dir.c revision 1.23 1 1.23 lukem /* $NetBSD: dir.c,v 1.23 2009/04/11 07:14:50 lukem Exp $ */
2 1.1 ws
3 1.1 ws /*
4 1.11 ws * Copyright (C) 1995, 1996, 1997 Wolfgang Solfrank
5 1.1 ws * Copyright (c) 1995 Martin Husemann
6 1.11 ws * Some structure declaration borrowed from Paul Popelka
7 1.1 ws * (paulp (at) uts.amdahl.com), see /sys/msdosfs/ for reference.
8 1.1 ws *
9 1.1 ws * Redistribution and use in source and binary forms, with or without
10 1.1 ws * modification, are permitted provided that the following conditions
11 1.1 ws * are met:
12 1.1 ws * 1. Redistributions of source code must retain the above copyright
13 1.1 ws * notice, this list of conditions and the following disclaimer.
14 1.1 ws * 2. Redistributions in binary form must reproduce the above copyright
15 1.1 ws * notice, this list of conditions and the following disclaimer in the
16 1.1 ws * documentation and/or other materials provided with the distribution.
17 1.1 ws *
18 1.1 ws * THIS SOFTWARE IS PROVIDED BY THE AUTHORS ``AS IS'' AND ANY EXPRESS OR
19 1.1 ws * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 1.1 ws * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 1.1 ws * IN NO EVENT SHALL THE AUTHORS BE LIABLE FOR ANY DIRECT, INDIRECT,
22 1.1 ws * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23 1.1 ws * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24 1.1 ws * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 1.1 ws * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 1.1 ws * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
27 1.1 ws * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 1.1 ws */
29 1.1 ws
30 1.1 ws
31 1.10 lukem #include <sys/cdefs.h>
32 1.1 ws #ifndef lint
33 1.23 lukem __RCSID("$NetBSD: dir.c,v 1.23 2009/04/11 07:14:50 lukem Exp $");
34 1.1 ws #endif /* not lint */
35 1.1 ws
36 1.1 ws #include <stdio.h>
37 1.1 ws #include <stdlib.h>
38 1.1 ws #include <string.h>
39 1.1 ws #include <ctype.h>
40 1.1 ws #include <unistd.h>
41 1.18 christos #include <assert.h>
42 1.1 ws #include <time.h>
43 1.1 ws
44 1.2 ws #include <sys/param.h>
45 1.2 ws
46 1.1 ws #include "ext.h"
47 1.8 christos #include "fsutil.h"
48 1.1 ws
49 1.1 ws #define SLOT_EMPTY 0x00 /* slot has never been used */
50 1.1 ws #define SLOT_E5 0x05 /* the real value is 0xe5 */
51 1.1 ws #define SLOT_DELETED 0xe5 /* file in this slot deleted */
52 1.1 ws
53 1.1 ws #define ATTR_NORMAL 0x00 /* normal file */
54 1.1 ws #define ATTR_READONLY 0x01 /* file is readonly */
55 1.1 ws #define ATTR_HIDDEN 0x02 /* file is hidden */
56 1.1 ws #define ATTR_SYSTEM 0x04 /* file is a system file */
57 1.1 ws #define ATTR_VOLUME 0x08 /* entry is a volume label */
58 1.1 ws #define ATTR_DIRECTORY 0x10 /* entry is a directory name */
59 1.1 ws #define ATTR_ARCHIVE 0x20 /* file is new or modified */
60 1.1 ws
61 1.1 ws #define ATTR_WIN95 0x0f /* long name record */
62 1.1 ws
63 1.1 ws /*
64 1.1 ws * This is the format of the contents of the deTime field in the direntry
65 1.1 ws * structure.
66 1.1 ws * We don't use bitfields because we don't know how compilers for
67 1.1 ws * arbitrary machines will lay them out.
68 1.1 ws */
69 1.1 ws #define DT_2SECONDS_MASK 0x1F /* seconds divided by 2 */
70 1.1 ws #define DT_2SECONDS_SHIFT 0
71 1.1 ws #define DT_MINUTES_MASK 0x7E0 /* minutes */
72 1.1 ws #define DT_MINUTES_SHIFT 5
73 1.1 ws #define DT_HOURS_MASK 0xF800 /* hours */
74 1.1 ws #define DT_HOURS_SHIFT 11
75 1.1 ws
76 1.1 ws /*
77 1.1 ws * This is the format of the contents of the deDate field in the direntry
78 1.1 ws * structure.
79 1.1 ws */
80 1.1 ws #define DD_DAY_MASK 0x1F /* day of month */
81 1.1 ws #define DD_DAY_SHIFT 0
82 1.1 ws #define DD_MONTH_MASK 0x1E0 /* month */
83 1.1 ws #define DD_MONTH_SHIFT 5
84 1.1 ws #define DD_YEAR_MASK 0xFE00 /* year - 1980 */
85 1.1 ws #define DD_YEAR_SHIFT 9
86 1.1 ws
87 1.6 christos
88 1.6 christos /* dir.c */
89 1.17 xtraeme static struct dosDirEntry *newDosDirEntry(void);
90 1.17 xtraeme static void freeDosDirEntry(struct dosDirEntry *);
91 1.17 xtraeme static struct dirTodoNode *newDirTodo(void);
92 1.17 xtraeme static void freeDirTodo(struct dirTodoNode *);
93 1.17 xtraeme static char *fullpath(struct dosDirEntry *);
94 1.17 xtraeme static u_char calcShortSum(u_char *);
95 1.17 xtraeme static int delete(int, struct bootblock *, struct fatEntry *, cl_t, int,
96 1.17 xtraeme cl_t, int, int);
97 1.17 xtraeme static int removede(int, struct bootblock *, struct fatEntry *, u_char *,
98 1.17 xtraeme u_char *, cl_t, cl_t, cl_t, char *, int);
99 1.17 xtraeme static int checksize(struct bootblock *, struct fatEntry *, u_char *,
100 1.17 xtraeme struct dosDirEntry *);
101 1.17 xtraeme static int readDosDirSection(int, struct bootblock *, struct fatEntry *,
102 1.17 xtraeme struct dosDirEntry *);
103 1.6 christos
104 1.1 ws /*
105 1.3 ws * Manage free dosDirEntry structures.
106 1.3 ws */
107 1.3 ws static struct dosDirEntry *freede;
108 1.3 ws
109 1.3 ws static struct dosDirEntry *
110 1.17 xtraeme newDosDirEntry(void)
111 1.3 ws {
112 1.3 ws struct dosDirEntry *de;
113 1.11 ws
114 1.3 ws if (!(de = freede)) {
115 1.3 ws if (!(de = (struct dosDirEntry *)malloc(sizeof *de)))
116 1.3 ws return 0;
117 1.3 ws } else
118 1.3 ws freede = de->next;
119 1.3 ws return de;
120 1.3 ws }
121 1.3 ws
122 1.3 ws static void
123 1.17 xtraeme freeDosDirEntry(struct dosDirEntry *de)
124 1.3 ws {
125 1.3 ws de->next = freede;
126 1.3 ws freede = de;
127 1.3 ws }
128 1.3 ws
129 1.3 ws /*
130 1.3 ws * The same for dirTodoNode structures.
131 1.3 ws */
132 1.3 ws static struct dirTodoNode *freedt;
133 1.3 ws
134 1.3 ws static struct dirTodoNode *
135 1.17 xtraeme newDirTodo(void)
136 1.3 ws {
137 1.3 ws struct dirTodoNode *dt;
138 1.11 ws
139 1.3 ws if (!(dt = freedt)) {
140 1.3 ws if (!(dt = (struct dirTodoNode *)malloc(sizeof *dt)))
141 1.3 ws return 0;
142 1.3 ws } else
143 1.3 ws freedt = dt->next;
144 1.3 ws return dt;
145 1.3 ws }
146 1.3 ws
147 1.3 ws static void
148 1.17 xtraeme freeDirTodo(struct dirTodoNode *dt)
149 1.3 ws {
150 1.3 ws dt->next = freedt;
151 1.3 ws freedt = dt;
152 1.3 ws }
153 1.3 ws
154 1.3 ws /*
155 1.3 ws * The stack of unread directories
156 1.3 ws */
157 1.3 ws struct dirTodoNode *pendingDirectories = NULL;
158 1.3 ws
159 1.3 ws /*
160 1.2 ws * Return the full pathname for a directory entry.
161 1.2 ws */
162 1.2 ws static char *
163 1.17 xtraeme fullpath(struct dosDirEntry *dir)
164 1.2 ws {
165 1.2 ws static char namebuf[MAXPATHLEN + 1];
166 1.2 ws char *cp, *np;
167 1.2 ws int nl;
168 1.11 ws
169 1.2 ws cp = namebuf + sizeof namebuf - 1;
170 1.2 ws *cp = '\0';
171 1.2 ws do {
172 1.2 ws np = dir->lname[0] ? dir->lname : dir->name;
173 1.2 ws nl = strlen(np);
174 1.2 ws if ((cp -= nl) <= namebuf + 1)
175 1.2 ws break;
176 1.2 ws memcpy(cp, np, nl);
177 1.2 ws *--cp = '/';
178 1.4 christos } while ((dir = dir->parent) != NULL);
179 1.5 ws if (dir)
180 1.2 ws *--cp = '?';
181 1.9 ws else
182 1.9 ws cp++;
183 1.2 ws return cp;
184 1.2 ws }
185 1.2 ws
186 1.2 ws /*
187 1.1 ws * Calculate a checksum over an 8.3 alias name
188 1.1 ws */
189 1.1 ws static u_char
190 1.17 xtraeme calcShortSum(u_char *p)
191 1.1 ws {
192 1.1 ws u_char sum = 0;
193 1.1 ws int i;
194 1.1 ws
195 1.1 ws for (i = 0; i < 11; i++) {
196 1.1 ws sum = (sum << 7)|(sum >> 1); /* rotate right */
197 1.1 ws sum += p[i];
198 1.1 ws }
199 1.1 ws
200 1.1 ws return sum;
201 1.1 ws }
202 1.1 ws
203 1.1 ws /*
204 1.1 ws * Global variables temporarily used during a directory scan
205 1.1 ws */
206 1.1 ws static char longName[DOSLONGNAMELEN] = "";
207 1.1 ws static u_char *buffer = NULL;
208 1.1 ws static u_char *delbuf = NULL;
209 1.1 ws
210 1.3 ws struct dosDirEntry *rootDir;
211 1.3 ws static struct dosDirEntry *lostDir;
212 1.3 ws
213 1.1 ws /*
214 1.1 ws * Init internal state for a new directory scan.
215 1.1 ws */
216 1.1 ws int
217 1.17 xtraeme resetDosDirSection(struct bootblock *boot, struct fatEntry *fat)
218 1.1 ws {
219 1.1 ws int b1, b2;
220 1.11 ws cl_t cl;
221 1.11 ws int ret = FSOK;
222 1.20 christos size_t len;
223 1.11 ws
224 1.1 ws b1 = boot->RootDirEnts * 32;
225 1.1 ws b2 = boot->SecPerClust * boot->BytesPerSec;
226 1.11 ws
227 1.20 christos if ((buffer = malloc(len = b1 > b2 ? b1 : b2)) == NULL) {
228 1.20 christos perr("No space for directory buffer (%zu)", len);
229 1.1 ws return FSFATAL;
230 1.1 ws }
231 1.20 christos
232 1.20 christos if ((delbuf = malloc(len = b2)) == NULL) {
233 1.20 christos free(buffer);
234 1.20 christos perr("No space for directory delbuf (%zu)", len);
235 1.20 christos return FSFATAL;
236 1.20 christos }
237 1.20 christos
238 1.20 christos if ((rootDir = newDosDirEntry()) == NULL) {
239 1.20 christos free(buffer);
240 1.20 christos free(delbuf);
241 1.20 christos perr("No space for directory entry");
242 1.20 christos return FSFATAL;
243 1.20 christos }
244 1.20 christos
245 1.3 ws memset(rootDir, 0, sizeof *rootDir);
246 1.11 ws if (boot->flags & FAT32) {
247 1.11 ws if (boot->RootCl < CLUST_FIRST || boot->RootCl >= boot->NumClusters) {
248 1.11 ws pfatal("Root directory starts with cluster out of range(%u)",
249 1.11 ws boot->RootCl);
250 1.11 ws return FSFATAL;
251 1.11 ws }
252 1.11 ws cl = fat[boot->RootCl].next;
253 1.11 ws if (cl < CLUST_FIRST
254 1.11 ws || (cl >= CLUST_RSRVD && cl< CLUST_EOFS)
255 1.11 ws || fat[boot->RootCl].head != boot->RootCl) {
256 1.11 ws if (cl == CLUST_FREE)
257 1.11 ws pwarn("Root directory starts with free cluster\n");
258 1.11 ws else if (cl >= CLUST_RSRVD)
259 1.11 ws pwarn("Root directory starts with cluster marked %s\n",
260 1.11 ws rsrvdcltype(cl));
261 1.11 ws else {
262 1.11 ws pfatal("Root directory doesn't start a cluster chain");
263 1.11 ws return FSFATAL;
264 1.11 ws }
265 1.11 ws if (ask(1, "Fix")) {
266 1.11 ws fat[boot->RootCl].next = CLUST_FREE;
267 1.11 ws ret = FSFATMOD;
268 1.11 ws } else
269 1.11 ws ret = FSFATAL;
270 1.11 ws }
271 1.11 ws
272 1.11 ws fat[boot->RootCl].flags |= FAT_USED;
273 1.11 ws rootDir->head = boot->RootCl;
274 1.11 ws }
275 1.11 ws
276 1.11 ws return ret;
277 1.1 ws }
278 1.1 ws
279 1.1 ws /*
280 1.1 ws * Cleanup after a directory scan
281 1.1 ws */
282 1.1 ws void
283 1.17 xtraeme finishDosDirSection(void)
284 1.1 ws {
285 1.3 ws struct dirTodoNode *p, *np;
286 1.3 ws struct dosDirEntry *d, *nd;
287 1.11 ws
288 1.3 ws for (p = pendingDirectories; p; p = np) {
289 1.3 ws np = p->next;
290 1.3 ws freeDirTodo(p);
291 1.3 ws }
292 1.3 ws pendingDirectories = 0;
293 1.3 ws for (d = rootDir; d; d = nd) {
294 1.4 christos if ((nd = d->child) != NULL) {
295 1.3 ws d->child = 0;
296 1.3 ws continue;
297 1.3 ws }
298 1.3 ws if (!(nd = d->next))
299 1.3 ws nd = d->parent;
300 1.3 ws freeDosDirEntry(d);
301 1.3 ws }
302 1.3 ws rootDir = lostDir = NULL;
303 1.1 ws free(buffer);
304 1.1 ws free(delbuf);
305 1.1 ws buffer = NULL;
306 1.1 ws delbuf = NULL;
307 1.1 ws }
308 1.1 ws
309 1.1 ws /*
310 1.1 ws * Delete directory entries between startcl, startoff and endcl, endoff.
311 1.1 ws */
312 1.1 ws static int
313 1.17 xtraeme delete(int f, struct bootblock *boot, struct fatEntry *fat, cl_t startcl,
314 1.17 xtraeme int startoff, cl_t endcl, int endoff, int notlast)
315 1.1 ws {
316 1.1 ws u_char *s, *e;
317 1.1 ws off_t off;
318 1.1 ws int clsz = boot->SecPerClust * boot->BytesPerSec;
319 1.11 ws
320 1.1 ws s = delbuf + startoff;
321 1.1 ws e = delbuf + clsz;
322 1.1 ws while (startcl >= CLUST_FIRST && startcl < boot->NumClusters) {
323 1.1 ws if (startcl == endcl) {
324 1.1 ws if (notlast)
325 1.1 ws break;
326 1.1 ws e = delbuf + endoff;
327 1.1 ws }
328 1.1 ws off = startcl * boot->SecPerClust + boot->ClusterOffset;
329 1.1 ws off *= boot->BytesPerSec;
330 1.1 ws if (lseek(f, off, SEEK_SET) != off
331 1.1 ws || read(f, delbuf, clsz) != clsz) {
332 1.20 christos perr("Unable to read directory");
333 1.1 ws return FSFATAL;
334 1.1 ws }
335 1.1 ws while (s < e) {
336 1.1 ws *s = SLOT_DELETED;
337 1.1 ws s += 32;
338 1.1 ws }
339 1.1 ws if (lseek(f, off, SEEK_SET) != off
340 1.1 ws || write(f, delbuf, clsz) != clsz) {
341 1.20 christos perr("Unable to write directory");
342 1.1 ws return FSFATAL;
343 1.1 ws }
344 1.1 ws if (startcl == endcl)
345 1.1 ws break;
346 1.1 ws startcl = fat[startcl].next;
347 1.1 ws s = delbuf;
348 1.1 ws }
349 1.1 ws return FSOK;
350 1.1 ws }
351 1.1 ws
352 1.1 ws static int
353 1.17 xtraeme removede(int f, struct bootblock *boot, struct fatEntry *fat, u_char *start,
354 1.17 xtraeme u_char *end, cl_t startcl, cl_t endcl, cl_t curcl, char *path,
355 1.17 xtraeme int type)
356 1.1 ws {
357 1.3 ws switch (type) {
358 1.3 ws case 0:
359 1.1 ws pwarn("Invalid long filename entry for %s\n", path);
360 1.3 ws break;
361 1.3 ws case 1:
362 1.1 ws pwarn("Invalid long filename entry at end of directory %s\n", path);
363 1.3 ws break;
364 1.3 ws case 2:
365 1.3 ws pwarn("Invalid long filename entry for volume label\n");
366 1.3 ws break;
367 1.3 ws }
368 1.1 ws if (ask(0, "Remove")) {
369 1.1 ws if (startcl != curcl) {
370 1.1 ws if (delete(f, boot, fat,
371 1.1 ws startcl, start - buffer,
372 1.1 ws endcl, end - buffer,
373 1.1 ws endcl == curcl) == FSFATAL)
374 1.1 ws return FSFATAL;
375 1.1 ws start = buffer;
376 1.1 ws }
377 1.19 dbj /* startcl is < CLUST_FIRST for !fat32 root */
378 1.19 dbj if ((endcl == curcl) || (startcl < CLUST_FIRST))
379 1.1 ws for (; start < end; start += 32)
380 1.1 ws *start = SLOT_DELETED;
381 1.1 ws return FSDIRMOD;
382 1.1 ws }
383 1.1 ws return FSERROR;
384 1.1 ws }
385 1.11 ws
386 1.1 ws /*
387 1.1 ws * Check an in-memory file entry
388 1.1 ws */
389 1.1 ws static int
390 1.17 xtraeme checksize(struct bootblock *boot, struct fatEntry *fat, u_char *p,
391 1.17 xtraeme struct dosDirEntry *dir)
392 1.1 ws {
393 1.1 ws /*
394 1.1 ws * Check size on ordinary files
395 1.1 ws */
396 1.23 lukem u_int32_t physicalSize;
397 1.1 ws
398 1.3 ws if (dir->head == CLUST_FREE)
399 1.3 ws physicalSize = 0;
400 1.3 ws else {
401 1.3 ws if (dir->head < CLUST_FIRST || dir->head >= boot->NumClusters)
402 1.3 ws return FSERROR;
403 1.3 ws physicalSize = fat[dir->head].length * boot->ClusterSize;
404 1.3 ws }
405 1.1 ws if (physicalSize < dir->size) {
406 1.6 christos pwarn("size of %s is %u, should at most be %u\n",
407 1.2 ws fullpath(dir), dir->size, physicalSize);
408 1.1 ws if (ask(1, "Truncate")) {
409 1.1 ws dir->size = physicalSize;
410 1.1 ws p[28] = (u_char)physicalSize;
411 1.1 ws p[29] = (u_char)(physicalSize >> 8);
412 1.1 ws p[30] = (u_char)(physicalSize >> 16);
413 1.1 ws p[31] = (u_char)(physicalSize >> 24);
414 1.1 ws return FSDIRMOD;
415 1.1 ws } else
416 1.1 ws return FSERROR;
417 1.1 ws } else if (physicalSize - dir->size >= boot->ClusterSize) {
418 1.1 ws pwarn("%s has too many clusters allocated\n",
419 1.2 ws fullpath(dir));
420 1.1 ws if (ask(1, "Drop superfluous clusters")) {
421 1.1 ws cl_t cl;
422 1.1 ws u_int32_t sz = 0;
423 1.11 ws
424 1.1 ws for (cl = dir->head; (sz += boot->ClusterSize) < dir->size;)
425 1.1 ws cl = fat[cl].next;
426 1.1 ws clearchain(boot, fat, fat[cl].next);
427 1.1 ws fat[cl].next = CLUST_EOF;
428 1.1 ws return FSFATMOD;
429 1.1 ws } else
430 1.1 ws return FSERROR;
431 1.1 ws }
432 1.1 ws return FSOK;
433 1.1 ws }
434 1.1 ws
435 1.1 ws /*
436 1.1 ws * Read a directory and
437 1.1 ws * - resolve long name records
438 1.1 ws * - enter file and directory records into the parent's list
439 1.1 ws * - push directories onto the todo-stack
440 1.1 ws */
441 1.3 ws static int
442 1.17 xtraeme readDosDirSection(int f, struct bootblock *boot, struct fatEntry *fat,
443 1.17 xtraeme struct dosDirEntry *dir)
444 1.1 ws {
445 1.1 ws struct dosDirEntry dirent, *d;
446 1.1 ws u_char *p, *vallfn, *invlfn, *empty;
447 1.1 ws off_t off;
448 1.1 ws int i, j, k, last;
449 1.4 christos cl_t cl, valcl = ~0, invcl = ~0, empcl = ~0;
450 1.1 ws char *t;
451 1.1 ws u_int lidx = 0;
452 1.1 ws int shortSum;
453 1.1 ws int mod = FSOK;
454 1.1 ws #define THISMOD 0x8000 /* Only used within this routine */
455 1.1 ws
456 1.1 ws cl = dir->head;
457 1.2 ws if (dir->parent && (cl < CLUST_FIRST || cl >= boot->NumClusters)) {
458 1.1 ws /*
459 1.1 ws * Already handled somewhere else.
460 1.1 ws */
461 1.1 ws return FSOK;
462 1.1 ws }
463 1.1 ws shortSum = -1;
464 1.1 ws vallfn = invlfn = empty = NULL;
465 1.1 ws do {
466 1.11 ws if (!(boot->flags & FAT32) && !dir->parent) {
467 1.1 ws last = boot->RootDirEnts * 32;
468 1.1 ws off = boot->ResSectors + boot->FATs * boot->FATsecs;
469 1.1 ws } else {
470 1.1 ws last = boot->SecPerClust * boot->BytesPerSec;
471 1.1 ws off = cl * boot->SecPerClust + boot->ClusterOffset;
472 1.1 ws }
473 1.11 ws
474 1.1 ws off *= boot->BytesPerSec;
475 1.1 ws if (lseek(f, off, SEEK_SET) != off
476 1.1 ws || read(f, buffer, last) != last) {
477 1.20 christos perr("Unable to read directory");
478 1.1 ws return FSFATAL;
479 1.1 ws }
480 1.1 ws last /= 32;
481 1.1 ws /*
482 1.1 ws * Check `.' and `..' entries here? XXX
483 1.1 ws */
484 1.1 ws for (p = buffer, i = 0; i < last; i++, p += 32) {
485 1.1 ws if (dir->fsckflags & DIREMPWARN) {
486 1.1 ws *p = SLOT_EMPTY;
487 1.1 ws continue;
488 1.1 ws }
489 1.11 ws
490 1.1 ws if (*p == SLOT_EMPTY || *p == SLOT_DELETED) {
491 1.1 ws if (*p == SLOT_EMPTY) {
492 1.1 ws dir->fsckflags |= DIREMPTY;
493 1.1 ws empty = p;
494 1.1 ws empcl = cl;
495 1.1 ws }
496 1.1 ws continue;
497 1.1 ws }
498 1.11 ws
499 1.1 ws if (dir->fsckflags & DIREMPTY) {
500 1.1 ws if (!(dir->fsckflags & DIREMPWARN)) {
501 1.1 ws pwarn("%s has entries after end of directory\n",
502 1.2 ws fullpath(dir));
503 1.1 ws if (ask(1, "Extend")) {
504 1.7 ws u_char *q;
505 1.7 ws
506 1.1 ws dir->fsckflags &= ~DIREMPTY;
507 1.1 ws if (delete(f, boot, fat,
508 1.1 ws empcl, empty - buffer,
509 1.7 ws cl, p - buffer, 1) == FSFATAL)
510 1.1 ws return FSFATAL;
511 1.7 ws q = empcl == cl ? empty : buffer;
512 1.18 christos assert(q != NULL);
513 1.7 ws for (; q < p; q += 32)
514 1.7 ws *q = SLOT_DELETED;
515 1.7 ws mod |= THISMOD|FSDIRMOD;
516 1.1 ws } else if (ask(0, "Truncate"))
517 1.1 ws dir->fsckflags |= DIREMPWARN;
518 1.1 ws }
519 1.1 ws if (dir->fsckflags & DIREMPWARN) {
520 1.1 ws *p = SLOT_DELETED;
521 1.1 ws mod |= THISMOD|FSDIRMOD;
522 1.1 ws continue;
523 1.1 ws } else if (dir->fsckflags & DIREMPTY)
524 1.1 ws mod |= FSERROR;
525 1.1 ws empty = NULL;
526 1.1 ws }
527 1.11 ws
528 1.1 ws if (p[11] == ATTR_WIN95) {
529 1.1 ws if (*p & LRFIRST) {
530 1.1 ws if (shortSum != -1) {
531 1.1 ws if (!invlfn) {
532 1.1 ws invlfn = vallfn;
533 1.1 ws invcl = valcl;
534 1.1 ws }
535 1.1 ws }
536 1.1 ws memset(longName, 0, sizeof longName);
537 1.1 ws shortSum = p[13];
538 1.1 ws vallfn = p;
539 1.1 ws valcl = cl;
540 1.1 ws } else if (shortSum != p[13]
541 1.4 christos || lidx != (*p & LRNOMASK)) {
542 1.1 ws if (!invlfn) {
543 1.1 ws invlfn = vallfn;
544 1.1 ws invcl = valcl;
545 1.1 ws }
546 1.1 ws if (!invlfn) {
547 1.1 ws invlfn = p;
548 1.1 ws invcl = cl;
549 1.1 ws }
550 1.1 ws vallfn = NULL;
551 1.1 ws }
552 1.1 ws lidx = *p & LRNOMASK;
553 1.1 ws t = longName + --lidx * 13;
554 1.1 ws for (k = 1; k < 11 && t < longName + sizeof(longName); k += 2) {
555 1.1 ws if (!p[k] && !p[k + 1])
556 1.1 ws break;
557 1.1 ws *t++ = p[k];
558 1.1 ws /*
559 1.1 ws * Warn about those unusable chars in msdosfs here? XXX
560 1.1 ws */
561 1.1 ws if (p[k + 1])
562 1.1 ws t[-1] = '?';
563 1.1 ws }
564 1.1 ws if (k >= 11)
565 1.1 ws for (k = 14; k < 26 && t < longName + sizeof(longName); k += 2) {
566 1.1 ws if (!p[k] && !p[k + 1])
567 1.1 ws break;
568 1.1 ws *t++ = p[k];
569 1.1 ws if (p[k + 1])
570 1.1 ws t[-1] = '?';
571 1.1 ws }
572 1.1 ws if (k >= 26)
573 1.1 ws for (k = 28; k < 32 && t < longName + sizeof(longName); k += 2) {
574 1.1 ws if (!p[k] && !p[k + 1])
575 1.1 ws break;
576 1.1 ws *t++ = p[k];
577 1.1 ws if (p[k + 1])
578 1.1 ws t[-1] = '?';
579 1.1 ws }
580 1.1 ws if (t >= longName + sizeof(longName)) {
581 1.1 ws pwarn("long filename too long\n");
582 1.1 ws if (!invlfn) {
583 1.1 ws invlfn = vallfn;
584 1.1 ws invcl = valcl;
585 1.1 ws }
586 1.1 ws vallfn = NULL;
587 1.1 ws }
588 1.1 ws if (p[26] | (p[27] << 8)) {
589 1.1 ws pwarn("long filename record cluster start != 0\n");
590 1.1 ws if (!invlfn) {
591 1.1 ws invlfn = vallfn;
592 1.1 ws invcl = cl;
593 1.1 ws }
594 1.1 ws vallfn = NULL;
595 1.1 ws }
596 1.1 ws continue; /* long records don't carry further
597 1.1 ws * information */
598 1.1 ws }
599 1.1 ws
600 1.1 ws /*
601 1.1 ws * This is a standard msdosfs directory entry.
602 1.1 ws */
603 1.1 ws memset(&dirent, 0, sizeof dirent);
604 1.11 ws
605 1.1 ws /*
606 1.1 ws * it's a short name record, but we need to know
607 1.1 ws * more, so get the flags first.
608 1.1 ws */
609 1.1 ws dirent.flags = p[11];
610 1.11 ws
611 1.1 ws /*
612 1.1 ws * Translate from 850 to ISO here XXX
613 1.1 ws */
614 1.1 ws for (j = 0; j < 8; j++)
615 1.1 ws dirent.name[j] = p[j];
616 1.1 ws dirent.name[8] = '\0';
617 1.1 ws for (k = 7; k >= 0 && dirent.name[k] == ' '; k--)
618 1.1 ws dirent.name[k] = '\0';
619 1.1 ws if (dirent.name[k] != '\0')
620 1.1 ws k++;
621 1.1 ws if (dirent.name[0] == SLOT_E5)
622 1.1 ws dirent.name[0] = 0xe5;
623 1.3 ws
624 1.3 ws if (dirent.flags & ATTR_VOLUME) {
625 1.3 ws if (vallfn || invlfn) {
626 1.3 ws mod |= removede(f, boot, fat,
627 1.3 ws invlfn ? invlfn : vallfn, p,
628 1.3 ws invlfn ? invcl : valcl, -1, 0,
629 1.3 ws fullpath(dir), 2);
630 1.3 ws vallfn = NULL;
631 1.3 ws invlfn = NULL;
632 1.3 ws }
633 1.3 ws continue;
634 1.3 ws }
635 1.3 ws
636 1.3 ws if (p[8] != ' ')
637 1.1 ws dirent.name[k++] = '.';
638 1.1 ws for (j = 0; j < 3; j++)
639 1.1 ws dirent.name[k++] = p[j+8];
640 1.1 ws dirent.name[k] = '\0';
641 1.1 ws for (k--; k >= 0 && dirent.name[k] == ' '; k--)
642 1.1 ws dirent.name[k] = '\0';
643 1.11 ws
644 1.1 ws if (vallfn && shortSum != calcShortSum(p)) {
645 1.1 ws if (!invlfn) {
646 1.1 ws invlfn = vallfn;
647 1.1 ws invcl = valcl;
648 1.1 ws }
649 1.1 ws vallfn = NULL;
650 1.1 ws }
651 1.1 ws dirent.head = p[26] | (p[27] << 8);
652 1.11 ws if (boot->ClustMask == CLUST32_MASK)
653 1.11 ws dirent.head |= (p[20] << 16) | (p[21] << 24);
654 1.1 ws dirent.size = p[28] | (p[29] << 8) | (p[30] << 16) | (p[31] << 24);
655 1.1 ws if (vallfn) {
656 1.16 itojun strlcpy(dirent.lname, longName,
657 1.16 itojun sizeof(dirent.lname));
658 1.1 ws longName[0] = '\0';
659 1.1 ws shortSum = -1;
660 1.1 ws }
661 1.3 ws
662 1.11 ws dirent.parent = dir;
663 1.11 ws dirent.next = dir->child;
664 1.11 ws
665 1.1 ws if (invlfn) {
666 1.1 ws mod |= k = removede(f, boot, fat,
667 1.1 ws invlfn, vallfn ? vallfn : p,
668 1.1 ws invcl, vallfn ? valcl : cl, cl,
669 1.2 ws fullpath(&dirent), 0);
670 1.1 ws if (mod & FSFATAL)
671 1.1 ws return FSFATAL;
672 1.1 ws if (vallfn
673 1.1 ws ? (valcl == cl && vallfn != buffer)
674 1.1 ws : p != buffer)
675 1.1 ws if (k & FSDIRMOD)
676 1.1 ws mod |= THISMOD;
677 1.1 ws }
678 1.11 ws
679 1.1 ws vallfn = NULL; /* not used any longer */
680 1.1 ws invlfn = NULL;
681 1.11 ws
682 1.1 ws if (dirent.size == 0 && !(dirent.flags & ATTR_DIRECTORY)) {
683 1.1 ws if (dirent.head != 0) {
684 1.1 ws pwarn("%s has clusters, but size 0\n",
685 1.2 ws fullpath(&dirent));
686 1.1 ws if (ask(1, "Drop allocated clusters")) {
687 1.1 ws p[26] = p[27] = 0;
688 1.11 ws if (boot->ClustMask == CLUST32_MASK)
689 1.11 ws p[20] = p[21] = 0;
690 1.1 ws clearchain(boot, fat, dirent.head);
691 1.1 ws dirent.head = 0;
692 1.1 ws mod |= THISMOD|FSDIRMOD|FSFATMOD;
693 1.1 ws } else
694 1.1 ws mod |= FSERROR;
695 1.1 ws }
696 1.1 ws } else if (dirent.head == 0
697 1.1 ws && !strcmp(dirent.name, "..")
698 1.3 ws && dir->parent /* XXX */
699 1.2 ws && !dir->parent->parent) {
700 1.1 ws /*
701 1.1 ws * Do nothing, the parent is the root
702 1.1 ws */
703 1.1 ws } else if (dirent.head < CLUST_FIRST
704 1.1 ws || dirent.head >= boot->NumClusters
705 1.1 ws || fat[dirent.head].next == CLUST_FREE
706 1.1 ws || (fat[dirent.head].next >= CLUST_RSRVD
707 1.1 ws && fat[dirent.head].next < CLUST_EOFS)
708 1.1 ws || fat[dirent.head].head != dirent.head) {
709 1.1 ws if (dirent.head == 0)
710 1.1 ws pwarn("%s has no clusters\n",
711 1.2 ws fullpath(&dirent));
712 1.1 ws else if (dirent.head < CLUST_FIRST
713 1.1 ws || dirent.head >= boot->NumClusters)
714 1.11 ws pwarn("%s starts with cluster out of range(%u)\n",
715 1.2 ws fullpath(&dirent),
716 1.1 ws dirent.head);
717 1.1 ws else if (fat[dirent.head].next == CLUST_FREE)
718 1.1 ws pwarn("%s starts with free cluster\n",
719 1.2 ws fullpath(&dirent));
720 1.1 ws else if (fat[dirent.head].next >= CLUST_RSRVD)
721 1.11 ws pwarn("%s starts with cluster marked %s\n",
722 1.2 ws fullpath(&dirent),
723 1.1 ws rsrvdcltype(fat[dirent.head].next));
724 1.1 ws else
725 1.1 ws pwarn("%s doesn't start a cluster chain\n",
726 1.2 ws fullpath(&dirent));
727 1.1 ws if (dirent.flags & ATTR_DIRECTORY) {
728 1.1 ws if (ask(0, "Remove")) {
729 1.1 ws *p = SLOT_DELETED;
730 1.1 ws mod |= THISMOD|FSDIRMOD;
731 1.1 ws } else
732 1.1 ws mod |= FSERROR;
733 1.1 ws continue;
734 1.1 ws } else {
735 1.1 ws if (ask(1, "Truncate")) {
736 1.1 ws p[28] = p[29] = p[30] = p[31] = 0;
737 1.11 ws p[26] = p[27] = 0;
738 1.11 ws if (boot->ClustMask == CLUST32_MASK)
739 1.11 ws p[20] = p[21] = 0;
740 1.1 ws dirent.size = 0;
741 1.1 ws mod |= THISMOD|FSDIRMOD;
742 1.1 ws } else
743 1.1 ws mod |= FSERROR;
744 1.1 ws }
745 1.1 ws }
746 1.11 ws
747 1.3 ws if (dirent.head >= CLUST_FIRST && dirent.head < boot->NumClusters)
748 1.3 ws fat[dirent.head].flags |= FAT_USED;
749 1.11 ws
750 1.3 ws if (dirent.flags & ATTR_DIRECTORY) {
751 1.1 ws /*
752 1.1 ws * gather more info for directories
753 1.1 ws */
754 1.11 ws struct dirTodoNode *n;
755 1.11 ws
756 1.3 ws if (dirent.size) {
757 1.1 ws pwarn("Directory %s has size != 0\n",
758 1.3 ws fullpath(&dirent));
759 1.1 ws if (ask(1, "Correct")) {
760 1.1 ws p[28] = p[29] = p[30] = p[31] = 0;
761 1.3 ws dirent.size = 0;
762 1.1 ws mod |= THISMOD|FSDIRMOD;
763 1.1 ws } else
764 1.1 ws mod |= FSERROR;
765 1.1 ws }
766 1.1 ws /*
767 1.1 ws * handle `.' and `..' specially
768 1.1 ws */
769 1.3 ws if (strcmp(dirent.name, ".") == 0) {
770 1.3 ws if (dirent.head != dir->head) {
771 1.1 ws pwarn("`.' entry in %s has incorrect start cluster\n",
772 1.2 ws fullpath(dir));
773 1.1 ws if (ask(1, "Correct")) {
774 1.3 ws dirent.head = dir->head;
775 1.3 ws p[26] = (u_char)dirent.head;
776 1.3 ws p[27] = (u_char)(dirent.head >> 8);
777 1.11 ws if (boot->ClustMask == CLUST32_MASK) {
778 1.11 ws p[20] = (u_char)(dirent.head >> 16);
779 1.11 ws p[21] = (u_char)(dirent.head >> 24);
780 1.11 ws }
781 1.1 ws mod |= THISMOD|FSDIRMOD;
782 1.1 ws } else
783 1.1 ws mod |= FSERROR;
784 1.1 ws }
785 1.1 ws continue;
786 1.1 ws }
787 1.3 ws if (strcmp(dirent.name, "..") == 0) {
788 1.14 ross if (dir->parent) { /* XXX */
789 1.11 ws if (!dir->parent->parent) {
790 1.11 ws if (dirent.head) {
791 1.11 ws pwarn("`..' entry in %s has non-zero start cluster\n",
792 1.11 ws fullpath(dir));
793 1.11 ws if (ask(1, "Correct")) {
794 1.11 ws dirent.head = 0;
795 1.11 ws p[26] = p[27] = 0;
796 1.11 ws if (boot->ClustMask == CLUST32_MASK)
797 1.11 ws p[20] = p[21] = 0;
798 1.11 ws mod |= THISMOD|FSDIRMOD;
799 1.11 ws } else
800 1.11 ws mod |= FSERROR;
801 1.11 ws }
802 1.11 ws } else if (dirent.head != dir->parent->head) {
803 1.11 ws pwarn("`..' entry in %s has incorrect start cluster\n",
804 1.11 ws fullpath(dir));
805 1.11 ws if (ask(1, "Correct")) {
806 1.11 ws dirent.head = dir->parent->head;
807 1.11 ws p[26] = (u_char)dirent.head;
808 1.11 ws p[27] = (u_char)(dirent.head >> 8);
809 1.11 ws if (boot->ClustMask == CLUST32_MASK) {
810 1.11 ws p[20] = (u_char)(dirent.head >> 16);
811 1.11 ws p[21] = (u_char)(dirent.head >> 24);
812 1.11 ws }
813 1.11 ws mod |= THISMOD|FSDIRMOD;
814 1.11 ws } else
815 1.11 ws mod |= FSERROR;
816 1.11 ws }
817 1.14 ross }
818 1.1 ws continue;
819 1.1 ws }
820 1.11 ws
821 1.3 ws /* create directory tree node */
822 1.3 ws if (!(d = newDosDirEntry())) {
823 1.20 christos perr("No space for directory");
824 1.3 ws return FSFATAL;
825 1.3 ws }
826 1.3 ws memcpy(d, &dirent, sizeof(struct dosDirEntry));
827 1.3 ws /* link it into the tree */
828 1.3 ws dir->child = d;
829 1.11 ws
830 1.1 ws /* Enter this directory into the todo list */
831 1.3 ws if (!(n = newDirTodo())) {
832 1.20 christos perr("No space for todo list");
833 1.2 ws return FSFATAL;
834 1.2 ws }
835 1.1 ws n->next = pendingDirectories;
836 1.1 ws n->dir = d;
837 1.1 ws pendingDirectories = n;
838 1.1 ws } else {
839 1.3 ws mod |= k = checksize(boot, fat, p, &dirent);
840 1.1 ws if (k & FSDIRMOD)
841 1.1 ws mod |= THISMOD;
842 1.1 ws }
843 1.9 ws boot->NumFiles++;
844 1.1 ws }
845 1.19 dbj
846 1.19 dbj if (!(boot->flags & FAT32) && !dir->parent)
847 1.19 dbj break;
848 1.19 dbj
849 1.1 ws if (mod & THISMOD) {
850 1.1 ws last *= 32;
851 1.1 ws if (lseek(f, off, SEEK_SET) != off
852 1.1 ws || write(f, buffer, last) != last) {
853 1.20 christos perr("Unable to write directory");
854 1.1 ws return FSFATAL;
855 1.1 ws }
856 1.1 ws mod &= ~THISMOD;
857 1.1 ws }
858 1.1 ws } while ((cl = fat[cl].next) >= CLUST_FIRST && cl < boot->NumClusters);
859 1.1 ws if (invlfn || vallfn)
860 1.1 ws mod |= removede(f, boot, fat,
861 1.1 ws invlfn ? invlfn : vallfn, p,
862 1.1 ws invlfn ? invcl : valcl, -1, 0,
863 1.2 ws fullpath(dir), 1);
864 1.19 dbj
865 1.19 dbj /* The root directory of non fat32 filesystems is in a special
866 1.19 dbj * area and may have been modified above without being written out.
867 1.19 dbj */
868 1.19 dbj if ((mod & FSDIRMOD) && !(boot->flags & FAT32) && !dir->parent) {
869 1.19 dbj last *= 32;
870 1.19 dbj if (lseek(f, off, SEEK_SET) != off
871 1.19 dbj || write(f, buffer, last) != last) {
872 1.20 christos perr("Unable to write directory");
873 1.19 dbj return FSFATAL;
874 1.19 dbj }
875 1.19 dbj mod &= ~THISMOD;
876 1.19 dbj }
877 1.1 ws return mod & ~THISMOD;
878 1.1 ws }
879 1.1 ws
880 1.3 ws int
881 1.17 xtraeme handleDirTree(int dosfs, struct bootblock *boot, struct fatEntry *fat)
882 1.3 ws {
883 1.3 ws int mod;
884 1.11 ws
885 1.3 ws mod = readDosDirSection(dosfs, boot, fat, rootDir);
886 1.3 ws if (mod & FSFATAL)
887 1.3 ws return FSFATAL;
888 1.11 ws
889 1.3 ws /*
890 1.3 ws * process the directory todo list
891 1.3 ws */
892 1.3 ws while (pendingDirectories) {
893 1.3 ws struct dosDirEntry *dir = pendingDirectories->dir;
894 1.3 ws struct dirTodoNode *n = pendingDirectories->next;
895 1.3 ws
896 1.3 ws /*
897 1.3 ws * remove TODO entry now, the list might change during
898 1.3 ws * directory reads
899 1.3 ws */
900 1.3 ws freeDirTodo(pendingDirectories);
901 1.3 ws pendingDirectories = n;
902 1.3 ws
903 1.3 ws /*
904 1.3 ws * handle subdirectory
905 1.3 ws */
906 1.3 ws mod |= readDosDirSection(dosfs, boot, fat, dir);
907 1.3 ws if (mod & FSFATAL)
908 1.3 ws return FSFATAL;
909 1.3 ws }
910 1.15 jdolecek
911 1.3 ws return mod;
912 1.3 ws }
913 1.3 ws
914 1.1 ws /*
915 1.1 ws * Try to reconnect a FAT chain into dir
916 1.1 ws */
917 1.1 ws static u_char *lfbuf;
918 1.1 ws static cl_t lfcl;
919 1.1 ws static off_t lfoff;
920 1.1 ws
921 1.1 ws int
922 1.17 xtraeme reconnect(int dosfs, struct bootblock *boot, struct fatEntry *fat, cl_t head)
923 1.1 ws {
924 1.1 ws struct dosDirEntry d;
925 1.1 ws u_char *p;
926 1.11 ws
927 1.12 ws if (!ask(1, "Reconnect"))
928 1.11 ws return FSERROR;
929 1.11 ws
930 1.3 ws if (!lostDir) {
931 1.3 ws for (lostDir = rootDir->child; lostDir; lostDir = lostDir->next) {
932 1.3 ws if (!strcmp(lostDir->name, LOSTDIR))
933 1.3 ws break;
934 1.3 ws }
935 1.3 ws if (!lostDir) { /* Create LOSTDIR? XXX */
936 1.3 ws pwarn("No %s directory\n", LOSTDIR);
937 1.3 ws return FSERROR;
938 1.3 ws }
939 1.3 ws }
940 1.1 ws if (!lfbuf) {
941 1.1 ws lfbuf = malloc(boot->ClusterSize);
942 1.1 ws if (!lfbuf) {
943 1.20 christos perr("No space for buffer");
944 1.1 ws return FSFATAL;
945 1.1 ws }
946 1.1 ws p = NULL;
947 1.1 ws } else
948 1.1 ws p = lfbuf;
949 1.1 ws while (1) {
950 1.1 ws if (p)
951 1.9 ws for (; p < lfbuf + boot->ClusterSize; p += 32)
952 1.1 ws if (*p == SLOT_EMPTY
953 1.1 ws || *p == SLOT_DELETED)
954 1.1 ws break;
955 1.1 ws if (p && p < lfbuf + boot->ClusterSize)
956 1.1 ws break;
957 1.3 ws lfcl = p ? fat[lfcl].next : lostDir->head;
958 1.1 ws if (lfcl < CLUST_FIRST || lfcl >= boot->NumClusters) {
959 1.3 ws /* Extend LOSTDIR? XXX */
960 1.1 ws pwarn("No space in %s\n", LOSTDIR);
961 1.1 ws return FSERROR;
962 1.1 ws }
963 1.1 ws lfoff = lfcl * boot->ClusterSize
964 1.1 ws + boot->ClusterOffset * boot->BytesPerSec;
965 1.1 ws if (lseek(dosfs, lfoff, SEEK_SET) != lfoff
966 1.23 lukem || (size_t)read(dosfs, lfbuf, boot->ClusterSize) != boot->ClusterSize) {
967 1.20 christos perr("could not read LOST.DIR");
968 1.1 ws return FSFATAL;
969 1.1 ws }
970 1.1 ws p = lfbuf;
971 1.1 ws }
972 1.1 ws
973 1.1 ws boot->NumFiles++;
974 1.1 ws /* Ensure uniqueness of entry here! XXX */
975 1.1 ws memset(&d, 0, sizeof d);
976 1.13 mycroft (void)snprintf(d.name, sizeof(d.name), "%u", head);
977 1.1 ws d.flags = 0;
978 1.1 ws d.head = head;
979 1.1 ws d.size = fat[head].length * boot->ClusterSize;
980 1.11 ws
981 1.1 ws memset(p, 0, 32);
982 1.1 ws memset(p, ' ', 11);
983 1.3 ws memcpy(p, d.name, strlen(d.name));
984 1.3 ws p[26] = (u_char)d.head;
985 1.3 ws p[27] = (u_char)(d.head >> 8);
986 1.11 ws if (boot->ClustMask == CLUST32_MASK) {
987 1.11 ws p[20] = (u_char)(d.head >> 16);
988 1.11 ws p[21] = (u_char)(d.head >> 24);
989 1.11 ws }
990 1.3 ws p[28] = (u_char)d.size;
991 1.3 ws p[29] = (u_char)(d.size >> 8);
992 1.3 ws p[30] = (u_char)(d.size >> 16);
993 1.3 ws p[31] = (u_char)(d.size >> 24);
994 1.3 ws fat[head].flags |= FAT_USED;
995 1.1 ws if (lseek(dosfs, lfoff, SEEK_SET) != lfoff
996 1.23 lukem || (size_t)write(dosfs, lfbuf, boot->ClusterSize) != boot->ClusterSize) {
997 1.20 christos perr("could not write LOST.DIR");
998 1.1 ws return FSFATAL;
999 1.1 ws }
1000 1.1 ws return FSDIRMOD;
1001 1.1 ws }
1002 1.1 ws
1003 1.1 ws void
1004 1.17 xtraeme finishlf(void)
1005 1.1 ws {
1006 1.1 ws if (lfbuf)
1007 1.1 ws free(lfbuf);
1008 1.1 ws lfbuf = NULL;
1009 1.1 ws }
1010