(Fselect_frame, Fset_frame_selected_window)
[bpt/emacs.git] / src / process.c
1 /* Asynchronous subprocess control for GNU Emacs.
2 Copyright (C) 1985, 86, 87, 88, 93, 94, 95, 96, 98, 1999,
3 2001, 2002, 2003, 2004 Free Software Foundation, Inc.
4
5 This file is part of GNU Emacs.
6
7 GNU Emacs is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2, or (at your option)
10 any later version.
11
12 GNU Emacs is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with GNU Emacs; see the file COPYING. If not, write to
19 the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
20 Boston, MA 02111-1307, USA. */
21
22
23 #include <config.h>
24 #include <signal.h>
25
26 /* This file is split into two parts by the following preprocessor
27 conditional. The 'then' clause contains all of the support for
28 asynchronous subprocesses. The 'else' clause contains stub
29 versions of some of the asynchronous subprocess routines that are
30 often called elsewhere in Emacs, so we don't have to #ifdef the
31 sections that call them. */
32
33 \f
34 #ifdef subprocesses
35
36 #include <stdio.h>
37 #include <errno.h>
38 #include <setjmp.h>
39 #include <sys/types.h> /* some typedefs are used in sys/file.h */
40 #include <sys/file.h>
41 #include <sys/stat.h>
42 #ifdef HAVE_UNISTD_H
43 #include <unistd.h>
44 #endif
45
46 #if defined(WINDOWSNT) || defined(UNIX98_PTYS)
47 #include <stdlib.h>
48 #include <fcntl.h>
49 #endif /* not WINDOWSNT */
50
51 #ifdef HAVE_SOCKETS /* TCP connection support, if kernel can do it */
52 #include <sys/socket.h>
53 #include <netdb.h>
54 #include <netinet/in.h>
55 #include <arpa/inet.h>
56 #ifdef NEED_NET_ERRNO_H
57 #include <net/errno.h>
58 #endif /* NEED_NET_ERRNO_H */
59
60 /* Are local (unix) sockets supported? */
61 #if defined (HAVE_SYS_UN_H) && !defined (NO_SOCKETS_IN_FILE_SYSTEM)
62 #if !defined (AF_LOCAL) && defined (AF_UNIX)
63 #define AF_LOCAL AF_UNIX
64 #endif
65 #ifdef AF_LOCAL
66 #define HAVE_LOCAL_SOCKETS
67 #include <sys/un.h>
68 #endif
69 #endif
70 #endif /* HAVE_SOCKETS */
71
72 /* TERM is a poor-man's SLIP, used on GNU/Linux. */
73 #ifdef TERM
74 #include <client.h>
75 #endif
76
77 /* On some systems, e.g. DGUX, inet_addr returns a 'struct in_addr'. */
78 #ifdef HAVE_BROKEN_INET_ADDR
79 #define IN_ADDR struct in_addr
80 #define NUMERIC_ADDR_ERROR (numeric_addr.s_addr == -1)
81 #else
82 #define IN_ADDR unsigned long
83 #define NUMERIC_ADDR_ERROR (numeric_addr == -1)
84 #endif
85
86 #if defined(BSD_SYSTEM) || defined(STRIDE)
87 #include <sys/ioctl.h>
88 #if !defined (O_NDELAY) && defined (HAVE_PTYS) && !defined(USG5)
89 #include <fcntl.h>
90 #endif /* HAVE_PTYS and no O_NDELAY */
91 #endif /* BSD_SYSTEM || STRIDE */
92
93 #ifdef BROKEN_O_NONBLOCK
94 #undef O_NONBLOCK
95 #endif /* BROKEN_O_NONBLOCK */
96
97 #ifdef NEED_BSDTTY
98 #include <bsdtty.h>
99 #endif
100
101 /* Can we use SIOCGIFCONF and/or SIOCGIFADDR */
102 #ifdef HAVE_SOCKETS
103 #if defined(HAVE_SYS_IOCTL_H) && defined(HAVE_NET_IF_H)
104 /* sys/ioctl.h may have been included already */
105 #ifndef SIOCGIFADDR
106 #include <sys/ioctl.h>
107 #endif
108 #include <net/if.h>
109 #endif
110 #endif
111
112 #ifdef IRIS
113 #include <sys/sysmacros.h> /* for "minor" */
114 #endif /* not IRIS */
115
116 #ifdef HAVE_SYS_WAIT
117 #include <sys/wait.h>
118 #endif
119
120 #include "systime.h"
121 #include "systty.h"
122
123 #include "lisp.h"
124 #include "window.h"
125 #include "buffer.h"
126 #include "charset.h"
127 #include "coding.h"
128 #include "process.h"
129 #include "termhooks.h"
130 #include "termopts.h"
131 #include "commands.h"
132 #include "keyboard.h"
133 #include "frame.h"
134 #include "blockinput.h"
135 #include "dispextern.h"
136 #include "composite.h"
137 #include "atimer.h"
138
139 Lisp_Object Qprocessp;
140 Lisp_Object Qrun, Qstop, Qsignal;
141 Lisp_Object Qopen, Qclosed, Qconnect, Qfailed, Qlisten;
142 Lisp_Object Qlocal, Qdatagram;
143 Lisp_Object QCname, QCbuffer, QChost, QCservice, QCtype;
144 Lisp_Object QClocal, QCremote, QCcoding;
145 Lisp_Object QCserver, QCnowait, QCnoquery, QCstop;
146 Lisp_Object QCsentinel, QClog, QCoptions, QCplist;
147 Lisp_Object QCfilter_multibyte;
148 Lisp_Object Qlast_nonmenu_event;
149 /* QCfamily is declared and initialized in xfaces.c,
150 QCfilter in keyboard.c. */
151 extern Lisp_Object QCfamily, QCfilter;
152
153 /* Qexit is declared and initialized in eval.c. */
154
155 /* QCfamily is defined in xfaces.c. */
156 extern Lisp_Object QCfamily;
157 /* QCfilter is defined in keyboard.c. */
158 extern Lisp_Object QCfilter;
159
160 /* a process object is a network connection when its childp field is neither
161 Qt nor Qnil but is instead a property list (KEY VAL ...). */
162
163 #ifdef HAVE_SOCKETS
164 #define NETCONN_P(p) (GC_CONSP (XPROCESS (p)->childp))
165 #define NETCONN1_P(p) (GC_CONSP ((p)->childp))
166 #else
167 #define NETCONN_P(p) 0
168 #define NETCONN1_P(p) 0
169 #endif /* HAVE_SOCKETS */
170
171 /* Define first descriptor number available for subprocesses. */
172 #ifdef VMS
173 #define FIRST_PROC_DESC 1
174 #else /* Not VMS */
175 #define FIRST_PROC_DESC 3
176 #endif
177
178 /* Define SIGCHLD as an alias for SIGCLD. There are many conditionals
179 testing SIGCHLD. */
180
181 #if !defined (SIGCHLD) && defined (SIGCLD)
182 #define SIGCHLD SIGCLD
183 #endif /* SIGCLD */
184
185 #include "syssignal.h"
186
187 #include "syswait.h"
188
189 extern void set_waiting_for_input P_ ((EMACS_TIME *));
190
191 #ifndef USE_CRT_DLL
192 extern int errno;
193 #endif
194 #ifdef VMS
195 extern char *sys_errlist[];
196 #endif
197
198 #ifndef HAVE_H_ERRNO
199 extern int h_errno;
200 #endif
201
202 /* t means use pty, nil means use a pipe,
203 maybe other values to come. */
204 static Lisp_Object Vprocess_connection_type;
205
206 #ifdef SKTPAIR
207 #ifndef HAVE_SOCKETS
208 #include <sys/socket.h>
209 #endif
210 #endif /* SKTPAIR */
211
212 /* These next two vars are non-static since sysdep.c uses them in the
213 emulation of `select'. */
214 /* Number of events of change of status of a process. */
215 int process_tick;
216 /* Number of events for which the user or sentinel has been notified. */
217 int update_tick;
218
219 /* Define NON_BLOCKING_CONNECT if we can support non-blocking connects. */
220
221 #ifdef BROKEN_NON_BLOCKING_CONNECT
222 #undef NON_BLOCKING_CONNECT
223 #else
224 #ifndef NON_BLOCKING_CONNECT
225 #ifdef HAVE_SOCKETS
226 #ifdef HAVE_SELECT
227 #if defined (HAVE_GETPEERNAME) || defined (GNU_LINUX)
228 #if defined (O_NONBLOCK) || defined (O_NDELAY)
229 #if defined (EWOULDBLOCK) || defined (EINPROGRESS)
230 #define NON_BLOCKING_CONNECT
231 #endif /* EWOULDBLOCK || EINPROGRESS */
232 #endif /* O_NONBLOCK || O_NDELAY */
233 #endif /* HAVE_GETPEERNAME || GNU_LINUX */
234 #endif /* HAVE_SELECT */
235 #endif /* HAVE_SOCKETS */
236 #endif /* NON_BLOCKING_CONNECT */
237 #endif /* BROKEN_NON_BLOCKING_CONNECT */
238
239 /* Define DATAGRAM_SOCKETS if datagrams can be used safely on
240 this system. We need to read full packets, so we need a
241 "non-destructive" select. So we require either native select,
242 or emulation of select using FIONREAD. */
243
244 #ifdef BROKEN_DATAGRAM_SOCKETS
245 #undef DATAGRAM_SOCKETS
246 #else
247 #ifndef DATAGRAM_SOCKETS
248 #ifdef HAVE_SOCKETS
249 #if defined (HAVE_SELECT) || defined (FIONREAD)
250 #if defined (HAVE_SENDTO) && defined (HAVE_RECVFROM) && defined (EMSGSIZE)
251 #define DATAGRAM_SOCKETS
252 #endif /* HAVE_SENDTO && HAVE_RECVFROM && EMSGSIZE */
253 #endif /* HAVE_SELECT || FIONREAD */
254 #endif /* HAVE_SOCKETS */
255 #endif /* DATAGRAM_SOCKETS */
256 #endif /* BROKEN_DATAGRAM_SOCKETS */
257
258 #ifdef TERM
259 #undef NON_BLOCKING_CONNECT
260 #undef DATAGRAM_SOCKETS
261 #endif
262
263 #if !defined (ADAPTIVE_READ_BUFFERING) && !defined (NO_ADAPTIVE_READ_BUFFERING)
264 #ifdef EMACS_HAS_USECS
265 #define ADAPTIVE_READ_BUFFERING
266 #endif
267 #endif
268
269 #ifdef ADAPTIVE_READ_BUFFERING
270 #define READ_OUTPUT_DELAY_INCREMENT 10000
271 #define READ_OUTPUT_DELAY_MAX (READ_OUTPUT_DELAY_INCREMENT * 5)
272 #define READ_OUTPUT_DELAY_MAX_MAX (READ_OUTPUT_DELAY_INCREMENT * 7)
273
274 /* Number of processes which might be delayed. */
275
276 static int process_output_delay_count;
277
278 /* Non-zero if any process has non-nil process_output_skip. */
279
280 static int process_output_skip;
281
282 /* Non-nil means to delay reading process output to improve buffering.
283 A value of t means that delay is reset after each send, any other
284 non-nil value does not reset the delay. */
285 static Lisp_Object Vprocess_adaptive_read_buffering;
286 #else
287 #define process_output_delay_count 0
288 #endif
289
290
291 #include "sysselect.h"
292
293 extern int keyboard_bit_set P_ ((SELECT_TYPE *));
294
295 /* If we support a window system, turn on the code to poll periodically
296 to detect C-g. It isn't actually used when doing interrupt input. */
297 #ifdef HAVE_WINDOW_SYSTEM
298 #define POLL_FOR_INPUT
299 #endif
300
301 /* Mask of bits indicating the descriptors that we wait for input on. */
302
303 static SELECT_TYPE input_wait_mask;
304
305 /* Mask that excludes keyboard input descriptor (s). */
306
307 static SELECT_TYPE non_keyboard_wait_mask;
308
309 /* Mask that excludes process input descriptor (s). */
310
311 static SELECT_TYPE non_process_wait_mask;
312
313 /* Mask of bits indicating the descriptors that we wait for connect to
314 complete on. Once they complete, they are removed from this mask
315 and added to the input_wait_mask and non_keyboard_wait_mask. */
316
317 static SELECT_TYPE connect_wait_mask;
318
319 /* Number of bits set in connect_wait_mask. */
320 static int num_pending_connects;
321
322 /* The largest descriptor currently in use for a process object. */
323 static int max_process_desc;
324
325 /* The largest descriptor currently in use for keyboard input. */
326 static int max_keyboard_desc;
327
328 /* Nonzero means delete a process right away if it exits. */
329 static int delete_exited_processes;
330
331 /* Indexed by descriptor, gives the process (if any) for that descriptor */
332 Lisp_Object chan_process[MAXDESC];
333
334 /* Alist of elements (NAME . PROCESS) */
335 Lisp_Object Vprocess_alist;
336
337 /* Buffered-ahead input char from process, indexed by channel.
338 -1 means empty (no char is buffered).
339 Used on sys V where the only way to tell if there is any
340 output from the process is to read at least one char.
341 Always -1 on systems that support FIONREAD. */
342
343 /* Don't make static; need to access externally. */
344 int proc_buffered_char[MAXDESC];
345
346 /* Table of `struct coding-system' for each process. */
347 static struct coding_system *proc_decode_coding_system[MAXDESC];
348 static struct coding_system *proc_encode_coding_system[MAXDESC];
349
350 #ifdef DATAGRAM_SOCKETS
351 /* Table of `partner address' for datagram sockets. */
352 struct sockaddr_and_len {
353 struct sockaddr *sa;
354 int len;
355 } datagram_address[MAXDESC];
356 #define DATAGRAM_CHAN_P(chan) (datagram_address[chan].sa != 0)
357 #define DATAGRAM_CONN_P(proc) (PROCESSP (proc) && datagram_address[XINT (XPROCESS (proc)->infd)].sa != 0)
358 #else
359 #define DATAGRAM_CHAN_P(chan) (0)
360 #define DATAGRAM_CONN_P(proc) (0)
361 #endif
362
363 static Lisp_Object get_process ();
364 static void exec_sentinel ();
365
366 extern EMACS_TIME timer_check ();
367 extern int timers_run;
368
369 /* Maximum number of bytes to send to a pty without an eof. */
370 static int pty_max_bytes;
371
372 extern Lisp_Object Vfile_name_coding_system, Vdefault_file_name_coding_system;
373
374 #ifdef HAVE_PTYS
375 #ifdef HAVE_PTY_H
376 #include <pty.h>
377 #endif
378 /* The file name of the pty opened by allocate_pty. */
379
380 static char pty_name[24];
381 #endif
382 \f
383 /* Compute the Lisp form of the process status, p->status, from
384 the numeric status that was returned by `wait'. */
385
386 Lisp_Object status_convert ();
387
388 void
389 update_status (p)
390 struct Lisp_Process *p;
391 {
392 union { int i; WAITTYPE wt; } u;
393 u.i = XFASTINT (p->raw_status_low) + (XFASTINT (p->raw_status_high) << 16);
394 p->status = status_convert (u.wt);
395 p->raw_status_low = Qnil;
396 p->raw_status_high = Qnil;
397 }
398
399 /* Convert a process status word in Unix format to
400 the list that we use internally. */
401
402 Lisp_Object
403 status_convert (w)
404 WAITTYPE w;
405 {
406 if (WIFSTOPPED (w))
407 return Fcons (Qstop, Fcons (make_number (WSTOPSIG (w)), Qnil));
408 else if (WIFEXITED (w))
409 return Fcons (Qexit, Fcons (make_number (WRETCODE (w)),
410 WCOREDUMP (w) ? Qt : Qnil));
411 else if (WIFSIGNALED (w))
412 return Fcons (Qsignal, Fcons (make_number (WTERMSIG (w)),
413 WCOREDUMP (w) ? Qt : Qnil));
414 else
415 return Qrun;
416 }
417
418 /* Given a status-list, extract the three pieces of information
419 and store them individually through the three pointers. */
420
421 void
422 decode_status (l, symbol, code, coredump)
423 Lisp_Object l;
424 Lisp_Object *symbol;
425 int *code;
426 int *coredump;
427 {
428 Lisp_Object tem;
429
430 if (SYMBOLP (l))
431 {
432 *symbol = l;
433 *code = 0;
434 *coredump = 0;
435 }
436 else
437 {
438 *symbol = XCAR (l);
439 tem = XCDR (l);
440 *code = XFASTINT (XCAR (tem));
441 tem = XCDR (tem);
442 *coredump = !NILP (tem);
443 }
444 }
445
446 /* Return a string describing a process status list. */
447
448 static Lisp_Object
449 status_message (p)
450 struct Lisp_Process *p;
451 {
452 Lisp_Object status = p->status;
453 Lisp_Object symbol;
454 int code, coredump;
455 Lisp_Object string, string2;
456
457 decode_status (status, &symbol, &code, &coredump);
458
459 if (EQ (symbol, Qsignal) || EQ (symbol, Qstop))
460 {
461 char *signame;
462 synchronize_system_messages_locale ();
463 signame = strsignal (code);
464 if (signame == 0)
465 signame = "unknown";
466 string = build_string (signame);
467 string2 = build_string (coredump ? " (core dumped)\n" : "\n");
468 SSET (string, 0, DOWNCASE (SREF (string, 0)));
469 return concat2 (string, string2);
470 }
471 else if (EQ (symbol, Qexit))
472 {
473 if (NETCONN1_P (p))
474 return build_string (code == 0 ? "deleted\n" : "connection broken by remote peer\n");
475 if (code == 0)
476 return build_string ("finished\n");
477 string = Fnumber_to_string (make_number (code));
478 string2 = build_string (coredump ? " (core dumped)\n" : "\n");
479 return concat3 (build_string ("exited abnormally with code "),
480 string, string2);
481 }
482 else if (EQ (symbol, Qfailed))
483 {
484 string = Fnumber_to_string (make_number (code));
485 string2 = build_string ("\n");
486 return concat3 (build_string ("failed with code "),
487 string, string2);
488 }
489 else
490 return Fcopy_sequence (Fsymbol_name (symbol));
491 }
492 \f
493 #ifdef HAVE_PTYS
494
495 /* Open an available pty, returning a file descriptor.
496 Return -1 on failure.
497 The file name of the terminal corresponding to the pty
498 is left in the variable pty_name. */
499
500 int
501 allocate_pty ()
502 {
503 register int c, i;
504 int fd;
505
506 #ifdef PTY_ITERATION
507 PTY_ITERATION
508 #else
509 for (c = FIRST_PTY_LETTER; c <= 'z'; c++)
510 for (i = 0; i < 16; i++)
511 #endif
512 {
513 struct stat stb; /* Used in some PTY_OPEN. */
514 #ifdef PTY_NAME_SPRINTF
515 PTY_NAME_SPRINTF
516 #else
517 sprintf (pty_name, "/dev/pty%c%x", c, i);
518 #endif /* no PTY_NAME_SPRINTF */
519
520 #ifdef PTY_OPEN
521 PTY_OPEN;
522 #else /* no PTY_OPEN */
523 {
524 # ifdef IRIS
525 /* Unusual IRIS code */
526 *ptyv = emacs_open ("/dev/ptc", O_RDWR | O_NDELAY, 0);
527 if (fd < 0)
528 return -1;
529 if (fstat (fd, &stb) < 0)
530 return -1;
531 # else /* not IRIS */
532 { /* Some systems name their pseudoterminals so that there are gaps in
533 the usual sequence - for example, on HP9000/S700 systems, there
534 are no pseudoterminals with names ending in 'f'. So we wait for
535 three failures in a row before deciding that we've reached the
536 end of the ptys. */
537 int failed_count = 0;
538
539 if (stat (pty_name, &stb) < 0)
540 {
541 failed_count++;
542 if (failed_count >= 3)
543 return -1;
544 }
545 else
546 failed_count = 0;
547 }
548 # ifdef O_NONBLOCK
549 fd = emacs_open (pty_name, O_RDWR | O_NONBLOCK, 0);
550 # else
551 fd = emacs_open (pty_name, O_RDWR | O_NDELAY, 0);
552 # endif
553 # endif /* not IRIS */
554 }
555 #endif /* no PTY_OPEN */
556
557 if (fd >= 0)
558 {
559 /* check to make certain that both sides are available
560 this avoids a nasty yet stupid bug in rlogins */
561 #ifdef PTY_TTY_NAME_SPRINTF
562 PTY_TTY_NAME_SPRINTF
563 #else
564 sprintf (pty_name, "/dev/tty%c%x", c, i);
565 #endif /* no PTY_TTY_NAME_SPRINTF */
566 #ifndef UNIPLUS
567 if (access (pty_name, 6) != 0)
568 {
569 emacs_close (fd);
570 # if !defined(IRIS) && !defined(__sgi)
571 continue;
572 # else
573 return -1;
574 # endif /* IRIS */
575 }
576 #endif /* not UNIPLUS */
577 setup_pty (fd);
578 return fd;
579 }
580 }
581 return -1;
582 }
583 #endif /* HAVE_PTYS */
584 \f
585 Lisp_Object
586 make_process (name)
587 Lisp_Object name;
588 {
589 register Lisp_Object val, tem, name1;
590 register struct Lisp_Process *p;
591 char suffix[10];
592 register int i;
593
594 p = allocate_process ();
595
596 XSETINT (p->infd, -1);
597 XSETINT (p->outfd, -1);
598 XSETFASTINT (p->pid, 0);
599 XSETFASTINT (p->tick, 0);
600 XSETFASTINT (p->update_tick, 0);
601 p->raw_status_low = Qnil;
602 p->raw_status_high = Qnil;
603 p->status = Qrun;
604 p->mark = Fmake_marker ();
605
606 #ifdef ADAPTIVE_READ_BUFFERING
607 p->adaptive_read_buffering = Qnil;
608 XSETFASTINT (p->read_output_delay, 0);
609 p->read_output_skip = Qnil;
610 #endif
611
612 /* If name is already in use, modify it until it is unused. */
613
614 name1 = name;
615 for (i = 1; ; i++)
616 {
617 tem = Fget_process (name1);
618 if (NILP (tem)) break;
619 sprintf (suffix, "<%d>", i);
620 name1 = concat2 (name, build_string (suffix));
621 }
622 name = name1;
623 p->name = name;
624 XSETPROCESS (val, p);
625 Vprocess_alist = Fcons (Fcons (name, val), Vprocess_alist);
626 return val;
627 }
628
629 void
630 remove_process (proc)
631 register Lisp_Object proc;
632 {
633 register Lisp_Object pair;
634
635 pair = Frassq (proc, Vprocess_alist);
636 Vprocess_alist = Fdelq (pair, Vprocess_alist);
637
638 deactivate_process (proc);
639 }
640
641 /* Setup coding systems of PROCESS. */
642
643 void
644 setup_process_coding_systems (process)
645 Lisp_Object process;
646 {
647 struct Lisp_Process *p = XPROCESS (process);
648 int inch = XINT (p->infd);
649 int outch = XINT (p->outfd);
650
651 if (inch < 0 || outch < 0)
652 return;
653
654 if (!proc_decode_coding_system[inch])
655 proc_decode_coding_system[inch]
656 = (struct coding_system *) xmalloc (sizeof (struct coding_system));
657 setup_coding_system (p->decode_coding_system,
658 proc_decode_coding_system[inch]);
659 if (! NILP (p->filter))
660 {
661 if (NILP (p->filter_multibyte))
662 setup_raw_text_coding_system (proc_decode_coding_system[inch]);
663 }
664 else if (BUFFERP (p->buffer))
665 {
666 if (NILP (XBUFFER (p->buffer)->enable_multibyte_characters))
667 setup_raw_text_coding_system (proc_decode_coding_system[inch]);
668 }
669
670 if (!proc_encode_coding_system[outch])
671 proc_encode_coding_system[outch]
672 = (struct coding_system *) xmalloc (sizeof (struct coding_system));
673 setup_coding_system (p->encode_coding_system,
674 proc_encode_coding_system[outch]);
675 }
676 \f
677 DEFUN ("processp", Fprocessp, Sprocessp, 1, 1, 0,
678 doc: /* Return t if OBJECT is a process. */)
679 (object)
680 Lisp_Object object;
681 {
682 return PROCESSP (object) ? Qt : Qnil;
683 }
684
685 DEFUN ("get-process", Fget_process, Sget_process, 1, 1, 0,
686 doc: /* Return the process named NAME, or nil if there is none. */)
687 (name)
688 register Lisp_Object name;
689 {
690 if (PROCESSP (name))
691 return name;
692 CHECK_STRING (name);
693 return Fcdr (Fassoc (name, Vprocess_alist));
694 }
695
696 DEFUN ("get-buffer-process", Fget_buffer_process, Sget_buffer_process, 1, 1, 0,
697 doc: /* Return the (or a) process associated with BUFFER.
698 BUFFER may be a buffer or the name of one. */)
699 (buffer)
700 register Lisp_Object buffer;
701 {
702 register Lisp_Object buf, tail, proc;
703
704 if (NILP (buffer)) return Qnil;
705 buf = Fget_buffer (buffer);
706 if (NILP (buf)) return Qnil;
707
708 for (tail = Vprocess_alist; !NILP (tail); tail = Fcdr (tail))
709 {
710 proc = Fcdr (Fcar (tail));
711 if (PROCESSP (proc) && EQ (XPROCESS (proc)->buffer, buf))
712 return proc;
713 }
714 return Qnil;
715 }
716
717 /* This is how commands for the user decode process arguments. It
718 accepts a process, a process name, a buffer, a buffer name, or nil.
719 Buffers denote the first process in the buffer, and nil denotes the
720 current buffer. */
721
722 static Lisp_Object
723 get_process (name)
724 register Lisp_Object name;
725 {
726 register Lisp_Object proc, obj;
727 if (STRINGP (name))
728 {
729 obj = Fget_process (name);
730 if (NILP (obj))
731 obj = Fget_buffer (name);
732 if (NILP (obj))
733 error ("Process %s does not exist", SDATA (name));
734 }
735 else if (NILP (name))
736 obj = Fcurrent_buffer ();
737 else
738 obj = name;
739
740 /* Now obj should be either a buffer object or a process object.
741 */
742 if (BUFFERP (obj))
743 {
744 proc = Fget_buffer_process (obj);
745 if (NILP (proc))
746 error ("Buffer %s has no process", SDATA (XBUFFER (obj)->name));
747 }
748 else
749 {
750 CHECK_PROCESS (obj);
751 proc = obj;
752 }
753 return proc;
754 }
755
756 DEFUN ("delete-process", Fdelete_process, Sdelete_process, 1, 1, 0,
757 doc: /* Delete PROCESS: kill it and forget about it immediately.
758 PROCESS may be a process, a buffer, the name of a process or buffer, or
759 nil, indicating the current buffer's process. */)
760 (process)
761 register Lisp_Object process;
762 {
763 process = get_process (process);
764 XPROCESS (process)->raw_status_low = Qnil;
765 XPROCESS (process)->raw_status_high = Qnil;
766 if (NETCONN_P (process))
767 {
768 XPROCESS (process)->status = Fcons (Qexit, Fcons (make_number (0), Qnil));
769 XSETINT (XPROCESS (process)->tick, ++process_tick);
770 status_notify ();
771 }
772 else if (XINT (XPROCESS (process)->infd) >= 0)
773 {
774 Fkill_process (process, Qnil);
775 /* Do this now, since remove_process will make sigchld_handler do nothing. */
776 XPROCESS (process)->status
777 = Fcons (Qsignal, Fcons (make_number (SIGKILL), Qnil));
778 XSETINT (XPROCESS (process)->tick, ++process_tick);
779 status_notify ();
780 }
781 remove_process (process);
782 return Qnil;
783 }
784 \f
785 DEFUN ("process-status", Fprocess_status, Sprocess_status, 1, 1, 0,
786 doc: /* Return the status of PROCESS.
787 The returned value is one of the following symbols:
788 run -- for a process that is running.
789 stop -- for a process stopped but continuable.
790 exit -- for a process that has exited.
791 signal -- for a process that has got a fatal signal.
792 open -- for a network stream connection that is open.
793 listen -- for a network stream server that is listening.
794 closed -- for a network stream connection that is closed.
795 connect -- when waiting for a non-blocking connection to complete.
796 failed -- when a non-blocking connection has failed.
797 nil -- if arg is a process name and no such process exists.
798 PROCESS may be a process, a buffer, the name of a process, or
799 nil, indicating the current buffer's process. */)
800 (process)
801 register Lisp_Object process;
802 {
803 register struct Lisp_Process *p;
804 register Lisp_Object status;
805
806 if (STRINGP (process))
807 process = Fget_process (process);
808 else
809 process = get_process (process);
810
811 if (NILP (process))
812 return process;
813
814 p = XPROCESS (process);
815 if (!NILP (p->raw_status_low))
816 update_status (p);
817 status = p->status;
818 if (CONSP (status))
819 status = XCAR (status);
820 if (NETCONN1_P (p))
821 {
822 if (EQ (status, Qexit))
823 status = Qclosed;
824 else if (EQ (p->command, Qt))
825 status = Qstop;
826 else if (EQ (status, Qrun))
827 status = Qopen;
828 }
829 return status;
830 }
831
832 DEFUN ("process-exit-status", Fprocess_exit_status, Sprocess_exit_status,
833 1, 1, 0,
834 doc: /* Return the exit status of PROCESS or the signal number that killed it.
835 If PROCESS has not yet exited or died, return 0. */)
836 (process)
837 register Lisp_Object process;
838 {
839 CHECK_PROCESS (process);
840 if (!NILP (XPROCESS (process)->raw_status_low))
841 update_status (XPROCESS (process));
842 if (CONSP (XPROCESS (process)->status))
843 return XCAR (XCDR (XPROCESS (process)->status));
844 return make_number (0);
845 }
846
847 DEFUN ("process-id", Fprocess_id, Sprocess_id, 1, 1, 0,
848 doc: /* Return the process id of PROCESS.
849 This is the pid of the external process which PROCESS uses or talks to.
850 For a network connection, this value is nil. */)
851 (process)
852 register Lisp_Object process;
853 {
854 CHECK_PROCESS (process);
855 return XPROCESS (process)->pid;
856 }
857
858 DEFUN ("process-name", Fprocess_name, Sprocess_name, 1, 1, 0,
859 doc: /* Return the name of PROCESS, as a string.
860 This is the name of the program invoked in PROCESS,
861 possibly modified to make it unique among process names. */)
862 (process)
863 register Lisp_Object process;
864 {
865 CHECK_PROCESS (process);
866 return XPROCESS (process)->name;
867 }
868
869 DEFUN ("process-command", Fprocess_command, Sprocess_command, 1, 1, 0,
870 doc: /* Return the command that was executed to start PROCESS.
871 This is a list of strings, the first string being the program executed
872 and the rest of the strings being the arguments given to it.
873 For a non-child channel, this is nil. */)
874 (process)
875 register Lisp_Object process;
876 {
877 CHECK_PROCESS (process);
878 return XPROCESS (process)->command;
879 }
880
881 DEFUN ("process-tty-name", Fprocess_tty_name, Sprocess_tty_name, 1, 1, 0,
882 doc: /* Return the name of the terminal PROCESS uses, or nil if none.
883 This is the terminal that the process itself reads and writes on,
884 not the name of the pty that Emacs uses to talk with that terminal. */)
885 (process)
886 register Lisp_Object process;
887 {
888 CHECK_PROCESS (process);
889 return XPROCESS (process)->tty_name;
890 }
891
892 DEFUN ("set-process-buffer", Fset_process_buffer, Sset_process_buffer,
893 2, 2, 0,
894 doc: /* Set buffer associated with PROCESS to BUFFER (a buffer, or nil). */)
895 (process, buffer)
896 register Lisp_Object process, buffer;
897 {
898 struct Lisp_Process *p;
899
900 CHECK_PROCESS (process);
901 if (!NILP (buffer))
902 CHECK_BUFFER (buffer);
903 p = XPROCESS (process);
904 p->buffer = buffer;
905 if (NETCONN1_P (p))
906 p->childp = Fplist_put (p->childp, QCbuffer, buffer);
907 setup_process_coding_systems (process);
908 return buffer;
909 }
910
911 DEFUN ("process-buffer", Fprocess_buffer, Sprocess_buffer,
912 1, 1, 0,
913 doc: /* Return the buffer PROCESS is associated with.
914 Output from PROCESS is inserted in this buffer unless PROCESS has a filter. */)
915 (process)
916 register Lisp_Object process;
917 {
918 CHECK_PROCESS (process);
919 return XPROCESS (process)->buffer;
920 }
921
922 DEFUN ("process-mark", Fprocess_mark, Sprocess_mark,
923 1, 1, 0,
924 doc: /* Return the marker for the end of the last output from PROCESS. */)
925 (process)
926 register Lisp_Object process;
927 {
928 CHECK_PROCESS (process);
929 return XPROCESS (process)->mark;
930 }
931
932 DEFUN ("set-process-filter", Fset_process_filter, Sset_process_filter,
933 2, 2, 0,
934 doc: /* Give PROCESS the filter function FILTER; nil means no filter.
935 t means stop accepting output from the process.
936
937 When a process has a filter, its buffer is not used for output.
938 Instead, each time it does output, the entire string of output is
939 passed to the filter.
940
941 The filter gets two arguments: the process and the string of output.
942 The string argument is normally a multibyte string, except:
943 - if the process' input coding system is no-conversion or raw-text,
944 it is a unibyte string (the non-converted input), or else
945 - if `default-enable-multibyte-characters' is nil, it is a unibyte
946 string (the result of converting the decoded input multibyte
947 string to unibyte with `string-make-unibyte'). */)
948 (process, filter)
949 register Lisp_Object process, filter;
950 {
951 struct Lisp_Process *p;
952
953 CHECK_PROCESS (process);
954 p = XPROCESS (process);
955
956 /* Don't signal an error if the process' input file descriptor
957 is closed. This could make debugging Lisp more difficult,
958 for example when doing something like
959
960 (setq process (start-process ...))
961 (debug)
962 (set-process-filter process ...) */
963
964 if (XINT (p->infd) >= 0)
965 {
966 if (EQ (filter, Qt) && !EQ (p->status, Qlisten))
967 {
968 FD_CLR (XINT (p->infd), &input_wait_mask);
969 FD_CLR (XINT (p->infd), &non_keyboard_wait_mask);
970 }
971 else if (EQ (p->filter, Qt)
972 && !EQ (p->command, Qt)) /* Network process not stopped. */
973 {
974 FD_SET (XINT (p->infd), &input_wait_mask);
975 FD_SET (XINT (p->infd), &non_keyboard_wait_mask);
976 }
977 }
978
979 p->filter = filter;
980 if (NETCONN1_P (p))
981 p->childp = Fplist_put (p->childp, QCfilter, filter);
982 setup_process_coding_systems (process);
983 return filter;
984 }
985
986 DEFUN ("process-filter", Fprocess_filter, Sprocess_filter,
987 1, 1, 0,
988 doc: /* Returns the filter function of PROCESS; nil if none.
989 See `set-process-filter' for more info on filter functions. */)
990 (process)
991 register Lisp_Object process;
992 {
993 CHECK_PROCESS (process);
994 return XPROCESS (process)->filter;
995 }
996
997 DEFUN ("set-process-sentinel", Fset_process_sentinel, Sset_process_sentinel,
998 2, 2, 0,
999 doc: /* Give PROCESS the sentinel SENTINEL; nil for none.
1000 The sentinel is called as a function when the process changes state.
1001 It gets two arguments: the process, and a string describing the change. */)
1002 (process, sentinel)
1003 register Lisp_Object process, sentinel;
1004 {
1005 struct Lisp_Process *p;
1006
1007 CHECK_PROCESS (process);
1008 p = XPROCESS (process);
1009
1010 p->sentinel = sentinel;
1011 if (NETCONN1_P (p))
1012 p->childp = Fplist_put (p->childp, QCsentinel, sentinel);
1013 return sentinel;
1014 }
1015
1016 DEFUN ("process-sentinel", Fprocess_sentinel, Sprocess_sentinel,
1017 1, 1, 0,
1018 doc: /* Return the sentinel of PROCESS; nil if none.
1019 See `set-process-sentinel' for more info on sentinels. */)
1020 (process)
1021 register Lisp_Object process;
1022 {
1023 CHECK_PROCESS (process);
1024 return XPROCESS (process)->sentinel;
1025 }
1026
1027 DEFUN ("set-process-window-size", Fset_process_window_size,
1028 Sset_process_window_size, 3, 3, 0,
1029 doc: /* Tell PROCESS that it has logical window size HEIGHT and WIDTH. */)
1030 (process, height, width)
1031 register Lisp_Object process, height, width;
1032 {
1033 CHECK_PROCESS (process);
1034 CHECK_NATNUM (height);
1035 CHECK_NATNUM (width);
1036
1037 if (XINT (XPROCESS (process)->infd) < 0
1038 || set_window_size (XINT (XPROCESS (process)->infd),
1039 XINT (height), XINT (width)) <= 0)
1040 return Qnil;
1041 else
1042 return Qt;
1043 }
1044
1045 DEFUN ("set-process-inherit-coding-system-flag",
1046 Fset_process_inherit_coding_system_flag,
1047 Sset_process_inherit_coding_system_flag, 2, 2, 0,
1048 doc: /* Determine whether buffer of PROCESS will inherit coding-system.
1049 If the second argument FLAG is non-nil, then the variable
1050 `buffer-file-coding-system' of the buffer associated with PROCESS
1051 will be bound to the value of the coding system used to decode
1052 the process output.
1053
1054 This is useful when the coding system specified for the process buffer
1055 leaves either the character code conversion or the end-of-line conversion
1056 unspecified, or if the coding system used to decode the process output
1057 is more appropriate for saving the process buffer.
1058
1059 Binding the variable `inherit-process-coding-system' to non-nil before
1060 starting the process is an alternative way of setting the inherit flag
1061 for the process which will run. */)
1062 (process, flag)
1063 register Lisp_Object process, flag;
1064 {
1065 CHECK_PROCESS (process);
1066 XPROCESS (process)->inherit_coding_system_flag = flag;
1067 return flag;
1068 }
1069
1070 DEFUN ("process-inherit-coding-system-flag",
1071 Fprocess_inherit_coding_system_flag, Sprocess_inherit_coding_system_flag,
1072 1, 1, 0,
1073 doc: /* Return the value of inherit-coding-system flag for PROCESS.
1074 If this flag is t, `buffer-file-coding-system' of the buffer
1075 associated with PROCESS will inherit the coding system used to decode
1076 the process output. */)
1077 (process)
1078 register Lisp_Object process;
1079 {
1080 CHECK_PROCESS (process);
1081 return XPROCESS (process)->inherit_coding_system_flag;
1082 }
1083
1084 DEFUN ("set-process-query-on-exit-flag",
1085 Fset_process_query_on_exit_flag, Sset_process_query_on_exit_flag,
1086 2, 2, 0,
1087 doc: /* Specify if query is needed for PROCESS when Emacs is exited.
1088 If the second argument FLAG is non-nil, Emacs will query the user before
1089 exiting if PROCESS is running. */)
1090 (process, flag)
1091 register Lisp_Object process, flag;
1092 {
1093 CHECK_PROCESS (process);
1094 XPROCESS (process)->kill_without_query = Fnull (flag);
1095 return flag;
1096 }
1097
1098 DEFUN ("process-query-on-exit-flag",
1099 Fprocess_query_on_exit_flag, Sprocess_query_on_exit_flag,
1100 1, 1, 0,
1101 doc: /* Return the current value of query-on-exit flag for PROCESS. */)
1102 (process)
1103 register Lisp_Object process;
1104 {
1105 CHECK_PROCESS (process);
1106 return Fnull (XPROCESS (process)->kill_without_query);
1107 }
1108
1109 #ifdef DATAGRAM_SOCKETS
1110 Lisp_Object Fprocess_datagram_address ();
1111 #endif
1112
1113 DEFUN ("process-contact", Fprocess_contact, Sprocess_contact,
1114 1, 2, 0,
1115 doc: /* Return the contact info of PROCESS; t for a real child.
1116 For a net connection, the value depends on the optional KEY arg.
1117 If KEY is nil, value is a cons cell of the form (HOST SERVICE),
1118 if KEY is t, the complete contact information for the connection is
1119 returned, else the specific value for the keyword KEY is returned.
1120 See `make-network-process' for a list of keywords. */)
1121 (process, key)
1122 register Lisp_Object process, key;
1123 {
1124 Lisp_Object contact;
1125
1126 CHECK_PROCESS (process);
1127 contact = XPROCESS (process)->childp;
1128
1129 #ifdef DATAGRAM_SOCKETS
1130 if (DATAGRAM_CONN_P (process)
1131 && (EQ (key, Qt) || EQ (key, QCremote)))
1132 contact = Fplist_put (contact, QCremote,
1133 Fprocess_datagram_address (process));
1134 #endif
1135
1136 if (!NETCONN_P (process) || EQ (key, Qt))
1137 return contact;
1138 if (NILP (key))
1139 return Fcons (Fplist_get (contact, QChost),
1140 Fcons (Fplist_get (contact, QCservice), Qnil));
1141 return Fplist_get (contact, key);
1142 }
1143
1144 DEFUN ("process-plist", Fprocess_plist, Sprocess_plist,
1145 1, 1, 0,
1146 doc: /* Return the plist of PROCESS. */)
1147 (process)
1148 register Lisp_Object process;
1149 {
1150 CHECK_PROCESS (process);
1151 return XPROCESS (process)->plist;
1152 }
1153
1154 DEFUN ("set-process-plist", Fset_process_plist, Sset_process_plist,
1155 2, 2, 0,
1156 doc: /* Replace the plist of PROCESS with PLIST. Returns PLIST. */)
1157 (process, plist)
1158 register Lisp_Object process, plist;
1159 {
1160 CHECK_PROCESS (process);
1161 CHECK_LIST (plist);
1162
1163 XPROCESS (process)->plist = plist;
1164 return plist;
1165 }
1166
1167 #if 0 /* Turned off because we don't currently record this info
1168 in the process. Perhaps add it. */
1169 DEFUN ("process-connection", Fprocess_connection, Sprocess_connection, 1, 1, 0,
1170 doc: /* Return the connection type of PROCESS.
1171 The value is nil for a pipe, t or `pty' for a pty, or `stream' for
1172 a socket connection. */)
1173 (process)
1174 Lisp_Object process;
1175 {
1176 return XPROCESS (process)->type;
1177 }
1178 #endif
1179
1180 #ifdef HAVE_SOCKETS
1181 DEFUN ("format-network-address", Fformat_network_address, Sformat_network_address,
1182 1, 2, 0,
1183 doc: /* Convert network ADDRESS from internal format to a string.
1184 If optional second argument OMIT-PORT is non-nil, don't include a port
1185 number in the string; in this case, interpret a 4 element vector as an
1186 IP address. Returns nil if format of ADDRESS is invalid. */)
1187 (address, omit_port)
1188 Lisp_Object address, omit_port;
1189 {
1190 if (NILP (address))
1191 return Qnil;
1192
1193 if (STRINGP (address)) /* AF_LOCAL */
1194 return address;
1195
1196 if (VECTORP (address)) /* AF_INET */
1197 {
1198 register struct Lisp_Vector *p = XVECTOR (address);
1199 Lisp_Object args[6];
1200 int nargs, i;
1201
1202 if (!NILP (omit_port) && (p->size == 4 || p->size == 5))
1203 {
1204 args[0] = build_string ("%d.%d.%d.%d");
1205 nargs = 4;
1206 }
1207 else if (p->size == 5)
1208 {
1209 args[0] = build_string ("%d.%d.%d.%d:%d");
1210 nargs = 5;
1211 }
1212 else
1213 return Qnil;
1214
1215 for (i = 0; i < nargs; i++)
1216 args[i+1] = p->contents[i];
1217 return Fformat (nargs+1, args);
1218 }
1219
1220 if (CONSP (address))
1221 {
1222 Lisp_Object args[2];
1223 args[0] = build_string ("<Family %d>");
1224 args[1] = Fcar (address);
1225 return Fformat (2, args);
1226
1227 }
1228
1229 return Qnil;
1230 }
1231 #endif
1232 \f
1233 Lisp_Object
1234 list_processes_1 (query_only)
1235 Lisp_Object query_only;
1236 {
1237 register Lisp_Object tail, tem;
1238 Lisp_Object proc, minspace, tem1;
1239 register struct Lisp_Process *p;
1240 char tembuf[300];
1241 int w_proc, w_buffer, w_tty;
1242 Lisp_Object i_status, i_buffer, i_tty, i_command;
1243
1244 w_proc = 4; /* Proc */
1245 w_buffer = 6; /* Buffer */
1246 w_tty = 0; /* Omit if no ttys */
1247
1248 for (tail = Vprocess_alist; !NILP (tail); tail = Fcdr (tail))
1249 {
1250 int i;
1251
1252 proc = Fcdr (Fcar (tail));
1253 p = XPROCESS (proc);
1254 if (NILP (p->childp))
1255 continue;
1256 if (!NILP (query_only) && !NILP (p->kill_without_query))
1257 continue;
1258 if (STRINGP (p->name)
1259 && ( i = SCHARS (p->name), (i > w_proc)))
1260 w_proc = i;
1261 if (!NILP (p->buffer))
1262 {
1263 if (NILP (XBUFFER (p->buffer)->name) && w_buffer < 8)
1264 w_buffer = 8; /* (Killed) */
1265 else if ((i = SCHARS (XBUFFER (p->buffer)->name), (i > w_buffer)))
1266 w_buffer = i;
1267 }
1268 if (STRINGP (p->tty_name)
1269 && (i = SCHARS (p->tty_name), (i > w_tty)))
1270 w_tty = i;
1271 }
1272
1273 XSETFASTINT (i_status, w_proc + 1);
1274 XSETFASTINT (i_buffer, XFASTINT (i_status) + 9);
1275 if (w_tty)
1276 {
1277 XSETFASTINT (i_tty, XFASTINT (i_buffer) + w_buffer + 1);
1278 XSETFASTINT (i_command, XFASTINT (i_buffer) + w_tty + 1);
1279 } else {
1280 i_tty = Qnil;
1281 XSETFASTINT (i_command, XFASTINT (i_buffer) + w_buffer + 1);
1282 }
1283
1284 XSETFASTINT (minspace, 1);
1285
1286 set_buffer_internal (XBUFFER (Vstandard_output));
1287 Fbuffer_disable_undo (Vstandard_output);
1288
1289 current_buffer->truncate_lines = Qt;
1290
1291 write_string ("Proc", -1);
1292 Findent_to (i_status, minspace); write_string ("Status", -1);
1293 Findent_to (i_buffer, minspace); write_string ("Buffer", -1);
1294 if (!NILP (i_tty))
1295 {
1296 Findent_to (i_tty, minspace); write_string ("Tty", -1);
1297 }
1298 Findent_to (i_command, minspace); write_string ("Command", -1);
1299 write_string ("\n", -1);
1300
1301 write_string ("----", -1);
1302 Findent_to (i_status, minspace); write_string ("------", -1);
1303 Findent_to (i_buffer, minspace); write_string ("------", -1);
1304 if (!NILP (i_tty))
1305 {
1306 Findent_to (i_tty, minspace); write_string ("---", -1);
1307 }
1308 Findent_to (i_command, minspace); write_string ("-------", -1);
1309 write_string ("\n", -1);
1310
1311 for (tail = Vprocess_alist; !NILP (tail); tail = Fcdr (tail))
1312 {
1313 Lisp_Object symbol;
1314
1315 proc = Fcdr (Fcar (tail));
1316 p = XPROCESS (proc);
1317 if (NILP (p->childp))
1318 continue;
1319 if (!NILP (query_only) && !NILP (p->kill_without_query))
1320 continue;
1321
1322 Finsert (1, &p->name);
1323 Findent_to (i_status, minspace);
1324
1325 if (!NILP (p->raw_status_low))
1326 update_status (p);
1327 symbol = p->status;
1328 if (CONSP (p->status))
1329 symbol = XCAR (p->status);
1330
1331
1332 if (EQ (symbol, Qsignal))
1333 {
1334 Lisp_Object tem;
1335 tem = Fcar (Fcdr (p->status));
1336 #ifdef VMS
1337 if (XINT (tem) < NSIG)
1338 write_string (sys_errlist [XINT (tem)], -1);
1339 else
1340 #endif
1341 Fprinc (symbol, Qnil);
1342 }
1343 else if (NETCONN1_P (p))
1344 {
1345 if (EQ (symbol, Qexit))
1346 write_string ("closed", -1);
1347 else if (EQ (p->command, Qt))
1348 write_string ("stopped", -1);
1349 else if (EQ (symbol, Qrun))
1350 write_string ("open", -1);
1351 else
1352 Fprinc (symbol, Qnil);
1353 }
1354 else
1355 Fprinc (symbol, Qnil);
1356
1357 if (EQ (symbol, Qexit))
1358 {
1359 Lisp_Object tem;
1360 tem = Fcar (Fcdr (p->status));
1361 if (XFASTINT (tem))
1362 {
1363 sprintf (tembuf, " %d", (int) XFASTINT (tem));
1364 write_string (tembuf, -1);
1365 }
1366 }
1367
1368 if (EQ (symbol, Qsignal) || EQ (symbol, Qexit))
1369 remove_process (proc);
1370
1371 Findent_to (i_buffer, minspace);
1372 if (NILP (p->buffer))
1373 insert_string ("(none)");
1374 else if (NILP (XBUFFER (p->buffer)->name))
1375 insert_string ("(Killed)");
1376 else
1377 Finsert (1, &XBUFFER (p->buffer)->name);
1378
1379 if (!NILP (i_tty))
1380 {
1381 Findent_to (i_tty, minspace);
1382 if (STRINGP (p->tty_name))
1383 Finsert (1, &p->tty_name);
1384 }
1385
1386 Findent_to (i_command, minspace);
1387
1388 if (EQ (p->status, Qlisten))
1389 {
1390 Lisp_Object port = Fplist_get (p->childp, QCservice);
1391 if (INTEGERP (port))
1392 port = Fnumber_to_string (port);
1393 if (NILP (port))
1394 port = Fformat_network_address (Fplist_get (p->childp, QClocal), Qnil);
1395 sprintf (tembuf, "(network %s server on %s)\n",
1396 (DATAGRAM_CHAN_P (XINT (p->infd)) ? "datagram" : "stream"),
1397 (STRINGP (port) ? (char *)SDATA (port) : "?"));
1398 insert_string (tembuf);
1399 }
1400 else if (NETCONN1_P (p))
1401 {
1402 /* For a local socket, there is no host name,
1403 so display service instead. */
1404 Lisp_Object host = Fplist_get (p->childp, QChost);
1405 if (!STRINGP (host))
1406 {
1407 host = Fplist_get (p->childp, QCservice);
1408 if (INTEGERP (host))
1409 host = Fnumber_to_string (host);
1410 }
1411 if (NILP (host))
1412 host = Fformat_network_address (Fplist_get (p->childp, QCremote), Qnil);
1413 sprintf (tembuf, "(network %s connection to %s)\n",
1414 (DATAGRAM_CHAN_P (XINT (p->infd)) ? "datagram" : "stream"),
1415 (STRINGP (host) ? (char *)SDATA (host) : "?"));
1416 insert_string (tembuf);
1417 }
1418 else
1419 {
1420 tem = p->command;
1421 while (1)
1422 {
1423 tem1 = Fcar (tem);
1424 Finsert (1, &tem1);
1425 tem = Fcdr (tem);
1426 if (NILP (tem))
1427 break;
1428 insert_string (" ");
1429 }
1430 insert_string ("\n");
1431 }
1432 }
1433 return Qnil;
1434 }
1435
1436 DEFUN ("list-processes", Flist_processes, Slist_processes, 0, 1, "P",
1437 doc: /* Display a list of all processes.
1438 If optional argument QUERY-ONLY is non-nil, only processes with
1439 the query-on-exit flag set will be listed.
1440 Any process listed as exited or signaled is actually eliminated
1441 after the listing is made. */)
1442 (query_only)
1443 Lisp_Object query_only;
1444 {
1445 internal_with_output_to_temp_buffer ("*Process List*",
1446 list_processes_1, query_only);
1447 return Qnil;
1448 }
1449
1450 DEFUN ("process-list", Fprocess_list, Sprocess_list, 0, 0, 0,
1451 doc: /* Return a list of all processes. */)
1452 ()
1453 {
1454 return Fmapcar (Qcdr, Vprocess_alist);
1455 }
1456 \f
1457 /* Starting asynchronous inferior processes. */
1458
1459 static Lisp_Object start_process_unwind ();
1460
1461 DEFUN ("start-process", Fstart_process, Sstart_process, 3, MANY, 0,
1462 doc: /* Start a program in a subprocess. Return the process object for it.
1463 NAME is name for process. It is modified if necessary to make it unique.
1464 BUFFER is the buffer (or buffer name) to associate with the process.
1465 Process output goes at end of that buffer, unless you specify
1466 an output stream or filter function to handle the output.
1467 BUFFER may be also nil, meaning that this process is not associated
1468 with any buffer.
1469 PROGRAM is the program file name. It is searched for in PATH.
1470 Remaining arguments are strings to give program as arguments.
1471
1472 usage: (start-process NAME BUFFER PROGRAM &rest PROGRAM-ARGS) */)
1473 (nargs, args)
1474 int nargs;
1475 register Lisp_Object *args;
1476 {
1477 Lisp_Object buffer, name, program, proc, current_dir, tem;
1478 #ifdef VMS
1479 register unsigned char *new_argv;
1480 int len;
1481 #else
1482 register unsigned char **new_argv;
1483 #endif
1484 register int i;
1485 int count = SPECPDL_INDEX ();
1486
1487 buffer = args[1];
1488 if (!NILP (buffer))
1489 buffer = Fget_buffer_create (buffer);
1490
1491 /* Make sure that the child will be able to chdir to the current
1492 buffer's current directory, or its unhandled equivalent. We
1493 can't just have the child check for an error when it does the
1494 chdir, since it's in a vfork.
1495
1496 We have to GCPRO around this because Fexpand_file_name and
1497 Funhandled_file_name_directory might call a file name handling
1498 function. The argument list is protected by the caller, so all
1499 we really have to worry about is buffer. */
1500 {
1501 struct gcpro gcpro1, gcpro2;
1502
1503 current_dir = current_buffer->directory;
1504
1505 GCPRO2 (buffer, current_dir);
1506
1507 current_dir
1508 = expand_and_dir_to_file (Funhandled_file_name_directory (current_dir),
1509 Qnil);
1510 if (NILP (Ffile_accessible_directory_p (current_dir)))
1511 report_file_error ("Setting current directory",
1512 Fcons (current_buffer->directory, Qnil));
1513
1514 UNGCPRO;
1515 }
1516
1517 name = args[0];
1518 CHECK_STRING (name);
1519
1520 program = args[2];
1521
1522 CHECK_STRING (program);
1523
1524 proc = make_process (name);
1525 /* If an error occurs and we can't start the process, we want to
1526 remove it from the process list. This means that each error
1527 check in create_process doesn't need to call remove_process
1528 itself; it's all taken care of here. */
1529 record_unwind_protect (start_process_unwind, proc);
1530
1531 XPROCESS (proc)->childp = Qt;
1532 XPROCESS (proc)->plist = Qnil;
1533 XPROCESS (proc)->command_channel_p = Qnil;
1534 XPROCESS (proc)->buffer = buffer;
1535 XPROCESS (proc)->sentinel = Qnil;
1536 XPROCESS (proc)->filter = Qnil;
1537 XPROCESS (proc)->filter_multibyte
1538 = buffer_defaults.enable_multibyte_characters;
1539 XPROCESS (proc)->command = Flist (nargs - 2, args + 2);
1540
1541 #ifdef ADAPTIVE_READ_BUFFERING
1542 XPROCESS (proc)->adaptive_read_buffering = Vprocess_adaptive_read_buffering;
1543 #endif
1544
1545 /* Make the process marker point into the process buffer (if any). */
1546 if (!NILP (buffer))
1547 set_marker_both (XPROCESS (proc)->mark, buffer,
1548 BUF_ZV (XBUFFER (buffer)),
1549 BUF_ZV_BYTE (XBUFFER (buffer)));
1550
1551 {
1552 /* Decide coding systems for communicating with the process. Here
1553 we don't setup the structure coding_system nor pay attention to
1554 unibyte mode. They are done in create_process. */
1555
1556 /* Qt denotes we have not yet called Ffind_operation_coding_system. */
1557 Lisp_Object coding_systems = Qt;
1558 Lisp_Object val, *args2;
1559 struct gcpro gcpro1, gcpro2;
1560
1561 val = Vcoding_system_for_read;
1562 if (NILP (val))
1563 {
1564 args2 = (Lisp_Object *) alloca ((nargs + 1) * sizeof *args2);
1565 args2[0] = Qstart_process;
1566 for (i = 0; i < nargs; i++) args2[i + 1] = args[i];
1567 GCPRO2 (proc, current_dir);
1568 coding_systems = Ffind_operation_coding_system (nargs + 1, args2);
1569 UNGCPRO;
1570 if (CONSP (coding_systems))
1571 val = XCAR (coding_systems);
1572 else if (CONSP (Vdefault_process_coding_system))
1573 val = XCAR (Vdefault_process_coding_system);
1574 }
1575 XPROCESS (proc)->decode_coding_system = val;
1576
1577 val = Vcoding_system_for_write;
1578 if (NILP (val))
1579 {
1580 if (EQ (coding_systems, Qt))
1581 {
1582 args2 = (Lisp_Object *) alloca ((nargs + 1) * sizeof args2);
1583 args2[0] = Qstart_process;
1584 for (i = 0; i < nargs; i++) args2[i + 1] = args[i];
1585 GCPRO2 (proc, current_dir);
1586 coding_systems = Ffind_operation_coding_system (nargs + 1, args2);
1587 UNGCPRO;
1588 }
1589 if (CONSP (coding_systems))
1590 val = XCDR (coding_systems);
1591 else if (CONSP (Vdefault_process_coding_system))
1592 val = XCDR (Vdefault_process_coding_system);
1593 }
1594 XPROCESS (proc)->encode_coding_system = val;
1595 }
1596
1597 #ifdef VMS
1598 /* Make a one member argv with all args concatenated
1599 together separated by a blank. */
1600 len = SBYTES (program) + 2;
1601 for (i = 3; i < nargs; i++)
1602 {
1603 tem = args[i];
1604 CHECK_STRING (tem);
1605 len += SBYTES (tem) + 1; /* count the blank */
1606 }
1607 new_argv = (unsigned char *) alloca (len);
1608 strcpy (new_argv, SDATA (program));
1609 for (i = 3; i < nargs; i++)
1610 {
1611 tem = args[i];
1612 CHECK_STRING (tem);
1613 strcat (new_argv, " ");
1614 strcat (new_argv, SDATA (tem));
1615 }
1616 /* Need to add code here to check for program existence on VMS */
1617
1618 #else /* not VMS */
1619 new_argv = (unsigned char **) alloca ((nargs - 1) * sizeof (char *));
1620
1621 /* If program file name is not absolute, search our path for it.
1622 Put the name we will really use in TEM. */
1623 if (!IS_DIRECTORY_SEP (SREF (program, 0))
1624 && !(SCHARS (program) > 1
1625 && IS_DEVICE_SEP (SREF (program, 1))))
1626 {
1627 struct gcpro gcpro1, gcpro2, gcpro3, gcpro4;
1628
1629 tem = Qnil;
1630 GCPRO4 (name, program, buffer, current_dir);
1631 openp (Vexec_path, program, Vexec_suffixes, &tem, make_number (X_OK));
1632 UNGCPRO;
1633 if (NILP (tem))
1634 report_file_error ("Searching for program", Fcons (program, Qnil));
1635 tem = Fexpand_file_name (tem, Qnil);
1636 }
1637 else
1638 {
1639 if (!NILP (Ffile_directory_p (program)))
1640 error ("Specified program for new process is a directory");
1641 tem = program;
1642 }
1643
1644 /* If program file name starts with /: for quoting a magic name,
1645 discard that. */
1646 if (SBYTES (tem) > 2 && SREF (tem, 0) == '/'
1647 && SREF (tem, 1) == ':')
1648 tem = Fsubstring (tem, make_number (2), Qnil);
1649
1650 /* Encode the file name and put it in NEW_ARGV.
1651 That's where the child will use it to execute the program. */
1652 tem = ENCODE_FILE (tem);
1653 new_argv[0] = SDATA (tem);
1654
1655 /* Here we encode arguments by the coding system used for sending
1656 data to the process. We don't support using different coding
1657 systems for encoding arguments and for encoding data sent to the
1658 process. */
1659
1660 for (i = 3; i < nargs; i++)
1661 {
1662 tem = args[i];
1663 CHECK_STRING (tem);
1664 if (STRING_MULTIBYTE (tem))
1665 tem = (code_convert_string_norecord
1666 (tem, XPROCESS (proc)->encode_coding_system, 1));
1667 new_argv[i - 2] = SDATA (tem);
1668 }
1669 new_argv[i - 2] = 0;
1670 #endif /* not VMS */
1671
1672 XPROCESS (proc)->decoding_buf = make_uninit_string (0);
1673 XPROCESS (proc)->decoding_carryover = make_number (0);
1674 XPROCESS (proc)->encoding_buf = make_uninit_string (0);
1675 XPROCESS (proc)->encoding_carryover = make_number (0);
1676
1677 XPROCESS (proc)->inherit_coding_system_flag
1678 = (NILP (buffer) || !inherit_process_coding_system
1679 ? Qnil : Qt);
1680
1681 create_process (proc, (char **) new_argv, current_dir);
1682
1683 return unbind_to (count, proc);
1684 }
1685
1686 /* This function is the unwind_protect form for Fstart_process. If
1687 PROC doesn't have its pid set, then we know someone has signaled
1688 an error and the process wasn't started successfully, so we should
1689 remove it from the process list. */
1690 static Lisp_Object
1691 start_process_unwind (proc)
1692 Lisp_Object proc;
1693 {
1694 if (!PROCESSP (proc))
1695 abort ();
1696
1697 /* Was PROC started successfully? */
1698 if (XINT (XPROCESS (proc)->pid) <= 0)
1699 remove_process (proc);
1700
1701 return Qnil;
1702 }
1703
1704 void
1705 create_process_1 (timer)
1706 struct atimer *timer;
1707 {
1708 /* Nothing to do. */
1709 }
1710
1711
1712 #if 0 /* This doesn't work; see the note before sigchld_handler. */
1713 #ifdef USG
1714 #ifdef SIGCHLD
1715 /* Mimic blocking of signals on system V, which doesn't really have it. */
1716
1717 /* Nonzero means we got a SIGCHLD when it was supposed to be blocked. */
1718 int sigchld_deferred;
1719
1720 SIGTYPE
1721 create_process_sigchld ()
1722 {
1723 signal (SIGCHLD, create_process_sigchld);
1724
1725 sigchld_deferred = 1;
1726 }
1727 #endif
1728 #endif
1729 #endif
1730
1731 #ifndef VMS /* VMS version of this function is in vmsproc.c. */
1732 void
1733 create_process (process, new_argv, current_dir)
1734 Lisp_Object process;
1735 char **new_argv;
1736 Lisp_Object current_dir;
1737 {
1738 int pid, inchannel, outchannel;
1739 int sv[2];
1740 #ifdef POSIX_SIGNALS
1741 sigset_t procmask;
1742 sigset_t blocked;
1743 struct sigaction sigint_action;
1744 struct sigaction sigquit_action;
1745 #ifdef AIX
1746 struct sigaction sighup_action;
1747 #endif
1748 #else /* !POSIX_SIGNALS */
1749 #if 0
1750 #ifdef SIGCHLD
1751 SIGTYPE (*sigchld)();
1752 #endif
1753 #endif /* 0 */
1754 #endif /* !POSIX_SIGNALS */
1755 /* Use volatile to protect variables from being clobbered by longjmp. */
1756 volatile int forkin, forkout;
1757 volatile int pty_flag = 0;
1758 #ifndef USE_CRT_DLL
1759 extern char **environ;
1760 #endif
1761
1762 inchannel = outchannel = -1;
1763
1764 #ifdef HAVE_PTYS
1765 if (!NILP (Vprocess_connection_type))
1766 outchannel = inchannel = allocate_pty ();
1767
1768 if (inchannel >= 0)
1769 {
1770 #if ! defined (USG) || defined (USG_SUBTTY_WORKS)
1771 /* On most USG systems it does not work to open the pty's tty here,
1772 then close it and reopen it in the child. */
1773 #ifdef O_NOCTTY
1774 /* Don't let this terminal become our controlling terminal
1775 (in case we don't have one). */
1776 forkout = forkin = emacs_open (pty_name, O_RDWR | O_NOCTTY, 0);
1777 #else
1778 forkout = forkin = emacs_open (pty_name, O_RDWR, 0);
1779 #endif
1780 if (forkin < 0)
1781 report_file_error ("Opening pty", Qnil);
1782 #else
1783 forkin = forkout = -1;
1784 #endif /* not USG, or USG_SUBTTY_WORKS */
1785 pty_flag = 1;
1786 }
1787 else
1788 #endif /* HAVE_PTYS */
1789 #ifdef SKTPAIR
1790 {
1791 if (socketpair (AF_UNIX, SOCK_STREAM, 0, sv) < 0)
1792 report_file_error ("Opening socketpair", Qnil);
1793 outchannel = inchannel = sv[0];
1794 forkout = forkin = sv[1];
1795 }
1796 #else /* not SKTPAIR */
1797 {
1798 int tem;
1799 tem = pipe (sv);
1800 if (tem < 0)
1801 report_file_error ("Creating pipe", Qnil);
1802 inchannel = sv[0];
1803 forkout = sv[1];
1804 tem = pipe (sv);
1805 if (tem < 0)
1806 {
1807 emacs_close (inchannel);
1808 emacs_close (forkout);
1809 report_file_error ("Creating pipe", Qnil);
1810 }
1811 outchannel = sv[1];
1812 forkin = sv[0];
1813 }
1814 #endif /* not SKTPAIR */
1815
1816 #if 0
1817 /* Replaced by close_process_descs */
1818 set_exclusive_use (inchannel);
1819 set_exclusive_use (outchannel);
1820 #endif
1821
1822 /* Stride people say it's a mystery why this is needed
1823 as well as the O_NDELAY, but that it fails without this. */
1824 #if defined (STRIDE) || (defined (pfa) && defined (HAVE_PTYS))
1825 {
1826 int one = 1;
1827 ioctl (inchannel, FIONBIO, &one);
1828 }
1829 #endif
1830
1831 #ifdef O_NONBLOCK
1832 fcntl (inchannel, F_SETFL, O_NONBLOCK);
1833 fcntl (outchannel, F_SETFL, O_NONBLOCK);
1834 #else
1835 #ifdef O_NDELAY
1836 fcntl (inchannel, F_SETFL, O_NDELAY);
1837 fcntl (outchannel, F_SETFL, O_NDELAY);
1838 #endif
1839 #endif
1840
1841 /* Record this as an active process, with its channels.
1842 As a result, child_setup will close Emacs's side of the pipes. */
1843 chan_process[inchannel] = process;
1844 XSETINT (XPROCESS (process)->infd, inchannel);
1845 XSETINT (XPROCESS (process)->outfd, outchannel);
1846
1847 /* Previously we recorded the tty descriptor used in the subprocess.
1848 It was only used for getting the foreground tty process, so now
1849 we just reopen the device (see emacs_get_tty_pgrp) as this is
1850 more portable (see USG_SUBTTY_WORKS above). */
1851
1852 XPROCESS (process)->pty_flag = (pty_flag ? Qt : Qnil);
1853 XPROCESS (process)->status = Qrun;
1854 setup_process_coding_systems (process);
1855
1856 /* Delay interrupts until we have a chance to store
1857 the new fork's pid in its process structure */
1858 #ifdef POSIX_SIGNALS
1859 sigemptyset (&blocked);
1860 #ifdef SIGCHLD
1861 sigaddset (&blocked, SIGCHLD);
1862 #endif
1863 #ifdef HAVE_WORKING_VFORK
1864 /* On many hosts (e.g. Solaris 2.4), if a vforked child calls `signal',
1865 this sets the parent's signal handlers as well as the child's.
1866 So delay all interrupts whose handlers the child might munge,
1867 and record the current handlers so they can be restored later. */
1868 sigaddset (&blocked, SIGINT ); sigaction (SIGINT , 0, &sigint_action );
1869 sigaddset (&blocked, SIGQUIT); sigaction (SIGQUIT, 0, &sigquit_action);
1870 #ifdef AIX
1871 sigaddset (&blocked, SIGHUP ); sigaction (SIGHUP , 0, &sighup_action );
1872 #endif
1873 #endif /* HAVE_WORKING_VFORK */
1874 sigprocmask (SIG_BLOCK, &blocked, &procmask);
1875 #else /* !POSIX_SIGNALS */
1876 #ifdef SIGCHLD
1877 #ifdef BSD4_1
1878 sighold (SIGCHLD);
1879 #else /* not BSD4_1 */
1880 #if defined (BSD_SYSTEM) || defined (UNIPLUS) || defined (HPUX)
1881 sigsetmask (sigmask (SIGCHLD));
1882 #else /* ordinary USG */
1883 #if 0
1884 sigchld_deferred = 0;
1885 sigchld = signal (SIGCHLD, create_process_sigchld);
1886 #endif
1887 #endif /* ordinary USG */
1888 #endif /* not BSD4_1 */
1889 #endif /* SIGCHLD */
1890 #endif /* !POSIX_SIGNALS */
1891
1892 FD_SET (inchannel, &input_wait_mask);
1893 FD_SET (inchannel, &non_keyboard_wait_mask);
1894 if (inchannel > max_process_desc)
1895 max_process_desc = inchannel;
1896
1897 /* Until we store the proper pid, enable sigchld_handler
1898 to recognize an unknown pid as standing for this process.
1899 It is very important not to let this `marker' value stay
1900 in the table after this function has returned; if it does
1901 it might cause call-process to hang and subsequent asynchronous
1902 processes to get their return values scrambled. */
1903 XSETINT (XPROCESS (process)->pid, -1);
1904
1905 BLOCK_INPUT;
1906
1907 {
1908 /* child_setup must clobber environ on systems with true vfork.
1909 Protect it from permanent change. */
1910 char **save_environ = environ;
1911
1912 current_dir = ENCODE_FILE (current_dir);
1913
1914 #ifndef WINDOWSNT
1915 pid = vfork ();
1916 if (pid == 0)
1917 #endif /* not WINDOWSNT */
1918 {
1919 int xforkin = forkin;
1920 int xforkout = forkout;
1921
1922 #if 0 /* This was probably a mistake--it duplicates code later on,
1923 but fails to handle all the cases. */
1924 /* Make sure SIGCHLD is not blocked in the child. */
1925 sigsetmask (SIGEMPTYMASK);
1926 #endif
1927
1928 /* Make the pty be the controlling terminal of the process. */
1929 #ifdef HAVE_PTYS
1930 /* First, disconnect its current controlling terminal. */
1931 #ifdef HAVE_SETSID
1932 /* We tried doing setsid only if pty_flag, but it caused
1933 process_set_signal to fail on SGI when using a pipe. */
1934 setsid ();
1935 /* Make the pty's terminal the controlling terminal. */
1936 if (pty_flag)
1937 {
1938 #ifdef TIOCSCTTY
1939 /* We ignore the return value
1940 because faith@cs.unc.edu says that is necessary on Linux. */
1941 ioctl (xforkin, TIOCSCTTY, 0);
1942 #endif
1943 }
1944 #else /* not HAVE_SETSID */
1945 #ifdef USG
1946 /* It's very important to call setpgrp here and no time
1947 afterwards. Otherwise, we lose our controlling tty which
1948 is set when we open the pty. */
1949 setpgrp ();
1950 #endif /* USG */
1951 #endif /* not HAVE_SETSID */
1952 #if defined (HAVE_TERMIOS) && defined (LDISC1)
1953 if (pty_flag && xforkin >= 0)
1954 {
1955 struct termios t;
1956 tcgetattr (xforkin, &t);
1957 t.c_lflag = LDISC1;
1958 if (tcsetattr (xforkin, TCSANOW, &t) < 0)
1959 emacs_write (1, "create_process/tcsetattr LDISC1 failed\n", 39);
1960 }
1961 #else
1962 #if defined (NTTYDISC) && defined (TIOCSETD)
1963 if (pty_flag && xforkin >= 0)
1964 {
1965 /* Use new line discipline. */
1966 int ldisc = NTTYDISC;
1967 ioctl (xforkin, TIOCSETD, &ldisc);
1968 }
1969 #endif
1970 #endif
1971 #ifdef TIOCNOTTY
1972 /* In 4.3BSD, the TIOCSPGRP bug has been fixed, and now you
1973 can do TIOCSPGRP only to the process's controlling tty. */
1974 if (pty_flag)
1975 {
1976 /* I wonder: would just ioctl (0, TIOCNOTTY, 0) work here?
1977 I can't test it since I don't have 4.3. */
1978 int j = emacs_open ("/dev/tty", O_RDWR, 0);
1979 ioctl (j, TIOCNOTTY, 0);
1980 emacs_close (j);
1981 #ifndef USG
1982 /* In order to get a controlling terminal on some versions
1983 of BSD, it is necessary to put the process in pgrp 0
1984 before it opens the terminal. */
1985 #ifdef HAVE_SETPGID
1986 setpgid (0, 0);
1987 #else
1988 setpgrp (0, 0);
1989 #endif
1990 #endif
1991 }
1992 #endif /* TIOCNOTTY */
1993
1994 #if !defined (RTU) && !defined (UNIPLUS) && !defined (DONT_REOPEN_PTY)
1995 /*** There is a suggestion that this ought to be a
1996 conditional on TIOCSPGRP,
1997 or !(defined (HAVE_SETSID) && defined (TIOCSCTTY)).
1998 Trying the latter gave the wrong results on Debian GNU/Linux 1.1;
1999 that system does seem to need this code, even though
2000 both HAVE_SETSID and TIOCSCTTY are defined. */
2001 /* Now close the pty (if we had it open) and reopen it.
2002 This makes the pty the controlling terminal of the subprocess. */
2003 if (pty_flag)
2004 {
2005 #ifdef SET_CHILD_PTY_PGRP
2006 int pgrp = getpid ();
2007 #endif
2008
2009 /* I wonder if emacs_close (emacs_open (pty_name, ...))
2010 would work? */
2011 if (xforkin >= 0)
2012 emacs_close (xforkin);
2013 xforkout = xforkin = emacs_open (pty_name, O_RDWR, 0);
2014
2015 if (xforkin < 0)
2016 {
2017 emacs_write (1, "Couldn't open the pty terminal ", 31);
2018 emacs_write (1, pty_name, strlen (pty_name));
2019 emacs_write (1, "\n", 1);
2020 _exit (1);
2021 }
2022
2023 #ifdef SET_CHILD_PTY_PGRP
2024 ioctl (xforkin, TIOCSPGRP, &pgrp);
2025 ioctl (xforkout, TIOCSPGRP, &pgrp);
2026 #endif
2027 }
2028 #endif /* not UNIPLUS and not RTU and not DONT_REOPEN_PTY */
2029
2030 #ifdef SETUP_SLAVE_PTY
2031 if (pty_flag)
2032 {
2033 SETUP_SLAVE_PTY;
2034 }
2035 #endif /* SETUP_SLAVE_PTY */
2036 #ifdef AIX
2037 /* On AIX, we've disabled SIGHUP above once we start a child on a pty.
2038 Now reenable it in the child, so it will die when we want it to. */
2039 if (pty_flag)
2040 signal (SIGHUP, SIG_DFL);
2041 #endif
2042 #endif /* HAVE_PTYS */
2043
2044 signal (SIGINT, SIG_DFL);
2045 signal (SIGQUIT, SIG_DFL);
2046
2047 /* Stop blocking signals in the child. */
2048 #ifdef POSIX_SIGNALS
2049 sigprocmask (SIG_SETMASK, &procmask, 0);
2050 #else /* !POSIX_SIGNALS */
2051 #ifdef SIGCHLD
2052 #ifdef BSD4_1
2053 sigrelse (SIGCHLD);
2054 #else /* not BSD4_1 */
2055 #if defined (BSD_SYSTEM) || defined (UNIPLUS) || defined (HPUX)
2056 sigsetmask (SIGEMPTYMASK);
2057 #else /* ordinary USG */
2058 #if 0
2059 signal (SIGCHLD, sigchld);
2060 #endif
2061 #endif /* ordinary USG */
2062 #endif /* not BSD4_1 */
2063 #endif /* SIGCHLD */
2064 #endif /* !POSIX_SIGNALS */
2065
2066 if (pty_flag)
2067 child_setup_tty (xforkout);
2068 #ifdef WINDOWSNT
2069 pid = child_setup (xforkin, xforkout, xforkout,
2070 new_argv, 1, current_dir);
2071 #else /* not WINDOWSNT */
2072 child_setup (xforkin, xforkout, xforkout,
2073 new_argv, 1, current_dir);
2074 #endif /* not WINDOWSNT */
2075 }
2076 environ = save_environ;
2077 }
2078
2079 UNBLOCK_INPUT;
2080
2081 /* This runs in the Emacs process. */
2082 if (pid < 0)
2083 {
2084 if (forkin >= 0)
2085 emacs_close (forkin);
2086 if (forkin != forkout && forkout >= 0)
2087 emacs_close (forkout);
2088 }
2089 else
2090 {
2091 /* vfork succeeded. */
2092 XSETFASTINT (XPROCESS (process)->pid, pid);
2093
2094 #ifdef WINDOWSNT
2095 register_child (pid, inchannel);
2096 #endif /* WINDOWSNT */
2097
2098 /* If the subfork execv fails, and it exits,
2099 this close hangs. I don't know why.
2100 So have an interrupt jar it loose. */
2101 {
2102 struct atimer *timer;
2103 EMACS_TIME offset;
2104
2105 stop_polling ();
2106 EMACS_SET_SECS_USECS (offset, 1, 0);
2107 timer = start_atimer (ATIMER_RELATIVE, offset, create_process_1, 0);
2108
2109 if (forkin >= 0)
2110 emacs_close (forkin);
2111
2112 cancel_atimer (timer);
2113 start_polling ();
2114 }
2115
2116 if (forkin != forkout && forkout >= 0)
2117 emacs_close (forkout);
2118
2119 #ifdef HAVE_PTYS
2120 if (pty_flag)
2121 XPROCESS (process)->tty_name = build_string (pty_name);
2122 else
2123 #endif
2124 XPROCESS (process)->tty_name = Qnil;
2125 }
2126
2127 /* Restore the signal state whether vfork succeeded or not.
2128 (We will signal an error, below, if it failed.) */
2129 #ifdef POSIX_SIGNALS
2130 #ifdef HAVE_WORKING_VFORK
2131 /* Restore the parent's signal handlers. */
2132 sigaction (SIGINT, &sigint_action, 0);
2133 sigaction (SIGQUIT, &sigquit_action, 0);
2134 #ifdef AIX
2135 sigaction (SIGHUP, &sighup_action, 0);
2136 #endif
2137 #endif /* HAVE_WORKING_VFORK */
2138 /* Stop blocking signals in the parent. */
2139 sigprocmask (SIG_SETMASK, &procmask, 0);
2140 #else /* !POSIX_SIGNALS */
2141 #ifdef SIGCHLD
2142 #ifdef BSD4_1
2143 sigrelse (SIGCHLD);
2144 #else /* not BSD4_1 */
2145 #if defined (BSD_SYSTEM) || defined (UNIPLUS) || defined (HPUX)
2146 sigsetmask (SIGEMPTYMASK);
2147 #else /* ordinary USG */
2148 #if 0
2149 signal (SIGCHLD, sigchld);
2150 /* Now really handle any of these signals
2151 that came in during this function. */
2152 if (sigchld_deferred)
2153 kill (getpid (), SIGCHLD);
2154 #endif
2155 #endif /* ordinary USG */
2156 #endif /* not BSD4_1 */
2157 #endif /* SIGCHLD */
2158 #endif /* !POSIX_SIGNALS */
2159
2160 /* Now generate the error if vfork failed. */
2161 if (pid < 0)
2162 report_file_error ("Doing vfork", Qnil);
2163 }
2164 #endif /* not VMS */
2165
2166 \f
2167 #ifdef HAVE_SOCKETS
2168
2169 /* Convert an internal struct sockaddr to a lisp object (vector or string).
2170 The address family of sa is not included in the result. */
2171
2172 static Lisp_Object
2173 conv_sockaddr_to_lisp (sa, len)
2174 struct sockaddr *sa;
2175 int len;
2176 {
2177 Lisp_Object address;
2178 int i;
2179 unsigned char *cp;
2180 register struct Lisp_Vector *p;
2181
2182 switch (sa->sa_family)
2183 {
2184 case AF_INET:
2185 {
2186 struct sockaddr_in *sin = (struct sockaddr_in *) sa;
2187 len = sizeof (sin->sin_addr) + 1;
2188 address = Fmake_vector (make_number (len), Qnil);
2189 p = XVECTOR (address);
2190 p->contents[--len] = make_number (ntohs (sin->sin_port));
2191 cp = (unsigned char *)&sin->sin_addr;
2192 break;
2193 }
2194 #ifdef HAVE_LOCAL_SOCKETS
2195 case AF_LOCAL:
2196 {
2197 struct sockaddr_un *sockun = (struct sockaddr_un *) sa;
2198 for (i = 0; i < sizeof (sockun->sun_path); i++)
2199 if (sockun->sun_path[i] == 0)
2200 break;
2201 return make_unibyte_string (sockun->sun_path, i);
2202 }
2203 #endif
2204 default:
2205 len -= sizeof (sa->sa_family);
2206 address = Fcons (make_number (sa->sa_family),
2207 Fmake_vector (make_number (len), Qnil));
2208 p = XVECTOR (XCDR (address));
2209 cp = (unsigned char *) sa + sizeof (sa->sa_family);
2210 break;
2211 }
2212
2213 i = 0;
2214 while (i < len)
2215 p->contents[i++] = make_number (*cp++);
2216
2217 return address;
2218 }
2219
2220
2221 /* Get family and required size for sockaddr structure to hold ADDRESS. */
2222
2223 static int
2224 get_lisp_to_sockaddr_size (address, familyp)
2225 Lisp_Object address;
2226 int *familyp;
2227 {
2228 register struct Lisp_Vector *p;
2229
2230 if (VECTORP (address))
2231 {
2232 p = XVECTOR (address);
2233 if (p->size == 5)
2234 {
2235 *familyp = AF_INET;
2236 return sizeof (struct sockaddr_in);
2237 }
2238 }
2239 #ifdef HAVE_LOCAL_SOCKETS
2240 else if (STRINGP (address))
2241 {
2242 *familyp = AF_LOCAL;
2243 return sizeof (struct sockaddr_un);
2244 }
2245 #endif
2246 else if (CONSP (address) && INTEGERP (XCAR (address)) && VECTORP (XCDR (address)))
2247 {
2248 struct sockaddr *sa;
2249 *familyp = XINT (XCAR (address));
2250 p = XVECTOR (XCDR (address));
2251 return p->size + sizeof (sa->sa_family);
2252 }
2253 return 0;
2254 }
2255
2256 /* Convert an address object (vector or string) to an internal sockaddr.
2257 Format of address has already been validated by size_lisp_to_sockaddr. */
2258
2259 static void
2260 conv_lisp_to_sockaddr (family, address, sa, len)
2261 int family;
2262 Lisp_Object address;
2263 struct sockaddr *sa;
2264 int len;
2265 {
2266 register struct Lisp_Vector *p;
2267 register unsigned char *cp = NULL;
2268 register int i;
2269
2270 bzero (sa, len);
2271 sa->sa_family = family;
2272
2273 if (VECTORP (address))
2274 {
2275 p = XVECTOR (address);
2276 if (family == AF_INET)
2277 {
2278 struct sockaddr_in *sin = (struct sockaddr_in *) sa;
2279 len = sizeof (sin->sin_addr) + 1;
2280 i = XINT (p->contents[--len]);
2281 sin->sin_port = htons (i);
2282 cp = (unsigned char *)&sin->sin_addr;
2283 }
2284 }
2285 else if (STRINGP (address))
2286 {
2287 #ifdef HAVE_LOCAL_SOCKETS
2288 if (family == AF_LOCAL)
2289 {
2290 struct sockaddr_un *sockun = (struct sockaddr_un *) sa;
2291 cp = SDATA (address);
2292 for (i = 0; i < sizeof (sockun->sun_path) && *cp; i++)
2293 sockun->sun_path[i] = *cp++;
2294 }
2295 #endif
2296 return;
2297 }
2298 else
2299 {
2300 p = XVECTOR (XCDR (address));
2301 cp = (unsigned char *)sa + sizeof (sa->sa_family);
2302 }
2303
2304 for (i = 0; i < len; i++)
2305 if (INTEGERP (p->contents[i]))
2306 *cp++ = XFASTINT (p->contents[i]) & 0xff;
2307 }
2308
2309 #ifdef DATAGRAM_SOCKETS
2310 DEFUN ("process-datagram-address", Fprocess_datagram_address, Sprocess_datagram_address,
2311 1, 1, 0,
2312 doc: /* Get the current datagram address associated with PROCESS. */)
2313 (process)
2314 Lisp_Object process;
2315 {
2316 int channel;
2317
2318 CHECK_PROCESS (process);
2319
2320 if (!DATAGRAM_CONN_P (process))
2321 return Qnil;
2322
2323 channel = XINT (XPROCESS (process)->infd);
2324 return conv_sockaddr_to_lisp (datagram_address[channel].sa,
2325 datagram_address[channel].len);
2326 }
2327
2328 DEFUN ("set-process-datagram-address", Fset_process_datagram_address, Sset_process_datagram_address,
2329 2, 2, 0,
2330 doc: /* Set the datagram address for PROCESS to ADDRESS.
2331 Returns nil upon error setting address, ADDRESS otherwise. */)
2332 (process, address)
2333 Lisp_Object process, address;
2334 {
2335 int channel;
2336 int family, len;
2337
2338 CHECK_PROCESS (process);
2339
2340 if (!DATAGRAM_CONN_P (process))
2341 return Qnil;
2342
2343 channel = XINT (XPROCESS (process)->infd);
2344
2345 len = get_lisp_to_sockaddr_size (address, &family);
2346 if (datagram_address[channel].len != len)
2347 return Qnil;
2348 conv_lisp_to_sockaddr (family, address, datagram_address[channel].sa, len);
2349 return address;
2350 }
2351 #endif
2352 \f
2353
2354 static struct socket_options {
2355 /* The name of this option. Should be lowercase version of option
2356 name without SO_ prefix. */
2357 char *name;
2358 /* Option level SOL_... */
2359 int optlevel;
2360 /* Option number SO_... */
2361 int optnum;
2362 enum { SOPT_UNKNOWN, SOPT_BOOL, SOPT_INT, SOPT_IFNAME, SOPT_LINGER } opttype;
2363 enum { OPIX_NONE=0, OPIX_MISC=1, OPIX_REUSEADDR=2 } optbit;
2364 } socket_options[] =
2365 {
2366 #ifdef SO_BINDTODEVICE
2367 { ":bindtodevice", SOL_SOCKET, SO_BINDTODEVICE, SOPT_IFNAME, OPIX_MISC },
2368 #endif
2369 #ifdef SO_BROADCAST
2370 { ":broadcast", SOL_SOCKET, SO_BROADCAST, SOPT_BOOL, OPIX_MISC },
2371 #endif
2372 #ifdef SO_DONTROUTE
2373 { ":dontroute", SOL_SOCKET, SO_DONTROUTE, SOPT_BOOL, OPIX_MISC },
2374 #endif
2375 #ifdef SO_KEEPALIVE
2376 { ":keepalive", SOL_SOCKET, SO_KEEPALIVE, SOPT_BOOL, OPIX_MISC },
2377 #endif
2378 #ifdef SO_LINGER
2379 { ":linger", SOL_SOCKET, SO_LINGER, SOPT_LINGER, OPIX_MISC },
2380 #endif
2381 #ifdef SO_OOBINLINE
2382 { ":oobinline", SOL_SOCKET, SO_OOBINLINE, SOPT_BOOL, OPIX_MISC },
2383 #endif
2384 #ifdef SO_PRIORITY
2385 { ":priority", SOL_SOCKET, SO_PRIORITY, SOPT_INT, OPIX_MISC },
2386 #endif
2387 #ifdef SO_REUSEADDR
2388 { ":reuseaddr", SOL_SOCKET, SO_REUSEADDR, SOPT_BOOL, OPIX_REUSEADDR },
2389 #endif
2390 { 0, 0, 0, SOPT_UNKNOWN, OPIX_NONE }
2391 };
2392
2393 /* Set option OPT to value VAL on socket S.
2394
2395 Returns (1<<socket_options[OPT].optbit) if option is known, 0 otherwise.
2396 Signals an error if setting a known option fails.
2397 */
2398
2399 static int
2400 set_socket_option (s, opt, val)
2401 int s;
2402 Lisp_Object opt, val;
2403 {
2404 char *name;
2405 struct socket_options *sopt;
2406 int ret = 0;
2407
2408 CHECK_SYMBOL (opt);
2409
2410 name = (char *) SDATA (SYMBOL_NAME (opt));
2411 for (sopt = socket_options; sopt->name; sopt++)
2412 if (strcmp (name, sopt->name) == 0)
2413 break;
2414
2415 switch (sopt->opttype)
2416 {
2417 case SOPT_BOOL:
2418 {
2419 int optval;
2420 optval = NILP (val) ? 0 : 1;
2421 ret = setsockopt (s, sopt->optlevel, sopt->optnum,
2422 &optval, sizeof (optval));
2423 break;
2424 }
2425
2426 case SOPT_INT:
2427 {
2428 int optval;
2429 if (INTEGERP (val))
2430 optval = XINT (val);
2431 else
2432 error ("Bad option value for %s", name);
2433 ret = setsockopt (s, sopt->optlevel, sopt->optnum,
2434 &optval, sizeof (optval));
2435 break;
2436 }
2437
2438 #ifdef SO_BINDTODEVICE
2439 case SOPT_IFNAME:
2440 {
2441 char devname[IFNAMSIZ+1];
2442
2443 /* This is broken, at least in the Linux 2.4 kernel.
2444 To unbind, the arg must be a zero integer, not the empty string.
2445 This should work on all systems. KFS. 2003-09-23. */
2446 bzero (devname, sizeof devname);
2447 if (STRINGP (val))
2448 {
2449 char *arg = (char *) SDATA (val);
2450 int len = min (strlen (arg), IFNAMSIZ);
2451 bcopy (arg, devname, len);
2452 }
2453 else if (!NILP (val))
2454 error ("Bad option value for %s", name);
2455 ret = setsockopt (s, sopt->optlevel, sopt->optnum,
2456 devname, IFNAMSIZ);
2457 break;
2458 }
2459 #endif
2460
2461 #ifdef SO_LINGER
2462 case SOPT_LINGER:
2463 {
2464 struct linger linger;
2465
2466 linger.l_onoff = 1;
2467 linger.l_linger = 0;
2468 if (INTEGERP (val))
2469 linger.l_linger = XINT (val);
2470 else
2471 linger.l_onoff = NILP (val) ? 0 : 1;
2472 ret = setsockopt (s, sopt->optlevel, sopt->optnum,
2473 &linger, sizeof (linger));
2474 break;
2475 }
2476 #endif
2477
2478 default:
2479 return 0;
2480 }
2481
2482 if (ret < 0)
2483 report_file_error ("Cannot set network option",
2484 Fcons (opt, Fcons (val, Qnil)));
2485 return (1 << sopt->optbit);
2486 }
2487
2488
2489 DEFUN ("set-network-process-option",
2490 Fset_network_process_option, Sset_network_process_option,
2491 3, 4, 0,
2492 doc: /* For network process PROCESS set option OPTION to value VALUE.
2493 See `make-network-process' for a list of options and values.
2494 If optional fourth arg NO-ERROR is non-nil, don't signal an error if
2495 OPTION is not a supported option, return nil instead; otherwise return t. */)
2496 (process, option, value, no_error)
2497 Lisp_Object process, option, value;
2498 Lisp_Object no_error;
2499 {
2500 int s;
2501 struct Lisp_Process *p;
2502
2503 CHECK_PROCESS (process);
2504 p = XPROCESS (process);
2505 if (!NETCONN1_P (p))
2506 error ("Process is not a network process");
2507
2508 s = XINT (p->infd);
2509 if (s < 0)
2510 error ("Process is not running");
2511
2512 if (set_socket_option (s, option, value))
2513 {
2514 p->childp = Fplist_put (p->childp, option, value);
2515 return Qt;
2516 }
2517
2518 if (NILP (no_error))
2519 error ("Unknown or unsupported option");
2520
2521 return Qnil;
2522 }
2523
2524 \f
2525 /* A version of request_sigio suitable for a record_unwind_protect. */
2526
2527 Lisp_Object
2528 unwind_request_sigio (dummy)
2529 Lisp_Object dummy;
2530 {
2531 if (interrupt_input)
2532 request_sigio ();
2533 return Qnil;
2534 }
2535
2536 /* Create a network stream/datagram client/server process. Treated
2537 exactly like a normal process when reading and writing. Primary
2538 differences are in status display and process deletion. A network
2539 connection has no PID; you cannot signal it. All you can do is
2540 stop/continue it and deactivate/close it via delete-process */
2541
2542 DEFUN ("make-network-process", Fmake_network_process, Smake_network_process,
2543 0, MANY, 0,
2544 doc: /* Create and return a network server or client process.
2545
2546 In Emacs, network connections are represented by process objects, so
2547 input and output work as for subprocesses and `delete-process' closes
2548 a network connection. However, a network process has no process id,
2549 it cannot be signalled, and the status codes are different from normal
2550 processes.
2551
2552 Arguments are specified as keyword/argument pairs. The following
2553 arguments are defined:
2554
2555 :name NAME -- NAME is name for process. It is modified if necessary
2556 to make it unique.
2557
2558 :buffer BUFFER -- BUFFER is the buffer (or buffer-name) to associate
2559 with the process. Process output goes at end of that buffer, unless
2560 you specify an output stream or filter function to handle the output.
2561 BUFFER may be also nil, meaning that this process is not associated
2562 with any buffer.
2563
2564 :host HOST -- HOST is name of the host to connect to, or its IP
2565 address. The symbol `local' specifies the local host. If specified
2566 for a server process, it must be a valid name or address for the local
2567 host, and only clients connecting to that address will be accepted.
2568
2569 :service SERVICE -- SERVICE is name of the service desired, or an
2570 integer specifying a port number to connect to. If SERVICE is t,
2571 a random port number is selected for the server.
2572
2573 :type TYPE -- TYPE is the type of connection. The default (nil) is a
2574 stream type connection, `datagram' creates a datagram type connection.
2575
2576 :family FAMILY -- FAMILY is the address (and protocol) family for the
2577 service specified by HOST and SERVICE. The default address family is
2578 Inet (or IPv4) for the host and port number specified by HOST and
2579 SERVICE. Other address families supported are:
2580 local -- for a local (i.e. UNIX) address specified by SERVICE.
2581
2582 :local ADDRESS -- ADDRESS is the local address used for the connection.
2583 This parameter is ignored when opening a client process. When specified
2584 for a server process, the FAMILY, HOST and SERVICE args are ignored.
2585
2586 :remote ADDRESS -- ADDRESS is the remote partner's address for the
2587 connection. This parameter is ignored when opening a stream server
2588 process. For a datagram server process, it specifies the initial
2589 setting of the remote datagram address. When specified for a client
2590 process, the FAMILY, HOST, and SERVICE args are ignored.
2591
2592 The format of ADDRESS depends on the address family:
2593 - An IPv4 address is represented as an vector of integers [A B C D P]
2594 corresponding to numeric IP address A.B.C.D and port number P.
2595 - A local address is represented as a string with the address in the
2596 local address space.
2597 - An "unsupported family" address is represented by a cons (F . AV)
2598 where F is the family number and AV is a vector containing the socket
2599 address data with one element per address data byte. Do not rely on
2600 this format in portable code, as it may depend on implementation
2601 defined constants, data sizes, and data structure alignment.
2602
2603 :coding CODING -- If CODING is a symbol, it specifies the coding
2604 system used for both reading and writing for this process. If CODING
2605 is a cons (DECODING . ENCODING), DECODING is used for reading, and
2606 ENCODING is used for writing.
2607
2608 :nowait BOOL -- If BOOL is non-nil for a stream type client process,
2609 return without waiting for the connection to complete; instead, the
2610 sentinel function will be called with second arg matching "open" (if
2611 successful) or "failed" when the connect completes. Default is to use
2612 a blocking connect (i.e. wait) for stream type connections.
2613
2614 :noquery BOOL -- Query the user unless BOOL is non-nil, and process is
2615 running when Emacs is exited.
2616
2617 :stop BOOL -- Start process in the `stopped' state if BOOL non-nil.
2618 In the stopped state, a server process does not accept new
2619 connections, and a client process does not handle incoming traffic.
2620 The stopped state is cleared by `continue-process' and set by
2621 `stop-process'.
2622
2623 :filter FILTER -- Install FILTER as the process filter.
2624
2625 :filter-multibyte BOOL -- If BOOL is non-nil, strings given to the
2626 process filter are multibyte, otherwise they are unibyte.
2627 If this keyword is not specified, the strings are multibyte iff
2628 `default-enable-multibyte-characters' is non-nil.
2629
2630 :sentinel SENTINEL -- Install SENTINEL as the process sentinel.
2631
2632 :log LOG -- Install LOG as the server process log function. This
2633 function is called when the server accepts a network connection from a
2634 client. The arguments are SERVER, CLIENT, and MESSAGE, where SERVER
2635 is the server process, CLIENT is the new process for the connection,
2636 and MESSAGE is a string.
2637
2638 :plist PLIST -- Install PLIST as the new process' initial plist.
2639
2640 :server QLEN -- if QLEN is non-nil, create a server process for the
2641 specified FAMILY, SERVICE, and connection type (stream or datagram).
2642 If QLEN is an integer, it is used as the max. length of the server's
2643 pending connection queue (also known as the backlog); the default
2644 queue length is 5. Default is to create a client process.
2645
2646 The following network options can be specified for this connection:
2647
2648 :broadcast BOOL -- Allow send and receive of datagram broadcasts.
2649 :dontroute BOOL -- Only send to directly connected hosts.
2650 :keepalive BOOL -- Send keep-alive messages on network stream.
2651 :linger BOOL or TIMEOUT -- Send queued messages before closing.
2652 :oobinline BOOL -- Place out-of-band data in receive data stream.
2653 :priority INT -- Set protocol defined priority for sent packets.
2654 :reuseaddr BOOL -- Allow reusing a recently used local address
2655 (this is allowed by default for a server process).
2656 :bindtodevice NAME -- bind to interface NAME. Using this may require
2657 special privileges on some systems.
2658
2659 Consult the relevant system programmer's manual pages for more
2660 information on using these options.
2661
2662
2663 A server process will listen for and accept connections from clients.
2664 When a client connection is accepted, a new network process is created
2665 for the connection with the following parameters:
2666
2667 - The client's process name is constructed by concatenating the server
2668 process' NAME and a client identification string.
2669 - If the FILTER argument is non-nil, the client process will not get a
2670 separate process buffer; otherwise, the client's process buffer is a newly
2671 created buffer named after the server process' BUFFER name or process
2672 NAME concatenated with the client identification string.
2673 - The connection type and the process filter and sentinel parameters are
2674 inherited from the server process' TYPE, FILTER and SENTINEL.
2675 - The client process' contact info is set according to the client's
2676 addressing information (typically an IP address and a port number).
2677 - The client process' plist is initialized from the server's plist.
2678
2679 Notice that the FILTER and SENTINEL args are never used directly by
2680 the server process. Also, the BUFFER argument is not used directly by
2681 the server process, but via the optional :log function, accepted (and
2682 failed) connections may be logged in the server process' buffer.
2683
2684 The original argument list, modified with the actual connection
2685 information, is available via the `process-contact' function.
2686
2687 usage: (make-network-process &rest ARGS) */)
2688 (nargs, args)
2689 int nargs;
2690 Lisp_Object *args;
2691 {
2692 Lisp_Object proc;
2693 Lisp_Object contact;
2694 struct Lisp_Process *p;
2695 #ifdef HAVE_GETADDRINFO
2696 struct addrinfo ai, *res, *lres;
2697 struct addrinfo hints;
2698 char *portstring, portbuf[128];
2699 #else /* HAVE_GETADDRINFO */
2700 struct _emacs_addrinfo
2701 {
2702 int ai_family;
2703 int ai_socktype;
2704 int ai_protocol;
2705 int ai_addrlen;
2706 struct sockaddr *ai_addr;
2707 struct _emacs_addrinfo *ai_next;
2708 } ai, *res, *lres;
2709 #endif /* HAVE_GETADDRINFO */
2710 struct sockaddr_in address_in;
2711 #ifdef HAVE_LOCAL_SOCKETS
2712 struct sockaddr_un address_un;
2713 #endif
2714 int port;
2715 int ret = 0;
2716 int xerrno = 0;
2717 int s = -1, outch, inch;
2718 struct gcpro gcpro1;
2719 int retry = 0;
2720 int count = SPECPDL_INDEX ();
2721 int count1;
2722 Lisp_Object QCaddress; /* one of QClocal or QCremote */
2723 Lisp_Object tem;
2724 Lisp_Object name, buffer, host, service, address;
2725 Lisp_Object filter, sentinel;
2726 int is_non_blocking_client = 0;
2727 int is_server = 0, backlog = 5;
2728 int socktype;
2729 int family = -1;
2730
2731 if (nargs == 0)
2732 return Qnil;
2733
2734 /* Save arguments for process-contact and clone-process. */
2735 contact = Flist (nargs, args);
2736 GCPRO1 (contact);
2737
2738 #ifdef WINDOWSNT
2739 /* Ensure socket support is loaded if available. */
2740 init_winsock (TRUE);
2741 #endif
2742
2743 /* :type TYPE (nil: stream, datagram */
2744 tem = Fplist_get (contact, QCtype);
2745 if (NILP (tem))
2746 socktype = SOCK_STREAM;
2747 #ifdef DATAGRAM_SOCKETS
2748 else if (EQ (tem, Qdatagram))
2749 socktype = SOCK_DGRAM;
2750 #endif
2751 else
2752 error ("Unsupported connection type");
2753
2754 /* :server BOOL */
2755 tem = Fplist_get (contact, QCserver);
2756 if (!NILP (tem))
2757 {
2758 /* Don't support network sockets when non-blocking mode is
2759 not available, since a blocked Emacs is not useful. */
2760 #if defined(TERM) || (!defined(O_NONBLOCK) && !defined(O_NDELAY))
2761 error ("Network servers not supported");
2762 #else
2763 is_server = 1;
2764 if (INTEGERP (tem))
2765 backlog = XINT (tem);
2766 #endif
2767 }
2768
2769 /* Make QCaddress an alias for :local (server) or :remote (client). */
2770 QCaddress = is_server ? QClocal : QCremote;
2771
2772 /* :wait BOOL */
2773 if (!is_server && socktype == SOCK_STREAM
2774 && (tem = Fplist_get (contact, QCnowait), !NILP (tem)))
2775 {
2776 #ifndef NON_BLOCKING_CONNECT
2777 error ("Non-blocking connect not supported");
2778 #else
2779 is_non_blocking_client = 1;
2780 #endif
2781 }
2782
2783 name = Fplist_get (contact, QCname);
2784 buffer = Fplist_get (contact, QCbuffer);
2785 filter = Fplist_get (contact, QCfilter);
2786 sentinel = Fplist_get (contact, QCsentinel);
2787
2788 CHECK_STRING (name);
2789
2790 #ifdef TERM
2791 /* Let's handle TERM before things get complicated ... */
2792 host = Fplist_get (contact, QChost);
2793 CHECK_STRING (host);
2794
2795 service = Fplist_get (contact, QCservice);
2796 if (INTEGERP (service))
2797 port = htons ((unsigned short) XINT (service));
2798 else
2799 {
2800 struct servent *svc_info;
2801 CHECK_STRING (service);
2802 svc_info = getservbyname (SDATA (service), "tcp");
2803 if (svc_info == 0)
2804 error ("Unknown service: %s", SDATA (service));
2805 port = svc_info->s_port;
2806 }
2807
2808 s = connect_server (0);
2809 if (s < 0)
2810 report_file_error ("error creating socket", Fcons (name, Qnil));
2811 send_command (s, C_PORT, 0, "%s:%d", SDATA (host), ntohs (port));
2812 send_command (s, C_DUMB, 1, 0);
2813
2814 #else /* not TERM */
2815
2816 /* Initialize addrinfo structure in case we don't use getaddrinfo. */
2817 ai.ai_socktype = socktype;
2818 ai.ai_protocol = 0;
2819 ai.ai_next = NULL;
2820 res = &ai;
2821
2822 /* :local ADDRESS or :remote ADDRESS */
2823 address = Fplist_get (contact, QCaddress);
2824 if (!NILP (address))
2825 {
2826 host = service = Qnil;
2827
2828 if (!(ai.ai_addrlen = get_lisp_to_sockaddr_size (address, &family)))
2829 error ("Malformed :address");
2830 ai.ai_family = family;
2831 ai.ai_addr = alloca (ai.ai_addrlen);
2832 conv_lisp_to_sockaddr (family, address, ai.ai_addr, ai.ai_addrlen);
2833 goto open_socket;
2834 }
2835
2836 /* :family FAMILY -- nil (for Inet), local, or integer. */
2837 tem = Fplist_get (contact, QCfamily);
2838 if (INTEGERP (tem))
2839 family = XINT (tem);
2840 else
2841 {
2842 if (NILP (tem))
2843 family = AF_INET;
2844 #ifdef HAVE_LOCAL_SOCKETS
2845 else if (EQ (tem, Qlocal))
2846 family = AF_LOCAL;
2847 #endif
2848 }
2849 if (family < 0)
2850 error ("Unknown address family");
2851 ai.ai_family = family;
2852
2853 /* :service SERVICE -- string, integer (port number), or t (random port). */
2854 service = Fplist_get (contact, QCservice);
2855
2856 #ifdef HAVE_LOCAL_SOCKETS
2857 if (family == AF_LOCAL)
2858 {
2859 /* Host is not used. */
2860 host = Qnil;
2861 CHECK_STRING (service);
2862 bzero (&address_un, sizeof address_un);
2863 address_un.sun_family = AF_LOCAL;
2864 strncpy (address_un.sun_path, SDATA (service), sizeof address_un.sun_path);
2865 ai.ai_addr = (struct sockaddr *) &address_un;
2866 ai.ai_addrlen = sizeof address_un;
2867 goto open_socket;
2868 }
2869 #endif
2870
2871 /* :host HOST -- hostname, ip address, or 'local for localhost. */
2872 host = Fplist_get (contact, QChost);
2873 if (!NILP (host))
2874 {
2875 if (EQ (host, Qlocal))
2876 host = build_string ("localhost");
2877 CHECK_STRING (host);
2878 }
2879
2880 /* Slow down polling to every ten seconds.
2881 Some kernels have a bug which causes retrying connect to fail
2882 after a connect. Polling can interfere with gethostbyname too. */
2883 #ifdef POLL_FOR_INPUT
2884 if (socktype == SOCK_STREAM)
2885 {
2886 record_unwind_protect (unwind_stop_other_atimers, Qnil);
2887 bind_polling_period (10);
2888 }
2889 #endif
2890
2891 #ifdef HAVE_GETADDRINFO
2892 /* If we have a host, use getaddrinfo to resolve both host and service.
2893 Otherwise, use getservbyname to lookup the service. */
2894 if (!NILP (host))
2895 {
2896
2897 /* SERVICE can either be a string or int.
2898 Convert to a C string for later use by getaddrinfo. */
2899 if (EQ (service, Qt))
2900 portstring = "0";
2901 else if (INTEGERP (service))
2902 {
2903 sprintf (portbuf, "%ld", (long) XINT (service));
2904 portstring = portbuf;
2905 }
2906 else
2907 {
2908 CHECK_STRING (service);
2909 portstring = SDATA (service);
2910 }
2911
2912 immediate_quit = 1;
2913 QUIT;
2914 memset (&hints, 0, sizeof (hints));
2915 hints.ai_flags = 0;
2916 hints.ai_family = NILP (Fplist_member (contact, QCfamily)) ? AF_UNSPEC : family;
2917 hints.ai_socktype = socktype;
2918 hints.ai_protocol = 0;
2919 ret = getaddrinfo (SDATA (host), portstring, &hints, &res);
2920 if (ret)
2921 #ifdef HAVE_GAI_STRERROR
2922 error ("%s/%s %s", SDATA (host), portstring, gai_strerror(ret));
2923 #else
2924 error ("%s/%s getaddrinfo error %d", SDATA (host), portstring, ret);
2925 #endif
2926 immediate_quit = 0;
2927
2928 goto open_socket;
2929 }
2930 #endif /* HAVE_GETADDRINFO */
2931
2932 /* We end up here if getaddrinfo is not defined, or in case no hostname
2933 has been specified (e.g. for a local server process). */
2934
2935 if (EQ (service, Qt))
2936 port = 0;
2937 else if (INTEGERP (service))
2938 port = htons ((unsigned short) XINT (service));
2939 else
2940 {
2941 struct servent *svc_info;
2942 CHECK_STRING (service);
2943 svc_info = getservbyname (SDATA (service),
2944 (socktype == SOCK_DGRAM ? "udp" : "tcp"));
2945 if (svc_info == 0)
2946 error ("Unknown service: %s", SDATA (service));
2947 port = svc_info->s_port;
2948 }
2949
2950 bzero (&address_in, sizeof address_in);
2951 address_in.sin_family = family;
2952 address_in.sin_addr.s_addr = INADDR_ANY;
2953 address_in.sin_port = port;
2954
2955 #ifndef HAVE_GETADDRINFO
2956 if (!NILP (host))
2957 {
2958 struct hostent *host_info_ptr;
2959
2960 /* gethostbyname may fail with TRY_AGAIN, but we don't honour that,
2961 as it may `hang' Emacs for a very long time. */
2962 immediate_quit = 1;
2963 QUIT;
2964 host_info_ptr = gethostbyname (SDATA (host));
2965 immediate_quit = 0;
2966
2967 if (host_info_ptr)
2968 {
2969 bcopy (host_info_ptr->h_addr, (char *) &address_in.sin_addr,
2970 host_info_ptr->h_length);
2971 family = host_info_ptr->h_addrtype;
2972 address_in.sin_family = family;
2973 }
2974 else
2975 /* Attempt to interpret host as numeric inet address */
2976 {
2977 IN_ADDR numeric_addr;
2978 numeric_addr = inet_addr ((char *) SDATA (host));
2979 if (NUMERIC_ADDR_ERROR)
2980 error ("Unknown host \"%s\"", SDATA (host));
2981
2982 bcopy ((char *)&numeric_addr, (char *) &address_in.sin_addr,
2983 sizeof (address_in.sin_addr));
2984 }
2985
2986 }
2987 #endif /* not HAVE_GETADDRINFO */
2988
2989 ai.ai_family = family;
2990 ai.ai_addr = (struct sockaddr *) &address_in;
2991 ai.ai_addrlen = sizeof address_in;
2992
2993 open_socket:
2994
2995 /* Kernel bugs (on Ultrix at least) cause lossage (not just EINTR)
2996 when connect is interrupted. So let's not let it get interrupted.
2997 Note we do not turn off polling, because polling is only used
2998 when not interrupt_input, and thus not normally used on the systems
2999 which have this bug. On systems which use polling, there's no way
3000 to quit if polling is turned off. */
3001 if (interrupt_input
3002 && !is_server && socktype == SOCK_STREAM)
3003 {
3004 /* Comment from KFS: The original open-network-stream code
3005 didn't unwind protect this, but it seems like the proper
3006 thing to do. In any case, I don't see how it could harm to
3007 do this -- and it makes cleanup (using unbind_to) easier. */
3008 record_unwind_protect (unwind_request_sigio, Qnil);
3009 unrequest_sigio ();
3010 }
3011
3012 /* Do this in case we never enter the for-loop below. */
3013 count1 = SPECPDL_INDEX ();
3014 s = -1;
3015
3016 for (lres = res; lres; lres = lres->ai_next)
3017 {
3018 int optn, optbits;
3019
3020 s = socket (lres->ai_family, lres->ai_socktype, lres->ai_protocol);
3021 if (s < 0)
3022 {
3023 xerrno = errno;
3024 continue;
3025 }
3026
3027 #ifdef DATAGRAM_SOCKETS
3028 if (!is_server && socktype == SOCK_DGRAM)
3029 break;
3030 #endif /* DATAGRAM_SOCKETS */
3031
3032 #ifdef NON_BLOCKING_CONNECT
3033 if (is_non_blocking_client)
3034 {
3035 #ifdef O_NONBLOCK
3036 ret = fcntl (s, F_SETFL, O_NONBLOCK);
3037 #else
3038 ret = fcntl (s, F_SETFL, O_NDELAY);
3039 #endif
3040 if (ret < 0)
3041 {
3042 xerrno = errno;
3043 emacs_close (s);
3044 s = -1;
3045 continue;
3046 }
3047 }
3048 #endif
3049
3050 /* Make us close S if quit. */
3051 record_unwind_protect (close_file_unwind, make_number (s));
3052
3053 /* Parse network options in the arg list.
3054 We simply ignore anything which isn't a known option (including other keywords).
3055 An error is signalled if setting a known option fails. */
3056 for (optn = optbits = 0; optn < nargs-1; optn += 2)
3057 optbits |= set_socket_option (s, args[optn], args[optn+1]);
3058
3059 if (is_server)
3060 {
3061 /* Configure as a server socket. */
3062
3063 /* SO_REUSEADDR = 1 is default for server sockets; must specify
3064 explicit :reuseaddr key to override this. */
3065 #ifdef HAVE_LOCAL_SOCKETS
3066 if (family != AF_LOCAL)
3067 #endif
3068 if (!(optbits & (1 << OPIX_REUSEADDR)))
3069 {
3070 int optval = 1;
3071 if (setsockopt (s, SOL_SOCKET, SO_REUSEADDR, &optval, sizeof optval))
3072 report_file_error ("Cannot set reuse option on server socket", Qnil);
3073 }
3074
3075 if (bind (s, lres->ai_addr, lres->ai_addrlen))
3076 report_file_error ("Cannot bind server socket", Qnil);
3077
3078 #ifdef HAVE_GETSOCKNAME
3079 if (EQ (service, Qt))
3080 {
3081 struct sockaddr_in sa1;
3082 int len1 = sizeof (sa1);
3083 if (getsockname (s, (struct sockaddr *)&sa1, &len1) == 0)
3084 {
3085 ((struct sockaddr_in *)(lres->ai_addr))->sin_port = sa1.sin_port;
3086 service = make_number (ntohs (sa1.sin_port));
3087 contact = Fplist_put (contact, QCservice, service);
3088 }
3089 }
3090 #endif
3091
3092 if (socktype == SOCK_STREAM && listen (s, backlog))
3093 report_file_error ("Cannot listen on server socket", Qnil);
3094
3095 break;
3096 }
3097
3098 retry_connect:
3099
3100 immediate_quit = 1;
3101 QUIT;
3102
3103 /* This turns off all alarm-based interrupts; the
3104 bind_polling_period call above doesn't always turn all the
3105 short-interval ones off, especially if interrupt_input is
3106 set.
3107
3108 It'd be nice to be able to control the connect timeout
3109 though. Would non-blocking connect calls be portable?
3110
3111 This used to be conditioned by HAVE_GETADDRINFO. Why? */
3112
3113 turn_on_atimers (0);
3114
3115 ret = connect (s, lres->ai_addr, lres->ai_addrlen);
3116 xerrno = errno;
3117
3118 turn_on_atimers (1);
3119
3120 if (ret == 0 || xerrno == EISCONN)
3121 {
3122 /* The unwind-protect will be discarded afterwards.
3123 Likewise for immediate_quit. */
3124 break;
3125 }
3126
3127 #ifdef NON_BLOCKING_CONNECT
3128 #ifdef EINPROGRESS
3129 if (is_non_blocking_client && xerrno == EINPROGRESS)
3130 break;
3131 #else
3132 #ifdef EWOULDBLOCK
3133 if (is_non_blocking_client && xerrno == EWOULDBLOCK)
3134 break;
3135 #endif
3136 #endif
3137 #endif
3138
3139 immediate_quit = 0;
3140
3141 if (xerrno == EINTR)
3142 goto retry_connect;
3143 if (xerrno == EADDRINUSE && retry < 20)
3144 {
3145 /* A delay here is needed on some FreeBSD systems,
3146 and it is harmless, since this retrying takes time anyway
3147 and should be infrequent. */
3148 Fsleep_for (make_number (1), Qnil);
3149 retry++;
3150 goto retry_connect;
3151 }
3152
3153 /* Discard the unwind protect closing S. */
3154 specpdl_ptr = specpdl + count1;
3155 emacs_close (s);
3156 s = -1;
3157 }
3158
3159 if (s >= 0)
3160 {
3161 #ifdef DATAGRAM_SOCKETS
3162 if (socktype == SOCK_DGRAM)
3163 {
3164 if (datagram_address[s].sa)
3165 abort ();
3166 datagram_address[s].sa = (struct sockaddr *) xmalloc (lres->ai_addrlen);
3167 datagram_address[s].len = lres->ai_addrlen;
3168 if (is_server)
3169 {
3170 Lisp_Object remote;
3171 bzero (datagram_address[s].sa, lres->ai_addrlen);
3172 if (remote = Fplist_get (contact, QCremote), !NILP (remote))
3173 {
3174 int rfamily, rlen;
3175 rlen = get_lisp_to_sockaddr_size (remote, &rfamily);
3176 if (rfamily == lres->ai_family && rlen == lres->ai_addrlen)
3177 conv_lisp_to_sockaddr (rfamily, remote,
3178 datagram_address[s].sa, rlen);
3179 }
3180 }
3181 else
3182 bcopy (lres->ai_addr, datagram_address[s].sa, lres->ai_addrlen);
3183 }
3184 #endif
3185 contact = Fplist_put (contact, QCaddress,
3186 conv_sockaddr_to_lisp (lres->ai_addr, lres->ai_addrlen));
3187 #ifdef HAVE_GETSOCKNAME
3188 if (!is_server)
3189 {
3190 struct sockaddr_in sa1;
3191 int len1 = sizeof (sa1);
3192 if (getsockname (s, (struct sockaddr *)&sa1, &len1) == 0)
3193 contact = Fplist_put (contact, QClocal,
3194 conv_sockaddr_to_lisp (&sa1, len1));
3195 }
3196 #endif
3197 }
3198
3199 #ifdef HAVE_GETADDRINFO
3200 if (res != &ai)
3201 freeaddrinfo (res);
3202 #endif
3203
3204 immediate_quit = 0;
3205
3206 /* Discard the unwind protect for closing S, if any. */
3207 specpdl_ptr = specpdl + count1;
3208
3209 /* Unwind bind_polling_period and request_sigio. */
3210 unbind_to (count, Qnil);
3211
3212 if (s < 0)
3213 {
3214 /* If non-blocking got this far - and failed - assume non-blocking is
3215 not supported after all. This is probably a wrong assumption, but
3216 the normal blocking calls to open-network-stream handles this error
3217 better. */
3218 if (is_non_blocking_client)
3219 return Qnil;
3220
3221 errno = xerrno;
3222 if (is_server)
3223 report_file_error ("make server process failed", contact);
3224 else
3225 report_file_error ("make client process failed", contact);
3226 }
3227
3228 #endif /* not TERM */
3229
3230 inch = s;
3231 outch = s;
3232
3233 if (!NILP (buffer))
3234 buffer = Fget_buffer_create (buffer);
3235 proc = make_process (name);
3236
3237 chan_process[inch] = proc;
3238
3239 #ifdef O_NONBLOCK
3240 fcntl (inch, F_SETFL, O_NONBLOCK);
3241 #else
3242 #ifdef O_NDELAY
3243 fcntl (inch, F_SETFL, O_NDELAY);
3244 #endif
3245 #endif
3246
3247 p = XPROCESS (proc);
3248
3249 p->childp = contact;
3250 p->plist = Fcopy_sequence (Fplist_get (contact, QCplist));
3251
3252 p->buffer = buffer;
3253 p->sentinel = sentinel;
3254 p->filter = filter;
3255 p->filter_multibyte = buffer_defaults.enable_multibyte_characters;
3256 /* Override the above only if :filter-multibyte is specified. */
3257 if (! NILP (Fplist_member (contact, QCfilter_multibyte)))
3258 p->filter_multibyte = Fplist_get (contact, QCfilter_multibyte);
3259 p->log = Fplist_get (contact, QClog);
3260 if (tem = Fplist_get (contact, QCnoquery), !NILP (tem))
3261 p->kill_without_query = Qt;
3262 if ((tem = Fplist_get (contact, QCstop), !NILP (tem)))
3263 p->command = Qt;
3264 p->pid = Qnil;
3265 XSETINT (p->infd, inch);
3266 XSETINT (p->outfd, outch);
3267 if (is_server && socktype == SOCK_STREAM)
3268 p->status = Qlisten;
3269
3270 #ifdef NON_BLOCKING_CONNECT
3271 if (is_non_blocking_client)
3272 {
3273 /* We may get here if connect did succeed immediately. However,
3274 in that case, we still need to signal this like a non-blocking
3275 connection. */
3276 p->status = Qconnect;
3277 if (!FD_ISSET (inch, &connect_wait_mask))
3278 {
3279 FD_SET (inch, &connect_wait_mask);
3280 num_pending_connects++;
3281 }
3282 }
3283 else
3284 #endif
3285 /* A server may have a client filter setting of Qt, but it must
3286 still listen for incoming connects unless it is stopped. */
3287 if ((!EQ (p->filter, Qt) && !EQ (p->command, Qt))
3288 || (EQ (p->status, Qlisten) && NILP (p->command)))
3289 {
3290 FD_SET (inch, &input_wait_mask);
3291 FD_SET (inch, &non_keyboard_wait_mask);
3292 }
3293
3294 if (inch > max_process_desc)
3295 max_process_desc = inch;
3296
3297 tem = Fplist_member (contact, QCcoding);
3298 if (!NILP (tem) && (!CONSP (tem) || !CONSP (XCDR (tem))))
3299 tem = Qnil; /* No error message (too late!). */
3300
3301 {
3302 /* Setup coding systems for communicating with the network stream. */
3303 struct gcpro gcpro1;
3304 /* Qt denotes we have not yet called Ffind_operation_coding_system. */
3305 Lisp_Object coding_systems = Qt;
3306 Lisp_Object args[5], val;
3307
3308 if (!NILP (tem))
3309 {
3310 val = XCAR (XCDR (tem));
3311 if (CONSP (val))
3312 val = XCAR (val);
3313 }
3314 else if (!NILP (Vcoding_system_for_read))
3315 val = Vcoding_system_for_read;
3316 else if ((!NILP (buffer) && NILP (XBUFFER (buffer)->enable_multibyte_characters))
3317 || (NILP (buffer) && NILP (buffer_defaults.enable_multibyte_characters)))
3318 /* We dare not decode end-of-line format by setting VAL to
3319 Qraw_text, because the existing Emacs Lisp libraries
3320 assume that they receive bare code including a sequene of
3321 CR LF. */
3322 val = Qnil;
3323 else
3324 {
3325 if (NILP (host) || NILP (service))
3326 coding_systems = Qnil;
3327 else
3328 {
3329 args[0] = Qopen_network_stream, args[1] = name,
3330 args[2] = buffer, args[3] = host, args[4] = service;
3331 GCPRO1 (proc);
3332 coding_systems = Ffind_operation_coding_system (5, args);
3333 UNGCPRO;
3334 }
3335 if (CONSP (coding_systems))
3336 val = XCAR (coding_systems);
3337 else if (CONSP (Vdefault_process_coding_system))
3338 val = XCAR (Vdefault_process_coding_system);
3339 else
3340 val = Qnil;
3341 }
3342 p->decode_coding_system = val;
3343
3344 if (!NILP (tem))
3345 {
3346 val = XCAR (XCDR (tem));
3347 if (CONSP (val))
3348 val = XCDR (val);
3349 }
3350 else if (!NILP (Vcoding_system_for_write))
3351 val = Vcoding_system_for_write;
3352 else if (NILP (current_buffer->enable_multibyte_characters))
3353 val = Qnil;
3354 else
3355 {
3356 if (EQ (coding_systems, Qt))
3357 {
3358 if (NILP (host) || NILP (service))
3359 coding_systems = Qnil;
3360 else
3361 {
3362 args[0] = Qopen_network_stream, args[1] = name,
3363 args[2] = buffer, args[3] = host, args[4] = service;
3364 GCPRO1 (proc);
3365 coding_systems = Ffind_operation_coding_system (5, args);
3366 UNGCPRO;
3367 }
3368 }
3369 if (CONSP (coding_systems))
3370 val = XCDR (coding_systems);
3371 else if (CONSP (Vdefault_process_coding_system))
3372 val = XCDR (Vdefault_process_coding_system);
3373 else
3374 val = Qnil;
3375 }
3376 p->encode_coding_system = val;
3377 }
3378 setup_process_coding_systems (proc);
3379
3380 p->decoding_buf = make_uninit_string (0);
3381 p->decoding_carryover = make_number (0);
3382 p->encoding_buf = make_uninit_string (0);
3383 p->encoding_carryover = make_number (0);
3384
3385 p->inherit_coding_system_flag
3386 = (!NILP (tem) || NILP (buffer) || !inherit_process_coding_system
3387 ? Qnil : Qt);
3388
3389 UNGCPRO;
3390 return proc;
3391 }
3392 #endif /* HAVE_SOCKETS */
3393
3394 \f
3395 #if defined(HAVE_SOCKETS) && defined(HAVE_NET_IF_H) && defined(HAVE_SYS_IOCTL_H)
3396
3397 #ifdef SIOCGIFCONF
3398 DEFUN ("network-interface-list", Fnetwork_interface_list, Snetwork_interface_list, 0, 0, 0,
3399 doc: /* Return an alist of all network interfaces and their network address.
3400 Each element is a cons, the car of which is a string containing the
3401 interface name, and the cdr is the network address in internal
3402 format; see the description of ADDRESS in `make-network-process'. */)
3403 ()
3404 {
3405 struct ifconf ifconf;
3406 struct ifreq *ifreqs = NULL;
3407 int ifaces = 0;
3408 int buf_size, s;
3409 Lisp_Object res;
3410
3411 s = socket (AF_INET, SOCK_STREAM, 0);
3412 if (s < 0)
3413 return Qnil;
3414
3415 again:
3416 ifaces += 25;
3417 buf_size = ifaces * sizeof(ifreqs[0]);
3418 ifreqs = (struct ifreq *)xrealloc(ifreqs, buf_size);
3419 if (!ifreqs)
3420 {
3421 close (s);
3422 return Qnil;
3423 }
3424
3425 ifconf.ifc_len = buf_size;
3426 ifconf.ifc_req = ifreqs;
3427 if (ioctl (s, SIOCGIFCONF, &ifconf))
3428 {
3429 close (s);
3430 return Qnil;
3431 }
3432
3433 if (ifconf.ifc_len == buf_size)
3434 goto again;
3435
3436 close (s);
3437 ifaces = ifconf.ifc_len / sizeof (ifreqs[0]);
3438
3439 res = Qnil;
3440 while (--ifaces >= 0)
3441 {
3442 struct ifreq *ifq = &ifreqs[ifaces];
3443 char namebuf[sizeof (ifq->ifr_name) + 1];
3444 if (ifq->ifr_addr.sa_family != AF_INET)
3445 continue;
3446 bcopy (ifq->ifr_name, namebuf, sizeof (ifq->ifr_name));
3447 namebuf[sizeof (ifq->ifr_name)] = 0;
3448 res = Fcons (Fcons (build_string (namebuf),
3449 conv_sockaddr_to_lisp (&ifq->ifr_addr,
3450 sizeof (struct sockaddr))),
3451 res);
3452 }
3453
3454 return res;
3455 }
3456 #endif /* SIOCGIFCONF */
3457
3458 #if defined(SIOCGIFADDR) || defined(SIOCGIFHWADDR) || defined(SIOCGIFFLAGS)
3459
3460 struct ifflag_def {
3461 int flag_bit;
3462 char *flag_sym;
3463 };
3464
3465 static struct ifflag_def ifflag_table[] = {
3466 #ifdef IFF_UP
3467 { IFF_UP, "up" },
3468 #endif
3469 #ifdef IFF_BROADCAST
3470 { IFF_BROADCAST, "broadcast" },
3471 #endif
3472 #ifdef IFF_DEBUG
3473 { IFF_DEBUG, "debug" },
3474 #endif
3475 #ifdef IFF_LOOPBACK
3476 { IFF_LOOPBACK, "loopback" },
3477 #endif
3478 #ifdef IFF_POINTOPOINT
3479 { IFF_POINTOPOINT, "pointopoint" },
3480 #endif
3481 #ifdef IFF_RUNNING
3482 { IFF_RUNNING, "running" },
3483 #endif
3484 #ifdef IFF_NOARP
3485 { IFF_NOARP, "noarp" },
3486 #endif
3487 #ifdef IFF_PROMISC
3488 { IFF_PROMISC, "promisc" },
3489 #endif
3490 #ifdef IFF_NOTRAILERS
3491 { IFF_NOTRAILERS, "notrailers" },
3492 #endif
3493 #ifdef IFF_ALLMULTI
3494 { IFF_ALLMULTI, "allmulti" },
3495 #endif
3496 #ifdef IFF_MASTER
3497 { IFF_MASTER, "master" },
3498 #endif
3499 #ifdef IFF_SLAVE
3500 { IFF_SLAVE, "slave" },
3501 #endif
3502 #ifdef IFF_MULTICAST
3503 { IFF_MULTICAST, "multicast" },
3504 #endif
3505 #ifdef IFF_PORTSEL
3506 { IFF_PORTSEL, "portsel" },
3507 #endif
3508 #ifdef IFF_AUTOMEDIA
3509 { IFF_AUTOMEDIA, "automedia" },
3510 #endif
3511 #ifdef IFF_DYNAMIC
3512 { IFF_DYNAMIC, "dynamic" },
3513 #endif
3514 { 0, 0 }
3515 };
3516
3517 DEFUN ("network-interface-info", Fnetwork_interface_info, Snetwork_interface_info, 1, 1, 0,
3518 doc: /* Return information about network interface named IFNAME.
3519 The return value is a list (ADDR BCAST NETMASK HWADDR FLAGS),
3520 where ADDR is the layer 3 address, BCAST is the layer 3 broadcast address,
3521 NETMASK is the layer 3 network mask, HWADDR is the layer 2 addres, and
3522 FLAGS is the current flags of the interface. */)
3523 (ifname)
3524 Lisp_Object ifname;
3525 {
3526 struct ifreq rq;
3527 Lisp_Object res = Qnil;
3528 Lisp_Object elt;
3529 int s;
3530 int any = 0;
3531
3532 CHECK_STRING (ifname);
3533
3534 bzero (rq.ifr_name, sizeof rq.ifr_name);
3535 strncpy (rq.ifr_name, SDATA (ifname), sizeof (rq.ifr_name));
3536
3537 s = socket (AF_INET, SOCK_STREAM, 0);
3538 if (s < 0)
3539 return Qnil;
3540
3541 elt = Qnil;
3542 #if defined(SIOCGIFFLAGS) && defined(HAVE_STRUCT_IFREQ_IFR_FLAGS)
3543 if (ioctl (s, SIOCGIFFLAGS, &rq) == 0)
3544 {
3545 int flags = rq.ifr_flags;
3546 struct ifflag_def *fp;
3547 int fnum;
3548
3549 any++;
3550 for (fp = ifflag_table; flags != 0 && fp; fp++)
3551 {
3552 if (flags & fp->flag_bit)
3553 {
3554 elt = Fcons (intern (fp->flag_sym), elt);
3555 flags -= fp->flag_bit;
3556 }
3557 }
3558 for (fnum = 0; flags && fnum < 32; fnum++)
3559 {
3560 if (flags & (1 << fnum))
3561 {
3562 elt = Fcons (make_number (fnum), elt);
3563 }
3564 }
3565 }
3566 #endif
3567 res = Fcons (elt, res);
3568
3569 elt = Qnil;
3570 #if defined(SIOCGIFHWADDR) && defined(HAVE_STRUCT_IFREQ_IFR_HWADDR)
3571 if (ioctl (s, SIOCGIFHWADDR, &rq) == 0)
3572 {
3573 Lisp_Object hwaddr = Fmake_vector (make_number (6), Qnil);
3574 register struct Lisp_Vector *p = XVECTOR (hwaddr);
3575 int n;
3576
3577 any++;
3578 for (n = 0; n < 6; n++)
3579 p->contents[n] = make_number (((unsigned char *)&rq.ifr_hwaddr.sa_data[0])[n]);
3580 elt = Fcons (make_number (rq.ifr_hwaddr.sa_family), hwaddr);
3581 }
3582 #endif
3583 res = Fcons (elt, res);
3584
3585 elt = Qnil;
3586 #if defined(SIOCGIFNETMASK) && defined(ifr_netmask)
3587 if (ioctl (s, SIOCGIFNETMASK, &rq) == 0)
3588 {
3589 any++;
3590 elt = conv_sockaddr_to_lisp (&rq.ifr_netmask, sizeof (rq.ifr_netmask));
3591 }
3592 #endif
3593 res = Fcons (elt, res);
3594
3595 elt = Qnil;
3596 #if defined(SIOCGIFBRDADDR) && defined(HAVE_STRUCT_IFREQ_IFR_BROADADDR)
3597 if (ioctl (s, SIOCGIFBRDADDR, &rq) == 0)
3598 {
3599 any++;
3600 elt = conv_sockaddr_to_lisp (&rq.ifr_broadaddr, sizeof (rq.ifr_broadaddr));
3601 }
3602 #endif
3603 res = Fcons (elt, res);
3604
3605 elt = Qnil;
3606 #if defined(SIOCGIFADDR) && defined(HAVE_STRUCT_IFREQ_IFR_ADDR)
3607 if (ioctl (s, SIOCGIFADDR, &rq) == 0)
3608 {
3609 any++;
3610 elt = conv_sockaddr_to_lisp (&rq.ifr_addr, sizeof (rq.ifr_addr));
3611 }
3612 #endif
3613 res = Fcons (elt, res);
3614
3615 close (s);
3616
3617 return any ? res : Qnil;
3618 }
3619 #endif
3620 #endif /* HAVE_SOCKETS */
3621
3622 /* Turn off input and output for process PROC. */
3623
3624 void
3625 deactivate_process (proc)
3626 Lisp_Object proc;
3627 {
3628 register int inchannel, outchannel;
3629 register struct Lisp_Process *p = XPROCESS (proc);
3630
3631 inchannel = XINT (p->infd);
3632 outchannel = XINT (p->outfd);
3633
3634 #ifdef ADAPTIVE_READ_BUFFERING
3635 if (XINT (p->read_output_delay) > 0)
3636 {
3637 if (--process_output_delay_count < 0)
3638 process_output_delay_count = 0;
3639 XSETINT (p->read_output_delay, 0);
3640 p->read_output_skip = Qnil;
3641 }
3642 #endif
3643
3644 if (inchannel >= 0)
3645 {
3646 /* Beware SIGCHLD hereabouts. */
3647 flush_pending_output (inchannel);
3648 #ifdef VMS
3649 {
3650 VMS_PROC_STUFF *get_vms_process_pointer (), *vs;
3651 sys$dassgn (outchannel);
3652 vs = get_vms_process_pointer (p->pid);
3653 if (vs)
3654 give_back_vms_process_stuff (vs);
3655 }
3656 #else
3657 emacs_close (inchannel);
3658 if (outchannel >= 0 && outchannel != inchannel)
3659 emacs_close (outchannel);
3660 #endif
3661
3662 XSETINT (p->infd, -1);
3663 XSETINT (p->outfd, -1);
3664 #ifdef DATAGRAM_SOCKETS
3665 if (DATAGRAM_CHAN_P (inchannel))
3666 {
3667 xfree (datagram_address[inchannel].sa);
3668 datagram_address[inchannel].sa = 0;
3669 datagram_address[inchannel].len = 0;
3670 }
3671 #endif
3672 chan_process[inchannel] = Qnil;
3673 FD_CLR (inchannel, &input_wait_mask);
3674 FD_CLR (inchannel, &non_keyboard_wait_mask);
3675 if (FD_ISSET (inchannel, &connect_wait_mask))
3676 {
3677 FD_CLR (inchannel, &connect_wait_mask);
3678 if (--num_pending_connects < 0)
3679 abort ();
3680 }
3681 if (inchannel == max_process_desc)
3682 {
3683 int i;
3684 /* We just closed the highest-numbered process input descriptor,
3685 so recompute the highest-numbered one now. */
3686 max_process_desc = 0;
3687 for (i = 0; i < MAXDESC; i++)
3688 if (!NILP (chan_process[i]))
3689 max_process_desc = i;
3690 }
3691 }
3692 }
3693
3694 /* Close all descriptors currently in use for communication
3695 with subprocess. This is used in a newly-forked subprocess
3696 to get rid of irrelevant descriptors. */
3697
3698 void
3699 close_process_descs ()
3700 {
3701 #ifndef WINDOWSNT
3702 int i;
3703 for (i = 0; i < MAXDESC; i++)
3704 {
3705 Lisp_Object process;
3706 process = chan_process[i];
3707 if (!NILP (process))
3708 {
3709 int in = XINT (XPROCESS (process)->infd);
3710 int out = XINT (XPROCESS (process)->outfd);
3711 if (in >= 0)
3712 emacs_close (in);
3713 if (out >= 0 && in != out)
3714 emacs_close (out);
3715 }
3716 }
3717 #endif
3718 }
3719 \f
3720 DEFUN ("accept-process-output", Faccept_process_output, Saccept_process_output,
3721 0, 3, 0,
3722 doc: /* Allow any pending output from subprocesses to be read by Emacs.
3723 It is read into the process' buffers or given to their filter functions.
3724 Non-nil arg PROCESS means do not return until some output has been received
3725 from PROCESS.
3726 Non-nil second arg TIMEOUT and third arg TIMEOUT-MSECS are number of
3727 seconds and microseconds to wait; return after that much time whether
3728 or not there is input.
3729 Return non-nil iff we received any output before the timeout expired. */)
3730 (process, timeout, timeout_msecs)
3731 register Lisp_Object process, timeout, timeout_msecs;
3732 {
3733 int seconds;
3734 int useconds;
3735
3736 if (! NILP (process))
3737 CHECK_PROCESS (process);
3738
3739 if (! NILP (timeout_msecs))
3740 {
3741 CHECK_NUMBER (timeout_msecs);
3742 useconds = XINT (timeout_msecs);
3743 if (!INTEGERP (timeout))
3744 XSETINT (timeout, 0);
3745
3746 {
3747 int carry = useconds / 1000000;
3748
3749 XSETINT (timeout, XINT (timeout) + carry);
3750 useconds -= carry * 1000000;
3751
3752 /* I think this clause is necessary because C doesn't
3753 guarantee a particular rounding direction for negative
3754 integers. */
3755 if (useconds < 0)
3756 {
3757 XSETINT (timeout, XINT (timeout) - 1);
3758 useconds += 1000000;
3759 }
3760 }
3761 }
3762 else
3763 useconds = 0;
3764
3765 if (! NILP (timeout))
3766 {
3767 CHECK_NUMBER (timeout);
3768 seconds = XINT (timeout);
3769 if (seconds < 0 || (seconds == 0 && useconds == 0))
3770 seconds = -1;
3771 }
3772 else
3773 seconds = NILP (process) ? -1 : 0;
3774
3775 if (NILP (process))
3776 XSETFASTINT (process, 0);
3777
3778 return
3779 (wait_reading_process_input (seconds, useconds, process, 0)
3780 ? Qt : Qnil);
3781 }
3782
3783 /* Accept a connection for server process SERVER on CHANNEL. */
3784
3785 static int connect_counter = 0;
3786
3787 static void
3788 server_accept_connection (server, channel)
3789 Lisp_Object server;
3790 int channel;
3791 {
3792 Lisp_Object proc, caller, name, buffer;
3793 Lisp_Object contact, host, service;
3794 struct Lisp_Process *ps= XPROCESS (server);
3795 struct Lisp_Process *p;
3796 int s;
3797 union u_sockaddr {
3798 struct sockaddr sa;
3799 struct sockaddr_in in;
3800 #ifdef HAVE_LOCAL_SOCKETS
3801 struct sockaddr_un un;
3802 #endif
3803 } saddr;
3804 int len = sizeof saddr;
3805
3806 s = accept (channel, &saddr.sa, &len);
3807
3808 if (s < 0)
3809 {
3810 int code = errno;
3811
3812 if (code == EAGAIN)
3813 return;
3814 #ifdef EWOULDBLOCK
3815 if (code == EWOULDBLOCK)
3816 return;
3817 #endif
3818
3819 if (!NILP (ps->log))
3820 call3 (ps->log, server, Qnil,
3821 concat3 (build_string ("accept failed with code"),
3822 Fnumber_to_string (make_number (code)),
3823 build_string ("\n")));
3824 return;
3825 }
3826
3827 connect_counter++;
3828
3829 /* Setup a new process to handle the connection. */
3830
3831 /* Generate a unique identification of the caller, and build contact
3832 information for this process. */
3833 host = Qt;
3834 service = Qnil;
3835 switch (saddr.sa.sa_family)
3836 {
3837 case AF_INET:
3838 {
3839 Lisp_Object args[5];
3840 unsigned char *ip = (unsigned char *)&saddr.in.sin_addr.s_addr;
3841 args[0] = build_string ("%d.%d.%d.%d");
3842 args[1] = make_number (*ip++);
3843 args[2] = make_number (*ip++);
3844 args[3] = make_number (*ip++);
3845 args[4] = make_number (*ip++);
3846 host = Fformat (5, args);
3847 service = make_number (ntohs (saddr.in.sin_port));
3848
3849 args[0] = build_string (" <%s:%d>");
3850 args[1] = host;
3851 args[2] = service;
3852 caller = Fformat (3, args);
3853 }
3854 break;
3855
3856 #ifdef HAVE_LOCAL_SOCKETS
3857 case AF_LOCAL:
3858 #endif
3859 default:
3860 caller = Fnumber_to_string (make_number (connect_counter));
3861 caller = concat3 (build_string (" <*"), caller, build_string ("*>"));
3862 break;
3863 }
3864
3865 /* Create a new buffer name for this process if it doesn't have a
3866 filter. The new buffer name is based on the buffer name or
3867 process name of the server process concatenated with the caller
3868 identification. */
3869
3870 if (!NILP (ps->filter) && !EQ (ps->filter, Qt))
3871 buffer = Qnil;
3872 else
3873 {
3874 buffer = ps->buffer;
3875 if (!NILP (buffer))
3876 buffer = Fbuffer_name (buffer);
3877 else
3878 buffer = ps->name;
3879 if (!NILP (buffer))
3880 {
3881 buffer = concat2 (buffer, caller);
3882 buffer = Fget_buffer_create (buffer);
3883 }
3884 }
3885
3886 /* Generate a unique name for the new server process. Combine the
3887 server process name with the caller identification. */
3888
3889 name = concat2 (ps->name, caller);
3890 proc = make_process (name);
3891
3892 chan_process[s] = proc;
3893
3894 #ifdef O_NONBLOCK
3895 fcntl (s, F_SETFL, O_NONBLOCK);
3896 #else
3897 #ifdef O_NDELAY
3898 fcntl (s, F_SETFL, O_NDELAY);
3899 #endif
3900 #endif
3901
3902 p = XPROCESS (proc);
3903
3904 /* Build new contact information for this setup. */
3905 contact = Fcopy_sequence (ps->childp);
3906 contact = Fplist_put (contact, QCserver, Qnil);
3907 contact = Fplist_put (contact, QChost, host);
3908 if (!NILP (service))
3909 contact = Fplist_put (contact, QCservice, service);
3910 contact = Fplist_put (contact, QCremote,
3911 conv_sockaddr_to_lisp (&saddr.sa, len));
3912 #ifdef HAVE_GETSOCKNAME
3913 len = sizeof saddr;
3914 if (getsockname (s, &saddr.sa, &len) == 0)
3915 contact = Fplist_put (contact, QClocal,
3916 conv_sockaddr_to_lisp (&saddr.sa, len));
3917 #endif
3918
3919 p->childp = contact;
3920 p->plist = Fcopy_sequence (ps->plist);
3921
3922 p->buffer = buffer;
3923 p->sentinel = ps->sentinel;
3924 p->filter = ps->filter;
3925 p->command = Qnil;
3926 p->pid = Qnil;
3927 XSETINT (p->infd, s);
3928 XSETINT (p->outfd, s);
3929 p->status = Qrun;
3930
3931 /* Client processes for accepted connections are not stopped initially. */
3932 if (!EQ (p->filter, Qt))
3933 {
3934 FD_SET (s, &input_wait_mask);
3935 FD_SET (s, &non_keyboard_wait_mask);
3936 }
3937
3938 if (s > max_process_desc)
3939 max_process_desc = s;
3940
3941 /* Setup coding system for new process based on server process.
3942 This seems to be the proper thing to do, as the coding system
3943 of the new process should reflect the settings at the time the
3944 server socket was opened; not the current settings. */
3945
3946 p->decode_coding_system = ps->decode_coding_system;
3947 p->encode_coding_system = ps->encode_coding_system;
3948 setup_process_coding_systems (proc);
3949
3950 p->decoding_buf = make_uninit_string (0);
3951 p->decoding_carryover = make_number (0);
3952 p->encoding_buf = make_uninit_string (0);
3953 p->encoding_carryover = make_number (0);
3954
3955 p->inherit_coding_system_flag
3956 = (NILP (buffer) ? Qnil : ps->inherit_coding_system_flag);
3957
3958 if (!NILP (ps->log))
3959 call3 (ps->log, server, proc,
3960 concat3 (build_string ("accept from "),
3961 (STRINGP (host) ? host : build_string ("-")),
3962 build_string ("\n")));
3963
3964 if (!NILP (p->sentinel))
3965 exec_sentinel (proc,
3966 concat3 (build_string ("open from "),
3967 (STRINGP (host) ? host : build_string ("-")),
3968 build_string ("\n")));
3969 }
3970
3971 /* This variable is different from waiting_for_input in keyboard.c.
3972 It is used to communicate to a lisp process-filter/sentinel (via the
3973 function Fwaiting_for_user_input_p below) whether Emacs was waiting
3974 for user-input when that process-filter was called.
3975 waiting_for_input cannot be used as that is by definition 0 when
3976 lisp code is being evalled.
3977 This is also used in record_asynch_buffer_change.
3978 For that purpose, this must be 0
3979 when not inside wait_reading_process_input. */
3980 static int waiting_for_user_input_p;
3981
3982 /* This is here so breakpoints can be put on it. */
3983 static void
3984 wait_reading_process_input_1 ()
3985 {
3986 }
3987
3988 /* Read and dispose of subprocess output while waiting for timeout to
3989 elapse and/or keyboard input to be available.
3990
3991 TIME_LIMIT is:
3992 timeout in seconds, or
3993 zero for no limit, or
3994 -1 means gobble data immediately available but don't wait for any.
3995
3996 MICROSECS is:
3997 an additional duration to wait, measured in microseconds.
3998 If this is nonzero and time_limit is 0, then the timeout
3999 consists of MICROSECS only.
4000
4001 READ_KBD is a lisp value:
4002 0 to ignore keyboard input, or
4003 1 to return when input is available, or
4004 -1 meaning caller will actually read the input, so don't throw to
4005 the quit handler, or
4006 a cons cell, meaning wait until its car is non-nil
4007 (and gobble terminal input into the buffer if any arrives), or
4008 a process object, meaning wait until something arrives from that
4009 process. The return value is true iff we read some input from
4010 that process.
4011
4012 DO_DISPLAY != 0 means redisplay should be done to show subprocess
4013 output that arrives.
4014
4015 If READ_KBD is a pointer to a struct Lisp_Process, then the
4016 function returns true iff we received input from that process
4017 before the timeout elapsed.
4018 Otherwise, return true iff we received input from any process. */
4019
4020 int
4021 wait_reading_process_input (time_limit, microsecs, read_kbd, do_display)
4022 int time_limit, microsecs;
4023 Lisp_Object read_kbd;
4024 int do_display;
4025 {
4026 register int channel, nfds;
4027 SELECT_TYPE Available;
4028 SELECT_TYPE Connecting;
4029 int check_connect, check_delay, no_avail;
4030 int xerrno;
4031 Lisp_Object proc;
4032 EMACS_TIME timeout, end_time;
4033 int wait_channel = -1;
4034 struct Lisp_Process *wait_proc = 0;
4035 int got_some_input = 0;
4036 /* Either nil or a cons cell, the car of which is of interest and
4037 may be changed outside of this routine. */
4038 Lisp_Object wait_for_cell = Qnil;
4039 int saved_waiting_for_user_input_p = waiting_for_user_input_p;
4040
4041 FD_ZERO (&Available);
4042 FD_ZERO (&Connecting);
4043
4044 /* If read_kbd is a process to watch, set wait_proc and wait_channel
4045 accordingly. */
4046 if (PROCESSP (read_kbd))
4047 {
4048 wait_proc = XPROCESS (read_kbd);
4049 wait_channel = XINT (wait_proc->infd);
4050 XSETFASTINT (read_kbd, 0);
4051 }
4052
4053 /* If waiting for non-nil in a cell, record where. */
4054 if (CONSP (read_kbd))
4055 {
4056 wait_for_cell = read_kbd;
4057 XSETFASTINT (read_kbd, 0);
4058 }
4059
4060 waiting_for_user_input_p = XINT (read_kbd);
4061
4062 /* Since we may need to wait several times,
4063 compute the absolute time to return at. */
4064 if (time_limit || microsecs)
4065 {
4066 EMACS_GET_TIME (end_time);
4067 EMACS_SET_SECS_USECS (timeout, time_limit, microsecs);
4068 EMACS_ADD_TIME (end_time, end_time, timeout);
4069 }
4070 #ifdef POLL_INTERRUPTED_SYS_CALL
4071 /* AlainF 5-Jul-1996
4072 HP-UX 10.10 seem to have problems with signals coming in
4073 Causes "poll: interrupted system call" messages when Emacs is run
4074 in an X window
4075 Turn off periodic alarms (in case they are in use),
4076 and then turn off any other atimers. */
4077 stop_polling ();
4078 turn_on_atimers (0);
4079 #endif /* POLL_INTERRUPTED_SYS_CALL */
4080
4081 while (1)
4082 {
4083 int timeout_reduced_for_timers = 0;
4084
4085 /* If calling from keyboard input, do not quit
4086 since we want to return C-g as an input character.
4087 Otherwise, do pending quit if requested. */
4088 if (XINT (read_kbd) >= 0)
4089 QUIT;
4090 #ifdef SYNC_INPUT
4091 else if (interrupt_input_pending)
4092 handle_async_input ();
4093 #endif
4094
4095 /* Exit now if the cell we're waiting for became non-nil. */
4096 if (! NILP (wait_for_cell) && ! NILP (XCAR (wait_for_cell)))
4097 break;
4098
4099 /* Compute time from now till when time limit is up */
4100 /* Exit if already run out */
4101 if (time_limit == -1)
4102 {
4103 /* -1 specified for timeout means
4104 gobble output available now
4105 but don't wait at all. */
4106
4107 EMACS_SET_SECS_USECS (timeout, 0, 0);
4108 }
4109 else if (time_limit || microsecs)
4110 {
4111 EMACS_GET_TIME (timeout);
4112 EMACS_SUB_TIME (timeout, end_time, timeout);
4113 if (EMACS_TIME_NEG_P (timeout))
4114 break;
4115 }
4116 else
4117 {
4118 EMACS_SET_SECS_USECS (timeout, 100000, 0);
4119 }
4120
4121 /* Normally we run timers here.
4122 But not if wait_for_cell; in those cases,
4123 the wait is supposed to be short,
4124 and those callers cannot handle running arbitrary Lisp code here. */
4125 if (NILP (wait_for_cell))
4126 {
4127 EMACS_TIME timer_delay;
4128
4129 do
4130 {
4131 int old_timers_run = timers_run;
4132 struct buffer *old_buffer = current_buffer;
4133
4134 timer_delay = timer_check (1);
4135
4136 /* If a timer has run, this might have changed buffers
4137 an alike. Make read_key_sequence aware of that. */
4138 if (timers_run != old_timers_run
4139 && old_buffer != current_buffer
4140 && waiting_for_user_input_p == -1)
4141 record_asynch_buffer_change ();
4142
4143 if (timers_run != old_timers_run && do_display)
4144 /* We must retry, since a timer may have requeued itself
4145 and that could alter the time_delay. */
4146 redisplay_preserve_echo_area (9);
4147 else
4148 break;
4149 }
4150 while (!detect_input_pending ());
4151
4152 /* If there is unread keyboard input, also return. */
4153 if (XINT (read_kbd) != 0
4154 && requeued_events_pending_p ())
4155 break;
4156
4157 if (! EMACS_TIME_NEG_P (timer_delay) && time_limit != -1)
4158 {
4159 EMACS_TIME difference;
4160 EMACS_SUB_TIME (difference, timer_delay, timeout);
4161 if (EMACS_TIME_NEG_P (difference))
4162 {
4163 timeout = timer_delay;
4164 timeout_reduced_for_timers = 1;
4165 }
4166 }
4167 /* If time_limit is -1, we are not going to wait at all. */
4168 else if (time_limit != -1)
4169 {
4170 /* This is so a breakpoint can be put here. */
4171 wait_reading_process_input_1 ();
4172 }
4173 }
4174
4175 /* Cause C-g and alarm signals to take immediate action,
4176 and cause input available signals to zero out timeout.
4177
4178 It is important that we do this before checking for process
4179 activity. If we get a SIGCHLD after the explicit checks for
4180 process activity, timeout is the only way we will know. */
4181 if (XINT (read_kbd) < 0)
4182 set_waiting_for_input (&timeout);
4183
4184 /* If status of something has changed, and no input is
4185 available, notify the user of the change right away. After
4186 this explicit check, we'll let the SIGCHLD handler zap
4187 timeout to get our attention. */
4188 if (update_tick != process_tick && do_display)
4189 {
4190 SELECT_TYPE Atemp, Ctemp;
4191
4192 Atemp = input_wait_mask;
4193 #if 0
4194 /* On Mac OS X 10.0, the SELECT system call always says input is
4195 present (for reading) at stdin, even when none is. This
4196 causes the call to SELECT below to return 1 and
4197 status_notify not to be called. As a result output of
4198 subprocesses are incorrectly discarded.
4199 */
4200 FD_CLR (0, &Atemp);
4201 #endif
4202 Ctemp = connect_wait_mask;
4203 EMACS_SET_SECS_USECS (timeout, 0, 0);
4204 if ((select (max (max_process_desc, max_keyboard_desc) + 1,
4205 &Atemp,
4206 (num_pending_connects > 0 ? &Ctemp : (SELECT_TYPE *)0),
4207 (SELECT_TYPE *)0, &timeout)
4208 <= 0))
4209 {
4210 /* It's okay for us to do this and then continue with
4211 the loop, since timeout has already been zeroed out. */
4212 clear_waiting_for_input ();
4213 status_notify ();
4214 }
4215 }
4216
4217 /* Don't wait for output from a non-running process. Just
4218 read whatever data has already been received. */
4219 if (wait_proc != 0 && !NILP (wait_proc->raw_status_low))
4220 update_status (wait_proc);
4221 if (wait_proc != 0
4222 && ! EQ (wait_proc->status, Qrun)
4223 && ! EQ (wait_proc->status, Qconnect))
4224 {
4225 int nread, total_nread = 0;
4226
4227 clear_waiting_for_input ();
4228 XSETPROCESS (proc, wait_proc);
4229
4230 /* Read data from the process, until we exhaust it. */
4231 while (XINT (wait_proc->infd) >= 0)
4232 {
4233 nread = read_process_output (proc, XINT (wait_proc->infd));
4234
4235 if (nread == 0)
4236 break;
4237
4238 if (0 < nread)
4239 total_nread += nread;
4240 #ifdef EIO
4241 else if (nread == -1 && EIO == errno)
4242 break;
4243 #endif
4244 #ifdef EAGAIN
4245 else if (nread == -1 && EAGAIN == errno)
4246 break;
4247 #endif
4248 #ifdef EWOULDBLOCK
4249 else if (nread == -1 && EWOULDBLOCK == errno)
4250 break;
4251 #endif
4252 }
4253 if (total_nread > 0 && do_display)
4254 redisplay_preserve_echo_area (10);
4255
4256 break;
4257 }
4258
4259 /* Wait till there is something to do */
4260
4261 if (!NILP (wait_for_cell))
4262 {
4263 Available = non_process_wait_mask;
4264 check_connect = check_delay = 0;
4265 }
4266 else
4267 {
4268 if (! XINT (read_kbd))
4269 Available = non_keyboard_wait_mask;
4270 else
4271 Available = input_wait_mask;
4272 check_connect = (num_pending_connects > 0);
4273 check_delay = wait_channel >= 0 ? 0 : process_output_delay_count;
4274 }
4275
4276 /* If frame size has changed or the window is newly mapped,
4277 redisplay now, before we start to wait. There is a race
4278 condition here; if a SIGIO arrives between now and the select
4279 and indicates that a frame is trashed, the select may block
4280 displaying a trashed screen. */
4281 if (frame_garbaged && do_display)
4282 {
4283 clear_waiting_for_input ();
4284 redisplay_preserve_echo_area (11);
4285 if (XINT (read_kbd) < 0)
4286 set_waiting_for_input (&timeout);
4287 }
4288
4289 no_avail = 0;
4290 if (XINT (read_kbd) && detect_input_pending ())
4291 {
4292 nfds = 0;
4293 no_avail = 1;
4294 }
4295 else
4296 {
4297 if (check_connect)
4298 Connecting = connect_wait_mask;
4299
4300 #ifdef ADAPTIVE_READ_BUFFERING
4301 if (process_output_skip && check_delay > 0)
4302 {
4303 int usecs = EMACS_USECS (timeout);
4304 if (EMACS_SECS (timeout) > 0 || usecs > READ_OUTPUT_DELAY_MAX)
4305 usecs = READ_OUTPUT_DELAY_MAX;
4306 for (channel = 0; check_delay > 0 && channel <= max_process_desc; channel++)
4307 {
4308 proc = chan_process[channel];
4309 if (NILP (proc))
4310 continue;
4311 if (XINT (XPROCESS (proc)->read_output_delay) > 0)
4312 {
4313 check_delay--;
4314 if (NILP (XPROCESS (proc)->read_output_skip))
4315 continue;
4316 FD_CLR (channel, &Available);
4317 XPROCESS (proc)->read_output_skip = Qnil;
4318 if (XINT (XPROCESS (proc)->read_output_delay) < usecs)
4319 usecs = XINT (XPROCESS (proc)->read_output_delay);
4320 }
4321 }
4322 EMACS_SET_SECS_USECS (timeout, 0, usecs);
4323 process_output_skip = 0;
4324 }
4325 #endif
4326
4327 nfds = select (max (max_process_desc, max_keyboard_desc) + 1,
4328 &Available,
4329 (check_connect ? &Connecting : (SELECT_TYPE *)0),
4330 (SELECT_TYPE *)0, &timeout);
4331 }
4332
4333 xerrno = errno;
4334
4335 /* Make C-g and alarm signals set flags again */
4336 clear_waiting_for_input ();
4337
4338 /* If we woke up due to SIGWINCH, actually change size now. */
4339 do_pending_window_change (0);
4340
4341 if (time_limit && nfds == 0 && ! timeout_reduced_for_timers)
4342 /* We wanted the full specified time, so return now. */
4343 break;
4344 if (nfds < 0)
4345 {
4346 if (xerrno == EINTR)
4347 no_avail = 1;
4348 #ifdef ultrix
4349 /* Ultrix select seems to return ENOMEM when it is
4350 interrupted. Treat it just like EINTR. Bleah. Note
4351 that we want to test for the "ultrix" CPP symbol, not
4352 "__ultrix__"; the latter is only defined under GCC, but
4353 not by DEC's bundled CC. -JimB */
4354 else if (xerrno == ENOMEM)
4355 no_avail = 1;
4356 #endif
4357 #ifdef ALLIANT
4358 /* This happens for no known reason on ALLIANT.
4359 I am guessing that this is the right response. -- RMS. */
4360 else if (xerrno == EFAULT)
4361 no_avail = 1;
4362 #endif
4363 else if (xerrno == EBADF)
4364 {
4365 #ifdef AIX
4366 /* AIX doesn't handle PTY closure the same way BSD does. On AIX,
4367 the child's closure of the pts gives the parent a SIGHUP, and
4368 the ptc file descriptor is automatically closed,
4369 yielding EBADF here or at select() call above.
4370 So, SIGHUP is ignored (see def of PTY_TTY_NAME_SPRINTF
4371 in m/ibmrt-aix.h), and here we just ignore the select error.
4372 Cleanup occurs c/o status_notify after SIGCLD. */
4373 no_avail = 1; /* Cannot depend on values returned */
4374 #else
4375 abort ();
4376 #endif
4377 }
4378 else
4379 error ("select error: %s", emacs_strerror (xerrno));
4380 }
4381
4382 if (no_avail)
4383 {
4384 FD_ZERO (&Available);
4385 check_connect = 0;
4386 }
4387
4388 #if defined(sun) && !defined(USG5_4)
4389 if (nfds > 0 && keyboard_bit_set (&Available)
4390 && interrupt_input)
4391 /* System sometimes fails to deliver SIGIO.
4392
4393 David J. Mackenzie says that Emacs doesn't compile under
4394 Solaris if this code is enabled, thus the USG5_4 in the CPP
4395 conditional. "I haven't noticed any ill effects so far.
4396 If you find a Solaris expert somewhere, they might know
4397 better." */
4398 kill (getpid (), SIGIO);
4399 #endif
4400
4401 #if 0 /* When polling is used, interrupt_input is 0,
4402 so get_input_pending should read the input.
4403 So this should not be needed. */
4404 /* If we are using polling for input,
4405 and we see input available, make it get read now.
4406 Otherwise it might not actually get read for a second.
4407 And on hpux, since we turn off polling in wait_reading_process_input,
4408 it might never get read at all if we don't spend much time
4409 outside of wait_reading_process_input. */
4410 if (XINT (read_kbd) && interrupt_input
4411 && keyboard_bit_set (&Available)
4412 && input_polling_used ())
4413 kill (getpid (), SIGALRM);
4414 #endif
4415
4416 /* Check for keyboard input */
4417 /* If there is any, return immediately
4418 to give it higher priority than subprocesses */
4419
4420 if (XINT (read_kbd) != 0)
4421 {
4422 int old_timers_run = timers_run;
4423 struct buffer *old_buffer = current_buffer;
4424 int leave = 0;
4425
4426 if (detect_input_pending_run_timers (do_display))
4427 {
4428 swallow_events (do_display);
4429 if (detect_input_pending_run_timers (do_display))
4430 leave = 1;
4431 }
4432
4433 /* If a timer has run, this might have changed buffers
4434 an alike. Make read_key_sequence aware of that. */
4435 if (timers_run != old_timers_run
4436 && waiting_for_user_input_p == -1
4437 && old_buffer != current_buffer)
4438 record_asynch_buffer_change ();
4439
4440 if (leave)
4441 break;
4442 }
4443
4444 /* If there is unread keyboard input, also return. */
4445 if (XINT (read_kbd) != 0
4446 && requeued_events_pending_p ())
4447 break;
4448
4449 /* If we are not checking for keyboard input now,
4450 do process events (but don't run any timers).
4451 This is so that X events will be processed.
4452 Otherwise they may have to wait until polling takes place.
4453 That would causes delays in pasting selections, for example.
4454
4455 (We used to do this only if wait_for_cell.) */
4456 if (XINT (read_kbd) == 0 && detect_input_pending ())
4457 {
4458 swallow_events (do_display);
4459 #if 0 /* Exiting when read_kbd doesn't request that seems wrong, though. */
4460 if (detect_input_pending ())
4461 break;
4462 #endif
4463 }
4464
4465 /* Exit now if the cell we're waiting for became non-nil. */
4466 if (! NILP (wait_for_cell) && ! NILP (XCAR (wait_for_cell)))
4467 break;
4468
4469 #ifdef SIGIO
4470 /* If we think we have keyboard input waiting, but didn't get SIGIO,
4471 go read it. This can happen with X on BSD after logging out.
4472 In that case, there really is no input and no SIGIO,
4473 but select says there is input. */
4474
4475 if (XINT (read_kbd) && interrupt_input
4476 && keyboard_bit_set (&Available) && ! noninteractive)
4477 kill (getpid (), SIGIO);
4478 #endif
4479
4480 if (! wait_proc)
4481 got_some_input |= nfds > 0;
4482
4483 /* If checking input just got us a size-change event from X,
4484 obey it now if we should. */
4485 if (XINT (read_kbd) || ! NILP (wait_for_cell))
4486 do_pending_window_change (0);
4487
4488 /* Check for data from a process. */
4489 if (no_avail || nfds == 0)
4490 continue;
4491
4492 /* Really FIRST_PROC_DESC should be 0 on Unix,
4493 but this is safer in the short run. */
4494 for (channel = 0; channel <= max_process_desc; channel++)
4495 {
4496 if (FD_ISSET (channel, &Available)
4497 && FD_ISSET (channel, &non_keyboard_wait_mask))
4498 {
4499 int nread;
4500
4501 /* If waiting for this channel, arrange to return as
4502 soon as no more input to be processed. No more
4503 waiting. */
4504 if (wait_channel == channel)
4505 {
4506 wait_channel = -1;
4507 time_limit = -1;
4508 got_some_input = 1;
4509 }
4510 proc = chan_process[channel];
4511 if (NILP (proc))
4512 continue;
4513
4514 /* If this is a server stream socket, accept connection. */
4515 if (EQ (XPROCESS (proc)->status, Qlisten))
4516 {
4517 server_accept_connection (proc, channel);
4518 continue;
4519 }
4520
4521 /* Read data from the process, starting with our
4522 buffered-ahead character if we have one. */
4523
4524 nread = read_process_output (proc, channel);
4525 if (nread > 0)
4526 {
4527 /* Since read_process_output can run a filter,
4528 which can call accept-process-output,
4529 don't try to read from any other processes
4530 before doing the select again. */
4531 FD_ZERO (&Available);
4532
4533 if (do_display)
4534 redisplay_preserve_echo_area (12);
4535 }
4536 #ifdef EWOULDBLOCK
4537 else if (nread == -1 && errno == EWOULDBLOCK)
4538 ;
4539 #endif
4540 /* ISC 4.1 defines both EWOULDBLOCK and O_NONBLOCK,
4541 and Emacs uses O_NONBLOCK, so what we get is EAGAIN. */
4542 #ifdef O_NONBLOCK
4543 else if (nread == -1 && errno == EAGAIN)
4544 ;
4545 #else
4546 #ifdef O_NDELAY
4547 else if (nread == -1 && errno == EAGAIN)
4548 ;
4549 /* Note that we cannot distinguish between no input
4550 available now and a closed pipe.
4551 With luck, a closed pipe will be accompanied by
4552 subprocess termination and SIGCHLD. */
4553 else if (nread == 0 && !NETCONN_P (proc))
4554 ;
4555 #endif /* O_NDELAY */
4556 #endif /* O_NONBLOCK */
4557 #ifdef HAVE_PTYS
4558 /* On some OSs with ptys, when the process on one end of
4559 a pty exits, the other end gets an error reading with
4560 errno = EIO instead of getting an EOF (0 bytes read).
4561 Therefore, if we get an error reading and errno =
4562 EIO, just continue, because the child process has
4563 exited and should clean itself up soon (e.g. when we
4564 get a SIGCHLD).
4565
4566 However, it has been known to happen that the SIGCHLD
4567 got lost. So raise the signl again just in case.
4568 It can't hurt. */
4569 else if (nread == -1 && errno == EIO)
4570 kill (getpid (), SIGCHLD);
4571 #endif /* HAVE_PTYS */
4572 /* If we can detect process termination, don't consider the process
4573 gone just because its pipe is closed. */
4574 #ifdef SIGCHLD
4575 else if (nread == 0 && !NETCONN_P (proc))
4576 ;
4577 #endif
4578 else
4579 {
4580 /* Preserve status of processes already terminated. */
4581 XSETINT (XPROCESS (proc)->tick, ++process_tick);
4582 deactivate_process (proc);
4583 if (!NILP (XPROCESS (proc)->raw_status_low))
4584 update_status (XPROCESS (proc));
4585 if (EQ (XPROCESS (proc)->status, Qrun))
4586 XPROCESS (proc)->status
4587 = Fcons (Qexit, Fcons (make_number (256), Qnil));
4588 }
4589 }
4590 #ifdef NON_BLOCKING_CONNECT
4591 if (check_connect && FD_ISSET (channel, &Connecting)
4592 && FD_ISSET (channel, &connect_wait_mask))
4593 {
4594 struct Lisp_Process *p;
4595
4596 FD_CLR (channel, &connect_wait_mask);
4597 if (--num_pending_connects < 0)
4598 abort ();
4599
4600 proc = chan_process[channel];
4601 if (NILP (proc))
4602 continue;
4603
4604 p = XPROCESS (proc);
4605
4606 #ifdef GNU_LINUX
4607 /* getsockopt(,,SO_ERROR,,) is said to hang on some systems.
4608 So only use it on systems where it is known to work. */
4609 {
4610 int xlen = sizeof(xerrno);
4611 if (getsockopt(channel, SOL_SOCKET, SO_ERROR, &xerrno, &xlen))
4612 xerrno = errno;
4613 }
4614 #else
4615 {
4616 struct sockaddr pname;
4617 int pnamelen = sizeof(pname);
4618
4619 /* If connection failed, getpeername will fail. */
4620 xerrno = 0;
4621 if (getpeername(channel, &pname, &pnamelen) < 0)
4622 {
4623 /* Obtain connect failure code through error slippage. */
4624 char dummy;
4625 xerrno = errno;
4626 if (errno == ENOTCONN && read(channel, &dummy, 1) < 0)
4627 xerrno = errno;
4628 }
4629 }
4630 #endif
4631 if (xerrno)
4632 {
4633 XSETINT (p->tick, ++process_tick);
4634 p->status = Fcons (Qfailed, Fcons (make_number (xerrno), Qnil));
4635 deactivate_process (proc);
4636 }
4637 else
4638 {
4639 p->status = Qrun;
4640 /* Execute the sentinel here. If we had relied on
4641 status_notify to do it later, it will read input
4642 from the process before calling the sentinel. */
4643 exec_sentinel (proc, build_string ("open\n"));
4644 if (!EQ (p->filter, Qt) && !EQ (p->command, Qt))
4645 {
4646 FD_SET (XINT (p->infd), &input_wait_mask);
4647 FD_SET (XINT (p->infd), &non_keyboard_wait_mask);
4648 }
4649 }
4650 }
4651 #endif /* NON_BLOCKING_CONNECT */
4652 } /* end for each file descriptor */
4653 } /* end while exit conditions not met */
4654
4655 waiting_for_user_input_p = saved_waiting_for_user_input_p;
4656
4657 /* If calling from keyboard input, do not quit
4658 since we want to return C-g as an input character.
4659 Otherwise, do pending quit if requested. */
4660 if (XINT (read_kbd) >= 0)
4661 {
4662 /* Prevent input_pending from remaining set if we quit. */
4663 clear_input_pending ();
4664 QUIT;
4665 }
4666 #ifdef POLL_INTERRUPTED_SYS_CALL
4667 /* AlainF 5-Jul-1996
4668 HP-UX 10.10 seems to have problems with signals coming in
4669 Causes "poll: interrupted system call" messages when Emacs is run
4670 in an X window
4671 Turn periodic alarms back on */
4672 start_polling ();
4673 #endif /* POLL_INTERRUPTED_SYS_CALL */
4674
4675 return got_some_input;
4676 }
4677 \f
4678 /* Given a list (FUNCTION ARGS...), apply FUNCTION to the ARGS. */
4679
4680 static Lisp_Object
4681 read_process_output_call (fun_and_args)
4682 Lisp_Object fun_and_args;
4683 {
4684 return apply1 (XCAR (fun_and_args), XCDR (fun_and_args));
4685 }
4686
4687 static Lisp_Object
4688 read_process_output_error_handler (error)
4689 Lisp_Object error;
4690 {
4691 cmd_error_internal (error, "error in process filter: ");
4692 Vinhibit_quit = Qt;
4693 update_echo_area ();
4694 Fsleep_for (make_number (2), Qnil);
4695 return Qt;
4696 }
4697
4698 /* Read pending output from the process channel,
4699 starting with our buffered-ahead character if we have one.
4700 Yield number of decoded characters read.
4701
4702 This function reads at most 4096 characters.
4703 If you want to read all available subprocess output,
4704 you must call it repeatedly until it returns zero.
4705
4706 The characters read are decoded according to PROC's coding-system
4707 for decoding. */
4708
4709 int
4710 read_process_output (proc, channel)
4711 Lisp_Object proc;
4712 register int channel;
4713 {
4714 register int nbytes;
4715 char *chars;
4716 register Lisp_Object outstream;
4717 register struct buffer *old = current_buffer;
4718 register struct Lisp_Process *p = XPROCESS (proc);
4719 register int opoint;
4720 struct coding_system *coding = proc_decode_coding_system[channel];
4721 int carryover = XINT (p->decoding_carryover);
4722 int readmax = 4096;
4723
4724 #ifdef VMS
4725 VMS_PROC_STUFF *vs, *get_vms_process_pointer();
4726
4727 vs = get_vms_process_pointer (p->pid);
4728 if (vs)
4729 {
4730 if (!vs->iosb[0])
4731 return (0); /* Really weird if it does this */
4732 if (!(vs->iosb[0] & 1))
4733 return -1; /* I/O error */
4734 }
4735 else
4736 error ("Could not get VMS process pointer");
4737 chars = vs->inputBuffer;
4738 nbytes = clean_vms_buffer (chars, vs->iosb[1]);
4739 if (nbytes <= 0)
4740 {
4741 start_vms_process_read (vs); /* Crank up the next read on the process */
4742 return 1; /* Nothing worth printing, say we got 1 */
4743 }
4744 if (carryover > 0)
4745 {
4746 /* The data carried over in the previous decoding (which are at
4747 the tail of decoding buffer) should be prepended to the new
4748 data read to decode all together. */
4749 chars = (char *) alloca (nbytes + carryover);
4750 bcopy (SDATA (p->decoding_buf), buf, carryover);
4751 bcopy (vs->inputBuffer, chars + carryover, nbytes);
4752 }
4753 #else /* not VMS */
4754
4755 chars = (char *) alloca (carryover + readmax);
4756 if (carryover)
4757 /* See the comment above. */
4758 bcopy (SDATA (p->decoding_buf), chars, carryover);
4759
4760 #ifdef DATAGRAM_SOCKETS
4761 /* We have a working select, so proc_buffered_char is always -1. */
4762 if (DATAGRAM_CHAN_P (channel))
4763 {
4764 int len = datagram_address[channel].len;
4765 nbytes = recvfrom (channel, chars + carryover, readmax - carryover,
4766 0, datagram_address[channel].sa, &len);
4767 }
4768 else
4769 #endif
4770 if (proc_buffered_char[channel] < 0)
4771 {
4772 nbytes = emacs_read (channel, chars + carryover, readmax - carryover);
4773 #ifdef ADAPTIVE_READ_BUFFERING
4774 if (!NILP (p->adaptive_read_buffering))
4775 {
4776 int delay = XINT (p->read_output_delay);
4777 if (nbytes < 256)
4778 {
4779 if (delay < READ_OUTPUT_DELAY_MAX_MAX)
4780 {
4781 if (delay == 0)
4782 process_output_delay_count++;
4783 delay += READ_OUTPUT_DELAY_INCREMENT * 2;
4784 }
4785 }
4786 else if (delay > 0 && (nbytes == readmax - carryover))
4787 {
4788 delay -= READ_OUTPUT_DELAY_INCREMENT;
4789 if (delay == 0)
4790 process_output_delay_count--;
4791 }
4792 XSETINT (p->read_output_delay, delay);
4793 if (delay)
4794 {
4795 p->read_output_skip = Qt;
4796 process_output_skip = 1;
4797 }
4798 }
4799 #endif
4800 }
4801 else
4802 {
4803 chars[carryover] = proc_buffered_char[channel];
4804 proc_buffered_char[channel] = -1;
4805 nbytes = emacs_read (channel, chars + carryover + 1, readmax - 1 - carryover);
4806 if (nbytes < 0)
4807 nbytes = 1;
4808 else
4809 nbytes = nbytes + 1;
4810 }
4811 #endif /* not VMS */
4812
4813 XSETINT (p->decoding_carryover, 0);
4814
4815 /* At this point, NBYTES holds number of bytes just received
4816 (including the one in proc_buffered_char[channel]). */
4817 if (nbytes <= 0)
4818 {
4819 if (nbytes < 0 || coding->mode & CODING_MODE_LAST_BLOCK)
4820 return nbytes;
4821 coding->mode |= CODING_MODE_LAST_BLOCK;
4822 }
4823
4824 /* Now set NBYTES how many bytes we must decode. */
4825 nbytes += carryover;
4826
4827 /* Read and dispose of the process output. */
4828 outstream = p->filter;
4829 if (!NILP (outstream))
4830 {
4831 /* We inhibit quit here instead of just catching it so that
4832 hitting ^G when a filter happens to be running won't screw
4833 it up. */
4834 int count = SPECPDL_INDEX ();
4835 Lisp_Object odeactivate;
4836 Lisp_Object obuffer, okeymap;
4837 Lisp_Object text;
4838 int outer_running_asynch_code = running_asynch_code;
4839 int waiting = waiting_for_user_input_p;
4840
4841 /* No need to gcpro these, because all we do with them later
4842 is test them for EQness, and none of them should be a string. */
4843 odeactivate = Vdeactivate_mark;
4844 XSETBUFFER (obuffer, current_buffer);
4845 okeymap = current_buffer->keymap;
4846
4847 specbind (Qinhibit_quit, Qt);
4848 specbind (Qlast_nonmenu_event, Qt);
4849
4850 /* In case we get recursively called,
4851 and we already saved the match data nonrecursively,
4852 save the same match data in safely recursive fashion. */
4853 if (outer_running_asynch_code)
4854 {
4855 Lisp_Object tem;
4856 /* Don't clobber the CURRENT match data, either! */
4857 tem = Fmatch_data (Qnil, Qnil);
4858 restore_match_data ();
4859 record_unwind_protect (Fset_match_data, Fmatch_data (Qnil, Qnil));
4860 Fset_match_data (tem);
4861 }
4862
4863 /* For speed, if a search happens within this code,
4864 save the match data in a special nonrecursive fashion. */
4865 running_asynch_code = 1;
4866
4867 text = decode_coding_string (make_unibyte_string (chars, nbytes),
4868 coding, 0);
4869 Vlast_coding_system_used = coding->symbol;
4870 /* A new coding system might be found. */
4871 if (!EQ (p->decode_coding_system, coding->symbol))
4872 {
4873 p->decode_coding_system = coding->symbol;
4874
4875 /* Don't call setup_coding_system for
4876 proc_decode_coding_system[channel] here. It is done in
4877 detect_coding called via decode_coding above. */
4878
4879 /* If a coding system for encoding is not yet decided, we set
4880 it as the same as coding-system for decoding.
4881
4882 But, before doing that we must check if
4883 proc_encode_coding_system[p->outfd] surely points to a
4884 valid memory because p->outfd will be changed once EOF is
4885 sent to the process. */
4886 if (NILP (p->encode_coding_system)
4887 && proc_encode_coding_system[XINT (p->outfd)])
4888 {
4889 p->encode_coding_system = coding->symbol;
4890 setup_coding_system (coding->symbol,
4891 proc_encode_coding_system[XINT (p->outfd)]);
4892 }
4893 }
4894
4895 carryover = nbytes - coding->consumed;
4896 if (SCHARS (p->decoding_buf) < carryover)
4897 p->decoding_buf = make_uninit_string (carryover);
4898 bcopy (chars + coding->consumed, SDATA (p->decoding_buf),
4899 carryover);
4900 XSETINT (p->decoding_carryover, carryover);
4901 /* Adjust the multibyteness of TEXT to that of the filter. */
4902 if (NILP (p->filter_multibyte) != ! STRING_MULTIBYTE (text))
4903 text = (STRING_MULTIBYTE (text)
4904 ? Fstring_as_unibyte (text)
4905 : Fstring_to_multibyte (text));
4906 if (SBYTES (text) > 0)
4907 internal_condition_case_1 (read_process_output_call,
4908 Fcons (outstream,
4909 Fcons (proc, Fcons (text, Qnil))),
4910 !NILP (Vdebug_on_error) ? Qnil : Qerror,
4911 read_process_output_error_handler);
4912
4913 /* If we saved the match data nonrecursively, restore it now. */
4914 restore_match_data ();
4915 running_asynch_code = outer_running_asynch_code;
4916
4917 /* Handling the process output should not deactivate the mark. */
4918 Vdeactivate_mark = odeactivate;
4919
4920 /* Restore waiting_for_user_input_p as it was
4921 when we were called, in case the filter clobbered it. */
4922 waiting_for_user_input_p = waiting;
4923
4924 #if 0 /* Call record_asynch_buffer_change unconditionally,
4925 because we might have changed minor modes or other things
4926 that affect key bindings. */
4927 if (! EQ (Fcurrent_buffer (), obuffer)
4928 || ! EQ (current_buffer->keymap, okeymap))
4929 #endif
4930 /* But do it only if the caller is actually going to read events.
4931 Otherwise there's no need to make him wake up, and it could
4932 cause trouble (for example it would make Fsit_for return). */
4933 if (waiting_for_user_input_p == -1)
4934 record_asynch_buffer_change ();
4935
4936 #ifdef VMS
4937 start_vms_process_read (vs);
4938 #endif
4939 unbind_to (count, Qnil);
4940 return nbytes;
4941 }
4942
4943 /* If no filter, write into buffer if it isn't dead. */
4944 if (!NILP (p->buffer) && !NILP (XBUFFER (p->buffer)->name))
4945 {
4946 Lisp_Object old_read_only;
4947 int old_begv, old_zv;
4948 int old_begv_byte, old_zv_byte;
4949 Lisp_Object odeactivate;
4950 int before, before_byte;
4951 int opoint_byte;
4952 Lisp_Object text;
4953 struct buffer *b;
4954
4955 odeactivate = Vdeactivate_mark;
4956
4957 Fset_buffer (p->buffer);
4958 opoint = PT;
4959 opoint_byte = PT_BYTE;
4960 old_read_only = current_buffer->read_only;
4961 old_begv = BEGV;
4962 old_zv = ZV;
4963 old_begv_byte = BEGV_BYTE;
4964 old_zv_byte = ZV_BYTE;
4965
4966 current_buffer->read_only = Qnil;
4967
4968 /* Insert new output into buffer
4969 at the current end-of-output marker,
4970 thus preserving logical ordering of input and output. */
4971 if (XMARKER (p->mark)->buffer)
4972 SET_PT_BOTH (clip_to_bounds (BEGV, marker_position (p->mark), ZV),
4973 clip_to_bounds (BEGV_BYTE, marker_byte_position (p->mark),
4974 ZV_BYTE));
4975 else
4976 SET_PT_BOTH (ZV, ZV_BYTE);
4977 before = PT;
4978 before_byte = PT_BYTE;
4979
4980 /* If the output marker is outside of the visible region, save
4981 the restriction and widen. */
4982 if (! (BEGV <= PT && PT <= ZV))
4983 Fwiden ();
4984
4985 text = decode_coding_string (make_unibyte_string (chars, nbytes),
4986 coding, 0);
4987 Vlast_coding_system_used = coding->symbol;
4988 /* A new coding system might be found. See the comment in the
4989 similar code in the previous `if' block. */
4990 if (!EQ (p->decode_coding_system, coding->symbol))
4991 {
4992 p->decode_coding_system = coding->symbol;
4993 if (NILP (p->encode_coding_system)
4994 && proc_encode_coding_system[XINT (p->outfd)])
4995 {
4996 p->encode_coding_system = coding->symbol;
4997 setup_coding_system (coding->symbol,
4998 proc_encode_coding_system[XINT (p->outfd)]);
4999 }
5000 }
5001 carryover = nbytes - coding->consumed;
5002 if (SCHARS (p->decoding_buf) < carryover)
5003 p->decoding_buf = make_uninit_string (carryover);
5004 bcopy (chars + coding->consumed, SDATA (p->decoding_buf),
5005 carryover);
5006 XSETINT (p->decoding_carryover, carryover);
5007 /* Adjust the multibyteness of TEXT to that of the buffer. */
5008 if (NILP (current_buffer->enable_multibyte_characters)
5009 != ! STRING_MULTIBYTE (text))
5010 text = (STRING_MULTIBYTE (text)
5011 ? Fstring_as_unibyte (text)
5012 : Fstring_to_multibyte (text));
5013 /* Insert before markers in case we are inserting where
5014 the buffer's mark is, and the user's next command is Meta-y. */
5015 insert_from_string_before_markers (text, 0, 0,
5016 SCHARS (text), SBYTES (text), 0);
5017
5018 /* Make sure the process marker's position is valid when the
5019 process buffer is changed in the signal_after_change above.
5020 W3 is known to do that. */
5021 if (BUFFERP (p->buffer)
5022 && (b = XBUFFER (p->buffer), b != current_buffer))
5023 set_marker_both (p->mark, p->buffer, BUF_PT (b), BUF_PT_BYTE (b));
5024 else
5025 set_marker_both (p->mark, p->buffer, PT, PT_BYTE);
5026
5027 update_mode_lines++;
5028
5029 /* Make sure opoint and the old restrictions
5030 float ahead of any new text just as point would. */
5031 if (opoint >= before)
5032 {
5033 opoint += PT - before;
5034 opoint_byte += PT_BYTE - before_byte;
5035 }
5036 if (old_begv > before)
5037 {
5038 old_begv += PT - before;
5039 old_begv_byte += PT_BYTE - before_byte;
5040 }
5041 if (old_zv >= before)
5042 {
5043 old_zv += PT - before;
5044 old_zv_byte += PT_BYTE - before_byte;
5045 }
5046
5047 /* If the restriction isn't what it should be, set it. */
5048 if (old_begv != BEGV || old_zv != ZV)
5049 Fnarrow_to_region (make_number (old_begv), make_number (old_zv));
5050
5051 /* Handling the process output should not deactivate the mark. */
5052 Vdeactivate_mark = odeactivate;
5053
5054 current_buffer->read_only = old_read_only;
5055 SET_PT_BOTH (opoint, opoint_byte);
5056 set_buffer_internal (old);
5057 }
5058 #ifdef VMS
5059 start_vms_process_read (vs);
5060 #endif
5061 return nbytes;
5062 }
5063
5064 DEFUN ("waiting-for-user-input-p", Fwaiting_for_user_input_p, Swaiting_for_user_input_p,
5065 0, 0, 0,
5066 doc: /* Returns non-nil if Emacs is waiting for input from the user.
5067 This is intended for use by asynchronous process output filters and sentinels. */)
5068 ()
5069 {
5070 return (waiting_for_user_input_p ? Qt : Qnil);
5071 }
5072 \f
5073 /* Sending data to subprocess */
5074
5075 jmp_buf send_process_frame;
5076 Lisp_Object process_sent_to;
5077
5078 SIGTYPE
5079 send_process_trap ()
5080 {
5081 #ifdef BSD4_1
5082 sigrelse (SIGPIPE);
5083 sigrelse (SIGALRM);
5084 #endif /* BSD4_1 */
5085 longjmp (send_process_frame, 1);
5086 }
5087
5088 /* Send some data to process PROC.
5089 BUF is the beginning of the data; LEN is the number of characters.
5090 OBJECT is the Lisp object that the data comes from. If OBJECT is
5091 nil or t, it means that the data comes from C string.
5092
5093 If OBJECT is not nil, the data is encoded by PROC's coding-system
5094 for encoding before it is sent.
5095
5096 This function can evaluate Lisp code and can garbage collect. */
5097
5098 void
5099 send_process (proc, buf, len, object)
5100 volatile Lisp_Object proc;
5101 unsigned char *volatile buf;
5102 volatile int len;
5103 volatile Lisp_Object object;
5104 {
5105 /* Use volatile to protect variables from being clobbered by longjmp. */
5106 struct Lisp_Process *p = XPROCESS (proc);
5107 int rv;
5108 struct coding_system *coding;
5109 struct gcpro gcpro1;
5110
5111 GCPRO1 (object);
5112
5113 #ifdef VMS
5114 VMS_PROC_STUFF *vs, *get_vms_process_pointer();
5115 #endif /* VMS */
5116
5117 if (! NILP (p->raw_status_low))
5118 update_status (p);
5119 if (! EQ (p->status, Qrun))
5120 error ("Process %s not running", SDATA (p->name));
5121 if (XINT (p->outfd) < 0)
5122 error ("Output file descriptor of %s is closed", SDATA (p->name));
5123
5124 coding = proc_encode_coding_system[XINT (p->outfd)];
5125 Vlast_coding_system_used = coding->symbol;
5126
5127 if ((STRINGP (object) && STRING_MULTIBYTE (object))
5128 || (BUFFERP (object)
5129 && !NILP (XBUFFER (object)->enable_multibyte_characters))
5130 || EQ (object, Qt))
5131 {
5132 if (!EQ (coding->symbol, p->encode_coding_system))
5133 /* The coding system for encoding was changed to raw-text
5134 because we sent a unibyte text previously. Now we are
5135 sending a multibyte text, thus we must encode it by the
5136 original coding system specified for the current process. */
5137 setup_coding_system (p->encode_coding_system, coding);
5138 /* src_multibyte should be set to 1 _after_ a call to
5139 setup_coding_system, since it resets src_multibyte to
5140 zero. */
5141 coding->src_multibyte = 1;
5142 }
5143 else
5144 {
5145 /* For sending a unibyte text, character code conversion should
5146 not take place but EOL conversion should. So, setup raw-text
5147 or one of the subsidiary if we have not yet done it. */
5148 if (coding->type != coding_type_raw_text)
5149 {
5150 if (CODING_REQUIRE_FLUSHING (coding))
5151 {
5152 /* But, before changing the coding, we must flush out data. */
5153 coding->mode |= CODING_MODE_LAST_BLOCK;
5154 send_process (proc, "", 0, Qt);
5155 }
5156 coding->src_multibyte = 0;
5157 setup_raw_text_coding_system (coding);
5158 }
5159 }
5160 coding->dst_multibyte = 0;
5161
5162 if (CODING_REQUIRE_ENCODING (coding))
5163 {
5164 int require = encoding_buffer_size (coding, len);
5165 int from_byte = -1, from = -1, to = -1;
5166
5167 if (BUFFERP (object))
5168 {
5169 from_byte = BUF_PTR_BYTE_POS (XBUFFER (object), buf);
5170 from = buf_bytepos_to_charpos (XBUFFER (object), from_byte);
5171 to = buf_bytepos_to_charpos (XBUFFER (object), from_byte + len);
5172 }
5173 else if (STRINGP (object))
5174 {
5175 from_byte = buf - SDATA (object);
5176 from = string_byte_to_char (object, from_byte);
5177 to = string_byte_to_char (object, from_byte + len);
5178 }
5179
5180 if (coding->composing != COMPOSITION_DISABLED)
5181 {
5182 if (from_byte >= 0)
5183 coding_save_composition (coding, from, to, object);
5184 else
5185 coding->composing = COMPOSITION_DISABLED;
5186 }
5187
5188 if (SBYTES (p->encoding_buf) < require)
5189 p->encoding_buf = make_uninit_string (require);
5190
5191 if (from_byte >= 0)
5192 buf = (BUFFERP (object)
5193 ? BUF_BYTE_ADDRESS (XBUFFER (object), from_byte)
5194 : SDATA (object) + from_byte);
5195
5196 object = p->encoding_buf;
5197 encode_coding (coding, (char *) buf, SDATA (object),
5198 len, SBYTES (object));
5199 len = coding->produced;
5200 buf = SDATA (object);
5201 }
5202
5203 #ifdef VMS
5204 vs = get_vms_process_pointer (p->pid);
5205 if (vs == 0)
5206 error ("Could not find this process: %x", p->pid);
5207 else if (write_to_vms_process (vs, buf, len))
5208 ;
5209 #else /* not VMS */
5210
5211 if (pty_max_bytes == 0)
5212 {
5213 #if defined (HAVE_FPATHCONF) && defined (_PC_MAX_CANON)
5214 pty_max_bytes = fpathconf (XFASTINT (p->outfd), _PC_MAX_CANON);
5215 if (pty_max_bytes < 0)
5216 pty_max_bytes = 250;
5217 #else
5218 pty_max_bytes = 250;
5219 #endif
5220 /* Deduct one, to leave space for the eof. */
5221 pty_max_bytes--;
5222 }
5223
5224 /* 2000-09-21: Emacs 20.7, sparc-sun-solaris-2.6, GCC 2.95.2,
5225 CFLAGS="-g -O": The value of the parameter `proc' is clobbered
5226 when returning with longjmp despite being declared volatile. */
5227 if (!setjmp (send_process_frame))
5228 {
5229 process_sent_to = proc;
5230 while (len > 0)
5231 {
5232 int this = len;
5233 SIGTYPE (*old_sigpipe)();
5234
5235 /* Decide how much data we can send in one batch.
5236 Long lines need to be split into multiple batches. */
5237 if (!NILP (p->pty_flag))
5238 {
5239 /* Starting this at zero is always correct when not the first
5240 iteration because the previous iteration ended by sending C-d.
5241 It may not be correct for the first iteration
5242 if a partial line was sent in a separate send_process call.
5243 If that proves worth handling, we need to save linepos
5244 in the process object. */
5245 int linepos = 0;
5246 unsigned char *ptr = (unsigned char *) buf;
5247 unsigned char *end = (unsigned char *) buf + len;
5248
5249 /* Scan through this text for a line that is too long. */
5250 while (ptr != end && linepos < pty_max_bytes)
5251 {
5252 if (*ptr == '\n')
5253 linepos = 0;
5254 else
5255 linepos++;
5256 ptr++;
5257 }
5258 /* If we found one, break the line there
5259 and put in a C-d to force the buffer through. */
5260 this = ptr - buf;
5261 }
5262
5263 /* Send this batch, using one or more write calls. */
5264 while (this > 0)
5265 {
5266 int outfd = XINT (p->outfd);
5267 old_sigpipe = (SIGTYPE (*) ()) signal (SIGPIPE, send_process_trap);
5268 #ifdef DATAGRAM_SOCKETS
5269 if (DATAGRAM_CHAN_P (outfd))
5270 {
5271 rv = sendto (outfd, (char *) buf, this,
5272 0, datagram_address[outfd].sa,
5273 datagram_address[outfd].len);
5274 if (rv < 0 && errno == EMSGSIZE)
5275 report_file_error ("sending datagram", Fcons (proc, Qnil));
5276 }
5277 else
5278 #endif
5279 {
5280 rv = emacs_write (outfd, (char *) buf, this);
5281 #ifdef ADAPTIVE_READ_BUFFERING
5282 if (XINT (p->read_output_delay) > 0
5283 && EQ (p->adaptive_read_buffering, Qt))
5284 {
5285 XSETFASTINT (p->read_output_delay, 0);
5286 process_output_delay_count--;
5287 p->read_output_skip = Qnil;
5288 }
5289 #endif
5290 }
5291 signal (SIGPIPE, old_sigpipe);
5292
5293 if (rv < 0)
5294 {
5295 if (0
5296 #ifdef EWOULDBLOCK
5297 || errno == EWOULDBLOCK
5298 #endif
5299 #ifdef EAGAIN
5300 || errno == EAGAIN
5301 #endif
5302 )
5303 /* Buffer is full. Wait, accepting input;
5304 that may allow the program
5305 to finish doing output and read more. */
5306 {
5307 Lisp_Object zero;
5308 int offset = 0;
5309
5310 #ifdef BROKEN_PTY_READ_AFTER_EAGAIN
5311 /* A gross hack to work around a bug in FreeBSD.
5312 In the following sequence, read(2) returns
5313 bogus data:
5314
5315 write(2) 1022 bytes
5316 write(2) 954 bytes, get EAGAIN
5317 read(2) 1024 bytes in process_read_output
5318 read(2) 11 bytes in process_read_output
5319
5320 That is, read(2) returns more bytes than have
5321 ever been written successfully. The 1033 bytes
5322 read are the 1022 bytes written successfully
5323 after processing (for example with CRs added if
5324 the terminal is set up that way which it is
5325 here). The same bytes will be seen again in a
5326 later read(2), without the CRs. */
5327
5328 if (errno == EAGAIN)
5329 {
5330 int flags = FWRITE;
5331 ioctl (XINT (p->outfd), TIOCFLUSH, &flags);
5332 }
5333 #endif /* BROKEN_PTY_READ_AFTER_EAGAIN */
5334
5335 /* Running filters might relocate buffers or strings.
5336 Arrange to relocate BUF. */
5337 if (BUFFERP (object))
5338 offset = BUF_PTR_BYTE_POS (XBUFFER (object), buf);
5339 else if (STRINGP (object))
5340 offset = buf - SDATA (object);
5341
5342 XSETFASTINT (zero, 0);
5343 #ifdef EMACS_HAS_USECS
5344 wait_reading_process_input (0, 20000, zero, 0);
5345 #else
5346 wait_reading_process_input (1, 0, zero, 0);
5347 #endif
5348
5349 if (BUFFERP (object))
5350 buf = BUF_BYTE_ADDRESS (XBUFFER (object), offset);
5351 else if (STRINGP (object))
5352 buf = offset + SDATA (object);
5353
5354 rv = 0;
5355 }
5356 else
5357 /* This is a real error. */
5358 report_file_error ("writing to process", Fcons (proc, Qnil));
5359 }
5360 buf += rv;
5361 len -= rv;
5362 this -= rv;
5363 }
5364
5365 /* If we sent just part of the string, put in an EOF
5366 to force it through, before we send the rest. */
5367 if (len > 0)
5368 Fprocess_send_eof (proc);
5369 }
5370 }
5371 #endif /* not VMS */
5372 else
5373 {
5374 #ifndef VMS
5375 proc = process_sent_to;
5376 p = XPROCESS (proc);
5377 #endif
5378 p->raw_status_low = Qnil;
5379 p->raw_status_high = Qnil;
5380 p->status = Fcons (Qexit, Fcons (make_number (256), Qnil));
5381 XSETINT (p->tick, ++process_tick);
5382 deactivate_process (proc);
5383 #ifdef VMS
5384 error ("Error writing to process %s; closed it", SDATA (p->name));
5385 #else
5386 error ("SIGPIPE raised on process %s; closed it", SDATA (p->name));
5387 #endif
5388 }
5389
5390 UNGCPRO;
5391 }
5392
5393 DEFUN ("process-send-region", Fprocess_send_region, Sprocess_send_region,
5394 3, 3, 0,
5395 doc: /* Send current contents of region as input to PROCESS.
5396 PROCESS may be a process, a buffer, the name of a process or buffer, or
5397 nil, indicating the current buffer's process.
5398 Called from program, takes three arguments, PROCESS, START and END.
5399 If the region is more than 500 characters long,
5400 it is sent in several bunches. This may happen even for shorter regions.
5401 Output from processes can arrive in between bunches. */)
5402 (process, start, end)
5403 Lisp_Object process, start, end;
5404 {
5405 Lisp_Object proc;
5406 int start1, end1;
5407
5408 proc = get_process (process);
5409 validate_region (&start, &end);
5410
5411 if (XINT (start) < GPT && XINT (end) > GPT)
5412 move_gap (XINT (start));
5413
5414 start1 = CHAR_TO_BYTE (XINT (start));
5415 end1 = CHAR_TO_BYTE (XINT (end));
5416 send_process (proc, BYTE_POS_ADDR (start1), end1 - start1,
5417 Fcurrent_buffer ());
5418
5419 return Qnil;
5420 }
5421
5422 DEFUN ("process-send-string", Fprocess_send_string, Sprocess_send_string,
5423 2, 2, 0,
5424 doc: /* Send PROCESS the contents of STRING as input.
5425 PROCESS may be a process, a buffer, the name of a process or buffer, or
5426 nil, indicating the current buffer's process.
5427 If STRING is more than 500 characters long,
5428 it is sent in several bunches. This may happen even for shorter strings.
5429 Output from processes can arrive in between bunches. */)
5430 (process, string)
5431 Lisp_Object process, string;
5432 {
5433 Lisp_Object proc;
5434 CHECK_STRING (string);
5435 proc = get_process (process);
5436 send_process (proc, SDATA (string),
5437 SBYTES (string), string);
5438 return Qnil;
5439 }
5440 \f
5441 /* Return the foreground process group for the tty/pty that
5442 the process P uses. */
5443 static int
5444 emacs_get_tty_pgrp (p)
5445 struct Lisp_Process *p;
5446 {
5447 int gid = -1;
5448
5449 #ifdef TIOCGPGRP
5450 if (ioctl (XINT (p->infd), TIOCGPGRP, &gid) == -1 && ! NILP (p->tty_name))
5451 {
5452 int fd;
5453 /* Some OS:es (Solaris 8/9) does not allow TIOCGPGRP from the
5454 master side. Try the slave side. */
5455 fd = emacs_open (XSTRING (p->tty_name)->data, O_RDONLY, 0);
5456
5457 if (fd != -1)
5458 {
5459 ioctl (fd, TIOCGPGRP, &gid);
5460 emacs_close (fd);
5461 }
5462 }
5463 #endif /* defined (TIOCGPGRP ) */
5464
5465 return gid;
5466 }
5467
5468 DEFUN ("process-running-child-p", Fprocess_running_child_p,
5469 Sprocess_running_child_p, 0, 1, 0,
5470 doc: /* Return t if PROCESS has given the terminal to a child.
5471 If the operating system does not make it possible to find out,
5472 return t unconditionally. */)
5473 (process)
5474 Lisp_Object process;
5475 {
5476 /* Initialize in case ioctl doesn't exist or gives an error,
5477 in a way that will cause returning t. */
5478 int gid;
5479 Lisp_Object proc;
5480 struct Lisp_Process *p;
5481
5482 proc = get_process (process);
5483 p = XPROCESS (proc);
5484
5485 if (!EQ (p->childp, Qt))
5486 error ("Process %s is not a subprocess",
5487 SDATA (p->name));
5488 if (XINT (p->infd) < 0)
5489 error ("Process %s is not active",
5490 SDATA (p->name));
5491
5492 gid = emacs_get_tty_pgrp (p);
5493
5494 if (gid == XFASTINT (p->pid))
5495 return Qnil;
5496 return Qt;
5497 }
5498 \f
5499 /* send a signal number SIGNO to PROCESS.
5500 If CURRENT_GROUP is t, that means send to the process group
5501 that currently owns the terminal being used to communicate with PROCESS.
5502 This is used for various commands in shell mode.
5503 If CURRENT_GROUP is lambda, that means send to the process group
5504 that currently owns the terminal, but only if it is NOT the shell itself.
5505
5506 If NOMSG is zero, insert signal-announcements into process's buffers
5507 right away.
5508
5509 If we can, we try to signal PROCESS by sending control characters
5510 down the pty. This allows us to signal inferiors who have changed
5511 their uid, for which killpg would return an EPERM error. */
5512
5513 static void
5514 process_send_signal (process, signo, current_group, nomsg)
5515 Lisp_Object process;
5516 int signo;
5517 Lisp_Object current_group;
5518 int nomsg;
5519 {
5520 Lisp_Object proc;
5521 register struct Lisp_Process *p;
5522 int gid;
5523 int no_pgrp = 0;
5524
5525 proc = get_process (process);
5526 p = XPROCESS (proc);
5527
5528 if (!EQ (p->childp, Qt))
5529 error ("Process %s is not a subprocess",
5530 SDATA (p->name));
5531 if (XINT (p->infd) < 0)
5532 error ("Process %s is not active",
5533 SDATA (p->name));
5534
5535 if (NILP (p->pty_flag))
5536 current_group = Qnil;
5537
5538 /* If we are using pgrps, get a pgrp number and make it negative. */
5539 if (NILP (current_group))
5540 /* Send the signal to the shell's process group. */
5541 gid = XFASTINT (p->pid);
5542 else
5543 {
5544 #ifdef SIGNALS_VIA_CHARACTERS
5545 /* If possible, send signals to the entire pgrp
5546 by sending an input character to it. */
5547
5548 /* TERMIOS is the latest and bestest, and seems most likely to
5549 work. If the system has it, use it. */
5550 #ifdef HAVE_TERMIOS
5551 struct termios t;
5552
5553 switch (signo)
5554 {
5555 case SIGINT:
5556 tcgetattr (XINT (p->infd), &t);
5557 send_process (proc, &t.c_cc[VINTR], 1, Qnil);
5558 return;
5559
5560 case SIGQUIT:
5561 tcgetattr (XINT (p->infd), &t);
5562 send_process (proc, &t.c_cc[VQUIT], 1, Qnil);
5563 return;
5564
5565 case SIGTSTP:
5566 tcgetattr (XINT (p->infd), &t);
5567 #if defined (VSWTCH) && !defined (PREFER_VSUSP)
5568 send_process (proc, &t.c_cc[VSWTCH], 1, Qnil);
5569 #else
5570 send_process (proc, &t.c_cc[VSUSP], 1, Qnil);
5571 #endif
5572 return;
5573 }
5574
5575 #else /* ! HAVE_TERMIOS */
5576
5577 /* On Berkeley descendants, the following IOCTL's retrieve the
5578 current control characters. */
5579 #if defined (TIOCGLTC) && defined (TIOCGETC)
5580
5581 struct tchars c;
5582 struct ltchars lc;
5583
5584 switch (signo)
5585 {
5586 case SIGINT:
5587 ioctl (XINT (p->infd), TIOCGETC, &c);
5588 send_process (proc, &c.t_intrc, 1, Qnil);
5589 return;
5590 case SIGQUIT:
5591 ioctl (XINT (p->infd), TIOCGETC, &c);
5592 send_process (proc, &c.t_quitc, 1, Qnil);
5593 return;
5594 #ifdef SIGTSTP
5595 case SIGTSTP:
5596 ioctl (XINT (p->infd), TIOCGLTC, &lc);
5597 send_process (proc, &lc.t_suspc, 1, Qnil);
5598 return;
5599 #endif /* ! defined (SIGTSTP) */
5600 }
5601
5602 #else /* ! defined (TIOCGLTC) && defined (TIOCGETC) */
5603
5604 /* On SYSV descendants, the TCGETA ioctl retrieves the current control
5605 characters. */
5606 #ifdef TCGETA
5607 struct termio t;
5608 switch (signo)
5609 {
5610 case SIGINT:
5611 ioctl (XINT (p->infd), TCGETA, &t);
5612 send_process (proc, &t.c_cc[VINTR], 1, Qnil);
5613 return;
5614 case SIGQUIT:
5615 ioctl (XINT (p->infd), TCGETA, &t);
5616 send_process (proc, &t.c_cc[VQUIT], 1, Qnil);
5617 return;
5618 #ifdef SIGTSTP
5619 case SIGTSTP:
5620 ioctl (XINT (p->infd), TCGETA, &t);
5621 send_process (proc, &t.c_cc[VSWTCH], 1, Qnil);
5622 return;
5623 #endif /* ! defined (SIGTSTP) */
5624 }
5625 #else /* ! defined (TCGETA) */
5626 Your configuration files are messed up.
5627 /* If your system configuration files define SIGNALS_VIA_CHARACTERS,
5628 you'd better be using one of the alternatives above! */
5629 #endif /* ! defined (TCGETA) */
5630 #endif /* ! defined (TIOCGLTC) && defined (TIOCGETC) */
5631 #endif /* ! defined HAVE_TERMIOS */
5632 abort ();
5633 /* The code above always returns from the function. */
5634 #endif /* defined (SIGNALS_VIA_CHARACTERS) */
5635
5636 #ifdef TIOCGPGRP
5637 /* Get the current pgrp using the tty itself, if we have that.
5638 Otherwise, use the pty to get the pgrp.
5639 On pfa systems, saka@pfu.fujitsu.co.JP writes:
5640 "TIOCGPGRP symbol defined in sys/ioctl.h at E50.
5641 But, TIOCGPGRP does not work on E50 ;-P works fine on E60"
5642 His patch indicates that if TIOCGPGRP returns an error, then
5643 we should just assume that p->pid is also the process group id. */
5644
5645 gid = emacs_get_tty_pgrp (p);
5646
5647 if (gid == -1)
5648 /* If we can't get the information, assume
5649 the shell owns the tty. */
5650 gid = XFASTINT (p->pid);
5651
5652 /* It is not clear whether anything really can set GID to -1.
5653 Perhaps on some system one of those ioctls can or could do so.
5654 Or perhaps this is vestigial. */
5655 if (gid == -1)
5656 no_pgrp = 1;
5657 #else /* ! defined (TIOCGPGRP ) */
5658 /* Can't select pgrps on this system, so we know that
5659 the child itself heads the pgrp. */
5660 gid = XFASTINT (p->pid);
5661 #endif /* ! defined (TIOCGPGRP ) */
5662
5663 /* If current_group is lambda, and the shell owns the terminal,
5664 don't send any signal. */
5665 if (EQ (current_group, Qlambda) && gid == XFASTINT (p->pid))
5666 return;
5667 }
5668
5669 switch (signo)
5670 {
5671 #ifdef SIGCONT
5672 case SIGCONT:
5673 p->raw_status_low = Qnil;
5674 p->raw_status_high = Qnil;
5675 p->status = Qrun;
5676 XSETINT (p->tick, ++process_tick);
5677 if (!nomsg)
5678 status_notify ();
5679 break;
5680 #endif /* ! defined (SIGCONT) */
5681 case SIGINT:
5682 #ifdef VMS
5683 send_process (proc, "\003", 1, Qnil); /* ^C */
5684 goto whoosh;
5685 #endif
5686 case SIGQUIT:
5687 #ifdef VMS
5688 send_process (proc, "\031", 1, Qnil); /* ^Y */
5689 goto whoosh;
5690 #endif
5691 case SIGKILL:
5692 #ifdef VMS
5693 sys$forcex (&(XFASTINT (p->pid)), 0, 1);
5694 whoosh:
5695 #endif
5696 flush_pending_output (XINT (p->infd));
5697 break;
5698 }
5699
5700 /* If we don't have process groups, send the signal to the immediate
5701 subprocess. That isn't really right, but it's better than any
5702 obvious alternative. */
5703 if (no_pgrp)
5704 {
5705 kill (XFASTINT (p->pid), signo);
5706 return;
5707 }
5708
5709 /* gid may be a pid, or minus a pgrp's number */
5710 #ifdef TIOCSIGSEND
5711 if (!NILP (current_group))
5712 {
5713 if (ioctl (XINT (p->infd), TIOCSIGSEND, signo) == -1)
5714 EMACS_KILLPG (gid, signo);
5715 }
5716 else
5717 {
5718 gid = - XFASTINT (p->pid);
5719 kill (gid, signo);
5720 }
5721 #else /* ! defined (TIOCSIGSEND) */
5722 EMACS_KILLPG (gid, signo);
5723 #endif /* ! defined (TIOCSIGSEND) */
5724 }
5725
5726 DEFUN ("interrupt-process", Finterrupt_process, Sinterrupt_process, 0, 2, 0,
5727 doc: /* Interrupt process PROCESS.
5728 PROCESS may be a process, a buffer, or the name of a process or buffer.
5729 No arg or nil means current buffer's process.
5730 Second arg CURRENT-GROUP non-nil means send signal to
5731 the current process-group of the process's controlling terminal
5732 rather than to the process's own process group.
5733 If the process is a shell, this means interrupt current subjob
5734 rather than the shell.
5735
5736 If CURRENT-GROUP is `lambda', and if the shell owns the terminal,
5737 don't send the signal. */)
5738 (process, current_group)
5739 Lisp_Object process, current_group;
5740 {
5741 process_send_signal (process, SIGINT, current_group, 0);
5742 return process;
5743 }
5744
5745 DEFUN ("kill-process", Fkill_process, Skill_process, 0, 2, 0,
5746 doc: /* Kill process PROCESS. May be process or name of one.
5747 See function `interrupt-process' for more details on usage. */)
5748 (process, current_group)
5749 Lisp_Object process, current_group;
5750 {
5751 process_send_signal (process, SIGKILL, current_group, 0);
5752 return process;
5753 }
5754
5755 DEFUN ("quit-process", Fquit_process, Squit_process, 0, 2, 0,
5756 doc: /* Send QUIT signal to process PROCESS. May be process or name of one.
5757 See function `interrupt-process' for more details on usage. */)
5758 (process, current_group)
5759 Lisp_Object process, current_group;
5760 {
5761 process_send_signal (process, SIGQUIT, current_group, 0);
5762 return process;
5763 }
5764
5765 DEFUN ("stop-process", Fstop_process, Sstop_process, 0, 2, 0,
5766 doc: /* Stop process PROCESS. May be process or name of one.
5767 See function `interrupt-process' for more details on usage.
5768 If PROCESS is a network process, inhibit handling of incoming traffic. */)
5769 (process, current_group)
5770 Lisp_Object process, current_group;
5771 {
5772 #ifdef HAVE_SOCKETS
5773 if (PROCESSP (process) && NETCONN_P (process))
5774 {
5775 struct Lisp_Process *p;
5776
5777 p = XPROCESS (process);
5778 if (NILP (p->command)
5779 && XINT (p->infd) >= 0)
5780 {
5781 FD_CLR (XINT (p->infd), &input_wait_mask);
5782 FD_CLR (XINT (p->infd), &non_keyboard_wait_mask);
5783 }
5784 p->command = Qt;
5785 return process;
5786 }
5787 #endif
5788 #ifndef SIGTSTP
5789 error ("no SIGTSTP support");
5790 #else
5791 process_send_signal (process, SIGTSTP, current_group, 0);
5792 #endif
5793 return process;
5794 }
5795
5796 DEFUN ("continue-process", Fcontinue_process, Scontinue_process, 0, 2, 0,
5797 doc: /* Continue process PROCESS. May be process or name of one.
5798 See function `interrupt-process' for more details on usage.
5799 If PROCESS is a network process, resume handling of incoming traffic. */)
5800 (process, current_group)
5801 Lisp_Object process, current_group;
5802 {
5803 #ifdef HAVE_SOCKETS
5804 if (PROCESSP (process) && NETCONN_P (process))
5805 {
5806 struct Lisp_Process *p;
5807
5808 p = XPROCESS (process);
5809 if (EQ (p->command, Qt)
5810 && XINT (p->infd) >= 0
5811 && (!EQ (p->filter, Qt) || EQ (p->status, Qlisten)))
5812 {
5813 FD_SET (XINT (p->infd), &input_wait_mask);
5814 FD_SET (XINT (p->infd), &non_keyboard_wait_mask);
5815 }
5816 p->command = Qnil;
5817 return process;
5818 }
5819 #endif
5820 #ifdef SIGCONT
5821 process_send_signal (process, SIGCONT, current_group, 0);
5822 #else
5823 error ("no SIGCONT support");
5824 #endif
5825 return process;
5826 }
5827
5828 DEFUN ("signal-process", Fsignal_process, Ssignal_process,
5829 2, 2, "sProcess (name or number): \nnSignal code: ",
5830 doc: /* Send PROCESS the signal with code SIGCODE.
5831 PROCESS may also be an integer specifying the process id of the
5832 process to signal; in this case, the process need not be a child of
5833 this Emacs.
5834 SIGCODE may be an integer, or a symbol whose name is a signal name. */)
5835 (process, sigcode)
5836 Lisp_Object process, sigcode;
5837 {
5838 Lisp_Object pid;
5839
5840 if (INTEGERP (process))
5841 {
5842 pid = process;
5843 goto got_it;
5844 }
5845
5846 if (STRINGP (process))
5847 {
5848 Lisp_Object tem;
5849 if (tem = Fget_process (process), NILP (tem))
5850 {
5851 pid = Fstring_to_number (process, make_number (10));
5852 if (XINT (pid) != 0)
5853 goto got_it;
5854 }
5855 process = tem;
5856 }
5857 else
5858 process = get_process (process);
5859
5860 if (NILP (process))
5861 return process;
5862
5863 CHECK_PROCESS (process);
5864 pid = XPROCESS (process)->pid;
5865 if (!INTEGERP (pid) || XINT (pid) <= 0)
5866 error ("Cannot signal process %s", SDATA (XPROCESS (process)->name));
5867
5868 got_it:
5869
5870 #define handle_signal(NAME, VALUE) \
5871 else if (!strcmp (name, NAME)) \
5872 XSETINT (sigcode, VALUE)
5873
5874 if (INTEGERP (sigcode))
5875 ;
5876 else
5877 {
5878 unsigned char *name;
5879
5880 CHECK_SYMBOL (sigcode);
5881 name = SDATA (SYMBOL_NAME (sigcode));
5882
5883 if (0)
5884 ;
5885 #ifdef SIGHUP
5886 handle_signal ("SIGHUP", SIGHUP);
5887 #endif
5888 #ifdef SIGINT
5889 handle_signal ("SIGINT", SIGINT);
5890 #endif
5891 #ifdef SIGQUIT
5892 handle_signal ("SIGQUIT", SIGQUIT);
5893 #endif
5894 #ifdef SIGILL
5895 handle_signal ("SIGILL", SIGILL);
5896 #endif
5897 #ifdef SIGABRT
5898 handle_signal ("SIGABRT", SIGABRT);
5899 #endif
5900 #ifdef SIGEMT
5901 handle_signal ("SIGEMT", SIGEMT);
5902 #endif
5903 #ifdef SIGKILL
5904 handle_signal ("SIGKILL", SIGKILL);
5905 #endif
5906 #ifdef SIGFPE
5907 handle_signal ("SIGFPE", SIGFPE);
5908 #endif
5909 #ifdef SIGBUS
5910 handle_signal ("SIGBUS", SIGBUS);
5911 #endif
5912 #ifdef SIGSEGV
5913 handle_signal ("SIGSEGV", SIGSEGV);
5914 #endif
5915 #ifdef SIGSYS
5916 handle_signal ("SIGSYS", SIGSYS);
5917 #endif
5918 #ifdef SIGPIPE
5919 handle_signal ("SIGPIPE", SIGPIPE);
5920 #endif
5921 #ifdef SIGALRM
5922 handle_signal ("SIGALRM", SIGALRM);
5923 #endif
5924 #ifdef SIGTERM
5925 handle_signal ("SIGTERM", SIGTERM);
5926 #endif
5927 #ifdef SIGURG
5928 handle_signal ("SIGURG", SIGURG);
5929 #endif
5930 #ifdef SIGSTOP
5931 handle_signal ("SIGSTOP", SIGSTOP);
5932 #endif
5933 #ifdef SIGTSTP
5934 handle_signal ("SIGTSTP", SIGTSTP);
5935 #endif
5936 #ifdef SIGCONT
5937 handle_signal ("SIGCONT", SIGCONT);
5938 #endif
5939 #ifdef SIGCHLD
5940 handle_signal ("SIGCHLD", SIGCHLD);
5941 #endif
5942 #ifdef SIGTTIN
5943 handle_signal ("SIGTTIN", SIGTTIN);
5944 #endif
5945 #ifdef SIGTTOU
5946 handle_signal ("SIGTTOU", SIGTTOU);
5947 #endif
5948 #ifdef SIGIO
5949 handle_signal ("SIGIO", SIGIO);
5950 #endif
5951 #ifdef SIGXCPU
5952 handle_signal ("SIGXCPU", SIGXCPU);
5953 #endif
5954 #ifdef SIGXFSZ
5955 handle_signal ("SIGXFSZ", SIGXFSZ);
5956 #endif
5957 #ifdef SIGVTALRM
5958 handle_signal ("SIGVTALRM", SIGVTALRM);
5959 #endif
5960 #ifdef SIGPROF
5961 handle_signal ("SIGPROF", SIGPROF);
5962 #endif
5963 #ifdef SIGWINCH
5964 handle_signal ("SIGWINCH", SIGWINCH);
5965 #endif
5966 #ifdef SIGINFO
5967 handle_signal ("SIGINFO", SIGINFO);
5968 #endif
5969 #ifdef SIGUSR1
5970 handle_signal ("SIGUSR1", SIGUSR1);
5971 #endif
5972 #ifdef SIGUSR2
5973 handle_signal ("SIGUSR2", SIGUSR2);
5974 #endif
5975 else
5976 error ("Undefined signal name %s", name);
5977 }
5978
5979 #undef handle_signal
5980
5981 return make_number (kill (XINT (pid), XINT (sigcode)));
5982 }
5983
5984 DEFUN ("process-send-eof", Fprocess_send_eof, Sprocess_send_eof, 0, 1, 0,
5985 doc: /* Make PROCESS see end-of-file in its input.
5986 EOF comes after any text already sent to it.
5987 PROCESS may be a process, a buffer, the name of a process or buffer, or
5988 nil, indicating the current buffer's process.
5989 If PROCESS is a network connection, or is a process communicating
5990 through a pipe (as opposed to a pty), then you cannot send any more
5991 text to PROCESS after you call this function. */)
5992 (process)
5993 Lisp_Object process;
5994 {
5995 Lisp_Object proc;
5996 struct coding_system *coding;
5997
5998 if (DATAGRAM_CONN_P (process))
5999 return process;
6000
6001 proc = get_process (process);
6002 coding = proc_encode_coding_system[XINT (XPROCESS (proc)->outfd)];
6003
6004 /* Make sure the process is really alive. */
6005 if (! NILP (XPROCESS (proc)->raw_status_low))
6006 update_status (XPROCESS (proc));
6007 if (! EQ (XPROCESS (proc)->status, Qrun))
6008 error ("Process %s not running", SDATA (XPROCESS (proc)->name));
6009
6010 if (CODING_REQUIRE_FLUSHING (coding))
6011 {
6012 coding->mode |= CODING_MODE_LAST_BLOCK;
6013 send_process (proc, "", 0, Qnil);
6014 }
6015
6016 #ifdef VMS
6017 send_process (proc, "\032", 1, Qnil); /* ^z */
6018 #else
6019 if (!NILP (XPROCESS (proc)->pty_flag))
6020 send_process (proc, "\004", 1, Qnil);
6021 else
6022 {
6023 int old_outfd, new_outfd;
6024
6025 #ifdef HAVE_SHUTDOWN
6026 /* If this is a network connection, or socketpair is used
6027 for communication with the subprocess, call shutdown to cause EOF.
6028 (In some old system, shutdown to socketpair doesn't work.
6029 Then we just can't win.) */
6030 if (NILP (XPROCESS (proc)->pid)
6031 || XINT (XPROCESS (proc)->outfd) == XINT (XPROCESS (proc)->infd))
6032 shutdown (XINT (XPROCESS (proc)->outfd), 1);
6033 /* In case of socketpair, outfd == infd, so don't close it. */
6034 if (XINT (XPROCESS (proc)->outfd) != XINT (XPROCESS (proc)->infd))
6035 emacs_close (XINT (XPROCESS (proc)->outfd));
6036 #else /* not HAVE_SHUTDOWN */
6037 emacs_close (XINT (XPROCESS (proc)->outfd));
6038 #endif /* not HAVE_SHUTDOWN */
6039 new_outfd = emacs_open (NULL_DEVICE, O_WRONLY, 0);
6040 old_outfd = XINT (XPROCESS (proc)->outfd);
6041
6042 if (!proc_encode_coding_system[new_outfd])
6043 proc_encode_coding_system[new_outfd]
6044 = (struct coding_system *) xmalloc (sizeof (struct coding_system));
6045 bcopy (proc_encode_coding_system[old_outfd],
6046 proc_encode_coding_system[new_outfd],
6047 sizeof (struct coding_system));
6048 bzero (proc_encode_coding_system[old_outfd],
6049 sizeof (struct coding_system));
6050
6051 XSETINT (XPROCESS (proc)->outfd, new_outfd);
6052 }
6053 #endif /* VMS */
6054 return process;
6055 }
6056
6057 /* Kill all processes associated with `buffer'.
6058 If `buffer' is nil, kill all processes */
6059
6060 void
6061 kill_buffer_processes (buffer)
6062 Lisp_Object buffer;
6063 {
6064 Lisp_Object tail, proc;
6065
6066 for (tail = Vprocess_alist; GC_CONSP (tail); tail = XCDR (tail))
6067 {
6068 proc = XCDR (XCAR (tail));
6069 if (GC_PROCESSP (proc)
6070 && (NILP (buffer) || EQ (XPROCESS (proc)->buffer, buffer)))
6071 {
6072 if (NETCONN_P (proc))
6073 Fdelete_process (proc);
6074 else if (XINT (XPROCESS (proc)->infd) >= 0)
6075 process_send_signal (proc, SIGHUP, Qnil, 1);
6076 }
6077 }
6078 }
6079 \f
6080 /* On receipt of a signal that a child status has changed, loop asking
6081 about children with changed statuses until the system says there
6082 are no more.
6083
6084 All we do is change the status; we do not run sentinels or print
6085 notifications. That is saved for the next time keyboard input is
6086 done, in order to avoid timing errors.
6087
6088 ** WARNING: this can be called during garbage collection.
6089 Therefore, it must not be fooled by the presence of mark bits in
6090 Lisp objects.
6091
6092 ** USG WARNING: Although it is not obvious from the documentation
6093 in signal(2), on a USG system the SIGCLD handler MUST NOT call
6094 signal() before executing at least one wait(), otherwise the
6095 handler will be called again, resulting in an infinite loop. The
6096 relevant portion of the documentation reads "SIGCLD signals will be
6097 queued and the signal-catching function will be continually
6098 reentered until the queue is empty". Invoking signal() causes the
6099 kernel to reexamine the SIGCLD queue. Fred Fish, UniSoft Systems
6100 Inc.
6101
6102 ** Malloc WARNING: This should never call malloc either directly or
6103 indirectly; if it does, that is a bug */
6104
6105 SIGTYPE
6106 sigchld_handler (signo)
6107 int signo;
6108 {
6109 int old_errno = errno;
6110 Lisp_Object proc;
6111 register struct Lisp_Process *p;
6112 extern EMACS_TIME *input_available_clear_time;
6113
6114 #ifdef BSD4_1
6115 extern int sigheld;
6116 sigheld |= sigbit (SIGCHLD);
6117 #endif
6118
6119 while (1)
6120 {
6121 register int pid;
6122 WAITTYPE w;
6123 Lisp_Object tail;
6124
6125 #ifdef WNOHANG
6126 #ifndef WUNTRACED
6127 #define WUNTRACED 0
6128 #endif /* no WUNTRACED */
6129 /* Keep trying to get a status until we get a definitive result. */
6130 do
6131 {
6132 errno = 0;
6133 pid = wait3 (&w, WNOHANG | WUNTRACED, 0);
6134 }
6135 while (pid < 0 && errno == EINTR);
6136
6137 if (pid <= 0)
6138 {
6139 /* PID == 0 means no processes found, PID == -1 means a real
6140 failure. We have done all our job, so return. */
6141
6142 /* USG systems forget handlers when they are used;
6143 must reestablish each time */
6144 #if defined (USG) && !defined (POSIX_SIGNALS)
6145 signal (signo, sigchld_handler); /* WARNING - must come after wait3() */
6146 #endif
6147 #ifdef BSD4_1
6148 sigheld &= ~sigbit (SIGCHLD);
6149 sigrelse (SIGCHLD);
6150 #endif
6151 errno = old_errno;
6152 return;
6153 }
6154 #else
6155 pid = wait (&w);
6156 #endif /* no WNOHANG */
6157
6158 /* Find the process that signaled us, and record its status. */
6159
6160 p = 0;
6161 for (tail = Vprocess_alist; GC_CONSP (tail); tail = XCDR (tail))
6162 {
6163 proc = XCDR (XCAR (tail));
6164 p = XPROCESS (proc);
6165 if (GC_EQ (p->childp, Qt) && XINT (p->pid) == pid)
6166 break;
6167 p = 0;
6168 }
6169
6170 /* Look for an asynchronous process whose pid hasn't been filled
6171 in yet. */
6172 if (p == 0)
6173 for (tail = Vprocess_alist; GC_CONSP (tail); tail = XCDR (tail))
6174 {
6175 proc = XCDR (XCAR (tail));
6176 p = XPROCESS (proc);
6177 if (GC_INTEGERP (p->pid) && XINT (p->pid) == -1)
6178 break;
6179 p = 0;
6180 }
6181
6182 /* Change the status of the process that was found. */
6183 if (p != 0)
6184 {
6185 union { int i; WAITTYPE wt; } u;
6186 int clear_desc_flag = 0;
6187
6188 XSETINT (p->tick, ++process_tick);
6189 u.wt = w;
6190 XSETINT (p->raw_status_low, u.i & 0xffff);
6191 XSETINT (p->raw_status_high, u.i >> 16);
6192
6193 /* If process has terminated, stop waiting for its output. */
6194 if ((WIFSIGNALED (w) || WIFEXITED (w))
6195 && XINT (p->infd) >= 0)
6196 clear_desc_flag = 1;
6197
6198 /* We use clear_desc_flag to avoid a compiler bug in Microsoft C. */
6199 if (clear_desc_flag)
6200 {
6201 FD_CLR (XINT (p->infd), &input_wait_mask);
6202 FD_CLR (XINT (p->infd), &non_keyboard_wait_mask);
6203 }
6204
6205 /* Tell wait_reading_process_input that it needs to wake up and
6206 look around. */
6207 if (input_available_clear_time)
6208 EMACS_SET_SECS_USECS (*input_available_clear_time, 0, 0);
6209 }
6210
6211 /* There was no asynchronous process found for that id. Check
6212 if we have a synchronous process. */
6213 else
6214 {
6215 synch_process_alive = 0;
6216
6217 /* Report the status of the synchronous process. */
6218 if (WIFEXITED (w))
6219 synch_process_retcode = WRETCODE (w);
6220 else if (WIFSIGNALED (w))
6221 synch_process_termsig = WTERMSIG (w);
6222
6223 /* Tell wait_reading_process_input that it needs to wake up and
6224 look around. */
6225 if (input_available_clear_time)
6226 EMACS_SET_SECS_USECS (*input_available_clear_time, 0, 0);
6227 }
6228
6229 /* On some systems, we must return right away.
6230 If any more processes want to signal us, we will
6231 get another signal.
6232 Otherwise (on systems that have WNOHANG), loop around
6233 to use up all the processes that have something to tell us. */
6234 #if (defined WINDOWSNT \
6235 || (defined USG && !defined GNU_LINUX \
6236 && !(defined HPUX && defined WNOHANG)))
6237 #if defined (USG) && ! defined (POSIX_SIGNALS)
6238 signal (signo, sigchld_handler);
6239 #endif
6240 errno = old_errno;
6241 return;
6242 #endif /* USG, but not HPUX with WNOHANG */
6243 }
6244 }
6245 \f
6246
6247 static Lisp_Object
6248 exec_sentinel_unwind (data)
6249 Lisp_Object data;
6250 {
6251 XPROCESS (XCAR (data))->sentinel = XCDR (data);
6252 return Qnil;
6253 }
6254
6255 static Lisp_Object
6256 exec_sentinel_error_handler (error)
6257 Lisp_Object error;
6258 {
6259 cmd_error_internal (error, "error in process sentinel: ");
6260 Vinhibit_quit = Qt;
6261 update_echo_area ();
6262 Fsleep_for (make_number (2), Qnil);
6263 return Qt;
6264 }
6265
6266 static void
6267 exec_sentinel (proc, reason)
6268 Lisp_Object proc, reason;
6269 {
6270 Lisp_Object sentinel, obuffer, odeactivate, okeymap;
6271 register struct Lisp_Process *p = XPROCESS (proc);
6272 int count = SPECPDL_INDEX ();
6273 int outer_running_asynch_code = running_asynch_code;
6274 int waiting = waiting_for_user_input_p;
6275
6276 /* No need to gcpro these, because all we do with them later
6277 is test them for EQness, and none of them should be a string. */
6278 odeactivate = Vdeactivate_mark;
6279 XSETBUFFER (obuffer, current_buffer);
6280 okeymap = current_buffer->keymap;
6281
6282 sentinel = p->sentinel;
6283 if (NILP (sentinel))
6284 return;
6285
6286 /* Zilch the sentinel while it's running, to avoid recursive invocations;
6287 assure that it gets restored no matter how the sentinel exits. */
6288 p->sentinel = Qnil;
6289 record_unwind_protect (exec_sentinel_unwind, Fcons (proc, sentinel));
6290 /* Inhibit quit so that random quits don't screw up a running filter. */
6291 specbind (Qinhibit_quit, Qt);
6292 specbind (Qlast_nonmenu_event, Qt);
6293
6294 /* In case we get recursively called,
6295 and we already saved the match data nonrecursively,
6296 save the same match data in safely recursive fashion. */
6297 if (outer_running_asynch_code)
6298 {
6299 Lisp_Object tem;
6300 tem = Fmatch_data (Qnil, Qnil);
6301 restore_match_data ();
6302 record_unwind_protect (Fset_match_data, Fmatch_data (Qnil, Qnil));
6303 Fset_match_data (tem);
6304 }
6305
6306 /* For speed, if a search happens within this code,
6307 save the match data in a special nonrecursive fashion. */
6308 running_asynch_code = 1;
6309
6310 internal_condition_case_1 (read_process_output_call,
6311 Fcons (sentinel,
6312 Fcons (proc, Fcons (reason, Qnil))),
6313 !NILP (Vdebug_on_error) ? Qnil : Qerror,
6314 exec_sentinel_error_handler);
6315
6316 /* If we saved the match data nonrecursively, restore it now. */
6317 restore_match_data ();
6318 running_asynch_code = outer_running_asynch_code;
6319
6320 Vdeactivate_mark = odeactivate;
6321
6322 /* Restore waiting_for_user_input_p as it was
6323 when we were called, in case the filter clobbered it. */
6324 waiting_for_user_input_p = waiting;
6325
6326 #if 0
6327 if (! EQ (Fcurrent_buffer (), obuffer)
6328 || ! EQ (current_buffer->keymap, okeymap))
6329 #endif
6330 /* But do it only if the caller is actually going to read events.
6331 Otherwise there's no need to make him wake up, and it could
6332 cause trouble (for example it would make Fsit_for return). */
6333 if (waiting_for_user_input_p == -1)
6334 record_asynch_buffer_change ();
6335
6336 unbind_to (count, Qnil);
6337 }
6338
6339 /* Report all recent events of a change in process status
6340 (either run the sentinel or output a message).
6341 This is usually done while Emacs is waiting for keyboard input
6342 but can be done at other times. */
6343
6344 void
6345 status_notify ()
6346 {
6347 register Lisp_Object proc, buffer;
6348 Lisp_Object tail, msg;
6349 struct gcpro gcpro1, gcpro2;
6350
6351 tail = Qnil;
6352 msg = Qnil;
6353 /* We need to gcpro tail; if read_process_output calls a filter
6354 which deletes a process and removes the cons to which tail points
6355 from Vprocess_alist, and then causes a GC, tail is an unprotected
6356 reference. */
6357 GCPRO2 (tail, msg);
6358
6359 /* Set this now, so that if new processes are created by sentinels
6360 that we run, we get called again to handle their status changes. */
6361 update_tick = process_tick;
6362
6363 for (tail = Vprocess_alist; !NILP (tail); tail = Fcdr (tail))
6364 {
6365 Lisp_Object symbol;
6366 register struct Lisp_Process *p;
6367
6368 proc = Fcdr (Fcar (tail));
6369 p = XPROCESS (proc);
6370
6371 if (XINT (p->tick) != XINT (p->update_tick))
6372 {
6373 XSETINT (p->update_tick, XINT (p->tick));
6374
6375 /* If process is still active, read any output that remains. */
6376 while (! EQ (p->filter, Qt)
6377 && ! EQ (p->status, Qconnect)
6378 && ! EQ (p->status, Qlisten)
6379 && ! EQ (p->command, Qt) /* Network process not stopped. */
6380 && XINT (p->infd) >= 0
6381 && read_process_output (proc, XINT (p->infd)) > 0);
6382
6383 buffer = p->buffer;
6384
6385 /* Get the text to use for the message. */
6386 if (!NILP (p->raw_status_low))
6387 update_status (p);
6388 msg = status_message (p);
6389
6390 /* If process is terminated, deactivate it or delete it. */
6391 symbol = p->status;
6392 if (CONSP (p->status))
6393 symbol = XCAR (p->status);
6394
6395 if (EQ (symbol, Qsignal) || EQ (symbol, Qexit)
6396 || EQ (symbol, Qclosed))
6397 {
6398 if (delete_exited_processes)
6399 remove_process (proc);
6400 else
6401 deactivate_process (proc);
6402 }
6403
6404 /* The actions above may have further incremented p->tick.
6405 So set p->update_tick again
6406 so that an error in the sentinel will not cause
6407 this code to be run again. */
6408 XSETINT (p->update_tick, XINT (p->tick));
6409 /* Now output the message suitably. */
6410 if (!NILP (p->sentinel))
6411 exec_sentinel (proc, msg);
6412 /* Don't bother with a message in the buffer
6413 when a process becomes runnable. */
6414 else if (!EQ (symbol, Qrun) && !NILP (buffer))
6415 {
6416 Lisp_Object ro, tem;
6417 struct buffer *old = current_buffer;
6418 int opoint, opoint_byte;
6419 int before, before_byte;
6420
6421 ro = XBUFFER (buffer)->read_only;
6422
6423 /* Avoid error if buffer is deleted
6424 (probably that's why the process is dead, too) */
6425 if (NILP (XBUFFER (buffer)->name))
6426 continue;
6427 Fset_buffer (buffer);
6428
6429 opoint = PT;
6430 opoint_byte = PT_BYTE;
6431 /* Insert new output into buffer
6432 at the current end-of-output marker,
6433 thus preserving logical ordering of input and output. */
6434 if (XMARKER (p->mark)->buffer)
6435 Fgoto_char (p->mark);
6436 else
6437 SET_PT_BOTH (ZV, ZV_BYTE);
6438
6439 before = PT;
6440 before_byte = PT_BYTE;
6441
6442 tem = current_buffer->read_only;
6443 current_buffer->read_only = Qnil;
6444 insert_string ("\nProcess ");
6445 Finsert (1, &p->name);
6446 insert_string (" ");
6447 Finsert (1, &msg);
6448 current_buffer->read_only = tem;
6449 set_marker_both (p->mark, p->buffer, PT, PT_BYTE);
6450
6451 if (opoint >= before)
6452 SET_PT_BOTH (opoint + (PT - before),
6453 opoint_byte + (PT_BYTE - before_byte));
6454 else
6455 SET_PT_BOTH (opoint, opoint_byte);
6456
6457 set_buffer_internal (old);
6458 }
6459 }
6460 } /* end for */
6461
6462 update_mode_lines++; /* in case buffers use %s in mode-line-format */
6463 redisplay_preserve_echo_area (13);
6464
6465 UNGCPRO;
6466 }
6467
6468 \f
6469 DEFUN ("set-process-coding-system", Fset_process_coding_system,
6470 Sset_process_coding_system, 1, 3, 0,
6471 doc: /* Set coding systems of PROCESS to DECODING and ENCODING.
6472 DECODING will be used to decode subprocess output and ENCODING to
6473 encode subprocess input. */)
6474 (process, decoding, encoding)
6475 register Lisp_Object process, decoding, encoding;
6476 {
6477 register struct Lisp_Process *p;
6478
6479 CHECK_PROCESS (process);
6480 p = XPROCESS (process);
6481 if (XINT (p->infd) < 0)
6482 error ("Input file descriptor of %s closed", SDATA (p->name));
6483 if (XINT (p->outfd) < 0)
6484 error ("Output file descriptor of %s closed", SDATA (p->name));
6485 Fcheck_coding_system (decoding);
6486 Fcheck_coding_system (encoding);
6487
6488 p->decode_coding_system = decoding;
6489 p->encode_coding_system = encoding;
6490 setup_process_coding_systems (process);
6491
6492 return Qnil;
6493 }
6494
6495 DEFUN ("process-coding-system",
6496 Fprocess_coding_system, Sprocess_coding_system, 1, 1, 0,
6497 doc: /* Return a cons of coding systems for decoding and encoding of PROCESS. */)
6498 (process)
6499 register Lisp_Object process;
6500 {
6501 CHECK_PROCESS (process);
6502 return Fcons (XPROCESS (process)->decode_coding_system,
6503 XPROCESS (process)->encode_coding_system);
6504 }
6505
6506 DEFUN ("set-process-filter-multibyte", Fset_process_filter_multibyte,
6507 Sset_process_filter_multibyte, 2, 2, 0,
6508 doc: /* Set multibyteness of the strings given to PROCESS's filter.
6509 If FLAG is non-nil, the filter is given multibyte strings.
6510 If FLAG is nil, the filter is given unibyte strings. In this case,
6511 all character code conversion except for end-of-line conversion is
6512 suppressed. */)
6513 (process, flag)
6514 Lisp_Object process, flag;
6515 {
6516 register struct Lisp_Process *p;
6517
6518 CHECK_PROCESS (process);
6519 p = XPROCESS (process);
6520 p->filter_multibyte = flag;
6521 setup_process_coding_systems (process);
6522
6523 return Qnil;
6524 }
6525
6526 DEFUN ("process-filter-multibyte-p", Fprocess_filter_multibyte_p,
6527 Sprocess_filter_multibyte_p, 1, 1, 0,
6528 doc: /* Return t if a multibyte string is given to PROCESS's filter.*/)
6529 (process)
6530 Lisp_Object process;
6531 {
6532 register struct Lisp_Process *p;
6533
6534 CHECK_PROCESS (process);
6535 p = XPROCESS (process);
6536
6537 return (NILP (p->filter_multibyte) ? Qnil : Qt);
6538 }
6539
6540
6541 \f
6542 /* The first time this is called, assume keyboard input comes from DESC
6543 instead of from where we used to expect it.
6544 Subsequent calls mean assume input keyboard can come from DESC
6545 in addition to other places. */
6546
6547 static int add_keyboard_wait_descriptor_called_flag;
6548
6549 void
6550 add_keyboard_wait_descriptor (desc)
6551 int desc;
6552 {
6553 if (! add_keyboard_wait_descriptor_called_flag)
6554 FD_CLR (0, &input_wait_mask);
6555 add_keyboard_wait_descriptor_called_flag = 1;
6556 FD_SET (desc, &input_wait_mask);
6557 FD_SET (desc, &non_process_wait_mask);
6558 if (desc > max_keyboard_desc)
6559 max_keyboard_desc = desc;
6560 }
6561
6562 /* From now on, do not expect DESC to give keyboard input. */
6563
6564 void
6565 delete_keyboard_wait_descriptor (desc)
6566 int desc;
6567 {
6568 int fd;
6569 int lim = max_keyboard_desc;
6570
6571 FD_CLR (desc, &input_wait_mask);
6572 FD_CLR (desc, &non_process_wait_mask);
6573
6574 if (desc == max_keyboard_desc)
6575 for (fd = 0; fd < lim; fd++)
6576 if (FD_ISSET (fd, &input_wait_mask)
6577 && !FD_ISSET (fd, &non_keyboard_wait_mask))
6578 max_keyboard_desc = fd;
6579 }
6580
6581 /* Return nonzero if *MASK has a bit set
6582 that corresponds to one of the keyboard input descriptors. */
6583
6584 int
6585 keyboard_bit_set (mask)
6586 SELECT_TYPE *mask;
6587 {
6588 int fd;
6589
6590 for (fd = 0; fd <= max_keyboard_desc; fd++)
6591 if (FD_ISSET (fd, mask) && FD_ISSET (fd, &input_wait_mask)
6592 && !FD_ISSET (fd, &non_keyboard_wait_mask))
6593 return 1;
6594
6595 return 0;
6596 }
6597 \f
6598 void
6599 init_process ()
6600 {
6601 register int i;
6602
6603 #ifdef SIGCHLD
6604 #ifndef CANNOT_DUMP
6605 if (! noninteractive || initialized)
6606 #endif
6607 signal (SIGCHLD, sigchld_handler);
6608 #endif
6609
6610 FD_ZERO (&input_wait_mask);
6611 FD_ZERO (&non_keyboard_wait_mask);
6612 FD_ZERO (&non_process_wait_mask);
6613 max_process_desc = 0;
6614
6615 #ifdef ADAPTIVE_READ_BUFFERING
6616 process_output_delay_count = 0;
6617 process_output_skip = 0;
6618 #endif
6619
6620 FD_SET (0, &input_wait_mask);
6621
6622 Vprocess_alist = Qnil;
6623 for (i = 0; i < MAXDESC; i++)
6624 {
6625 chan_process[i] = Qnil;
6626 proc_buffered_char[i] = -1;
6627 }
6628 bzero (proc_decode_coding_system, sizeof proc_decode_coding_system);
6629 bzero (proc_encode_coding_system, sizeof proc_encode_coding_system);
6630 #ifdef DATAGRAM_SOCKETS
6631 bzero (datagram_address, sizeof datagram_address);
6632 #endif
6633
6634 #ifdef HAVE_SOCKETS
6635 {
6636 Lisp_Object subfeatures = Qnil;
6637 struct socket_options *sopt;
6638
6639 #define ADD_SUBFEATURE(key, val) \
6640 subfeatures = Fcons (Fcons (key, Fcons (val, Qnil)), subfeatures)
6641
6642 #ifdef NON_BLOCKING_CONNECT
6643 ADD_SUBFEATURE (QCnowait, Qt);
6644 #endif
6645 #ifdef DATAGRAM_SOCKETS
6646 ADD_SUBFEATURE (QCtype, Qdatagram);
6647 #endif
6648 #ifdef HAVE_LOCAL_SOCKETS
6649 ADD_SUBFEATURE (QCfamily, Qlocal);
6650 #endif
6651 #ifdef HAVE_GETSOCKNAME
6652 ADD_SUBFEATURE (QCservice, Qt);
6653 #endif
6654 #if !defined(TERM) && (defined(O_NONBLOCK) || defined(O_NDELAY))
6655 ADD_SUBFEATURE (QCserver, Qt);
6656 #endif
6657
6658 for (sopt = socket_options; sopt->name; sopt++)
6659 subfeatures = Fcons (intern (sopt->name), subfeatures);
6660
6661 Fprovide (intern ("make-network-process"), subfeatures);
6662 }
6663 #endif /* HAVE_SOCKETS */
6664 }
6665
6666 void
6667 syms_of_process ()
6668 {
6669 Qprocessp = intern ("processp");
6670 staticpro (&Qprocessp);
6671 Qrun = intern ("run");
6672 staticpro (&Qrun);
6673 Qstop = intern ("stop");
6674 staticpro (&Qstop);
6675 Qsignal = intern ("signal");
6676 staticpro (&Qsignal);
6677
6678 /* Qexit is already staticpro'd by syms_of_eval; don't staticpro it
6679 here again.
6680
6681 Qexit = intern ("exit");
6682 staticpro (&Qexit); */
6683
6684 Qopen = intern ("open");
6685 staticpro (&Qopen);
6686 Qclosed = intern ("closed");
6687 staticpro (&Qclosed);
6688 Qconnect = intern ("connect");
6689 staticpro (&Qconnect);
6690 Qfailed = intern ("failed");
6691 staticpro (&Qfailed);
6692 Qlisten = intern ("listen");
6693 staticpro (&Qlisten);
6694 Qlocal = intern ("local");
6695 staticpro (&Qlocal);
6696 Qdatagram = intern ("datagram");
6697 staticpro (&Qdatagram);
6698
6699 QCname = intern (":name");
6700 staticpro (&QCname);
6701 QCbuffer = intern (":buffer");
6702 staticpro (&QCbuffer);
6703 QChost = intern (":host");
6704 staticpro (&QChost);
6705 QCservice = intern (":service");
6706 staticpro (&QCservice);
6707 QCtype = intern (":type");
6708 staticpro (&QCtype);
6709 QClocal = intern (":local");
6710 staticpro (&QClocal);
6711 QCremote = intern (":remote");
6712 staticpro (&QCremote);
6713 QCcoding = intern (":coding");
6714 staticpro (&QCcoding);
6715 QCserver = intern (":server");
6716 staticpro (&QCserver);
6717 QCnowait = intern (":nowait");
6718 staticpro (&QCnowait);
6719 QCsentinel = intern (":sentinel");
6720 staticpro (&QCsentinel);
6721 QClog = intern (":log");
6722 staticpro (&QClog);
6723 QCnoquery = intern (":noquery");
6724 staticpro (&QCnoquery);
6725 QCstop = intern (":stop");
6726 staticpro (&QCstop);
6727 QCoptions = intern (":options");
6728 staticpro (&QCoptions);
6729 QCplist = intern (":plist");
6730 staticpro (&QCplist);
6731 QCfilter_multibyte = intern (":filter-multibyte");
6732 staticpro (&QCfilter_multibyte);
6733
6734 Qlast_nonmenu_event = intern ("last-nonmenu-event");
6735 staticpro (&Qlast_nonmenu_event);
6736
6737 staticpro (&Vprocess_alist);
6738
6739 DEFVAR_BOOL ("delete-exited-processes", &delete_exited_processes,
6740 doc: /* *Non-nil means delete processes immediately when they exit.
6741 nil means don't delete them until `list-processes' is run. */);
6742
6743 delete_exited_processes = 1;
6744
6745 DEFVAR_LISP ("process-connection-type", &Vprocess_connection_type,
6746 doc: /* Control type of device used to communicate with subprocesses.
6747 Values are nil to use a pipe, or t or `pty' to use a pty.
6748 The value has no effect if the system has no ptys or if all ptys are busy:
6749 then a pipe is used in any case.
6750 The value takes effect when `start-process' is called. */);
6751 Vprocess_connection_type = Qt;
6752
6753 #ifdef ADAPTIVE_READ_BUFFERING
6754 DEFVAR_LISP ("process-adaptive-read-buffering", &Vprocess_adaptive_read_buffering,
6755 doc: /* If non-nil, improve receive buffering by delaying after short reads.
6756 On some systems, when Emacs reads the output from a subprocess, the output data
6757 is read in very small blocks, potentially resulting in very poor performance.
6758 This behaviour can be remedied to some extent by setting this variable to a
6759 non-nil value, as it will automatically delay reading from such processes, to
6760 allowing them to produce more output before Emacs tries to read it.
6761 If the value is t, the delay is reset after each write to the process; any other
6762 non-nil value means that the delay is not reset on write.
6763 The variable takes effect when `start-process' is called. */);
6764 Vprocess_adaptive_read_buffering = Qt;
6765 #endif
6766
6767 defsubr (&Sprocessp);
6768 defsubr (&Sget_process);
6769 defsubr (&Sget_buffer_process);
6770 defsubr (&Sdelete_process);
6771 defsubr (&Sprocess_status);
6772 defsubr (&Sprocess_exit_status);
6773 defsubr (&Sprocess_id);
6774 defsubr (&Sprocess_name);
6775 defsubr (&Sprocess_tty_name);
6776 defsubr (&Sprocess_command);
6777 defsubr (&Sset_process_buffer);
6778 defsubr (&Sprocess_buffer);
6779 defsubr (&Sprocess_mark);
6780 defsubr (&Sset_process_filter);
6781 defsubr (&Sprocess_filter);
6782 defsubr (&Sset_process_sentinel);
6783 defsubr (&Sprocess_sentinel);
6784 defsubr (&Sset_process_window_size);
6785 defsubr (&Sset_process_inherit_coding_system_flag);
6786 defsubr (&Sprocess_inherit_coding_system_flag);
6787 defsubr (&Sset_process_query_on_exit_flag);
6788 defsubr (&Sprocess_query_on_exit_flag);
6789 defsubr (&Sprocess_contact);
6790 defsubr (&Sprocess_plist);
6791 defsubr (&Sset_process_plist);
6792 defsubr (&Slist_processes);
6793 defsubr (&Sprocess_list);
6794 defsubr (&Sstart_process);
6795 #ifdef HAVE_SOCKETS
6796 defsubr (&Sset_network_process_option);
6797 defsubr (&Smake_network_process);
6798 defsubr (&Sformat_network_address);
6799 #endif /* HAVE_SOCKETS */
6800 #if defined(HAVE_SOCKETS) && defined(HAVE_NET_IF_H) && defined(HAVE_SYS_IOCTL_H)
6801 #ifdef SIOCGIFCONF
6802 defsubr (&Snetwork_interface_list);
6803 #endif
6804 #if defined(SIOCGIFADDR) || defined(SIOCGIFHWADDR) || defined(SIOCGIFFLAGS)
6805 defsubr (&Snetwork_interface_info);
6806 #endif
6807 #endif /* HAVE_SOCKETS ... */
6808 #ifdef DATAGRAM_SOCKETS
6809 defsubr (&Sprocess_datagram_address);
6810 defsubr (&Sset_process_datagram_address);
6811 #endif
6812 defsubr (&Saccept_process_output);
6813 defsubr (&Sprocess_send_region);
6814 defsubr (&Sprocess_send_string);
6815 defsubr (&Sinterrupt_process);
6816 defsubr (&Skill_process);
6817 defsubr (&Squit_process);
6818 defsubr (&Sstop_process);
6819 defsubr (&Scontinue_process);
6820 defsubr (&Sprocess_running_child_p);
6821 defsubr (&Sprocess_send_eof);
6822 defsubr (&Ssignal_process);
6823 defsubr (&Swaiting_for_user_input_p);
6824 /* defsubr (&Sprocess_connection); */
6825 defsubr (&Sset_process_coding_system);
6826 defsubr (&Sprocess_coding_system);
6827 defsubr (&Sset_process_filter_multibyte);
6828 defsubr (&Sprocess_filter_multibyte_p);
6829 }
6830
6831 \f
6832 #else /* not subprocesses */
6833
6834 #include <sys/types.h>
6835 #include <errno.h>
6836
6837 #include "lisp.h"
6838 #include "systime.h"
6839 #include "charset.h"
6840 #include "coding.h"
6841 #include "termopts.h"
6842 #include "sysselect.h"
6843
6844 extern int frame_garbaged;
6845
6846 extern EMACS_TIME timer_check ();
6847 extern int timers_run;
6848
6849 Lisp_Object QCtype;
6850
6851 /* As described above, except assuming that there are no subprocesses:
6852
6853 Wait for timeout to elapse and/or keyboard input to be available.
6854
6855 time_limit is:
6856 timeout in seconds, or
6857 zero for no limit, or
6858 -1 means gobble data immediately available but don't wait for any.
6859
6860 read_kbd is a Lisp_Object:
6861 0 to ignore keyboard input, or
6862 1 to return when input is available, or
6863 -1 means caller will actually read the input, so don't throw to
6864 the quit handler.
6865 a cons cell, meaning wait until its car is non-nil
6866 (and gobble terminal input into the buffer if any arrives), or
6867 We know that read_kbd will never be a Lisp_Process, since
6868 `subprocesses' isn't defined.
6869
6870 do_display != 0 means redisplay should be done to show subprocess
6871 output that arrives.
6872
6873 Return true iff we received input from any process. */
6874
6875 int
6876 wait_reading_process_input (time_limit, microsecs, read_kbd, do_display)
6877 int time_limit, microsecs;
6878 Lisp_Object read_kbd;
6879 int do_display;
6880 {
6881 register int nfds;
6882 EMACS_TIME end_time, timeout;
6883 SELECT_TYPE waitchannels;
6884 int xerrno;
6885 /* Either nil or a cons cell, the car of which is of interest and
6886 may be changed outside of this routine. */
6887 Lisp_Object wait_for_cell;
6888
6889 wait_for_cell = Qnil;
6890
6891 /* If waiting for non-nil in a cell, record where. */
6892 if (CONSP (read_kbd))
6893 {
6894 wait_for_cell = read_kbd;
6895 XSETFASTINT (read_kbd, 0);
6896 }
6897
6898 /* What does time_limit really mean? */
6899 if (time_limit || microsecs)
6900 {
6901 EMACS_GET_TIME (end_time);
6902 EMACS_SET_SECS_USECS (timeout, time_limit, microsecs);
6903 EMACS_ADD_TIME (end_time, end_time, timeout);
6904 }
6905
6906 /* Turn off periodic alarms (in case they are in use)
6907 and then turn off any other atimers,
6908 because the select emulator uses alarms. */
6909 stop_polling ();
6910 turn_on_atimers (0);
6911
6912 while (1)
6913 {
6914 int timeout_reduced_for_timers = 0;
6915
6916 /* If calling from keyboard input, do not quit
6917 since we want to return C-g as an input character.
6918 Otherwise, do pending quit if requested. */
6919 if (XINT (read_kbd) >= 0)
6920 QUIT;
6921
6922 /* Exit now if the cell we're waiting for became non-nil. */
6923 if (! NILP (wait_for_cell) && ! NILP (XCAR (wait_for_cell)))
6924 break;
6925
6926 /* Compute time from now till when time limit is up */
6927 /* Exit if already run out */
6928 if (time_limit == -1)
6929 {
6930 /* -1 specified for timeout means
6931 gobble output available now
6932 but don't wait at all. */
6933
6934 EMACS_SET_SECS_USECS (timeout, 0, 0);
6935 }
6936 else if (time_limit || microsecs)
6937 {
6938 EMACS_GET_TIME (timeout);
6939 EMACS_SUB_TIME (timeout, end_time, timeout);
6940 if (EMACS_TIME_NEG_P (timeout))
6941 break;
6942 }
6943 else
6944 {
6945 EMACS_SET_SECS_USECS (timeout, 100000, 0);
6946 }
6947
6948 /* If our caller will not immediately handle keyboard events,
6949 run timer events directly.
6950 (Callers that will immediately read keyboard events
6951 call timer_delay on their own.) */
6952 if (NILP (wait_for_cell))
6953 {
6954 EMACS_TIME timer_delay;
6955
6956 do
6957 {
6958 int old_timers_run = timers_run;
6959 timer_delay = timer_check (1);
6960 if (timers_run != old_timers_run && do_display)
6961 /* We must retry, since a timer may have requeued itself
6962 and that could alter the time delay. */
6963 redisplay_preserve_echo_area (14);
6964 else
6965 break;
6966 }
6967 while (!detect_input_pending ());
6968
6969 /* If there is unread keyboard input, also return. */
6970 if (XINT (read_kbd) != 0
6971 && requeued_events_pending_p ())
6972 break;
6973
6974 if (! EMACS_TIME_NEG_P (timer_delay) && time_limit != -1)
6975 {
6976 EMACS_TIME difference;
6977 EMACS_SUB_TIME (difference, timer_delay, timeout);
6978 if (EMACS_TIME_NEG_P (difference))
6979 {
6980 timeout = timer_delay;
6981 timeout_reduced_for_timers = 1;
6982 }
6983 }
6984 }
6985
6986 /* Cause C-g and alarm signals to take immediate action,
6987 and cause input available signals to zero out timeout. */
6988 if (XINT (read_kbd) < 0)
6989 set_waiting_for_input (&timeout);
6990
6991 /* Wait till there is something to do. */
6992
6993 if (! XINT (read_kbd) && NILP (wait_for_cell))
6994 FD_ZERO (&waitchannels);
6995 else
6996 FD_SET (0, &waitchannels);
6997
6998 /* If a frame has been newly mapped and needs updating,
6999 reprocess its display stuff. */
7000 if (frame_garbaged && do_display)
7001 {
7002 clear_waiting_for_input ();
7003 redisplay_preserve_echo_area (15);
7004 if (XINT (read_kbd) < 0)
7005 set_waiting_for_input (&timeout);
7006 }
7007
7008 if (XINT (read_kbd) && detect_input_pending ())
7009 {
7010 nfds = 0;
7011 FD_ZERO (&waitchannels);
7012 }
7013 else
7014 nfds = select (1, &waitchannels, (SELECT_TYPE *)0, (SELECT_TYPE *)0,
7015 &timeout);
7016
7017 xerrno = errno;
7018
7019 /* Make C-g and alarm signals set flags again */
7020 clear_waiting_for_input ();
7021
7022 /* If we woke up due to SIGWINCH, actually change size now. */
7023 do_pending_window_change (0);
7024
7025 if (time_limit && nfds == 0 && ! timeout_reduced_for_timers)
7026 /* We waited the full specified time, so return now. */
7027 break;
7028
7029 if (nfds == -1)
7030 {
7031 /* If the system call was interrupted, then go around the
7032 loop again. */
7033 if (xerrno == EINTR)
7034 FD_ZERO (&waitchannels);
7035 else
7036 error ("select error: %s", emacs_strerror (xerrno));
7037 }
7038 #ifdef sun
7039 else if (nfds > 0 && (waitchannels & 1) && interrupt_input)
7040 /* System sometimes fails to deliver SIGIO. */
7041 kill (getpid (), SIGIO);
7042 #endif
7043 #ifdef SIGIO
7044 if (XINT (read_kbd) && interrupt_input && (waitchannels & 1))
7045 kill (getpid (), SIGIO);
7046 #endif
7047
7048 /* Check for keyboard input */
7049
7050 if ((XINT (read_kbd) != 0)
7051 && detect_input_pending_run_timers (do_display))
7052 {
7053 swallow_events (do_display);
7054 if (detect_input_pending_run_timers (do_display))
7055 break;
7056 }
7057
7058 /* If there is unread keyboard input, also return. */
7059 if (XINT (read_kbd) != 0
7060 && requeued_events_pending_p ())
7061 break;
7062
7063 /* If wait_for_cell. check for keyboard input
7064 but don't run any timers.
7065 ??? (It seems wrong to me to check for keyboard
7066 input at all when wait_for_cell, but the code
7067 has been this way since July 1994.
7068 Try changing this after version 19.31.) */
7069 if (! NILP (wait_for_cell)
7070 && detect_input_pending ())
7071 {
7072 swallow_events (do_display);
7073 if (detect_input_pending ())
7074 break;
7075 }
7076
7077 /* Exit now if the cell we're waiting for became non-nil. */
7078 if (! NILP (wait_for_cell) && ! NILP (XCAR (wait_for_cell)))
7079 break;
7080 }
7081
7082 start_polling ();
7083
7084 return 0;
7085 }
7086
7087
7088 /* Don't confuse make-docfile by having two doc strings for this function.
7089 make-docfile does not pay attention to #if, for good reason! */
7090 DEFUN ("get-buffer-process", Fget_buffer_process, Sget_buffer_process, 1, 1, 0,
7091 0)
7092 (name)
7093 register Lisp_Object name;
7094 {
7095 return Qnil;
7096 }
7097
7098 /* Don't confuse make-docfile by having two doc strings for this function.
7099 make-docfile does not pay attention to #if, for good reason! */
7100 DEFUN ("process-inherit-coding-system-flag",
7101 Fprocess_inherit_coding_system_flag, Sprocess_inherit_coding_system_flag,
7102 1, 1, 0,
7103 0)
7104 (process)
7105 register Lisp_Object process;
7106 {
7107 /* Ignore the argument and return the value of
7108 inherit-process-coding-system. */
7109 return inherit_process_coding_system ? Qt : Qnil;
7110 }
7111
7112 /* Kill all processes associated with `buffer'.
7113 If `buffer' is nil, kill all processes.
7114 Since we have no subprocesses, this does nothing. */
7115
7116 void
7117 kill_buffer_processes (buffer)
7118 Lisp_Object buffer;
7119 {
7120 }
7121
7122 void
7123 init_process ()
7124 {
7125 }
7126
7127 void
7128 syms_of_process ()
7129 {
7130 QCtype = intern (":type");
7131 staticpro (&QCtype);
7132
7133 defsubr (&Sget_buffer_process);
7134 defsubr (&Sprocess_inherit_coding_system_flag);
7135 }
7136
7137 \f
7138 #endif /* not subprocesses */
7139
7140 /* arch-tag: 3706c011-7b9a-4117-bd4f-59e7f701a4c4
7141 (do not change this comment) */