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/cvs/Convert-UUlib/uulib/uunconc.c
Revision: 1.19
Committed: Tue Oct 13 20:53:49 2009 UTC (14 years, 8 months ago) by root
Content type: text/plain
Branch: MAIN
CVS Tags: rel-1_33
Changes since 1.18: +10 -6 lines
Log Message:
*** empty log message ***

File Contents

# User Rev Content
1 root 1.1 /*
2     * This file is part of uudeview, the simple and friendly multi-part multi-
3 root 1.2 * file uudecoder program (c) 1994-2001 by Frank Pilhofer. The author may
4     * be contacted at fp@fpx.de
5 root 1.1 *
6     * This program is free software; you can redistribute it and/or modify
7     * it under the terms of the GNU General Public License as published by
8     * the Free Software Foundation; either version 2 of the License, or
9     * (at your option) any later version.
10     *
11     * This program is distributed in the hope that it will be useful,
12     * but WITHOUT ANY WARRANTY; without even the implied warranty of
13     * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14     * GNU General Public License for more details.
15     */
16    
17     /*
18     * These are the functions that are responsible for decoding. The
19     * original idea is from a freeware utility called "uunconc", and
20     * few lines of this code may still bear a remote resemblance to
21     * its code. If you are the author or know him, contact me.
22     * This program could only decode one multi-part, uuencoded file
23     * where the parts were in order. Base64, XX and BinHex decoding,
24     * support for multi-files and part-ordering covered by myself.
25     **/
26    
27     #ifdef HAVE_CONFIG_H
28     #include "config.h"
29     #endif
30    
31     #ifdef SYSTEM_WINDLL
32     #include <windows.h>
33     #endif
34     #ifdef SYSTEM_OS2
35     #include <os2.h>
36     #endif
37    
38     #include <stdio.h>
39     #include <ctype.h>
40    
41     #ifdef STDC_HEADERS
42     #include <stdlib.h>
43     #include <string.h>
44     #endif
45     #ifdef HAVE_UNISTD_H
46     #include <unistd.h>
47     #endif
48     #ifdef HAVE_ERRNO_H
49     #include <errno.h>
50     #endif
51    
52 root 1.11 #include <crc32.h>
53 root 1.2 #include <uudeview.h>
54 root 1.1 #include <uuint.h>
55     #include <fptools.h>
56     #include <uustring.h>
57    
58 root 1.12 char * uunconc_id = "$Id$";
59 root 1.1
60     /* for braindead systems */
61     #ifndef SEEK_SET
62     #ifdef L_BEGIN
63     #define SEEK_SET L_BEGIN
64     #else
65     #define SEEK_SET 0
66     #endif
67     #endif
68    
69     /*
70     * decoder states
71     */
72    
73     #define BEGIN (1)
74     #define DATA (2)
75     #define END (3)
76     #define DONE (4)
77    
78     /*
79     * mallocable areas
80     */
81    
82     char *uunconc_UUxlat;
83     char *uunconc_UUxlen;
84     char *uunconc_B64xlat;
85     char *uunconc_XXxlat;
86     char *uunconc_BHxlat;
87     char *uunconc_save;
88    
89     /*
90     * decoding translation tables and line length table
91     */
92    
93     static int * UUxlen; /* initialized in UUInitConc() */
94     static int * UUxlat; /* from the malloc'ed areas above */
95     static int * B64xlat;
96     static int * XXxlat;
97     static int * BHxlat;
98    
99     /*
100     * buffer for decoding
101     */
102    
103     static char *save[3];
104    
105     /*
106     * mallocable areas
107     */
108    
109     char *uuncdl_fulline;
110     char *uuncdp_oline;
111    
112     /*
113     * Return information for QuickDecode
114     */
115    
116     static int uulboundary;
117    
118     /*
119     * To prevent warnings when using a char as index into an array
120     */
121    
122     #define ACAST(s) ((int)(uchar)(s))
123    
124     /*
125     * Initialize decoding tables
126     */
127    
128     void
129     UUInitConc (void)
130     {
131     int i, j;
132    
133     /*
134     * Update pointers
135     */
136     UUxlen = (int *) uunconc_UUxlen;
137     UUxlat = (int *) uunconc_UUxlat;
138     B64xlat = (int *) uunconc_B64xlat;
139     XXxlat = (int *) uunconc_XXxlat;
140     BHxlat = (int *) uunconc_BHxlat;
141    
142     save[0] = uunconc_save;
143 root 1.9 save[1] = uunconc_save + 1200;
144     save[2] = uunconc_save + 2400;
145 root 1.1
146     /* prepare decoding translation table */
147     for(i = 0; i < 256; i++)
148     UUxlat[i] = B64xlat[i] = XXxlat[i] = BHxlat[i] = -1;
149    
150     /*
151     * At some time I received a file which used lowercase characters for
152     * uuencoding. This shouldn't be, but let's accept it. Must take special
153     * care that this doesn't break xxdecoding. This is giving me quite a
154     * headache. If this one file hadn't been a Pocahontas picture, I might
155     * have ignored it for good.
156     */
157    
158     for (i = ' ', j = 0; i < ' ' + 64; i++, j++)
159     UUxlat[i] /* = UUxlat[i+64] */ = j;
160     for (i = '`', j = 0; i < '`' + 32; i++, j++)
161     UUxlat[i] = j;
162    
163     /* add special cases */
164     UUxlat['`'] = UUxlat[' '];
165     UUxlat['~'] = UUxlat['^'];
166    
167     /* prepare line length table */
168     UUxlen[0] = 1;
169 root 1.2 for(i = 1, j = 5; i <= 61; i += 3, j += 4)
170 root 1.1 UUxlen[i] = UUxlen[i+1] = UUxlen[i+2] = j;
171    
172     /* prepare other tables */
173     for (i=0; i<64; i++) {
174     B64xlat[ACAST(B64EncodeTable[i])] = i;
175     XXxlat [ACAST(XXEncodeTable [i])] = i;
176     BHxlat [ACAST(BHEncodeTable [i])] = i;
177     }
178     }
179    
180     /*
181     * Workaround for Netscape
182     */
183    
184     /*
185     * Determines whether Netscape may have broken up a data line (by
186     * inserting a newline). This only seems to happen after <a in a
187     * href statement
188     */
189    
190     int
191     UUBrokenByNetscape (char *string)
192     {
193     char *ptr;
194     int len;
195    
196     if (string==NULL || (len=strlen(string))<3)
197     return 0;
198    
199 root 1.5 if ((ptr = _FP_stristr (string, "<a href=")) != NULL) {
200     if (_FP_stristr (string, "</a>") > ptr)
201 root 1.1 return 2;
202     }
203    
204     ptr = string + len;
205    
206     if (len<3) return 0;
207     if (*--ptr == ' ') ptr--;
208     ptr--;
209    
210 root 1.5 if (_FP_strnicmp (ptr, "<a", 2) == 0)
211 root 1.1 return 1;
212    
213     return 0;
214     }
215    
216     /*
217     * Try to repair a Netscape-corrupted line of data.
218     * This must only be called on corrupted lines, since non-Netscape
219     * data may even _get_ corrupted by this procedure.
220     *
221     * Some checks are included multiply to speed up the procedure. For
222     * example: (*p1!='<' || strnicmp(p1,"</a>",4)). If the first expression
223     * becomes true, the costly function isn't called :-)
224     *
225     * Since '<', '>', '&' might even be replaced by their html equivalents
226     * in href strings, I'm now using two passes, the first one for &amp; + co,
227     * the second one for hrefs.
228     */
229    
230     int
231     UUNetscapeCollapse (char *string)
232     {
233     char *p1=string, *p2=string;
234     int res = 0;
235    
236     if (string==NULL)
237     return 0;
238    
239     /*
240     * First pass
241     */
242     while (*p1) {
243     if (*p1 == '&') {
244 root 1.5 if (_FP_strnicmp (p1, "&amp;", 5) == 0) { p1+=5; *p2++='&'; res=1; }
245     else if (_FP_strnicmp (p1, "&lt;", 4) == 0) { p1+=4; *p2++='<'; res=1; }
246     else if (_FP_strnicmp (p1, "&gt;", 4) == 0) { p1+=4; *p2++='>'; res=1; }
247 root 1.1 else *p2++ = *p1++;
248     res = 1;
249     }
250     else *p2++ = *p1++;
251     }
252     *p2 = '\0';
253     /*
254     * Second pass
255     */
256     p1 = p2 = string;
257    
258     while (*p1) {
259     if (*p1 == '<') {
260 root 1.5 if ((_FP_strnicmp (p1, "<ahref=", 7) == 0 ||
261     _FP_strnicmp (p1, "<a href=",8) == 0) &&
262 root 1.6 (_FP_strstr (p1, "</a>") != 0 || _FP_strstr (p1, "</A>") != 0)) {
263 root 1.1 while (*p1 && *p1!='>') p1++;
264     if (*p1=='\0' || *(p1+1)!='<') return 0;
265     p1++;
266 root 1.5 while (*p1 && (*p1!='<' || _FP_strnicmp(p1,"</a>",4)!=0)) {
267 root 1.1 *p2++ = *p1++;
268     }
269 root 1.5 if (_FP_strnicmp(p1,"</a>",4) != 0)
270 root 1.1 return 0;
271     p1+=4;
272     res=1;
273     }
274     else
275     *p2++ = *p1++;
276     }
277     else
278     *p2++ = *p1++;
279     }
280     *p2 = '\0';
281    
282     return res;
283     }
284    
285     /*
286     * The second parameter is 0 if we are still searching for encoded data,
287     * otherwise it indicates the encoding we're using right now. If we're
288     * still in the searching stage, we must be a little more strict in
289     * deciding for or against encoding; there's too much plain text looking
290     * like encoded data :-(
291     */
292    
293     int
294     UUValidData (char *ptr, int encoding, int *bhflag)
295     {
296     int i=0, j, len=0, suspicious=0, flag=0;
297 root 1.14 signed char *s = ptr;
298 root 1.1
299 root 1.4 if ((s == NULL) || (*s == '\0')) {
300     return 0; /* bad string */
301 root 1.1 }
302 root 1.4
303 root 1.17 while (*s) {
304 root 1.1 s++;
305     len++;
306     i++;
307     }
308    
309     if (i == 0)
310     return 0;
311    
312     switch (encoding) {
313     case UU_ENCODED:
314     goto _t_UU;
315     case XX_ENCODED:
316     goto _t_XX;
317     case B64ENCODED:
318     goto _t_B64;
319     case BH_ENCODED:
320     goto _t_Binhex;
321 root 1.4 case YENC_ENCODED:
322     return YENC_ENCODED;
323 root 1.1 }
324    
325     _t_Binhex: /* Binhex Test */
326     len = i; s = ptr;
327    
328     /*
329     * bhflag notes the state we're in. Within the data, it's 1. If we're
330     * still looking for the initial :, it's 0
331     */
332     if (*bhflag == 0 && *s != ':') {
333     if (encoding==BH_ENCODED) return 0;
334     goto _t_B64;
335     }
336     else if (*bhflag == 0 /* *s == ':' */) {
337     s++; len--;
338     }
339    
340     while (len && BHxlat[ACAST(*s)] != -1) {
341     len--; s++;
342     }
343    
344     /* allow space characters at the end of the line if we are sure */
345     /* that this is Binhex encoded data or the line was long enough */
346    
347     flag = (*s == ':') ? 0 : 1;
348    
349     if (*s == ':' && len>0) {
350     s++; len--;
351     }
352     if (((i>=60 && len<=10) || encoding) && *s==' ') {
353     while (len && *s==' ') {
354     s++; len--;
355     }
356     }
357    
358     /*
359     * BinHex data shall have exactly 64 characters (except the last
360     * line). We ignore everything with less than 40 characters to
361     * be flexible
362     */
363    
364     if (len != 0 || (flag && i < 40)) {
365     if (encoding==BH_ENCODED) return 0;
366     goto _t_B64;
367     }
368    
369     *bhflag = flag;
370    
371     return BH_ENCODED;
372    
373     _t_B64: /* Base64 Test */
374     len = i; s = ptr;
375    
376     /*
377     * Face it: there _are_ Base64 lines that are not a multiple of four
378     * in length :-(
379     *
380     * if (len%4)
381     * goto _t_UU;
382     */
383    
384     while (len--) {
385     if (*s < 0 || (B64xlat[ACAST(*s)] == -1 && *s != '=')) {
386     /* allow space characters at the end of the line if we are sure */
387     /* that this is Base64 encoded data or the line was long enough */
388     if (((i>=60 && len<=10) || encoding) && *s++==' ') {
389     while (*s==' ' && len) s++;
390     if (len==0) return B64ENCODED;
391     }
392     if (encoding==B64ENCODED) return 0;
393     goto _t_UU;
394     }
395     else if (*s == '=') { /* special case at end */
396     /* if we know this is B64encoded, allow spaces at end of line */
397     s++;
398     if (*s=='=' && len>=1) {
399     len--; s++;
400     }
401     if (encoding && len && *s==' ') {
402     while (len && *s==' ') {
403     s++; len--;
404     }
405     }
406     if (len != 0) {
407     if (encoding==B64ENCODED) return 0;
408     goto _t_UU;
409     }
410     return B64ENCODED;
411     }
412     s++;
413     }
414     return B64ENCODED;
415    
416     _t_UU:
417     len = i; s = ptr;
418    
419     if (UUxlat[ACAST(*s)] == -1) { /* uutest */
420     if (encoding==UU_ENCODED) return 0;
421     goto _t_XX;
422     }
423    
424     j = UUxlen[UUxlat[ACAST(*s)]];
425    
426     if (len-1 == j) /* remove trailing character */
427     len--;
428     if (len != j) {
429     switch (UUxlat[ACAST(*s)]%3) {
430     case 1:
431     if (j-2 == len) j-=2;
432     break;
433     case 2:
434     if (j-1 == len) j-=1;
435     break;
436     }
437     }
438    
439     /*
440     * some encoders are broken with respect to encoding the last line of
441     * a file and produce extraoneous characters beyond the expected EOL
442     * So were not too picky here about the last line, as long as it's longer
443     * than necessary and shorter than the maximum
444     * this tolerance broke the xxdecoding, because xxencoded data was
445     * detected as being uuencoded :( so don't accept 'h' as first character
446     * also, if the first character is lowercase, don't accept the line to
447     * have space characters. the only encoder I've heard of which uses
448     * lowercase characters at least accepts the special case of encoding
449     * 0 as `. The strchr() shouldn't be too expensive here as it's only
450     * evaluated if the first character is lowercase, which really shouldn't
451     * be in uuencoded text.
452     */
453 root 1.2 if (len != j &&
454     ((ptr[0] == '-' && ptr[1] == '-' && strstr(ptr,"part")!=NULL) ||
455     !(*ptr != 'M' && *ptr != 'h' &&
456     len > j && len <= UUxlen[UUxlat['M']]))) {
457 root 1.1 if (encoding==UU_ENCODED) return 0;
458     goto _t_XX; /* bad length */
459     }
460    
461     if (len != j || islower (*ptr)) {
462     /*
463     * if we are not in a 'uuencoded' state, don't allow the line to have
464     * space characters at all. if we know we _are_ decoding uuencoded
465     * data, the rest of the line, beyond the length of encoded data, may
466     * have spaces.
467     */
468     if (encoding != UU_ENCODED)
469     if (strchr (ptr, ' ') != NULL)
470     goto _t_XX;
471    
472 root 1.5 /* suspicious = 1; we're careful here REMOVED 0.4.15 __FP__ */
473 root 1.1 len = j;
474     }
475    
476     while (len--) {
477     if (*s < 0 || UUxlat[ACAST(*s++)] < 0) {
478     if (encoding==UU_ENCODED) return 0;
479     goto _t_XX; /* bad code character */
480     }
481     if (*s == ' ' && suspicious) {
482     if (encoding==UU_ENCODED) return 0;
483     goto _t_XX; /* this line looks _too_ suspicious */
484     }
485     }
486     return UU_ENCODED; /* data is valid */
487    
488     _t_XX: /* XX Test */
489     len = i; s = ptr;
490    
491     if (XXxlat[ACAST(*s)] == -1)
492     return 0;
493    
494     j = UUxlen[XXxlat[ACAST(*s)]]; /* Same line length table as UUencoding */
495    
496     if (len-1 == j) /* remove trailing character */
497     len--;
498     if (len != j)
499     switch (UUxlat[ACAST(*s)]%3) {
500     case 1:
501     if (j-2 == len) j-=2;
502     break;
503     case 2:
504     if (j-1 == len) j-=1;
505     break;
506     }
507     /*
508     * some encoders are broken with respect to encoding the last line of
509     * a file and produce extraoneous characters beyond the expected EOL
510     * So were not too picky here about the last line, as long as it's longer
511     * than necessary and shorter than the maximum
512     */
513     if (len != j && !(*ptr != 'h' && len > j && len <= UUxlen[UUxlat['h']]))
514     return 0; /* bad length */
515    
516     while(len--) {
517     if(*s < 0 || XXxlat[ACAST(*s++)] < 0) {
518     return 0; /* bad code character */
519     }
520     }
521     return XX_ENCODED; /* data is valid */
522     }
523    
524     /*
525     * This function may be called upon a line that does not look like
526     * valid encoding on first sight, but might be erroneously encoded
527     * data from Netscape, Lynx or MS Exchange. We might need to read
528     * a new line from the stream, which is why we need the FILE.
529     * Returns the type of encoded data if successful or 0 otherwise.
530     */
531    
532     int
533     UURepairData (FILE *datei, char *line, int encoding, int *bhflag)
534     {
535     int nflag, vflag=0, safety=42;
536     char *ptr;
537    
538     nflag = UUBrokenByNetscape (line);
539    
540     while (vflag == 0 && nflag && safety--) {
541     if (nflag == 1) { /* need next line to repair */
542 root 1.12 if (strlen (line) > 250)
543     break;
544 root 1.1 ptr = line + strlen (line);
545 root 1.10 if (_FP_fgets (ptr, 299-(ptr-line), datei) == NULL)
546 root 1.1 break;
547     }
548     else { /* don't need next line to repair */
549     }
550     if (UUNetscapeCollapse (line)) {
551     if ((vflag = UUValidData (line, encoding, bhflag)) == 0)
552     nflag = UUBrokenByNetscape (line);
553     }
554     else
555     nflag = 0;
556     }
557     /*
558     * Sometimes, a line is garbled even without it being split into
559     * the next line. Then we try this in our despair
560     */
561     if (vflag == 0) {
562     if (UUNetscapeCollapse (line))
563     vflag = UUValidData (line, encoding, bhflag);
564     }
565    
566     /*
567     * If this line looks uuencoded, but the line is one character short
568     * of a valid line, it was probably broken by MS Exchange. According
569     * to my test cases, there is at most one space character missing;
570     * there are never two spaces together.
571     * If adding a space character helps making this line uuencoded, do
572     * it!
573     */
574    
575     if (vflag == 0) {
576     ptr = line + strlen(line);
577     *ptr++ = ' ';
578     *ptr-- = '\0';
579     if ((vflag = UUValidData (line, encoding, bhflag)) != UU_ENCODED) {
580     *ptr = '\0';
581     vflag = 0;
582     }
583     }
584     return vflag;
585     }
586    
587     /*
588     * Decode a single encoded line using method
589     */
590    
591     size_t
592     UUDecodeLine (char *s, char *d, int method)
593     {
594     int i, j, c, cc, count=0, z1, z2, z3, z4;
595     static int leftover=0;
596     int *table;
597    
598     /*
599     * for re-initialization
600     */
601    
602     if (s == NULL || d == NULL) {
603     leftover = 0;
604     return 0;
605     }
606    
607     /*
608     * To shut up gcc -Wall
609     */
610     z1 = z2 = z3 = z4 = 0;
611    
612     if (method == UU_ENCODED || method == XX_ENCODED) {
613     if (method == UU_ENCODED)
614     table = UUxlat;
615     else
616     table = XXxlat;
617    
618 root 1.4 i = table [ACAST(*s++)];
619 root 1.1 j = UUxlen[i] - 1;
620    
621     while(j > 0) {
622 root 1.4 c = table[ACAST(*s++)] << 2;
623     cc = table[ACAST(*s++)];
624 root 1.1 c |= (cc >> 4);
625    
626     if(i-- > 0)
627     d[count++] = c;
628    
629     cc <<= 4;
630 root 1.4 c = table[ACAST(*s++)];
631 root 1.1 cc |= (c >> 2);
632    
633     if(i-- > 0)
634     d[count++] = cc;
635    
636     c <<= 6;
637 root 1.4 c |= table[ACAST(*s++)];
638 root 1.1
639     if(i-- > 0)
640     d[count++] = c;
641    
642     j -= 4;
643     }
644     }
645     else if (method == B64ENCODED) {
646     if (leftover) {
647 root 1.9 strcpy (uuncdl_fulline + leftover, s);
648 root 1.7
649 root 1.1 leftover = 0;
650     s = uuncdl_fulline;
651     }
652    
653     while ((z1 = B64xlat[ACAST(*s)]) != -1) {
654     if ((z2 = B64xlat[ACAST(*(s+1))]) == -1) break;
655     if ((z3 = B64xlat[ACAST(*(s+2))]) == -1) break;
656     if ((z4 = B64xlat[ACAST(*(s+3))]) == -1) break;
657    
658     d[count++] = (z1 << 2) | (z2 >> 4);
659     d[count++] = (z2 << 4) | (z3 >> 2);
660     d[count++] = (z3 << 6) | (z4);
661    
662     s += 4;
663     }
664     if (z1 != -1 && z2 != -1 && *(s+2) == '=') {
665     d[count++] = (z1 << 2) | (z2 >> 4);
666     s+=2;
667     }
668     else if (z1 != -1 && z2 != -1 && z3 != -1 && *(s+3) == '=') {
669     d[count++] = (z1 << 2) | (z2 >> 4);
670     d[count++] = (z2 << 4) | (z3 >> 2);
671     s+=3;
672     }
673     while (B64xlat[ACAST(*s)] != -1)
674     uuncdl_fulline[leftover++] = *s++;
675     }
676     else if (method == BH_ENCODED) {
677     if (leftover) {
678 root 1.9 strcpy (uuncdl_fulline + leftover, s);
679 root 1.8
680 root 1.1 leftover = 0;
681     s = uuncdl_fulline;
682     }
683     else if (*s == ':')
684     s++;
685    
686     while ((z1 = BHxlat[ACAST(*s)]) != -1) {
687     if ((z2 = BHxlat[ACAST(*(s+1))]) == -1) break;
688     if ((z3 = BHxlat[ACAST(*(s+2))]) == -1) break;
689     if ((z4 = BHxlat[ACAST(*(s+3))]) == -1) break;
690    
691     d[count++] = (z1 << 2) | (z2 >> 4);
692     d[count++] = (z2 << 4) | (z3 >> 2);
693     d[count++] = (z3 << 6) | (z4);
694    
695     s += 4;
696     }
697     if (z1 != -1 && z2 != -1 && *(s+2) == ':') {
698     d[count++] = (z1 << 2) | (z2 >> 4);
699     s+=2;
700     }
701     else if (z1 != -1 && z2 != -1 && z3 != -1 && *(s+3) == ':') {
702     d[count++] = (z1 << 2) | (z2 >> 4);
703     d[count++] = (z2 << 4) | (z3 >> 2);
704     s+=3;
705     }
706     while (BHxlat[ACAST(*s)] != -1)
707     uuncdl_fulline[leftover++] = *s++;
708     }
709 root 1.4 else if (method == YENC_ENCODED) {
710     while (*s) {
711     if (*s == '=') {
712     if (*++s != '\0') {
713     d[count++] = (char) ((int) *s - 64 - 42);
714     s++;
715     }
716     }
717 root 1.8 else if (*s == '\n' || *s == '\r') {
718 root 1.4 s++; /* ignore */
719     }
720     else {
721     d[count++] = (char) ((int) *s++ - 42);
722     }
723     }
724     }
725 root 1.1
726     return count;
727     }
728    
729     /*
730     * ``Decode'' Quoted-Printable text
731     */
732    
733     int
734     UUDecodeQP (FILE *datain, FILE *dataout, int *state,
735     long maxpos, int method, int flags,
736     char *boundary)
737     {
738     char *line=uugen_inbuffer, *p1, *p2;
739     int val;
740    
741     uulboundary = -1;
742    
743     while (!feof (datain) &&
744     (ftell(datain)<maxpos || flags&FL_TOEND ||
745     (!(flags&FL_PROPER) && uu_fast_scanning))) {
746 root 1.10 if (_FP_fgets (line, 1023, datain) == NULL)
747 root 1.1 break;
748     if (ferror (datain)) {
749     UUMessage (uunconc_id, __LINE__, UUMSG_ERROR,
750     uustring (S_SOURCE_READ_ERR),
751     strerror (uu_errno = errno));
752     return UURET_IOERR;
753     }
754     line[255] = '\0';
755    
756     if (boundary && line[0]=='-' && line[1]=='-' &&
757     strncmp (line+2, boundary, strlen (boundary)) == 0) {
758     if (line[strlen(boundary)+2]=='-')
759     uulboundary = 1;
760     else
761     uulboundary = 0;
762     return UURET_OK;
763     }
764    
765     if (UUBUSYPOLL(ftell(datain)-progress.foffset,progress.fsize)) {
766     UUMessage (uunconc_id, __LINE__, UUMSG_NOTE,
767     uustring (S_DECODE_CANCEL));
768     return UURET_CANCEL;
769     }
770    
771     p1 = p2 = line;
772    
773     while (*p2) {
774     while (*p2 && *p2 != '=')
775     p2++;
776     if (*p2 == '\0')
777     break;
778     *p2 = '\0';
779     fprintf (dataout, "%s", p1);
780     p1 = ++p2;
781    
782     if (isxdigit (*p2) && isxdigit (*(p2+1))) {
783     val = ((isdigit(*p2)) ? (*p2-'0') : (tolower(*p2)-'a'+10)) << 4;
784     val |= ((isdigit(*(p2+1)))?(*(p2+1)-'0') : (tolower(*(p2+1))-'a'+10));
785    
786     fputc (val, dataout);
787     p2 += 2;
788     p1 = p2;
789     }
790 root 1.17 else if (!*p2) {
791 root 1.1 /* soft line break */
792     *p2 = '\0';
793     break;
794     }
795     else {
796     /* huh? */
797     fputc ('=', dataout);
798     }
799     }
800    
801     /*
802     * If the part ends directly after this line, the data does not end
803     * with a linebreak. Or, as the docs put it, "the CRLF preceding the
804     * encapsulation line is conceptually attached to the boundary.
805     * So if the part ends here, don't print a line break"
806     */
807 root 1.17 /* something is broken here now, but it was broken before */
808     if (!feof (datain) &&
809     (ftell(datain)<maxpos || flags&FL_TOEND ||
810     (!(flags&FL_PROPER) && uu_fast_scanning)))
811 root 1.1 fprintf (dataout, "%s\n", p1);
812     else
813     fprintf (dataout, "%s", p1);
814     }
815     return UURET_OK;
816     }
817    
818     /*
819     * ``Decode'' plain text. Our job is to properly handle the EOL sequence
820     */
821    
822     int
823     UUDecodePT (FILE *datain, FILE *dataout, int *state,
824     long maxpos, int method, int flags,
825     char *boundary)
826     {
827     char *line=uugen_inbuffer, *ptr;
828    
829     uulboundary = -1;
830    
831     while (!feof (datain) &&
832     (ftell(datain)<maxpos || flags&FL_TOEND ||
833     (!(flags&FL_PROPER) && uu_fast_scanning))) {
834 root 1.10 if (_FP_fgets (line, 1023, datain) == NULL)
835 root 1.1 break;
836     if (ferror (datain)) {
837     UUMessage (uunconc_id, __LINE__, UUMSG_ERROR,
838     uustring (S_SOURCE_READ_ERR),
839     strerror (uu_errno = errno));
840     return UURET_IOERR;
841     }
842     line[255] = '\0';
843    
844     if (boundary && line[0]=='-' && line[1]=='-' &&
845     strncmp (line+2, boundary, strlen (boundary)) == 0) {
846     if (line[strlen(boundary)+2]=='-')
847     uulboundary = 1;
848     else
849     uulboundary = 0;
850     return UURET_OK;
851     }
852    
853     if (UUBUSYPOLL(ftell(datain)-progress.foffset,progress.fsize)) {
854     UUMessage (uunconc_id, __LINE__, UUMSG_NOTE,
855     uustring (S_DECODE_CANCEL));
856     return UURET_CANCEL;
857     }
858    
859     ptr = line + strlen (line);
860    
861     /*
862     * If the part ends directly after this line, the data does not end
863     * with a linebreak. Or, as the docs put it, "the CRLF preceding the
864     * encapsulation line is conceptually attached to the boundary.
865     * So if the part ends here, don't print a line break"
866     */
867 root 1.17 if ((ftell(datain)<maxpos || flags&FL_TOEND || flags&FL_PARTIAL ||
868 root 1.2 !boundary || (!(flags&FL_PROPER) && uu_fast_scanning))) {
869 root 1.1 *ptr = '\0';
870     fprintf (dataout, "%s\n", line);
871     }
872     else {
873     *ptr = '\0';
874     fprintf (dataout, "%s", line);
875     }
876     }
877     return UURET_OK;
878     }
879    
880 root 1.12 /*
881     * Decode a single field using method. For the moment, this supports
882     * Base64 and Quoted Printable only, to support RFC 1522 header decoding.
883     * Quit when seeing the RFC 1522 ?= end marker.
884     */
885    
886     int
887     UUDecodeField (char *s, char *d, int method)
888     {
889     int z1, z2, z3, z4;
890     int count=0;
891    
892     if (method == B64ENCODED) {
893     while ((z1 = B64xlat[ACAST(*s)]) != -1) {
894     if ((z2 = B64xlat[ACAST(*(s+1))]) == -1) break;
895     if ((z3 = B64xlat[ACAST(*(s+2))]) == -1) break;
896     if ((z4 = B64xlat[ACAST(*(s+3))]) == -1) break;
897    
898     d[count++] = (z1 << 2) | (z2 >> 4);
899     d[count++] = (z2 << 4) | (z3 >> 2);
900     d[count++] = (z3 << 6) | (z4);
901    
902     s+=4;
903     }
904     if (z1 != -1 && z2 != -1 && *(s+2) == '=') {
905     d[count++] = (z1 << 2) | (z2 >> 4);
906     s+=2;
907     }
908     else if (z1 != -1 && z2 != -1 && z3 != -1 && *(s+3) == '=') {
909     d[count++] = (z1 << 2) | (z2 >> 4);
910     d[count++] = (z2 << 4) | (z3 >> 2);
911     s+=3;
912     }
913     }
914     else if (method == QP_ENCODED) {
915     while (*s && (*s != '?' || *(s+1) != '=')) {
916     while (*s && *s != '=' && (*s != '?' || *(s+1) != '=')) {
917     d[count++] = *s++;
918     }
919     if (*s == '=') {
920     if (isxdigit (*(s+1)) && isxdigit (*(s+2))) {
921     d[count] = (isdigit (*(s+1)) ? (*(s+1)-'0') : (tolower (*(s+1))-'a'+10)) << 4;
922     d[count] |= (isdigit (*(s+2)) ? (*(s+2)-'0') : (tolower (*(s+2))-'a'+10));
923     count++;
924     s+=3;
925     }
926 root 1.17 else if (!s[1]) {
927     d[count++] = '\012';
928 root 1.12 }
929     else {
930     d[count++] = *s++;
931     }
932     }
933     }
934     }
935     else {
936     return -1;
937     }
938    
939     d[count] = '\0';
940     return count;
941     }
942    
943 root 1.1 int
944     UUDecodePart (FILE *datain, FILE *dataout, int *state,
945     long maxpos, int method, int flags,
946     char *boundary)
947     {
948 root 1.9 char *line, *oline=uuncdp_oline;
949 root 1.1 int warning=0, vlc=0, lc[2], hadct=0;
950     int tc=0, tf=0, vflag, haddata=0, haddh=0;
951 root 1.19 long yefilesize=0, yepartends=0, yenotlastpart=0;
952 root 1.11 crc32_t yepartcrc=crc32(0L, Z_NULL, 0);
953     static crc32_t yefilecrc=0;
954 root 1.1 static int bhflag=0;
955     size_t count=0;
956 root 1.11 size_t yepartsize=0;
957 root 1.4 char *ptr;
958 root 1.1
959     if (datain == NULL || dataout == NULL) {
960 root 1.11 yefilecrc = crc32(0L, Z_NULL, 0);
961 root 1.1 bhflag = 0;
962     return UURET_OK;
963     }
964    
965     /*
966     * Use specialized functions for QP_ENCODED and PT_ENCODED plaintext
967     */
968    
969     if (method == QP_ENCODED)
970     return UUDecodeQP (datain, dataout, state, maxpos,
971     method, flags, boundary);
972     else if (method == PT_ENCODED)
973     return UUDecodePT (datain, dataout, state, maxpos,
974     method, flags, boundary);
975    
976     lc[0] = lc[1] = 0;
977     vflag = 0;
978    
979     uulboundary = -1;
980    
981 root 1.4 if (method == YENC_ENCODED) {
982     *state = BEGIN;
983     }
984    
985 root 1.1 while (!feof (datain) && *state != DONE &&
986     (ftell(datain)<maxpos || flags&FL_TOEND || maxpos==-1 ||
987     (!(flags&FL_PROPER) && uu_fast_scanning))) {
988 root 1.9 if (_FP_fgets ((line = uugen_fnbuffer), 1200 - 5, datain) == NULL)
989 root 1.1 break;
990 root 1.4
991 root 1.9 /* optionally skip .. */
992     if (*line == '.' && uu_dotdot)
993     line++;
994    
995 root 1.1 if (ferror (datain)) {
996     UUMessage (uunconc_id, __LINE__, UUMSG_ERROR,
997     uustring (S_SOURCE_READ_ERR),
998     strerror (uu_errno = errno));
999     return UURET_IOERR;
1000     }
1001 root 1.4
1002 root 1.17 if (!*line) { /* Empty line? */
1003 root 1.1 if (*state == DATA &&
1004     (method == UU_ENCODED || method == XX_ENCODED))
1005     *state = END;
1006 root 1.4
1007 root 1.1 /*
1008     * if we had a whole block of valid lines before, we reset our
1009     * 'valid data' flag, tf. Without this 'if', we'd break decoding
1010     * files with interleaved blank lines. The value of 5 is chosen
1011     * quite arbitrarly.
1012     */
1013 root 1.4
1014 root 1.1 if (vlc > 5)
1015     tf = tc = 0;
1016     vlc = 0;
1017     continue;
1018     }
1019    
1020     /*
1021     * Busy Polls
1022     */
1023    
1024     if (UUBUSYPOLL(ftell(datain)-progress.foffset,progress.fsize)) {
1025     UUMessage (uunconc_id, __LINE__, UUMSG_NOTE,
1026     uustring (S_DECODE_CANCEL));
1027     return UURET_CANCEL;
1028     }
1029    
1030     /*
1031     * try to make sense of data
1032     */
1033    
1034 root 1.9 line[1200 - 1] = '\0'; /* For Safety of string functions */
1035     count = 0;
1036 root 1.1
1037     if (boundary && line[0]=='-' && line[1]=='-' &&
1038     strncmp (line+2, boundary, strlen (boundary)) == 0) {
1039     if (line[strlen(boundary)+2]=='-')
1040     uulboundary = 1;
1041     else
1042     uulboundary = 0;
1043     return UURET_OK;
1044     }
1045    
1046     /*
1047     * Use this pseudo-handling only if !FL_PROPER
1048     */
1049    
1050     if ((flags&FL_PROPER) == 0) {
1051     if (strncmp (line, "BEGIN", 5) == 0 &&
1052 root 1.5 _FP_strstr (line, "CUT HERE") && !tf) { /* I hate these lines */
1053 root 1.1 tc = tf = vlc = 0;
1054     continue;
1055     }
1056     /* MIME body boundary */
1057     if (line[0] == '-' && line[1] == '-' && method == B64ENCODED) {
1058     if ((haddata || tc) && (haddh || hadct)) {
1059     *state = DONE;
1060     vlc = 0;
1061     lc[0] = lc[1] = 0;
1062     continue;
1063     }
1064     hadct = 0;
1065     haddh = 1;
1066     continue;
1067     }
1068 root 1.5 if (_FP_strnicmp (line, "Content-Type", 12) == 0)
1069 root 1.1 hadct = 1;
1070     }
1071    
1072     if (*state == BEGIN) {
1073 root 1.4 if ((method == UU_ENCODED || method == XX_ENCODED) &&
1074     (strncmp (line, "begin ", 6) == 0 ||
1075 root 1.5 _FP_strnicmp (line, "<pre>begin ", 11) == 0)) { /* for LYNX */
1076 root 1.1 *state = DATA;
1077     continue;
1078     }
1079     else if (method == BH_ENCODED && line[0] == ':') {
1080     if (UUValidData (line, BH_ENCODED, &bhflag) == BH_ENCODED) {
1081     bhflag = 0;
1082     *state = DATA;
1083     }
1084     else
1085     continue;
1086     }
1087 root 1.4 else if (method == YENC_ENCODED &&
1088     strncmp (line, "=ybegin ", 8) == 0 &&
1089 root 1.5 _FP_strstr (line, " name=") != NULL) {
1090 root 1.4 *state = DATA;
1091    
1092 root 1.11 if ((ptr = _FP_strstr (line, " size=")) != NULL) {
1093     ptr += 6;
1094     yefilesize = atoi (ptr);
1095     }
1096     else {
1097     yefilesize = -1;
1098     }
1099 root 1.4
1100 root 1.19 if ((ptr =_FP_strstr (line, " part="))) {
1101     int partno = atoi (ptr + 6);
1102    
1103     if ((ptr = _FP_strstr (line, " total=")))
1104     yenotlastpart = atoi (ptr + 7) != partno;
1105    
1106 root 1.9 if (_FP_fgets (line, 1200 - 5, datain) == NULL) {
1107 root 1.4 break;
1108     }
1109    
1110 root 1.5 if ((ptr = _FP_strstr (line, " end=")) == NULL) {
1111 root 1.4 break;
1112     }
1113 root 1.19
1114 root 1.4 yepartends = atoi (ptr + 5);
1115     }
1116     tf = 1;
1117     continue;
1118     }
1119     else {
1120 root 1.1 continue;
1121 root 1.4 }
1122 root 1.1
1123     tc = tf = vlc = 0;
1124     lc[0] = lc[1] = 0;
1125     }
1126     else if ((*state == END) &&
1127     (method == UU_ENCODED || method == XX_ENCODED)) {
1128     if (strncmp (line, "end", 3) == 0) {
1129     *state = DONE;
1130     break;
1131     }
1132     }
1133 root 1.4
1134     if (*state == DATA && method == YENC_ENCODED &&
1135     strncmp (line, "=yend ", 6) == 0) {
1136 root 1.11 if ((ptr = _FP_strstr (line, " pcrc32=")) != NULL) {
1137     crc32_t pcrc32 = strtoul (ptr + 8, NULL, 16);
1138     if (pcrc32 != yepartcrc) {
1139     UUMessage (uunconc_id, __LINE__, UUMSG_WARNING,
1140     uustring (S_PCRC_MISMATCH), progress.curfile, progress.partno);
1141     }
1142     }
1143     if ((ptr = _FP_strstr (line, " crc32=")) != NULL)
1144     {
1145     crc32_t fcrc32 = strtoul (ptr + 7, NULL, 16);
1146     if (fcrc32 != yefilecrc) {
1147     UUMessage (uunconc_id, __LINE__, UUMSG_WARNING,
1148     uustring (S_CRC_MISMATCH), progress.curfile);
1149     }
1150     }
1151     if ((ptr = _FP_strstr (line, " size=")) != NULL)
1152     {
1153     size_t size = atol(ptr + 6);
1154     if (size != yepartsize && yefilesize != -1) {
1155     if (size != yefilesize)
1156     UUMessage (uunconc_id, __LINE__, UUMSG_WARNING,
1157     uustring (S_PSIZE_MISMATCH), progress.curfile,
1158     progress.partno, yepartsize, size);
1159     else
1160     UUMessage (uunconc_id, __LINE__, UUMSG_WARNING,
1161     uustring (S_SIZE_MISMATCH), progress.curfile,
1162     yepartsize, size);
1163     }
1164     }
1165 root 1.19 if (!yenotlastpart && (yepartends == 0 || yepartends >= yefilesize)) {
1166 root 1.4 *state = DONE;
1167     }
1168     break;
1169     }
1170    
1171 root 1.1 if (*state == DATA || *state == END) {
1172     if (method==B64ENCODED && line[0]=='-' && line[1]=='-' && tc) {
1173     break;
1174     }
1175    
1176     if ((vflag = UUValidData (line, (tf)?method:0, &bhflag)) == 0)
1177     vflag = UURepairData (datain, line, (tf)?method:0, &bhflag);
1178    
1179     /*
1180     * correct XX/UUencoded lines that were declared Base64
1181     */
1182    
1183     if ((method == XX_ENCODED || method == UU_ENCODED) &&
1184     vflag == B64ENCODED) {
1185     if (UUValidData (line, method, &bhflag) == method)
1186     vflag = method;
1187     }
1188    
1189     if (vflag == method) {
1190     if (tf) {
1191     count = UUDecodeLine (line, oline, method);
1192 root 1.11 if (method == YENC_ENCODED) {
1193 root 1.19 yepartcrc = crc32(yepartcrc, oline, count);
1194 root 1.11 yefilecrc = crc32(yefilecrc, oline, count);
1195     yepartsize += count;
1196     }
1197 root 1.1 vlc++; lc[1]++;
1198     }
1199     else if (tc == 3) {
1200     count = UUDecodeLine (save[0], oline, method);
1201     count += UUDecodeLine (save[1], oline + count, method);
1202     count += UUDecodeLine (save[2], oline + count, method);
1203     count += UUDecodeLine (line, oline + count, method);
1204     tf = 1;
1205     tc = 0;
1206    
1207     /*
1208     * complain if we had one or two invalid lines amidst of
1209     * correctly encoded data. This usually means that the
1210     * file is in error
1211     */
1212    
1213     if (lc[1] > 10 && (lc[0] >= 1 && lc[0] <= 2) && !warning) {
1214     UUMessage (uunconc_id, __LINE__, UUMSG_WARNING,
1215     uustring (S_DATA_SUSPICIOUS));
1216     warning=1;
1217     }
1218     lc[0] = 0;
1219     lc[1] = 3;
1220     }
1221     else {
1222 root 1.9 _FP_strncpy (save[tc++], line, 1200);
1223 root 1.1 }
1224 root 1.4
1225 root 1.1 if (method == UU_ENCODED)
1226     *state = (line[0] == 'M') ? DATA : END;
1227     else if (method == XX_ENCODED)
1228     *state = (line[0] == 'h') ? DATA : END;
1229     else if (method == B64ENCODED)
1230     *state = (strchr (line, '=') == NULL) ? DATA : DONE;
1231     else if (method == BH_ENCODED)
1232     *state = (!line[0] || strchr(line+1,':')==NULL)?DATA:DONE;
1233     }
1234     else {
1235     vlc = tf = tc = 0;
1236     haddh = 0;
1237     lc[0]++;
1238     }
1239     }
1240     else if (*state != DONE) {
1241     return UURET_NOEND;
1242     }
1243 root 1.4
1244 root 1.1 if (count) {
1245     if (method == BH_ENCODED) {
1246     if (UUbhwrite (oline, 1, count, dataout) != count) {
1247     UUMessage (uunconc_id, __LINE__, UUMSG_ERROR,
1248     uustring (S_WR_ERR_TEMP),
1249     strerror (uu_errno = errno));
1250     return UURET_IOERR;
1251     }
1252     }
1253     else if (fwrite (oline, 1, count, dataout) != count) {
1254     UUMessage (uunconc_id, __LINE__, UUMSG_ERROR,
1255     uustring (S_WR_ERR_TEMP),
1256     strerror (uu_errno = errno));
1257     return UURET_IOERR;
1258     }
1259     haddata++;
1260     count = 0;
1261     }
1262     }
1263    
1264     if (*state == DONE ||
1265     (*state == DATA && method == B64ENCODED &&
1266     vflag == B64ENCODED && (flags&FL_PROPER || haddh))) {
1267     for (tf=0; tf<tc; tf++)
1268     count += UUDecodeLine (save[tf], oline + count, method);
1269     if (count) {
1270     if (method == BH_ENCODED) {
1271     if (UUbhwrite (oline, 1, count, dataout) != count) {
1272     UUMessage (uunconc_id, __LINE__, UUMSG_ERROR,
1273     uustring (S_WR_ERR_TEMP),
1274     strerror (uu_errno = errno));
1275     return UURET_IOERR;
1276     }
1277     }
1278     else if (fwrite (oline, 1, count, dataout) != count) {
1279     UUMessage (uunconc_id, __LINE__, UUMSG_ERROR,
1280     uustring (S_WR_ERR_TEMP),
1281     strerror (uu_errno = errno));
1282     return UURET_IOERR;
1283     }
1284     }
1285     }
1286     return UURET_OK;
1287     }
1288    
1289     /*
1290     * this function decodes the file into a temporary file
1291     */
1292    
1293     int
1294     UUDecode (uulist *data)
1295     {
1296     int state=BEGIN, part=-1, res=0, hb;
1297 root 1.13 unsigned long rsize, dsize, numbytes;
1298 root 1.1 FILE *datain, *dataout;
1299 root 1.15 void *datain_buf, *dataout_buf;
1300 root 1.1 unsigned char r[8];
1301     char *mode, *ntmp;
1302     uufile *iter;
1303     size_t bytes;
1304 root 1.3 #ifdef HAVE_MKSTEMP
1305     int tmpfd;
1306     const char *tmpprefix = "uuXXXXXX";
1307     char *tmpdir = NULL;
1308     #endif /* HAVE_MKSTEMP */
1309 root 1.1
1310     if (data == NULL || data->thisfile == NULL)
1311     return UURET_ILLVAL;
1312    
1313     if (data->state & UUFILE_TMPFILE)
1314     return UURET_OK;
1315    
1316     if (data->state & UUFILE_NODATA)
1317     return UURET_NODATA;
1318    
1319     if (data->state & UUFILE_NOBEGIN && !uu_desperate)
1320     return UURET_NODATA;
1321    
1322 root 1.2 if (data->uudet == PT_ENCODED)
1323 root 1.1 mode = "wt"; /* open text files in text mode */
1324     else
1325     mode = "wb"; /* otherwise in binary */
1326    
1327 root 1.3 #ifdef HAVE_MKSTEMP
1328     if ((getuid()==geteuid()) && (getgid()==getegid())) {
1329     tmpdir=getenv("TMPDIR");
1330     }
1331    
1332     if (!tmpdir) {
1333     tmpdir = "/tmp";
1334     }
1335     data->binfile = malloc(strlen(tmpdir)+strlen(tmpprefix)+2);
1336    
1337     if (!data->binfile) {
1338     #else
1339 root 1.1 if ((data->binfile = tempnam (NULL, "uu")) == NULL) {
1340 root 1.3 #endif /* HAVE_MKSTEMP */
1341 root 1.1 UUMessage (uunconc_id, __LINE__, UUMSG_ERROR,
1342     uustring (S_NO_TEMP_NAME));
1343     return UURET_NOMEM;
1344     }
1345    
1346 root 1.3 #ifdef HAVE_MKSTEMP
1347     strcpy(data->binfile, tmpdir);
1348     strcat(data->binfile, "/");
1349     strcat(data->binfile, tmpprefix);
1350    
1351     if ((tmpfd = mkstemp(data->binfile)) == -1 ||
1352     (dataout = fdopen(tmpfd, mode)) == NULL) {
1353     #else
1354 root 1.1 if ((dataout = fopen (data->binfile, mode)) == NULL) {
1355 root 1.3 #endif /* HAVE_MKSTEMP */
1356 root 1.1 /*
1357     * we couldn't create a temporary file. Usually this means that TMP
1358     * and TEMP aren't set
1359     */
1360     UUMessage (uunconc_id, __LINE__, UUMSG_ERROR,
1361     uustring (S_WR_ERR_TARGET),
1362     data->binfile, strerror (uu_errno = errno));
1363 root 1.3 #ifdef HAVE_MKSTEMP
1364     if (tmpfd != -1) {
1365     unlink(data->binfile);
1366     close(tmpfd);
1367     }
1368     #endif /* HAVE_MKSTEMP */
1369 root 1.5 _FP_free (data->binfile);
1370 root 1.1 data->binfile = NULL;
1371     uu_errno = errno;
1372     return UURET_IOERR;
1373     }
1374 root 1.15 UUSETBUF (dataout, dataout_buf, uu_wbuf);
1375 root 1.3
1376 root 1.1 /*
1377     * we don't have begin lines in Base64 or plain text files.
1378     */
1379     if (data->uudet == B64ENCODED || data->uudet == QP_ENCODED ||
1380     data->uudet == PT_ENCODED)
1381     state = DATA;
1382    
1383     /*
1384     * If we know that the file does not have a begin, we simulate
1385     * it in desperate mode
1386     */
1387    
1388     if ((data->state & UUFILE_NOBEGIN) && uu_desperate)
1389     state = DATA;
1390    
1391     (void) UUDecodeLine (NULL, NULL, 0); /* init */
1392     (void) UUbhwrite (NULL, 0, 0, NULL); /* dito */
1393     (void) UUDecodePart (NULL, NULL, NULL, 0, 0, 0, NULL); /* yep */
1394    
1395     /*
1396     * initialize progress information
1397     */
1398     progress.action = 0;
1399     if (data->filename != NULL) {
1400 root 1.5 _FP_strncpy (progress.curfile,
1401 root 1.1 (strlen(data->filename)>255)?
1402     (data->filename+strlen(data->filename)-255):data->filename,
1403     256);
1404     }
1405     else {
1406 root 1.5 _FP_strncpy (progress.curfile,
1407 root 1.1 (strlen(data->binfile)>255)?
1408     (data->binfile+strlen(data->binfile)-255):data->binfile,
1409     256);
1410     }
1411     progress.partno = 0;
1412     progress.numparts = 0;
1413     progress.fsize = -1;
1414     progress.percent = 0;
1415     progress.action = UUACT_DECODING;
1416    
1417     iter = data->thisfile;
1418     while (iter) {
1419     progress.numparts = (iter->partno)?iter->partno:1;
1420     iter = iter->NEXT;
1421     }
1422    
1423     /*
1424     * let's rock!
1425     */
1426    
1427     iter = data->thisfile;
1428     while (iter) {
1429 root 1.12 if (part != -1 && iter->partno != part+1 && !uu_desperate)
1430 root 1.1 break;
1431     else
1432     part = iter->partno;
1433    
1434     if (iter->data->sfname == NULL) {
1435     iter = iter->NEXT;
1436     continue;
1437     }
1438    
1439     /*
1440     * call our FileCallback to retrieve the file
1441     */
1442    
1443     if (uu_FileCallback) {
1444     if ((res = (*uu_FileCallback) (uu_FileCBArg, iter->data->sfname,
1445     uugen_fnbuffer, 1)) != UURET_OK)
1446     break;
1447     if ((datain = fopen (uugen_fnbuffer, "rb")) == NULL) {
1448     (*uu_FileCallback) (uu_FileCBArg, iter->data->sfname,
1449     uugen_fnbuffer, 0);
1450     UUMessage (uunconc_id, __LINE__, UUMSG_ERROR,
1451     uustring (S_NOT_OPEN_FILE),
1452     uugen_fnbuffer, strerror (uu_errno = errno));
1453     res = UURET_IOERR;
1454     break;
1455     }
1456     }
1457     else {
1458     if ((datain = fopen (iter->data->sfname, "rb")) == NULL) {
1459     UUMessage (uunconc_id, __LINE__, UUMSG_ERROR,
1460     uustring (S_NOT_OPEN_FILE),
1461     iter->data->sfname, strerror (uu_errno = errno));
1462     res = UURET_IOERR;
1463     break;
1464     }
1465 root 1.5 _FP_strncpy (uugen_fnbuffer, iter->data->sfname, 1024);
1466 root 1.1 }
1467 root 1.15 UUSETBUF (datain, datain_buf, uu_rbuf);
1468 root 1.1
1469     progress.partno = part;
1470     progress.fsize = (iter->data->length)?iter->data->length:-1;
1471     progress.percent = 0;
1472     progress.foffset = iter->data->startpos;
1473    
1474     fseek (datain, iter->data->startpos, SEEK_SET);
1475     res = UUDecodePart (datain, dataout, &state,
1476     iter->data->startpos+iter->data->length,
1477     data->uudet, iter->data->flags, NULL);
1478     fclose (datain);
1479 root 1.15 UUCLRBUF (uu_rbuf, datain_buf);
1480 root 1.1
1481     if (uu_FileCallback)
1482     (*uu_FileCallback) (uu_FileCBArg, iter->data->sfname, uugen_fnbuffer, 0);
1483    
1484     if (state == DONE || res != UURET_OK)
1485     break;
1486    
1487     iter = iter->NEXT;
1488     }
1489    
1490     if (state == DATA &&
1491     (data->uudet == B64ENCODED || data->uudet == QP_ENCODED ||
1492     data->uudet == PT_ENCODED))
1493     state = DONE; /* assume we're done */
1494    
1495 root 1.12 if (fclose (dataout)) {
1496     UUMessage (uunconc_id, __LINE__, UUMSG_ERROR,
1497     uustring (S_WR_ERR_TEMP),
1498     strerror (uu_errno = errno));
1499     res = UURET_IOERR;
1500     }
1501 root 1.15 UUCLRBUF (uu_wbuf, dataout_buf);
1502 root 1.1
1503     if (res != UURET_OK || (state != DONE && !uu_desperate)) {
1504     unlink (data->binfile);
1505 root 1.5 _FP_free (data->binfile);
1506 root 1.1 data->binfile = NULL;
1507     data->state &= ~UUFILE_TMPFILE;
1508     data->state |= UUFILE_ERROR;
1509    
1510     if (res == UURET_OK && state != DONE)
1511     res = UURET_NOEND;
1512     }
1513     else if (res != UURET_OK) {
1514     data->state &= ~UUFILE_DECODED;
1515     data->state |= UUFILE_ERROR | UUFILE_TMPFILE;
1516     }
1517     else {
1518     data->state &= ~UUFILE_ERROR;
1519     data->state |= UUFILE_TMPFILE;
1520     }
1521    
1522     /*
1523     * If this was a BinHex file, we must extract its data or resource fork
1524     */
1525    
1526     if (data->uudet == BH_ENCODED && data->binfile) {
1527 root 1.3 #ifdef HAVE_MKSTEMP
1528     ntmp = malloc(strlen(tmpdir)+strlen(tmpprefix)+2);
1529    
1530     if (ntmp == NULL) {
1531     #else
1532 root 1.1 if ((ntmp = tempnam (NULL, "uu")) == NULL) {
1533 root 1.3 #endif /* HAVE_MKSTEMP */
1534 root 1.1 UUMessage (uunconc_id, __LINE__, UUMSG_ERROR,
1535     uustring (S_NO_TEMP_NAME));
1536     progress.action = 0;
1537     return UURET_NOMEM;
1538     }
1539     if ((datain = fopen (data->binfile, "rb")) == NULL) {
1540     UUMessage (uunconc_id, __LINE__, UUMSG_ERROR,
1541     uustring (S_NOT_OPEN_FILE),
1542     data->binfile, strerror (uu_errno = errno));
1543     progress.action = 0;
1544     free (ntmp);
1545     return UURET_IOERR;
1546     }
1547 root 1.15 UUSETBUF (datain, datain_buf, uu_rbuf);
1548    
1549 root 1.3 #ifdef HAVE_MKSTEMP
1550 root 1.15 strcpy(ntmp, tmpdir);
1551     strcat(ntmp, "/");
1552     strcat(ntmp, tmpprefix);
1553 root 1.3 if ((tmpfd = mkstemp(ntmp)) == -1 ||
1554     (dataout = fdopen(tmpfd, "wb")) == NULL) {
1555     #else
1556 root 1.1 if ((dataout = fopen (ntmp, "wb")) == NULL) {
1557 root 1.3 #endif /* HAVE_MKSTEMP */
1558 root 1.1 UUMessage (uunconc_id, __LINE__, UUMSG_ERROR,
1559     uustring (S_NOT_OPEN_TARGET),
1560     ntmp, strerror (uu_errno = errno));
1561     progress.action = 0;
1562     fclose (datain);
1563 root 1.15 UUCLRBUF (uu_rbuf, datain_buf);
1564 root 1.3 #ifdef HAVE_MKSTEMP
1565     if (tmpfd != -1) {
1566     unlink(ntmp);
1567     close(tmpfd);
1568     }
1569     #endif /* HAVE_MKSTEMP */
1570 root 1.1 free (ntmp);
1571     return UURET_IOERR;
1572     }
1573 root 1.15 UUSETBUF (dataout, dataout_buf, uu_wbuf);
1574 root 1.3
1575 root 1.1 /*
1576     * read fork lengths. remember they're in Motorola format
1577     */
1578 root 1.18 r[0] = _FP_fgetc (datain);
1579 root 1.1 hb = (int) r[0] + 22;
1580     fseek (datain, (int) r[0] + 12, SEEK_SET);
1581     fread (r, 1, 8, datain);
1582    
1583     dsize = (((long) 1 << 24) * (long) r[0]) +
1584     (((long) 1 << 16) * (long) r[1]) +
1585     (((long) 1 << 8) * (long) r[2]) +
1586     ( (long) r[3]);
1587     rsize = (((long) 1 << 24) * (long) r[4]) +
1588     (((long) 1 << 16) * (long) r[5]) +
1589     (((long) 1 << 8) * (long) r[6]) +
1590     ( (long) r[7]);
1591    
1592     UUMessage (uunconc_id, __LINE__, UUMSG_MESSAGE,
1593     uustring (S_BINHEX_SIZES),
1594     dsize, rsize);
1595    
1596     if (dsize == 0) {
1597     fseek (datain, dsize + hb + 2, SEEK_SET);
1598     numbytes = rsize;
1599     }
1600     else if (rsize == 0) {
1601     fseek (datain, hb, SEEK_SET);
1602     numbytes = dsize;
1603     }
1604     else {
1605     /* we should let the user have the choice here */
1606     UUMessage (uunconc_id, __LINE__, UUMSG_NOTE,
1607     uustring (S_BINHEX_BOTH));
1608     fseek (datain, hb, SEEK_SET);
1609     numbytes = dsize;
1610     }
1611    
1612     progress.action = 0;
1613     progress.partno = 0;
1614     progress.numparts = 1;
1615 root 1.16 progress.fsize = numbytes ? numbytes : -1;
1616 root 1.1 progress.foffset = hb;
1617     progress.percent = 0;
1618     progress.action = UUACT_COPYING;
1619    
1620     /*
1621     * copy the chosen fork
1622     */
1623    
1624     while (!feof (datain) && numbytes) {
1625     if (UUBUSYPOLL(ftell(datain)-progress.foffset,progress.fsize)) {
1626     UUMessage (uunconc_id, __LINE__, UUMSG_NOTE,
1627     uustring (S_DECODE_CANCEL));
1628     fclose (datain);
1629 root 1.15 UUCLRBUF (uu_rbuf, datain_buf);
1630 root 1.1 fclose (dataout);
1631 root 1.15 UUCLRBUF (uu_wbuf, dataout_buf);
1632 root 1.1 unlink (ntmp);
1633     free (ntmp);
1634     return UURET_CANCEL;
1635     }
1636    
1637     bytes = fread (uugen_inbuffer, 1,
1638     (size_t) ((numbytes>1024)?1024:numbytes), datain);
1639    
1640     if (ferror (datain) || (bytes == 0 && !feof (datain))) {
1641     progress.action = 0;
1642     UUMessage (uunconc_id, __LINE__, UUMSG_ERROR,
1643     uustring (S_SOURCE_READ_ERR),
1644     data->binfile, strerror (uu_errno = errno));
1645     fclose (datain);
1646 root 1.15 UUCLRBUF (uu_rbuf, datain_buf);
1647 root 1.1 fclose (dataout);
1648 root 1.15 UUCLRBUF (uu_wbuf, dataout_buf);
1649 root 1.1 unlink (ntmp);
1650     free (ntmp);
1651     return UURET_IOERR;
1652     }
1653     if (fwrite (uugen_inbuffer, 1, bytes, dataout) != bytes) {
1654     progress.action = 0;
1655     UUMessage (uunconc_id, __LINE__, UUMSG_ERROR,
1656     uustring (S_WR_ERR_TARGET),
1657     ntmp, strerror (uu_errno = errno));
1658     fclose (datain);
1659 root 1.15 UUCLRBUF (uu_rbuf, datain_buf);
1660 root 1.1 fclose (dataout);
1661 root 1.15 UUCLRBUF (uu_wbuf, dataout_buf);
1662 root 1.1 unlink (ntmp);
1663     free (ntmp);
1664     return UURET_IOERR;
1665     }
1666     numbytes -= bytes;
1667     }
1668    
1669     if (numbytes) {
1670     UUMessage (uunconc_id, __LINE__, UUMSG_WARNING,
1671     uustring (S_SHORT_BINHEX),
1672     (data->filename)?data->filename:
1673     (data->subfname)?data->subfname:"???",
1674     numbytes);
1675     }
1676    
1677     /*
1678     * replace temp file
1679     */
1680    
1681     fclose (datain);
1682 root 1.15 UUCLRBUF (uu_rbuf, datain_buf);
1683 root 1.12 if (fclose (dataout)) {
1684 root 1.15 UUCLRBUF (uu_wbuf, dataout_buf);
1685 root 1.12 UUMessage (uunconc_id, __LINE__, UUMSG_ERROR,
1686     uustring (S_WR_ERR_TARGET),
1687     ntmp, strerror (uu_errno = errno));
1688     unlink (ntmp);
1689     free (ntmp);
1690     return UURET_IOERR;
1691     }
1692 root 1.15 UUCLRBUF (uu_wbuf, dataout_buf);
1693 root 1.1
1694     if (unlink (data->binfile)) {
1695     UUMessage (uunconc_id, __LINE__, UUMSG_WARNING,
1696     uustring (S_TMP_NOT_REMOVED),
1697     data->binfile, strerror (uu_errno = errno));
1698     }
1699    
1700     free (data->binfile);
1701     data->binfile = ntmp;
1702     }
1703    
1704     progress.action = 0;
1705     return res;
1706     }
1707    
1708     /*
1709     * QuickDecode for proper MIME attachments. We expect the pointer to
1710     * be on the first header line.
1711     */
1712    
1713     int
1714     UUQuickDecode (FILE *datain, FILE *dataout, char *boundary, long maxpos)
1715     {
1716     int state=BEGIN, encoding=-1;
1717     headers myenv;
1718    
1719     /*
1720     * Read header and find out about encoding.
1721     */
1722    
1723     memset (&myenv, 0, sizeof (headers));
1724     UUScanHeader (datain, &myenv);
1725    
1726 root 1.5 if (_FP_stristr (myenv.ctenc, "uu") != NULL)
1727 root 1.1 encoding = UU_ENCODED;
1728 root 1.5 else if (_FP_stristr (myenv.ctenc, "xx") != NULL)
1729 root 1.1 encoding = XX_ENCODED;
1730 root 1.5 else if (_FP_stricmp (myenv.ctenc, "base64") == 0)
1731 root 1.1 encoding = B64ENCODED;
1732 root 1.5 else if (_FP_stricmp (myenv.ctenc, "quoted-printable") == 0)
1733 root 1.1 encoding = QP_ENCODED;
1734     else
1735     encoding = PT_ENCODED;
1736    
1737     UUkillheaders (&myenv);
1738    
1739     /*
1740     * okay, so decode this one
1741     */
1742    
1743     (void) UUDecodePart (NULL, NULL, NULL, 0, 0, 0, NULL); /* init */
1744     return UUDecodePart (datain, dataout, &state, maxpos,
1745     encoding, FL_PROPER|FL_TOEND,
1746     boundary);
1747     }