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📄 ufs.c

📁 早期freebsd实现
💻 C
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/*- * Copyright (c) 1993 *	The Regents of the University of California.  All rights reserved. * * This code is derived from software contributed to Berkeley by * The Mach Operating System project at Carnegie-Mellon University. * * Redistribution and use in source and binary forms, with or without * modification, are permitted provided that the following conditions * are met: * 1. Redistributions of source code must retain the above copyright *    notice, this list of conditions and the following disclaimer. * 2. Redistributions in binary form must reproduce the above copyright *    notice, this list of conditions and the following disclaimer in the *    documentation and/or other materials provided with the distribution. * 3. All advertising materials mentioning features or use of this software *    must display the following acknowledgement: *	This product includes software developed by the University of *	California, Berkeley and its contributors. * 4. Neither the name of the University nor the names of its contributors *    may be used to endorse or promote products derived from this software *    without specific prior written permission. * * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE * ARE DISCLAIMED.  IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF * SUCH DAMAGE. * *	@(#)ufs.c	8.2 (Berkeley) 11/30/93 *   * * Copyright (c) 1990, 1991 Carnegie Mellon University * All Rights Reserved. * * Author: David Golub *  * Permission to use, copy, modify and distribute this software and its * documentation is hereby granted, provided that both the copyright * notice and this permission notice appear in all copies of the * software, derivative works or modified versions, and any portions * thereof, and that both notices appear in supporting documentation. *  * CARNEGIE MELLON ALLOWS FREE USE OF THIS SOFTWARE IN ITS "AS IS" * CONDITION.  CARNEGIE MELLON DISCLAIMS ANY LIABILITY OF ANY KIND FOR * ANY DAMAGES WHATSOEVER RESULTING FROM THE USE OF THIS SOFTWARE. *  * Carnegie Mellon requests users of this software to return to *  *  Software Distribution Coordinator  or  Software.Distribution@CS.CMU.EDU *  School of Computer Science *  Carnegie Mellon University *  Pittsburgh PA 15213-3890 *  * any improvements or extensions that they make and grant Carnegie the * rights to redistribute these changes. *//* *	Stand-alone file reading package. */#include <sys/param.h>#include <sys/time.h>#include <ufs/ffs/fs.h>#include <ufs/ufs/dinode.h>#include <ufs/ufs/dir.h>#include <stand/stand.h>/* * In-core open file. */struct file {	off_t		f_seekp;	/* seek pointer */	struct fs	*f_fs;		/* pointer to super-block */	struct dinode	f_di;		/* copy of on-disk inode */	int		f_nindir[NIADDR];					/* number of blocks mapped by					   indirect block at level i */	char		*f_blk[NIADDR];	/* buffer for indirect block at					   level i */	u_int		f_blksize[NIADDR];					/* size of buffer */	daddr_t		f_blkno[NIADDR];/* disk address of block in buffer */	char		*f_buf;		/* buffer for data block */	u_int		f_buf_size;	/* size of data block */	daddr_t		f_buf_blkno;	/* block number of data block */};/* * Read a new inode into a file structure. */static intread_inode(inumber, f)	ino_t inumber;	struct open_file *f;{	register struct file *fp = (struct file *)f->f_fsdata;	register struct fs *fs = fp->f_fs;	char *buf;	u_int rsize;	int rc;	/*	 * Read inode and save it.	 */	buf = alloc(fs->fs_bsize);	rc = (f->f_dev->dv_strategy)(f->f_devdata, F_READ,		fsbtodb(fs, ino_to_fsba(fs, inumber)), fs->fs_bsize,		buf, &rsize);	if (rc)		goto out;	if (rsize != fs->fs_bsize) {		rc = EIO;		goto out;	}	{		register struct dinode *dp;		dp = (struct dinode *)buf;		fp->f_di = dp[ino_to_fsbo(fs, inumber)];	}	/*	 * Clear out the old buffers	 */	{		register int level;		for (level = 0; level < NIADDR; level++)			fp->f_blkno[level] = -1;		fp->f_buf_blkno = -1;	}out:	free(buf, fs->fs_bsize);	return (0);	 }/* * Given an offset in a file, find the disk block number that * contains that block. */static intblock_map(f, file_block, disk_block_p)	struct open_file *f;	daddr_t file_block;	daddr_t *disk_block_p;	/* out */{	register struct file *fp = (struct file *)f->f_fsdata;	register struct fs *fs = fp->f_fs;	int level;	int idx;	daddr_t ind_block_num;	daddr_t *ind_p;	int rc;	/*	 * Index structure of an inode:	 *	 * di_db[0..NDADDR-1]	hold block numbers for blocks	 *			0..NDADDR-1	 *	 * di_ib[0]		index block 0 is the single indirect block	 *			holds block numbers for blocks	 *			NDADDR .. NDADDR + NINDIR(fs)-1	 *	 * di_ib[1]		index block 1 is the double indirect block	 *			holds block numbers for INDEX blocks for blocks	 *			NDADDR + NINDIR(fs) ..	 *			NDADDR + NINDIR(fs) + NINDIR(fs)**2 - 1	 *	 * di_ib[2]		index block 2 is the triple indirect block	 *			holds block numbers for double-indirect	 *			blocks for blocks	 *			NDADDR + NINDIR(fs) + NINDIR(fs)**2 ..	 *			NDADDR + NINDIR(fs) + NINDIR(fs)**2	 *				+ NINDIR(fs)**3 - 1	 */	if (file_block < NDADDR) {		/* Direct block. */		*disk_block_p = fp->f_di.di_db[file_block];		return (0);	}	file_block -= NDADDR;	/*	 * nindir[0] = NINDIR	 * nindir[1] = NINDIR**2	 * nindir[2] = NINDIR**3	 *	etc	 */	for (level = 0; level < NIADDR; level++) {		if (file_block < fp->f_nindir[level])			break;		file_block -= fp->f_nindir[level];	}	if (level == NIADDR) {		/* Block number too high */		return (EFBIG);	}	ind_block_num = fp->f_di.di_ib[level];	for (; level >= 0; level--) {		if (ind_block_num == 0) {			*disk_block_p = 0;	/* missing */			return (0);		}		if (fp->f_blkno[level] != ind_block_num) {			if (fp->f_blk[level] == (char *)0)				fp->f_blk[level] =					alloc(fs->fs_bsize);			rc = (f->f_dev->dv_strategy)(f->f_devdata, F_READ,				fsbtodb(fp->f_fs, ind_block_num),				fs->fs_bsize,				fp->f_blk[level],				&fp->f_blksize[level]);			if (rc)				return (rc);			if (fp->f_blksize[level] != fs->fs_bsize)				return (EIO);			fp->f_blkno[level] = ind_block_num;		}		ind_p = (daddr_t *)fp->f_blk[level];		if (level > 0) {			idx = file_block / fp->f_nindir[level - 1];			file_block %= fp->f_nindir[level - 1];		} else			idx = file_block;		ind_block_num = ind_p[idx];	}	*disk_block_p = ind_block_num;	return (0);}/* * Read a portion of a file into an internal buffer.  Return * the location in the buffer and the amount in the buffer. */static intbuf_read_file(f, buf_p, size_p)	struct open_file *f;	char **buf_p;		/* out */	u_int *size_p;		/* out */{	register struct file *fp = (struct file *)f->f_fsdata;	register struct fs *fs = fp->f_fs;	long off;	register daddr_t file_block;	daddr_t	disk_block;	long block_size;	int rc;	off = blkoff(fs, fp->f_seekp);	file_block = lblkno(fs, fp->f_seekp);	block_size = dblksize(fs, &fp->f_di, file_block);	if (file_block != fp->f_buf_blkno) {		rc = block_map(f, file_block, &disk_block);		if (rc)			return (rc);		if (fp->f_buf == (char *)0)			fp->f_buf = alloc(fs->fs_bsize);		if (disk_block == 0) {			bzero(fp->f_buf, block_size);			fp->f_buf_size = block_size;		} else {			rc = (f->f_dev->dv_strategy)(f->f_devdata, F_READ,				fsbtodb(fs, disk_block),				block_size, fp->f_buf, &fp->f_buf_size);			if (rc)				return (rc);		}		fp->f_buf_blkno = file_block;	}	/*	 * Return address of byte in buffer corresponding to	 * offset, and size of remainder of buffer after that	 * byte.	 */	*buf_p = fp->f_buf + off;	*size_p = block_size - off;	/*	 * But truncate buffer at end of file.	 */	if (*size_p > fp->f_di.di_size - fp->f_seekp)		*size_p = fp->f_di.di_size - fp->f_seekp;	return (0);}/* * Search a directory for a name and return its * i_number. */static intsearch_directory(name, f, inumber_p)	char *name;	struct open_file *f;	ino_t *inumber_p;		/* out */{	register struct file *fp = (struct file *)f->f_fsdata;	register struct direct *dp;	struct direct *edp;	char *buf;	u_int buf_size;	int namlen, length;	int rc;	length = strlen(name);	fp->f_seekp = 0;	while (fp->f_seekp < fp->f_di.di_size) {		rc = buf_read_file(f, &buf, &buf_size);		if (rc)			return (rc);		dp = (struct direct *)buf;		edp = (struct direct *)(buf + buf_size);		while (dp < edp) {			if (dp->d_ino == (ino_t)0)				goto next;#if BYTE_ORDER == LITTLE_ENDIAN			if (fp->f_fs->fs_maxsymlinklen <= 0)				namlen = dp->d_type;			else#endif				namlen = dp->d_namlen;			if (namlen == length &&			    !strcmp(name, dp->d_name)) {				/* found entry */				*inumber_p = dp->d_ino;				return (0);			}		next:			dp = (struct direct *)((char *)dp + dp->d_reclen);		}		fp->f_seekp += buf_size;	}	return (ENOENT);}/* * Open a file. */intufs_open(path, f)	char *path;	struct open_file *f;{	register char *cp, *ncp;	register int c;	ino_t inumber, parent_inumber;	int nlinks = 0;	struct file *fp;	struct fs *fs;	int rc;	u_int buf_size;#if 0	char namebuf[MAXPATHLEN+1];#endif	/* allocate file system specific data structure */	fp = alloc(sizeof(struct file));	bzero(fp, sizeof(struct file));	f->f_fsdata = (void *)fp;	/* allocate space and read super block */	fs = alloc(SBSIZE);	fp->f_fs = fs;	rc = (f->f_dev->dv_strategy)(f->f_devdata, F_READ,		SBLOCK, SBSIZE, (char *)fs, &buf_size);	if (rc)		goto out;	if (buf_size != SBSIZE || fs->fs_magic != FS_MAGIC ||	    fs->fs_bsize > MAXBSIZE || fs->fs_bsize < sizeof(struct fs)) {		rc = EINVAL;		goto out;	}	/*	 * Calculate indirect block levels.	 */	{		register int mult;		register int level;		mult = 1;		for (level = 0; level < NIADDR; level++) {			mult *= NINDIR(fs);			fp->f_nindir[level] = mult;		}	}	inumber = ROOTINO;	if ((rc = read_inode(inumber, f)) != 0)		goto out;	cp = path;	while (*cp) {		/*		 * Remove extra separators		 */		while (*cp == '/')			cp++;		if (*cp == '\0')			break;		/*		 * Check that current node is a directory.		 */		if ((fp->f_di.di_mode & IFMT) != IFDIR) {			rc = ENOTDIR;			goto out;		}		/*		 * Get next component of path name.		 */		{			register int len = 0;			ncp = cp;			while ((c = *cp) != '\0' && c != '/') {				if (++len > MAXNAMLEN) {					rc = ENOENT;					goto out;				}				cp++;			}			*cp = '\0';		}		/*		 * Look up component in current directory.		 * Save directory inumber in case we find a		 * symbolic link.		 */		parent_inumber = inumber;		rc = search_directory(ncp, f, &inumber);		*cp = c;		if (rc)			goto out;		/*		 * Open next component.		 */		if ((rc = read_inode(inumber, f)) != 0)			goto out;#if 0		/*		 * Check for symbolic link.		 */		if ((fp->i_mode & IFMT) == IFLNK) {			int link_len = fp->f_di.di_size;			int len;			len = strlen(cp) + 1;			if (fp->f_di.di_size >= MAXPATHLEN - 1 ||			    ++nlinks > MAXSYMLINKS) {				rc = ENOENT;				goto out;			}			strcpy(&namebuf[link_len], cp);			if ((fp->i_flags & IC_FASTLINK) != 0) {				bcopy(fp->i_symlink, namebuf, (unsigned) link_len);			} else {				/*				 * Read file for symbolic link				 */				char *buf;				u_int buf_size;				daddr_t	disk_block;				register struct fs *fs = fp->f_fs;				(void) block_map(f, (daddr_t)0, &disk_block);				rc = device_read(&fp->f_dev,						 fsbtodb(fs, disk_block),						 blksize(fs, fp, 0),						 &buf, &buf_size);				if (rc)					goto out;				bcopy((char *)buf, namebuf, (unsigned)link_len);				free(buf, buf_size);			}			/*			 * If relative pathname, restart at parent directory.			 * If absolute pathname, restart at root.			 */			cp = namebuf;			if (*cp != '/')				inumber = parent_inumber;			else				inumber = (ino_t)ROOTINO;			if ((rc = read_inode(inumber, fp)) != 0)				goto out;		}#endif	}	/*	 * Found terminal component.	 */	rc = 0;out:	if (rc)		free(fp, sizeof(struct file));	return (rc);}intufs_close(f)	struct open_file *f;{	register struct file *fp = (struct file *)f->f_fsdata;	int level;	f->f_fsdata = (void *)0;	if (fp == (struct file *)0)		return (0);	for (level = 0; level < NIADDR; level++) {		if (fp->f_blk[level])			free(fp->f_blk[level], fp->f_fs->fs_bsize);	}	if (fp->f_buf)		free(fp->f_buf, fp->f_fs->fs_bsize);	free(fp->f_fs, SBSIZE);	free(fp, sizeof(struct file));	return (0);}/* * Copy a portion of a file into kernel memory. * Cross block boundaries when necessary. */intufs_read(f, start, size, resid)	struct open_file *f;	char *start;	u_int size;	u_int *resid;	/* out */{	register struct file *fp = (struct file *)f->f_fsdata;	register u_int csize;	char *buf;	u_int buf_size;	int rc = 0;	while (size != 0) {		if (fp->f_seekp >= fp->f_di.di_size)			break;		rc = buf_read_file(f, &buf, &buf_size);		if (rc)			break;		csize = size;		if (csize > buf_size)			csize = buf_size;		bcopy(buf, start, csize);		fp->f_seekp += csize;		start += csize;		size -= csize;	}	if (resid)		*resid = size;	return (rc);}/* * Not implemented. */intufs_write(f, start, size, resid)	struct open_file *f;	char *start;	u_int size;	u_int *resid;	/* out */{	return (EROFS);}off_tufs_seek(f, offset, where)	struct open_file *f;	off_t offset;	int where;{	register struct file *fp = (struct file *)f->f_fsdata;	switch (where) {	case SEEK_SET:		fp->f_seekp = offset;		break;	case SEEK_CUR:		fp->f_seekp += offset;		break;	case SEEK_END:		fp->f_seekp = fp->f_di.di_size - offset;		break;	default:		return (-1);	}	return (fp->f_seekp);}intufs_stat(f, sb)	struct open_file *f;	struct stat *sb;{	register struct file *fp = (struct file *)f->f_fsdata;	/* only important stuff */	sb->st_mode = fp->f_di.di_mode;	sb->st_uid = fp->f_di.di_uid;	sb->st_gid = fp->f_di.di_gid;	sb->st_size = fp->f_di.di_size;	return (0);}

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