walk.c revision 1.30 1 1.30 simonb /* $NetBSD: walk.c,v 1.30 2021/04/03 14:10:56 simonb 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 1.30 simonb __RCSID("$NetBSD: walk.c,v 1.30 2021/04/03 14:10:56 simonb Exp $");
45 1.2 lukem #endif /* !__lint */
46 1.1 lukem
47 1.1 lukem #include <sys/param.h>
48 1.27 christos #include <sys/stat.h>
49 1.1 lukem
50 1.1 lukem #include <assert.h>
51 1.1 lukem #include <errno.h>
52 1.1 lukem #include <fcntl.h>
53 1.1 lukem #include <stdio.h>
54 1.1 lukem #include <dirent.h>
55 1.1 lukem #include <stdlib.h>
56 1.1 lukem #include <string.h>
57 1.1 lukem #include <unistd.h>
58 1.27 christos #include <util.h>
59 1.1 lukem
60 1.1 lukem #include "makefs.h"
61 1.1 lukem #include "mtree.h"
62 1.1 lukem
63 1.23 dbj static void apply_specdir(const char *, NODE *, fsnode *, int);
64 1.1 lukem static void apply_specentry(const char *, NODE *, fsnode *);
65 1.25 christos static fsnode *create_fsnode(const char *, const char *, const char *,
66 1.25 christos struct stat *);
67 1.6 lukem static fsinode *link_check(fsinode *);
68 1.1 lukem
69 1.1 lukem
70 1.1 lukem /*
71 1.1 lukem * walk_dir --
72 1.25 christos * build a tree of fsnodes from `root' and `dir', with a parent
73 1.25 christos * fsnode of `parent' (which may be NULL for the root of the tree).
74 1.25 christos * append the tree to a fsnode of `join' if it is not NULL.
75 1.1 lukem * each "level" is a directory, with the "." entry guaranteed to be
76 1.1 lukem * at the start of the list, and without ".." entries.
77 1.1 lukem */
78 1.1 lukem fsnode *
79 1.28 christos walk_dir(const char *root, const char *dir, fsnode *parent, fsnode *join,
80 1.30 simonb int replace, int follow)
81 1.1 lukem {
82 1.25 christos fsnode *first, *cur, *prev, *last;
83 1.1 lukem DIR *dirp;
84 1.1 lukem struct dirent *dent;
85 1.1 lukem char path[MAXPATHLEN + 1];
86 1.1 lukem struct stat stbuf;
87 1.25 christos char *name, *rp;
88 1.25 christos int dot, len;
89 1.1 lukem
90 1.25 christos assert(root != NULL);
91 1.1 lukem assert(dir != NULL);
92 1.1 lukem
93 1.25 christos len = snprintf(path, sizeof(path), "%s/%s", root, dir);
94 1.25 christos if (len >= (int)sizeof(path))
95 1.25 christos errx(1, "Pathname too long.");
96 1.1 lukem if (debug & DEBUG_WALK_DIR)
97 1.25 christos printf("walk_dir: %s %p\n", path, parent);
98 1.25 christos if ((dirp = opendir(path)) == NULL)
99 1.25 christos err(1, "Can't opendir `%s'", path);
100 1.25 christos rp = path + strlen(root) + 1;
101 1.25 christos if (join != NULL) {
102 1.25 christos first = cur = join;
103 1.25 christos while (cur->next != NULL)
104 1.25 christos cur = cur->next;
105 1.25 christos prev = last = cur;
106 1.25 christos } else
107 1.25 christos last = first = prev = NULL;
108 1.1 lukem while ((dent = readdir(dirp)) != NULL) {
109 1.25 christos name = dent->d_name;
110 1.25 christos dot = 0;
111 1.25 christos if (name[0] == '.')
112 1.25 christos switch (name[1]) {
113 1.25 christos case '\0': /* "." */
114 1.25 christos if (join != NULL)
115 1.25 christos continue;
116 1.25 christos dot = 1;
117 1.25 christos break;
118 1.25 christos case '.': /* ".." */
119 1.25 christos if (name[2] == '\0')
120 1.25 christos continue;
121 1.25 christos /* FALLTHROUGH */
122 1.25 christos default:
123 1.25 christos dot = 0;
124 1.25 christos }
125 1.1 lukem if (debug & DEBUG_WALK_DIR_NODE)
126 1.25 christos printf("scanning %s/%s/%s\n", root, dir, name);
127 1.25 christos if (snprintf(path + len, sizeof(path) - len, "/%s", name) >=
128 1.25 christos (int)sizeof(path) - len)
129 1.1 lukem errx(1, "Pathname too long.");
130 1.30 simonb if (follow) {
131 1.30 simonb if (stat(path, &stbuf) == -1)
132 1.30 simonb err(1, "Can't stat `%s'", path);
133 1.30 simonb } else {
134 1.30 simonb if (lstat(path, &stbuf) == -1)
135 1.30 simonb err(1, "Can't lstat `%s'", path);
136 1.30 simonb }
137 1.17 jmc #ifdef S_ISSOCK
138 1.1 lukem if (S_ISSOCK(stbuf.st_mode & S_IFMT)) {
139 1.1 lukem if (debug & DEBUG_WALK_DIR_NODE)
140 1.1 lukem printf(" skipping socket %s\n", path);
141 1.1 lukem continue;
142 1.1 lukem }
143 1.17 jmc #endif
144 1.1 lukem
145 1.25 christos if (join != NULL) {
146 1.25 christos cur = join->next;
147 1.25 christos for (;;) {
148 1.25 christos if (cur == NULL || strcmp(cur->name, name) == 0)
149 1.25 christos break;
150 1.25 christos if (cur == last) {
151 1.25 christos cur = NULL;
152 1.25 christos break;
153 1.25 christos }
154 1.25 christos cur = cur->next;
155 1.25 christos }
156 1.25 christos if (cur != NULL) {
157 1.25 christos if (S_ISDIR(cur->type) &&
158 1.25 christos S_ISDIR(stbuf.st_mode)) {
159 1.25 christos if (debug & DEBUG_WALK_DIR_NODE)
160 1.25 christos printf("merging %s with %p\n",
161 1.25 christos path, cur->child);
162 1.25 christos cur->child = walk_dir(root, rp, cur,
163 1.30 simonb cur->child, replace, follow);
164 1.25 christos continue;
165 1.25 christos }
166 1.28 christos if (!replace)
167 1.28 christos errx(1, "Can't merge %s `%s' with "
168 1.28 christos "existing %s",
169 1.28 christos inode_type(stbuf.st_mode), path,
170 1.28 christos inode_type(cur->type));
171 1.28 christos else {
172 1.28 christos if (debug & DEBUG_WALK_DIR_NODE)
173 1.28 christos printf("replacing %s %s\n",
174 1.28 christos inode_type(stbuf.st_mode),
175 1.28 christos path);
176 1.28 christos if (cur == join->next)
177 1.28 christos join->next = cur->next;
178 1.28 christos else {
179 1.28 christos fsnode *p;
180 1.28 christos for (p = join->next;
181 1.28 christos p->next != cur; p = p->next)
182 1.28 christos continue;
183 1.28 christos p->next = cur->next;
184 1.28 christos }
185 1.28 christos free(cur);
186 1.28 christos }
187 1.25 christos }
188 1.25 christos }
189 1.25 christos
190 1.25 christos cur = create_fsnode(root, dir, name, &stbuf);
191 1.1 lukem cur->parent = parent;
192 1.25 christos if (dot) {
193 1.1 lukem /* ensure "." is at the start of the list */
194 1.1 lukem cur->next = first;
195 1.1 lukem first = cur;
196 1.1 lukem if (! prev)
197 1.1 lukem prev = cur;
198 1.25 christos cur->first = first;
199 1.1 lukem } else { /* not "." */
200 1.1 lukem if (prev)
201 1.1 lukem prev->next = cur;
202 1.1 lukem prev = cur;
203 1.1 lukem if (!first)
204 1.1 lukem first = cur;
205 1.25 christos cur->first = first;
206 1.1 lukem if (S_ISDIR(cur->type)) {
207 1.28 christos cur->child = walk_dir(root, rp, cur, NULL,
208 1.30 simonb replace, follow);
209 1.1 lukem continue;
210 1.1 lukem }
211 1.1 lukem }
212 1.6 lukem if (stbuf.st_nlink > 1) {
213 1.6 lukem fsinode *curino;
214 1.6 lukem
215 1.6 lukem curino = link_check(cur->inode);
216 1.6 lukem if (curino != NULL) {
217 1.6 lukem free(cur->inode);
218 1.6 lukem cur->inode = curino;
219 1.6 lukem cur->inode->nlink++;
220 1.20 dbj if (debug & DEBUG_WALK_DIR_LINKCHECK)
221 1.24 christos printf("link_check: found [%llu, %llu]\n",
222 1.24 christos (unsigned long long)curino->st.st_dev,
223 1.20 dbj (unsigned long long)curino->st.st_ino);
224 1.6 lukem }
225 1.1 lukem }
226 1.1 lukem if (S_ISLNK(cur->type)) {
227 1.1 lukem char slink[PATH_MAX+1];
228 1.1 lukem int llen;
229 1.1 lukem
230 1.13 itojun llen = readlink(path, slink, sizeof(slink) - 1);
231 1.1 lukem if (llen == -1)
232 1.1 lukem err(1, "Readlink `%s'", path);
233 1.1 lukem slink[llen] = '\0';
234 1.27 christos cur->symlink = estrdup(slink);
235 1.1 lukem }
236 1.1 lukem }
237 1.25 christos assert(first != NULL);
238 1.25 christos if (join == NULL)
239 1.25 christos for (cur = first->next; cur != NULL; cur = cur->next)
240 1.25 christos cur->first = first;
241 1.1 lukem if (closedir(dirp) == -1)
242 1.25 christos err(1, "Can't closedir `%s/%s'", root, dir);
243 1.1 lukem return (first);
244 1.1 lukem }
245 1.1 lukem
246 1.1 lukem static fsnode *
247 1.25 christos create_fsnode(const char *root, const char *path, const char *name,
248 1.25 christos struct stat *stbuf)
249 1.1 lukem {
250 1.1 lukem fsnode *cur;
251 1.1 lukem
252 1.27 christos cur = ecalloc(1, sizeof(*cur));
253 1.27 christos cur->path = estrdup(path);
254 1.27 christos cur->name = estrdup(name);
255 1.27 christos cur->inode = ecalloc(1, sizeof(*cur->inode));
256 1.25 christos cur->root = root;
257 1.6 lukem cur->type = stbuf->st_mode & S_IFMT;
258 1.7 lukem cur->inode->nlink = 1;
259 1.7 lukem cur->inode->st = *stbuf;
260 1.29 christos if (stampst.st_ino) {
261 1.29 christos cur->inode->st.st_atime = stampst.st_atime;
262 1.29 christos cur->inode->st.st_mtime = stampst.st_mtime;
263 1.29 christos cur->inode->st.st_ctime = stampst.st_ctime;
264 1.29 christos #if HAVE_STRUCT_STAT_ST_MTIMENSEC
265 1.29 christos cur->inode->st.st_atimensec = stampst.st_atimensec;
266 1.29 christos cur->inode->st.st_mtimensec = stampst.st_mtimensec;
267 1.29 christos cur->inode->st.st_ctimensec = stampst.st_ctimensec;
268 1.29 christos #endif
269 1.29 christos #if HAVE_STRUCT_STAT_BIRTHTIME
270 1.29 christos cur->inode->st.st_birthtime = stampst.st_birthtime;
271 1.29 christos cur->inode->st.st_birthtimensec = stampst.st_birthtimensec;
272 1.29 christos #endif
273 1.29 christos }
274 1.1 lukem return (cur);
275 1.1 lukem }
276 1.1 lukem
277 1.1 lukem /*
278 1.22 dbj * free_fsnodes --
279 1.22 dbj * Removes node from tree and frees it and all of
280 1.22 dbj * its decendents.
281 1.22 dbj */
282 1.22 dbj void
283 1.22 dbj free_fsnodes(fsnode *node)
284 1.22 dbj {
285 1.22 dbj fsnode *cur, *next;
286 1.22 dbj
287 1.22 dbj assert(node != NULL);
288 1.22 dbj
289 1.22 dbj /* for ".", start with actual parent node */
290 1.22 dbj if (node->first == node) {
291 1.22 dbj assert(node->name[0] == '.' && node->name[1] == '\0');
292 1.22 dbj if (node->parent) {
293 1.22 dbj assert(node->parent->child == node);
294 1.22 dbj node = node->parent;
295 1.22 dbj }
296 1.22 dbj }
297 1.22 dbj
298 1.22 dbj /* Find ourselves in our sibling list and unlink */
299 1.22 dbj if (node->first != node) {
300 1.22 dbj for (cur = node->first; cur->next; cur = cur->next) {
301 1.22 dbj if (cur->next == node) {
302 1.22 dbj cur->next = node->next;
303 1.22 dbj node->next = NULL;
304 1.22 dbj break;
305 1.22 dbj }
306 1.22 dbj }
307 1.22 dbj }
308 1.22 dbj
309 1.22 dbj for (cur = node; cur != NULL; cur = next) {
310 1.22 dbj next = cur->next;
311 1.22 dbj if (cur->child) {
312 1.22 dbj cur->child->parent = NULL;
313 1.22 dbj free_fsnodes(cur->child);
314 1.22 dbj }
315 1.22 dbj if (cur->inode->nlink-- == 1)
316 1.22 dbj free(cur->inode);
317 1.22 dbj if (cur->symlink)
318 1.22 dbj free(cur->symlink);
319 1.25 christos free(cur->path);
320 1.22 dbj free(cur->name);
321 1.22 dbj free(cur);
322 1.22 dbj }
323 1.22 dbj }
324 1.22 dbj
325 1.22 dbj /*
326 1.1 lukem * apply_specfile --
327 1.1 lukem * read in the mtree(8) specfile, and apply it to the tree
328 1.1 lukem * at dir,parent. parameters in parent on equivalent types
329 1.1 lukem * will be changed to those found in specfile, and missing
330 1.1 lukem * entries will be added.
331 1.1 lukem */
332 1.1 lukem void
333 1.23 dbj apply_specfile(const char *specfile, const char *dir, fsnode *parent, int speconly)
334 1.1 lukem {
335 1.1 lukem struct timeval start;
336 1.1 lukem FILE *fp;
337 1.1 lukem NODE *root;
338 1.1 lukem
339 1.1 lukem assert(specfile != NULL);
340 1.1 lukem assert(parent != NULL);
341 1.1 lukem
342 1.1 lukem if (debug & DEBUG_APPLY_SPECFILE)
343 1.1 lukem printf("apply_specfile: %s, %s %p\n", specfile, dir, parent);
344 1.1 lukem
345 1.1 lukem /* read in the specfile */
346 1.1 lukem if ((fp = fopen(specfile, "r")) == NULL)
347 1.1 lukem err(1, "Can't open `%s'", specfile);
348 1.1 lukem TIMER_START(start);
349 1.1 lukem root = spec(fp);
350 1.1 lukem TIMER_RESULTS(start, "spec");
351 1.1 lukem if (fclose(fp) == EOF)
352 1.1 lukem err(1, "Can't close `%s'", specfile);
353 1.1 lukem
354 1.1 lukem /* perform some sanity checks */
355 1.1 lukem if (root == NULL)
356 1.1 lukem errx(1, "Specfile `%s' did not contain a tree", specfile);
357 1.1 lukem assert(strcmp(root->name, ".") == 0);
358 1.1 lukem assert(root->type == F_DIR);
359 1.1 lukem
360 1.1 lukem /* merge in the changes */
361 1.23 dbj apply_specdir(dir, root, parent, speconly);
362 1.21 dbj
363 1.21 dbj free_nodes(root);
364 1.1 lukem }
365 1.1 lukem
366 1.1 lukem static void
367 1.23 dbj apply_specdir(const char *dir, NODE *specnode, fsnode *dirnode, int speconly)
368 1.1 lukem {
369 1.1 lukem char path[MAXPATHLEN + 1];
370 1.1 lukem NODE *curnode;
371 1.1 lukem fsnode *curfsnode;
372 1.1 lukem
373 1.1 lukem assert(specnode != NULL);
374 1.1 lukem assert(dirnode != NULL);
375 1.1 lukem
376 1.1 lukem if (debug & DEBUG_APPLY_SPECFILE)
377 1.1 lukem printf("apply_specdir: %s %p %p\n", dir, specnode, dirnode);
378 1.1 lukem
379 1.1 lukem if (specnode->type != F_DIR)
380 1.1 lukem errx(1, "Specfile node `%s/%s' is not a directory",
381 1.1 lukem dir, specnode->name);
382 1.1 lukem if (dirnode->type != S_IFDIR)
383 1.1 lukem errx(1, "Directory node `%s/%s' is not a directory",
384 1.1 lukem dir, dirnode->name);
385 1.1 lukem
386 1.1 lukem apply_specentry(dir, specnode, dirnode);
387 1.1 lukem
388 1.23 dbj /* Remove any filesystem nodes not found in specfile */
389 1.23 dbj /* XXX inefficient. This is O^2 in each dir and it would
390 1.23 dbj * have been better never to have walked this part of the tree
391 1.23 dbj * to begin with
392 1.23 dbj */
393 1.23 dbj if (speconly) {
394 1.23 dbj fsnode *next;
395 1.23 dbj assert(dirnode->name[0] == '.' && dirnode->name[1] == '\0');
396 1.23 dbj for (curfsnode = dirnode->next; curfsnode != NULL; curfsnode = next) {
397 1.23 dbj next = curfsnode->next;
398 1.23 dbj for (curnode = specnode->child; curnode != NULL;
399 1.23 dbj curnode = curnode->next) {
400 1.23 dbj if (strcmp(curnode->name, curfsnode->name) == 0)
401 1.23 dbj break;
402 1.23 dbj }
403 1.23 dbj if (curnode == NULL) {
404 1.23 dbj if (debug & DEBUG_APPLY_SPECONLY) {
405 1.23 dbj printf("apply_specdir: trimming %s/%s %p\n", dir, curfsnode->name, curfsnode);
406 1.23 dbj }
407 1.23 dbj free_fsnodes(curfsnode);
408 1.23 dbj }
409 1.23 dbj }
410 1.23 dbj }
411 1.23 dbj
412 1.1 lukem /* now walk specnode->child matching up with dirnode */
413 1.1 lukem for (curnode = specnode->child; curnode != NULL;
414 1.1 lukem curnode = curnode->next) {
415 1.1 lukem if (debug & DEBUG_APPLY_SPECENTRY)
416 1.1 lukem printf("apply_specdir: spec %s\n",
417 1.1 lukem curnode->name);
418 1.1 lukem for (curfsnode = dirnode->next; curfsnode != NULL;
419 1.1 lukem curfsnode = curfsnode->next) {
420 1.3 lukem #if 0 /* too verbose for now */
421 1.1 lukem if (debug & DEBUG_APPLY_SPECENTRY)
422 1.1 lukem printf("apply_specdir: dirent %s\n",
423 1.1 lukem curfsnode->name);
424 1.3 lukem #endif
425 1.1 lukem if (strcmp(curnode->name, curfsnode->name) == 0)
426 1.1 lukem break;
427 1.1 lukem }
428 1.26 christos if ((size_t)snprintf(path, sizeof(path), "%s/%s",
429 1.9 lukem dir, curnode->name) >= sizeof(path))
430 1.9 lukem errx(1, "Pathname too long.");
431 1.1 lukem if (curfsnode == NULL) { /* need new entry */
432 1.1 lukem struct stat stbuf;
433 1.1 lukem
434 1.9 lukem /*
435 1.9 lukem * don't add optional spec entries
436 1.9 lukem * that lack an existing fs entry
437 1.9 lukem */
438 1.9 lukem if ((curnode->flags & F_OPT) &&
439 1.9 lukem lstat(path, &stbuf) == -1)
440 1.9 lukem continue;
441 1.9 lukem
442 1.1 lukem /* check that enough info is provided */
443 1.1 lukem #define NODETEST(t, m) \
444 1.1 lukem if (!(t)) \
445 1.9 lukem errx(1, "`%s': %s not provided", path, m)
446 1.1 lukem NODETEST(curnode->flags & F_TYPE, "type");
447 1.1 lukem NODETEST(curnode->flags & F_MODE, "mode");
448 1.1 lukem /* XXX: require F_TIME ? */
449 1.1 lukem NODETEST(curnode->flags & F_GID ||
450 1.1 lukem curnode->flags & F_GNAME, "group");
451 1.1 lukem NODETEST(curnode->flags & F_UID ||
452 1.1 lukem curnode->flags & F_UNAME, "user");
453 1.1 lukem if (curnode->type == F_BLOCK || curnode->type == F_CHAR)
454 1.1 lukem NODETEST(curnode->flags & F_DEV,
455 1.1 lukem "device number");
456 1.1 lukem #undef NODETEST
457 1.1 lukem
458 1.1 lukem if (debug & DEBUG_APPLY_SPECFILE)
459 1.1 lukem printf("apply_specdir: adding %s\n",
460 1.1 lukem curnode->name);
461 1.1 lukem /* build minimal fsnode */
462 1.1 lukem memset(&stbuf, 0, sizeof(stbuf));
463 1.1 lukem stbuf.st_mode = nodetoino(curnode->type);
464 1.6 lukem stbuf.st_nlink = 1;
465 1.1 lukem stbuf.st_mtime = stbuf.st_atime =
466 1.1 lukem stbuf.st_ctime = start_time.tv_sec;
467 1.8 tv #if HAVE_STRUCT_STAT_ST_MTIMENSEC
468 1.1 lukem stbuf.st_mtimensec = stbuf.st_atimensec =
469 1.1 lukem stbuf.st_ctimensec = start_time.tv_nsec;
470 1.8 tv #endif
471 1.25 christos curfsnode = create_fsnode(".", ".", curnode->name,
472 1.25 christos &stbuf);
473 1.1 lukem curfsnode->parent = dirnode->parent;
474 1.1 lukem curfsnode->first = dirnode;
475 1.1 lukem curfsnode->next = dirnode->next;
476 1.1 lukem dirnode->next = curfsnode;
477 1.1 lukem if (curfsnode->type == S_IFDIR) {
478 1.1 lukem /* for dirs, make "." entry as well */
479 1.25 christos curfsnode->child = create_fsnode(".", ".", ".",
480 1.25 christos &stbuf);
481 1.1 lukem curfsnode->child->parent = curfsnode;
482 1.1 lukem curfsnode->child->first = curfsnode->child;
483 1.1 lukem }
484 1.1 lukem if (curfsnode->type == S_IFLNK) {
485 1.3 lukem assert(curnode->slink != NULL);
486 1.1 lukem /* for symlinks, copy the target */
487 1.27 christos curfsnode->symlink = estrdup(curnode->slink);
488 1.1 lukem }
489 1.1 lukem }
490 1.1 lukem apply_specentry(dir, curnode, curfsnode);
491 1.1 lukem if (curnode->type == F_DIR) {
492 1.1 lukem if (curfsnode->type != S_IFDIR)
493 1.9 lukem errx(1, "`%s' is not a directory", path);
494 1.1 lukem assert (curfsnode->child != NULL);
495 1.23 dbj apply_specdir(path, curnode, curfsnode->child, speconly);
496 1.1 lukem }
497 1.1 lukem }
498 1.1 lukem }
499 1.1 lukem
500 1.1 lukem static void
501 1.1 lukem apply_specentry(const char *dir, NODE *specnode, fsnode *dirnode)
502 1.1 lukem {
503 1.1 lukem
504 1.1 lukem assert(specnode != NULL);
505 1.1 lukem assert(dirnode != NULL);
506 1.1 lukem
507 1.1 lukem if (nodetoino(specnode->type) != dirnode->type)
508 1.1 lukem errx(1, "`%s/%s' type mismatch: specfile %s, tree %s",
509 1.1 lukem dir, specnode->name, inode_type(nodetoino(specnode->type)),
510 1.1 lukem inode_type(dirnode->type));
511 1.1 lukem
512 1.1 lukem if (debug & DEBUG_APPLY_SPECENTRY)
513 1.1 lukem printf("apply_specentry: %s/%s\n", dir, dirnode->name);
514 1.1 lukem
515 1.1 lukem #define ASEPRINT(t, b, o, n) \
516 1.1 lukem if (debug & DEBUG_APPLY_SPECENTRY) \
517 1.1 lukem printf("\t\t\tchanging %s from " b " to " b "\n", \
518 1.1 lukem t, o, n)
519 1.1 lukem
520 1.1 lukem if (specnode->flags & (F_GID | F_GNAME)) {
521 1.1 lukem ASEPRINT("gid", "%d",
522 1.6 lukem dirnode->inode->st.st_gid, specnode->st_gid);
523 1.6 lukem dirnode->inode->st.st_gid = specnode->st_gid;
524 1.1 lukem }
525 1.1 lukem if (specnode->flags & F_MODE) {
526 1.1 lukem ASEPRINT("mode", "%#o",
527 1.6 lukem dirnode->inode->st.st_mode & ALLPERMS, specnode->st_mode);
528 1.6 lukem dirnode->inode->st.st_mode &= ~ALLPERMS;
529 1.6 lukem dirnode->inode->st.st_mode |= (specnode->st_mode & ALLPERMS);
530 1.1 lukem }
531 1.1 lukem /* XXX: ignoring F_NLINK for now */
532 1.1 lukem if (specnode->flags & F_SIZE) {
533 1.1 lukem ASEPRINT("size", "%lld",
534 1.6 lukem (long long)dirnode->inode->st.st_size,
535 1.1 lukem (long long)specnode->st_size);
536 1.6 lukem dirnode->inode->st.st_size = specnode->st_size;
537 1.1 lukem }
538 1.1 lukem if (specnode->flags & F_SLINK) {
539 1.1 lukem assert(dirnode->symlink != NULL);
540 1.1 lukem assert(specnode->slink != NULL);
541 1.1 lukem ASEPRINT("symlink", "%s", dirnode->symlink, specnode->slink);
542 1.1 lukem free(dirnode->symlink);
543 1.27 christos dirnode->symlink = estrdup(specnode->slink);
544 1.1 lukem }
545 1.1 lukem if (specnode->flags & F_TIME) {
546 1.1 lukem ASEPRINT("time", "%ld",
547 1.6 lukem (long)dirnode->inode->st.st_mtime,
548 1.8 tv (long)specnode->st_mtimespec.tv_sec);
549 1.8 tv dirnode->inode->st.st_mtime = specnode->st_mtimespec.tv_sec;
550 1.8 tv dirnode->inode->st.st_atime = specnode->st_mtimespec.tv_sec;
551 1.8 tv dirnode->inode->st.st_ctime = start_time.tv_sec;
552 1.8 tv #if HAVE_STRUCT_STAT_ST_MTIMENSEC
553 1.17 jmc dirnode->inode->st.st_mtimensec = specnode->st_mtimespec.tv_nsec;
554 1.17 jmc dirnode->inode->st.st_atimensec = specnode->st_mtimespec.tv_nsec;
555 1.6 lukem dirnode->inode->st.st_ctimensec = start_time.tv_nsec;
556 1.8 tv #endif
557 1.1 lukem }
558 1.1 lukem if (specnode->flags & (F_UID | F_UNAME)) {
559 1.1 lukem ASEPRINT("uid", "%d",
560 1.6 lukem dirnode->inode->st.st_uid, specnode->st_uid);
561 1.6 lukem dirnode->inode->st.st_uid = specnode->st_uid;
562 1.1 lukem }
563 1.8 tv #if HAVE_STRUCT_STAT_ST_FLAGS
564 1.1 lukem if (specnode->flags & F_FLAGS) {
565 1.1 lukem ASEPRINT("flags", "%#lX",
566 1.11 uwe (unsigned long)dirnode->inode->st.st_flags,
567 1.11 uwe (unsigned long)specnode->st_flags);
568 1.6 lukem dirnode->inode->st.st_flags = specnode->st_flags;
569 1.1 lukem }
570 1.8 tv #endif
571 1.1 lukem if (specnode->flags & F_DEV) {
572 1.24 christos ASEPRINT("rdev", "%#llx",
573 1.24 christos (unsigned long long)dirnode->inode->st.st_rdev,
574 1.24 christos (unsigned long long)specnode->st_rdev);
575 1.6 lukem dirnode->inode->st.st_rdev = specnode->st_rdev;
576 1.1 lukem }
577 1.1 lukem #undef ASEPRINT
578 1.12 thorpej
579 1.12 thorpej dirnode->flags |= FSNODE_F_HASSPEC;
580 1.1 lukem }
581 1.1 lukem
582 1.1 lukem
583 1.1 lukem /*
584 1.1 lukem * dump_fsnodes --
585 1.25 christos * dump the fsnodes from `cur'
586 1.1 lukem */
587 1.1 lukem void
588 1.25 christos dump_fsnodes(fsnode *root)
589 1.1 lukem {
590 1.1 lukem fsnode *cur;
591 1.1 lukem char path[MAXPATHLEN + 1];
592 1.1 lukem
593 1.25 christos printf("dump_fsnodes: %s %p\n", root->path, root);
594 1.1 lukem for (cur = root; cur != NULL; cur = cur->next) {
595 1.25 christos if (snprintf(path, sizeof(path), "%s/%s", cur->path,
596 1.25 christos cur->name) >= (int)sizeof(path))
597 1.1 lukem errx(1, "Pathname too long.");
598 1.1 lukem
599 1.1 lukem if (debug & DEBUG_DUMP_FSNODES_VERBOSE)
600 1.1 lukem printf("cur=%8p parent=%8p first=%8p ",
601 1.1 lukem cur, cur->parent, cur->first);
602 1.1 lukem printf("%7s: %s", inode_type(cur->type), path);
603 1.1 lukem if (S_ISLNK(cur->type)) {
604 1.1 lukem assert(cur->symlink != NULL);
605 1.1 lukem printf(" -> %s", cur->symlink);
606 1.1 lukem } else {
607 1.1 lukem assert (cur->symlink == NULL);
608 1.1 lukem }
609 1.6 lukem if (cur->inode->nlink > 1)
610 1.6 lukem printf(", nlinks=%d", cur->inode->nlink);
611 1.1 lukem putchar('\n');
612 1.1 lukem
613 1.1 lukem if (cur->child) {
614 1.1 lukem assert (cur->type == S_IFDIR);
615 1.25 christos dump_fsnodes(cur->child);
616 1.1 lukem }
617 1.1 lukem }
618 1.25 christos printf("dump_fsnodes: finished %s/%s\n", root->path, root->name);
619 1.1 lukem }
620 1.1 lukem
621 1.1 lukem
622 1.1 lukem /*
623 1.1 lukem * inode_type --
624 1.1 lukem * for a given inode type `mode', return a descriptive string.
625 1.1 lukem * for most cases, uses inotype() from mtree/misc.c
626 1.1 lukem */
627 1.1 lukem const char *
628 1.1 lukem inode_type(mode_t mode)
629 1.1 lukem {
630 1.1 lukem
631 1.3 lukem if (S_ISLNK(mode))
632 1.1 lukem return ("symlink"); /* inotype() returns "link"... */
633 1.1 lukem return (inotype(mode));
634 1.1 lukem }
635 1.1 lukem
636 1.1 lukem
637 1.1 lukem /*
638 1.1 lukem * link_check --
639 1.20 dbj * return pointer to fsinode matching `entry's st_ino & st_dev if it exists,
640 1.1 lukem * otherwise add `entry' to table and return NULL
641 1.1 lukem */
642 1.20 dbj /* This was borrowed from du.c and tweaked to keep an fsnode
643 1.20 dbj * pointer instead. -- dbj (at) netbsd.org
644 1.20 dbj */
645 1.6 lukem static fsinode *
646 1.6 lukem link_check(fsinode *entry)
647 1.1 lukem {
648 1.20 dbj static struct entry {
649 1.20 dbj fsinode *data;
650 1.20 dbj } *htable;
651 1.20 dbj static int htshift; /* log(allocated size) */
652 1.20 dbj static int htmask; /* allocated size - 1 */
653 1.20 dbj static int htused; /* 2*number of insertions */
654 1.20 dbj int h, h2;
655 1.20 dbj uint64_t tmp;
656 1.20 dbj /* this constant is (1<<64)/((1+sqrt(5))/2)
657 1.20 dbj * aka (word size)/(golden ratio)
658 1.20 dbj */
659 1.20 dbj const uint64_t HTCONST = 11400714819323198485ULL;
660 1.20 dbj const int HTBITS = 64;
661 1.20 dbj
662 1.20 dbj /* Never store zero in hashtable */
663 1.20 dbj assert(entry);
664 1.20 dbj
665 1.20 dbj /* Extend hash table if necessary, keep load under 0.5 */
666 1.20 dbj if (htused<<1 >= htmask) {
667 1.20 dbj struct entry *ohtable;
668 1.20 dbj
669 1.20 dbj if (!htable)
670 1.20 dbj htshift = 10; /* starting hashtable size */
671 1.20 dbj else
672 1.20 dbj htshift++; /* exponential hashtable growth */
673 1.20 dbj
674 1.20 dbj htmask = (1 << htshift) - 1;
675 1.20 dbj htused = 0;
676 1.20 dbj
677 1.20 dbj ohtable = htable;
678 1.27 christos htable = ecalloc(htmask+1, sizeof(*htable));
679 1.20 dbj /* populate newly allocated hashtable */
680 1.20 dbj if (ohtable) {
681 1.20 dbj int i;
682 1.20 dbj for (i = 0; i <= htmask>>1; i++)
683 1.20 dbj if (ohtable[i].data)
684 1.20 dbj link_check(ohtable[i].data);
685 1.20 dbj free(ohtable);
686 1.1 lukem }
687 1.1 lukem }
688 1.1 lukem
689 1.20 dbj /* multiplicative hashing */
690 1.20 dbj tmp = entry->st.st_dev;
691 1.20 dbj tmp <<= HTBITS>>1;
692 1.20 dbj tmp |= entry->st.st_ino;
693 1.20 dbj tmp *= HTCONST;
694 1.20 dbj h = tmp >> (HTBITS - htshift);
695 1.20 dbj h2 = 1 | ( tmp >> (HTBITS - (htshift<<1) - 1)); /* must be odd */
696 1.20 dbj
697 1.20 dbj /* open address hashtable search with double hash probing */
698 1.20 dbj while (htable[h].data) {
699 1.20 dbj if ((htable[h].data->st.st_ino == entry->st.st_ino) &&
700 1.20 dbj (htable[h].data->st.st_dev == entry->st.st_dev)) {
701 1.20 dbj return htable[h].data;
702 1.20 dbj }
703 1.20 dbj h = (h + h2) & htmask;
704 1.1 lukem }
705 1.1 lukem
706 1.20 dbj /* Insert the current entry into hashtable */
707 1.20 dbj htable[h].data = entry;
708 1.20 dbj htused++;
709 1.20 dbj return NULL;
710 1.1 lukem }
711