}
1525	}
1526	/*
1527	 * If there are blocks not being freed at the end of the
1528	 * old extent, add summary data for them to be allocated.
1529	 */
1530	if (postblock > end) {
1531		error = xfs_rtmodify_summary(mp, tp,
1532			XFS_RTBLOCKLOG(postblock - end),
1533			XFS_BITTOBLOCK(mp, end + 1), -1, rbpp, rsb);
1534		if (error) {
1535			return error;
1536		}
1537	}
1538	/*
1539	 * Increment the summary information corresponding to the entire
1540	 * (new) free extent.
1541	 */
1542	error = xfs_rtmodify_summary(mp, tp,
1543		XFS_RTBLOCKLOG(postblock + 1 - preblock),
1544		XFS_BITTOBLOCK(mp, preblock), 1, rbpp, rsb);
1545	return error;
1546}
1547
1548/*
1549 * Read and return the summary information for a given extent size,
1550 * bitmap block combination.
1551 * Keeps track of a current summary block, so we don't keep reading
1552 * it from the buffer cache.
1553 */
1554STATIC int				/* error */
1555xfs_rtget_summary(
1556	xfs_mount_t	*mp,		/* file system mount structure */
1557	xfs_trans_t	*tp,		/* transaction pointer */
1558	int		log,		/* log2 of extent size */
1559	xfs_rtblock_t	bbno,		/* bitmap block number */
1560	xfs_buf_t	**rbpp,		/* in/out: summary block buffer */
1561	xfs_fsblock_t	*rsb,		/* in/out: summary block number */
1562	xfs_suminfo_t	*sum)		/* out: summary info for this block */
1563{
1564	xfs_buf_t	*bp;		/* buffer for summary block */
1565	int		error;		/* error value */
1566	xfs_fsblock_t	sb;		/* summary fsblock */
1567	int		so;		/* index into the summary file */
1568	xfs_suminfo_t	*sp;		/* pointer to returned data */
 
 
1569
1570	/*
1571	 * Compute entry number in the summary file.
1572	 */
1573	so = XFS_SUMOFFS(mp, log, bbno);
1574	/*
1575	 * Compute the block number in the summary file.
1576	 */
1577	sb = XFS_SUMOFFSTOBLOCK(mp, so);
1578	/*
1579	 * If we have an old buffer, and the block number matches, use that.
1580	 */
1581	if (rbpp && *rbpp && *rsb == sb)
1582		bp = *rbpp;
1583	/*
1584	 * Otherwise we have to get the buffer.
1585	 */
1586	else {
1587		/*
1588		 * If there was an old one, get rid of it first.
 
 
 
 
 
1589		 */
1590		if (rbpp && *rbpp)
1591			xfs_trans_brelse(tp, *rbpp);
1592		error = xfs_rtbuf_get(mp, tp, sb, 1, &bp);
1593		if (error) {
1594			return error;
1595		}
 
 
1596		/*
1597		 * Remember this buffer and block for the next call.
 
1598		 */
1599		if (rbpp) {
1600			*rbpp = bp;
1601			*rsb = sb;
1602		}
1603	}
1604	/*
1605	 * Point to the summary information & copy it out.
1606	 */
1607	sp = XFS_SUMPTR(mp, bp, so);
1608	*sum = *sp;
1609	/*
1610	 * Drop the buffer if we're not asked to remember it.
1611	 */
1612	if (!rbpp)
1613		xfs_trans_brelse(tp, bp);
1614	return 0;
1615}
1616
1617/*
1618 * Set the given range of bitmap bits to the given value.
1619 * Do whatever I/O and logging is required.
1620 */
1621STATIC int				/* error */
1622xfs_rtmodify_range(
1623	xfs_mount_t	*mp,		/* file system mount point */
1624	xfs_trans_t	*tp,		/* transaction pointer */
1625	xfs_rtblock_t	start,		/* starting block to modify */
1626	xfs_extlen_t	len,		/* length of extent to modify */
1627	int		val)		/* 1 for free, 0 for allocated */
1628{
1629	xfs_rtword_t	*b;		/* current word in buffer */
1630	int		bit;		/* bit number in the word */
1631	xfs_rtblock_t	block;		/* bitmap block number */
1632	xfs_buf_t	*bp;		/* buf for the block */
1633	xfs_rtword_t	*bufp;		/* starting word in buffer */
1634	int		error;		/* error value */
1635	xfs_rtword_t	*first;		/* first used word in the buffer */
1636	int		i;		/* current bit number rel. to start */
1637	int		lastbit;	/* last useful bit in word */
1638	xfs_rtword_t	mask;		/* mask o frelevant bits for value */
1639	int		word;		/* word number in the buffer */
1640
1641	/*
1642	 * Compute starting bitmap block number.
1643	 */
1644	block = XFS_BITTOBLOCK(mp, start);
1645	/*
1646	 * Read the bitmap block, and point to its data.
1647	 */
1648	error = xfs_rtbuf_get(mp, tp, block, 0, &bp);
1649	if (error) {
1650		return error;
1651	}
1652	bufp = bp->b_addr;
1653	/*
1654	 * Compute the starting word's address, and starting bit.
1655	 */
1656	word = XFS_BITTOWORD(mp, start);
1657	first = b = &bufp[word];
1658	bit = (int)(start & (XFS_NBWORD - 1));
1659	/*
1660	 * 0 (allocated) => all zeroes; 1 (free) => all ones.
1661	 */
1662	val = -val;
1663	/*
1664	 * If not starting on a word boundary, deal with the first
1665	 * (partial) word.
1666	 */
1667	if (bit) {
1668		/*
1669		 * Compute first bit not changed and mask of relevant bits.
1670		 */
1671		lastbit = XFS_RTMIN(bit + len, XFS_NBWORD);
1672		mask = (((xfs_rtword_t)1 << (lastbit - bit)) - 1) << bit;
1673		/*
1674		 * Set/clear the active bits.
1675		 */
1676		if (val)
1677			*b |= mask;
1678		else
1679			*b &= ~mask;
1680		i = lastbit - bit;
1681		/*
1682		 * Go on to the next block if that's where the next word is
1683		 * and we need the next word.
1684		 */
1685		if (++word == XFS_BLOCKWSIZE(mp) && i < len) {
1686			/*
1687			 * Log the changed part of this block.
1688			 * Get the next one.
1689			 */
1690			xfs_trans_log_buf(tp, bp,
1691				(uint)((char *)first - (char *)bufp),
1692				(uint)((char *)b - (char *)bufp));
1693			error = xfs_rtbuf_get(mp, tp, ++block, 0, &bp);
1694			if (error) {
1695				return error;
1696			}
1697			first = b = bufp = bp->b_addr;
1698			word = 0;
1699		} else {
1700			/*
1701			 * Go on to the next word in the buffer
1702			 */
1703			b++;
1704		}
1705	} else {
1706		/*
1707		 * Starting on a word boundary, no partial word.
1708		 */
1709		i = 0;
1710	}
1711	/*
1712	 * Loop over whole words in buffers.  When we use up one buffer
1713	 * we move on to the next one.
1714	 */
1715	while (len - i >= XFS_NBWORD) {
1716		/*
1717		 * Set the word value correctly.
1718		 */
1719		*b = val;
1720		i += XFS_NBWORD;
1721		/*
1722		 * Go on to the next block if that's where the next word is
1723		 * and we need the next word.
1724		 */
1725		if (++word == XFS_BLOCKWSIZE(mp) && i < len) {
1726			/*
1727			 * Log the changed part of this block.
1728			 * Get the next one.
1729			 */
1730			xfs_trans_log_buf(tp, bp,
1731				(uint)((char *)first - (char *)bufp),
1732				(uint)((char *)b - (char *)bufp));
1733			error = xfs_rtbuf_get(mp, tp, ++block, 0, &bp);
1734			if (error) {
1735				return error;
1736			}
1737			first = b = bufp = bp->b_addr;
1738			word = 0;
1739		} else {
1740			/*
1741			 * Go on to the next word in the buffer
1742			 */
1743			b++;
1744		}
1745	}
 
 
 
 
 
 
 
1746	/*
1747	 * If not ending on a word boundary, deal with the last
1748	 * (partial) word.
1749	 */
1750	if ((lastbit = len - i)) {
1751		/*
1752		 * Compute a mask of relevant bits.
1753		 */
1754		bit = 0;
1755		mask = ((xfs_rtword_t)1 << lastbit) - 1;
1756		/*
1757		 * Set/clear the active bits.
1758		 */
1759		if (val)
1760			*b |= mask;
1761		else
1762			*b &= ~mask;
1763		b++;
1764	}
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1765	/*
1766	 * Log any remaining changed bytes.
 
 
1767	 */
1768	if (b > first)
1769		xfs_trans_log_buf(tp, bp, (uint)((char *)first - (char *)bufp),
1770			(uint)((char *)b - (char *)bufp - 1));
1771	return 0;
 
1772}
1773
1774/*
1775 * Read and modify the summary information for a given extent size,
1776 * bitmap block combination.
1777 * Keeps track of a current summary block, so we don't keep reading
1778 * it from the buffer cache.
1779 */
1780STATIC int				/* error */
1781xfs_rtmodify_summary(
1782	xfs_mount_t	*mp,		/* file system mount point */
1783	xfs_trans_t	*tp,		/* transaction pointer */
1784	int		log,		/* log2 of extent size */
1785	xfs_rtblock_t	bbno,		/* bitmap block number */
1786	int		delta,		/* change to make to summary info */
1787	xfs_buf_t	**rbpp,		/* in/out: summary block buffer */
1788	xfs_fsblock_t	*rsb)		/* in/out: summary block number */
1789{
1790	xfs_buf_t	*bp;		/* buffer for the summary block */
1791	int		error;		/* error value */
1792	xfs_fsblock_t	sb;		/* summary fsblock */
1793	int		so;		/* index into the summary file */
1794	xfs_suminfo_t	*sp;		/* pointer to returned data */
 
1795
1796	/*
1797	 * Compute entry number in the summary file.
1798	 */
1799	so = XFS_SUMOFFS(mp, log, bbno);
1800	/*
1801	 * Compute the block number in the summary file.
1802	 */
1803	sb = XFS_SUMOFFSTOBLOCK(mp, so);
1804	/*
1805	 * If we have an old buffer, and the block number matches, use that.
1806	 */
1807	if (rbpp && *rbpp && *rsb == sb)
1808		bp = *rbpp;
1809	/*
1810	 * Otherwise we have to get the buffer.
1811	 */
1812	else {
1813		/*
1814		 * If there was an old one, get rid of it first.
1815		 */
1816		if (rbpp && *rbpp)
1817			xfs_trans_brelse(tp, *rbpp);
1818		error = xfs_rtbuf_get(mp, tp, sb, 1, &bp);
1819		if (error) {
1820			return error;
1821		}
1822		/*
1823		 * Remember this buffer and block for the next call.
1824		 */
1825		if (rbpp) {
1826			*rbpp = bp;
1827			*rsb = sb;
1828		}
1829	}
1830	/*
1831	 * Point to the summary information, modify and log it.
1832	 */
1833	sp = XFS_SUMPTR(mp, bp, so);
1834	*sp += delta;
1835	xfs_trans_log_buf(tp, bp, (uint)((char *)sp - (char *)bp->b_addr),
1836		(uint)((char *)sp - (char *)bp->b_addr + sizeof(*sp) - 1));
1837	return 0;
1838}
1839
1840/*
1841 * Visible (exported) functions.
1842 */
 
 
 
 
 
 
 
 
1843
1844/*
1845 * Grow the realtime area of the filesystem.
1846 */
1847int
1848xfs_growfs_rt(
1849	xfs_mount_t	*mp,		/* mount point for filesystem */
1850	xfs_growfs_rt_t	*in)		/* growfs rt input struct */
1851{
1852	xfs_rtblock_t	bmbno;		/* bitmap block number */
1853	xfs_buf_t	*bp;		/* temporary buffer */
1854	int		error;		/* error return value */
1855	xfs_mount_t	*nmp;		/* new (fake) mount structure */
1856	xfs_drfsbno_t	nrblocks;	/* new number of realtime blocks */
1857	xfs_extlen_t	nrbmblocks;	/* new number of rt bitmap blocks */
1858	xfs_drtbno_t	nrextents;	/* new number of realtime extents */
1859	uint8_t		nrextslog;	/* new log2 of sb_rextents */
1860	xfs_extlen_t	nrsumblocks;	/* new number of summary blocks */
1861	uint		nrsumlevels;	/* new rt summary levels */
1862	uint		nrsumsize;	/* new size of rt summary, bytes */
1863	xfs_sb_t	*nsbp;		/* new superblock */
1864	xfs_extlen_t	rbmblocks;	/* current number of rt bitmap blocks */
1865	xfs_extlen_t	rsumblocks;	/* current number of rt summary blks */
1866	xfs_sb_t	*sbp;		/* old superblock */
1867	xfs_fsblock_t	sumbno;		/* summary block number */
1868
1869	sbp = &mp->m_sb;
1870	/*
1871	 * Initial error checking.
1872	 */
1873	if (!capable(CAP_SYS_ADMIN))
1874		return XFS_ERROR(EPERM);
1875	if (mp->m_rtdev_targp == NULL || mp->m_rbmip == NULL ||
1876	    (nrblocks = in->newblocks) <= sbp->sb_rblocks ||
1877	    (sbp->sb_rblocks && (in->extsize != sbp->sb_rextsize)))
1878		return XFS_ERROR(EINVAL);
1879	if ((error = xfs_sb_validate_fsb_count(sbp, nrblocks)))
1880		return error;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1881	/*
1882	 * Read in the last block of the device, make sure it exists.
1883	 */
1884	bp = xfs_buf_read_uncached(mp, mp->m_rtdev_targp,
1885				XFS_FSB_TO_BB(mp, nrblocks - 1),
1886				XFS_FSB_TO_B(mp, 1), 0);
1887	if (!bp)
1888		return EIO;
1889	xfs_buf_relse(bp);
1890
1891	/*
1892	 * Calculate new parameters.  These are the final values to be reached.
1893	 */
1894	nrextents = nrblocks;
1895	do_div(nrextents, in->extsize);
1896	nrbmblocks = howmany_64(nrextents, NBBY * sbp->sb_blocksize);
1897	nrextslog = xfs_highbit32(nrextents);
1898	nrsumlevels = nrextslog + 1;
1899	nrsumsize = (uint)sizeof(xfs_suminfo_t) * nrsumlevels * nrbmblocks;
1900	nrsumblocks = XFS_B_TO_FSB(mp, nrsumsize);
1901	nrsumsize = XFS_FSB_TO_B(mp, nrsumblocks);
1902	/*
1903	 * New summary size can't be more than half the size of
1904	 * the log.  This prevents us from getting a log overflow,
1905	 * since we'll log basically the whole summary file at once.
1906	 */
1907	if (nrsumblocks > (mp->m_sb.sb_logblocks >> 1))
1908		return XFS_ERROR(EINVAL);
1909	/*
1910	 * Get the old block counts for bitmap and summary inodes.
1911	 * These can't change since other growfs callers are locked out.
1912	 */
1913	rbmblocks = XFS_B_TO_FSB(mp, mp->m_rbmip->i_d.di_size);
1914	rsumblocks = XFS_B_TO_FSB(mp, mp->m_rsumip->i_d.di_size);
1915	/*
1916	 * Allocate space to the bitmap and summary files, as necessary.
1917	 */
1918	error = xfs_growfs_rt_alloc(mp, rbmblocks, nrbmblocks, mp->m_rbmip);
1919	if (error)
1920		return error;
1921	error = xfs_growfs_rt_alloc(mp, rsumblocks, nrsumblocks, mp->m_rsumip);
1922	if (error)
1923		return error;
1924	/*
1925	 * Allocate a new (fake) mount/sb.
1926	 */
1927	nmp = kmem_alloc(sizeof(*nmp), KM_SLEEP);
1928	/*
1929	 * Loop over the bitmap blocks.
1930	 * We will do everything one bitmap block at a time.
1931	 * Skip the current block if it is exactly full.
1932	 * This also deals with the case where there were no rtextents before.
1933	 */
1934	for (bmbno = sbp->sb_rbmblocks -
1935		     ((sbp->sb_rextents & ((1 << mp->m_blkbit_log) - 1)) != 0);
1936	     bmbno < nrbmblocks;
1937	     bmbno++) {
1938		xfs_trans_t	*tp;
1939		int		cancelflags = 0;
1940
1941		*nmp = *mp;
1942		nsbp = &nmp->m_sb;
1943		/*
1944		 * Calculate new sb and mount fields for this round.
1945		 */
1946		nsbp->sb_rextsize = in->extsize;
1947		nsbp->sb_rbmblocks = bmbno + 1;
1948		nsbp->sb_rblocks =
1949			XFS_RTMIN(nrblocks,
1950				  nsbp->sb_rbmblocks * NBBY *
1951				  nsbp->sb_blocksize * nsbp->sb_rextsize);
1952		nsbp->sb_rextents = nsbp->sb_rblocks;
1953		do_div(nsbp->sb_rextents, nsbp->sb_rextsize);
1954		ASSERT(nsbp->sb_rextents != 0);
1955		nsbp->sb_rextslog = xfs_highbit32(nsbp->sb_rextents);
1956		nrsumlevels = nmp->m_rsumlevels = nsbp->sb_rextslog + 1;
1957		nrsumsize =
1958			(uint)sizeof(xfs_suminfo_t) * nrsumlevels *
1959			nsbp->sb_rbmblocks;
1960		nrsumblocks = XFS_B_TO_FSB(mp, nrsumsize);
1961		nmp->m_rsumsize = nrsumsize = XFS_FSB_TO_B(mp, nrsumblocks);
1962		/*
1963		 * Start a transaction, get the log reservation.
1964		 */
1965		tp = xfs_trans_alloc(mp, XFS_TRANS_GROWFSRT_FREE);
1966		if ((error = xfs_trans_reserve(tp, 0,
1967				XFS_GROWRTFREE_LOG_RES(nmp), 0, 0, 0)))
1968			goto error_cancel;
1969		/*
1970		 * Lock out other callers by grabbing the bitmap inode lock.
1971		 */
1972		xfs_ilock(mp->m_rbmip, XFS_ILOCK_EXCL);
1973		xfs_trans_ijoin_ref(tp, mp->m_rbmip, XFS_ILOCK_EXCL);
1974		/*
1975		 * Update the bitmap inode's size.
1976		 */
1977		mp->m_rbmip->i_d.di_size =
1978			nsbp->sb_rbmblocks * nsbp->sb_blocksize;
1979		xfs_trans_log_inode(tp, mp->m_rbmip, XFS_ILOG_CORE);
1980		cancelflags |= XFS_TRANS_ABORT;
1981		/*
1982		 * Get the summary inode into the transaction.
1983		 */
1984		xfs_ilock(mp->m_rsumip, XFS_ILOCK_EXCL);
1985		xfs_trans_ijoin_ref(tp, mp->m_rsumip, XFS_ILOCK_EXCL);
1986		/*
1987		 * Update the summary inode's size.
1988		 */
1989		mp->m_rsumip->i_d.di_size = nmp->m_rsumsize;
1990		xfs_trans_log_inode(tp, mp->m_rsumip, XFS_ILOG_CORE);
1991		/*
1992		 * Copy summary data from old to new sizes.
1993		 * Do this when the real size (not block-aligned) changes.
1994		 */
1995		if (sbp->sb_rbmblocks != nsbp->sb_rbmblocks ||
1996		    mp->m_rsumlevels != nmp->m_rsumlevels) {
1997			error = xfs_rtcopy_summary(mp, nmp, tp);
1998			if (error)
1999				goto error_cancel;
2000		}
2001		/*
2002		 * Update superblock fields.
2003		 */
2004		if (nsbp->sb_rextsize != sbp->sb_rextsize)
2005			xfs_trans_mod_sb(tp, XFS_TRANS_SB_REXTSIZE,
2006				nsbp->sb_rextsize - sbp->sb_rextsize);
2007		if (nsbp->sb_rbmblocks != sbp->sb_rbmblocks)
2008			xfs_trans_mod_sb(tp, XFS_TRANS_SB_RBMBLOCKS,
2009				nsbp->sb_rbmblocks - sbp->sb_rbmblocks);
2010		if (nsbp->sb_rblocks != sbp->sb_rblocks)
2011			xfs_trans_mod_sb(tp, XFS_TRANS_SB_RBLOCKS,
2012				nsbp->sb_rblocks - sbp->sb_rblocks);
2013		if (nsbp->sb_rextents != sbp->sb_rextents)
2014			xfs_trans_mod_sb(tp, XFS_TRANS_SB_REXTENTS,
2015				nsbp->sb_rextents - sbp->sb_rextents);
2016		if (nsbp->sb_rextslog != sbp->sb_rextslog)
2017			xfs_trans_mod_sb(tp, XFS_TRANS_SB_REXTSLOG,
2018				nsbp->sb_rextslog - sbp->sb_rextslog);
2019		/*
2020		 * Free new extent.
2021		 */
2022		bp = NULL;
2023		error = xfs_rtfree_range(nmp, tp, sbp->sb_rextents,
2024			nsbp->sb_rextents - sbp->sb_rextents, &bp, &sumbno);
2025		if (error) {
2026error_cancel:
2027			xfs_trans_cancel(tp, cancelflags);
2028			break;
2029		}
2030		/*
2031		 * Mark more blocks free in the superblock.
2032		 */
2033		xfs_trans_mod_sb(tp, XFS_TRANS_SB_FREXTENTS,
2034			nsbp->sb_rextents - sbp->sb_rextents);
2035		/*
2036		 * Update mp values into the real mp structure.
2037		 */
2038		mp->m_rsumlevels = nrsumlevels;
2039		mp->m_rsumsize = nrsumsize;
2040
2041		error = xfs_trans_commit(tp, 0);
 
 
2042		if (error)
2043			break;
2044	}
2045
2046	/*
2047	 * Free the fake mp structure.
2048	 */
2049	kmem_free(nmp);
2050
2051	return error;
2052}
 
2053
2054/*
2055 * Allocate an extent in the realtime subvolume, with the usual allocation
2056 * parameters.  The length units are all in realtime extents, as is the
2057 * result block number.
2058 */
2059int					/* error */
2060xfs_rtallocate_extent(
2061	xfs_trans_t	*tp,		/* transaction pointer */
2062	xfs_rtblock_t	bno,		/* starting block number to allocate */
2063	xfs_extlen_t	minlen,		/* minimum length to allocate */
2064	xfs_extlen_t	maxlen,		/* maximum length to allocate */
2065	xfs_extlen_t	*len,		/* out: actual length allocated */
2066	xfs_alloctype_t	type,		/* allocation type XFS_ALLOCTYPE... */
2067	int		wasdel,		/* was a delayed allocation extent */
2068	xfs_extlen_t	prod,		/* extent product factor */
2069	xfs_rtblock_t	*rtblock)	/* out: start block allocated */
2070{
2071	xfs_mount_t	*mp = tp->t_mountp;
2072	int		error;		/* error value */
2073	xfs_rtblock_t	r;		/* result allocated block */
2074	xfs_fsblock_t	sb;		/* summary file block number */
2075	xfs_buf_t	*sumbp;		/* summary file block buffer */
2076
2077	ASSERT(xfs_isilocked(mp->m_rbmip, XFS_ILOCK_EXCL));
2078	ASSERT(minlen > 0 && minlen <= maxlen);
2079
2080	/*
2081	 * If prod is set then figure out what to do to minlen and maxlen.
2082	 */
2083	if (prod > 1) {
2084		xfs_extlen_t	i;
2085
2086		if ((i = maxlen % prod))
2087			maxlen -= i;
2088		if ((i = minlen % prod))
2089			minlen += prod - i;
2090		if (maxlen < minlen) {
2091			*rtblock = NULLRTBLOCK;
2092			return 0;
2093		}
2094	}
2095
2096	sumbp = NULL;
2097	/*
2098	 * Allocate by size, or near another block, or exactly at some block.
2099	 */
2100	switch (type) {
2101	case XFS_ALLOCTYPE_ANY_AG:
2102		error = xfs_rtallocate_extent_size(mp, tp, minlen, maxlen, len,
2103				&sumbp,	&sb, prod, &r);
2104		break;
2105	case XFS_ALLOCTYPE_NEAR_BNO:
2106		error = xfs_rtallocate_extent_near(mp, tp, bno, minlen, maxlen,
2107				len, &sumbp, &sb, prod, &r);
2108		break;
2109	case XFS_ALLOCTYPE_THIS_BNO:
2110		error = xfs_rtallocate_extent_exact(mp, tp, bno, minlen, maxlen,
2111				len, &sumbp, &sb, prod, &r);
2112		break;
2113	default:
2114		error = EIO;
2115		ASSERT(0);
2116	}
2117	if (error)
2118		return error;
2119
2120	/*
2121	 * If it worked, update the superblock.
 
 
 
2122	 */
2123	if (r != NULLRTBLOCK) {
2124		long	slen = (long)*len;
2125
2126		ASSERT(*len >= minlen && *len <= maxlen);
2127		if (wasdel)
2128			xfs_trans_mod_sb(tp, XFS_TRANS_SB_RES_FREXTENTS, -slen);
2129		else
2130			xfs_trans_mod_sb(tp, XFS_TRANS_SB_FREXTENTS, -slen);
2131	}
2132	*rtblock = r;
2133	return 0;
 
 
2134}
2135
2136/*
2137 * Free an extent in the realtime subvolume.  Length is expressed in
2138 * realtime extents, as is the block number.
2139 */
2140int					/* error */
2141xfs_rtfree_extent(
2142	xfs_trans_t	*tp,		/* transaction pointer */
2143	xfs_rtblock_t	bno,		/* starting block number to free */
2144	xfs_extlen_t	len)		/* length of extent freed */
2145{
2146	int		error;		/* error value */
2147	xfs_mount_t	*mp;		/* file system mount structure */
2148	xfs_fsblock_t	sb;		/* summary file block number */
2149	xfs_buf_t	*sumbp;		/* summary file block buffer */
2150
2151	mp = tp->t_mountp;
2152	/*
2153	 * Synchronize by locking the bitmap inode.
2154	 */
2155	xfs_ilock(mp->m_rbmip, XFS_ILOCK_EXCL);
2156	xfs_trans_ijoin_ref(tp, mp->m_rbmip, XFS_ILOCK_EXCL);
2157
2158#if defined(__KERNEL__) && defined(DEBUG)
2159	/*
2160	 * Check to see that this whole range is currently allocated.
2161	 */
2162	{
2163		int	stat;		/* result from checking range */
2164
2165		error = xfs_rtcheck_alloc_range(mp, tp, bno, len, &stat);
2166		if (error) {
2167			return error;
2168		}
2169		ASSERT(stat);
 
 
 
2170	}
2171#endif
2172	sumbp = NULL;
2173	/*
2174	 * Free the range of realtime blocks.
2175	 */
2176	error = xfs_rtfree_range(mp, tp, bno, len, &sumbp, &sb);
2177	if (error) {
 
 
 
 
2178		return error;
2179	}
2180	/*
2181	 * Mark more blocks free in the superblock.
2182	 */
2183	xfs_trans_mod_sb(tp, XFS_TRANS_SB_FREXTENTS, (long)len);
2184	/*
2185	 * If we've now freed all the blocks, reset the file sequence
2186	 * number to 0.
2187	 */
2188	if (tp->t_frextents_delta + mp->m_sb.sb_frextents ==
2189	    mp->m_sb.sb_rextents) {
2190		if (!(mp->m_rbmip->i_d.di_flags & XFS_DIFLAG_NEWRTBM))
2191			mp->m_rbmip->i_d.di_flags |= XFS_DIFLAG_NEWRTBM;
2192		*(__uint64_t *)&mp->m_rbmip->i_d.di_atime = 0;
2193		xfs_trans_log_inode(tp, mp->m_rbmip, XFS_ILOG_CORE);
2194	}
2195	return 0;
2196}
2197
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
2198/*
2199 * Initialize realtime fields in the mount structure.
2200 */
2201int				/* error */
2202xfs_rtmount_init(
2203	xfs_mount_t	*mp)	/* file system mount structure */
2204{
2205	xfs_buf_t	*bp;	/* buffer for last block of subvolume */
2206	xfs_daddr_t	d;	/* address of last block of subvolume */
2207	xfs_sb_t	*sbp;	/* filesystem superblock copy in mount */
2208
2209	sbp = &mp->m_sb;
2210	if (sbp->sb_rblocks == 0)
2211		return 0;
2212	if (mp->m_rtdev_targp == NULL) {
2213		xfs_warn(mp,
2214	"Filesystem has a realtime volume, use rtdev=device option");
2215		return XFS_ERROR(ENODEV);
2216	}
2217	mp->m_rsumlevels = sbp->sb_rextslog + 1;
2218	mp->m_rsumsize =
2219		(uint)sizeof(xfs_suminfo_t) * mp->m_rsumlevels *
2220		sbp->sb_rbmblocks;
2221	mp->m_rsumsize = roundup(mp->m_rsumsize, sbp->sb_blocksize);
2222	mp->m_rbmip = mp->m_rsumip = NULL;
2223	/*
2224	 * Check that the realtime section is an ok size.
2225	 */
2226	d = (xfs_daddr_t)XFS_FSB_TO_BB(mp, mp->m_sb.sb_rblocks);
2227	if (XFS_BB_TO_FSB(mp, d) != mp->m_sb.sb_rblocks) {
2228		xfs_warn(mp, "realtime mount -- %llu != %llu",
2229			(unsigned long long) XFS_BB_TO_FSB(mp, d),
2230			(unsigned long long) mp->m_sb.sb_rblocks);
2231		return XFS_ERROR(EFBIG);
2232	}
2233	bp = xfs_buf_read_uncached(mp, mp->m_rtdev_targp,
2234					d - XFS_FSB_TO_BB(mp, 1),
2235					XFS_FSB_TO_B(mp, 1), 0);
2236	if (!bp) {
2237		xfs_warn(mp, "realtime device size check failed");
2238		return EIO;
2239	}
2240	xfs_buf_relse(bp);
2241	return 0;
2242}
2243
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
2244/*
2245 * Get the bitmap and summary inodes into the mount structure
2246 * at mount time.
2247 */
2248int					/* error */
2249xfs_rtmount_inodes(
2250	xfs_mount_t	*mp)		/* file system mount structure */
2251{
2252	int		error;		/* error return value */
2253	xfs_sb_t	*sbp;
 
2254
2255	sbp = &mp->m_sb;
2256	if (sbp->sb_rbmino == NULLFSINO)
2257		return 0;
2258	error = xfs_iget(mp, NULL, sbp->sb_rbmino, 0, 0, &mp->m_rbmip);
2259	if (error)
2260		return error;
2261	ASSERT(mp->m_rbmip != NULL);
2262	ASSERT(sbp->sb_rsumino != NULLFSINO);
2263	error = xfs_iget(mp, NULL, sbp->sb_rsumino, 0, 0, &mp->m_rsumip);
2264	if (error) {
2265		IRELE(mp->m_rbmip);
2266		return error;
2267	}
2268	ASSERT(mp->m_rsumip != NULL);
2269	return 0;
 
 
 
 
 
 
 
 
 
 
 
2270}
2271
2272void
2273xfs_rtunmount_inodes(
2274	struct xfs_mount	*mp)
2275{
2276	if (mp->m_rbmip)
2277		IRELE(mp->m_rbmip);
2278	if (mp->m_rsumip)
2279		IRELE(mp->m_rsumip);
 
2280}
2281
2282/*
2283 * Pick an extent for allocation at the start of a new realtime file.
2284 * Use the sequence number stored in the atime field of the bitmap inode.
2285 * Translate this to a fraction of the rtextents, and return the product
2286 * of rtextents and the fraction.
2287 * The fraction sequence is 0, 1/2, 1/4, 3/4, 1/8, ..., 7/8, 1/16, ...
2288 */
2289int					/* error */
2290xfs_rtpick_extent(
2291	xfs_mount_t	*mp,		/* file system mount point */
2292	xfs_trans_t	*tp,		/* transaction pointer */
2293	xfs_extlen_t	len,		/* allocation length (rtextents) */
2294	xfs_rtblock_t	*pick)		/* result rt extent */
2295{
2296	xfs_rtblock_t	b;		/* result block */
2297	int		log2;		/* log of sequence number */
2298	__uint64_t	resid;		/* residual after log removed */
2299	__uint64_t	seq;		/* sequence number of file creation */
2300	__uint64_t	*seqp;		/* pointer to seqno in inode */
2301
2302	ASSERT(xfs_isilocked(mp->m_rbmip, XFS_ILOCK_EXCL));
2303
2304	seqp = (__uint64_t *)&mp->m_rbmip->i_d.di_atime;
2305	if (!(mp->m_rbmip->i_d.di_flags & XFS_DIFLAG_NEWRTBM)) {
2306		mp->m_rbmip->i_d.di_flags |= XFS_DIFLAG_NEWRTBM;
2307		*seqp = 0;
2308	}
2309	seq = *seqp;
2310	if ((log2 = xfs_highbit64(seq)) == -1)
2311		b = 0;
2312	else {
 
2313		resid = seq - (1ULL << log2);
2314		b = (mp->m_sb.sb_rextents * ((resid << 1) + 1ULL)) >>
2315		    (log2 + 1);
2316		if (b >= mp->m_sb.sb_rextents)
2317			b = do_mod(b, mp->m_sb.sb_rextents);
2318		if (b + len > mp->m_sb.sb_rextents)
2319			b = mp->m_sb.sb_rextents - len;
2320	}
2321	*seqp = seq + 1;
2322	xfs_trans_log_inode(tp, mp->m_rbmip, XFS_ILOG_CORE);
2323	*pick = b;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
2324	return 0;
2325}
v6.13.7
   1// SPDX-License-Identifier: GPL-2.0
   2/*
   3 * Copyright (c) 2000-2005 Silicon Graphics, Inc.
   4 * All Rights Reserved.
 
 
 
 
 
 
 
 
 
 
 
 
 
   5 */
   6#include "xfs.h"
   7#include "xfs_fs.h"
   8#include "xfs_shared.h"
   9#include "xfs_format.h"
  10#include "xfs_log_format.h"
  11#include "xfs_trans_resv.h"
  12#include "xfs_bit.h"
 
 
 
 
 
 
  13#include "xfs_mount.h"
 
 
  14#include "xfs_inode.h"
  15#include "xfs_alloc.h"
  16#include "xfs_bmap.h"
  17#include "xfs_bmap_btree.h"
  18#include "xfs_bmap_util.h"
  19#include "xfs_trans.h"
  20#include "xfs_trans_space.h"
  21#include "xfs_icache.h"
  22#include "xfs_rtalloc.h"
  23#include "xfs_sb.h"
  24#include "xfs_rtbitmap.h"
  25#include "xfs_quota.h"
  26#include "xfs_log_priv.h"
  27#include "xfs_health.h"
  28#include "xfs_da_format.h"
  29#include "xfs_metafile.h"
  30#include "xfs_rtgroup.h"
  31#include "xfs_error.h"
 
 
 
 
  32#include "xfs_trace.h"
 
 
  33
  34/*
  35 * Return whether there are any free extents in the size range given
  36 * by low and high, for the bitmap block bbno.
  37 */
  38STATIC int
  39xfs_rtany_summary(
  40	struct xfs_rtalloc_args	*args,
  41	int			low,	/* low log2 extent size */
  42	int			high,	/* high log2 extent size */
  43	xfs_fileoff_t		bbno,	/* bitmap block number */
  44	int			*maxlog) /* out: max log2 extent size free */
  45{
  46	uint8_t			*rsum_cache = args->rtg->rtg_rsum_cache;
  47	int			error;
  48	int			log;	/* loop counter, log2 of ext. size */
  49	xfs_suminfo_t		sum;	/* summary data */
  50
  51	/* There are no extents at levels >= rsum_cache[bbno]. */
  52	if (rsum_cache) {
  53		high = min(high, rsum_cache[bbno] - 1);
  54		if (low > high) {
  55			*maxlog = -1;
  56			return 0;
  57		}
  58	}
  59
  60	/*
  61	 * Loop over logs of extent sizes.
  62	 */
  63	for (log = high; log >= low; log--) {
  64		/*
  65		 * Get one summary datum.
  66		 */
  67		error = xfs_rtget_summary(args, log, bbno, &sum);
  68		if (error) {
  69			return error;
  70		}
  71		/*
  72		 * If there are any, return success.
  73		 */
  74		if (sum) {
  75			*maxlog = log;
  76			goto out;
  77		}
  78	}
  79	/*
  80	 * Found nothing, return failure.
  81	 */
  82	*maxlog = -1;
  83out:
  84	/* There were no extents at levels > log. */
  85	if (rsum_cache && log + 1 < rsum_cache[bbno])
  86		rsum_cache[bbno] = log + 1;
  87	return 0;
  88}
  89
  90/*
  91 * Copy and transform the summary file, given the old and new
  92 * parameters in the mount structures.
  93 */
  94STATIC int
  95xfs_rtcopy_summary(
  96	struct xfs_rtalloc_args	*oargs,
  97	struct xfs_rtalloc_args	*nargs)
  98{
  99	xfs_fileoff_t		bbno;	/* bitmap block number */
 100	int			error;
 101	int			log;	/* summary level number (log length) */
 102	xfs_suminfo_t		sum;	/* summary data */
 103
 104	for (log = oargs->mp->m_rsumlevels - 1; log >= 0; log--) {
 105		for (bbno = oargs->mp->m_sb.sb_rbmblocks - 1;
 106		     (xfs_srtblock_t)bbno >= 0;
 107		     bbno--) {
 108			error = xfs_rtget_summary(oargs, log, bbno, &sum);
 109			if (error)
 110				goto out;
 111			if (sum == 0)
 112				continue;
 113			error = xfs_rtmodify_summary(oargs, log, bbno, -sum);
 114			if (error)
 115				goto out;
 116			error = xfs_rtmodify_summary(nargs, log, bbno, sum);
 117			if (error)
 118				goto out;
 119			ASSERT(sum > 0);
 120		}
 121	}
 122	error = 0;
 123out:
 124	xfs_rtbuf_cache_relse(oargs);
 125	return 0;
 126}
 127/*
 128 * Mark an extent specified by start and len allocated.
 129 * Updates all the summary information as well as the bitmap.
 130 */
 131STATIC int
 132xfs_rtallocate_range(
 133	struct xfs_rtalloc_args	*args,
 134	xfs_rtxnum_t		start,	/* start rtext to allocate */
 135	xfs_rtxlen_t		len)	/* in/out: summary block number */
 136{
 137	struct xfs_mount	*mp = args->mp;
 138	xfs_rtxnum_t		end;	/* end of the allocated rtext */
 139	int			error;
 140	xfs_rtxnum_t		postblock = 0; /* first rtext allocated > end */
 141	xfs_rtxnum_t		preblock = 0; /* first rtext allocated < start */
 142
 143	end = start + len - 1;
 144	/*
 145	 * Assume we're allocating out of the middle of a free extent.
 146	 * We need to find the beginning and end of the extent so we can
 147	 * properly update the summary.
 148	 */
 149	error = xfs_rtfind_back(args, start, &preblock);
 150	if (error)
 151		return error;
 152
 153	/*
 154	 * Find the next allocated block (end of free extent).
 155	 */
 156	error = xfs_rtfind_forw(args, end, args->rtg->rtg_extents - 1,
 157			&postblock);
 158	if (error)
 159		return error;
 160
 161	/*
 162	 * Decrement the summary information corresponding to the entire
 163	 * (old) free extent.
 164	 */
 165	error = xfs_rtmodify_summary(args,
 166			xfs_highbit64(postblock + 1 - preblock),
 167			xfs_rtx_to_rbmblock(mp, preblock), -1);
 168	if (error)
 169		return error;
 
 
 
 
 
 
 
 170
 171	/*
 172	 * If there are blocks not being allocated at the front of the
 173	 * old extent, add summary data for them to be free.
 174	 */
 175	if (preblock < start) {
 176		error = xfs_rtmodify_summary(args,
 177				xfs_highbit64(start - preblock),
 178				xfs_rtx_to_rbmblock(mp, preblock), 1);
 
 
 
 
 
 
 
 
 
 179		if (error)
 180			return error;
 181	}
 182
 183	/*
 184	 * If there are blocks not being allocated at the end of the
 185	 * old extent, add summary data for them to be free.
 186	 */
 187	if (postblock > end) {
 188		error = xfs_rtmodify_summary(args,
 189				xfs_highbit64(postblock - end),
 190				xfs_rtx_to_rbmblock(mp, end + 1), 1);
 191		if (error)
 192			return error;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 193	}
 194
 195	/*
 196	 * Modify the bitmap to mark this extent allocated.
 197	 */
 198	return xfs_rtmodify_range(args, start, len, 0);
 199}
 200
 201/* Reduce @rtxlen until it is a multiple of @prod. */
 202static inline xfs_rtxlen_t
 203xfs_rtalloc_align_len(
 204	xfs_rtxlen_t	rtxlen,
 205	xfs_rtxlen_t	prod)
 206{
 207	if (unlikely(prod > 1))
 208		return rounddown(rtxlen, prod);
 209	return rtxlen;
 210}
 211
 212/*
 213 * Make sure we don't run off the end of the rt volume.  Be careful that
 214 * adjusting maxlen downwards doesn't cause us to fail the alignment checks.
 215 */
 216static inline xfs_rtxlen_t
 217xfs_rtallocate_clamp_len(
 218	struct xfs_rtgroup	*rtg,
 219	xfs_rtxnum_t		startrtx,
 220	xfs_rtxlen_t		rtxlen,
 221	xfs_rtxlen_t		prod)
 222{
 223	xfs_rtxlen_t		ret;
 224
 225	ret = min(rtg->rtg_extents, startrtx + rtxlen) - startrtx;
 226	return xfs_rtalloc_align_len(ret, prod);
 227}
 228
 229/*
 230 * Attempt to allocate an extent minlen<=len<=maxlen starting from
 231 * bitmap block bbno.  If we don't get maxlen then use prod to trim
 232 * the length, if given.  Returns error; returns starting block in *rtx.
 233 * The lengths are all in rtextents.
 234 */
 235STATIC int
 236xfs_rtallocate_extent_block(
 237	struct xfs_rtalloc_args	*args,
 238	xfs_fileoff_t		bbno,	/* bitmap block number */
 239	xfs_rtxlen_t		minlen,	/* minimum length to allocate */
 240	xfs_rtxlen_t		maxlen,	/* maximum length to allocate */
 241	xfs_rtxlen_t		*len,	/* out: actual length allocated */
 242	xfs_rtxnum_t		*nextp,	/* out: next rtext to try */
 243	xfs_rtxlen_t		prod,	/* extent product factor */
 244	xfs_rtxnum_t		*rtx)	/* out: start rtext allocated */
 245{
 246	struct xfs_mount	*mp = args->mp;
 247	xfs_rtxnum_t		besti = -1; /* best rtext found so far */
 248	xfs_rtxnum_t		end;	/* last rtext in chunk */
 249	xfs_rtxnum_t		i;	/* current rtext trying */
 250	xfs_rtxnum_t		next;	/* next rtext to try */
 251	xfs_rtxlen_t		scanlen; /* number of free rtx to look for */
 252	xfs_rtxlen_t		bestlen = 0; /* best length found so far */
 253	int			stat;	/* status from internal calls */
 254	int			error;
 255
 256	/*
 257	 * Loop over all the extents starting in this bitmap block up to the
 258	 * end of the rt volume, looking for one that's long enough.
 259	 */
 260	end = min(args->rtg->rtg_extents, xfs_rbmblock_to_rtx(mp, bbno + 1)) -
 261		1;
 262	for (i = xfs_rbmblock_to_rtx(mp, bbno); i <= end; i++) {
 263		/* Make sure we don't scan off the end of the rt volume. */
 264		scanlen = xfs_rtallocate_clamp_len(args->rtg, i, maxlen, prod);
 265		if (scanlen < minlen)
 266			break;
 267
 268		/*
 269		 * See if there's a free extent of scanlen starting at i.
 270		 * If it's not so then next will contain the first non-free.
 271		 */
 272		error = xfs_rtcheck_range(args, i, scanlen, 1, &next, &stat);
 273		if (error)
 274			return error;
 
 275		if (stat) {
 276			/*
 277			 * i to scanlen is all free, allocate and return that.
 278			 */
 279			*len = scanlen;
 280			*rtx = i;
 
 
 
 
 
 281			return 0;
 282		}
 283
 284		/*
 285		 * In the case where we have a variable-sized allocation
 286		 * request, figure out how big this free piece is,
 287		 * and if it's big enough for the minimum, and the best
 288		 * so far, remember it.
 289		 */
 290		if (minlen < maxlen) {
 291			xfs_rtxnum_t	thislen;	/* this extent size */
 292
 293			thislen = next - i;
 294			if (thislen >= minlen && thislen > bestlen) {
 295				besti = i;
 296				bestlen = thislen;
 297			}
 298		}
 299		/*
 300		 * If not done yet, find the start of the next free space.
 301		 */
 302		if (next >= end)
 
 
 
 
 
 303			break;
 304		error = xfs_rtfind_forw(args, next, end, &i);
 305		if (error)
 306			return error;
 307	}
 308
 309	/* Searched the whole thing & didn't find a maxlen free extent. */
 310	if (besti == -1)
 311		goto nospace;
 312
 313	/*
 314	 * Ensure bestlen is a multiple of prod, but don't return a too-short
 315	 * extent.
 316	 */
 317	bestlen = xfs_rtalloc_align_len(bestlen, prod);
 318	if (bestlen < minlen)
 319		goto nospace;
 320
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 321	/*
 322	 * Pick besti for bestlen & return that.
 323	 */
 324	*len = bestlen;
 325	*rtx = besti;
 326	return 0;
 327nospace:
 328	/* Allocation failed.  Set *nextp to the next block to try. */
 329	*nextp = next;
 330	return -ENOSPC;
 331}
 332
 333/*
 334 * Allocate an extent of length minlen<=len<=maxlen, starting at block
 335 * bno.  If we don't get maxlen then use prod to trim the length, if given.
 336 * Returns error; returns starting block in *rtx.
 337 * The lengths are all in rtextents.
 338 */
 339STATIC int
 340xfs_rtallocate_extent_exact(
 341	struct xfs_rtalloc_args	*args,
 342	xfs_rtxnum_t		start,	/* starting rtext number to allocate */
 343	xfs_rtxlen_t		minlen,	/* minimum length to allocate */
 344	xfs_rtxlen_t		maxlen,	/* maximum length to allocate */
 345	xfs_rtxlen_t		*len,	/* out: actual length allocated */
 346	xfs_rtxlen_t		prod,	/* extent product factor */
 347	xfs_rtxnum_t		*rtx)	/* out: start rtext allocated */
 348{
 349	xfs_rtxnum_t		next;	/* next rtext to try (dummy) */
 350	xfs_rtxlen_t		alloclen; /* candidate length */
 351	xfs_rtxlen_t		scanlen; /* number of free rtx to look for */
 352	int			isfree;	/* extent is free */
 353	int			error;
 354
 355	ASSERT(minlen % prod == 0);
 356	ASSERT(maxlen % prod == 0);
 357
 358	/* Make sure we don't run off the end of the rt volume. */
 359	scanlen = xfs_rtallocate_clamp_len(args->rtg, start, maxlen, prod);
 360	if (scanlen < minlen)
 361		return -ENOSPC;
 362
 363	/* Check if the range in question (for scanlen) is free. */
 364	error = xfs_rtcheck_range(args, start, scanlen, 1, &next, &isfree);
 365	if (error)
 
 
 
 366		return error;
 367
 368	if (isfree) {
 369		/* start to scanlen is all free; allocate it. */
 370		*len = scanlen;
 371		*rtx = start;
 
 
 
 
 
 
 372		return 0;
 373	}
 374
 375	/*
 376	 * If not, allocate what there is, if it's at least minlen.
 377	 */
 378	alloclen = next - start;
 379	if (alloclen < minlen)
 380		return -ENOSPC;
 381
 382	/* Ensure alloclen is a multiple of prod. */
 383	alloclen = xfs_rtalloc_align_len(alloclen, prod);
 384	if (alloclen < minlen)
 385		return -ENOSPC;
 386
 387	*len = alloclen;
 388	*rtx = start;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 389	return 0;
 390}
 391
 392/*
 393 * Allocate an extent of length minlen<=len<=maxlen, starting as near
 394 * to start as possible.  If we don't get maxlen then use prod to trim
 395 * the length, if given.  The lengths are all in rtextents.
 396 */
 397STATIC int
 398xfs_rtallocate_extent_near(
 399	struct xfs_rtalloc_args	*args,
 400	xfs_rtxnum_t		start,	/* starting rtext number to allocate */
 401	xfs_rtxlen_t		minlen,	/* minimum length to allocate */
 402	xfs_rtxlen_t		maxlen,	/* maximum length to allocate */
 403	xfs_rtxlen_t		*len,	/* out: actual length allocated */
 404	xfs_rtxlen_t		prod,	/* extent product factor */
 405	xfs_rtxnum_t		*rtx)	/* out: start rtext allocated */
 406{
 407	struct xfs_mount	*mp = args->mp;
 408	int			maxlog;	/* max useful extent from summary */
 409	xfs_fileoff_t		bbno;	/* bitmap block number */
 410	int			error;
 411	int			i;	/* bitmap block offset (loop control) */
 412	int			j;	/* secondary loop control */
 413	int			log2len; /* log2 of minlen */
 414	xfs_rtxnum_t		n;	/* next rtext to try */
 415
 416	ASSERT(minlen % prod == 0);
 417	ASSERT(maxlen % prod == 0);
 418
 
 419	/*
 420	 * If the block number given is off the end, silently set it to the last
 421	 * block.
 422	 */
 423	start = min(start, args->rtg->rtg_extents - 1);
 424
 425	/*
 426	 * Try the exact allocation first.
 427	 */
 428	error = xfs_rtallocate_extent_exact(args, start, minlen, maxlen, len,
 429			prod, rtx);
 430	if (error != -ENOSPC)
 431		return error;
 432
 433	bbno = xfs_rtx_to_rbmblock(mp, start);
 
 
 
 
 
 
 
 434	i = 0;
 435	j = -1;
 436	ASSERT(minlen != 0);
 437	log2len = xfs_highbit32(minlen);
 438	/*
 439	 * Loop over all bitmap blocks (bbno + i is current block).
 440	 */
 441	for (;;) {
 442		/*
 443		 * Get summary information of extents of all useful levels
 444		 * starting in this bitmap block.
 445		 */
 446		error = xfs_rtany_summary(args, log2len, mp->m_rsumlevels - 1,
 447				bbno + i, &maxlog);
 448		if (error)
 449			return error;
 450
 451		/*
 452		 * If there are any useful extents starting here, try
 453		 * allocating one.
 454		 */
 455		if (maxlog >= 0) {
 456			xfs_extlen_t maxavail =
 457				min_t(xfs_rtblock_t, maxlen,
 458				      (1ULL << (maxlog + 1)) - 1);
 459			/*
 460			 * On the positive side of the starting location.
 461			 */
 462			if (i >= 0) {
 463				/*
 464				 * Try to allocate an extent starting in
 465				 * this block.
 466				 */
 467				error = xfs_rtallocate_extent_block(args,
 468						bbno + i, minlen, maxavail, len,
 469						&n, prod, rtx);
 470				if (error != -ENOSPC)
 471					return error;
 
 
 
 
 
 
 
 
 472			}
 473			/*
 474			 * On the negative side of the starting location.
 475			 */
 476			else {		/* i < 0 */
 477				int	maxblocks;
 478
 479				/*
 480				 * Loop backwards to find the end of the extent
 481				 * we found in the realtime summary.
 482				 *
 483				 * maxblocks is the maximum possible number of
 484				 * bitmap blocks from the start of the extent
 485				 * to the end of the extent.
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 486				 */
 487				if (maxlog == 0)
 488					maxblocks = 0;
 489				else if (maxlog < mp->m_blkbit_log)
 490					maxblocks = 1;
 491				else
 492					maxblocks = 2 << (maxlog - mp->m_blkbit_log);
 493
 494				/*
 495				 * We need to check bbno + i + maxblocks down to
 496				 * bbno + i. We already checked bbno down to
 497				 * bbno + j + 1, so we don't need to check those
 498				 * again.
 499				 */
 500				j = min(i + maxblocks, j);
 501				for (; j >= i; j--) {
 502					error = xfs_rtallocate_extent_block(args,
 503							bbno + j, minlen,
 504							maxavail, len, &n, prod,
 505							rtx);
 506					if (error != -ENOSPC)
 507						return error;
 508				}
 509			}
 510		}
 511		/*
 512		 * Loop control.  If we were on the positive side, and there's
 513		 * still more blocks on the negative side, go there.
 514		 */
 515		if (i > 0 && (int)bbno - i >= 0)
 516			i = -i;
 517		/*
 518		 * If positive, and no more negative, but there are more
 519		 * positive, go there.
 520		 */
 521		else if (i > 0 && (int)bbno + i < mp->m_sb.sb_rbmblocks - 1)
 522			i++;
 523		/*
 524		 * If negative or 0 (just started), and there are positive
 525		 * blocks to go, go there.  The 0 case moves to block 1.
 526		 */
 527		else if (i <= 0 && (int)bbno - i < mp->m_sb.sb_rbmblocks - 1)
 528			i = 1 - i;
 529		/*
 530		 * If negative or 0 and there are more negative blocks,
 531		 * go there.
 532		 */
 533		else if (i <= 0 && (int)bbno + i > 0)
 534			i--;
 535		/*
 536		 * Must be done.  Return failure.
 537		 */
 538		else
 539			break;
 540	}
 541	return -ENOSPC;
 542}
 543
 544static int
 545xfs_rtalloc_sumlevel(
 546	struct xfs_rtalloc_args	*args,
 547	int			l,	/* level number */
 548	xfs_rtxlen_t		minlen,	/* minimum length to allocate */
 549	xfs_rtxlen_t		maxlen,	/* maximum length to allocate */
 550	xfs_rtxlen_t		prod,	/* extent product factor */
 551	xfs_rtxlen_t		*len,	/* out: actual length allocated */
 552	xfs_rtxnum_t		*rtx)	/* out: start rtext allocated */
 553{
 554	xfs_fileoff_t		i;	/* bitmap block number */
 555	int			error;
 556
 557	for (i = 0; i < args->mp->m_sb.sb_rbmblocks; i++) {
 558		xfs_suminfo_t	sum;	/* summary information for extents */
 559		xfs_rtxnum_t	n;	/* next rtext to be tried */
 560
 561		error = xfs_rtget_summary(args, l, i, &sum);
 562		if (error)
 563			return error;
 564
 565		/*
 566		 * Nothing there, on to the next block.
 567		 */
 568		if (!sum)
 569			continue;
 570
 571		/*
 572		 * Try allocating the extent.
 573		 */
 574		error = xfs_rtallocate_extent_block(args, i, minlen, maxlen,
 575				len, &n, prod, rtx);
 576		if (error != -ENOSPC)
 577			return error;
 578
 579		/*
 580		 * If the "next block to try" returned from the allocator is
 581		 * beyond the next bitmap block, skip to that bitmap block.
 582		 */
 583		if (xfs_rtx_to_rbmblock(args->mp, n) > i + 1)
 584			i = xfs_rtx_to_rbmblock(args->mp, n) - 1;
 585	}
 586
 587	return -ENOSPC;
 588}
 589
 590/*
 591 * Allocate an extent of length minlen<=len<=maxlen, with no position
 592 * specified.  If we don't get maxlen then use prod to trim
 593 * the length, if given.  The lengths are all in rtextents.
 594 */
 595STATIC int
 596xfs_rtallocate_extent_size(
 597	struct xfs_rtalloc_args	*args,
 598	xfs_rtxlen_t		minlen,	/* minimum length to allocate */
 599	xfs_rtxlen_t		maxlen,	/* maximum length to allocate */
 600	xfs_rtxlen_t		*len,	/* out: actual length allocated */
 601	xfs_rtxlen_t		prod,	/* extent product factor */
 602	xfs_rtxnum_t		*rtx)	/* out: start rtext allocated */
 603{
 604	int			error;
 605	int			l;	/* level number (loop control) */
 
 
 
 
 
 
 
 606
 607	ASSERT(minlen % prod == 0);
 608	ASSERT(maxlen % prod == 0);
 609	ASSERT(maxlen != 0);
 610
 611	/*
 612	 * Loop over all the levels starting with maxlen.
 613	 *
 614	 * At each level, look at all the bitmap blocks, to see if there are
 615	 * extents starting there that are long enough (>= maxlen).
 616	 *
 617	 * Note, only on the initial level can the allocation fail if the
 618	 * summary says there's an extent.
 619	 */
 620	for (l = xfs_highbit32(maxlen); l < args->mp->m_rsumlevels; l++) {
 621		error = xfs_rtalloc_sumlevel(args, l, minlen, maxlen, prod, len,
 622				rtx);
 623		if (error != -ENOSPC)
 624			return error;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 625	}
 626
 627	/*
 628	 * Didn't find any maxlen blocks.  Try smaller ones, unless we are
 629	 * looking for a fixed size extent.
 630	 */
 631	if (minlen > --maxlen)
 632		return -ENOSPC;
 
 
 633	ASSERT(minlen != 0);
 634	ASSERT(maxlen != 0);
 635
 636	/*
 637	 * Loop over sizes, from maxlen down to minlen.
 638	 *
 639	 * This time, when we do the allocations, allow smaller ones to succeed,
 640	 * but make sure the specified minlen/maxlen are in the possible range
 641	 * for this summary level.
 642	 */
 643	for (l = xfs_highbit32(maxlen); l >= xfs_highbit32(minlen); l--) {
 644		error = xfs_rtalloc_sumlevel(args, l,
 645				max_t(xfs_rtxlen_t, minlen, 1 << l),
 646				min_t(xfs_rtxlen_t, maxlen, (1 << (l + 1)) - 1),
 647				prod, len, rtx);
 648		if (error != -ENOSPC)
 649			return error;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 650	}
 651
 652	return -ENOSPC;
 
 
 
 653}
 654
 655static void
 656xfs_rtunmount_rtg(
 657	struct xfs_rtgroup	*rtg)
 658{
 659	int			i;
 
 
 
 
 
 
 
 
 
 
 
 
 660
 661	for (i = 0; i < XFS_RTGI_MAX; i++)
 662		xfs_rtginode_irele(&rtg->rtg_inodes[i]);
 663	kvfree(rtg->rtg_rsum_cache);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 664}
 665
 666static int
 667xfs_alloc_rsum_cache(
 668	struct xfs_rtgroup	*rtg,
 669	xfs_extlen_t		rbmblocks)
 670{
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 671	/*
 672	 * The rsum cache is initialized to the maximum value, which is
 673	 * trivially an upper bound on the maximum level with any free extents.
 674	 */
 675	rtg->rtg_rsum_cache = kvmalloc(rbmblocks, GFP_KERNEL);
 676	if (!rtg->rtg_rsum_cache)
 677		return -ENOMEM;
 678	memset(rtg->rtg_rsum_cache, -1, rbmblocks);
 679	return 0;
 680}
 681
 682/*
 683 * If we changed the rt extent size (meaning there was no rt volume previously)
 684 * and the root directory had EXTSZINHERIT and RTINHERIT set, it's possible
 685 * that the extent size hint on the root directory is no longer congruent with
 686 * the new rt extent size.  Log the rootdir inode to fix this.
 687 */
 688static int
 689xfs_growfs_rt_fixup_extsize(
 690	struct xfs_mount	*mp)
 691{
 692	struct xfs_inode	*ip = mp->m_rootip;
 693	struct xfs_trans	*tp;
 694	int			error = 0;
 695
 696	xfs_ilock(ip, XFS_IOLOCK_EXCL);
 697	if (!(ip->i_diflags & XFS_DIFLAG_RTINHERIT) ||
 698	    !(ip->i_diflags & XFS_DIFLAG_EXTSZINHERIT))
 699		goto out_iolock;
 
 700
 701	error = xfs_trans_alloc_inode(ip, &M_RES(mp)->tr_ichange, 0, 0, false,
 702			&tp);
 703	if (error)
 704		goto out_iolock;
 705
 706	xfs_trans_log_inode(tp, ip, XFS_ILOG_CORE);
 707	error = xfs_trans_commit(tp);
 708	xfs_iunlock(ip, XFS_ILOCK_EXCL);
 709
 710out_iolock:
 711	xfs_iunlock(ip, XFS_IOLOCK_EXCL);
 712	return error;
 713}
 714
 715/* Ensure that the rtgroup metadata inode is loaded, creating it if neeeded. */
 716static int
 717xfs_rtginode_ensure(
 718	struct xfs_rtgroup	*rtg,
 719	enum xfs_rtg_inodes	type)
 720{
 721	struct xfs_trans	*tp;
 722	int			error;
 723
 724	if (rtg->rtg_inodes[type])
 725		return 0;
 726
 727	error = xfs_trans_alloc_empty(rtg_mount(rtg), &tp);
 728	if (error)
 729		return error;
 730	error = xfs_rtginode_load(rtg, type, tp);
 731	xfs_trans_cancel(tp);
 732
 733	if (error != -ENOENT)
 734		return 0;
 735	return xfs_rtginode_create(rtg, type, true);
 736}
 737
 738static struct xfs_mount *
 739xfs_growfs_rt_alloc_fake_mount(
 740	const struct xfs_mount	*mp,
 741	xfs_rfsblock_t		rblocks,
 742	xfs_agblock_t		rextsize)
 
 
 
 
 
 
 743{
 744	struct xfs_mount	*nmp;
 745
 746	nmp = kmemdup(mp, sizeof(*mp), GFP_KERNEL);
 747	if (!nmp)
 748		return NULL;
 749	xfs_mount_sb_set_rextsize(nmp, &nmp->m_sb, rextsize);
 750	nmp->m_sb.sb_rblocks = rblocks;
 751	nmp->m_sb.sb_rextents = xfs_blen_to_rtbxlen(nmp, nmp->m_sb.sb_rblocks);
 752	nmp->m_sb.sb_rbmblocks = xfs_rtbitmap_blockcount(nmp);
 753	nmp->m_sb.sb_rextslog = xfs_compute_rextslog(nmp->m_sb.sb_rextents);
 754	if (xfs_has_rtgroups(nmp))
 755		nmp->m_sb.sb_rgcount = howmany_64(nmp->m_sb.sb_rextents,
 756						  nmp->m_sb.sb_rgextents);
 757	else
 758		nmp->m_sb.sb_rgcount = 1;
 759	nmp->m_rsumblocks = xfs_rtsummary_blockcount(nmp, &nmp->m_rsumlevels);
 760
 761	if (rblocks > 0)
 762		nmp->m_features |= XFS_FEAT_REALTIME;
 763
 764	/* recompute growfsrt reservation from new rsumsize */
 765	xfs_trans_resv_calc(nmp, &nmp->m_resv);
 766	return nmp;
 767}
 
 768
 769/* Free all the new space and return the number of extents actually freed. */
 770static int
 771xfs_growfs_rt_free_new(
 772	struct xfs_rtgroup	*rtg,
 773	struct xfs_rtalloc_args	*nargs,
 774	xfs_rtbxlen_t		*freed_rtx)
 
 
 
 
 
 
 
 775{
 776	struct xfs_mount	*mp = rtg_mount(rtg);
 777	xfs_rgnumber_t		rgno = rtg_rgno(rtg);
 778	xfs_rtxnum_t		start_rtx = 0, end_rtx;
 779
 780	if (rgno < mp->m_sb.sb_rgcount)
 781		start_rtx = xfs_rtgroup_extents(mp, rgno);
 782	end_rtx = xfs_rtgroup_extents(nargs->mp, rgno);
 
 
 
 
 783
 784	/*
 785	 * Compute the first new extent that we want to free, being careful to
 786	 * skip past a realtime superblock at the start of the realtime volume.
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 787	 */
 788	if (xfs_has_rtsb(nargs->mp) && rgno == 0 && start_rtx == 0)
 789		start_rtx++;
 790	*freed_rtx = end_rtx - start_rtx;
 791	return xfs_rtfree_range(nargs, start_rtx, *freed_rtx);
 792}
 793
 794static xfs_rfsblock_t
 795xfs_growfs_rt_nrblocks(
 796	struct xfs_rtgroup	*rtg,
 797	xfs_rfsblock_t		nrblocks,
 798	xfs_agblock_t		rextsize,
 799	xfs_fileoff_t		bmbno)
 800{
 801	struct xfs_mount	*mp = rtg_mount(rtg);
 802	xfs_rfsblock_t		step;
 803
 804	step = (bmbno + 1) * mp->m_rtx_per_rbmblock * rextsize;
 805	if (xfs_has_rtgroups(mp)) {
 806		xfs_rfsblock_t	rgblocks = mp->m_sb.sb_rgextents * rextsize;
 807
 808		step = min(rgblocks, step) + rgblocks * rtg_rgno(rtg);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 809	}
 810
 811	return min(nrblocks, step);
 812}
 813
 814/*
 815 * If the post-grow filesystem will have an rtsb; we're initializing the first
 816 * rtgroup; and the filesystem didn't have a realtime section, write the rtsb
 817 * now, and attach the rtsb buffer to the real mount.
 818 */
 819static int
 820xfs_growfs_rt_init_rtsb(
 821	const struct xfs_rtalloc_args	*nargs,
 822	const struct xfs_rtgroup	*rtg,
 823	const struct xfs_rtalloc_args	*args)
 824{
 825	struct xfs_mount		*mp = args->mp;
 826	struct xfs_buf			*rtsb_bp;
 827	int				error;
 
 
 
 
 
 
 
 
 
 
 
 
 828
 829	if (!xfs_has_rtsb(nargs->mp))
 830		return 0;
 831	if (rtg_rgno(rtg) > 0)
 832		return 0;
 833	if (mp->m_sb.sb_rblocks)
 834		return 0;
 835
 836	error = xfs_buf_get_uncached(mp->m_rtdev_targp, XFS_FSB_TO_BB(mp, 1),
 837			0, &rtsb_bp);
 838	if (error)
 839		return error;
 840
 841	rtsb_bp->b_maps[0].bm_bn = XFS_RTSB_DADDR;
 842	rtsb_bp->b_ops = &xfs_rtsb_buf_ops;
 843
 844	xfs_update_rtsb(rtsb_bp, mp->m_sb_bp);
 845	mp->m_rtsb_bp = rtsb_bp;
 846	error = xfs_bwrite(rtsb_bp);
 847	xfs_buf_unlock(rtsb_bp);
 848	return error;
 849}
 850
 851static int
 852xfs_growfs_rt_bmblock(
 853	struct xfs_rtgroup	*rtg,
 854	xfs_rfsblock_t		nrblocks,
 855	xfs_agblock_t		rextsize,
 856	xfs_fileoff_t		bmbno)
 857{
 858	struct xfs_mount	*mp = rtg_mount(rtg);
 859	struct xfs_inode	*rbmip = rtg->rtg_inodes[XFS_RTGI_BITMAP];
 860	struct xfs_inode	*rsumip = rtg->rtg_inodes[XFS_RTGI_SUMMARY];
 861	struct xfs_rtalloc_args	args = {
 862		.mp		= mp,
 863		.rtg		= rtg,
 864	};
 865	struct xfs_rtalloc_args	nargs = {
 866		.rtg		= rtg,
 867	};
 868	struct xfs_mount	*nmp;
 869	xfs_rtbxlen_t		freed_rtx;
 870	int			error;
 871
 872	/*
 873	 * Calculate new sb and mount fields for this round.  Also ensure the
 874	 * rtg_extents value is uptodate as the rtbitmap code relies on it.
 875	 */
 876	nmp = nargs.mp = xfs_growfs_rt_alloc_fake_mount(mp,
 877			xfs_growfs_rt_nrblocks(rtg, nrblocks, rextsize, bmbno),
 878			rextsize);
 879	if (!nmp)
 880		return -ENOMEM;
 881
 882	xfs_rtgroup_calc_geometry(nmp, rtg, rtg_rgno(rtg),
 883			nmp->m_sb.sb_rgcount, nmp->m_sb.sb_rextents);
 884
 885	/*
 886	 * Recompute the growfsrt reservation from the new rsumsize, so that the
 887	 * transaction below use the new, potentially larger value.
 888	 * */
 889	xfs_trans_resv_calc(nmp, &nmp->m_resv);
 890	error = xfs_trans_alloc(mp, &M_RES(nmp)->tr_growrtfree, 0, 0, 0,
 891			&args.tp);
 892	if (error)
 893		goto out_free;
 894	nargs.tp = args.tp;
 895
 896	xfs_rtgroup_lock(args.rtg, XFS_RTGLOCK_BITMAP);
 897	xfs_rtgroup_trans_join(args.tp, args.rtg, XFS_RTGLOCK_BITMAP);
 898
 899	/*
 900	 * Update the bitmap inode's size ondisk and incore.  We need to update
 901	 * the incore size so that inode inactivation won't punch what it thinks
 902	 * are "posteof" blocks.
 903	 */
 904	rbmip->i_disk_size = nmp->m_sb.sb_rbmblocks * nmp->m_sb.sb_blocksize;
 905	i_size_write(VFS_I(rbmip), rbmip->i_disk_size);
 906	xfs_trans_log_inode(args.tp, rbmip, XFS_ILOG_CORE);
 907
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 908	/*
 909	 * Update the summary inode's size.  We need to update the incore size
 910	 * so that inode inactivation won't punch what it thinks are "posteof"
 911	 * blocks.
 912	 */
 913	rsumip->i_disk_size = nmp->m_rsumblocks * nmp->m_sb.sb_blocksize;
 914	i_size_write(VFS_I(rsumip), rsumip->i_disk_size);
 915	xfs_trans_log_inode(args.tp, rsumip, XFS_ILOG_CORE);
 916
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 917	/*
 918	 * Copy summary data from old to new sizes when the real size (not
 919	 * block-aligned) changes.
 920	 */
 921	if (mp->m_sb.sb_rbmblocks != nmp->m_sb.sb_rbmblocks ||
 922	    mp->m_rsumlevels != nmp->m_rsumlevels) {
 923		error = xfs_rtcopy_summary(&args, &nargs);
 924		if (error)
 925			goto out_cancel;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 926	}
 
 
 
 
 
 
 
 927
 928	error = xfs_growfs_rt_init_rtsb(&nargs, rtg, &args);
 929	if (error)
 930		goto out_cancel;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 931
 932	/*
 933	 * Update superblock fields.
 
 
 
 
 
 
 
 
 
 934	 */
 935	if (nmp->m_sb.sb_rextsize != mp->m_sb.sb_rextsize)
 936		xfs_trans_mod_sb(args.tp, XFS_TRANS_SB_REXTSIZE,
 937			nmp->m_sb.sb_rextsize - mp->m_sb.sb_rextsize);
 938	if (nmp->m_sb.sb_rbmblocks != mp->m_sb.sb_rbmblocks)
 939		xfs_trans_mod_sb(args.tp, XFS_TRANS_SB_RBMBLOCKS,
 940			nmp->m_sb.sb_rbmblocks - mp->m_sb.sb_rbmblocks);
 941	if (nmp->m_sb.sb_rblocks != mp->m_sb.sb_rblocks)
 942		xfs_trans_mod_sb(args.tp, XFS_TRANS_SB_RBLOCKS,
 943			nmp->m_sb.sb_rblocks - mp->m_sb.sb_rblocks);
 944	if (nmp->m_sb.sb_rextents != mp->m_sb.sb_rextents)
 945		xfs_trans_mod_sb(args.tp, XFS_TRANS_SB_REXTENTS,
 946			nmp->m_sb.sb_rextents - mp->m_sb.sb_rextents);
 947	if (nmp->m_sb.sb_rextslog != mp->m_sb.sb_rextslog)
 948		xfs_trans_mod_sb(args.tp, XFS_TRANS_SB_REXTSLOG,
 949			nmp->m_sb.sb_rextslog - mp->m_sb.sb_rextslog);
 950	if (nmp->m_sb.sb_rgcount != mp->m_sb.sb_rgcount)
 951		xfs_trans_mod_sb(args.tp, XFS_TRANS_SB_RGCOUNT,
 952			nmp->m_sb.sb_rgcount - mp->m_sb.sb_rgcount);
 953
 954	/*
 955	 * Free the new extent.
 
 956	 */
 957	error = xfs_growfs_rt_free_new(rtg, &nargs, &freed_rtx);
 958	xfs_rtbuf_cache_relse(&nargs);
 959	if (error)
 960		goto out_cancel;
 961
 962	/*
 963	 * Mark more blocks free in the superblock.
 
 964	 */
 965	xfs_trans_mod_sb(args.tp, XFS_TRANS_SB_FREXTENTS, freed_rtx);
 966
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 967	/*
 968	 * Update the calculated values in the real mount structure.
 
 969	 */
 970	mp->m_rsumlevels = nmp->m_rsumlevels;
 971	mp->m_rsumblocks = nmp->m_rsumblocks;
 972
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 973	/*
 974	 * Recompute the growfsrt reservation from the new rsumsize.
 
 975	 */
 976	xfs_trans_resv_calc(mp, &mp->m_resv);
 977
 978	error = xfs_trans_commit(args.tp);
 979	if (error)
 980		goto out_free;
 981
 
 
 
 
 
 
 
 
 
 
 
 
 
 982	/*
 983	 * Ensure the mount RT feature flag is now set.
 984	 */
 985	mp->m_features |= XFS_FEAT_REALTIME;
 986
 987	kfree(nmp);
 988	return 0;
 989
 990out_cancel:
 991	xfs_trans_cancel(args.tp);
 992out_free:
 993	kfree(nmp);
 994	return error;
 995}
 996
 997static xfs_rtxnum_t
 998xfs_last_rtgroup_extents(
 999	struct xfs_mount	*mp)
1000{
1001	return mp->m_sb.sb_rextents -
1002		((xfs_rtxnum_t)(mp->m_sb.sb_rgcount - 1) *
1003		 mp->m_sb.sb_rgextents);
1004}
1005
1006/*
1007 * Calculate the last rbmblock currently used.
1008 *
1009 * This also deals with the case where there were no rtextents before.
1010 */
1011static xfs_fileoff_t
1012xfs_last_rt_bmblock(
1013	struct xfs_rtgroup	*rtg)
1014{
1015	struct xfs_mount	*mp = rtg_mount(rtg);
1016	xfs_rgnumber_t		rgno = rtg_rgno(rtg);
1017	xfs_fileoff_t		bmbno = 0;
 
 
 
 
 
 
1018
1019	ASSERT(!mp->m_sb.sb_rgcount || rgno >= mp->m_sb.sb_rgcount - 1);
1020
1021	if (mp->m_sb.sb_rgcount && rgno == mp->m_sb.sb_rgcount - 1) {
1022		xfs_rtxnum_t	nrext = xfs_last_rtgroup_extents(mp);
1023
1024		/* Also fill up the previous block if not entirely full. */
1025		bmbno = xfs_rtbitmap_blockcount_len(mp, nrext);
1026		if (xfs_rtx_to_rbmword(mp, nrext) != 0)
1027			bmbno--;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1028	}
1029
1030	return bmbno;
 
 
 
 
 
 
1031}
1032
1033/*
1034 * Allocate space to the bitmap and summary files, as necessary.
 
 
 
1035 */
1036static int
1037xfs_growfs_rt_alloc_blocks(
1038	struct xfs_rtgroup	*rtg,
1039	xfs_rfsblock_t		nrblocks,
1040	xfs_agblock_t		rextsize,
1041	xfs_extlen_t		*nrbmblocks)
 
 
 
1042{
1043	struct xfs_mount	*mp = rtg_mount(rtg);
1044	struct xfs_inode	*rbmip = rtg->rtg_inodes[XFS_RTGI_BITMAP];
1045	struct xfs_inode	*rsumip = rtg->rtg_inodes[XFS_RTGI_SUMMARY];
1046	xfs_extlen_t		orbmblocks = 0;
1047	xfs_extlen_t		orsumblocks = 0;
1048	struct xfs_mount	*nmp;
1049	int			error = 0;
1050
1051	nmp = xfs_growfs_rt_alloc_fake_mount(mp, nrblocks, rextsize);
1052	if (!nmp)
1053		return -ENOMEM;
1054	*nrbmblocks = nmp->m_sb.sb_rbmblocks;
1055
1056	if (xfs_has_rtgroups(mp)) {
 
 
 
 
 
 
 
 
 
 
 
1057		/*
1058		 * For file systems with the rtgroups feature, the RT bitmap and
1059		 * summary are always fully allocated, which means that we never
1060		 * need to grow the existing files.
1061		 *
1062		 * But we have to be careful to only fill the bitmap until the
1063		 * end of the actually used range.
1064		 */
1065		if (rtg_rgno(rtg) == nmp->m_sb.sb_rgcount - 1)
1066			*nrbmblocks = xfs_rtbitmap_blockcount_len(nmp,
1067					xfs_last_rtgroup_extents(nmp));
1068
1069		if (mp->m_sb.sb_rgcount &&
1070		    rtg_rgno(rtg) == mp->m_sb.sb_rgcount - 1)
1071			goto out_free;
1072	} else {
1073		/*
1074		 * Get the old block counts for bitmap and summary inodes.
1075		 * These can't change since other growfs callers are locked out.
1076		 */
1077		orbmblocks = XFS_B_TO_FSB(mp, rbmip->i_disk_size);
1078		orsumblocks = XFS_B_TO_FSB(mp, rsumip->i_disk_size);
 
 
1079	}
1080
1081	error = xfs_rtfile_initialize_blocks(rtg, XFS_RTGI_BITMAP, orbmblocks,
1082			nmp->m_sb.sb_rbmblocks, NULL);
1083	if (error)
1084		goto out_free;
1085	error = xfs_rtfile_initialize_blocks(rtg, XFS_RTGI_SUMMARY, orsumblocks,
1086			nmp->m_rsumblocks, NULL);
1087out_free:
1088	kfree(nmp);
1089	return error;
 
1090}
1091
1092static int
1093xfs_growfs_rtg(
1094	struct xfs_mount	*mp,
1095	xfs_rgnumber_t		rgno,
1096	xfs_rfsblock_t		nrblocks,
1097	xfs_agblock_t		rextsize)
1098{
1099	uint8_t			*old_rsum_cache = NULL;
1100	xfs_extlen_t		bmblocks;
1101	xfs_fileoff_t		bmbno;
1102	struct xfs_rtgroup	*rtg;
1103	unsigned int		i;
1104	int			error;
1105
1106	rtg = xfs_rtgroup_grab(mp, rgno);
1107	if (!rtg)
1108		return -EINVAL;
 
 
 
 
 
 
1109
1110	for (i = 0; i < XFS_RTGI_MAX; i++) {
1111		error = xfs_rtginode_ensure(rtg, i);
1112		if (error)
1113			goto out_rele;
 
 
 
 
 
 
1114	}
1115
1116	error = xfs_growfs_rt_alloc_blocks(rtg, nrblocks, rextsize, &bmblocks);
1117	if (error)
1118		goto out_rele;
1119
1120	if (bmblocks != rtg_mount(rtg)->m_sb.sb_rbmblocks) {
1121		old_rsum_cache = rtg->rtg_rsum_cache;
1122		error = xfs_alloc_rsum_cache(rtg, bmblocks);
1123		if (error)
1124			goto out_rele;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1125	}
1126
1127	for (bmbno = xfs_last_rt_bmblock(rtg); bmbno < bmblocks; bmbno++) {
1128		error = xfs_growfs_rt_bmblock(rtg, nrblocks, rextsize, bmbno);
1129		if (error)
1130			goto out_error;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1131	}
1132
1133	if (old_rsum_cache)
1134		kvfree(old_rsum_cache);
1135	xfs_rtgroup_rele(rtg);
1136	return 0;
1137
1138out_error:
1139	/*
1140	 * Reset rtg_extents to the old value if adding more blocks failed.
 
1141	 */
1142	xfs_rtgroup_calc_geometry(mp, rtg, rtg_rgno(rtg), mp->m_sb.sb_rgcount,
1143			mp->m_sb.sb_rextents);
1144	if (old_rsum_cache) {
1145		kvfree(rtg->rtg_rsum_cache);
1146		rtg->rtg_rsum_cache = old_rsum_cache;
 
 
 
 
 
 
 
 
 
1147	}
1148out_rele:
1149	xfs_rtgroup_rele(rtg);
1150	return error;
1151}
1152
1153static int
1154xfs_growfs_check_rtgeom(
1155	const struct xfs_mount	*mp,
1156	xfs_rfsblock_t		rblocks,
1157	xfs_extlen_t		rextsize)
1158{
1159	struct xfs_mount	*nmp;
1160	int			error = 0;
1161
1162	nmp = xfs_growfs_rt_alloc_fake_mount(mp, rblocks, rextsize);
1163	if (!nmp)
1164		return -ENOMEM;
1165
1166	/*
1167	 * New summary size can't be more than half the size of the log.  This
1168	 * prevents us from getting a log overflow, since we'll log basically
1169	 * the whole summary file at once.
1170	 */
1171	if (nmp->m_rsumblocks > (mp->m_sb.sb_logblocks >> 1))
1172		error = -EINVAL;
1173
1174	kfree(nmp);
1175	return error;
1176}
1177
1178/*
1179 * Compute the new number of rt groups and ensure that /rtgroups exists.
1180 *
1181 * Changing the rtgroup size is not allowed (even if the rt volume hasn't yet
1182 * been initialized) because the userspace ABI doesn't support it.
1183 */
1184static int
1185xfs_growfs_rt_prep_groups(
1186	struct xfs_mount	*mp,
1187	xfs_rfsblock_t		rblocks,
1188	xfs_extlen_t		rextsize,
1189	xfs_rgnumber_t		*new_rgcount)
1190{
1191	int			error;
1192
1193	*new_rgcount = howmany_64(rblocks, mp->m_sb.sb_rgextents * rextsize);
1194	if (*new_rgcount > XFS_MAX_RGNUMBER)
1195		return -EINVAL;
1196
1197	/* Make sure the /rtgroups dir has been created */
1198	if (!mp->m_rtdirip) {
1199		struct xfs_trans	*tp;
1200
1201		error = xfs_trans_alloc_empty(mp, &tp);
1202		if (error)
1203			return error;
1204		error = xfs_rtginode_load_parent(tp);
1205		xfs_trans_cancel(tp);
1206
1207		if (error == -ENOENT)
1208			error = xfs_rtginode_mkdir_parent(mp);
1209		if (error)
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1210			return error;
 
 
 
 
 
 
 
 
1211	}
1212
 
 
 
 
 
 
1213	return 0;
1214}
1215
1216static bool
1217xfs_grow_last_rtg(
1218	struct xfs_mount	*mp)
1219{
1220	if (!xfs_has_rtgroups(mp))
1221		return true;
1222	if (mp->m_sb.sb_rgcount == 0)
1223		return false;
1224	return xfs_rtgroup_extents(mp, mp->m_sb.sb_rgcount - 1) <=
1225			mp->m_sb.sb_rgextents;
1226}
1227
1228/*
1229 * Grow the realtime area of the filesystem.
1230 */
1231int
1232xfs_growfs_rt(
1233	struct xfs_mount	*mp,
1234	struct xfs_growfs_rt	*in)
1235{
1236	xfs_rgnumber_t		old_rgcount = mp->m_sb.sb_rgcount;
1237	xfs_rgnumber_t		new_rgcount = 1;
1238	xfs_rgnumber_t		rgno;
1239	struct xfs_buf		*bp;
1240	xfs_agblock_t		old_rextsize = mp->m_sb.sb_rextsize;
1241	int			error;
 
 
 
 
 
 
 
 
 
 
1242
 
 
 
 
1243	if (!capable(CAP_SYS_ADMIN))
1244		return -EPERM;
1245
1246	/* Needs to have been mounted with an rt device. */
1247	if (!XFS_IS_REALTIME_MOUNT(mp))
1248		return -EINVAL;
1249
1250	if (!mutex_trylock(&mp->m_growlock))
1251		return -EWOULDBLOCK;
1252
1253	/* Shrink not supported. */
1254	error = -EINVAL;
1255	if (in->newblocks <= mp->m_sb.sb_rblocks)
1256		goto out_unlock;
1257	/* Can only change rt extent size when adding rt volume. */
1258	if (mp->m_sb.sb_rblocks > 0 && in->extsize != mp->m_sb.sb_rextsize)
1259		goto out_unlock;
1260
1261	/* Range check the extent size. */
1262	if (XFS_FSB_TO_B(mp, in->extsize) > XFS_MAX_RTEXTSIZE ||
1263	    XFS_FSB_TO_B(mp, in->extsize) < XFS_MIN_RTEXTSIZE)
1264		goto out_unlock;
1265
1266	/* Unsupported realtime features. */
1267	error = -EOPNOTSUPP;
1268	if (xfs_has_quota(mp) && !xfs_has_rtgroups(mp))
1269		goto out_unlock;
1270	if (xfs_has_rmapbt(mp) || xfs_has_reflink(mp))
1271		goto out_unlock;
1272
1273	error = xfs_sb_validate_fsb_count(&mp->m_sb, in->newblocks);
1274	if (error)
1275		goto out_unlock;
1276	/*
1277	 * Read in the last block of the device, make sure it exists.
1278	 */
1279	error = xfs_buf_read_uncached(mp->m_rtdev_targp,
1280				XFS_FSB_TO_BB(mp, in->newblocks - 1),
1281				XFS_FSB_TO_BB(mp, 1), 0, &bp, NULL);
1282	if (error)
1283		goto out_unlock;
1284	xfs_buf_relse(bp);
1285
1286	/*
1287	 * Calculate new parameters.  These are the final values to be reached.
1288	 */
1289	error = -EINVAL;
1290	if (in->newblocks < in->extsize)
1291		goto out_unlock;
1292
1293	/* Make sure the new fs size won't cause problems with the log. */
1294	error = xfs_growfs_check_rtgeom(mp, in->newblocks, in->extsize);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1295	if (error)
1296		goto out_unlock;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1297
1298	if (xfs_has_rtgroups(mp)) {
1299		error = xfs_growfs_rt_prep_groups(mp, in->newblocks,
1300				in->extsize, &new_rgcount);
1301		if (error)
1302			goto out_unlock;
1303	}
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1304
1305	if (xfs_grow_last_rtg(mp)) {
1306		error = xfs_growfs_rtg(mp, old_rgcount - 1, in->newblocks,
1307				in->extsize);
1308		if (error)
1309			goto out_unlock;
1310	}
1311
1312	for (rgno = old_rgcount; rgno < new_rgcount; rgno++) {
1313		xfs_rtbxlen_t	rextents = div_u64(in->newblocks, in->extsize);
 
 
1314
1315		error = xfs_rtgroup_alloc(mp, rgno, new_rgcount, rextents);
1316		if (error)
1317			goto out_unlock;
1318
1319		error = xfs_growfs_rtg(mp, rgno, in->newblocks, in->extsize);
1320		if (error) {
1321			struct xfs_rtgroup	*rtg;
1322
1323			rtg = xfs_rtgroup_grab(mp, rgno);
1324			if (!WARN_ON_ONCE(!rtg)) {
1325				xfs_rtunmount_rtg(rtg);
1326				xfs_rtgroup_rele(rtg);
1327				xfs_rtgroup_free(mp, rgno);
1328			}
1329			break;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1330		}
1331	}
1332
1333	if (!error && old_rextsize != in->extsize)
1334		error = xfs_growfs_rt_fixup_extsize(mp);
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1335
1336	/*
1337	 * Update secondary superblocks now the physical grow has completed.
1338	 *
1339	 * Also do this in case of an error as we might have already
1340	 * successfully updated one or more RTGs and incremented sb_rgcount.
1341	 */
1342	if (!xfs_is_shutdown(mp)) {
1343		int error2 = xfs_update_secondary_sbs(mp);
1344
1345		if (!error)
1346			error = error2;
 
 
 
1347	}
1348
1349out_unlock:
1350	mutex_unlock(&mp->m_growlock);
1351	return error;
1352}
1353
1354/* Read the realtime superblock and attach it to the mount. */
1355int
1356xfs_rtmount_readsb(
1357	struct xfs_mount	*mp)
 
 
 
 
 
1358{
1359	struct xfs_buf		*bp;
1360	int			error;
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
 
1361
1362	if (!xfs_has_rtsb(mp))
1363		return 0;
1364	if (mp->m_sb.sb_rblocks == 0)
1365		return 0;
1366	if (mp->m_rtdev_targp == NULL) {
1367		xfs_warn(mp,
1368	"Filesystem has a realtime volume, use rtdev=device option");
1369		return -ENODEV;
1370	}
1371
1372	/* m_blkbb_log is not set up yet */
1373	error = xfs_buf_read_uncached(mp->m_rtdev_targp, XFS_RTSB_DADDR,
1374			mp->m_sb.sb_blocksize >> BBSHIFT, XBF_NO_IOACCT, &bp,
1375			&xfs_rtsb_buf_ops);
 
1376	if (error) {
1377		xfs_warn(mp, "rt sb validate failed with error %d.", error);
1378		/* bad CRC means corrupted metadata */
1379		if (error == -EFSBADCRC)
1380			error = -EFSCORRUPTED;
1381		return error;
1382	}
1383
1384	mp->m_rtsb_bp = bp;
1385	xfs_buf_unlock(bp);
 
 
 
 
 
 
 
 
 
 
 
 
1386	return 0;
1387}
1388
1389/* Detach the realtime superblock from the mount and free it. */
1390void
1391xfs_rtmount_freesb(
1392	struct xfs_mount	*mp)
1393{
1394	struct xfs_buf		*bp = mp->m_rtsb_bp;
1395
1396	if (!bp)
1397		return;
1398
1399	xfs_buf_lock(bp);
1400	mp->m_rtsb_bp = NULL;
1401	xfs_buf_relse(bp);
1402}
1403
1404/*
1405 * Initialize realtime fields in the mount structure.
1406 */
1407int				/* error */
1408xfs_rtmount_init(
1409	struct xfs_mount	*mp)	/* file system mount structure */
1410{
1411	struct xfs_buf		*bp;	/* buffer for last block of subvolume */
1412	xfs_daddr_t		d;	/* address of last block of subvolume */
1413	int			error;
1414
1415	if (mp->m_sb.sb_rblocks == 0)
 
1416		return 0;
1417	if (mp->m_rtdev_targp == NULL) {
1418		xfs_warn(mp,
1419	"Filesystem has a realtime volume, use rtdev=device option");
1420		return -ENODEV;
1421	}
1422
1423	mp->m_rsumblocks = xfs_rtsummary_blockcount(mp, &mp->m_rsumlevels);
1424
 
 
 
1425	/*
1426	 * Check that the realtime section is an ok size.
1427	 */
1428	d = (xfs_daddr_t)XFS_FSB_TO_BB(mp, mp->m_sb.sb_rblocks);
1429	if (XFS_BB_TO_FSB(mp, d) != mp->m_sb.sb_rblocks) {
1430		xfs_warn(mp, "realtime mount -- %llu != %llu",
1431			(unsigned long long) XFS_BB_TO_FSB(mp, d),
1432			(unsigned long long) mp->m_sb.sb_rblocks);
1433		return -EFBIG;
1434	}
1435	error = xfs_buf_read_uncached(mp->m_rtdev_targp,
1436					d - XFS_FSB_TO_BB(mp, 1),
1437					XFS_FSB_TO_BB(mp, 1), 0, &bp, NULL);
1438	if (error) {
1439		xfs_warn(mp, "realtime device size check failed");
1440		return error;
1441	}
1442	xfs_buf_relse(bp);
1443	return 0;
1444}
1445
1446static int
1447xfs_rtalloc_count_frextent(
1448	struct xfs_rtgroup		*rtg,
1449	struct xfs_trans		*tp,
1450	const struct xfs_rtalloc_rec	*rec,
1451	void				*priv)
1452{
1453	uint64_t			*valp = priv;
1454
1455	*valp += rec->ar_extcount;
1456	return 0;
1457}
1458
1459/*
1460 * Reinitialize the number of free realtime extents from the realtime bitmap.
1461 * Callers must ensure that there is no other activity in the filesystem.
1462 */
1463int
1464xfs_rtalloc_reinit_frextents(
1465	struct xfs_mount	*mp)
1466{
1467	uint64_t		val = 0;
1468	int			error;
1469
1470	struct xfs_rtgroup	*rtg = NULL;
1471
1472	while ((rtg = xfs_rtgroup_next(mp, rtg))) {
1473		xfs_rtgroup_lock(rtg, XFS_RTGLOCK_BITMAP_SHARED);
1474		error = xfs_rtalloc_query_all(rtg, NULL,
1475				xfs_rtalloc_count_frextent, &val);
1476		xfs_rtgroup_unlock(rtg, XFS_RTGLOCK_BITMAP_SHARED);
1477		if (error) {
1478			xfs_rtgroup_rele(rtg);
1479			return error;
1480		}
1481	}
1482
1483	spin_lock(&mp->m_sb_lock);
1484	mp->m_sb.sb_frextents = val;
1485	spin_unlock(&mp->m_sb_lock);
1486	percpu_counter_set(&mp->m_frextents, mp->m_sb.sb_frextents);
1487	return 0;
1488}
1489
1490/*
1491 * Read in the bmbt of an rt metadata inode so that we never have to load them
1492 * at runtime.  This enables the use of shared ILOCKs for rtbitmap scans.  Use
1493 * an empty transaction to avoid deadlocking on loops in the bmbt.
1494 */
1495static inline int
1496xfs_rtmount_iread_extents(
1497	struct xfs_trans	*tp,
1498	struct xfs_inode	*ip)
1499{
1500	int			error;
1501
1502	xfs_ilock(ip, XFS_ILOCK_EXCL);
1503
1504	error = xfs_iread_extents(tp, ip, XFS_DATA_FORK);
1505	if (error)
1506		goto out_unlock;
1507
1508	if (xfs_inode_has_attr_fork(ip)) {
1509		error = xfs_iread_extents(tp, ip, XFS_ATTR_FORK);
1510		if (error)
1511			goto out_unlock;
1512	}
1513
1514out_unlock:
1515	xfs_iunlock(ip, XFS_ILOCK_EXCL);
1516	return error;
1517}
1518
1519static int
1520xfs_rtmount_rtg(
1521	struct xfs_mount	*mp,
1522	struct xfs_trans	*tp,
1523	struct xfs_rtgroup	*rtg)
1524{
1525	int			error, i;
1526
1527	for (i = 0; i < XFS_RTGI_MAX; i++) {
1528		error = xfs_rtginode_load(rtg, i, tp);
1529		if (error)
1530			return error;
1531
1532		if (rtg->rtg_inodes[i]) {
1533			error = xfs_rtmount_iread_extents(tp,
1534					rtg->rtg_inodes[i]);
1535			if (error)
1536				return error;
1537		}
1538	}
1539
1540	return xfs_alloc_rsum_cache(rtg, mp->m_sb.sb_rbmblocks);
1541}
1542
1543/*
1544 * Get the bitmap and summary inodes and the summary cache into the mount
1545 * structure at mount time.
1546 */
1547int
1548xfs_rtmount_inodes(
1549	struct xfs_mount	*mp)
1550{
1551	struct xfs_trans	*tp;
1552	struct xfs_rtgroup	*rtg = NULL;
1553	int			error;
1554
1555	error = xfs_trans_alloc_empty(mp, &tp);
 
 
 
1556	if (error)
1557		return error;
1558
1559	if (xfs_has_rtgroups(mp) && mp->m_sb.sb_rgcount > 0) {
1560		error = xfs_rtginode_load_parent(tp);
1561		if (error)
1562			goto out_cancel;
 
1563	}
1564
1565	while ((rtg = xfs_rtgroup_next(mp, rtg))) {
1566		error = xfs_rtmount_rtg(mp, tp, rtg);
1567		if (error) {
1568			xfs_rtgroup_rele(rtg);
1569			xfs_rtunmount_inodes(mp);
1570			break;
1571		}
1572	}
1573
1574out_cancel:
1575	xfs_trans_cancel(tp);
1576	return error;
1577}
1578
1579void
1580xfs_rtunmount_inodes(
1581	struct xfs_mount	*mp)
1582{
1583	struct xfs_rtgroup	*rtg = NULL;
1584
1585	while ((rtg = xfs_rtgroup_next(mp, rtg)))
1586		xfs_rtunmount_rtg(rtg);
1587	xfs_rtginode_irele(&mp->m_rtdirip);
1588}
1589
1590/*
1591 * Pick an extent for allocation at the start of a new realtime file.
1592 * Use the sequence number stored in the atime field of the bitmap inode.
1593 * Translate this to a fraction of the rtextents, and return the product
1594 * of rtextents and the fraction.
1595 * The fraction sequence is 0, 1/2, 1/4, 3/4, 1/8, ..., 7/8, 1/16, ...
1596 */
1597static xfs_rtxnum_t
1598xfs_rtpick_extent(
1599	struct xfs_rtgroup	*rtg,
1600	struct xfs_trans	*tp,
1601	xfs_rtxlen_t		len)		/* allocation length (rtextents) */
1602{
1603	struct xfs_mount	*mp = rtg_mount(rtg);
1604	struct xfs_inode	*rbmip = rtg->rtg_inodes[XFS_RTGI_BITMAP];
1605	xfs_rtxnum_t		b = 0;		/* result rtext */
1606	int			log2;		/* log of sequence number */
1607	uint64_t		resid;		/* residual after log removed */
1608	uint64_t		seq;		/* sequence number of file creation */
1609	struct timespec64	ts;		/* timespec in inode */
1610
1611	xfs_assert_ilocked(rbmip, XFS_ILOCK_EXCL);
1612
1613	ts = inode_get_atime(VFS_I(rbmip));
1614	if (!(rbmip->i_diflags & XFS_DIFLAG_NEWRTBM)) {
1615		rbmip->i_diflags |= XFS_DIFLAG_NEWRTBM;
1616		seq = 0;
1617	} else {
1618		seq = ts.tv_sec;
1619	}
1620	log2 = xfs_highbit64(seq);
1621	if (log2 != -1) {
1622		resid = seq - (1ULL << log2);
1623		b = (mp->m_sb.sb_rextents * ((resid << 1) + 1ULL)) >>
1624		    (log2 + 1);
1625		if (b >= mp->m_sb.sb_rextents)
1626			div64_u64_rem(b, mp->m_sb.sb_rextents, &b);
1627		if (b + len > mp->m_sb.sb_rextents)
1628			b = mp->m_sb.sb_rextents - len;
1629	}
1630	ts.tv_sec = seq + 1;
1631	inode_set_atime_to_ts(VFS_I(rbmip), ts);
1632	xfs_trans_log_inode(tp, rbmip, XFS_ILOG_CORE);
1633	return b;
1634}
1635
1636static void
1637xfs_rtalloc_align_minmax(
1638	xfs_rtxlen_t		*raminlen,
1639	xfs_rtxlen_t		*ramaxlen,
1640	xfs_rtxlen_t		*prod)
1641{
1642	xfs_rtxlen_t		newmaxlen = *ramaxlen;
1643	xfs_rtxlen_t		newminlen = *raminlen;
1644	xfs_rtxlen_t		slack;
1645
1646	slack = newmaxlen % *prod;
1647	if (slack)
1648		newmaxlen -= slack;
1649	slack = newminlen % *prod;
1650	if (slack)
1651		newminlen += *prod - slack;
1652
1653	/*
1654	 * If adjusting for extent size hint alignment produces an invalid
1655	 * min/max len combination, go ahead without it.
1656	 */
1657	if (newmaxlen < newminlen) {
1658		*prod = 1;
1659		return;
1660	}
1661	*ramaxlen = newmaxlen;
1662	*raminlen = newminlen;
1663}
1664
1665/* Given a free extent, find any part of it that isn't busy, if possible. */
1666STATIC bool
1667xfs_rtalloc_check_busy(
1668	struct xfs_rtalloc_args	*args,
1669	xfs_rtxnum_t		start,
1670	xfs_rtxlen_t		minlen_rtx,
1671	xfs_rtxlen_t		maxlen_rtx,
1672	xfs_rtxlen_t		len_rtx,
1673	xfs_rtxlen_t		prod,
1674	xfs_rtxnum_t		rtx,
1675	xfs_rtxlen_t		*reslen,
1676	xfs_rtxnum_t		*resrtx,
1677	unsigned		*busy_gen)
1678{
1679	struct xfs_rtgroup	*rtg = args->rtg;
1680	struct xfs_mount	*mp = rtg_mount(rtg);
1681	xfs_agblock_t		rgbno = xfs_rtx_to_rgbno(rtg, rtx);
1682	xfs_rgblock_t		min_rgbno = xfs_rtx_to_rgbno(rtg, start);
1683	xfs_extlen_t		minlen = xfs_rtxlen_to_extlen(mp, minlen_rtx);
1684	xfs_extlen_t		len = xfs_rtxlen_to_extlen(mp, len_rtx);
1685	xfs_extlen_t		diff;
1686	bool			busy;
1687
1688	busy = xfs_extent_busy_trim(rtg_group(rtg), minlen,
1689			xfs_rtxlen_to_extlen(mp, maxlen_rtx), &rgbno, &len,
1690			busy_gen);
1691
1692	/*
1693	 * If we have a largish extent that happens to start before min_rgbno,
1694	 * see if we can shift it into range...
1695	 */
1696	if (rgbno < min_rgbno && rgbno + len > min_rgbno) {
1697		diff = min_rgbno - rgbno;
1698		if (len > diff) {
1699			rgbno += diff;
1700			len -= diff;
1701		}
1702	}
1703
1704	if (prod > 1 && len >= minlen) {
1705		xfs_rgblock_t	aligned_rgbno = roundup(rgbno, prod);
1706
1707		diff = aligned_rgbno - rgbno;
1708
1709		*resrtx = xfs_rgbno_to_rtx(mp, aligned_rgbno);
1710		*reslen = xfs_extlen_to_rtxlen(mp,
1711				diff >= len ? 0 : len - diff);
1712	} else {
1713		*resrtx = xfs_rgbno_to_rtx(mp, rgbno);
1714		*reslen = xfs_extlen_to_rtxlen(mp, len);
1715	}
1716
1717	return busy;
1718}
1719
1720/*
1721 * Adjust the given free extent so that it isn't busy, or flush the log and
1722 * wait for the space to become unbusy.  Only needed for rtgroups.
1723 */
1724STATIC int
1725xfs_rtallocate_adjust_for_busy(
1726	struct xfs_rtalloc_args	*args,
1727	xfs_rtxnum_t		start,
1728	xfs_rtxlen_t		minlen,
1729	xfs_rtxlen_t		maxlen,
1730	xfs_rtxlen_t		*len,
1731	xfs_rtxlen_t		prod,
1732	xfs_rtxnum_t		*rtx)
1733{
1734	xfs_rtxnum_t		resrtx;
1735	xfs_rtxlen_t		reslen;
1736	unsigned		busy_gen;
1737	bool			busy;
1738	int			error;
1739
1740again:
1741	busy = xfs_rtalloc_check_busy(args, start, minlen, maxlen, *len, prod,
1742			*rtx, &reslen, &resrtx, &busy_gen);
1743	if (!busy)
1744		return 0;
1745
1746	if (reslen < minlen || (start != 0 && resrtx != *rtx)) {
1747		/*
1748		 * Enough of the extent was busy that we cannot satisfy the
1749		 * allocation, or this is a near allocation and the start of
1750		 * the extent is busy.  Flush the log and wait for the busy
1751		 * situation to resolve.
1752		 */
1753		trace_xfs_rtalloc_extent_busy(args->rtg, start, minlen, maxlen,
1754				*len, prod, *rtx, busy_gen);
1755
1756		error = xfs_extent_busy_flush(args->tp, rtg_group(args->rtg),
1757				busy_gen, 0);
1758		if (error)
1759			return error;
1760
1761		goto again;
1762	}
1763
1764	/* Some of the free space wasn't busy, hand that back to the caller. */
1765	trace_xfs_rtalloc_extent_busy_trim(args->rtg, *rtx, *len, resrtx,
1766			reslen);
1767	*len = reslen;
1768	*rtx = resrtx;
1769
1770	return 0;
1771}
1772
1773static int
1774xfs_rtallocate_rtg(
1775	struct xfs_trans	*tp,
1776	xfs_rgnumber_t		rgno,
1777	xfs_rtblock_t		bno_hint,
1778	xfs_rtxlen_t		minlen,
1779	xfs_rtxlen_t		maxlen,
1780	xfs_rtxlen_t		prod,
1781	bool			wasdel,
1782	bool			initial_user_data,
1783	bool			*rtlocked,
1784	xfs_rtblock_t		*bno,
1785	xfs_extlen_t		*blen)
1786{
1787	struct xfs_rtalloc_args	args = {
1788		.mp		= tp->t_mountp,
1789		.tp		= tp,
1790	};
1791	xfs_rtxnum_t		start = 0;
1792	xfs_rtxnum_t		rtx;
1793	xfs_rtxlen_t		len = 0;
1794	int			error = 0;
1795
1796	args.rtg = xfs_rtgroup_grab(args.mp, rgno);
1797	if (!args.rtg)
1798		return -ENOSPC;
1799
1800	/*
1801	 * We need to lock out modifications to both the RT bitmap and summary
1802	 * inodes for finding free space in xfs_rtallocate_extent_{near,size}
1803	 * and join the bitmap and summary inodes for the actual allocation
1804	 * down in xfs_rtallocate_range.
1805	 *
1806	 * For RTG-enabled file system we don't want to join the inodes to the
1807	 * transaction until we are committed to allocate to allocate from this
1808	 * RTG so that only one inode of each type is locked at a time.
1809	 *
1810	 * But for pre-RTG file systems we need to already to join the bitmap
1811	 * inode to the transaction for xfs_rtpick_extent, which bumps the
1812	 * sequence number in it, so we'll have to join the inode to the
1813	 * transaction early here.
1814	 *
1815	 * This is all a bit messy, but at least the mess is contained in
1816	 * this function.
1817	 */
1818	if (!*rtlocked) {
1819		xfs_rtgroup_lock(args.rtg, XFS_RTGLOCK_BITMAP);
1820		if (!xfs_has_rtgroups(args.mp))
1821			xfs_rtgroup_trans_join(tp, args.rtg,
1822					XFS_RTGLOCK_BITMAP);
1823		*rtlocked = true;
1824	}
1825
1826	/*
1827	 * For an allocation to an empty file at offset 0, pick an extent that
1828	 * will space things out in the rt area.
1829	 */
1830	if (bno_hint != NULLFSBLOCK)
1831		start = xfs_rtb_to_rtx(args.mp, bno_hint);
1832	else if (!xfs_has_rtgroups(args.mp) && initial_user_data)
1833		start = xfs_rtpick_extent(args.rtg, tp, maxlen);
1834
1835	if (start) {
1836		error = xfs_rtallocate_extent_near(&args, start, minlen, maxlen,
1837				&len, prod, &rtx);
1838		/*
1839		 * If we can't allocate near a specific rt extent, try again
1840		 * without locality criteria.
1841		 */
1842		if (error == -ENOSPC) {
1843			xfs_rtbuf_cache_relse(&args);
1844			error = 0;
1845		}
1846	}
1847
1848	if (!error) {
1849		error = xfs_rtallocate_extent_size(&args, minlen, maxlen, &len,
1850				prod, &rtx);
1851	}
1852
1853	if (error) {
1854		if (xfs_has_rtgroups(args.mp))
1855			goto out_unlock;
1856		goto out_release;
1857	}
1858
1859	if (xfs_has_rtgroups(args.mp)) {
1860		error = xfs_rtallocate_adjust_for_busy(&args, start, minlen,
1861				maxlen, &len, prod, &rtx);
1862		if (error)
1863			goto out_unlock;
1864
1865		xfs_rtgroup_trans_join(tp, args.rtg, XFS_RTGLOCK_BITMAP);
1866	}
1867
1868	error = xfs_rtallocate_range(&args, rtx, len);
1869	if (error)
1870		goto out_release;
1871
1872	xfs_trans_mod_sb(tp, wasdel ?
1873			XFS_TRANS_SB_RES_FREXTENTS : XFS_TRANS_SB_FREXTENTS,
1874			-(long)len);
1875	*bno = xfs_rtx_to_rtb(args.rtg, rtx);
1876	*blen = xfs_rtxlen_to_extlen(args.mp, len);
1877
1878out_release:
1879	xfs_rtgroup_rele(args.rtg);
1880	xfs_rtbuf_cache_relse(&args);
1881	return error;
1882out_unlock:
1883	xfs_rtgroup_unlock(args.rtg, XFS_RTGLOCK_BITMAP);
1884	*rtlocked = false;
1885	goto out_release;
1886}
1887
1888static int
1889xfs_rtallocate_rtgs(
1890	struct xfs_trans	*tp,
1891	xfs_fsblock_t		bno_hint,
1892	xfs_rtxlen_t		minlen,
1893	xfs_rtxlen_t		maxlen,
1894	xfs_rtxlen_t		prod,
1895	bool			wasdel,
1896	bool			initial_user_data,
1897	xfs_rtblock_t		*bno,
1898	xfs_extlen_t		*blen)
1899{
1900	struct xfs_mount	*mp = tp->t_mountp;
1901	xfs_rgnumber_t		start_rgno, rgno;
1902	int			error;
1903
1904	/*
1905	 * For now this just blindly iterates over the RTGs for an initial
1906	 * allocation.  We could try to keep an in-memory rtg_longest member
1907	 * to avoid the locking when just looking for big enough free space,
1908	 * but for now this keeps things simple.
1909	 */
1910	if (bno_hint != NULLFSBLOCK)
1911		start_rgno = xfs_rtb_to_rgno(mp, bno_hint);
1912	else
1913		start_rgno = (atomic_inc_return(&mp->m_rtgrotor) - 1) %
1914				mp->m_sb.sb_rgcount;
1915
1916	rgno = start_rgno;
1917	do {
1918		bool		rtlocked = false;
1919
1920		error = xfs_rtallocate_rtg(tp, rgno, bno_hint, minlen, maxlen,
1921				prod, wasdel, initial_user_data, &rtlocked,
1922				bno, blen);
1923		if (error != -ENOSPC)
1924			return error;
1925		ASSERT(!rtlocked);
1926
1927		if (++rgno == mp->m_sb.sb_rgcount)
1928			rgno = 0;
1929		bno_hint = NULLFSBLOCK;
1930	} while (rgno != start_rgno);
1931
1932	return -ENOSPC;
1933}
1934
1935static int
1936xfs_rtallocate_align(
1937	struct xfs_bmalloca	*ap,
1938	xfs_rtxlen_t		*ralen,
1939	xfs_rtxlen_t		*raminlen,
1940	xfs_rtxlen_t		*prod,
1941	bool			*noalign)
1942{
1943	struct xfs_mount	*mp = ap->ip->i_mount;
1944	xfs_fileoff_t		orig_offset = ap->offset;
1945	xfs_extlen_t		minlen = mp->m_sb.sb_rextsize;
1946	xfs_extlen_t            align;	/* minimum allocation alignment */
1947	xfs_extlen_t		mod;	/* product factor for allocators */
1948	int			error;
1949
1950	if (*noalign) {
1951		align = mp->m_sb.sb_rextsize;
1952	} else {
1953		align = xfs_get_extsz_hint(ap->ip);
1954		if (!align)
1955			align = 1;
1956		if (align == mp->m_sb.sb_rextsize)
1957			*noalign = true;
1958	}
1959
1960	error = xfs_bmap_extsize_align(mp, &ap->got, &ap->prev, align, 1,
1961			ap->eof, 0, ap->conv, &ap->offset, &ap->length);
1962	if (error)
1963		return error;
1964	ASSERT(ap->length);
1965	ASSERT(xfs_extlen_to_rtxmod(mp, ap->length) == 0);
1966
1967	/*
1968	 * If we shifted the file offset downward to satisfy an extent size
1969	 * hint, increase minlen by that amount so that the allocator won't
1970	 * give us an allocation that's too short to cover at least one of the
1971	 * blocks that the caller asked for.
1972	 */
1973	if (ap->offset != orig_offset)
1974		minlen += orig_offset - ap->offset;
1975
1976	/*
1977	 * Set ralen to be the actual requested length in rtextents.
1978	 *
1979	 * If the old value was close enough to XFS_BMBT_MAX_EXTLEN that
1980	 * we rounded up to it, cut it back so it's valid again.
1981	 * Note that if it's a really large request (bigger than
1982	 * XFS_BMBT_MAX_EXTLEN), we don't hear about that number, and can't
1983	 * adjust the starting point to match it.
1984	 */
1985	*ralen = xfs_extlen_to_rtxlen(mp, min(ap->length, XFS_MAX_BMBT_EXTLEN));
1986	*raminlen = max_t(xfs_rtxlen_t, 1, xfs_extlen_to_rtxlen(mp, minlen));
1987	ASSERT(*raminlen > 0);
1988	ASSERT(*raminlen <= *ralen);
1989
1990	/*
1991	 * Only bother calculating a real prod factor if offset & length are
1992	 * perfectly aligned, otherwise it will just get us in trouble.
1993	 */
1994	div_u64_rem(ap->offset, align, &mod);
1995	if (mod || ap->length % align)
1996		*prod = 1;
1997	else
1998		*prod = xfs_extlen_to_rtxlen(mp, align);
1999
2000	if (*prod > 1)
2001		xfs_rtalloc_align_minmax(raminlen, ralen, prod);
2002	return 0;
2003}
2004
2005int
2006xfs_bmap_rtalloc(
2007	struct xfs_bmalloca	*ap)
2008{
2009	xfs_fileoff_t		orig_offset = ap->offset;
2010	xfs_rtxlen_t		prod = 0;  /* product factor for allocators */
2011	xfs_rtxlen_t		ralen = 0; /* realtime allocation length */
2012	xfs_rtblock_t		bno_hint = NULLRTBLOCK;
2013	xfs_extlen_t		orig_length = ap->length;
2014	xfs_rtxlen_t		raminlen;
2015	bool			rtlocked = false;
2016	bool			noalign = false;
2017	bool			initial_user_data =
2018		ap->datatype & XFS_ALLOC_INITIAL_USER_DATA;
2019	int			error;
2020
2021retry:
2022	error = xfs_rtallocate_align(ap, &ralen, &raminlen, &prod, &noalign);
2023	if (error)
2024		return error;
2025
2026	if (xfs_bmap_adjacent(ap))
2027		bno_hint = ap->blkno;
2028
2029	if (xfs_has_rtgroups(ap->ip->i_mount)) {
2030		error = xfs_rtallocate_rtgs(ap->tp, bno_hint, raminlen, ralen,
2031				prod, ap->wasdel, initial_user_data,
2032				&ap->blkno, &ap->length);
2033	} else {
2034		error = xfs_rtallocate_rtg(ap->tp, 0, bno_hint, raminlen, ralen,
2035				prod, ap->wasdel, initial_user_data,
2036				&rtlocked, &ap->blkno, &ap->length);
2037	}
2038
2039	if (error == -ENOSPC) {
2040		if (!noalign) {
2041			/*
2042			 * We previously enlarged the request length to try to
2043			 * satisfy an extent size hint.  The allocator didn't
2044			 * return anything, so reset the parameters to the
2045			 * original values and try again without alignment
2046			 * criteria.
2047			 */
2048			ap->offset = orig_offset;
2049			ap->length = orig_length;
2050			noalign = true;
2051			goto retry;
2052		}
2053
2054		ap->blkno = NULLFSBLOCK;
2055		ap->length = 0;
2056		return 0;
2057	}
2058	if (error)
2059		return error;
2060
2061	xfs_bmap_alloc_account(ap);
2062	return 0;
2063}