udf.c revision 1.19 1 /* $NetBSD: udf.c,v 1.19 2019/02/03 03:19:31 mrg Exp $ */
2
3 /*
4 * Copyright (c) 2006, 2008, 2013 Reinoud Zandijk
5 * All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 *
16 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
17 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
18 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
19 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
20 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
21 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
22 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
23 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
24 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
25 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
26 *
27 */
28 #if HAVE_NBTOOL_CONFIG_H
29 #include "nbtool_config.h"
30 #endif
31
32 #include <sys/cdefs.h>
33 __RCSID("$NetBSD: udf.c,v 1.19 2019/02/03 03:19:31 mrg Exp $");
34
35 #include <stdio.h>
36 #include <stdlib.h>
37 #include <string.h>
38 #include <errno.h>
39 #include <time.h>
40 #include <assert.h>
41 #include <err.h>
42 #include <unistd.h>
43 #include <fcntl.h>
44 #include <sys/types.h>
45 #include <sys/param.h>
46 #include <sys/stat.h>
47 #include <util.h>
48
49 #if !HAVE_NBTOOL_CONFIG_H
50 #define _EXPOSE_MMC
51 #include <sys/cdio.h>
52 #else
53 #include "udf/cdio_mmc_structs.h"
54 #endif
55
56 #if !HAVE_NBTOOL_CONFIG_H
57 #define HAVE_STRUCT_TM_TM_GMTOFF
58 #endif
59
60 #include "makefs.h"
61 #include "udf_create.h"
62 #include "udf_write.h"
63 #include "newfs_udf.h"
64
65 #undef APP_NAME
66 #define APP_NAME "*NetBSD makefs"
67
68 /*
69 * Note: due to the setup of the newfs code, the current state of the program
70 * and its options are helt in a few global variables. The FS specific parts
71 * are in a global `context' structure.
72 */
73
74 /* global variables describing disc and format requests */
75 int fd; /* device: file descriptor */
76 char *dev; /* device: name */
77 struct mmc_discinfo mmc_discinfo; /* device: disc info */
78
79 char *format_str; /* format: string representation */
80 int format_flags; /* format: attribute flags */
81 int media_accesstype; /* derived from current mmc cap */
82 int check_surface; /* for rewritables */
83 int imagefile_secsize; /* for files */
84
85 int display_progressbar;
86
87 int wrtrack_skew;
88 float meta_fract = (float) UDF_META_PERC / 100.0;
89
90 int mmc_profile; /* emulated profile */
91 int req_enable, req_disable;
92
93
94 /* --------------------------------------------------------------------- */
95
96 int
97 udf_write_sector(void *sector, uint64_t location)
98 {
99 uint64_t wpos;
100 ssize_t ret;
101
102 wpos = (uint64_t) location * context.sector_size;
103 ret = pwrite(fd, sector, context.sector_size, wpos);
104 if (ret == -1)
105 return errno;
106 if (ret < (int) context.sector_size)
107 return EIO;
108 return 0;
109 }
110
111
112 /* not implemented for files */
113 int
114 udf_surface_check(void)
115 {
116 return 0;
117 }
118
119
120 /*
121 * mmc_discinfo and mmc_trackinfo readers modified from origional in udf main
122 * code in sys/fs/udf/
123 */
124
125 #ifdef DEBUG
126 static void
127 udf_dump_discinfo(struct mmc_discinfo *di)
128 {
129 char bits[128];
130
131 printf("Device/media info :\n");
132 printf("\tMMC profile 0x%02x\n", di->mmc_profile);
133 printf("\tderived class %d\n", di->mmc_class);
134 printf("\tsector size %d\n", di->sector_size);
135 printf("\tdisc state %d\n", di->disc_state);
136 printf("\tlast ses state %d\n", di->last_session_state);
137 printf("\tbg format state %d\n", di->bg_format_state);
138 printf("\tfrst track %d\n", di->first_track);
139 printf("\tfst on last ses %d\n", di->first_track_last_session);
140 printf("\tlst on last ses %d\n", di->last_track_last_session);
141 printf("\tlink block penalty %d\n", di->link_block_penalty);
142 snprintb(bits, sizeof(bits), MMC_DFLAGS_FLAGBITS,
143 (uint64_t) di->disc_flags);
144 printf("\tdisc flags %s\n", bits);
145 printf("\tdisc id %x\n", di->disc_id);
146 printf("\tdisc barcode %"PRIx64"\n", di->disc_barcode);
147
148 printf("\tnum sessions %d\n", di->num_sessions);
149 printf("\tnum tracks %d\n", di->num_tracks);
150
151 snprintb(bits, sizeof(bits), MMC_CAP_FLAGBITS, di->mmc_cur);
152 printf("\tcapabilities cur %s\n", bits);
153 snprintb(bits, sizeof(bits), MMC_CAP_FLAGBITS, di->mmc_cap);
154 printf("\tcapabilities cap %s\n", bits);
155 printf("\n");
156 printf("\tlast_possible_lba %d\n", di->last_possible_lba);
157 printf("\n");
158 }
159 #else
160 #define udf_dump_discinfo(a);
161 #endif
162
163 /* --------------------------------------------------------------------- */
164
165 static int
166 udf_emulate_discinfo(fsinfo_t *fsopts, struct mmc_discinfo *di,
167 int mmc_emuprofile)
168 {
169 off_t sectors;
170
171 memset(di, 0, sizeof(*di));
172
173 /* file support */
174 if ((mmc_emuprofile != 0x01) && (fsopts->sectorsize != 2048))
175 warnx("cd/dvd/bd sectorsize is not set to default 2048");
176
177 sectors = fsopts->size / fsopts->sectorsize;
178
179 /* commons */
180 di->mmc_profile = mmc_emuprofile;
181 di->disc_state = MMC_STATE_CLOSED;
182 di->last_session_state = MMC_STATE_CLOSED;
183 di->bg_format_state = MMC_BGFSTATE_COMPLETED;
184 di->link_block_penalty = 0;
185
186 di->disc_flags = MMC_DFLAGS_UNRESTRICTED;
187
188 di->last_possible_lba = sectors - 1;
189 di->sector_size = fsopts->sectorsize;
190
191 di->num_sessions = 1;
192 di->num_tracks = 1;
193
194 di->first_track = 1;
195 di->first_track_last_session = di->last_track_last_session = 1;
196
197 di->mmc_cur = MMC_CAP_RECORDABLE | MMC_CAP_ZEROLINKBLK;
198 switch (mmc_emuprofile) {
199 case 0x00: /* unknown, treat as CDROM */
200 case 0x08: /* CDROM */
201 case 0x10: /* DVDROM */
202 case 0x40: /* BDROM */
203 req_enable |= FORMAT_READONLY;
204 /* FALLTHROUGH */
205 case 0x01: /* disc */
206 /* set up a disc info profile for partitions/files */
207 di->mmc_class = MMC_CLASS_DISC;
208 di->mmc_cur |= MMC_CAP_REWRITABLE | MMC_CAP_HW_DEFECTFREE;
209 break;
210 case 0x09: /* CD-R */
211 di->mmc_class = MMC_CLASS_CD;
212 di->mmc_cur |= MMC_CAP_SEQUENTIAL;
213 di->disc_state = MMC_STATE_EMPTY;
214 break;
215 case 0x0a: /* CD-RW + CD-MRW (regretably) */
216 di->mmc_class = MMC_CLASS_CD;
217 di->mmc_cur |= MMC_CAP_REWRITABLE;
218 break;
219 case 0x13: /* DVD-RW */
220 di->mmc_class = MMC_CLASS_DVD;
221 di->mmc_cur |= MMC_CAP_REWRITABLE;
222 break;
223 case 0x11: /* DVD-R */
224 case 0x14: /* DVD-RW sequential */
225 case 0x1b: /* DVD+R */
226 case 0x2b: /* DVD+R DL */
227 case 0x51: /* HD DVD-R */
228 di->mmc_class = MMC_CLASS_DVD;
229 di->mmc_cur |= MMC_CAP_SEQUENTIAL;
230 di->disc_state = MMC_STATE_EMPTY;
231 break;
232 case 0x41: /* BD-R */
233 di->mmc_class = MMC_CLASS_BD;
234 di->mmc_cur |= MMC_CAP_SEQUENTIAL | MMC_CAP_HW_DEFECTFREE;
235 di->disc_state = MMC_STATE_EMPTY;
236 break;
237 case 0x43: /* BD-RE */
238 di->mmc_class = MMC_CLASS_BD;
239 di->mmc_cur |= MMC_CAP_REWRITABLE | MMC_CAP_HW_DEFECTFREE;
240 break;
241 default:
242 err(EINVAL, "makefs_udf: unknown or unimplemented device type");
243 return EINVAL;
244 }
245 di->mmc_cap = di->mmc_cur;
246
247 udf_dump_discinfo(di);
248 return 0;
249 }
250
251
252 int
253 udf_update_trackinfo(struct mmc_discinfo *di, struct mmc_trackinfo *ti)
254 {
255 /* discs partition support */
256 if (ti->tracknr != 1)
257 return EIO;
258
259 /* create fake ti */
260 ti->sessionnr = 1;
261
262 ti->track_mode = 0; /* XXX */
263 ti->data_mode = 0; /* XXX */
264 ti->flags = MMC_TRACKINFO_LRA_VALID | MMC_TRACKINFO_NWA_VALID;
265
266 ti->track_start = 0;
267 ti->packet_size = 32; /* take sensible default */
268
269 ti->track_size = di->last_possible_lba;
270 ti->next_writable = di->last_possible_lba;
271 ti->last_recorded = ti->next_writable;
272 ti->free_blocks = 0;
273
274 return 0;
275 }
276
277 #define OPT_STR(letter, name, desc) \
278 { letter, name, NULL, OPT_STRBUF, 0, 0, desc }
279
280 #define OPT_NUM(letter, name, field, min, max, desc) \
281 { letter, name, &context.field, \
282 sizeof(context.field) == 8 ? OPT_INT64 : \
283 (sizeof(context.field) == 4 ? OPT_INT32 : \
284 (sizeof(context.field) == 2 ? OPT_INT16 : OPT_INT8)), \
285 min, max, desc }
286
287 #define OPT_BOOL(letter, name, field, desc) \
288 OPT_NUM(letter, name, field, 0, 1, desc)
289
290 void
291 udf_prep_opts(fsinfo_t *fsopts)
292 {
293 const option_t udf_options[] = {
294 OPT_STR('T', "disctype", "disc type (cdrom,dvdrom,bdrom,"
295 "dvdram,bdre,disk,cdr,dvdr,bdr,cdrw,dvdrw)"),
296 OPT_STR('L', "loglabel", "\"logical volume name\""),
297 OPT_STR('P', "discid", "\"[volset name ':']"
298 "physical volume name\""),
299 OPT_NUM('t', "tz", gmtoff, -24, 24, "timezone"),
300 OPT_STR('v', "minver", "minimum UDF version in either "
301 "``0x201'' or ``2.01'' format"),
302 #if notyet
303 OPT_STR('V', "maxver", "maximum UDF version in either "
304 "``0x201'' or ``2.01'' format"),
305 #endif
306 { .name = NULL }
307 };
308
309 /* initialise */
310 format_str = strdup("");
311 req_enable = req_disable = 0;
312 format_flags = FORMAT_INVALID;
313 fsopts->sectorsize = 512; /* minimum allowed sector size */
314
315 srandom((unsigned long) time(NULL));
316
317 mmc_profile = 0x01; /* 'disc'/file */
318
319 udf_init_create_context();
320 context.app_name = "*NetBSD makefs";
321 context.app_version_main = APP_VERSION_MAIN;
322 context.app_version_sub = APP_VERSION_SUB;
323 context.impl_name = IMPL_NAME;
324
325 /* minimum and maximum UDF versions we advise */
326 context.min_udf = 0x102;
327 context.max_udf = 0x201; /* 0x250 and 0x260 are not ready */
328
329 /* use user's time zone as default */
330 #ifdef HAVE_STRUCT_TM_TM_GMTOFF
331 if (!stampst.st_ino) {
332 struct tm tm;
333 time_t now;
334 (void)time(&now);
335 (void)localtime_r(&now, &tm);
336 context.gmtoff = tm.tm_gmtoff;
337 } else
338 #endif
339 context.gmtoff = 0;
340
341 /* return info */
342 fsopts->fs_specific = NULL;
343 fsopts->fs_options = copy_opts(udf_options);
344 }
345
346
347 void
348 udf_cleanup_opts(fsinfo_t *fsopts)
349 {
350 free(fsopts->fs_options);
351 }
352
353
354 /* ----- included from newfs_udf.c ------ */
355 /* ----- */
356
357
358 #define CDRSIZE ((uint64_t) 700*1024*1024) /* small approx */
359 #define CDRWSIZE ((uint64_t) 576*1024*1024) /* small approx */
360 #define DVDRSIZE ((uint64_t) 4488*1024*1024) /* small approx */
361 #define DVDRAMSIZE ((uint64_t) 4330*1024*1024) /* small approx with spare */
362 #define DVDRWSIZE ((uint64_t) 4482*1024*1024) /* small approx */
363 #define BDRSIZE ((uint64_t) 23866*1024*1024) /* small approx */
364 #define BDRESIZE ((uint64_t) 23098*1024*1024) /* small approx */
365 int
366 udf_parse_opts(const char *option, fsinfo_t *fsopts)
367 {
368 option_t *udf_options = fsopts->fs_options;
369 uint64_t stdsize;
370 uint32_t set_sectorsize;
371 char buffer[1024], *buf, *colon;
372 int i;
373
374 assert(option != NULL);
375
376 if (debug & DEBUG_FS_PARSE_OPTS)
377 printf("udf_parse_opts: got `%s'\n", option);
378
379 i = set_option(udf_options, option, buffer, sizeof(buffer));
380 if (i == -1)
381 return 0;
382
383 if (udf_options[i].name == NULL)
384 abort();
385
386 set_sectorsize = 0;
387 stdsize = 0;
388
389 buf = buffer;
390 switch (udf_options[i].letter) {
391 case 'T':
392 if (strcmp(buf, "cdrom") == 0) {
393 mmc_profile = 0x00;
394 } else if (strcmp(buf, "dvdrom") == 0) {
395 mmc_profile = 0x10;
396 } else if (strcmp(buf, "bdrom") == 0) {
397 mmc_profile = 0x40;
398 } else if (strcmp(buf, "dvdram") == 0) {
399 mmc_profile = 0x12;
400 stdsize = DVDRAMSIZE;
401 } else if (strcmp(buf, "bdre") == 0) {
402 mmc_profile = 0x43;
403 stdsize = BDRESIZE;
404 } else if (strcmp(buf, "disk") == 0) {
405 mmc_profile = 0x01;
406 } else if (strcmp(buf, "cdr") == 0) {
407 mmc_profile = 0x09;
408 stdsize = CDRSIZE;
409 } else if (strcmp(buf, "dvdr") == 0) {
410 mmc_profile = 0x1b;
411 stdsize = DVDRSIZE;
412 } else if (strcmp(buf, "bdr") == 0) {
413 mmc_profile = 0x41;
414 stdsize = BDRSIZE;
415 } else if (strcmp(buf, "cdrw") == 0) {
416 mmc_profile = 0x0a;
417 stdsize = CDRWSIZE;
418 } else if (strcmp(buf, "dvdrw") == 0) {
419 mmc_profile = 0x13;
420 stdsize = DVDRWSIZE;
421 } else {
422 errx(EINVAL, "Unknown or unimplemented disc format");
423 return 0;
424 }
425 if (mmc_profile != 0x01)
426 set_sectorsize = 2048;
427 break;
428 case 'L':
429 if (context.logvol_name) free(context.logvol_name);
430 context.logvol_name = strdup(buf);
431 break;
432 case 'P':
433 if ((colon = strstr(buf, ":"))) {
434 if (context.volset_name)
435 free(context.volset_name);
436 *colon = 0;
437 context.volset_name = strdup(buf);
438 buf = colon+1;
439 }
440 if (context.primary_name)
441 free(context.primary_name);
442 if ((strstr(buf, ":"))) {
443 errx(EINVAL, "primary name can't have ':' in its name");
444 return 0;
445 }
446 context.primary_name = strdup(buf);
447 break;
448 case 'v':
449 context.min_udf = a_udf_version(buf, "min_udf");
450 if (context.min_udf > 0x201) {
451 errx(EINVAL, "maximum supported version is UDF 2.01");
452 return 0;
453 }
454 if (context.min_udf > context.max_udf)
455 context.max_udf = context.min_udf;
456 break;
457 }
458 if (set_sectorsize)
459 fsopts->sectorsize = set_sectorsize;
460 if (stdsize)
461 fsopts->size = stdsize;
462 return 1;
463 }
464
465 /* --------------------------------------------------------------------- */
466
467 struct udf_stats {
468 uint32_t nfiles;
469 uint32_t ndirs;
470 uint32_t ndescr;
471 uint32_t nmetadatablocks;
472 uint32_t ndatablocks;
473 };
474
475
476 /* node reference administration */
477 static void
478 udf_inc_link(union dscrptr *dscr)
479 {
480 struct file_entry *fe;
481 struct extfile_entry *efe;
482
483 if (udf_rw16(dscr->tag.id) == TAGID_FENTRY) {
484 fe = &dscr->fe;
485 fe->link_cnt = udf_rw16(udf_rw16(fe->link_cnt) + 1);
486 } else if (udf_rw16(dscr->tag.id) == TAGID_EXTFENTRY) {
487 efe = &dscr->efe;
488 efe->link_cnt = udf_rw16(udf_rw16(efe->link_cnt) + 1);
489 } else {
490 errx(1, "Bad tag passed to udf_inc_link");
491 }
492 }
493
494
495 static void
496 udf_set_link_cnt(union dscrptr *dscr, int num)
497 {
498 struct file_entry *fe;
499 struct extfile_entry *efe;
500
501 if (udf_rw16(dscr->tag.id) == TAGID_FENTRY) {
502 fe = &dscr->fe;
503 fe->link_cnt = udf_rw16(num);
504 } else if (udf_rw16(dscr->tag.id) == TAGID_EXTFENTRY) {
505 efe = &dscr->efe;
506 efe->link_cnt = udf_rw16(num);
507 } else {
508 errx(1, "Bad tag passed to udf_set_link_cnt");
509 }
510 }
511
512
513 static uint32_t
514 udf_datablocks(off_t sz)
515 {
516 /* predictor if it can be written inside the node */
517 if (sz < context.sector_size - UDF_EXTFENTRY_SIZE - 16)
518 return 0;
519
520 return UDF_ROUNDUP(sz, context.sector_size) / context.sector_size;
521 }
522
523
524 static void
525 udf_prepare_fids(struct long_ad *dir_icb, struct long_ad *dirdata_icb,
526 uint8_t *dirdata, uint32_t dirdata_size)
527 {
528 struct fileid_desc *fid;
529 struct long_ad *icb;
530 uint32_t fidsize, offset;
531 uint32_t location;
532
533 if (udf_datablocks(dirdata_size) == 0) {
534 /* going internal */
535 icb = dir_icb;
536 } else {
537 /* external blocks to write to */
538 icb = dirdata_icb;
539 }
540
541 for (offset = 0; offset < dirdata_size; offset += fidsize) {
542 /* for each FID: */
543 fid = (struct fileid_desc *) (dirdata + offset);
544 assert(udf_rw16(fid->tag.id) == TAGID_FID);
545
546 location = udf_rw32(icb->loc.lb_num);
547 location += offset / context.sector_size;
548
549 fid->tag.tag_loc = udf_rw32(location);
550 udf_validate_tag_and_crc_sums((union dscrptr *) fid);
551
552 fidsize = udf_fidsize(fid);
553 }
554 }
555
556 static int
557 udf_file_inject_blob(union dscrptr *dscr, uint8_t *blob, off_t size)
558 {
559 struct icb_tag *icb;
560 struct file_entry *fe;
561 struct extfile_entry *efe;
562 uint64_t inf_len, obj_size;
563 uint32_t l_ea, l_ad;
564 uint32_t free_space, desc_size;
565 uint16_t crclen;
566 uint8_t *data, *pos;
567
568 fe = NULL;
569 efe = NULL;
570 if (udf_rw16(dscr->tag.id) == TAGID_FENTRY) {
571 fe = &dscr->fe;
572 data = fe->data;
573 l_ea = udf_rw32(fe->l_ea);
574 l_ad = udf_rw32(fe->l_ad);
575 icb = &fe->icbtag;
576 inf_len = udf_rw64(fe->inf_len);
577 obj_size = 0;
578 desc_size = sizeof(struct file_entry);
579 } else if (udf_rw16(dscr->tag.id) == TAGID_EXTFENTRY) {
580 efe = &dscr->efe;
581 data = efe->data;
582 l_ea = udf_rw32(efe->l_ea);
583 l_ad = udf_rw32(efe->l_ad);
584 icb = &efe->icbtag;
585 inf_len = udf_rw64(efe->inf_len);
586 obj_size = udf_rw64(efe->obj_size);
587 desc_size = sizeof(struct extfile_entry);
588 } else {
589 errx(1, "Bad tag passed to udf_file_inject_blob");
590 }
591 crclen = udf_rw16(dscr->tag.desc_crc_len);
592
593 /* calculate free space */
594 free_space = context.sector_size - (l_ea + l_ad) - desc_size;
595 if (udf_datablocks(size)) {
596 assert(free_space < size);
597 return 1;
598 }
599
600 /* going internal */
601 assert(l_ad == 0);
602 assert((udf_rw16(icb->flags) & UDF_ICB_TAG_FLAGS_ALLOC_MASK) ==
603 UDF_ICB_INTERN_ALLOC);
604
605 // assert(free_space >= size);
606 pos = data + l_ea + l_ad;
607 memcpy(pos, blob, size);
608 l_ad += size;
609 crclen += size;
610
611 inf_len += size;
612 obj_size += size;
613
614 if (fe) {
615 fe->l_ad = udf_rw32(l_ad);
616 fe->inf_len = udf_rw64(inf_len);
617 } else if (efe) {
618 efe->l_ad = udf_rw32(l_ad);
619 efe->inf_len = udf_rw64(inf_len);
620 efe->obj_size = udf_rw64(inf_len);
621 }
622
623 /* make sure the header sums stays correct */
624 dscr->tag.desc_crc_len = udf_rw16(crclen);
625 udf_validate_tag_and_crc_sums(dscr);
626
627 return 0;
628 }
629
630
631 /* XXX no sparse file support */
632 static void
633 udf_append_file_mapping(union dscrptr *dscr, struct long_ad *piece)
634 {
635 struct icb_tag *icb;
636 struct file_entry *fe;
637 struct extfile_entry *efe;
638 struct long_ad *last_long, last_piece;
639 struct short_ad *last_short, new_short;
640 uint64_t inf_len, obj_size, logblks_rec;
641 uint32_t l_ea, l_ad, size;
642 uint32_t last_lb_num, piece_lb_num;
643 uint64_t last_len, piece_len, last_flags;
644 uint64_t rest_len, merge_len, last_end;
645 uint16_t last_part_num, piece_part_num;
646 uint16_t crclen, cur_alloc;
647 uint8_t *data, *pos;
648 const int short_len = sizeof(struct short_ad);
649 const int long_len = sizeof(struct long_ad);
650 const int sector_size = context.sector_size;
651 const int use_shorts = (context.data_part == context.metadata_part);
652 uint64_t max_len = UDF_ROUNDDOWN(UDF_EXT_MAXLEN, sector_size);
653
654 fe = NULL;
655 efe = NULL;
656 if (udf_rw16(dscr->tag.id) == TAGID_FENTRY) {
657 fe = &dscr->fe;
658 data = fe->data;
659 l_ea = fe->l_ea;
660 l_ad = udf_rw32(fe->l_ad);
661 icb = &fe->icbtag;
662 inf_len = udf_rw64(fe->inf_len);
663 logblks_rec = udf_rw64(fe->logblks_rec);
664 obj_size = 0;
665 } else if (udf_rw16(dscr->tag.id) == TAGID_EXTFENTRY) {
666 efe = &dscr->efe;
667 data = efe->data;
668 l_ea = efe->l_ea;
669 l_ad = udf_rw32(efe->l_ad);
670 icb = &efe->icbtag;
671 inf_len = udf_rw64(efe->inf_len);
672 obj_size = udf_rw64(efe->obj_size);
673 logblks_rec = udf_rw64(efe->logblks_rec);
674 } else {
675 errx(1, "Bad tag passed to udf_file_append_blob");
676 }
677 crclen = udf_rw16(dscr->tag.desc_crc_len);
678
679 pos = data + l_ea;
680 cur_alloc = udf_rw16(icb->flags);
681 size = UDF_EXT_LEN(udf_rw32(piece->len));
682
683 /* extract last entry as a long_ad */
684 memset(&last_piece, 0, sizeof(last_piece));
685 last_len = 0;
686 last_lb_num = 0;
687 last_part_num = 0;
688 last_flags = 0;
689 last_short = NULL;
690 last_long = NULL;
691 if (l_ad != 0) {
692 if (use_shorts) {
693 assert(cur_alloc == UDF_ICB_SHORT_ALLOC);
694 pos += l_ad - short_len;
695 last_short = (struct short_ad *) pos;
696 last_lb_num = udf_rw32(last_short->lb_num);
697 last_part_num = udf_rw16(piece->loc.part_num);
698 last_len = UDF_EXT_LEN(udf_rw32(last_short->len));
699 last_flags = UDF_EXT_FLAGS(udf_rw32(last_short->len));
700 } else {
701 assert(cur_alloc == UDF_ICB_LONG_ALLOC);
702 pos += l_ad - long_len;
703 last_long = (struct long_ad *) pos;
704 last_lb_num = udf_rw32(last_long->loc.lb_num);
705 last_part_num = udf_rw16(last_long->loc.part_num);
706 last_len = UDF_EXT_LEN(udf_rw32(last_long->len));
707 last_flags = UDF_EXT_FLAGS(udf_rw32(last_long->len));
708 }
709 }
710
711 piece_len = UDF_EXT_LEN(udf_rw32(piece->len));
712 piece_lb_num = udf_rw32(piece->loc.lb_num);
713 piece_part_num = udf_rw16(piece->loc.part_num);
714
715 /* try merging */
716 rest_len = max_len - last_len;
717
718 merge_len = MIN(piece_len, rest_len);
719 last_end = last_lb_num + (last_len / sector_size);
720
721 if ((piece_lb_num == last_end) && (last_part_num == piece_part_num)) {
722 /* we can merge */
723 last_len += merge_len;
724 piece_len -= merge_len;
725
726 /* write back merge result */
727 if (use_shorts) {
728 last_short->len = udf_rw32(last_len | last_flags);
729 } else {
730 last_long->len = udf_rw32(last_len | last_flags);
731 }
732 piece_lb_num += merge_len / sector_size;
733 }
734
735 if (piece_len) {
736 /* append new entry */
737 pos = data + l_ea + l_ad;
738 if (use_shorts) {
739 icb->flags = udf_rw16(UDF_ICB_SHORT_ALLOC);
740 memset(&new_short, 0, short_len);
741 new_short.len = udf_rw32(piece_len);
742 new_short.lb_num = udf_rw32(piece_lb_num);
743 memcpy(pos, &new_short, short_len);
744 l_ad += short_len;
745 crclen += short_len;
746 } else {
747 icb->flags = udf_rw16(UDF_ICB_LONG_ALLOC);
748 piece->len = udf_rw32(piece_len);
749 piece->loc.lb_num = udf_rw32(piece_lb_num);
750 memcpy(pos, piece, long_len);
751 l_ad += long_len;
752 crclen += long_len;
753 }
754 }
755 piece->len = udf_rw32(0);
756
757 inf_len += size;
758 obj_size += size;
759 logblks_rec += UDF_ROUNDUP(size, sector_size) / sector_size;
760
761 dscr->tag.desc_crc_len = udf_rw16(crclen);
762 if (udf_rw16(dscr->tag.id) == TAGID_FENTRY) {
763 fe->l_ad = udf_rw32(l_ad);
764 fe->inf_len = udf_rw64(inf_len);
765 fe->logblks_rec = udf_rw64(logblks_rec);
766 } else if (udf_rw16(dscr->tag.id) == TAGID_EXTFENTRY) {
767 efe->l_ad = udf_rw32(l_ad);
768 efe->inf_len = udf_rw64(inf_len);
769 efe->obj_size = udf_rw64(inf_len);
770 efe->logblks_rec = udf_rw64(logblks_rec);
771 }
772 }
773
774
775 static int
776 udf_append_file_contents(union dscrptr *dscr, struct long_ad *data_icb,
777 uint8_t *fdata, off_t flen)
778 {
779 struct long_ad icb;
780 uint32_t location;
781 uint64_t phys;
782 uint16_t vpart;
783 uint8_t *bpos;
784 int cnt, sects;
785 int error;
786
787 if (udf_file_inject_blob(dscr, fdata, flen) == 0)
788 return 0;
789
790 /* has to be appended in mappings */
791 icb = *data_icb;
792 icb.len = udf_rw32(flen);
793 while (udf_rw32(icb.len) > 0)
794 udf_append_file_mapping(dscr, &icb);
795 udf_validate_tag_and_crc_sums(dscr);
796
797 /* write out data piece */
798 vpart = udf_rw16(data_icb->loc.part_num);
799 location = udf_rw32(data_icb->loc.lb_num);
800 sects = udf_datablocks(flen);
801 for (cnt = 0; cnt < sects; cnt++) {
802 bpos = fdata + cnt*context.sector_size;
803 phys = context.vtop_offset[vpart] + location + cnt;
804 error = udf_write_sector(bpos, phys);
805 if (error)
806 return error;
807 }
808 return 0;
809 }
810
811
812 static int
813 udf_create_new_file(struct stat *st, union dscrptr **dscr,
814 int filetype, struct long_ad *icb)
815 {
816 struct file_entry *fe;
817 struct extfile_entry *efe;
818 int error;
819
820 fe = NULL;
821 efe = NULL;
822 if (context.dscrver == 2) {
823 error = udf_create_new_fe(&fe, filetype, st);
824 if (error)
825 errx(error, "can't create fe");
826 *dscr = (union dscrptr *) fe;
827 icb->longad_uniqueid = fe->unique_id;
828 } else {
829 error = udf_create_new_efe(&efe, filetype, st);
830 if (error)
831 errx(error, "can't create fe");
832 *dscr = (union dscrptr *) efe;
833 icb->longad_uniqueid = efe->unique_id;
834 }
835
836 return 0;
837 }
838
839
840 static void
841 udf_estimate_walk(fsinfo_t *fsopts,
842 fsnode *root, char *dir, struct udf_stats *stats)
843 {
844 struct fileid_desc *fid;
845 struct long_ad dummy_ref;
846 fsnode *cur;
847 fsinode *fnode;
848 size_t pathlen = strlen(dir);
849 char *mydir = dir + pathlen;
850 off_t sz;
851 uint32_t nblk, ddoff;
852 uint32_t softlink_len;
853 uint8_t *softlink_buf;
854 int nentries;
855 int error;
856
857 stats->ndirs++;
858
859 /*
860 * Count number of directory entries and count directory size; needed
861 * for the reservation of enough space for the directory. Pity we
862 * don't keep the FIDs we created. If it turns out to be a issue we
863 * can cache it later.
864 */
865 fid = (struct fileid_desc *) malloc(context.sector_size);
866 assert(fid);
867
868 ddoff = 40; /* '..' entry */
869 for (cur = root, nentries = 0; cur != NULL; cur = cur->next) {
870 switch (cur->type & S_IFMT) {
871 default:
872 /* what kind of nodes? */
873 break;
874 case S_IFCHR:
875 case S_IFBLK:
876 /* not supported yet */
877 continue;
878 case S_IFDIR:
879 if (strcmp(cur->name, ".") == 0)
880 continue;
881 /* FALLTHROUGH */
882 case S_IFLNK:
883 case S_IFREG:
884 /* create dummy FID to see how long name will become */
885 memset(&dummy_ref, 0, sizeof(dummy_ref));
886 udf_create_fid(ddoff, fid, cur->name, 0, &dummy_ref);
887
888 nentries++;
889 ddoff += udf_fidsize(fid);
890 }
891 }
892 sz = ddoff;
893
894 root->inode->st.st_size = sz; /* max now */
895 root->inode->flags |= FI_SIZED;
896
897 nblk = udf_datablocks(sz);
898 stats->nmetadatablocks += nblk;
899
900 /* for each entry in the directory, there needs to be a (E)FE */
901 stats->nmetadatablocks += nentries + 1;
902
903 /* recurse */
904 for (cur = root; cur != NULL; cur = cur->next) {
905 switch (cur->type & S_IFMT) {
906 default:
907 /* what kind of nodes? */
908 break;
909 case S_IFCHR:
910 case S_IFBLK:
911 /* not supported yet */
912 // stats->nfiles++;
913 break;
914 case S_IFDIR:
915 if (strcmp(cur->name, ".") == 0)
916 continue;
917 /* empty dir? */
918 if (!cur->child)
919 break;
920 mydir[0] = '/';
921 strncpy(&mydir[1], cur->name, MAXPATHLEN - pathlen);
922 udf_estimate_walk(fsopts, cur->child, dir, stats);
923 mydir[0] = '\0';
924 break;
925 case S_IFREG:
926 fnode = cur->inode;
927 /* don't double-count hard-links */
928 if (!(fnode->flags & FI_SIZED)) {
929 sz = fnode->st.st_size;
930 nblk = udf_datablocks(sz);
931 stats->ndatablocks += nblk;
932 /* ... */
933 fnode->flags |= FI_SIZED;
934 }
935 stats->nfiles++;
936 break;
937 case S_IFLNK:
938 /* softlink */
939 fnode = cur->inode;
940 /* don't double-count hard-links */
941 if (!(fnode->flags & FI_SIZED)) {
942 error = udf_encode_symlink(&softlink_buf,
943 &softlink_len, cur->symlink);
944 if (error) {
945 printf("SOFTLINK error %d\n", error);
946 break;
947 }
948 nblk = udf_datablocks(softlink_len);
949 stats->ndatablocks += nblk;
950 fnode->flags |= FI_SIZED;
951
952 free(softlink_buf);
953 }
954 stats->nfiles++;
955 break;
956 }
957 }
958 }
959
960
961 #define UDF_MAX_CHUNK_SIZE (4*1024*1024)
962 static int
963 udf_copy_file(struct stat *st, char *path, fsnode *cur, struct fileid_desc *fid,
964 struct long_ad *icb)
965 {
966 union dscrptr *dscr;
967 struct long_ad data_icb;
968 fsinode *fnode;
969 off_t sz, chunk, rd;
970 uint8_t *data;
971 int nblk;
972 int i, f;
973 int error;
974
975 fnode = cur->inode;
976
977 f = open(path, O_RDONLY);
978 if (f < 0) {
979 warn("Can't open file %s for reading", cur->name);
980 return errno;
981 }
982
983 /* claim disc space for the (e)fe descriptor for this file */
984 udf_metadata_alloc(1, icb);
985 udf_create_new_file(st, &dscr, UDF_ICB_FILETYPE_RANDOMACCESS, icb);
986
987 sz = fnode->st.st_size;
988
989 chunk = MIN(sz, UDF_MAX_CHUNK_SIZE);
990 data = malloc(MAX(chunk, context.sector_size));
991 assert(data);
992
993 printf(" ");
994 i = 0;
995 error = 0;
996 while (chunk) {
997 rd = read(f, data, chunk);
998 if (rd != chunk) {
999 warn("Short read of file %s", cur->name);
1000 error = errno;
1001 break;
1002 }
1003 printf("\b%c", "\\|/-"[i++ % 4]); fflush(stdout);fflush(stderr);
1004
1005 nblk = udf_datablocks(chunk);
1006 if (nblk > 0)
1007 udf_data_alloc(nblk, &data_icb);
1008 udf_append_file_contents(dscr, &data_icb, data, chunk);
1009
1010 sz -= chunk;
1011 chunk = MIN(sz, UDF_MAX_CHUNK_SIZE);
1012 }
1013 printf("\b \n");
1014 close(f);
1015 free(data);
1016
1017 /* write out dscr (e)fe */
1018 udf_set_link_cnt(dscr, fnode->nlink);
1019 udf_write_dscr_virt(dscr, udf_rw32(icb->loc.lb_num),
1020 udf_rw16(icb->loc.part_num), 1);
1021 free(dscr);
1022
1023 /* remember our location for hardlinks */
1024 cur->inode->fsuse = malloc(sizeof(struct long_ad));
1025 memcpy(cur->inode->fsuse, icb, sizeof(struct long_ad));
1026
1027 return error;
1028 }
1029
1030
1031 static int
1032 udf_populate_walk(fsinfo_t *fsopts, fsnode *root, char *dir,
1033 struct long_ad *parent_icb, struct long_ad *dir_icb)
1034 {
1035 union dscrptr *dir_dscr, *dscr;
1036 struct fileid_desc *fid;
1037 struct long_ad icb, data_icb, dirdata_icb;
1038 fsnode *cur;
1039 fsinode *fnode;
1040 size_t pathlen = strlen(dir);
1041 size_t dirlen;
1042 char *mydir = dir + pathlen;
1043 uint32_t nblk, ddoff;
1044 uint32_t softlink_len;
1045 uint8_t *softlink_buf;
1046 uint8_t *dirdata;
1047 int error, ret, retval;
1048
1049 /* claim disc space for the (e)fe descriptor for this dir */
1050 udf_metadata_alloc(1, dir_icb);
1051
1052 /* create new e(fe) */
1053 udf_create_new_file(&root->inode->st, &dir_dscr,
1054 UDF_ICB_FILETYPE_DIRECTORY, dir_icb);
1055
1056 /* claim space for the directory contents */
1057 dirlen = root->inode->st.st_size;
1058 nblk = udf_datablocks(dirlen);
1059 if (nblk > 0) {
1060 /* claim disc space for the dir contents */
1061 udf_data_alloc(nblk, &dirdata_icb);
1062 }
1063
1064 /* allocate memory for the directory contents */
1065 nblk++;
1066 dirdata = malloc(nblk * context.sector_size);
1067 assert(dirdata);
1068 memset(dirdata, 0, nblk * context.sector_size);
1069
1070 /* create and append '..' */
1071 fid = (struct fileid_desc *) dirdata;
1072 ddoff = udf_create_parentfid(fid, parent_icb);
1073
1074 /* for '..' */
1075 udf_inc_link(dir_dscr);
1076
1077 /* recurse */
1078 retval = 0;
1079 for (cur = root; cur != NULL; cur = cur->next) {
1080 mydir[0] = '/';
1081 strncpy(&mydir[1], cur->name, MAXPATHLEN - pathlen);
1082
1083 fid = (struct fileid_desc *) (dirdata + ddoff);
1084 switch (cur->type & S_IFMT) {
1085 default:
1086 /* what kind of nodes? */
1087 retval = 2;
1088 break;
1089 case S_IFCHR:
1090 case S_IFBLK:
1091 /* not supported */
1092 retval = 2;
1093 warnx("device node %s not supported", dir);
1094 break;
1095 case S_IFDIR:
1096 /* not an empty dir? */
1097 if (strcmp(cur->name, ".") == 0)
1098 break;
1099 assert(cur->child);
1100 if (cur->child) {
1101 ret = udf_populate_walk(fsopts, cur->child,
1102 dir, dir_icb, &icb);
1103 if (ret)
1104 retval = 2;
1105 }
1106 udf_create_fid(ddoff, fid, cur->name,
1107 UDF_FILE_CHAR_DIR, &icb);
1108 udf_inc_link(dir_dscr);
1109 ddoff += udf_fidsize(fid);
1110 break;
1111 case S_IFREG:
1112 fnode = cur->inode;
1113 /* don't re-copy hard-links */
1114 if (!(fnode->flags & FI_WRITTEN)) {
1115 printf("%s", dir);
1116 error = udf_copy_file(&fnode->st, dir, cur,
1117 fid, &icb);
1118 if (!error) {
1119 fnode->flags |= FI_WRITTEN;
1120 udf_create_fid(ddoff, fid, cur->name,
1121 0, &icb);
1122 ddoff += udf_fidsize(fid);
1123 } else {
1124 retval = 2;
1125 }
1126 } else {
1127 /* hardlink! */
1128 printf("%s (hardlink)\n", dir);
1129 udf_create_fid(ddoff, fid, cur->name,
1130 0, (struct long_ad *) (fnode->fsuse));
1131 ddoff += udf_fidsize(fid);
1132 }
1133 fnode->nlink--;
1134 if (fnode->nlink == 0)
1135 free(fnode->fsuse);
1136 break;
1137 case S_IFLNK:
1138 /* softlink */
1139 fnode = cur->inode;
1140 printf("%s -> %s\n", dir, cur->symlink);
1141 error = udf_encode_symlink(&softlink_buf,
1142 &softlink_len, cur->symlink);
1143 if (error) {
1144 printf("SOFTLINK error %d\n", error);
1145 retval = 2;
1146 break;
1147 }
1148
1149 udf_metadata_alloc(1, &icb);
1150 udf_create_new_file(&fnode->st, &dscr,
1151 UDF_ICB_FILETYPE_SYMLINK, &icb);
1152
1153 nblk = udf_datablocks(softlink_len);
1154 if (nblk > 0)
1155 udf_data_alloc(nblk, &data_icb);
1156 udf_append_file_contents(dscr, &data_icb,
1157 softlink_buf, softlink_len);
1158
1159 /* write out dscr (e)fe */
1160 udf_inc_link(dscr);
1161 udf_write_dscr_virt(dscr, udf_rw32(icb.loc.lb_num),
1162 udf_rw16(icb.loc.part_num), 1);
1163
1164 free(dscr);
1165 free(softlink_buf);
1166
1167 udf_create_fid(ddoff, fid, cur->name, 0, &icb);
1168 ddoff += udf_fidsize(fid);
1169 break;
1170 }
1171 mydir[0] = '\0';
1172 }
1173
1174 /* writeout directory contents */
1175 dirlen = ddoff; /* XXX might bite back */
1176
1177 udf_prepare_fids(dir_icb, &dirdata_icb, dirdata, dirlen);
1178 udf_append_file_contents(dir_dscr, &dirdata_icb, dirdata, dirlen);
1179
1180 /* write out dir_dscr (e)fe */
1181 udf_write_dscr_virt(dir_dscr, udf_rw32(dir_icb->loc.lb_num),
1182 udf_rw16(dir_icb->loc.part_num), 1);
1183
1184 free(dirdata);
1185 free(dir_dscr);
1186 return retval;
1187 }
1188
1189
1190 static int
1191 udf_populate(const char *dir, fsnode *root, fsinfo_t *fsopts,
1192 struct udf_stats *stats)
1193 {
1194 struct long_ad rooticb;
1195 static char path[MAXPATHLEN+1];
1196 int error;
1197
1198 /* make sure the root gets the rootdir entry */
1199 context.metadata_alloc_pos = layout.rootdir;
1200 context.data_alloc_pos = layout.rootdir;
1201
1202 strncpy(path, dir, sizeof(path));
1203 error = udf_populate_walk(fsopts, root, path, &rooticb, &rooticb);
1204
1205 return error;
1206 }
1207
1208
1209 static void
1210 udf_enumerate_and_estimate(const char *dir, fsnode *root, fsinfo_t *fsopts,
1211 struct udf_stats *stats)
1212 {
1213 char path[MAXPATHLEN + 1];
1214 off_t proposed_size;
1215 uint32_t n, nblk;
1216
1217 strncpy(path, dir, sizeof(path));
1218
1219 /* calculate strict minimal size */
1220 udf_estimate_walk(fsopts, root, path, stats);
1221 printf("ndirs %d\n", stats->ndirs);
1222 printf("nfiles %d\n", stats->nfiles);
1223 printf("ndata_blocks %d\n", stats->ndatablocks);
1224 printf("nmetadata_blocks %d\n", stats->nmetadatablocks);
1225 printf("\n");
1226
1227 /* adjust for options : free file nodes */
1228 if (fsopts->freefiles) {
1229 /* be mercifull and reserve more for the FID */
1230 stats->nmetadatablocks += fsopts->freefiles * 1.5;
1231 } else if ((n = fsopts->freefilepc)) {
1232 stats->nmetadatablocks += (stats->nmetadatablocks*n) / (100-n);
1233 }
1234
1235 /* adjust for options : free data blocks */
1236 if (fsopts->freeblocks) {
1237 stats->ndatablocks += fsopts->freeblocks;
1238 } else if ((n = fsopts->freeblockpc)) {
1239 stats->ndatablocks += (stats->ndatablocks * n) / (100-n);
1240 }
1241
1242 /* rough predictor of minimum disc size */
1243 nblk = stats->ndatablocks + stats->nmetadatablocks;
1244 nblk = (double) nblk * (1.0 + 1.0/8.0); /* free space map */
1245 nblk += 256; /* pre-volume space */
1246 nblk += 256; /* post-volume space */
1247 nblk += 64; /* safeguard */
1248
1249 /* try to honour minimum size */
1250 n = fsopts->minsize / fsopts->sectorsize;
1251 if (nblk < n) {
1252 stats->ndatablocks += (n - nblk);
1253 nblk += n - nblk;
1254 }
1255 proposed_size = (off_t) nblk * fsopts->sectorsize;
1256 /* sanity size */
1257 if (proposed_size < 512*1024)
1258 proposed_size = 512*1024;
1259
1260 if (fsopts->size) {
1261 if (fsopts->size < proposed_size)
1262 err(EINVAL, "makefs_udf: won't fit on disc!");
1263 } else {
1264 fsopts->size = proposed_size;
1265 }
1266
1267 fsopts->inodes = stats->nfiles + stats->ndirs;
1268 }
1269
1270
1271 void
1272 udf_makefs(const char *image, const char *dir, fsnode *root, fsinfo_t *fsopts)
1273 {
1274 struct udf_stats stats;
1275 uint64_t truncate_len;
1276 char scrap[255];
1277 int error;
1278
1279 /* determine format */
1280 udf_emulate_discinfo(fsopts, &mmc_discinfo, mmc_profile);
1281 printf("req_enable %d, req_disable %d\n", req_enable, req_disable);
1282
1283 context.sector_size = fsopts->sectorsize;
1284 error = udf_derive_format(req_enable, req_disable, false);
1285 if (error)
1286 err(EINVAL, "makefs_udf: can't determine format");
1287
1288 /* names */
1289 error = udf_proces_names();
1290 if (error)
1291 err(EINVAL, "makefs_udf: bad names given");
1292
1293 /* set return value to 1 indicating error */
1294 error = 1;
1295
1296 /* estimate the amount of space needed */
1297 memset(&stats, 0, sizeof(stats));
1298 udf_enumerate_and_estimate(dir, root, fsopts, &stats);
1299
1300 printf("Calculated size of `%s': %lld bytes, %ld inodes\n",
1301 image, (long long)fsopts->size, (long)fsopts->inodes);
1302
1303 /* create file image */
1304 if ((fd = open(image, O_RDWR | O_CREAT | O_TRUNC, 0666)) == -1) {
1305 err(EXIT_FAILURE, "%s", image);
1306 }
1307 if (lseek(fd, fsopts->size - 1, SEEK_SET) == -1) {
1308 goto err_exit;
1309 }
1310 if (write(fd, &fd, 1) != 1) {
1311 goto err_exit;
1312 }
1313 if (lseek(fd, 0, SEEK_SET) == -1) {
1314 goto err_exit;
1315 }
1316 fsopts->fd = fd;
1317
1318 /* calculate metadata percentage */
1319 meta_fract = fsopts->size / (stats.nmetadatablocks*fsopts->sectorsize);
1320 meta_fract = ((int) ((meta_fract + 0.005)*100.0)) / 100;
1321
1322 /* update mmc info but now with correct size */
1323 udf_emulate_discinfo(fsopts, &mmc_discinfo, mmc_profile);
1324
1325 printf("Building disc compatible with UDF version %x to %x\n\n",
1326 context.min_udf, context.max_udf);
1327 (void)snprintb(scrap, sizeof(scrap), FORMAT_FLAGBITS,
1328 (uint64_t) format_flags);
1329 printf("UDF properties %s\n", scrap);
1330 printf("Volume set `%s'\n", context.volset_name);
1331 printf("Primary volume `%s`\n", context.primary_name);
1332 printf("Logical volume `%s`\n", context.logvol_name);
1333 if (format_flags & FORMAT_META)
1334 printf("Metadata percentage %d %%\n",
1335 (int) (100.0*stats.ndatablocks/stats.nmetadatablocks));
1336 printf("\n");
1337 udf_do_newfs_prefix();
1338
1339 /* update context */
1340 context.unique_id = 0;
1341
1342 /* XXX are the next two needed? or should be re-count them? */
1343 context.num_files = stats.nfiles;
1344 context.num_directories = stats.ndirs;
1345
1346 error = udf_populate(dir, root, fsopts, &stats);
1347
1348 udf_do_newfs_postfix();
1349
1350 if (format_flags & FORMAT_VAT) {
1351 truncate_len = context.vtop_offset[context.data_part] +
1352 context.data_alloc_pos;
1353 truncate_len *= context.sector_size;
1354
1355 printf("\nTruncing the disc-image to allow for VAT\n");
1356 printf("Free space left on this volume approx. "
1357 "%"PRIu64" KiB, %"PRIu64" MiB\n",
1358 (fsopts->size - truncate_len)/1024,
1359 (fsopts->size - truncate_len)/1024/1024);
1360 ftruncate(fd, truncate_len);
1361 }
1362
1363 if (error) {
1364 error = 2; /* some files couldn't be added */
1365 goto err_exit;
1366 }
1367
1368 close(fd);
1369 return;
1370
1371 err_exit:
1372 close(fd);
1373 if (error == 2) {
1374 errx(error, "Not all files could be added");
1375 } else {
1376 errx(error, "creation of %s failed", image);
1377 }
1378 }
1379
1380