7ea7131c9d173da1bb8ac4240cf0c195874348ed
[u/mdw/putty] / unix / uxpty.c
1 /*
2 * Pseudo-tty backend for pterm.
3 */
4
5 #define _GNU_SOURCE
6
7 #include <stdio.h>
8 #include <stdlib.h>
9 #include <string.h>
10 #include <unistd.h>
11 #include <signal.h>
12 #include <assert.h>
13 #include <fcntl.h>
14 #include <termios.h>
15 #include <grp.h>
16 #include <utmp.h>
17 #include <pwd.h>
18 #include <time.h>
19 #include <sys/types.h>
20 #include <sys/stat.h>
21 #include <sys/wait.h>
22 #include <sys/ioctl.h>
23 #include <errno.h>
24
25 #include "putty.h"
26 #include "tree234.h"
27
28 #ifndef OMIT_UTMP
29 #include <utmpx.h>
30 #endif
31
32 #ifndef FALSE
33 #define FALSE 0
34 #endif
35 #ifndef TRUE
36 #define TRUE 1
37 #endif
38
39 /* updwtmpx() needs the name of the wtmp file. Try to find it. */
40 #ifndef WTMPX_FILE
41 #ifdef _PATH_WTMPX
42 #define WTMPX_FILE _PATH_WTMPX
43 #else
44 #define WTMPX_FILE "/var/log/wtmpx"
45 #endif
46 #endif
47
48 #ifndef LASTLOG_FILE
49 #ifdef _PATH_LASTLOG
50 #define LASTLOG_FILE _PATH_LASTLOG
51 #else
52 #define LASTLOG_FILE "/var/log/lastlog"
53 #endif
54 #endif
55
56 /*
57 * Set up a default for vaguely sane systems. The idea is that if
58 * OMIT_UTMP is not defined, then at least one of the symbols which
59 * enable particular forms of utmp processing should be, if only so
60 * that a link error can warn you that you should have defined
61 * OMIT_UTMP if you didn't want any. Currently HAVE_PUTUTLINE is
62 * the only such symbol.
63 */
64 #ifndef OMIT_UTMP
65 #if !defined HAVE_PUTUTLINE
66 #define HAVE_PUTUTLINE
67 #endif
68 #endif
69
70 typedef struct pty_tag *Pty;
71
72 /*
73 * The pty_signal_pipe, along with the SIGCHLD handler, must be
74 * process-global rather than session-specific.
75 */
76 static int pty_signal_pipe[2] = { -1, -1 }; /* obviously bogus initial val */
77
78 struct pty_tag {
79 Conf *conf;
80 int master_fd, slave_fd;
81 void *frontend;
82 char name[FILENAME_MAX];
83 pid_t child_pid;
84 int term_width, term_height;
85 int child_dead, finished;
86 int exit_code;
87 bufchain output_data;
88 };
89
90 /*
91 * We store our pty backends in a tree sorted by master fd, so that
92 * when we get an uxsel notification we know which backend instance
93 * is the owner of the pty that caused it.
94 */
95 static int pty_compare_by_fd(void *av, void *bv)
96 {
97 Pty a = (Pty)av;
98 Pty b = (Pty)bv;
99
100 if (a->master_fd < b->master_fd)
101 return -1;
102 else if (a->master_fd > b->master_fd)
103 return +1;
104 return 0;
105 }
106
107 static int pty_find_by_fd(void *av, void *bv)
108 {
109 int a = *(int *)av;
110 Pty b = (Pty)bv;
111
112 if (a < b->master_fd)
113 return -1;
114 else if (a > b->master_fd)
115 return +1;
116 return 0;
117 }
118
119 static tree234 *ptys_by_fd = NULL;
120
121 /*
122 * We also have a tree sorted by child pid, so that when we wait()
123 * in response to the signal we know which backend instance is the
124 * owner of the process that caused the signal.
125 */
126 static int pty_compare_by_pid(void *av, void *bv)
127 {
128 Pty a = (Pty)av;
129 Pty b = (Pty)bv;
130
131 if (a->child_pid < b->child_pid)
132 return -1;
133 else if (a->child_pid > b->child_pid)
134 return +1;
135 return 0;
136 }
137
138 static int pty_find_by_pid(void *av, void *bv)
139 {
140 pid_t a = *(pid_t *)av;
141 Pty b = (Pty)bv;
142
143 if (a < b->child_pid)
144 return -1;
145 else if (a > b->child_pid)
146 return +1;
147 return 0;
148 }
149
150 static tree234 *ptys_by_pid = NULL;
151
152 /*
153 * If we are using pty_pre_init(), it will need to have already
154 * allocated a pty structure, which we must then return from
155 * pty_init() rather than allocating a new one. Here we store that
156 * structure between allocation and use.
157 *
158 * Note that although most of this module is entirely capable of
159 * handling multiple ptys in a single process, pty_pre_init() is
160 * fundamentally _dependent_ on there being at most one pty per
161 * process, so the normal static-data constraints don't apply.
162 *
163 * Likewise, since utmp is only used via pty_pre_init, it too must
164 * be single-instance, so we can declare utmp-related variables
165 * here.
166 */
167 static Pty single_pty = NULL;
168
169 #ifndef OMIT_UTMP
170 static pid_t pty_utmp_helper_pid = -1;
171 static int pty_utmp_helper_pipe = -1;
172 static int pty_stamped_utmp;
173 static struct utmpx utmp_entry;
174 #endif
175
176 /*
177 * pty_argv is a grievous hack to allow a proper argv to be passed
178 * through from the Unix command line. Again, it doesn't really
179 * make sense outside a one-pty-per-process setup.
180 */
181 char **pty_argv;
182
183 static void pty_close(Pty pty);
184 static void pty_try_write(Pty pty);
185
186 #ifndef OMIT_UTMP
187 static void setup_utmp(char *ttyname, char *location)
188 {
189 #ifdef HAVE_LASTLOG
190 struct lastlog lastlog_entry;
191 FILE *lastlog;
192 #endif
193 struct passwd *pw;
194 struct timeval tv;
195
196 pw = getpwuid(getuid());
197 memset(&utmp_entry, 0, sizeof(utmp_entry));
198 utmp_entry.ut_type = USER_PROCESS;
199 utmp_entry.ut_pid = getpid();
200 strncpy(utmp_entry.ut_line, ttyname+5, lenof(utmp_entry.ut_line));
201 strncpy(utmp_entry.ut_id, ttyname+8, lenof(utmp_entry.ut_id));
202 strncpy(utmp_entry.ut_user, pw->pw_name, lenof(utmp_entry.ut_user));
203 strncpy(utmp_entry.ut_host, location, lenof(utmp_entry.ut_host));
204 /*
205 * Apparently there are some architectures where (struct
206 * utmpx).ut_tv is not essentially struct timeval (e.g. Linux
207 * amd64). Hence the temporary.
208 */
209 gettimeofday(&tv, NULL);
210 utmp_entry.ut_tv.tv_sec = tv.tv_sec;
211 utmp_entry.ut_tv.tv_usec = tv.tv_usec;
212
213 setutxent();
214 pututxline(&utmp_entry);
215 endutxent();
216
217 updwtmpx(WTMPX_FILE, &utmp_entry);
218
219 #ifdef HAVE_LASTLOG
220 memset(&lastlog_entry, 0, sizeof(lastlog_entry));
221 strncpy(lastlog_entry.ll_line, ttyname+5, lenof(lastlog_entry.ll_line));
222 strncpy(lastlog_entry.ll_host, location, lenof(lastlog_entry.ll_host));
223 time(&lastlog_entry.ll_time);
224 if ((lastlog = fopen(LASTLOG_FILE, "r+")) != NULL) {
225 fseek(lastlog, sizeof(lastlog_entry) * getuid(), SEEK_SET);
226 fwrite(&lastlog_entry, 1, sizeof(lastlog_entry), lastlog);
227 fclose(lastlog);
228 }
229 #endif
230
231 pty_stamped_utmp = 1;
232
233 }
234
235 static void cleanup_utmp(void)
236 {
237 struct timeval tv;
238
239 if (!pty_stamped_utmp)
240 return;
241
242 utmp_entry.ut_type = DEAD_PROCESS;
243 memset(utmp_entry.ut_user, 0, lenof(utmp_entry.ut_user));
244 gettimeofday(&tv, NULL);
245 utmp_entry.ut_tv.tv_sec = tv.tv_sec;
246 utmp_entry.ut_tv.tv_usec = tv.tv_usec;
247
248 updwtmpx(WTMPX_FILE, &utmp_entry);
249
250 memset(utmp_entry.ut_line, 0, lenof(utmp_entry.ut_line));
251 utmp_entry.ut_tv.tv_sec = 0;
252 utmp_entry.ut_tv.tv_usec = 0;
253
254 setutxent();
255 pututxline(&utmp_entry);
256 endutxent();
257
258 pty_stamped_utmp = 0; /* ensure we never double-cleanup */
259 }
260 #endif
261
262 static void sigchld_handler(int signum)
263 {
264 if (write(pty_signal_pipe[1], "x", 1) <= 0)
265 /* not much we can do about it */;
266 }
267
268 #ifndef OMIT_UTMP
269 static void fatal_sig_handler(int signum)
270 {
271 putty_signal(signum, SIG_DFL);
272 cleanup_utmp();
273 raise(signum);
274 }
275 #endif
276
277 static int pty_open_slave(Pty pty)
278 {
279 if (pty->slave_fd < 0) {
280 pty->slave_fd = open(pty->name, O_RDWR);
281 cloexec(pty->slave_fd);
282 }
283
284 return pty->slave_fd;
285 }
286
287 static void pty_open_master(Pty pty)
288 {
289 #ifdef BSD_PTYS
290 const char chars1[] = "pqrstuvwxyz";
291 const char chars2[] = "0123456789abcdef";
292 const char *p1, *p2;
293 char master_name[20];
294 struct group *gp;
295
296 for (p1 = chars1; *p1; p1++)
297 for (p2 = chars2; *p2; p2++) {
298 sprintf(master_name, "/dev/pty%c%c", *p1, *p2);
299 pty->master_fd = open(master_name, O_RDWR);
300 if (pty->master_fd >= 0) {
301 if (geteuid() == 0 ||
302 access(master_name, R_OK | W_OK) == 0) {
303 /*
304 * We must also check at this point that we are
305 * able to open the slave side of the pty. We
306 * wouldn't want to allocate the wrong master,
307 * get all the way down to forking, and _then_
308 * find we're unable to open the slave.
309 */
310 strcpy(pty->name, master_name);
311 pty->name[5] = 't'; /* /dev/ptyXX -> /dev/ttyXX */
312
313 cloexec(pty->master_fd);
314
315 if (pty_open_slave(pty) >= 0 &&
316 access(pty->name, R_OK | W_OK) == 0)
317 goto got_one;
318 if (pty->slave_fd > 0)
319 close(pty->slave_fd);
320 pty->slave_fd = -1;
321 }
322 close(pty->master_fd);
323 }
324 }
325
326 /* If we get here, we couldn't get a tty at all. */
327 fprintf(stderr, "pterm: unable to open a pseudo-terminal device\n");
328 exit(1);
329
330 got_one:
331
332 /* We need to chown/chmod the /dev/ttyXX device. */
333 gp = getgrnam("tty");
334 chown(pty->name, getuid(), gp ? gp->gr_gid : -1);
335 chmod(pty->name, 0600);
336 #else
337
338 const int flags = O_RDWR
339 #ifdef O_NOCTTY
340 | O_NOCTTY
341 #endif
342 ;
343
344 #ifdef HAVE_POSIX_OPENPT
345 pty->master_fd = posix_openpt(flags);
346
347 if (pty->master_fd < 0) {
348 perror("posix_openpt");
349 exit(1);
350 }
351 #else
352 pty->master_fd = open("/dev/ptmx", flags);
353
354 if (pty->master_fd < 0) {
355 perror("/dev/ptmx: open");
356 exit(1);
357 }
358 #endif
359
360 if (grantpt(pty->master_fd) < 0) {
361 perror("grantpt");
362 exit(1);
363 }
364
365 if (unlockpt(pty->master_fd) < 0) {
366 perror("unlockpt");
367 exit(1);
368 }
369
370 cloexec(pty->master_fd);
371
372 pty->name[FILENAME_MAX-1] = '\0';
373 strncpy(pty->name, ptsname(pty->master_fd), FILENAME_MAX-1);
374 #endif
375
376 {
377 /*
378 * Set the pty master into non-blocking mode.
379 */
380 int fl;
381 fl = fcntl(pty->master_fd, F_GETFL);
382 if (fl != -1 && !(fl & O_NONBLOCK))
383 fcntl(pty->master_fd, F_SETFL, fl | O_NONBLOCK);
384 }
385
386 if (!ptys_by_fd)
387 ptys_by_fd = newtree234(pty_compare_by_fd);
388 add234(ptys_by_fd, pty);
389 }
390
391 /*
392 * Pre-initialisation. This is here to get around the fact that GTK
393 * doesn't like being run in setuid/setgid programs (probably
394 * sensibly). So before we initialise GTK - and therefore before we
395 * even process the command line - we check to see if we're running
396 * set[ug]id. If so, we open our pty master _now_, chown it as
397 * necessary, and drop privileges. We can always close it again
398 * later. If we're potentially going to be doing utmp as well, we
399 * also fork off a utmp helper process and communicate with it by
400 * means of a pipe; the utmp helper will keep privileges in order
401 * to clean up utmp when we exit (i.e. when its end of our pipe
402 * closes).
403 */
404 void pty_pre_init(void)
405 {
406 Pty pty;
407
408 #ifndef OMIT_UTMP
409 pid_t pid;
410 int pipefd[2];
411 #endif
412
413 pty = single_pty = snew(struct pty_tag);
414 bufchain_init(&pty->output_data);
415
416 /* set the child signal handler straight away; it needs to be set
417 * before we ever fork. */
418 putty_signal(SIGCHLD, sigchld_handler);
419 pty->master_fd = pty->slave_fd = -1;
420 #ifndef OMIT_UTMP
421 pty_stamped_utmp = FALSE;
422 #endif
423
424 if (geteuid() != getuid() || getegid() != getgid()) {
425 pty_open_master(pty);
426
427 #ifndef OMIT_UTMP
428 /*
429 * Fork off the utmp helper.
430 */
431 if (pipe(pipefd) < 0) {
432 perror("pterm: pipe");
433 exit(1);
434 }
435 cloexec(pipefd[0]);
436 cloexec(pipefd[1]);
437 pid = fork();
438 if (pid < 0) {
439 perror("pterm: fork");
440 exit(1);
441 } else if (pid == 0) {
442 char display[128], buffer[128];
443 int dlen, ret;
444
445 close(pipefd[1]);
446 /*
447 * Now sit here until we receive a display name from the
448 * other end of the pipe, and then stamp utmp. Unstamp utmp
449 * again, and exit, when the pipe closes.
450 */
451
452 dlen = 0;
453 while (1) {
454
455 ret = read(pipefd[0], buffer, lenof(buffer));
456 if (ret <= 0) {
457 cleanup_utmp();
458 _exit(0);
459 } else if (!pty_stamped_utmp) {
460 if (dlen < lenof(display))
461 memcpy(display+dlen, buffer,
462 min(ret, lenof(display)-dlen));
463 if (buffer[ret-1] == '\0') {
464 /*
465 * Now we have a display name. NUL-terminate
466 * it, and stamp utmp.
467 */
468 display[lenof(display)-1] = '\0';
469 /*
470 * Trap as many fatal signals as we can in the
471 * hope of having the best possible chance to
472 * clean up utmp before termination. We are
473 * unfortunately unprotected against SIGKILL,
474 * but that's life.
475 */
476 putty_signal(SIGHUP, fatal_sig_handler);
477 putty_signal(SIGINT, fatal_sig_handler);
478 putty_signal(SIGQUIT, fatal_sig_handler);
479 putty_signal(SIGILL, fatal_sig_handler);
480 putty_signal(SIGABRT, fatal_sig_handler);
481 putty_signal(SIGFPE, fatal_sig_handler);
482 putty_signal(SIGPIPE, fatal_sig_handler);
483 putty_signal(SIGALRM, fatal_sig_handler);
484 putty_signal(SIGTERM, fatal_sig_handler);
485 putty_signal(SIGSEGV, fatal_sig_handler);
486 putty_signal(SIGUSR1, fatal_sig_handler);
487 putty_signal(SIGUSR2, fatal_sig_handler);
488 #ifdef SIGBUS
489 putty_signal(SIGBUS, fatal_sig_handler);
490 #endif
491 #ifdef SIGPOLL
492 putty_signal(SIGPOLL, fatal_sig_handler);
493 #endif
494 #ifdef SIGPROF
495 putty_signal(SIGPROF, fatal_sig_handler);
496 #endif
497 #ifdef SIGSYS
498 putty_signal(SIGSYS, fatal_sig_handler);
499 #endif
500 #ifdef SIGTRAP
501 putty_signal(SIGTRAP, fatal_sig_handler);
502 #endif
503 #ifdef SIGVTALRM
504 putty_signal(SIGVTALRM, fatal_sig_handler);
505 #endif
506 #ifdef SIGXCPU
507 putty_signal(SIGXCPU, fatal_sig_handler);
508 #endif
509 #ifdef SIGXFSZ
510 putty_signal(SIGXFSZ, fatal_sig_handler);
511 #endif
512 #ifdef SIGIO
513 putty_signal(SIGIO, fatal_sig_handler);
514 #endif
515 setup_utmp(pty->name, display);
516 }
517 }
518 }
519 } else {
520 close(pipefd[0]);
521 pty_utmp_helper_pid = pid;
522 pty_utmp_helper_pipe = pipefd[1];
523 }
524 #endif
525 }
526
527 /* Drop privs. */
528 {
529 #ifndef HAVE_NO_SETRESUID
530 int gid = getgid(), uid = getuid();
531 int setresgid(gid_t, gid_t, gid_t);
532 int setresuid(uid_t, uid_t, uid_t);
533 if (setresgid(gid, gid, gid) < 0) {
534 perror("setresgid");
535 exit(1);
536 }
537 if (setresuid(uid, uid, uid) < 0) {
538 perror("setresuid");
539 exit(1);
540 }
541 #else
542 if (setgid(getgid()) < 0) {
543 perror("setgid");
544 exit(1);
545 }
546 if (setuid(getuid()) < 0) {
547 perror("setuid");
548 exit(1);
549 }
550 #endif
551 }
552 }
553
554 int pty_real_select_result(Pty pty, int event, int status)
555 {
556 char buf[4096];
557 int ret;
558 int finished = FALSE;
559
560 if (event < 0) {
561 /*
562 * We've been called because our child process did
563 * something. `status' tells us what.
564 */
565 if ((WIFEXITED(status) || WIFSIGNALED(status))) {
566 /*
567 * The primary child process died. We could keep
568 * the terminal open for remaining subprocesses to
569 * output to, but conventional wisdom seems to feel
570 * that that's the Wrong Thing for an xterm-alike,
571 * so we bail out now (though we don't necessarily
572 * _close_ the window, depending on the state of
573 * Close On Exit). This would be easy enough to
574 * change or make configurable if necessary.
575 */
576 pty->exit_code = status;
577 pty->child_dead = TRUE;
578 del234(ptys_by_pid, pty);
579 finished = TRUE;
580 }
581 } else {
582 if (event == 1) {
583
584 ret = read(pty->master_fd, buf, sizeof(buf));
585
586 /*
587 * Clean termination condition is that either ret == 0, or ret
588 * < 0 and errno == EIO. Not sure why the latter, but it seems
589 * to happen. Boo.
590 */
591 if (ret == 0 || (ret < 0 && errno == EIO)) {
592 /*
593 * We assume a clean exit if the pty has closed but the
594 * actual child process hasn't. The only way I can
595 * imagine this happening is if it detaches itself from
596 * the pty and goes daemonic - in which case the
597 * expected usage model would precisely _not_ be for
598 * the pterm window to hang around!
599 */
600 finished = TRUE;
601 if (!pty->child_dead)
602 pty->exit_code = 0;
603 } else if (ret < 0) {
604 perror("read pty master");
605 exit(1);
606 } else if (ret > 0) {
607 from_backend(pty->frontend, 0, buf, ret);
608 }
609 } else if (event == 2) {
610 /*
611 * Attempt to send data down the pty.
612 */
613 pty_try_write(pty);
614 }
615 }
616
617 if (finished && !pty->finished) {
618 int close_on_exit;
619
620 uxsel_del(pty->master_fd);
621 pty_close(pty);
622 pty->master_fd = -1;
623
624 pty->finished = TRUE;
625
626 /*
627 * This is a slight layering-violation sort of hack: only
628 * if we're not closing on exit (COE is set to Never, or to
629 * Only On Clean and it wasn't a clean exit) do we output a
630 * `terminated' message.
631 */
632 close_on_exit = conf_get_int(pty->conf, CONF_close_on_exit);
633 if (close_on_exit == FORCE_OFF ||
634 (close_on_exit == AUTO && pty->exit_code != 0)) {
635 char message[512];
636 if (WIFEXITED(pty->exit_code))
637 sprintf(message, "\r\n[pterm: process terminated with exit"
638 " code %d]\r\n", WEXITSTATUS(pty->exit_code));
639 else if (WIFSIGNALED(pty->exit_code))
640 #ifdef HAVE_NO_STRSIGNAL
641 sprintf(message, "\r\n[pterm: process terminated on signal"
642 " %d]\r\n", WTERMSIG(pty->exit_code));
643 #else
644 sprintf(message, "\r\n[pterm: process terminated on signal"
645 " %d (%.400s)]\r\n", WTERMSIG(pty->exit_code),
646 strsignal(WTERMSIG(pty->exit_code)));
647 #endif
648 from_backend(pty->frontend, 0, message, strlen(message));
649 }
650
651 notify_remote_exit(pty->frontend);
652 }
653
654 return !finished;
655 }
656
657 int pty_select_result(int fd, int event)
658 {
659 int ret = TRUE;
660 Pty pty;
661
662 if (fd == pty_signal_pipe[0]) {
663 pid_t pid;
664 int status;
665 char c[1];
666
667 if (read(pty_signal_pipe[0], c, 1) <= 0)
668 /* ignore error */;
669 /* ignore its value; it'll be `x' */
670
671 do {
672 pid = waitpid(-1, &status, WNOHANG);
673
674 pty = find234(ptys_by_pid, &pid, pty_find_by_pid);
675
676 if (pty)
677 ret = ret && pty_real_select_result(pty, -1, status);
678 } while (pid > 0);
679 } else {
680 pty = find234(ptys_by_fd, &fd, pty_find_by_fd);
681
682 if (pty)
683 ret = ret && pty_real_select_result(pty, event, 0);
684 }
685
686 return ret;
687 }
688
689 static void pty_uxsel_setup(Pty pty)
690 {
691 int rwx;
692
693 rwx = 1; /* always want to read from pty */
694 if (bufchain_size(&pty->output_data))
695 rwx |= 2; /* might also want to write to it */
696 uxsel_set(pty->master_fd, rwx, pty_select_result);
697
698 /*
699 * In principle this only needs calling once for all pty
700 * backend instances, but it's simplest just to call it every
701 * time; uxsel won't mind.
702 */
703 uxsel_set(pty_signal_pipe[0], 1, pty_select_result);
704 }
705
706 /*
707 * Called to set up the pty.
708 *
709 * Returns an error message, or NULL on success.
710 *
711 * Also places the canonical host name into `realhost'. It must be
712 * freed by the caller.
713 */
714 static const char *pty_init(void *frontend, void **backend_handle, Conf *conf,
715 char *host, int port, char **realhost, int nodelay,
716 int keepalive)
717 {
718 int slavefd;
719 pid_t pid, pgrp;
720 #ifndef NOT_X_WINDOWS /* for Mac OS X native compilation */
721 long windowid;
722 #endif
723 Pty pty;
724
725 if (single_pty) {
726 pty = single_pty;
727 } else {
728 pty = snew(struct pty_tag);
729 pty->master_fd = pty->slave_fd = -1;
730 #ifndef OMIT_UTMP
731 pty_stamped_utmp = FALSE;
732 #endif
733 }
734
735 pty->frontend = frontend;
736 *backend_handle = NULL; /* we can't sensibly use this, sadly */
737
738 pty->conf = conf_copy(conf);
739 pty->term_width = conf_get_int(conf, CONF_width);
740 pty->term_height = conf_get_int(conf, CONF_height);
741
742 if (pty->master_fd < 0)
743 pty_open_master(pty);
744
745 /*
746 * Set the backspace character to be whichever of ^H and ^? is
747 * specified by bksp_is_delete.
748 */
749 {
750 struct termios attrs;
751 tcgetattr(pty->master_fd, &attrs);
752 attrs.c_cc[VERASE] = conf_get_int(conf, CONF_bksp_is_delete)
753 ? '\177' : '\010';
754 tcsetattr(pty->master_fd, TCSANOW, &attrs);
755 }
756
757 #ifndef OMIT_UTMP
758 /*
759 * Stamp utmp (that is, tell the utmp helper process to do so),
760 * or not.
761 */
762 if (pty_utmp_helper_pipe >= 0) { /* if it's < 0, we can't anyway */
763 if (!conf_get_int(conf, CONF_stamp_utmp)) {
764 close(pty_utmp_helper_pipe); /* just let the child process die */
765 pty_utmp_helper_pipe = -1;
766 } else {
767 char *location = get_x_display(pty->frontend);
768 int len = strlen(location)+1, pos = 0; /* +1 to include NUL */
769 while (pos < len) {
770 int ret = write(pty_utmp_helper_pipe, location+pos, len - pos);
771 if (ret < 0) {
772 perror("pterm: writing to utmp helper process");
773 close(pty_utmp_helper_pipe); /* arrgh, just give up */
774 pty_utmp_helper_pipe = -1;
775 break;
776 }
777 pos += ret;
778 }
779 }
780 }
781 #endif
782
783 #ifndef NOT_X_WINDOWS /* for Mac OS X native compilation */
784 windowid = get_windowid(pty->frontend);
785 #endif
786
787 /*
788 * Fork and execute the command.
789 */
790 pid = fork();
791 if (pid < 0) {
792 perror("fork");
793 exit(1);
794 }
795
796 if (pid == 0) {
797 /*
798 * We are the child.
799 */
800
801 slavefd = pty_open_slave(pty);
802 if (slavefd < 0) {
803 perror("slave pty: open");
804 _exit(1);
805 }
806
807 close(pty->master_fd);
808 fcntl(slavefd, F_SETFD, 0); /* don't close on exec */
809 dup2(slavefd, 0);
810 dup2(slavefd, 1);
811 dup2(slavefd, 2);
812 close(slavefd);
813 setsid();
814 #ifdef TIOCSCTTY
815 ioctl(0, TIOCSCTTY, 1);
816 #endif
817 pgrp = getpid();
818 tcsetpgrp(0, pgrp);
819 setpgid(pgrp, pgrp);
820 close(open(pty->name, O_WRONLY, 0));
821 setpgid(pgrp, pgrp);
822 {
823 char *term_env_var = dupprintf("TERM=%s",
824 conf_get_str(conf, CONF_termtype));
825 putenv(term_env_var);
826 /* We mustn't free term_env_var, as putenv links it into the
827 * environment in place.
828 */
829 }
830 #ifndef NOT_X_WINDOWS /* for Mac OS X native compilation */
831 {
832 char *windowid_env_var = dupprintf("WINDOWID=%ld", windowid);
833 putenv(windowid_env_var);
834 /* We mustn't free windowid_env_var, as putenv links it into the
835 * environment in place.
836 */
837 }
838 #endif
839 {
840 char *key, *val;
841
842 for (val = conf_get_str_strs(conf, CONF_environmt, NULL, &key);
843 val != NULL;
844 val = conf_get_str_strs(conf, CONF_environmt, key, &key)) {
845 char *varval = dupcat(key, "=", val, NULL);
846 putenv(varval);
847 /*
848 * We must not free varval, since putenv links it
849 * into the environment _in place_. Weird, but
850 * there we go. Memory usage will be rationalised
851 * as soon as we exec anyway.
852 */
853 }
854 }
855
856 /*
857 * SIGINT, SIGQUIT and SIGPIPE may have been set to ignored by
858 * our parent, particularly by things like sh -c 'pterm &' and
859 * some window or session managers. SIGCHLD, meanwhile, was
860 * blocked during pt_main() startup. Reverse all this for our
861 * child process.
862 */
863 putty_signal(SIGINT, SIG_DFL);
864 putty_signal(SIGQUIT, SIG_DFL);
865 putty_signal(SIGPIPE, SIG_DFL);
866 block_signal(SIGCHLD, 0);
867 if (pty_argv) {
868 /*
869 * Exec the exact argument list we were given.
870 */
871 execvp(pty_argv[0], pty_argv);
872 /*
873 * If that fails, and if we had exactly one argument, pass
874 * that argument to $SHELL -c.
875 *
876 * This arranges that we can _either_ follow 'pterm -e'
877 * with a list of argv elements to be fed directly to
878 * exec, _or_ with a single argument containing a command
879 * to be parsed by a shell (but, in cases of doubt, the
880 * former is more reliable).
881 *
882 * A quick survey of other terminal emulators' -e options
883 * (as of Debian squeeze) suggests that:
884 *
885 * - xterm supports both modes, more or less like this
886 * - gnome-terminal will only accept a one-string shell command
887 * - Eterm, kterm and rxvt will only accept a list of
888 * argv elements (as did older versions of pterm).
889 *
890 * It therefore seems important to support both usage
891 * modes in order to be a drop-in replacement for either
892 * xterm or gnome-terminal, and hence for anyone's
893 * plausible uses of the Debian-style alias
894 * 'x-terminal-emulator'...
895 */
896 if (pty_argv[1] == NULL) {
897 char *shell = getenv("SHELL");
898 if (shell)
899 execl(shell, shell, "-c", pty_argv[0], (void *)NULL);
900 }
901 } else {
902 char *shell = getenv("SHELL");
903 char *shellname;
904 if (conf_get_int(conf, CONF_login_shell)) {
905 char *p = strrchr(shell, '/');
906 shellname = snewn(2+strlen(shell), char);
907 p = p ? p+1 : shell;
908 sprintf(shellname, "-%s", p);
909 } else
910 shellname = shell;
911 execl(getenv("SHELL"), shellname, (void *)NULL);
912 }
913
914 /*
915 * If we're here, exec has gone badly foom.
916 */
917 perror("exec");
918 _exit(127);
919 } else {
920 pty->child_pid = pid;
921 pty->child_dead = FALSE;
922 pty->finished = FALSE;
923 if (pty->slave_fd > 0)
924 close(pty->slave_fd);
925 if (!ptys_by_pid)
926 ptys_by_pid = newtree234(pty_compare_by_pid);
927 add234(ptys_by_pid, pty);
928 }
929
930 if (pty_signal_pipe[0] < 0) {
931 if (pipe(pty_signal_pipe) < 0) {
932 perror("pipe");
933 exit(1);
934 }
935 cloexec(pty_signal_pipe[0]);
936 cloexec(pty_signal_pipe[1]);
937 }
938 pty_uxsel_setup(pty);
939
940 *backend_handle = pty;
941
942 *realhost = dupprintf("\0");
943
944 return NULL;
945 }
946
947 static void pty_reconfig(void *handle, Conf *conf)
948 {
949 Pty pty = (Pty)handle;
950 /*
951 * We don't have much need to reconfigure this backend, but
952 * unfortunately we do need to pick up the setting of Close On
953 * Exit so we know whether to give a `terminated' message.
954 */
955 conf_copy_into(pty->conf, conf);
956 }
957
958 /*
959 * Stub routine (never called in pterm).
960 */
961 static void pty_free(void *handle)
962 {
963 Pty pty = (Pty)handle;
964
965 /* Either of these may fail `not found'. That's fine with us. */
966 del234(ptys_by_pid, pty);
967 del234(ptys_by_fd, pty);
968
969 sfree(pty);
970 }
971
972 static void pty_try_write(Pty pty)
973 {
974 void *data;
975 int len, ret;
976
977 assert(pty->master_fd >= 0);
978
979 while (bufchain_size(&pty->output_data) > 0) {
980 bufchain_prefix(&pty->output_data, &data, &len);
981 ret = write(pty->master_fd, data, len);
982
983 if (ret < 0 && (errno == EWOULDBLOCK)) {
984 /*
985 * We've sent all we can for the moment.
986 */
987 break;
988 }
989 if (ret < 0) {
990 perror("write pty master");
991 exit(1);
992 }
993 bufchain_consume(&pty->output_data, ret);
994 }
995
996 pty_uxsel_setup(pty);
997 }
998
999 /*
1000 * Called to send data down the pty.
1001 */
1002 static int pty_send(void *handle, char *buf, int len)
1003 {
1004 Pty pty = (Pty)handle;
1005
1006 if (pty->master_fd < 0)
1007 return 0; /* ignore all writes if fd closed */
1008
1009 bufchain_add(&pty->output_data, buf, len);
1010 pty_try_write(pty);
1011
1012 return bufchain_size(&pty->output_data);
1013 }
1014
1015 static void pty_close(Pty pty)
1016 {
1017 if (pty->master_fd >= 0) {
1018 close(pty->master_fd);
1019 pty->master_fd = -1;
1020 }
1021 #ifndef OMIT_UTMP
1022 if (pty_utmp_helper_pipe >= 0) {
1023 close(pty_utmp_helper_pipe); /* this causes utmp to be cleaned up */
1024 pty_utmp_helper_pipe = -1;
1025 }
1026 #endif
1027 }
1028
1029 /*
1030 * Called to query the current socket sendability status.
1031 */
1032 static int pty_sendbuffer(void *handle)
1033 {
1034 /* Pty pty = (Pty)handle; */
1035 return 0;
1036 }
1037
1038 /*
1039 * Called to set the size of the window
1040 */
1041 static void pty_size(void *handle, int width, int height)
1042 {
1043 Pty pty = (Pty)handle;
1044 struct winsize size;
1045
1046 pty->term_width = width;
1047 pty->term_height = height;
1048
1049 size.ws_row = (unsigned short)pty->term_height;
1050 size.ws_col = (unsigned short)pty->term_width;
1051 size.ws_xpixel = (unsigned short) pty->term_width *
1052 font_dimension(pty->frontend, 0);
1053 size.ws_ypixel = (unsigned short) pty->term_height *
1054 font_dimension(pty->frontend, 1);
1055 ioctl(pty->master_fd, TIOCSWINSZ, (void *)&size);
1056 return;
1057 }
1058
1059 /*
1060 * Send special codes.
1061 */
1062 static void pty_special(void *handle, Telnet_Special code)
1063 {
1064 /* Pty pty = (Pty)handle; */
1065 /* Do nothing! */
1066 return;
1067 }
1068
1069 /*
1070 * Return a list of the special codes that make sense in this
1071 * protocol.
1072 */
1073 static const struct telnet_special *pty_get_specials(void *handle)
1074 {
1075 /* Pty pty = (Pty)handle; */
1076 /*
1077 * Hmm. When I get round to having this actually usable, it
1078 * might be quite nice to have the ability to deliver a few
1079 * well chosen signals to the child process - SIGINT, SIGTERM,
1080 * SIGKILL at least.
1081 */
1082 return NULL;
1083 }
1084
1085 static int pty_connected(void *handle)
1086 {
1087 /* Pty pty = (Pty)handle; */
1088 return TRUE;
1089 }
1090
1091 static int pty_sendok(void *handle)
1092 {
1093 /* Pty pty = (Pty)handle; */
1094 return 1;
1095 }
1096
1097 static void pty_unthrottle(void *handle, int backlog)
1098 {
1099 /* Pty pty = (Pty)handle; */
1100 /* do nothing */
1101 }
1102
1103 static int pty_ldisc(void *handle, int option)
1104 {
1105 /* Pty pty = (Pty)handle; */
1106 return 0; /* neither editing nor echoing */
1107 }
1108
1109 static void pty_provide_ldisc(void *handle, void *ldisc)
1110 {
1111 /* Pty pty = (Pty)handle; */
1112 /* This is a stub. */
1113 }
1114
1115 static void pty_provide_logctx(void *handle, void *logctx)
1116 {
1117 /* Pty pty = (Pty)handle; */
1118 /* This is a stub. */
1119 }
1120
1121 static int pty_exitcode(void *handle)
1122 {
1123 Pty pty = (Pty)handle;
1124 if (!pty->finished)
1125 return -1; /* not dead yet */
1126 else
1127 return pty->exit_code;
1128 }
1129
1130 static int pty_cfg_info(void *handle)
1131 {
1132 /* Pty pty = (Pty)handle; */
1133 return 0;
1134 }
1135
1136 Backend pty_backend = {
1137 pty_init,
1138 pty_free,
1139 pty_reconfig,
1140 pty_send,
1141 pty_sendbuffer,
1142 pty_size,
1143 pty_special,
1144 pty_get_specials,
1145 pty_connected,
1146 pty_exitcode,
1147 pty_sendok,
1148 pty_ldisc,
1149 pty_provide_ldisc,
1150 pty_provide_logctx,
1151 pty_unthrottle,
1152 pty_cfg_info,
1153 "pty",
1154 -1,
1155 0
1156 };