Merge from emacs--rel--22
[bpt/emacs.git] / src / w32.c
1 /* Utility and Unix shadow routines for GNU Emacs on the Microsoft W32 API.
2 Copyright (C) 1994, 1995, 2000, 2001, 2002, 2003, 2004,
3 2005, 2006, 2007 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 3, 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 Geoff Voelker (voelker@cs.washington.edu) 7-29-94
23 */
24 #include <stddef.h> /* for offsetof */
25 #include <stdlib.h>
26 #include <stdio.h>
27 #include <io.h>
28 #include <errno.h>
29 #include <fcntl.h>
30 #include <ctype.h>
31 #include <signal.h>
32 #include <sys/file.h>
33 #include <sys/time.h>
34 #include <sys/utime.h>
35 #include <mbstring.h> /* for _mbspbrk */
36
37 /* must include CRT headers *before* config.h */
38
39 #ifdef HAVE_CONFIG_H
40 #include <config.h>
41 #endif
42
43 #undef access
44 #undef chdir
45 #undef chmod
46 #undef creat
47 #undef ctime
48 #undef fopen
49 #undef link
50 #undef mkdir
51 #undef mktemp
52 #undef open
53 #undef rename
54 #undef rmdir
55 #undef unlink
56
57 #undef close
58 #undef dup
59 #undef dup2
60 #undef pipe
61 #undef read
62 #undef write
63
64 #undef strerror
65
66 #include "lisp.h"
67
68 #include <pwd.h>
69 #include <grp.h>
70
71 #ifdef __GNUC__
72 #define _ANONYMOUS_UNION
73 #define _ANONYMOUS_STRUCT
74 #endif
75 #include <windows.h>
76 #include <shlobj.h>
77
78 #ifdef HAVE_SOCKETS /* TCP connection support, if kernel can do it */
79 #include <sys/socket.h>
80 #undef socket
81 #undef bind
82 #undef connect
83 #undef htons
84 #undef ntohs
85 #undef inet_addr
86 #undef gethostname
87 #undef gethostbyname
88 #undef getservbyname
89 #undef getpeername
90 #undef shutdown
91 #undef setsockopt
92 #undef listen
93 #undef getsockname
94 #undef accept
95 #undef recvfrom
96 #undef sendto
97 #endif
98
99 #include "w32.h"
100 #include "ndir.h"
101 #include "w32heap.h"
102 #include "systime.h"
103
104 typedef HRESULT (WINAPI * ShGetFolderPath_fn)
105 (IN HWND, IN int, IN HANDLE, IN DWORD, OUT char *);
106
107 void globals_of_w32 ();
108
109 extern Lisp_Object Vw32_downcase_file_names;
110 extern Lisp_Object Vw32_generate_fake_inodes;
111 extern Lisp_Object Vw32_get_true_file_attributes;
112 extern int w32_num_mouse_buttons;
113
114 \f
115 /*
116 Initialization states
117 */
118 static BOOL g_b_init_is_windows_9x;
119 static BOOL g_b_init_open_process_token;
120 static BOOL g_b_init_get_token_information;
121 static BOOL g_b_init_lookup_account_sid;
122 static BOOL g_b_init_get_sid_identifier_authority;
123
124 /*
125 BEGIN: Wrapper functions around OpenProcessToken
126 and other functions in advapi32.dll that are only
127 supported in Windows NT / 2k / XP
128 */
129 /* ** Function pointer typedefs ** */
130 typedef BOOL (WINAPI * OpenProcessToken_Proc) (
131 HANDLE ProcessHandle,
132 DWORD DesiredAccess,
133 PHANDLE TokenHandle);
134 typedef BOOL (WINAPI * GetTokenInformation_Proc) (
135 HANDLE TokenHandle,
136 TOKEN_INFORMATION_CLASS TokenInformationClass,
137 LPVOID TokenInformation,
138 DWORD TokenInformationLength,
139 PDWORD ReturnLength);
140 typedef BOOL (WINAPI * GetProcessTimes_Proc) (
141 HANDLE process_handle,
142 LPFILETIME creation_time,
143 LPFILETIME exit_time,
144 LPFILETIME kernel_time,
145 LPFILETIME user_time);
146
147 GetProcessTimes_Proc get_process_times_fn = NULL;
148
149 #ifdef _UNICODE
150 const char * const LookupAccountSid_Name = "LookupAccountSidW";
151 #else
152 const char * const LookupAccountSid_Name = "LookupAccountSidA";
153 #endif
154 typedef BOOL (WINAPI * LookupAccountSid_Proc) (
155 LPCTSTR lpSystemName,
156 PSID Sid,
157 LPTSTR Name,
158 LPDWORD cbName,
159 LPTSTR DomainName,
160 LPDWORD cbDomainName,
161 PSID_NAME_USE peUse);
162 typedef PSID_IDENTIFIER_AUTHORITY (WINAPI * GetSidIdentifierAuthority_Proc) (
163 PSID pSid);
164
165 /* ** A utility function ** */
166 static BOOL
167 is_windows_9x ()
168 {
169 static BOOL s_b_ret=0;
170 OSVERSIONINFO os_ver;
171 if (g_b_init_is_windows_9x == 0)
172 {
173 g_b_init_is_windows_9x = 1;
174 ZeroMemory(&os_ver, sizeof(OSVERSIONINFO));
175 os_ver.dwOSVersionInfoSize = sizeof(OSVERSIONINFO);
176 if (GetVersionEx (&os_ver))
177 {
178 s_b_ret = (os_ver.dwPlatformId == VER_PLATFORM_WIN32_WINDOWS);
179 }
180 }
181 return s_b_ret;
182 }
183
184 /* Get total user and system times for get-internal-run-time.
185 Returns a list of three integers if the times are provided by the OS
186 (NT derivatives), otherwise it returns the result of current-time. */
187 Lisp_Object
188 w32_get_internal_run_time ()
189 {
190 if (get_process_times_fn)
191 {
192 FILETIME create, exit, kernel, user;
193 HANDLE proc = GetCurrentProcess();
194 if ((*get_process_times_fn) (proc, &create, &exit, &kernel, &user))
195 {
196 LARGE_INTEGER user_int, kernel_int, total;
197 int microseconds;
198 user_int.LowPart = user.dwLowDateTime;
199 user_int.HighPart = user.dwHighDateTime;
200 kernel_int.LowPart = kernel.dwLowDateTime;
201 kernel_int.HighPart = kernel.dwHighDateTime;
202 total.QuadPart = user_int.QuadPart + kernel_int.QuadPart;
203 /* FILETIME is 100 nanosecond increments, Emacs only wants
204 microsecond resolution. */
205 total.QuadPart /= 10;
206 microseconds = total.QuadPart % 1000000;
207 total.QuadPart /= 1000000;
208
209 /* Sanity check to make sure we can represent the result. */
210 if (total.HighPart == 0)
211 {
212 int secs = total.LowPart;
213
214 return list3 (make_number ((secs >> 16) & 0xffff),
215 make_number (secs & 0xffff),
216 make_number (microseconds));
217 }
218 }
219 }
220
221 return Fcurrent_time ();
222 }
223
224 /* ** The wrapper functions ** */
225
226 BOOL WINAPI open_process_token (
227 HANDLE ProcessHandle,
228 DWORD DesiredAccess,
229 PHANDLE TokenHandle)
230 {
231 static OpenProcessToken_Proc s_pfn_Open_Process_Token = NULL;
232 HMODULE hm_advapi32 = NULL;
233 if (is_windows_9x () == TRUE)
234 {
235 return FALSE;
236 }
237 if (g_b_init_open_process_token == 0)
238 {
239 g_b_init_open_process_token = 1;
240 hm_advapi32 = LoadLibrary ("Advapi32.dll");
241 s_pfn_Open_Process_Token =
242 (OpenProcessToken_Proc) GetProcAddress (hm_advapi32, "OpenProcessToken");
243 }
244 if (s_pfn_Open_Process_Token == NULL)
245 {
246 return FALSE;
247 }
248 return (
249 s_pfn_Open_Process_Token (
250 ProcessHandle,
251 DesiredAccess,
252 TokenHandle)
253 );
254 }
255
256 BOOL WINAPI get_token_information (
257 HANDLE TokenHandle,
258 TOKEN_INFORMATION_CLASS TokenInformationClass,
259 LPVOID TokenInformation,
260 DWORD TokenInformationLength,
261 PDWORD ReturnLength)
262 {
263 static GetTokenInformation_Proc s_pfn_Get_Token_Information = NULL;
264 HMODULE hm_advapi32 = NULL;
265 if (is_windows_9x () == TRUE)
266 {
267 return FALSE;
268 }
269 if (g_b_init_get_token_information == 0)
270 {
271 g_b_init_get_token_information = 1;
272 hm_advapi32 = LoadLibrary ("Advapi32.dll");
273 s_pfn_Get_Token_Information =
274 (GetTokenInformation_Proc) GetProcAddress (hm_advapi32, "GetTokenInformation");
275 }
276 if (s_pfn_Get_Token_Information == NULL)
277 {
278 return FALSE;
279 }
280 return (
281 s_pfn_Get_Token_Information (
282 TokenHandle,
283 TokenInformationClass,
284 TokenInformation,
285 TokenInformationLength,
286 ReturnLength)
287 );
288 }
289
290 BOOL WINAPI lookup_account_sid (
291 LPCTSTR lpSystemName,
292 PSID Sid,
293 LPTSTR Name,
294 LPDWORD cbName,
295 LPTSTR DomainName,
296 LPDWORD cbDomainName,
297 PSID_NAME_USE peUse)
298 {
299 static LookupAccountSid_Proc s_pfn_Lookup_Account_Sid = NULL;
300 HMODULE hm_advapi32 = NULL;
301 if (is_windows_9x () == TRUE)
302 {
303 return FALSE;
304 }
305 if (g_b_init_lookup_account_sid == 0)
306 {
307 g_b_init_lookup_account_sid = 1;
308 hm_advapi32 = LoadLibrary ("Advapi32.dll");
309 s_pfn_Lookup_Account_Sid =
310 (LookupAccountSid_Proc) GetProcAddress (hm_advapi32, LookupAccountSid_Name);
311 }
312 if (s_pfn_Lookup_Account_Sid == NULL)
313 {
314 return FALSE;
315 }
316 return (
317 s_pfn_Lookup_Account_Sid (
318 lpSystemName,
319 Sid,
320 Name,
321 cbName,
322 DomainName,
323 cbDomainName,
324 peUse)
325 );
326 }
327
328 PSID_IDENTIFIER_AUTHORITY WINAPI get_sid_identifier_authority (
329 PSID pSid)
330 {
331 static GetSidIdentifierAuthority_Proc s_pfn_Get_Sid_Identifier_Authority = NULL;
332 HMODULE hm_advapi32 = NULL;
333 if (is_windows_9x () == TRUE)
334 {
335 return NULL;
336 }
337 if (g_b_init_get_sid_identifier_authority == 0)
338 {
339 g_b_init_get_sid_identifier_authority = 1;
340 hm_advapi32 = LoadLibrary ("Advapi32.dll");
341 s_pfn_Get_Sid_Identifier_Authority =
342 (GetSidIdentifierAuthority_Proc) GetProcAddress (
343 hm_advapi32, "GetSidIdentifierAuthority");
344 }
345 if (s_pfn_Get_Sid_Identifier_Authority == NULL)
346 {
347 return NULL;
348 }
349 return (s_pfn_Get_Sid_Identifier_Authority (pSid));
350 }
351
352 /*
353 END: Wrapper functions around OpenProcessToken
354 and other functions in advapi32.dll that are only
355 supported in Windows NT / 2k / XP
356 */
357
358 \f
359 /* Equivalent of strerror for W32 error codes. */
360 char *
361 w32_strerror (int error_no)
362 {
363 static char buf[500];
364
365 if (error_no == 0)
366 error_no = GetLastError ();
367
368 buf[0] = '\0';
369 if (!FormatMessage (FORMAT_MESSAGE_FROM_SYSTEM, NULL,
370 error_no,
371 0, /* choose most suitable language */
372 buf, sizeof (buf), NULL))
373 sprintf (buf, "w32 error %u", error_no);
374 return buf;
375 }
376
377 /* Return 1 if P is a valid pointer to an object of size SIZE. Return
378 0 if P is NOT a valid pointer. Return -1 if we cannot validate P.
379
380 This is called from alloc.c:valid_pointer_p. */
381 int
382 w32_valid_pointer_p (void *p, int size)
383 {
384 SIZE_T done;
385 HANDLE h = OpenProcess (PROCESS_VM_READ, FALSE, GetCurrentProcessId ());
386
387 if (h)
388 {
389 unsigned char *buf = alloca (size);
390 int retval = ReadProcessMemory (h, p, buf, size, &done);
391
392 CloseHandle (h);
393 return retval;
394 }
395 else
396 return -1;
397 }
398
399 static char startup_dir[MAXPATHLEN];
400
401 /* Get the current working directory. */
402 char *
403 getwd (char *dir)
404 {
405 #if 0
406 if (GetCurrentDirectory (MAXPATHLEN, dir) > 0)
407 return dir;
408 return NULL;
409 #else
410 /* Emacs doesn't actually change directory itself, and we want to
411 force our real wd to be where emacs.exe is to avoid unnecessary
412 conflicts when trying to rename or delete directories. */
413 strcpy (dir, startup_dir);
414 return dir;
415 #endif
416 }
417
418 #ifndef HAVE_SOCKETS
419 /* Emulate gethostname. */
420 int
421 gethostname (char *buffer, int size)
422 {
423 /* NT only allows small host names, so the buffer is
424 certainly large enough. */
425 return !GetComputerName (buffer, &size);
426 }
427 #endif /* HAVE_SOCKETS */
428
429 /* Emulate getloadavg. */
430 int
431 getloadavg (double loadavg[], int nelem)
432 {
433 int i;
434
435 /* A faithful emulation is going to have to be saved for a rainy day. */
436 for (i = 0; i < nelem; i++)
437 {
438 loadavg[i] = 0.0;
439 }
440 return i;
441 }
442
443 /* Emulate getpwuid, getpwnam and others. */
444
445 #define PASSWD_FIELD_SIZE 256
446
447 static char the_passwd_name[PASSWD_FIELD_SIZE];
448 static char the_passwd_passwd[PASSWD_FIELD_SIZE];
449 static char the_passwd_gecos[PASSWD_FIELD_SIZE];
450 static char the_passwd_dir[PASSWD_FIELD_SIZE];
451 static char the_passwd_shell[PASSWD_FIELD_SIZE];
452
453 static struct passwd the_passwd =
454 {
455 the_passwd_name,
456 the_passwd_passwd,
457 0,
458 0,
459 0,
460 the_passwd_gecos,
461 the_passwd_dir,
462 the_passwd_shell,
463 };
464
465 static struct group the_group =
466 {
467 /* There are no groups on NT, so we just return "root" as the
468 group name. */
469 "root",
470 };
471
472 int
473 getuid ()
474 {
475 return the_passwd.pw_uid;
476 }
477
478 int
479 geteuid ()
480 {
481 /* I could imagine arguing for checking to see whether the user is
482 in the Administrators group and returning a UID of 0 for that
483 case, but I don't know how wise that would be in the long run. */
484 return getuid ();
485 }
486
487 int
488 getgid ()
489 {
490 return the_passwd.pw_gid;
491 }
492
493 int
494 getegid ()
495 {
496 return getgid ();
497 }
498
499 struct passwd *
500 getpwuid (int uid)
501 {
502 if (uid == the_passwd.pw_uid)
503 return &the_passwd;
504 return NULL;
505 }
506
507 struct group *
508 getgrgid (gid_t gid)
509 {
510 return &the_group;
511 }
512
513 struct passwd *
514 getpwnam (char *name)
515 {
516 struct passwd *pw;
517
518 pw = getpwuid (getuid ());
519 if (!pw)
520 return pw;
521
522 if (stricmp (name, pw->pw_name))
523 return NULL;
524
525 return pw;
526 }
527
528 void
529 init_user_info ()
530 {
531 /* Find the user's real name by opening the process token and
532 looking up the name associated with the user-sid in that token.
533
534 Use the relative portion of the identifier authority value from
535 the user-sid as the user id value (same for group id using the
536 primary group sid from the process token). */
537
538 char user_sid[256], name[256], domain[256];
539 DWORD length = sizeof (name), dlength = sizeof (domain), trash;
540 HANDLE token = NULL;
541 SID_NAME_USE user_type;
542
543 if (open_process_token (GetCurrentProcess (), TOKEN_QUERY, &token)
544 && get_token_information (token, TokenUser,
545 (PVOID) user_sid, sizeof (user_sid), &trash)
546 && lookup_account_sid (NULL, *((PSID *) user_sid), name, &length,
547 domain, &dlength, &user_type))
548 {
549 strcpy (the_passwd.pw_name, name);
550 /* Determine a reasonable uid value. */
551 if (stricmp ("administrator", name) == 0)
552 {
553 the_passwd.pw_uid = 0;
554 the_passwd.pw_gid = 0;
555 }
556 else
557 {
558 SID_IDENTIFIER_AUTHORITY * pSIA;
559
560 pSIA = get_sid_identifier_authority (*((PSID *) user_sid));
561 /* I believe the relative portion is the last 4 bytes (of 6)
562 with msb first. */
563 the_passwd.pw_uid = ((pSIA->Value[2] << 24) +
564 (pSIA->Value[3] << 16) +
565 (pSIA->Value[4] << 8) +
566 (pSIA->Value[5] << 0));
567 /* restrict to conventional uid range for normal users */
568 the_passwd.pw_uid = the_passwd.pw_uid % 60001;
569
570 /* Get group id */
571 if (get_token_information (token, TokenPrimaryGroup,
572 (PVOID) user_sid, sizeof (user_sid), &trash))
573 {
574 SID_IDENTIFIER_AUTHORITY * pSIA;
575
576 pSIA = get_sid_identifier_authority (*((PSID *) user_sid));
577 the_passwd.pw_gid = ((pSIA->Value[2] << 24) +
578 (pSIA->Value[3] << 16) +
579 (pSIA->Value[4] << 8) +
580 (pSIA->Value[5] << 0));
581 /* I don't know if this is necessary, but for safety... */
582 the_passwd.pw_gid = the_passwd.pw_gid % 60001;
583 }
584 else
585 the_passwd.pw_gid = the_passwd.pw_uid;
586 }
587 }
588 /* If security calls are not supported (presumably because we
589 are running under Windows 95), fallback to this. */
590 else if (GetUserName (name, &length))
591 {
592 strcpy (the_passwd.pw_name, name);
593 if (stricmp ("administrator", name) == 0)
594 the_passwd.pw_uid = 0;
595 else
596 the_passwd.pw_uid = 123;
597 the_passwd.pw_gid = the_passwd.pw_uid;
598 }
599 else
600 {
601 strcpy (the_passwd.pw_name, "unknown");
602 the_passwd.pw_uid = 123;
603 the_passwd.pw_gid = 123;
604 }
605
606 /* Ensure HOME and SHELL are defined. */
607 if (getenv ("HOME") == NULL)
608 abort ();
609 if (getenv ("SHELL") == NULL)
610 abort ();
611
612 /* Set dir and shell from environment variables. */
613 strcpy (the_passwd.pw_dir, getenv ("HOME"));
614 strcpy (the_passwd.pw_shell, getenv ("SHELL"));
615
616 if (token)
617 CloseHandle (token);
618 }
619
620 int
621 random ()
622 {
623 /* rand () on NT gives us 15 random bits...hack together 30 bits. */
624 return ((rand () << 15) | rand ());
625 }
626
627 void
628 srandom (int seed)
629 {
630 srand (seed);
631 }
632
633
634 /* Normalize filename by converting all path separators to
635 the specified separator. Also conditionally convert upper
636 case path name components to lower case. */
637
638 static void
639 normalize_filename (fp, path_sep)
640 register char *fp;
641 char path_sep;
642 {
643 char sep;
644 char *elem;
645
646 /* Always lower-case drive letters a-z, even if the filesystem
647 preserves case in filenames.
648 This is so filenames can be compared by string comparison
649 functions that are case-sensitive. Even case-preserving filesystems
650 do not distinguish case in drive letters. */
651 if (fp[1] == ':' && *fp >= 'A' && *fp <= 'Z')
652 {
653 *fp += 'a' - 'A';
654 fp += 2;
655 }
656
657 if (NILP (Vw32_downcase_file_names))
658 {
659 while (*fp)
660 {
661 if (*fp == '/' || *fp == '\\')
662 *fp = path_sep;
663 fp++;
664 }
665 return;
666 }
667
668 sep = path_sep; /* convert to this path separator */
669 elem = fp; /* start of current path element */
670
671 do {
672 if (*fp >= 'a' && *fp <= 'z')
673 elem = 0; /* don't convert this element */
674
675 if (*fp == 0 || *fp == ':')
676 {
677 sep = *fp; /* restore current separator (or 0) */
678 *fp = '/'; /* after conversion of this element */
679 }
680
681 if (*fp == '/' || *fp == '\\')
682 {
683 if (elem && elem != fp)
684 {
685 *fp = 0; /* temporary end of string */
686 _strlwr (elem); /* while we convert to lower case */
687 }
688 *fp = sep; /* convert (or restore) path separator */
689 elem = fp + 1; /* next element starts after separator */
690 sep = path_sep;
691 }
692 } while (*fp++);
693 }
694
695 /* Destructively turn backslashes into slashes. */
696 void
697 dostounix_filename (p)
698 register char *p;
699 {
700 normalize_filename (p, '/');
701 }
702
703 /* Destructively turn slashes into backslashes. */
704 void
705 unixtodos_filename (p)
706 register char *p;
707 {
708 normalize_filename (p, '\\');
709 }
710
711 /* Remove all CR's that are followed by a LF.
712 (From msdos.c...probably should figure out a way to share it,
713 although this code isn't going to ever change.) */
714 int
715 crlf_to_lf (n, buf)
716 register int n;
717 register unsigned char *buf;
718 {
719 unsigned char *np = buf;
720 unsigned char *startp = buf;
721 unsigned char *endp = buf + n;
722
723 if (n == 0)
724 return n;
725 while (buf < endp - 1)
726 {
727 if (*buf == 0x0d)
728 {
729 if (*(++buf) != 0x0a)
730 *np++ = 0x0d;
731 }
732 else
733 *np++ = *buf++;
734 }
735 if (buf < endp)
736 *np++ = *buf++;
737 return np - startp;
738 }
739
740 /* Parse the root part of file name, if present. Return length and
741 optionally store pointer to char after root. */
742 static int
743 parse_root (char * name, char ** pPath)
744 {
745 char * start = name;
746
747 if (name == NULL)
748 return 0;
749
750 /* find the root name of the volume if given */
751 if (isalpha (name[0]) && name[1] == ':')
752 {
753 /* skip past drive specifier */
754 name += 2;
755 if (IS_DIRECTORY_SEP (name[0]))
756 name++;
757 }
758 else if (IS_DIRECTORY_SEP (name[0]) && IS_DIRECTORY_SEP (name[1]))
759 {
760 int slashes = 2;
761 name += 2;
762 do
763 {
764 if (IS_DIRECTORY_SEP (*name) && --slashes == 0)
765 break;
766 name++;
767 }
768 while ( *name );
769 if (IS_DIRECTORY_SEP (name[0]))
770 name++;
771 }
772
773 if (pPath)
774 *pPath = name;
775
776 return name - start;
777 }
778
779 /* Get long base name for name; name is assumed to be absolute. */
780 static int
781 get_long_basename (char * name, char * buf, int size)
782 {
783 WIN32_FIND_DATA find_data;
784 HANDLE dir_handle;
785 int len = 0;
786
787 /* must be valid filename, no wild cards or other invalid characters */
788 if (_mbspbrk (name, "*?|<>\""))
789 return 0;
790
791 dir_handle = FindFirstFile (name, &find_data);
792 if (dir_handle != INVALID_HANDLE_VALUE)
793 {
794 if ((len = strlen (find_data.cFileName)) < size)
795 memcpy (buf, find_data.cFileName, len + 1);
796 else
797 len = 0;
798 FindClose (dir_handle);
799 }
800 return len;
801 }
802
803 /* Get long name for file, if possible (assumed to be absolute). */
804 BOOL
805 w32_get_long_filename (char * name, char * buf, int size)
806 {
807 char * o = buf;
808 char * p;
809 char * q;
810 char full[ MAX_PATH ];
811 int len;
812
813 len = strlen (name);
814 if (len >= MAX_PATH)
815 return FALSE;
816
817 /* Use local copy for destructive modification. */
818 memcpy (full, name, len+1);
819 unixtodos_filename (full);
820
821 /* Copy root part verbatim. */
822 len = parse_root (full, &p);
823 memcpy (o, full, len);
824 o += len;
825 *o = '\0';
826 size -= len;
827
828 while (p != NULL && *p)
829 {
830 q = p;
831 p = strchr (q, '\\');
832 if (p) *p = '\0';
833 len = get_long_basename (full, o, size);
834 if (len > 0)
835 {
836 o += len;
837 size -= len;
838 if (p != NULL)
839 {
840 *p++ = '\\';
841 if (size < 2)
842 return FALSE;
843 *o++ = '\\';
844 size--;
845 *o = '\0';
846 }
847 }
848 else
849 return FALSE;
850 }
851
852 return TRUE;
853 }
854
855 int
856 is_unc_volume (const char *filename)
857 {
858 const char *ptr = filename;
859
860 if (!IS_DIRECTORY_SEP (ptr[0]) || !IS_DIRECTORY_SEP (ptr[1]) || !ptr[2])
861 return 0;
862
863 if (_mbspbrk (ptr + 2, "*?|<>\"\\/"))
864 return 0;
865
866 return 1;
867 }
868
869 /* Routines that are no-ops on NT but are defined to get Emacs to compile. */
870
871 int
872 sigsetmask (int signal_mask)
873 {
874 return 0;
875 }
876
877 int
878 sigmask (int sig)
879 {
880 return 0;
881 }
882
883 int
884 sigblock (int sig)
885 {
886 return 0;
887 }
888
889 int
890 sigunblock (int sig)
891 {
892 return 0;
893 }
894
895 int
896 setpgrp (int pid, int gid)
897 {
898 return 0;
899 }
900
901 int
902 alarm (int seconds)
903 {
904 return 0;
905 }
906
907 void
908 unrequest_sigio (void)
909 {
910 return;
911 }
912
913 void
914 request_sigio (void)
915 {
916 return;
917 }
918
919 #define REG_ROOT "SOFTWARE\\GNU\\Emacs"
920
921 LPBYTE
922 w32_get_resource (key, lpdwtype)
923 char *key;
924 LPDWORD lpdwtype;
925 {
926 LPBYTE lpvalue;
927 HKEY hrootkey = NULL;
928 DWORD cbData;
929 BOOL ok = FALSE;
930
931 /* Check both the current user and the local machine to see if
932 we have any resources. */
933
934 if (RegOpenKeyEx (HKEY_CURRENT_USER, REG_ROOT, 0, KEY_READ, &hrootkey) == ERROR_SUCCESS)
935 {
936 lpvalue = NULL;
937
938 if (RegQueryValueEx (hrootkey, key, NULL, NULL, NULL, &cbData) == ERROR_SUCCESS
939 && (lpvalue = (LPBYTE) xmalloc (cbData)) != NULL
940 && RegQueryValueEx (hrootkey, key, NULL, lpdwtype, lpvalue, &cbData) == ERROR_SUCCESS)
941 {
942 return (lpvalue);
943 }
944
945 if (lpvalue) xfree (lpvalue);
946
947 RegCloseKey (hrootkey);
948 }
949
950 if (RegOpenKeyEx (HKEY_LOCAL_MACHINE, REG_ROOT, 0, KEY_READ, &hrootkey) == ERROR_SUCCESS)
951 {
952 lpvalue = NULL;
953
954 if (RegQueryValueEx (hrootkey, key, NULL, NULL, NULL, &cbData) == ERROR_SUCCESS
955 && (lpvalue = (LPBYTE) xmalloc (cbData)) != NULL
956 && RegQueryValueEx (hrootkey, key, NULL, lpdwtype, lpvalue, &cbData) == ERROR_SUCCESS)
957 {
958 return (lpvalue);
959 }
960
961 if (lpvalue) xfree (lpvalue);
962
963 RegCloseKey (hrootkey);
964 }
965
966 return (NULL);
967 }
968
969 char *get_emacs_configuration (void);
970 extern Lisp_Object Vsystem_configuration;
971
972 void
973 init_environment (char ** argv)
974 {
975 static const char * const tempdirs[] = {
976 "$TMPDIR", "$TEMP", "$TMP", "c:/"
977 };
978
979 int i;
980
981 const int imax = sizeof (tempdirs) / sizeof (tempdirs[0]);
982
983 /* Make sure they have a usable $TMPDIR. Many Emacs functions use
984 temporary files and assume "/tmp" if $TMPDIR is unset, which
985 will break on DOS/Windows. Refuse to work if we cannot find
986 a directory, not even "c:/", usable for that purpose. */
987 for (i = 0; i < imax ; i++)
988 {
989 const char *tmp = tempdirs[i];
990
991 if (*tmp == '$')
992 tmp = getenv (tmp + 1);
993 /* Note that `access' can lie to us if the directory resides on a
994 read-only filesystem, like CD-ROM or a write-protected floppy.
995 The only way to be really sure is to actually create a file and
996 see if it succeeds. But I think that's too much to ask. */
997 if (tmp && _access (tmp, D_OK) == 0)
998 {
999 char * var = alloca (strlen (tmp) + 8);
1000 sprintf (var, "TMPDIR=%s", tmp);
1001 _putenv (strdup (var));
1002 break;
1003 }
1004 }
1005 if (i >= imax)
1006 cmd_error_internal
1007 (Fcons (Qerror,
1008 Fcons (build_string ("no usable temporary directories found!!"),
1009 Qnil)),
1010 "While setting TMPDIR: ");
1011
1012 /* Check for environment variables and use registry settings if they
1013 don't exist. Fallback on default values where applicable. */
1014 {
1015 int i;
1016 LPBYTE lpval;
1017 DWORD dwType;
1018 char locale_name[32];
1019 struct stat ignored;
1020 char default_home[MAX_PATH];
1021
1022 static const struct env_entry
1023 {
1024 char * name;
1025 char * def_value;
1026 } dflt_envvars[] =
1027 {
1028 {"HOME", "C:/"},
1029 {"PRELOAD_WINSOCK", NULL},
1030 {"emacs_dir", "C:/emacs"},
1031 {"EMACSLOADPATH", "%emacs_dir%/site-lisp;%emacs_dir%/../site-lisp;%emacs_dir%/lisp;%emacs_dir%/leim"},
1032 {"SHELL", "%emacs_dir%/bin/cmdproxy.exe"},
1033 {"EMACSDATA", "%emacs_dir%/etc"},
1034 {"EMACSPATH", "%emacs_dir%/bin"},
1035 /* We no longer set INFOPATH because Info-default-directory-list
1036 is then ignored. */
1037 /* {"INFOPATH", "%emacs_dir%/info"}, */
1038 {"EMACSDOC", "%emacs_dir%/etc"},
1039 {"TERM", "cmd"},
1040 {"LANG", NULL},
1041 };
1042
1043 #define N_ENV_VARS sizeof(dflt_envvars)/sizeof(dflt_envvars[0])
1044
1045 /* We need to copy dflt_envvars[] and work on the copy because we
1046 don't want the dumped Emacs to inherit the values of
1047 environment variables we saw during dumping (which could be on
1048 a different system). The defaults above must be left intact. */
1049 struct env_entry env_vars[N_ENV_VARS];
1050
1051 for (i = 0; i < N_ENV_VARS; i++)
1052 env_vars[i] = dflt_envvars[i];
1053
1054 /* For backwards compatibility, check if a .emacs file exists in C:/
1055 If not, then we can try to default to the appdata directory under the
1056 user's profile, which is more likely to be writable. */
1057 if (stat ("C:/.emacs", &ignored) < 0)
1058 {
1059 HRESULT profile_result;
1060 /* Dynamically load ShGetFolderPath, as it won't exist on versions
1061 of Windows 95 and NT4 that have not been updated to include
1062 MSIE 5. Also we don't link with shell32.dll by default. */
1063 HMODULE shell32_dll;
1064 ShGetFolderPath_fn get_folder_path;
1065 shell32_dll = GetModuleHandle ("shell32.dll");
1066 get_folder_path = (ShGetFolderPath_fn)
1067 GetProcAddress (shell32_dll, "SHGetFolderPathA");
1068
1069 if (get_folder_path != NULL)
1070 {
1071 profile_result = get_folder_path (NULL, CSIDL_APPDATA, NULL,
1072 0, default_home);
1073
1074 /* If we can't get the appdata dir, revert to old behaviour. */
1075 if (profile_result == S_OK)
1076 env_vars[0].def_value = default_home;
1077 }
1078
1079 /* Unload shell32.dll, it is not needed anymore. */
1080 FreeLibrary (shell32_dll);
1081 }
1082
1083 /* Get default locale info and use it for LANG. */
1084 if (GetLocaleInfo (LOCALE_USER_DEFAULT,
1085 LOCALE_SABBREVLANGNAME | LOCALE_USE_CP_ACP,
1086 locale_name, sizeof (locale_name)))
1087 {
1088 for (i = 0; i < N_ENV_VARS; i++)
1089 {
1090 if (strcmp (env_vars[i].name, "LANG") == 0)
1091 {
1092 env_vars[i].def_value = locale_name;
1093 break;
1094 }
1095 }
1096 }
1097
1098 #define SET_ENV_BUF_SIZE (4 * MAX_PATH) /* to cover EMACSLOADPATH */
1099
1100 /* Treat emacs_dir specially: set it unconditionally based on our
1101 location, if it appears that we are running from the bin subdir
1102 of a standard installation. */
1103 {
1104 char *p;
1105 char modname[MAX_PATH];
1106
1107 if (!GetModuleFileName (NULL, modname, MAX_PATH))
1108 abort ();
1109 if ((p = strrchr (modname, '\\')) == NULL)
1110 abort ();
1111 *p = 0;
1112
1113 if ((p = strrchr (modname, '\\')) && stricmp (p, "\\bin") == 0)
1114 {
1115 char buf[SET_ENV_BUF_SIZE];
1116
1117 *p = 0;
1118 for (p = modname; *p; p++)
1119 if (*p == '\\') *p = '/';
1120
1121 _snprintf (buf, sizeof(buf)-1, "emacs_dir=%s", modname);
1122 _putenv (strdup (buf));
1123 }
1124 /* Handle running emacs from the build directory: src/oo-spd/i386/ */
1125
1126 /* FIXME: should use substring of get_emacs_configuration ().
1127 But I don't think the Windows build supports alpha, mips etc
1128 anymore, so have taken the easy option for now. */
1129 else if (p && stricmp (p, "\\i386") == 0)
1130 {
1131 *p = 0;
1132 p = strrchr (modname, '\\');
1133 if (p != NULL)
1134 {
1135 *p = 0;
1136 p = strrchr (modname, '\\');
1137 if (p && stricmp (p, "\\src") == 0)
1138 {
1139 char buf[SET_ENV_BUF_SIZE];
1140
1141 *p = 0;
1142 for (p = modname; *p; p++)
1143 if (*p == '\\') *p = '/';
1144
1145 _snprintf (buf, sizeof(buf)-1, "emacs_dir=%s", modname);
1146 _putenv (strdup (buf));
1147 }
1148 }
1149 }
1150 }
1151
1152 for (i = 0; i < N_ENV_VARS; i++)
1153 {
1154 if (!getenv (env_vars[i].name))
1155 {
1156 int dont_free = 0;
1157
1158 if ((lpval = w32_get_resource (env_vars[i].name, &dwType)) == NULL
1159 /* Also ignore empty environment variables. */
1160 || *lpval == 0)
1161 {
1162 lpval = env_vars[i].def_value;
1163 dwType = REG_EXPAND_SZ;
1164 dont_free = 1;
1165 }
1166
1167 if (lpval)
1168 {
1169 char buf1[SET_ENV_BUF_SIZE], buf2[SET_ENV_BUF_SIZE];
1170
1171 if (dwType == REG_EXPAND_SZ)
1172 ExpandEnvironmentStrings ((LPSTR) lpval, buf1, sizeof(buf1));
1173 else if (dwType == REG_SZ)
1174 strcpy (buf1, lpval);
1175 if (dwType == REG_EXPAND_SZ || dwType == REG_SZ)
1176 {
1177 _snprintf (buf2, sizeof(buf2)-1, "%s=%s", env_vars[i].name,
1178 buf1);
1179 _putenv (strdup (buf2));
1180 }
1181
1182 if (!dont_free)
1183 xfree (lpval);
1184 }
1185 }
1186 }
1187 }
1188
1189 /* Rebuild system configuration to reflect invoking system. */
1190 Vsystem_configuration = build_string (EMACS_CONFIGURATION);
1191
1192 /* Another special case: on NT, the PATH variable is actually named
1193 "Path" although cmd.exe (perhaps NT itself) arranges for
1194 environment variable lookup and setting to be case insensitive.
1195 However, Emacs assumes a fully case sensitive environment, so we
1196 need to change "Path" to "PATH" to match the expectations of
1197 various elisp packages. We do this by the sneaky method of
1198 modifying the string in the C runtime environ entry.
1199
1200 The same applies to COMSPEC. */
1201 {
1202 char ** envp;
1203
1204 for (envp = environ; *envp; envp++)
1205 if (_strnicmp (*envp, "PATH=", 5) == 0)
1206 memcpy (*envp, "PATH=", 5);
1207 else if (_strnicmp (*envp, "COMSPEC=", 8) == 0)
1208 memcpy (*envp, "COMSPEC=", 8);
1209 }
1210
1211 /* Remember the initial working directory for getwd, then make the
1212 real wd be the location of emacs.exe to avoid conflicts when
1213 renaming or deleting directories. (We also don't call chdir when
1214 running subprocesses for the same reason.) */
1215 if (!GetCurrentDirectory (MAXPATHLEN, startup_dir))
1216 abort ();
1217
1218 {
1219 char *p;
1220 static char modname[MAX_PATH];
1221
1222 if (!GetModuleFileName (NULL, modname, MAX_PATH))
1223 abort ();
1224 if ((p = strrchr (modname, '\\')) == NULL)
1225 abort ();
1226 *p = 0;
1227
1228 SetCurrentDirectory (modname);
1229
1230 /* Ensure argv[0] has the full path to Emacs. */
1231 *p = '\\';
1232 argv[0] = modname;
1233 }
1234
1235 /* Determine if there is a middle mouse button, to allow parse_button
1236 to decide whether right mouse events should be mouse-2 or
1237 mouse-3. */
1238 w32_num_mouse_buttons = GetSystemMetrics (SM_CMOUSEBUTTONS);
1239
1240 init_user_info ();
1241 }
1242
1243 char *
1244 emacs_root_dir (void)
1245 {
1246 static char root_dir[FILENAME_MAX];
1247 const char *p;
1248
1249 p = getenv ("emacs_dir");
1250 if (p == NULL)
1251 abort ();
1252 strcpy (root_dir, p);
1253 root_dir[parse_root (root_dir, NULL)] = '\0';
1254 dostounix_filename (root_dir);
1255 return root_dir;
1256 }
1257
1258 /* We don't have scripts to automatically determine the system configuration
1259 for Emacs before it's compiled, and we don't want to have to make the
1260 user enter it, so we define EMACS_CONFIGURATION to invoke this runtime
1261 routine. */
1262
1263 char *
1264 get_emacs_configuration (void)
1265 {
1266 char *arch, *oem, *os;
1267 int build_num;
1268 static char configuration_buffer[32];
1269
1270 /* Determine the processor type. */
1271 switch (get_processor_type ())
1272 {
1273
1274 #ifdef PROCESSOR_INTEL_386
1275 case PROCESSOR_INTEL_386:
1276 case PROCESSOR_INTEL_486:
1277 case PROCESSOR_INTEL_PENTIUM:
1278 arch = "i386";
1279 break;
1280 #endif
1281
1282 #ifdef PROCESSOR_INTEL_860
1283 case PROCESSOR_INTEL_860:
1284 arch = "i860";
1285 break;
1286 #endif
1287
1288 #ifdef PROCESSOR_MIPS_R2000
1289 case PROCESSOR_MIPS_R2000:
1290 case PROCESSOR_MIPS_R3000:
1291 case PROCESSOR_MIPS_R4000:
1292 arch = "mips";
1293 break;
1294 #endif
1295
1296 #ifdef PROCESSOR_ALPHA_21064
1297 case PROCESSOR_ALPHA_21064:
1298 arch = "alpha";
1299 break;
1300 #endif
1301
1302 default:
1303 arch = "unknown";
1304 break;
1305 }
1306
1307 /* Use the OEM field to reflect the compiler/library combination. */
1308 #ifdef _MSC_VER
1309 #define COMPILER_NAME "msvc"
1310 #else
1311 #ifdef __GNUC__
1312 #define COMPILER_NAME "mingw"
1313 #else
1314 #define COMPILER_NAME "unknown"
1315 #endif
1316 #endif
1317 oem = COMPILER_NAME;
1318
1319 switch (osinfo_cache.dwPlatformId) {
1320 case VER_PLATFORM_WIN32_NT:
1321 os = "nt";
1322 build_num = osinfo_cache.dwBuildNumber;
1323 break;
1324 case VER_PLATFORM_WIN32_WINDOWS:
1325 if (osinfo_cache.dwMinorVersion == 0) {
1326 os = "windows95";
1327 } else {
1328 os = "windows98";
1329 }
1330 build_num = LOWORD (osinfo_cache.dwBuildNumber);
1331 break;
1332 case VER_PLATFORM_WIN32s:
1333 /* Not supported, should not happen. */
1334 os = "windows32s";
1335 build_num = LOWORD (osinfo_cache.dwBuildNumber);
1336 break;
1337 default:
1338 os = "unknown";
1339 build_num = 0;
1340 break;
1341 }
1342
1343 if (osinfo_cache.dwPlatformId == VER_PLATFORM_WIN32_NT) {
1344 sprintf (configuration_buffer, "%s-%s-%s%d.%d.%d", arch, oem, os,
1345 get_w32_major_version (), get_w32_minor_version (), build_num);
1346 } else {
1347 sprintf (configuration_buffer, "%s-%s-%s.%d", arch, oem, os, build_num);
1348 }
1349
1350 return configuration_buffer;
1351 }
1352
1353 char *
1354 get_emacs_configuration_options (void)
1355 {
1356 static char options_buffer[256];
1357
1358 /* Work out the effective configure options for this build. */
1359 #ifdef _MSC_VER
1360 #define COMPILER_VERSION "--with-msvc (%d.%02d)", _MSC_VER / 100, _MSC_VER % 100
1361 #else
1362 #ifdef __GNUC__
1363 #define COMPILER_VERSION "--with-gcc (%d.%d)", __GNUC__, __GNUC_MINOR__
1364 #else
1365 #define COMPILER_VERSION ""
1366 #endif
1367 #endif
1368
1369 sprintf (options_buffer, COMPILER_VERSION);
1370 #ifdef EMACSDEBUG
1371 strcat (options_buffer, " --no-opt");
1372 #endif
1373 #ifdef USER_CFLAGS
1374 strcat (options_buffer, " --cflags");
1375 strcat (options_buffer, USER_CFLAGS);
1376 #endif
1377 #ifdef USER_LDFLAGS
1378 strcat (options_buffer, " --ldflags");
1379 strcat (options_buffer, USER_LDFLAGS);
1380 #endif
1381 return options_buffer;
1382 }
1383
1384
1385 #include <sys/timeb.h>
1386
1387 /* Emulate gettimeofday (Ulrich Leodolter, 1/11/95). */
1388 void
1389 gettimeofday (struct timeval *tv, struct timezone *tz)
1390 {
1391 struct _timeb tb;
1392 _ftime (&tb);
1393
1394 tv->tv_sec = tb.time;
1395 tv->tv_usec = tb.millitm * 1000L;
1396 if (tz)
1397 {
1398 tz->tz_minuteswest = tb.timezone; /* minutes west of Greenwich */
1399 tz->tz_dsttime = tb.dstflag; /* type of dst correction */
1400 }
1401 }
1402
1403 /* ------------------------------------------------------------------------- */
1404 /* IO support and wrapper functions for W32 API. */
1405 /* ------------------------------------------------------------------------- */
1406
1407 /* Place a wrapper around the MSVC version of ctime. It returns NULL
1408 on network directories, so we handle that case here.
1409 (Ulrich Leodolter, 1/11/95). */
1410 char *
1411 sys_ctime (const time_t *t)
1412 {
1413 char *str = (char *) ctime (t);
1414 return (str ? str : "Sun Jan 01 00:00:00 1970");
1415 }
1416
1417 /* Emulate sleep...we could have done this with a define, but that
1418 would necessitate including windows.h in the files that used it.
1419 This is much easier. */
1420 void
1421 sys_sleep (int seconds)
1422 {
1423 Sleep (seconds * 1000);
1424 }
1425
1426 /* Internal MSVC functions for low-level descriptor munging */
1427 extern int __cdecl _set_osfhnd (int fd, long h);
1428 extern int __cdecl _free_osfhnd (int fd);
1429
1430 /* parallel array of private info on file handles */
1431 filedesc fd_info [ MAXDESC ];
1432
1433 typedef struct volume_info_data {
1434 struct volume_info_data * next;
1435
1436 /* time when info was obtained */
1437 DWORD timestamp;
1438
1439 /* actual volume info */
1440 char * root_dir;
1441 DWORD serialnum;
1442 DWORD maxcomp;
1443 DWORD flags;
1444 char * name;
1445 char * type;
1446 } volume_info_data;
1447
1448 /* Global referenced by various functions. */
1449 static volume_info_data volume_info;
1450
1451 /* Vector to indicate which drives are local and fixed (for which cached
1452 data never expires). */
1453 static BOOL fixed_drives[26];
1454
1455 /* Consider cached volume information to be stale if older than 10s,
1456 at least for non-local drives. Info for fixed drives is never stale. */
1457 #define DRIVE_INDEX( c ) ( (c) <= 'Z' ? (c) - 'A' : (c) - 'a' )
1458 #define VOLINFO_STILL_VALID( root_dir, info ) \
1459 ( ( isalpha (root_dir[0]) && \
1460 fixed_drives[ DRIVE_INDEX (root_dir[0]) ] ) \
1461 || GetTickCount () - info->timestamp < 10000 )
1462
1463 /* Cache support functions. */
1464
1465 /* Simple linked list with linear search is sufficient. */
1466 static volume_info_data *volume_cache = NULL;
1467
1468 static volume_info_data *
1469 lookup_volume_info (char * root_dir)
1470 {
1471 volume_info_data * info;
1472
1473 for (info = volume_cache; info; info = info->next)
1474 if (stricmp (info->root_dir, root_dir) == 0)
1475 break;
1476 return info;
1477 }
1478
1479 static void
1480 add_volume_info (char * root_dir, volume_info_data * info)
1481 {
1482 info->root_dir = xstrdup (root_dir);
1483 info->next = volume_cache;
1484 volume_cache = info;
1485 }
1486
1487
1488 /* Wrapper for GetVolumeInformation, which uses caching to avoid
1489 performance penalty (~2ms on 486 for local drives, 7.5ms for local
1490 cdrom drive, ~5-10ms or more for remote drives on LAN). */
1491 volume_info_data *
1492 GetCachedVolumeInformation (char * root_dir)
1493 {
1494 volume_info_data * info;
1495 char default_root[ MAX_PATH ];
1496
1497 /* NULL for root_dir means use root from current directory. */
1498 if (root_dir == NULL)
1499 {
1500 if (GetCurrentDirectory (MAX_PATH, default_root) == 0)
1501 return NULL;
1502 parse_root (default_root, &root_dir);
1503 *root_dir = 0;
1504 root_dir = default_root;
1505 }
1506
1507 /* Local fixed drives can be cached permanently. Removable drives
1508 cannot be cached permanently, since the volume name and serial
1509 number (if nothing else) can change. Remote drives should be
1510 treated as if they are removable, since there is no sure way to
1511 tell whether they are or not. Also, the UNC association of drive
1512 letters mapped to remote volumes can be changed at any time (even
1513 by other processes) without notice.
1514
1515 As a compromise, so we can benefit from caching info for remote
1516 volumes, we use a simple expiry mechanism to invalidate cache
1517 entries that are more than ten seconds old. */
1518
1519 #if 0
1520 /* No point doing this, because WNetGetConnection is even slower than
1521 GetVolumeInformation, consistently taking ~50ms on a 486 (FWIW,
1522 GetDriveType is about the only call of this type which does not
1523 involve network access, and so is extremely quick). */
1524
1525 /* Map drive letter to UNC if remote. */
1526 if ( isalpha( root_dir[0] ) && !fixed[ DRIVE_INDEX( root_dir[0] ) ] )
1527 {
1528 char remote_name[ 256 ];
1529 char drive[3] = { root_dir[0], ':' };
1530
1531 if (WNetGetConnection (drive, remote_name, sizeof (remote_name))
1532 == NO_ERROR)
1533 /* do something */ ;
1534 }
1535 #endif
1536
1537 info = lookup_volume_info (root_dir);
1538
1539 if (info == NULL || ! VOLINFO_STILL_VALID (root_dir, info))
1540 {
1541 char name[ 256 ];
1542 DWORD serialnum;
1543 DWORD maxcomp;
1544 DWORD flags;
1545 char type[ 256 ];
1546
1547 /* Info is not cached, or is stale. */
1548 if (!GetVolumeInformation (root_dir,
1549 name, sizeof (name),
1550 &serialnum,
1551 &maxcomp,
1552 &flags,
1553 type, sizeof (type)))
1554 return NULL;
1555
1556 /* Cache the volume information for future use, overwriting existing
1557 entry if present. */
1558 if (info == NULL)
1559 {
1560 info = (volume_info_data *) xmalloc (sizeof (volume_info_data));
1561 add_volume_info (root_dir, info);
1562 }
1563 else
1564 {
1565 xfree (info->name);
1566 xfree (info->type);
1567 }
1568
1569 info->name = xstrdup (name);
1570 info->serialnum = serialnum;
1571 info->maxcomp = maxcomp;
1572 info->flags = flags;
1573 info->type = xstrdup (type);
1574 info->timestamp = GetTickCount ();
1575 }
1576
1577 return info;
1578 }
1579
1580 /* Get information on the volume where name is held; set path pointer to
1581 start of pathname in name (past UNC header\volume header if present). */
1582 int
1583 get_volume_info (const char * name, const char ** pPath)
1584 {
1585 char temp[MAX_PATH];
1586 char *rootname = NULL; /* default to current volume */
1587 volume_info_data * info;
1588
1589 if (name == NULL)
1590 return FALSE;
1591
1592 /* find the root name of the volume if given */
1593 if (isalpha (name[0]) && name[1] == ':')
1594 {
1595 rootname = temp;
1596 temp[0] = *name++;
1597 temp[1] = *name++;
1598 temp[2] = '\\';
1599 temp[3] = 0;
1600 }
1601 else if (IS_DIRECTORY_SEP (name[0]) && IS_DIRECTORY_SEP (name[1]))
1602 {
1603 char *str = temp;
1604 int slashes = 4;
1605 rootname = temp;
1606 do
1607 {
1608 if (IS_DIRECTORY_SEP (*name) && --slashes == 0)
1609 break;
1610 *str++ = *name++;
1611 }
1612 while ( *name );
1613
1614 *str++ = '\\';
1615 *str = 0;
1616 }
1617
1618 if (pPath)
1619 *pPath = name;
1620
1621 info = GetCachedVolumeInformation (rootname);
1622 if (info != NULL)
1623 {
1624 /* Set global referenced by other functions. */
1625 volume_info = *info;
1626 return TRUE;
1627 }
1628 return FALSE;
1629 }
1630
1631 /* Determine if volume is FAT format (ie. only supports short 8.3
1632 names); also set path pointer to start of pathname in name. */
1633 int
1634 is_fat_volume (const char * name, const char ** pPath)
1635 {
1636 if (get_volume_info (name, pPath))
1637 return (volume_info.maxcomp == 12);
1638 return FALSE;
1639 }
1640
1641 /* Map filename to a legal 8.3 name if necessary. */
1642 const char *
1643 map_w32_filename (const char * name, const char ** pPath)
1644 {
1645 static char shortname[MAX_PATH];
1646 char * str = shortname;
1647 char c;
1648 char * path;
1649 const char * save_name = name;
1650
1651 if (strlen (name) >= MAX_PATH)
1652 {
1653 /* Return a filename which will cause callers to fail. */
1654 strcpy (shortname, "?");
1655 return shortname;
1656 }
1657
1658 if (is_fat_volume (name, (const char **)&path)) /* truncate to 8.3 */
1659 {
1660 register int left = 8; /* maximum number of chars in part */
1661 register int extn = 0; /* extension added? */
1662 register int dots = 2; /* maximum number of dots allowed */
1663
1664 while (name < path)
1665 *str++ = *name++; /* skip past UNC header */
1666
1667 while ((c = *name++))
1668 {
1669 switch ( c )
1670 {
1671 case '\\':
1672 case '/':
1673 *str++ = '\\';
1674 extn = 0; /* reset extension flags */
1675 dots = 2; /* max 2 dots */
1676 left = 8; /* max length 8 for main part */
1677 break;
1678 case ':':
1679 *str++ = ':';
1680 extn = 0; /* reset extension flags */
1681 dots = 2; /* max 2 dots */
1682 left = 8; /* max length 8 for main part */
1683 break;
1684 case '.':
1685 if ( dots )
1686 {
1687 /* Convert path components of the form .xxx to _xxx,
1688 but leave . and .. as they are. This allows .emacs
1689 to be read as _emacs, for example. */
1690
1691 if (! *name ||
1692 *name == '.' ||
1693 IS_DIRECTORY_SEP (*name))
1694 {
1695 *str++ = '.';
1696 dots--;
1697 }
1698 else
1699 {
1700 *str++ = '_';
1701 left--;
1702 dots = 0;
1703 }
1704 }
1705 else if ( !extn )
1706 {
1707 *str++ = '.';
1708 extn = 1; /* we've got an extension */
1709 left = 3; /* 3 chars in extension */
1710 }
1711 else
1712 {
1713 /* any embedded dots after the first are converted to _ */
1714 *str++ = '_';
1715 }
1716 break;
1717 case '~':
1718 case '#': /* don't lose these, they're important */
1719 if ( ! left )
1720 str[-1] = c; /* replace last character of part */
1721 /* FALLTHRU */
1722 default:
1723 if ( left )
1724 {
1725 *str++ = tolower (c); /* map to lower case (looks nicer) */
1726 left--;
1727 dots = 0; /* started a path component */
1728 }
1729 break;
1730 }
1731 }
1732 *str = '\0';
1733 }
1734 else
1735 {
1736 strcpy (shortname, name);
1737 unixtodos_filename (shortname);
1738 }
1739
1740 if (pPath)
1741 *pPath = shortname + (path - save_name);
1742
1743 return shortname;
1744 }
1745
1746 static int
1747 is_exec (const char * name)
1748 {
1749 char * p = strrchr (name, '.');
1750 return
1751 (p != NULL
1752 && (stricmp (p, ".exe") == 0 ||
1753 stricmp (p, ".com") == 0 ||
1754 stricmp (p, ".bat") == 0 ||
1755 stricmp (p, ".cmd") == 0));
1756 }
1757
1758 /* Emulate the Unix directory procedures opendir, closedir,
1759 and readdir. We can't use the procedures supplied in sysdep.c,
1760 so we provide them here. */
1761
1762 struct direct dir_static; /* simulated directory contents */
1763 static HANDLE dir_find_handle = INVALID_HANDLE_VALUE;
1764 static int dir_is_fat;
1765 static char dir_pathname[MAXPATHLEN+1];
1766 static WIN32_FIND_DATA dir_find_data;
1767
1768 /* Support shares on a network resource as subdirectories of a read-only
1769 root directory. */
1770 static HANDLE wnet_enum_handle = INVALID_HANDLE_VALUE;
1771 HANDLE open_unc_volume (const char *);
1772 char *read_unc_volume (HANDLE, char *, int);
1773 void close_unc_volume (HANDLE);
1774
1775 DIR *
1776 opendir (char *filename)
1777 {
1778 DIR *dirp;
1779
1780 /* Opening is done by FindFirstFile. However, a read is inherent to
1781 this operation, so we defer the open until read time. */
1782
1783 if (dir_find_handle != INVALID_HANDLE_VALUE)
1784 return NULL;
1785 if (wnet_enum_handle != INVALID_HANDLE_VALUE)
1786 return NULL;
1787
1788 if (is_unc_volume (filename))
1789 {
1790 wnet_enum_handle = open_unc_volume (filename);
1791 if (wnet_enum_handle == INVALID_HANDLE_VALUE)
1792 return NULL;
1793 }
1794
1795 if (!(dirp = (DIR *) malloc (sizeof (DIR))))
1796 return NULL;
1797
1798 dirp->dd_fd = 0;
1799 dirp->dd_loc = 0;
1800 dirp->dd_size = 0;
1801
1802 strncpy (dir_pathname, map_w32_filename (filename, NULL), MAXPATHLEN);
1803 dir_pathname[MAXPATHLEN] = '\0';
1804 dir_is_fat = is_fat_volume (filename, NULL);
1805
1806 return dirp;
1807 }
1808
1809 void
1810 closedir (DIR *dirp)
1811 {
1812 /* If we have a find-handle open, close it. */
1813 if (dir_find_handle != INVALID_HANDLE_VALUE)
1814 {
1815 FindClose (dir_find_handle);
1816 dir_find_handle = INVALID_HANDLE_VALUE;
1817 }
1818 else if (wnet_enum_handle != INVALID_HANDLE_VALUE)
1819 {
1820 close_unc_volume (wnet_enum_handle);
1821 wnet_enum_handle = INVALID_HANDLE_VALUE;
1822 }
1823 xfree ((char *) dirp);
1824 }
1825
1826 struct direct *
1827 readdir (DIR *dirp)
1828 {
1829 if (wnet_enum_handle != INVALID_HANDLE_VALUE)
1830 {
1831 if (!read_unc_volume (wnet_enum_handle,
1832 dir_find_data.cFileName,
1833 MAX_PATH))
1834 return NULL;
1835 }
1836 /* If we aren't dir_finding, do a find-first, otherwise do a find-next. */
1837 else if (dir_find_handle == INVALID_HANDLE_VALUE)
1838 {
1839 char filename[MAXNAMLEN + 3];
1840 int ln;
1841
1842 strcpy (filename, dir_pathname);
1843 ln = strlen (filename) - 1;
1844 if (!IS_DIRECTORY_SEP (filename[ln]))
1845 strcat (filename, "\\");
1846 strcat (filename, "*");
1847
1848 dir_find_handle = FindFirstFile (filename, &dir_find_data);
1849
1850 if (dir_find_handle == INVALID_HANDLE_VALUE)
1851 return NULL;
1852 }
1853 else
1854 {
1855 if (!FindNextFile (dir_find_handle, &dir_find_data))
1856 return NULL;
1857 }
1858
1859 /* Emacs never uses this value, so don't bother making it match
1860 value returned by stat(). */
1861 dir_static.d_ino = 1;
1862
1863 dir_static.d_reclen = sizeof (struct direct) - MAXNAMLEN + 3 +
1864 dir_static.d_namlen - dir_static.d_namlen % 4;
1865
1866 dir_static.d_namlen = strlen (dir_find_data.cFileName);
1867 strcpy (dir_static.d_name, dir_find_data.cFileName);
1868 if (dir_is_fat)
1869 _strlwr (dir_static.d_name);
1870 else if (!NILP (Vw32_downcase_file_names))
1871 {
1872 register char *p;
1873 for (p = dir_static.d_name; *p; p++)
1874 if (*p >= 'a' && *p <= 'z')
1875 break;
1876 if (!*p)
1877 _strlwr (dir_static.d_name);
1878 }
1879
1880 return &dir_static;
1881 }
1882
1883 HANDLE
1884 open_unc_volume (const char *path)
1885 {
1886 NETRESOURCE nr;
1887 HANDLE henum;
1888 int result;
1889
1890 nr.dwScope = RESOURCE_GLOBALNET;
1891 nr.dwType = RESOURCETYPE_DISK;
1892 nr.dwDisplayType = RESOURCEDISPLAYTYPE_SERVER;
1893 nr.dwUsage = RESOURCEUSAGE_CONTAINER;
1894 nr.lpLocalName = NULL;
1895 nr.lpRemoteName = (LPSTR)map_w32_filename (path, NULL);
1896 nr.lpComment = NULL;
1897 nr.lpProvider = NULL;
1898
1899 result = WNetOpenEnum(RESOURCE_GLOBALNET, RESOURCETYPE_DISK,
1900 RESOURCEUSAGE_CONNECTABLE, &nr, &henum);
1901
1902 if (result == NO_ERROR)
1903 return henum;
1904 else
1905 return INVALID_HANDLE_VALUE;
1906 }
1907
1908 char *
1909 read_unc_volume (HANDLE henum, char *readbuf, int size)
1910 {
1911 DWORD count;
1912 int result;
1913 DWORD bufsize = 512;
1914 char *buffer;
1915 char *ptr;
1916
1917 count = 1;
1918 buffer = alloca (bufsize);
1919 result = WNetEnumResource (wnet_enum_handle, &count, buffer, &bufsize);
1920 if (result != NO_ERROR)
1921 return NULL;
1922
1923 /* WNetEnumResource returns \\resource\share...skip forward to "share". */
1924 ptr = ((LPNETRESOURCE) buffer)->lpRemoteName;
1925 ptr += 2;
1926 while (*ptr && !IS_DIRECTORY_SEP (*ptr)) ptr++;
1927 ptr++;
1928
1929 strncpy (readbuf, ptr, size);
1930 return readbuf;
1931 }
1932
1933 void
1934 close_unc_volume (HANDLE henum)
1935 {
1936 if (henum != INVALID_HANDLE_VALUE)
1937 WNetCloseEnum (henum);
1938 }
1939
1940 DWORD
1941 unc_volume_file_attributes (const char *path)
1942 {
1943 HANDLE henum;
1944 DWORD attrs;
1945
1946 henum = open_unc_volume (path);
1947 if (henum == INVALID_HANDLE_VALUE)
1948 return -1;
1949
1950 attrs = FILE_ATTRIBUTE_READONLY | FILE_ATTRIBUTE_DIRECTORY;
1951
1952 close_unc_volume (henum);
1953
1954 return attrs;
1955 }
1956
1957
1958 /* Shadow some MSVC runtime functions to map requests for long filenames
1959 to reasonable short names if necessary. This was originally added to
1960 permit running Emacs on NT 3.1 on a FAT partition, which doesn't support
1961 long file names. */
1962
1963 int
1964 sys_access (const char * path, int mode)
1965 {
1966 DWORD attributes;
1967
1968 /* MSVC implementation doesn't recognize D_OK. */
1969 path = map_w32_filename (path, NULL);
1970 if (is_unc_volume (path))
1971 {
1972 attributes = unc_volume_file_attributes (path);
1973 if (attributes == -1) {
1974 errno = EACCES;
1975 return -1;
1976 }
1977 }
1978 else if ((attributes = GetFileAttributes (path)) == -1)
1979 {
1980 /* Should try mapping GetLastError to errno; for now just indicate
1981 that path doesn't exist. */
1982 errno = EACCES;
1983 return -1;
1984 }
1985 if ((mode & X_OK) != 0 && !is_exec (path))
1986 {
1987 errno = EACCES;
1988 return -1;
1989 }
1990 if ((mode & W_OK) != 0 && (attributes & FILE_ATTRIBUTE_READONLY) != 0)
1991 {
1992 errno = EACCES;
1993 return -1;
1994 }
1995 if ((mode & D_OK) != 0 && (attributes & FILE_ATTRIBUTE_DIRECTORY) == 0)
1996 {
1997 errno = EACCES;
1998 return -1;
1999 }
2000 return 0;
2001 }
2002
2003 int
2004 sys_chdir (const char * path)
2005 {
2006 return _chdir (map_w32_filename (path, NULL));
2007 }
2008
2009 int
2010 sys_chmod (const char * path, int mode)
2011 {
2012 return _chmod (map_w32_filename (path, NULL), mode);
2013 }
2014
2015 int
2016 sys_chown (const char *path, uid_t owner, gid_t group)
2017 {
2018 if (sys_chmod (path, _S_IREAD) == -1) /* check if file exists */
2019 return -1;
2020 return 0;
2021 }
2022
2023 int
2024 sys_creat (const char * path, int mode)
2025 {
2026 return _creat (map_w32_filename (path, NULL), mode);
2027 }
2028
2029 FILE *
2030 sys_fopen(const char * path, const char * mode)
2031 {
2032 int fd;
2033 int oflag;
2034 const char * mode_save = mode;
2035
2036 /* Force all file handles to be non-inheritable. This is necessary to
2037 ensure child processes don't unwittingly inherit handles that might
2038 prevent future file access. */
2039
2040 if (mode[0] == 'r')
2041 oflag = O_RDONLY;
2042 else if (mode[0] == 'w' || mode[0] == 'a')
2043 oflag = O_WRONLY | O_CREAT | O_TRUNC;
2044 else
2045 return NULL;
2046
2047 /* Only do simplistic option parsing. */
2048 while (*++mode)
2049 if (mode[0] == '+')
2050 {
2051 oflag &= ~(O_RDONLY | O_WRONLY);
2052 oflag |= O_RDWR;
2053 }
2054 else if (mode[0] == 'b')
2055 {
2056 oflag &= ~O_TEXT;
2057 oflag |= O_BINARY;
2058 }
2059 else if (mode[0] == 't')
2060 {
2061 oflag &= ~O_BINARY;
2062 oflag |= O_TEXT;
2063 }
2064 else break;
2065
2066 fd = _open (map_w32_filename (path, NULL), oflag | _O_NOINHERIT, 0644);
2067 if (fd < 0)
2068 return NULL;
2069
2070 return _fdopen (fd, mode_save);
2071 }
2072
2073 /* This only works on NTFS volumes, but is useful to have. */
2074 int
2075 sys_link (const char * old, const char * new)
2076 {
2077 HANDLE fileh;
2078 int result = -1;
2079 char oldname[MAX_PATH], newname[MAX_PATH];
2080
2081 if (old == NULL || new == NULL)
2082 {
2083 errno = ENOENT;
2084 return -1;
2085 }
2086
2087 strcpy (oldname, map_w32_filename (old, NULL));
2088 strcpy (newname, map_w32_filename (new, NULL));
2089
2090 fileh = CreateFile (oldname, 0, 0, NULL, OPEN_EXISTING,
2091 FILE_FLAG_BACKUP_SEMANTICS, NULL);
2092 if (fileh != INVALID_HANDLE_VALUE)
2093 {
2094 int wlen;
2095
2096 /* Confusingly, the "alternate" stream name field does not apply
2097 when restoring a hard link, and instead contains the actual
2098 stream data for the link (ie. the name of the link to create).
2099 The WIN32_STREAM_ID structure before the cStreamName field is
2100 the stream header, which is then immediately followed by the
2101 stream data. */
2102
2103 struct {
2104 WIN32_STREAM_ID wid;
2105 WCHAR wbuffer[MAX_PATH]; /* extra space for link name */
2106 } data;
2107
2108 wlen = MultiByteToWideChar (CP_ACP, MB_PRECOMPOSED, newname, -1,
2109 data.wid.cStreamName, MAX_PATH);
2110 if (wlen > 0)
2111 {
2112 LPVOID context = NULL;
2113 DWORD wbytes = 0;
2114
2115 data.wid.dwStreamId = BACKUP_LINK;
2116 data.wid.dwStreamAttributes = 0;
2117 data.wid.Size.LowPart = wlen * sizeof(WCHAR);
2118 data.wid.Size.HighPart = 0;
2119 data.wid.dwStreamNameSize = 0;
2120
2121 if (BackupWrite (fileh, (LPBYTE)&data,
2122 offsetof (WIN32_STREAM_ID, cStreamName)
2123 + data.wid.Size.LowPart,
2124 &wbytes, FALSE, FALSE, &context)
2125 && BackupWrite (fileh, NULL, 0, &wbytes, TRUE, FALSE, &context))
2126 {
2127 /* succeeded */
2128 result = 0;
2129 }
2130 else
2131 {
2132 /* Should try mapping GetLastError to errno; for now just
2133 indicate a general error (eg. links not supported). */
2134 errno = EINVAL; // perhaps EMLINK?
2135 }
2136 }
2137
2138 CloseHandle (fileh);
2139 }
2140 else
2141 errno = ENOENT;
2142
2143 return result;
2144 }
2145
2146 int
2147 sys_mkdir (const char * path)
2148 {
2149 return _mkdir (map_w32_filename (path, NULL));
2150 }
2151
2152 /* Because of long name mapping issues, we need to implement this
2153 ourselves. Also, MSVC's _mktemp returns NULL when it can't generate
2154 a unique name, instead of setting the input template to an empty
2155 string.
2156
2157 Standard algorithm seems to be use pid or tid with a letter on the
2158 front (in place of the 6 X's) and cycle through the letters to find a
2159 unique name. We extend that to allow any reasonable character as the
2160 first of the 6 X's. */
2161 char *
2162 sys_mktemp (char * template)
2163 {
2164 char * p;
2165 int i;
2166 unsigned uid = GetCurrentThreadId ();
2167 static char first_char[] = "abcdefghijklmnopqrstuvwyz0123456789!%-_@#";
2168
2169 if (template == NULL)
2170 return NULL;
2171 p = template + strlen (template);
2172 i = 5;
2173 /* replace up to the last 5 X's with uid in decimal */
2174 while (--p >= template && p[0] == 'X' && --i >= 0)
2175 {
2176 p[0] = '0' + uid % 10;
2177 uid /= 10;
2178 }
2179
2180 if (i < 0 && p[0] == 'X')
2181 {
2182 i = 0;
2183 do
2184 {
2185 int save_errno = errno;
2186 p[0] = first_char[i];
2187 if (sys_access (template, 0) < 0)
2188 {
2189 errno = save_errno;
2190 return template;
2191 }
2192 }
2193 while (++i < sizeof (first_char));
2194 }
2195
2196 /* Template is badly formed or else we can't generate a unique name,
2197 so return empty string */
2198 template[0] = 0;
2199 return template;
2200 }
2201
2202 int
2203 sys_open (const char * path, int oflag, int mode)
2204 {
2205 const char* mpath = map_w32_filename (path, NULL);
2206 /* Try to open file without _O_CREAT, to be able to write to hidden
2207 and system files. Force all file handles to be
2208 non-inheritable. */
2209 int res = _open (mpath, (oflag & ~_O_CREAT) | _O_NOINHERIT, mode);
2210 if (res >= 0)
2211 return res;
2212 return _open (mpath, oflag | _O_NOINHERIT, mode);
2213 }
2214
2215 int
2216 sys_rename (const char * oldname, const char * newname)
2217 {
2218 BOOL result;
2219 char temp[MAX_PATH];
2220
2221 /* MoveFile on Windows 95 doesn't correctly change the short file name
2222 alias in a number of circumstances (it is not easy to predict when
2223 just by looking at oldname and newname, unfortunately). In these
2224 cases, renaming through a temporary name avoids the problem.
2225
2226 A second problem on Windows 95 is that renaming through a temp name when
2227 newname is uppercase fails (the final long name ends up in
2228 lowercase, although the short alias might be uppercase) UNLESS the
2229 long temp name is not 8.3.
2230
2231 So, on Windows 95 we always rename through a temp name, and we make sure
2232 the temp name has a long extension to ensure correct renaming. */
2233
2234 strcpy (temp, map_w32_filename (oldname, NULL));
2235
2236 if (os_subtype == OS_WIN95)
2237 {
2238 char * o;
2239 char * p;
2240 int i = 0;
2241
2242 oldname = map_w32_filename (oldname, NULL);
2243 if (o = strrchr (oldname, '\\'))
2244 o++;
2245 else
2246 o = (char *) oldname;
2247
2248 if (p = strrchr (temp, '\\'))
2249 p++;
2250 else
2251 p = temp;
2252
2253 do
2254 {
2255 /* Force temp name to require a manufactured 8.3 alias - this
2256 seems to make the second rename work properly. */
2257 sprintf (p, "_.%s.%u", o, i);
2258 i++;
2259 result = rename (oldname, temp);
2260 }
2261 /* This loop must surely terminate! */
2262 while (result < 0 && errno == EEXIST);
2263 if (result < 0)
2264 return -1;
2265 }
2266
2267 /* Emulate Unix behaviour - newname is deleted if it already exists
2268 (at least if it is a file; don't do this for directories).
2269
2270 Since we mustn't do this if we are just changing the case of the
2271 file name (we would end up deleting the file we are trying to
2272 rename!), we let rename detect if the destination file already
2273 exists - that way we avoid the possible pitfalls of trying to
2274 determine ourselves whether two names really refer to the same
2275 file, which is not always possible in the general case. (Consider
2276 all the permutations of shared or subst'd drives, etc.) */
2277
2278 newname = map_w32_filename (newname, NULL);
2279 result = rename (temp, newname);
2280
2281 if (result < 0
2282 && errno == EEXIST
2283 && _chmod (newname, 0666) == 0
2284 && _unlink (newname) == 0)
2285 result = rename (temp, newname);
2286
2287 return result;
2288 }
2289
2290 int
2291 sys_rmdir (const char * path)
2292 {
2293 return _rmdir (map_w32_filename (path, NULL));
2294 }
2295
2296 int
2297 sys_unlink (const char * path)
2298 {
2299 path = map_w32_filename (path, NULL);
2300
2301 /* On Unix, unlink works without write permission. */
2302 _chmod (path, 0666);
2303 return _unlink (path);
2304 }
2305
2306 static FILETIME utc_base_ft;
2307 static long double utc_base;
2308 static int init = 0;
2309
2310 static time_t
2311 convert_time (FILETIME ft)
2312 {
2313 long double ret;
2314
2315 if (!init)
2316 {
2317 /* Determine the delta between 1-Jan-1601 and 1-Jan-1970. */
2318 SYSTEMTIME st;
2319
2320 st.wYear = 1970;
2321 st.wMonth = 1;
2322 st.wDay = 1;
2323 st.wHour = 0;
2324 st.wMinute = 0;
2325 st.wSecond = 0;
2326 st.wMilliseconds = 0;
2327
2328 SystemTimeToFileTime (&st, &utc_base_ft);
2329 utc_base = (long double) utc_base_ft.dwHighDateTime
2330 * 4096.0L * 1024.0L * 1024.0L + utc_base_ft.dwLowDateTime;
2331 init = 1;
2332 }
2333
2334 if (CompareFileTime (&ft, &utc_base_ft) < 0)
2335 return 0;
2336
2337 ret = (long double) ft.dwHighDateTime
2338 * 4096.0L * 1024.0L * 1024.0L + ft.dwLowDateTime;
2339 ret -= utc_base;
2340 return (time_t) (ret * 1e-7L);
2341 }
2342
2343 void
2344 convert_from_time_t (time_t time, FILETIME * pft)
2345 {
2346 long double tmp;
2347
2348 if (!init)
2349 {
2350 /* Determine the delta between 1-Jan-1601 and 1-Jan-1970. */
2351 SYSTEMTIME st;
2352
2353 st.wYear = 1970;
2354 st.wMonth = 1;
2355 st.wDay = 1;
2356 st.wHour = 0;
2357 st.wMinute = 0;
2358 st.wSecond = 0;
2359 st.wMilliseconds = 0;
2360
2361 SystemTimeToFileTime (&st, &utc_base_ft);
2362 utc_base = (long double) utc_base_ft.dwHighDateTime
2363 * 4096 * 1024 * 1024 + utc_base_ft.dwLowDateTime;
2364 init = 1;
2365 }
2366
2367 /* time in 100ns units since 1-Jan-1601 */
2368 tmp = (long double) time * 1e7 + utc_base;
2369 pft->dwHighDateTime = (DWORD) (tmp / (4096.0 * 1024 * 1024));
2370 pft->dwLowDateTime = (DWORD) (tmp - (4096.0 * 1024 * 1024) * pft->dwHighDateTime);
2371 }
2372
2373 #if 0
2374 /* No reason to keep this; faking inode values either by hashing or even
2375 using the file index from GetInformationByHandle, is not perfect and
2376 so by default Emacs doesn't use the inode values on Windows.
2377 Instead, we now determine file-truename correctly (except for
2378 possible drive aliasing etc). */
2379
2380 /* Modified version of "PJW" algorithm (see the "Dragon" compiler book). */
2381 static unsigned
2382 hashval (const unsigned char * str)
2383 {
2384 unsigned h = 0;
2385 while (*str)
2386 {
2387 h = (h << 4) + *str++;
2388 h ^= (h >> 28);
2389 }
2390 return h;
2391 }
2392
2393 /* Return the hash value of the canonical pathname, excluding the
2394 drive/UNC header, to get a hopefully unique inode number. */
2395 static DWORD
2396 generate_inode_val (const char * name)
2397 {
2398 char fullname[ MAX_PATH ];
2399 char * p;
2400 unsigned hash;
2401
2402 /* Get the truly canonical filename, if it exists. (Note: this
2403 doesn't resolve aliasing due to subst commands, or recognise hard
2404 links. */
2405 if (!w32_get_long_filename ((char *)name, fullname, MAX_PATH))
2406 abort ();
2407
2408 parse_root (fullname, &p);
2409 /* Normal W32 filesystems are still case insensitive. */
2410 _strlwr (p);
2411 return hashval (p);
2412 }
2413
2414 #endif
2415
2416 /* MSVC stat function can't cope with UNC names and has other bugs, so
2417 replace it with our own. This also allows us to calculate consistent
2418 inode values without hacks in the main Emacs code. */
2419 int
2420 stat (const char * path, struct stat * buf)
2421 {
2422 char *name, *r;
2423 WIN32_FIND_DATA wfd;
2424 HANDLE fh;
2425 DWORD fake_inode;
2426 int permission;
2427 int len;
2428 int rootdir = FALSE;
2429
2430 if (path == NULL || buf == NULL)
2431 {
2432 errno = EFAULT;
2433 return -1;
2434 }
2435
2436 name = (char *) map_w32_filename (path, &path);
2437 /* Must be valid filename, no wild cards or other invalid
2438 characters. We use _mbspbrk to support multibyte strings that
2439 might look to strpbrk as if they included literal *, ?, and other
2440 characters mentioned below that are disallowed by Windows
2441 filesystems. */
2442 if (_mbspbrk (name, "*?|<>\""))
2443 {
2444 errno = ENOENT;
2445 return -1;
2446 }
2447
2448 /* If name is "c:/.." or "/.." then stat "c:/" or "/". */
2449 r = IS_DEVICE_SEP (name[1]) ? &name[2] : name;
2450 if (IS_DIRECTORY_SEP (r[0]) && r[1] == '.' && r[2] == '.' && r[3] == '\0')
2451 {
2452 r[1] = r[2] = '\0';
2453 }
2454
2455 /* Remove trailing directory separator, unless name is the root
2456 directory of a drive or UNC volume in which case ensure there
2457 is a trailing separator. */
2458 len = strlen (name);
2459 rootdir = (path >= name + len - 1
2460 && (IS_DIRECTORY_SEP (*path) || *path == 0));
2461 name = strcpy (alloca (len + 2), name);
2462
2463 if (is_unc_volume (name))
2464 {
2465 DWORD attrs = unc_volume_file_attributes (name);
2466
2467 if (attrs == -1)
2468 return -1;
2469
2470 memset (&wfd, 0, sizeof (wfd));
2471 wfd.dwFileAttributes = attrs;
2472 wfd.ftCreationTime = utc_base_ft;
2473 wfd.ftLastAccessTime = utc_base_ft;
2474 wfd.ftLastWriteTime = utc_base_ft;
2475 strcpy (wfd.cFileName, name);
2476 }
2477 else if (rootdir)
2478 {
2479 if (!IS_DIRECTORY_SEP (name[len-1]))
2480 strcat (name, "\\");
2481 if (GetDriveType (name) < 2)
2482 {
2483 errno = ENOENT;
2484 return -1;
2485 }
2486 memset (&wfd, 0, sizeof (wfd));
2487 wfd.dwFileAttributes = FILE_ATTRIBUTE_DIRECTORY;
2488 wfd.ftCreationTime = utc_base_ft;
2489 wfd.ftLastAccessTime = utc_base_ft;
2490 wfd.ftLastWriteTime = utc_base_ft;
2491 strcpy (wfd.cFileName, name);
2492 }
2493 else
2494 {
2495 if (IS_DIRECTORY_SEP (name[len-1]))
2496 name[len - 1] = 0;
2497
2498 /* (This is hacky, but helps when doing file completions on
2499 network drives.) Optimize by using information available from
2500 active readdir if possible. */
2501 len = strlen (dir_pathname);
2502 if (IS_DIRECTORY_SEP (dir_pathname[len-1]))
2503 len--;
2504 if (dir_find_handle != INVALID_HANDLE_VALUE
2505 && strnicmp (name, dir_pathname, len) == 0
2506 && IS_DIRECTORY_SEP (name[len])
2507 && stricmp (name + len + 1, dir_static.d_name) == 0)
2508 {
2509 /* This was the last entry returned by readdir. */
2510 wfd = dir_find_data;
2511 }
2512 else
2513 {
2514 fh = FindFirstFile (name, &wfd);
2515 if (fh == INVALID_HANDLE_VALUE)
2516 {
2517 errno = ENOENT;
2518 return -1;
2519 }
2520 FindClose (fh);
2521 }
2522 }
2523
2524 if (!NILP (Vw32_get_true_file_attributes)
2525 /* No access rights required to get info. */
2526 && (fh = CreateFile (name, 0, 0, NULL, OPEN_EXISTING,
2527 FILE_FLAG_BACKUP_SEMANTICS, NULL))
2528 != INVALID_HANDLE_VALUE)
2529 {
2530 /* This is more accurate in terms of gettting the correct number
2531 of links, but is quite slow (it is noticeable when Emacs is
2532 making a list of file name completions). */
2533 BY_HANDLE_FILE_INFORMATION info;
2534
2535 if (GetFileInformationByHandle (fh, &info))
2536 {
2537 buf->st_nlink = info.nNumberOfLinks;
2538 /* Might as well use file index to fake inode values, but this
2539 is not guaranteed to be unique unless we keep a handle open
2540 all the time (even then there are situations where it is
2541 not unique). Reputedly, there are at most 48 bits of info
2542 (on NTFS, presumably less on FAT). */
2543 fake_inode = info.nFileIndexLow ^ info.nFileIndexHigh;
2544 }
2545 else
2546 {
2547 buf->st_nlink = 1;
2548 fake_inode = 0;
2549 }
2550
2551 if (wfd.dwFileAttributes & FILE_ATTRIBUTE_DIRECTORY)
2552 {
2553 buf->st_mode = _S_IFDIR;
2554 }
2555 else
2556 {
2557 switch (GetFileType (fh))
2558 {
2559 case FILE_TYPE_DISK:
2560 buf->st_mode = _S_IFREG;
2561 break;
2562 case FILE_TYPE_PIPE:
2563 buf->st_mode = _S_IFIFO;
2564 break;
2565 case FILE_TYPE_CHAR:
2566 case FILE_TYPE_UNKNOWN:
2567 default:
2568 buf->st_mode = _S_IFCHR;
2569 }
2570 }
2571 CloseHandle (fh);
2572 }
2573 else
2574 {
2575 /* Don't bother to make this information more accurate. */
2576 buf->st_mode = (wfd.dwFileAttributes & FILE_ATTRIBUTE_DIRECTORY) ?
2577 _S_IFDIR : _S_IFREG;
2578 buf->st_nlink = 1;
2579 fake_inode = 0;
2580 }
2581
2582 #if 0
2583 /* Not sure if there is any point in this. */
2584 if (!NILP (Vw32_generate_fake_inodes))
2585 fake_inode = generate_inode_val (name);
2586 else if (fake_inode == 0)
2587 {
2588 /* For want of something better, try to make everything unique. */
2589 static DWORD gen_num = 0;
2590 fake_inode = ++gen_num;
2591 }
2592 #endif
2593
2594 /* MSVC defines _ino_t to be short; other libc's might not. */
2595 if (sizeof (buf->st_ino) == 2)
2596 buf->st_ino = fake_inode ^ (fake_inode >> 16);
2597 else
2598 buf->st_ino = fake_inode;
2599
2600 /* consider files to belong to current user */
2601 buf->st_uid = the_passwd.pw_uid;
2602 buf->st_gid = the_passwd.pw_gid;
2603
2604 /* volume_info is set indirectly by map_w32_filename */
2605 buf->st_dev = volume_info.serialnum;
2606 buf->st_rdev = volume_info.serialnum;
2607
2608
2609 buf->st_size = wfd.nFileSizeLow;
2610
2611 /* Convert timestamps to Unix format. */
2612 buf->st_mtime = convert_time (wfd.ftLastWriteTime);
2613 buf->st_atime = convert_time (wfd.ftLastAccessTime);
2614 if (buf->st_atime == 0) buf->st_atime = buf->st_mtime;
2615 buf->st_ctime = convert_time (wfd.ftCreationTime);
2616 if (buf->st_ctime == 0) buf->st_ctime = buf->st_mtime;
2617
2618 /* determine rwx permissions */
2619 if (wfd.dwFileAttributes & FILE_ATTRIBUTE_READONLY)
2620 permission = _S_IREAD;
2621 else
2622 permission = _S_IREAD | _S_IWRITE;
2623
2624 if (wfd.dwFileAttributes & FILE_ATTRIBUTE_DIRECTORY)
2625 permission |= _S_IEXEC;
2626 else if (is_exec (name))
2627 permission |= _S_IEXEC;
2628
2629 buf->st_mode |= permission | (permission >> 3) | (permission >> 6);
2630
2631 return 0;
2632 }
2633
2634 /* Provide fstat and utime as well as stat for consistent handling of
2635 file timestamps. */
2636 int
2637 fstat (int desc, struct stat * buf)
2638 {
2639 HANDLE fh = (HANDLE) _get_osfhandle (desc);
2640 BY_HANDLE_FILE_INFORMATION info;
2641 DWORD fake_inode;
2642 int permission;
2643
2644 switch (GetFileType (fh) & ~FILE_TYPE_REMOTE)
2645 {
2646 case FILE_TYPE_DISK:
2647 buf->st_mode = _S_IFREG;
2648 if (!GetFileInformationByHandle (fh, &info))
2649 {
2650 errno = EACCES;
2651 return -1;
2652 }
2653 break;
2654 case FILE_TYPE_PIPE:
2655 buf->st_mode = _S_IFIFO;
2656 goto non_disk;
2657 case FILE_TYPE_CHAR:
2658 case FILE_TYPE_UNKNOWN:
2659 default:
2660 buf->st_mode = _S_IFCHR;
2661 non_disk:
2662 memset (&info, 0, sizeof (info));
2663 info.dwFileAttributes = 0;
2664 info.ftCreationTime = utc_base_ft;
2665 info.ftLastAccessTime = utc_base_ft;
2666 info.ftLastWriteTime = utc_base_ft;
2667 }
2668
2669 if (info.dwFileAttributes & FILE_ATTRIBUTE_DIRECTORY)
2670 buf->st_mode = _S_IFDIR;
2671
2672 buf->st_nlink = info.nNumberOfLinks;
2673 /* Might as well use file index to fake inode values, but this
2674 is not guaranteed to be unique unless we keep a handle open
2675 all the time (even then there are situations where it is
2676 not unique). Reputedly, there are at most 48 bits of info
2677 (on NTFS, presumably less on FAT). */
2678 fake_inode = info.nFileIndexLow ^ info.nFileIndexHigh;
2679
2680 /* MSVC defines _ino_t to be short; other libc's might not. */
2681 if (sizeof (buf->st_ino) == 2)
2682 buf->st_ino = fake_inode ^ (fake_inode >> 16);
2683 else
2684 buf->st_ino = fake_inode;
2685
2686 /* consider files to belong to current user */
2687 buf->st_uid = 0;
2688 buf->st_gid = 0;
2689
2690 buf->st_dev = info.dwVolumeSerialNumber;
2691 buf->st_rdev = info.dwVolumeSerialNumber;
2692
2693 buf->st_size = info.nFileSizeLow;
2694
2695 /* Convert timestamps to Unix format. */
2696 buf->st_mtime = convert_time (info.ftLastWriteTime);
2697 buf->st_atime = convert_time (info.ftLastAccessTime);
2698 if (buf->st_atime == 0) buf->st_atime = buf->st_mtime;
2699 buf->st_ctime = convert_time (info.ftCreationTime);
2700 if (buf->st_ctime == 0) buf->st_ctime = buf->st_mtime;
2701
2702 /* determine rwx permissions */
2703 if (info.dwFileAttributes & FILE_ATTRIBUTE_READONLY)
2704 permission = _S_IREAD;
2705 else
2706 permission = _S_IREAD | _S_IWRITE;
2707
2708 if (info.dwFileAttributes & FILE_ATTRIBUTE_DIRECTORY)
2709 permission |= _S_IEXEC;
2710 else
2711 {
2712 #if 0 /* no way of knowing the filename */
2713 char * p = strrchr (name, '.');
2714 if (p != NULL &&
2715 (stricmp (p, ".exe") == 0 ||
2716 stricmp (p, ".com") == 0 ||
2717 stricmp (p, ".bat") == 0 ||
2718 stricmp (p, ".cmd") == 0))
2719 permission |= _S_IEXEC;
2720 #endif
2721 }
2722
2723 buf->st_mode |= permission | (permission >> 3) | (permission >> 6);
2724
2725 return 0;
2726 }
2727
2728 int
2729 utime (const char *name, struct utimbuf *times)
2730 {
2731 struct utimbuf deftime;
2732 HANDLE fh;
2733 FILETIME mtime;
2734 FILETIME atime;
2735
2736 if (times == NULL)
2737 {
2738 deftime.modtime = deftime.actime = time (NULL);
2739 times = &deftime;
2740 }
2741
2742 /* Need write access to set times. */
2743 fh = CreateFile (name, GENERIC_WRITE, FILE_SHARE_READ | FILE_SHARE_WRITE,
2744 0, OPEN_EXISTING, 0, NULL);
2745 if (fh)
2746 {
2747 convert_from_time_t (times->actime, &atime);
2748 convert_from_time_t (times->modtime, &mtime);
2749 if (!SetFileTime (fh, NULL, &atime, &mtime))
2750 {
2751 CloseHandle (fh);
2752 errno = EACCES;
2753 return -1;
2754 }
2755 CloseHandle (fh);
2756 }
2757 else
2758 {
2759 errno = EINVAL;
2760 return -1;
2761 }
2762 return 0;
2763 }
2764
2765 #ifdef HAVE_SOCKETS
2766
2767 /* Wrappers for winsock functions to map between our file descriptors
2768 and winsock's handles; also set h_errno for convenience.
2769
2770 To allow Emacs to run on systems which don't have winsock support
2771 installed, we dynamically link to winsock on startup if present, and
2772 otherwise provide the minimum necessary functionality
2773 (eg. gethostname). */
2774
2775 /* function pointers for relevant socket functions */
2776 int (PASCAL *pfn_WSAStartup) (WORD wVersionRequired, LPWSADATA lpWSAData);
2777 void (PASCAL *pfn_WSASetLastError) (int iError);
2778 int (PASCAL *pfn_WSAGetLastError) (void);
2779 int (PASCAL *pfn_WSAEventSelect) (SOCKET s, HANDLE hEventObject, long lNetworkEvents);
2780 HANDLE (PASCAL *pfn_WSACreateEvent) (void);
2781 int (PASCAL *pfn_WSACloseEvent) (HANDLE hEvent);
2782 int (PASCAL *pfn_socket) (int af, int type, int protocol);
2783 int (PASCAL *pfn_bind) (SOCKET s, const struct sockaddr *addr, int namelen);
2784 int (PASCAL *pfn_connect) (SOCKET s, const struct sockaddr *addr, int namelen);
2785 int (PASCAL *pfn_ioctlsocket) (SOCKET s, long cmd, u_long *argp);
2786 int (PASCAL *pfn_recv) (SOCKET s, char * buf, int len, int flags);
2787 int (PASCAL *pfn_send) (SOCKET s, const char * buf, int len, int flags);
2788 int (PASCAL *pfn_closesocket) (SOCKET s);
2789 int (PASCAL *pfn_shutdown) (SOCKET s, int how);
2790 int (PASCAL *pfn_WSACleanup) (void);
2791
2792 u_short (PASCAL *pfn_htons) (u_short hostshort);
2793 u_short (PASCAL *pfn_ntohs) (u_short netshort);
2794 unsigned long (PASCAL *pfn_inet_addr) (const char * cp);
2795 int (PASCAL *pfn_gethostname) (char * name, int namelen);
2796 struct hostent * (PASCAL *pfn_gethostbyname) (const char * name);
2797 struct servent * (PASCAL *pfn_getservbyname) (const char * name, const char * proto);
2798 int (PASCAL *pfn_getpeername) (SOCKET s, struct sockaddr *addr, int * namelen);
2799 int (PASCAL *pfn_setsockopt) (SOCKET s, int level, int optname,
2800 const char * optval, int optlen);
2801 int (PASCAL *pfn_listen) (SOCKET s, int backlog);
2802 int (PASCAL *pfn_getsockname) (SOCKET s, struct sockaddr * name,
2803 int * namelen);
2804 SOCKET (PASCAL *pfn_accept) (SOCKET s, struct sockaddr * addr, int * addrlen);
2805 int (PASCAL *pfn_recvfrom) (SOCKET s, char * buf, int len, int flags,
2806 struct sockaddr * from, int * fromlen);
2807 int (PASCAL *pfn_sendto) (SOCKET s, const char * buf, int len, int flags,
2808 const struct sockaddr * to, int tolen);
2809
2810 /* SetHandleInformation is only needed to make sockets non-inheritable. */
2811 BOOL (WINAPI *pfn_SetHandleInformation) (HANDLE object, DWORD mask, DWORD flags);
2812 #ifndef HANDLE_FLAG_INHERIT
2813 #define HANDLE_FLAG_INHERIT 1
2814 #endif
2815
2816 HANDLE winsock_lib;
2817 static int winsock_inuse;
2818
2819 BOOL
2820 term_winsock (void)
2821 {
2822 if (winsock_lib != NULL && winsock_inuse == 0)
2823 {
2824 /* Not sure what would cause WSAENETDOWN, or even if it can happen
2825 after WSAStartup returns successfully, but it seems reasonable
2826 to allow unloading winsock anyway in that case. */
2827 if (pfn_WSACleanup () == 0 ||
2828 pfn_WSAGetLastError () == WSAENETDOWN)
2829 {
2830 if (FreeLibrary (winsock_lib))
2831 winsock_lib = NULL;
2832 return TRUE;
2833 }
2834 }
2835 return FALSE;
2836 }
2837
2838 BOOL
2839 init_winsock (int load_now)
2840 {
2841 WSADATA winsockData;
2842
2843 if (winsock_lib != NULL)
2844 return TRUE;
2845
2846 pfn_SetHandleInformation = NULL;
2847 pfn_SetHandleInformation
2848 = (void *) GetProcAddress (GetModuleHandle ("kernel32.dll"),
2849 "SetHandleInformation");
2850
2851 winsock_lib = LoadLibrary ("Ws2_32.dll");
2852
2853 if (winsock_lib != NULL)
2854 {
2855 /* dynamically link to socket functions */
2856
2857 #define LOAD_PROC(fn) \
2858 if ((pfn_##fn = (void *) GetProcAddress (winsock_lib, #fn)) == NULL) \
2859 goto fail;
2860
2861 LOAD_PROC( WSAStartup );
2862 LOAD_PROC( WSASetLastError );
2863 LOAD_PROC( WSAGetLastError );
2864 LOAD_PROC( WSAEventSelect );
2865 LOAD_PROC( WSACreateEvent );
2866 LOAD_PROC( WSACloseEvent );
2867 LOAD_PROC( socket );
2868 LOAD_PROC( bind );
2869 LOAD_PROC( connect );
2870 LOAD_PROC( ioctlsocket );
2871 LOAD_PROC( recv );
2872 LOAD_PROC( send );
2873 LOAD_PROC( closesocket );
2874 LOAD_PROC( shutdown );
2875 LOAD_PROC( htons );
2876 LOAD_PROC( ntohs );
2877 LOAD_PROC( inet_addr );
2878 LOAD_PROC( gethostname );
2879 LOAD_PROC( gethostbyname );
2880 LOAD_PROC( getservbyname );
2881 LOAD_PROC( getpeername );
2882 LOAD_PROC( WSACleanup );
2883 LOAD_PROC( setsockopt );
2884 LOAD_PROC( listen );
2885 LOAD_PROC( getsockname );
2886 LOAD_PROC( accept );
2887 LOAD_PROC( recvfrom );
2888 LOAD_PROC( sendto );
2889 #undef LOAD_PROC
2890
2891 /* specify version 1.1 of winsock */
2892 if (pfn_WSAStartup (0x101, &winsockData) == 0)
2893 {
2894 if (winsockData.wVersion != 0x101)
2895 goto fail;
2896
2897 if (!load_now)
2898 {
2899 /* Report that winsock exists and is usable, but leave
2900 socket functions disabled. I am assuming that calling
2901 WSAStartup does not require any network interaction,
2902 and in particular does not cause or require a dial-up
2903 connection to be established. */
2904
2905 pfn_WSACleanup ();
2906 FreeLibrary (winsock_lib);
2907 winsock_lib = NULL;
2908 }
2909 winsock_inuse = 0;
2910 return TRUE;
2911 }
2912
2913 fail:
2914 FreeLibrary (winsock_lib);
2915 winsock_lib = NULL;
2916 }
2917
2918 return FALSE;
2919 }
2920
2921
2922 int h_errno = 0;
2923
2924 /* function to set h_errno for compatability; map winsock error codes to
2925 normal system codes where they overlap (non-overlapping definitions
2926 are already in <sys/socket.h> */
2927 static void
2928 set_errno ()
2929 {
2930 if (winsock_lib == NULL)
2931 h_errno = EINVAL;
2932 else
2933 h_errno = pfn_WSAGetLastError ();
2934
2935 switch (h_errno)
2936 {
2937 case WSAEACCES: h_errno = EACCES; break;
2938 case WSAEBADF: h_errno = EBADF; break;
2939 case WSAEFAULT: h_errno = EFAULT; break;
2940 case WSAEINTR: h_errno = EINTR; break;
2941 case WSAEINVAL: h_errno = EINVAL; break;
2942 case WSAEMFILE: h_errno = EMFILE; break;
2943 case WSAENAMETOOLONG: h_errno = ENAMETOOLONG; break;
2944 case WSAENOTEMPTY: h_errno = ENOTEMPTY; break;
2945 }
2946 errno = h_errno;
2947 }
2948
2949 static void
2950 check_errno ()
2951 {
2952 if (h_errno == 0 && winsock_lib != NULL)
2953 pfn_WSASetLastError (0);
2954 }
2955
2956 /* Extend strerror to handle the winsock-specific error codes. */
2957 struct {
2958 int errnum;
2959 char * msg;
2960 } _wsa_errlist[] = {
2961 WSAEINTR , "Interrupted function call",
2962 WSAEBADF , "Bad file descriptor",
2963 WSAEACCES , "Permission denied",
2964 WSAEFAULT , "Bad address",
2965 WSAEINVAL , "Invalid argument",
2966 WSAEMFILE , "Too many open files",
2967
2968 WSAEWOULDBLOCK , "Resource temporarily unavailable",
2969 WSAEINPROGRESS , "Operation now in progress",
2970 WSAEALREADY , "Operation already in progress",
2971 WSAENOTSOCK , "Socket operation on non-socket",
2972 WSAEDESTADDRREQ , "Destination address required",
2973 WSAEMSGSIZE , "Message too long",
2974 WSAEPROTOTYPE , "Protocol wrong type for socket",
2975 WSAENOPROTOOPT , "Bad protocol option",
2976 WSAEPROTONOSUPPORT , "Protocol not supported",
2977 WSAESOCKTNOSUPPORT , "Socket type not supported",
2978 WSAEOPNOTSUPP , "Operation not supported",
2979 WSAEPFNOSUPPORT , "Protocol family not supported",
2980 WSAEAFNOSUPPORT , "Address family not supported by protocol family",
2981 WSAEADDRINUSE , "Address already in use",
2982 WSAEADDRNOTAVAIL , "Cannot assign requested address",
2983 WSAENETDOWN , "Network is down",
2984 WSAENETUNREACH , "Network is unreachable",
2985 WSAENETRESET , "Network dropped connection on reset",
2986 WSAECONNABORTED , "Software caused connection abort",
2987 WSAECONNRESET , "Connection reset by peer",
2988 WSAENOBUFS , "No buffer space available",
2989 WSAEISCONN , "Socket is already connected",
2990 WSAENOTCONN , "Socket is not connected",
2991 WSAESHUTDOWN , "Cannot send after socket shutdown",
2992 WSAETOOMANYREFS , "Too many references", /* not sure */
2993 WSAETIMEDOUT , "Connection timed out",
2994 WSAECONNREFUSED , "Connection refused",
2995 WSAELOOP , "Network loop", /* not sure */
2996 WSAENAMETOOLONG , "Name is too long",
2997 WSAEHOSTDOWN , "Host is down",
2998 WSAEHOSTUNREACH , "No route to host",
2999 WSAENOTEMPTY , "Buffer not empty", /* not sure */
3000 WSAEPROCLIM , "Too many processes",
3001 WSAEUSERS , "Too many users", /* not sure */
3002 WSAEDQUOT , "Double quote in host name", /* really not sure */
3003 WSAESTALE , "Data is stale", /* not sure */
3004 WSAEREMOTE , "Remote error", /* not sure */
3005
3006 WSASYSNOTREADY , "Network subsystem is unavailable",
3007 WSAVERNOTSUPPORTED , "WINSOCK.DLL version out of range",
3008 WSANOTINITIALISED , "Winsock not initialized successfully",
3009 WSAEDISCON , "Graceful shutdown in progress",
3010 #ifdef WSAENOMORE
3011 WSAENOMORE , "No more operations allowed", /* not sure */
3012 WSAECANCELLED , "Operation cancelled", /* not sure */
3013 WSAEINVALIDPROCTABLE , "Invalid procedure table from service provider",
3014 WSAEINVALIDPROVIDER , "Invalid service provider version number",
3015 WSAEPROVIDERFAILEDINIT , "Unable to initialize a service provider",
3016 WSASYSCALLFAILURE , "System call failure",
3017 WSASERVICE_NOT_FOUND , "Service not found", /* not sure */
3018 WSATYPE_NOT_FOUND , "Class type not found",
3019 WSA_E_NO_MORE , "No more resources available", /* really not sure */
3020 WSA_E_CANCELLED , "Operation already cancelled", /* really not sure */
3021 WSAEREFUSED , "Operation refused", /* not sure */
3022 #endif
3023
3024 WSAHOST_NOT_FOUND , "Host not found",
3025 WSATRY_AGAIN , "Authoritative host not found during name lookup",
3026 WSANO_RECOVERY , "Non-recoverable error during name lookup",
3027 WSANO_DATA , "Valid name, no data record of requested type",
3028
3029 -1, NULL
3030 };
3031
3032 char *
3033 sys_strerror(int error_no)
3034 {
3035 int i;
3036 static char unknown_msg[40];
3037
3038 if (error_no >= 0 && error_no < sys_nerr)
3039 return sys_errlist[error_no];
3040
3041 for (i = 0; _wsa_errlist[i].errnum >= 0; i++)
3042 if (_wsa_errlist[i].errnum == error_no)
3043 return _wsa_errlist[i].msg;
3044
3045 sprintf(unknown_msg, "Unidentified error: %d", error_no);
3046 return unknown_msg;
3047 }
3048
3049 /* [andrewi 3-May-96] I've had conflicting results using both methods,
3050 but I believe the method of keeping the socket handle separate (and
3051 insuring it is not inheritable) is the correct one. */
3052
3053 //#define SOCK_REPLACE_HANDLE
3054
3055 #ifdef SOCK_REPLACE_HANDLE
3056 #define SOCK_HANDLE(fd) ((SOCKET) _get_osfhandle (fd))
3057 #else
3058 #define SOCK_HANDLE(fd) ((SOCKET) fd_info[fd].hnd)
3059 #endif
3060
3061 int socket_to_fd (SOCKET s);
3062
3063 int
3064 sys_socket(int af, int type, int protocol)
3065 {
3066 SOCKET s;
3067
3068 if (winsock_lib == NULL)
3069 {
3070 h_errno = ENETDOWN;
3071 return INVALID_SOCKET;
3072 }
3073
3074 check_errno ();
3075
3076 /* call the real socket function */
3077 s = pfn_socket (af, type, protocol);
3078
3079 if (s != INVALID_SOCKET)
3080 return socket_to_fd (s);
3081
3082 set_errno ();
3083 return -1;
3084 }
3085
3086 /* Convert a SOCKET to a file descriptor. */
3087 int
3088 socket_to_fd (SOCKET s)
3089 {
3090 int fd;
3091 child_process * cp;
3092
3093 /* Although under NT 3.5 _open_osfhandle will accept a socket
3094 handle, if opened with SO_OPENTYPE == SO_SYNCHRONOUS_NONALERT,
3095 that does not work under NT 3.1. However, we can get the same
3096 effect by using a backdoor function to replace an existing
3097 descriptor handle with the one we want. */
3098
3099 /* allocate a file descriptor (with appropriate flags) */
3100 fd = _open ("NUL:", _O_RDWR);
3101 if (fd >= 0)
3102 {
3103 #ifdef SOCK_REPLACE_HANDLE
3104 /* now replace handle to NUL with our socket handle */
3105 CloseHandle ((HANDLE) _get_osfhandle (fd));
3106 _free_osfhnd (fd);
3107 _set_osfhnd (fd, s);
3108 /* setmode (fd, _O_BINARY); */
3109 #else
3110 /* Make a non-inheritable copy of the socket handle. Note
3111 that it is possible that sockets aren't actually kernel
3112 handles, which appears to be the case on Windows 9x when
3113 the MS Proxy winsock client is installed. */
3114 {
3115 /* Apparently there is a bug in NT 3.51 with some service
3116 packs, which prevents using DuplicateHandle to make a
3117 socket handle non-inheritable (causes WSACleanup to
3118 hang). The work-around is to use SetHandleInformation
3119 instead if it is available and implemented. */
3120 if (pfn_SetHandleInformation)
3121 {
3122 pfn_SetHandleInformation ((HANDLE) s, HANDLE_FLAG_INHERIT, 0);
3123 }
3124 else
3125 {
3126 HANDLE parent = GetCurrentProcess ();
3127 HANDLE new_s = INVALID_HANDLE_VALUE;
3128
3129 if (DuplicateHandle (parent,
3130 (HANDLE) s,
3131 parent,
3132 &new_s,
3133 0,
3134 FALSE,
3135 DUPLICATE_SAME_ACCESS))
3136 {
3137 /* It is possible that DuplicateHandle succeeds even
3138 though the socket wasn't really a kernel handle,
3139 because a real handle has the same value. So
3140 test whether the new handle really is a socket. */
3141 long nonblocking = 0;
3142 if (pfn_ioctlsocket ((SOCKET) new_s, FIONBIO, &nonblocking) == 0)
3143 {
3144 pfn_closesocket (s);
3145 s = (SOCKET) new_s;
3146 }
3147 else
3148 {
3149 CloseHandle (new_s);
3150 }
3151 }
3152 }
3153 }
3154 fd_info[fd].hnd = (HANDLE) s;
3155 #endif
3156
3157 /* set our own internal flags */
3158 fd_info[fd].flags = FILE_SOCKET | FILE_BINARY | FILE_READ | FILE_WRITE;
3159
3160 cp = new_child ();
3161 if (cp)
3162 {
3163 cp->fd = fd;
3164 cp->status = STATUS_READ_ACKNOWLEDGED;
3165
3166 /* attach child_process to fd_info */
3167 if (fd_info[ fd ].cp != NULL)
3168 {
3169 DebPrint (("sys_socket: fd_info[%d] apparently in use!\n", fd));
3170 abort ();
3171 }
3172
3173 fd_info[ fd ].cp = cp;
3174
3175 /* success! */
3176 winsock_inuse++; /* count open sockets */
3177 return fd;
3178 }
3179
3180 /* clean up */
3181 _close (fd);
3182 }
3183 pfn_closesocket (s);
3184 h_errno = EMFILE;
3185 return -1;
3186 }
3187
3188
3189 int
3190 sys_bind (int s, const struct sockaddr * addr, int namelen)
3191 {
3192 if (winsock_lib == NULL)
3193 {
3194 h_errno = ENOTSOCK;
3195 return SOCKET_ERROR;
3196 }
3197
3198 check_errno ();
3199 if (fd_info[s].flags & FILE_SOCKET)
3200 {
3201 int rc = pfn_bind (SOCK_HANDLE (s), addr, namelen);
3202 if (rc == SOCKET_ERROR)
3203 set_errno ();
3204 return rc;
3205 }
3206 h_errno = ENOTSOCK;
3207 return SOCKET_ERROR;
3208 }
3209
3210
3211 int
3212 sys_connect (int s, const struct sockaddr * name, int namelen)
3213 {
3214 if (winsock_lib == NULL)
3215 {
3216 h_errno = ENOTSOCK;
3217 return SOCKET_ERROR;
3218 }
3219
3220 check_errno ();
3221 if (fd_info[s].flags & FILE_SOCKET)
3222 {
3223 int rc = pfn_connect (SOCK_HANDLE (s), name, namelen);
3224 if (rc == SOCKET_ERROR)
3225 set_errno ();
3226 return rc;
3227 }
3228 h_errno = ENOTSOCK;
3229 return SOCKET_ERROR;
3230 }
3231
3232 u_short
3233 sys_htons (u_short hostshort)
3234 {
3235 return (winsock_lib != NULL) ?
3236 pfn_htons (hostshort) : hostshort;
3237 }
3238
3239 u_short
3240 sys_ntohs (u_short netshort)
3241 {
3242 return (winsock_lib != NULL) ?
3243 pfn_ntohs (netshort) : netshort;
3244 }
3245
3246 unsigned long
3247 sys_inet_addr (const char * cp)
3248 {
3249 return (winsock_lib != NULL) ?
3250 pfn_inet_addr (cp) : INADDR_NONE;
3251 }
3252
3253 int
3254 sys_gethostname (char * name, int namelen)
3255 {
3256 if (winsock_lib != NULL)
3257 return pfn_gethostname (name, namelen);
3258
3259 if (namelen > MAX_COMPUTERNAME_LENGTH)
3260 return !GetComputerName (name, (DWORD *)&namelen);
3261
3262 h_errno = EFAULT;
3263 return SOCKET_ERROR;
3264 }
3265
3266 struct hostent *
3267 sys_gethostbyname(const char * name)
3268 {
3269 struct hostent * host;
3270
3271 if (winsock_lib == NULL)
3272 {
3273 h_errno = ENETDOWN;
3274 return NULL;
3275 }
3276
3277 check_errno ();
3278 host = pfn_gethostbyname (name);
3279 if (!host)
3280 set_errno ();
3281 return host;
3282 }
3283
3284 struct servent *
3285 sys_getservbyname(const char * name, const char * proto)
3286 {
3287 struct servent * serv;
3288
3289 if (winsock_lib == NULL)
3290 {
3291 h_errno = ENETDOWN;
3292 return NULL;
3293 }
3294
3295 check_errno ();
3296 serv = pfn_getservbyname (name, proto);
3297 if (!serv)
3298 set_errno ();
3299 return serv;
3300 }
3301
3302 int
3303 sys_getpeername (int s, struct sockaddr *addr, int * namelen)
3304 {
3305 if (winsock_lib == NULL)
3306 {
3307 h_errno = ENETDOWN;
3308 return SOCKET_ERROR;
3309 }
3310
3311 check_errno ();
3312 if (fd_info[s].flags & FILE_SOCKET)
3313 {
3314 int rc = pfn_getpeername (SOCK_HANDLE (s), addr, namelen);
3315 if (rc == SOCKET_ERROR)
3316 set_errno ();
3317 return rc;
3318 }
3319 h_errno = ENOTSOCK;
3320 return SOCKET_ERROR;
3321 }
3322
3323
3324 int
3325 sys_shutdown (int s, int how)
3326 {
3327 if (winsock_lib == NULL)
3328 {
3329 h_errno = ENETDOWN;
3330 return SOCKET_ERROR;
3331 }
3332
3333 check_errno ();
3334 if (fd_info[s].flags & FILE_SOCKET)
3335 {
3336 int rc = pfn_shutdown (SOCK_HANDLE (s), how);
3337 if (rc == SOCKET_ERROR)
3338 set_errno ();
3339 return rc;
3340 }
3341 h_errno = ENOTSOCK;
3342 return SOCKET_ERROR;
3343 }
3344
3345 int
3346 sys_setsockopt (int s, int level, int optname, const void * optval, int optlen)
3347 {
3348 if (winsock_lib == NULL)
3349 {
3350 h_errno = ENETDOWN;
3351 return SOCKET_ERROR;
3352 }
3353
3354 check_errno ();
3355 if (fd_info[s].flags & FILE_SOCKET)
3356 {
3357 int rc = pfn_setsockopt (SOCK_HANDLE (s), level, optname,
3358 (const char *)optval, optlen);
3359 if (rc == SOCKET_ERROR)
3360 set_errno ();
3361 return rc;
3362 }
3363 h_errno = ENOTSOCK;
3364 return SOCKET_ERROR;
3365 }
3366
3367 int
3368 sys_listen (int s, int backlog)
3369 {
3370 if (winsock_lib == NULL)
3371 {
3372 h_errno = ENETDOWN;
3373 return SOCKET_ERROR;
3374 }
3375
3376 check_errno ();
3377 if (fd_info[s].flags & FILE_SOCKET)
3378 {
3379 int rc = pfn_listen (SOCK_HANDLE (s), backlog);
3380 if (rc == SOCKET_ERROR)
3381 set_errno ();
3382 else
3383 fd_info[s].flags |= FILE_LISTEN;
3384 return rc;
3385 }
3386 h_errno = ENOTSOCK;
3387 return SOCKET_ERROR;
3388 }
3389
3390 int
3391 sys_getsockname (int s, struct sockaddr * name, int * namelen)
3392 {
3393 if (winsock_lib == NULL)
3394 {
3395 h_errno = ENETDOWN;
3396 return SOCKET_ERROR;
3397 }
3398
3399 check_errno ();
3400 if (fd_info[s].flags & FILE_SOCKET)
3401 {
3402 int rc = pfn_getsockname (SOCK_HANDLE (s), name, namelen);
3403 if (rc == SOCKET_ERROR)
3404 set_errno ();
3405 return rc;
3406 }
3407 h_errno = ENOTSOCK;
3408 return SOCKET_ERROR;
3409 }
3410
3411 int
3412 sys_accept (int s, struct sockaddr * addr, int * addrlen)
3413 {
3414 if (winsock_lib == NULL)
3415 {
3416 h_errno = ENETDOWN;
3417 return -1;
3418 }
3419
3420 check_errno ();
3421 if (fd_info[s].flags & FILE_LISTEN)
3422 {
3423 SOCKET t = pfn_accept (SOCK_HANDLE (s), addr, addrlen);
3424 int fd = -1;
3425 if (t == INVALID_SOCKET)
3426 set_errno ();
3427 else
3428 fd = socket_to_fd (t);
3429
3430 fd_info[s].cp->status = STATUS_READ_ACKNOWLEDGED;
3431 ResetEvent (fd_info[s].cp->char_avail);
3432 return fd;
3433 }
3434 h_errno = ENOTSOCK;
3435 return -1;
3436 }
3437
3438 int
3439 sys_recvfrom (int s, char * buf, int len, int flags,
3440 struct sockaddr * from, int * fromlen)
3441 {
3442 if (winsock_lib == NULL)
3443 {
3444 h_errno = ENETDOWN;
3445 return SOCKET_ERROR;
3446 }
3447
3448 check_errno ();
3449 if (fd_info[s].flags & FILE_SOCKET)
3450 {
3451 int rc = pfn_recvfrom (SOCK_HANDLE (s), buf, len, flags, from, fromlen);
3452 if (rc == SOCKET_ERROR)
3453 set_errno ();
3454 return rc;
3455 }
3456 h_errno = ENOTSOCK;
3457 return SOCKET_ERROR;
3458 }
3459
3460 int
3461 sys_sendto (int s, const char * buf, int len, int flags,
3462 const struct sockaddr * to, int tolen)
3463 {
3464 if (winsock_lib == NULL)
3465 {
3466 h_errno = ENETDOWN;
3467 return SOCKET_ERROR;
3468 }
3469
3470 check_errno ();
3471 if (fd_info[s].flags & FILE_SOCKET)
3472 {
3473 int rc = pfn_sendto (SOCK_HANDLE (s), buf, len, flags, to, tolen);
3474 if (rc == SOCKET_ERROR)
3475 set_errno ();
3476 return rc;
3477 }
3478 h_errno = ENOTSOCK;
3479 return SOCKET_ERROR;
3480 }
3481
3482 /* Windows does not have an fcntl function. Provide an implementation
3483 solely for making sockets non-blocking. */
3484 int
3485 fcntl (int s, int cmd, int options)
3486 {
3487 if (winsock_lib == NULL)
3488 {
3489 h_errno = ENETDOWN;
3490 return -1;
3491 }
3492
3493 check_errno ();
3494 if (fd_info[s].flags & FILE_SOCKET)
3495 {
3496 if (cmd == F_SETFL && options == O_NDELAY)
3497 {
3498 unsigned long nblock = 1;
3499 int rc = pfn_ioctlsocket (SOCK_HANDLE (s), FIONBIO, &nblock);
3500 if (rc == SOCKET_ERROR)
3501 set_errno();
3502 /* Keep track of the fact that we set this to non-blocking. */
3503 fd_info[s].flags |= FILE_NDELAY;
3504 return rc;
3505 }
3506 else
3507 {
3508 h_errno = EINVAL;
3509 return SOCKET_ERROR;
3510 }
3511 }
3512 h_errno = ENOTSOCK;
3513 return SOCKET_ERROR;
3514 }
3515
3516 #endif /* HAVE_SOCKETS */
3517
3518
3519 /* Shadow main io functions: we need to handle pipes and sockets more
3520 intelligently, and implement non-blocking mode as well. */
3521
3522 int
3523 sys_close (int fd)
3524 {
3525 int rc;
3526
3527 if (fd < 0)
3528 {
3529 errno = EBADF;
3530 return -1;
3531 }
3532
3533 if (fd < MAXDESC && fd_info[fd].cp)
3534 {
3535 child_process * cp = fd_info[fd].cp;
3536
3537 fd_info[fd].cp = NULL;
3538
3539 if (CHILD_ACTIVE (cp))
3540 {
3541 /* if last descriptor to active child_process then cleanup */
3542 int i;
3543 for (i = 0; i < MAXDESC; i++)
3544 {
3545 if (i == fd)
3546 continue;
3547 if (fd_info[i].cp == cp)
3548 break;
3549 }
3550 if (i == MAXDESC)
3551 {
3552 #ifdef HAVE_SOCKETS
3553 if (fd_info[fd].flags & FILE_SOCKET)
3554 {
3555 #ifndef SOCK_REPLACE_HANDLE
3556 if (winsock_lib == NULL) abort ();
3557
3558 pfn_shutdown (SOCK_HANDLE (fd), 2);
3559 rc = pfn_closesocket (SOCK_HANDLE (fd));
3560 #endif
3561 winsock_inuse--; /* count open sockets */
3562 }
3563 #endif
3564 delete_child (cp);
3565 }
3566 }
3567 }
3568
3569 /* Note that sockets do not need special treatment here (at least on
3570 NT and Windows 95 using the standard tcp/ip stacks) - it appears that
3571 closesocket is equivalent to CloseHandle, which is to be expected
3572 because socket handles are fully fledged kernel handles. */
3573 rc = _close (fd);
3574
3575 if (rc == 0 && fd < MAXDESC)
3576 fd_info[fd].flags = 0;
3577
3578 return rc;
3579 }
3580
3581 int
3582 sys_dup (int fd)
3583 {
3584 int new_fd;
3585
3586 new_fd = _dup (fd);
3587 if (new_fd >= 0 && new_fd < MAXDESC)
3588 {
3589 /* duplicate our internal info as well */
3590 fd_info[new_fd] = fd_info[fd];
3591 }
3592 return new_fd;
3593 }
3594
3595
3596 int
3597 sys_dup2 (int src, int dst)
3598 {
3599 int rc;
3600
3601 if (dst < 0 || dst >= MAXDESC)
3602 {
3603 errno = EBADF;
3604 return -1;
3605 }
3606
3607 /* make sure we close the destination first if it's a pipe or socket */
3608 if (src != dst && fd_info[dst].flags != 0)
3609 sys_close (dst);
3610
3611 rc = _dup2 (src, dst);
3612 if (rc == 0)
3613 {
3614 /* duplicate our internal info as well */
3615 fd_info[dst] = fd_info[src];
3616 }
3617 return rc;
3618 }
3619
3620 /* Unix pipe() has only one arg */
3621 int
3622 sys_pipe (int * phandles)
3623 {
3624 int rc;
3625 unsigned flags;
3626
3627 /* make pipe handles non-inheritable; when we spawn a child, we
3628 replace the relevant handle with an inheritable one. Also put
3629 pipes into binary mode; we will do text mode translation ourselves
3630 if required. */
3631 rc = _pipe (phandles, 0, _O_NOINHERIT | _O_BINARY);
3632
3633 if (rc == 0)
3634 {
3635 /* Protect against overflow, since Windows can open more handles than
3636 our fd_info array has room for. */
3637 if (phandles[0] >= MAXDESC || phandles[1] >= MAXDESC)
3638 {
3639 _close (phandles[0]);
3640 _close (phandles[1]);
3641 rc = -1;
3642 }
3643 else
3644 {
3645 flags = FILE_PIPE | FILE_READ | FILE_BINARY;
3646 fd_info[phandles[0]].flags = flags;
3647
3648 flags = FILE_PIPE | FILE_WRITE | FILE_BINARY;
3649 fd_info[phandles[1]].flags = flags;
3650 }
3651 }
3652
3653 return rc;
3654 }
3655
3656 /* From ntproc.c */
3657 extern int w32_pipe_read_delay;
3658
3659 /* Function to do blocking read of one byte, needed to implement
3660 select. It is only allowed on sockets and pipes. */
3661 int
3662 _sys_read_ahead (int fd)
3663 {
3664 child_process * cp;
3665 int rc;
3666
3667 if (fd < 0 || fd >= MAXDESC)
3668 return STATUS_READ_ERROR;
3669
3670 cp = fd_info[fd].cp;
3671
3672 if (cp == NULL || cp->fd != fd || cp->status != STATUS_READ_READY)
3673 return STATUS_READ_ERROR;
3674
3675 if ((fd_info[fd].flags & (FILE_PIPE | FILE_SOCKET)) == 0
3676 || (fd_info[fd].flags & FILE_READ) == 0)
3677 {
3678 DebPrint (("_sys_read_ahead: internal error: fd %d is not a pipe or socket!\n", fd));
3679 abort ();
3680 }
3681
3682 cp->status = STATUS_READ_IN_PROGRESS;
3683
3684 if (fd_info[fd].flags & FILE_PIPE)
3685 {
3686 rc = _read (fd, &cp->chr, sizeof (char));
3687
3688 /* Give subprocess time to buffer some more output for us before
3689 reporting that input is available; we need this because Windows 95
3690 connects DOS programs to pipes by making the pipe appear to be
3691 the normal console stdout - as a result most DOS programs will
3692 write to stdout without buffering, ie. one character at a
3693 time. Even some W32 programs do this - "dir" in a command
3694 shell on NT is very slow if we don't do this. */
3695 if (rc > 0)
3696 {
3697 int wait = w32_pipe_read_delay;
3698
3699 if (wait > 0)
3700 Sleep (wait);
3701 else if (wait < 0)
3702 while (++wait <= 0)
3703 /* Yield remainder of our time slice, effectively giving a
3704 temporary priority boost to the child process. */
3705 Sleep (0);
3706 }
3707 }
3708 #ifdef HAVE_SOCKETS
3709 else if (fd_info[fd].flags & FILE_SOCKET)
3710 {
3711 unsigned long nblock = 0;
3712 /* We always want this to block, so temporarily disable NDELAY. */
3713 if (fd_info[fd].flags & FILE_NDELAY)
3714 pfn_ioctlsocket (SOCK_HANDLE (fd), FIONBIO, &nblock);
3715
3716 rc = pfn_recv (SOCK_HANDLE (fd), &cp->chr, sizeof (char), 0);
3717
3718 if (fd_info[fd].flags & FILE_NDELAY)
3719 {
3720 nblock = 1;
3721 pfn_ioctlsocket (SOCK_HANDLE (fd), FIONBIO, &nblock);
3722 }
3723 }
3724 #endif
3725
3726 if (rc == sizeof (char))
3727 cp->status = STATUS_READ_SUCCEEDED;
3728 else
3729 cp->status = STATUS_READ_FAILED;
3730
3731 return cp->status;
3732 }
3733
3734 int
3735 _sys_wait_accept (int fd)
3736 {
3737 HANDLE hEv;
3738 child_process * cp;
3739 int rc;
3740
3741 if (fd < 0 || fd >= MAXDESC)
3742 return STATUS_READ_ERROR;
3743
3744 cp = fd_info[fd].cp;
3745
3746 if (cp == NULL || cp->fd != fd || cp->status != STATUS_READ_READY)
3747 return STATUS_READ_ERROR;
3748
3749 cp->status = STATUS_READ_FAILED;
3750
3751 hEv = pfn_WSACreateEvent ();
3752 rc = pfn_WSAEventSelect (SOCK_HANDLE (fd), hEv, FD_ACCEPT);
3753 if (rc != SOCKET_ERROR)
3754 {
3755 rc = WaitForSingleObject (hEv, INFINITE);
3756 pfn_WSAEventSelect (SOCK_HANDLE (fd), NULL, 0);
3757 if (rc == WAIT_OBJECT_0)
3758 cp->status = STATUS_READ_SUCCEEDED;
3759 }
3760 pfn_WSACloseEvent (hEv);
3761
3762 return cp->status;
3763 }
3764
3765 int
3766 sys_read (int fd, char * buffer, unsigned int count)
3767 {
3768 int nchars;
3769 int to_read;
3770 DWORD waiting;
3771 char * orig_buffer = buffer;
3772
3773 if (fd < 0)
3774 {
3775 errno = EBADF;
3776 return -1;
3777 }
3778
3779 if (fd < MAXDESC && fd_info[fd].flags & (FILE_PIPE | FILE_SOCKET))
3780 {
3781 child_process *cp = fd_info[fd].cp;
3782
3783 if ((fd_info[fd].flags & FILE_READ) == 0)
3784 {
3785 errno = EBADF;
3786 return -1;
3787 }
3788
3789 nchars = 0;
3790
3791 /* re-read CR carried over from last read */
3792 if (fd_info[fd].flags & FILE_LAST_CR)
3793 {
3794 if (fd_info[fd].flags & FILE_BINARY) abort ();
3795 *buffer++ = 0x0d;
3796 count--;
3797 nchars++;
3798 fd_info[fd].flags &= ~FILE_LAST_CR;
3799 }
3800
3801 /* presence of a child_process structure means we are operating in
3802 non-blocking mode - otherwise we just call _read directly.
3803 Note that the child_process structure might be missing because
3804 reap_subprocess has been called; in this case the pipe is
3805 already broken, so calling _read on it is okay. */
3806 if (cp)
3807 {
3808 int current_status = cp->status;
3809
3810 switch (current_status)
3811 {
3812 case STATUS_READ_FAILED:
3813 case STATUS_READ_ERROR:
3814 /* report normal EOF if nothing in buffer */
3815 if (nchars <= 0)
3816 fd_info[fd].flags |= FILE_AT_EOF;
3817 return nchars;
3818
3819 case STATUS_READ_READY:
3820 case STATUS_READ_IN_PROGRESS:
3821 DebPrint (("sys_read called when read is in progress\n"));
3822 errno = EWOULDBLOCK;
3823 return -1;
3824
3825 case STATUS_READ_SUCCEEDED:
3826 /* consume read-ahead char */
3827 *buffer++ = cp->chr;
3828 count--;
3829 nchars++;
3830 cp->status = STATUS_READ_ACKNOWLEDGED;
3831 ResetEvent (cp->char_avail);
3832
3833 case STATUS_READ_ACKNOWLEDGED:
3834 break;
3835
3836 default:
3837 DebPrint (("sys_read: bad status %d\n", current_status));
3838 errno = EBADF;
3839 return -1;
3840 }
3841
3842 if (fd_info[fd].flags & FILE_PIPE)
3843 {
3844 PeekNamedPipe ((HANDLE) _get_osfhandle (fd), NULL, 0, NULL, &waiting, NULL);
3845 to_read = min (waiting, (DWORD) count);
3846
3847 if (to_read > 0)
3848 nchars += _read (fd, buffer, to_read);
3849 }
3850 #ifdef HAVE_SOCKETS
3851 else /* FILE_SOCKET */
3852 {
3853 if (winsock_lib == NULL) abort ();
3854
3855 /* do the equivalent of a non-blocking read */
3856 pfn_ioctlsocket (SOCK_HANDLE (fd), FIONREAD, &waiting);
3857 if (waiting == 0 && nchars == 0)
3858 {
3859 h_errno = errno = EWOULDBLOCK;
3860 return -1;
3861 }
3862
3863 if (waiting)
3864 {
3865 /* always use binary mode for sockets */
3866 int res = pfn_recv (SOCK_HANDLE (fd), buffer, count, 0);
3867 if (res == SOCKET_ERROR)
3868 {
3869 DebPrint(("sys_read.recv failed with error %d on socket %ld\n",
3870 pfn_WSAGetLastError (), SOCK_HANDLE (fd)));
3871 set_errno ();
3872 return -1;
3873 }
3874 nchars += res;
3875 }
3876 }
3877 #endif
3878 }
3879 else
3880 {
3881 int nread = _read (fd, buffer, count);
3882 if (nread >= 0)
3883 nchars += nread;
3884 else if (nchars == 0)
3885 nchars = nread;
3886 }
3887
3888 if (nchars <= 0)
3889 fd_info[fd].flags |= FILE_AT_EOF;
3890 /* Perform text mode translation if required. */
3891 else if ((fd_info[fd].flags & FILE_BINARY) == 0)
3892 {
3893 nchars = crlf_to_lf (nchars, orig_buffer);
3894 /* If buffer contains only CR, return that. To be absolutely
3895 sure we should attempt to read the next char, but in
3896 practice a CR to be followed by LF would not appear by
3897 itself in the buffer. */
3898 if (nchars > 1 && orig_buffer[nchars - 1] == 0x0d)
3899 {
3900 fd_info[fd].flags |= FILE_LAST_CR;
3901 nchars--;
3902 }
3903 }
3904 }
3905 else
3906 nchars = _read (fd, buffer, count);
3907
3908 return nchars;
3909 }
3910
3911 /* For now, don't bother with a non-blocking mode */
3912 int
3913 sys_write (int fd, const void * buffer, unsigned int count)
3914 {
3915 int nchars;
3916
3917 if (fd < 0)
3918 {
3919 errno = EBADF;
3920 return -1;
3921 }
3922
3923 if (fd < MAXDESC && fd_info[fd].flags & (FILE_PIPE | FILE_SOCKET))
3924 {
3925 if ((fd_info[fd].flags & FILE_WRITE) == 0)
3926 {
3927 errno = EBADF;
3928 return -1;
3929 }
3930
3931 /* Perform text mode translation if required. */
3932 if ((fd_info[fd].flags & FILE_BINARY) == 0)
3933 {
3934 char * tmpbuf = alloca (count * 2);
3935 unsigned char * src = (void *)buffer;
3936 unsigned char * dst = tmpbuf;
3937 int nbytes = count;
3938
3939 while (1)
3940 {
3941 unsigned char *next;
3942 /* copy next line or remaining bytes */
3943 next = _memccpy (dst, src, '\n', nbytes);
3944 if (next)
3945 {
3946 /* copied one line ending with '\n' */
3947 int copied = next - dst;
3948 nbytes -= copied;
3949 src += copied;
3950 /* insert '\r' before '\n' */
3951 next[-1] = '\r';
3952 next[0] = '\n';
3953 dst = next + 1;
3954 count++;
3955 }
3956 else
3957 /* copied remaining partial line -> now finished */
3958 break;
3959 }
3960 buffer = tmpbuf;
3961 }
3962 }
3963
3964 #ifdef HAVE_SOCKETS
3965 if (fd < MAXDESC && fd_info[fd].flags & FILE_SOCKET)
3966 {
3967 unsigned long nblock = 0;
3968 if (winsock_lib == NULL) abort ();
3969
3970 /* TODO: implement select() properly so non-blocking I/O works. */
3971 /* For now, make sure the write blocks. */
3972 if (fd_info[fd].flags & FILE_NDELAY)
3973 pfn_ioctlsocket (SOCK_HANDLE (fd), FIONBIO, &nblock);
3974
3975 nchars = pfn_send (SOCK_HANDLE (fd), buffer, count, 0);
3976
3977 /* Set the socket back to non-blocking if it was before,
3978 for other operations that support it. */
3979 if (fd_info[fd].flags & FILE_NDELAY)
3980 {
3981 nblock = 1;
3982 pfn_ioctlsocket (SOCK_HANDLE (fd), FIONBIO, &nblock);
3983 }
3984
3985 if (nchars == SOCKET_ERROR)
3986 {
3987 DebPrint(("sys_write.send failed with error %d on socket %ld\n",
3988 pfn_WSAGetLastError (), SOCK_HANDLE (fd)));
3989 set_errno ();
3990 }
3991 }
3992 else
3993 #endif
3994 nchars = _write (fd, buffer, count);
3995
3996 return nchars;
3997 }
3998
3999 static void
4000 check_windows_init_file ()
4001 {
4002 extern int noninteractive, inhibit_window_system;
4003
4004 /* A common indication that Emacs is not installed properly is when
4005 it cannot find the Windows installation file. If this file does
4006 not exist in the expected place, tell the user. */
4007
4008 if (!noninteractive && !inhibit_window_system)
4009 {
4010 extern Lisp_Object Vwindow_system, Vload_path, Qfile_exists_p;
4011 Lisp_Object objs[2];
4012 Lisp_Object full_load_path;
4013 Lisp_Object init_file;
4014 int fd;
4015
4016 objs[0] = Vload_path;
4017 objs[1] = decode_env_path (0, (getenv ("EMACSLOADPATH")));
4018 full_load_path = Fappend (2, objs);
4019 init_file = build_string ("term/w32-win");
4020 fd = openp (full_load_path, init_file, Fget_load_suffixes (), NULL, Qnil);
4021 if (fd < 0)
4022 {
4023 Lisp_Object load_path_print = Fprin1_to_string (full_load_path, Qnil);
4024 char *init_file_name = SDATA (init_file);
4025 char *load_path = SDATA (load_path_print);
4026 char *buffer = alloca (1024
4027 + strlen (init_file_name)
4028 + strlen (load_path));
4029
4030 sprintf (buffer,
4031 "The Emacs Windows initialization file \"%s.el\" "
4032 "could not be found in your Emacs installation. "
4033 "Emacs checked the following directories for this file:\n"
4034 "\n%s\n\n"
4035 "When Emacs cannot find this file, it usually means that it "
4036 "was not installed properly, or its distribution file was "
4037 "not unpacked properly.\nSee the README.W32 file in the "
4038 "top-level Emacs directory for more information.",
4039 init_file_name, load_path);
4040 MessageBox (NULL,
4041 buffer,
4042 "Emacs Abort Dialog",
4043 MB_OK | MB_ICONEXCLAMATION | MB_TASKMODAL);
4044 /* Use the low-level Emacs abort. */
4045 #undef abort
4046 abort ();
4047 }
4048 else
4049 {
4050 _close (fd);
4051 }
4052 }
4053 }
4054
4055 void
4056 term_ntproc ()
4057 {
4058 #ifdef HAVE_SOCKETS
4059 /* shutdown the socket interface if necessary */
4060 term_winsock ();
4061 #endif
4062
4063 term_w32select ();
4064 }
4065
4066 void
4067 init_ntproc ()
4068 {
4069 #ifdef HAVE_SOCKETS
4070 /* Initialise the socket interface now if available and requested by
4071 the user by defining PRELOAD_WINSOCK; otherwise loading will be
4072 delayed until open-network-stream is called (w32-has-winsock can
4073 also be used to dynamically load or reload winsock).
4074
4075 Conveniently, init_environment is called before us, so
4076 PRELOAD_WINSOCK can be set in the registry. */
4077
4078 /* Always initialize this correctly. */
4079 winsock_lib = NULL;
4080
4081 if (getenv ("PRELOAD_WINSOCK") != NULL)
4082 init_winsock (TRUE);
4083 #endif
4084
4085 /* Initial preparation for subprocess support: replace our standard
4086 handles with non-inheritable versions. */
4087 {
4088 HANDLE parent;
4089 HANDLE stdin_save = INVALID_HANDLE_VALUE;
4090 HANDLE stdout_save = INVALID_HANDLE_VALUE;
4091 HANDLE stderr_save = INVALID_HANDLE_VALUE;
4092
4093 parent = GetCurrentProcess ();
4094
4095 /* ignore errors when duplicating and closing; typically the
4096 handles will be invalid when running as a gui program. */
4097 DuplicateHandle (parent,
4098 GetStdHandle (STD_INPUT_HANDLE),
4099 parent,
4100 &stdin_save,
4101 0,
4102 FALSE,
4103 DUPLICATE_SAME_ACCESS);
4104
4105 DuplicateHandle (parent,
4106 GetStdHandle (STD_OUTPUT_HANDLE),
4107 parent,
4108 &stdout_save,
4109 0,
4110 FALSE,
4111 DUPLICATE_SAME_ACCESS);
4112
4113 DuplicateHandle (parent,
4114 GetStdHandle (STD_ERROR_HANDLE),
4115 parent,
4116 &stderr_save,
4117 0,
4118 FALSE,
4119 DUPLICATE_SAME_ACCESS);
4120
4121 fclose (stdin);
4122 fclose (stdout);
4123 fclose (stderr);
4124
4125 if (stdin_save != INVALID_HANDLE_VALUE)
4126 _open_osfhandle ((long) stdin_save, O_TEXT);
4127 else
4128 _open ("nul", O_TEXT | O_NOINHERIT | O_RDONLY);
4129 _fdopen (0, "r");
4130
4131 if (stdout_save != INVALID_HANDLE_VALUE)
4132 _open_osfhandle ((long) stdout_save, O_TEXT);
4133 else
4134 _open ("nul", O_TEXT | O_NOINHERIT | O_WRONLY);
4135 _fdopen (1, "w");
4136
4137 if (stderr_save != INVALID_HANDLE_VALUE)
4138 _open_osfhandle ((long) stderr_save, O_TEXT);
4139 else
4140 _open ("nul", O_TEXT | O_NOINHERIT | O_WRONLY);
4141 _fdopen (2, "w");
4142 }
4143
4144 /* unfortunately, atexit depends on implementation of malloc */
4145 /* atexit (term_ntproc); */
4146 signal (SIGABRT, term_ntproc);
4147
4148 /* determine which drives are fixed, for GetCachedVolumeInformation */
4149 {
4150 /* GetDriveType must have trailing backslash. */
4151 char drive[] = "A:\\";
4152
4153 /* Loop over all possible drive letters */
4154 while (*drive <= 'Z')
4155 {
4156 /* Record if this drive letter refers to a fixed drive. */
4157 fixed_drives[DRIVE_INDEX (*drive)] =
4158 (GetDriveType (drive) == DRIVE_FIXED);
4159
4160 (*drive)++;
4161 }
4162
4163 /* Reset the volume info cache. */
4164 volume_cache = NULL;
4165 }
4166
4167 /* Check to see if Emacs has been installed correctly. */
4168 check_windows_init_file ();
4169 }
4170
4171 /*
4172 shutdown_handler ensures that buffers' autosave files are
4173 up to date when the user logs off, or the system shuts down.
4174 */
4175 BOOL WINAPI shutdown_handler(DWORD type)
4176 {
4177 /* Ctrl-C and Ctrl-Break are already suppressed, so don't handle them. */
4178 if (type == CTRL_CLOSE_EVENT /* User closes console window. */
4179 || type == CTRL_LOGOFF_EVENT /* User logs off. */
4180 || type == CTRL_SHUTDOWN_EVENT) /* User shutsdown. */
4181 {
4182 /* Shut down cleanly, making sure autosave files are up to date. */
4183 shut_down_emacs (0, 0, Qnil);
4184 }
4185
4186 /* Allow other handlers to handle this signal. */
4187 return FALSE;
4188 }
4189
4190 /*
4191 globals_of_w32 is used to initialize those global variables that
4192 must always be initialized on startup even when the global variable
4193 initialized is non zero (see the function main in emacs.c).
4194 */
4195 void
4196 globals_of_w32 ()
4197 {
4198 HMODULE kernel32 = GetModuleHandle ("kernel32.dll");
4199
4200 get_process_times_fn = (GetProcessTimes_Proc)
4201 GetProcAddress (kernel32, "GetProcessTimes");
4202
4203 g_b_init_is_windows_9x = 0;
4204 g_b_init_open_process_token = 0;
4205 g_b_init_get_token_information = 0;
4206 g_b_init_lookup_account_sid = 0;
4207 g_b_init_get_sid_identifier_authority = 0;
4208 /* The following sets a handler for shutdown notifications for
4209 console apps. This actually applies to Emacs in both console and
4210 GUI modes, since we had to fool windows into thinking emacs is a
4211 console application to get console mode to work. */
4212 SetConsoleCtrlHandler(shutdown_handler, TRUE);
4213 }
4214
4215 /* end of w32.c */
4216
4217 /* arch-tag: 90442dd3-37be-482b-b272-ac752e3049f1
4218 (do not change this comment) */