(Finsert_file_contents): If reading into a unibyte
[bpt/emacs.git] / src / process.c
CommitLineData
d0d6b7c5 1/* Asynchronous subprocess control for GNU Emacs.
4a2f9c6a 2 Copyright (C) 1985, 86, 87, 88, 93, 94, 95, 96, 1998
03832893 3 Free Software Foundation, Inc.
d0d6b7c5
JB
4
5This file is part of GNU Emacs.
6
7GNU Emacs is free software; you can redistribute it and/or modify
8it under the terms of the GNU General Public License as published by
1dc77cc3 9the Free Software Foundation; either version 2, or (at your option)
d0d6b7c5
JB
10any later version.
11
12GNU Emacs is distributed in the hope that it will be useful,
13but WITHOUT ANY WARRANTY; without even the implied warranty of
14MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15GNU General Public License for more details.
16
17You should have received a copy of the GNU General Public License
18along with GNU Emacs; see the file COPYING. If not, write to
3b7ad313
EN
19the Free Software Foundation, Inc., 59 Temple Place - Suite 330,
20Boston, MA 02111-1307, USA. */
d0d6b7c5
JB
21
22
23#include <signal.h>
24
18160b98 25#include <config.h>
d0d6b7c5 26
6720a7fb
JB
27/* This file is split into two parts by the following preprocessor
28 conditional. The 'then' clause contains all of the support for
29 asynchronous subprocesses. The 'else' clause contains stub
30 versions of some of the asynchronous subprocess routines that are
31 often called elsewhere in Emacs, so we don't have to #ifdef the
32 sections that call them. */
33
34\f
d0d6b7c5 35#ifdef subprocesses
d0d6b7c5
JB
36
37#include <stdio.h>
38#include <errno.h>
39#include <setjmp.h>
40#include <sys/types.h> /* some typedefs are used in sys/file.h */
41#include <sys/file.h>
42#include <sys/stat.h>
93b4f699
RS
43#ifdef HAVE_UNISTD_H
44#include <unistd.h>
45#endif
d0d6b7c5 46
e98d950b
RS
47#ifdef WINDOWSNT
48#include <stdlib.h>
49#include <fcntl.h>
50#endif /* not WINDOWSNT */
51
d0d6b7c5
JB
52#ifdef HAVE_SOCKETS /* TCP connection support, if kernel can do it */
53#include <sys/socket.h>
54#include <netdb.h>
55#include <netinet/in.h>
56#include <arpa/inet.h>
f2cfa9a6
RS
57#ifdef NEED_NET_ERRNO_H
58#include <net/errno.h>
59#endif /* NEED_NET_ERRNO_H */
d0d6b7c5
JB
60#endif /* HAVE_SOCKETS */
61
1d2c16fa
RS
62/* TERM is a poor-man's SLIP, used on Linux. */
63#ifdef TERM
64#include <client.h>
65#endif
66
cf32fea0
PR
67/* On some systems, e.g. DGUX, inet_addr returns a 'struct in_addr'. */
68#ifdef HAVE_BROKEN_INET_ADDR
79967d5e
RS
69#define IN_ADDR struct in_addr
70#define NUMERIC_ADDR_ERROR (numeric_addr.s_addr == -1)
71#else
72#define IN_ADDR unsigned long
73#define NUMERIC_ADDR_ERROR (numeric_addr == -1)
74#endif
75
6df54671 76#if defined(BSD_SYSTEM) || defined(STRIDE)
d0d6b7c5 77#include <sys/ioctl.h>
0ad77c54 78#if !defined (O_NDELAY) && defined (HAVE_PTYS) && !defined(USG5)
d0d6b7c5
JB
79#include <fcntl.h>
80#endif /* HAVE_PTYS and no O_NDELAY */
6df54671 81#endif /* BSD_SYSTEM || STRIDE */
d0d6b7c5 82
99e3d726
RS
83#ifdef BROKEN_O_NONBLOCK
84#undef O_NONBLOCK
85#endif /* BROKEN_O_NONBLOCK */
86
d0d6b7c5
JB
87#ifdef NEED_BSDTTY
88#include <bsdtty.h>
89#endif
90
d0d6b7c5
JB
91#ifdef IRIS
92#include <sys/sysmacros.h> /* for "minor" */
93#endif /* not IRIS */
94
95#include "systime.h"
36ebaafa 96#include "systty.h"
d0d6b7c5
JB
97
98#include "lisp.h"
99#include "window.h"
100#include "buffer.h"
0fa1789e
KH
101#include "charset.h"
102#include "coding.h"
d0d6b7c5
JB
103#include "process.h"
104#include "termhooks.h"
105#include "termopts.h"
106#include "commands.h"
1dc77cc3 107#include "frame.h"
ececcbec 108#include "blockinput.h"
dfcf069d
AS
109#include "keyboard.h"
110#include "dispextern.h"
d0d6b7c5 111
0c9960e9
RS
112#define max(a, b) ((a) > (b) ? (a) : (b))
113
dd2281ae 114Lisp_Object Qprocessp;
d0d6b7c5 115Lisp_Object Qrun, Qstop, Qsignal, Qopen, Qclosed;
6545aada 116Lisp_Object Qlast_nonmenu_event;
d0d6b7c5
JB
117/* Qexit is declared and initialized in eval.c. */
118
119/* a process object is a network connection when its childp field is neither
de282a05 120 Qt nor Qnil but is instead a cons cell (HOSTNAME PORTNUM). */
d0d6b7c5
JB
121
122#ifdef HAVE_SOCKETS
de282a05 123#define NETCONN_P(p) (GC_CONSP (XPROCESS (p)->childp))
d0d6b7c5
JB
124#else
125#define NETCONN_P(p) 0
126#endif /* HAVE_SOCKETS */
127
128/* Define first descriptor number available for subprocesses. */
129#ifdef VMS
130#define FIRST_PROC_DESC 1
131#else /* Not VMS */
132#define FIRST_PROC_DESC 3
133#endif
134
135/* Define SIGCHLD as an alias for SIGCLD. There are many conditionals
136 testing SIGCHLD. */
137
138#if !defined (SIGCHLD) && defined (SIGCLD)
139#define SIGCHLD SIGCLD
140#endif /* SIGCLD */
141
142#include "syssignal.h"
143
889255b4 144#include "syswait.h"
d0d6b7c5 145
b062d1fe
RM
146extern int errno;
147extern char *strerror ();
148#ifdef VMS
d0d6b7c5 149extern char *sys_errlist[];
b062d1fe 150#endif
d0d6b7c5 151
5f0929a7
RS
152#ifndef HAVE_H_ERRNO
153extern int h_errno;
154#endif
155
a86928f7 156#ifndef SYS_SIGLIST_DECLARED
d0d6b7c5
JB
157#ifndef VMS
158#ifndef BSD4_1
e98d950b 159#ifndef WINDOWSNT
084fd64a 160#ifndef LINUX
d0d6b7c5 161extern char *sys_siglist[];
a0e4d3f3
RS
162#endif /* not LINUX */
163#else /* BSD4_1 */
d0d6b7c5
JB
164char *sys_siglist[] =
165 {
166 "bum signal!!",
167 "hangup",
168 "interrupt",
169 "quit",
170 "illegal instruction",
171 "trace trap",
172 "iot instruction",
173 "emt instruction",
174 "floating point exception",
175 "kill",
176 "bus error",
177 "segmentation violation",
178 "bad argument to system call",
179 "write on a pipe with no one to read it",
180 "alarm clock",
181 "software termination signal from kill",
182 "status signal",
183 "sendable stop signal not from tty",
184 "stop signal from tty",
185 "continue a stopped process",
186 "child status has changed",
187 "background read attempted from control tty",
188 "background write attempted from control tty",
189 "input record available at control tty",
190 "exceeded CPU time limit",
191 "exceeded file size limit"
192 };
e98d950b 193#endif /* not WINDOWSNT */
d0d6b7c5
JB
194#endif
195#endif /* VMS */
a86928f7 196#endif /* ! SYS_SIGLIST_DECLARED */
d0d6b7c5 197
d0d6b7c5
JB
198/* t means use pty, nil means use a pipe,
199 maybe other values to come. */
dd2281ae 200static Lisp_Object Vprocess_connection_type;
d0d6b7c5
JB
201
202#ifdef SKTPAIR
203#ifndef HAVE_SOCKETS
204#include <sys/socket.h>
205#endif
206#endif /* SKTPAIR */
207
17d02632
KH
208/* These next two vars are non-static since sysdep.c uses them in the
209 emulation of `select'. */
d0d6b7c5 210/* Number of events of change of status of a process. */
17d02632 211int process_tick;
d0d6b7c5 212/* Number of events for which the user or sentinel has been notified. */
17d02632 213int update_tick;
d0d6b7c5 214
5886acf9 215#include "sysselect.h"
d0d6b7c5 216
583dcae4 217/* If we support a window system, turn on the code to poll periodically
44ade2e9 218 to detect C-g. It isn't actually used when doing interrupt input. */
583dcae4 219#ifdef HAVE_WINDOW_SYSTEM
44ade2e9
RS
220#define POLL_FOR_INPUT
221#endif
222
a69281ff 223/* Mask of bits indicating the descriptors that we wait for input on. */
d0d6b7c5 224
dd2281ae
RS
225static SELECT_TYPE input_wait_mask;
226
a69281ff
RS
227/* Mask that excludes keyboard input descriptor (s). */
228
229static SELECT_TYPE non_keyboard_wait_mask;
230
b5dc1c83
RS
231/* Mask that excludes process input descriptor (s). */
232
233static SELECT_TYPE non_process_wait_mask;
234
7d0e672e
RS
235/* The largest descriptor currently in use for a process object. */
236static int max_process_desc;
237
a69281ff
RS
238/* The largest descriptor currently in use for keyboard input. */
239static int max_keyboard_desc;
d0d6b7c5 240
dd2281ae
RS
241/* Nonzero means delete a process right away if it exits. */
242static int delete_exited_processes;
d0d6b7c5
JB
243
244/* Indexed by descriptor, gives the process (if any) for that descriptor */
41f3aa98 245Lisp_Object chan_process[MAXDESC];
d0d6b7c5
JB
246
247/* Alist of elements (NAME . PROCESS) */
41f3aa98 248Lisp_Object Vprocess_alist;
d0d6b7c5
JB
249
250/* Buffered-ahead input char from process, indexed by channel.
251 -1 means empty (no char is buffered).
252 Used on sys V where the only way to tell if there is any
253 output from the process is to read at least one char.
254 Always -1 on systems that support FIONREAD. */
255
e98d950b
RS
256/* Don't make static; need to access externally. */
257int proc_buffered_char[MAXDESC];
dd2281ae 258
0fa1789e 259/* Table of `struct coding-system' for each process. */
c7580538
KH
260static struct coding_system *proc_decode_coding_system[MAXDESC];
261static struct coding_system *proc_encode_coding_system[MAXDESC];
0fa1789e 262
dd2281ae 263static Lisp_Object get_process ();
93b4f699 264
fb4c3627 265extern EMACS_TIME timer_check ();
5de50bfb 266extern int timers_run;
fb4c3627 267
93b4f699
RS
268/* Maximum number of bytes to send to a pty without an eof. */
269static int pty_max_bytes;
3b9a3dfa 270
14dc6093 271extern Lisp_Object Vfile_name_coding_system, Vdefault_file_name_coding_system;
a932f187 272
875e6b94
KH
273#ifdef HAVE_PTYS
274/* The file name of the pty opened by allocate_pty. */
3b9a3dfa
RS
275
276static char pty_name[24];
875e6b94 277#endif
d0d6b7c5
JB
278\f
279/* Compute the Lisp form of the process status, p->status, from
280 the numeric status that was returned by `wait'. */
281
f9738840
JB
282Lisp_Object status_convert ();
283
dfcf069d 284void
d0d6b7c5
JB
285update_status (p)
286 struct Lisp_Process *p;
287{
288 union { int i; WAITTYPE wt; } u;
289 u.i = XFASTINT (p->raw_status_low) + (XFASTINT (p->raw_status_high) << 16);
290 p->status = status_convert (u.wt);
291 p->raw_status_low = Qnil;
292 p->raw_status_high = Qnil;
293}
294
91d10fa8 295/* Convert a process status word in Unix format to
d0d6b7c5
JB
296 the list that we use internally. */
297
298Lisp_Object
299status_convert (w)
300 WAITTYPE w;
301{
302 if (WIFSTOPPED (w))
303 return Fcons (Qstop, Fcons (make_number (WSTOPSIG (w)), Qnil));
304 else if (WIFEXITED (w))
305 return Fcons (Qexit, Fcons (make_number (WRETCODE (w)),
306 WCOREDUMP (w) ? Qt : Qnil));
307 else if (WIFSIGNALED (w))
308 return Fcons (Qsignal, Fcons (make_number (WTERMSIG (w)),
309 WCOREDUMP (w) ? Qt : Qnil));
310 else
311 return Qrun;
312}
313
314/* Given a status-list, extract the three pieces of information
315 and store them individually through the three pointers. */
316
317void
318decode_status (l, symbol, code, coredump)
319 Lisp_Object l;
320 Lisp_Object *symbol;
321 int *code;
322 int *coredump;
323{
324 Lisp_Object tem;
325
bcd69aea 326 if (SYMBOLP (l))
d0d6b7c5
JB
327 {
328 *symbol = l;
329 *code = 0;
330 *coredump = 0;
331 }
332 else
333 {
334 *symbol = XCONS (l)->car;
335 tem = XCONS (l)->cdr;
336 *code = XFASTINT (XCONS (tem)->car);
f9738840 337 tem = XCONS (tem)->cdr;
d0d6b7c5
JB
338 *coredump = !NILP (tem);
339 }
340}
341
342/* Return a string describing a process status list. */
343
344Lisp_Object
345status_message (status)
346 Lisp_Object status;
347{
348 Lisp_Object symbol;
349 int code, coredump;
350 Lisp_Object string, string2;
351
352 decode_status (status, &symbol, &code, &coredump);
353
354 if (EQ (symbol, Qsignal) || EQ (symbol, Qstop))
355 {
b97ad9ea
RS
356 char *signame = 0;
357 if (code < NSIG)
358 {
b0310da4 359#ifndef VMS
ed0cae05
RS
360 /* Cast to suppress warning if the table has const char *. */
361 signame = (char *) sys_siglist[code];
b0310da4 362#else
b97ad9ea 363 signame = sys_errlist[code];
b0310da4 364#endif
b97ad9ea
RS
365 }
366 if (signame == 0)
367 signame = "unknown";
368 string = build_string (signame);
d0d6b7c5
JB
369 string2 = build_string (coredump ? " (core dumped)\n" : "\n");
370 XSTRING (string)->data[0] = DOWNCASE (XSTRING (string)->data[0]);
371 return concat2 (string, string2);
372 }
373 else if (EQ (symbol, Qexit))
374 {
375 if (code == 0)
376 return build_string ("finished\n");
f2980264 377 string = Fnumber_to_string (make_number (code));
d0d6b7c5
JB
378 string2 = build_string (coredump ? " (core dumped)\n" : "\n");
379 return concat2 (build_string ("exited abnormally with code "),
380 concat2 (string, string2));
381 }
382 else
383 return Fcopy_sequence (Fsymbol_name (symbol));
384}
385\f
386#ifdef HAVE_PTYS
d0d6b7c5 387
875e6b94
KH
388/* Open an available pty, returning a file descriptor.
389 Return -1 on failure.
390 The file name of the terminal corresponding to the pty
391 is left in the variable pty_name. */
392
d0d6b7c5
JB
393int
394allocate_pty ()
395{
396 struct stat stb;
dfcf069d 397 register int c, i;
d0d6b7c5
JB
398 int fd;
399
32676c08
JB
400 /* Some systems name their pseudoterminals so that there are gaps in
401 the usual sequence - for example, on HP9000/S700 systems, there
402 are no pseudoterminals with names ending in 'f'. So we wait for
403 three failures in a row before deciding that we've reached the
404 end of the ptys. */
405 int failed_count = 0;
406
d0d6b7c5
JB
407#ifdef PTY_ITERATION
408 PTY_ITERATION
409#else
410 for (c = FIRST_PTY_LETTER; c <= 'z'; c++)
411 for (i = 0; i < 16; i++)
412#endif
413 {
414#ifdef PTY_NAME_SPRINTF
415 PTY_NAME_SPRINTF
d0d6b7c5
JB
416#else
417 sprintf (pty_name, "/dev/pty%c%x", c, i);
d0d6b7c5
JB
418#endif /* no PTY_NAME_SPRINTF */
419
4d7c105e
RS
420#ifdef PTY_OPEN
421 PTY_OPEN;
422#else /* no PTY_OPEN */
32676c08
JB
423#ifdef IRIS
424 /* Unusual IRIS code */
425 *ptyv = open ("/dev/ptc", O_RDWR | O_NDELAY, 0);
426 if (fd < 0)
427 return -1;
428 if (fstat (fd, &stb) < 0)
d0d6b7c5 429 return -1;
4d7c105e 430#else /* not IRIS */
32676c08
JB
431 if (stat (pty_name, &stb) < 0)
432 {
433 failed_count++;
434 if (failed_count >= 3)
435 return -1;
436 }
437 else
438 failed_count = 0;
d0d6b7c5
JB
439#ifdef O_NONBLOCK
440 fd = open (pty_name, O_RDWR | O_NONBLOCK, 0);
441#else
442 fd = open (pty_name, O_RDWR | O_NDELAY, 0);
443#endif
4d7c105e
RS
444#endif /* not IRIS */
445#endif /* no PTY_OPEN */
d0d6b7c5
JB
446
447 if (fd >= 0)
448 {
449 /* check to make certain that both sides are available
450 this avoids a nasty yet stupid bug in rlogins */
451#ifdef PTY_TTY_NAME_SPRINTF
452 PTY_TTY_NAME_SPRINTF
d0d6b7c5
JB
453#else
454 sprintf (pty_name, "/dev/tty%c%x", c, i);
d0d6b7c5
JB
455#endif /* no PTY_TTY_NAME_SPRINTF */
456#ifndef UNIPLUS
457 if (access (pty_name, 6) != 0)
458 {
459 close (fd);
fad97cbe 460#if !defined(IRIS) && !defined(__sgi)
d0d6b7c5
JB
461 continue;
462#else
463 return -1;
464#endif /* IRIS */
465 }
466#endif /* not UNIPLUS */
467 setup_pty (fd);
468 return fd;
469 }
470 }
471 return -1;
472}
473#endif /* HAVE_PTYS */
474\f
475Lisp_Object
476make_process (name)
477 Lisp_Object name;
478{
23d6bb9c 479 struct Lisp_Vector *vec;
d0d6b7c5
JB
480 register Lisp_Object val, tem, name1;
481 register struct Lisp_Process *p;
482 char suffix[10];
483 register int i;
484
23d6bb9c
KH
485 vec = allocate_vectorlike ((EMACS_INT) VECSIZE (struct Lisp_Process));
486 for (i = 0; i < VECSIZE (struct Lisp_Process); i++)
487 vec->contents[i] = Qnil;
488 vec->size = VECSIZE (struct Lisp_Process);
489 p = (struct Lisp_Process *)vec;
490
1d056e64
KH
491 XSETINT (p->infd, -1);
492 XSETINT (p->outfd, -1);
22719df2
KH
493 XSETFASTINT (p->pid, 0);
494 XSETFASTINT (p->tick, 0);
495 XSETFASTINT (p->update_tick, 0);
d0d6b7c5
JB
496 p->raw_status_low = Qnil;
497 p->raw_status_high = Qnil;
498 p->status = Qrun;
499 p->mark = Fmake_marker ();
500
501 /* If name is already in use, modify it until it is unused. */
502
503 name1 = name;
504 for (i = 1; ; i++)
505 {
506 tem = Fget_process (name1);
507 if (NILP (tem)) break;
508 sprintf (suffix, "<%d>", i);
509 name1 = concat2 (name, build_string (suffix));
510 }
511 name = name1;
512 p->name = name;
23d6bb9c 513 XSETPROCESS (val, p);
d0d6b7c5
JB
514 Vprocess_alist = Fcons (Fcons (name, val), Vprocess_alist);
515 return val;
516}
517
dfcf069d 518void
d0d6b7c5
JB
519remove_process (proc)
520 register Lisp_Object proc;
521{
522 register Lisp_Object pair;
523
524 pair = Frassq (proc, Vprocess_alist);
525 Vprocess_alist = Fdelq (pair, Vprocess_alist);
d0d6b7c5
JB
526
527 deactivate_process (proc);
528}
529\f
530DEFUN ("processp", Fprocessp, Sprocessp, 1, 1, 0,
531 "Return t if OBJECT is a process.")
4ee3e309
EN
532 (object)
533 Lisp_Object object;
d0d6b7c5 534{
4ee3e309 535 return PROCESSP (object) ? Qt : Qnil;
d0d6b7c5
JB
536}
537
538DEFUN ("get-process", Fget_process, Sget_process, 1, 1, 0,
539 "Return the process named NAME, or nil if there is none.")
540 (name)
541 register Lisp_Object name;
542{
bcd69aea 543 if (PROCESSP (name))
d0d6b7c5
JB
544 return name;
545 CHECK_STRING (name, 0);
546 return Fcdr (Fassoc (name, Vprocess_alist));
547}
548
549DEFUN ("get-buffer-process", Fget_buffer_process, Sget_buffer_process, 1, 1, 0,
7744ca33 550 "Return the (or a) process associated with BUFFER.\n\
d0d6b7c5 551BUFFER may be a buffer or the name of one.")
4ee3e309
EN
552 (buffer)
553 register Lisp_Object buffer;
d0d6b7c5
JB
554{
555 register Lisp_Object buf, tail, proc;
556
4ee3e309
EN
557 if (NILP (buffer)) return Qnil;
558 buf = Fget_buffer (buffer);
d0d6b7c5
JB
559 if (NILP (buf)) return Qnil;
560
561 for (tail = Vprocess_alist; !NILP (tail); tail = Fcdr (tail))
562 {
563 proc = Fcdr (Fcar (tail));
bcd69aea 564 if (PROCESSP (proc) && EQ (XPROCESS (proc)->buffer, buf))
d0d6b7c5
JB
565 return proc;
566 }
567 return Qnil;
568}
569
ebb9e16f
JB
570/* This is how commands for the user decode process arguments. It
571 accepts a process, a process name, a buffer, a buffer name, or nil.
572 Buffers denote the first process in the buffer, and nil denotes the
573 current buffer. */
d0d6b7c5 574
77b221b1 575static Lisp_Object
d0d6b7c5
JB
576get_process (name)
577 register Lisp_Object name;
578{
1619761d
KH
579 register Lisp_Object proc, obj;
580 if (STRINGP (name))
581 {
582 obj = Fget_process (name);
583 if (NILP (obj))
584 obj = Fget_buffer (name);
585 if (NILP (obj))
586 error ("Process %s does not exist", XSTRING (name)->data);
587 }
588 else if (NILP (name))
589 obj = Fcurrent_buffer ();
d0d6b7c5 590 else
1619761d
KH
591 obj = name;
592
593 /* Now obj should be either a buffer object or a process object.
594 */
595 if (BUFFERP (obj))
d0d6b7c5 596 {
1619761d 597 proc = Fget_buffer_process (obj);
d0d6b7c5 598 if (NILP (proc))
1619761d 599 error ("Buffer %s has no process", XSTRING (XBUFFER (obj)->name)->data);
d0d6b7c5 600 }
d0d6b7c5 601 else
1619761d
KH
602 {
603 CHECK_PROCESS (obj, 0);
604 proc = obj;
605 }
606 return proc;
d0d6b7c5
JB
607}
608
609DEFUN ("delete-process", Fdelete_process, Sdelete_process, 1, 1, 0,
610 "Delete PROCESS: kill it and forget about it immediately.\n\
ebb9e16f
JB
611PROCESS may be a process, a buffer, the name of a process or buffer, or\n\
612nil, indicating the current buffer's process.")
4ee3e309
EN
613 (process)
614 register Lisp_Object process;
d0d6b7c5 615{
4ee3e309
EN
616 process = get_process (process);
617 XPROCESS (process)->raw_status_low = Qnil;
618 XPROCESS (process)->raw_status_high = Qnil;
619 if (NETCONN_P (process))
d0d6b7c5 620 {
4ee3e309
EN
621 XPROCESS (process)->status = Fcons (Qexit, Fcons (make_number (0), Qnil));
622 XSETINT (XPROCESS (process)->tick, ++process_tick);
d0d6b7c5 623 }
4ee3e309 624 else if (XINT (XPROCESS (process)->infd) >= 0)
d0d6b7c5 625 {
4ee3e309 626 Fkill_process (process, Qnil);
d0d6b7c5 627 /* Do this now, since remove_process will make sigchld_handler do nothing. */
4ee3e309 628 XPROCESS (process)->status
d0d6b7c5 629 = Fcons (Qsignal, Fcons (make_number (SIGKILL), Qnil));
4ee3e309 630 XSETINT (XPROCESS (process)->tick, ++process_tick);
d0d6b7c5
JB
631 status_notify ();
632 }
4ee3e309 633 remove_process (process);
d0d6b7c5
JB
634 return Qnil;
635}
636\f
637DEFUN ("process-status", Fprocess_status, Sprocess_status, 1, 1, 0,
7744ca33
KH
638 "Return the status of PROCESS.\n\
639The returned value is one of the following symbols:\n\
d0d6b7c5
JB
640run -- for a process that is running.\n\
641stop -- for a process stopped but continuable.\n\
642exit -- for a process that has exited.\n\
643signal -- for a process that has got a fatal signal.\n\
644open -- for a network stream connection that is open.\n\
645closed -- for a network stream connection that is closed.\n\
ebb9e16f 646nil -- if arg is a process name and no such process exists.\n\
31cd7d00 647PROCESS may be a process, a buffer, the name of a process, or\n\
ebb9e16f 648nil, indicating the current buffer's process.")
4ee3e309
EN
649 (process)
650 register Lisp_Object process;
d0d6b7c5
JB
651{
652 register struct Lisp_Process *p;
653 register Lisp_Object status;
343f4114 654
4ee3e309
EN
655 if (STRINGP (process))
656 process = Fget_process (process);
343f4114 657 else
4ee3e309 658 process = get_process (process);
343f4114 659
4ee3e309
EN
660 if (NILP (process))
661 return process;
343f4114 662
4ee3e309 663 p = XPROCESS (process);
d0d6b7c5
JB
664 if (!NILP (p->raw_status_low))
665 update_status (p);
666 status = p->status;
bcd69aea 667 if (CONSP (status))
d0d6b7c5 668 status = XCONS (status)->car;
4ee3e309 669 if (NETCONN_P (process))
d0d6b7c5
JB
670 {
671 if (EQ (status, Qrun))
672 status = Qopen;
673 else if (EQ (status, Qexit))
674 status = Qclosed;
675 }
676 return status;
677}
678
679DEFUN ("process-exit-status", Fprocess_exit_status, Sprocess_exit_status,
680 1, 1, 0,
681 "Return the exit status of PROCESS or the signal number that killed it.\n\
682If PROCESS has not yet exited or died, return 0.")
4ee3e309
EN
683 (process)
684 register Lisp_Object process;
d0d6b7c5 685{
4ee3e309
EN
686 CHECK_PROCESS (process, 0);
687 if (!NILP (XPROCESS (process)->raw_status_low))
688 update_status (XPROCESS (process));
689 if (CONSP (XPROCESS (process)->status))
690 return XCONS (XCONS (XPROCESS (process)->status)->cdr)->car;
d0d6b7c5
JB
691 return make_number (0);
692}
693
694DEFUN ("process-id", Fprocess_id, Sprocess_id, 1, 1, 0,
695 "Return the process id of PROCESS.\n\
696This is the pid of the Unix process which PROCESS uses or talks to.\n\
697For a network connection, this value is nil.")
4ee3e309
EN
698 (process)
699 register Lisp_Object process;
d0d6b7c5 700{
4ee3e309
EN
701 CHECK_PROCESS (process, 0);
702 return XPROCESS (process)->pid;
d0d6b7c5
JB
703}
704
705DEFUN ("process-name", Fprocess_name, Sprocess_name, 1, 1, 0,
706 "Return the name of PROCESS, as a string.\n\
707This is the name of the program invoked in PROCESS,\n\
708possibly modified to make it unique among process names.")
4ee3e309
EN
709 (process)
710 register Lisp_Object process;
d0d6b7c5 711{
4ee3e309
EN
712 CHECK_PROCESS (process, 0);
713 return XPROCESS (process)->name;
d0d6b7c5
JB
714}
715
716DEFUN ("process-command", Fprocess_command, Sprocess_command, 1, 1, 0,
717 "Return the command that was executed to start PROCESS.\n\
718This is a list of strings, the first string being the program executed\n\
719and the rest of the strings being the arguments given to it.\n\
720For a non-child channel, this is nil.")
4ee3e309
EN
721 (process)
722 register Lisp_Object process;
d0d6b7c5 723{
4ee3e309
EN
724 CHECK_PROCESS (process, 0);
725 return XPROCESS (process)->command;
d0d6b7c5
JB
726}
727
3b9a3dfa
RS
728DEFUN ("process-tty-name", Fprocess_tty_name, Sprocess_tty_name, 1, 1, 0,
729 "Return the name of the terminal PROCESS uses, or nil if none.\n\
730This is the terminal that the process itself reads and writes on,\n\
731not the name of the pty that Emacs uses to talk with that terminal.")
4ee3e309
EN
732 (process)
733 register Lisp_Object process;
3b9a3dfa 734{
4ee3e309
EN
735 CHECK_PROCESS (process, 0);
736 return XPROCESS (process)->tty_name;
3b9a3dfa
RS
737}
738
d0d6b7c5
JB
739DEFUN ("set-process-buffer", Fset_process_buffer, Sset_process_buffer,
740 2, 2, 0,
741 "Set buffer associated with PROCESS to BUFFER (a buffer, or nil).")
4ee3e309
EN
742 (process, buffer)
743 register Lisp_Object process, buffer;
d0d6b7c5 744{
4ee3e309 745 CHECK_PROCESS (process, 0);
d0d6b7c5
JB
746 if (!NILP (buffer))
747 CHECK_BUFFER (buffer, 1);
4ee3e309 748 XPROCESS (process)->buffer = buffer;
d0d6b7c5
JB
749 return buffer;
750}
751
752DEFUN ("process-buffer", Fprocess_buffer, Sprocess_buffer,
753 1, 1, 0,
754 "Return the buffer PROCESS is associated with.\n\
7744ca33 755Output from PROCESS is inserted in this buffer unless PROCESS has a filter.")
4ee3e309
EN
756 (process)
757 register Lisp_Object process;
d0d6b7c5 758{
4ee3e309
EN
759 CHECK_PROCESS (process, 0);
760 return XPROCESS (process)->buffer;
d0d6b7c5
JB
761}
762
763DEFUN ("process-mark", Fprocess_mark, Sprocess_mark,
764 1, 1, 0,
765 "Return the marker for the end of the last output from PROCESS.")
4ee3e309
EN
766 (process)
767 register Lisp_Object process;
d0d6b7c5 768{
4ee3e309
EN
769 CHECK_PROCESS (process, 0);
770 return XPROCESS (process)->mark;
d0d6b7c5
JB
771}
772
773DEFUN ("set-process-filter", Fset_process_filter, Sset_process_filter,
774 2, 2, 0,
775 "Give PROCESS the filter function FILTER; nil means no filter.\n\
20ddfff7 776t means stop accepting output from the process.\n\
d0d6b7c5
JB
777When a process has a filter, each time it does output\n\
778the entire string of output is passed to the filter.\n\
779The filter gets two arguments: the process and the string of output.\n\
780If the process has a filter, its buffer is not used for output.")
4ee3e309
EN
781 (process, filter)
782 register Lisp_Object process, filter;
d0d6b7c5 783{
4ee3e309 784 CHECK_PROCESS (process, 0);
20ddfff7 785 if (EQ (filter, Qt))
a69281ff 786 {
4ee3e309
EN
787 FD_CLR (XINT (XPROCESS (process)->infd), &input_wait_mask);
788 FD_CLR (XINT (XPROCESS (process)->infd), &non_keyboard_wait_mask);
a69281ff 789 }
4ee3e309 790 else if (EQ (XPROCESS (process)->filter, Qt))
a69281ff 791 {
4ee3e309
EN
792 FD_SET (XINT (XPROCESS (process)->infd), &input_wait_mask);
793 FD_SET (XINT (XPROCESS (process)->infd), &non_keyboard_wait_mask);
a69281ff 794 }
4ee3e309 795 XPROCESS (process)->filter = filter;
d0d6b7c5
JB
796 return filter;
797}
798
799DEFUN ("process-filter", Fprocess_filter, Sprocess_filter,
800 1, 1, 0,
801 "Returns the filter function of PROCESS; nil if none.\n\
802See `set-process-filter' for more info on filter functions.")
4ee3e309
EN
803 (process)
804 register Lisp_Object process;
d0d6b7c5 805{
4ee3e309
EN
806 CHECK_PROCESS (process, 0);
807 return XPROCESS (process)->filter;
d0d6b7c5
JB
808}
809
810DEFUN ("set-process-sentinel", Fset_process_sentinel, Sset_process_sentinel,
811 2, 2, 0,
812 "Give PROCESS the sentinel SENTINEL; nil for none.\n\
813The sentinel is called as a function when the process changes state.\n\
814It gets two arguments: the process, and a string describing the change.")
4ee3e309
EN
815 (process, sentinel)
816 register Lisp_Object process, sentinel;
d0d6b7c5 817{
4ee3e309
EN
818 CHECK_PROCESS (process, 0);
819 XPROCESS (process)->sentinel = sentinel;
d0d6b7c5
JB
820 return sentinel;
821}
822
823DEFUN ("process-sentinel", Fprocess_sentinel, Sprocess_sentinel,
824 1, 1, 0,
825 "Return the sentinel of PROCESS; nil if none.\n\
826See `set-process-sentinel' for more info on sentinels.")
4ee3e309
EN
827 (process)
828 register Lisp_Object process;
d0d6b7c5 829{
4ee3e309
EN
830 CHECK_PROCESS (process, 0);
831 return XPROCESS (process)->sentinel;
d0d6b7c5
JB
832}
833
396df322
RS
834DEFUN ("set-process-window-size", Fset_process_window_size,
835 Sset_process_window_size, 3, 3, 0,
836 "Tell PROCESS that it has logical window size HEIGHT and WIDTH.")
4ee3e309
EN
837 (process, height, width)
838 register Lisp_Object process, height, width;
396df322 839{
4ee3e309 840 CHECK_PROCESS (process, 0);
396df322
RS
841 CHECK_NATNUM (height, 0);
842 CHECK_NATNUM (width, 0);
4ee3e309 843 if (set_window_size (XINT (XPROCESS (process)->infd),
396df322
RS
844 XINT (height), XINT(width)) <= 0)
845 return Qnil;
846 else
847 return Qt;
848}
849
52a1b894
EZ
850DEFUN ("set-process-inherit-coding-system-flag",
851 Fset_process_inherit_coding_system_flag,
852 Sset_process_inherit_coding_system_flag, 2, 2, 0,
853 "Determine whether buffer of PROCESS will inherit coding-system.\n\
854If the second argument FLAG is non-nil, then the variable\n\
855`buffer-file-coding-system' of the buffer associated with PROCESS\n\
856will be bound to the value of the coding system used to decode\n\
857the process output.\n\
858\n\
859This is useful when the coding system specified for the process buffer\n\
860leaves either the character code conversion or the end-of-line conversion\n\
861unspecified, or if the coding system used to decode the process output\n\
862is more appropriate for saving the process buffer.\n\
863\n\
864Binding the variable `inherit-process-coding-system' to non-nil before\n\
865starting the process is an alternative way of setting the inherit flag\n\
866for the process which will run.")
867 (process, flag)
868 register Lisp_Object process, flag;
869{
870 CHECK_PROCESS (process, 0);
aa91317a 871 XPROCESS (process)->inherit_coding_system_flag = flag;
52a1b894
EZ
872 return flag;
873}
874
875DEFUN ("process-inherit-coding-system-flag",
876 Fprocess_inherit_coding_system_flag, Sprocess_inherit_coding_system_flag,
877 1, 1, 0,
878 "Return the value of inherit-coding-system flag for PROCESS.\n\
879If this flag is t, `buffer-file-coding-system' of the buffer\n\
880associated with PROCESS will inherit the coding system used to decode\n\
881the process output.")
882 (process)
883 register Lisp_Object process;
884{
885 CHECK_PROCESS (process, 0);
aa91317a 886 return XPROCESS (process)->inherit_coding_system_flag;
52a1b894
EZ
887}
888
d0d6b7c5
JB
889DEFUN ("process-kill-without-query", Fprocess_kill_without_query,
890 Sprocess_kill_without_query, 1, 2, 0,
891 "Say no query needed if PROCESS is running when Emacs is exited.\n\
f2d2dbfe 892Optional second argument if non-nil says to require a query.\n\
d0d6b7c5 893Value is t if a query was formerly required.")
4ee3e309
EN
894 (process, value)
895 register Lisp_Object process, value;
d0d6b7c5
JB
896{
897 Lisp_Object tem;
898
4ee3e309
EN
899 CHECK_PROCESS (process, 0);
900 tem = XPROCESS (process)->kill_without_query;
901 XPROCESS (process)->kill_without_query = Fnull (value);
d0d6b7c5
JB
902
903 return Fnull (tem);
904}
312c9964 905
de282a05
RS
906DEFUN ("process-contact", Fprocess_contact, Sprocess_contact,
907 1, 1, 0,
908 "Return the contact info of PROCESS; t for a real child.\n\
909For a net connection, the value is a cons cell of the form (HOST SERVICE).")
910 (process)
911 register Lisp_Object process;
912{
913 CHECK_PROCESS (process, 0);
914 return XPROCESS (process)->childp;
915}
916
312c9964
RS
917#if 0 /* Turned off because we don't currently record this info
918 in the process. Perhaps add it. */
919DEFUN ("process-connection", Fprocess_connection, Sprocess_connection, 1, 1, 0,
7744ca33
KH
920 "Return the connection type of PROCESS.\n\
921The value is nil for a pipe, t or `pty' for a pty, or `stream' for\n\
922a socket connection.")
312c9964
RS
923 (process)
924 Lisp_Object process;
925{
926 return XPROCESS (process)->type;
927}
928#endif
d0d6b7c5
JB
929\f
930Lisp_Object
931list_processes_1 ()
932{
933 register Lisp_Object tail, tem;
934 Lisp_Object proc, minspace, tem1;
935 register struct buffer *old = current_buffer;
936 register struct Lisp_Process *p;
937 register int state;
938 char tembuf[80];
939
22719df2 940 XSETFASTINT (minspace, 1);
d0d6b7c5
JB
941
942 set_buffer_internal (XBUFFER (Vstandard_output));
943 Fbuffer_disable_undo (Vstandard_output);
944
945 current_buffer->truncate_lines = Qt;
946
947 write_string ("\
a9fde32e
KH
948Proc Status Buffer Tty Command\n\
949---- ------ ------ --- -------\n", -1);
d0d6b7c5
JB
950
951 for (tail = Vprocess_alist; !NILP (tail); tail = Fcdr (tail))
952 {
953 Lisp_Object symbol;
954
955 proc = Fcdr (Fcar (tail));
956 p = XPROCESS (proc);
957 if (NILP (p->childp))
958 continue;
959
960 Finsert (1, &p->name);
961 Findent_to (make_number (13), minspace);
962
963 if (!NILP (p->raw_status_low))
964 update_status (p);
965 symbol = p->status;
bcd69aea 966 if (CONSP (p->status))
d0d6b7c5
JB
967 symbol = XCONS (p->status)->car;
968
969
970 if (EQ (symbol, Qsignal))
971 {
972 Lisp_Object tem;
973 tem = Fcar (Fcdr (p->status));
974#ifdef VMS
975 if (XINT (tem) < NSIG)
b0310da4 976 write_string (sys_errlist [XINT (tem)], -1);
d0d6b7c5
JB
977 else
978#endif
979 Fprinc (symbol, Qnil);
980 }
981 else if (NETCONN_P (proc))
982 {
983 if (EQ (symbol, Qrun))
984 write_string ("open", -1);
985 else if (EQ (symbol, Qexit))
986 write_string ("closed", -1);
987 else
988 Fprinc (symbol, Qnil);
989 }
990 else
991 Fprinc (symbol, Qnil);
992
993 if (EQ (symbol, Qexit))
994 {
995 Lisp_Object tem;
996 tem = Fcar (Fcdr (p->status));
997 if (XFASTINT (tem))
998 {
3162bafa 999 sprintf (tembuf, " %d", (int) XFASTINT (tem));
d0d6b7c5
JB
1000 write_string (tembuf, -1);
1001 }
1002 }
1003
1004 if (EQ (symbol, Qsignal) || EQ (symbol, Qexit))
1005 remove_process (proc);
1006
1007 Findent_to (make_number (22), minspace);
1008 if (NILP (p->buffer))
1009 insert_string ("(none)");
1010 else if (NILP (XBUFFER (p->buffer)->name))
1011 insert_string ("(Killed)");
1012 else
1013 Finsert (1, &XBUFFER (p->buffer)->name);
1014
1015 Findent_to (make_number (37), minspace);
1016
a9fde32e
KH
1017 if (STRINGP (p->tty_name))
1018 Finsert (1, &p->tty_name);
1019 else
1020 insert_string ("(none)");
1021
1022 Findent_to (make_number (49), minspace);
1023
d0d6b7c5
JB
1024 if (NETCONN_P (proc))
1025 {
1026 sprintf (tembuf, "(network stream connection to %s)\n",
de282a05 1027 XSTRING (XCONS (p->childp)->car)->data);
d0d6b7c5
JB
1028 insert_string (tembuf);
1029 }
1030 else
1031 {
1032 tem = p->command;
1033 while (1)
1034 {
1035 tem1 = Fcar (tem);
1036 Finsert (1, &tem1);
1037 tem = Fcdr (tem);
1038 if (NILP (tem))
1039 break;
1040 insert_string (" ");
1041 }
1042 insert_string ("\n");
1043 }
1044 }
1045 return Qnil;
1046}
1047
1048DEFUN ("list-processes", Flist_processes, Slist_processes, 0, 0, "",
1049 "Display a list of all processes.\n\
7744ca33
KH
1050Any process listed as exited or signaled is actually eliminated\n\
1051after the listing is made.")
d0d6b7c5
JB
1052 ()
1053{
1054 internal_with_output_to_temp_buffer ("*Process List*",
1055 list_processes_1, Qnil);
1056 return Qnil;
1057}
1058
1059DEFUN ("process-list", Fprocess_list, Sprocess_list, 0, 0, 0,
1060 "Return a list of all processes.")
1061 ()
1062{
1063 return Fmapcar (Qcdr, Vprocess_alist);
1064}
1065\f
b0310da4
JB
1066/* Starting asynchronous inferior processes. */
1067
1068static Lisp_Object start_process_unwind ();
1069
d0d6b7c5
JB
1070DEFUN ("start-process", Fstart_process, Sstart_process, 3, MANY, 0,
1071 "Start a program in a subprocess. Return the process object for it.\n\
1072Args are NAME BUFFER PROGRAM &rest PROGRAM-ARGS\n\
1073NAME is name for process. It is modified if necessary to make it unique.\n\
1074BUFFER is the buffer or (buffer-name) to associate with the process.\n\
1075 Process output goes at end of that buffer, unless you specify\n\
1076 an output stream or filter function to handle the output.\n\
1077 BUFFER may be also nil, meaning that this process is not associated\n\
0fa1789e 1078 with any buffer.\n\
8f1ecd05 1079Third arg is program file name. It is searched for in PATH.\n\
d0d6b7c5
JB
1080Remaining arguments are strings to give program as arguments.")
1081 (nargs, args)
1082 int nargs;
1083 register Lisp_Object *args;
1084{
1e30af70 1085 Lisp_Object buffer, name, program, proc, current_dir, tem;
d0d6b7c5
JB
1086#ifdef VMS
1087 register unsigned char *new_argv;
1088 int len;
1089#else
1090 register unsigned char **new_argv;
1091#endif
1092 register int i;
b0310da4 1093 int count = specpdl_ptr - specpdl;
d0d6b7c5
JB
1094
1095 buffer = args[1];
1096 if (!NILP (buffer))
1097 buffer = Fget_buffer_create (buffer);
1098
1e30af70
JB
1099 /* Make sure that the child will be able to chdir to the current
1100 buffer's current directory, or its unhandled equivalent. We
1101 can't just have the child check for an error when it does the
1102 chdir, since it's in a vfork.
1103
1104 We have to GCPRO around this because Fexpand_file_name and
1105 Funhandled_file_name_directory might call a file name handling
1106 function. The argument list is protected by the caller, so all
1107 we really have to worry about is buffer. */
1108 {
1109 struct gcpro gcpro1, gcpro2;
1110
1111 current_dir = current_buffer->directory;
1112
1113 GCPRO2 (buffer, current_dir);
1114
7af71e17
RS
1115 current_dir
1116 = expand_and_dir_to_file (Funhandled_file_name_directory (current_dir),
1117 Qnil);
1e30af70
JB
1118 if (NILP (Ffile_accessible_directory_p (current_dir)))
1119 report_file_error ("Setting current directory",
1120 Fcons (current_buffer->directory, Qnil));
1121
1122 UNGCPRO;
1123 }
1124
d0d6b7c5
JB
1125 name = args[0];
1126 CHECK_STRING (name, 0);
1127
1128 program = args[2];
1129
1130 CHECK_STRING (program, 2);
1131
1132#ifdef VMS
1133 /* Make a one member argv with all args concatenated
1134 together separated by a blank. */
fc932ac6 1135 len = STRING_BYTES (XSTRING (program)) + 2;
d0d6b7c5
JB
1136 for (i = 3; i < nargs; i++)
1137 {
1138 tem = args[i];
1139 CHECK_STRING (tem, i);
fc932ac6 1140 len += STRING_BYTES (XSTRING (tem)) + 1; /* count the blank */
d0d6b7c5
JB
1141 }
1142 new_argv = (unsigned char *) alloca (len);
1143 strcpy (new_argv, XSTRING (program)->data);
1144 for (i = 3; i < nargs; i++)
1145 {
1146 tem = args[i];
1147 CHECK_STRING (tem, i);
1148 strcat (new_argv, " ");
1149 strcat (new_argv, XSTRING (tem)->data);
1150 }
b0310da4
JB
1151 /* Need to add code here to check for program existence on VMS */
1152
d0d6b7c5
JB
1153#else /* not VMS */
1154 new_argv = (unsigned char **) alloca ((nargs - 1) * sizeof (char *));
1155
d0d6b7c5 1156 /* If program file name is not absolute, search our path for it */
e98d950b
RS
1157 if (!IS_DIRECTORY_SEP (XSTRING (program)->data[0])
1158 && !(XSTRING (program)->size > 1
1159 && IS_DEVICE_SEP (XSTRING (program)->data[1])))
d0d6b7c5 1160 {
3b639868
KH
1161 struct gcpro gcpro1, gcpro2, gcpro3, gcpro4;
1162
d0d6b7c5 1163 tem = Qnil;
3b639868 1164 GCPRO4 (name, program, buffer, current_dir);
5437e9f9 1165 openp (Vexec_path, program, EXEC_SUFFIXES, &tem, 1);
3b639868 1166 UNGCPRO;
d0d6b7c5
JB
1167 if (NILP (tem))
1168 report_file_error ("Searching for program", Fcons (program, Qnil));
f8a87498 1169 tem = Fexpand_file_name (tem, Qnil);
d0d6b7c5
JB
1170 new_argv[0] = XSTRING (tem)->data;
1171 }
3b639868 1172 else
13373f4e
RS
1173 {
1174 if (!NILP (Ffile_directory_p (program)))
1175 error ("Specified program for new process is a directory");
1176
1177 new_argv[0] = XSTRING (program)->data;
1178 }
3b639868
KH
1179
1180 for (i = 3; i < nargs; i++)
1181 {
1182 tem = args[i];
1183 CHECK_STRING (tem, i);
1184 new_argv[i - 2] = XSTRING (tem)->data;
1185 }
1186 new_argv[i - 2] = 0;
d0d6b7c5
JB
1187#endif /* not VMS */
1188
1189 proc = make_process (name);
b0310da4
JB
1190 /* If an error occurs and we can't start the process, we want to
1191 remove it from the process list. This means that each error
1192 check in create_process doesn't need to call remove_process
1193 itself; it's all taken care of here. */
1194 record_unwind_protect (start_process_unwind, proc);
d0d6b7c5
JB
1195
1196 XPROCESS (proc)->childp = Qt;
1197 XPROCESS (proc)->command_channel_p = Qnil;
1198 XPROCESS (proc)->buffer = buffer;
1199 XPROCESS (proc)->sentinel = Qnil;
1200 XPROCESS (proc)->filter = Qnil;
1201 XPROCESS (proc)->command = Flist (nargs - 2, args + 2);
1202
7af71e17
RS
1203 /* Make the process marker point into the process buffer (if any). */
1204 if (!NILP (buffer))
d8a2934e
RS
1205 set_marker_both (XPROCESS (proc)->mark, buffer,
1206 BUF_ZV (XBUFFER (buffer)),
1207 BUF_ZV_BYTE (XBUFFER (buffer)));
7af71e17 1208
67918941 1209 {
d5d4ae71
KH
1210 /* Decide coding systems for communicating with the process. Here
1211 we don't setup the structure coding_system nor pay attention to
1212 unibyte mode. They are done in create_process. */
1213
67918941
RS
1214 /* Qt denotes we have not yet called Ffind_operation_coding_system. */
1215 Lisp_Object coding_systems = Qt;
1216 Lisp_Object val, *args2;
1217 struct gcpro gcpro1;
1218
d5d4ae71
KH
1219 val = Vcoding_system_for_read;
1220 if (NILP (val))
67918941
RS
1221 {
1222 args2 = (Lisp_Object *) alloca ((nargs + 1) * sizeof *args2);
1223 args2[0] = Qstart_process;
1224 for (i = 0; i < nargs; i++) args2[i + 1] = args[i];
1225 GCPRO1 (proc);
1226 coding_systems = Ffind_operation_coding_system (nargs + 1, args2);
1227 UNGCPRO;
1228 if (CONSP (coding_systems))
1229 val = XCONS (coding_systems)->car;
1230 else if (CONSP (Vdefault_process_coding_system))
1231 val = XCONS (Vdefault_process_coding_system)->car;
67918941
RS
1232 }
1233 XPROCESS (proc)->decode_coding_system = val;
1234
d5d4ae71
KH
1235 val = Vcoding_system_for_write;
1236 if (NILP (val))
67918941
RS
1237 {
1238 if (EQ (coding_systems, Qt))
1239 {
1240 args2 = (Lisp_Object *) alloca ((nargs + 1) * sizeof args2);
1241 args2[0] = Qstart_process;
1242 for (i = 0; i < nargs; i++) args2[i + 1] = args[i];
1243 GCPRO1 (proc);
1244 coding_systems = Ffind_operation_coding_system (nargs + 1, args2);
1245 UNGCPRO;
1246 }
1247 if (CONSP (coding_systems))
1248 val = XCONS (coding_systems)->cdr;
1249 else if (CONSP (Vdefault_process_coding_system))
1250 val = XCONS (Vdefault_process_coding_system)->cdr;
67918941
RS
1251 }
1252 XPROCESS (proc)->encode_coding_system = val;
1253 }
0fa1789e
KH
1254
1255 XPROCESS (proc)->decoding_buf = make_uninit_string (0);
e7fbaa65 1256 XPROCESS (proc)->decoding_carryover = make_number (0);
0fa1789e 1257 XPROCESS (proc)->encoding_buf = make_uninit_string (0);
e7fbaa65 1258 XPROCESS (proc)->encoding_carryover = make_number (0);
0fa1789e 1259
52a1b894 1260 XPROCESS (proc)->inherit_coding_system_flag
aa91317a
RS
1261 = (NILP (buffer) || !inherit_process_coding_system
1262 ? Qnil : Qt);
52a1b894 1263
6b53bb85 1264 create_process (proc, (char **) new_argv, current_dir);
d0d6b7c5 1265
b0310da4 1266 return unbind_to (count, proc);
d0d6b7c5
JB
1267}
1268
b0310da4 1269/* This function is the unwind_protect form for Fstart_process. If
8e6208c5 1270 PROC doesn't have its pid set, then we know someone has signaled
b0310da4
JB
1271 an error and the process wasn't started successfully, so we should
1272 remove it from the process list. */
1273static Lisp_Object
1274start_process_unwind (proc)
1275 Lisp_Object proc;
1276{
bcd69aea 1277 if (!PROCESSP (proc))
b0310da4
JB
1278 abort ();
1279
1280 /* Was PROC started successfully? */
188d6c4e 1281 if (XINT (XPROCESS (proc)->pid) <= 0)
b0310da4
JB
1282 remove_process (proc);
1283
1284 return Qnil;
1285}
1286
1287
d0d6b7c5
JB
1288SIGTYPE
1289create_process_1 (signo)
1290 int signo;
1291{
3c0ee47b 1292#if defined (USG) && !defined (POSIX_SIGNALS)
d0d6b7c5
JB
1293 /* USG systems forget handlers when they are used;
1294 must reestablish each time */
1295 signal (signo, create_process_1);
1296#endif /* USG */
1297}
1298
1299#if 0 /* This doesn't work; see the note before sigchld_handler. */
1300#ifdef USG
1301#ifdef SIGCHLD
1302/* Mimic blocking of signals on system V, which doesn't really have it. */
1303
1304/* Nonzero means we got a SIGCHLD when it was supposed to be blocked. */
1305int sigchld_deferred;
1306
1307SIGTYPE
1308create_process_sigchld ()
1309{
1310 signal (SIGCHLD, create_process_sigchld);
1311
1312 sigchld_deferred = 1;
1313}
1314#endif
1315#endif
1316#endif
1317
1318#ifndef VMS /* VMS version of this function is in vmsproc.c. */
6b53bb85 1319void
1e30af70 1320create_process (process, new_argv, current_dir)
d0d6b7c5
JB
1321 Lisp_Object process;
1322 char **new_argv;
1e30af70 1323 Lisp_Object current_dir;
d0d6b7c5 1324{
ecd1f654 1325 int pid, inchannel, outchannel;
d0d6b7c5 1326 int sv[2];
0dc70c33
KH
1327#ifdef POSIX_SIGNALS
1328 sigset_t procmask;
1329 sigset_t blocked;
1330 struct sigaction sigint_action;
1331 struct sigaction sigquit_action;
1332#ifdef AIX
1333 struct sigaction sighup_action;
1334#endif
1335#else /* !POSIX_SIGNALS */
d0d6b7c5
JB
1336#ifdef SIGCHLD
1337 SIGTYPE (*sigchld)();
1338#endif
0dc70c33 1339#endif /* !POSIX_SIGNALS */
ecd1f654
KH
1340 /* Use volatile to protect variables from being clobbered by longjmp. */
1341 volatile int forkin, forkout;
1342 volatile int pty_flag = 0;
d0d6b7c5 1343 extern char **environ;
d5d4ae71 1344 Lisp_Object buffer = XPROCESS (process)->buffer;
d0d6b7c5 1345
d0d6b7c5
JB
1346 inchannel = outchannel = -1;
1347
1348#ifdef HAVE_PTYS
fe45da4e 1349 if (!NILP (Vprocess_connection_type))
d0d6b7c5
JB
1350 outchannel = inchannel = allocate_pty ();
1351
d0d6b7c5
JB
1352 if (inchannel >= 0)
1353 {
1354#ifndef USG
1355 /* On USG systems it does not work to open the pty's tty here
1356 and then close and reopen it in the child. */
1357#ifdef O_NOCTTY
1358 /* Don't let this terminal become our controlling terminal
1359 (in case we don't have one). */
1360 forkout = forkin = open (pty_name, O_RDWR | O_NOCTTY, 0);
1361#else
1362 forkout = forkin = open (pty_name, O_RDWR, 0);
1363#endif
1364 if (forkin < 0)
1365 report_file_error ("Opening pty", Qnil);
1366#else
1367 forkin = forkout = -1;
1368#endif /* not USG */
1369 pty_flag = 1;
1370 }
1371 else
1372#endif /* HAVE_PTYS */
1373#ifdef SKTPAIR
1374 {
1375 if (socketpair (AF_UNIX, SOCK_STREAM, 0, sv) < 0)
1376 report_file_error ("Opening socketpair", Qnil);
1377 outchannel = inchannel = sv[0];
1378 forkout = forkin = sv[1];
1379 }
1380#else /* not SKTPAIR */
1381 {
1382 pipe (sv);
1383 inchannel = sv[0];
1384 forkout = sv[1];
1385 pipe (sv);
1386 outchannel = sv[1];
1387 forkin = sv[0];
1388 }
1389#endif /* not SKTPAIR */
1390
1391#if 0
1392 /* Replaced by close_process_descs */
1393 set_exclusive_use (inchannel);
1394 set_exclusive_use (outchannel);
1395#endif
1396
1397/* Stride people say it's a mystery why this is needed
1398 as well as the O_NDELAY, but that it fails without this. */
1399#if defined (STRIDE) || (defined (pfa) && defined (HAVE_PTYS))
1400 {
1401 int one = 1;
1402 ioctl (inchannel, FIONBIO, &one);
1403 }
1404#endif
1405
1406#ifdef O_NONBLOCK
1407 fcntl (inchannel, F_SETFL, O_NONBLOCK);
03832893 1408 fcntl (outchannel, F_SETFL, O_NONBLOCK);
d0d6b7c5
JB
1409#else
1410#ifdef O_NDELAY
1411 fcntl (inchannel, F_SETFL, O_NDELAY);
03832893 1412 fcntl (outchannel, F_SETFL, O_NDELAY);
d0d6b7c5
JB
1413#endif
1414#endif
1415
1416 /* Record this as an active process, with its channels.
1417 As a result, child_setup will close Emacs's side of the pipes. */
1418 chan_process[inchannel] = process;
1d056e64
KH
1419 XSETINT (XPROCESS (process)->infd, inchannel);
1420 XSETINT (XPROCESS (process)->outfd, outchannel);
d0d6b7c5
JB
1421 /* Record the tty descriptor used in the subprocess. */
1422 if (forkin < 0)
1423 XPROCESS (process)->subtty = Qnil;
1424 else
22719df2 1425 XSETFASTINT (XPROCESS (process)->subtty, forkin);
d0d6b7c5
JB
1426 XPROCESS (process)->pty_flag = (pty_flag ? Qt : Qnil);
1427 XPROCESS (process)->status = Qrun;
c7580538
KH
1428 if (!proc_decode_coding_system[inchannel])
1429 proc_decode_coding_system[inchannel]
1430 = (struct coding_system *) xmalloc (sizeof (struct coding_system));
0fa1789e 1431 setup_coding_system (XPROCESS (process)->decode_coding_system,
c7580538
KH
1432 proc_decode_coding_system[inchannel]);
1433 if (!proc_encode_coding_system[outchannel])
929a6726
RS
1434 proc_encode_coding_system[outchannel]
1435 = (struct coding_system *) xmalloc (sizeof (struct coding_system));
0fa1789e 1436 setup_coding_system (XPROCESS (process)->encode_coding_system,
c7580538 1437 proc_encode_coding_system[outchannel]);
d0d6b7c5 1438
d5d4ae71
KH
1439 if (!NILP (buffer) && NILP (XBUFFER (buffer)->enable_multibyte_characters)
1440 || (NILP (buffer) && NILP (buffer_defaults.enable_multibyte_characters)))
1441 {
1442 /* In unibyte mode, character code conversion should not take
1443 place but EOL conversion should. So, setup raw-text or one
1444 of the subsidiary according to the information just setup. */
1445 if (NILP (Vcoding_system_for_read)
1446 && !NILP (XPROCESS (process)->decode_coding_system))
1447 setup_raw_text_coding_system (proc_decode_coding_system[inchannel]);
1448 if (NILP (Vcoding_system_for_write)
1449 && !NILP (XPROCESS (process)->encode_coding_system))
7c5e21ab 1450 setup_raw_text_coding_system (proc_encode_coding_system[outchannel]);
d5d4ae71
KH
1451 }
1452
1a283a4c
KH
1453 if (CODING_REQUIRE_ENCODING (proc_encode_coding_system[outchannel]))
1454 {
1455 /* Here we encode arguments by the coding system used for
1456 sending data to the process. We don't support using
1457 different coding systems for encoding arguments and for
1458 encoding data sent to the process. */
1459 struct gcpro gcpro1;
1460 int i = 1;
1461 struct coding_system *coding = proc_encode_coding_system[outchannel];
1462
e7fbaa65 1463 coding->mode |= CODING_MODE_LAST_BLOCK;
1a283a4c
KH
1464 GCPRO1 (process);
1465 while (new_argv[i] != 0)
1466 {
1467 int len = strlen (new_argv[i]);
1468 int size = encoding_buffer_size (coding, len);
1469 unsigned char *buf = (unsigned char *) alloca (size);
1a283a4c 1470
833d591d 1471 encode_coding (coding, (unsigned char *)new_argv[i], buf, len, size);
e7fbaa65 1472 buf[coding->produced] = 0;
1a283a4c
KH
1473 /* We don't have to free new_argv[i] because it points to a
1474 Lisp string given as an argument to `start-process'. */
833d591d 1475 new_argv[i++] = (char *) buf;
1a283a4c
KH
1476 }
1477 UNGCPRO;
e7fbaa65 1478 coding->mode &= ~CODING_MODE_LAST_BLOCK;
1a283a4c
KH
1479 }
1480
d0d6b7c5
JB
1481 /* Delay interrupts until we have a chance to store
1482 the new fork's pid in its process structure */
0dc70c33
KH
1483#ifdef POSIX_SIGNALS
1484 sigemptyset (&blocked);
1485#ifdef SIGCHLD
1486 sigaddset (&blocked, SIGCHLD);
1487#endif
1488#ifdef HAVE_VFORK
1489 /* On many hosts (e.g. Solaris 2.4), if a vforked child calls `signal',
1490 this sets the parent's signal handlers as well as the child's.
1491 So delay all interrupts whose handlers the child might munge,
1492 and record the current handlers so they can be restored later. */
1493 sigaddset (&blocked, SIGINT ); sigaction (SIGINT , 0, &sigint_action );
1494 sigaddset (&blocked, SIGQUIT); sigaction (SIGQUIT, 0, &sigquit_action);
1495#ifdef AIX
1496 sigaddset (&blocked, SIGHUP ); sigaction (SIGHUP , 0, &sighup_action );
1497#endif
1498#endif /* HAVE_VFORK */
1499 sigprocmask (SIG_BLOCK, &blocked, &procmask);
1500#else /* !POSIX_SIGNALS */
d0d6b7c5
JB
1501#ifdef SIGCHLD
1502#ifdef BSD4_1
1503 sighold (SIGCHLD);
1504#else /* not BSD4_1 */
6df54671 1505#if defined (BSD_SYSTEM) || defined (UNIPLUS) || defined (HPUX)
d0d6b7c5
JB
1506 sigsetmask (sigmask (SIGCHLD));
1507#else /* ordinary USG */
1508#if 0
1509 sigchld_deferred = 0;
1510 sigchld = signal (SIGCHLD, create_process_sigchld);
1511#endif
1512#endif /* ordinary USG */
1513#endif /* not BSD4_1 */
1514#endif /* SIGCHLD */
0dc70c33 1515#endif /* !POSIX_SIGNALS */
d0d6b7c5 1516
3081bf8d 1517 FD_SET (inchannel, &input_wait_mask);
a69281ff 1518 FD_SET (inchannel, &non_keyboard_wait_mask);
3081bf8d
KH
1519 if (inchannel > max_process_desc)
1520 max_process_desc = inchannel;
1521
d0d6b7c5
JB
1522 /* Until we store the proper pid, enable sigchld_handler
1523 to recognize an unknown pid as standing for this process.
1524 It is very important not to let this `marker' value stay
1525 in the table after this function has returned; if it does
1526 it might cause call-process to hang and subsequent asynchronous
1527 processes to get their return values scrambled. */
1528 XSETINT (XPROCESS (process)->pid, -1);
1529
ececcbec
RS
1530 BLOCK_INPUT;
1531
d0d6b7c5
JB
1532 {
1533 /* child_setup must clobber environ on systems with true vfork.
1534 Protect it from permanent change. */
1535 char **save_environ = environ;
1536
14dc6093 1537 current_dir = ENCODE_FILE (current_dir);
a932f187 1538
e98d950b 1539#ifndef WINDOWSNT
d0d6b7c5
JB
1540 pid = vfork ();
1541 if (pid == 0)
e98d950b 1542#endif /* not WINDOWSNT */
d0d6b7c5
JB
1543 {
1544 int xforkin = forkin;
1545 int xforkout = forkout;
1546
1547#if 0 /* This was probably a mistake--it duplicates code later on,
1548 but fails to handle all the cases. */
1549 /* Make sure SIGCHLD is not blocked in the child. */
1550 sigsetmask (SIGEMPTYMASK);
1551#endif
1552
1553 /* Make the pty be the controlling terminal of the process. */
1554#ifdef HAVE_PTYS
1555 /* First, disconnect its current controlling terminal. */
1556#ifdef HAVE_SETSID
7ce48618
RS
1557 /* We tried doing setsid only if pty_flag, but it caused
1558 process_set_signal to fail on SGI when using a pipe. */
1559 setsid ();
ce4c9c90 1560 /* Make the pty's terminal the controlling terminal. */
084fd64a 1561 if (pty_flag)
39e9ebcd 1562 {
39e9ebcd
RS
1563#ifdef TIOCSCTTY
1564 /* We ignore the return value
1565 because faith@cs.unc.edu says that is necessary on Linux. */
1566 ioctl (xforkin, TIOCSCTTY, 0);
ce4c9c90 1567#endif
39e9ebcd 1568 }
d0d6b7c5 1569#else /* not HAVE_SETSID */
c14e53a4 1570#ifdef USG
000ab717 1571 /* It's very important to call setpgrp here and no time
d0d6b7c5
JB
1572 afterwards. Otherwise, we lose our controlling tty which
1573 is set when we open the pty. */
1574 setpgrp ();
1575#endif /* USG */
1576#endif /* not HAVE_SETSID */
9bcf8ec6
KH
1577#if defined (HAVE_TERMIOS) && defined (LDISC1)
1578 if (pty_flag && xforkin >= 0)
1579 {
1580 struct termios t;
1581 tcgetattr (xforkin, &t);
1582 t.c_lflag = LDISC1;
1583 if (tcsetattr (xforkin, TCSANOW, &t) < 0)
1584 write (1, "create_process/tcsetattr LDISC1 failed\n", 39);
1585 }
1586#else
aafadd9f 1587#if defined (NTTYDISC) && defined (TIOCSETD)
ff773a4e 1588 if (pty_flag && xforkin >= 0)
afc549fd
RS
1589 {
1590 /* Use new line discipline. */
1591 int ldisc = NTTYDISC;
4458f555 1592 ioctl (xforkin, TIOCSETD, &ldisc);
afc549fd 1593 }
000ab717 1594#endif
9bcf8ec6 1595#endif
d0d6b7c5
JB
1596#ifdef TIOCNOTTY
1597 /* In 4.3BSD, the TIOCSPGRP bug has been fixed, and now you
1598 can do TIOCSPGRP only to the process's controlling tty. */
1599 if (pty_flag)
1600 {
1601 /* I wonder: would just ioctl (0, TIOCNOTTY, 0) work here?
1602 I can't test it since I don't have 4.3. */
1603 int j = open ("/dev/tty", O_RDWR, 0);
1604 ioctl (j, TIOCNOTTY, 0);
1605 close (j);
5a570e37 1606#ifndef USG
d0d6b7c5
JB
1607 /* In order to get a controlling terminal on some versions
1608 of BSD, it is necessary to put the process in pgrp 0
1609 before it opens the terminal. */
99c1aeca 1610#ifdef HAVE_SETPGID
3ea1d291
RS
1611 setpgid (0, 0);
1612#else
d0d6b7c5 1613 setpgrp (0, 0);
3ea1d291 1614#endif
d0d6b7c5
JB
1615#endif
1616 }
1617#endif /* TIOCNOTTY */
1618
99153b9e 1619#if !defined (RTU) && !defined (UNIPLUS) && !defined (DONT_REOPEN_PTY)
d0d6b7c5 1620/*** There is a suggestion that this ought to be a
99153b9e
RS
1621 conditional on TIOCSPGRP,
1622 or !(defined (HAVE_SETSID) && defined (TIOCSCTTY)).
1623 Trying the latter gave the wrong results on Debian GNU/Linux 1.1;
1624 that system does seem to need this code, even though
1625 both HAVE_SETSID and TIOCSCTTY are defined. */
d0d6b7c5
JB
1626 /* Now close the pty (if we had it open) and reopen it.
1627 This makes the pty the controlling terminal of the subprocess. */
1628 if (pty_flag)
1629 {
99e3d726
RS
1630#ifdef SET_CHILD_PTY_PGRP
1631 int pgrp = getpid ();
1632#endif
1633
d0d6b7c5
JB
1634 /* I wonder if close (open (pty_name, ...)) would work? */
1635 if (xforkin >= 0)
1636 close (xforkin);
1637 xforkout = xforkin = open (pty_name, O_RDWR, 0);
1638
4aa54ba8
RS
1639 if (xforkin < 0)
1640 {
1641 write (1, "Couldn't open the pty terminal ", 31);
1642 write (1, pty_name, strlen (pty_name));
1643 write (1, "\n", 1);
1644 _exit (1);
1645 }
1646
99e3d726
RS
1647#ifdef SET_CHILD_PTY_PGRP
1648 ioctl (xforkin, TIOCSPGRP, &pgrp);
1649 ioctl (xforkout, TIOCSPGRP, &pgrp);
1650#endif
d0d6b7c5 1651 }
99153b9e 1652#endif /* not UNIPLUS and not RTU and not DONT_REOPEN_PTY */
e9bf058b 1653
d0d6b7c5 1654#ifdef SETUP_SLAVE_PTY
13a72104
RS
1655 if (pty_flag)
1656 {
1657 SETUP_SLAVE_PTY;
1658 }
d0d6b7c5
JB
1659#endif /* SETUP_SLAVE_PTY */
1660#ifdef AIX
1661 /* On AIX, we've disabled SIGHUP above once we start a child on a pty.
1662 Now reenable it in the child, so it will die when we want it to. */
1663 if (pty_flag)
1664 signal (SIGHUP, SIG_DFL);
1665#endif
1666#endif /* HAVE_PTYS */
1667
0dc70c33
KH
1668 signal (SIGINT, SIG_DFL);
1669 signal (SIGQUIT, SIG_DFL);
1670
1671 /* Stop blocking signals in the child. */
1672#ifdef POSIX_SIGNALS
1673 sigprocmask (SIG_SETMASK, &procmask, 0);
1674#else /* !POSIX_SIGNALS */
d0d6b7c5
JB
1675#ifdef SIGCHLD
1676#ifdef BSD4_1
1677 sigrelse (SIGCHLD);
1678#else /* not BSD4_1 */
6df54671 1679#if defined (BSD_SYSTEM) || defined (UNIPLUS) || defined (HPUX)
d0d6b7c5
JB
1680 sigsetmask (SIGEMPTYMASK);
1681#else /* ordinary USG */
63528b78 1682#if 0
d0d6b7c5 1683 signal (SIGCHLD, sigchld);
63528b78 1684#endif
d0d6b7c5
JB
1685#endif /* ordinary USG */
1686#endif /* not BSD4_1 */
1687#endif /* SIGCHLD */
0dc70c33 1688#endif /* !POSIX_SIGNALS */
5e7e1da2 1689
ab01d0a8
RS
1690 if (pty_flag)
1691 child_setup_tty (xforkout);
e98d950b
RS
1692#ifdef WINDOWSNT
1693 pid = child_setup (xforkin, xforkout, xforkout,
1694 new_argv, 1, current_dir);
1695#else /* not WINDOWSNT */
d0d6b7c5 1696 child_setup (xforkin, xforkout, xforkout,
e065a56e 1697 new_argv, 1, current_dir);
e98d950b 1698#endif /* not WINDOWSNT */
d0d6b7c5
JB
1699 }
1700 environ = save_environ;
1701 }
1702
ececcbec
RS
1703 UNBLOCK_INPUT;
1704
4a127b3b 1705 /* This runs in the Emacs process. */
d0d6b7c5 1706 if (pid < 0)
6311cf58
RS
1707 {
1708 if (forkin >= 0)
1709 close (forkin);
1710 if (forkin != forkout && forkout >= 0)
1711 close (forkout);
6311cf58 1712 }
4a127b3b
KH
1713 else
1714 {
1715 /* vfork succeeded. */
1716 XSETFASTINT (XPROCESS (process)->pid, pid);
d0d6b7c5 1717
e98d950b 1718#ifdef WINDOWSNT
4a127b3b 1719 register_child (pid, inchannel);
e98d950b
RS
1720#endif /* WINDOWSNT */
1721
4a127b3b
KH
1722 /* If the subfork execv fails, and it exits,
1723 this close hangs. I don't know why.
1724 So have an interrupt jar it loose. */
1725 stop_polling ();
1726 signal (SIGALRM, create_process_1);
1727 alarm (1);
1728 XPROCESS (process)->subtty = Qnil;
1729 if (forkin >= 0)
1730 close (forkin);
1731 alarm (0);
1732 start_polling ();
1733 if (forkin != forkout && forkout >= 0)
1734 close (forkout);
d0d6b7c5 1735
875e6b94 1736#ifdef HAVE_PTYS
4a127b3b
KH
1737 if (pty_flag)
1738 XPROCESS (process)->tty_name = build_string (pty_name);
1739 else
875e6b94 1740#endif
4a127b3b
KH
1741 XPROCESS (process)->tty_name = Qnil;
1742 }
3b9a3dfa 1743
4a127b3b
KH
1744 /* Restore the signal state whether vfork succeeded or not.
1745 (We will signal an error, below, if it failed.) */
0dc70c33
KH
1746#ifdef POSIX_SIGNALS
1747#ifdef HAVE_VFORK
1748 /* Restore the parent's signal handlers. */
1749 sigaction (SIGINT, &sigint_action, 0);
1750 sigaction (SIGQUIT, &sigquit_action, 0);
1751#ifdef AIX
1752 sigaction (SIGHUP, &sighup_action, 0);
1753#endif
1754#endif /* HAVE_VFORK */
1755 /* Stop blocking signals in the parent. */
1756 sigprocmask (SIG_SETMASK, &procmask, 0);
1757#else /* !POSIX_SIGNALS */
d0d6b7c5
JB
1758#ifdef SIGCHLD
1759#ifdef BSD4_1
1760 sigrelse (SIGCHLD);
1761#else /* not BSD4_1 */
6df54671 1762#if defined (BSD_SYSTEM) || defined (UNIPLUS) || defined (HPUX)
d0d6b7c5
JB
1763 sigsetmask (SIGEMPTYMASK);
1764#else /* ordinary USG */
1765#if 0
1766 signal (SIGCHLD, sigchld);
1767 /* Now really handle any of these signals
1768 that came in during this function. */
1769 if (sigchld_deferred)
1770 kill (getpid (), SIGCHLD);
1771#endif
1772#endif /* ordinary USG */
1773#endif /* not BSD4_1 */
1774#endif /* SIGCHLD */
0dc70c33 1775#endif /* !POSIX_SIGNALS */
4a127b3b
KH
1776
1777 /* Now generate the error if vfork failed. */
1778 if (pid < 0)
1779 report_file_error ("Doing vfork", Qnil);
d0d6b7c5
JB
1780}
1781#endif /* not VMS */
1782
1783#ifdef HAVE_SOCKETS
1784
1785/* open a TCP network connection to a given HOST/SERVICE. Treated
1786 exactly like a normal process when reading and writing. Only
1787 differences are in status display and process deletion. A network
1788 connection has no PID; you cannot signal it. All you can do is
1789 deactivate and close it via delete-process */
1790
1791DEFUN ("open-network-stream", Fopen_network_stream, Sopen_network_stream,
1792 4, 4, 0,
1793 "Open a TCP connection for a service to a host.\n\
1794Returns a subprocess-object to represent the connection.\n\
1795Input and output work as for subprocesses; `delete-process' closes it.\n\
1796Args are NAME BUFFER HOST SERVICE.\n\
1797NAME is name for process. It is modified if necessary to make it unique.\n\
1798BUFFER is the buffer (or buffer-name) to associate with the process.\n\
1799 Process output goes at end of that buffer, unless you specify\n\
1800 an output stream or filter function to handle the output.\n\
1801 BUFFER may be also nil, meaning that this process is not associated\n\
1802 with any buffer\n\
1803Third arg is name of the host to connect to, or its IP address.\n\
1804Fourth arg SERVICE is name of the service desired, or an integer\n\
1805 specifying a port number to connect to.")
1806 (name, buffer, host, service)
1807 Lisp_Object name, buffer, host, service;
1808{
1809 Lisp_Object proc;
1810 register int i;
1811 struct sockaddr_in address;
1812 struct servent *svc_info;
1813 struct hostent *host_info_ptr, host_info;
1814 char *(addr_list[2]);
79967d5e 1815 IN_ADDR numeric_addr;
d0d6b7c5
JB
1816 int s, outch, inch;
1817 char errstring[80];
1818 int port;
1819 struct hostent host_info_fixed;
1820 struct gcpro gcpro1, gcpro2, gcpro3, gcpro4;
e333e864 1821 int retry = 0;
44ade2e9 1822 int count = specpdl_ptr - specpdl;
d0d6b7c5 1823
bff3ed0a
RS
1824#ifdef WINDOWSNT
1825 /* Ensure socket support is loaded if available. */
1826 init_winsock (TRUE);
1827#endif
1828
d0d6b7c5
JB
1829 GCPRO4 (name, buffer, host, service);
1830 CHECK_STRING (name, 0);
1831 CHECK_STRING (host, 0);
bcd69aea 1832 if (INTEGERP (service))
d0d6b7c5
JB
1833 port = htons ((unsigned short) XINT (service));
1834 else
1835 {
1836 CHECK_STRING (service, 0);
1837 svc_info = getservbyname (XSTRING (service)->data, "tcp");
1838 if (svc_info == 0)
1839 error ("Unknown service \"%s\"", XSTRING (service)->data);
1840 port = svc_info->s_port;
1841 }
1842
798b64bb
KH
1843 /* Slow down polling to every ten seconds.
1844 Some kernels have a bug which causes retrying connect to fail
1845 after a connect. Polling can interfere with gethostbyname too. */
1846#ifdef POLL_FOR_INPUT
1847 bind_polling_period (10);
1848#endif
1849
1d2c16fa 1850#ifndef TERM
616da37c
RS
1851 while (1)
1852 {
5f0929a7
RS
1853#ifdef TRY_AGAIN
1854 h_errno = 0;
1855#endif
5d6c2aa3
RS
1856 immediate_quit = 1;
1857 QUIT;
616da37c 1858 host_info_ptr = gethostbyname (XSTRING (host)->data);
5d6c2aa3 1859 immediate_quit = 0;
616da37c
RS
1860#ifdef TRY_AGAIN
1861 if (! (host_info_ptr == 0 && h_errno == TRY_AGAIN))
1862#endif
1863 break;
1864 Fsleep_for (make_number (1), Qnil);
1865 }
d0d6b7c5
JB
1866 if (host_info_ptr == 0)
1867 /* Attempt to interpret host as numeric inet address */
1868 {
393a9679 1869 numeric_addr = inet_addr ((char *) XSTRING (host)->data);
79967d5e 1870 if (NUMERIC_ADDR_ERROR)
d0d6b7c5
JB
1871 error ("Unknown host \"%s\"", XSTRING (host)->data);
1872
1873 host_info_ptr = &host_info;
1874 host_info.h_name = 0;
1875 host_info.h_aliases = 0;
1876 host_info.h_addrtype = AF_INET;
39a21be6
JB
1877#ifdef h_addr
1878 /* Older machines have only one address slot called h_addr.
1879 Newer machines have h_addr_list, but #define h_addr to
1880 be its first element. */
1881 host_info.h_addr_list = &(addr_list[0]);
1882#endif
1883 host_info.h_addr = (char*)(&numeric_addr);
d0d6b7c5 1884 addr_list[1] = 0;
8777fbe2
RS
1885 /* numeric_addr isn't null-terminated; it has fixed length. */
1886 host_info.h_length = sizeof (numeric_addr);
d0d6b7c5
JB
1887 }
1888
1889 bzero (&address, sizeof address);
1890 bcopy (host_info_ptr->h_addr, (char *) &address.sin_addr,
1891 host_info_ptr->h_length);
1892 address.sin_family = host_info_ptr->h_addrtype;
1893 address.sin_port = port;
1894
1895 s = socket (host_info_ptr->h_addrtype, SOCK_STREAM, 0);
1896 if (s < 0)
1897 report_file_error ("error creating socket", Fcons (name, Qnil));
1898
457a9bee
RS
1899 /* Kernel bugs (on Ultrix at least) cause lossage (not just EINTR)
1900 when connect is interrupted. So let's not let it get interrupted.
1901 Note we do not turn off polling, because polling is only used
1902 when not interrupt_input, and thus not normally used on the systems
1903 which have this bug. On systems which use polling, there's no way
1904 to quit if polling is turned off. */
1905 if (interrupt_input)
1906 unrequest_sigio ();
1907
d0d6b7c5 1908 loop:
0f2ee0c1
RS
1909
1910 immediate_quit = 1;
1911 QUIT;
1912
e333e864
RS
1913 if (connect (s, (struct sockaddr *) &address, sizeof address) == -1
1914 && errno != EISCONN)
d0d6b7c5
JB
1915 {
1916 int xerrno = errno;
e333e864 1917
0f2ee0c1
RS
1918 immediate_quit = 0;
1919
d0d6b7c5
JB
1920 if (errno == EINTR)
1921 goto loop;
e333e864
RS
1922 if (errno == EADDRINUSE && retry < 20)
1923 {
4590788a
RS
1924 /* A delay here is needed on some FreeBSD systems,
1925 and it is harmless, since this retrying takes time anyway
1926 and should be infrequent. */
1927 Fsleep_for (make_number (1), Qnil);
e333e864
RS
1928 retry++;
1929 goto loop;
1930 }
1931
d0d6b7c5 1932 close (s);
457a9bee
RS
1933
1934 if (interrupt_input)
1935 request_sigio ();
1936
d0d6b7c5
JB
1937 errno = xerrno;
1938 report_file_error ("connection failed",
1939 Fcons (host, Fcons (name, Qnil)));
1940 }
457a9bee 1941
0f2ee0c1
RS
1942 immediate_quit = 0;
1943
44ade2e9
RS
1944#ifdef POLL_FOR_INPUT
1945 unbind_to (count, Qnil);
1946#endif
1947
457a9bee
RS
1948 if (interrupt_input)
1949 request_sigio ();
1950
1d2c16fa
RS
1951#else /* TERM */
1952 s = connect_server (0);
1953 if (s < 0)
1954 report_file_error ("error creating socket", Fcons (name, Qnil));
1955 send_command (s, C_PORT, 0, "%s:%d", XSTRING (host)->data, ntohs (port));
1956 send_command (s, C_DUMB, 1, 0);
1957#endif /* TERM */
d0d6b7c5
JB
1958
1959 inch = s;
59f23005 1960 outch = s;
d0d6b7c5
JB
1961
1962 if (!NILP (buffer))
1963 buffer = Fget_buffer_create (buffer);
1964 proc = make_process (name);
1965
1966 chan_process[inch] = proc;
1967
1968#ifdef O_NONBLOCK
1969 fcntl (inch, F_SETFL, O_NONBLOCK);
1970#else
1971#ifdef O_NDELAY
1972 fcntl (inch, F_SETFL, O_NDELAY);
1973#endif
1974#endif
1975
de282a05 1976 XPROCESS (proc)->childp = Fcons (host, Fcons (service, Qnil));
d0d6b7c5
JB
1977 XPROCESS (proc)->command_channel_p = Qnil;
1978 XPROCESS (proc)->buffer = buffer;
1979 XPROCESS (proc)->sentinel = Qnil;
1980 XPROCESS (proc)->filter = Qnil;
1981 XPROCESS (proc)->command = Qnil;
1982 XPROCESS (proc)->pid = Qnil;
7795ff9b 1983 XSETINT (XPROCESS (proc)->infd, inch);
1d056e64 1984 XSETINT (XPROCESS (proc)->outfd, outch);
d0d6b7c5
JB
1985 XPROCESS (proc)->status = Qrun;
1986 FD_SET (inch, &input_wait_mask);
a69281ff 1987 FD_SET (inch, &non_keyboard_wait_mask);
7d0e672e
RS
1988 if (inch > max_process_desc)
1989 max_process_desc = inch;
d0d6b7c5 1990
67918941
RS
1991 {
1992 /* Setup coding systems for communicating with the network stream. */
1993 struct gcpro gcpro1;
1994 /* Qt denotes we have not yet called Ffind_operation_coding_system. */
1995 Lisp_Object coding_systems = Qt;
1996 Lisp_Object args[5], val;
1997
1998 if (!NILP (Vcoding_system_for_read))
1999 val = Vcoding_system_for_read;
2000 else if (!NILP (buffer) && NILP (XBUFFER (buffer)->enable_multibyte_characters)
2001 || NILP (buffer) && NILP (buffer_defaults.enable_multibyte_characters))
2002 /* We dare not decode end-of-line format by setting VAL to
2003 Qraw_text, because the existing Emacs Lisp libraries
2004 assume that they receive bare code including a sequene of
2005 CR LF. */
2006 val = Qnil;
2007 else
2008 {
2009 args[0] = Qopen_network_stream, args[1] = name,
2010 args[2] = buffer, args[3] = host, args[4] = service;
2011 GCPRO1 (proc);
2012 coding_systems = Ffind_operation_coding_system (5, args);
2013 UNGCPRO;
2014 if (CONSP (coding_systems))
2015 val = XCONS (coding_systems)->car;
2016 else if (CONSP (Vdefault_process_coding_system))
2017 val = XCONS (Vdefault_process_coding_system)->car;
2018 else
2019 val = Qnil;
2020 }
2021 XPROCESS (proc)->decode_coding_system = val;
0fa1789e 2022
67918941
RS
2023 if (!NILP (Vcoding_system_for_write))
2024 val = Vcoding_system_for_write;
2025 else if (NILP (current_buffer->enable_multibyte_characters))
2026 val = Qnil;
2027 else
2028 {
2029 if (EQ (coding_systems, Qt))
2030 {
2031 args[0] = Qopen_network_stream, args[1] = name,
2032 args[2] = buffer, args[3] = host, args[4] = service;
2033 GCPRO1 (proc);
2034 coding_systems = Ffind_operation_coding_system (5, args);
2035 UNGCPRO;
2036 }
2037 if (CONSP (coding_systems))
2038 val = XCONS (coding_systems)->cdr;
2039 else if (CONSP (Vdefault_process_coding_system))
2040 val = XCONS (Vdefault_process_coding_system)->cdr;
2041 else
2042 val = Qnil;
2043 }
2044 XPROCESS (proc)->encode_coding_system = val;
2045 }
0fa1789e 2046
c7580538
KH
2047 if (!proc_decode_coding_system[inch])
2048 proc_decode_coding_system[inch]
2049 = (struct coding_system *) xmalloc (sizeof (struct coding_system));
0fa1789e 2050 setup_coding_system (XPROCESS (proc)->decode_coding_system,
c7580538
KH
2051 proc_decode_coding_system[inch]);
2052 if (!proc_encode_coding_system[outch])
2053 proc_encode_coding_system[outch]
2054 = (struct coding_system *) xmalloc (sizeof (struct coding_system));
0fa1789e 2055 setup_coding_system (XPROCESS (proc)->encode_coding_system,
c7580538 2056 proc_encode_coding_system[outch]);
0fa1789e
KH
2057
2058 XPROCESS (proc)->decoding_buf = make_uninit_string (0);
e7fbaa65 2059 XPROCESS (proc)->decoding_carryover = make_number (0);
0fa1789e 2060 XPROCESS (proc)->encoding_buf = make_uninit_string (0);
e7fbaa65 2061 XPROCESS (proc)->encoding_carryover = make_number (0);
0fa1789e 2062
aa91317a
RS
2063 XPROCESS (proc)->inherit_coding_system_flag
2064 = (NILP (buffer) || !inherit_process_coding_system
2065 ? Qnil : Qt);
52a1b894 2066
d0d6b7c5
JB
2067 UNGCPRO;
2068 return proc;
2069}
2070#endif /* HAVE_SOCKETS */
2071
6b53bb85 2072void
d0d6b7c5
JB
2073deactivate_process (proc)
2074 Lisp_Object proc;
2075{
2076 register int inchannel, outchannel;
2077 register struct Lisp_Process *p = XPROCESS (proc);
2078
a9f2c884
RS
2079 inchannel = XINT (p->infd);
2080 outchannel = XINT (p->outfd);
d0d6b7c5 2081
a9f2c884 2082 if (inchannel >= 0)
d0d6b7c5
JB
2083 {
2084 /* Beware SIGCHLD hereabouts. */
2085 flush_pending_output (inchannel);
2086#ifdef VMS
2087 {
2088 VMS_PROC_STUFF *get_vms_process_pointer (), *vs;
2089 sys$dassgn (outchannel);
c6c6865d 2090 vs = get_vms_process_pointer (p->pid);
d0d6b7c5
JB
2091 if (vs)
2092 give_back_vms_process_stuff (vs);
2093 }
2094#else
2095 close (inchannel);
a9f2c884 2096 if (outchannel >= 0 && outchannel != inchannel)
d0d6b7c5
JB
2097 close (outchannel);
2098#endif
2099
1d056e64
KH
2100 XSETINT (p->infd, -1);
2101 XSETINT (p->outfd, -1);
d0d6b7c5
JB
2102 chan_process[inchannel] = Qnil;
2103 FD_CLR (inchannel, &input_wait_mask);
a69281ff 2104 FD_CLR (inchannel, &non_keyboard_wait_mask);
7d0e672e
RS
2105 if (inchannel == max_process_desc)
2106 {
2107 int i;
2108 /* We just closed the highest-numbered process input descriptor,
2109 so recompute the highest-numbered one now. */
2110 max_process_desc = 0;
2111 for (i = 0; i < MAXDESC; i++)
2112 if (!NILP (chan_process[i]))
2113 max_process_desc = i;
2114 }
d0d6b7c5
JB
2115 }
2116}
2117
2118/* Close all descriptors currently in use for communication
2119 with subprocess. This is used in a newly-forked subprocess
2120 to get rid of irrelevant descriptors. */
2121
6b53bb85 2122void
d0d6b7c5
JB
2123close_process_descs ()
2124{
e98d950b 2125#ifndef WINDOWSNT
d0d6b7c5
JB
2126 int i;
2127 for (i = 0; i < MAXDESC; i++)
2128 {
2129 Lisp_Object process;
2130 process = chan_process[i];
2131 if (!NILP (process))
2132 {
a9f2c884
RS
2133 int in = XINT (XPROCESS (process)->infd);
2134 int out = XINT (XPROCESS (process)->outfd);
2135 if (in >= 0)
d0d6b7c5 2136 close (in);
a9f2c884 2137 if (out >= 0 && in != out)
d0d6b7c5
JB
2138 close (out);
2139 }
2140 }
e98d950b 2141#endif
d0d6b7c5
JB
2142}
2143\f
2144DEFUN ("accept-process-output", Faccept_process_output, Saccept_process_output,
2145 0, 3, 0,
2146 "Allow any pending output from subprocesses to be read by Emacs.\n\
2147It is read into the process' buffers or given to their filter functions.\n\
2148Non-nil arg PROCESS means do not return until some output has been received\n\
2149from PROCESS.\n\
2150Non-nil second arg TIMEOUT and third arg TIMEOUT-MSECS are number of\n\
2151seconds and microseconds to wait; return after that much time whether\n\
2152or not there is input.\n\
2153Return non-nil iff we received any output before the timeout expired.")
4ee3e309
EN
2154 (process, timeout, timeout_msecs)
2155 register Lisp_Object process, timeout, timeout_msecs;
d0d6b7c5
JB
2156{
2157 int seconds;
2158 int useconds;
2159
0748d150
RS
2160 if (! NILP (process))
2161 CHECK_PROCESS (process, 0);
2162
d0d6b7c5
JB
2163 if (! NILP (timeout_msecs))
2164 {
2165 CHECK_NUMBER (timeout_msecs, 2);
2166 useconds = XINT (timeout_msecs);
bcd69aea 2167 if (!INTEGERP (timeout))
1d056e64 2168 XSETINT (timeout, 0);
d0d6b7c5
JB
2169
2170 {
2171 int carry = useconds / 1000000;
2172
2173 XSETINT (timeout, XINT (timeout) + carry);
2174 useconds -= carry * 1000000;
2175
2176 /* I think this clause is necessary because C doesn't
2177 guarantee a particular rounding direction for negative
2178 integers. */
2179 if (useconds < 0)
2180 {
2181 XSETINT (timeout, XINT (timeout) - 1);
2182 useconds += 1000000;
2183 }
2184 }
2185 }
de946e5a
RS
2186 else
2187 useconds = 0;
d0d6b7c5
JB
2188
2189 if (! NILP (timeout))
2190 {
2191 CHECK_NUMBER (timeout, 1);
2192 seconds = XINT (timeout);
ada9a4fd 2193 if (seconds < 0 || (seconds == 0 && useconds == 0))
d0d6b7c5
JB
2194 seconds = -1;
2195 }
2196 else
2197 {
4ee3e309 2198 if (NILP (process))
d0d6b7c5
JB
2199 seconds = -1;
2200 else
2201 seconds = 0;
2202 }
2203
4ee3e309
EN
2204 if (NILP (process))
2205 XSETFASTINT (process, 0);
f76475ad 2206
d0d6b7c5 2207 return
4ee3e309 2208 (wait_reading_process_input (seconds, useconds, process, 0)
d0d6b7c5
JB
2209 ? Qt : Qnil);
2210}
2211
2212/* This variable is different from waiting_for_input in keyboard.c.
2213 It is used to communicate to a lisp process-filter/sentinel (via the
2214 function Fwaiting_for_user_input_p below) whether emacs was waiting
2215 for user-input when that process-filter was called.
2216 waiting_for_input cannot be used as that is by definition 0 when
d430ee71
RS
2217 lisp code is being evalled.
2218 This is also used in record_asynch_buffer_change.
2219 For that purpose, this must be 0
2220 when not inside wait_reading_process_input. */
d0d6b7c5
JB
2221static int waiting_for_user_input_p;
2222
c573ae8e 2223/* This is here so breakpoints can be put on it. */
dfcf069d 2224static void
c573ae8e
RS
2225wait_reading_process_input_1 ()
2226{
2227}
2228
d0d6b7c5
JB
2229/* Read and dispose of subprocess output while waiting for timeout to
2230 elapse and/or keyboard input to be available.
2231
de6fd4b9 2232 TIME_LIMIT is:
d0d6b7c5
JB
2233 timeout in seconds, or
2234 zero for no limit, or
2235 -1 means gobble data immediately available but don't wait for any.
2236
de6fd4b9
RS
2237 MICROSECS is:
2238 an additional duration to wait, measured in microseconds.
2239 If this is nonzero and time_limit is 0, then the timeout
2240 consists of MICROSECS only.
6e4f3667 2241
de6fd4b9 2242 READ_KBD is a lisp value:
d0d6b7c5
JB
2243 0 to ignore keyboard input, or
2244 1 to return when input is available, or
84aa3ace 2245 -1 meaning caller will actually read the input, so don't throw to
d0d6b7c5 2246 the quit handler, or
e6194ffc 2247 a cons cell, meaning wait until its car is non-nil
de6fd4b9 2248 (and gobble terminal input into the buffer if any arrives), or
f76475ad
JB
2249 a process object, meaning wait until something arrives from that
2250 process. The return value is true iff we read some input from
2251 that process.
d0d6b7c5 2252
de6fd4b9 2253 DO_DISPLAY != 0 means redisplay should be done to show subprocess
d0d6b7c5
JB
2254 output that arrives.
2255
de6fd4b9 2256 If READ_KBD is a pointer to a struct Lisp_Process, then the
d0d6b7c5
JB
2257 function returns true iff we received input from that process
2258 before the timeout elapsed.
eb8c3be9 2259 Otherwise, return true iff we received input from any process. */
d0d6b7c5 2260
dfcf069d 2261int
d0d6b7c5 2262wait_reading_process_input (time_limit, microsecs, read_kbd, do_display)
f76475ad
JB
2263 int time_limit, microsecs;
2264 Lisp_Object read_kbd;
2265 int do_display;
d0d6b7c5
JB
2266{
2267 register int channel, nfds, m;
2268 static SELECT_TYPE Available;
2269 int xerrno;
2270 Lisp_Object proc;
2271 EMACS_TIME timeout, end_time, garbage;
2272 SELECT_TYPE Atemp;
a9f2c884 2273 int wait_channel = -1;
d0d6b7c5
JB
2274 struct Lisp_Process *wait_proc = 0;
2275 int got_some_input = 0;
84aa3ace 2276 Lisp_Object *wait_for_cell = 0;
d0d6b7c5
JB
2277
2278 FD_ZERO (&Available);
2279
f76475ad
JB
2280 /* If read_kbd is a process to watch, set wait_proc and wait_channel
2281 accordingly. */
bcd69aea 2282 if (PROCESSP (read_kbd))
d0d6b7c5 2283 {
f76475ad 2284 wait_proc = XPROCESS (read_kbd);
a9f2c884 2285 wait_channel = XINT (wait_proc->infd);
22719df2 2286 XSETFASTINT (read_kbd, 0);
d0d6b7c5
JB
2287 }
2288
84aa3ace 2289 /* If waiting for non-nil in a cell, record where. */
bcd69aea 2290 if (CONSP (read_kbd))
84aa3ace
RS
2291 {
2292 wait_for_cell = &XCONS (read_kbd)->car;
22719df2 2293 XSETFASTINT (read_kbd, 0);
84aa3ace
RS
2294 }
2295
f76475ad 2296 waiting_for_user_input_p = XINT (read_kbd);
d0d6b7c5
JB
2297
2298 /* Since we may need to wait several times,
2299 compute the absolute time to return at. */
2300 if (time_limit || microsecs)
2301 {
2302 EMACS_GET_TIME (end_time);
2303 EMACS_SET_SECS_USECS (timeout, time_limit, microsecs);
2304 EMACS_ADD_TIME (end_time, end_time, timeout);
2305 }
e07d5449
KH
2306#ifdef hpux
2307 /* AlainF 5-Jul-1996
2308 HP-UX 10.10 seem to have problems with signals coming in
2309 Causes "poll: interrupted system call" messages when Emacs is run
2310 in an X window
2311 Turn off periodic alarms (in case they are in use) */
2312 stop_polling ();
2313#endif
d0d6b7c5 2314
d0d6b7c5
JB
2315 while (1)
2316 {
c0239a0b
RS
2317 int timeout_reduced_for_timers = 0;
2318
d0d6b7c5
JB
2319 /* If calling from keyboard input, do not quit
2320 since we want to return C-g as an input character.
2321 Otherwise, do pending quit if requested. */
f76475ad 2322 if (XINT (read_kbd) >= 0)
d0d6b7c5
JB
2323 QUIT;
2324
889255b4
RS
2325 /* Exit now if the cell we're waiting for became non-nil. */
2326 if (wait_for_cell && ! NILP (*wait_for_cell))
2327 break;
2328
d0d6b7c5
JB
2329 /* Compute time from now till when time limit is up */
2330 /* Exit if already run out */
2331 if (time_limit == -1)
2332 {
2333 /* -1 specified for timeout means
2334 gobble output available now
2335 but don't wait at all. */
2336
2337 EMACS_SET_SECS_USECS (timeout, 0, 0);
2338 }
2339 else if (time_limit || microsecs)
2340 {
2341 EMACS_GET_TIME (timeout);
2342 EMACS_SUB_TIME (timeout, end_time, timeout);
2343 if (EMACS_TIME_NEG_P (timeout))
2344 break;
2345 }
2346 else
2347 {
2348 EMACS_SET_SECS_USECS (timeout, 100000, 0);
2349 }
2350
f854a00b
RS
2351 /* Normally we run timers here.
2352 But not if wait_for_cell; in those cases,
2353 the wait is supposed to be short,
2354 and those callers cannot handle running arbitrary Lisp code here. */
2355 if (! wait_for_cell)
fb4c3627 2356 {
c0239a0b 2357 EMACS_TIME timer_delay;
c573ae8e
RS
2358 int old_timers_run;
2359
2360 retry:
2361 old_timers_run = timers_run;
c0239a0b 2362 timer_delay = timer_check (1);
5de50bfb 2363 if (timers_run != old_timers_run && do_display)
c573ae8e
RS
2364 {
2365 redisplay_preserve_echo_area ();
2366 /* We must retry, since a timer may have requeued itself
2367 and that could alter the time_delay. */
2368 goto retry;
2369 }
2370
69645afc
RS
2371 /* If there is unread keyboard input, also return. */
2372 if (XINT (read_kbd) != 0
2373 && requeued_events_pending_p ())
2374 break;
2375
c0239a0b 2376 if (! EMACS_TIME_NEG_P (timer_delay) && time_limit != -1)
fb4c3627
RS
2377 {
2378 EMACS_TIME difference;
2379 EMACS_SUB_TIME (difference, timer_delay, timeout);
2380 if (EMACS_TIME_NEG_P (difference))
c0239a0b
RS
2381 {
2382 timeout = timer_delay;
2383 timeout_reduced_for_timers = 1;
2384 }
fb4c3627 2385 }
4abca5e7
RS
2386 /* If time_limit is -1, we are not going to wait at all. */
2387 else if (time_limit != -1)
c573ae8e
RS
2388 {
2389 /* This is so a breakpoint can be put here. */
2390 wait_reading_process_input_1 ();
2391 }
fb4c3627
RS
2392 }
2393
90ab1a81
JB
2394 /* Cause C-g and alarm signals to take immediate action,
2395 and cause input available signals to zero out timeout.
2396
2397 It is important that we do this before checking for process
2398 activity. If we get a SIGCHLD after the explicit checks for
2399 process activity, timeout is the only way we will know. */
2400 if (XINT (read_kbd) < 0)
2401 set_waiting_for_input (&timeout);
2402
6be429b1
JB
2403 /* If status of something has changed, and no input is
2404 available, notify the user of the change right away. After
2405 this explicit check, we'll let the SIGCHLD handler zap
2406 timeout to get our attention. */
2407 if (update_tick != process_tick && do_display)
2408 {
2409 Atemp = input_wait_mask;
2410 EMACS_SET_SECS_USECS (timeout, 0, 0);
0c9960e9
RS
2411 if ((select (max (max_process_desc, max_keyboard_desc) + 1,
2412 &Atemp, (SELECT_TYPE *)0, (SELECT_TYPE *)0,
ecd1f654
KH
2413 &timeout)
2414 <= 0))
90ab1a81
JB
2415 {
2416 /* It's okay for us to do this and then continue with
a0e4d3f3 2417 the loop, since timeout has already been zeroed out. */
90ab1a81
JB
2418 clear_waiting_for_input ();
2419 status_notify ();
2420 }
6be429b1
JB
2421 }
2422
2423 /* Don't wait for output from a non-running process. */
2424 if (wait_proc != 0 && !NILP (wait_proc->raw_status_low))
2425 update_status (wait_proc);
2426 if (wait_proc != 0
2427 && ! EQ (wait_proc->status, Qrun))
9aa2a7f4 2428 {
215b45e9 2429 int nread, total_nread = 0;
7ce63188 2430
9aa2a7f4 2431 clear_waiting_for_input ();
7ce63188
RS
2432 XSETPROCESS (proc, wait_proc);
2433
2434 /* Read data from the process, until we exhaust it. */
1c0707fd 2435 while (XINT (wait_proc->infd) >= 0
97a084c1
RS
2436 && (nread
2437 = read_process_output (proc, XINT (wait_proc->infd))))
215b45e9
RS
2438 {
2439 if (0 < nread)
2440 total_nread += nread;
2441#ifdef EIO
2442 else if (nread == -1 && EIO == errno)
2443 break;
2444#endif
2445 }
7ce63188
RS
2446 if (total_nread > 0 && do_display)
2447 redisplay_preserve_echo_area ();
2448
9aa2a7f4
JB
2449 break;
2450 }
6be429b1 2451
d0d6b7c5
JB
2452 /* Wait till there is something to do */
2453
b5dc1c83
RS
2454 if (wait_for_cell)
2455 Available = non_process_wait_mask;
2456 else if (! XINT (read_kbd))
a69281ff
RS
2457 Available = non_keyboard_wait_mask;
2458 else
2459 Available = input_wait_mask;
d0d6b7c5 2460
ff11dfa1 2461 /* If frame size has changed or the window is newly mapped,
ffd56f97
JB
2462 redisplay now, before we start to wait. There is a race
2463 condition here; if a SIGIO arrives between now and the select
016899c0
JB
2464 and indicates that a frame is trashed, the select may block
2465 displaying a trashed screen. */
5164ee8e 2466 if (frame_garbaged && do_display)
7286affd
RS
2467 {
2468 clear_waiting_for_input ();
2469 redisplay_preserve_echo_area ();
2470 if (XINT (read_kbd) < 0)
7efe788e 2471 set_waiting_for_input (&timeout);
7286affd 2472 }
ffd56f97 2473
0a65b032
RS
2474 if (XINT (read_kbd) && detect_input_pending ())
2475 {
2476 nfds = 0;
2477 FD_ZERO (&Available);
2478 }
2479 else
0c9960e9
RS
2480 nfds = select (max (max_process_desc, max_keyboard_desc) + 1,
2481 &Available, (SELECT_TYPE *)0, (SELECT_TYPE *)0,
0a65b032 2482 &timeout);
6720a7fb 2483
d0d6b7c5
JB
2484 xerrno = errno;
2485
2486 /* Make C-g and alarm signals set flags again */
2487 clear_waiting_for_input ();
2488
2489 /* If we woke up due to SIGWINCH, actually change size now. */
2490 do_pending_window_change ();
2491
c0239a0b
RS
2492 if (time_limit && nfds == 0 && ! timeout_reduced_for_timers)
2493 /* We wanted the full specified time, so return now. */
d0d6b7c5
JB
2494 break;
2495 if (nfds < 0)
2496 {
2497 if (xerrno == EINTR)
2498 FD_ZERO (&Available);
b0310da4
JB
2499#ifdef ultrix
2500 /* Ultrix select seems to return ENOMEM when it is
2501 interrupted. Treat it just like EINTR. Bleah. Note
2502 that we want to test for the "ultrix" CPP symbol, not
2503 "__ultrix__"; the latter is only defined under GCC, but
2504 not by DEC's bundled CC. -JimB */
8058415c
JB
2505 else if (xerrno == ENOMEM)
2506 FD_ZERO (&Available);
2507#endif
d0d6b7c5
JB
2508#ifdef ALLIANT
2509 /* This happens for no known reason on ALLIANT.
2510 I am guessing that this is the right response. -- RMS. */
2511 else if (xerrno == EFAULT)
2512 FD_ZERO (&Available);
2513#endif
2514 else if (xerrno == EBADF)
2515 {
2516#ifdef AIX
2517 /* AIX doesn't handle PTY closure the same way BSD does. On AIX,
2518 the child's closure of the pts gives the parent a SIGHUP, and
2519 the ptc file descriptor is automatically closed,
2520 yielding EBADF here or at select() call above.
2521 So, SIGHUP is ignored (see def of PTY_TTY_NAME_SPRINTF
a0e4d3f3 2522 in m/ibmrt-aix.h), and here we just ignore the select error.
d0d6b7c5 2523 Cleanup occurs c/o status_notify after SIGCLD. */
ffd56f97 2524 FD_ZERO (&Available); /* Cannot depend on values returned */
d0d6b7c5
JB
2525#else
2526 abort ();
2527#endif
2528 }
2529 else
6ed6233b 2530 error ("select error: %s", strerror (xerrno));
d0d6b7c5 2531 }
26ec91de 2532#if defined(sun) && !defined(USG5_4)
a69281ff 2533 else if (nfds > 0 && keyboard_bit_set (&Available)
dd2281ae 2534 && interrupt_input)
e0109153
JB
2535 /* System sometimes fails to deliver SIGIO.
2536
2537 David J. Mackenzie says that Emacs doesn't compile under
2538 Solaris if this code is enabled, thus the USG5_4 in the CPP
2539 conditional. "I haven't noticed any ill effects so far.
2540 If you find a Solaris expert somewhere, they might know
2541 better." */
d0d6b7c5
JB
2542 kill (getpid (), SIGIO);
2543#endif
2544
5d5beb62
RS
2545#if 0 /* When polling is used, interrupt_input is 0,
2546 so get_input_pending should read the input.
2547 So this should not be needed. */
2548 /* If we are using polling for input,
2549 and we see input available, make it get read now.
2550 Otherwise it might not actually get read for a second.
2551 And on hpux, since we turn off polling in wait_reading_process_input,
2552 it might never get read at all if we don't spend much time
2553 outside of wait_reading_process_input. */
2554 if (XINT (read_kbd) && interrupt_input
2555 && keyboard_bit_set (&Available)
2556 && input_polling_used ())
2557 kill (getpid (), SIGALRM);
2558#endif
2559
d0d6b7c5
JB
2560 /* Check for keyboard input */
2561 /* If there is any, return immediately
2562 to give it higher priority than subprocesses */
2563
77e1b3d4 2564 if (XINT (read_kbd) != 0
5d6c2aa3 2565 && detect_input_pending_run_timers (do_display))
6ed6233b
KH
2566 {
2567 swallow_events (do_display);
5d6c2aa3 2568 if (detect_input_pending_run_timers (do_display))
6ed6233b
KH
2569 break;
2570 }
2571
69645afc
RS
2572 /* If there is unread keyboard input, also return. */
2573 if (XINT (read_kbd) != 0
2574 && requeued_events_pending_p ())
2575 break;
2576
77e1b3d4
RS
2577 /* If we are not checking for keyboard input now,
2578 do process events (but don't run any timers).
2579 This is so that X events will be processed.
0c9960e9 2580 Otherwise they may have to wait until polling takes place.
77e1b3d4
RS
2581 That would causes delays in pasting selections, for example.
2582
2583 (We used to do this only if wait_for_cell.) */
2584 if (XINT (read_kbd) == 0 && detect_input_pending ())
f854a00b
RS
2585 {
2586 swallow_events (do_display);
0c9960e9 2587#if 0 /* Exiting when read_kbd doesn't request that seems wrong, though. */
f854a00b
RS
2588 if (detect_input_pending ())
2589 break;
5d5beb62 2590#endif
0c9960e9 2591 }
f854a00b 2592
84aa3ace
RS
2593 /* Exit now if the cell we're waiting for became non-nil. */
2594 if (wait_for_cell && ! NILP (*wait_for_cell))
2595 break;
2596
4746118a 2597#ifdef SIGIO
5d5beb62 2598 /* If we think we have keyboard input waiting, but didn't get SIGIO,
d0d6b7c5
JB
2599 go read it. This can happen with X on BSD after logging out.
2600 In that case, there really is no input and no SIGIO,
2601 but select says there is input. */
2602
dd2281ae 2603 if (XINT (read_kbd) && interrupt_input
5d5beb62 2604 && keyboard_bit_set (&Available))
e643c5be 2605 kill (getpid (), SIGIO);
4746118a 2606#endif
d0d6b7c5 2607
d0d6b7c5
JB
2608 if (! wait_proc)
2609 got_some_input |= nfds > 0;
2610
32676c08
JB
2611 /* If checking input just got us a size-change event from X,
2612 obey it now if we should. */
97f3b3d6 2613 if (XINT (read_kbd) || wait_for_cell)
32676c08
JB
2614 do_pending_window_change ();
2615
a9f2c884
RS
2616 /* Check for data from a process. */
2617 /* Really FIRST_PROC_DESC should be 0 on Unix,
2618 but this is safer in the short run. */
a69281ff 2619 for (channel = 0; channel <= max_process_desc; channel++)
d0d6b7c5 2620 {
a69281ff
RS
2621 if (FD_ISSET (channel, &Available)
2622 && FD_ISSET (channel, &non_keyboard_wait_mask))
d0d6b7c5
JB
2623 {
2624 int nread;
2625
2626 /* If waiting for this channel, arrange to return as
2627 soon as no more input to be processed. No more
2628 waiting. */
2629 if (wait_channel == channel)
2630 {
a9f2c884 2631 wait_channel = -1;
d0d6b7c5
JB
2632 time_limit = -1;
2633 got_some_input = 1;
2634 }
2635 proc = chan_process[channel];
2636 if (NILP (proc))
2637 continue;
2638
d0d6b7c5
JB
2639 /* Read data from the process, starting with our
2640 buffered-ahead character if we have one. */
2641
2642 nread = read_process_output (proc, channel);
2643 if (nread > 0)
2644 {
2645 /* Since read_process_output can run a filter,
2646 which can call accept-process-output,
2647 don't try to read from any other processes
2648 before doing the select again. */
2649 FD_ZERO (&Available);
2650
2651 if (do_display)
2652 redisplay_preserve_echo_area ();
2653 }
2654#ifdef EWOULDBLOCK
2655 else if (nread == -1 && errno == EWOULDBLOCK)
2656 ;
0b75e9a4 2657#endif
89d7280d
RS
2658 /* ISC 4.1 defines both EWOULDBLOCK and O_NONBLOCK,
2659 and Emacs uses O_NONBLOCK, so what we get is EAGAIN. */
d0d6b7c5
JB
2660#ifdef O_NONBLOCK
2661 else if (nread == -1 && errno == EAGAIN)
2662 ;
2663#else
2664#ifdef O_NDELAY
2665 else if (nread == -1 && errno == EAGAIN)
2666 ;
2667 /* Note that we cannot distinguish between no input
2668 available now and a closed pipe.
2669 With luck, a closed pipe will be accompanied by
2670 subprocess termination and SIGCHLD. */
2671 else if (nread == 0 && !NETCONN_P (proc))
2672 ;
ffd56f97
JB
2673#endif /* O_NDELAY */
2674#endif /* O_NONBLOCK */
d0d6b7c5
JB
2675#ifdef HAVE_PTYS
2676 /* On some OSs with ptys, when the process on one end of
2677 a pty exits, the other end gets an error reading with
2678 errno = EIO instead of getting an EOF (0 bytes read).
2679 Therefore, if we get an error reading and errno =
2680 EIO, just continue, because the child process has
2681 exited and should clean itself up soon (e.g. when we
5651af6d
RS
2682 get a SIGCHLD).
2683
2684 However, it has been known to happen that the SIGCHLD
2685 got lost. So raise the signl again just in case.
2686 It can't hurt. */
d0d6b7c5 2687 else if (nread == -1 && errno == EIO)
5651af6d 2688 kill (getpid (), SIGCHLD);
ffd56f97
JB
2689#endif /* HAVE_PTYS */
2690 /* If we can detect process termination, don't consider the process
2691 gone just because its pipe is closed. */
d0d6b7c5
JB
2692#ifdef SIGCHLD
2693 else if (nread == 0 && !NETCONN_P (proc))
2694 ;
2695#endif
2696 else
2697 {
2698 /* Preserve status of processes already terminated. */
2699 XSETINT (XPROCESS (proc)->tick, ++process_tick);
2700 deactivate_process (proc);
2701 if (!NILP (XPROCESS (proc)->raw_status_low))
2702 update_status (XPROCESS (proc));
2703 if (EQ (XPROCESS (proc)->status, Qrun))
2704 XPROCESS (proc)->status
2705 = Fcons (Qexit, Fcons (make_number (256), Qnil));
2706 }
2707 }
ffd56f97
JB
2708 } /* end for each file descriptor */
2709 } /* end while exit conditions not met */
d0d6b7c5 2710
d430ee71
RS
2711 waiting_for_user_input_p = 0;
2712
ffd56f97
JB
2713 /* If calling from keyboard input, do not quit
2714 since we want to return C-g as an input character.
2715 Otherwise, do pending quit if requested. */
f76475ad 2716 if (XINT (read_kbd) >= 0)
ffd56f97
JB
2717 {
2718 /* Prevent input_pending from remaining set if we quit. */
2719 clear_input_pending ();
2720 QUIT;
2721 }
e07d5449
KH
2722#ifdef hpux
2723 /* AlainF 5-Jul-1996
2724 HP-UX 10.10 seems to have problems with signals coming in
2725 Causes "poll: interrupted system call" messages when Emacs is run
2726 in an X window
2727 Turn periodic alarms back on */
5d5beb62 2728 start_polling ();
e07d5449
KH
2729#endif
2730
d0d6b7c5
JB
2731 return got_some_input;
2732}
2733\f
3b9a3dfa
RS
2734/* Given a list (FUNCTION ARGS...), apply FUNCTION to the ARGS. */
2735
2736static Lisp_Object
2737read_process_output_call (fun_and_args)
2738 Lisp_Object fun_and_args;
2739{
2740 return apply1 (XCONS (fun_and_args)->car, XCONS (fun_and_args)->cdr);
2741}
2742
2743static Lisp_Object
2744read_process_output_error_handler (error)
2745 Lisp_Object error;
2746{
2747 cmd_error_internal (error, "error in process filter: ");
2748 Vinhibit_quit = Qt;
2749 update_echo_area ();
833ba342 2750 Fsleep_for (make_number (2), Qnil);
3b9a3dfa
RS
2751}
2752
d0d6b7c5
JB
2753/* Read pending output from the process channel,
2754 starting with our buffered-ahead character if we have one.
0fa1789e 2755 Yield number of decoded characters read.
d0d6b7c5
JB
2756
2757 This function reads at most 1024 characters.
2758 If you want to read all available subprocess output,
0fa1789e
KH
2759 you must call it repeatedly until it returns zero.
2760
2761 The characters read are decoded according to PROC's coding-system
2762 for decoding. */
d0d6b7c5 2763
dfcf069d 2764int
d0d6b7c5
JB
2765read_process_output (proc, channel)
2766 Lisp_Object proc;
2767 register int channel;
2768{
1d2fc612 2769 register int nchars, nbytes;
d0d6b7c5 2770 char *chars;
0fa1789e
KH
2771#ifdef VMS
2772 int chars_allocated = 0; /* If 1, `chars' should be freed later. */
d0d6b7c5 2773#else
0fa1789e 2774 char buf[1024];
d0d6b7c5
JB
2775#endif
2776 register Lisp_Object outstream;
2777 register struct buffer *old = current_buffer;
2778 register struct Lisp_Process *p = XPROCESS (proc);
2779 register int opoint;
c7580538 2780 struct coding_system *coding = proc_decode_coding_system[channel];
0fa1789e
KH
2781 int chars_in_decoding_buf = 0; /* If 1, `chars' points
2782 XSTRING (p->decoding_buf)->data. */
e7fbaa65 2783 int carryover = XINT (p->decoding_carryover);
d0d6b7c5
JB
2784
2785#ifdef VMS
2786 VMS_PROC_STUFF *vs, *get_vms_process_pointer();
2787
2788 vs = get_vms_process_pointer (p->pid);
2789 if (vs)
2790 {
2791 if (!vs->iosb[0])
2792 return(0); /* Really weird if it does this */
2793 if (!(vs->iosb[0] & 1))
2794 return -1; /* I/O error */
2795 }
2796 else
2797 error ("Could not get VMS process pointer");
2798 chars = vs->inputBuffer;
1d2fc612
RS
2799 nbytes = clean_vms_buffer (chars, vs->iosb[1]);
2800 if (nbytes <= 0)
d0d6b7c5
JB
2801 {
2802 start_vms_process_read (vs); /* Crank up the next read on the process */
2803 return 1; /* Nothing worth printing, say we got 1 */
2804 }
e7fbaa65 2805 if (carryover > 0)
0fa1789e 2806 {
e7fbaa65
KH
2807 /* The data carried over in the previous decoding (which are at
2808 the tail of decoding buffer) should be prepended to the new
2809 data read to decode all together. */
2810 char *buf = (char *) xmalloc (nbytes + carryover);
2811
2812 bcopy (XSTRING (p->decoding_buf)->data
fc932ac6 2813 + STRING_BYTES (XSTRING (p->decoding_buf)) - carryover,
e7fbaa65
KH
2814 buf, carryover);
2815 bcopy (chars, buf + carryover, nbytes);
0fa1789e
KH
2816 chars = buf;
2817 chars_allocated = 1;
2818 }
d0d6b7c5
JB
2819#else /* not VMS */
2820
e7fbaa65
KH
2821 if (carryover)
2822 /* See the comment above. */
2823 bcopy (XSTRING (p->decoding_buf)->data
fc932ac6 2824 + STRING_BYTES (XSTRING (p->decoding_buf)) - carryover,
e7fbaa65 2825 buf, carryover);
0fa1789e 2826
d0d6b7c5 2827 if (proc_buffered_char[channel] < 0)
e7fbaa65 2828 nbytes = read (channel, buf + carryover, (sizeof buf) - carryover);
d0d6b7c5
JB
2829 else
2830 {
e7fbaa65 2831 buf[carryover] = proc_buffered_char[channel];
d0d6b7c5 2832 proc_buffered_char[channel] = -1;
e7fbaa65
KH
2833 nbytes = read (channel, buf + carryover + 1,
2834 (sizeof buf) - carryover - 1);
1d2fc612
RS
2835 if (nbytes < 0)
2836 nbytes = 1;
d0d6b7c5 2837 else
1d2fc612 2838 nbytes = nbytes + 1;
d0d6b7c5 2839 }
0fa1789e 2840 chars = buf;
d0d6b7c5
JB
2841#endif /* not VMS */
2842
ca65341e
KH
2843 XSETINT (p->decoding_carryover, 0);
2844
1d2fc612 2845 /* At this point, NBYTES holds number of characters just received
0fa1789e 2846 (including the one in proc_buffered_char[channel]). */
de7fbd09
KH
2847 if (nbytes <= 0)
2848 {
2849 if (nbytes < 0 || coding->mode & CODING_MODE_LAST_BLOCK)
2850 return nbytes;
2851 coding->mode |= CODING_MODE_LAST_BLOCK;
2852 }
d0d6b7c5 2853
1d2fc612 2854 /* Now set NBYTES how many bytes we must decode. */
e7fbaa65
KH
2855 nbytes += carryover;
2856 nchars = nbytes;
0fa1789e 2857
e7fbaa65 2858 if (CODING_MAY_REQUIRE_DECODING (coding))
0fa1789e 2859 {
1d2fc612 2860 int require = decoding_buffer_size (coding, nbytes);
e7fbaa65 2861 int result;
0fa1789e 2862
fc932ac6 2863 if (STRING_BYTES (XSTRING (p->decoding_buf)) < require)
0fa1789e 2864 p->decoding_buf = make_uninit_string (require);
e7fbaa65 2865 result = decode_coding (coding, chars, XSTRING (p->decoding_buf)->data,
fc932ac6 2866 nbytes, STRING_BYTES (XSTRING (p->decoding_buf)));
e7fbaa65 2867 carryover = nbytes - coding->consumed;
ca65341e
KH
2868 if (carryover > 0)
2869 {
55fd5048
KH
2870 /* Copy the carryover bytes to the end of p->decoding_buf, to
2871 be processed on the next read. Since decoding_buffer_size
2872 asks for an extra amount of space beyond the maximum
2873 expected for the output, there should always be sufficient
2874 space for the carryover (which is by definition a sequence
2875 of bytes that was not long enough to be decoded, and thus
2876 has a bounded length). */
2877 if (STRING_BYTES (XSTRING (p->decoding_buf))
2878 < coding->produced + carryover)
2879 abort ();
2880 bcopy (chars + coding->consumed,
2881 XSTRING (p->decoding_buf)->data
2882 + STRING_BYTES (XSTRING (p->decoding_buf)) - carryover,
ca65341e
KH
2883 carryover);
2884 XSETINT (p->decoding_carryover, carryover);
2885 }
0fa1789e 2886
e7fbaa65 2887 /* A new coding system might be found by `decode_coding'. */
0fa1789e
KH
2888 if (!EQ (p->decode_coding_system, coding->symbol))
2889 {
2890 p->decode_coding_system = coding->symbol;
77e1b3d4
RS
2891
2892 /* Don't call setup_coding_system for
2893 proc_decode_coding_system[channel] here. It is done in
2894 detect_coding called via decode_coding above. */
2895
e7fbaa65 2896 /* If a coding system for encoding is not yet decided, we set
486b111b
KH
2897 it as the same as coding-system for decoding.
2898
2899 But, before doing that we must check if
2900 proc_encode_coding_system[p->outfd] surely points to a
2901 valid memory because p->outfd will be changed once EOF is
2902 sent to the process. */
2903 if (NILP (p->encode_coding_system)
e6d6dff2 2904 && proc_encode_coding_system[XINT (p->outfd)])
0fa1789e
KH
2905 {
2906 p->encode_coding_system = coding->symbol;
2907 setup_coding_system (coding->symbol,
e6d6dff2 2908 proc_encode_coding_system[XINT (p->outfd)]);
0fa1789e
KH
2909 }
2910 }
1d2fc612 2911
0fa1789e
KH
2912#ifdef VMS
2913 /* Now we don't need the contents of `chars'. */
2914 if (chars_allocated)
2915 free (chars);
2916#endif
e7fbaa65 2917 if (coding->produced == 0)
0fa1789e 2918 return 0;
d7223684 2919 chars = (char *) XSTRING (p->decoding_buf)->data;
e7fbaa65 2920 nbytes = coding->produced;
0d023da1
KH
2921 nchars = (coding->fake_multibyte
2922 ? multibyte_chars_in_text (chars, nbytes)
2923 : coding->produced_char);
0fa1789e
KH
2924 chars_in_decoding_buf = 1;
2925 }
8bc49fd1 2926 else
0fa1789e 2927 {
8bc49fd1
KH
2928#ifdef VMS
2929 if (chars_allocated)
2930 {
2931 /* Although we don't have to decode the received data, we
2932 must move it to an area which we don't have to free. */
2933 if (! STRINGP (p->decoding_buf)
2934 || STRING_BYTES (XSTRING (p->decoding_buf)) < nbytes)
2935 p->decoding_buf = make_uninit_string (nbytes);
2936 bcopy (chars, XSTRING (p->decoding_buf)->data, nbytes);
2937 free (chars);
2938 chars = XSTRING (p->decoding_buf)->data;
2939 chars_in_decoding_buf = 1;
2940 }
2941#endif
0d023da1 2942 nchars = multibyte_chars_in_text (chars, nbytes);
0fa1789e 2943 }
0fa1789e 2944
486b111b
KH
2945 Vlast_coding_system_used = coding->symbol;
2946
52a1b894
EZ
2947 /* If the caller required, let the process associated buffer
2948 inherit the coding-system used to decode the process output. */
aa91317a 2949 if (! NILP (p->inherit_coding_system_flag)
52a1b894
EZ
2950 && !NILP (p->buffer) && !NILP (XBUFFER (p->buffer)->name))
2951 {
2952 struct buffer *prev_buf = current_buffer;
2953
2954 Fset_buffer (p->buffer);
2955 call1 (intern ("after-insert-file-set-buffer-file-coding-system"),
2956 make_number (nbytes));
2957 set_buffer_internal (prev_buf);
2958 }
2959
1d2fc612 2960 /* Read and dispose of the process output. */
d0d6b7c5
JB
2961 outstream = p->filter;
2962 if (!NILP (outstream))
2963 {
2964 /* We inhibit quit here instead of just catching it so that
2965 hitting ^G when a filter happens to be running won't screw
2966 it up. */
2967 int count = specpdl_ptr - specpdl;
30c78175 2968 Lisp_Object odeactivate;
dfc21838 2969 Lisp_Object obuffer, okeymap;
1d2fc612 2970 Lisp_Object text;
4da2f5be 2971 int outer_running_asynch_code = running_asynch_code;
bbce7d72 2972 int waiting = waiting_for_user_input_p;
30c78175 2973
dfc21838
RS
2974 /* No need to gcpro these, because all we do with them later
2975 is test them for EQness, and none of them should be a string. */
30c78175 2976 odeactivate = Vdeactivate_mark;
dfc21838
RS
2977 XSETBUFFER (obuffer, current_buffer);
2978 okeymap = current_buffer->keymap;
30c78175 2979
d0d6b7c5 2980 specbind (Qinhibit_quit, Qt);
6545aada 2981 specbind (Qlast_nonmenu_event, Qt);
3b9a3dfa 2982
4da2f5be
RS
2983 /* In case we get recursively called,
2984 and we already saved the match data nonrecursively,
2985 save the same match data in safely recursive fashion. */
2986 if (outer_running_asynch_code)
2987 {
2988 Lisp_Object tem;
2989 /* Don't clobber the CURRENT match data, either! */
dd130227 2990 tem = Fmatch_data (Qnil, Qnil);
4da2f5be 2991 restore_match_data ();
8f1ecd05
RS
2992 record_unwind_protect (Fset_match_data, Fmatch_data (Qnil, Qnil));
2993 Fset_match_data (tem);
4da2f5be
RS
2994 }
2995
2996 /* For speed, if a search happens within this code,
2997 save the match data in a special nonrecursive fashion. */
7074fde6 2998 running_asynch_code = 1;
4da2f5be 2999
51c6067d
KH
3000 /* The multibyteness of a string given to the filter is decided
3001 by which coding system we used for decoding. */
3002 if (coding->type == coding_type_no_conversion
3003 || coding->type == coding_type_raw_text)
3004 text = make_unibyte_string (chars, nbytes);
3005 else
3006 text = make_multibyte_string (chars, nchars, nbytes);
3007
3b9a3dfa
RS
3008 internal_condition_case_1 (read_process_output_call,
3009 Fcons (outstream,
1d2fc612 3010 Fcons (proc, Fcons (text, Qnil))),
3b9a3dfa
RS
3011 !NILP (Vdebug_on_error) ? Qnil : Qerror,
3012 read_process_output_error_handler);
4da2f5be
RS
3013
3014 /* If we saved the match data nonrecursively, restore it now. */
7074fde6 3015 restore_match_data ();
4da2f5be 3016 running_asynch_code = outer_running_asynch_code;
d0d6b7c5 3017
592ce97f 3018 /* Handling the process output should not deactivate the mark. */
30c78175
RS
3019 Vdeactivate_mark = odeactivate;
3020
bbce7d72
RS
3021 /* Restore waiting_for_user_input_p as it was
3022 when we were called, in case the filter clobbered it. */
3023 waiting_for_user_input_p = waiting;
3024
7973cfa8
RS
3025#if 0 /* Call record_asynch_buffer_change unconditionally,
3026 because we might have changed minor modes or other things
3027 that affect key bindings. */
dfc21838
RS
3028 if (! EQ (Fcurrent_buffer (), obuffer)
3029 || ! EQ (current_buffer->keymap, okeymap))
7973cfa8 3030#endif
927e08be
RS
3031 /* But do it only if the caller is actually going to read events.
3032 Otherwise there's no need to make him wake up, and it could
3033 cause trouble (for example it would make Fsit_for return). */
3034 if (waiting_for_user_input_p == -1)
3035 record_asynch_buffer_change ();
d72534ba 3036
d0d6b7c5
JB
3037#ifdef VMS
3038 start_vms_process_read (vs);
3039#endif
2ea6d561 3040 unbind_to (count, Qnil);
d0d6b7c5
JB
3041 return nchars;
3042 }
3043
3044 /* If no filter, write into buffer if it isn't dead. */
3045 if (!NILP (p->buffer) && !NILP (XBUFFER (p->buffer)->name))
3046 {
b0310da4 3047 Lisp_Object old_read_only;
12ca5cdf 3048 int old_begv, old_zv;
d8a2934e 3049 int old_begv_byte, old_zv_byte;
30c78175 3050 Lisp_Object odeactivate;
d8a2934e
RS
3051 int before, before_byte;
3052 int opoint_byte;
30c78175
RS
3053
3054 odeactivate = Vdeactivate_mark;
d0d6b7c5
JB
3055
3056 Fset_buffer (p->buffer);
6ec8bbd2 3057 opoint = PT;
d8a2934e 3058 opoint_byte = PT_BYTE;
b0310da4 3059 old_read_only = current_buffer->read_only;
12ca5cdf
RS
3060 old_begv = BEGV;
3061 old_zv = ZV;
d8a2934e
RS
3062 old_begv_byte = BEGV_BYTE;
3063 old_zv_byte = ZV_BYTE;
b0310da4
JB
3064
3065 current_buffer->read_only = Qnil;
d0d6b7c5
JB
3066
3067 /* Insert new output into buffer
3068 at the current end-of-output marker,
3069 thus preserving logical ordering of input and output. */
3070 if (XMARKER (p->mark)->buffer)
d8a2934e
RS
3071 SET_PT_BOTH (clip_to_bounds (BEGV, marker_position (p->mark), ZV),
3072 clip_to_bounds (BEGV_BYTE, marker_byte_position (p->mark),
3073 ZV_BYTE));
d0d6b7c5 3074 else
d8a2934e 3075 SET_PT_BOTH (ZV, ZV_BYTE);
12ca5cdf 3076 before = PT;
d8a2934e 3077 before_byte = PT_BYTE;
b0310da4
JB
3078
3079 /* If the output marker is outside of the visible region, save
3080 the restriction and widen. */
6ec8bbd2 3081 if (! (BEGV <= PT && PT <= ZV))
b0310da4
JB
3082 Fwiden ();
3083
8bc49fd1
KH
3084 if (NILP (current_buffer->enable_multibyte_characters))
3085 nchars = nbytes;
3086
d0d6b7c5
JB
3087 /* Insert before markers in case we are inserting where
3088 the buffer's mark is, and the user's next command is Meta-y. */
0fa1789e 3089 if (chars_in_decoding_buf)
0d023da1
KH
3090 {
3091 /* Since multibyteness of p->docoding_buf is corrupted, we
3092 can't use insert_from_string_before_markers. */
3093 char *temp_buf;
3094
3095 temp_buf = (char *) alloca (nbytes);
3096 bcopy (XSTRING (p->decoding_buf)->data, temp_buf, nbytes);
3097 insert_before_markers (temp_buf, nbytes);
3098 }
0fa1789e 3099 else
1741e72d
RS
3100 {
3101 insert_1_both (chars, nchars, nbytes, 0, 1, 1);
3102 signal_after_change (opoint, 0, PT - opoint);
3103 }
d8a2934e 3104 set_marker_both (p->mark, p->buffer, PT, PT_BYTE);
b0310da4 3105
d0d6b7c5
JB
3106 update_mode_lines++;
3107
12ca5cdf
RS
3108 /* Make sure opoint and the old restrictions
3109 float ahead of any new text just as point would. */
3110 if (opoint >= before)
d8a2934e
RS
3111 {
3112 opoint += PT - before;
3113 opoint_byte += PT_BYTE - before_byte;
3114 }
12ca5cdf 3115 if (old_begv > before)
d8a2934e
RS
3116 {
3117 old_begv += PT - before;
3118 old_begv_byte += PT_BYTE - before_byte;
3119 }
12ca5cdf 3120 if (old_zv >= before)
d8a2934e
RS
3121 {
3122 old_zv += PT - before;
3123 old_zv_byte += PT_BYTE - before_byte;
3124 }
12ca5cdf 3125
b0310da4 3126 /* If the restriction isn't what it should be, set it. */
12ca5cdf
RS
3127 if (old_begv != BEGV || old_zv != ZV)
3128 Fnarrow_to_region (make_number (old_begv), make_number (old_zv));
b0310da4 3129
592ce97f 3130 /* Handling the process output should not deactivate the mark. */
30c78175
RS
3131 Vdeactivate_mark = odeactivate;
3132
b0310da4 3133 current_buffer->read_only = old_read_only;
d8a2934e 3134 SET_PT_BOTH (opoint, opoint_byte);
d0d6b7c5
JB
3135 set_buffer_internal (old);
3136 }
3137#ifdef VMS
3138 start_vms_process_read (vs);
3139#endif
1d2fc612 3140 return nbytes;
d0d6b7c5
JB
3141}
3142
3143DEFUN ("waiting-for-user-input-p", Fwaiting_for_user_input_p, Swaiting_for_user_input_p,
3144 0, 0, 0,
8b4d685f 3145 "Returns non-nil if emacs is waiting for input from the user.\n\
d0d6b7c5
JB
3146This is intended for use by asynchronous process output filters and sentinels.")
3147 ()
3148{
8b4d685f 3149 return (waiting_for_user_input_p ? Qt : Qnil);
d0d6b7c5
JB
3150}
3151\f
3152/* Sending data to subprocess */
3153
3154jmp_buf send_process_frame;
3155
3156SIGTYPE
3157send_process_trap ()
3158{
3159#ifdef BSD4_1
3160 sigrelse (SIGPIPE);
3161 sigrelse (SIGALRM);
3162#endif /* BSD4_1 */
3163 longjmp (send_process_frame, 1);
3164}
3165
4556b700
RS
3166/* Send some data to process PROC.
3167 BUF is the beginning of the data; LEN is the number of characters.
0fa1789e
KH
3168 OBJECT is the Lisp object that the data comes from.
3169
3170 The data is encoded by PROC's coding-system for encoding before it
3171 is sent. But if the data ends at the middle of multi-byte
3172 representation, that incomplete sequence of bytes are sent without
3173 being encoded. Should we store them in a buffer to prepend them to
3174 the data send later? */
4556b700 3175
dfcf069d 3176void
4556b700 3177send_process (proc, buf, len, object)
ecd1f654 3178 volatile Lisp_Object proc;
b684d043 3179 unsigned char *buf;
d0d6b7c5 3180 int len;
4556b700 3181 Lisp_Object object;
d0d6b7c5 3182{
ecd1f654 3183 /* Use volatile to protect variables from being clobbered by longjmp. */
d0d6b7c5 3184 int rv;
ecd1f654 3185 volatile unsigned char *procname = XSTRING (XPROCESS (proc)->name)->data;
0fa1789e 3186 struct coding_system *coding;
6044e593 3187 struct gcpro gcpro1;
e7fbaa65 3188 int carryover = XINT (XPROCESS (proc)->encoding_carryover);
6044e593
RS
3189
3190 GCPRO1 (object);
d0d6b7c5 3191
d0d6b7c5
JB
3192#ifdef VMS
3193 struct Lisp_Process *p = XPROCESS (proc);
3194 VMS_PROC_STUFF *vs, *get_vms_process_pointer();
3195#endif /* VMS */
3196
3197 if (! NILP (XPROCESS (proc)->raw_status_low))
3198 update_status (XPROCESS (proc));
3199 if (! EQ (XPROCESS (proc)->status, Qrun))
3200 error ("Process %s not running", procname);
0fa1789e
KH
3201 if (XINT (XPROCESS (proc)->outfd) < 0)
3202 error ("Output file descriptor of %s is closed", procname);
3203
c7580538 3204 coding = proc_encode_coding_system[XINT (XPROCESS (proc)->outfd)];
486b111b
KH
3205 Vlast_coding_system_used = coding->symbol;
3206
1a283a4c 3207 if (CODING_REQUIRE_ENCODING (coding))
0fa1789e
KH
3208 {
3209 int require = encoding_buffer_size (coding, len);
3210 int offset, dummy;
b684d043 3211 unsigned char *temp_buf = NULL;
0fa1789e
KH
3212
3213 /* Remember the offset of data because a string or a buffer may
3214 be relocated. Setting OFFSET to -1 means we don't have to
9660863d 3215 care about relocation. */
0fa1789e 3216 offset = (BUFFERP (object)
d8a2934e 3217 ? BUF_PTR_BYTE_POS (XBUFFER (object), buf)
0fa1789e 3218 : (STRINGP (object)
9660863d 3219 ? buf - XSTRING (object)->data
0fa1789e
KH
3220 : -1));
3221
e7fbaa65 3222 if (carryover > 0)
0fa1789e 3223 {
e7fbaa65 3224 temp_buf = (unsigned char *) xmalloc (len + carryover);
0fa1789e
KH
3225
3226 if (offset >= 0)
3227 {
3228 if (BUFFERP (object))
d8a2934e 3229 buf = BUF_BYTE_ADDRESS (XBUFFER (object), offset);
0fa1789e 3230 else if (STRINGP (object))
b684d043 3231 buf = offset + XSTRING (object)->data;
9660863d 3232 /* Now we don't have to care about relocation. */
0fa1789e
KH
3233 offset = -1;
3234 }
e7fbaa65 3235 bcopy ((XSTRING (XPROCESS (proc)->encoding_buf)->data
fc932ac6 3236 + STRING_BYTES (XSTRING (XPROCESS (proc)->encoding_buf))
e7fbaa65
KH
3237 - carryover),
3238 temp_buf,
3239 carryover);
3240 bcopy (buf, temp_buf + carryover, len);
0fa1789e
KH
3241 buf = temp_buf;
3242 }
3243
fc932ac6 3244 if (STRING_BYTES (XSTRING (XPROCESS (proc)->encoding_buf)) < require)
0fa1789e
KH
3245 {
3246 XPROCESS (proc)->encoding_buf = make_uninit_string (require);
3247
3248 if (offset >= 0)
3249 {
3250 if (BUFFERP (object))
d8a2934e 3251 buf = BUF_BYTE_ADDRESS (XBUFFER (object), offset);
0fa1789e 3252 else if (STRINGP (object))
b684d043 3253 buf = offset + XSTRING (object)->data;
0fa1789e
KH
3254 }
3255 }
3256 object = XPROCESS (proc)->encoding_buf;
e7fbaa65 3257 encode_coding (coding, buf, XSTRING (object)->data,
fc932ac6 3258 len, STRING_BYTES (XSTRING (object)));
e7fbaa65 3259 len = coding->produced;
0fa1789e
KH
3260 buf = XSTRING (object)->data;
3261 if (temp_buf)
3262 xfree (temp_buf);
3263 }
d0d6b7c5
JB
3264
3265#ifdef VMS
3266 vs = get_vms_process_pointer (p->pid);
3267 if (vs == 0)
3268 error ("Could not find this process: %x", p->pid);
3269 else if (write_to_vms_process (vs, buf, len))
3270 ;
3271#else
4556b700
RS
3272
3273 if (pty_max_bytes == 0)
3274 {
3275#if defined (HAVE_FPATHCONF) && defined (_PC_MAX_CANON)
3276 pty_max_bytes = fpathconf (XFASTINT (XPROCESS (proc)->outfd),
3277 _PC_MAX_CANON);
3278 if (pty_max_bytes < 0)
3279 pty_max_bytes = 250;
3280#else
3281 pty_max_bytes = 250;
3282#endif
3283 /* Deduct one, to leave space for the eof. */
3284 pty_max_bytes--;
3285 }
3286
d0d6b7c5
JB
3287 if (!setjmp (send_process_frame))
3288 while (len > 0)
3289 {
3290 int this = len;
4746118a 3291 SIGTYPE (*old_sigpipe)();
93b4f699
RS
3292 int flush_pty = 0;
3293
4556b700
RS
3294 /* Decide how much data we can send in one batch.
3295 Long lines need to be split into multiple batches. */
3296 if (!NILP (XPROCESS (proc)->pty_flag))
93b4f699 3297 {
4556b700
RS
3298 /* Starting this at zero is always correct when not the first iteration
3299 because the previous iteration ended by sending C-d.
3300 It may not be correct for the first iteration
3301 if a partial line was sent in a separate send_process call.
3302 If that proves worth handling, we need to save linepos
3303 in the process object. */
3304 int linepos = 0;
b684d043
RS
3305 unsigned char *ptr = buf;
3306 unsigned char *end = buf + len;
4556b700
RS
3307
3308 /* Scan through this text for a line that is too long. */
3309 while (ptr != end && linepos < pty_max_bytes)
3310 {
3311 if (*ptr == '\n')
3312 linepos = 0;
3313 else
3314 linepos++;
3315 ptr++;
3316 }
3317 /* If we found one, break the line there
3318 and put in a C-d to force the buffer through. */
3319 this = ptr - buf;
93b4f699
RS
3320 }
3321
4556b700
RS
3322 /* Send this batch, using one or more write calls. */
3323 while (this > 0)
d0d6b7c5 3324 {
4556b700
RS
3325 old_sigpipe = (SIGTYPE (*) ()) signal (SIGPIPE, send_process_trap);
3326 rv = write (XINT (XPROCESS (proc)->outfd), buf, this);
3327 signal (SIGPIPE, old_sigpipe);
3328
3329 if (rv < 0)
3330 {
3331 if (0
d0d6b7c5 3332#ifdef EWOULDBLOCK
4556b700 3333 || errno == EWOULDBLOCK
d0d6b7c5
JB
3334#endif
3335#ifdef EAGAIN
4556b700 3336 || errno == EAGAIN
d0d6b7c5 3337#endif
4556b700
RS
3338 )
3339 /* Buffer is full. Wait, accepting input;
3340 that may allow the program
3341 to finish doing output and read more. */
3342 {
3343 Lisp_Object zero;
3344 int offset;
3345
3346 /* Running filters might relocate buffers or strings.
3347 Arrange to relocate BUF. */
3348 if (BUFFERP (object))
d8a2934e 3349 offset = BUF_PTR_BYTE_POS (XBUFFER (object), buf);
4556b700 3350 else if (STRINGP (object))
b684d043 3351 offset = buf - XSTRING (object)->data;
4556b700 3352
22719df2 3353 XSETFASTINT (zero, 0);
f3e6605c
RS
3354#ifdef EMACS_HAS_USECS
3355 wait_reading_process_input (0, 20000, zero, 0);
3356#else
4556b700 3357 wait_reading_process_input (1, 0, zero, 0);
f3e6605c 3358#endif
4556b700
RS
3359
3360 if (BUFFERP (object))
d8a2934e 3361 buf = BUF_BYTE_ADDRESS (XBUFFER (object), offset);
4556b700 3362 else if (STRINGP (object))
b684d043 3363 buf = offset + XSTRING (object)->data;
4556b700
RS
3364
3365 rv = 0;
3366 }
3367 else
3368 /* This is a real error. */
3369 report_file_error ("writing to process", Fcons (proc, Qnil));
d0d6b7c5 3370 }
4556b700
RS
3371 buf += rv;
3372 len -= rv;
3373 this -= rv;
d0d6b7c5 3374 }
f76475ad 3375
4556b700
RS
3376 /* If we sent just part of the string, put in an EOF
3377 to force it through, before we send the rest. */
3378 if (len > 0)
3379 Fprocess_send_eof (proc);
d0d6b7c5
JB
3380 }
3381#endif
3382 else
3383 {
3384 XPROCESS (proc)->raw_status_low = Qnil;
3385 XPROCESS (proc)->raw_status_high = Qnil;
3386 XPROCESS (proc)->status = Fcons (Qexit, Fcons (make_number (256), Qnil));
3387 XSETINT (XPROCESS (proc)->tick, ++process_tick);
3388 deactivate_process (proc);
3389#ifdef VMS
3390 error ("Error writing to process %s; closed it", procname);
3391#else
3392 error ("SIGPIPE raised on process %s; closed it", procname);
3393#endif
3394 }
6044e593
RS
3395
3396 UNGCPRO;
d0d6b7c5
JB
3397}
3398
3399DEFUN ("process-send-region", Fprocess_send_region, Sprocess_send_region,
3400 3, 3, 0,
3401 "Send current contents of region as input to PROCESS.\n\
ebb9e16f
JB
3402PROCESS may be a process, a buffer, the name of a process or buffer, or\n\
3403nil, indicating the current buffer's process.\n\
d0d6b7c5
JB
3404Called from program, takes three arguments, PROCESS, START and END.\n\
3405If the region is more than 500 characters long,\n\
3406it is sent in several bunches. This may happen even for shorter regions.\n\
3407Output from processes can arrive in between bunches.")
3408 (process, start, end)
3409 Lisp_Object process, start, end;
3410{
3411 Lisp_Object proc;
d8a2934e 3412 int start1, end1;
d0d6b7c5
JB
3413
3414 proc = get_process (process);
3415 validate_region (&start, &end);
3416
3417 if (XINT (start) < GPT && XINT (end) > GPT)
4da6dec8 3418 move_gap (XINT (start));
d0d6b7c5 3419
d8a2934e
RS
3420 start1 = CHAR_TO_BYTE (XINT (start));
3421 end1 = CHAR_TO_BYTE (XINT (end));
3422 send_process (proc, BYTE_POS_ADDR (start1), end1 - start1,
4556b700 3423 Fcurrent_buffer ());
d0d6b7c5
JB
3424
3425 return Qnil;
3426}
3427
3428DEFUN ("process-send-string", Fprocess_send_string, Sprocess_send_string,
3429 2, 2, 0,
3430 "Send PROCESS the contents of STRING as input.\n\
ebb9e16f
JB
3431PROCESS may be a process, a buffer, the name of a process or buffer, or\n\
3432nil, indicating the current buffer's process.\n\
d0d6b7c5
JB
3433If STRING is more than 500 characters long,\n\
3434it is sent in several bunches. This may happen even for shorter strings.\n\
3435Output from processes can arrive in between bunches.")
3436 (process, string)
3437 Lisp_Object process, string;
3438{
3439 Lisp_Object proc;
3440 CHECK_STRING (string, 1);
3441 proc = get_process (process);
1d2fc612 3442 send_process (proc, XSTRING (string)->data,
fc932ac6 3443 STRING_BYTES (XSTRING (string)), string);
d0d6b7c5
JB
3444 return Qnil;
3445}
3446\f
b81ea5ef
RS
3447DEFUN ("process-running-child-p", Fprocess_running_child_p,
3448 Sprocess_running_child_p, 0, 1, 0,
3449 "Return t if PROCESS has given the terminal to a child.\n\
3450If the operating system does not make it possible to find out,\n\
3451return t unconditionally.")
3452 (process)
3453 Lisp_Object process;
3454{
3455 /* Initialize in case ioctl doesn't exist or gives an error,
3456 in a way that will cause returning t. */
3457 int gid = 0;
3458 Lisp_Object proc;
3459 struct Lisp_Process *p;
3460
3461 proc = get_process (process);
3462 p = XPROCESS (proc);
3463
3464 if (!EQ (p->childp, Qt))
3465 error ("Process %s is not a subprocess",
3466 XSTRING (p->name)->data);
3467 if (XINT (p->infd) < 0)
3468 error ("Process %s is not active",
3469 XSTRING (p->name)->data);
3470
3471#ifdef TIOCGPGRP
3472 if (!NILP (p->subtty))
3473 ioctl (XFASTINT (p->subtty), TIOCGPGRP, &gid);
3474 else
3475 ioctl (XINT (p->infd), TIOCGPGRP, &gid);
3476#endif /* defined (TIOCGPGRP ) */
3477
3478 if (gid == XFASTINT (p->pid))
3479 return Qnil;
3480 return Qt;
3481}
3482\f
d0d6b7c5 3483/* send a signal number SIGNO to PROCESS.
b81ea5ef
RS
3484 If CURRENT_GROUP is t, that means send to the process group
3485 that currently owns the terminal being used to communicate with PROCESS.
d0d6b7c5 3486 This is used for various commands in shell mode.
b81ea5ef
RS
3487 If CURRENT_GROUP is lambda, that means send to the process group
3488 that currently owns the terminal, but only if it is NOT the shell itself.
3489
d0d6b7c5 3490 If NOMSG is zero, insert signal-announcements into process's buffers
b0310da4
JB
3491 right away.
3492
3493 If we can, we try to signal PROCESS by sending control characters
e333e864 3494 down the pty. This allows us to signal inferiors who have changed
b0310da4 3495 their uid, for which killpg would return an EPERM error. */
d0d6b7c5 3496
f9738840 3497static void
d0d6b7c5
JB
3498process_send_signal (process, signo, current_group, nomsg)
3499 Lisp_Object process;
3500 int signo;
3501 Lisp_Object current_group;
3502 int nomsg;
3503{
3504 Lisp_Object proc;
3505 register struct Lisp_Process *p;
3506 int gid;
3507 int no_pgrp = 0;
3508
3509 proc = get_process (process);
3510 p = XPROCESS (proc);
3511
3512 if (!EQ (p->childp, Qt))
3513 error ("Process %s is not a subprocess",
3514 XSTRING (p->name)->data);
a9f2c884 3515 if (XINT (p->infd) < 0)
d0d6b7c5
JB
3516 error ("Process %s is not active",
3517 XSTRING (p->name)->data);
3518
3519 if (NILP (p->pty_flag))
3520 current_group = Qnil;
3521
d0d6b7c5
JB
3522 /* If we are using pgrps, get a pgrp number and make it negative. */
3523 if (!NILP (current_group))
3524 {
b0310da4 3525#ifdef SIGNALS_VIA_CHARACTERS
d0d6b7c5
JB
3526 /* If possible, send signals to the entire pgrp
3527 by sending an input character to it. */
b0310da4 3528
6be429b1
JB
3529 /* TERMIOS is the latest and bestest, and seems most likely to
3530 work. If the system has it, use it. */
3531#ifdef HAVE_TERMIOS
3532 struct termios t;
3533
3534 switch (signo)
3535 {
3536 case SIGINT:
a9f2c884 3537 tcgetattr (XINT (p->infd), &t);
4556b700 3538 send_process (proc, &t.c_cc[VINTR], 1, Qnil);
a87b802f 3539 return;
6be429b1
JB
3540
3541 case SIGQUIT:
a9f2c884 3542 tcgetattr (XINT (p->infd), &t);
4556b700 3543 send_process (proc, &t.c_cc[VQUIT], 1, Qnil);
a87b802f 3544 return;
6be429b1
JB
3545
3546 case SIGTSTP:
a9f2c884 3547 tcgetattr (XINT (p->infd), &t);
d0adf46f 3548#if defined (VSWTCH) && !defined (PREFER_VSUSP)
4556b700 3549 send_process (proc, &t.c_cc[VSWTCH], 1, Qnil);
6be429b1 3550#else
4556b700 3551 send_process (proc, &t.c_cc[VSUSP], 1, Qnil);
6be429b1 3552#endif
a87b802f 3553 return;
6be429b1
JB
3554 }
3555
3556#else /* ! HAVE_TERMIOS */
3557
b0310da4
JB
3558 /* On Berkeley descendants, the following IOCTL's retrieve the
3559 current control characters. */
d0d6b7c5 3560#if defined (TIOCGLTC) && defined (TIOCGETC)
b0310da4 3561
d0d6b7c5
JB
3562 struct tchars c;
3563 struct ltchars lc;
3564
3565 switch (signo)
3566 {
3567 case SIGINT:
a9f2c884 3568 ioctl (XINT (p->infd), TIOCGETC, &c);
4556b700 3569 send_process (proc, &c.t_intrc, 1, Qnil);
f9738840 3570 return;
d0d6b7c5 3571 case SIGQUIT:
a9f2c884 3572 ioctl (XINT (p->infd), TIOCGETC, &c);
4556b700 3573 send_process (proc, &c.t_quitc, 1, Qnil);
f9738840 3574 return;
0ad77c54 3575#ifdef SIGTSTP
d0d6b7c5 3576 case SIGTSTP:
a9f2c884 3577 ioctl (XINT (p->infd), TIOCGLTC, &lc);
4556b700 3578 send_process (proc, &lc.t_suspc, 1, Qnil);
f9738840 3579 return;
b0310da4 3580#endif /* ! defined (SIGTSTP) */
d0d6b7c5 3581 }
b0310da4
JB
3582
3583#else /* ! defined (TIOCGLTC) && defined (TIOCGETC) */
3584
3585 /* On SYSV descendants, the TCGETA ioctl retrieves the current control
3586 characters. */
3587#ifdef TCGETA
d0d6b7c5
JB
3588 struct termio t;
3589 switch (signo)
3590 {
3591 case SIGINT:
a9f2c884 3592 ioctl (XINT (p->infd), TCGETA, &t);
4556b700 3593 send_process (proc, &t.c_cc[VINTR], 1, Qnil);
f9738840 3594 return;
d0d6b7c5 3595 case SIGQUIT:
a9f2c884 3596 ioctl (XINT (p->infd), TCGETA, &t);
4556b700 3597 send_process (proc, &t.c_cc[VQUIT], 1, Qnil);
f9738840 3598 return;
7d79e3b4 3599#ifdef SIGTSTP
d0d6b7c5 3600 case SIGTSTP:
a9f2c884 3601 ioctl (XINT (p->infd), TCGETA, &t);
4556b700 3602 send_process (proc, &t.c_cc[VSWTCH], 1, Qnil);
f9738840 3603 return;
b0310da4 3604#endif /* ! defined (SIGTSTP) */
d0d6b7c5 3605 }
b0310da4
JB
3606#else /* ! defined (TCGETA) */
3607 Your configuration files are messed up.
3608 /* If your system configuration files define SIGNALS_VIA_CHARACTERS,
3609 you'd better be using one of the alternatives above! */
3610#endif /* ! defined (TCGETA) */
3611#endif /* ! defined (TIOCGLTC) && defined (TIOCGETC) */
6be429b1 3612#endif /* ! defined HAVE_TERMIOS */
b0310da4 3613#endif /* ! defined (SIGNALS_VIA_CHARACTERS) */
d0d6b7c5 3614
301c3fe4 3615#ifdef TIOCGPGRP
d0d6b7c5
JB
3616 /* Get the pgrp using the tty itself, if we have that.
3617 Otherwise, use the pty to get the pgrp.
3618 On pfa systems, saka@pfu.fujitsu.co.JP writes:
b0310da4
JB
3619 "TIOCGPGRP symbol defined in sys/ioctl.h at E50.
3620 But, TIOCGPGRP does not work on E50 ;-P works fine on E60"
d0d6b7c5
JB
3621 His patch indicates that if TIOCGPGRP returns an error, then
3622 we should just assume that p->pid is also the process group id. */
3623 {
3624 int err;
3625
3626 if (!NILP (p->subtty))
3627 err = ioctl (XFASTINT (p->subtty), TIOCGPGRP, &gid);
3628 else
a9f2c884 3629 err = ioctl (XINT (p->infd), TIOCGPGRP, &gid);
d0d6b7c5
JB
3630
3631#ifdef pfa
3632 if (err == -1)
3633 gid = - XFASTINT (p->pid);
301c3fe4 3634#endif /* ! defined (pfa) */
d0d6b7c5
JB
3635 }
3636 if (gid == -1)
3637 no_pgrp = 1;
3638 else
3639 gid = - gid;
b0310da4 3640#else /* ! defined (TIOCGPGRP ) */
301c3fe4
JB
3641 /* Can't select pgrps on this system, so we know that
3642 the child itself heads the pgrp. */
3643 gid = - XFASTINT (p->pid);
3644#endif /* ! defined (TIOCGPGRP ) */
b81ea5ef
RS
3645
3646 /* If current_group is lambda, and the shell owns the terminal,
3647 don't send any signal. */
3648 if (EQ (current_group, Qlambda) && gid == - XFASTINT (p->pid))
3649 return;
d0d6b7c5
JB
3650 }
3651 else
3652 gid = - XFASTINT (p->pid);
d0d6b7c5
JB
3653
3654 switch (signo)
3655 {
3656#ifdef SIGCONT
3657 case SIGCONT:
3658 p->raw_status_low = Qnil;
3659 p->raw_status_high = Qnil;
3660 p->status = Qrun;
3661 XSETINT (p->tick, ++process_tick);
3662 if (!nomsg)
3663 status_notify ();
3664 break;
301c3fe4 3665#endif /* ! defined (SIGCONT) */
d0d6b7c5
JB
3666 case SIGINT:
3667#ifdef VMS
4556b700 3668 send_process (proc, "\003", 1, Qnil); /* ^C */
d0d6b7c5
JB
3669 goto whoosh;
3670#endif
3671 case SIGQUIT:
3672#ifdef VMS
4556b700 3673 send_process (proc, "\031", 1, Qnil); /* ^Y */
d0d6b7c5
JB
3674 goto whoosh;
3675#endif
3676 case SIGKILL:
3677#ifdef VMS
3678 sys$forcex (&(XFASTINT (p->pid)), 0, 1);
3679 whoosh:
3680#endif
a9f2c884 3681 flush_pending_output (XINT (p->infd));
d0d6b7c5
JB
3682 break;
3683 }
3684
3685 /* If we don't have process groups, send the signal to the immediate
3686 subprocess. That isn't really right, but it's better than any
3687 obvious alternative. */
3688 if (no_pgrp)
3689 {
3690 kill (XFASTINT (p->pid), signo);
3691 return;
3692 }
3693
3694 /* gid may be a pid, or minus a pgrp's number */
3695#ifdef TIOCSIGSEND
3696 if (!NILP (current_group))
a9f2c884 3697 ioctl (XINT (p->infd), TIOCSIGSEND, signo);
d0d6b7c5
JB
3698 else
3699 {
3700 gid = - XFASTINT (p->pid);
3701 kill (gid, signo);
3702 }
301c3fe4 3703#else /* ! defined (TIOCSIGSEND) */
d0d6b7c5 3704 EMACS_KILLPG (-gid, signo);
301c3fe4 3705#endif /* ! defined (TIOCSIGSEND) */
d0d6b7c5
JB
3706}
3707
3708DEFUN ("interrupt-process", Finterrupt_process, Sinterrupt_process, 0, 2, 0,
7744ca33 3709 "Interrupt process PROCESS.\n\
ebb9e16f 3710PROCESS may be a process, a buffer, or the name of a process or buffer.\n\
e333e864 3711nil or no arg means current buffer's process.\n\
d0d6b7c5
JB
3712Second arg CURRENT-GROUP non-nil means send signal to\n\
3713the current process-group of the process's controlling terminal\n\
3714rather than to the process's own process group.\n\
3715If the process is a shell, this means interrupt current subjob\n\
b81ea5ef
RS
3716rather than the shell.\n\
3717\n\
3718If CURRENT-GROUP is `lambda', and if the shell owns the terminal,\n\
3719don't send the signal.")
d0d6b7c5
JB
3720 (process, current_group)
3721 Lisp_Object process, current_group;
3722{
3723 process_send_signal (process, SIGINT, current_group, 0);
3724 return process;
3725}
3726
3727DEFUN ("kill-process", Fkill_process, Skill_process, 0, 2, 0,
3728 "Kill process PROCESS. May be process or name of one.\n\
3729See function `interrupt-process' for more details on usage.")
3730 (process, current_group)
3731 Lisp_Object process, current_group;
3732{
3733 process_send_signal (process, SIGKILL, current_group, 0);
3734 return process;
3735}
3736
3737DEFUN ("quit-process", Fquit_process, Squit_process, 0, 2, 0,
3738 "Send QUIT signal to process PROCESS. May be process or name of one.\n\
3739See function `interrupt-process' for more details on usage.")
3740 (process, current_group)
3741 Lisp_Object process, current_group;
3742{
3743 process_send_signal (process, SIGQUIT, current_group, 0);
3744 return process;
3745}
3746
3747DEFUN ("stop-process", Fstop_process, Sstop_process, 0, 2, 0,
3748 "Stop process PROCESS. May be process or name of one.\n\
3749See function `interrupt-process' for more details on usage.")
3750 (process, current_group)
3751 Lisp_Object process, current_group;
3752{
3753#ifndef SIGTSTP
3754 error ("no SIGTSTP support");
3755#else
3756 process_send_signal (process, SIGTSTP, current_group, 0);
3757#endif
3758 return process;
3759}
3760
3761DEFUN ("continue-process", Fcontinue_process, Scontinue_process, 0, 2, 0,
3762 "Continue process PROCESS. May be process or name of one.\n\
3763See function `interrupt-process' for more details on usage.")
3764 (process, current_group)
3765 Lisp_Object process, current_group;
3766{
3767#ifdef SIGCONT
3768 process_send_signal (process, SIGCONT, current_group, 0);
3769#else
3770 error ("no SIGCONT support");
3771#endif
3772 return process;
3773}
3774
3775DEFUN ("signal-process", Fsignal_process, Ssignal_process,
3776 2, 2, "nProcess number: \nnSignal code: ",
4766242d
RS
3777 "Send the process with process id PID the signal with code SIGCODE.\n\
3778PID must be an integer. The process need not be a child of this Emacs.\n\
3779SIGCODE may be an integer, or a symbol whose name is a signal name.")
3780 (pid, sigcode)
3781 Lisp_Object pid, sigcode;
d0d6b7c5
JB
3782{
3783 CHECK_NUMBER (pid, 0);
4766242d
RS
3784
3785#define handle_signal(NAME, VALUE) \
3786 else if (!strcmp (name, NAME)) \
3787 XSETINT (sigcode, VALUE)
3788
3789 if (INTEGERP (sigcode))
3790 ;
3791 else
3792 {
3793 unsigned char *name;
3794
3795 CHECK_SYMBOL (sigcode, 1);
3796 name = XSYMBOL (sigcode)->name->data;
3797
3798 if (0)
3799 ;
3800#ifdef SIGHUP
3801 handle_signal ("SIGHUP", SIGHUP);
3802#endif
3803#ifdef SIGINT
3804 handle_signal ("SIGINT", SIGINT);
3805#endif
3806#ifdef SIGQUIT
3807 handle_signal ("SIGQUIT", SIGQUIT);
3808#endif
3809#ifdef SIGILL
3810 handle_signal ("SIGILL", SIGILL);
3811#endif
3812#ifdef SIGABRT
3813 handle_signal ("SIGABRT", SIGABRT);
3814#endif
3815#ifdef SIGEMT
3816 handle_signal ("SIGEMT", SIGEMT);
3817#endif
3818#ifdef SIGKILL
3819 handle_signal ("SIGKILL", SIGKILL);
3820#endif
3821#ifdef SIGFPE
3822 handle_signal ("SIGFPE", SIGFPE);
3823#endif
3824#ifdef SIGBUS
3825 handle_signal ("SIGBUS", SIGBUS);
3826#endif
3827#ifdef SIGSEGV
3828 handle_signal ("SIGSEGV", SIGSEGV);
3829#endif
3830#ifdef SIGSYS
3831 handle_signal ("SIGSYS", SIGSYS);
3832#endif
3833#ifdef SIGPIPE
3834 handle_signal ("SIGPIPE", SIGPIPE);
3835#endif
3836#ifdef SIGALRM
3837 handle_signal ("SIGALRM", SIGALRM);
3838#endif
3839#ifdef SIGTERM
3840 handle_signal ("SIGTERM", SIGTERM);
3841#endif
3842#ifdef SIGURG
3843 handle_signal ("SIGURG", SIGURG);
3844#endif
3845#ifdef SIGSTOP
3846 handle_signal ("SIGSTOP", SIGSTOP);
3847#endif
3848#ifdef SIGTSTP
3849 handle_signal ("SIGTSTP", SIGTSTP);
3850#endif
3851#ifdef SIGCONT
3852 handle_signal ("SIGCONT", SIGCONT);
3853#endif
3854#ifdef SIGCHLD
3855 handle_signal ("SIGCHLD", SIGCHLD);
3856#endif
3857#ifdef SIGTTIN
3858 handle_signal ("SIGTTIN", SIGTTIN);
3859#endif
3860#ifdef SIGTTOU
3861 handle_signal ("SIGTTOU", SIGTTOU);
3862#endif
3863#ifdef SIGIO
3864 handle_signal ("SIGIO", SIGIO);
3865#endif
3866#ifdef SIGXCPU
3867 handle_signal ("SIGXCPU", SIGXCPU);
3868#endif
3869#ifdef SIGXFSZ
3870 handle_signal ("SIGXFSZ", SIGXFSZ);
3871#endif
3872#ifdef SIGVTALRM
3873 handle_signal ("SIGVTALRM", SIGVTALRM);
3874#endif
3875#ifdef SIGPROF
3876 handle_signal ("SIGPROF", SIGPROF);
3877#endif
3878#ifdef SIGWINCH
3879 handle_signal ("SIGWINCH", SIGWINCH);
3880#endif
3881#ifdef SIGINFO
3882 handle_signal ("SIGINFO", SIGINFO);
3883#endif
3884#ifdef SIGUSR1
3885 handle_signal ("SIGUSR1", SIGUSR1);
3886#endif
3887#ifdef SIGUSR2
3888 handle_signal ("SIGUSR2", SIGUSR2);
3889#endif
3890 else
9fa195a2 3891 error ("Undefined signal name %s", name);
4766242d
RS
3892 }
3893
3894#undef handle_signal
3895
4766242d 3896 return make_number (kill (XINT (pid), XINT (sigcode)));
d0d6b7c5
JB
3897}
3898
3899DEFUN ("process-send-eof", Fprocess_send_eof, Sprocess_send_eof, 0, 1, 0,
3900 "Make PROCESS see end-of-file in its input.\n\
7744ca33 3901EOF comes after any text already sent to it.\n\
ebb9e16f 3902PROCESS may be a process, a buffer, the name of a process or buffer, or\n\
d33a00f2
RS
3903nil, indicating the current buffer's process.\n\
3904If PROCESS is a network connection, or is a process communicating\n\
3905through a pipe (as opposed to a pty), then you cannot send any more\n\
3906text to PROCESS after you call this function.")
d0d6b7c5
JB
3907 (process)
3908 Lisp_Object process;
3909{
3910 Lisp_Object proc;
de7fbd09 3911 struct coding_system *coding;
d0d6b7c5
JB
3912
3913 proc = get_process (process);
de7fbd09 3914 coding = proc_encode_coding_system[XINT (XPROCESS (proc)->outfd)];
577d03d5
RS
3915
3916 /* Make sure the process is really alive. */
3917 if (! NILP (XPROCESS (proc)->raw_status_low))
3918 update_status (XPROCESS (proc));
3919 if (! EQ (XPROCESS (proc)->status, Qrun))
dcf970e6 3920 error ("Process %s not running", XSTRING (XPROCESS (proc)->name)->data);
577d03d5 3921
de7fbd09
KH
3922 if (CODING_REQUIRE_FLUSHING (coding))
3923 {
3924 coding->mode |= CODING_MODE_LAST_BLOCK;
3925 send_process (proc, "", 0, Qnil);
3926 }
3927
d0d6b7c5 3928#ifdef VMS
4556b700 3929 send_process (proc, "\032", 1, Qnil); /* ^z */
d0d6b7c5
JB
3930#else
3931 if (!NILP (XPROCESS (proc)->pty_flag))
4556b700 3932 send_process (proc, "\004", 1, Qnil);
d0d6b7c5
JB
3933 else
3934 {
4525f571
RS
3935 int old_outfd, new_outfd;
3936
93853f3d 3937#ifdef HAVE_SHUTDOWN
02f55c4b
RS
3938 /* If this is a network connection, or socketpair is used
3939 for communication with the subprocess, call shutdown to cause EOF.
3940 (In some old system, shutdown to socketpair doesn't work.
3941 Then we just can't win.) */
3942 if (NILP (XPROCESS (proc)->pid)
3943 || XINT (XPROCESS (proc)->outfd) == XINT (XPROCESS (proc)->infd))
3944 shutdown (XINT (XPROCESS (proc)->outfd), 1);
3945 /* In case of socketpair, outfd == infd, so don't close it. */
3946 if (XINT (XPROCESS (proc)->outfd) != XINT (XPROCESS (proc)->infd))
3947 close (XINT (XPROCESS (proc)->outfd));
93853f3d
RS
3948#else /* not HAVE_SHUTDOWN */
3949 close (XINT (XPROCESS (proc)->outfd));
3950#endif /* not HAVE_SHUTDOWN */
4525f571
RS
3951 new_outfd = open (NULL_DEVICE, O_WRONLY);
3952 old_outfd = XINT (XPROCESS (proc)->outfd);
3953
3954 if (!proc_encode_coding_system[new_outfd])
3955 proc_encode_coding_system[new_outfd]
3956 = (struct coding_system *) xmalloc (sizeof (struct coding_system));
3957 bcopy (proc_encode_coding_system[old_outfd],
3958 proc_encode_coding_system[new_outfd],
3959 sizeof (struct coding_system));
3960 bzero (proc_encode_coding_system[old_outfd],
3961 sizeof (struct coding_system));
3962
3963 XSETINT (XPROCESS (proc)->outfd, new_outfd);
d0d6b7c5
JB
3964 }
3965#endif /* VMS */
d0d6b7c5
JB
3966 return process;
3967}
3968
3969/* Kill all processes associated with `buffer'.
3970 If `buffer' is nil, kill all processes */
3971
6b53bb85 3972void
d0d6b7c5
JB
3973kill_buffer_processes (buffer)
3974 Lisp_Object buffer;
3975{
3976 Lisp_Object tail, proc;
3977
b5b502d6 3978 for (tail = Vprocess_alist; GC_CONSP (tail); tail = XCONS (tail)->cdr)
d0d6b7c5
JB
3979 {
3980 proc = XCONS (XCONS (tail)->car)->cdr;
b5b502d6 3981 if (GC_PROCESSP (proc)
d0d6b7c5
JB
3982 && (NILP (buffer) || EQ (XPROCESS (proc)->buffer, buffer)))
3983 {
3984 if (NETCONN_P (proc))
e1ab4959 3985 Fdelete_process (proc);
a9f2c884 3986 else if (XINT (XPROCESS (proc)->infd) >= 0)
d0d6b7c5
JB
3987 process_send_signal (proc, SIGHUP, Qnil, 1);
3988 }
3989 }
3990}
3991\f
3992/* On receipt of a signal that a child status has changed,
3993 loop asking about children with changed statuses until
3994 the system says there are no more.
3995 All we do is change the status;
3996 we do not run sentinels or print notifications.
3997 That is saved for the next time keyboard input is done,
3998 in order to avoid timing errors. */
3999
4000/** WARNING: this can be called during garbage collection.
4001 Therefore, it must not be fooled by the presence of mark bits in
4002 Lisp objects. */
4003
4004/** USG WARNING: Although it is not obvious from the documentation
4005 in signal(2), on a USG system the SIGCLD handler MUST NOT call
4006 signal() before executing at least one wait(), otherwise the handler
4007 will be called again, resulting in an infinite loop. The relevant
4008 portion of the documentation reads "SIGCLD signals will be queued
4009 and the signal-catching function will be continually reentered until
4010 the queue is empty". Invoking signal() causes the kernel to reexamine
4011 the SIGCLD queue. Fred Fish, UniSoft Systems Inc. */
4012
4013SIGTYPE
4014sigchld_handler (signo)
4015 int signo;
4016{
4017 int old_errno = errno;
4018 Lisp_Object proc;
4019 register struct Lisp_Process *p;
6be429b1 4020 extern EMACS_TIME *input_available_clear_time;
d0d6b7c5
JB
4021
4022#ifdef BSD4_1
4023 extern int sigheld;
4024 sigheld |= sigbit (SIGCHLD);
4025#endif
4026
4027 while (1)
4028 {
4029 register int pid;
4030 WAITTYPE w;
4031 Lisp_Object tail;
4032
4033#ifdef WNOHANG
4034#ifndef WUNTRACED
4035#define WUNTRACED 0
4036#endif /* no WUNTRACED */
4037 /* Keep trying to get a status until we get a definitive result. */
4038 do
4039 {
4040 errno = 0;
4041 pid = wait3 (&w, WNOHANG | WUNTRACED, 0);
4042 }
4043 while (pid <= 0 && errno == EINTR);
4044
4045 if (pid <= 0)
4046 {
4047 /* A real failure. We have done all our job, so return. */
4048
4049 /* USG systems forget handlers when they are used;
4050 must reestablish each time */
3c0ee47b 4051#if defined (USG) && !defined (POSIX_SIGNALS)
d0d6b7c5
JB
4052 signal (signo, sigchld_handler); /* WARNING - must come after wait3() */
4053#endif
4054#ifdef BSD4_1
4055 sigheld &= ~sigbit (SIGCHLD);
4056 sigrelse (SIGCHLD);
4057#endif
4058 errno = old_errno;
4059 return;
4060 }
4061#else
4062 pid = wait (&w);
4063#endif /* no WNOHANG */
4064
4065 /* Find the process that signaled us, and record its status. */
4066
4067 p = 0;
7968cc2d 4068 for (tail = Vprocess_alist; CONSP (tail); tail = XCONS (tail)->cdr)
d0d6b7c5
JB
4069 {
4070 proc = XCONS (XCONS (tail)->car)->cdr;
4071 p = XPROCESS (proc);
4072 if (EQ (p->childp, Qt) && XFASTINT (p->pid) == pid)
4073 break;
4074 p = 0;
4075 }
4076
4077 /* Look for an asynchronous process whose pid hasn't been filled
4078 in yet. */
4079 if (p == 0)
7968cc2d 4080 for (tail = Vprocess_alist; CONSP (tail); tail = XCONS (tail)->cdr)
d0d6b7c5
JB
4081 {
4082 proc = XCONS (XCONS (tail)->car)->cdr;
4083 p = XPROCESS (proc);
bcd69aea 4084 if (INTEGERP (p->pid) && XINT (p->pid) == -1)
d0d6b7c5
JB
4085 break;
4086 p = 0;
4087 }
4088
4089 /* Change the status of the process that was found. */
4090 if (p != 0)
4091 {
4092 union { int i; WAITTYPE wt; } u;
e98d950b 4093 int clear_desc_flag = 0;
d0d6b7c5
JB
4094
4095 XSETINT (p->tick, ++process_tick);
4096 u.wt = w;
5fc0154c
RS
4097 XSETINT (p->raw_status_low, u.i & 0xffff);
4098 XSETINT (p->raw_status_high, u.i >> 16);
d0d6b7c5
JB
4099
4100 /* If process has terminated, stop waiting for its output. */
e98d950b
RS
4101 if ((WIFSIGNALED (w) || WIFEXITED (w))
4102 && XINT (p->infd) >= 0)
4103 clear_desc_flag = 1;
4104
4105 /* We use clear_desc_flag to avoid a compiler bug in Microsoft C. */
4106 if (clear_desc_flag)
4107 {
4108 FD_CLR (XINT (p->infd), &input_wait_mask);
4109 FD_CLR (XINT (p->infd), &non_keyboard_wait_mask);
4110 }
6be429b1
JB
4111
4112 /* Tell wait_reading_process_input that it needs to wake up and
4113 look around. */
4114 if (input_available_clear_time)
4115 EMACS_SET_SECS_USECS (*input_available_clear_time, 0, 0);
d0d6b7c5
JB
4116 }
4117
4118 /* There was no asynchronous process found for that id. Check
4119 if we have a synchronous process. */
4120 else
4121 {
4122 synch_process_alive = 0;
4123
4124 /* Report the status of the synchronous process. */
4125 if (WIFEXITED (w))
4126 synch_process_retcode = WRETCODE (w);
4127 else if (WIFSIGNALED (w))
b97ad9ea
RS
4128 {
4129 int code = WTERMSIG (w);
4130 char *signame = 0;
4131
4132 if (code < NSIG)
4133 {
b0310da4 4134#ifndef VMS
ed0cae05
RS
4135 /* Suppress warning if the table has const char *. */
4136 signame = (char *) sys_siglist[code];
b0310da4 4137#else
b97ad9ea 4138 signame = sys_errlist[code];
b0310da4 4139#endif
b97ad9ea
RS
4140 }
4141 if (signame == 0)
4142 signame = "unknown";
4143
4144 synch_process_death = signame;
4145 }
6be429b1
JB
4146
4147 /* Tell wait_reading_process_input that it needs to wake up and
4148 look around. */
4149 if (input_available_clear_time)
4150 EMACS_SET_SECS_USECS (*input_available_clear_time, 0, 0);
d0d6b7c5
JB
4151 }
4152
4153 /* On some systems, we must return right away.
4154 If any more processes want to signal us, we will
4155 get another signal.
4156 Otherwise (on systems that have WNOHANG), loop around
4157 to use up all the processes that have something to tell us. */
e98d950b 4158#if defined (USG) && ! (defined (HPUX) && defined (WNOHANG)) || defined (WINDOWSNT)
3c0ee47b 4159#if defined (USG) && ! defined (POSIX_SIGNALS)
d0d6b7c5
JB
4160 signal (signo, sigchld_handler);
4161#endif
4162 errno = old_errno;
4163 return;
4164#endif /* USG, but not HPUX with WNOHANG */
4165 }
4166}
4167\f
4168
4169static Lisp_Object
4170exec_sentinel_unwind (data)
4171 Lisp_Object data;
4172{
4173 XPROCESS (XCONS (data)->car)->sentinel = XCONS (data)->cdr;
4174 return Qnil;
4175}
4176
3b9a3dfa
RS
4177static Lisp_Object
4178exec_sentinel_error_handler (error)
4179 Lisp_Object error;
4180{
4181 cmd_error_internal (error, "error in process sentinel: ");
4182 Vinhibit_quit = Qt;
4183 update_echo_area ();
833ba342 4184 Fsleep_for (make_number (2), Qnil);
3b9a3dfa
RS
4185}
4186
d0d6b7c5
JB
4187static void
4188exec_sentinel (proc, reason)
4189 Lisp_Object proc, reason;
4190{
dfc21838 4191 Lisp_Object sentinel, obuffer, odeactivate, okeymap;
d0d6b7c5
JB
4192 register struct Lisp_Process *p = XPROCESS (proc);
4193 int count = specpdl_ptr - specpdl;
4da2f5be 4194 int outer_running_asynch_code = running_asynch_code;
bbce7d72 4195 int waiting = waiting_for_user_input_p;
d0d6b7c5 4196
dfc21838
RS
4197 /* No need to gcpro these, because all we do with them later
4198 is test them for EQness, and none of them should be a string. */
8fb3cf64 4199 odeactivate = Vdeactivate_mark;
dfc21838
RS
4200 XSETBUFFER (obuffer, current_buffer);
4201 okeymap = current_buffer->keymap;
4202
d0d6b7c5
JB
4203 sentinel = p->sentinel;
4204 if (NILP (sentinel))
4205 return;
4206
4207 /* Zilch the sentinel while it's running, to avoid recursive invocations;
4208 assure that it gets restored no matter how the sentinel exits. */
4209 p->sentinel = Qnil;
4210 record_unwind_protect (exec_sentinel_unwind, Fcons (proc, sentinel));
4211 /* Inhibit quit so that random quits don't screw up a running filter. */
4212 specbind (Qinhibit_quit, Qt);
6545aada 4213 specbind (Qlast_nonmenu_event, Qt);
3b9a3dfa 4214
4da2f5be
RS
4215 /* In case we get recursively called,
4216 and we already saved the match data nonrecursively,
4217 save the same match data in safely recursive fashion. */
4218 if (outer_running_asynch_code)
4219 {
4220 Lisp_Object tem;
dd130227 4221 tem = Fmatch_data (Qnil, Qnil);
4da2f5be 4222 restore_match_data ();
8f1ecd05
RS
4223 record_unwind_protect (Fset_match_data, Fmatch_data (Qnil, Qnil));
4224 Fset_match_data (tem);
4da2f5be
RS
4225 }
4226
4227 /* For speed, if a search happens within this code,
4228 save the match data in a special nonrecursive fashion. */
7074fde6 4229 running_asynch_code = 1;
4da2f5be 4230
3b9a3dfa
RS
4231 internal_condition_case_1 (read_process_output_call,
4232 Fcons (sentinel,
4233 Fcons (proc, Fcons (reason, Qnil))),
4234 !NILP (Vdebug_on_error) ? Qnil : Qerror,
4235 exec_sentinel_error_handler);
4da2f5be
RS
4236
4237 /* If we saved the match data nonrecursively, restore it now. */
7074fde6 4238 restore_match_data ();
4da2f5be 4239 running_asynch_code = outer_running_asynch_code;
8fb3cf64
KH
4240
4241 Vdeactivate_mark = odeactivate;
bbce7d72
RS
4242
4243 /* Restore waiting_for_user_input_p as it was
4244 when we were called, in case the filter clobbered it. */
4245 waiting_for_user_input_p = waiting;
4246
7973cfa8 4247#if 0
dfc21838
RS
4248 if (! EQ (Fcurrent_buffer (), obuffer)
4249 || ! EQ (current_buffer->keymap, okeymap))
7973cfa8 4250#endif
927e08be
RS
4251 /* But do it only if the caller is actually going to read events.
4252 Otherwise there's no need to make him wake up, and it could
4253 cause trouble (for example it would make Fsit_for return). */
4254 if (waiting_for_user_input_p == -1)
4255 record_asynch_buffer_change ();
8fb3cf64 4256
2ea6d561 4257 unbind_to (count, Qnil);
d0d6b7c5
JB
4258}
4259
4260/* Report all recent events of a change in process status
4261 (either run the sentinel or output a message).
4262 This is done while Emacs is waiting for keyboard input. */
4263
6b53bb85 4264void
d0d6b7c5
JB
4265status_notify ()
4266{
4267 register Lisp_Object proc, buffer;
2e4149a8 4268 Lisp_Object tail, msg;
d0d6b7c5
JB
4269 struct gcpro gcpro1, gcpro2;
4270
2e4149a8
KH
4271 tail = Qnil;
4272 msg = Qnil;
d0d6b7c5
JB
4273 /* We need to gcpro tail; if read_process_output calls a filter
4274 which deletes a process and removes the cons to which tail points
4275 from Vprocess_alist, and then causes a GC, tail is an unprotected
4276 reference. */
4277 GCPRO2 (tail, msg);
4278
30623085
RS
4279 /* Set this now, so that if new processes are created by sentinels
4280 that we run, we get called again to handle their status changes. */
4281 update_tick = process_tick;
4282
4283 for (tail = Vprocess_alist; !NILP (tail); tail = Fcdr (tail))
d0d6b7c5 4284 {
30623085
RS
4285 Lisp_Object symbol;
4286 register struct Lisp_Process *p;
4287
4288 proc = Fcdr (Fcar (tail));
4289 p = XPROCESS (proc);
4290
4291 if (XINT (p->tick) != XINT (p->update_tick))
d0d6b7c5 4292 {
30623085 4293 XSETINT (p->update_tick, XINT (p->tick));
d0d6b7c5 4294
30623085 4295 /* If process is still active, read any output that remains. */
4da2f5be
RS
4296 while (! EQ (p->filter, Qt)
4297 && XINT (p->infd) >= 0
4298 && read_process_output (proc, XINT (p->infd)) > 0);
d0d6b7c5 4299
30623085 4300 buffer = p->buffer;
d0d6b7c5 4301
30623085
RS
4302 /* Get the text to use for the message. */
4303 if (!NILP (p->raw_status_low))
4304 update_status (p);
4305 msg = status_message (p->status);
d0d6b7c5 4306
30623085
RS
4307 /* If process is terminated, deactivate it or delete it. */
4308 symbol = p->status;
4309 if (CONSP (p->status))
4310 symbol = XCONS (p->status)->car;
d0d6b7c5 4311
30623085
RS
4312 if (EQ (symbol, Qsignal) || EQ (symbol, Qexit)
4313 || EQ (symbol, Qclosed))
4314 {
4315 if (delete_exited_processes)
4316 remove_process (proc);
4317 else
4318 deactivate_process (proc);
4319 }
d0d6b7c5 4320
0ad61fe7
RS
4321 /* The actions above may have further incremented p->tick.
4322 So set p->update_tick again
4323 so that an error in the sentinel will not cause
4324 this code to be run again. */
4325 XSETINT (p->update_tick, XINT (p->tick));
30623085
RS
4326 /* Now output the message suitably. */
4327 if (!NILP (p->sentinel))
4328 exec_sentinel (proc, msg);
4329 /* Don't bother with a message in the buffer
4330 when a process becomes runnable. */
4331 else if (!EQ (symbol, Qrun) && !NILP (buffer))
4332 {
4333 Lisp_Object ro, tem;
4334 struct buffer *old = current_buffer;
d8a2934e
RS
4335 int opoint, opoint_byte;
4336 int before, before_byte;
2e4149a8 4337
30623085 4338 ro = XBUFFER (buffer)->read_only;
d0d6b7c5 4339
30623085
RS
4340 /* Avoid error if buffer is deleted
4341 (probably that's why the process is dead, too) */
4342 if (NILP (XBUFFER (buffer)->name))
4343 continue;
4344 Fset_buffer (buffer);
12ca5cdf 4345
6ec8bbd2 4346 opoint = PT;
d8a2934e 4347 opoint_byte = PT_BYTE;
30623085
RS
4348 /* Insert new output into buffer
4349 at the current end-of-output marker,
4350 thus preserving logical ordering of input and output. */
4351 if (XMARKER (p->mark)->buffer)
d8a2934e 4352 Fgoto_char (p->mark);
30623085 4353 else
d8a2934e 4354 SET_PT_BOTH (ZV, ZV_BYTE);
12ca5cdf
RS
4355
4356 before = PT;
d8a2934e 4357 before_byte = PT_BYTE;
30623085
RS
4358
4359 tem = current_buffer->read_only;
4360 current_buffer->read_only = Qnil;
4361 insert_string ("\nProcess ");
4362 Finsert (1, &p->name);
4363 insert_string (" ");
4364 Finsert (1, &msg);
4365 current_buffer->read_only = tem;
d8a2934e 4366 set_marker_both (p->mark, p->buffer, PT, PT_BYTE);
30623085 4367
12ca5cdf 4368 if (opoint >= before)
d8a2934e
RS
4369 SET_PT_BOTH (opoint + (PT - before),
4370 opoint_byte + (PT_BYTE - before_byte));
12ca5cdf 4371 else
d8a2934e 4372 SET_PT_BOTH (opoint, opoint_byte);
12ca5cdf 4373
30623085 4374 set_buffer_internal (old);
d0d6b7c5 4375 }
30623085
RS
4376 }
4377 } /* end for */
d0d6b7c5
JB
4378
4379 update_mode_lines++; /* in case buffers use %s in mode-line-format */
4380 redisplay_preserve_echo_area ();
4381
d0d6b7c5
JB
4382 UNGCPRO;
4383}
0fa1789e
KH
4384
4385\f
4386DEFUN ("set-process-coding-system", Fset_process_coding_system,
4387 Sset_process_coding_system, 1, 3, 0,
7744ca33
KH
4388 "Set coding systems of PROCESS to DECODING and ENCODING.\n\
4389DECODING will be used to decode subprocess output and ENCODING to\n\
4390encode subprocess input.")
0fa1789e
KH
4391 (proc, decoding, encoding)
4392 register Lisp_Object proc, decoding, encoding;
4393{
4394 register struct Lisp_Process *p;
4395
4396 CHECK_PROCESS (proc, 0);
4397 p = XPROCESS (proc);
4398 if (XINT (p->infd) < 0)
4399 error ("Input file descriptor of %s closed", XSTRING (p->name)->data);
4400 if (XINT (p->outfd) < 0)
4401 error ("Output file descriptor of %s closed", XSTRING (p->name)->data);
4402
4403 p->decode_coding_system = Fcheck_coding_system (decoding);
4404 p->encode_coding_system = Fcheck_coding_system (encoding);
4405 setup_coding_system (decoding,
c7580538 4406 proc_decode_coding_system[XINT (p->infd)]);
0fa1789e 4407 setup_coding_system (encoding,
c7580538 4408 proc_encode_coding_system[XINT (p->outfd)]);
0fa1789e
KH
4409
4410 return Qnil;
4411}
4412
4413DEFUN ("process-coding-system",
4414 Fprocess_coding_system, Sprocess_coding_system, 1, 1, 0,
a95c35f6 4415 "Return a cons of coding systems for decoding and encoding of PROCESS.")
0fa1789e
KH
4416 (proc)
4417 register Lisp_Object proc;
4418{
4419 CHECK_PROCESS (proc, 0);
4420 return Fcons (XPROCESS (proc)->decode_coding_system,
4421 XPROCESS (proc)->encode_coding_system);
4422}
d0d6b7c5 4423\f
a69281ff
RS
4424/* The first time this is called, assume keyboard input comes from DESC
4425 instead of from where we used to expect it.
4426 Subsequent calls mean assume input keyboard can come from DESC
4427 in addition to other places. */
4428
4429static int add_keyboard_wait_descriptor_called_flag;
4430
4431void
4432add_keyboard_wait_descriptor (desc)
4433 int desc;
4434{
4435 if (! add_keyboard_wait_descriptor_called_flag)
4436 FD_CLR (0, &input_wait_mask);
4437 add_keyboard_wait_descriptor_called_flag = 1;
4438 FD_SET (desc, &input_wait_mask);
b5dc1c83 4439 FD_SET (desc, &non_process_wait_mask);
a69281ff
RS
4440 if (desc > max_keyboard_desc)
4441 max_keyboard_desc = desc;
4442}
4443
4444/* From now on, do not expect DESC to give keyboard input. */
4445
4446void
4447delete_keyboard_wait_descriptor (desc)
4448 int desc;
4449{
4450 int fd;
4451 int lim = max_keyboard_desc;
4452
4453 FD_CLR (desc, &input_wait_mask);
b5dc1c83 4454 FD_CLR (desc, &non_process_wait_mask);
a69281ff
RS
4455
4456 if (desc == max_keyboard_desc)
4457 for (fd = 0; fd < lim; fd++)
4458 if (FD_ISSET (fd, &input_wait_mask)
4459 && !FD_ISSET (fd, &non_keyboard_wait_mask))
4460 max_keyboard_desc = fd;
4461}
4462
4463/* Return nonzero if *MASK has a bit set
4464 that corresponds to one of the keyboard input descriptors. */
4465
4466int
4467keyboard_bit_set (mask)
4468 SELECT_TYPE *mask;
4469{
4470 int fd;
4471
ee8e09af 4472 for (fd = 0; fd <= max_keyboard_desc; fd++)
a69281ff
RS
4473 if (FD_ISSET (fd, mask) && FD_ISSET (fd, &input_wait_mask)
4474 && !FD_ISSET (fd, &non_keyboard_wait_mask))
4475 return 1;
4476
4477 return 0;
4478}
4479\f
dfcf069d 4480void
d0d6b7c5
JB
4481init_process ()
4482{
4483 register int i;
4484
4485#ifdef SIGCHLD
4486#ifndef CANNOT_DUMP
4487 if (! noninteractive || initialized)
4488#endif
4489 signal (SIGCHLD, sigchld_handler);
4490#endif
4491
4492 FD_ZERO (&input_wait_mask);
a69281ff 4493 FD_ZERO (&non_keyboard_wait_mask);
b5dc1c83 4494 FD_ZERO (&non_process_wait_mask);
7d0e672e 4495 max_process_desc = 0;
dd2281ae 4496
a69281ff 4497 FD_SET (0, &input_wait_mask);
dd2281ae 4498
d0d6b7c5
JB
4499 Vprocess_alist = Qnil;
4500 for (i = 0; i < MAXDESC; i++)
4501 {
4502 chan_process[i] = Qnil;
4503 proc_buffered_char[i] = -1;
4504 }
c7580538
KH
4505 bzero (proc_decode_coding_system, sizeof proc_decode_coding_system);
4506 bzero (proc_encode_coding_system, sizeof proc_encode_coding_system);
77c070f3
KH
4507
4508 Vdefault_process_coding_system
4509 = (NILP (buffer_defaults.enable_multibyte_characters)
4510 ? Fcons (Qraw_text, Qnil)
4511 : Fcons (Qemacs_mule, Qnil));
d0d6b7c5 4512}
312c9964 4513
dfcf069d 4514void
d0d6b7c5
JB
4515syms_of_process ()
4516{
d0d6b7c5
JB
4517 Qprocessp = intern ("processp");
4518 staticpro (&Qprocessp);
4519 Qrun = intern ("run");
4520 staticpro (&Qrun);
4521 Qstop = intern ("stop");
4522 staticpro (&Qstop);
4523 Qsignal = intern ("signal");
4524 staticpro (&Qsignal);
4525
4526 /* Qexit is already staticpro'd by syms_of_eval; don't staticpro it
4527 here again.
4528
4529 Qexit = intern ("exit");
4530 staticpro (&Qexit); */
4531
4532 Qopen = intern ("open");
4533 staticpro (&Qopen);
4534 Qclosed = intern ("closed");
4535 staticpro (&Qclosed);
4536
6545aada
RS
4537 Qlast_nonmenu_event = intern ("last-nonmenu-event");
4538 staticpro (&Qlast_nonmenu_event);
4539
d0d6b7c5
JB
4540 staticpro (&Vprocess_alist);
4541
4542 DEFVAR_BOOL ("delete-exited-processes", &delete_exited_processes,
4543 "*Non-nil means delete processes immediately when they exit.\n\
4544nil means don't delete them until `list-processes' is run.");
4545
4546 delete_exited_processes = 1;
4547
4548 DEFVAR_LISP ("process-connection-type", &Vprocess_connection_type,
4549 "Control type of device used to communicate with subprocesses.\n\
e333e864
RS
4550Values are nil to use a pipe, or t or `pty' to use a pty.\n\
4551The value has no effect if the system has no ptys or if all ptys are busy:\n\
4552then a pipe is used in any case.\n\
4553The value takes effect when `start-process' is called.");
d0d6b7c5
JB
4554 Vprocess_connection_type = Qt;
4555
4556 defsubr (&Sprocessp);
4557 defsubr (&Sget_process);
4558 defsubr (&Sget_buffer_process);
4559 defsubr (&Sdelete_process);
4560 defsubr (&Sprocess_status);
4561 defsubr (&Sprocess_exit_status);
4562 defsubr (&Sprocess_id);
4563 defsubr (&Sprocess_name);
3b9a3dfa 4564 defsubr (&Sprocess_tty_name);
d0d6b7c5
JB
4565 defsubr (&Sprocess_command);
4566 defsubr (&Sset_process_buffer);
4567 defsubr (&Sprocess_buffer);
4568 defsubr (&Sprocess_mark);
4569 defsubr (&Sset_process_filter);
4570 defsubr (&Sprocess_filter);
4571 defsubr (&Sset_process_sentinel);
4572 defsubr (&Sprocess_sentinel);
de282a05 4573 defsubr (&Sset_process_window_size);
52a1b894
EZ
4574 defsubr (&Sset_process_inherit_coding_system_flag);
4575 defsubr (&Sprocess_inherit_coding_system_flag);
d0d6b7c5 4576 defsubr (&Sprocess_kill_without_query);
de282a05 4577 defsubr (&Sprocess_contact);
d0d6b7c5
JB
4578 defsubr (&Slist_processes);
4579 defsubr (&Sprocess_list);
4580 defsubr (&Sstart_process);
4581#ifdef HAVE_SOCKETS
4582 defsubr (&Sopen_network_stream);
4583#endif /* HAVE_SOCKETS */
4584 defsubr (&Saccept_process_output);
4585 defsubr (&Sprocess_send_region);
4586 defsubr (&Sprocess_send_string);
4587 defsubr (&Sinterrupt_process);
4588 defsubr (&Skill_process);
4589 defsubr (&Squit_process);
4590 defsubr (&Sstop_process);
4591 defsubr (&Scontinue_process);
b81ea5ef 4592 defsubr (&Sprocess_running_child_p);
d0d6b7c5
JB
4593 defsubr (&Sprocess_send_eof);
4594 defsubr (&Ssignal_process);
4595 defsubr (&Swaiting_for_user_input_p);
4596/* defsubr (&Sprocess_connection); */
0fa1789e
KH
4597 defsubr (&Sset_process_coding_system);
4598 defsubr (&Sprocess_coding_system);
d0d6b7c5
JB
4599}
4600
6720a7fb
JB
4601\f
4602#else /* not subprocesses */
4603
4604#include <sys/types.h>
4605#include <errno.h>
4606
4607#include "lisp.h"
4608#include "systime.h"
52a1b894
EZ
4609#include "charset.h"
4610#include "coding.h"
6720a7fb 4611#include "termopts.h"
81afb6d1 4612#include "sysselect.h"
6720a7fb 4613
ff11dfa1 4614extern int frame_garbaged;
6720a7fb 4615
f694e5d2
KH
4616extern EMACS_TIME timer_check ();
4617extern int timers_run;
6720a7fb
JB
4618
4619/* As described above, except assuming that there are no subprocesses:
4620
4621 Wait for timeout to elapse and/or keyboard input to be available.
4622
4623 time_limit is:
4624 timeout in seconds, or
4625 zero for no limit, or
4626 -1 means gobble data immediately available but don't wait for any.
4627
f76475ad 4628 read_kbd is a Lisp_Object:
6720a7fb
JB
4629 0 to ignore keyboard input, or
4630 1 to return when input is available, or
4631 -1 means caller will actually read the input, so don't throw to
4632 the quit handler.
0a65b032
RS
4633 a cons cell, meaning wait until its car is non-nil
4634 (and gobble terminal input into the buffer if any arrives), or
6720a7fb
JB
4635 We know that read_kbd will never be a Lisp_Process, since
4636 `subprocesses' isn't defined.
4637
4638 do_display != 0 means redisplay should be done to show subprocess
5164ee8e 4639 output that arrives.
6720a7fb 4640
eb8c3be9 4641 Return true iff we received input from any process. */
6720a7fb
JB
4642
4643int
4644wait_reading_process_input (time_limit, microsecs, read_kbd, do_display)
f76475ad
JB
4645 int time_limit, microsecs;
4646 Lisp_Object read_kbd;
4647 int do_display;
6720a7fb 4648{
52fd88d3 4649 register int nfds;
f694e5d2 4650 EMACS_TIME end_time, timeout;
8db121c4 4651 SELECT_TYPE waitchannels;
f694e5d2 4652 int xerrno;
0a65b032
RS
4653 Lisp_Object *wait_for_cell = 0;
4654
4655 /* If waiting for non-nil in a cell, record where. */
4656 if (CONSP (read_kbd))
4657 {
4658 wait_for_cell = &XCONS (read_kbd)->car;
4659 XSETFASTINT (read_kbd, 0);
4660 }
6720a7fb
JB
4661
4662 /* What does time_limit really mean? */
4663 if (time_limit || microsecs)
4664 {
6720a7fb 4665 EMACS_GET_TIME (end_time);
52fd88d3 4666 EMACS_SET_SECS_USECS (timeout, time_limit, microsecs);
6720a7fb
JB
4667 EMACS_ADD_TIME (end_time, end_time, timeout);
4668 }
6720a7fb
JB
4669
4670 /* Turn off periodic alarms (in case they are in use)
4671 because the select emulator uses alarms. */
4672 stop_polling ();
4673
52fd88d3 4674 while (1)
6720a7fb 4675 {
bae8d137 4676 int timeout_reduced_for_timers = 0;
6720a7fb 4677
6720a7fb
JB
4678 /* If calling from keyboard input, do not quit
4679 since we want to return C-g as an input character.
4680 Otherwise, do pending quit if requested. */
f76475ad 4681 if (XINT (read_kbd) >= 0)
6720a7fb
JB
4682 QUIT;
4683
0a65b032
RS
4684 /* Exit now if the cell we're waiting for became non-nil. */
4685 if (wait_for_cell && ! NILP (*wait_for_cell))
4686 break;
4687
bae8d137
RS
4688 /* Compute time from now till when time limit is up */
4689 /* Exit if already run out */
52fd88d3
EZ
4690 if (time_limit == -1)
4691 {
4692 /* -1 specified for timeout means
4693 gobble output available now
4694 but don't wait at all. */
4695
4696 EMACS_SET_SECS_USECS (timeout, 0, 0);
4697 }
4698 else if (time_limit || microsecs)
6720a7fb 4699 {
f694e5d2
KH
4700 EMACS_GET_TIME (timeout);
4701 EMACS_SUB_TIME (timeout, end_time, timeout);
4702 if (EMACS_TIME_NEG_P (timeout))
6720a7fb
JB
4703 break;
4704 }
52fd88d3
EZ
4705 else
4706 {
4707 EMACS_SET_SECS_USECS (timeout, 100000, 0);
4708 }
6720a7fb 4709
bae8d137
RS
4710 /* If our caller will not immediately handle keyboard events,
4711 run timer events directly.
4712 (Callers that will immediately read keyboard events
4713 call timer_delay on their own.) */
f854a00b 4714 if (! wait_for_cell)
bae8d137
RS
4715 {
4716 EMACS_TIME timer_delay;
0a65b032
RS
4717 int old_timers_run;
4718
4719 retry:
4720 old_timers_run = timers_run;
bae8d137
RS
4721 timer_delay = timer_check (1);
4722 if (timers_run != old_timers_run && do_display)
0a65b032
RS
4723 {
4724 redisplay_preserve_echo_area ();
4725 /* We must retry, since a timer may have requeued itself
4726 and that could alter the time delay. */
4727 goto retry;
4728 }
4729
52fd88d3
EZ
4730 /* If there is unread keyboard input, also return. */
4731 if (XINT (read_kbd) != 0
4732 && requeued_events_pending_p ())
4733 break;
4734
f694e5d2 4735 if (! EMACS_TIME_NEG_P (timer_delay) && time_limit != -1)
bae8d137
RS
4736 {
4737 EMACS_TIME difference;
f694e5d2 4738 EMACS_SUB_TIME (difference, timer_delay, timeout);
bae8d137
RS
4739 if (EMACS_TIME_NEG_P (difference))
4740 {
f694e5d2 4741 timeout = timer_delay;
bae8d137
RS
4742 timeout_reduced_for_timers = 1;
4743 }
4744 }
4745 }
4746
6720a7fb
JB
4747 /* Cause C-g and alarm signals to take immediate action,
4748 and cause input available signals to zero out timeout. */
f76475ad 4749 if (XINT (read_kbd) < 0)
6720a7fb
JB
4750 set_waiting_for_input (&timeout);
4751
0a65b032
RS
4752 /* Wait till there is something to do. */
4753
4754 if (! XINT (read_kbd) && wait_for_cell == 0)
4755 FD_ZERO (&waitchannels);
4756 else
4757 FD_SET (0, &waitchannels);
4758
ff11dfa1 4759 /* If a frame has been newly mapped and needs updating,
6720a7fb 4760 reprocess its display stuff. */
5164ee8e 4761 if (frame_garbaged && do_display)
0a65b032
RS
4762 {
4763 clear_waiting_for_input ();
4764 redisplay_preserve_echo_area ();
4765 if (XINT (read_kbd) < 0)
4766 set_waiting_for_input (&timeout);
4767 }
6720a7fb 4768
1861b214
RS
4769 if (XINT (read_kbd) && detect_input_pending ())
4770 {
4771 nfds = 0;
4772 FD_ZERO (&waitchannels);
4773 }
4774 else
4775 nfds = select (1, &waitchannels, (SELECT_TYPE *)0, (SELECT_TYPE *)0,
4776 &timeout);
f694e5d2
KH
4777
4778 xerrno = errno;
6720a7fb
JB
4779
4780 /* Make C-g and alarm signals set flags again */
4781 clear_waiting_for_input ();
4782
4783 /* If we woke up due to SIGWINCH, actually change size now. */
4784 do_pending_window_change ();
4785
f694e5d2
KH
4786 if (time_limit && nfds == 0 && ! timeout_reduced_for_timers)
4787 /* We waited the full specified time, so return now. */
4788 break;
4789
6720a7fb
JB
4790 if (nfds == -1)
4791 {
4792 /* If the system call was interrupted, then go around the
4793 loop again. */
f694e5d2 4794 if (xerrno == EINTR)
8db121c4 4795 FD_ZERO (&waitchannels);
f694e5d2
KH
4796 else
4797 error ("select error: %s", strerror (xerrno));
6720a7fb
JB
4798 }
4799#ifdef sun
4800 else if (nfds > 0 && (waitchannels & 1) && interrupt_input)
4801 /* System sometimes fails to deliver SIGIO. */
4802 kill (getpid (), SIGIO);
4803#endif
7324d660 4804#ifdef SIGIO
f76475ad 4805 if (XINT (read_kbd) && interrupt_input && (waitchannels & 1))
e643c5be 4806 kill (getpid (), SIGIO);
7324d660 4807#endif
6720a7fb 4808
f694e5d2
KH
4809 /* Check for keyboard input */
4810
f854a00b 4811 if ((XINT (read_kbd) != 0)
f694e5d2
KH
4812 && detect_input_pending_run_timers (do_display))
4813 {
4814 swallow_events (do_display);
4815 if (detect_input_pending_run_timers (do_display))
4816 break;
4817 }
0a65b032 4818
52fd88d3
EZ
4819 /* If there is unread keyboard input, also return. */
4820 if (XINT (read_kbd) != 0
4821 && requeued_events_pending_p ())
4822 break;
4823
f854a00b
RS
4824 /* If wait_for_cell. check for keyboard input
4825 but don't run any timers.
4826 ??? (It seems wrong to me to check for keyboard
4827 input at all when wait_for_cell, but the code
4828 has been this way since July 1994.
4829 Try changing this after version 19.31.) */
4830 if (wait_for_cell
4831 && detect_input_pending ())
4832 {
4833 swallow_events (do_display);
4834 if (detect_input_pending ())
4835 break;
4836 }
4837
0a65b032
RS
4838 /* Exit now if the cell we're waiting for became non-nil. */
4839 if (wait_for_cell && ! NILP (*wait_for_cell))
4840 break;
6720a7fb
JB
4841 }
4842
a87b802f
JB
4843 start_polling ();
4844
6720a7fb
JB
4845 return 0;
4846}
4847
4848
4849DEFUN ("get-buffer-process", Fget_buffer_process, Sget_buffer_process, 1, 1, 0,
51ab806a 4850 /* Don't confuse make-docfile by having two doc strings for this function.
312c9964
RS
4851 make-docfile does not pay attention to #if, for good reason! */
4852 0)
6720a7fb
JB
4853 (name)
4854 register Lisp_Object name;
4855{
4856 return Qnil;
4857}
4858
52a1b894
EZ
4859DEFUN ("process-inherit-coding-system-flag",
4860 Fprocess_inherit_coding_system_flag, Sprocess_inherit_coding_system_flag,
4861 1, 1, 0,
4862 /* Don't confuse make-docfile by having two doc strings for this function.
4863 make-docfile does not pay attention to #if, for good reason! */
4864 0)
4865 (process)
4866 register Lisp_Object process;
4867{
4868 /* Ignore the argument and return the value of
4869 inherit-process-coding-system. */
4870 return inherit_process_coding_system ? Qt : Qnil;
4871}
4872
6720a7fb
JB
4873/* Kill all processes associated with `buffer'.
4874 If `buffer' is nil, kill all processes.
4875 Since we have no subprocesses, this does nothing. */
4876
d9bb0c32 4877void
6720a7fb
JB
4878kill_buffer_processes (buffer)
4879 Lisp_Object buffer;
4880{
4881}
4882
02b9b4fd 4883void
6720a7fb
JB
4884init_process ()
4885{
4886}
4887
02b9b4fd 4888void
6720a7fb
JB
4889syms_of_process ()
4890{
4891 defsubr (&Sget_buffer_process);
52a1b894 4892 defsubr (&Sprocess_inherit_coding_system_flag);
6720a7fb
JB
4893}
4894
4895\f
4896#endif /* not subprocesses */