[9] | 1 | /* This file is the counterpart of "read.c". It contains the code for writing
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| 2 | * insofar as this is not contained in read_write().
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| 3 | *
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| 4 | * The entry points into this file are
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| 5 | * do_write: call read_write to perform the WRITE system call
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| 6 | * clear_zone: erase a zone in the middle of a file
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| 7 | * new_block: acquire a new block
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| 8 | */
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| 9 |
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| 10 | #include "fs.h"
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| 11 | #include <string.h>
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| 12 | #include "buf.h"
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| 13 | #include "file.h"
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| 14 | #include "fproc.h"
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| 15 | #include "inode.h"
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| 16 | #include "super.h"
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| 17 |
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| 18 | FORWARD _PROTOTYPE( void wr_indir, (struct buf *bp, int index, zone_t zone) );
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| 19 | FORWARD _PROTOTYPE( int empty_indir, (struct buf *, struct super_block *) );
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| 20 |
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| 21 | /*===========================================================================*
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| 22 | * do_write *
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| 23 | *===========================================================================*/
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| 24 | PUBLIC int do_write()
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| 25 | {
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| 26 | /* Perform the write(fd, buffer, nbytes) system call. */
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| 27 |
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| 28 | return(read_write(WRITING));
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| 29 | }
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| 30 |
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| 31 | /*===========================================================================*
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| 32 | * write_map *
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| 33 | *===========================================================================*/
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| 34 | PUBLIC int write_map(rip, position, new_zone, op)
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| 35 | struct inode *rip; /* pointer to inode to be changed */
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| 36 | off_t position; /* file address to be mapped */
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| 37 | zone_t new_zone; /* zone # to be inserted */
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| 38 | int op; /* special actions */
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| 39 | {
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| 40 | /* Write a new zone into an inode.
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| 41 | *
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| 42 | * If op includes WMAP_FREE, free the data zone corresponding to that position
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| 43 | * in the inode ('new_zone' is ignored then). Also free the indirect block
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| 44 | * if that was the last entry in the indirect block.
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| 45 | * Also free the double indirect block if that was the last entry in the
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| 46 | * double indirect block.
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| 47 | */
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| 48 | int scale, ind_ex, new_ind, new_dbl, zones, nr_indirects, single, zindex, ex;
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| 49 | zone_t z, z1, z2 = NO_ZONE, old_zone;
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| 50 | register block_t b;
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| 51 | long excess, zone;
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| 52 | struct buf *bp_dindir = NIL_BUF, *bp = NIL_BUF;
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| 53 |
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| 54 | rip->i_dirt = DIRTY; /* inode will be changed */
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| 55 | scale = rip->i_sp->s_log_zone_size; /* for zone-block conversion */
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| 56 | /* relative zone # to insert */
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| 57 | zone = (position/rip->i_sp->s_block_size) >> scale;
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| 58 | zones = rip->i_ndzones; /* # direct zones in the inode */
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| 59 | nr_indirects = rip->i_nindirs;/* # indirect zones per indirect block */
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| 60 |
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| 61 | /* Is 'position' to be found in the inode itself? */
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| 62 | if (zone < zones) {
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| 63 | zindex = (int) zone; /* we need an integer here */
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| 64 | if(rip->i_zone[zindex] != NO_ZONE && (op & WMAP_FREE)) {
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| 65 | free_zone(rip->i_dev, rip->i_zone[zindex]);
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| 66 | rip->i_zone[zindex] = NO_ZONE;
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| 67 | } else {
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| 68 | rip->i_zone[zindex] = new_zone;
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| 69 | }
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| 70 | return(OK);
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| 71 | }
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| 72 |
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| 73 | /* It is not in the inode, so it must be single or double indirect. */
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| 74 | excess = zone - zones; /* first Vx_NR_DZONES don't count */
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| 75 | new_ind = FALSE;
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| 76 | new_dbl = FALSE;
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| 77 |
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| 78 | if (excess < nr_indirects) {
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| 79 | /* 'position' can be located via the single indirect block. */
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| 80 | z1 = rip->i_zone[zones]; /* single indirect zone */
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| 81 | single = TRUE;
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| 82 | } else {
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| 83 | /* 'position' can be located via the double indirect block. */
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| 84 | if ( (z2 = z = rip->i_zone[zones+1]) == NO_ZONE &&
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| 85 | !(op & WMAP_FREE)) {
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| 86 | /* Create the double indirect block. */
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| 87 | if ( (z = alloc_zone(rip->i_dev, rip->i_zone[0])) == NO_ZONE)
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| 88 | return(err_code);
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| 89 | rip->i_zone[zones+1] = z;
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| 90 | new_dbl = TRUE; /* set flag for later */
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| 91 | }
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| 92 |
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| 93 | /* 'z' is zone number for double indirect block, either old
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| 94 | * or newly created.
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| 95 | * If there wasn't one and WMAP_FREE is set, 'z' is NO_ZONE.
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| 96 | */
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| 97 | excess -= nr_indirects; /* single indirect doesn't count */
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| 98 | ind_ex = (int) (excess / nr_indirects);
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| 99 | excess = excess % nr_indirects;
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| 100 | if (ind_ex >= nr_indirects) return(EFBIG);
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| 101 |
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| 102 | if(z == NO_ZONE) {
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| 103 | /* WMAP_FREE and no double indirect block - then no
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| 104 | * single indirect block either.
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| 105 | */
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| 106 | z1 = NO_ZONE;
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| 107 | } else {
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| 108 | b = (block_t) z << scale;
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| 109 | bp_dindir = get_block(rip->i_dev, b, (new_dbl?NO_READ:NORMAL));
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| 110 | if (new_dbl) zero_block(bp_dindir);
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| 111 | z1 = rd_indir(bp_dindir, ind_ex);
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| 112 | }
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| 113 | single = FALSE;
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| 114 | }
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| 115 |
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| 116 | /* z1 is now single indirect zone, or NO_ZONE; 'excess' is index.
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| 117 | * We have to create the indirect zone if it's NO_ZONE. Unless
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| 118 | * we're freeing (WMAP_FREE).
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| 119 | */
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| 120 | if (z1 == NO_ZONE && !(op & WMAP_FREE)) {
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| 121 | z1 = alloc_zone(rip->i_dev, rip->i_zone[0]);
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| 122 | if (single)
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| 123 | rip->i_zone[zones] = z1; /* update inode w. single indirect */
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| 124 | else
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| 125 | wr_indir(bp_dindir, ind_ex, z1); /* update dbl indir */
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| 126 |
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| 127 | new_ind = TRUE;
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| 128 | /* If double ind, it is dirty. */
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| 129 | if (bp_dindir != NIL_BUF) bp_dindir->b_dirt = DIRTY;
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| 130 | if (z1 == NO_ZONE) {
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| 131 | /* Release dbl indirect blk. */
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| 132 | put_block(bp_dindir, INDIRECT_BLOCK);
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| 133 | return(err_code); /* couldn't create single ind */
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| 134 | }
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| 135 | }
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| 136 |
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| 137 | /* z1 is indirect block's zone number (unless it's NO_ZONE when we're
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| 138 | * freeing).
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| 139 | */
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| 140 | if(z1 != NO_ZONE) {
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| 141 | ex = (int) excess; /* we need an int here */
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| 142 | b = (block_t) z1 << scale;
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| 143 | bp = get_block(rip->i_dev, b, (new_ind ? NO_READ : NORMAL) );
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| 144 | if (new_ind) zero_block(bp);
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| 145 | if(op & WMAP_FREE) {
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| 146 | if((old_zone = rd_indir(bp, ex)) != NO_ZONE) {
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| 147 | free_zone(rip->i_dev, old_zone);
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| 148 | wr_indir(bp, ex, NO_ZONE);
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| 149 | }
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| 150 |
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| 151 | /* Last reference in the indirect block gone? Then
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| 152 | * Free the indirect block.
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| 153 | */
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| 154 | if(empty_indir(bp, rip->i_sp)) {
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| 155 | free_zone(rip->i_dev, z1);
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| 156 | z1 = NO_ZONE;
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| 157 | /* Update the reference to the indirect block to
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| 158 | * NO_ZONE - in the double indirect block if there
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| 159 | * is one, otherwise in the inode directly.
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| 160 | */
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| 161 | if(single) {
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| 162 | rip->i_zone[zones] = z1;
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| 163 | } else {
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| 164 | wr_indir(bp_dindir, ind_ex, z1);
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| 165 | bp_dindir->b_dirt = DIRTY;
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| 166 | }
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| 167 | }
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| 168 | } else {
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| 169 | wr_indir(bp, ex, new_zone);
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| 170 | }
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| 171 | bp->b_dirt = DIRTY;
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| 172 | put_block(bp, INDIRECT_BLOCK);
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| 173 | }
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| 174 |
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| 175 | /* If the single indirect block isn't there (or was just freed),
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| 176 | * see if we have to keep the double indirect block.
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| 177 | */
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| 178 | if(z1 == NO_ZONE && !single && empty_indir(bp_dindir, rip->i_sp) &&
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| 179 | z2 != NO_ZONE) {
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| 180 | free_zone(rip->i_dev, z2);
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| 181 | rip->i_zone[zones+1] = NO_ZONE;
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| 182 | }
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| 183 |
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| 184 | put_block(bp_dindir, INDIRECT_BLOCK); /* release double indirect blk */
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| 185 |
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| 186 | return(OK);
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| 187 | }
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| 188 |
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| 189 | /*===========================================================================*
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| 190 | * wr_indir *
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| 191 | *===========================================================================*/
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| 192 | PRIVATE void wr_indir(bp, index, zone)
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| 193 | struct buf *bp; /* pointer to indirect block */
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| 194 | int index; /* index into *bp */
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| 195 | zone_t zone; /* zone to write */
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| 196 | {
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| 197 | /* Given a pointer to an indirect block, write one entry. */
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| 198 |
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| 199 | struct super_block *sp;
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| 200 |
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| 201 | if(bp == NIL_BUF)
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| 202 | panic(__FILE__, "wr_indir() on NIL_BUF", NO_NUM);
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| 203 |
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| 204 | sp = get_super(bp->b_dev); /* need super block to find file sys type */
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| 205 |
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| 206 | /* write a zone into an indirect block */
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| 207 | if (sp->s_version == V1)
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| 208 | bp->b_v1_ind[index] = (zone1_t) conv2(sp->s_native, (int) zone);
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| 209 | else
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| 210 | bp->b_v2_ind[index] = (zone_t) conv4(sp->s_native, (long) zone);
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| 211 | }
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| 212 |
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| 213 | /*===========================================================================*
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| 214 | * empty_indir *
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| 215 | *===========================================================================*/
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| 216 | PRIVATE int empty_indir(bp, sb)
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| 217 | struct buf *bp; /* pointer to indirect block */
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| 218 | struct super_block *sb; /* superblock of device block resides on */
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| 219 | {
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| 220 | /* Return nonzero if the indirect block pointed to by bp contains
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| 221 | * only NO_ZONE entries.
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| 222 | */
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| 223 | int i;
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| 224 | if(sb->s_version == V1) {
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| 225 | for(i = 0; i < V1_INDIRECTS; i++)
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| 226 | if(bp->b_v1_ind[i] != NO_ZONE)
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| 227 | return 0;
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| 228 | } else {
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| 229 | for(i = 0; i < V2_INDIRECTS(sb->s_block_size); i++)
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| 230 | if(bp->b_v2_ind[i] != NO_ZONE)
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| 231 | return 0;
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| 232 | }
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| 233 |
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| 234 | return 1;
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| 235 | }
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| 236 |
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| 237 | /*===========================================================================*
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| 238 | * clear_zone *
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| 239 | *===========================================================================*/
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| 240 | PUBLIC void clear_zone(rip, pos, flag)
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| 241 | register struct inode *rip; /* inode to clear */
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| 242 | off_t pos; /* points to block to clear */
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| 243 | int flag; /* 0 if called by read_write, 1 by new_block */
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| 244 | {
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| 245 | /* Zero a zone, possibly starting in the middle. The parameter 'pos' gives
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| 246 | * a byte in the first block to be zeroed. Clearzone() is called from
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| 247 | * read_write and new_block().
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| 248 | */
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| 249 |
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| 250 | register struct buf *bp;
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| 251 | register block_t b, blo, bhi;
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| 252 | register off_t next;
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| 253 | register int scale;
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| 254 | register zone_t zone_size;
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| 255 |
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| 256 | /* If the block size and zone size are the same, clear_zone() not needed. */
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| 257 | scale = rip->i_sp->s_log_zone_size;
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| 258 | if (scale == 0) return;
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| 259 |
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| 260 | zone_size = (zone_t) rip->i_sp->s_block_size << scale;
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| 261 | if (flag == 1) pos = (pos/zone_size) * zone_size;
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| 262 | next = pos + rip->i_sp->s_block_size - 1;
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| 263 |
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| 264 | /* If 'pos' is in the last block of a zone, do not clear the zone. */
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| 265 | if (next/zone_size != pos/zone_size) return;
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| 266 | if ( (blo = read_map(rip, next)) == NO_BLOCK) return;
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| 267 | bhi = ( ((blo>>scale)+1) << scale) - 1;
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| 268 |
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| 269 | /* Clear all the blocks between 'blo' and 'bhi'. */
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| 270 | for (b = blo; b <= bhi; b++) {
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| 271 | bp = get_block(rip->i_dev, b, NO_READ);
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| 272 | zero_block(bp);
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| 273 | put_block(bp, FULL_DATA_BLOCK);
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| 274 | }
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| 275 | }
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| 276 |
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| 277 | /*===========================================================================*
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| 278 | * new_block *
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| 279 | *===========================================================================*/
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| 280 | PUBLIC struct buf *new_block(rip, position)
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| 281 | register struct inode *rip; /* pointer to inode */
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| 282 | off_t position; /* file pointer */
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| 283 | {
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| 284 | /* Acquire a new block and return a pointer to it. Doing so may require
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| 285 | * allocating a complete zone, and then returning the initial block.
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| 286 | * On the other hand, the current zone may still have some unused blocks.
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| 287 | */
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| 288 |
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| 289 | register struct buf *bp;
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| 290 | block_t b, base_block;
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| 291 | zone_t z;
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| 292 | zone_t zone_size;
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| 293 | int scale, r;
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| 294 | struct super_block *sp;
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| 295 |
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| 296 | /* Is another block available in the current zone? */
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| 297 | if ( (b = read_map(rip, position)) == NO_BLOCK) {
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| 298 | /* Choose first zone if possible. */
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| 299 | /* Lose if the file is nonempty but the first zone number is NO_ZONE
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| 300 | * corresponding to a zone full of zeros. It would be better to
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| 301 | * search near the last real zone.
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| 302 | */
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| 303 | if (rip->i_zone[0] == NO_ZONE) {
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| 304 | sp = rip->i_sp;
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| 305 | z = sp->s_firstdatazone;
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| 306 | } else {
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| 307 | z = rip->i_zone[0]; /* hunt near first zone */
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| 308 | }
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| 309 | if ( (z = alloc_zone(rip->i_dev, z)) == NO_ZONE) return(NIL_BUF);
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| 310 | if ( (r = write_map(rip, position, z, 0)) != OK) {
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| 311 | free_zone(rip->i_dev, z);
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| 312 | err_code = r;
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| 313 | return(NIL_BUF);
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| 314 | }
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| 315 |
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| 316 | /* If we are not writing at EOF, clear the zone, just to be safe. */
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| 317 | if ( position != rip->i_size) clear_zone(rip, position, 1);
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| 318 | scale = rip->i_sp->s_log_zone_size;
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| 319 | base_block = (block_t) z << scale;
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| 320 | zone_size = (zone_t) rip->i_sp->s_block_size << scale;
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| 321 | b = base_block + (block_t)((position % zone_size)/rip->i_sp->s_block_size);
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| 322 | }
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| 323 |
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| 324 | bp = get_block(rip->i_dev, b, NO_READ);
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| 325 | zero_block(bp);
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| 326 | return(bp);
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| 327 | }
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| 328 |
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| 329 | /*===========================================================================*
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| 330 | * zero_block *
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| 331 | *===========================================================================*/
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| 332 | PUBLIC void zero_block(bp)
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| 333 | register struct buf *bp; /* pointer to buffer to zero */
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| 334 | {
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| 335 | /* Zero a block. */
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| 336 | memset(bp->b_data, 0, _MAX_BLOCK_SIZE);
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| 337 | bp->b_dirt = DIRTY;
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| 338 | }
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