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1 /* Unix emulation routines for GNU Emacs on the Mac OS.
2 Copyright (C) 2000, 2001, 2002, 2003, 2004,
3 2005, 2006 Free Software Foundation, Inc.
4
5 This file is part of GNU Emacs.
6
7 GNU Emacs is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2, or (at your option)
10 any later version.
11
12 GNU Emacs is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GNU Emacs; see the file COPYING. If not, write to
19 the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor,
20 Boston, MA 02110-1301, USA. */
21
22 /* Contributed by Andrew Choi (akochoi@mac.com). */
23
24 #include <config.h>
25
26 #include <stdio.h>
27 #include <errno.h>
28
29 #include "lisp.h"
30 #include "process.h"
31 #ifdef MAC_OSX
32 #undef select
33 #endif
34 #include "systime.h"
35 #include "sysselect.h"
36 #include "blockinput.h"
37
38 #include "macterm.h"
39
40 #include "charset.h"
41 #include "coding.h"
42 #if !TARGET_API_MAC_CARBON
43 #include <Files.h>
44 #include <MacTypes.h>
45 #include <TextUtils.h>
46 #include <Folders.h>
47 #include <Resources.h>
48 #include <Aliases.h>
49 #include <Timer.h>
50 #include <OSA.h>
51 #include <AppleScript.h>
52 #include <Events.h>
53 #include <Processes.h>
54 #include <EPPC.h>
55 #include <MacLocales.h>
56 #include <Endian.h>
57 #endif /* not TARGET_API_MAC_CARBON */
58
59 #include <utime.h>
60 #include <dirent.h>
61 #include <sys/types.h>
62 #include <sys/stat.h>
63 #include <pwd.h>
64 #include <grp.h>
65 #include <sys/param.h>
66 #include <fcntl.h>
67 #if __MWERKS__
68 #include <unistd.h>
69 #endif
70
71 /* The system script code. */
72 static int mac_system_script_code;
73
74 /* The system locale identifier string. */
75 static Lisp_Object Vmac_system_locale;
76
77 /* An instance of the AppleScript component. */
78 static ComponentInstance as_scripting_component;
79 /* The single script context used for all script executions. */
80 static OSAID as_script_context;
81
82 #ifndef MAC_OSX
83 static OSErr posix_pathname_to_fsspec P_ ((const char *, FSSpec *));
84 static OSErr fsspec_to_posix_pathname P_ ((const FSSpec *, char *, int));
85 #endif
86
87 /* When converting from Mac to Unix pathnames, /'s in folder names are
88 converted to :'s. This function, used in copying folder names,
89 performs a strncat and converts all character a to b in the copy of
90 the string s2 appended to the end of s1. */
91
92 void
93 string_cat_and_replace (char *s1, const char *s2, int n, char a, char b)
94 {
95 int l1 = strlen (s1);
96 int l2 = strlen (s2);
97 char *p = s1 + l1;
98 int i;
99
100 strncat (s1, s2, n);
101 for (i = 0; i < l2; i++)
102 {
103 if (*p == a)
104 *p = b;
105 p++;
106 }
107 }
108
109
110 /* Convert a Mac pathname to Posix form. A Mac full pathname is one
111 that does not begin with a ':' and contains at least one ':'. A Mac
112 full pathname causes a '/' to be prepended to the Posix pathname.
113 The algorithm for the rest of the pathname is as follows:
114 For each segment between two ':',
115 if it is non-null, copy as is and then add a '/' at the end,
116 otherwise, insert a "../" into the Posix pathname.
117 Returns 1 if successful; 0 if fails. */
118
119 int
120 mac_to_posix_pathname (const char *mfn, char *ufn, int ufnbuflen)
121 {
122 const char *p, *q, *pe;
123
124 strcpy (ufn, "");
125
126 if (*mfn == '\0')
127 return 1;
128
129 p = strchr (mfn, ':');
130 if (p != 0 && p != mfn) /* full pathname */
131 strcat (ufn, "/");
132
133 p = mfn;
134 if (*p == ':')
135 p++;
136
137 pe = mfn + strlen (mfn);
138 while (p < pe)
139 {
140 q = strchr (p, ':');
141 if (q)
142 {
143 if (q == p)
144 { /* two consecutive ':' */
145 if (strlen (ufn) + 3 >= ufnbuflen)
146 return 0;
147 strcat (ufn, "../");
148 }
149 else
150 {
151 if (strlen (ufn) + (q - p) + 1 >= ufnbuflen)
152 return 0;
153 string_cat_and_replace (ufn, p, q - p, '/', ':');
154 strcat (ufn, "/");
155 }
156 p = q + 1;
157 }
158 else
159 {
160 if (strlen (ufn) + (pe - p) >= ufnbuflen)
161 return 0;
162 string_cat_and_replace (ufn, p, pe - p, '/', ':');
163 /* no separator for last one */
164 p = pe;
165 }
166 }
167
168 return 1;
169 }
170
171
172 extern char *get_temp_dir_name ();
173
174
175 /* Convert a Posix pathname to Mac form. Approximately reverse of the
176 above in algorithm. */
177
178 int
179 posix_to_mac_pathname (const char *ufn, char *mfn, int mfnbuflen)
180 {
181 const char *p, *q, *pe;
182 char expanded_pathname[MAXPATHLEN+1];
183
184 strcpy (mfn, "");
185
186 if (*ufn == '\0')
187 return 1;
188
189 p = ufn;
190
191 /* Check for and handle volume names. Last comparison: strangely
192 somewhere "/.emacs" is passed. A temporary fix for now. */
193 if (*p == '/' && strchr (p+1, '/') == NULL && strcmp (p, "/.emacs") != 0)
194 {
195 if (strlen (p) + 1 > mfnbuflen)
196 return 0;
197 strcpy (mfn, p+1);
198 strcat (mfn, ":");
199 return 1;
200 }
201
202 /* expand to emacs dir found by init_emacs_passwd_dir */
203 if (strncmp (p, "~emacs/", 7) == 0)
204 {
205 struct passwd *pw = getpwnam ("emacs");
206 p += 7;
207 if (strlen (pw->pw_dir) + strlen (p) > MAXPATHLEN)
208 return 0;
209 strcpy (expanded_pathname, pw->pw_dir);
210 strcat (expanded_pathname, p);
211 p = expanded_pathname;
212 /* now p points to the pathname with emacs dir prefix */
213 }
214 else if (strncmp (p, "/tmp/", 5) == 0)
215 {
216 char *t = get_temp_dir_name ();
217 p += 5;
218 if (strlen (t) + strlen (p) > MAXPATHLEN)
219 return 0;
220 strcpy (expanded_pathname, t);
221 strcat (expanded_pathname, p);
222 p = expanded_pathname;
223 /* now p points to the pathname with emacs dir prefix */
224 }
225 else if (*p != '/') /* relative pathname */
226 strcat (mfn, ":");
227
228 if (*p == '/')
229 p++;
230
231 pe = p + strlen (p);
232 while (p < pe)
233 {
234 q = strchr (p, '/');
235 if (q)
236 {
237 if (q - p == 2 && *p == '.' && *(p+1) == '.')
238 {
239 if (strlen (mfn) + 1 >= mfnbuflen)
240 return 0;
241 strcat (mfn, ":");
242 }
243 else
244 {
245 if (strlen (mfn) + (q - p) + 1 >= mfnbuflen)
246 return 0;
247 string_cat_and_replace (mfn, p, q - p, ':', '/');
248 strcat (mfn, ":");
249 }
250 p = q + 1;
251 }
252 else
253 {
254 if (strlen (mfn) + (pe - p) >= mfnbuflen)
255 return 0;
256 string_cat_and_replace (mfn, p, pe - p, ':', '/');
257 p = pe;
258 }
259 }
260
261 return 1;
262 }
263
264 \f
265 /***********************************************************************
266 Conversions on Apple event objects
267 ***********************************************************************/
268
269 static Lisp_Object Qundecoded_file_name;
270
271 static struct {
272 AEKeyword keyword;
273 char *name;
274 Lisp_Object symbol;
275 } ae_attr_table [] =
276 {{keyTransactionIDAttr, "transaction-id"},
277 {keyReturnIDAttr, "return-id"},
278 {keyEventClassAttr, "event-class"},
279 {keyEventIDAttr, "event-id"},
280 {keyAddressAttr, "address"},
281 {keyOptionalKeywordAttr, "optional-keyword"},
282 {keyTimeoutAttr, "timeout"},
283 {keyInteractLevelAttr, "interact-level"},
284 {keyEventSourceAttr, "event-source"},
285 /* {keyMissedKeywordAttr, "missed-keyword"}, */
286 {keyOriginalAddressAttr, "original-address"},
287 {keyReplyRequestedAttr, "reply-requested"},
288 {KEY_EMACS_SUSPENSION_ID_ATTR, "emacs-suspension-id"}
289 };
290
291 static Lisp_Object
292 mac_aelist_to_lisp (desc_list)
293 const AEDescList *desc_list;
294 {
295 OSErr err;
296 long count;
297 Lisp_Object result, elem;
298 DescType desc_type;
299 Size size;
300 AEKeyword keyword;
301 AEDesc desc;
302 int attribute_p = 0;
303
304 err = AECountItems (desc_list, &count);
305 if (err != noErr)
306 return Qnil;
307 result = Qnil;
308
309 again:
310 while (count > 0)
311 {
312 if (attribute_p)
313 {
314 keyword = ae_attr_table[count - 1].keyword;
315 err = AESizeOfAttribute (desc_list, keyword, &desc_type, &size);
316 }
317 else
318 err = AESizeOfNthItem (desc_list, count, &desc_type, &size);
319
320 if (err == noErr)
321 switch (desc_type)
322 {
323 case typeAEList:
324 case typeAERecord:
325 case typeAppleEvent:
326 if (attribute_p)
327 err = AEGetAttributeDesc (desc_list, keyword, typeWildCard,
328 &desc);
329 else
330 err = AEGetNthDesc (desc_list, count, typeWildCard,
331 &keyword, &desc);
332 if (err != noErr)
333 break;
334 elem = mac_aelist_to_lisp (&desc);
335 AEDisposeDesc (&desc);
336 break;
337
338 default:
339 if (desc_type == typeNull)
340 elem = Qnil;
341 else
342 {
343 elem = make_uninit_string (size);
344 if (attribute_p)
345 err = AEGetAttributePtr (desc_list, keyword, typeWildCard,
346 &desc_type, SDATA (elem),
347 size, &size);
348 else
349 err = AEGetNthPtr (desc_list, count, typeWildCard, &keyword,
350 &desc_type, SDATA (elem), size, &size);
351 }
352 if (err != noErr)
353 break;
354 desc_type = EndianU32_NtoB (desc_type);
355 elem = Fcons (make_unibyte_string ((char *) &desc_type, 4), elem);
356 break;
357 }
358
359 if (err == noErr || desc_list->descriptorType == typeAEList)
360 {
361 if (err != noErr)
362 elem = Qnil; /* Don't skip elements in AEList. */
363 else if (desc_list->descriptorType != typeAEList)
364 {
365 if (attribute_p)
366 elem = Fcons (ae_attr_table[count-1].symbol, elem);
367 else
368 {
369 keyword = EndianU32_NtoB (keyword);
370 elem = Fcons (make_unibyte_string ((char *) &keyword, 4),
371 elem);
372 }
373 }
374
375 result = Fcons (elem, result);
376 }
377
378 count--;
379 }
380
381 if (desc_list->descriptorType == typeAppleEvent && !attribute_p)
382 {
383 attribute_p = 1;
384 count = sizeof (ae_attr_table) / sizeof (ae_attr_table[0]);
385 goto again;
386 }
387
388 desc_type = EndianU32_NtoB (desc_list->descriptorType);
389 return Fcons (make_unibyte_string ((char *) &desc_type, 4), result);
390 }
391
392 Lisp_Object
393 mac_aedesc_to_lisp (desc)
394 const AEDesc *desc;
395 {
396 OSErr err = noErr;
397 DescType desc_type = desc->descriptorType;
398 Lisp_Object result;
399
400 switch (desc_type)
401 {
402 case typeNull:
403 result = Qnil;
404 break;
405
406 case typeAEList:
407 case typeAERecord:
408 case typeAppleEvent:
409 return mac_aelist_to_lisp (desc);
410 #if 0
411 /* The following one is much simpler, but creates and disposes
412 of Apple event descriptors many times. */
413 {
414 long count;
415 Lisp_Object elem;
416 AEKeyword keyword;
417 AEDesc desc1;
418
419 err = AECountItems (desc, &count);
420 if (err != noErr)
421 break;
422 result = Qnil;
423 while (count > 0)
424 {
425 err = AEGetNthDesc (desc, count, typeWildCard, &keyword, &desc1);
426 if (err != noErr)
427 break;
428 elem = mac_aedesc_to_lisp (&desc1);
429 AEDisposeDesc (&desc1);
430 if (desc_type != typeAEList)
431 {
432 keyword = EndianU32_NtoB (keyword);
433 elem = Fcons (make_unibyte_string ((char *) &keyword, 4), elem);
434 }
435 result = Fcons (elem, result);
436 count--;
437 }
438 }
439 #endif
440 break;
441
442 default:
443 #if TARGET_API_MAC_CARBON
444 result = make_uninit_string (AEGetDescDataSize (desc));
445 err = AEGetDescData (desc, SDATA (result), SBYTES (result));
446 #else
447 result = make_uninit_string (GetHandleSize (desc->dataHandle));
448 memcpy (SDATA (result), *(desc->dataHandle), SBYTES (result));
449 #endif
450 break;
451 }
452
453 if (err != noErr)
454 return Qnil;
455
456 desc_type = EndianU32_NtoB (desc_type);
457 return Fcons (make_unibyte_string ((char *) &desc_type, 4), result);
458 }
459
460 OSErr
461 mac_ae_put_lisp (desc, keyword_or_index, obj)
462 AEDescList *desc;
463 UInt32 keyword_or_index;
464 Lisp_Object obj;
465 {
466 OSErr err;
467
468 if (!(desc->descriptorType == typeAppleEvent
469 || desc->descriptorType == typeAERecord
470 || desc->descriptorType == typeAEList))
471 return errAEWrongDataType;
472
473 if (CONSP (obj) && STRINGP (XCAR (obj)) && SBYTES (XCAR (obj)) == 4)
474 {
475 DescType desc_type1 = EndianU32_BtoN (*((UInt32 *) SDATA (XCAR (obj))));
476 Lisp_Object data = XCDR (obj), rest;
477 AEDesc desc1;
478
479 switch (desc_type1)
480 {
481 case typeNull:
482 case typeAppleEvent:
483 break;
484
485 case typeAEList:
486 case typeAERecord:
487 err = AECreateList (NULL, 0, desc_type1 == typeAERecord, &desc1);
488 if (err == noErr)
489 {
490 for (rest = data; CONSP (rest); rest = XCDR (rest))
491 {
492 UInt32 keyword_or_index1 = 0;
493 Lisp_Object elem = XCAR (rest);
494
495 if (desc_type1 == typeAERecord)
496 {
497 if (CONSP (elem) && STRINGP (XCAR (elem))
498 && SBYTES (XCAR (elem)) == 4)
499 {
500 keyword_or_index1 =
501 EndianU32_BtoN (*((UInt32 *)
502 SDATA (XCAR (elem))));
503 elem = XCDR (elem);
504 }
505 else
506 continue;
507 }
508
509 err = mac_ae_put_lisp (&desc1, keyword_or_index1, elem);
510 if (err != noErr)
511 break;
512 }
513
514 if (err == noErr)
515 {
516 if (desc->descriptorType == typeAEList)
517 err = AEPutDesc (desc, keyword_or_index, &desc1);
518 else
519 err = AEPutParamDesc (desc, keyword_or_index, &desc1);
520 }
521
522 AEDisposeDesc (&desc1);
523 }
524 return err;
525
526 default:
527 if (!STRINGP (data))
528 break;
529 if (desc->descriptorType == typeAEList)
530 err = AEPutPtr (desc, keyword_or_index, desc_type1,
531 SDATA (data), SBYTES (data));
532 else
533 err = AEPutParamPtr (desc, keyword_or_index, desc_type1,
534 SDATA (data), SBYTES (data));
535 return err;
536 }
537 }
538
539 if (desc->descriptorType == typeAEList)
540 err = AEPutPtr (desc, keyword_or_index, typeNull, NULL, 0);
541 else
542 err = AEPutParamPtr (desc, keyword_or_index, typeNull, NULL, 0);
543
544 return err;
545 }
546
547 static pascal OSErr
548 mac_coerce_file_name_ptr (type_code, data_ptr, data_size,
549 to_type, handler_refcon, result)
550 DescType type_code;
551 const void *data_ptr;
552 Size data_size;
553 DescType to_type;
554 long handler_refcon;
555 AEDesc *result;
556 {
557 OSErr err;
558
559 if (type_code == typeNull)
560 err = errAECoercionFail;
561 else if (type_code == to_type || to_type == typeWildCard)
562 err = AECreateDesc (TYPE_FILE_NAME, data_ptr, data_size, result);
563 else if (type_code == TYPE_FILE_NAME)
564 /* Coercion from undecoded file name. */
565 {
566 #ifdef MAC_OSX
567 CFStringRef str;
568 CFURLRef url = NULL;
569 CFDataRef data = NULL;
570
571 str = CFStringCreateWithBytes (NULL, data_ptr, data_size,
572 kCFStringEncodingUTF8, false);
573 if (str)
574 {
575 url = CFURLCreateWithFileSystemPath (NULL, str,
576 kCFURLPOSIXPathStyle, false);
577 CFRelease (str);
578 }
579 if (url)
580 {
581 data = CFURLCreateData (NULL, url, kCFStringEncodingUTF8, true);
582 CFRelease (url);
583 }
584 if (data)
585 {
586 err = AECoercePtr (typeFileURL, CFDataGetBytePtr (data),
587 CFDataGetLength (data), to_type, result);
588 CFRelease (data);
589 }
590 else
591 err = memFullErr;
592
593 if (err != noErr)
594 {
595 /* Just to be paranoid ... */
596 FSRef fref;
597 char *buf;
598
599 buf = xmalloc (data_size + 1);
600 memcpy (buf, data_ptr, data_size);
601 buf[data_size] = '\0';
602 err = FSPathMakeRef (buf, &fref, NULL);
603 xfree (buf);
604 if (err == noErr)
605 err = AECoercePtr (typeFSRef, &fref, sizeof (FSRef),
606 to_type, result);
607 }
608 #else
609 FSSpec fs;
610 char *buf;
611
612 buf = xmalloc (data_size + 1);
613 memcpy (buf, data_ptr, data_size);
614 buf[data_size] = '\0';
615 err = posix_pathname_to_fsspec (buf, &fs);
616 xfree (buf);
617 if (err == noErr)
618 err = AECoercePtr (typeFSS, &fs, sizeof (FSSpec), to_type, result);
619 #endif
620 }
621 else if (to_type == TYPE_FILE_NAME)
622 /* Coercion to undecoded file name. */
623 {
624 #ifdef MAC_OSX
625 CFURLRef url = NULL;
626 CFStringRef str = NULL;
627 CFDataRef data = NULL;
628
629 if (type_code == typeFileURL)
630 url = CFURLCreateWithBytes (NULL, data_ptr, data_size,
631 kCFStringEncodingUTF8, NULL);
632 else
633 {
634 AEDesc desc;
635 Size size;
636 char *buf;
637
638 err = AECoercePtr (type_code, data_ptr, data_size,
639 typeFileURL, &desc);
640 if (err == noErr)
641 {
642 size = AEGetDescDataSize (&desc);
643 buf = xmalloc (size);
644 err = AEGetDescData (&desc, buf, size);
645 if (err == noErr)
646 url = CFURLCreateWithBytes (NULL, buf, size,
647 kCFStringEncodingUTF8, NULL);
648 xfree (buf);
649 AEDisposeDesc (&desc);
650 }
651 }
652 if (url)
653 {
654 str = CFURLCopyFileSystemPath (url, kCFURLPOSIXPathStyle);
655 CFRelease (url);
656 }
657 if (str)
658 {
659 data = CFStringCreateExternalRepresentation (NULL, str,
660 kCFStringEncodingUTF8,
661 '\0');
662 CFRelease (str);
663 }
664 if (data)
665 {
666 err = AECreateDesc (TYPE_FILE_NAME, CFDataGetBytePtr (data),
667 CFDataGetLength (data), result);
668 CFRelease (data);
669 }
670
671 if (err != noErr)
672 {
673 /* Coercion from typeAlias to typeFileURL fails on Mac OS X
674 10.2. In such cases, try typeFSRef as a target type. */
675 char file_name[MAXPATHLEN];
676
677 if (type_code == typeFSRef && data_size == sizeof (FSRef))
678 err = FSRefMakePath (data_ptr, file_name, sizeof (file_name));
679 else
680 {
681 AEDesc desc;
682 FSRef fref;
683
684 err = AECoercePtr (type_code, data_ptr, data_size,
685 typeFSRef, &desc);
686 if (err == noErr)
687 {
688 err = AEGetDescData (&desc, &fref, sizeof (FSRef));
689 AEDisposeDesc (&desc);
690 }
691 if (err == noErr)
692 err = FSRefMakePath (&fref, file_name, sizeof (file_name));
693 }
694 if (err == noErr)
695 err = AECreateDesc (TYPE_FILE_NAME, file_name,
696 strlen (file_name), result);
697 }
698 #else
699 char file_name[MAXPATHLEN];
700
701 if (type_code == typeFSS && data_size == sizeof (FSSpec))
702 err = fsspec_to_posix_pathname (data_ptr, file_name,
703 sizeof (file_name) - 1);
704 else
705 {
706 AEDesc desc;
707 FSSpec fs;
708
709 err = AECoercePtr (type_code, data_ptr, data_size, typeFSS, &desc);
710 if (err == noErr)
711 {
712 #if TARGET_API_MAC_CARBON
713 err = AEGetDescData (&desc, &fs, sizeof (FSSpec));
714 #else
715 fs = *(FSSpec *)(*(desc.dataHandle));
716 #endif
717 AEDisposeDesc (&desc);
718 }
719 if (err == noErr)
720 err = fsspec_to_posix_pathname (&fs, file_name,
721 sizeof (file_name) - 1);
722 }
723 if (err == noErr)
724 err = AECreateDesc (TYPE_FILE_NAME, file_name,
725 strlen (file_name), result);
726 #endif
727 }
728 else
729 abort ();
730
731 if (err != noErr)
732 return errAECoercionFail;
733 return noErr;
734 }
735
736 static pascal OSErr
737 mac_coerce_file_name_desc (from_desc, to_type, handler_refcon, result)
738 const AEDesc *from_desc;
739 DescType to_type;
740 long handler_refcon;
741 AEDesc *result;
742 {
743 OSErr err = noErr;
744 DescType from_type = from_desc->descriptorType;
745
746 if (from_type == typeNull)
747 err = errAECoercionFail;
748 else if (from_type == to_type || to_type == typeWildCard)
749 err = AEDuplicateDesc (from_desc, result);
750 else
751 {
752 char *data_ptr;
753 Size data_size;
754
755 #if TARGET_API_MAC_CARBON
756 data_size = AEGetDescDataSize (from_desc);
757 #else
758 data_size = GetHandleSize (from_desc->dataHandle);
759 #endif
760 data_ptr = xmalloc (data_size);
761 #if TARGET_API_MAC_CARBON
762 err = AEGetDescData (from_desc, data_ptr, data_size);
763 #else
764 memcpy (data_ptr, *(from_desc->dataHandle), data_size);
765 #endif
766 if (err == noErr)
767 err = mac_coerce_file_name_ptr (from_type, data_ptr,
768 data_size, to_type,
769 handler_refcon, result);
770 xfree (data_ptr);
771 }
772
773 if (err != noErr)
774 return errAECoercionFail;
775 return noErr;
776 }
777
778 OSErr
779 init_coercion_handler ()
780 {
781 OSErr err;
782
783 static AECoercePtrUPP coerce_file_name_ptrUPP = NULL;
784 static AECoerceDescUPP coerce_file_name_descUPP = NULL;
785
786 if (coerce_file_name_ptrUPP == NULL)
787 {
788 coerce_file_name_ptrUPP = NewAECoercePtrUPP (mac_coerce_file_name_ptr);
789 coerce_file_name_descUPP = NewAECoerceDescUPP (mac_coerce_file_name_desc);
790 }
791
792 err = AEInstallCoercionHandler (TYPE_FILE_NAME, typeWildCard,
793 (AECoercionHandlerUPP)
794 coerce_file_name_ptrUPP, 0, false, false);
795 if (err == noErr)
796 err = AEInstallCoercionHandler (typeWildCard, TYPE_FILE_NAME,
797 (AECoercionHandlerUPP)
798 coerce_file_name_ptrUPP, 0, false, false);
799 if (err == noErr)
800 err = AEInstallCoercionHandler (TYPE_FILE_NAME, typeWildCard,
801 coerce_file_name_descUPP, 0, true, false);
802 if (err == noErr)
803 err = AEInstallCoercionHandler (typeWildCard, TYPE_FILE_NAME,
804 coerce_file_name_descUPP, 0, true, false);
805 return err;
806 }
807
808 #if TARGET_API_MAC_CARBON
809 static OSErr
810 create_apple_event (class, id, result)
811 AEEventClass class;
812 AEEventID id;
813 AppleEvent *result;
814 {
815 OSErr err;
816 static const ProcessSerialNumber psn = {0, kCurrentProcess};
817 AEAddressDesc address_desc;
818
819 err = AECreateDesc (typeProcessSerialNumber, &psn,
820 sizeof (ProcessSerialNumber), &address_desc);
821 if (err == noErr)
822 {
823 err = AECreateAppleEvent (class, id,
824 &address_desc, /* NULL is not allowed
825 on Mac OS Classic. */
826 kAutoGenerateReturnID,
827 kAnyTransactionID, result);
828 AEDisposeDesc (&address_desc);
829 }
830
831 return err;
832 }
833
834 OSStatus
835 create_apple_event_from_event_ref (event, num_params, names, types, result)
836 EventRef event;
837 UInt32 num_params;
838 const EventParamName *names;
839 const EventParamType *types;
840 AppleEvent *result;
841 {
842 OSStatus err;
843 UInt32 i, size;
844 CFStringRef string;
845 CFDataRef data;
846 char *buf = NULL;
847
848 err = create_apple_event (0, 0, result); /* Dummy class and ID. */
849 if (err != noErr)
850 return err;
851
852 for (i = 0; i < num_params; i++)
853 switch (types[i])
854 {
855 #ifdef MAC_OSX
856 case typeCFStringRef:
857 err = GetEventParameter (event, names[i], typeCFStringRef, NULL,
858 sizeof (CFStringRef), NULL, &string);
859 if (err != noErr)
860 break;
861 data = CFStringCreateExternalRepresentation (NULL, string,
862 kCFStringEncodingUTF8,
863 '?');
864 if (data == NULL)
865 break;
866 AEPutParamPtr (result, names[i], typeUTF8Text,
867 CFDataGetBytePtr (data), CFDataGetLength (data));
868 CFRelease (data);
869 break;
870 #endif
871
872 default:
873 err = GetEventParameter (event, names[i], types[i], NULL,
874 0, &size, NULL);
875 if (err != noErr)
876 break;
877 buf = xrealloc (buf, size);
878 err = GetEventParameter (event, names[i], types[i], NULL,
879 size, NULL, buf);
880 if (err == noErr)
881 AEPutParamPtr (result, names[i], types[i], buf, size);
882 break;
883 }
884 if (buf)
885 xfree (buf);
886
887 return noErr;
888 }
889
890 OSErr
891 create_apple_event_from_drag_ref (drag, num_types, types, result)
892 DragRef drag;
893 UInt32 num_types;
894 const FlavorType *types;
895 AppleEvent *result;
896 {
897 OSErr err;
898 UInt16 num_items;
899 AppleEvent items;
900 long index;
901 char *buf = NULL;
902
903 err = CountDragItems (drag, &num_items);
904 if (err != noErr)
905 return err;
906 err = AECreateList (NULL, 0, false, &items);
907 if (err != noErr)
908 return err;
909
910 for (index = 1; index <= num_items; index++)
911 {
912 ItemReference item;
913 DescType desc_type = typeNull;
914 Size size;
915
916 err = GetDragItemReferenceNumber (drag, index, &item);
917 if (err == noErr)
918 {
919 int i;
920
921 for (i = 0; i < num_types; i++)
922 {
923 err = GetFlavorDataSize (drag, item, types[i], &size);
924 if (err == noErr)
925 {
926 buf = xrealloc (buf, size);
927 err = GetFlavorData (drag, item, types[i], buf, &size, 0);
928 }
929 if (err == noErr)
930 {
931 desc_type = types[i];
932 break;
933 }
934 }
935 }
936 err = AEPutPtr (&items, index, desc_type,
937 desc_type != typeNull ? buf : NULL,
938 desc_type != typeNull ? size : 0);
939 if (err != noErr)
940 break;
941 }
942 if (buf)
943 xfree (buf);
944
945 if (err == noErr)
946 {
947 err = create_apple_event (0, 0, result); /* Dummy class and ID. */
948 if (err == noErr)
949 err = AEPutParamDesc (result, keyDirectObject, &items);
950 if (err != noErr)
951 AEDisposeDesc (result);
952 }
953
954 AEDisposeDesc (&items);
955
956 return err;
957 }
958 #endif /* TARGET_API_MAC_CARBON */
959 \f
960 /***********************************************************************
961 Conversion between Lisp and Core Foundation objects
962 ***********************************************************************/
963
964 #if TARGET_API_MAC_CARBON
965 static Lisp_Object Qstring, Qnumber, Qboolean, Qdate, Qdata;
966 static Lisp_Object Qarray, Qdictionary;
967
968 struct cfdict_context
969 {
970 Lisp_Object *result;
971 int with_tag, hash_bound;
972 };
973
974 /* C string to CFString. */
975
976 CFStringRef
977 cfstring_create_with_utf8_cstring (c_str)
978 const char *c_str;
979 {
980 CFStringRef str;
981
982 str = CFStringCreateWithCString (NULL, c_str, kCFStringEncodingUTF8);
983 if (str == NULL)
984 /* Failed to interpret as UTF 8. Fall back on Mac Roman. */
985 str = CFStringCreateWithCString (NULL, c_str, kCFStringEncodingMacRoman);
986
987 return str;
988 }
989
990
991 /* Lisp string to CFString. */
992
993 CFStringRef
994 cfstring_create_with_string (s)
995 Lisp_Object s;
996 {
997 CFStringRef string = NULL;
998
999 if (STRING_MULTIBYTE (s))
1000 {
1001 char *p, *end = SDATA (s) + SBYTES (s);
1002
1003 for (p = SDATA (s); p < end; p++)
1004 if (!isascii (*p))
1005 {
1006 s = ENCODE_UTF_8 (s);
1007 break;
1008 }
1009 string = CFStringCreateWithBytes (NULL, SDATA (s), SBYTES (s),
1010 kCFStringEncodingUTF8, false);
1011 }
1012
1013 if (string == NULL)
1014 /* Failed to interpret as UTF 8. Fall back on Mac Roman. */
1015 string = CFStringCreateWithBytes (NULL, SDATA (s), SBYTES (s),
1016 kCFStringEncodingMacRoman, false);
1017
1018 return string;
1019 }
1020
1021
1022 /* From CFData to a lisp string. Always returns a unibyte string. */
1023
1024 Lisp_Object
1025 cfdata_to_lisp (data)
1026 CFDataRef data;
1027 {
1028 CFIndex len = CFDataGetLength (data);
1029 Lisp_Object result = make_uninit_string (len);
1030
1031 CFDataGetBytes (data, CFRangeMake (0, len), SDATA (result));
1032
1033 return result;
1034 }
1035
1036
1037 /* From CFString to a lisp string. Returns a unibyte string
1038 containing a UTF-8 byte sequence. */
1039
1040 Lisp_Object
1041 cfstring_to_lisp_nodecode (string)
1042 CFStringRef string;
1043 {
1044 Lisp_Object result = Qnil;
1045 const char *s = CFStringGetCStringPtr (string, kCFStringEncodingUTF8);
1046
1047 if (s)
1048 result = make_unibyte_string (s, strlen (s));
1049 else
1050 {
1051 CFDataRef data =
1052 CFStringCreateExternalRepresentation (NULL, string,
1053 kCFStringEncodingUTF8, '?');
1054
1055 if (data)
1056 {
1057 result = cfdata_to_lisp (data);
1058 CFRelease (data);
1059 }
1060 }
1061
1062 return result;
1063 }
1064
1065
1066 /* From CFString to a lisp string. Never returns a unibyte string
1067 (even if it only contains ASCII characters).
1068 This may cause GC during code conversion. */
1069
1070 Lisp_Object
1071 cfstring_to_lisp (string)
1072 CFStringRef string;
1073 {
1074 Lisp_Object result = cfstring_to_lisp_nodecode (string);
1075
1076 if (!NILP (result))
1077 {
1078 result = code_convert_string_norecord (result, Qutf_8, 0);
1079 /* This may be superfluous. Just to make sure that the result
1080 is a multibyte string. */
1081 result = string_to_multibyte (result);
1082 }
1083
1084 return result;
1085 }
1086
1087
1088 /* CFNumber to a lisp integer or a lisp float. */
1089
1090 Lisp_Object
1091 cfnumber_to_lisp (number)
1092 CFNumberRef number;
1093 {
1094 Lisp_Object result = Qnil;
1095 #if BITS_PER_EMACS_INT > 32
1096 SInt64 int_val;
1097 CFNumberType emacs_int_type = kCFNumberSInt64Type;
1098 #else
1099 SInt32 int_val;
1100 CFNumberType emacs_int_type = kCFNumberSInt32Type;
1101 #endif
1102 double float_val;
1103
1104 if (CFNumberGetValue (number, emacs_int_type, &int_val)
1105 && !FIXNUM_OVERFLOW_P (int_val))
1106 result = make_number (int_val);
1107 else
1108 if (CFNumberGetValue (number, kCFNumberDoubleType, &float_val))
1109 result = make_float (float_val);
1110 return result;
1111 }
1112
1113
1114 /* CFDate to a list of three integers as in a return value of
1115 `current-time'. */
1116
1117 Lisp_Object
1118 cfdate_to_lisp (date)
1119 CFDateRef date;
1120 {
1121 static const CFGregorianDate epoch_gdate = {1970, 1, 1, 0, 0, 0.0};
1122 static CFAbsoluteTime epoch = 0.0, sec;
1123 int high, low;
1124
1125 if (epoch == 0.0)
1126 epoch = CFGregorianDateGetAbsoluteTime (epoch_gdate, NULL);
1127
1128 sec = CFDateGetAbsoluteTime (date) - epoch;
1129 high = sec / 65536.0;
1130 low = sec - high * 65536.0;
1131
1132 return list3 (make_number (high), make_number (low), make_number (0));
1133 }
1134
1135
1136 /* CFBoolean to a lisp symbol, `t' or `nil'. */
1137
1138 Lisp_Object
1139 cfboolean_to_lisp (boolean)
1140 CFBooleanRef boolean;
1141 {
1142 return CFBooleanGetValue (boolean) ? Qt : Qnil;
1143 }
1144
1145
1146 /* Any Core Foundation object to a (lengthy) lisp string. */
1147
1148 Lisp_Object
1149 cfobject_desc_to_lisp (object)
1150 CFTypeRef object;
1151 {
1152 Lisp_Object result = Qnil;
1153 CFStringRef desc = CFCopyDescription (object);
1154
1155 if (desc)
1156 {
1157 result = cfstring_to_lisp (desc);
1158 CFRelease (desc);
1159 }
1160
1161 return result;
1162 }
1163
1164
1165 /* Callback functions for cfproperty_list_to_lisp. */
1166
1167 static void
1168 cfdictionary_add_to_list (key, value, context)
1169 const void *key;
1170 const void *value;
1171 void *context;
1172 {
1173 struct cfdict_context *cxt = (struct cfdict_context *)context;
1174
1175 *cxt->result =
1176 Fcons (Fcons (cfstring_to_lisp (key),
1177 cfproperty_list_to_lisp (value, cxt->with_tag,
1178 cxt->hash_bound)),
1179 *cxt->result);
1180 }
1181
1182 static void
1183 cfdictionary_puthash (key, value, context)
1184 const void *key;
1185 const void *value;
1186 void *context;
1187 {
1188 Lisp_Object lisp_key = cfstring_to_lisp (key);
1189 struct cfdict_context *cxt = (struct cfdict_context *)context;
1190 struct Lisp_Hash_Table *h = XHASH_TABLE (*(cxt->result));
1191 unsigned hash_code;
1192
1193 hash_lookup (h, lisp_key, &hash_code);
1194 hash_put (h, lisp_key,
1195 cfproperty_list_to_lisp (value, cxt->with_tag, cxt->hash_bound),
1196 hash_code);
1197 }
1198
1199
1200 /* Convert CFPropertyList PLIST to a lisp object. If WITH_TAG is
1201 non-zero, a symbol that represents the type of the original Core
1202 Foundation object is prepended. HASH_BOUND specifies which kinds
1203 of the lisp objects, alists or hash tables, are used as the targets
1204 of the conversion from CFDictionary. If HASH_BOUND is negative,
1205 always generate alists. If HASH_BOUND >= 0, generate an alist if
1206 the number of keys in the dictionary is smaller than HASH_BOUND,
1207 and a hash table otherwise. */
1208
1209 Lisp_Object
1210 cfproperty_list_to_lisp (plist, with_tag, hash_bound)
1211 CFPropertyListRef plist;
1212 int with_tag, hash_bound;
1213 {
1214 CFTypeID type_id = CFGetTypeID (plist);
1215 Lisp_Object tag = Qnil, result = Qnil;
1216 struct gcpro gcpro1, gcpro2;
1217
1218 GCPRO2 (tag, result);
1219
1220 if (type_id == CFStringGetTypeID ())
1221 {
1222 tag = Qstring;
1223 result = cfstring_to_lisp (plist);
1224 }
1225 else if (type_id == CFNumberGetTypeID ())
1226 {
1227 tag = Qnumber;
1228 result = cfnumber_to_lisp (plist);
1229 }
1230 else if (type_id == CFBooleanGetTypeID ())
1231 {
1232 tag = Qboolean;
1233 result = cfboolean_to_lisp (plist);
1234 }
1235 else if (type_id == CFDateGetTypeID ())
1236 {
1237 tag = Qdate;
1238 result = cfdate_to_lisp (plist);
1239 }
1240 else if (type_id == CFDataGetTypeID ())
1241 {
1242 tag = Qdata;
1243 result = cfdata_to_lisp (plist);
1244 }
1245 else if (type_id == CFArrayGetTypeID ())
1246 {
1247 CFIndex index, count = CFArrayGetCount (plist);
1248
1249 tag = Qarray;
1250 result = Fmake_vector (make_number (count), Qnil);
1251 for (index = 0; index < count; index++)
1252 XVECTOR (result)->contents[index] =
1253 cfproperty_list_to_lisp (CFArrayGetValueAtIndex (plist, index),
1254 with_tag, hash_bound);
1255 }
1256 else if (type_id == CFDictionaryGetTypeID ())
1257 {
1258 struct cfdict_context context;
1259 CFIndex count = CFDictionaryGetCount (plist);
1260
1261 tag = Qdictionary;
1262 context.result = &result;
1263 context.with_tag = with_tag;
1264 context.hash_bound = hash_bound;
1265 if (hash_bound < 0 || count < hash_bound)
1266 {
1267 result = Qnil;
1268 CFDictionaryApplyFunction (plist, cfdictionary_add_to_list,
1269 &context);
1270 }
1271 else
1272 {
1273 result = make_hash_table (Qequal,
1274 make_number (count),
1275 make_float (DEFAULT_REHASH_SIZE),
1276 make_float (DEFAULT_REHASH_THRESHOLD),
1277 Qnil, Qnil, Qnil);
1278 CFDictionaryApplyFunction (plist, cfdictionary_puthash,
1279 &context);
1280 }
1281 }
1282 else
1283 abort ();
1284
1285 UNGCPRO;
1286
1287 if (with_tag)
1288 result = Fcons (tag, result);
1289
1290 return result;
1291 }
1292 #endif
1293
1294 \f
1295 /***********************************************************************
1296 Emulation of the X Resource Manager
1297 ***********************************************************************/
1298
1299 /* Parser functions for resource lines. Each function takes an
1300 address of a variable whose value points to the head of a string.
1301 The value will be advanced so that it points to the next character
1302 of the parsed part when the function returns.
1303
1304 A resource name such as "Emacs*font" is parsed into a non-empty
1305 list called `quarks'. Each element is either a Lisp string that
1306 represents a concrete component, a Lisp symbol LOOSE_BINDING
1307 (actually Qlambda) that represents any number (>=0) of intervening
1308 components, or a Lisp symbol SINGLE_COMPONENT (actually Qquote)
1309 that represents as any single component. */
1310
1311 #define P (*p)
1312
1313 #define LOOSE_BINDING Qlambda /* '*' ("L"oose) */
1314 #define SINGLE_COMPONENT Qquote /* '?' ("Q"uestion) */
1315
1316 static void
1317 skip_white_space (p)
1318 const char **p;
1319 {
1320 /* WhiteSpace = {<space> | <horizontal tab>} */
1321 while (*P == ' ' || *P == '\t')
1322 P++;
1323 }
1324
1325 static int
1326 parse_comment (p)
1327 const char **p;
1328 {
1329 /* Comment = "!" {<any character except null or newline>} */
1330 if (*P == '!')
1331 {
1332 P++;
1333 while (*P)
1334 if (*P++ == '\n')
1335 break;
1336 return 1;
1337 }
1338 else
1339 return 0;
1340 }
1341
1342 /* Don't interpret filename. Just skip until the newline. */
1343 static int
1344 parse_include_file (p)
1345 const char **p;
1346 {
1347 /* IncludeFile = "#" WhiteSpace "include" WhiteSpace FileName WhiteSpace */
1348 if (*P == '#')
1349 {
1350 P++;
1351 while (*P)
1352 if (*P++ == '\n')
1353 break;
1354 return 1;
1355 }
1356 else
1357 return 0;
1358 }
1359
1360 static char
1361 parse_binding (p)
1362 const char **p;
1363 {
1364 /* Binding = "." | "*" */
1365 if (*P == '.' || *P == '*')
1366 {
1367 char binding = *P++;
1368
1369 while (*P == '.' || *P == '*')
1370 if (*P++ == '*')
1371 binding = '*';
1372 return binding;
1373 }
1374 else
1375 return '\0';
1376 }
1377
1378 static Lisp_Object
1379 parse_component (p)
1380 const char **p;
1381 {
1382 /* Component = "?" | ComponentName
1383 ComponentName = NameChar {NameChar}
1384 NameChar = "a"-"z" | "A"-"Z" | "0"-"9" | "_" | "-" */
1385 if (*P == '?')
1386 {
1387 P++;
1388 return SINGLE_COMPONENT;
1389 }
1390 else if (isalnum (*P) || *P == '_' || *P == '-')
1391 {
1392 const char *start = P++;
1393
1394 while (isalnum (*P) || *P == '_' || *P == '-')
1395 P++;
1396
1397 return make_unibyte_string (start, P - start);
1398 }
1399 else
1400 return Qnil;
1401 }
1402
1403 static Lisp_Object
1404 parse_resource_name (p)
1405 const char **p;
1406 {
1407 Lisp_Object result = Qnil, component;
1408 char binding;
1409
1410 /* ResourceName = [Binding] {Component Binding} ComponentName */
1411 if (parse_binding (p) == '*')
1412 result = Fcons (LOOSE_BINDING, result);
1413
1414 component = parse_component (p);
1415 if (NILP (component))
1416 return Qnil;
1417
1418 result = Fcons (component, result);
1419 while ((binding = parse_binding (p)) != '\0')
1420 {
1421 if (binding == '*')
1422 result = Fcons (LOOSE_BINDING, result);
1423 component = parse_component (p);
1424 if (NILP (component))
1425 return Qnil;
1426 else
1427 result = Fcons (component, result);
1428 }
1429
1430 /* The final component should not be '?'. */
1431 if (EQ (component, SINGLE_COMPONENT))
1432 return Qnil;
1433
1434 return Fnreverse (result);
1435 }
1436
1437 static Lisp_Object
1438 parse_value (p)
1439 const char **p;
1440 {
1441 char *q, *buf;
1442 Lisp_Object seq = Qnil, result;
1443 int buf_len, total_len = 0, len, continue_p;
1444
1445 q = strchr (P, '\n');
1446 buf_len = q ? q - P : strlen (P);
1447 buf = xmalloc (buf_len);
1448
1449 while (1)
1450 {
1451 q = buf;
1452 continue_p = 0;
1453 while (*P)
1454 {
1455 if (*P == '\n')
1456 {
1457 P++;
1458 break;
1459 }
1460 else if (*P == '\\')
1461 {
1462 P++;
1463 if (*P == '\0')
1464 break;
1465 else if (*P == '\n')
1466 {
1467 P++;
1468 continue_p = 1;
1469 break;
1470 }
1471 else if (*P == 'n')
1472 {
1473 *q++ = '\n';
1474 P++;
1475 }
1476 else if ('0' <= P[0] && P[0] <= '7'
1477 && '0' <= P[1] && P[1] <= '7'
1478 && '0' <= P[2] && P[2] <= '7')
1479 {
1480 *q++ = ((P[0] - '0') << 6) + ((P[1] - '0') << 3) + (P[2] - '0');
1481 P += 3;
1482 }
1483 else
1484 *q++ = *P++;
1485 }
1486 else
1487 *q++ = *P++;
1488 }
1489 len = q - buf;
1490 seq = Fcons (make_unibyte_string (buf, len), seq);
1491 total_len += len;
1492
1493 if (continue_p)
1494 {
1495 q = strchr (P, '\n');
1496 len = q ? q - P : strlen (P);
1497 if (len > buf_len)
1498 {
1499 xfree (buf);
1500 buf_len = len;
1501 buf = xmalloc (buf_len);
1502 }
1503 }
1504 else
1505 break;
1506 }
1507 xfree (buf);
1508
1509 if (SBYTES (XCAR (seq)) == total_len)
1510 return make_string (SDATA (XCAR (seq)), total_len);
1511 else
1512 {
1513 buf = xmalloc (total_len);
1514 q = buf + total_len;
1515 for (; CONSP (seq); seq = XCDR (seq))
1516 {
1517 len = SBYTES (XCAR (seq));
1518 q -= len;
1519 memcpy (q, SDATA (XCAR (seq)), len);
1520 }
1521 result = make_string (buf, total_len);
1522 xfree (buf);
1523 return result;
1524 }
1525 }
1526
1527 static Lisp_Object
1528 parse_resource_line (p)
1529 const char **p;
1530 {
1531 Lisp_Object quarks, value;
1532
1533 /* ResourceLine = Comment | IncludeFile | ResourceSpec | <empty line> */
1534 if (parse_comment (p) || parse_include_file (p))
1535 return Qnil;
1536
1537 /* ResourceSpec = WhiteSpace ResourceName WhiteSpace ":" WhiteSpace Value */
1538 skip_white_space (p);
1539 quarks = parse_resource_name (p);
1540 if (NILP (quarks))
1541 goto cleanup;
1542 skip_white_space (p);
1543 if (*P != ':')
1544 goto cleanup;
1545 P++;
1546 skip_white_space (p);
1547 value = parse_value (p);
1548 return Fcons (quarks, value);
1549
1550 cleanup:
1551 /* Skip the remaining data as a dummy value. */
1552 parse_value (p);
1553 return Qnil;
1554 }
1555
1556 #undef P
1557
1558 /* Equivalents of X Resource Manager functions.
1559
1560 An X Resource Database acts as a collection of resource names and
1561 associated values. It is implemented as a trie on quarks. Namely,
1562 each edge is labeled by either a string, LOOSE_BINDING, or
1563 SINGLE_COMPONENT. Each node has a node id, which is a unique
1564 nonnegative integer, and the root node id is 0. A database is
1565 implemented as a hash table that maps a pair (SRC-NODE-ID .
1566 EDGE-LABEL) to DEST-NODE-ID. It also holds a maximum node id used
1567 in the table as a value for HASHKEY_MAX_NID. A value associated to
1568 a node is recorded as a value for the node id.
1569
1570 A database also has a cache for past queries as a value for
1571 HASHKEY_QUERY_CACHE. It is another hash table that maps
1572 "NAME-STRING\0CLASS-STRING" to the result of the query. */
1573
1574 #define HASHKEY_MAX_NID (make_number (0))
1575 #define HASHKEY_QUERY_CACHE (make_number (-1))
1576
1577 static XrmDatabase
1578 xrm_create_database ()
1579 {
1580 XrmDatabase database;
1581
1582 database = make_hash_table (Qequal, make_number (DEFAULT_HASH_SIZE),
1583 make_float (DEFAULT_REHASH_SIZE),
1584 make_float (DEFAULT_REHASH_THRESHOLD),
1585 Qnil, Qnil, Qnil);
1586 Fputhash (HASHKEY_MAX_NID, make_number (0), database);
1587 Fputhash (HASHKEY_QUERY_CACHE, Qnil, database);
1588
1589 return database;
1590 }
1591
1592 static void
1593 xrm_q_put_resource (database, quarks, value)
1594 XrmDatabase database;
1595 Lisp_Object quarks, value;
1596 {
1597 struct Lisp_Hash_Table *h = XHASH_TABLE (database);
1598 unsigned hash_code;
1599 int max_nid, i;
1600 Lisp_Object node_id, key;
1601
1602 max_nid = XINT (Fgethash (HASHKEY_MAX_NID, database, Qnil));
1603
1604 XSETINT (node_id, 0);
1605 for (; CONSP (quarks); quarks = XCDR (quarks))
1606 {
1607 key = Fcons (node_id, XCAR (quarks));
1608 i = hash_lookup (h, key, &hash_code);
1609 if (i < 0)
1610 {
1611 max_nid++;
1612 XSETINT (node_id, max_nid);
1613 hash_put (h, key, node_id, hash_code);
1614 }
1615 else
1616 node_id = HASH_VALUE (h, i);
1617 }
1618 Fputhash (node_id, value, database);
1619
1620 Fputhash (HASHKEY_MAX_NID, make_number (max_nid), database);
1621 Fputhash (HASHKEY_QUERY_CACHE, Qnil, database);
1622 }
1623
1624 /* Merge multiple resource entries specified by DATA into a resource
1625 database DATABASE. DATA points to the head of a null-terminated
1626 string consisting of multiple resource lines. It's like a
1627 combination of XrmGetStringDatabase and XrmMergeDatabases. */
1628
1629 void
1630 xrm_merge_string_database (database, data)
1631 XrmDatabase database;
1632 const char *data;
1633 {
1634 Lisp_Object quarks_value;
1635
1636 while (*data)
1637 {
1638 quarks_value = parse_resource_line (&data);
1639 if (!NILP (quarks_value))
1640 xrm_q_put_resource (database,
1641 XCAR (quarks_value), XCDR (quarks_value));
1642 }
1643 }
1644
1645 static Lisp_Object
1646 xrm_q_get_resource_1 (database, node_id, quark_name, quark_class)
1647 XrmDatabase database;
1648 Lisp_Object node_id, quark_name, quark_class;
1649 {
1650 struct Lisp_Hash_Table *h = XHASH_TABLE (database);
1651 Lisp_Object key, labels[3], value;
1652 int i, k;
1653
1654 if (!CONSP (quark_name))
1655 return Fgethash (node_id, database, Qnil);
1656
1657 /* First, try tight bindings */
1658 labels[0] = XCAR (quark_name);
1659 labels[1] = XCAR (quark_class);
1660 labels[2] = SINGLE_COMPONENT;
1661
1662 key = Fcons (node_id, Qnil);
1663 for (k = 0; k < sizeof (labels) / sizeof (*labels); k++)
1664 {
1665 XSETCDR (key, labels[k]);
1666 i = hash_lookup (h, key, NULL);
1667 if (i >= 0)
1668 {
1669 value = xrm_q_get_resource_1 (database, HASH_VALUE (h, i),
1670 XCDR (quark_name), XCDR (quark_class));
1671 if (!NILP (value))
1672 return value;
1673 }
1674 }
1675
1676 /* Then, try loose bindings */
1677 XSETCDR (key, LOOSE_BINDING);
1678 i = hash_lookup (h, key, NULL);
1679 if (i >= 0)
1680 {
1681 value = xrm_q_get_resource_1 (database, HASH_VALUE (h, i),
1682 quark_name, quark_class);
1683 if (!NILP (value))
1684 return value;
1685 else
1686 return xrm_q_get_resource_1 (database, node_id,
1687 XCDR (quark_name), XCDR (quark_class));
1688 }
1689 else
1690 return Qnil;
1691 }
1692
1693 static Lisp_Object
1694 xrm_q_get_resource (database, quark_name, quark_class)
1695 XrmDatabase database;
1696 Lisp_Object quark_name, quark_class;
1697 {
1698 return xrm_q_get_resource_1 (database, make_number (0),
1699 quark_name, quark_class);
1700 }
1701
1702 /* Retrieve a resource value for the specified NAME and CLASS from the
1703 resource database DATABASE. It corresponds to XrmGetResource. */
1704
1705 Lisp_Object
1706 xrm_get_resource (database, name, class)
1707 XrmDatabase database;
1708 const char *name, *class;
1709 {
1710 Lisp_Object key, query_cache, quark_name, quark_class, tmp;
1711 int i, nn, nc;
1712 struct Lisp_Hash_Table *h;
1713 unsigned hash_code;
1714
1715 nn = strlen (name);
1716 nc = strlen (class);
1717 key = make_uninit_string (nn + nc + 1);
1718 strcpy (SDATA (key), name);
1719 strncpy (SDATA (key) + nn + 1, class, nc);
1720
1721 query_cache = Fgethash (HASHKEY_QUERY_CACHE, database, Qnil);
1722 if (NILP (query_cache))
1723 {
1724 query_cache = make_hash_table (Qequal, make_number (DEFAULT_HASH_SIZE),
1725 make_float (DEFAULT_REHASH_SIZE),
1726 make_float (DEFAULT_REHASH_THRESHOLD),
1727 Qnil, Qnil, Qnil);
1728 Fputhash (HASHKEY_QUERY_CACHE, query_cache, database);
1729 }
1730 h = XHASH_TABLE (query_cache);
1731 i = hash_lookup (h, key, &hash_code);
1732 if (i >= 0)
1733 return HASH_VALUE (h, i);
1734
1735 quark_name = parse_resource_name (&name);
1736 if (*name != '\0')
1737 return Qnil;
1738 for (tmp = quark_name, nn = 0; CONSP (tmp); tmp = XCDR (tmp), nn++)
1739 if (!STRINGP (XCAR (tmp)))
1740 return Qnil;
1741
1742 quark_class = parse_resource_name (&class);
1743 if (*class != '\0')
1744 return Qnil;
1745 for (tmp = quark_class, nc = 0; CONSP (tmp); tmp = XCDR (tmp), nc++)
1746 if (!STRINGP (XCAR (tmp)))
1747 return Qnil;
1748
1749 if (nn != nc)
1750 return Qnil;
1751 else
1752 {
1753 tmp = xrm_q_get_resource (database, quark_name, quark_class);
1754 hash_put (h, key, tmp, hash_code);
1755 return tmp;
1756 }
1757 }
1758
1759 #if TARGET_API_MAC_CARBON
1760 static Lisp_Object
1761 xrm_cfproperty_list_to_value (plist)
1762 CFPropertyListRef plist;
1763 {
1764 CFTypeID type_id = CFGetTypeID (plist);
1765
1766 if (type_id == CFStringGetTypeID ())
1767 return cfstring_to_lisp (plist);
1768 else if (type_id == CFNumberGetTypeID ())
1769 {
1770 CFStringRef string;
1771 Lisp_Object result = Qnil;
1772
1773 string = CFStringCreateWithFormat (NULL, NULL, CFSTR ("%@"), plist);
1774 if (string)
1775 {
1776 result = cfstring_to_lisp (string);
1777 CFRelease (string);
1778 }
1779 return result;
1780 }
1781 else if (type_id == CFBooleanGetTypeID ())
1782 return build_string (CFBooleanGetValue (plist) ? "true" : "false");
1783 else if (type_id == CFDataGetTypeID ())
1784 return cfdata_to_lisp (plist);
1785 else
1786 return Qnil;
1787 }
1788 #endif
1789
1790 /* Create a new resource database from the preferences for the
1791 application APPLICATION. APPLICATION is either a string that
1792 specifies an application ID, or NULL that represents the current
1793 application. */
1794
1795 XrmDatabase
1796 xrm_get_preference_database (application)
1797 const char *application;
1798 {
1799 #if TARGET_API_MAC_CARBON
1800 CFStringRef app_id, *keys, user_doms[2], host_doms[2];
1801 CFMutableSetRef key_set = NULL;
1802 CFArrayRef key_array;
1803 CFIndex index, count;
1804 char *res_name;
1805 XrmDatabase database;
1806 Lisp_Object quarks = Qnil, value = Qnil;
1807 CFPropertyListRef plist;
1808 int iu, ih;
1809 struct gcpro gcpro1, gcpro2, gcpro3;
1810
1811 user_doms[0] = kCFPreferencesCurrentUser;
1812 user_doms[1] = kCFPreferencesAnyUser;
1813 host_doms[0] = kCFPreferencesCurrentHost;
1814 host_doms[1] = kCFPreferencesAnyHost;
1815
1816 database = xrm_create_database ();
1817
1818 GCPRO3 (database, quarks, value);
1819
1820 BLOCK_INPUT;
1821
1822 app_id = kCFPreferencesCurrentApplication;
1823 if (application)
1824 {
1825 app_id = cfstring_create_with_utf8_cstring (application);
1826 if (app_id == NULL)
1827 goto out;
1828 }
1829
1830 key_set = CFSetCreateMutable (NULL, 0, &kCFCopyStringSetCallBacks);
1831 if (key_set == NULL)
1832 goto out;
1833 for (iu = 0; iu < sizeof (user_doms) / sizeof (*user_doms) ; iu++)
1834 for (ih = 0; ih < sizeof (host_doms) / sizeof (*host_doms); ih++)
1835 {
1836 key_array = CFPreferencesCopyKeyList (app_id, user_doms[iu],
1837 host_doms[ih]);
1838 if (key_array)
1839 {
1840 count = CFArrayGetCount (key_array);
1841 for (index = 0; index < count; index++)
1842 CFSetAddValue (key_set,
1843 CFArrayGetValueAtIndex (key_array, index));
1844 CFRelease (key_array);
1845 }
1846 }
1847
1848 count = CFSetGetCount (key_set);
1849 keys = xmalloc (sizeof (CFStringRef) * count);
1850 CFSetGetValues (key_set, (const void **)keys);
1851 for (index = 0; index < count; index++)
1852 {
1853 res_name = SDATA (cfstring_to_lisp_nodecode (keys[index]));
1854 quarks = parse_resource_name (&res_name);
1855 if (!(NILP (quarks) || *res_name))
1856 {
1857 plist = CFPreferencesCopyAppValue (keys[index], app_id);
1858 value = xrm_cfproperty_list_to_value (plist);
1859 CFRelease (plist);
1860 if (!NILP (value))
1861 xrm_q_put_resource (database, quarks, value);
1862 }
1863 }
1864
1865 xfree (keys);
1866 out:
1867 if (key_set)
1868 CFRelease (key_set);
1869 CFRelease (app_id);
1870
1871 UNBLOCK_INPUT;
1872
1873 UNGCPRO;
1874
1875 return database;
1876 #else
1877 return xrm_create_database ();
1878 #endif
1879 }
1880
1881 \f
1882 #ifndef MAC_OSX
1883
1884 /* The following functions with "sys_" prefix are stubs to Unix
1885 functions that have already been implemented by CW or MPW. The
1886 calls to them in Emacs source course are #define'd to call the sys_
1887 versions by the header files s-mac.h. In these stubs pathnames are
1888 converted between their Unix and Mac forms. */
1889
1890
1891 /* Unix epoch is Jan 1, 1970 while Mac epoch is Jan 1, 1904: 66 years
1892 + 17 leap days. These are for adjusting time values returned by
1893 MacOS Toolbox functions. */
1894
1895 #define MAC_UNIX_EPOCH_DIFF ((365L * 66 + 17) * 24 * 60 * 60)
1896
1897 #ifdef __MWERKS__
1898 #if __MSL__ < 0x6000
1899 /* CW Pro 5 epoch is Jan 1, 1900 (aaarghhhhh!); remember, 1900 is not
1900 a leap year! This is for adjusting time_t values returned by MSL
1901 functions. */
1902 #define CW_OR_MPW_UNIX_EPOCH_DIFF ((365L * 70 + 17) * 24 * 60 * 60)
1903 #else /* __MSL__ >= 0x6000 */
1904 /* CW changes Pro 6 to follow Unix! */
1905 #define CW_OR_MPW_UNIX_EPOCH_DIFF ((365L * 66 + 17) * 24 * 60 * 60)
1906 #endif /* __MSL__ >= 0x6000 */
1907 #elif __MRC__
1908 /* MPW library functions follow Unix (confused?). */
1909 #define CW_OR_MPW_UNIX_EPOCH_DIFF ((365L * 66 + 17) * 24 * 60 * 60)
1910 #else /* not __MRC__ */
1911 You lose!!!
1912 #endif /* not __MRC__ */
1913
1914
1915 /* Define our own stat function for both MrC and CW. The reason for
1916 doing this: "stat" is both the name of a struct and function name:
1917 can't use the same trick like that for sys_open, sys_close, etc. to
1918 redirect Emacs's calls to our own version that converts Unix style
1919 filenames to Mac style filename because all sorts of compilation
1920 errors will be generated if stat is #define'd to be sys_stat. */
1921
1922 int
1923 stat_noalias (const char *path, struct stat *buf)
1924 {
1925 char mac_pathname[MAXPATHLEN+1];
1926 CInfoPBRec cipb;
1927
1928 if (posix_to_mac_pathname (path, mac_pathname, MAXPATHLEN+1) == 0)
1929 return -1;
1930
1931 c2pstr (mac_pathname);
1932 cipb.hFileInfo.ioNamePtr = mac_pathname;
1933 cipb.hFileInfo.ioVRefNum = 0;
1934 cipb.hFileInfo.ioDirID = 0;
1935 cipb.hFileInfo.ioFDirIndex = 0;
1936 /* set to 0 to get information about specific dir or file */
1937
1938 errno = PBGetCatInfo (&cipb, false);
1939 if (errno == -43) /* -43: fnfErr defined in Errors.h */
1940 errno = ENOENT;
1941 if (errno != noErr)
1942 return -1;
1943
1944 if (cipb.hFileInfo.ioFlAttrib & 0x10) /* bit 4 = 1 for directories */
1945 {
1946 buf->st_mode = S_IFDIR | S_IREAD | S_IEXEC;
1947
1948 if (!(cipb.hFileInfo.ioFlAttrib & 0x1))
1949 buf->st_mode |= S_IWRITE; /* bit 1 = 1 for locked files/directories */
1950 buf->st_ino = cipb.dirInfo.ioDrDirID;
1951 buf->st_dev = cipb.dirInfo.ioVRefNum;
1952 buf->st_size = cipb.dirInfo.ioDrNmFls;
1953 /* size of dir = number of files and dirs */
1954 buf->st_atime
1955 = buf->st_mtime
1956 = cipb.dirInfo.ioDrMdDat - MAC_UNIX_EPOCH_DIFF;
1957 buf->st_ctime = cipb.dirInfo.ioDrCrDat - MAC_UNIX_EPOCH_DIFF;
1958 }
1959 else
1960 {
1961 buf->st_mode = S_IFREG | S_IREAD;
1962 if (!(cipb.hFileInfo.ioFlAttrib & 0x1))
1963 buf->st_mode |= S_IWRITE; /* bit 1 = 1 for locked files/directories */
1964 if (cipb.hFileInfo.ioFlFndrInfo.fdType == 'APPL')
1965 buf->st_mode |= S_IEXEC;
1966 buf->st_ino = cipb.hFileInfo.ioDirID;
1967 buf->st_dev = cipb.hFileInfo.ioVRefNum;
1968 buf->st_size = cipb.hFileInfo.ioFlLgLen;
1969 buf->st_atime
1970 = buf->st_mtime
1971 = cipb.hFileInfo.ioFlMdDat - MAC_UNIX_EPOCH_DIFF;
1972 buf->st_ctime = cipb.hFileInfo.ioFlCrDat - MAC_UNIX_EPOCH_DIFF;
1973 }
1974
1975 if (cipb.hFileInfo.ioFlFndrInfo.fdFlags & 0x8000)
1976 {
1977 /* identify alias files as symlinks */
1978 buf->st_mode &= ~S_IFREG;
1979 buf->st_mode |= S_IFLNK;
1980 }
1981
1982 buf->st_nlink = 1;
1983 buf->st_uid = getuid ();
1984 buf->st_gid = getgid ();
1985 buf->st_rdev = 0;
1986
1987 return 0;
1988 }
1989
1990
1991 int
1992 lstat (const char *path, struct stat *buf)
1993 {
1994 int result;
1995 char true_pathname[MAXPATHLEN+1];
1996
1997 /* Try looking for the file without resolving aliases first. */
1998 if ((result = stat_noalias (path, buf)) >= 0)
1999 return result;
2000
2001 if (find_true_pathname (path, true_pathname, MAXPATHLEN+1) == -1)
2002 return -1;
2003
2004 return stat_noalias (true_pathname, buf);
2005 }
2006
2007
2008 int
2009 stat (const char *path, struct stat *sb)
2010 {
2011 int result;
2012 char true_pathname[MAXPATHLEN+1], fully_resolved_name[MAXPATHLEN+1];
2013 int len;
2014
2015 if ((result = stat_noalias (path, sb)) >= 0 &&
2016 ! (sb->st_mode & S_IFLNK))
2017 return result;
2018
2019 if (find_true_pathname (path, true_pathname, MAXPATHLEN+1) == -1)
2020 return -1;
2021
2022 len = readlink (true_pathname, fully_resolved_name, MAXPATHLEN);
2023 if (len > -1)
2024 {
2025 fully_resolved_name[len] = '\0';
2026 /* in fact our readlink terminates strings */
2027 return lstat (fully_resolved_name, sb);
2028 }
2029 else
2030 return lstat (true_pathname, sb);
2031 }
2032
2033
2034 #if __MRC__
2035 /* CW defines fstat in stat.mac.c while MPW does not provide this
2036 function. Without the information of how to get from a file
2037 descriptor in MPW StdCLib to a Mac OS file spec, it should be hard
2038 to implement this function. Fortunately, there is only one place
2039 where this function is called in our configuration: in fileio.c,
2040 where only the st_dev and st_ino fields are used to determine
2041 whether two fildes point to different i-nodes to prevent copying
2042 a file onto itself equal. What we have here probably needs
2043 improvement. */
2044
2045 int
2046 fstat (int fildes, struct stat *buf)
2047 {
2048 buf->st_dev = 0;
2049 buf->st_ino = fildes;
2050 buf->st_mode = S_IFREG; /* added by T.I. for the copy-file */
2051 return 0; /* success */
2052 }
2053 #endif /* __MRC__ */
2054
2055
2056 int
2057 mkdir (const char *dirname, int mode)
2058 {
2059 #pragma unused(mode)
2060
2061 HFileParam hfpb;
2062 char true_pathname[MAXPATHLEN+1], mac_pathname[MAXPATHLEN+1];
2063
2064 if (find_true_pathname (dirname, true_pathname, MAXPATHLEN+1) == -1)
2065 return -1;
2066
2067 if (posix_to_mac_pathname (true_pathname, mac_pathname, MAXPATHLEN+1) == 0)
2068 return -1;
2069
2070 c2pstr (mac_pathname);
2071 hfpb.ioNamePtr = mac_pathname;
2072 hfpb.ioVRefNum = 0; /* ignored unless name is invalid */
2073 hfpb.ioDirID = 0; /* parent is the root */
2074
2075 errno = PBDirCreate ((HParmBlkPtr) &hfpb, false);
2076 /* just return the Mac OSErr code for now */
2077 return errno == noErr ? 0 : -1;
2078 }
2079
2080
2081 #undef rmdir
2082 sys_rmdir (const char *dirname)
2083 {
2084 HFileParam hfpb;
2085 char mac_pathname[MAXPATHLEN+1];
2086
2087 if (posix_to_mac_pathname (dirname, mac_pathname, MAXPATHLEN+1) == 0)
2088 return -1;
2089
2090 c2pstr (mac_pathname);
2091 hfpb.ioNamePtr = mac_pathname;
2092 hfpb.ioVRefNum = 0; /* ignored unless name is invalid */
2093 hfpb.ioDirID = 0; /* parent is the root */
2094
2095 errno = PBHDelete ((HParmBlkPtr) &hfpb, false);
2096 return errno == noErr ? 0 : -1;
2097 }
2098
2099
2100 #ifdef __MRC__
2101 /* No implementation yet. */
2102 int
2103 execvp (const char *path, ...)
2104 {
2105 return -1;
2106 }
2107 #endif /* __MRC__ */
2108
2109
2110 int
2111 utime (const char *path, const struct utimbuf *times)
2112 {
2113 char true_pathname[MAXPATHLEN+1], fully_resolved_name[MAXPATHLEN+1];
2114 int len;
2115 char mac_pathname[MAXPATHLEN+1];
2116 CInfoPBRec cipb;
2117
2118 if (find_true_pathname (path, true_pathname, MAXPATHLEN+1) == -1)
2119 return -1;
2120
2121 len = readlink (true_pathname, fully_resolved_name, MAXPATHLEN);
2122 if (len > -1)
2123 fully_resolved_name[len] = '\0';
2124 else
2125 strcpy (fully_resolved_name, true_pathname);
2126
2127 if (!posix_to_mac_pathname (fully_resolved_name, mac_pathname, MAXPATHLEN+1))
2128 return -1;
2129
2130 c2pstr (mac_pathname);
2131 cipb.hFileInfo.ioNamePtr = mac_pathname;
2132 cipb.hFileInfo.ioVRefNum = 0;
2133 cipb.hFileInfo.ioDirID = 0;
2134 cipb.hFileInfo.ioFDirIndex = 0;
2135 /* set to 0 to get information about specific dir or file */
2136
2137 errno = PBGetCatInfo (&cipb, false);
2138 if (errno != noErr)
2139 return -1;
2140
2141 if (cipb.hFileInfo.ioFlAttrib & 0x10) /* bit 4 = 1 for directories */
2142 {
2143 if (times)
2144 cipb.dirInfo.ioDrMdDat = times->modtime + MAC_UNIX_EPOCH_DIFF;
2145 else
2146 GetDateTime (&cipb.dirInfo.ioDrMdDat);
2147 }
2148 else
2149 {
2150 if (times)
2151 cipb.hFileInfo.ioFlMdDat = times->modtime + MAC_UNIX_EPOCH_DIFF;
2152 else
2153 GetDateTime (&cipb.hFileInfo.ioFlMdDat);
2154 }
2155
2156 errno = PBSetCatInfo (&cipb, false);
2157 return errno == noErr ? 0 : -1;
2158 }
2159
2160
2161 #ifndef F_OK
2162 #define F_OK 0
2163 #endif
2164 #ifndef X_OK
2165 #define X_OK 1
2166 #endif
2167 #ifndef W_OK
2168 #define W_OK 2
2169 #endif
2170
2171 /* Like stat, but test for access mode in hfpb.ioFlAttrib */
2172 int
2173 access (const char *path, int mode)
2174 {
2175 char true_pathname[MAXPATHLEN+1], fully_resolved_name[MAXPATHLEN+1];
2176 int len;
2177 char mac_pathname[MAXPATHLEN+1];
2178 CInfoPBRec cipb;
2179
2180 if (find_true_pathname (path, true_pathname, MAXPATHLEN+1) == -1)
2181 return -1;
2182
2183 len = readlink (true_pathname, fully_resolved_name, MAXPATHLEN);
2184 if (len > -1)
2185 fully_resolved_name[len] = '\0';
2186 else
2187 strcpy (fully_resolved_name, true_pathname);
2188
2189 if (!posix_to_mac_pathname (fully_resolved_name, mac_pathname, MAXPATHLEN+1))
2190 return -1;
2191
2192 c2pstr (mac_pathname);
2193 cipb.hFileInfo.ioNamePtr = mac_pathname;
2194 cipb.hFileInfo.ioVRefNum = 0;
2195 cipb.hFileInfo.ioDirID = 0;
2196 cipb.hFileInfo.ioFDirIndex = 0;
2197 /* set to 0 to get information about specific dir or file */
2198
2199 errno = PBGetCatInfo (&cipb, false);
2200 if (errno != noErr)
2201 return -1;
2202
2203 if (mode == F_OK) /* got this far, file exists */
2204 return 0;
2205
2206 if (mode & X_OK)
2207 if (cipb.hFileInfo.ioFlAttrib & 0x10) /* path refers to a directory */
2208 return 0;
2209 else
2210 {
2211 if (cipb.hFileInfo.ioFlFndrInfo.fdType == 'APPL')
2212 return 0;
2213 else
2214 return -1;
2215 }
2216
2217 if (mode & W_OK)
2218 return (cipb.hFileInfo.ioFlAttrib & 0x1) ? -1 : 0;
2219 /* don't allow if lock bit is on */
2220
2221 return -1;
2222 }
2223
2224
2225 #define DEV_NULL_FD 0x10000
2226
2227 #undef open
2228 int
2229 sys_open (const char *path, int oflag)
2230 {
2231 char true_pathname[MAXPATHLEN+1], fully_resolved_name[MAXPATHLEN+1];
2232 int len;
2233 char mac_pathname[MAXPATHLEN+1];
2234
2235 if (strcmp (path, "/dev/null") == 0)
2236 return DEV_NULL_FD; /* some bogus fd to be ignored in write */
2237
2238 if (find_true_pathname (path, true_pathname, MAXPATHLEN+1) == -1)
2239 return -1;
2240
2241 len = readlink (true_pathname, fully_resolved_name, MAXPATHLEN);
2242 if (len > -1)
2243 fully_resolved_name[len] = '\0';
2244 else
2245 strcpy (fully_resolved_name, true_pathname);
2246
2247 if (!posix_to_mac_pathname (fully_resolved_name, mac_pathname, MAXPATHLEN+1))
2248 return -1;
2249 else
2250 {
2251 #ifdef __MRC__
2252 int res = open (mac_pathname, oflag);
2253 /* if (oflag == O_WRONLY || oflag == O_RDWR) */
2254 if (oflag & O_CREAT)
2255 fsetfileinfo (mac_pathname, 'EMAx', 'TEXT');
2256 return res;
2257 #else /* not __MRC__ */
2258 return open (mac_pathname, oflag);
2259 #endif /* not __MRC__ */
2260 }
2261 }
2262
2263
2264 #undef creat
2265 int
2266 sys_creat (const char *path, mode_t mode)
2267 {
2268 char true_pathname[MAXPATHLEN+1];
2269 int len;
2270 char mac_pathname[MAXPATHLEN+1];
2271
2272 if (find_true_pathname (path, true_pathname, MAXPATHLEN+1) == -1)
2273 return -1;
2274
2275 if (!posix_to_mac_pathname (true_pathname, mac_pathname, MAXPATHLEN+1))
2276 return -1;
2277 else
2278 {
2279 #ifdef __MRC__
2280 int result = creat (mac_pathname);
2281 fsetfileinfo (mac_pathname, 'EMAx', 'TEXT');
2282 return result;
2283 #else /* not __MRC__ */
2284 return creat (mac_pathname, mode);
2285 #endif /* not __MRC__ */
2286 }
2287 }
2288
2289
2290 #undef unlink
2291 int
2292 sys_unlink (const char *path)
2293 {
2294 char true_pathname[MAXPATHLEN+1], fully_resolved_name[MAXPATHLEN+1];
2295 int len;
2296 char mac_pathname[MAXPATHLEN+1];
2297
2298 if (find_true_pathname (path, true_pathname, MAXPATHLEN+1) == -1)
2299 return -1;
2300
2301 len = readlink (true_pathname, fully_resolved_name, MAXPATHLEN);
2302 if (len > -1)
2303 fully_resolved_name[len] = '\0';
2304 else
2305 strcpy (fully_resolved_name, true_pathname);
2306
2307 if (!posix_to_mac_pathname (fully_resolved_name, mac_pathname, MAXPATHLEN+1))
2308 return -1;
2309 else
2310 return unlink (mac_pathname);
2311 }
2312
2313
2314 #undef read
2315 int
2316 sys_read (int fildes, char *buf, int count)
2317 {
2318 if (fildes == 0) /* this should not be used for console input */
2319 return -1;
2320 else
2321 #if __MSL__ >= 0x6000
2322 return _read (fildes, buf, count);
2323 #else
2324 return read (fildes, buf, count);
2325 #endif
2326 }
2327
2328
2329 #undef write
2330 int
2331 sys_write (int fildes, const char *buf, int count)
2332 {
2333 if (fildes == DEV_NULL_FD)
2334 return count;
2335 else
2336 #if __MSL__ >= 0x6000
2337 return _write (fildes, buf, count);
2338 #else
2339 return write (fildes, buf, count);
2340 #endif
2341 }
2342
2343
2344 #undef rename
2345 int
2346 sys_rename (const char * old_name, const char * new_name)
2347 {
2348 char true_old_pathname[MAXPATHLEN+1], true_new_pathname[MAXPATHLEN+1];
2349 char fully_resolved_old_name[MAXPATHLEN+1];
2350 int len;
2351 char mac_old_name[MAXPATHLEN+1], mac_new_name[MAXPATHLEN+1];
2352
2353 if (find_true_pathname (old_name, true_old_pathname, MAXPATHLEN+1) == -1)
2354 return -1;
2355
2356 len = readlink (true_old_pathname, fully_resolved_old_name, MAXPATHLEN);
2357 if (len > -1)
2358 fully_resolved_old_name[len] = '\0';
2359 else
2360 strcpy (fully_resolved_old_name, true_old_pathname);
2361
2362 if (find_true_pathname (new_name, true_new_pathname, MAXPATHLEN+1) == -1)
2363 return -1;
2364
2365 if (strcmp (fully_resolved_old_name, true_new_pathname) == 0)
2366 return 0;
2367
2368 if (!posix_to_mac_pathname (fully_resolved_old_name,
2369 mac_old_name,
2370 MAXPATHLEN+1))
2371 return -1;
2372
2373 if (!posix_to_mac_pathname(true_new_pathname, mac_new_name, MAXPATHLEN+1))
2374 return -1;
2375
2376 /* If a file with new_name already exists, rename deletes the old
2377 file in Unix. CW version fails in these situation. So we add a
2378 call to unlink here. */
2379 (void) unlink (mac_new_name);
2380
2381 return rename (mac_old_name, mac_new_name);
2382 }
2383
2384
2385 #undef fopen
2386 extern FILE *fopen (const char *name, const char *mode);
2387 FILE *
2388 sys_fopen (const char *name, const char *mode)
2389 {
2390 char true_pathname[MAXPATHLEN+1], fully_resolved_name[MAXPATHLEN+1];
2391 int len;
2392 char mac_pathname[MAXPATHLEN+1];
2393
2394 if (find_true_pathname (name, true_pathname, MAXPATHLEN+1) == -1)
2395 return 0;
2396
2397 len = readlink (true_pathname, fully_resolved_name, MAXPATHLEN);
2398 if (len > -1)
2399 fully_resolved_name[len] = '\0';
2400 else
2401 strcpy (fully_resolved_name, true_pathname);
2402
2403 if (!posix_to_mac_pathname (fully_resolved_name, mac_pathname, MAXPATHLEN+1))
2404 return 0;
2405 else
2406 {
2407 #ifdef __MRC__
2408 if (mode[0] == 'w' || mode[0] == 'a')
2409 fsetfileinfo (mac_pathname, 'EMAx', 'TEXT');
2410 #endif /* not __MRC__ */
2411 return fopen (mac_pathname, mode);
2412 }
2413 }
2414
2415
2416 extern Boolean mac_wait_next_event P_ ((EventRecord *, UInt32, Boolean));
2417
2418 int
2419 select (nfds, rfds, wfds, efds, timeout)
2420 int nfds;
2421 SELECT_TYPE *rfds, *wfds, *efds;
2422 EMACS_TIME *timeout;
2423 {
2424 OSStatus err = noErr;
2425
2426 /* Can only handle wait for keyboard input. */
2427 if (nfds > 1 || wfds || efds)
2428 return -1;
2429
2430 /* Try detect_input_pending before ReceiveNextEvent in the same
2431 BLOCK_INPUT block, in case that some input has already been read
2432 asynchronously. */
2433 BLOCK_INPUT;
2434 if (!detect_input_pending ())
2435 {
2436 #if TARGET_API_MAC_CARBON
2437 EventTimeout timeoutval =
2438 (timeout
2439 ? (EMACS_SECS (*timeout) * kEventDurationSecond
2440 + EMACS_USECS (*timeout) * kEventDurationMicrosecond)
2441 : kEventDurationForever);
2442
2443 if (timeoutval == 0.0)
2444 err = eventLoopTimedOutErr;
2445 else
2446 err = ReceiveNextEvent (0, NULL, timeoutval,
2447 kEventLeaveInQueue, NULL);
2448 #else /* not TARGET_API_MAC_CARBON */
2449 EventRecord e;
2450 UInt32 sleep_time = EMACS_SECS (*timeout) * 60 +
2451 ((EMACS_USECS (*timeout) * 60) / 1000000);
2452
2453 if (sleep_time == 0)
2454 err = -9875; /* eventLoopTimedOutErr */
2455 else
2456 {
2457 if (mac_wait_next_event (&e, sleep_time, false))
2458 err = noErr;
2459 else
2460 err = -9875; /* eventLoopTimedOutErr */
2461 }
2462 #endif /* not TARGET_API_MAC_CARBON */
2463 }
2464 UNBLOCK_INPUT;
2465
2466 if (err == noErr)
2467 {
2468 /* Pretend that `select' is interrupted by a signal. */
2469 detect_input_pending ();
2470 errno = EINTR;
2471 return -1;
2472 }
2473 else
2474 {
2475 if (rfds)
2476 FD_ZERO (rfds);
2477 return 0;
2478 }
2479 }
2480
2481
2482 /* Simulation of SIGALRM. The stub for function signal stores the
2483 signal handler function in alarm_signal_func if a SIGALRM is
2484 encountered. */
2485
2486 #include <signal.h>
2487 #include "syssignal.h"
2488
2489 static TMTask mac_atimer_task;
2490
2491 static QElemPtr mac_atimer_qlink = (QElemPtr) &mac_atimer_task;
2492
2493 static int signal_mask = 0;
2494
2495 #ifdef __MRC__
2496 __sigfun alarm_signal_func = (__sigfun) 0;
2497 #elif __MWERKS__
2498 __signal_func_ptr alarm_signal_func = (__signal_func_ptr) 0;
2499 #else /* not __MRC__ and not __MWERKS__ */
2500 You lose!!!
2501 #endif /* not __MRC__ and not __MWERKS__ */
2502
2503 #undef signal
2504 #ifdef __MRC__
2505 extern __sigfun signal (int signal, __sigfun signal_func);
2506 __sigfun
2507 sys_signal (int signal_num, __sigfun signal_func)
2508 #elif __MWERKS__
2509 extern __signal_func_ptr signal (int signal, __signal_func_ptr signal_func);
2510 __signal_func_ptr
2511 sys_signal (int signal_num, __signal_func_ptr signal_func)
2512 #else /* not __MRC__ and not __MWERKS__ */
2513 You lose!!!
2514 #endif /* not __MRC__ and not __MWERKS__ */
2515 {
2516 if (signal_num != SIGALRM)
2517 return signal (signal_num, signal_func);
2518 else
2519 {
2520 #ifdef __MRC__
2521 __sigfun old_signal_func;
2522 #elif __MWERKS__
2523 __signal_func_ptr old_signal_func;
2524 #else
2525 You lose!!!
2526 #endif
2527 old_signal_func = alarm_signal_func;
2528 alarm_signal_func = signal_func;
2529 return old_signal_func;
2530 }
2531 }
2532
2533
2534 static pascal void
2535 mac_atimer_handler (qlink)
2536 TMTaskPtr qlink;
2537 {
2538 if (alarm_signal_func)
2539 (alarm_signal_func) (SIGALRM);
2540 }
2541
2542
2543 static void
2544 set_mac_atimer (count)
2545 long count;
2546 {
2547 static TimerUPP mac_atimer_handlerUPP = NULL;
2548
2549 if (mac_atimer_handlerUPP == NULL)
2550 mac_atimer_handlerUPP = NewTimerUPP (mac_atimer_handler);
2551 mac_atimer_task.tmCount = 0;
2552 mac_atimer_task.tmAddr = mac_atimer_handlerUPP;
2553 mac_atimer_qlink = (QElemPtr) &mac_atimer_task;
2554 InsTime (mac_atimer_qlink);
2555 if (count)
2556 PrimeTime (mac_atimer_qlink, count);
2557 }
2558
2559
2560 int
2561 remove_mac_atimer (remaining_count)
2562 long *remaining_count;
2563 {
2564 if (mac_atimer_qlink)
2565 {
2566 RmvTime (mac_atimer_qlink);
2567 if (remaining_count)
2568 *remaining_count = mac_atimer_task.tmCount;
2569 mac_atimer_qlink = NULL;
2570
2571 return 0;
2572 }
2573 else
2574 return -1;
2575 }
2576
2577
2578 int
2579 sigblock (int mask)
2580 {
2581 int old_mask = signal_mask;
2582
2583 signal_mask |= mask;
2584
2585 if ((old_mask ^ signal_mask) & sigmask (SIGALRM))
2586 remove_mac_atimer (NULL);
2587
2588 return old_mask;
2589 }
2590
2591
2592 int
2593 sigsetmask (int mask)
2594 {
2595 int old_mask = signal_mask;
2596
2597 signal_mask = mask;
2598
2599 if ((old_mask ^ signal_mask) & sigmask (SIGALRM))
2600 if (signal_mask & sigmask (SIGALRM))
2601 remove_mac_atimer (NULL);
2602 else
2603 set_mac_atimer (mac_atimer_task.tmCount);
2604
2605 return old_mask;
2606 }
2607
2608
2609 int
2610 alarm (int seconds)
2611 {
2612 long remaining_count;
2613
2614 if (remove_mac_atimer (&remaining_count) == 0)
2615 {
2616 set_mac_atimer (seconds * 1000);
2617
2618 return remaining_count / 1000;
2619 }
2620 else
2621 {
2622 mac_atimer_task.tmCount = seconds * 1000;
2623
2624 return 0;
2625 }
2626 }
2627
2628
2629 int
2630 setitimer (which, value, ovalue)
2631 int which;
2632 const struct itimerval *value;
2633 struct itimerval *ovalue;
2634 {
2635 long remaining_count;
2636 long count = (EMACS_SECS (value->it_value) * 1000
2637 + (EMACS_USECS (value->it_value) + 999) / 1000);
2638
2639 if (remove_mac_atimer (&remaining_count) == 0)
2640 {
2641 if (ovalue)
2642 {
2643 bzero (ovalue, sizeof (*ovalue));
2644 EMACS_SET_SECS_USECS (ovalue->it_value, remaining_count / 1000,
2645 (remaining_count % 1000) * 1000);
2646 }
2647 set_mac_atimer (count);
2648 }
2649 else
2650 mac_atimer_task.tmCount = count;
2651
2652 return 0;
2653 }
2654
2655
2656 /* gettimeofday should return the amount of time (in a timeval
2657 structure) since midnight today. The toolbox function Microseconds
2658 returns the number of microseconds (in a UnsignedWide value) since
2659 the machine was booted. Also making this complicated is WideAdd,
2660 WideSubtract, etc. take wide values. */
2661
2662 int
2663 gettimeofday (tp)
2664 struct timeval *tp;
2665 {
2666 static inited = 0;
2667 static wide wall_clock_at_epoch, clicks_at_epoch;
2668 UnsignedWide uw_microseconds;
2669 wide w_microseconds;
2670 time_t sys_time (time_t *);
2671
2672 /* If this function is called for the first time, record the number
2673 of seconds since midnight and the number of microseconds since
2674 boot at the time of this first call. */
2675 if (!inited)
2676 {
2677 time_t systime;
2678 inited = 1;
2679 systime = sys_time (NULL);
2680 /* Store microseconds since midnight in wall_clock_at_epoch. */
2681 WideMultiply (systime, 1000000L, &wall_clock_at_epoch);
2682 Microseconds (&uw_microseconds);
2683 /* Store microseconds since boot in clicks_at_epoch. */
2684 clicks_at_epoch.hi = uw_microseconds.hi;
2685 clicks_at_epoch.lo = uw_microseconds.lo;
2686 }
2687
2688 /* Get time since boot */
2689 Microseconds (&uw_microseconds);
2690
2691 /* Convert to time since midnight*/
2692 w_microseconds.hi = uw_microseconds.hi;
2693 w_microseconds.lo = uw_microseconds.lo;
2694 WideSubtract (&w_microseconds, &clicks_at_epoch);
2695 WideAdd (&w_microseconds, &wall_clock_at_epoch);
2696 tp->tv_sec = WideDivide (&w_microseconds, 1000000L, &tp->tv_usec);
2697
2698 return 0;
2699 }
2700
2701
2702 #ifdef __MRC__
2703 unsigned int
2704 sleep (unsigned int seconds)
2705 {
2706 unsigned long time_up;
2707 EventRecord e;
2708
2709 time_up = TickCount () + seconds * 60;
2710 while (TickCount () < time_up)
2711 {
2712 /* Accept no event; just wait. by T.I. */
2713 WaitNextEvent (0, &e, 30, NULL);
2714 }
2715
2716 return (0);
2717 }
2718 #endif /* __MRC__ */
2719
2720
2721 /* The time functions adjust time values according to the difference
2722 between the Unix and CW epoches. */
2723
2724 #undef gmtime
2725 extern struct tm *gmtime (const time_t *);
2726 struct tm *
2727 sys_gmtime (const time_t *timer)
2728 {
2729 time_t unix_time = *timer + CW_OR_MPW_UNIX_EPOCH_DIFF;
2730
2731 return gmtime (&unix_time);
2732 }
2733
2734
2735 #undef localtime
2736 extern struct tm *localtime (const time_t *);
2737 struct tm *
2738 sys_localtime (const time_t *timer)
2739 {
2740 #if __MSL__ >= 0x6000
2741 time_t unix_time = *timer;
2742 #else
2743 time_t unix_time = *timer + CW_OR_MPW_UNIX_EPOCH_DIFF;
2744 #endif
2745
2746 return localtime (&unix_time);
2747 }
2748
2749
2750 #undef ctime
2751 extern char *ctime (const time_t *);
2752 char *
2753 sys_ctime (const time_t *timer)
2754 {
2755 #if __MSL__ >= 0x6000
2756 time_t unix_time = *timer;
2757 #else
2758 time_t unix_time = *timer + CW_OR_MPW_UNIX_EPOCH_DIFF;
2759 #endif
2760
2761 return ctime (&unix_time);
2762 }
2763
2764
2765 #undef time
2766 extern time_t time (time_t *);
2767 time_t
2768 sys_time (time_t *timer)
2769 {
2770 #if __MSL__ >= 0x6000
2771 time_t mac_time = time (NULL);
2772 #else
2773 time_t mac_time = time (NULL) - CW_OR_MPW_UNIX_EPOCH_DIFF;
2774 #endif
2775
2776 if (timer)
2777 *timer = mac_time;
2778
2779 return mac_time;
2780 }
2781
2782
2783 /* no subprocesses, empty wait */
2784
2785 int
2786 wait (int pid)
2787 {
2788 return 0;
2789 }
2790
2791
2792 void
2793 croak (char *badfunc)
2794 {
2795 printf ("%s not yet implemented\r\n", badfunc);
2796 exit (1);
2797 }
2798
2799
2800 char *
2801 mktemp (char *template)
2802 {
2803 int len, k;
2804 static seqnum = 0;
2805
2806 len = strlen (template);
2807 k = len - 1;
2808 while (k >= 0 && template[k] == 'X')
2809 k--;
2810
2811 k++; /* make k index of first 'X' */
2812
2813 if (k < len)
2814 {
2815 /* Zero filled, number of digits equal to the number of X's. */
2816 sprintf (&template[k], "%0*d", len-k, seqnum++);
2817
2818 return template;
2819 }
2820 else
2821 return 0;
2822 }
2823
2824
2825 /* Emulate getpwuid, getpwnam and others. */
2826
2827 #define PASSWD_FIELD_SIZE 256
2828
2829 static char my_passwd_name[PASSWD_FIELD_SIZE];
2830 static char my_passwd_dir[MAXPATHLEN+1];
2831
2832 static struct passwd my_passwd =
2833 {
2834 my_passwd_name,
2835 my_passwd_dir,
2836 };
2837
2838 static struct group my_group =
2839 {
2840 /* There are no groups on the mac, so we just return "root" as the
2841 group name. */
2842 "root",
2843 };
2844
2845
2846 /* Initialized by main () in macterm.c to pathname of emacs directory. */
2847
2848 char emacs_passwd_dir[MAXPATHLEN+1];
2849
2850 char *
2851 getwd (char *);
2852
2853 void
2854 init_emacs_passwd_dir ()
2855 {
2856 int found = false;
2857
2858 if (getwd (emacs_passwd_dir) && getwd (my_passwd_dir))
2859 {
2860 /* Need pathname of first ancestor that begins with "emacs"
2861 since Mac emacs application is somewhere in the emacs-*
2862 tree. */
2863 int len = strlen (emacs_passwd_dir);
2864 int j = len - 1;
2865 /* j points to the "/" following the directory name being
2866 compared. */
2867 int i = j - 1;
2868 while (i >= 0 && !found)
2869 {
2870 while (i >= 0 && emacs_passwd_dir[i] != '/')
2871 i--;
2872 if (emacs_passwd_dir[i] == '/' && i+5 < len)
2873 found = (strncmp (&(emacs_passwd_dir[i+1]), "emacs", 5) == 0);
2874 if (found)
2875 emacs_passwd_dir[j+1] = '\0';
2876 else
2877 {
2878 j = i;
2879 i = j - 1;
2880 }
2881 }
2882 }
2883
2884 if (!found)
2885 {
2886 /* Setting to "/" probably won't work but set it to something
2887 anyway. */
2888 strcpy (emacs_passwd_dir, "/");
2889 strcpy (my_passwd_dir, "/");
2890 }
2891 }
2892
2893
2894 static struct passwd emacs_passwd =
2895 {
2896 "emacs",
2897 emacs_passwd_dir,
2898 };
2899
2900 static int my_passwd_inited = 0;
2901
2902
2903 static void
2904 init_my_passwd ()
2905 {
2906 char **owner_name;
2907
2908 /* Note: my_passwd_dir initialized in int_emacs_passwd_dir to
2909 directory where Emacs was started. */
2910
2911 owner_name = (char **) GetResource ('STR ',-16096);
2912 if (owner_name)
2913 {
2914 HLock (owner_name);
2915 BlockMove ((unsigned char *) *owner_name,
2916 (unsigned char *) my_passwd_name,
2917 *owner_name[0]+1);
2918 HUnlock (owner_name);
2919 p2cstr ((unsigned char *) my_passwd_name);
2920 }
2921 else
2922 my_passwd_name[0] = 0;
2923 }
2924
2925
2926 struct passwd *
2927 getpwuid (uid_t uid)
2928 {
2929 if (!my_passwd_inited)
2930 {
2931 init_my_passwd ();
2932 my_passwd_inited = 1;
2933 }
2934
2935 return &my_passwd;
2936 }
2937
2938
2939 struct group *
2940 getgrgid (gid_t gid)
2941 {
2942 return &my_group;
2943 }
2944
2945
2946 struct passwd *
2947 getpwnam (const char *name)
2948 {
2949 if (strcmp (name, "emacs") == 0)
2950 return &emacs_passwd;
2951
2952 if (!my_passwd_inited)
2953 {
2954 init_my_passwd ();
2955 my_passwd_inited = 1;
2956 }
2957
2958 return &my_passwd;
2959 }
2960
2961
2962 /* The functions fork, kill, sigsetmask, sigblock, request_sigio,
2963 setpgrp, setpriority, and unrequest_sigio are defined to be empty
2964 as in msdos.c. */
2965
2966
2967 int
2968 fork ()
2969 {
2970 return -1;
2971 }
2972
2973
2974 int
2975 kill (int x, int y)
2976 {
2977 return -1;
2978 }
2979
2980
2981 void
2982 sys_subshell ()
2983 {
2984 error ("Can't spawn subshell");
2985 }
2986
2987
2988 void
2989 request_sigio (void)
2990 {
2991 }
2992
2993
2994 void
2995 unrequest_sigio (void)
2996 {
2997 }
2998
2999
3000 int
3001 setpgrp ()
3002 {
3003 return 0;
3004 }
3005
3006
3007 /* No pipes yet. */
3008
3009 int
3010 pipe (int _fildes[2])
3011 {
3012 errno = EACCES;
3013 return -1;
3014 }
3015
3016
3017 /* Hard and symbolic links. */
3018
3019 int
3020 symlink (const char *name1, const char *name2)
3021 {
3022 errno = ENOENT;
3023 return -1;
3024 }
3025
3026
3027 int
3028 link (const char *name1, const char *name2)
3029 {
3030 errno = ENOENT;
3031 return -1;
3032 }
3033
3034 #endif /* ! MAC_OSX */
3035
3036 /* Determine the path name of the file specified by VREFNUM, DIRID,
3037 and NAME and place that in the buffer PATH of length
3038 MAXPATHLEN. */
3039 static int
3040 path_from_vol_dir_name (char *path, int man_path_len, short vol_ref_num,
3041 long dir_id, ConstStr255Param name)
3042 {
3043 Str255 dir_name;
3044 CInfoPBRec cipb;
3045 OSErr err;
3046
3047 if (strlen (name) > man_path_len)
3048 return 0;
3049
3050 memcpy (dir_name, name, name[0]+1);
3051 memcpy (path, name, name[0]+1);
3052 p2cstr (path);
3053
3054 cipb.dirInfo.ioDrParID = dir_id;
3055 cipb.dirInfo.ioNamePtr = dir_name;
3056
3057 do
3058 {
3059 cipb.dirInfo.ioVRefNum = vol_ref_num;
3060 cipb.dirInfo.ioFDirIndex = -1;
3061 cipb.dirInfo.ioDrDirID = cipb.dirInfo.ioDrParID;
3062 /* go up to parent each time */
3063
3064 err = PBGetCatInfo (&cipb, false);
3065 if (err != noErr)
3066 return 0;
3067
3068 p2cstr (dir_name);
3069 if (strlen (dir_name) + strlen (path) + 1 >= man_path_len)
3070 return 0;
3071
3072 strcat (dir_name, ":");
3073 strcat (dir_name, path);
3074 /* attach to front since we're going up directory tree */
3075 strcpy (path, dir_name);
3076 }
3077 while (cipb.dirInfo.ioDrDirID != fsRtDirID);
3078 /* stop when we see the volume's root directory */
3079
3080 return 1; /* success */
3081 }
3082
3083
3084 #ifndef MAC_OSX
3085
3086 static OSErr
3087 posix_pathname_to_fsspec (ufn, fs)
3088 const char *ufn;
3089 FSSpec *fs;
3090 {
3091 Str255 mac_pathname;
3092
3093 if (posix_to_mac_pathname (ufn, mac_pathname, sizeof (mac_pathname)) == 0)
3094 return fnfErr;
3095 else
3096 {
3097 c2pstr (mac_pathname);
3098 return FSMakeFSSpec (0, 0, mac_pathname, fs);
3099 }
3100 }
3101
3102 static OSErr
3103 fsspec_to_posix_pathname (fs, ufn, ufnbuflen)
3104 const FSSpec *fs;
3105 char *ufn;
3106 int ufnbuflen;
3107 {
3108 char mac_pathname[MAXPATHLEN];
3109
3110 if (path_from_vol_dir_name (mac_pathname, sizeof (mac_pathname) - 1,
3111 fs->vRefNum, fs->parID, fs->name)
3112 && mac_to_posix_pathname (mac_pathname, ufn, ufnbuflen))
3113 return noErr;
3114 else
3115 return fnfErr;
3116 }
3117
3118 int
3119 readlink (const char *path, char *buf, int bufsiz)
3120 {
3121 char mac_sym_link_name[MAXPATHLEN+1];
3122 OSErr err;
3123 FSSpec fsspec;
3124 Boolean target_is_folder, was_aliased;
3125 Str255 directory_name, mac_pathname;
3126 CInfoPBRec cipb;
3127
3128 if (posix_to_mac_pathname (path, mac_sym_link_name, MAXPATHLEN+1) == 0)
3129 return -1;
3130
3131 c2pstr (mac_sym_link_name);
3132 err = FSMakeFSSpec (0, 0, mac_sym_link_name, &fsspec);
3133 if (err != noErr)
3134 {
3135 errno = ENOENT;
3136 return -1;
3137 }
3138
3139 err = ResolveAliasFile (&fsspec, true, &target_is_folder, &was_aliased);
3140 if (err != noErr || !was_aliased)
3141 {
3142 errno = ENOENT;
3143 return -1;
3144 }
3145
3146 if (path_from_vol_dir_name (mac_pathname, 255, fsspec.vRefNum, fsspec.parID,
3147 fsspec.name) == 0)
3148 {
3149 errno = ENOENT;
3150 return -1;
3151 }
3152
3153 if (mac_to_posix_pathname (mac_pathname, buf, bufsiz) == 0)
3154 {
3155 errno = ENOENT;
3156 return -1;
3157 }
3158
3159 return strlen (buf);
3160 }
3161
3162
3163 /* Convert a path to one with aliases fully expanded. */
3164
3165 static int
3166 find_true_pathname (const char *path, char *buf, int bufsiz)
3167 {
3168 char *q, temp[MAXPATHLEN+1];
3169 const char *p;
3170 int len;
3171
3172 if (bufsiz <= 0 || path == 0 || path[0] == '\0')
3173 return -1;
3174
3175 buf[0] = '\0';
3176
3177 p = path;
3178 if (*p == '/')
3179 q = strchr (p + 1, '/');
3180 else
3181 q = strchr (p, '/');
3182 len = 0; /* loop may not be entered, e.g., for "/" */
3183
3184 while (q)
3185 {
3186 strcpy (temp, buf);
3187 strncat (temp, p, q - p);
3188 len = readlink (temp, buf, bufsiz);
3189 if (len <= -1)
3190 {
3191 if (strlen (temp) + 1 > bufsiz)
3192 return -1;
3193 strcpy (buf, temp);
3194 }
3195 strcat (buf, "/");
3196 len++;
3197 p = q + 1;
3198 q = strchr(p, '/');
3199 }
3200
3201 if (len + strlen (p) + 1 >= bufsiz)
3202 return -1;
3203
3204 strcat (buf, p);
3205 return len + strlen (p);
3206 }
3207
3208
3209 mode_t
3210 umask (mode_t numask)
3211 {
3212 static mode_t mask = 022;
3213 mode_t oldmask = mask;
3214 mask = numask;
3215 return oldmask;
3216 }
3217
3218
3219 int
3220 chmod (const char *path, mode_t mode)
3221 {
3222 /* say it always succeed for now */
3223 return 0;
3224 }
3225
3226
3227 int
3228 fchmod (int fd, mode_t mode)
3229 {
3230 /* say it always succeed for now */
3231 return 0;
3232 }
3233
3234
3235 int
3236 fchown (int fd, uid_t owner, gid_t group)
3237 {
3238 /* say it always succeed for now */
3239 return 0;
3240 }
3241
3242
3243 int
3244 dup (int oldd)
3245 {
3246 #ifdef __MRC__
3247 return fcntl (oldd, F_DUPFD, 0);
3248 #elif __MWERKS__
3249 /* current implementation of fcntl in fcntl.mac.c simply returns old
3250 descriptor */
3251 return fcntl (oldd, F_DUPFD);
3252 #else
3253 You lose!!!
3254 #endif
3255 }
3256
3257
3258 /* This is from the original sysdep.c. Emulate BSD dup2. First close
3259 newd if it already exists. Then, attempt to dup oldd. If not
3260 successful, call dup2 recursively until we are, then close the
3261 unsuccessful ones. */
3262
3263 int
3264 dup2 (int oldd, int newd)
3265 {
3266 int fd, ret;
3267
3268 close (newd);
3269
3270 fd = dup (oldd);
3271 if (fd == -1)
3272 return -1;
3273 if (fd == newd)
3274 return newd;
3275 ret = dup2 (oldd, newd);
3276 close (fd);
3277 return ret;
3278 }
3279
3280
3281 /* let it fail for now */
3282
3283 char *
3284 sbrk (int incr)
3285 {
3286 return (char *) -1;
3287 }
3288
3289
3290 int
3291 fsync (int fd)
3292 {
3293 return 0;
3294 }
3295
3296
3297 int
3298 ioctl (int d, int request, void *argp)
3299 {
3300 return -1;
3301 }
3302
3303
3304 #ifdef __MRC__
3305 int
3306 isatty (int fildes)
3307 {
3308 if (fildes >=0 && fildes <= 2)
3309 return 1;
3310 else
3311 return 0;
3312 }
3313
3314
3315 int
3316 getgid ()
3317 {
3318 return 100;
3319 }
3320
3321
3322 int
3323 getegid ()
3324 {
3325 return 100;
3326 }
3327
3328
3329 int
3330 getuid ()
3331 {
3332 return 200;
3333 }
3334
3335
3336 int
3337 geteuid ()
3338 {
3339 return 200;
3340 }
3341 #endif /* __MRC__ */
3342
3343
3344 #ifdef __MWERKS__
3345 #if __MSL__ < 0x6000
3346 #undef getpid
3347 int
3348 getpid ()
3349 {
3350 return 9999;
3351 }
3352 #endif
3353 #endif /* __MWERKS__ */
3354
3355 #endif /* ! MAC_OSX */
3356
3357
3358 /* Return the path to the directory in which Emacs can create
3359 temporary files. The MacOS "temporary items" directory cannot be
3360 used because it removes the file written by a process when it
3361 exits. In that sense it's more like "/dev/null" than "/tmp" (but
3362 again not exactly). And of course Emacs needs to read back the
3363 files written by its subprocesses. So here we write the files to a
3364 directory "Emacs" in the Preferences Folder. This directory is
3365 created if it does not exist. */
3366
3367 char *
3368 get_temp_dir_name ()
3369 {
3370 static char *temp_dir_name = NULL;
3371 short vol_ref_num;
3372 long dir_id;
3373 OSErr err;
3374 Str255 full_path;
3375 char unix_dir_name[MAXPATHLEN+1];
3376 DIR *dir;
3377
3378 /* Cache directory name with pointer temp_dir_name.
3379 Look for it only the first time. */
3380 if (!temp_dir_name)
3381 {
3382 err = FindFolder (kOnSystemDisk, kPreferencesFolderType, kCreateFolder,
3383 &vol_ref_num, &dir_id);
3384 if (err != noErr)
3385 return NULL;
3386
3387 if (!path_from_vol_dir_name (full_path, 255, vol_ref_num, dir_id, "\p"))
3388 return NULL;
3389
3390 if (strlen (full_path) + 6 <= MAXPATHLEN)
3391 strcat (full_path, "Emacs:");
3392 else
3393 return NULL;
3394
3395 if (!mac_to_posix_pathname (full_path, unix_dir_name, MAXPATHLEN+1))
3396 return NULL;
3397
3398 dir = opendir (unix_dir_name); /* check whether temp directory exists */
3399 if (dir)
3400 closedir (dir);
3401 else if (mkdir (unix_dir_name, 0700) != 0) /* create it if not */
3402 return NULL;
3403
3404 temp_dir_name = (char *) malloc (strlen (unix_dir_name) + 1);
3405 strcpy (temp_dir_name, unix_dir_name);
3406 }
3407
3408 return temp_dir_name;
3409 }
3410
3411 #ifndef MAC_OSX
3412
3413 /* Allocate and construct an array of pointers to strings from a list
3414 of strings stored in a 'STR#' resource. The returned pointer array
3415 is stored in the style of argv and environ: if the 'STR#' resource
3416 contains numString strings, a pointer array with numString+1
3417 elements is returned in which the last entry contains a null
3418 pointer. The pointer to the pointer array is passed by pointer in
3419 parameter t. The resource ID of the 'STR#' resource is passed in
3420 parameter StringListID.
3421 */
3422
3423 void
3424 get_string_list (char ***t, short string_list_id)
3425 {
3426 Handle h;
3427 Ptr p;
3428 int i, num_strings;
3429
3430 h = GetResource ('STR#', string_list_id);
3431 if (h)
3432 {
3433 HLock (h);
3434 p = *h;
3435 num_strings = * (short *) p;
3436 p += sizeof(short);
3437 *t = (char **) malloc (sizeof (char *) * (num_strings + 1));
3438 for (i = 0; i < num_strings; i++)
3439 {
3440 short length = *p++;
3441 (*t)[i] = (char *) malloc (length + 1);
3442 strncpy ((*t)[i], p, length);
3443 (*t)[i][length] = '\0';
3444 p += length;
3445 }
3446 (*t)[num_strings] = 0;
3447 HUnlock (h);
3448 }
3449 else
3450 {
3451 /* Return no string in case GetResource fails. Bug fixed by
3452 Ikegami Tsutomu. Caused MPW build to crash without sym -on
3453 option (no sym -on implies -opt local). */
3454 *t = (char **) malloc (sizeof (char *));
3455 (*t)[0] = 0;
3456 }
3457 }
3458
3459
3460 static char *
3461 get_path_to_system_folder ()
3462 {
3463 short vol_ref_num;
3464 long dir_id;
3465 OSErr err;
3466 Str255 full_path;
3467 static char system_folder_unix_name[MAXPATHLEN+1];
3468 DIR *dir;
3469
3470 err = FindFolder (kOnSystemDisk, kSystemFolderType, kDontCreateFolder,
3471 &vol_ref_num, &dir_id);
3472 if (err != noErr)
3473 return NULL;
3474
3475 if (!path_from_vol_dir_name (full_path, 255, vol_ref_num, dir_id, "\p"))
3476 return NULL;
3477
3478 if (!mac_to_posix_pathname (full_path, system_folder_unix_name,
3479 MAXPATHLEN+1))
3480 return NULL;
3481
3482 return system_folder_unix_name;
3483 }
3484
3485
3486 char **environ;
3487
3488 #define ENVIRON_STRING_LIST_ID 128
3489
3490 /* Get environment variable definitions from STR# resource. */
3491
3492 void
3493 init_environ ()
3494 {
3495 int i;
3496
3497 get_string_list (&environ, ENVIRON_STRING_LIST_ID);
3498
3499 i = 0;
3500 while (environ[i])
3501 i++;
3502
3503 /* Make HOME directory the one Emacs starts up in if not specified
3504 by resource. */
3505 if (getenv ("HOME") == NULL)
3506 {
3507 environ = (char **) realloc (environ, sizeof (char *) * (i + 2));
3508 if (environ)
3509 {
3510 environ[i] = (char *) malloc (strlen (my_passwd_dir) + 6);
3511 if (environ[i])
3512 {
3513 strcpy (environ[i], "HOME=");
3514 strcat (environ[i], my_passwd_dir);
3515 }
3516 environ[i+1] = 0;
3517 i++;
3518 }
3519 }
3520
3521 /* Make HOME directory the one Emacs starts up in if not specified
3522 by resource. */
3523 if (getenv ("MAIL") == NULL)
3524 {
3525 environ = (char **) realloc (environ, sizeof (char *) * (i + 2));
3526 if (environ)
3527 {
3528 char * path_to_system_folder = get_path_to_system_folder ();
3529 environ[i] = (char *) malloc (strlen (path_to_system_folder) + 22);
3530 if (environ[i])
3531 {
3532 strcpy (environ[i], "MAIL=");
3533 strcat (environ[i], path_to_system_folder);
3534 strcat (environ[i], "Eudora Folder/In");
3535 }
3536 environ[i+1] = 0;
3537 }
3538 }
3539 }
3540
3541
3542 /* Return the value of the environment variable NAME. */
3543
3544 char *
3545 getenv (const char *name)
3546 {
3547 int length = strlen(name);
3548 char **e;
3549
3550 for (e = environ; *e != 0; e++)
3551 if (strncmp(*e, name, length) == 0 && (*e)[length] == '=')
3552 return &(*e)[length + 1];
3553
3554 if (strcmp (name, "TMPDIR") == 0)
3555 return get_temp_dir_name ();
3556
3557 return 0;
3558 }
3559
3560
3561 #ifdef __MRC__
3562 /* see Interfaces&Libraries:Interfaces:CIncludes:signal.h */
3563 char *sys_siglist[] =
3564 {
3565 "Zero is not a signal!!!",
3566 "Abort", /* 1 */
3567 "Interactive user interrupt", /* 2 */ "?",
3568 "Floating point exception", /* 4 */ "?", "?", "?",
3569 "Illegal instruction", /* 8 */ "?", "?", "?", "?", "?", "?", "?",
3570 "Segment violation", /* 16 */ "?", "?", "?", "?", "?", "?", "?",
3571 "?", "?", "?", "?", "?", "?", "?", "?",
3572 "Terminal" /* 32 */
3573 };
3574 #elif __MWERKS__
3575 char *sys_siglist[] =
3576 {
3577 "Zero is not a signal!!!",
3578 "Abort",
3579 "Floating point exception",
3580 "Illegal instruction",
3581 "Interactive user interrupt",
3582 "Segment violation",
3583 "Terminal"
3584 };
3585 #else /* not __MRC__ and not __MWERKS__ */
3586 You lose!!!
3587 #endif /* not __MRC__ and not __MWERKS__ */
3588
3589
3590 #include <utsname.h>
3591
3592 int
3593 uname (struct utsname *name)
3594 {
3595 char **system_name;
3596 system_name = GetString (-16413); /* IM - Resource Manager Reference */
3597 if (system_name)
3598 {
3599 BlockMove (*system_name, name->nodename, (*system_name)[0]+1);
3600 p2cstr (name->nodename);
3601 return 0;
3602 }
3603 else
3604 return -1;
3605 }
3606
3607
3608 /* Event class of HLE sent to subprocess. */
3609 const OSType kEmacsSubprocessSend = 'ESND';
3610
3611 /* Event class of HLE sent back from subprocess. */
3612 const OSType kEmacsSubprocessReply = 'ERPY';
3613
3614
3615 char *
3616 mystrchr (char *s, char c)
3617 {
3618 while (*s && *s != c)
3619 {
3620 if (*s == '\\')
3621 s++;
3622 s++;
3623 }
3624
3625 if (*s)
3626 {
3627 *s = '\0';
3628 return s;
3629 }
3630 else
3631 return NULL;
3632 }
3633
3634
3635 char *
3636 mystrtok (char *s)
3637 {
3638 while (*s)
3639 s++;
3640
3641 return s + 1;
3642 }
3643
3644
3645 void
3646 mystrcpy (char *to, char *from)
3647 {
3648 while (*from)
3649 {
3650 if (*from == '\\')
3651 from++;
3652 *to++ = *from++;
3653 }
3654 *to = '\0';
3655 }
3656
3657
3658 /* Start a Mac subprocess. Arguments for it is passed in argv (null
3659 terminated). The process should run with the default directory
3660 "workdir", read input from "infn", and write output and error to
3661 "outfn" and "errfn", resp. The Process Manager call
3662 LaunchApplication is used to start the subprocess. We use high
3663 level events as the mechanism to pass arguments to the subprocess
3664 and to make Emacs wait for the subprocess to terminate and pass
3665 back a result code. The bulk of the code here packs the arguments
3666 into one message to be passed together with the high level event.
3667 Emacs also sometimes starts a subprocess using a shell to perform
3668 wildcard filename expansion. Since we don't really have a shell on
3669 the Mac, this case is detected and the starting of the shell is
3670 by-passed. We really need to add code here to do filename
3671 expansion to support such functionality.
3672
3673 We can't use this strategy in Carbon because the High Level Event
3674 APIs are not available. */
3675
3676 int
3677 run_mac_command (argv, workdir, infn, outfn, errfn)
3678 unsigned char **argv;
3679 const char *workdir;
3680 const char *infn, *outfn, *errfn;
3681 {
3682 #if TARGET_API_MAC_CARBON
3683 return -1;
3684 #else /* not TARGET_API_MAC_CARBON */
3685 char macappname[MAXPATHLEN+1], macworkdir[MAXPATHLEN+1];
3686 char macinfn[MAXPATHLEN+1], macoutfn[MAXPATHLEN+1], macerrfn[MAXPATHLEN+1];
3687 int paramlen, argc, newargc, j, retries;
3688 char **newargv, *param, *p;
3689 OSErr iErr;
3690 FSSpec spec;
3691 LaunchParamBlockRec lpbr;
3692 EventRecord send_event, reply_event;
3693 RgnHandle cursor_region_handle;
3694 TargetID targ;
3695 unsigned long ref_con, len;
3696
3697 if (posix_to_mac_pathname (workdir, macworkdir, MAXPATHLEN+1) == 0)
3698 return -1;
3699 if (posix_to_mac_pathname (infn, macinfn, MAXPATHLEN+1) == 0)
3700 return -1;
3701 if (posix_to_mac_pathname (outfn, macoutfn, MAXPATHLEN+1) == 0)
3702 return -1;
3703 if (posix_to_mac_pathname (errfn, macerrfn, MAXPATHLEN+1) == 0)
3704 return -1;
3705
3706 paramlen = strlen (macworkdir) + strlen (macinfn) + strlen (macoutfn)
3707 + strlen (macerrfn) + 4; /* count nulls at end of strings */
3708
3709 argc = 0;
3710 while (argv[argc])
3711 argc++;
3712
3713 if (argc == 0)
3714 return -1;
3715
3716 /* If a subprocess is invoked with a shell, we receive 3 arguments
3717 of the form: "<path to emacs bins>/sh" "-c" "<path to emacs
3718 bins>/<command> <command args>" */
3719 j = strlen (argv[0]);
3720 if (j >= 3 && strcmp (argv[0]+j-3, "/sh") == 0
3721 && argc == 3 && strcmp (argv[1], "-c") == 0)
3722 {
3723 char *command, *t, tempmacpathname[MAXPATHLEN+1];
3724
3725 /* The arguments for the command in argv[2] are separated by
3726 spaces. Count them and put the count in newargc. */
3727 command = (char *) alloca (strlen (argv[2])+2);
3728 strcpy (command, argv[2]);
3729 if (command[strlen (command) - 1] != ' ')
3730 strcat (command, " ");
3731
3732 t = command;
3733 newargc = 0;
3734 t = mystrchr (t, ' ');
3735 while (t)
3736 {
3737 newargc++;
3738 t = mystrchr (t+1, ' ');
3739 }
3740
3741 newargv = (char **) alloca (sizeof (char *) * newargc);
3742
3743 t = command;
3744 for (j = 0; j < newargc; j++)
3745 {
3746 newargv[j] = (char *) alloca (strlen (t) + 1);
3747 mystrcpy (newargv[j], t);
3748
3749 t = mystrtok (t);
3750 paramlen += strlen (newargv[j]) + 1;
3751 }
3752
3753 if (strncmp (newargv[0], "~emacs/", 7) == 0)
3754 {
3755 if (posix_to_mac_pathname (newargv[0], tempmacpathname, MAXPATHLEN+1)
3756 == 0)
3757 return -1;
3758 }
3759 else
3760 { /* sometimes Emacs call "sh" without a path for the command */
3761 #if 0
3762 char *t = (char *) alloca (strlen (newargv[0]) + 7 + 1);
3763 strcpy (t, "~emacs/");
3764 strcat (t, newargv[0]);
3765 #endif /* 0 */
3766 Lisp_Object path;
3767 openp (Vexec_path, build_string (newargv[0]), Vexec_suffixes, &path,
3768 make_number (X_OK));
3769
3770 if (NILP (path))
3771 return -1;
3772 if (posix_to_mac_pathname (SDATA (path), tempmacpathname,
3773 MAXPATHLEN+1) == 0)
3774 return -1;
3775 }
3776 strcpy (macappname, tempmacpathname);
3777 }
3778 else
3779 {
3780 if (posix_to_mac_pathname (argv[0], macappname, MAXPATHLEN+1) == 0)
3781 return -1;
3782
3783 newargv = (char **) alloca (sizeof (char *) * argc);
3784 newargc = argc;
3785 for (j = 1; j < argc; j++)
3786 {
3787 if (strncmp (argv[j], "~emacs/", 7) == 0)
3788 {
3789 char *t = strchr (argv[j], ' ');
3790 if (t)
3791 {
3792 char tempcmdname[MAXPATHLEN+1], tempmaccmdname[MAXPATHLEN+1];
3793 strncpy (tempcmdname, argv[j], t-argv[j]);
3794 tempcmdname[t-argv[j]] = '\0';
3795 if (posix_to_mac_pathname (tempcmdname, tempmaccmdname,
3796 MAXPATHLEN+1) == 0)
3797 return -1;
3798 newargv[j] = (char *) alloca (strlen (tempmaccmdname)
3799 + strlen (t) + 1);
3800 strcpy (newargv[j], tempmaccmdname);
3801 strcat (newargv[j], t);
3802 }
3803 else
3804 {
3805 char tempmaccmdname[MAXPATHLEN+1];
3806 if (posix_to_mac_pathname (argv[j], tempmaccmdname,
3807 MAXPATHLEN+1) == 0)
3808 return -1;
3809 newargv[j] = (char *) alloca (strlen (tempmaccmdname)+1);
3810 strcpy (newargv[j], tempmaccmdname);
3811 }
3812 }
3813 else
3814 newargv[j] = argv[j];
3815 paramlen += strlen (newargv[j]) + 1;
3816 }
3817 }
3818
3819 /* After expanding all the arguments, we now know the length of the
3820 parameter block to be sent to the subprocess as a message
3821 attached to the HLE. */
3822 param = (char *) malloc (paramlen + 1);
3823 if (!param)
3824 return -1;
3825
3826 p = param;
3827 *p++ = newargc;
3828 /* first byte of message contains number of arguments for command */
3829 strcpy (p, macworkdir);
3830 p += strlen (macworkdir);
3831 *p++ = '\0';
3832 /* null terminate strings sent so it's possible to use strcpy over there */
3833 strcpy (p, macinfn);
3834 p += strlen (macinfn);
3835 *p++ = '\0';
3836 strcpy (p, macoutfn);
3837 p += strlen (macoutfn);
3838 *p++ = '\0';
3839 strcpy (p, macerrfn);
3840 p += strlen (macerrfn);
3841 *p++ = '\0';
3842 for (j = 1; j < newargc; j++)
3843 {
3844 strcpy (p, newargv[j]);
3845 p += strlen (newargv[j]);
3846 *p++ = '\0';
3847 }
3848
3849 c2pstr (macappname);
3850
3851 iErr = FSMakeFSSpec (0, 0, macappname, &spec);
3852
3853 if (iErr != noErr)
3854 {
3855 free (param);
3856 return -1;
3857 }
3858
3859 lpbr.launchBlockID = extendedBlock;
3860 lpbr.launchEPBLength = extendedBlockLen;
3861 lpbr.launchControlFlags = launchContinue + launchNoFileFlags;
3862 lpbr.launchAppSpec = &spec;
3863 lpbr.launchAppParameters = NULL;
3864
3865 iErr = LaunchApplication (&lpbr); /* call the subprocess */
3866 if (iErr != noErr)
3867 {
3868 free (param);
3869 return -1;
3870 }
3871
3872 send_event.what = kHighLevelEvent;
3873 send_event.message = kEmacsSubprocessSend;
3874 /* Event ID stored in "where" unused */
3875
3876 retries = 3;
3877 /* OS may think current subprocess has terminated if previous one
3878 terminated recently. */
3879 do
3880 {
3881 iErr = PostHighLevelEvent (&send_event, &lpbr.launchProcessSN, 0, param,
3882 paramlen + 1, receiverIDisPSN);
3883 }
3884 while (iErr == sessClosedErr && retries-- > 0);
3885
3886 if (iErr != noErr)
3887 {
3888 free (param);
3889 return -1;
3890 }
3891
3892 cursor_region_handle = NewRgn ();
3893
3894 /* Wait for the subprocess to finish, when it will send us a ERPY
3895 high level event. */
3896 while (1)
3897 if (WaitNextEvent (highLevelEventMask, &reply_event, 180,
3898 cursor_region_handle)
3899 && reply_event.message == kEmacsSubprocessReply)
3900 break;
3901
3902 /* The return code is sent through the refCon */
3903 iErr = AcceptHighLevelEvent (&targ, &ref_con, NULL, &len);
3904 if (iErr != noErr)
3905 {
3906 DisposeHandle ((Handle) cursor_region_handle);
3907 free (param);
3908 return -1;
3909 }
3910
3911 DisposeHandle ((Handle) cursor_region_handle);
3912 free (param);
3913
3914 return ref_con;
3915 #endif /* not TARGET_API_MAC_CARBON */
3916 }
3917
3918
3919 DIR *
3920 opendir (const char *dirname)
3921 {
3922 char true_pathname[MAXPATHLEN+1], fully_resolved_name[MAXPATHLEN+1];
3923 char mac_pathname[MAXPATHLEN+1], vol_name[MAXPATHLEN+1];
3924 DIR *dirp;
3925 CInfoPBRec cipb;
3926 HVolumeParam vpb;
3927 int len, vol_name_len;
3928
3929 if (find_true_pathname (dirname, true_pathname, MAXPATHLEN+1) == -1)
3930 return 0;
3931
3932 len = readlink (true_pathname, fully_resolved_name, MAXPATHLEN);
3933 if (len > -1)
3934 fully_resolved_name[len] = '\0';
3935 else
3936 strcpy (fully_resolved_name, true_pathname);
3937
3938 dirp = (DIR *) malloc (sizeof(DIR));
3939 if (!dirp)
3940 return 0;
3941
3942 /* Handle special case when dirname is "/": sets up for readir to
3943 get all mount volumes. */
3944 if (strcmp (fully_resolved_name, "/") == 0)
3945 {
3946 dirp->getting_volumes = 1; /* special all mounted volumes DIR struct */
3947 dirp->current_index = 1; /* index for first volume */
3948 return dirp;
3949 }
3950
3951 /* Handle typical cases: not accessing all mounted volumes. */
3952 if (!posix_to_mac_pathname (fully_resolved_name, mac_pathname, MAXPATHLEN+1))
3953 return 0;
3954
3955 /* Emacs calls opendir without the trailing '/', Mac needs trailing ':' */
3956 len = strlen (mac_pathname);
3957 if (mac_pathname[len - 1] != ':' && len < MAXPATHLEN)
3958 strcat (mac_pathname, ":");
3959
3960 /* Extract volume name */
3961 vol_name_len = strchr (mac_pathname, ':') - mac_pathname;
3962 strncpy (vol_name, mac_pathname, vol_name_len);
3963 vol_name[vol_name_len] = '\0';
3964 strcat (vol_name, ":");
3965
3966 c2pstr (mac_pathname);
3967 cipb.hFileInfo.ioNamePtr = mac_pathname;
3968 /* using full pathname so vRefNum and DirID ignored */
3969 cipb.hFileInfo.ioVRefNum = 0;
3970 cipb.hFileInfo.ioDirID = 0;
3971 cipb.hFileInfo.ioFDirIndex = 0;
3972 /* set to 0 to get information about specific dir or file */
3973
3974 errno = PBGetCatInfo (&cipb, false);
3975 if (errno != noErr)
3976 {
3977 errno = ENOENT;
3978 return 0;
3979 }
3980
3981 if (!(cipb.hFileInfo.ioFlAttrib & 0x10)) /* bit 4 = 1 for directories */
3982 return 0; /* not a directory */
3983
3984 dirp->dir_id = cipb.dirInfo.ioDrDirID; /* used later in readdir */
3985 dirp->getting_volumes = 0;
3986 dirp->current_index = 1; /* index for first file/directory */
3987
3988 c2pstr (vol_name);
3989 vpb.ioNamePtr = vol_name;
3990 /* using full pathname so vRefNum and DirID ignored */
3991 vpb.ioVRefNum = 0;
3992 vpb.ioVolIndex = -1;
3993 errno = PBHGetVInfo ((union HParamBlockRec *) &vpb, false);
3994 if (errno != noErr)
3995 {
3996 errno = ENOENT;
3997 return 0;
3998 }
3999
4000 dirp->vol_ref_num = vpb.ioVRefNum;
4001
4002 return dirp;
4003 }
4004
4005 int
4006 closedir (DIR *dp)
4007 {
4008 free (dp);
4009
4010 return 0;
4011 }
4012
4013
4014 struct dirent *
4015 readdir (DIR *dp)
4016 {
4017 HParamBlockRec hpblock;
4018 CInfoPBRec cipb;
4019 static struct dirent s_dirent;
4020 static Str255 s_name;
4021 int done;
4022 char *p;
4023
4024 /* Handle the root directory containing the mounted volumes. Call
4025 PBHGetVInfo specifying an index to obtain the info for a volume.
4026 PBHGetVInfo returns an error when it receives an index beyond the
4027 last volume, at which time we should return a nil dirent struct
4028 pointer. */
4029 if (dp->getting_volumes)
4030 {
4031 hpblock.volumeParam.ioNamePtr = s_name;
4032 hpblock.volumeParam.ioVRefNum = 0;
4033 hpblock.volumeParam.ioVolIndex = dp->current_index;
4034
4035 errno = PBHGetVInfo (&hpblock, false);
4036 if (errno != noErr)
4037 {
4038 errno = ENOENT;
4039 return 0;
4040 }
4041
4042 p2cstr (s_name);
4043 strcat (s_name, "/"); /* need "/" for stat to work correctly */
4044
4045 dp->current_index++;
4046
4047 s_dirent.d_ino = hpblock.volumeParam.ioVRefNum;
4048 s_dirent.d_name = s_name;
4049
4050 return &s_dirent;
4051 }
4052 else
4053 {
4054 cipb.hFileInfo.ioVRefNum = dp->vol_ref_num;
4055 cipb.hFileInfo.ioNamePtr = s_name;
4056 /* location to receive filename returned */
4057
4058 /* return only visible files */
4059 done = false;
4060 while (!done)
4061 {
4062 cipb.hFileInfo.ioDirID = dp->dir_id;
4063 /* directory ID found by opendir */
4064 cipb.hFileInfo.ioFDirIndex = dp->current_index;
4065
4066 errno = PBGetCatInfo (&cipb, false);
4067 if (errno != noErr)
4068 {
4069 errno = ENOENT;
4070 return 0;
4071 }
4072
4073 /* insist on a visible entry */
4074 if (cipb.hFileInfo.ioFlAttrib & 0x10) /* directory? */
4075 done = !(cipb.dirInfo.ioDrUsrWds.frFlags & fInvisible);
4076 else
4077 done = !(cipb.hFileInfo.ioFlFndrInfo.fdFlags & fInvisible);
4078
4079 dp->current_index++;
4080 }
4081
4082 p2cstr (s_name);
4083
4084 p = s_name;
4085 while (*p)
4086 {
4087 if (*p == '/')
4088 *p = ':';
4089 p++;
4090 }
4091
4092 s_dirent.d_ino = cipb.dirInfo.ioDrDirID;
4093 /* value unimportant: non-zero for valid file */
4094 s_dirent.d_name = s_name;
4095
4096 return &s_dirent;
4097 }
4098 }
4099
4100
4101 char *
4102 getwd (char *path)
4103 {
4104 char mac_pathname[MAXPATHLEN+1];
4105 Str255 directory_name;
4106 OSErr errno;
4107 CInfoPBRec cipb;
4108
4109 if (path_from_vol_dir_name (mac_pathname, 255, 0, 0, "\p") == 0)
4110 return NULL;
4111
4112 if (mac_to_posix_pathname (mac_pathname, path, MAXPATHLEN+1) == 0)
4113 return 0;
4114 else
4115 return path;
4116 }
4117
4118 #endif /* ! MAC_OSX */
4119
4120
4121 void
4122 initialize_applescript ()
4123 {
4124 AEDesc null_desc;
4125 OSAError osaerror;
4126
4127 /* if open fails, as_scripting_component is set to NULL. Its
4128 subsequent use in OSA calls will fail with badComponentInstance
4129 error. */
4130 as_scripting_component = OpenDefaultComponent (kOSAComponentType,
4131 kAppleScriptSubtype);
4132
4133 null_desc.descriptorType = typeNull;
4134 null_desc.dataHandle = 0;
4135 osaerror = OSAMakeContext (as_scripting_component, &null_desc,
4136 kOSANullScript, &as_script_context);
4137 if (osaerror)
4138 as_script_context = kOSANullScript;
4139 /* use default context if create fails */
4140 }
4141
4142
4143 void
4144 terminate_applescript()
4145 {
4146 OSADispose (as_scripting_component, as_script_context);
4147 CloseComponent (as_scripting_component);
4148 }
4149
4150 /* Convert a lisp string to the 4 byte character code. */
4151
4152 OSType
4153 mac_get_code_from_arg(Lisp_Object arg, OSType defCode)
4154 {
4155 OSType result;
4156 if (NILP(arg))
4157 {
4158 result = defCode;
4159 }
4160 else
4161 {
4162 /* check type string */
4163 CHECK_STRING(arg);
4164 if (SBYTES (arg) != 4)
4165 {
4166 error ("Wrong argument: need string of length 4 for code");
4167 }
4168 result = EndianU32_BtoN (*((UInt32 *) SDATA (arg)));
4169 }
4170 return result;
4171 }
4172
4173 /* Convert the 4 byte character code into a 4 byte string. */
4174
4175 Lisp_Object
4176 mac_get_object_from_code(OSType defCode)
4177 {
4178 UInt32 code = EndianU32_NtoB (defCode);
4179
4180 return make_unibyte_string ((char *)&code, 4);
4181 }
4182
4183
4184 DEFUN ("mac-get-file-creator", Fmac_get_file_creator, Smac_get_file_creator, 1, 1, 0,
4185 doc: /* Get the creator code of FILENAME as a four character string. */)
4186 (filename)
4187 Lisp_Object filename;
4188 {
4189 OSStatus status;
4190 #ifdef MAC_OSX
4191 FSRef fref;
4192 #else
4193 FSSpec fss;
4194 #endif
4195 Lisp_Object result = Qnil;
4196 CHECK_STRING (filename);
4197
4198 if (NILP(Ffile_exists_p(filename)) || !NILP(Ffile_directory_p(filename))) {
4199 return Qnil;
4200 }
4201 filename = Fexpand_file_name (filename, Qnil);
4202
4203 BLOCK_INPUT;
4204 #ifdef MAC_OSX
4205 status = FSPathMakeRef(SDATA(ENCODE_FILE(filename)), &fref, NULL);
4206 #else
4207 status = posix_pathname_to_fsspec (SDATA (ENCODE_FILE (filename)), &fss);
4208 #endif
4209
4210 if (status == noErr)
4211 {
4212 #ifdef MAC_OSX
4213 FSCatalogInfo catalogInfo;
4214
4215 status = FSGetCatalogInfo(&fref, kFSCatInfoFinderInfo,
4216 &catalogInfo, NULL, NULL, NULL);
4217 #else
4218 FInfo finder_info;
4219
4220 status = FSpGetFInfo (&fss, &finder_info);
4221 #endif
4222 if (status == noErr)
4223 {
4224 #ifdef MAC_OSX
4225 result = mac_get_object_from_code(((FileInfo*)&catalogInfo.finderInfo)->fileCreator);
4226 #else
4227 result = mac_get_object_from_code (finder_info.fdCreator);
4228 #endif
4229 }
4230 }
4231 UNBLOCK_INPUT;
4232 if (status != noErr) {
4233 error ("Error while getting file information.");
4234 }
4235 return result;
4236 }
4237
4238 DEFUN ("mac-get-file-type", Fmac_get_file_type, Smac_get_file_type, 1, 1, 0,
4239 doc: /* Get the type code of FILENAME as a four character string. */)
4240 (filename)
4241 Lisp_Object filename;
4242 {
4243 OSStatus status;
4244 #ifdef MAC_OSX
4245 FSRef fref;
4246 #else
4247 FSSpec fss;
4248 #endif
4249 Lisp_Object result = Qnil;
4250 CHECK_STRING (filename);
4251
4252 if (NILP(Ffile_exists_p(filename)) || !NILP(Ffile_directory_p(filename))) {
4253 return Qnil;
4254 }
4255 filename = Fexpand_file_name (filename, Qnil);
4256
4257 BLOCK_INPUT;
4258 #ifdef MAC_OSX
4259 status = FSPathMakeRef(SDATA(ENCODE_FILE(filename)), &fref, NULL);
4260 #else
4261 status = posix_pathname_to_fsspec (SDATA (ENCODE_FILE (filename)), &fss);
4262 #endif
4263
4264 if (status == noErr)
4265 {
4266 #ifdef MAC_OSX
4267 FSCatalogInfo catalogInfo;
4268
4269 status = FSGetCatalogInfo(&fref, kFSCatInfoFinderInfo,
4270 &catalogInfo, NULL, NULL, NULL);
4271 #else
4272 FInfo finder_info;
4273
4274 status = FSpGetFInfo (&fss, &finder_info);
4275 #endif
4276 if (status == noErr)
4277 {
4278 #ifdef MAC_OSX
4279 result = mac_get_object_from_code(((FileInfo*)&catalogInfo.finderInfo)->fileType);
4280 #else
4281 result = mac_get_object_from_code (finder_info.fdType);
4282 #endif
4283 }
4284 }
4285 UNBLOCK_INPUT;
4286 if (status != noErr) {
4287 error ("Error while getting file information.");
4288 }
4289 return result;
4290 }
4291
4292 DEFUN ("mac-set-file-creator", Fmac_set_file_creator, Smac_set_file_creator, 1, 2, 0,
4293 doc: /* Set creator code of file FILENAME to CODE.
4294 If non-nil, CODE must be a 4-character string. Otherwise, 'EMAx' is
4295 assumed. Return non-nil if successful. */)
4296 (filename, code)
4297 Lisp_Object filename, code;
4298 {
4299 OSStatus status;
4300 #ifdef MAC_OSX
4301 FSRef fref;
4302 #else
4303 FSSpec fss;
4304 #endif
4305 OSType cCode;
4306 CHECK_STRING (filename);
4307
4308 cCode = mac_get_code_from_arg(code, 'EMAx');
4309
4310 if (NILP(Ffile_exists_p(filename)) || !NILP(Ffile_directory_p(filename))) {
4311 return Qnil;
4312 }
4313 filename = Fexpand_file_name (filename, Qnil);
4314
4315 BLOCK_INPUT;
4316 #ifdef MAC_OSX
4317 status = FSPathMakeRef(SDATA(ENCODE_FILE(filename)), &fref, NULL);
4318 #else
4319 status = posix_pathname_to_fsspec (SDATA (ENCODE_FILE (filename)), &fss);
4320 #endif
4321
4322 if (status == noErr)
4323 {
4324 #ifdef MAC_OSX
4325 FSCatalogInfo catalogInfo;
4326 FSRef parentDir;
4327 status = FSGetCatalogInfo(&fref, kFSCatInfoFinderInfo,
4328 &catalogInfo, NULL, NULL, &parentDir);
4329 #else
4330 FInfo finder_info;
4331
4332 status = FSpGetFInfo (&fss, &finder_info);
4333 #endif
4334 if (status == noErr)
4335 {
4336 #ifdef MAC_OSX
4337 ((FileInfo*)&catalogInfo.finderInfo)->fileCreator = cCode;
4338 status = FSSetCatalogInfo(&fref, kFSCatInfoFinderInfo, &catalogInfo);
4339 /* TODO: on Mac OS 10.2, we need to touch the parent dir, FNNotify? */
4340 #else
4341 finder_info.fdCreator = cCode;
4342 status = FSpSetFInfo (&fss, &finder_info);
4343 #endif
4344 }
4345 }
4346 UNBLOCK_INPUT;
4347 if (status != noErr) {
4348 error ("Error while setting creator information.");
4349 }
4350 return Qt;
4351 }
4352
4353 DEFUN ("mac-set-file-type", Fmac_set_file_type, Smac_set_file_type, 2, 2, 0,
4354 doc: /* Set file code of file FILENAME to CODE.
4355 CODE must be a 4-character string. Return non-nil if successful. */)
4356 (filename, code)
4357 Lisp_Object filename, code;
4358 {
4359 OSStatus status;
4360 #ifdef MAC_OSX
4361 FSRef fref;
4362 #else
4363 FSSpec fss;
4364 #endif
4365 OSType cCode;
4366 CHECK_STRING (filename);
4367
4368 cCode = mac_get_code_from_arg(code, 0); /* Default to empty code*/
4369
4370 if (NILP(Ffile_exists_p(filename)) || !NILP(Ffile_directory_p(filename))) {
4371 return Qnil;
4372 }
4373 filename = Fexpand_file_name (filename, Qnil);
4374
4375 BLOCK_INPUT;
4376 #ifdef MAC_OSX
4377 status = FSPathMakeRef(SDATA(ENCODE_FILE(filename)), &fref, NULL);
4378 #else
4379 status = posix_pathname_to_fsspec (SDATA (ENCODE_FILE (filename)), &fss);
4380 #endif
4381
4382 if (status == noErr)
4383 {
4384 #ifdef MAC_OSX
4385 FSCatalogInfo catalogInfo;
4386 FSRef parentDir;
4387 status = FSGetCatalogInfo(&fref, kFSCatInfoFinderInfo,
4388 &catalogInfo, NULL, NULL, &parentDir);
4389 #else
4390 FInfo finder_info;
4391
4392 status = FSpGetFInfo (&fss, &finder_info);
4393 #endif
4394 if (status == noErr)
4395 {
4396 #ifdef MAC_OSX
4397 ((FileInfo*)&catalogInfo.finderInfo)->fileType = cCode;
4398 status = FSSetCatalogInfo(&fref, kFSCatInfoFinderInfo, &catalogInfo);
4399 /* TODO: on Mac OS 10.2, we need to touch the parent dir, FNNotify? */
4400 #else
4401 finder_info.fdType = cCode;
4402 status = FSpSetFInfo (&fss, &finder_info);
4403 #endif
4404 }
4405 }
4406 UNBLOCK_INPUT;
4407 if (status != noErr) {
4408 error ("Error while setting creator information.");
4409 }
4410 return Qt;
4411 }
4412
4413
4414 /* Compile and execute the AppleScript SCRIPT and return the error
4415 status as function value. A zero is returned if compilation and
4416 execution is successful, in which case *RESULT is set to a Lisp
4417 string containing the resulting script value. Otherwise, the Mac
4418 error code is returned and *RESULT is set to an error Lisp string.
4419 For documentation on the MacOS scripting architecture, see Inside
4420 Macintosh - Interapplication Communications: Scripting
4421 Components. */
4422
4423 static long
4424 do_applescript (script, result)
4425 Lisp_Object script, *result;
4426 {
4427 AEDesc script_desc, result_desc, error_desc, *desc = NULL;
4428 OSErr error;
4429 OSAError osaerror;
4430
4431 *result = Qnil;
4432
4433 if (!as_scripting_component)
4434 initialize_applescript();
4435
4436 error = AECreateDesc (typeChar, SDATA (script), SBYTES (script),
4437 &script_desc);
4438 if (error)
4439 return error;
4440
4441 osaerror = OSADoScript (as_scripting_component, &script_desc, kOSANullScript,
4442 typeChar, kOSAModeNull, &result_desc);
4443
4444 if (osaerror == noErr)
4445 /* success: retrieve resulting script value */
4446 desc = &result_desc;
4447 else if (osaerror == errOSAScriptError)
4448 /* error executing AppleScript: retrieve error message */
4449 if (!OSAScriptError (as_scripting_component, kOSAErrorMessage, typeChar,
4450 &error_desc))
4451 desc = &error_desc;
4452
4453 if (desc)
4454 {
4455 #if TARGET_API_MAC_CARBON
4456 *result = make_uninit_string (AEGetDescDataSize (desc));
4457 AEGetDescData (desc, SDATA (*result), SBYTES (*result));
4458 #else /* not TARGET_API_MAC_CARBON */
4459 *result = make_uninit_string (GetHandleSize (desc->dataHandle));
4460 memcpy (SDATA (*result), *(desc->dataHandle), SBYTES (*result));
4461 #endif /* not TARGET_API_MAC_CARBON */
4462 AEDisposeDesc (desc);
4463 }
4464
4465 AEDisposeDesc (&script_desc);
4466
4467 return osaerror;
4468 }
4469
4470
4471 DEFUN ("do-applescript", Fdo_applescript, Sdo_applescript, 1, 1, 0,
4472 doc: /* Compile and execute AppleScript SCRIPT and return the result.
4473 If compilation and execution are successful, the resulting script
4474 value is returned as a string. Otherwise the function aborts and
4475 displays the error message returned by the AppleScript scripting
4476 component. */)
4477 (script)
4478 Lisp_Object script;
4479 {
4480 Lisp_Object result;
4481 long status;
4482
4483 CHECK_STRING (script);
4484
4485 BLOCK_INPUT;
4486 status = do_applescript (script, &result);
4487 UNBLOCK_INPUT;
4488 if (status == 0)
4489 return result;
4490 else if (!STRINGP (result))
4491 error ("AppleScript error %d", status);
4492 else
4493 error ("%s", SDATA (result));
4494 }
4495
4496
4497 DEFUN ("mac-file-name-to-posix", Fmac_file_name_to_posix,
4498 Smac_file_name_to_posix, 1, 1, 0,
4499 doc: /* Convert Macintosh FILENAME to Posix form. */)
4500 (filename)
4501 Lisp_Object filename;
4502 {
4503 char posix_filename[MAXPATHLEN+1];
4504
4505 CHECK_STRING (filename);
4506
4507 if (mac_to_posix_pathname (SDATA (filename), posix_filename, MAXPATHLEN))
4508 return build_string (posix_filename);
4509 else
4510 return Qnil;
4511 }
4512
4513
4514 DEFUN ("posix-file-name-to-mac", Fposix_file_name_to_mac,
4515 Sposix_file_name_to_mac, 1, 1, 0,
4516 doc: /* Convert Posix FILENAME to Mac form. */)
4517 (filename)
4518 Lisp_Object filename;
4519 {
4520 char mac_filename[MAXPATHLEN+1];
4521
4522 CHECK_STRING (filename);
4523
4524 if (posix_to_mac_pathname (SDATA (filename), mac_filename, MAXPATHLEN))
4525 return build_string (mac_filename);
4526 else
4527 return Qnil;
4528 }
4529
4530
4531 DEFUN ("mac-coerce-ae-data", Fmac_coerce_ae_data, Smac_coerce_ae_data, 3, 3, 0,
4532 doc: /* Coerce Apple event data SRC-DATA of type SRC-TYPE to DST-TYPE.
4533 Each type should be a string of length 4 or the symbol
4534 `undecoded-file-name'. */)
4535 (src_type, src_data, dst_type)
4536 Lisp_Object src_type, src_data, dst_type;
4537 {
4538 OSErr err;
4539 Lisp_Object result = Qnil;
4540 DescType src_desc_type, dst_desc_type;
4541 AEDesc dst_desc;
4542
4543 CHECK_STRING (src_data);
4544 if (EQ (src_type, Qundecoded_file_name))
4545 src_desc_type = TYPE_FILE_NAME;
4546 else
4547 src_desc_type = mac_get_code_from_arg (src_type, 0);
4548
4549 if (EQ (dst_type, Qundecoded_file_name))
4550 dst_desc_type = TYPE_FILE_NAME;
4551 else
4552 dst_desc_type = mac_get_code_from_arg (dst_type, 0);
4553
4554 BLOCK_INPUT;
4555 err = AECoercePtr (src_desc_type, SDATA (src_data), SBYTES (src_data),
4556 dst_desc_type, &dst_desc);
4557 if (err == noErr)
4558 {
4559 result = Fcdr (mac_aedesc_to_lisp (&dst_desc));
4560 AEDisposeDesc (&dst_desc);
4561 }
4562 UNBLOCK_INPUT;
4563
4564 return result;
4565 }
4566
4567
4568 #if TARGET_API_MAC_CARBON
4569 static Lisp_Object Qxml, Qmime_charset;
4570 static Lisp_Object QNFD, QNFKD, QNFC, QNFKC, QHFS_plus_D, QHFS_plus_C;
4571
4572 DEFUN ("mac-get-preference", Fmac_get_preference, Smac_get_preference, 1, 4, 0,
4573 doc: /* Return the application preference value for KEY.
4574 KEY is either a string specifying a preference key, or a list of key
4575 strings. If it is a list, the (i+1)-th element is used as a key for
4576 the CFDictionary value obtained by the i-th element. Return nil if
4577 lookup is failed at some stage.
4578
4579 Optional arg APPLICATION is an application ID string. If omitted or
4580 nil, that stands for the current application.
4581
4582 Optional arg FORMAT specifies the data format of the return value. If
4583 omitted or nil, each Core Foundation object is converted into a
4584 corresponding Lisp object as follows:
4585
4586 Core Foundation Lisp Tag
4587 ------------------------------------------------------------
4588 CFString Multibyte string string
4589 CFNumber Integer or float number
4590 CFBoolean Symbol (t or nil) boolean
4591 CFDate List of three integers date
4592 (cf. `current-time')
4593 CFData Unibyte string data
4594 CFArray Vector array
4595 CFDictionary Alist or hash table dictionary
4596 (depending on HASH-BOUND)
4597
4598 If it is t, a symbol that represents the type of the original Core
4599 Foundation object is prepended. If it is `xml', the value is returned
4600 as an XML representation.
4601
4602 Optional arg HASH-BOUND specifies which kinds of the list objects,
4603 alists or hash tables, are used as the targets of the conversion from
4604 CFDictionary. If HASH-BOUND is a negative integer or nil, always
4605 generate alists. If HASH-BOUND >= 0, generate an alist if the number
4606 of keys in the dictionary is smaller than HASH-BOUND, and a hash table
4607 otherwise. */)
4608 (key, application, format, hash_bound)
4609 Lisp_Object key, application, format, hash_bound;
4610 {
4611 CFStringRef app_id, key_str;
4612 CFPropertyListRef app_plist = NULL, plist;
4613 Lisp_Object result = Qnil, tmp;
4614 struct gcpro gcpro1, gcpro2;
4615
4616 if (STRINGP (key))
4617 key = Fcons (key, Qnil);
4618 else
4619 {
4620 CHECK_CONS (key);
4621 for (tmp = key; CONSP (tmp); tmp = XCDR (tmp))
4622 CHECK_STRING_CAR (tmp);
4623 CHECK_LIST_END (tmp, key);
4624 }
4625 if (!NILP (application))
4626 CHECK_STRING (application);
4627 CHECK_SYMBOL (format);
4628 if (!NILP (hash_bound))
4629 CHECK_NUMBER (hash_bound);
4630
4631 GCPRO2 (key, format);
4632
4633 BLOCK_INPUT;
4634
4635 app_id = kCFPreferencesCurrentApplication;
4636 if (!NILP (application))
4637 {
4638 app_id = cfstring_create_with_string (application);
4639 if (app_id == NULL)
4640 goto out;
4641 }
4642 key_str = cfstring_create_with_string (XCAR (key));
4643 if (key_str == NULL)
4644 goto out;
4645 app_plist = CFPreferencesCopyAppValue (key_str, app_id);
4646 CFRelease (key_str);
4647 if (app_plist == NULL)
4648 goto out;
4649
4650 plist = app_plist;
4651 for (key = XCDR (key); CONSP (key); key = XCDR (key))
4652 {
4653 if (CFGetTypeID (plist) != CFDictionaryGetTypeID ())
4654 break;
4655 key_str = cfstring_create_with_string (XCAR (key));
4656 if (key_str == NULL)
4657 goto out;
4658 plist = CFDictionaryGetValue (plist, key_str);
4659 CFRelease (key_str);
4660 if (plist == NULL)
4661 goto out;
4662 }
4663
4664 if (NILP (key))
4665 {
4666 if (EQ (format, Qxml))
4667 {
4668 CFDataRef data = CFPropertyListCreateXMLData (NULL, plist);
4669 if (data == NULL)
4670 goto out;
4671 result = cfdata_to_lisp (data);
4672 CFRelease (data);
4673 }
4674 else
4675 result =
4676 cfproperty_list_to_lisp (plist, EQ (format, Qt),
4677 NILP (hash_bound) ? -1 : XINT (hash_bound));
4678 }
4679
4680 out:
4681 if (app_plist)
4682 CFRelease (app_plist);
4683 CFRelease (app_id);
4684
4685 UNBLOCK_INPUT;
4686
4687 UNGCPRO;
4688
4689 return result;
4690 }
4691
4692
4693 static CFStringEncoding
4694 get_cfstring_encoding_from_lisp (obj)
4695 Lisp_Object obj;
4696 {
4697 CFStringRef iana_name;
4698 CFStringEncoding encoding = kCFStringEncodingInvalidId;
4699
4700 if (NILP (obj))
4701 return kCFStringEncodingUnicode;
4702
4703 if (INTEGERP (obj))
4704 return XINT (obj);
4705
4706 if (SYMBOLP (obj) && !NILP (Fcoding_system_p (obj)))
4707 {
4708 Lisp_Object coding_spec, plist;
4709
4710 coding_spec = Fget (obj, Qcoding_system);
4711 plist = XVECTOR (coding_spec)->contents[3];
4712 obj = Fplist_get (XVECTOR (coding_spec)->contents[3], Qmime_charset);
4713 }
4714
4715 if (SYMBOLP (obj))
4716 obj = SYMBOL_NAME (obj);
4717
4718 if (STRINGP (obj))
4719 {
4720 iana_name = cfstring_create_with_string (obj);
4721 if (iana_name)
4722 {
4723 encoding = CFStringConvertIANACharSetNameToEncoding (iana_name);
4724 CFRelease (iana_name);
4725 }
4726 }
4727
4728 return encoding;
4729 }
4730
4731 #if MAC_OS_X_VERSION_MAX_ALLOWED >= 1020
4732 static CFStringRef
4733 cfstring_create_normalized (str, symbol)
4734 CFStringRef str;
4735 Lisp_Object symbol;
4736 {
4737 int form = -1;
4738 TextEncodingVariant variant;
4739 float initial_mag = 0.0;
4740 CFStringRef result = NULL;
4741
4742 if (EQ (symbol, QNFD))
4743 form = kCFStringNormalizationFormD;
4744 else if (EQ (symbol, QNFKD))
4745 form = kCFStringNormalizationFormKD;
4746 else if (EQ (symbol, QNFC))
4747 form = kCFStringNormalizationFormC;
4748 else if (EQ (symbol, QNFKC))
4749 form = kCFStringNormalizationFormKC;
4750 else if (EQ (symbol, QHFS_plus_D))
4751 {
4752 variant = kUnicodeHFSPlusDecompVariant;
4753 initial_mag = 1.5;
4754 }
4755 else if (EQ (symbol, QHFS_plus_C))
4756 {
4757 variant = kUnicodeHFSPlusCompVariant;
4758 initial_mag = 1.0;
4759 }
4760
4761 if (form >= 0)
4762 {
4763 CFMutableStringRef mut_str = CFStringCreateMutableCopy (NULL, 0, str);
4764
4765 if (mut_str)
4766 {
4767 CFStringNormalize (mut_str, form);
4768 result = mut_str;
4769 }
4770 }
4771 else if (initial_mag > 0.0)
4772 {
4773 UnicodeToTextInfo uni = NULL;
4774 UnicodeMapping map;
4775 CFIndex length;
4776 UniChar *in_text, *buffer = NULL, *out_buf = NULL;
4777 OSStatus err = noErr;
4778 ByteCount out_read, out_size, out_len;
4779
4780 map.unicodeEncoding = CreateTextEncoding (kTextEncodingUnicodeDefault,
4781 kUnicodeNoSubset,
4782 kTextEncodingDefaultFormat);
4783 map.otherEncoding = CreateTextEncoding (kTextEncodingUnicodeDefault,
4784 variant,
4785 kTextEncodingDefaultFormat);
4786 map.mappingVersion = kUnicodeUseLatestMapping;
4787
4788 length = CFStringGetLength (str);
4789 out_size = (int)((float)length * initial_mag) * sizeof (UniChar);
4790 if (out_size < 32)
4791 out_size = 32;
4792
4793 in_text = (UniChar *)CFStringGetCharactersPtr (str);
4794 if (in_text == NULL)
4795 {
4796 buffer = xmalloc (sizeof (UniChar) * length);
4797 CFStringGetCharacters (str, CFRangeMake (0, length), buffer);
4798 in_text = buffer;
4799 }
4800
4801 if (in_text)
4802 err = CreateUnicodeToTextInfo (&map, &uni);
4803 while (err == noErr)
4804 {
4805 out_buf = xmalloc (out_size);
4806 err = ConvertFromUnicodeToText (uni, length * sizeof (UniChar),
4807 in_text,
4808 kUnicodeDefaultDirectionMask,
4809 0, NULL, NULL, NULL,
4810 out_size, &out_read, &out_len,
4811 out_buf);
4812 if (err == noErr && out_read < length * sizeof (UniChar))
4813 {
4814 xfree (out_buf);
4815 out_size += length;
4816 }
4817 else
4818 break;
4819 }
4820 if (err == noErr)
4821 result = CFStringCreateWithCharacters (NULL, out_buf,
4822 out_len / sizeof (UniChar));
4823 if (uni)
4824 DisposeUnicodeToTextInfo (&uni);
4825 if (out_buf)
4826 xfree (out_buf);
4827 if (buffer)
4828 xfree (buffer);
4829 }
4830 else
4831 {
4832 result = str;
4833 CFRetain (result);
4834 }
4835
4836 return result;
4837 }
4838 #endif
4839
4840 DEFUN ("mac-code-convert-string", Fmac_code_convert_string, Smac_code_convert_string, 3, 4, 0,
4841 doc: /* Convert STRING from SOURCE encoding to TARGET encoding.
4842 The conversion is performed using the converter provided by the system.
4843 Each encoding is specified by either a coding system symbol, a mime
4844 charset string, or an integer as a CFStringEncoding value. Nil for
4845 encoding means UTF-16 in native byte order, no byte order mark.
4846 On Mac OS X 10.2 and later, you can do Unicode Normalization by
4847 specifying the optional argument NORMALIZATION-FORM with a symbol NFD,
4848 NFKD, NFC, NFKC, HFS+D, or HFS+C.
4849 On successful conversion, return the result string, else return nil. */)
4850 (string, source, target, normalization_form)
4851 Lisp_Object string, source, target, normalization_form;
4852 {
4853 Lisp_Object result = Qnil;
4854 struct gcpro gcpro1, gcpro2, gcpro3, gcpro4;
4855 CFStringEncoding src_encoding, tgt_encoding;
4856 CFStringRef str = NULL;
4857
4858 CHECK_STRING (string);
4859 if (!INTEGERP (source) && !STRINGP (source))
4860 CHECK_SYMBOL (source);
4861 if (!INTEGERP (target) && !STRINGP (target))
4862 CHECK_SYMBOL (target);
4863 CHECK_SYMBOL (normalization_form);
4864
4865 GCPRO4 (string, source, target, normalization_form);
4866
4867 BLOCK_INPUT;
4868
4869 src_encoding = get_cfstring_encoding_from_lisp (source);
4870 tgt_encoding = get_cfstring_encoding_from_lisp (target);
4871
4872 /* We really want string_to_unibyte, but since it doesn't exist yet, we
4873 use string_as_unibyte which works as well, except for the fact that
4874 it's too permissive (it doesn't check that the multibyte string only
4875 contain single-byte chars). */
4876 string = Fstring_as_unibyte (string);
4877 if (src_encoding != kCFStringEncodingInvalidId
4878 && tgt_encoding != kCFStringEncodingInvalidId)
4879 str = CFStringCreateWithBytes (NULL, SDATA (string), SBYTES (string),
4880 src_encoding, !NILP (source));
4881 #if MAC_OS_X_VERSION_MAX_ALLOWED >= 1020
4882 if (str)
4883 {
4884 CFStringRef saved_str = str;
4885
4886 str = cfstring_create_normalized (saved_str, normalization_form);
4887 CFRelease (saved_str);
4888 }
4889 #endif
4890 if (str)
4891 {
4892 CFIndex str_len, buf_len;
4893
4894 str_len = CFStringGetLength (str);
4895 if (CFStringGetBytes (str, CFRangeMake (0, str_len), tgt_encoding, 0,
4896 !NILP (target), NULL, 0, &buf_len) == str_len)
4897 {
4898 result = make_uninit_string (buf_len);
4899 CFStringGetBytes (str, CFRangeMake (0, str_len), tgt_encoding, 0,
4900 !NILP (target), SDATA (result), buf_len, NULL);
4901 }
4902 CFRelease (str);
4903 }
4904
4905 UNBLOCK_INPUT;
4906
4907 UNGCPRO;
4908
4909 return result;
4910 }
4911
4912 DEFUN ("mac-process-hi-command", Fmac_process_hi_command, Smac_process_hi_command, 1, 1, 0,
4913 doc: /* Send a HI command whose ID is COMMAND-ID to the command chain.
4914 COMMAND-ID must be a 4-character string. Some common command IDs are
4915 defined in the Carbon Event Manager. */)
4916 (command_id)
4917 Lisp_Object command_id;
4918 {
4919 OSStatus err;
4920 HICommand command;
4921
4922 bzero (&command, sizeof (HICommand));
4923 command.commandID = mac_get_code_from_arg (command_id, 0);
4924
4925 BLOCK_INPUT;
4926 err = ProcessHICommand (&command);
4927 UNBLOCK_INPUT;
4928
4929 if (err != noErr)
4930 error ("HI command (command ID: '%s') not handled.", SDATA (command_id));
4931
4932 return Qnil;
4933 }
4934
4935 #endif /* TARGET_API_MAC_CARBON */
4936
4937
4938 static Lisp_Object
4939 mac_get_system_locale ()
4940 {
4941 OSStatus err;
4942 LangCode lang;
4943 RegionCode region;
4944 LocaleRef locale;
4945 Str255 str;
4946
4947 lang = GetScriptVariable (smSystemScript, smScriptLang);
4948 region = GetScriptManagerVariable (smRegionCode);
4949 err = LocaleRefFromLangOrRegionCode (lang, region, &locale);
4950 if (err == noErr)
4951 err = LocaleRefGetPartString (locale, kLocaleAllPartsMask,
4952 sizeof (str), str);
4953 if (err == noErr)
4954 return build_string (str);
4955 else
4956 return Qnil;
4957 }
4958
4959
4960 #ifdef MAC_OSX
4961
4962 extern int inhibit_window_system;
4963 extern int noninteractive;
4964
4965 /* Unlike in X11, window events in Carbon do not come from sockets.
4966 So we cannot simply use `select' to monitor two kinds of inputs:
4967 window events and process outputs. We emulate such functionality
4968 by regarding fd 0 as the window event channel and simultaneously
4969 monitoring both kinds of input channels. It is implemented by
4970 dividing into some cases:
4971 1. The window event channel is not involved.
4972 -> Use `select'.
4973 2. Sockets are not involved.
4974 -> Use ReceiveNextEvent.
4975 3. [If SELECT_USE_CFSOCKET is set]
4976 Only the window event channel and socket read/write channels are
4977 involved, and timeout is not too short (greater than
4978 SELECT_TIMEOUT_THRESHHOLD_RUNLOOP seconds).
4979 -> Create CFSocket for each socket and add it into the current
4980 event RunLoop so that the current event loop gets quit when
4981 the socket becomes ready. Then ReceiveNextEvent can wait for
4982 both kinds of inputs.
4983 4. Otherwise.
4984 -> Periodically poll the window input channel while repeatedly
4985 executing `select' with a short timeout
4986 (SELECT_POLLING_PERIOD_USEC microseconds). */
4987
4988 #ifndef SELECT_USE_CFSOCKET
4989 #define SELECT_USE_CFSOCKET 1
4990 #endif
4991
4992 #define SELECT_POLLING_PERIOD_USEC 100000
4993 #if SELECT_USE_CFSOCKET
4994 #define SELECT_TIMEOUT_THRESHOLD_RUNLOOP 0.2
4995
4996 static void
4997 socket_callback (s, type, address, data, info)
4998 CFSocketRef s;
4999 CFSocketCallBackType type;
5000 CFDataRef address;
5001 const void *data;
5002 void *info;
5003 {
5004 int fd = CFSocketGetNative (s);
5005 SELECT_TYPE *ofds = (SELECT_TYPE *)info;
5006
5007 if ((type == kCFSocketReadCallBack && FD_ISSET (fd, &ofds[0]))
5008 || (type == kCFSocketConnectCallBack && FD_ISSET (fd, &ofds[1])))
5009 QuitEventLoop (GetCurrentEventLoop ());
5010 }
5011 #endif /* SELECT_USE_CFSOCKET */
5012
5013 static int
5014 select_and_poll_event (nfds, rfds, wfds, efds, timeout)
5015 int nfds;
5016 SELECT_TYPE *rfds, *wfds, *efds;
5017 EMACS_TIME *timeout;
5018 {
5019 OSStatus err = noErr;
5020 int r = 0;
5021
5022 /* Try detect_input_pending before ReceiveNextEvent in the same
5023 BLOCK_INPUT block, in case that some input has already been read
5024 asynchronously. */
5025 BLOCK_INPUT;
5026 if (!detect_input_pending ())
5027 {
5028 EMACS_TIME select_timeout;
5029 EventTimeout timeoutval =
5030 (timeout
5031 ? (EMACS_SECS (*timeout) * kEventDurationSecond
5032 + EMACS_USECS (*timeout) * kEventDurationMicrosecond)
5033 : kEventDurationForever);
5034
5035 EMACS_SET_SECS_USECS (select_timeout, 0, 0);
5036 r = select (nfds, rfds, wfds, efds, &select_timeout);
5037 if (timeoutval == 0.0)
5038 err = eventLoopTimedOutErr;
5039 else if (r == 0)
5040 {
5041 #if USE_CG_DRAWING
5042 mac_prepare_for_quickdraw (NULL);
5043 #endif
5044 err = ReceiveNextEvent (0, NULL, timeoutval,
5045 kEventLeaveInQueue, NULL);
5046 }
5047 }
5048 UNBLOCK_INPUT;
5049
5050 if (r != 0)
5051 return r;
5052 else if (err == noErr)
5053 {
5054 /* Pretend that `select' is interrupted by a signal. */
5055 detect_input_pending ();
5056 errno = EINTR;
5057 return -1;
5058 }
5059 else
5060 return 0;
5061 }
5062
5063 int
5064 sys_select (nfds, rfds, wfds, efds, timeout)
5065 int nfds;
5066 SELECT_TYPE *rfds, *wfds, *efds;
5067 EMACS_TIME *timeout;
5068 {
5069 OSStatus err = noErr;
5070 int r;
5071 EMACS_TIME select_timeout;
5072 static SELECT_TYPE ofds[3];
5073
5074 if (inhibit_window_system || noninteractive
5075 || nfds < 1 || rfds == NULL || !FD_ISSET (0, rfds))
5076 return select (nfds, rfds, wfds, efds, timeout);
5077
5078 FD_CLR (0, rfds);
5079 ofds[0] = *rfds;
5080
5081 if (wfds)
5082 ofds[1] = *wfds;
5083 else
5084 FD_ZERO (&ofds[1]);
5085
5086 if (efds)
5087 ofds[2] = *efds;
5088 else
5089 {
5090 EventTimeout timeoutval =
5091 (timeout
5092 ? (EMACS_SECS (*timeout) * kEventDurationSecond
5093 + EMACS_USECS (*timeout) * kEventDurationMicrosecond)
5094 : kEventDurationForever);
5095
5096 FD_SET (0, rfds); /* sentinel */
5097 do
5098 {
5099 nfds--;
5100 }
5101 while (!(FD_ISSET (nfds, rfds) || (wfds && FD_ISSET (nfds, wfds))));
5102 nfds++;
5103 FD_CLR (0, rfds);
5104
5105 if (nfds == 1)
5106 return select_and_poll_event (nfds, rfds, wfds, efds, timeout);
5107
5108 /* Avoid initial overhead of RunLoop setup for the case that
5109 some input is already available. */
5110 EMACS_SET_SECS_USECS (select_timeout, 0, 0);
5111 r = select_and_poll_event (nfds, rfds, wfds, efds, &select_timeout);
5112 if (r != 0 || timeoutval == 0.0)
5113 return r;
5114
5115 *rfds = ofds[0];
5116 if (wfds)
5117 *wfds = ofds[1];
5118
5119 #if SELECT_USE_CFSOCKET
5120 if (timeoutval > 0 && timeoutval <= SELECT_TIMEOUT_THRESHOLD_RUNLOOP)
5121 goto poll_periodically;
5122
5123 /* Try detect_input_pending before ReceiveNextEvent in the same
5124 BLOCK_INPUT block, in case that some input has already been
5125 read asynchronously. */
5126 BLOCK_INPUT;
5127 if (!detect_input_pending ())
5128 {
5129 int minfd, fd;
5130 CFRunLoopRef runloop =
5131 (CFRunLoopRef) GetCFRunLoopFromEventLoop (GetCurrentEventLoop ());
5132 static const CFSocketContext context = {0, ofds, NULL, NULL, NULL};
5133 static CFMutableDictionaryRef sources;
5134
5135 if (sources == NULL)
5136 sources =
5137 CFDictionaryCreateMutable (NULL, 0, NULL,
5138 &kCFTypeDictionaryValueCallBacks);
5139
5140 for (minfd = 1; ; minfd++) /* nfds-1 works as a sentinel. */
5141 if (FD_ISSET (minfd, rfds) || (wfds && FD_ISSET (minfd, wfds)))
5142 break;
5143
5144 for (fd = minfd; fd < nfds; fd++)
5145 if (FD_ISSET (fd, rfds) || (wfds && FD_ISSET (fd, wfds)))
5146 {
5147 void *key = (void *) fd;
5148 CFRunLoopSourceRef source =
5149 (CFRunLoopSourceRef) CFDictionaryGetValue (sources, key);
5150
5151 if (source == NULL)
5152 {
5153 CFSocketRef socket =
5154 CFSocketCreateWithNative (NULL, fd,
5155 (kCFSocketReadCallBack
5156 | kCFSocketConnectCallBack),
5157 socket_callback, &context);
5158
5159 if (socket == NULL)
5160 continue;
5161 source = CFSocketCreateRunLoopSource (NULL, socket, 0);
5162 CFRelease (socket);
5163 if (source == NULL)
5164 continue;
5165 CFDictionaryAddValue (sources, key, source);
5166 CFRelease (source);
5167 }
5168 CFRunLoopAddSource (runloop, source, kCFRunLoopDefaultMode);
5169 }
5170
5171 #if USE_CG_DRAWING
5172 mac_prepare_for_quickdraw (NULL);
5173 #endif
5174 err = ReceiveNextEvent (0, NULL, timeoutval,
5175 kEventLeaveInQueue, NULL);
5176
5177 for (fd = minfd; fd < nfds; fd++)
5178 if (FD_ISSET (fd, rfds) || (wfds && FD_ISSET (fd, wfds)))
5179 {
5180 void *key = (void *) fd;
5181 CFRunLoopSourceRef source =
5182 (CFRunLoopSourceRef) CFDictionaryGetValue (sources, key);
5183
5184 CFRunLoopRemoveSource (runloop, source, kCFRunLoopDefaultMode);
5185 }
5186 }
5187 UNBLOCK_INPUT;
5188
5189 if (err == noErr || err == eventLoopQuitErr)
5190 {
5191 EMACS_SET_SECS_USECS (select_timeout, 0, 0);
5192 return select_and_poll_event (nfds, rfds, wfds, efds,
5193 &select_timeout);
5194 }
5195 else
5196 {
5197 FD_ZERO (rfds);
5198 if (wfds)
5199 FD_ZERO (wfds);
5200 return 0;
5201 }
5202 #endif /* SELECT_USE_CFSOCKET */
5203 }
5204
5205 poll_periodically:
5206 {
5207 EMACS_TIME end_time, now, remaining_time;
5208
5209 if (timeout)
5210 {
5211 remaining_time = *timeout;
5212 EMACS_GET_TIME (now);
5213 EMACS_ADD_TIME (end_time, now, remaining_time);
5214 }
5215
5216 do
5217 {
5218 EMACS_SET_SECS_USECS (select_timeout, 0, SELECT_POLLING_PERIOD_USEC);
5219 if (timeout && EMACS_TIME_LT (remaining_time, select_timeout))
5220 select_timeout = remaining_time;
5221 r = select_and_poll_event (nfds, rfds, wfds, efds, &select_timeout);
5222 if (r != 0)
5223 return r;
5224
5225 *rfds = ofds[0];
5226 if (wfds)
5227 *wfds = ofds[1];
5228 if (efds)
5229 *efds = ofds[2];
5230
5231 if (timeout)
5232 {
5233 EMACS_GET_TIME (now);
5234 EMACS_SUB_TIME (remaining_time, end_time, now);
5235 }
5236 }
5237 while (!timeout || EMACS_TIME_LT (now, end_time));
5238
5239 EMACS_SET_SECS_USECS (select_timeout, 0, 0);
5240 return select_and_poll_event (nfds, rfds, wfds, efds, &select_timeout);
5241 }
5242 }
5243
5244 /* Set up environment variables so that Emacs can correctly find its
5245 support files when packaged as an application bundle. Directories
5246 placed in /usr/local/share/emacs/<emacs-version>/, /usr/local/bin,
5247 and /usr/local/libexec/emacs/<emacs-version>/<system-configuration>
5248 by `make install' by default can instead be placed in
5249 .../Emacs.app/Contents/Resources/ and
5250 .../Emacs.app/Contents/MacOS/. Each of these environment variables
5251 is changed only if it is not already set. Presumably if the user
5252 sets an environment variable, he will want to use files in his path
5253 instead of ones in the application bundle. */
5254 void
5255 init_mac_osx_environment ()
5256 {
5257 CFBundleRef bundle;
5258 CFURLRef bundleURL;
5259 CFStringRef cf_app_bundle_pathname;
5260 int app_bundle_pathname_len;
5261 char *app_bundle_pathname;
5262 char *p, *q;
5263 struct stat st;
5264
5265 /* Initialize locale related variables. */
5266 mac_system_script_code =
5267 (ScriptCode) GetScriptManagerVariable (smSysScript);
5268 Vmac_system_locale = mac_get_system_locale ();
5269
5270 /* Fetch the pathname of the application bundle as a C string into
5271 app_bundle_pathname. */
5272
5273 bundle = CFBundleGetMainBundle ();
5274 if (!bundle || CFBundleGetIdentifier (bundle) == NULL)
5275 {
5276 /* We could not find the bundle identifier. For now, prevent
5277 the fatal error by bringing it up in the terminal. */
5278 inhibit_window_system = 1;
5279 return;
5280 }
5281
5282 bundleURL = CFBundleCopyBundleURL (bundle);
5283 if (!bundleURL)
5284 return;
5285
5286 cf_app_bundle_pathname = CFURLCopyFileSystemPath (bundleURL,
5287 kCFURLPOSIXPathStyle);
5288 app_bundle_pathname_len = CFStringGetLength (cf_app_bundle_pathname);
5289 app_bundle_pathname = (char *) alloca (app_bundle_pathname_len + 1);
5290
5291 if (!CFStringGetCString (cf_app_bundle_pathname,
5292 app_bundle_pathname,
5293 app_bundle_pathname_len + 1,
5294 kCFStringEncodingISOLatin1))
5295 {
5296 CFRelease (cf_app_bundle_pathname);
5297 return;
5298 }
5299
5300 CFRelease (cf_app_bundle_pathname);
5301
5302 /* P should have sufficient room for the pathname of the bundle plus
5303 the subpath in it leading to the respective directories. Q
5304 should have three times that much room because EMACSLOADPATH can
5305 have the value "<path to lisp dir>:<path to leim dir>:<path to
5306 site-lisp dir>". */
5307 p = (char *) alloca (app_bundle_pathname_len + 50);
5308 q = (char *) alloca (3 * app_bundle_pathname_len + 150);
5309 if (!getenv ("EMACSLOADPATH"))
5310 {
5311 q[0] = '\0';
5312
5313 strcpy (p, app_bundle_pathname);
5314 strcat (p, "/Contents/Resources/lisp");
5315 if (stat (p, &st) == 0 && (st.st_mode & S_IFMT) == S_IFDIR)
5316 strcat (q, p);
5317
5318 strcpy (p, app_bundle_pathname);
5319 strcat (p, "/Contents/Resources/leim");
5320 if (stat (p, &st) == 0 && (st.st_mode & S_IFMT) == S_IFDIR)
5321 {
5322 if (q[0] != '\0')
5323 strcat (q, ":");
5324 strcat (q, p);
5325 }
5326
5327 strcpy (p, app_bundle_pathname);
5328 strcat (p, "/Contents/Resources/site-lisp");
5329 if (stat (p, &st) == 0 && (st.st_mode & S_IFMT) == S_IFDIR)
5330 {
5331 if (q[0] != '\0')
5332 strcat (q, ":");
5333 strcat (q, p);
5334 }
5335
5336 if (q[0] != '\0')
5337 setenv ("EMACSLOADPATH", q, 1);
5338 }
5339
5340 if (!getenv ("EMACSPATH"))
5341 {
5342 q[0] = '\0';
5343
5344 strcpy (p, app_bundle_pathname);
5345 strcat (p, "/Contents/MacOS/libexec");
5346 if (stat (p, &st) == 0 && (st.st_mode & S_IFMT) == S_IFDIR)
5347 strcat (q, p);
5348
5349 strcpy (p, app_bundle_pathname);
5350 strcat (p, "/Contents/MacOS/bin");
5351 if (stat (p, &st) == 0 && (st.st_mode & S_IFMT) == S_IFDIR)
5352 {
5353 if (q[0] != '\0')
5354 strcat (q, ":");
5355 strcat (q, p);
5356 }
5357
5358 if (q[0] != '\0')
5359 setenv ("EMACSPATH", q, 1);
5360 }
5361
5362 if (!getenv ("EMACSDATA"))
5363 {
5364 strcpy (p, app_bundle_pathname);
5365 strcat (p, "/Contents/Resources/etc");
5366 if (stat (p, &st) == 0 && (st.st_mode & S_IFMT) == S_IFDIR)
5367 setenv ("EMACSDATA", p, 1);
5368 }
5369
5370 if (!getenv ("EMACSDOC"))
5371 {
5372 strcpy (p, app_bundle_pathname);
5373 strcat (p, "/Contents/Resources/etc");
5374 if (stat (p, &st) == 0 && (st.st_mode & S_IFMT) == S_IFDIR)
5375 setenv ("EMACSDOC", p, 1);
5376 }
5377
5378 if (!getenv ("INFOPATH"))
5379 {
5380 strcpy (p, app_bundle_pathname);
5381 strcat (p, "/Contents/Resources/info");
5382 if (stat (p, &st) == 0 && (st.st_mode & S_IFMT) == S_IFDIR)
5383 setenv ("INFOPATH", p, 1);
5384 }
5385 }
5386 #endif /* MAC_OSX */
5387
5388
5389 void
5390 syms_of_mac ()
5391 {
5392 Qundecoded_file_name = intern ("undecoded-file-name");
5393 staticpro (&Qundecoded_file_name);
5394
5395 #if TARGET_API_MAC_CARBON
5396 Qstring = intern ("string"); staticpro (&Qstring);
5397 Qnumber = intern ("number"); staticpro (&Qnumber);
5398 Qboolean = intern ("boolean"); staticpro (&Qboolean);
5399 Qdate = intern ("date"); staticpro (&Qdate);
5400 Qdata = intern ("data"); staticpro (&Qdata);
5401 Qarray = intern ("array"); staticpro (&Qarray);
5402 Qdictionary = intern ("dictionary"); staticpro (&Qdictionary);
5403
5404 Qxml = intern ("xml");
5405 staticpro (&Qxml);
5406
5407 Qmime_charset = intern ("mime-charset");
5408 staticpro (&Qmime_charset);
5409
5410 QNFD = intern ("NFD"); staticpro (&QNFD);
5411 QNFKD = intern ("NFKD"); staticpro (&QNFKD);
5412 QNFC = intern ("NFC"); staticpro (&QNFC);
5413 QNFKC = intern ("NFKC"); staticpro (&QNFKC);
5414 QHFS_plus_D = intern ("HFS+D"); staticpro (&QHFS_plus_D);
5415 QHFS_plus_C = intern ("HFS+C"); staticpro (&QHFS_plus_C);
5416 #endif
5417
5418 {
5419 int i;
5420
5421 for (i = 0; i < sizeof (ae_attr_table) / sizeof (ae_attr_table[0]); i++)
5422 {
5423 ae_attr_table[i].symbol = intern (ae_attr_table[i].name);
5424 staticpro (&ae_attr_table[i].symbol);
5425 }
5426 }
5427
5428 defsubr (&Smac_coerce_ae_data);
5429 #if TARGET_API_MAC_CARBON
5430 defsubr (&Smac_get_preference);
5431 defsubr (&Smac_code_convert_string);
5432 defsubr (&Smac_process_hi_command);
5433 #endif
5434
5435 defsubr (&Smac_set_file_creator);
5436 defsubr (&Smac_set_file_type);
5437 defsubr (&Smac_get_file_creator);
5438 defsubr (&Smac_get_file_type);
5439 defsubr (&Sdo_applescript);
5440 defsubr (&Smac_file_name_to_posix);
5441 defsubr (&Sposix_file_name_to_mac);
5442
5443 DEFVAR_INT ("mac-system-script-code", &mac_system_script_code,
5444 doc: /* The system script code. */);
5445 mac_system_script_code = (ScriptCode) GetScriptManagerVariable (smSysScript);
5446
5447 DEFVAR_LISP ("mac-system-locale", &Vmac_system_locale,
5448 doc: /* The system locale identifier string.
5449 This is not a POSIX locale ID, but an ICU locale ID. So encoding
5450 information is not included. */);
5451 Vmac_system_locale = mac_get_system_locale ();
5452 }
5453
5454 /* arch-tag: 29d30c1f-0c6b-4f88-8a6d-0558d7f9dbff
5455 (do not change this comment) */