log.c 24.9 KB
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/*
 * Copyright (C) Sistina Software, Inc.  1997-2003 All rights reserved.
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 * Copyright (C) 2004-2007 Red Hat, Inc.  All rights reserved.
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 *
 * This copyrighted material is made available to anyone wishing to use,
 * modify, copy, or redistribute it subject to the terms and conditions
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 * of the GNU General Public License version 2.
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 */

#include <linux/sched.h>
#include <linux/slab.h>
#include <linux/spinlock.h>
#include <linux/completion.h>
#include <linux/buffer_head.h>
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#include <linux/gfs2_ondisk.h>
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#include <linux/crc32.h>
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#include <linux/delay.h>
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#include <linux/kthread.h>
#include <linux/freezer.h>
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#include <linux/bio.h>
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#include <linux/blkdev.h>
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#include <linux/writeback.h>
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#include <linux/list_sort.h>
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#include "gfs2.h"
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#include "incore.h"
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#include "bmap.h"
#include "glock.h"
#include "log.h"
#include "lops.h"
#include "meta_io.h"
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#include "util.h"
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#include "dir.h"
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#include "trace_gfs2.h"
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/**
 * gfs2_struct2blk - compute stuff
 * @sdp: the filesystem
 * @nstruct: the number of structures
 * @ssize: the size of the structures
 *
 * Compute the number of log descriptor blocks needed to hold a certain number
 * of structures of a certain size.
 *
 * Returns: the number of blocks needed (minimum is always 1)
 */

unsigned int gfs2_struct2blk(struct gfs2_sbd *sdp, unsigned int nstruct,
			     unsigned int ssize)
{
	unsigned int blks;
	unsigned int first, second;

	blks = 1;
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	first = (sdp->sd_sb.sb_bsize - sizeof(struct gfs2_log_descriptor)) / ssize;
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	if (nstruct > first) {
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		second = (sdp->sd_sb.sb_bsize -
			  sizeof(struct gfs2_meta_header)) / ssize;
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		blks += DIV_ROUND_UP(nstruct - first, second);
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	}

	return blks;
}

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/**
 * gfs2_remove_from_ail - Remove an entry from the ail lists, updating counters
 * @mapping: The associated mapping (maybe NULL)
 * @bd: The gfs2_bufdata to remove
 *
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 * The ail lock _must_ be held when calling this function
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 *
 */

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void gfs2_remove_from_ail(struct gfs2_bufdata *bd)
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{
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	bd->bd_tr = NULL;
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	list_del_init(&bd->bd_ail_st_list);
	list_del_init(&bd->bd_ail_gl_list);
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	atomic_dec(&bd->bd_gl->gl_ail_count);
	brelse(bd->bd_bh);
}

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/**
 * gfs2_ail1_start_one - Start I/O on a part of the AIL
 * @sdp: the filesystem
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 * @wbc: The writeback control structure
 * @ai: The ail structure
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 *
 */

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static int gfs2_ail1_start_one(struct gfs2_sbd *sdp,
			       struct writeback_control *wbc,
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			       struct gfs2_trans *tr)
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__releases(&sdp->sd_ail_lock)
__acquires(&sdp->sd_ail_lock)
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{
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	struct gfs2_glock *gl = NULL;
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	struct address_space *mapping;
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	struct gfs2_bufdata *bd, *s;
	struct buffer_head *bh;

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	list_for_each_entry_safe_reverse(bd, s, &tr->tr_ail1_list, bd_ail_st_list) {
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		bh = bd->bd_bh;
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		gfs2_assert(sdp, bd->bd_tr == tr);
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		if (!buffer_busy(bh)) {
			if (!buffer_uptodate(bh))
				gfs2_io_error_bh(sdp, bh);
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			list_move(&bd->bd_ail_st_list, &tr->tr_ail2_list);
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			continue;
		}

		if (!buffer_dirty(bh))
			continue;
		if (gl == bd->bd_gl)
			continue;
		gl = bd->bd_gl;
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		list_move(&bd->bd_ail_st_list, &tr->tr_ail1_list);
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		mapping = bh->b_page->mapping;
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		if (!mapping)
			continue;
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		spin_unlock(&sdp->sd_ail_lock);
		generic_writepages(mapping, wbc);
		spin_lock(&sdp->sd_ail_lock);
		if (wbc->nr_to_write <= 0)
			break;
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		return 1;
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	}
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	return 0;
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}
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/**
 * gfs2_ail1_flush - start writeback of some ail1 entries 
 * @sdp: The super block
 * @wbc: The writeback control structure
 *
 * Writes back some ail1 entries, according to the limits in the
 * writeback control structure
 */
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void gfs2_ail1_flush(struct gfs2_sbd *sdp, struct writeback_control *wbc)
{
	struct list_head *head = &sdp->sd_ail1_list;
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	struct gfs2_trans *tr;
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	struct blk_plug plug;
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	trace_gfs2_ail_flush(sdp, wbc, 1);
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	blk_start_plug(&plug);
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	spin_lock(&sdp->sd_ail_lock);
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restart:
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	list_for_each_entry_reverse(tr, head, tr_list) {
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		if (wbc->nr_to_write <= 0)
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			break;
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		if (gfs2_ail1_start_one(sdp, wbc, tr))
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			goto restart;
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	}
	spin_unlock(&sdp->sd_ail_lock);
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	blk_finish_plug(&plug);
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	trace_gfs2_ail_flush(sdp, wbc, 0);
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}

/**
 * gfs2_ail1_start - start writeback of all ail1 entries
 * @sdp: The superblock
 */

static void gfs2_ail1_start(struct gfs2_sbd *sdp)
{
	struct writeback_control wbc = {
		.sync_mode = WB_SYNC_NONE,
		.nr_to_write = LONG_MAX,
		.range_start = 0,
		.range_end = LLONG_MAX,
	};

	return gfs2_ail1_flush(sdp, &wbc);
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}

/**
 * gfs2_ail1_empty_one - Check whether or not a trans in the AIL has been synced
 * @sdp: the filesystem
 * @ai: the AIL entry
 *
 */

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static void gfs2_ail1_empty_one(struct gfs2_sbd *sdp, struct gfs2_trans *tr)
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{
	struct gfs2_bufdata *bd, *s;
	struct buffer_head *bh;

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	list_for_each_entry_safe_reverse(bd, s, &tr->tr_ail1_list,
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					 bd_ail_st_list) {
		bh = bd->bd_bh;
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		gfs2_assert(sdp, bd->bd_tr == tr);
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		if (buffer_busy(bh))
			continue;
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		if (!buffer_uptodate(bh))
			gfs2_io_error_bh(sdp, bh);
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		list_move(&bd->bd_ail_st_list, &tr->tr_ail2_list);
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	}

}

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/**
 * gfs2_ail1_empty - Try to empty the ail1 lists
 * @sdp: The superblock
 *
 * Tries to empty the ail1 lists, starting with the oldest first
 */
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static int gfs2_ail1_empty(struct gfs2_sbd *sdp)
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{
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	struct gfs2_trans *tr, *s;
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	int oldest_tr = 1;
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	int ret;

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	spin_lock(&sdp->sd_ail_lock);
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	list_for_each_entry_safe_reverse(tr, s, &sdp->sd_ail1_list, tr_list) {
		gfs2_ail1_empty_one(sdp, tr);
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		if (list_empty(&tr->tr_ail1_list) && oldest_tr)
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			list_move(&tr->tr_list, &sdp->sd_ail2_list);
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		else
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			oldest_tr = 0;
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	}
	ret = list_empty(&sdp->sd_ail1_list);
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	spin_unlock(&sdp->sd_ail_lock);
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	return ret;
}

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static void gfs2_ail1_wait(struct gfs2_sbd *sdp)
{
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	struct gfs2_trans *tr;
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	struct gfs2_bufdata *bd;
	struct buffer_head *bh;

	spin_lock(&sdp->sd_ail_lock);
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	list_for_each_entry_reverse(tr, &sdp->sd_ail1_list, tr_list) {
		list_for_each_entry(bd, &tr->tr_ail1_list, bd_ail_st_list) {
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			bh = bd->bd_bh;
			if (!buffer_locked(bh))
				continue;
			get_bh(bh);
			spin_unlock(&sdp->sd_ail_lock);
			wait_on_buffer(bh);
			brelse(bh);
			return;
		}
	}
	spin_unlock(&sdp->sd_ail_lock);
}
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/**
 * gfs2_ail2_empty_one - Check whether or not a trans in the AIL has been synced
 * @sdp: the filesystem
 * @ai: the AIL entry
 *
 */

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static void gfs2_ail2_empty_one(struct gfs2_sbd *sdp, struct gfs2_trans *tr)
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{
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	struct list_head *head = &tr->tr_ail2_list;
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	struct gfs2_bufdata *bd;

	while (!list_empty(head)) {
		bd = list_entry(head->prev, struct gfs2_bufdata,
				bd_ail_st_list);
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		gfs2_assert(sdp, bd->bd_tr == tr);
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		gfs2_remove_from_ail(bd);
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	}
}

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static void ail2_empty(struct gfs2_sbd *sdp, unsigned int new_tail)
{
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	struct gfs2_trans *tr, *safe;
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	unsigned int old_tail = sdp->sd_log_tail;
	int wrap = (new_tail < old_tail);
	int a, b, rm;

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	spin_lock(&sdp->sd_ail_lock);
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	list_for_each_entry_safe(tr, safe, &sdp->sd_ail2_list, tr_list) {
		a = (old_tail <= tr->tr_first);
		b = (tr->tr_first < new_tail);
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		rm = (wrap) ? (a || b) : (a && b);
		if (!rm)
			continue;

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		gfs2_ail2_empty_one(sdp, tr);
		list_del(&tr->tr_list);
		gfs2_assert_warn(sdp, list_empty(&tr->tr_ail1_list));
		gfs2_assert_warn(sdp, list_empty(&tr->tr_ail2_list));
		kfree(tr);
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	}

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	spin_unlock(&sdp->sd_ail_lock);
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}

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/**
 * gfs2_log_release - Release a given number of log blocks
 * @sdp: The GFS2 superblock
 * @blks: The number of blocks
 *
 */

void gfs2_log_release(struct gfs2_sbd *sdp, unsigned int blks)
{

	atomic_add(blks, &sdp->sd_log_blks_free);
	trace_gfs2_log_blocks(sdp, blks);
	gfs2_assert_withdraw(sdp, atomic_read(&sdp->sd_log_blks_free) <=
				  sdp->sd_jdesc->jd_blocks);
	up_read(&sdp->sd_log_flush_lock);
}

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/**
 * gfs2_log_reserve - Make a log reservation
 * @sdp: The GFS2 superblock
 * @blks: The number of blocks to reserve
 *
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 * Note that we never give out the last few blocks of the journal. Thats
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 * due to the fact that there is a small number of header blocks
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 * associated with each log flush. The exact number can't be known until
 * flush time, so we ensure that we have just enough free blocks at all
 * times to avoid running out during a log flush.
 *
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 * We no longer flush the log here, instead we wake up logd to do that
 * for us. To avoid the thundering herd and to ensure that we deal fairly
 * with queued waiters, we use an exclusive wait. This means that when we
 * get woken with enough journal space to get our reservation, we need to
 * wake the next waiter on the list.
 *
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 * Returns: errno
 */

int gfs2_log_reserve(struct gfs2_sbd *sdp, unsigned int blks)
{
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	int ret = 0;
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	unsigned reserved_blks = 7 * (4096 / sdp->sd_vfs->s_blocksize);
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	unsigned wanted = blks + reserved_blks;
	DEFINE_WAIT(wait);
	int did_wait = 0;
	unsigned int free_blocks;
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	if (gfs2_assert_warn(sdp, blks) ||
	    gfs2_assert_warn(sdp, blks <= sdp->sd_jdesc->jd_blocks))
		return -EINVAL;
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retry:
	free_blocks = atomic_read(&sdp->sd_log_blks_free);
	if (unlikely(free_blocks <= wanted)) {
		do {
			prepare_to_wait_exclusive(&sdp->sd_log_waitq, &wait,
					TASK_UNINTERRUPTIBLE);
			wake_up(&sdp->sd_logd_waitq);
			did_wait = 1;
			if (atomic_read(&sdp->sd_log_blks_free) <= wanted)
				io_schedule();
			free_blocks = atomic_read(&sdp->sd_log_blks_free);
		} while(free_blocks <= wanted);
		finish_wait(&sdp->sd_log_waitq, &wait);
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	}
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	atomic_inc(&sdp->sd_reserving_log);
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	if (atomic_cmpxchg(&sdp->sd_log_blks_free, free_blocks,
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				free_blocks - blks) != free_blocks) {
		if (atomic_dec_and_test(&sdp->sd_reserving_log))
			wake_up(&sdp->sd_reserving_log_wait);
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		goto retry;
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	}
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	trace_gfs2_log_blocks(sdp, -blks);
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	/*
	 * If we waited, then so might others, wake them up _after_ we get
	 * our share of the log.
	 */
	if (unlikely(did_wait))
		wake_up(&sdp->sd_log_waitq);
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	down_read(&sdp->sd_log_flush_lock);
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	if (unlikely(!test_bit(SDF_JOURNAL_LIVE, &sdp->sd_flags))) {
		gfs2_log_release(sdp, blks);
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		ret = -EROFS;
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	}
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	if (atomic_dec_and_test(&sdp->sd_reserving_log))
		wake_up(&sdp->sd_reserving_log_wait);
	return ret;
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}

/**
 * log_distance - Compute distance between two journal blocks
 * @sdp: The GFS2 superblock
 * @newer: The most recent journal block of the pair
 * @older: The older journal block of the pair
 *
 *   Compute the distance (in the journal direction) between two
 *   blocks in the journal
 *
 * Returns: the distance in blocks
 */

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static inline unsigned int log_distance(struct gfs2_sbd *sdp, unsigned int newer,
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					unsigned int older)
{
	int dist;

	dist = newer - older;
	if (dist < 0)
		dist += sdp->sd_jdesc->jd_blocks;

	return dist;
}

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/**
 * calc_reserved - Calculate the number of blocks to reserve when
 *                 refunding a transaction's unused buffers.
 * @sdp: The GFS2 superblock
 *
 * This is complex.  We need to reserve room for all our currently used
 * metadata buffers (e.g. normal file I/O rewriting file time stamps) and 
 * all our journaled data buffers for journaled files (e.g. files in the 
 * meta_fs like rindex, or files for which chattr +j was done.)
 * If we don't reserve enough space, gfs2_log_refund and gfs2_log_flush
 * will count it as free space (sd_log_blks_free) and corruption will follow.
 *
 * We can have metadata bufs and jdata bufs in the same journal.  So each
 * type gets its own log header, for which we need to reserve a block.
 * In fact, each type has the potential for needing more than one header 
 * in cases where we have more buffers than will fit on a journal page.
 * Metadata journal entries take up half the space of journaled buffer entries.
 * Thus, metadata entries have buf_limit (502) and journaled buffers have
 * databuf_limit (251) before they cause a wrap around.
 *
 * Also, we need to reserve blocks for revoke journal entries and one for an
 * overall header for the lot.
 *
 * Returns: the number of blocks reserved
 */
static unsigned int calc_reserved(struct gfs2_sbd *sdp)
{
	unsigned int reserved = 0;
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	unsigned int mbuf;
	unsigned int dbuf;
	struct gfs2_trans *tr = sdp->sd_log_tr;
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	if (tr) {
		mbuf = tr->tr_num_buf_new - tr->tr_num_buf_rm;
		dbuf = tr->tr_num_databuf_new - tr->tr_num_databuf_rm;
		reserved = mbuf + dbuf;
		/* Account for header blocks */
		reserved += DIV_ROUND_UP(mbuf, buf_limit(sdp));
		reserved += DIV_ROUND_UP(dbuf, databuf_limit(sdp));
	}
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	if (sdp->sd_log_commited_revoke > 0)
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		reserved += gfs2_struct2blk(sdp, sdp->sd_log_commited_revoke,
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					  sizeof(u64));
	/* One for the overall header */
	if (reserved)
		reserved++;
	return reserved;
}

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static unsigned int current_tail(struct gfs2_sbd *sdp)
{
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	struct gfs2_trans *tr;
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	unsigned int tail;

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	spin_lock(&sdp->sd_ail_lock);
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	if (list_empty(&sdp->sd_ail1_list)) {
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		tail = sdp->sd_log_head;
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	} else {
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		tr = list_entry(sdp->sd_ail1_list.prev, struct gfs2_trans,
				tr_list);
		tail = tr->tr_first;
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	}

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	spin_unlock(&sdp->sd_ail_lock);
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	return tail;
}

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static void log_pull_tail(struct gfs2_sbd *sdp, unsigned int new_tail)
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{
	unsigned int dist = log_distance(sdp, new_tail, sdp->sd_log_tail);

	ail2_empty(sdp, new_tail);

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	atomic_add(dist, &sdp->sd_log_blks_free);
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	trace_gfs2_log_blocks(sdp, dist);
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	gfs2_assert_withdraw(sdp, atomic_read(&sdp->sd_log_blks_free) <=
			     sdp->sd_jdesc->jd_blocks);
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	sdp->sd_log_tail = new_tail;
}


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static void log_flush_wait(struct gfs2_sbd *sdp)
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{
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	DEFINE_WAIT(wait);

	if (atomic_read(&sdp->sd_log_in_flight)) {
		do {
			prepare_to_wait(&sdp->sd_log_flush_wait, &wait,
					TASK_UNINTERRUPTIBLE);
			if (atomic_read(&sdp->sd_log_in_flight))
				io_schedule();
		} while(atomic_read(&sdp->sd_log_in_flight));
		finish_wait(&sdp->sd_log_flush_wait, &wait);
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	}
}

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static int ip_cmp(void *priv, struct list_head *a, struct list_head *b)
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{
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	struct gfs2_inode *ipa, *ipb;
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	ipa = list_entry(a, struct gfs2_inode, i_ordered);
	ipb = list_entry(b, struct gfs2_inode, i_ordered);
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	if (ipa->i_no_addr < ipb->i_no_addr)
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		return -1;
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	if (ipa->i_no_addr > ipb->i_no_addr)
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		return 1;
	return 0;
}

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static void gfs2_ordered_write(struct gfs2_sbd *sdp)
{
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	struct gfs2_inode *ip;
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	LIST_HEAD(written);

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	spin_lock(&sdp->sd_ordered_lock);
	list_sort(NULL, &sdp->sd_log_le_ordered, &ip_cmp);
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	while (!list_empty(&sdp->sd_log_le_ordered)) {
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		ip = list_entry(sdp->sd_log_le_ordered.next, struct gfs2_inode, i_ordered);
		list_move(&ip->i_ordered, &written);
		if (ip->i_inode.i_mapping->nrpages == 0)
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			continue;
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		spin_unlock(&sdp->sd_ordered_lock);
		filemap_fdatawrite(ip->i_inode.i_mapping);
		spin_lock(&sdp->sd_ordered_lock);
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	}
	list_splice(&written, &sdp->sd_log_le_ordered);
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	spin_unlock(&sdp->sd_ordered_lock);
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}

static void gfs2_ordered_wait(struct gfs2_sbd *sdp)
{
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	struct gfs2_inode *ip;
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	spin_lock(&sdp->sd_ordered_lock);
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	while (!list_empty(&sdp->sd_log_le_ordered)) {
556 557 558 559
		ip = list_entry(sdp->sd_log_le_ordered.next, struct gfs2_inode, i_ordered);
		list_del(&ip->i_ordered);
		WARN_ON(!test_and_clear_bit(GIF_ORDERED, &ip->i_flags));
		if (ip->i_inode.i_mapping->nrpages == 0)
560
			continue;
561 562 563
		spin_unlock(&sdp->sd_ordered_lock);
		filemap_fdatawait(ip->i_inode.i_mapping);
		spin_lock(&sdp->sd_ordered_lock);
564
	}
565 566 567 568 569 570 571 572 573 574 575
	spin_unlock(&sdp->sd_ordered_lock);
}

void gfs2_ordered_del_inode(struct gfs2_inode *ip)
{
	struct gfs2_sbd *sdp = GFS2_SB(&ip->i_inode);

	spin_lock(&sdp->sd_ordered_lock);
	if (test_and_clear_bit(GIF_ORDERED, &ip->i_flags))
		list_del(&ip->i_ordered);
	spin_unlock(&sdp->sd_ordered_lock);
576 577
}

578 579 580 581 582 583 584
void gfs2_add_revoke(struct gfs2_sbd *sdp, struct gfs2_bufdata *bd)
{
	struct buffer_head *bh = bd->bd_bh;
	struct gfs2_glock *gl = bd->bd_gl;

	bh->b_private = NULL;
	bd->bd_blkno = bh->b_blocknr;
585 586
	gfs2_remove_from_ail(bd); /* drops ref on bh */
	bd->bd_bh = NULL;
587 588 589 590 591 592 593 594 595 596 597 598 599 600 601 602 603 604 605 606 607 608 609 610 611 612 613 614 615 616 617 618 619 620 621 622 623 624 625 626 627 628 629 630 631 632 633 634 635 636 637 638 639 640 641 642 643 644 645 646 647
	bd->bd_ops = &gfs2_revoke_lops;
	sdp->sd_log_num_revoke++;
	atomic_inc(&gl->gl_revokes);
	set_bit(GLF_LFLUSH, &gl->gl_flags);
	list_add(&bd->bd_list, &sdp->sd_log_le_revoke);
}

void gfs2_write_revokes(struct gfs2_sbd *sdp)
{
	struct gfs2_trans *tr;
	struct gfs2_bufdata *bd, *tmp;
	int have_revokes = 0;
	int max_revokes = (sdp->sd_sb.sb_bsize - sizeof(struct gfs2_log_descriptor)) / sizeof(u64);

	gfs2_ail1_empty(sdp);
	spin_lock(&sdp->sd_ail_lock);
	list_for_each_entry(tr, &sdp->sd_ail1_list, tr_list) {
		list_for_each_entry(bd, &tr->tr_ail2_list, bd_ail_st_list) {
			if (list_empty(&bd->bd_list)) {
				have_revokes = 1;
				goto done;
			}
		}
	}
done:
	spin_unlock(&sdp->sd_ail_lock);
	if (have_revokes == 0)
		return;
	while (sdp->sd_log_num_revoke > max_revokes)
		max_revokes += (sdp->sd_sb.sb_bsize - sizeof(struct gfs2_meta_header)) / sizeof(u64);
	max_revokes -= sdp->sd_log_num_revoke;
	if (!sdp->sd_log_num_revoke) {
		atomic_dec(&sdp->sd_log_blks_free);
		/* If no blocks have been reserved, we need to also
		 * reserve a block for the header */
		if (!sdp->sd_log_blks_reserved)
			atomic_dec(&sdp->sd_log_blks_free);
	}
	gfs2_log_lock(sdp);
	spin_lock(&sdp->sd_ail_lock);
	list_for_each_entry(tr, &sdp->sd_ail1_list, tr_list) {
		list_for_each_entry_safe(bd, tmp, &tr->tr_ail2_list, bd_ail_st_list) {
			if (max_revokes == 0)
				goto out_of_blocks;
			if (!list_empty(&bd->bd_list))
				continue;
			gfs2_add_revoke(sdp, bd);
			max_revokes--;
		}
	}
out_of_blocks:
	spin_unlock(&sdp->sd_ail_lock);
	gfs2_log_unlock(sdp);

	if (!sdp->sd_log_num_revoke) {
		atomic_inc(&sdp->sd_log_blks_free);
		if (!sdp->sd_log_blks_reserved)
			atomic_inc(&sdp->sd_log_blks_free);
	}
}

648 649 650 651 652 653 654
/**
 * log_write_header - Get and initialize a journal header buffer
 * @sdp: The GFS2 superblock
 *
 * Returns: the initialized log buffer descriptor
 */

655
static void log_write_header(struct gfs2_sbd *sdp, u32 flags)
656 657 658 659
{
	struct gfs2_log_header *lh;
	unsigned int tail;
	u32 hash;
660 661
	int rw = WRITE_FLUSH_FUA | REQ_META;
	struct page *page = mempool_alloc(gfs2_page_pool, GFP_NOIO);
662
	enum gfs2_freeze_state state = atomic_read(&sdp->sd_freeze_state);
663 664
	lh = page_address(page);
	clear_page(lh);
665

666 667
	gfs2_assert_withdraw(sdp, (state != SFS_FROZEN));

668 669 670 671 672 673 674 675 676 677 678
	tail = current_tail(sdp);

	lh->lh_header.mh_magic = cpu_to_be32(GFS2_MAGIC);
	lh->lh_header.mh_type = cpu_to_be32(GFS2_METATYPE_LH);
	lh->lh_header.__pad0 = cpu_to_be64(0);
	lh->lh_header.mh_format = cpu_to_be32(GFS2_FORMAT_LH);
	lh->lh_header.mh_jid = cpu_to_be32(sdp->sd_jdesc->jd_jid);
	lh->lh_sequence = cpu_to_be64(sdp->sd_log_sequence++);
	lh->lh_flags = cpu_to_be32(flags);
	lh->lh_tail = cpu_to_be32(tail);
	lh->lh_blkno = cpu_to_be32(sdp->sd_log_flush_head);
679
	hash = gfs2_disk_hash(page_address(page), sizeof(struct gfs2_log_header));
680 681 682 683 684
	lh->lh_hash = cpu_to_be32(hash);

	if (test_bit(SDF_NOBARRIERS, &sdp->sd_flags)) {
		gfs2_ordered_wait(sdp);
		log_flush_wait(sdp);
685
		rw = WRITE_SYNC | REQ_META | REQ_PRIO;
686 687
	}

688 689 690 691
	sdp->sd_log_idle = (tail == sdp->sd_log_flush_head);
	gfs2_log_write_page(sdp, page);
	gfs2_log_flush_bio(sdp, rw);
	log_flush_wait(sdp);
692 693 694 695 696

	if (sdp->sd_log_tail != tail)
		log_pull_tail(sdp, tail);
}

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/**
698
 * gfs2_log_flush - flush incore transaction(s)
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 * @sdp: the filesystem
 * @gl: The glock structure to flush.  If NULL, flush the whole incore log
 *
 */

704 705
void gfs2_log_flush(struct gfs2_sbd *sdp, struct gfs2_glock *gl,
		    enum gfs2_flush_type type)
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{
707
	struct gfs2_trans *tr;
708
	enum gfs2_freeze_state state = atomic_read(&sdp->sd_freeze_state);
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709

710
	down_write(&sdp->sd_log_flush_lock);
711

712 713 714 715
	/* Log might have been flushed while we waited for the flush lock */
	if (gl && !test_bit(GLF_LFLUSH, &gl->gl_flags)) {
		up_write(&sdp->sd_log_flush_lock);
		return;
716
	}
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	trace_gfs2_log_flush(sdp, 1);
718

719 720
	sdp->sd_log_flush_head = sdp->sd_log_head;
	sdp->sd_log_flush_wrapped = 0;
721 722 723 724 725
	tr = sdp->sd_log_tr;
	if (tr) {
		sdp->sd_log_tr = NULL;
		INIT_LIST_HEAD(&tr->tr_ail1_list);
		INIT_LIST_HEAD(&tr->tr_ail2_list);
726
		tr->tr_first = sdp->sd_log_flush_head;
727 728
		if (unlikely (state == SFS_FROZEN))
			gfs2_assert_withdraw(sdp, !tr->tr_num_buf_new && !tr->tr_num_databuf_new);
729
	}
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731 732
	if (unlikely(state == SFS_FROZEN))
		gfs2_assert_withdraw(sdp, !sdp->sd_log_num_revoke);
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	gfs2_assert_withdraw(sdp,
			sdp->sd_log_num_revoke == sdp->sd_log_commited_revoke);

736
	gfs2_ordered_write(sdp);
737
	lops_before_commit(sdp, tr);
738
	gfs2_log_flush_bio(sdp, WRITE);
739

740
	if (sdp->sd_log_head != sdp->sd_log_flush_head) {
741
		log_flush_wait(sdp);
742
		log_write_header(sdp, 0);
743
	} else if (sdp->sd_log_tail != current_tail(sdp) && !sdp->sd_log_idle){
744
		atomic_dec(&sdp->sd_log_blks_free); /* Adjust for unreserved buffer */
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Steven Whitehouse 已提交
745
		trace_gfs2_log_blocks(sdp, -1);
746
		log_write_header(sdp, 0);
747
	}
748
	lops_after_commit(sdp, tr);
749

750 751
	gfs2_log_lock(sdp);
	sdp->sd_log_head = sdp->sd_log_flush_head;
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	sdp->sd_log_blks_reserved = 0;
	sdp->sd_log_commited_revoke = 0;
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David Teigland 已提交
754

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755
	spin_lock(&sdp->sd_ail_lock);
756 757 758
	if (tr && !list_empty(&tr->tr_ail1_list)) {
		list_add(&tr->tr_list, &sdp->sd_ail1_list);
		tr = NULL;
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	}
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760
	spin_unlock(&sdp->sd_ail_lock);
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	gfs2_log_unlock(sdp);
762 763 764 765 766 767 768 769 770 771 772 773 774 775 776 777 778

	if (type != NORMAL_FLUSH) {
		if (!sdp->sd_log_idle) {
			for (;;) {
				gfs2_ail1_start(sdp);
				gfs2_ail1_wait(sdp);
				if (gfs2_ail1_empty(sdp))
					break;
			}
			atomic_dec(&sdp->sd_log_blks_free); /* Adjust for unreserved buffer */
			trace_gfs2_log_blocks(sdp, -1);
			sdp->sd_log_flush_wrapped = 0;
			log_write_header(sdp, 0);
			sdp->sd_log_head = sdp->sd_log_flush_head;
		}
		if (type == SHUTDOWN_FLUSH || type == FREEZE_FLUSH)
			gfs2_log_shutdown(sdp);
779 780
		if (type == FREEZE_FLUSH)
			atomic_set(&sdp->sd_freeze_state, SFS_FROZEN);
781 782
	}

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783
	trace_gfs2_log_flush(sdp, 0);
784
	up_write(&sdp->sd_log_flush_lock);
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David Teigland 已提交
785

786
	kfree(tr);
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787 788
}

789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809
/**
 * gfs2_merge_trans - Merge a new transaction into a cached transaction
 * @old: Original transaction to be expanded
 * @new: New transaction to be merged
 */

static void gfs2_merge_trans(struct gfs2_trans *old, struct gfs2_trans *new)
{
	WARN_ON_ONCE(old->tr_attached != 1);

	old->tr_num_buf_new	+= new->tr_num_buf_new;
	old->tr_num_databuf_new	+= new->tr_num_databuf_new;
	old->tr_num_buf_rm	+= new->tr_num_buf_rm;
	old->tr_num_databuf_rm	+= new->tr_num_databuf_rm;
	old->tr_num_revoke	+= new->tr_num_revoke;
	old->tr_num_revoke_rm	+= new->tr_num_revoke_rm;

	list_splice_tail_init(&new->tr_databuf, &old->tr_databuf);
	list_splice_tail_init(&new->tr_buf, &old->tr_buf);
}

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static void log_refund(struct gfs2_sbd *sdp, struct gfs2_trans *tr)
{
812
	unsigned int reserved;
813
	unsigned int unused;
814
	unsigned int maxres;
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David Teigland 已提交
815 816 817

	gfs2_log_lock(sdp);

818 819 820
	if (sdp->sd_log_tr) {
		gfs2_merge_trans(sdp->sd_log_tr, tr);
	} else if (tr->tr_num_buf_new || tr->tr_num_databuf_new) {
821
		gfs2_assert_withdraw(sdp, tr->tr_alloced);
822 823 824 825
		sdp->sd_log_tr = tr;
		tr->tr_attached = 1;
	}

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David Teigland 已提交
826
	sdp->sd_log_commited_revoke += tr->tr_num_revoke - tr->tr_num_revoke_rm;
827
	reserved = calc_reserved(sdp);
828 829 830
	maxres = sdp->sd_log_blks_reserved + tr->tr_reserved;
	gfs2_assert_withdraw(sdp, maxres >= reserved);
	unused = maxres - reserved;
831
	atomic_add(unused, &sdp->sd_log_blks_free);
S
Steven Whitehouse 已提交
832
	trace_gfs2_log_blocks(sdp, unused);
833
	gfs2_assert_withdraw(sdp, atomic_read(&sdp->sd_log_blks_free) <=
834
			     sdp->sd_jdesc->jd_blocks);
D
David Teigland 已提交
835 836 837 838 839 840 841 842 843 844
	sdp->sd_log_blks_reserved = reserved;

	gfs2_log_unlock(sdp);
}

/**
 * gfs2_log_commit - Commit a transaction to the log
 * @sdp: the filesystem
 * @tr: the transaction
 *
845 846 847 848 849 850 851
 * We wake up gfs2_logd if the number of pinned blocks exceed thresh1
 * or the total number of used blocks (pinned blocks plus AIL blocks)
 * is greater than thresh2.
 *
 * At mount time thresh1 is 1/3rd of journal size, thresh2 is 2/3rd of
 * journal size.
 *
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852 853 854 855 856 857 858
 * Returns: errno
 */

void gfs2_log_commit(struct gfs2_sbd *sdp, struct gfs2_trans *tr)
{
	log_refund(sdp, tr);

859 860 861 862
	if (atomic_read(&sdp->sd_log_pinned) > atomic_read(&sdp->sd_log_thresh1) ||
	    ((sdp->sd_jdesc->jd_blocks - atomic_read(&sdp->sd_log_blks_free)) >
	    atomic_read(&sdp->sd_log_thresh2)))
		wake_up(&sdp->sd_logd_waitq);
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David Teigland 已提交
863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879
}

/**
 * gfs2_log_shutdown - write a shutdown header into a journal
 * @sdp: the filesystem
 *
 */

void gfs2_log_shutdown(struct gfs2_sbd *sdp)
{
	gfs2_assert_withdraw(sdp, !sdp->sd_log_blks_reserved);
	gfs2_assert_withdraw(sdp, !sdp->sd_log_num_revoke);
	gfs2_assert_withdraw(sdp, list_empty(&sdp->sd_ail1_list));

	sdp->sd_log_flush_head = sdp->sd_log_head;
	sdp->sd_log_flush_wrapped = 0;

880
	log_write_header(sdp, GFS2_LOG_HEAD_UNMOUNT);
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David Teigland 已提交
881

882 883
	gfs2_assert_warn(sdp, sdp->sd_log_head == sdp->sd_log_tail);
	gfs2_assert_warn(sdp, list_empty(&sdp->sd_ail2_list));
D
David Teigland 已提交
884 885 886

	sdp->sd_log_head = sdp->sd_log_flush_head;
	sdp->sd_log_tail = sdp->sd_log_head;
887 888
}

889 890
static inline int gfs2_jrnl_flush_reqd(struct gfs2_sbd *sdp)
{
891
	return (atomic_read(&sdp->sd_log_pinned) >= atomic_read(&sdp->sd_log_thresh1));
892 893 894 895 896 897 898
}

static inline int gfs2_ail_flush_reqd(struct gfs2_sbd *sdp)
{
	unsigned int used_blocks = sdp->sd_jdesc->jd_blocks - atomic_read(&sdp->sd_log_blks_free);
	return used_blocks >= atomic_read(&sdp->sd_log_thresh2);
}
899 900 901 902 903 904 905 906 907 908 909 910

/**
 * gfs2_logd - Update log tail as Active Items get flushed to in-place blocks
 * @sdp: Pointer to GFS2 superblock
 *
 * Also, periodically check to make sure that we're using the most recent
 * journal index.
 */

int gfs2_logd(void *data)
{
	struct gfs2_sbd *sdp = data;
911 912
	unsigned long t = 1;
	DEFINE_WAIT(wait);
913 914 915

	while (!kthread_should_stop()) {

916
		if (gfs2_jrnl_flush_reqd(sdp) || t == 0) {
917
			gfs2_ail1_empty(sdp);
918
			gfs2_log_flush(sdp, NULL, NORMAL_FLUSH);
919
		}
920

921 922
		if (gfs2_ail_flush_reqd(sdp)) {
			gfs2_ail1_start(sdp);
923
			gfs2_ail1_wait(sdp);
924
			gfs2_ail1_empty(sdp);
925
			gfs2_log_flush(sdp, NULL, NORMAL_FLUSH);
926 927
		}

928 929 930
		if (!gfs2_ail_flush_reqd(sdp))
			wake_up(&sdp->sd_log_waitq);

931
		t = gfs2_tune_get(sdp, gt_logd_secs) * HZ;
932 933

		try_to_freeze();
934 935 936

		do {
			prepare_to_wait(&sdp->sd_logd_waitq, &wait,
937
					TASK_INTERRUPTIBLE);
938 939 940 941 942 943 944 945
			if (!gfs2_ail_flush_reqd(sdp) &&
			    !gfs2_jrnl_flush_reqd(sdp) &&
			    !kthread_should_stop())
				t = schedule_timeout(t);
		} while(t && !gfs2_ail_flush_reqd(sdp) &&
			!gfs2_jrnl_flush_reqd(sdp) &&
			!kthread_should_stop());
		finish_wait(&sdp->sd_logd_waitq, &wait);
946 947 948 949 950
	}

	return 0;
}