lops.c 20.7 KB
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/*
 * Copyright (C) Sistina Software, Inc.  1997-2003 All rights reserved.
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 * Copyright (C) 2004-2006 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/lm_interface.h>
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#include "gfs2.h"
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#include "incore.h"
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#include "glock.h"
#include "log.h"
#include "lops.h"
#include "meta_io.h"
#include "recovery.h"
#include "rgrp.h"
#include "trans.h"
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#include "util.h"
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static void glock_lo_add(struct gfs2_sbd *sdp, struct gfs2_log_element *le)
{
	struct gfs2_glock *gl;
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	struct gfs2_trans *tr = current->journal_info;
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	tr->tr_touched = 1;
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	gl = container_of(le, struct gfs2_glock, gl_le);
	if (gfs2_assert_withdraw(sdp, gfs2_glock_is_held_excl(gl)))
		return;

	gfs2_log_lock(sdp);
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	if (!list_empty(&le->le_list)){
		gfs2_log_unlock(sdp);
		return;
	}
	gfs2_glock_hold(gl);
	set_bit(GLF_DIRTY, &gl->gl_flags);
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	sdp->sd_log_num_gl++;
	list_add(&le->le_list, &sdp->sd_log_le_gl);
	gfs2_log_unlock(sdp);
}

static void glock_lo_after_commit(struct gfs2_sbd *sdp, struct gfs2_ail *ai)
{
	struct list_head *head = &sdp->sd_log_le_gl;
	struct gfs2_glock *gl;

	while (!list_empty(head)) {
		gl = list_entry(head->next, struct gfs2_glock, gl_le.le_list);
		list_del_init(&gl->gl_le.le_list);
		sdp->sd_log_num_gl--;

		gfs2_assert_withdraw(sdp, gfs2_glock_is_held_excl(gl));
		gfs2_glock_put(gl);
	}
	gfs2_assert_warn(sdp, !sdp->sd_log_num_gl);
}

static void buf_lo_add(struct gfs2_sbd *sdp, struct gfs2_log_element *le)
{
	struct gfs2_bufdata *bd = container_of(le, struct gfs2_bufdata, bd_le);
	struct gfs2_trans *tr;

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	gfs2_log_lock(sdp);
	if (!list_empty(&bd->bd_list_tr)) {
		gfs2_log_unlock(sdp);
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		return;
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	}
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	tr = current->journal_info;
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	tr->tr_touched = 1;
	tr->tr_num_buf++;
	list_add(&bd->bd_list_tr, &tr->tr_list_buf);
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	gfs2_log_unlock(sdp);
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	if (!list_empty(&le->le_list))
		return;

	gfs2_trans_add_gl(bd->bd_gl);

	gfs2_meta_check(sdp, bd->bd_bh);
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	gfs2_pin(sdp, bd->bd_bh);
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	gfs2_log_lock(sdp);
	sdp->sd_log_num_buf++;
	list_add(&le->le_list, &sdp->sd_log_le_buf);
	gfs2_log_unlock(sdp);

	tr->tr_num_buf_new++;
}

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

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	gfs2_log_lock(sdp);
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	while (!list_empty(head)) {
		bd = list_entry(head->next, struct gfs2_bufdata, bd_list_tr);
		list_del_init(&bd->bd_list_tr);
		tr->tr_num_buf--;
	}
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	gfs2_log_unlock(sdp);
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	gfs2_assert_warn(sdp, !tr->tr_num_buf);
}

static void buf_lo_before_commit(struct gfs2_sbd *sdp)
{
	struct buffer_head *bh;
	struct gfs2_log_descriptor *ld;
	struct gfs2_bufdata *bd1 = NULL, *bd2;
	unsigned int total = sdp->sd_log_num_buf;
	unsigned int offset = sizeof(struct gfs2_log_descriptor);
	unsigned int limit;
	unsigned int num;
	unsigned n;
	__be64 *ptr;

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	offset += sizeof(__be64) - 1;
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	offset &= ~(sizeof(__be64) - 1);
	limit = (sdp->sd_sb.sb_bsize - offset)/sizeof(__be64);
	/* for 4k blocks, limit = 503 */

	bd1 = bd2 = list_prepare_entry(bd1, &sdp->sd_log_le_buf, bd_le.le_list);
	while(total) {
		num = total;
		if (total > limit)
			num = limit;
		bh = gfs2_log_get_buf(sdp);
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		sdp->sd_log_num_hdrs++;
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		ld = (struct gfs2_log_descriptor *)bh->b_data;
		ptr = (__be64 *)(bh->b_data + offset);
		ld->ld_header.mh_magic = cpu_to_be32(GFS2_MAGIC);
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		ld->ld_header.mh_type = cpu_to_be32(GFS2_METATYPE_LD);
		ld->ld_header.mh_format = cpu_to_be32(GFS2_FORMAT_LD);
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		ld->ld_type = cpu_to_be32(GFS2_LOG_DESC_METADATA);
		ld->ld_length = cpu_to_be32(num + 1);
		ld->ld_data1 = cpu_to_be32(num);
		ld->ld_data2 = cpu_to_be32(0);
		memset(ld->ld_reserved, 0, sizeof(ld->ld_reserved));

		n = 0;
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		list_for_each_entry_continue(bd1, &sdp->sd_log_le_buf,
					     bd_le.le_list) {
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			*ptr++ = cpu_to_be64(bd1->bd_bh->b_blocknr);
			if (++n >= num)
				break;
		}

		set_buffer_dirty(bh);
		ll_rw_block(WRITE, 1, &bh);

		n = 0;
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		list_for_each_entry_continue(bd2, &sdp->sd_log_le_buf,
					     bd_le.le_list) {
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			bh = gfs2_log_fake_buf(sdp, bd2->bd_bh);
			set_buffer_dirty(bh);
			ll_rw_block(WRITE, 1, &bh);
			if (++n >= num)
				break;
		}

		total -= num;
	}
}

static void buf_lo_after_commit(struct gfs2_sbd *sdp, struct gfs2_ail *ai)
{
	struct list_head *head = &sdp->sd_log_le_buf;
	struct gfs2_bufdata *bd;

	while (!list_empty(head)) {
		bd = list_entry(head->next, struct gfs2_bufdata, bd_le.le_list);
		list_del_init(&bd->bd_le.le_list);
		sdp->sd_log_num_buf--;

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		gfs2_unpin(sdp, bd->bd_bh, ai);
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	}
	gfs2_assert_warn(sdp, !sdp->sd_log_num_buf);
}

static void buf_lo_before_scan(struct gfs2_jdesc *jd,
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			       struct gfs2_log_header_host *head, int pass)
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{
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	struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode);
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	if (pass != 0)
		return;

	sdp->sd_found_blocks = 0;
	sdp->sd_replayed_blocks = 0;
}

static int buf_lo_scan_elements(struct gfs2_jdesc *jd, unsigned int start,
				struct gfs2_log_descriptor *ld, __be64 *ptr,
				int pass)
{
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	struct gfs2_inode *ip = GFS2_I(jd->jd_inode);
	struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode);
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	struct gfs2_glock *gl = ip->i_gl;
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	unsigned int blks = be32_to_cpu(ld->ld_data1);
	struct buffer_head *bh_log, *bh_ip;
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	u64 blkno;
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	int error = 0;

	if (pass != 1 || be32_to_cpu(ld->ld_type) != GFS2_LOG_DESC_METADATA)
		return 0;

	gfs2_replay_incr_blk(sdp, &start);

	for (; blks; gfs2_replay_incr_blk(sdp, &start), blks--) {
		blkno = be64_to_cpu(*ptr++);

		sdp->sd_found_blocks++;

		if (gfs2_revoke_check(sdp, blkno, start))
			continue;

		error = gfs2_replay_read_block(jd, start, &bh_log);
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		if (error)
			return error;
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		bh_ip = gfs2_meta_new(gl, blkno);
		memcpy(bh_ip->b_data, bh_log->b_data, bh_log->b_size);

		if (gfs2_meta_check(sdp, bh_ip))
			error = -EIO;
		else
			mark_buffer_dirty(bh_ip);

		brelse(bh_log);
		brelse(bh_ip);

		if (error)
			break;

		sdp->sd_replayed_blocks++;
	}

	return error;
}

static void buf_lo_after_scan(struct gfs2_jdesc *jd, int error, int pass)
{
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	struct gfs2_inode *ip = GFS2_I(jd->jd_inode);
	struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode);
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	if (error) {
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		gfs2_meta_sync(ip->i_gl);
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		return;
	}
	if (pass != 1)
		return;

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	gfs2_meta_sync(ip->i_gl);
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	fs_info(sdp, "jid=%u: Replayed %u of %u blocks\n",
	        jd->jd_jid, sdp->sd_replayed_blocks, sdp->sd_found_blocks);
}

static void revoke_lo_add(struct gfs2_sbd *sdp, struct gfs2_log_element *le)
{
	struct gfs2_trans *tr;

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	tr = current->journal_info;
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	tr->tr_touched = 1;
	tr->tr_num_revoke++;

	gfs2_log_lock(sdp);
	sdp->sd_log_num_revoke++;
	list_add(&le->le_list, &sdp->sd_log_le_revoke);
	gfs2_log_unlock(sdp);
}

static void revoke_lo_before_commit(struct gfs2_sbd *sdp)
{
	struct gfs2_log_descriptor *ld;
	struct gfs2_meta_header *mh;
	struct buffer_head *bh;
	unsigned int offset;
	struct list_head *head = &sdp->sd_log_le_revoke;
	struct gfs2_revoke *rv;

	if (!sdp->sd_log_num_revoke)
		return;

	bh = gfs2_log_get_buf(sdp);
	ld = (struct gfs2_log_descriptor *)bh->b_data;
	ld->ld_header.mh_magic = cpu_to_be32(GFS2_MAGIC);
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	ld->ld_header.mh_type = cpu_to_be32(GFS2_METATYPE_LD);
	ld->ld_header.mh_format = cpu_to_be32(GFS2_FORMAT_LD);
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	ld->ld_type = cpu_to_be32(GFS2_LOG_DESC_REVOKE);
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	ld->ld_length = cpu_to_be32(gfs2_struct2blk(sdp, sdp->sd_log_num_revoke,
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						    sizeof(u64)));
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	ld->ld_data1 = cpu_to_be32(sdp->sd_log_num_revoke);
	ld->ld_data2 = cpu_to_be32(0);
	memset(ld->ld_reserved, 0, sizeof(ld->ld_reserved));
	offset = sizeof(struct gfs2_log_descriptor);

	while (!list_empty(head)) {
		rv = list_entry(head->next, struct gfs2_revoke, rv_le.le_list);
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		list_del_init(&rv->rv_le.le_list);
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		sdp->sd_log_num_revoke--;

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		if (offset + sizeof(u64) > sdp->sd_sb.sb_bsize) {
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			set_buffer_dirty(bh);
			ll_rw_block(WRITE, 1, &bh);

			bh = gfs2_log_get_buf(sdp);
			mh = (struct gfs2_meta_header *)bh->b_data;
			mh->mh_magic = cpu_to_be32(GFS2_MAGIC);
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			mh->mh_type = cpu_to_be32(GFS2_METATYPE_LB);
			mh->mh_format = cpu_to_be32(GFS2_FORMAT_LB);
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			offset = sizeof(struct gfs2_meta_header);
		}

		*(__be64 *)(bh->b_data + offset) = cpu_to_be64(rv->rv_blkno);
		kfree(rv);

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		offset += sizeof(u64);
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	}
	gfs2_assert_withdraw(sdp, !sdp->sd_log_num_revoke);

	set_buffer_dirty(bh);
	ll_rw_block(WRITE, 1, &bh);
}

static void revoke_lo_before_scan(struct gfs2_jdesc *jd,
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				  struct gfs2_log_header_host *head, int pass)
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{
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	struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode);
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	if (pass != 0)
		return;

	sdp->sd_found_revokes = 0;
	sdp->sd_replay_tail = head->lh_tail;
}

static int revoke_lo_scan_elements(struct gfs2_jdesc *jd, unsigned int start,
				   struct gfs2_log_descriptor *ld, __be64 *ptr,
				   int pass)
{
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	struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode);
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	unsigned int blks = be32_to_cpu(ld->ld_length);
	unsigned int revokes = be32_to_cpu(ld->ld_data1);
	struct buffer_head *bh;
	unsigned int offset;
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	u64 blkno;
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	int first = 1;
	int error;

	if (pass != 0 || be32_to_cpu(ld->ld_type) != GFS2_LOG_DESC_REVOKE)
		return 0;

	offset = sizeof(struct gfs2_log_descriptor);

	for (; blks; gfs2_replay_incr_blk(sdp, &start), blks--) {
		error = gfs2_replay_read_block(jd, start, &bh);
		if (error)
			return error;

		if (!first)
			gfs2_metatype_check(sdp, bh, GFS2_METATYPE_LB);

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		while (offset + sizeof(u64) <= sdp->sd_sb.sb_bsize) {
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			blkno = be64_to_cpu(*(__be64 *)(bh->b_data + offset));

			error = gfs2_revoke_add(sdp, blkno, start);
			if (error < 0)
				return error;
			else if (error)
				sdp->sd_found_revokes++;

			if (!--revokes)
				break;
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			offset += sizeof(u64);
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		}

		brelse(bh);
		offset = sizeof(struct gfs2_meta_header);
		first = 0;
	}

	return 0;
}

static void revoke_lo_after_scan(struct gfs2_jdesc *jd, int error, int pass)
{
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	struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode);
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	if (error) {
		gfs2_revoke_clean(sdp);
		return;
	}
	if (pass != 1)
		return;

	fs_info(sdp, "jid=%u: Found %u revoke tags\n",
	        jd->jd_jid, sdp->sd_found_revokes);

	gfs2_revoke_clean(sdp);
}

static void rg_lo_add(struct gfs2_sbd *sdp, struct gfs2_log_element *le)
{
	struct gfs2_rgrpd *rgd;
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	struct gfs2_trans *tr = current->journal_info;
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	tr->tr_touched = 1;
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	rgd = container_of(le, struct gfs2_rgrpd, rd_le);

	gfs2_log_lock(sdp);
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	if (!list_empty(&le->le_list)){
		gfs2_log_unlock(sdp);
		return;
	}
	gfs2_rgrp_bh_hold(rgd);
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	sdp->sd_log_num_rg++;
	list_add(&le->le_list, &sdp->sd_log_le_rg);
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	gfs2_log_unlock(sdp);
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}

static void rg_lo_after_commit(struct gfs2_sbd *sdp, struct gfs2_ail *ai)
{
	struct list_head *head = &sdp->sd_log_le_rg;
	struct gfs2_rgrpd *rgd;

	while (!list_empty(head)) {
		rgd = list_entry(head->next, struct gfs2_rgrpd, rd_le.le_list);
		list_del_init(&rgd->rd_le.le_list);
		sdp->sd_log_num_rg--;

		gfs2_rgrp_repolish_clones(rgd);
		gfs2_rgrp_bh_put(rgd);
	}
	gfs2_assert_warn(sdp, !sdp->sd_log_num_rg);
}

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/**
 * databuf_lo_add - Add a databuf to the transaction.
 *
 * This is used in two distinct cases:
 * i) In ordered write mode
 *    We put the data buffer on a list so that we can ensure that its
 *    synced to disk at the right time
 * ii) In journaled data mode
 *    We need to journal the data block in the same way as metadata in
 *    the functions above. The difference is that here we have a tag
 *    which is two __be64's being the block number (as per meta data)
 *    and a flag which says whether the data block needs escaping or
 *    not. This means we need a new log entry for each 251 or so data
 *    blocks, which isn't an enormous overhead but twice as much as
 *    for normal metadata blocks.
 */
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static void databuf_lo_add(struct gfs2_sbd *sdp, struct gfs2_log_element *le)
{
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	struct gfs2_bufdata *bd = container_of(le, struct gfs2_bufdata, bd_le);
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	struct gfs2_trans *tr = current->journal_info;
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	struct address_space *mapping = bd->bd_bh->b_page->mapping;
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	struct gfs2_inode *ip = GFS2_I(mapping->host);
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	gfs2_log_lock(sdp);
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	tr->tr_touched = 1;
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	if (list_empty(&bd->bd_list_tr) &&
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	    (ip->i_di.di_flags & GFS2_DIF_JDATA)) {
		tr->tr_num_buf++;
		list_add(&bd->bd_list_tr, &tr->tr_list_buf);
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		gfs2_log_unlock(sdp);
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		if (!list_empty(&le->le_list))
			return;
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		gfs2_pin(sdp, bd->bd_bh);
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		tr->tr_num_buf_new++;
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	} else {
		gfs2_log_unlock(sdp);
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	}
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	gfs2_trans_add_gl(bd->bd_gl);
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	gfs2_log_lock(sdp);
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	if (list_empty(&le->le_list)) {
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		if (ip->i_di.di_flags & GFS2_DIF_JDATA)
			sdp->sd_log_num_jdata++;
		sdp->sd_log_num_databuf++;
		list_add(&le->le_list, &sdp->sd_log_le_databuf);
	}
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	gfs2_log_unlock(sdp);
}

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static int gfs2_check_magic(struct buffer_head *bh)
{
	struct page *page = bh->b_page;
	void *kaddr;
	__be32 *ptr;
	int rv = 0;

	kaddr = kmap_atomic(page, KM_USER0);
	ptr = kaddr + bh_offset(bh);
	if (*ptr == cpu_to_be32(GFS2_MAGIC))
		rv = 1;
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	kunmap_atomic(kaddr, KM_USER0);
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	return rv;
}

/**
 * databuf_lo_before_commit - Scan the data buffers, writing as we go
 *
 * Here we scan through the lists of buffers and make the assumption
 * that any buffer thats been pinned is being journaled, and that
 * any unpinned buffer is an ordered write data buffer and therefore
 * will be written back rather than journaled.
 */
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static void databuf_lo_before_commit(struct gfs2_sbd *sdp)
{
	LIST_HEAD(started);
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	struct gfs2_bufdata *bd1 = NULL, *bd2, *bdt;
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	struct buffer_head *bh = NULL,*bh1 = NULL;
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	unsigned int offset = sizeof(struct gfs2_log_descriptor);
	struct gfs2_log_descriptor *ld;
	unsigned int limit;
	unsigned int total_dbuf = sdp->sd_log_num_databuf;
	unsigned int total_jdata = sdp->sd_log_num_jdata;
	unsigned int num, n;
531
	__be64 *ptr = NULL;
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	offset += 2*sizeof(__be64) - 1;
534 535
	offset &= ~(2*sizeof(__be64) - 1);
	limit = (sdp->sd_sb.sb_bsize - offset)/sizeof(__be64);
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537 538 539 540
	/*
	 * Start writing ordered buffers, write journaled buffers
	 * into the log along with a header
	 */
541
	gfs2_log_lock(sdp);
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	bd2 = bd1 = list_prepare_entry(bd1, &sdp->sd_log_le_databuf,
				       bd_le.le_list);
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	while(total_dbuf) {
		num = total_jdata;
		if (num > limit)
			num = limit;
		n = 0;
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		list_for_each_entry_safe_continue(bd1, bdt,
						  &sdp->sd_log_le_databuf,
						  bd_le.le_list) {
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			/* store off the buffer head in a local ptr since
			 * gfs2_bufdata might change when we drop the log lock
			 */
			bh1 = bd1->bd_bh;

557
			/* An ordered write buffer */
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			if (bh1 && !buffer_pinned(bh1)) {
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				list_move(&bd1->bd_le.le_list, &started);
				if (bd1 == bd2) {
					bd2 = NULL;
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					bd2 = list_prepare_entry(bd2,
							&sdp->sd_log_le_databuf,
							bd_le.le_list);
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				}
				total_dbuf--;
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				if (bh1) {
					if (buffer_dirty(bh1)) {
						get_bh(bh1);

571
						gfs2_log_unlock(sdp);
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						ll_rw_block(SWRITE, 1, &bh1);
						brelse(bh1);

576
						gfs2_log_lock(sdp);
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					}
					continue;
				}
				continue;
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			} else if (bh1) { /* A journaled buffer */
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				int magic;
				gfs2_log_unlock(sdp);
				if (!bh) {
					bh = gfs2_log_get_buf(sdp);
586
					sdp->sd_log_num_hdrs++;
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					ld = (struct gfs2_log_descriptor *)
					     bh->b_data;
589
					ptr = (__be64 *)(bh->b_data + offset);
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					ld->ld_header.mh_magic =
						cpu_to_be32(GFS2_MAGIC);
					ld->ld_header.mh_type =
593
						cpu_to_be32(GFS2_METATYPE_LD);
594
					ld->ld_header.mh_format =
595
						cpu_to_be32(GFS2_FORMAT_LD);
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					ld->ld_type =
						cpu_to_be32(GFS2_LOG_DESC_JDATA);
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					ld->ld_length = cpu_to_be32(num + 1);
					ld->ld_data1 = cpu_to_be32(num);
					ld->ld_data2 = cpu_to_be32(0);
					memset(ld->ld_reserved, 0, sizeof(ld->ld_reserved));
				}
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				magic = gfs2_check_magic(bh1);
				*ptr++ = cpu_to_be64(bh1->b_blocknr);
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				*ptr++ = cpu_to_be64((__u64)magic);
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				clear_buffer_escaped(bh1);
607
				if (unlikely(magic != 0))
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					set_buffer_escaped(bh1);
609
				gfs2_log_lock(sdp);
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				if (n++ > num)
					break;
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			} else if (!bh1) {
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				total_dbuf--;
				sdp->sd_log_num_databuf--;
				list_del_init(&bd1->bd_le.le_list);
				if (bd1 == bd2) {
					bd2 = NULL;
					bd2 = list_prepare_entry(bd2,
						&sdp->sd_log_le_databuf,
						bd_le.le_list);
                                }
				kmem_cache_free(gfs2_bufdata_cachep, bd1);
623 624
			}
		}
625
		gfs2_log_unlock(sdp);
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		if (bh) {
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			set_buffer_dirty(bh);
			ll_rw_block(WRITE, 1, &bh);
			bh = NULL;
		}
		n = 0;
632
		gfs2_log_lock(sdp);
633 634
		list_for_each_entry_continue(bd2, &sdp->sd_log_le_databuf,
					     bd_le.le_list) {
635 636 637
			if (!bd2->bd_bh)
				continue;
			/* copy buffer if it needs escaping */
638
			gfs2_log_unlock(sdp);
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			if (unlikely(buffer_escaped(bd2->bd_bh))) {
				void *kaddr;
				struct page *page = bd2->bd_bh->b_page;
				bh = gfs2_log_get_buf(sdp);
				kaddr = kmap_atomic(page, KM_USER0);
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				memcpy(bh->b_data,
				       kaddr + bh_offset(bd2->bd_bh),
				       sdp->sd_sb.sb_bsize);
647
				kunmap_atomic(kaddr, KM_USER0);
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				*(__be32 *)bh->b_data = 0;
			} else {
				bh = gfs2_log_fake_buf(sdp, bd2->bd_bh);
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			}
652 653
			set_buffer_dirty(bh);
			ll_rw_block(WRITE, 1, &bh);
654
			gfs2_log_lock(sdp);
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			if (++n >= num)
				break;
		}
		bh = NULL;
		total_dbuf -= num;
		total_jdata -= num;
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	}
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	gfs2_log_unlock(sdp);

664
	/* Wait on all ordered buffers */
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	while (!list_empty(&started)) {
666
		gfs2_log_lock(sdp);
667 668
		bd1 = list_entry(started.next, struct gfs2_bufdata,
				 bd_le.le_list);
669
		list_del_init(&bd1->bd_le.le_list);
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		sdp->sd_log_num_databuf--;
671
		bh = bd1->bd_bh;
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		if (bh) {
673
			bh->b_private = NULL;
674
			get_bh(bh);
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			gfs2_log_unlock(sdp);
			wait_on_buffer(bh);
			brelse(bh);
		} else
			gfs2_log_unlock(sdp);

681
		kmem_cache_free(gfs2_bufdata_cachep, bd1);
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	}

684 685 686 687 688 689 690 691
	/* We've removed all the ordered write bufs here, so only jdata left */
	gfs2_assert_warn(sdp, sdp->sd_log_num_databuf == sdp->sd_log_num_jdata);
}

static int databuf_lo_scan_elements(struct gfs2_jdesc *jd, unsigned int start,
				    struct gfs2_log_descriptor *ld,
				    __be64 *ptr, int pass)
{
692 693
	struct gfs2_inode *ip = GFS2_I(jd->jd_inode);
	struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode);
694
	struct gfs2_glock *gl = ip->i_gl;
695 696
	unsigned int blks = be32_to_cpu(ld->ld_data1);
	struct buffer_head *bh_log, *bh_ip;
697 698
	u64 blkno;
	u64 esc;
699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742
	int error = 0;

	if (pass != 1 || be32_to_cpu(ld->ld_type) != GFS2_LOG_DESC_JDATA)
		return 0;

	gfs2_replay_incr_blk(sdp, &start);
	for (; blks; gfs2_replay_incr_blk(sdp, &start), blks--) {
		blkno = be64_to_cpu(*ptr++);
		esc = be64_to_cpu(*ptr++);

		sdp->sd_found_blocks++;

		if (gfs2_revoke_check(sdp, blkno, start))
			continue;

		error = gfs2_replay_read_block(jd, start, &bh_log);
		if (error)
			return error;

		bh_ip = gfs2_meta_new(gl, blkno);
		memcpy(bh_ip->b_data, bh_log->b_data, bh_log->b_size);

		/* Unescape */
		if (esc) {
			__be32 *eptr = (__be32 *)bh_ip->b_data;
			*eptr = cpu_to_be32(GFS2_MAGIC);
		}
		mark_buffer_dirty(bh_ip);

		brelse(bh_log);
		brelse(bh_ip);
		if (error)
			break;

		sdp->sd_replayed_blocks++;
	}

	return error;
}

/* FIXME: sort out accounting for log blocks etc. */

static void databuf_lo_after_scan(struct gfs2_jdesc *jd, int error, int pass)
{
743 744
	struct gfs2_inode *ip = GFS2_I(jd->jd_inode);
	struct gfs2_sbd *sdp = GFS2_SB(jd->jd_inode);
745 746

	if (error) {
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		gfs2_meta_sync(ip->i_gl);
748 749 750 751 752 753
		return;
	}
	if (pass != 1)
		return;

	/* data sync? */
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	gfs2_meta_sync(ip->i_gl);
755 756 757 758 759 760 761 762 763 764 765 766

	fs_info(sdp, "jid=%u: Replayed %u of %u data blocks\n",
		jd->jd_jid, sdp->sd_replayed_blocks, sdp->sd_found_blocks);
}

static void databuf_lo_after_commit(struct gfs2_sbd *sdp, struct gfs2_ail *ai)
{
	struct list_head *head = &sdp->sd_log_le_databuf;
	struct gfs2_bufdata *bd;

	while (!list_empty(head)) {
		bd = list_entry(head->next, struct gfs2_bufdata, bd_le.le_list);
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		list_del_init(&bd->bd_le.le_list);
768 769 770 771
		sdp->sd_log_num_databuf--;
		sdp->sd_log_num_jdata--;
		gfs2_unpin(sdp, bd->bd_bh, ai);
	}
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	gfs2_assert_warn(sdp, !sdp->sd_log_num_databuf);
773
	gfs2_assert_warn(sdp, !sdp->sd_log_num_jdata);
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}

776

777
const struct gfs2_log_operations gfs2_glock_lops = {
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	.lo_add = glock_lo_add,
	.lo_after_commit = glock_lo_after_commit,
780
	.lo_name = "glock",
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};

783
const struct gfs2_log_operations gfs2_buf_lops = {
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	.lo_add = buf_lo_add,
	.lo_incore_commit = buf_lo_incore_commit,
	.lo_before_commit = buf_lo_before_commit,
	.lo_after_commit = buf_lo_after_commit,
	.lo_before_scan = buf_lo_before_scan,
	.lo_scan_elements = buf_lo_scan_elements,
	.lo_after_scan = buf_lo_after_scan,
791
	.lo_name = "buf",
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};

794
const struct gfs2_log_operations gfs2_revoke_lops = {
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	.lo_add = revoke_lo_add,
	.lo_before_commit = revoke_lo_before_commit,
	.lo_before_scan = revoke_lo_before_scan,
	.lo_scan_elements = revoke_lo_scan_elements,
	.lo_after_scan = revoke_lo_after_scan,
800
	.lo_name = "revoke",
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};

803
const struct gfs2_log_operations gfs2_rg_lops = {
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	.lo_add = rg_lo_add,
	.lo_after_commit = rg_lo_after_commit,
806
	.lo_name = "rg",
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};

809
const struct gfs2_log_operations gfs2_databuf_lops = {
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	.lo_add = databuf_lo_add,
811
	.lo_incore_commit = buf_lo_incore_commit,
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	.lo_before_commit = databuf_lo_before_commit,
813 814 815
	.lo_after_commit = databuf_lo_after_commit,
	.lo_scan_elements = databuf_lo_scan_elements,
	.lo_after_scan = databuf_lo_after_scan,
816
	.lo_name = "databuf",
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};

819
const struct gfs2_log_operations *gfs2_log_ops[] = {
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	&gfs2_glock_lops,
	&gfs2_buf_lops,
	&gfs2_revoke_lops,
	&gfs2_rg_lops,
	&gfs2_databuf_lops,
825
	NULL,
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};