mirror of
https://github.com/DoctorWkt/unix-jun72.git
synced 2026-01-13 15:27:49 +00:00
785 lines
22 KiB
C
785 lines
22 KiB
C
/*
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* Program to create a 1st Edition UNIX filesystem.
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* (c) 2008 Warren Toomey, GPL3.
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*
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* Other contributors, add your name above.
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*
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* TODO: add large file functionality
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* ensure that swap is not used on RF disk images.
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* deal with errors instead of exiting :-)
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*
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* in the long run, have the ability to read from/write to
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* existing images, a la an ftp client.
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*
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* $Revision: 1.21 $
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* $Date: 2008/05/06 09:22:07 $
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*/
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#include <sys/types.h>
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#include <stdio.h>
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#include <stdint.h>
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#include <stdlib.h>
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#include <unistd.h>
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#include <string.h>
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#include <dirent.h>
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#include <sys/stat.h>
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#define BLKSIZE 512 /* 512 bytes per block */
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#define RF_SIZE 1024 /* Number of blocks on RF11 */
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#define RF_NOSAWPSIZE 944 /* RF11 blocks excluding swap */
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#define RF_INODES 512 /* Cold UNIX sets 512 i-nodes on RF */
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#define RK_SIZE 4864 /* Number of blocks on RK03, should be 4872 */
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#define INODE_RATIO 4 /* Disksize to i-node ratio */
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#define ROOTDIR_INUM 41 /* Special i-number for / */
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#define NUMDIRECTBLKS 8 /* Only 8 direct blocks in an i-node */
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#define BLKSPERINDIRECT 256 /* 256 block pointers in an indirect block */
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struct v1inode { /* Format of 1st edition i-node */
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uint16_t flags;
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uint8_t nlinks;
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uint8_t uid;
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uint16_t size;
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uint16_t block[NUMDIRECTBLKS];
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uint8_t ctime[4]; /* To ensure correct alignment */
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uint8_t mtime[4]; /* on 32-bit platforms */
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uint16_t unused;
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};
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#define INODEPERBLOCK (BLKSIZE/sizeof(struct v1inode))
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#define I_ALLOCATED 0100000
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#define I_DIR 0040000
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#define I_MODFILE 0020000
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#define I_LARGEFILE 0010000
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#define I_SETUID 0000040
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#define I_EXEC 0000020
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#define I_UREAD 0000010
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#define I_UWRITE 0000004
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#define I_OREAD 0000002
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#define I_OWRITE 0000001
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/*
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* We build directories with certain limitations: first, they are all
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* directories under /; second, they all occupy 4 contiguous disk blocks,
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* giving us up to 64 directory entries.
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*/
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#define DIRBLOCKS 4
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#define DIRENTPERBLOCK (BLKSIZE/sizeof(struct v1dirent))
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struct v1dirent { /* Format of 1st edition dir entry */
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uint16_t inode;
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char name[8];
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};
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struct directory { /* Internal structure for each dir */
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uint16_t block; /* Starting block */
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uint16_t inum; /* I-node number used by this dir */
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int numentries; /* Number of entries in entry[] */
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int nextfree; /* Next free entry */
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struct v1dirent *entry;
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};
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#define PERMLISTSIZE 500
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struct fileperm { /* We read an external file to determine */
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char *name; /* a list of struct fileperms which we can */
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uint16_t flags; /* apply to the files which we add to the */
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uint8_t uid; /* filesystem. */
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uint32_t mtime;
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} permlist[PERMLISTSIZE];
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unsigned char buf[BLKSIZE]; /* A block buffer */
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uint16_t disksize; /* Number of blocks on disk */
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uint16_t icount=0; /* Number of i-nodes created */
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uint16_t nextfreeblock; /* The next free block available */
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uint8_t *freemap; /* In-memory free-map */
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uint8_t *inodemap; /* In-memory inode bitmap */
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struct v1inode *inodelist; /* In-memory i-node list */
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struct directory *rootdir; /* The root directory */
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FILE *diskfh; /* Disk filehandle */
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int debug=0; /* Enable debugging output */
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/* Write the superblock out to the image */
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void write_superblock(void)
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{
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uint16_t freemapsize= disksize / 8;
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uint16_t inodemapmapsize= icount / 8;
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if (debug) printf("Writing freemap and inodemap from block 0\n");
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fseek(diskfh, 0, SEEK_SET);
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fwrite(&freemapsize, sizeof(freemapsize), 1, diskfh);
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fwrite(freemap, sizeof(uint8_t), (disksize / 8), diskfh);
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fwrite(&inodemapmapsize, sizeof(inodemapmapsize), 1, diskfh);
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fwrite(inodemap, sizeof(uint8_t), ((icount - ROOTDIR_INUM) / 8), diskfh);
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if (debug) {
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long posn= ftell(diskfh);
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long block= posn/BLKSIZE;
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long off= posn/BLKSIZE;
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printf("ending up at posn %ld, block %ld, offset %ld\n", posn, block, off);
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printf("Writing inodelist from block 2\n");
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}
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fseek(diskfh, 2 * BLKSIZE, SEEK_SET);
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if (debug)
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printf("Writing %d inodes, each size %d, total %d\n",
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icount, sizeof(struct v1inode), icount * sizeof(struct v1inode));
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fwrite(&inodelist[1], sizeof(struct v1inode), icount-1, diskfh);
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if (debug) {
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long posn= ftell(diskfh);
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long block= posn/BLKSIZE;
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long off= posn/BLKSIZE;
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printf("ending up at posn %ld, block %ld, offset %ld\n", posn, block, off);
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}
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}
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/* Mark block n as being used */
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void block_inuse(int n)
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{
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int bitmap[8] = {254, 253, 251, 247, 239, 223, 191, 127};
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int offset, bitmask;
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if (n >= disksize) {
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printf("Cannot mark block %d >= disk size %d\n", n, disksize); exit(1);
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}
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offset = n / 8;
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bitmask = bitmap[n % 8];
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freemap[offset] &= bitmask;
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}
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/* Mark i-node n as being in-use */
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void inode_inuse(int n)
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{
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int bitmap[8] = {1, 2, 4, 8, 16, 32, 64, 128};
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int offset, bitmask;
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if (n >= icount) {
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printf("Cannot mark inode %d >= icount %d\n", n, icount); exit(1);
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}
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inodelist[n].flags |= I_ALLOCATED;
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offset = (n - ROOTDIR_INUM) / 8;
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bitmask = bitmap[(n - ROOTDIR_INUM) % 8];
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inodemap[offset] |= bitmask;
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}
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/* Obtain an i-node. Returns the i-number. */
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int alloc_inode(void)
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{
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int i;
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for (i = 42; i < icount; i++) {
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if (inodelist[i].flags == 0) {
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inode_inuse(i);
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return (i);
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}
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}
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printf("Cannot allocate a new i-node\n"); exit(1);
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}
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/*
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* Allocate N contiguous blocks. Returns the first block number,
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* or dies if this is impossible.
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*/
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uint16_t alloc_blocks(int n)
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{
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uint16_t i, firstblock = nextfreeblock;
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if (nextfreeblock + n >= disksize) {
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printf("Unable to allocate %d more blocks\n", n); exit(1);
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}
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for (i = nextfreeblock; i < n + nextfreeblock; i++)
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block_inuse(i);
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nextfreeblock += n;
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return (firstblock);
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}
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/* Allocate N contiguous blocks, and write a single indirect block
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* with those block numbers in it. Return the indirect block number;
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* the contiguous blocks come directly after the indirect block.
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*/
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int alloc_indirect_blocks(int n)
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{
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uint16_t blkptr[BLKSPERINDIRECT]; /* Blk pointers in the indirect blk */
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uint16_t indirect_blknum; /* Number of the indirect block */
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uint16_t i,b;
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if ( n > BLKSPERINDIRECT) {
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printf("Unable to allocate more than %d blocks in indirect\n", n); exit(1);
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}
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/* Obtain N+1 blocks, the first will be the indirect block */
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indirect_blknum= alloc_blocks(n+1);
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if (debug)
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printf("Allocated %d blocks, indirect is block %d\n", n+1, indirect_blknum);
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/* Fill the indirect block with the block numbers */
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memset(blkptr, 0, BLKSIZE);
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for (i=0,b=indirect_blknum+1; i< n; i++, b++)
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blkptr[i]= b;
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/* Write the indirect bock out to the image */
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fseek(diskfh, indirect_blknum * BLKSIZE, SEEK_SET);
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fwrite(blkptr, BLKSIZE, 1, diskfh);
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if (debug)
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printf("Wrote indirect block at %d\n", indirect_blknum);
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/* Return the indirect block number */
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return(indirect_blknum);
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}
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/* Add a filename and i-number to the given directory */
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void add_direntry(struct directory *d, uint16_t inum, char *name)
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{
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if (d == NULL) {
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printf("I need a struct directory * please\n"); exit(1);
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}
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#if 0
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/* Removed for /dev/creation */
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if (inum < ROOTDIR_INUM) {
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printf("Illegal inum %d in add_direntry\n", inum); exit(1);
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}
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#endif
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if (name && strlen(name) > 8) {
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printf("Name %s too long\n", name); exit(1);
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}
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/* Find an entry in the directory which is empty */
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if (d->nextfree >= d->numentries) {
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printf("Unable to add directory entry\n"); exit(1);
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}
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d->entry[d->nextfree].inode = inum;
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strncpy(d->entry[d->nextfree].name, name, 8);
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d->nextfree++;
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}
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/* Search for an return a struct fileperm pointer, given a directory
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* and filename. If no match is found, NULL is returned.
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*/
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struct fileperm *search_fileperm(char *dir, char *file)
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{
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int i;
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char name[BLKSIZE];
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snprintf(name, BLKSIZE, "%s/%s", dir, file);
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if (debug) printf("Searching permlist for %s\n", name);
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for (i=0; permlist[i].name; i++) {
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if (!strcmp(permlist[i].name, name)) {
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if (debug) printf("Found permlist entry for %s\n", name);
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return(&permlist[i]);
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}
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}
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return(NULL);
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}
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/*
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* Create a directory with the given name. Allocate an i-node for it, and a
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* set of blocks. Attach it to /. Return the struct allocated. If name is
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* "/", we are making the root directory itself.
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*/
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struct directory *create_dir(char *name, int numblocks)
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{
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struct directory *d;
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uint16_t inum, blk;
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int i;
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if (numblocks > 8) {
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printf("Can't allocate >8 blocks per directory\n"); exit(1);
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}
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if (name && strlen(name) > 8) {
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printf("Name %s too long\n", name); exit(1);
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}
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d = (struct directory *)calloc(1, sizeof(struct directory));
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d->numentries= numblocks * DIRENTPERBLOCK;
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d->nextfree= 0;
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d->entry= (struct v1dirent *)calloc(d->numentries, sizeof(struct v1dirent));
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/* Allocate an i-node and some blocks for the directory */
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if (strcmp(name, "/")) inum = alloc_inode();
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else inum = ROOTDIR_INUM;
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d->block = alloc_blocks(numblocks);
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d->inum= inum;
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if (debug) printf("In create_dir, got back inum %d blk %d, %d config blks\n",
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inum, d->block, numblocks);
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/* Mark the i-node as a directory */
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inodelist[inum].flags |= I_DIR | I_UREAD | I_UWRITE | I_OREAD;
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inodelist[inum].nlinks= 2; /* Size is determined at write-time */
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for (i=0, blk=d->block; i < numblocks; i++, blk++)
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inodelist[inum].block[i]= blk;
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/* If the directory is not /, attach it to rootdir */
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if (strcmp(name, "/")) {
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add_direntry(rootdir, inum, name);
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/* Update rootdir's nlinks in its inode */
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inodelist[ROOTDIR_INUM].nlinks++;
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}
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/* and add entries for . and .. */
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add_direntry(d, ROOTDIR_INUM, "..");
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add_direntry(d, inum, ".");
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if (debug)
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printf("Created dir for %s, inum %d\n", name, inum);
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return (d);
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}
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/* Write the directory out to image */
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void write_dir(struct directory *d, char *name)
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{
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if (d == NULL) {
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printf("I need a struct directory * please\n"); exit(1);
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}
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if (debug)
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printf("Writing dir %s, size %d, %d blks from block %d (offset 0x%x) on\n",
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name, d->numentries * sizeof(struct v1dirent),
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d->numentries / DIRENTPERBLOCK, d->block,
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d->block * BLKSIZE);
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/* Directory size is the # of bytes of the in-use directory entries */
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inodelist[d->inum].size= d->nextfree * sizeof(struct v1dirent);
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fseek(diskfh, d->block * BLKSIZE, SEEK_SET);
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fwrite(d->entry, d->numentries * sizeof(struct v1dirent), 1, diskfh);
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}
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/* Create a file in a given directory. Returns the first block number. */
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/* Does not actually copy the file's bits onto the image. */
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/* At present we cannot deal with very large files, i.e. > 1 indirect block */
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int create_file(struct directory *d, char *name, int size, struct fileperm *p)
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{
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uint16_t inum;
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uint16_t firstblock;
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uint32_t epoch=0;
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int i, blk, numblocks;
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if (d == NULL) {
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printf("I need a struct directory * please\n"); exit(1);
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}
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if (name == NULL) {
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printf("I need a filename please\n"); exit(1);
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}
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if (size > BLKSPERINDIRECT * BLKSIZE) {
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printf("File %s is a very large file, skipping", name); return (0);
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}
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/* Allocate an i-node and some blocks for the directory */
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inum = alloc_inode();
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numblocks = (size + BLKSIZE - 1) / BLKSIZE;
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/* Get either that many blocks, or an indirect block if a large file */
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/* and put the list of blocks in the i-node */
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if (numblocks > NUMDIRECTBLKS) {
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firstblock = alloc_indirect_blocks(numblocks);
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inodelist[inum].flags |= I_LARGEFILE;
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inodelist[inum].block[0] = firstblock;
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firstblock++; /* So that we return the 1st data block */
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} else {
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firstblock = alloc_blocks(numblocks);
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for (i = 0, blk = firstblock; i < numblocks; i++, blk++)
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inodelist[inum].block[i] = blk;
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}
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/* Make the i-node reflect the file */
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inodelist[inum].nlinks = 1;
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inodelist[inum].size = size;
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/* If we have existing permissions, use them. Otherwise, just */
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/* make some default permissions and set uid to 0 */
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if (p) {
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inodelist[inum].uid = p->uid;
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memcpy(inodelist[inum].mtime, &p->mtime, sizeof(uint32_t));
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memcpy(inodelist[inum].ctime, &p->mtime, sizeof(uint32_t));
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inodelist[inum].flags |= I_MODFILE | p->flags;
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} else {
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inodelist[inum].uid = 0;
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memcpy(inodelist[inum].mtime, &epoch, sizeof(uint32_t));
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memcpy(inodelist[inum].ctime, &epoch, sizeof(uint32_t));
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inodelist[inum].flags |= I_MODFILE | I_EXEC | I_UREAD | I_UWRITE |
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I_OREAD | I_OWRITE;
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}
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/* Add the i-node and filename to the directory */
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add_direntry(d, inum, name);
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if (debug)
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printf("Created file %s size %d inum %d\n", name, size, inum);
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return (firstblock);
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}
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/*
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* Open up the file given by the fullname, and copy
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* size bytes into the image starting at firstblock.
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*/
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void copy_file(char *fullname, int firstblock, int size)
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{
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FILE *zin;
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int cnt;
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if (debug)
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printf("Copying %s size %d to block %d (offset 0x%x) on\n",
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fullname, size, firstblock, firstblock * BLKSIZE);
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if ((zin = fopen(fullname, "r")) == NULL) {
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printf("Unable to read %s to copy onto image\n", fullname); exit(1);
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}
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fseek(diskfh, firstblock * BLKSIZE, SEEK_SET);
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while ((cnt = fread(buf, 1, BLKSIZE, zin)) > 0)
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fwrite(buf, 1, cnt, diskfh);
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fclose(zin); fflush(diskfh);
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}
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/*
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* Make a directory /dir on the image. Add all the
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* files in basedir/dir into /dir on the image.
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*/
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void add_files(char *basedir, char *dir)
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{
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struct directory *d;
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DIR *D;
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struct dirent *dp;
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struct stat sb;
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char fullname[BLKSIZE];
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uint16_t firstblock;
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struct fileperm *perms;
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/* Get the full external directory name */
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snprintf(fullname, BLKSIZE, "%s/%s", basedir, dir);
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/* Open the external directory */
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D = opendir(fullname);
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if (D == NULL) {
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printf("Cannot opendir %s\n", fullname); exit(1);
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}
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/* Create the image directory */
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d = create_dir(dir, DIRBLOCKS);
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/* Walk the directory */
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while ((dp = readdir(D)) != NULL) {
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if (!strcmp(dp->d_name, ".")) continue; /* Skip . and .. */
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if (!strcmp(dp->d_name, "..")) continue;
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/* Stat the entry found */
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snprintf(fullname, BLKSIZE, "%s/%s/%s", basedir, dir, dp->d_name);
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if (stat(fullname, &sb) < 0) {
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printf("Cannot stat %s\n", fullname); continue;
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}
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/* Skip if it is not a regular file */
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if (!S_ISREG(sb.st_mode)) continue;
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/* Skip if it's too big */
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if (sb.st_size > BLKSPERINDIRECT * BLKSIZE) {
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printf("Skipping very large file %s for now\n", fullname); continue;
|
|
}
|
|
|
|
/* Skip if the name is too long */
|
|
if (strlen(dp->d_name) > 8) {
|
|
printf("Skipping long filename %s for now\n", fullname); continue;
|
|
}
|
|
|
|
/* Search for any known permissions for this file */
|
|
perms= search_fileperm(dir, dp->d_name);
|
|
|
|
/* Create the file's i-node */
|
|
/* and copy the file into the image */
|
|
firstblock = create_file(d, dp->d_name, sb.st_size, perms);
|
|
copy_file(fullname, firstblock, sb.st_size);
|
|
}
|
|
closedir(D);
|
|
|
|
/* And write the directory out */
|
|
write_dir(d, dir);
|
|
}
|
|
|
|
/* Following the cold UNIX rf output, make /dev. In /dev,
|
|
* make devices with specific i-nums, which I guess act like
|
|
* early major/minor device numbers.
|
|
*/
|
|
void add_devdir(void)
|
|
{
|
|
struct dev {
|
|
char *name;
|
|
uint16_t inum;
|
|
} devlist[] = {
|
|
{ "tty", 1 },
|
|
{ "ppt", 2 },
|
|
{ "mem", 3 },
|
|
{ "rf0", 4 },
|
|
{ "rk0", 5 },
|
|
{ "tap0", 6 },
|
|
{ "tap1", 7 },
|
|
{ "tap2", 8 },
|
|
{ "tap3", 9 },
|
|
{ "tap4", 10 },
|
|
{ "tap5", 11 },
|
|
{ "tap6", 12 },
|
|
{ "tap7", 13 },
|
|
{ "tty0", 14 },
|
|
{ "tty1", 15 },
|
|
{ "tty2", 16 },
|
|
{ "tty3", 17 },
|
|
{ "tty4", 18 },
|
|
{ "tty5", 19 },
|
|
{ "tty6", 20 },
|
|
{ "tty7", 21 },
|
|
{ "lpr", 22 },
|
|
{ "tty8", 1 },
|
|
{ NULL, 0 },
|
|
};
|
|
|
|
struct directory *d;
|
|
int i;
|
|
|
|
d = create_dir("dev", 1); /* cold UNIX only uses 1 block */
|
|
|
|
for (i=0; devlist[i].name !=NULL; i++) {
|
|
add_direntry(d, devlist[i].inum, devlist[i].name);
|
|
}
|
|
|
|
/* And write the directory out */
|
|
write_dir(d, "dev");
|
|
}
|
|
|
|
/*
|
|
* Given a top-level directory, find all of the subdirectories,
|
|
* and add them and their files into the image.
|
|
*/
|
|
void process_topdir(char *topdir)
|
|
{
|
|
DIR *D;
|
|
struct dirent *dp;
|
|
struct stat sb;
|
|
char fullname[BLKSIZE];
|
|
|
|
/* Open the top directory */
|
|
D = opendir(topdir);
|
|
if (D == NULL) {
|
|
printf("Cannot opendir %s\n", topdir); exit(1);
|
|
}
|
|
|
|
/* Walk the directory */
|
|
while ((dp = readdir(D)) != NULL) {
|
|
if (!strcmp(dp->d_name, ".")) continue; /* Skip . and .. */
|
|
if (!strcmp(dp->d_name, "..")) continue;
|
|
|
|
/* Stat the entry found */
|
|
snprintf(fullname, BLKSIZE, "%s/%s", topdir, dp->d_name);
|
|
if (stat(fullname, &sb) < 0) {
|
|
printf("Cannot stat %s\n", fullname); continue;
|
|
}
|
|
|
|
/* Skip if it is not a directory */
|
|
if (!S_ISDIR(sb.st_mode)) continue;
|
|
|
|
/* Skip if the name is too long */
|
|
if (strlen(dp->d_name) > 8) {
|
|
printf("Skipping long dirname %s for now\n", fullname); continue;
|
|
}
|
|
|
|
/* Now process that directory and its files */
|
|
add_files(topdir, dp->d_name);
|
|
}
|
|
closedir(D);
|
|
}
|
|
|
|
/* Open and parse the file to obtain a list of V1 file owner/perm/dates.
|
|
* The file has a very specific format. Lines before '======' are ignored.
|
|
* After that, each line represents one file, and has pcre line format:
|
|
*
|
|
*
|
|
* ^[-xu][-r][-w][-r][-w] +\d+.*\/\S+ *\d+
|
|
*
|
|
* First 5 chars represent x=executable, u=setuid, r=read, w=write.
|
|
* Spaces separate the permissions and the decimal userid.
|
|
* Then we look for a / which begins the full pathname.
|
|
* Spaces seperate the full pathname and the timestamp which is in 1/60th
|
|
* of a second since the beginning of the year.
|
|
*/
|
|
void read_permsfile(char *file)
|
|
{
|
|
FILE *zin;
|
|
char linebuf[BLKSIZE];
|
|
char *cptr, *sptr;
|
|
int posn=0;
|
|
|
|
if (file==NULL) return;
|
|
if ((zin= fopen(file, "r"))==NULL) return;
|
|
|
|
/* Find line beginning with = */
|
|
while (1) {
|
|
if (fgets(linebuf, BLKSIZE-1, zin)==NULL) {
|
|
fclose(zin); return;
|
|
}
|
|
if (linebuf[0]== '=') break;
|
|
}
|
|
|
|
/* Now read and parse each line */
|
|
while (1) {
|
|
if ((posn >= PERMLISTSIZE) || (fgets(linebuf, BLKSIZE-1, zin)==NULL)) {
|
|
fclose(zin); return;
|
|
}
|
|
|
|
/* Skip if junk permissions */
|
|
if (linebuf[0] != '-' && linebuf[0] != 'x' && linebuf[0] != 'u')
|
|
continue;
|
|
|
|
/* Get the permissions */
|
|
permlist[posn].flags=0;
|
|
if (linebuf[0] == 'x') permlist[posn].flags |= I_EXEC;
|
|
if (linebuf[0] == 'u') permlist[posn].flags |= I_SETUID | I_EXEC;
|
|
if (linebuf[1] == 'r') permlist[posn].flags |= I_UREAD;
|
|
if (linebuf[2] == 'w') permlist[posn].flags |= I_UWRITE;
|
|
if (linebuf[3] == 'r') permlist[posn].flags |= I_OREAD;
|
|
if (linebuf[4] == 'w') permlist[posn].flags |= I_OWRITE;
|
|
|
|
/* Get the userid */
|
|
permlist[posn].uid= strtol(&linebuf[5], NULL , 10);
|
|
|
|
/* Search for the full pathname, skip line if not found */
|
|
if ((cptr= strchr(linebuf, '/'))==NULL) continue;
|
|
|
|
/* Find the space after the full name, skip if not found */
|
|
/* Null-terminate the filename */
|
|
if ((sptr= strchr(cptr, ' '))==NULL) continue;
|
|
*(sptr++)= '\0';
|
|
|
|
/* Copy the pathname minus the leading slash */
|
|
/* However, if it starts with "/usr/", skip "/usr/" */
|
|
if (!strncmp(cptr, "/usr/", 5))
|
|
cptr+= 5;
|
|
else
|
|
cptr++;
|
|
permlist[posn].name= strdup(cptr);
|
|
|
|
/* Finally get the timestamp */
|
|
permlist[posn].mtime= strtol(sptr, NULL , 10);
|
|
|
|
if (debug) {
|
|
printf("0%2o %2d %10d %s\n", permlist[posn].flags, permlist[posn].uid,
|
|
permlist[posn].mtime, permlist[posn].name);
|
|
}
|
|
posn++;
|
|
}
|
|
}
|
|
|
|
|
|
void usage(void)
|
|
{
|
|
printf("Usage: mkfs [-d] [-p permsfile] topdir image rk/rf\n");
|
|
printf("\ttopdir is an existing dir which holds bin/, etc/, tmp/ ...\n");
|
|
printf("\timage will be the image created\n");
|
|
printf("\tlast argument is either 'rk' or 'rf'\n");
|
|
printf("\t-d enables debugging output\n");
|
|
printf("\t-p reads the named file to obtain a list of V1 file permissions\n");
|
|
exit(1);
|
|
}
|
|
|
|
int main(int argc, char *argv[])
|
|
{
|
|
int makedevflag=0; /* Do we make the /dev directory? */
|
|
int i,ch;
|
|
int numiblocks;
|
|
int fs_size; /* Equal to disksize minus any swap */
|
|
|
|
/* Get any optional arguments */
|
|
while ((ch = getopt(argc, argv, "dp:")) != -1) {
|
|
switch (ch) {
|
|
case 'd': debug=1; break;
|
|
case 'p': read_permsfile(optarg); break;
|
|
}
|
|
}
|
|
|
|
argc -= optind;
|
|
argv += optind;
|
|
|
|
/* Get the image name and the type of disk */
|
|
if (argc != 3) usage();
|
|
if (strcmp(argv[2], "rk") && strcmp(argv[2], "rf")) usage();
|
|
|
|
/* Set the disk size */
|
|
if (argv[2][1] == 'k') { /* RK device */
|
|
/* XXX: I can't seem to go past 4864 to 4872 blocks, and I haven't */
|
|
/* worked out why yet. */
|
|
disksize = RK_SIZE;
|
|
fs_size = RK_SIZE;
|
|
} else {
|
|
disksize = RF_SIZE;
|
|
fs_size = RF_NOSAWPSIZE;
|
|
makedevflag=1;
|
|
}
|
|
|
|
/* Create the image */
|
|
diskfh = fopen(argv[1], "w+");
|
|
if (diskfh == NULL) {
|
|
printf("Unable to create image %s\n", argv[1]); exit(1);
|
|
}
|
|
|
|
/* Make the image full-sized */
|
|
for (i = 0; i < fs_size; i++)
|
|
fwrite(buf, BLKSIZE, 1, diskfh);
|
|
|
|
/* Create the free-map: fortunately RK_SIZE and RF_SIZE are divisible by 8 */
|
|
/* Make all the blocks free to start with */
|
|
freemap = (uint8_t *)malloc(disksize / 8);
|
|
for (i = 0; i < disksize / 8; i++)
|
|
freemap[i] = 0xff;
|
|
|
|
/* Mark blocks 0 and 1 as in-use */
|
|
block_inuse(0); block_inuse(1);
|
|
|
|
/* Choose disksize/INODE_RATIO as the number of i-nodes to allocate */
|
|
/* if we haven't already given icount a value. */
|
|
/* Make sure that it is divisible by 8 */
|
|
if (icount==0)
|
|
icount = 8 * (disksize / INODE_RATIO / 8);
|
|
|
|
/* Create the inode bitmap and inode list */
|
|
inodemap = (uint8_t *)calloc(1, (icount - ROOTDIR_INUM) / 8);
|
|
inodelist = (struct v1inode *)calloc(icount, sizeof(struct v1inode));
|
|
|
|
/* Mark special i-nodes 0 to ROOTDIR_INUM-1 as allocated */
|
|
/* We follow the output of cold UNIX here. */
|
|
for (i = 0; i < ROOTDIR_INUM; i++) {
|
|
inodelist[i].flags |= I_ALLOCATED|I_UREAD|I_UWRITE|I_OREAD|I_OWRITE;
|
|
inodelist[i].nlinks= 1;
|
|
inodelist[i].uid= 1;
|
|
inodelist[i].mtime[3]= 0x38;
|
|
}
|
|
|
|
/* INODEPERBLOCK i-nodes fit into a block, so work out how many blocks the */
|
|
/* inodelist occupies. Round up to ensure a partial block => full block */
|
|
/* Mark the blocks from 2 up as being in-use */
|
|
numiblocks = (icount + INODEPERBLOCK -1) / INODEPERBLOCK;
|
|
if (debug)
|
|
printf("%d i-nodes, %d i-node blocks\n", icount, numiblocks);
|
|
nextfreeblock = 2 + numiblocks;
|
|
for (i = 2; i < nextfreeblock; i++)
|
|
block_inuse(i);
|
|
|
|
|
|
/* Mark the root directory i-node (ROOTDIR_INUM) as in-use */
|
|
/* Create the root directory */
|
|
inode_inuse(ROOTDIR_INUM);
|
|
rootdir = create_dir("/", 1); /* cold UNIX only uses 1 block */
|
|
|
|
/* Now create the /dev directory by hand */
|
|
if (makedevflag)
|
|
add_devdir();
|
|
|
|
/* Walk the top directory argument, dealing with the subdirs */
|
|
process_topdir(argv[0]);
|
|
|
|
/* Write out the root directory */
|
|
write_dir(rootdir, "/");
|
|
|
|
/* Write out the superblock and i-nodes */
|
|
write_superblock();
|
|
|
|
fclose(diskfh);
|
|
exit(0);
|
|
}
|