1 /*-
2 * Copyright (c) 2008 Christos Zoulas
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 * 1. Redistributions of source code must retain the above copyright
9 * notice, this list of conditions and the following disclaimer.
10 * 2. Redistributions in binary form must reproduce the above copyright
11 * notice, this list of conditions and the following disclaimer in the
12 * documentation and/or other materials provided with the distribution.
13 *
14 * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
15 * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
16 * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
17 * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
18 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
19 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
20 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
21 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
22 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
23 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
24 * POSSIBILITY OF SUCH DAMAGE.
25 */
26 /*
27 * Parse Composite Document Files, the format used in Microsoft Office
28 * document files before they switched to zipped XML.
29 * Info from: http://sc.openoffice.org/compdocfileformat.pdf
30 *
31 * N.B. This is the "Composite Document File" format, and not the
32 * "Compound Document Format", nor the "Channel Definition Format".
33 */
34
35 #include "file.h"
36
37 #ifndef lint
38 FILE_RCSID("@(#)$File: cdf.c,v 1.106 2017/04/30 17:05:02 christos Exp $")
39 #endif
40
41 #include <assert.h>
42 #ifdef CDF_DEBUG
43 #include <err.h>
44 #endif
45 #include <stdlib.h>
46
47 #ifdef PHP_WIN32
48 #include "win32/unistd.h"
49 #else
50 #include <unistd.h>
51 #endif
52
53 #ifndef UINT32_MAX
54 # define UINT32_MAX (0xffffffff)
55 #endif
56
57 #include <string.h>
58 #include <time.h>
59 #include <ctype.h>
60 #ifdef HAVE_LIMITS_H
61 #include <limits.h>
62 #endif
63
64 #ifndef EFTYPE
65 #define EFTYPE EINVAL
66 #endif
67
68 #include "cdf.h"
69
70 #ifdef CDF_DEBUG
71 #define DPRINTF(a) printf a, fflush(stdout)
72 #else
73 #define DPRINTF(a)
74 #endif
75
76 static union {
77 char s[4];
78 uint32_t u;
79 } cdf_bo;
80
81 #define NEED_SWAP (cdf_bo.u == (uint32_t)0x01020304)
82
83 #define CDF_TOLE8(x) ((uint64_t)(NEED_SWAP ? _cdf_tole8(x) : (uint64_t)(x)))
84 #define CDF_TOLE4(x) ((uint32_t)(NEED_SWAP ? _cdf_tole4(x) : (uint32_t)(x)))
85 #define CDF_TOLE2(x) ((uint16_t)(NEED_SWAP ? _cdf_tole2(x) : (uint16_t)(x)))
86 #define CDF_TOLE(x) (/*CONSTCOND*/sizeof(x) == 2 ? \
87 CDF_TOLE2(CAST(uint16_t, x)) : \
88 (/*CONSTCOND*/sizeof(x) == 4 ? \
89 CDF_TOLE4(CAST(uint32_t, x)) : \
90 CDF_TOLE8(CAST(uint64_t, x))))
91 #define CDF_GETUINT32(x, y) cdf_getuint32(x, y)
92
93 #define CDF_MALLOC(n) cdf_malloc(__FILE__, __LINE__, (n))
94 #define CDF_REALLOC(p, n) cdf_realloc(__FILE__, __LINE__, (p), (n))
95 #define CDF_CALLOC(n, u) cdf_calloc(__FILE__, __LINE__, (n), (u))
96
97
98 static void *
cdf_malloc(const char * file,size_t line,size_t n)99 cdf_malloc(const char *file, size_t line, size_t n)
100 {
101 DPRINTF(("%s,%zu: %s %zu\n", file, line, __func__, n));
102 return malloc(n);
103 }
104
105 static void *
cdf_realloc(const char * file,size_t line,void * p,size_t n)106 cdf_realloc(const char *file, size_t line, void *p, size_t n)
107 {
108 DPRINTF(("%s,%zu: %s %zu\n", file, line, __func__, n));
109 return realloc(p, n);
110 }
111
112 static void *
cdf_calloc(const char * file,size_t line,size_t n,size_t u)113 cdf_calloc(const char *file, size_t line, size_t n, size_t u)
114 {
115 DPRINTF(("%s,%zu: %s %zu %zu\n", file, line, __func__, n, u));
116 return calloc(n, u);
117 }
118
119 /*
120 * swap a short
121 */
122 static uint16_t
_cdf_tole2(uint16_t sv)123 _cdf_tole2(uint16_t sv)
124 {
125 uint16_t rv;
126 uint8_t *s = (uint8_t *)(void *)&sv;
127 uint8_t *d = (uint8_t *)(void *)&rv;
128 d[0] = s[1];
129 d[1] = s[0];
130 return rv;
131 }
132
133 /*
134 * swap an int
135 */
136 static uint32_t
_cdf_tole4(uint32_t sv)137 _cdf_tole4(uint32_t sv)
138 {
139 uint32_t rv;
140 uint8_t *s = (uint8_t *)(void *)&sv;
141 uint8_t *d = (uint8_t *)(void *)&rv;
142 d[0] = s[3];
143 d[1] = s[2];
144 d[2] = s[1];
145 d[3] = s[0];
146 return rv;
147 }
148
149 /*
150 * swap a quad
151 */
152 static uint64_t
_cdf_tole8(uint64_t sv)153 _cdf_tole8(uint64_t sv)
154 {
155 uint64_t rv;
156 uint8_t *s = (uint8_t *)(void *)&sv;
157 uint8_t *d = (uint8_t *)(void *)&rv;
158 d[0] = s[7];
159 d[1] = s[6];
160 d[2] = s[5];
161 d[3] = s[4];
162 d[4] = s[3];
163 d[5] = s[2];
164 d[6] = s[1];
165 d[7] = s[0];
166 return rv;
167 }
168
169 /*
170 * grab a uint32_t from a possibly unaligned address, and return it in
171 * the native host order.
172 */
173 static uint32_t
cdf_getuint32(const uint8_t * p,size_t offs)174 cdf_getuint32(const uint8_t *p, size_t offs)
175 {
176 uint32_t rv;
177 (void)memcpy(&rv, p + offs * sizeof(uint32_t), sizeof(rv));
178 return CDF_TOLE4(rv);
179 }
180
181 #define CDF_UNPACK(a) \
182 (void)memcpy(&(a), &buf[len], sizeof(a)), len += sizeof(a)
183 #define CDF_UNPACKA(a) \
184 (void)memcpy((a), &buf[len], sizeof(a)), len += sizeof(a)
185
186 uint16_t
cdf_tole2(uint16_t sv)187 cdf_tole2(uint16_t sv)
188 {
189 return CDF_TOLE2(sv);
190 }
191
192 uint32_t
cdf_tole4(uint32_t sv)193 cdf_tole4(uint32_t sv)
194 {
195 return CDF_TOLE4(sv);
196 }
197
198 uint64_t
cdf_tole8(uint64_t sv)199 cdf_tole8(uint64_t sv)
200 {
201 return CDF_TOLE8(sv);
202 }
203
204 void
cdf_swap_header(cdf_header_t * h)205 cdf_swap_header(cdf_header_t *h)
206 {
207 size_t i;
208
209 h->h_magic = CDF_TOLE8(h->h_magic);
210 h->h_uuid[0] = CDF_TOLE8(h->h_uuid[0]);
211 h->h_uuid[1] = CDF_TOLE8(h->h_uuid[1]);
212 h->h_revision = CDF_TOLE2(h->h_revision);
213 h->h_version = CDF_TOLE2(h->h_version);
214 h->h_byte_order = CDF_TOLE2(h->h_byte_order);
215 h->h_sec_size_p2 = CDF_TOLE2(h->h_sec_size_p2);
216 h->h_short_sec_size_p2 = CDF_TOLE2(h->h_short_sec_size_p2);
217 h->h_num_sectors_in_sat = CDF_TOLE4(h->h_num_sectors_in_sat);
218 h->h_secid_first_directory = CDF_TOLE4(h->h_secid_first_directory);
219 h->h_min_size_standard_stream =
220 CDF_TOLE4(h->h_min_size_standard_stream);
221 h->h_secid_first_sector_in_short_sat =
222 CDF_TOLE4((uint32_t)h->h_secid_first_sector_in_short_sat);
223 h->h_num_sectors_in_short_sat =
224 CDF_TOLE4(h->h_num_sectors_in_short_sat);
225 h->h_secid_first_sector_in_master_sat =
226 CDF_TOLE4((uint32_t)h->h_secid_first_sector_in_master_sat);
227 h->h_num_sectors_in_master_sat =
228 CDF_TOLE4(h->h_num_sectors_in_master_sat);
229 for (i = 0; i < __arraycount(h->h_master_sat); i++)
230 h->h_master_sat[i] = CDF_TOLE4((uint32_t)h->h_master_sat[i]);
231 }
232
233 void
cdf_unpack_header(cdf_header_t * h,char * buf)234 cdf_unpack_header(cdf_header_t *h, char *buf)
235 {
236 size_t i;
237 size_t len = 0;
238
239 CDF_UNPACK(h->h_magic);
240 CDF_UNPACKA(h->h_uuid);
241 CDF_UNPACK(h->h_revision);
242 CDF_UNPACK(h->h_version);
243 CDF_UNPACK(h->h_byte_order);
244 CDF_UNPACK(h->h_sec_size_p2);
245 CDF_UNPACK(h->h_short_sec_size_p2);
246 CDF_UNPACKA(h->h_unused0);
247 CDF_UNPACK(h->h_num_sectors_in_sat);
248 CDF_UNPACK(h->h_secid_first_directory);
249 CDF_UNPACKA(h->h_unused1);
250 CDF_UNPACK(h->h_min_size_standard_stream);
251 CDF_UNPACK(h->h_secid_first_sector_in_short_sat);
252 CDF_UNPACK(h->h_num_sectors_in_short_sat);
253 CDF_UNPACK(h->h_secid_first_sector_in_master_sat);
254 CDF_UNPACK(h->h_num_sectors_in_master_sat);
255 for (i = 0; i < __arraycount(h->h_master_sat); i++)
256 CDF_UNPACK(h->h_master_sat[i]);
257 }
258
259 void
cdf_swap_dir(cdf_directory_t * d)260 cdf_swap_dir(cdf_directory_t *d)
261 {
262 d->d_namelen = CDF_TOLE2(d->d_namelen);
263 d->d_left_child = CDF_TOLE4((uint32_t)d->d_left_child);
264 d->d_right_child = CDF_TOLE4((uint32_t)d->d_right_child);
265 d->d_storage = CDF_TOLE4((uint32_t)d->d_storage);
266 d->d_storage_uuid[0] = CDF_TOLE8(d->d_storage_uuid[0]);
267 d->d_storage_uuid[1] = CDF_TOLE8(d->d_storage_uuid[1]);
268 d->d_flags = CDF_TOLE4(d->d_flags);
269 d->d_created = CDF_TOLE8((uint64_t)d->d_created);
270 d->d_modified = CDF_TOLE8((uint64_t)d->d_modified);
271 d->d_stream_first_sector = CDF_TOLE4((uint32_t)d->d_stream_first_sector);
272 d->d_size = CDF_TOLE4(d->d_size);
273 }
274
275 void
cdf_swap_class(cdf_classid_t * d)276 cdf_swap_class(cdf_classid_t *d)
277 {
278 d->cl_dword = CDF_TOLE4(d->cl_dword);
279 d->cl_word[0] = CDF_TOLE2(d->cl_word[0]);
280 d->cl_word[1] = CDF_TOLE2(d->cl_word[1]);
281 }
282
283 void
cdf_unpack_dir(cdf_directory_t * d,char * buf)284 cdf_unpack_dir(cdf_directory_t *d, char *buf)
285 {
286 size_t len = 0;
287
288 CDF_UNPACKA(d->d_name);
289 CDF_UNPACK(d->d_namelen);
290 CDF_UNPACK(d->d_type);
291 CDF_UNPACK(d->d_color);
292 CDF_UNPACK(d->d_left_child);
293 CDF_UNPACK(d->d_right_child);
294 CDF_UNPACK(d->d_storage);
295 CDF_UNPACKA(d->d_storage_uuid);
296 CDF_UNPACK(d->d_flags);
297 CDF_UNPACK(d->d_created);
298 CDF_UNPACK(d->d_modified);
299 CDF_UNPACK(d->d_stream_first_sector);
300 CDF_UNPACK(d->d_size);
301 CDF_UNPACK(d->d_unused0);
302 }
303
304 int
cdf_zero_stream(cdf_stream_t * scn)305 cdf_zero_stream(cdf_stream_t *scn)
306 {
307 scn->sst_len = 0;
308 scn->sst_dirlen = 0;
309 scn->sst_ss = 0;
310 free(scn->sst_tab);
311 scn->sst_tab = NULL;
312 return -1;
313 }
314
315 static size_t
cdf_check_stream(const cdf_stream_t * sst,const cdf_header_t * h)316 cdf_check_stream(const cdf_stream_t *sst, const cdf_header_t *h)
317 {
318 size_t ss = sst->sst_dirlen < h->h_min_size_standard_stream ?
319 CDF_SHORT_SEC_SIZE(h) : CDF_SEC_SIZE(h);
320 assert(ss == sst->sst_ss);
321 return sst->sst_ss;
322 }
323
324 static int
cdf_check_stream_offset(const cdf_stream_t * sst,const cdf_header_t * h,const void * p,size_t tail,int line)325 cdf_check_stream_offset(const cdf_stream_t *sst, const cdf_header_t *h,
326 const void *p, size_t tail, int line)
327 {
328 const char *b = (const char *)sst->sst_tab;
329 const char *e = ((const char *)p) + tail;
330 size_t ss = cdf_check_stream(sst, h);
331 /*LINTED*/(void)&line;
332 if (e >= b && (size_t)(e - b) <= ss * sst->sst_len)
333 return 0;
334 DPRINTF(("%d: offset begin %p < end %p || %" SIZE_T_FORMAT "u"
335 " > %" SIZE_T_FORMAT "u [%" SIZE_T_FORMAT "u %"
336 SIZE_T_FORMAT "u]\n", line, b, e, (size_t)(e - b),
337 ss * sst->sst_len, ss, sst->sst_len));
338 errno = EFTYPE;
339 return -1;
340 }
341
342 static ssize_t
cdf_read(const cdf_info_t * info,zend_off_t off,void * buf,size_t len)343 cdf_read(const cdf_info_t *info, zend_off_t off, void *buf, size_t len)
344 {
345 size_t siz = (size_t)off + len;
346
347 if ((zend_off_t)(off + len) != (zend_off_t)siz) {
348 goto out;
349 }
350
351 if (info->i_buf != NULL && info->i_len >= siz) {
352 (void)memcpy(buf, &info->i_buf[off], len);
353 return (ssize_t)len;
354 }
355
356 if (info->i_fd == -1)
357 goto out;
358
359 if (FINFO_LSEEK_FUNC(info->i_fd, off, SEEK_SET) == (zend_off_t)-1)
360 return -1;
361
362 if (FINFO_READ_FUNC(info->i_fd, buf, len) != (ssize_t)len)
363 return -1;
364
365 return (ssize_t)len;
366 out:
367 errno = EINVAL;
368 return -1;
369 }
370
371 int
cdf_read_header(const cdf_info_t * info,cdf_header_t * h)372 cdf_read_header(const cdf_info_t *info, cdf_header_t *h)
373 {
374 char buf[512];
375
376 (void)memcpy(cdf_bo.s, "\01\02\03\04", 4);
377 if (cdf_read(info, (zend_off_t)0, buf, sizeof(buf)) == -1)
378 return -1;
379 cdf_unpack_header(h, buf);
380 cdf_swap_header(h);
381 if (h->h_magic != CDF_MAGIC) {
382 DPRINTF(("Bad magic %#" INT64_T_FORMAT "x != %#"
383 INT64_T_FORMAT "x\n",
384 (unsigned long long)h->h_magic,
385 (unsigned long long)CDF_MAGIC));
386 goto out;
387 }
388 if (h->h_sec_size_p2 > 20) {
389 DPRINTF(("Bad sector size %hu\n", h->h_sec_size_p2));
390 goto out;
391 }
392 if (h->h_short_sec_size_p2 > 20) {
393 DPRINTF(("Bad short sector size %hu\n",
394 h->h_short_sec_size_p2));
395 goto out;
396 }
397 return 0;
398 out:
399 errno = EFTYPE;
400 return -1;
401 }
402
403
404 ssize_t
cdf_read_sector(const cdf_info_t * info,void * buf,size_t offs,size_t len,const cdf_header_t * h,cdf_secid_t id)405 cdf_read_sector(const cdf_info_t *info, void *buf, size_t offs, size_t len,
406 const cdf_header_t *h, cdf_secid_t id)
407 {
408 size_t ss = CDF_SEC_SIZE(h);
409 size_t pos = CDF_SEC_POS(h, id);
410 assert(ss == len);
411 return cdf_read(info, (zend_off_t)pos, ((char *)buf) + offs, len);
412 }
413
414 ssize_t
cdf_read_short_sector(const cdf_stream_t * sst,void * buf,size_t offs,size_t len,const cdf_header_t * h,cdf_secid_t id)415 cdf_read_short_sector(const cdf_stream_t *sst, void *buf, size_t offs,
416 size_t len, const cdf_header_t *h, cdf_secid_t id)
417 {
418 size_t ss = CDF_SHORT_SEC_SIZE(h);
419 size_t pos = CDF_SHORT_SEC_POS(h, id);
420 assert(ss == len);
421 if (pos + len > CDF_SEC_SIZE(h) * sst->sst_len) {
422 DPRINTF(("Out of bounds read %" SIZE_T_FORMAT "u > %"
423 SIZE_T_FORMAT "u\n",
424 pos + len, CDF_SEC_SIZE(h) * sst->sst_len));
425 goto out;
426 }
427 (void)memcpy(((char *)buf) + offs,
428 ((const char *)sst->sst_tab) + pos, len);
429 return len;
430 out:
431 errno = EFTYPE;
432 return -1;
433 }
434
435 /*
436 * Read the sector allocation table.
437 */
438 int
cdf_read_sat(const cdf_info_t * info,cdf_header_t * h,cdf_sat_t * sat)439 cdf_read_sat(const cdf_info_t *info, cdf_header_t *h, cdf_sat_t *sat)
440 {
441 size_t i, j, k;
442 size_t ss = CDF_SEC_SIZE(h);
443 cdf_secid_t *msa, mid, sec;
444 size_t nsatpersec = (ss / sizeof(mid)) - 1;
445
446 for (i = 0; i < __arraycount(h->h_master_sat); i++)
447 if (h->h_master_sat[i] == CDF_SECID_FREE)
448 break;
449
450 #define CDF_SEC_LIMIT (UINT32_MAX / (8 * ss))
451 if ((nsatpersec > 0 &&
452 h->h_num_sectors_in_master_sat > CDF_SEC_LIMIT / nsatpersec) ||
453 i > CDF_SEC_LIMIT) {
454 DPRINTF(("Number of sectors in master SAT too big %u %"
455 SIZE_T_FORMAT "u\n", h->h_num_sectors_in_master_sat, i));
456 errno = EFTYPE;
457 return -1;
458 }
459
460 sat->sat_len = h->h_num_sectors_in_master_sat * nsatpersec + i;
461 DPRINTF(("sat_len = %" SIZE_T_FORMAT "u ss = %" SIZE_T_FORMAT "u\n",
462 sat->sat_len, ss));
463 if ((sat->sat_tab = CAST(cdf_secid_t *, CDF_CALLOC(sat->sat_len, ss)))
464 == NULL)
465 return -1;
466
467 for (i = 0; i < __arraycount(h->h_master_sat); i++) {
468 if (h->h_master_sat[i] < 0)
469 break;
470 if (cdf_read_sector(info, sat->sat_tab, ss * i, ss, h,
471 h->h_master_sat[i]) != (ssize_t)ss) {
472 DPRINTF(("Reading sector %d", h->h_master_sat[i]));
473 goto out1;
474 }
475 }
476
477 if ((msa = CAST(cdf_secid_t *, CDF_CALLOC(1, ss))) == NULL)
478 goto out1;
479
480 mid = h->h_secid_first_sector_in_master_sat;
481 for (j = 0; j < h->h_num_sectors_in_master_sat; j++) {
482 if (mid < 0)
483 goto out;
484 if (j >= CDF_LOOP_LIMIT) {
485 DPRINTF(("Reading master sector loop limit"));
486 goto out3;
487 }
488 if (cdf_read_sector(info, msa, 0, ss, h, mid) != (ssize_t)ss) {
489 DPRINTF(("Reading master sector %d", mid));
490 goto out2;
491 }
492 for (k = 0; k < nsatpersec; k++, i++) {
493 sec = CDF_TOLE4((uint32_t)msa[k]);
494 if (sec < 0)
495 goto out;
496 if (i >= sat->sat_len) {
497 DPRINTF(("Out of bounds reading MSA %" SIZE_T_FORMAT
498 "u >= %" SIZE_T_FORMAT "u", i, sat->sat_len));
499 goto out3;
500 }
501 if (cdf_read_sector(info, sat->sat_tab, ss * i, ss, h,
502 sec) != (ssize_t)ss) {
503 DPRINTF(("Reading sector %d",
504 CDF_TOLE4(msa[k])));
505 goto out2;
506 }
507 }
508 mid = CDF_TOLE4((uint32_t)msa[nsatpersec]);
509 }
510 out:
511 sat->sat_len = i;
512 free(msa);
513 return 0;
514 out3:
515 errno = EFTYPE;
516 out2:
517 free(msa);
518 out1:
519 free(sat->sat_tab);
520 return -1;
521 }
522
523 size_t
cdf_count_chain(const cdf_sat_t * sat,cdf_secid_t sid,size_t size)524 cdf_count_chain(const cdf_sat_t *sat, cdf_secid_t sid, size_t size)
525 {
526 size_t i, j;
527 cdf_secid_t maxsector = (cdf_secid_t)((sat->sat_len * size)
528 / sizeof(maxsector));
529
530 DPRINTF(("Chain:"));
531 if (sid == CDF_SECID_END_OF_CHAIN) {
532 /* 0-length chain. */
533 DPRINTF((" empty\n"));
534 return 0;
535 }
536
537 for (j = i = 0; sid >= 0; i++, j++) {
538 DPRINTF((" %d", sid));
539 if (j >= CDF_LOOP_LIMIT) {
540 DPRINTF(("Counting chain loop limit"));
541 goto out;
542 }
543 if (sid >= maxsector) {
544 DPRINTF(("Sector %d >= %d\n", sid, maxsector));
545 goto out;
546 }
547 sid = CDF_TOLE4((uint32_t)sat->sat_tab[sid]);
548 }
549 if (i == 0) {
550 DPRINTF((" none, sid: %d\n", sid));
551 goto out;
552
553 }
554 DPRINTF(("\n"));
555 return i;
556 out:
557 errno = EFTYPE;
558 return (size_t)-1;
559 }
560
561 int
cdf_read_long_sector_chain(const cdf_info_t * info,const cdf_header_t * h,const cdf_sat_t * sat,cdf_secid_t sid,size_t len,cdf_stream_t * scn)562 cdf_read_long_sector_chain(const cdf_info_t *info, const cdf_header_t *h,
563 const cdf_sat_t *sat, cdf_secid_t sid, size_t len, cdf_stream_t *scn)
564 {
565 size_t ss = CDF_SEC_SIZE(h), i, j;
566 ssize_t nr;
567 scn->sst_tab = NULL;
568 scn->sst_len = cdf_count_chain(sat, sid, ss);
569 scn->sst_dirlen = MAX(h->h_min_size_standard_stream, len);
570 scn->sst_ss = ss;
571
572 if (sid == CDF_SECID_END_OF_CHAIN || len == 0)
573 return cdf_zero_stream(scn);
574
575 if (scn->sst_len == (size_t)-1)
576 goto out;
577
578 scn->sst_tab = CDF_CALLOC(scn->sst_len, ss);
579 if (scn->sst_tab == NULL)
580 return cdf_zero_stream(scn);
581
582 for (j = i = 0; sid >= 0; i++, j++) {
583 if (j >= CDF_LOOP_LIMIT) {
584 DPRINTF(("Read long sector chain loop limit"));
585 goto out;
586 }
587 if (i >= scn->sst_len) {
588 DPRINTF(("Out of bounds reading long sector chain "
589 "%" SIZE_T_FORMAT "u > %" SIZE_T_FORMAT "u\n", i,
590 scn->sst_len));
591 goto out;
592 }
593 if ((nr = cdf_read_sector(info, scn->sst_tab, i * ss, ss, h,
594 sid)) != (ssize_t)ss) {
595 if (i == scn->sst_len - 1 && nr > 0) {
596 /* Last sector might be truncated */
597 return 0;
598 }
599 DPRINTF(("Reading long sector chain %d", sid));
600 goto out;
601 }
602 sid = CDF_TOLE4((uint32_t)sat->sat_tab[sid]);
603 }
604 return 0;
605 out:
606 errno = EFTYPE;
607 return cdf_zero_stream(scn);
608 }
609
610 int
cdf_read_short_sector_chain(const cdf_header_t * h,const cdf_sat_t * ssat,const cdf_stream_t * sst,cdf_secid_t sid,size_t len,cdf_stream_t * scn)611 cdf_read_short_sector_chain(const cdf_header_t *h,
612 const cdf_sat_t *ssat, const cdf_stream_t *sst,
613 cdf_secid_t sid, size_t len, cdf_stream_t *scn)
614 {
615 size_t ss = CDF_SHORT_SEC_SIZE(h), i, j;
616 scn->sst_tab = NULL;
617 scn->sst_len = cdf_count_chain(ssat, sid, CDF_SEC_SIZE(h));
618 scn->sst_dirlen = len;
619 scn->sst_ss = ss;
620
621 if (scn->sst_len == (size_t)-1)
622 goto out;
623
624 scn->sst_tab = CDF_CALLOC(scn->sst_len, ss);
625 if (scn->sst_tab == NULL)
626 return cdf_zero_stream(scn);
627
628 for (j = i = 0; sid >= 0; i++, j++) {
629 if (j >= CDF_LOOP_LIMIT) {
630 DPRINTF(("Read short sector chain loop limit"));
631 goto out;
632 }
633 if (i >= scn->sst_len) {
634 DPRINTF(("Out of bounds reading short sector chain "
635 "%" SIZE_T_FORMAT "u > %" SIZE_T_FORMAT "u\n",
636 i, scn->sst_len));
637 goto out;
638 }
639 if (cdf_read_short_sector(sst, scn->sst_tab, i * ss, ss, h,
640 sid) != (ssize_t)ss) {
641 DPRINTF(("Reading short sector chain %d", sid));
642 goto out;
643 }
644 sid = CDF_TOLE4((uint32_t)ssat->sat_tab[sid]);
645 }
646 return 0;
647 out:
648 errno = EFTYPE;
649 return cdf_zero_stream(scn);
650 }
651
652 int
cdf_read_sector_chain(const cdf_info_t * info,const cdf_header_t * h,const cdf_sat_t * sat,const cdf_sat_t * ssat,const cdf_stream_t * sst,cdf_secid_t sid,size_t len,cdf_stream_t * scn)653 cdf_read_sector_chain(const cdf_info_t *info, const cdf_header_t *h,
654 const cdf_sat_t *sat, const cdf_sat_t *ssat, const cdf_stream_t *sst,
655 cdf_secid_t sid, size_t len, cdf_stream_t *scn)
656 {
657
658 if (len < h->h_min_size_standard_stream && sst->sst_tab != NULL)
659 return cdf_read_short_sector_chain(h, ssat, sst, sid, len,
660 scn);
661 else
662 return cdf_read_long_sector_chain(info, h, sat, sid, len, scn);
663 }
664
665 int
cdf_read_dir(const cdf_info_t * info,const cdf_header_t * h,const cdf_sat_t * sat,cdf_dir_t * dir)666 cdf_read_dir(const cdf_info_t *info, const cdf_header_t *h,
667 const cdf_sat_t *sat, cdf_dir_t *dir)
668 {
669 size_t i, j;
670 size_t ss = CDF_SEC_SIZE(h), ns, nd;
671 char *buf;
672 cdf_secid_t sid = h->h_secid_first_directory;
673
674 ns = cdf_count_chain(sat, sid, ss);
675 if (ns == (size_t)-1)
676 return -1;
677
678 nd = ss / CDF_DIRECTORY_SIZE;
679
680 dir->dir_len = ns * nd;
681 dir->dir_tab = CAST(cdf_directory_t *,
682 CDF_CALLOC(dir->dir_len, sizeof(dir->dir_tab[0])));
683 if (dir->dir_tab == NULL)
684 return -1;
685
686 if ((buf = CAST(char *, CDF_MALLOC(ss))) == NULL) {
687 free(dir->dir_tab);
688 return -1;
689 }
690
691 for (j = i = 0; i < ns; i++, j++) {
692 if (j >= CDF_LOOP_LIMIT) {
693 DPRINTF(("Read dir loop limit"));
694 goto out;
695 }
696 if (cdf_read_sector(info, buf, 0, ss, h, sid) != (ssize_t)ss) {
697 DPRINTF(("Reading directory sector %d", sid));
698 goto out;
699 }
700 for (j = 0; j < nd; j++) {
701 cdf_unpack_dir(&dir->dir_tab[i * nd + j],
702 &buf[j * CDF_DIRECTORY_SIZE]);
703 }
704 sid = CDF_TOLE4((uint32_t)sat->sat_tab[sid]);
705 }
706 if (NEED_SWAP)
707 for (i = 0; i < dir->dir_len; i++)
708 cdf_swap_dir(&dir->dir_tab[i]);
709 free(buf);
710 return 0;
711 out:
712 free(dir->dir_tab);
713 free(buf);
714 errno = EFTYPE;
715 return -1;
716 }
717
718
719 int
cdf_read_ssat(const cdf_info_t * info,const cdf_header_t * h,const cdf_sat_t * sat,cdf_sat_t * ssat)720 cdf_read_ssat(const cdf_info_t *info, const cdf_header_t *h,
721 const cdf_sat_t *sat, cdf_sat_t *ssat)
722 {
723 size_t i, j;
724 size_t ss = CDF_SEC_SIZE(h);
725 cdf_secid_t sid = h->h_secid_first_sector_in_short_sat;
726
727 ssat->sat_tab = NULL;
728 ssat->sat_len = cdf_count_chain(sat, sid, ss);
729 if (ssat->sat_len == (size_t)-1)
730 goto out;
731
732 ssat->sat_tab = CAST(cdf_secid_t *, CDF_CALLOC(ssat->sat_len, ss));
733 if (ssat->sat_tab == NULL)
734 goto out1;
735
736 for (j = i = 0; sid >= 0; i++, j++) {
737 if (j >= CDF_LOOP_LIMIT) {
738 DPRINTF(("Read short sat sector loop limit"));
739 goto out;
740 }
741 if (i >= ssat->sat_len) {
742 DPRINTF(("Out of bounds reading short sector chain "
743 "%" SIZE_T_FORMAT "u > %" SIZE_T_FORMAT "u\n", i,
744 ssat->sat_len));
745 goto out;
746 }
747 if (cdf_read_sector(info, ssat->sat_tab, i * ss, ss, h, sid) !=
748 (ssize_t)ss) {
749 DPRINTF(("Reading short sat sector %d", sid));
750 goto out1;
751 }
752 sid = CDF_TOLE4((uint32_t)sat->sat_tab[sid]);
753 }
754 return 0;
755 out:
756 errno = EFTYPE;
757 out1:
758 free(ssat->sat_tab);
759 return -1;
760 }
761
762 int
cdf_read_short_stream(const cdf_info_t * info,const cdf_header_t * h,const cdf_sat_t * sat,const cdf_dir_t * dir,cdf_stream_t * scn,const cdf_directory_t ** root)763 cdf_read_short_stream(const cdf_info_t *info, const cdf_header_t *h,
764 const cdf_sat_t *sat, const cdf_dir_t *dir, cdf_stream_t *scn,
765 const cdf_directory_t **root)
766 {
767 size_t i;
768 const cdf_directory_t *d;
769
770 *root = NULL;
771 for (i = 0; i < dir->dir_len; i++)
772 if (dir->dir_tab[i].d_type == CDF_DIR_TYPE_ROOT_STORAGE)
773 break;
774
775 /* If the it is not there, just fake it; some docs don't have it */
776 if (i == dir->dir_len) {
777 DPRINTF(("Cannot find root storage dir\n"));
778 goto out;
779 }
780 d = &dir->dir_tab[i];
781 *root = d;
782
783 /* If the it is not there, just fake it; some docs don't have it */
784 if (d->d_stream_first_sector < 0) {
785 DPRINTF(("No first secror in dir\n"));
786 goto out;
787 }
788
789 return cdf_read_long_sector_chain(info, h, sat,
790 d->d_stream_first_sector, d->d_size, scn);
791 out:
792 scn->sst_tab = NULL;
793 (void)cdf_zero_stream(scn);
794 return 0;
795 }
796
797 static int
cdf_namecmp(const char * d,const uint16_t * s,size_t l)798 cdf_namecmp(const char *d, const uint16_t *s, size_t l)
799 {
800 for (; l--; d++, s++)
801 if (*d != CDF_TOLE2(*s))
802 return (unsigned char)*d - CDF_TOLE2(*s);
803 return 0;
804 }
805
806 int
cdf_read_doc_summary_info(const cdf_info_t * info,const cdf_header_t * h,const cdf_sat_t * sat,const cdf_sat_t * ssat,const cdf_stream_t * sst,const cdf_dir_t * dir,cdf_stream_t * scn)807 cdf_read_doc_summary_info(const cdf_info_t *info, const cdf_header_t *h,
808 const cdf_sat_t *sat, const cdf_sat_t *ssat, const cdf_stream_t *sst,
809 const cdf_dir_t *dir, cdf_stream_t *scn)
810 {
811 return cdf_read_user_stream(info, h, sat, ssat, sst, dir,
812 "\05DocumentSummaryInformation", scn);
813 }
814
815 int
cdf_read_summary_info(const cdf_info_t * info,const cdf_header_t * h,const cdf_sat_t * sat,const cdf_sat_t * ssat,const cdf_stream_t * sst,const cdf_dir_t * dir,cdf_stream_t * scn)816 cdf_read_summary_info(const cdf_info_t *info, const cdf_header_t *h,
817 const cdf_sat_t *sat, const cdf_sat_t *ssat, const cdf_stream_t *sst,
818 const cdf_dir_t *dir, cdf_stream_t *scn)
819 {
820 return cdf_read_user_stream(info, h, sat, ssat, sst, dir,
821 "\05SummaryInformation", scn);
822 }
823
824 int
cdf_read_user_stream(const cdf_info_t * info,const cdf_header_t * h,const cdf_sat_t * sat,const cdf_sat_t * ssat,const cdf_stream_t * sst,const cdf_dir_t * dir,const char * name,cdf_stream_t * scn)825 cdf_read_user_stream(const cdf_info_t *info, const cdf_header_t *h,
826 const cdf_sat_t *sat, const cdf_sat_t *ssat, const cdf_stream_t *sst,
827 const cdf_dir_t *dir, const char *name, cdf_stream_t *scn)
828 {
829 const cdf_directory_t *d;
830 int i = cdf_find_stream(dir, name, CDF_DIR_TYPE_USER_STREAM);
831
832 if (i <= 0) {
833 memset(scn, 0, sizeof(*scn));
834 return -1;
835 }
836
837 d = &dir->dir_tab[i - 1];
838 return cdf_read_sector_chain(info, h, sat, ssat, sst,
839 d->d_stream_first_sector, d->d_size, scn);
840 }
841
842 int
cdf_find_stream(const cdf_dir_t * dir,const char * name,int type)843 cdf_find_stream(const cdf_dir_t *dir, const char *name, int type)
844 {
845 size_t i, name_len = strlen(name) + 1;
846
847 for (i = dir->dir_len; i > 0; i--)
848 if (dir->dir_tab[i - 1].d_type == type &&
849 cdf_namecmp(name, dir->dir_tab[i - 1].d_name, name_len)
850 == 0)
851 break;
852 if (i > 0)
853 return CAST(int, i);
854
855 DPRINTF(("Cannot find type %d `%s'\n", type, name));
856 errno = ESRCH;
857 return 0;
858 }
859
860 #define CDF_SHLEN_LIMIT (UINT32_MAX / 8)
861 #define CDF_PROP_LIMIT (UINT32_MAX / (8 * sizeof(cdf_property_info_t)))
862
863 static const void *
cdf_offset(const void * p,size_t l)864 cdf_offset(const void *p, size_t l)
865 {
866 return CAST(const void *, CAST(const uint8_t *, p) + l);
867 }
868
869 static const uint8_t *
cdf_get_property_info_pos(const cdf_stream_t * sst,const cdf_header_t * h,const uint8_t * p,const uint8_t * e,size_t i)870 cdf_get_property_info_pos(const cdf_stream_t *sst, const cdf_header_t *h,
871 const uint8_t *p, const uint8_t *e, size_t i)
872 {
873 size_t tail = (i << 1) + 1;
874 size_t ofs;
875 const uint8_t *q;
876
877 if (p >= e) {
878 DPRINTF(("Past end %p < %p\n", e, p));
879 return NULL;
880 }
881 if (cdf_check_stream_offset(sst, h, p, (tail + 1) * sizeof(uint32_t),
882 __LINE__) == -1)
883 return NULL;
884 ofs = CDF_GETUINT32(p, tail);
885 q = CAST(const uint8_t *, cdf_offset(CAST(const void *, p),
886 ofs - 2 * sizeof(uint32_t)));
887
888 if (q < p) {
889 DPRINTF(("Wrapped around %p < %p\n", q, p));
890 return NULL;
891 }
892
893 if (q >= e) {
894 DPRINTF(("Ran off the end %p >= %p\n", q, e));
895 return NULL;
896 }
897 return q;
898 }
899
900 static cdf_property_info_t *
cdf_grow_info(cdf_property_info_t ** info,size_t * maxcount,size_t incr)901 cdf_grow_info(cdf_property_info_t **info, size_t *maxcount, size_t incr)
902 {
903 cdf_property_info_t *inp;
904 size_t newcount = *maxcount + incr;
905
906 if (newcount > CDF_PROP_LIMIT) {
907 DPRINTF(("exceeded property limit %zu > %zu\n",
908 newcount, CDF_PROP_LIMIT));
909 goto out;
910 }
911 inp = CAST(cdf_property_info_t *,
912 CDF_REALLOC(*info, newcount * sizeof(*inp)));
913 if (inp == NULL)
914 goto out;
915
916 *info = inp;
917 *maxcount = newcount;
918 return inp;
919 out:
920 free(*info);
921 *maxcount = 0;
922 *info = NULL;
923 return NULL;
924 }
925
926 static int
cdf_copy_info(cdf_property_info_t * inp,const void * p,const void * e,size_t len)927 cdf_copy_info(cdf_property_info_t *inp, const void *p, const void *e,
928 size_t len)
929 {
930 if (inp->pi_type & CDF_VECTOR)
931 return 0;
932
933 if ((size_t)(CAST(const char *, e) - CAST(const char *, p)) < len)
934 return 0;
935
936 (void)memcpy(&inp->pi_val, p, len);
937
938 switch (len) {
939 case 2:
940 inp->pi_u16 = CDF_TOLE2(inp->pi_u16);
941 break;
942 case 4:
943 inp->pi_u32 = CDF_TOLE4(inp->pi_u32);
944 break;
945 case 8:
946 inp->pi_u64 = CDF_TOLE8(inp->pi_u64);
947 break;
948 default:
949 abort();
950 }
951 return 1;
952 }
953
954 int
cdf_read_property_info(const cdf_stream_t * sst,const cdf_header_t * h,uint32_t offs,cdf_property_info_t ** info,size_t * count,size_t * maxcount)955 cdf_read_property_info(const cdf_stream_t *sst, const cdf_header_t *h,
956 uint32_t offs, cdf_property_info_t **info, size_t *count, size_t *maxcount)
957 {
958 const cdf_section_header_t *shp;
959 cdf_section_header_t sh;
960 const uint8_t *p, *q, *e;
961 size_t i, o4, nelements, j, slen, left;
962 cdf_property_info_t *inp;
963
964 if (offs > UINT32_MAX / 4) {
965 errno = EFTYPE;
966 goto out;
967 }
968 shp = CAST(const cdf_section_header_t *,
969 cdf_offset(sst->sst_tab, offs));
970 if (cdf_check_stream_offset(sst, h, shp, sizeof(*shp), __LINE__) == -1)
971 goto out;
972 sh.sh_len = CDF_TOLE4(shp->sh_len);
973 if (sh.sh_len > CDF_SHLEN_LIMIT) {
974 errno = EFTYPE;
975 goto out;
976 }
977
978 if (cdf_check_stream_offset(sst, h, shp, sh.sh_len, __LINE__) == -1)
979 goto out;
980
981 sh.sh_properties = CDF_TOLE4(shp->sh_properties);
982 DPRINTF(("section len: %u properties %u\n", sh.sh_len,
983 sh.sh_properties));
984 if (sh.sh_properties > CDF_PROP_LIMIT)
985 goto out;
986 inp = cdf_grow_info(info, maxcount, sh.sh_properties);
987 if (inp == NULL)
988 goto out;
989 inp += *count;
990 *count += sh.sh_properties;
991 p = CAST(const uint8_t *, cdf_offset(sst->sst_tab, offs + sizeof(sh)));
992 e = CAST(const uint8_t *, cdf_offset(shp, sh.sh_len));
993 if (p >= e || cdf_check_stream_offset(sst, h, e, 0, __LINE__) == -1)
994 goto out;
995
996 for (i = 0; i < sh.sh_properties; i++) {
997 if ((q = cdf_get_property_info_pos(sst, h, p, e, i)) == NULL)
998 goto out;
999 inp[i].pi_id = CDF_GETUINT32(p, i << 1);
1000 left = CAST(size_t, e - q);
1001 if (left < sizeof(uint32_t)) {
1002 DPRINTF(("short info (no type)_\n"));
1003 goto out;
1004 }
1005 inp[i].pi_type = CDF_GETUINT32(q, 0);
1006 DPRINTF(("%" SIZE_T_FORMAT "u) id=%#x type=%#x offs=%#tx,%#x\n",
1007 i, inp[i].pi_id, inp[i].pi_type, q - p, offs));
1008 if (inp[i].pi_type & CDF_VECTOR) {
1009 if (left < sizeof(uint32_t) * 2) {
1010 DPRINTF(("missing CDF_VECTOR length\n"));
1011 goto out;
1012 }
1013 nelements = CDF_GETUINT32(q, 1);
1014 if (nelements > CDF_ELEMENT_LIMIT || nelements == 0) {
1015 DPRINTF(("CDF_VECTOR with nelements == %"
1016 SIZE_T_FORMAT "u\n", nelements));
1017 goto out;
1018 }
1019 slen = 2;
1020 } else {
1021 nelements = 1;
1022 slen = 1;
1023 }
1024 o4 = slen * sizeof(uint32_t);
1025 if (inp[i].pi_type & (CDF_ARRAY|CDF_BYREF|CDF_RESERVED))
1026 goto unknown;
1027 switch (inp[i].pi_type & CDF_TYPEMASK) {
1028 case CDF_NULL:
1029 case CDF_EMPTY:
1030 break;
1031 case CDF_SIGNED16:
1032 if (!cdf_copy_info(&inp[i], &q[o4], e, sizeof(int16_t)))
1033 goto unknown;
1034 break;
1035 case CDF_SIGNED32:
1036 case CDF_BOOL:
1037 case CDF_UNSIGNED32:
1038 case CDF_FLOAT:
1039 if (!cdf_copy_info(&inp[i], &q[o4], e, sizeof(int32_t)))
1040 goto unknown;
1041 break;
1042 case CDF_SIGNED64:
1043 case CDF_UNSIGNED64:
1044 case CDF_DOUBLE:
1045 case CDF_FILETIME:
1046 if (!cdf_copy_info(&inp[i], &q[o4], e, sizeof(int64_t)))
1047 goto unknown;
1048 break;
1049 case CDF_LENGTH32_STRING:
1050 case CDF_LENGTH32_WSTRING:
1051 if (nelements > 1) {
1052 size_t nelem = inp - *info;
1053 inp = cdf_grow_info(info, maxcount, nelements);
1054 if (inp == NULL)
1055 goto out;
1056 inp += nelem;
1057 }
1058 for (j = 0; j < nelements && i < sh.sh_properties;
1059 j++, i++)
1060 {
1061 uint32_t l;
1062
1063 if (o4 + sizeof(uint32_t) > left)
1064 goto out;
1065
1066 l = CDF_GETUINT32(q, slen);
1067 o4 += sizeof(uint32_t);
1068 if (o4 + l > left)
1069 goto out;
1070
1071 inp[i].pi_str.s_len = l;
1072 inp[i].pi_str.s_buf = CAST(const char *,
1073 CAST(const void *, &q[o4]));
1074
1075 DPRINTF(("o=%zu l=%d(%" SIZE_T_FORMAT
1076 "u), t=%zu s=%s\n", o4, l,
1077 CDF_ROUND(l, sizeof(l)), left,
1078 inp[i].pi_str.s_buf));
1079
1080 if (l & 1)
1081 l++;
1082
1083 slen += l >> 1;
1084 o4 = slen * sizeof(uint32_t);
1085 }
1086 i--;
1087 break;
1088 case CDF_CLIPBOARD:
1089 if (inp[i].pi_type & CDF_VECTOR)
1090 goto unknown;
1091 break;
1092 default:
1093 unknown:
1094 memset(&inp[i].pi_val, 0, sizeof(inp[i].pi_val));
1095 DPRINTF(("Don't know how to deal with %#x\n",
1096 inp[i].pi_type));
1097 break;
1098 }
1099 }
1100 return 0;
1101 out:
1102 free(*info);
1103 *info = NULL;
1104 *count = 0;
1105 *maxcount = 0;
1106 errno = EFTYPE;
1107 return -1;
1108 }
1109
1110 int
cdf_unpack_summary_info(const cdf_stream_t * sst,const cdf_header_t * h,cdf_summary_info_header_t * ssi,cdf_property_info_t ** info,size_t * count)1111 cdf_unpack_summary_info(const cdf_stream_t *sst, const cdf_header_t *h,
1112 cdf_summary_info_header_t *ssi, cdf_property_info_t **info, size_t *count)
1113 {
1114 size_t maxcount;
1115 const cdf_summary_info_header_t *si =
1116 CAST(const cdf_summary_info_header_t *, sst->sst_tab);
1117 const cdf_section_declaration_t *sd =
1118 CAST(const cdf_section_declaration_t *, (const void *)
1119 ((const char *)sst->sst_tab + CDF_SECTION_DECLARATION_OFFSET));
1120
1121 if (cdf_check_stream_offset(sst, h, si, sizeof(*si), __LINE__) == -1 ||
1122 cdf_check_stream_offset(sst, h, sd, sizeof(*sd), __LINE__) == -1)
1123 return -1;
1124 ssi->si_byte_order = CDF_TOLE2(si->si_byte_order);
1125 ssi->si_os_version = CDF_TOLE2(si->si_os_version);
1126 ssi->si_os = CDF_TOLE2(si->si_os);
1127 ssi->si_class = si->si_class;
1128 cdf_swap_class(&ssi->si_class);
1129 ssi->si_count = CDF_TOLE4(si->si_count);
1130 *count = 0;
1131 maxcount = 0;
1132 *info = NULL;
1133 if (cdf_read_property_info(sst, h, CDF_TOLE4(sd->sd_offset), info,
1134 count, &maxcount) == -1)
1135 return -1;
1136 return 0;
1137 }
1138
1139
1140 #define extract_catalog_field(t, f, l) \
1141 if (b + l + sizeof(cep->f) > eb) { \
1142 cep->ce_namlen = 0; \
1143 break; \
1144 } \
1145 memcpy(&cep->f, b + (l), sizeof(cep->f)); \
1146 ce[i].f = CAST(t, CDF_TOLE(cep->f))
1147
1148 int
cdf_unpack_catalog(const cdf_header_t * h,const cdf_stream_t * sst,cdf_catalog_t ** cat)1149 cdf_unpack_catalog(const cdf_header_t *h, const cdf_stream_t *sst,
1150 cdf_catalog_t **cat)
1151 {
1152 size_t ss = cdf_check_stream(sst, h);
1153 const char *b = CAST(const char *, sst->sst_tab);
1154 const char *nb, *eb = b + ss * sst->sst_len;
1155 size_t nr, i, j, k;
1156 cdf_catalog_entry_t *ce;
1157 uint16_t reclen;
1158 const uint16_t *np;
1159
1160 for (nr = 0;; nr++) {
1161 memcpy(&reclen, b, sizeof(reclen));
1162 reclen = CDF_TOLE2(reclen);
1163 if (reclen == 0)
1164 break;
1165 b += reclen;
1166 if (b > eb)
1167 break;
1168 }
1169 if (nr == 0)
1170 return -1;
1171 nr--;
1172 *cat = CAST(cdf_catalog_t *,
1173 CDF_MALLOC(sizeof(cdf_catalog_t) + nr * sizeof(*ce)));
1174 if (*cat == NULL)
1175 return -1;
1176 ce = (*cat)->cat_e;
1177 memset(ce, 0, nr * sizeof(*ce));
1178 b = CAST(const char *, sst->sst_tab);
1179 for (j = i = 0; i < nr; b += reclen) {
1180 cdf_catalog_entry_t *cep = &ce[j];
1181 uint16_t rlen;
1182
1183 extract_catalog_field(uint16_t, ce_namlen, 0);
1184 extract_catalog_field(uint16_t, ce_num, 4);
1185 extract_catalog_field(uint64_t, ce_timestamp, 8);
1186 reclen = cep->ce_namlen;
1187
1188 if (reclen < 14) {
1189 cep->ce_namlen = 0;
1190 continue;
1191 }
1192
1193 cep->ce_namlen = __arraycount(cep->ce_name) - 1;
1194 rlen = reclen - 14;
1195 if (cep->ce_namlen > rlen)
1196 cep->ce_namlen = rlen;
1197
1198 np = CAST(const uint16_t *, CAST(const void *, (b + 16)));
1199 nb = CAST(const char *, CAST(const void *,
1200 (np + cep->ce_namlen)));
1201 if (nb > eb) {
1202 cep->ce_namlen = 0;
1203 break;
1204 }
1205
1206 for (k = 0; k < cep->ce_namlen; k++)
1207 cep->ce_name[k] = np[k]; /* XXX: CDF_TOLE2? */
1208 cep->ce_name[cep->ce_namlen] = 0;
1209 j = i;
1210 i++;
1211 }
1212 (*cat)->cat_num = j;
1213 return 0;
1214 }
1215
1216 int
cdf_print_classid(char * buf,size_t buflen,const cdf_classid_t * id)1217 cdf_print_classid(char *buf, size_t buflen, const cdf_classid_t *id)
1218 {
1219 return snprintf(buf, buflen, "%.8x-%.4x-%.4x-%.2x%.2x-"
1220 "%.2x%.2x%.2x%.2x%.2x%.2x", id->cl_dword, id->cl_word[0],
1221 id->cl_word[1], id->cl_two[0], id->cl_two[1], id->cl_six[0],
1222 id->cl_six[1], id->cl_six[2], id->cl_six[3], id->cl_six[4],
1223 id->cl_six[5]);
1224 }
1225
1226 static const struct {
1227 uint32_t v;
1228 const char *n;
1229 } vn[] = {
1230 { CDF_PROPERTY_CODE_PAGE, "Code page" },
1231 { CDF_PROPERTY_TITLE, "Title" },
1232 { CDF_PROPERTY_SUBJECT, "Subject" },
1233 { CDF_PROPERTY_AUTHOR, "Author" },
1234 { CDF_PROPERTY_KEYWORDS, "Keywords" },
1235 { CDF_PROPERTY_COMMENTS, "Comments" },
1236 { CDF_PROPERTY_TEMPLATE, "Template" },
1237 { CDF_PROPERTY_LAST_SAVED_BY, "Last Saved By" },
1238 { CDF_PROPERTY_REVISION_NUMBER, "Revision Number" },
1239 { CDF_PROPERTY_TOTAL_EDITING_TIME, "Total Editing Time" },
1240 { CDF_PROPERTY_LAST_PRINTED, "Last Printed" },
1241 { CDF_PROPERTY_CREATE_TIME, "Create Time/Date" },
1242 { CDF_PROPERTY_LAST_SAVED_TIME, "Last Saved Time/Date" },
1243 { CDF_PROPERTY_NUMBER_OF_PAGES, "Number of Pages" },
1244 { CDF_PROPERTY_NUMBER_OF_WORDS, "Number of Words" },
1245 { CDF_PROPERTY_NUMBER_OF_CHARACTERS, "Number of Characters" },
1246 { CDF_PROPERTY_THUMBNAIL, "Thumbnail" },
1247 { CDF_PROPERTY_NAME_OF_APPLICATION, "Name of Creating Application" },
1248 { CDF_PROPERTY_SECURITY, "Security" },
1249 { CDF_PROPERTY_LOCALE_ID, "Locale ID" },
1250 };
1251
1252 int
cdf_print_property_name(char * buf,size_t bufsiz,uint32_t p)1253 cdf_print_property_name(char *buf, size_t bufsiz, uint32_t p)
1254 {
1255 size_t i;
1256
1257 for (i = 0; i < __arraycount(vn); i++)
1258 if (vn[i].v == p)
1259 return snprintf(buf, bufsiz, "%s", vn[i].n);
1260 return snprintf(buf, bufsiz, "%#x", p);
1261 }
1262
1263 int
cdf_print_elapsed_time(char * buf,size_t bufsiz,cdf_timestamp_t ts)1264 cdf_print_elapsed_time(char *buf, size_t bufsiz, cdf_timestamp_t ts)
1265 {
1266 int len = 0;
1267 int days, hours, mins, secs;
1268
1269 ts /= CDF_TIME_PREC;
1270 secs = (int)(ts % 60);
1271 ts /= 60;
1272 mins = (int)(ts % 60);
1273 ts /= 60;
1274 hours = (int)(ts % 24);
1275 ts /= 24;
1276 days = (int)ts;
1277
1278 if (days) {
1279 len += snprintf(buf + len, bufsiz - len, "%dd+", days);
1280 if ((size_t)len >= bufsiz)
1281 return len;
1282 }
1283
1284 if (days || hours) {
1285 len += snprintf(buf + len, bufsiz - len, "%.2d:", hours);
1286 if ((size_t)len >= bufsiz)
1287 return len;
1288 }
1289
1290 len += snprintf(buf + len, bufsiz - len, "%.2d:", mins);
1291 if ((size_t)len >= bufsiz)
1292 return len;
1293
1294 len += snprintf(buf + len, bufsiz - len, "%.2d", secs);
1295 return len;
1296 }
1297
1298 char *
cdf_u16tos8(char * buf,size_t len,const uint16_t * p)1299 cdf_u16tos8(char *buf, size_t len, const uint16_t *p)
1300 {
1301 size_t i;
1302 for (i = 0; i < len && p[i]; i++)
1303 buf[i] = (char)p[i];
1304 buf[i] = '\0';
1305 return buf;
1306 }
1307
1308 #ifdef CDF_DEBUG
1309 void
cdf_dump_header(const cdf_header_t * h)1310 cdf_dump_header(const cdf_header_t *h)
1311 {
1312 size_t i;
1313
1314 #define DUMP(a, b) (void)fprintf(stderr, "%40.40s = " a "\n", # b, h->h_ ## b)
1315 #define DUMP2(a, b) (void)fprintf(stderr, "%40.40s = " a " (" a ")\n", # b, \
1316 h->h_ ## b, 1 << h->h_ ## b)
1317 DUMP("%d", revision);
1318 DUMP("%d", version);
1319 DUMP("%#x", byte_order);
1320 DUMP2("%d", sec_size_p2);
1321 DUMP2("%d", short_sec_size_p2);
1322 DUMP("%d", num_sectors_in_sat);
1323 DUMP("%d", secid_first_directory);
1324 DUMP("%d", min_size_standard_stream);
1325 DUMP("%d", secid_first_sector_in_short_sat);
1326 DUMP("%d", num_sectors_in_short_sat);
1327 DUMP("%d", secid_first_sector_in_master_sat);
1328 DUMP("%d", num_sectors_in_master_sat);
1329 for (i = 0; i < __arraycount(h->h_master_sat); i++) {
1330 if (h->h_master_sat[i] == CDF_SECID_FREE)
1331 break;
1332 (void)fprintf(stderr, "%35.35s[%.3" SIZE_T_FORMAT "u] = %d\n",
1333 "master_sat", i, h->h_master_sat[i]);
1334 }
1335 }
1336
1337 void
cdf_dump_sat(const char * prefix,const cdf_sat_t * sat,size_t size)1338 cdf_dump_sat(const char *prefix, const cdf_sat_t *sat, size_t size)
1339 {
1340 size_t i, j, s = size / sizeof(cdf_secid_t);
1341
1342 for (i = 0; i < sat->sat_len; i++) {
1343 (void)fprintf(stderr, "%s[%" SIZE_T_FORMAT "u]:\n%.6"
1344 SIZE_T_FORMAT "u: ", prefix, i, i * s);
1345 for (j = 0; j < s; j++) {
1346 (void)fprintf(stderr, "%5d, ",
1347 CDF_TOLE4(sat->sat_tab[s * i + j]));
1348 if ((j + 1) % 10 == 0)
1349 (void)fprintf(stderr, "\n%.6" SIZE_T_FORMAT
1350 "u: ", i * s + j + 1);
1351 }
1352 (void)fprintf(stderr, "\n");
1353 }
1354 }
1355
1356 void
cdf_dump(const void * v,size_t len)1357 cdf_dump(const void *v, size_t len)
1358 {
1359 size_t i, j;
1360 const unsigned char *p = v;
1361 char abuf[16];
1362
1363 (void)fprintf(stderr, "%.4x: ", 0);
1364 for (i = 0, j = 0; i < len; i++, p++) {
1365 (void)fprintf(stderr, "%.2x ", *p);
1366 abuf[j++] = isprint(*p) ? *p : '.';
1367 if (j == 16) {
1368 j = 0;
1369 abuf[15] = '\0';
1370 (void)fprintf(stderr, "%s\n%.4" SIZE_T_FORMAT "x: ",
1371 abuf, i + 1);
1372 }
1373 }
1374 (void)fprintf(stderr, "\n");
1375 }
1376
1377 void
cdf_dump_stream(const cdf_stream_t * sst)1378 cdf_dump_stream(const cdf_stream_t *sst)
1379 {
1380 size_t ss = sst->sst_ss;
1381 cdf_dump(sst->sst_tab, ss * sst->sst_len);
1382 }
1383
1384 void
cdf_dump_dir(const cdf_info_t * info,const cdf_header_t * h,const cdf_sat_t * sat,const cdf_sat_t * ssat,const cdf_stream_t * sst,const cdf_dir_t * dir)1385 cdf_dump_dir(const cdf_info_t *info, const cdf_header_t *h,
1386 const cdf_sat_t *sat, const cdf_sat_t *ssat, const cdf_stream_t *sst,
1387 const cdf_dir_t *dir)
1388 {
1389 size_t i, j;
1390 cdf_directory_t *d;
1391 char name[__arraycount(d->d_name)];
1392 cdf_stream_t scn;
1393 struct timeval ts;
1394
1395 static const char *types[] = { "empty", "user storage",
1396 "user stream", "lockbytes", "property", "root storage" };
1397
1398 for (i = 0; i < dir->dir_len; i++) {
1399 char buf[26];
1400 d = &dir->dir_tab[i];
1401 for (j = 0; j < sizeof(name); j++)
1402 name[j] = (char)CDF_TOLE2(d->d_name[j]);
1403 (void)fprintf(stderr, "Directory %" SIZE_T_FORMAT "u: %s\n",
1404 i, name);
1405 if (d->d_type < __arraycount(types))
1406 (void)fprintf(stderr, "Type: %s\n", types[d->d_type]);
1407 else
1408 (void)fprintf(stderr, "Type: %d\n", d->d_type);
1409 (void)fprintf(stderr, "Color: %s\n",
1410 d->d_color ? "black" : "red");
1411 (void)fprintf(stderr, "Left child: %d\n", d->d_left_child);
1412 (void)fprintf(stderr, "Right child: %d\n", d->d_right_child);
1413 (void)fprintf(stderr, "Flags: %#x\n", d->d_flags);
1414 cdf_timestamp_to_timespec(&ts, d->d_created);
1415 (void)fprintf(stderr, "Created %s", cdf_ctime(&ts.tv_sec, buf));
1416 cdf_timestamp_to_timespec(&ts, d->d_modified);
1417 (void)fprintf(stderr, "Modified %s",
1418 cdf_ctime(&ts.tv_sec, buf));
1419 (void)fprintf(stderr, "Stream %d\n", d->d_stream_first_sector);
1420 (void)fprintf(stderr, "Size %d\n", d->d_size);
1421 switch (d->d_type) {
1422 case CDF_DIR_TYPE_USER_STORAGE:
1423 (void)fprintf(stderr, "Storage: %d\n", d->d_storage);
1424 break;
1425 case CDF_DIR_TYPE_USER_STREAM:
1426 if (sst == NULL)
1427 break;
1428 if (cdf_read_sector_chain(info, h, sat, ssat, sst,
1429 d->d_stream_first_sector, d->d_size, &scn) == -1) {
1430 warn("Can't read stream for %s at %d len %d",
1431 name, d->d_stream_first_sector, d->d_size);
1432 break;
1433 }
1434 cdf_dump_stream(&scn);
1435 free(scn.sst_tab);
1436 break;
1437 default:
1438 break;
1439 }
1440
1441 }
1442 }
1443
1444 void
cdf_dump_property_info(const cdf_property_info_t * info,size_t count)1445 cdf_dump_property_info(const cdf_property_info_t *info, size_t count)
1446 {
1447 cdf_timestamp_t tp;
1448 struct timeval ts;
1449 char buf[64];
1450 size_t i, j;
1451
1452 for (i = 0; i < count; i++) {
1453 cdf_print_property_name(buf, sizeof(buf), info[i].pi_id);
1454 (void)fprintf(stderr, "%" SIZE_T_FORMAT "u) %s: ", i, buf);
1455 switch (info[i].pi_type) {
1456 case CDF_NULL:
1457 break;
1458 case CDF_SIGNED16:
1459 (void)fprintf(stderr, "signed 16 [%hd]\n",
1460 info[i].pi_s16);
1461 break;
1462 case CDF_SIGNED32:
1463 (void)fprintf(stderr, "signed 32 [%d]\n",
1464 info[i].pi_s32);
1465 break;
1466 case CDF_UNSIGNED32:
1467 (void)fprintf(stderr, "unsigned 32 [%u]\n",
1468 info[i].pi_u32);
1469 break;
1470 case CDF_FLOAT:
1471 (void)fprintf(stderr, "float [%g]\n",
1472 info[i].pi_f);
1473 break;
1474 case CDF_DOUBLE:
1475 (void)fprintf(stderr, "double [%g]\n",
1476 info[i].pi_d);
1477 break;
1478 case CDF_LENGTH32_STRING:
1479 (void)fprintf(stderr, "string %u [%.*s]\n",
1480 info[i].pi_str.s_len,
1481 info[i].pi_str.s_len, info[i].pi_str.s_buf);
1482 break;
1483 case CDF_LENGTH32_WSTRING:
1484 (void)fprintf(stderr, "string %u [",
1485 info[i].pi_str.s_len);
1486 for (j = 0; j < info[i].pi_str.s_len - 1; j++)
1487 (void)fputc(info[i].pi_str.s_buf[j << 1], stderr);
1488 (void)fprintf(stderr, "]\n");
1489 break;
1490 case CDF_FILETIME:
1491 tp = info[i].pi_tp;
1492 if (tp < 1000000000000000LL) {
1493 cdf_print_elapsed_time(buf, sizeof(buf), tp);
1494 (void)fprintf(stderr, "timestamp %s\n", buf);
1495 } else {
1496 char tbuf[26];
1497 cdf_timestamp_to_timespec(&ts, tp);
1498 (void)fprintf(stderr, "timestamp %s",
1499 cdf_ctime(&ts.tv_sec, tbuf));
1500 }
1501 break;
1502 case CDF_CLIPBOARD:
1503 (void)fprintf(stderr, "CLIPBOARD %u\n", info[i].pi_u32);
1504 break;
1505 default:
1506 DPRINTF(("Don't know how to deal with %#x\n",
1507 info[i].pi_type));
1508 break;
1509 }
1510 }
1511 }
1512
1513
1514 void
cdf_dump_summary_info(const cdf_header_t * h,const cdf_stream_t * sst)1515 cdf_dump_summary_info(const cdf_header_t *h, const cdf_stream_t *sst)
1516 {
1517 char buf[128];
1518 cdf_summary_info_header_t ssi;
1519 cdf_property_info_t *info;
1520 size_t count;
1521
1522 (void)&h;
1523 if (cdf_unpack_summary_info(sst, h, &ssi, &info, &count) == -1)
1524 return;
1525 (void)fprintf(stderr, "Endian: %#x\n", ssi.si_byte_order);
1526 (void)fprintf(stderr, "Os Version %d.%d\n", ssi.si_os_version & 0xff,
1527 ssi.si_os_version >> 8);
1528 (void)fprintf(stderr, "Os %d\n", ssi.si_os);
1529 cdf_print_classid(buf, sizeof(buf), &ssi.si_class);
1530 (void)fprintf(stderr, "Class %s\n", buf);
1531 (void)fprintf(stderr, "Count %d\n", ssi.si_count);
1532 cdf_dump_property_info(info, count);
1533 free(info);
1534 }
1535
1536
1537 void
cdf_dump_catalog(const cdf_header_t * h,const cdf_stream_t * sst)1538 cdf_dump_catalog(const cdf_header_t *h, const cdf_stream_t *sst)
1539 {
1540 cdf_catalog_t *cat;
1541 cdf_unpack_catalog(h, sst, &cat);
1542 const cdf_catalog_entry_t *ce = cat->cat_e;
1543 struct timespec ts;
1544 char tbuf[64], sbuf[256];
1545 size_t i;
1546
1547 printf("Catalog:\n");
1548 for (i = 0; i < cat->cat_num; i++) {
1549 cdf_timestamp_to_timespec(&ts, ce[i].ce_timestamp);
1550 printf("\t%d %s %s", ce[i].ce_num,
1551 cdf_u16tos8(sbuf, ce[i].ce_namlen, ce[i].ce_name),
1552 cdf_ctime(&ts.tv_sec, tbuf));
1553 }
1554 free(cat);
1555 }
1556
1557 #endif
1558
1559 #ifdef TEST
1560 int
main(int argc,char * argv[])1561 main(int argc, char *argv[])
1562 {
1563 int i;
1564 cdf_header_t h;
1565 cdf_sat_t sat, ssat;
1566 cdf_stream_t sst, scn;
1567 cdf_dir_t dir;
1568 cdf_info_t info;
1569 const cdf_directory_t *root;
1570
1571 if (argc < 2) {
1572 (void)fprintf(stderr, "Usage: %s <filename>\n", getprogname());
1573 return -1;
1574 }
1575
1576 info.i_buf = NULL;
1577 info.i_len = 0;
1578 for (i = 1; i < argc; i++) {
1579 if ((info.i_fd = open(argv[1], O_RDONLY)) == -1)
1580 err(1, "Cannot open `%s'", argv[1]);
1581
1582 if (cdf_read_header(&info, &h) == -1)
1583 err(1, "Cannot read header");
1584 #ifdef CDF_DEBUG
1585 cdf_dump_header(&h);
1586 #endif
1587
1588 if (cdf_read_sat(&info, &h, &sat) == -1)
1589 err(1, "Cannot read sat");
1590 #ifdef CDF_DEBUG
1591 cdf_dump_sat("SAT", &sat, CDF_SEC_SIZE(&h));
1592 #endif
1593
1594 if (cdf_read_ssat(&info, &h, &sat, &ssat) == -1)
1595 err(1, "Cannot read ssat");
1596 #ifdef CDF_DEBUG
1597 cdf_dump_sat("SSAT", &ssat, CDF_SHORT_SEC_SIZE(&h));
1598 #endif
1599
1600 if (cdf_read_dir(&info, &h, &sat, &dir) == -1)
1601 err(1, "Cannot read dir");
1602
1603 if (cdf_read_short_stream(&info, &h, &sat, &dir, &sst, &root)
1604 == -1)
1605 err(1, "Cannot read short stream");
1606 #ifdef CDF_DEBUG
1607 cdf_dump_stream(&sst);
1608 #endif
1609
1610 #ifdef CDF_DEBUG
1611 cdf_dump_dir(&info, &h, &sat, &ssat, &sst, &dir);
1612 #endif
1613
1614
1615 if (cdf_read_summary_info(&info, &h, &sat, &ssat, &sst, &dir,
1616 &scn) == -1)
1617 warn("Cannot read summary info");
1618 #ifdef CDF_DEBUG
1619 else
1620 cdf_dump_summary_info(&h, &scn);
1621 #endif
1622 if (cdf_read_user_stream(&info, &h, &sat, &ssat, &sst,
1623 &dir, "Catalog", &scn) == -1)
1624 warn("Cannot read catalog");
1625 #ifdef CDF_DEBUG
1626 else
1627 cdf_dump_catalog(&h, &scn);
1628 #endif
1629
1630 (void)close(info.i_fd);
1631 }
1632
1633 return 0;
1634 }
1635 #endif
1636