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walk.c revision 1.24.8.2
      1  1.24.8.2      yamt /*	$NetBSD: walk.c,v 1.24.8.2 2012/05/23 10:08:28 yamt Exp $	*/
      2       1.1     lukem 
      3       1.1     lukem /*
      4       1.5     lukem  * Copyright (c) 2001 Wasabi Systems, Inc.
      5       1.1     lukem  * All rights reserved.
      6       1.1     lukem  *
      7       1.1     lukem  * Written by Luke Mewburn for Wasabi Systems, Inc.
      8       1.1     lukem  *
      9       1.1     lukem  * Redistribution and use in source and binary forms, with or without
     10       1.1     lukem  * modification, are permitted provided that the following conditions
     11       1.1     lukem  * are met:
     12       1.1     lukem  * 1. Redistributions of source code must retain the above copyright
     13       1.1     lukem  *    notice, this list of conditions and the following disclaimer.
     14       1.1     lukem  * 2. Redistributions in binary form must reproduce the above copyright
     15       1.1     lukem  *    notice, this list of conditions and the following disclaimer in the
     16       1.1     lukem  *    documentation and/or other materials provided with the distribution.
     17       1.1     lukem  * 3. All advertising materials mentioning features or use of this software
     18       1.1     lukem  *    must display the following acknowledgement:
     19       1.1     lukem  *      This product includes software developed for the NetBSD Project by
     20       1.1     lukem  *      Wasabi Systems, Inc.
     21       1.1     lukem  * 4. The name of Wasabi Systems, Inc. may not be used to endorse
     22       1.1     lukem  *    or promote products derived from this software without specific prior
     23       1.1     lukem  *    written permission.
     24       1.1     lukem  *
     25       1.1     lukem  * THIS SOFTWARE IS PROVIDED BY WASABI SYSTEMS, INC. ``AS IS'' AND
     26       1.1     lukem  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     27       1.1     lukem  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     28       1.1     lukem  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL WASABI SYSTEMS, INC
     29       1.1     lukem  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     30       1.1     lukem  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     31       1.1     lukem  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     32       1.1     lukem  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     33       1.1     lukem  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     34       1.1     lukem  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     35       1.1     lukem  * POSSIBILITY OF SUCH DAMAGE.
     36       1.1     lukem  */
     37       1.1     lukem 
     38      1.17       jmc #if HAVE_NBTOOL_CONFIG_H
     39      1.17       jmc #include "nbtool_config.h"
     40      1.17       jmc #endif
     41      1.17       jmc 
     42       1.2     lukem #include <sys/cdefs.h>
     43       1.8        tv #if defined(__RCSID) && !defined(__lint)
     44  1.24.8.2      yamt __RCSID("$NetBSD: walk.c,v 1.24.8.2 2012/05/23 10:08:28 yamt Exp $");
     45       1.2     lukem #endif	/* !__lint */
     46       1.1     lukem 
     47       1.1     lukem #include <sys/param.h>
     48       1.1     lukem 
     49       1.1     lukem #include <assert.h>
     50       1.1     lukem #include <errno.h>
     51       1.1     lukem #include <fcntl.h>
     52       1.1     lukem #include <stdio.h>
     53       1.1     lukem #include <dirent.h>
     54       1.1     lukem #include <stdlib.h>
     55       1.1     lukem #include <string.h>
     56       1.1     lukem #include <unistd.h>
     57      1.19    dyoung #include <sys/stat.h>
     58       1.1     lukem 
     59       1.1     lukem #include "makefs.h"
     60       1.1     lukem #include "mtree.h"
     61       1.1     lukem 
     62      1.23       dbj static	void	 apply_specdir(const char *, NODE *, fsnode *, int);
     63       1.1     lukem static	void	 apply_specentry(const char *, NODE *, fsnode *);
     64  1.24.8.1      yamt static	fsnode	*create_fsnode(const char *, const char *, const char *,
     65  1.24.8.1      yamt 			       struct stat *);
     66       1.6     lukem static	fsinode	*link_check(fsinode *);
     67       1.1     lukem 
     68       1.1     lukem 
     69       1.1     lukem /*
     70       1.1     lukem  * walk_dir --
     71  1.24.8.1      yamt  *	build a tree of fsnodes from `root' and `dir', with a parent
     72  1.24.8.1      yamt  *	fsnode of `parent' (which may be NULL for the root of the tree).
     73  1.24.8.1      yamt  *	append the tree to a fsnode of `join' if it is not NULL.
     74       1.1     lukem  *	each "level" is a directory, with the "." entry guaranteed to be
     75       1.1     lukem  *	at the start of the list, and without ".." entries.
     76       1.1     lukem  */
     77       1.1     lukem fsnode *
     78  1.24.8.1      yamt walk_dir(const char *root, const char *dir, fsnode *parent, fsnode *join)
     79       1.1     lukem {
     80  1.24.8.1      yamt 	fsnode		*first, *cur, *prev, *last;
     81       1.1     lukem 	DIR		*dirp;
     82       1.1     lukem 	struct dirent	*dent;
     83       1.1     lukem 	char		path[MAXPATHLEN + 1];
     84       1.1     lukem 	struct stat	stbuf;
     85  1.24.8.1      yamt 	char		*name, *rp;
     86  1.24.8.1      yamt 	int		dot, len;
     87       1.1     lukem 
     88  1.24.8.1      yamt 	assert(root != NULL);
     89       1.1     lukem 	assert(dir != NULL);
     90       1.1     lukem 
     91  1.24.8.1      yamt 	len = snprintf(path, sizeof(path), "%s/%s", root, dir);
     92  1.24.8.1      yamt 	if (len >= (int)sizeof(path))
     93  1.24.8.1      yamt 		errx(1, "Pathname too long.");
     94       1.1     lukem 	if (debug & DEBUG_WALK_DIR)
     95  1.24.8.1      yamt 		printf("walk_dir: %s %p\n", path, parent);
     96  1.24.8.1      yamt 	if ((dirp = opendir(path)) == NULL)
     97  1.24.8.1      yamt 		err(1, "Can't opendir `%s'", path);
     98  1.24.8.1      yamt 	rp = path + strlen(root) + 1;
     99  1.24.8.1      yamt 	if (join != NULL) {
    100  1.24.8.1      yamt 		first = cur = join;
    101  1.24.8.1      yamt 		while (cur->next != NULL)
    102  1.24.8.1      yamt 			cur = cur->next;
    103  1.24.8.1      yamt 		prev = last = cur;
    104  1.24.8.1      yamt 	} else
    105  1.24.8.1      yamt 		last = first = prev = NULL;
    106       1.1     lukem 	while ((dent = readdir(dirp)) != NULL) {
    107  1.24.8.1      yamt 		name = dent->d_name;
    108  1.24.8.1      yamt 		dot = 0;
    109  1.24.8.1      yamt 		if (name[0] == '.')
    110  1.24.8.1      yamt 			switch (name[1]) {
    111  1.24.8.1      yamt 			case '\0':	/* "." */
    112  1.24.8.1      yamt 				if (join != NULL)
    113  1.24.8.1      yamt 					continue;
    114  1.24.8.1      yamt 				dot = 1;
    115  1.24.8.1      yamt 				break;
    116  1.24.8.1      yamt 			case '.':	/* ".." */
    117  1.24.8.1      yamt 				if (name[2] == '\0')
    118  1.24.8.1      yamt 					continue;
    119  1.24.8.1      yamt 				/* FALLTHROUGH */
    120  1.24.8.1      yamt 			default:
    121  1.24.8.1      yamt 				dot = 0;
    122  1.24.8.1      yamt 			}
    123       1.1     lukem 		if (debug & DEBUG_WALK_DIR_NODE)
    124  1.24.8.1      yamt 			printf("scanning %s/%s/%s\n", root, dir, name);
    125  1.24.8.1      yamt 		if (snprintf(path + len, sizeof(path) - len, "/%s", name) >=
    126  1.24.8.1      yamt 		    (int)sizeof(path) - len)
    127       1.1     lukem 			errx(1, "Pathname too long.");
    128       1.1     lukem 		if (lstat(path, &stbuf) == -1)
    129       1.1     lukem 			err(1, "Can't lstat `%s'", path);
    130      1.17       jmc #ifdef S_ISSOCK
    131       1.1     lukem 		if (S_ISSOCK(stbuf.st_mode & S_IFMT)) {
    132       1.1     lukem 			if (debug & DEBUG_WALK_DIR_NODE)
    133       1.1     lukem 				printf("  skipping socket %s\n", path);
    134       1.1     lukem 			continue;
    135       1.1     lukem 		}
    136      1.17       jmc #endif
    137       1.1     lukem 
    138  1.24.8.1      yamt 		if (join != NULL) {
    139  1.24.8.1      yamt 			cur = join->next;
    140  1.24.8.1      yamt 			for (;;) {
    141  1.24.8.1      yamt 				if (cur == NULL || strcmp(cur->name, name) == 0)
    142  1.24.8.1      yamt 					break;
    143  1.24.8.1      yamt 				if (cur == last) {
    144  1.24.8.1      yamt 					cur = NULL;
    145  1.24.8.1      yamt 					break;
    146  1.24.8.1      yamt 				}
    147  1.24.8.1      yamt 				cur = cur->next;
    148  1.24.8.1      yamt 			}
    149  1.24.8.1      yamt 			if (cur != NULL) {
    150  1.24.8.1      yamt 				if (S_ISDIR(cur->type) &&
    151  1.24.8.1      yamt 				    S_ISDIR(stbuf.st_mode)) {
    152  1.24.8.1      yamt 					if (debug & DEBUG_WALK_DIR_NODE)
    153  1.24.8.1      yamt 						printf("merging %s with %p\n",
    154  1.24.8.1      yamt 						    path, cur->child);
    155  1.24.8.1      yamt 					cur->child = walk_dir(root, rp, cur,
    156  1.24.8.1      yamt 					    cur->child);
    157  1.24.8.1      yamt 					continue;
    158  1.24.8.1      yamt 				}
    159  1.24.8.1      yamt 				errx(1, "Can't merge %s `%s' with existing %s",
    160  1.24.8.1      yamt 				    inode_type(stbuf.st_mode), path,
    161  1.24.8.1      yamt 				    inode_type(cur->type));
    162  1.24.8.1      yamt 			}
    163  1.24.8.1      yamt 		}
    164  1.24.8.1      yamt 
    165  1.24.8.1      yamt 		cur = create_fsnode(root, dir, name, &stbuf);
    166       1.1     lukem 		cur->parent = parent;
    167  1.24.8.1      yamt 		if (dot) {
    168       1.1     lukem 				/* ensure "." is at the start of the list */
    169       1.1     lukem 			cur->next = first;
    170       1.1     lukem 			first = cur;
    171       1.1     lukem 			if (! prev)
    172       1.1     lukem 				prev = cur;
    173  1.24.8.1      yamt 			cur->first = first;
    174       1.1     lukem 		} else {			/* not "." */
    175       1.1     lukem 			if (prev)
    176       1.1     lukem 				prev->next = cur;
    177       1.1     lukem 			prev = cur;
    178       1.1     lukem 			if (!first)
    179       1.1     lukem 				first = cur;
    180  1.24.8.1      yamt 			cur->first = first;
    181       1.1     lukem 			if (S_ISDIR(cur->type)) {
    182  1.24.8.1      yamt 				cur->child = walk_dir(root, rp, cur, NULL);
    183       1.1     lukem 				continue;
    184       1.1     lukem 			}
    185       1.1     lukem 		}
    186       1.6     lukem 		if (stbuf.st_nlink > 1) {
    187       1.6     lukem 			fsinode	*curino;
    188       1.6     lukem 
    189       1.6     lukem 			curino = link_check(cur->inode);
    190       1.6     lukem 			if (curino != NULL) {
    191       1.6     lukem 				free(cur->inode);
    192       1.6     lukem 				cur->inode = curino;
    193       1.6     lukem 				cur->inode->nlink++;
    194      1.20       dbj 				if (debug & DEBUG_WALK_DIR_LINKCHECK)
    195      1.24  christos 					printf("link_check: found [%llu, %llu]\n",
    196      1.24  christos 					    (unsigned long long)curino->st.st_dev,
    197      1.20       dbj 					    (unsigned long long)curino->st.st_ino);
    198       1.6     lukem 			}
    199       1.1     lukem 		}
    200       1.1     lukem 		if (S_ISLNK(cur->type)) {
    201       1.1     lukem 			char	slink[PATH_MAX+1];
    202       1.1     lukem 			int	llen;
    203       1.1     lukem 
    204      1.13    itojun 			llen = readlink(path, slink, sizeof(slink) - 1);
    205       1.1     lukem 			if (llen == -1)
    206       1.1     lukem 				err(1, "Readlink `%s'", path);
    207       1.1     lukem 			slink[llen] = '\0';
    208       1.1     lukem 			if ((cur->symlink = strdup(slink)) == NULL)
    209       1.1     lukem 				err(1, "Memory allocation error");
    210       1.1     lukem 		}
    211       1.1     lukem 	}
    212  1.24.8.1      yamt 	assert(first != NULL);
    213  1.24.8.1      yamt 	if (join == NULL)
    214  1.24.8.1      yamt 		for (cur = first->next; cur != NULL; cur = cur->next)
    215  1.24.8.1      yamt 			cur->first = first;
    216       1.1     lukem 	if (closedir(dirp) == -1)
    217  1.24.8.1      yamt 		err(1, "Can't closedir `%s/%s'", root, dir);
    218       1.1     lukem 	return (first);
    219       1.1     lukem }
    220       1.1     lukem 
    221       1.1     lukem static fsnode *
    222  1.24.8.1      yamt create_fsnode(const char *root, const char *path, const char *name,
    223  1.24.8.1      yamt     struct stat *stbuf)
    224       1.1     lukem {
    225       1.1     lukem 	fsnode *cur;
    226       1.1     lukem 
    227       1.1     lukem 	if ((cur = calloc(1, sizeof(fsnode))) == NULL ||
    228  1.24.8.1      yamt 	    (cur->path = strdup(path)) == NULL ||
    229       1.7     lukem 	    (cur->name = strdup(name)) == NULL ||
    230       1.7     lukem 	    (cur->inode = calloc(1, sizeof(fsinode))) == NULL)
    231       1.1     lukem 		err(1, "Memory allocation error");
    232  1.24.8.1      yamt 	cur->root = root;
    233       1.6     lukem 	cur->type = stbuf->st_mode & S_IFMT;
    234       1.7     lukem 	cur->inode->nlink = 1;
    235       1.7     lukem 	cur->inode->st = *stbuf;
    236       1.1     lukem 	return (cur);
    237       1.1     lukem }
    238       1.1     lukem 
    239       1.1     lukem /*
    240      1.22       dbj  * free_fsnodes --
    241      1.22       dbj  *	Removes node from tree and frees it and all of
    242      1.22       dbj  *   its decendents.
    243      1.22       dbj  */
    244      1.22       dbj void
    245      1.22       dbj free_fsnodes(fsnode *node)
    246      1.22       dbj {
    247      1.22       dbj 	fsnode	*cur, *next;
    248      1.22       dbj 
    249      1.22       dbj 	assert(node != NULL);
    250      1.22       dbj 
    251      1.22       dbj 	/* for ".", start with actual parent node */
    252      1.22       dbj 	if (node->first == node) {
    253      1.22       dbj 		assert(node->name[0] == '.' && node->name[1] == '\0');
    254      1.22       dbj 		if (node->parent) {
    255      1.22       dbj 			assert(node->parent->child == node);
    256      1.22       dbj 			node = node->parent;
    257      1.22       dbj 		}
    258      1.22       dbj 	}
    259      1.22       dbj 
    260      1.22       dbj 	/* Find ourselves in our sibling list and unlink */
    261      1.22       dbj 	if (node->first != node) {
    262      1.22       dbj 		for (cur = node->first; cur->next; cur = cur->next) {
    263      1.22       dbj 			if (cur->next == node) {
    264      1.22       dbj 				cur->next = node->next;
    265      1.22       dbj 				node->next = NULL;
    266      1.22       dbj 				break;
    267      1.22       dbj 			}
    268      1.22       dbj 		}
    269      1.22       dbj 	}
    270      1.22       dbj 
    271      1.22       dbj 	for (cur = node; cur != NULL; cur = next) {
    272      1.22       dbj 		next = cur->next;
    273      1.22       dbj 		if (cur->child) {
    274      1.22       dbj 			cur->child->parent = NULL;
    275      1.22       dbj 			free_fsnodes(cur->child);
    276      1.22       dbj 		}
    277      1.22       dbj 		if (cur->inode->nlink-- == 1)
    278      1.22       dbj 			free(cur->inode);
    279      1.22       dbj 		if (cur->symlink)
    280      1.22       dbj 			free(cur->symlink);
    281  1.24.8.1      yamt 		free(cur->path);
    282      1.22       dbj 		free(cur->name);
    283      1.22       dbj 		free(cur);
    284      1.22       dbj 	}
    285      1.22       dbj }
    286      1.22       dbj 
    287      1.22       dbj /*
    288       1.1     lukem  * apply_specfile --
    289       1.1     lukem  *	read in the mtree(8) specfile, and apply it to the tree
    290       1.1     lukem  *	at dir,parent. parameters in parent on equivalent types
    291       1.1     lukem  *	will be changed to those found in specfile, and missing
    292       1.1     lukem  *	entries will be added.
    293       1.1     lukem  */
    294       1.1     lukem void
    295      1.23       dbj apply_specfile(const char *specfile, const char *dir, fsnode *parent, int speconly)
    296       1.1     lukem {
    297       1.1     lukem 	struct timeval	 start;
    298       1.1     lukem 	FILE	*fp;
    299       1.1     lukem 	NODE	*root;
    300       1.1     lukem 
    301       1.1     lukem 	assert(specfile != NULL);
    302       1.1     lukem 	assert(parent != NULL);
    303       1.1     lukem 
    304       1.1     lukem 	if (debug & DEBUG_APPLY_SPECFILE)
    305       1.1     lukem 		printf("apply_specfile: %s, %s %p\n", specfile, dir, parent);
    306       1.1     lukem 
    307       1.1     lukem 				/* read in the specfile */
    308       1.1     lukem 	if ((fp = fopen(specfile, "r")) == NULL)
    309       1.1     lukem 		err(1, "Can't open `%s'", specfile);
    310       1.1     lukem 	TIMER_START(start);
    311       1.1     lukem 	root = spec(fp);
    312       1.1     lukem 	TIMER_RESULTS(start, "spec");
    313       1.1     lukem 	if (fclose(fp) == EOF)
    314       1.1     lukem 		err(1, "Can't close `%s'", specfile);
    315       1.1     lukem 
    316       1.1     lukem 				/* perform some sanity checks */
    317       1.1     lukem 	if (root == NULL)
    318       1.1     lukem 		errx(1, "Specfile `%s' did not contain a tree", specfile);
    319       1.1     lukem 	assert(strcmp(root->name, ".") == 0);
    320       1.1     lukem 	assert(root->type == F_DIR);
    321       1.1     lukem 
    322       1.1     lukem 				/* merge in the changes */
    323      1.23       dbj 	apply_specdir(dir, root, parent, speconly);
    324      1.21       dbj 
    325      1.21       dbj 	free_nodes(root);
    326       1.1     lukem }
    327       1.1     lukem 
    328       1.1     lukem static void
    329      1.23       dbj apply_specdir(const char *dir, NODE *specnode, fsnode *dirnode, int speconly)
    330       1.1     lukem {
    331       1.1     lukem 	char	 path[MAXPATHLEN + 1];
    332       1.1     lukem 	NODE	*curnode;
    333       1.1     lukem 	fsnode	*curfsnode;
    334       1.1     lukem 
    335       1.1     lukem 	assert(specnode != NULL);
    336       1.1     lukem 	assert(dirnode != NULL);
    337       1.1     lukem 
    338       1.1     lukem 	if (debug & DEBUG_APPLY_SPECFILE)
    339       1.1     lukem 		printf("apply_specdir: %s %p %p\n", dir, specnode, dirnode);
    340       1.1     lukem 
    341       1.1     lukem 	if (specnode->type != F_DIR)
    342       1.1     lukem 		errx(1, "Specfile node `%s/%s' is not a directory",
    343       1.1     lukem 		    dir, specnode->name);
    344       1.1     lukem 	if (dirnode->type != S_IFDIR)
    345       1.1     lukem 		errx(1, "Directory node `%s/%s' is not a directory",
    346       1.1     lukem 		    dir, dirnode->name);
    347       1.1     lukem 
    348       1.1     lukem 	apply_specentry(dir, specnode, dirnode);
    349       1.1     lukem 
    350      1.23       dbj 	/* Remove any filesystem nodes not found in specfile */
    351      1.23       dbj 	/* XXX inefficient.  This is O^2 in each dir and it would
    352      1.23       dbj 	 * have been better never to have walked this part of the tree
    353      1.23       dbj 	 * to begin with
    354      1.23       dbj 	 */
    355      1.23       dbj 	if (speconly) {
    356      1.23       dbj 		fsnode *next;
    357      1.23       dbj 		assert(dirnode->name[0] == '.' && dirnode->name[1] == '\0');
    358      1.23       dbj 		for (curfsnode = dirnode->next; curfsnode != NULL; curfsnode = next) {
    359      1.23       dbj 			next = curfsnode->next;
    360      1.23       dbj 			for (curnode = specnode->child; curnode != NULL;
    361      1.23       dbj 			     curnode = curnode->next) {
    362      1.23       dbj 				if (strcmp(curnode->name, curfsnode->name) == 0)
    363      1.23       dbj 					break;
    364      1.23       dbj 			}
    365      1.23       dbj 			if (curnode == NULL) {
    366      1.23       dbj 				if (debug & DEBUG_APPLY_SPECONLY) {
    367      1.23       dbj 					printf("apply_specdir: trimming %s/%s %p\n", dir, curfsnode->name, curfsnode);
    368      1.23       dbj 				}
    369      1.23       dbj 				free_fsnodes(curfsnode);
    370      1.23       dbj 			}
    371      1.23       dbj 		}
    372      1.23       dbj 	}
    373      1.23       dbj 
    374       1.1     lukem 			/* now walk specnode->child matching up with dirnode */
    375       1.1     lukem 	for (curnode = specnode->child; curnode != NULL;
    376       1.1     lukem 	    curnode = curnode->next) {
    377       1.1     lukem 		if (debug & DEBUG_APPLY_SPECENTRY)
    378       1.1     lukem 			printf("apply_specdir:  spec %s\n",
    379       1.1     lukem 			    curnode->name);
    380       1.1     lukem 		for (curfsnode = dirnode->next; curfsnode != NULL;
    381       1.1     lukem 		    curfsnode = curfsnode->next) {
    382       1.3     lukem #if 0	/* too verbose for now */
    383       1.1     lukem 			if (debug & DEBUG_APPLY_SPECENTRY)
    384       1.1     lukem 				printf("apply_specdir:  dirent %s\n",
    385       1.1     lukem 				    curfsnode->name);
    386       1.3     lukem #endif
    387       1.1     lukem 			if (strcmp(curnode->name, curfsnode->name) == 0)
    388       1.1     lukem 				break;
    389       1.1     lukem 		}
    390  1.24.8.2      yamt 		if ((size_t)snprintf(path, sizeof(path), "%s/%s",
    391       1.9     lukem 		    dir, curnode->name) >= sizeof(path))
    392       1.9     lukem 			errx(1, "Pathname too long.");
    393       1.1     lukem 		if (curfsnode == NULL) {	/* need new entry */
    394       1.1     lukem 			struct stat	stbuf;
    395       1.1     lukem 
    396       1.9     lukem 					    /*
    397       1.9     lukem 					     * don't add optional spec entries
    398       1.9     lukem 					     * that lack an existing fs entry
    399       1.9     lukem 					     */
    400       1.9     lukem 			if ((curnode->flags & F_OPT) &&
    401       1.9     lukem 			    lstat(path, &stbuf) == -1)
    402       1.9     lukem 					continue;
    403       1.9     lukem 
    404       1.1     lukem 					/* check that enough info is provided */
    405       1.1     lukem #define NODETEST(t, m)							\
    406       1.1     lukem 			if (!(t))					\
    407       1.9     lukem 				errx(1, "`%s': %s not provided", path, m)
    408       1.1     lukem 			NODETEST(curnode->flags & F_TYPE, "type");
    409       1.1     lukem 			NODETEST(curnode->flags & F_MODE, "mode");
    410       1.1     lukem 				/* XXX: require F_TIME ? */
    411       1.1     lukem 			NODETEST(curnode->flags & F_GID ||
    412       1.1     lukem 			    curnode->flags & F_GNAME, "group");
    413       1.1     lukem 			NODETEST(curnode->flags & F_UID ||
    414       1.1     lukem 			    curnode->flags & F_UNAME, "user");
    415       1.1     lukem 			if (curnode->type == F_BLOCK || curnode->type == F_CHAR)
    416       1.1     lukem 				NODETEST(curnode->flags & F_DEV,
    417       1.1     lukem 				    "device number");
    418       1.1     lukem #undef NODETEST
    419       1.1     lukem 
    420       1.1     lukem 			if (debug & DEBUG_APPLY_SPECFILE)
    421       1.1     lukem 				printf("apply_specdir: adding %s\n",
    422       1.1     lukem 				    curnode->name);
    423       1.1     lukem 					/* build minimal fsnode */
    424       1.1     lukem 			memset(&stbuf, 0, sizeof(stbuf));
    425       1.1     lukem 			stbuf.st_mode = nodetoino(curnode->type);
    426       1.6     lukem 			stbuf.st_nlink = 1;
    427       1.1     lukem 			stbuf.st_mtime = stbuf.st_atime =
    428       1.1     lukem 			    stbuf.st_ctime = start_time.tv_sec;
    429       1.8        tv #if HAVE_STRUCT_STAT_ST_MTIMENSEC
    430       1.1     lukem 			stbuf.st_mtimensec = stbuf.st_atimensec =
    431       1.1     lukem 			    stbuf.st_ctimensec = start_time.tv_nsec;
    432       1.8        tv #endif
    433  1.24.8.1      yamt 			curfsnode = create_fsnode(".", ".", curnode->name,
    434  1.24.8.1      yamt 			    &stbuf);
    435       1.1     lukem 			curfsnode->parent = dirnode->parent;
    436       1.1     lukem 			curfsnode->first = dirnode;
    437       1.1     lukem 			curfsnode->next = dirnode->next;
    438       1.1     lukem 			dirnode->next = curfsnode;
    439       1.1     lukem 			if (curfsnode->type == S_IFDIR) {
    440       1.1     lukem 					/* for dirs, make "." entry as well */
    441  1.24.8.1      yamt 				curfsnode->child = create_fsnode(".", ".", ".",
    442  1.24.8.1      yamt 				    &stbuf);
    443       1.1     lukem 				curfsnode->child->parent = curfsnode;
    444       1.1     lukem 				curfsnode->child->first = curfsnode->child;
    445       1.1     lukem 			}
    446       1.1     lukem 			if (curfsnode->type == S_IFLNK) {
    447       1.3     lukem 				assert(curnode->slink != NULL);
    448       1.1     lukem 					/* for symlinks, copy the target */
    449       1.1     lukem 				if ((curfsnode->symlink =
    450       1.1     lukem 				    strdup(curnode->slink)) == NULL)
    451       1.1     lukem 					err(1, "Memory allocation error");
    452       1.1     lukem 			}
    453       1.1     lukem 		}
    454       1.1     lukem 		apply_specentry(dir, curnode, curfsnode);
    455       1.1     lukem 		if (curnode->type == F_DIR) {
    456       1.1     lukem 			if (curfsnode->type != S_IFDIR)
    457       1.9     lukem 				errx(1, "`%s' is not a directory", path);
    458       1.1     lukem 			assert (curfsnode->child != NULL);
    459      1.23       dbj 			apply_specdir(path, curnode, curfsnode->child, speconly);
    460       1.1     lukem 		}
    461       1.1     lukem 	}
    462       1.1     lukem }
    463       1.1     lukem 
    464       1.1     lukem static void
    465       1.1     lukem apply_specentry(const char *dir, NODE *specnode, fsnode *dirnode)
    466       1.1     lukem {
    467       1.1     lukem 
    468       1.1     lukem 	assert(specnode != NULL);
    469       1.1     lukem 	assert(dirnode != NULL);
    470       1.1     lukem 
    471       1.1     lukem 	if (nodetoino(specnode->type) != dirnode->type)
    472       1.1     lukem 		errx(1, "`%s/%s' type mismatch: specfile %s, tree %s",
    473       1.1     lukem 		    dir, specnode->name, inode_type(nodetoino(specnode->type)),
    474       1.1     lukem 		    inode_type(dirnode->type));
    475       1.1     lukem 
    476       1.1     lukem 	if (debug & DEBUG_APPLY_SPECENTRY)
    477       1.1     lukem 		printf("apply_specentry: %s/%s\n", dir, dirnode->name);
    478       1.1     lukem 
    479       1.1     lukem #define ASEPRINT(t, b, o, n) \
    480       1.1     lukem 		if (debug & DEBUG_APPLY_SPECENTRY) \
    481       1.1     lukem 			printf("\t\t\tchanging %s from " b " to " b "\n", \
    482       1.1     lukem 			    t, o, n)
    483       1.1     lukem 
    484       1.1     lukem 	if (specnode->flags & (F_GID | F_GNAME)) {
    485       1.1     lukem 		ASEPRINT("gid", "%d",
    486       1.6     lukem 		    dirnode->inode->st.st_gid, specnode->st_gid);
    487       1.6     lukem 		dirnode->inode->st.st_gid = specnode->st_gid;
    488       1.1     lukem 	}
    489       1.1     lukem 	if (specnode->flags & F_MODE) {
    490       1.1     lukem 		ASEPRINT("mode", "%#o",
    491       1.6     lukem 		    dirnode->inode->st.st_mode & ALLPERMS, specnode->st_mode);
    492       1.6     lukem 		dirnode->inode->st.st_mode &= ~ALLPERMS;
    493       1.6     lukem 		dirnode->inode->st.st_mode |= (specnode->st_mode & ALLPERMS);
    494       1.1     lukem 	}
    495       1.1     lukem 		/* XXX: ignoring F_NLINK for now */
    496       1.1     lukem 	if (specnode->flags & F_SIZE) {
    497       1.1     lukem 		ASEPRINT("size", "%lld",
    498       1.6     lukem 		    (long long)dirnode->inode->st.st_size,
    499       1.1     lukem 		    (long long)specnode->st_size);
    500       1.6     lukem 		dirnode->inode->st.st_size = specnode->st_size;
    501       1.1     lukem 	}
    502       1.1     lukem 	if (specnode->flags & F_SLINK) {
    503       1.1     lukem 		assert(dirnode->symlink != NULL);
    504       1.1     lukem 		assert(specnode->slink != NULL);
    505       1.1     lukem 		ASEPRINT("symlink", "%s", dirnode->symlink, specnode->slink);
    506       1.1     lukem 		free(dirnode->symlink);
    507       1.1     lukem 		if ((dirnode->symlink = strdup(specnode->slink)) == NULL)
    508       1.1     lukem 			err(1, "Memory allocation error");
    509       1.1     lukem 	}
    510       1.1     lukem 	if (specnode->flags & F_TIME) {
    511       1.1     lukem 		ASEPRINT("time", "%ld",
    512       1.6     lukem 		    (long)dirnode->inode->st.st_mtime,
    513       1.8        tv 		    (long)specnode->st_mtimespec.tv_sec);
    514       1.8        tv 		dirnode->inode->st.st_mtime =		specnode->st_mtimespec.tv_sec;
    515       1.8        tv 		dirnode->inode->st.st_atime =		specnode->st_mtimespec.tv_sec;
    516       1.8        tv 		dirnode->inode->st.st_ctime =		start_time.tv_sec;
    517       1.8        tv #if HAVE_STRUCT_STAT_ST_MTIMENSEC
    518      1.17       jmc 		dirnode->inode->st.st_mtimensec =	specnode->st_mtimespec.tv_nsec;
    519      1.17       jmc 		dirnode->inode->st.st_atimensec =	specnode->st_mtimespec.tv_nsec;
    520       1.6     lukem 		dirnode->inode->st.st_ctimensec =	start_time.tv_nsec;
    521       1.8        tv #endif
    522       1.1     lukem 	}
    523       1.1     lukem 	if (specnode->flags & (F_UID | F_UNAME)) {
    524       1.1     lukem 		ASEPRINT("uid", "%d",
    525       1.6     lukem 		    dirnode->inode->st.st_uid, specnode->st_uid);
    526       1.6     lukem 		dirnode->inode->st.st_uid = specnode->st_uid;
    527       1.1     lukem 	}
    528       1.8        tv #if HAVE_STRUCT_STAT_ST_FLAGS
    529       1.1     lukem 	if (specnode->flags & F_FLAGS) {
    530       1.1     lukem 		ASEPRINT("flags", "%#lX",
    531      1.11       uwe 		    (unsigned long)dirnode->inode->st.st_flags,
    532      1.11       uwe 		    (unsigned long)specnode->st_flags);
    533       1.6     lukem 		dirnode->inode->st.st_flags = specnode->st_flags;
    534       1.1     lukem 	}
    535       1.8        tv #endif
    536       1.1     lukem 	if (specnode->flags & F_DEV) {
    537      1.24  christos 		ASEPRINT("rdev", "%#llx",
    538      1.24  christos 		    (unsigned long long)dirnode->inode->st.st_rdev,
    539      1.24  christos 		    (unsigned long long)specnode->st_rdev);
    540       1.6     lukem 		dirnode->inode->st.st_rdev = specnode->st_rdev;
    541       1.1     lukem 	}
    542       1.1     lukem #undef ASEPRINT
    543      1.12   thorpej 
    544      1.12   thorpej 	dirnode->flags |= FSNODE_F_HASSPEC;
    545       1.1     lukem }
    546       1.1     lukem 
    547       1.1     lukem 
    548       1.1     lukem /*
    549       1.1     lukem  * dump_fsnodes --
    550  1.24.8.1      yamt  *	dump the fsnodes from `cur'
    551       1.1     lukem  */
    552       1.1     lukem void
    553  1.24.8.1      yamt dump_fsnodes(fsnode *root)
    554       1.1     lukem {
    555       1.1     lukem 	fsnode	*cur;
    556       1.1     lukem 	char	path[MAXPATHLEN + 1];
    557       1.1     lukem 
    558  1.24.8.1      yamt 	printf("dump_fsnodes: %s %p\n", root->path, root);
    559       1.1     lukem 	for (cur = root; cur != NULL; cur = cur->next) {
    560  1.24.8.1      yamt 		if (snprintf(path, sizeof(path), "%s/%s", cur->path,
    561  1.24.8.1      yamt 		    cur->name) >= (int)sizeof(path))
    562       1.1     lukem 			errx(1, "Pathname too long.");
    563       1.1     lukem 
    564       1.1     lukem 		if (debug & DEBUG_DUMP_FSNODES_VERBOSE)
    565       1.1     lukem 			printf("cur=%8p parent=%8p first=%8p ",
    566       1.1     lukem 			    cur, cur->parent, cur->first);
    567       1.1     lukem 		printf("%7s: %s", inode_type(cur->type), path);
    568       1.1     lukem 		if (S_ISLNK(cur->type)) {
    569       1.1     lukem 			assert(cur->symlink != NULL);
    570       1.1     lukem 			printf(" -> %s", cur->symlink);
    571       1.1     lukem 		} else {
    572       1.1     lukem 			assert (cur->symlink == NULL);
    573       1.1     lukem 		}
    574       1.6     lukem 		if (cur->inode->nlink > 1)
    575       1.6     lukem 			printf(", nlinks=%d", cur->inode->nlink);
    576       1.1     lukem 		putchar('\n');
    577       1.1     lukem 
    578       1.1     lukem 		if (cur->child) {
    579       1.1     lukem 			assert (cur->type == S_IFDIR);
    580  1.24.8.1      yamt 			dump_fsnodes(cur->child);
    581       1.1     lukem 		}
    582       1.1     lukem 	}
    583  1.24.8.1      yamt 	printf("dump_fsnodes: finished %s/%s\n", root->path, root->name);
    584       1.1     lukem }
    585       1.1     lukem 
    586       1.1     lukem 
    587       1.1     lukem /*
    588       1.1     lukem  * inode_type --
    589       1.1     lukem  *	for a given inode type `mode', return a descriptive string.
    590       1.1     lukem  *	for most cases, uses inotype() from mtree/misc.c
    591       1.1     lukem  */
    592       1.1     lukem const char *
    593       1.1     lukem inode_type(mode_t mode)
    594       1.1     lukem {
    595       1.1     lukem 
    596       1.3     lukem 	if (S_ISLNK(mode))
    597       1.1     lukem 		return ("symlink");	/* inotype() returns "link"...  */
    598       1.1     lukem 	return (inotype(mode));
    599       1.1     lukem }
    600       1.1     lukem 
    601       1.1     lukem 
    602       1.1     lukem /*
    603       1.1     lukem  * link_check --
    604      1.20       dbj  *	return pointer to fsinode matching `entry's st_ino & st_dev if it exists,
    605       1.1     lukem  *	otherwise add `entry' to table and return NULL
    606       1.1     lukem  */
    607      1.20       dbj /* This was borrowed from du.c and tweaked to keep an fsnode
    608      1.20       dbj  * pointer instead. -- dbj (at) netbsd.org
    609      1.20       dbj  */
    610       1.6     lukem static fsinode *
    611       1.6     lukem link_check(fsinode *entry)
    612       1.1     lukem {
    613      1.20       dbj 	static struct entry {
    614      1.20       dbj 		fsinode *data;
    615      1.20       dbj 	} *htable;
    616      1.20       dbj 	static int htshift;  /* log(allocated size) */
    617      1.20       dbj 	static int htmask;   /* allocated size - 1 */
    618      1.20       dbj 	static int htused;   /* 2*number of insertions */
    619      1.20       dbj 	int h, h2;
    620      1.20       dbj 	uint64_t tmp;
    621      1.20       dbj 	/* this constant is (1<<64)/((1+sqrt(5))/2)
    622      1.20       dbj 	 * aka (word size)/(golden ratio)
    623      1.20       dbj 	 */
    624      1.20       dbj 	const uint64_t HTCONST = 11400714819323198485ULL;
    625      1.20       dbj 	const int HTBITS = 64;
    626      1.20       dbj 
    627      1.20       dbj 	/* Never store zero in hashtable */
    628      1.20       dbj 	assert(entry);
    629      1.20       dbj 
    630      1.20       dbj 	/* Extend hash table if necessary, keep load under 0.5 */
    631      1.20       dbj 	if (htused<<1 >= htmask) {
    632      1.20       dbj 		struct entry *ohtable;
    633      1.20       dbj 
    634      1.20       dbj 		if (!htable)
    635      1.20       dbj 			htshift = 10;   /* starting hashtable size */
    636      1.20       dbj 		else
    637      1.20       dbj 			htshift++;   /* exponential hashtable growth */
    638      1.20       dbj 
    639      1.20       dbj 		htmask  = (1 << htshift) - 1;
    640      1.20       dbj 		htused = 0;
    641      1.20       dbj 
    642      1.20       dbj 		ohtable = htable;
    643      1.20       dbj 		htable = calloc(htmask+1, sizeof(*htable));
    644      1.20       dbj 		if (!htable)
    645      1.20       dbj 			err(1, "Memory allocation error");
    646      1.20       dbj 
    647      1.20       dbj 		/* populate newly allocated hashtable */
    648      1.20       dbj 		if (ohtable) {
    649      1.20       dbj 			int i;
    650      1.20       dbj 			for (i = 0; i <= htmask>>1; i++)
    651      1.20       dbj 				if (ohtable[i].data)
    652      1.20       dbj 					link_check(ohtable[i].data);
    653      1.20       dbj 			free(ohtable);
    654       1.1     lukem 		}
    655       1.1     lukem 	}
    656       1.1     lukem 
    657      1.20       dbj 	/* multiplicative hashing */
    658      1.20       dbj 	tmp = entry->st.st_dev;
    659      1.20       dbj 	tmp <<= HTBITS>>1;
    660      1.20       dbj 	tmp |=  entry->st.st_ino;
    661      1.20       dbj 	tmp *= HTCONST;
    662      1.20       dbj 	h  = tmp >> (HTBITS - htshift);
    663      1.20       dbj 	h2 = 1 | ( tmp >> (HTBITS - (htshift<<1) - 1)); /* must be odd */
    664      1.20       dbj 
    665      1.20       dbj 	/* open address hashtable search with double hash probing */
    666      1.20       dbj 	while (htable[h].data) {
    667      1.20       dbj 		if ((htable[h].data->st.st_ino == entry->st.st_ino) &&
    668      1.20       dbj 		    (htable[h].data->st.st_dev == entry->st.st_dev)) {
    669      1.20       dbj 			return htable[h].data;
    670      1.20       dbj 		}
    671      1.20       dbj 		h = (h + h2) & htmask;
    672       1.1     lukem 	}
    673       1.1     lukem 
    674      1.20       dbj 	/* Insert the current entry into hashtable */
    675      1.20       dbj 	htable[h].data = entry;
    676      1.20       dbj 	htused++;
    677      1.20       dbj 	return NULL;
    678       1.1     lukem }
    679