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kern: tty: recanonicalize the buffer on ICANON/VEOF/VEOL changes
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1 /*-
2  * SPDX-License-Identifier: BSD-2-Clause
3  *
4  * Copyright (c) 2008 Ed Schouten <ed@FreeBSD.org>
5  * All rights reserved.
6  *
7  * Portions of this software were developed under sponsorship from Snow
8  * B.V., the Netherlands.
9  *
10  * Redistribution and use in source and binary forms, with or without
11  * modification, are permitted provided that the following conditions
12  * are met:
13  * 1. Redistributions of source code must retain the above copyright
14  *    notice, this list of conditions and the following disclaimer.
15  * 2. Redistributions in binary form must reproduce the above copyright
16  *    notice, this list of conditions and the following disclaimer in the
17  *    documentation and/or other materials provided with the distribution.
18  *
19  * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
20  * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
21  * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
22  * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
23  * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24  * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
25  * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
26  * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
27  * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
28  * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
29  * SUCH DAMAGE.
30  */
31
32 #include <sys/cdefs.h>
33 #include "opt_capsicum.h"
34 #include "opt_printf.h"
35
36 #include <sys/param.h>
37 #include <sys/capsicum.h>
38 #include <sys/conf.h>
39 #include <sys/cons.h>
40 #include <sys/fcntl.h>
41 #include <sys/file.h>
42 #include <sys/filedesc.h>
43 #include <sys/filio.h>
44 #ifdef COMPAT_43TTY
45 #include <sys/ioctl_compat.h>
46 #endif /* COMPAT_43TTY */
47 #include <sys/kernel.h>
48 #include <sys/limits.h>
49 #include <sys/malloc.h>
50 #include <sys/mount.h>
51 #include <sys/poll.h>
52 #include <sys/priv.h>
53 #include <sys/proc.h>
54 #include <sys/serial.h>
55 #include <sys/signal.h>
56 #include <sys/stat.h>
57 #include <sys/sx.h>
58 #include <sys/sysctl.h>
59 #include <sys/systm.h>
60 #include <sys/tty.h>
61 #include <sys/ttycom.h>
62 #define TTYDEFCHARS
63 #include <sys/ttydefaults.h>
64 #undef TTYDEFCHARS
65 #include <sys/ucred.h>
66 #include <sys/vnode.h>
67
68 #include <fs/devfs/devfs.h>
69
70 #include <machine/stdarg.h>
71
72 static MALLOC_DEFINE(M_TTY, "tty", "tty device");
73
74 static void tty_rel_free(struct tty *tp);
75
76 static TAILQ_HEAD(, tty) tty_list = TAILQ_HEAD_INITIALIZER(tty_list);
77 static struct sx tty_list_sx;
78 SX_SYSINIT(tty_list, &tty_list_sx, "tty list");
79 static unsigned int tty_list_count = 0;
80
81 /* Character device of /dev/console. */
82 static struct cdev      *dev_console;
83 static const char       *dev_console_filename;
84
85 /*
86  * Flags that are supported and stored by this implementation.
87  */
88 #define TTYSUP_IFLAG    (IGNBRK|BRKINT|IGNPAR|PARMRK|INPCK|ISTRIP|INLCR|\
89                         IGNCR|ICRNL|IXON|IXOFF|IXANY|IMAXBEL|IUTF8)
90 #define TTYSUP_OFLAG    (OPOST|ONLCR|TAB3|ONOEOT|OCRNL|ONOCR|ONLRET)
91 #define TTYSUP_LFLAG    (ECHOKE|ECHOE|ECHOK|ECHO|ECHONL|ECHOPRT|\
92                         ECHOCTL|ISIG|ICANON|ALTWERASE|IEXTEN|TOSTOP|\
93                         FLUSHO|NOKERNINFO|NOFLSH)
94 #define TTYSUP_CFLAG    (CIGNORE|CSIZE|CSTOPB|CREAD|PARENB|PARODD|\
95                         HUPCL|CLOCAL|CCTS_OFLOW|CRTS_IFLOW|CDTR_IFLOW|\
96                         CDSR_OFLOW|CCAR_OFLOW|CNO_RTSDTR)
97
98 #define TTY_CALLOUT(tp,d) (dev2unit(d) & TTYUNIT_CALLOUT)
99
100 static int  tty_drainwait = 5 * 60;
101 SYSCTL_INT(_kern, OID_AUTO, tty_drainwait, CTLFLAG_RWTUN,
102     &tty_drainwait, 0, "Default output drain timeout in seconds");
103
104 /*
105  * Set TTY buffer sizes.
106  */
107
108 #define TTYBUF_MAX      65536
109
110 #ifdef PRINTF_BUFR_SIZE
111 #define TTY_PRBUF_SIZE  PRINTF_BUFR_SIZE
112 #else
113 #define TTY_PRBUF_SIZE  256
114 #endif
115
116 /*
117  * Allocate buffer space if necessary, and set low watermarks, based on speed.
118  * Note that the ttyxxxq_setsize() functions may drop and then reacquire the tty
119  * lock during memory allocation.  They will return ENXIO if the tty disappears
120  * while unlocked.
121  */
122 static int
123 tty_watermarks(struct tty *tp)
124 {
125         size_t bs = 0;
126         int error;
127
128         /* Provide an input buffer for 2 seconds of data. */
129         if (tp->t_termios.c_cflag & CREAD)
130                 bs = MIN(tp->t_termios.c_ispeed / 5, TTYBUF_MAX);
131         error = ttyinq_setsize(&tp->t_inq, tp, bs);
132         if (error != 0)
133                 return (error);
134
135         /* Set low watermark at 10% (when 90% is available). */
136         tp->t_inlow = (ttyinq_getallocatedsize(&tp->t_inq) * 9) / 10;
137
138         /* Provide an output buffer for 2 seconds of data. */
139         bs = MIN(tp->t_termios.c_ospeed / 5, TTYBUF_MAX);
140         error = ttyoutq_setsize(&tp->t_outq, tp, bs);
141         if (error != 0)
142                 return (error);
143
144         /* Set low watermark at 10% (when 90% is available). */
145         tp->t_outlow = (ttyoutq_getallocatedsize(&tp->t_outq) * 9) / 10;
146
147         return (0);
148 }
149
150 static int
151 tty_drain(struct tty *tp, int leaving)
152 {
153         sbintime_t timeout_at;
154         size_t bytes;
155         int error;
156
157         if (ttyhook_hashook(tp, getc_inject))
158                 /* buffer is inaccessible */
159                 return (0);
160
161         /*
162          * For close(), use the recent historic timeout of "1 second without
163          * making progress".  For tcdrain(), use t_drainwait as the timeout,
164          * with zero meaning "no timeout" which gives POSIX behavior.
165          */
166         if (leaving)
167                 timeout_at = getsbinuptime() + SBT_1S;
168         else if (tp->t_drainwait != 0)
169                 timeout_at = getsbinuptime() + SBT_1S * tp->t_drainwait;
170         else
171                 timeout_at = 0;
172
173         /*
174          * Poll the output buffer and the hardware for completion, at 10 Hz.
175          * Polling is required for devices which are not able to signal an
176          * interrupt when the transmitter becomes idle (most USB serial devs).
177          * The unusual structure of this loop ensures we check for busy one more
178          * time after tty_timedwait() returns EWOULDBLOCK, so that success has
179          * higher priority than timeout if the IO completed in the last 100mS.
180          */
181         error = 0;
182         bytes = ttyoutq_bytesused(&tp->t_outq);
183         for (;;) {
184                 if (ttyoutq_bytesused(&tp->t_outq) == 0 && !ttydevsw_busy(tp))
185                         return (0);
186                 if (error != 0)
187                         return (error);
188                 ttydevsw_outwakeup(tp);
189                 error = tty_timedwait(tp, &tp->t_outwait, hz / 10);
190                 if (error != 0 && error != EWOULDBLOCK)
191                         return (error);
192                 else if (timeout_at == 0 || getsbinuptime() < timeout_at)
193                         error = 0;
194                 else if (leaving && ttyoutq_bytesused(&tp->t_outq) < bytes) {
195                         /* In close, making progress, grant an extra second. */
196                         error = 0;
197                         timeout_at += SBT_1S;
198                         bytes = ttyoutq_bytesused(&tp->t_outq);
199                 }
200         }
201 }
202
203 /*
204  * Though ttydev_enter() and ttydev_leave() seem to be related, they
205  * don't have to be used together. ttydev_enter() is used by the cdev
206  * operations to prevent an actual operation from being processed when
207  * the TTY has been abandoned. ttydev_leave() is used by ttydev_open()
208  * and ttydev_close() to determine whether per-TTY data should be
209  * deallocated.
210  */
211
212 static __inline int
213 ttydev_enter(struct tty *tp)
214 {
215
216         tty_lock(tp);
217
218         if (tty_gone(tp) || !tty_opened(tp)) {
219                 /* Device is already gone. */
220                 tty_unlock(tp);
221                 return (ENXIO);
222         }
223
224         return (0);
225 }
226
227 static void
228 ttydev_leave(struct tty *tp)
229 {
230
231         tty_assert_locked(tp);
232
233         if (tty_opened(tp) || tp->t_flags & TF_OPENCLOSE) {
234                 /* Device is still opened somewhere. */
235                 tty_unlock(tp);
236                 return;
237         }
238
239         tp->t_flags |= TF_OPENCLOSE;
240
241         /* Remove console TTY. */
242         constty_clear(tp);
243
244         /* Drain any output. */
245         if (!tty_gone(tp))
246                 tty_drain(tp, 1);
247
248         ttydisc_close(tp);
249
250         /* Free i/o queues now since they might be large. */
251         ttyinq_free(&tp->t_inq);
252         tp->t_inlow = 0;
253         ttyoutq_free(&tp->t_outq);
254         tp->t_outlow = 0;
255
256         knlist_clear(&tp->t_inpoll.si_note, 1);
257         knlist_clear(&tp->t_outpoll.si_note, 1);
258
259         if (!tty_gone(tp))
260                 ttydevsw_close(tp);
261
262         tp->t_flags &= ~TF_OPENCLOSE;
263         cv_broadcast(&tp->t_dcdwait);
264         tty_rel_free(tp);
265 }
266
267 /*
268  * Operations that are exposed through the character device in /dev.
269  */
270 static int
271 ttydev_open(struct cdev *dev, int oflags, int devtype __unused,
272     struct thread *td)
273 {
274         struct tty *tp;
275         int error;
276
277         tp = dev->si_drv1;
278         error = 0;
279         tty_lock(tp);
280         if (tty_gone(tp)) {
281                 /* Device is already gone. */
282                 tty_unlock(tp);
283                 return (ENXIO);
284         }
285
286         /*
287          * Block when other processes are currently opening or closing
288          * the TTY.
289          */
290         while (tp->t_flags & TF_OPENCLOSE) {
291                 error = tty_wait(tp, &tp->t_dcdwait);
292                 if (error != 0) {
293                         tty_unlock(tp);
294                         return (error);
295                 }
296         }
297         tp->t_flags |= TF_OPENCLOSE;
298
299         /*
300          * Make sure the "tty" and "cua" device cannot be opened at the
301          * same time.  The console is a "tty" device.
302          */
303         if (TTY_CALLOUT(tp, dev)) {
304                 if (tp->t_flags & (TF_OPENED_CONS | TF_OPENED_IN)) {
305                         error = EBUSY;
306                         goto done;
307                 }
308         } else {
309                 if (tp->t_flags & TF_OPENED_OUT) {
310                         error = EBUSY;
311                         goto done;
312                 }
313         }
314
315         if (tp->t_flags & TF_EXCLUDE && priv_check(td, PRIV_TTY_EXCLUSIVE)) {
316                 error = EBUSY;
317                 goto done;
318         }
319
320         if (!tty_opened(tp)) {
321                 /* Set proper termios flags. */
322                 if (TTY_CALLOUT(tp, dev))
323                         tp->t_termios = tp->t_termios_init_out;
324                 else
325                         tp->t_termios = tp->t_termios_init_in;
326                 ttydevsw_param(tp, &tp->t_termios);
327                 /* Prevent modem control on callout devices and /dev/console. */
328                 if (TTY_CALLOUT(tp, dev) || dev == dev_console)
329                         tp->t_termios.c_cflag |= CLOCAL;
330
331                 if ((tp->t_termios.c_cflag & CNO_RTSDTR) == 0)
332                         ttydevsw_modem(tp, SER_DTR|SER_RTS, 0);
333
334                 error = ttydevsw_open(tp);
335                 if (error != 0)
336                         goto done;
337
338                 ttydisc_open(tp);
339                 error = tty_watermarks(tp);
340                 if (error != 0)
341                         goto done;
342         }
343
344         /* Wait for Carrier Detect. */
345         if ((oflags & O_NONBLOCK) == 0 &&
346             (tp->t_termios.c_cflag & CLOCAL) == 0) {
347                 while ((ttydevsw_modem(tp, 0, 0) & SER_DCD) == 0) {
348                         error = tty_wait(tp, &tp->t_dcdwait);
349                         if (error != 0)
350                                 goto done;
351                 }
352         }
353
354         if (dev == dev_console)
355                 tp->t_flags |= TF_OPENED_CONS;
356         else if (TTY_CALLOUT(tp, dev))
357                 tp->t_flags |= TF_OPENED_OUT;
358         else
359                 tp->t_flags |= TF_OPENED_IN;
360         MPASS((tp->t_flags & (TF_OPENED_CONS | TF_OPENED_IN)) == 0 ||
361             (tp->t_flags & TF_OPENED_OUT) == 0);
362
363 done:   tp->t_flags &= ~TF_OPENCLOSE;
364         cv_broadcast(&tp->t_dcdwait);
365         ttydev_leave(tp);
366
367         return (error);
368 }
369
370 static int
371 ttydev_close(struct cdev *dev, int fflag, int devtype __unused,
372     struct thread *td __unused)
373 {
374         struct tty *tp = dev->si_drv1;
375
376         tty_lock(tp);
377
378         /*
379          * Don't actually close the device if it is being used as the
380          * console.
381          */
382         MPASS((tp->t_flags & (TF_OPENED_CONS | TF_OPENED_IN)) == 0 ||
383             (tp->t_flags & TF_OPENED_OUT) == 0);
384         if (dev == dev_console)
385                 tp->t_flags &= ~TF_OPENED_CONS;
386         else
387                 tp->t_flags &= ~(TF_OPENED_IN|TF_OPENED_OUT);
388
389         if (tp->t_flags & TF_OPENED) {
390                 tty_unlock(tp);
391                 return (0);
392         }
393
394         /* If revoking, flush output now to avoid draining it later. */
395         if (fflag & FREVOKE)
396                 tty_flush(tp, FWRITE);
397
398         tp->t_flags &= ~TF_EXCLUDE;
399
400         /* Properly wake up threads that are stuck - revoke(). */
401         tp->t_revokecnt++;
402         tty_wakeup(tp, FREAD|FWRITE);
403         cv_broadcast(&tp->t_bgwait);
404         cv_broadcast(&tp->t_dcdwait);
405
406         ttydev_leave(tp);
407
408         return (0);
409 }
410
411 static __inline int
412 tty_is_ctty(struct tty *tp, struct proc *p)
413 {
414
415         tty_assert_locked(tp);
416
417         return (p->p_session == tp->t_session && p->p_flag & P_CONTROLT);
418 }
419
420 int
421 tty_wait_background(struct tty *tp, struct thread *td, int sig)
422 {
423         struct proc *p;
424         struct pgrp *pg;
425         ksiginfo_t ksi;
426         int error;
427
428         MPASS(sig == SIGTTIN || sig == SIGTTOU);
429         tty_assert_locked(tp);
430
431         p = td->td_proc;
432         for (;;) {
433                 pg = p->p_pgrp;
434                 PGRP_LOCK(pg);
435                 PROC_LOCK(p);
436
437                 /*
438                  * pg may no longer be our process group.
439                  * Re-check after locking.
440                  */
441                 if (p->p_pgrp != pg) {
442                         PROC_UNLOCK(p);
443                         PGRP_UNLOCK(pg);
444                         continue;
445                 }
446
447                 /*
448                  * The process should only sleep, when:
449                  * - This terminal is the controlling terminal
450                  * - Its process group is not the foreground process
451                  *   group
452                  * - The parent process isn't waiting for the child to
453                  *   exit
454                  * - the signal to send to the process isn't masked
455                  */
456                 if (!tty_is_ctty(tp, p) || p->p_pgrp == tp->t_pgrp) {
457                         /* Allow the action to happen. */
458                         PROC_UNLOCK(p);
459                         PGRP_UNLOCK(pg);
460                         return (0);
461                 }
462
463                 if (SIGISMEMBER(p->p_sigacts->ps_sigignore, sig) ||
464                     SIGISMEMBER(td->td_sigmask, sig)) {
465                         /* Only allow them in write()/ioctl(). */
466                         PROC_UNLOCK(p);
467                         PGRP_UNLOCK(pg);
468                         return (sig == SIGTTOU ? 0 : EIO);
469                 }
470
471                 if ((p->p_flag & P_PPWAIT) != 0 ||
472                     (pg->pg_flags & PGRP_ORPHANED) != 0) {
473                         /* Don't allow the action to happen. */
474                         PROC_UNLOCK(p);
475                         PGRP_UNLOCK(pg);
476                         return (EIO);
477                 }
478                 PROC_UNLOCK(p);
479
480                 /*
481                  * Send the signal and sleep until we're the new
482                  * foreground process group.
483                  */
484                 if (sig != 0) {
485                         ksiginfo_init(&ksi);
486                         ksi.ksi_code = SI_KERNEL;
487                         ksi.ksi_signo = sig;
488                         sig = 0;
489                 }
490
491                 pgsignal(pg, ksi.ksi_signo, 1, &ksi);
492                 PGRP_UNLOCK(pg);
493
494                 error = tty_wait(tp, &tp->t_bgwait);
495                 if (error)
496                         return (error);
497         }
498 }
499
500 static int
501 ttydev_read(struct cdev *dev, struct uio *uio, int ioflag)
502 {
503         struct tty *tp = dev->si_drv1;
504         int error;
505
506         error = ttydev_enter(tp);
507         if (error)
508                 goto done;
509         error = ttydisc_read(tp, uio, ioflag);
510         tty_unlock(tp);
511
512         /*
513          * The read() call should not throw an error when the device is
514          * being destroyed. Silently convert it to an EOF.
515          */
516 done:   if (error == ENXIO)
517                 error = 0;
518         return (error);
519 }
520
521 static int
522 ttydev_write(struct cdev *dev, struct uio *uio, int ioflag)
523 {
524         struct tty *tp = dev->si_drv1;
525         int defer, error;
526
527         error = ttydev_enter(tp);
528         if (error)
529                 return (error);
530
531         if (tp->t_termios.c_lflag & TOSTOP) {
532                 error = tty_wait_background(tp, curthread, SIGTTOU);
533                 if (error)
534                         goto done;
535         }
536
537         if (ioflag & IO_NDELAY && tp->t_flags & TF_BUSY_OUT) {
538                 /* Allow non-blocking writes to bypass serialization. */
539                 error = ttydisc_write(tp, uio, ioflag);
540         } else {
541                 /* Serialize write() calls. */
542                 while (tp->t_flags & TF_BUSY_OUT) {
543                         error = tty_wait(tp, &tp->t_outserwait);
544                         if (error)
545                                 goto done;
546                 }
547
548                 tp->t_flags |= TF_BUSY_OUT;
549                 defer = sigdeferstop(SIGDEFERSTOP_ERESTART);
550                 error = ttydisc_write(tp, uio, ioflag);
551                 sigallowstop(defer);
552                 tp->t_flags &= ~TF_BUSY_OUT;
553                 cv_signal(&tp->t_outserwait);
554         }
555
556 done:   tty_unlock(tp);
557         return (error);
558 }
559
560 static int
561 ttydev_ioctl(struct cdev *dev, u_long cmd, caddr_t data, int fflag,
562     struct thread *td)
563 {
564         struct tty *tp = dev->si_drv1;
565         int error;
566
567         error = ttydev_enter(tp);
568         if (error)
569                 return (error);
570
571         switch (cmd) {
572         case TIOCCBRK:
573         case TIOCCONS:
574         case TIOCDRAIN:
575         case TIOCEXCL:
576         case TIOCFLUSH:
577         case TIOCNXCL:
578         case TIOCSBRK:
579         case TIOCSCTTY:
580         case TIOCSETA:
581         case TIOCSETAF:
582         case TIOCSETAW:
583         case TIOCSPGRP:
584         case TIOCSTART:
585         case TIOCSTAT:
586         case TIOCSTI:
587         case TIOCSTOP:
588         case TIOCSWINSZ:
589 #if 0
590         case TIOCSDRAINWAIT:
591         case TIOCSETD:
592 #endif
593 #ifdef COMPAT_43TTY
594         case  TIOCLBIC:
595         case  TIOCLBIS:
596         case  TIOCLSET:
597         case  TIOCSETC:
598         case OTIOCSETD:
599         case  TIOCSETN:
600         case  TIOCSETP:
601         case  TIOCSLTC:
602 #endif /* COMPAT_43TTY */
603                 /*
604                  * If the ioctl() causes the TTY to be modified, let it
605                  * wait in the background.
606                  */
607                 error = tty_wait_background(tp, curthread, SIGTTOU);
608                 if (error)
609                         goto done;
610         }
611
612         if (cmd == TIOCSETA || cmd == TIOCSETAW || cmd == TIOCSETAF) {
613                 struct termios *old = &tp->t_termios;
614                 struct termios *new = (struct termios *)data;
615                 struct termios *lock = TTY_CALLOUT(tp, dev) ?
616                     &tp->t_termios_lock_out : &tp->t_termios_lock_in;
617                 int cc;
618
619                 /*
620                  * Lock state devices.  Just overwrite the values of the
621                  * commands that are currently in use.
622                  */
623                 new->c_iflag = (old->c_iflag & lock->c_iflag) |
624                     (new->c_iflag & ~lock->c_iflag);
625                 new->c_oflag = (old->c_oflag & lock->c_oflag) |
626                     (new->c_oflag & ~lock->c_oflag);
627                 new->c_cflag = (old->c_cflag & lock->c_cflag) |
628                     (new->c_cflag & ~lock->c_cflag);
629                 new->c_lflag = (old->c_lflag & lock->c_lflag) |
630                     (new->c_lflag & ~lock->c_lflag);
631                 for (cc = 0; cc < NCCS; ++cc)
632                         if (lock->c_cc[cc])
633                                 new->c_cc[cc] = old->c_cc[cc];
634                 if (lock->c_ispeed)
635                         new->c_ispeed = old->c_ispeed;
636                 if (lock->c_ospeed)
637                         new->c_ospeed = old->c_ospeed;
638         }
639
640         error = tty_ioctl(tp, cmd, data, fflag, td);
641 done:   tty_unlock(tp);
642
643         return (error);
644 }
645
646 static int
647 ttydev_poll(struct cdev *dev, int events, struct thread *td)
648 {
649         struct tty *tp = dev->si_drv1;
650         int error, revents = 0;
651
652         error = ttydev_enter(tp);
653         if (error)
654                 return ((events & (POLLIN|POLLRDNORM)) | POLLHUP);
655
656         if (events & (POLLIN|POLLRDNORM)) {
657                 /* See if we can read something. */
658                 if (ttydisc_read_poll(tp) > 0)
659                         revents |= events & (POLLIN|POLLRDNORM);
660         }
661
662         if (tp->t_flags & TF_ZOMBIE) {
663                 /* Hangup flag on zombie state. */
664                 revents |= POLLHUP;
665         } else if (events & (POLLOUT|POLLWRNORM)) {
666                 /* See if we can write something. */
667                 if (ttydisc_write_poll(tp) > 0)
668                         revents |= events & (POLLOUT|POLLWRNORM);
669         }
670
671         if (revents == 0) {
672                 if (events & (POLLIN|POLLRDNORM))
673                         selrecord(td, &tp->t_inpoll);
674                 if (events & (POLLOUT|POLLWRNORM))
675                         selrecord(td, &tp->t_outpoll);
676         }
677
678         tty_unlock(tp);
679
680         return (revents);
681 }
682
683 static int
684 ttydev_mmap(struct cdev *dev, vm_ooffset_t offset, vm_paddr_t *paddr,
685     int nprot, vm_memattr_t *memattr)
686 {
687         struct tty *tp = dev->si_drv1;
688         int error;
689
690         /* Handle mmap() through the driver. */
691
692         error = ttydev_enter(tp);
693         if (error)
694                 return (-1);
695         error = ttydevsw_mmap(tp, offset, paddr, nprot, memattr);
696         tty_unlock(tp);
697
698         return (error);
699 }
700
701 /*
702  * kqueue support.
703  */
704
705 static void
706 tty_kqops_read_detach(struct knote *kn)
707 {
708         struct tty *tp = kn->kn_hook;
709
710         knlist_remove(&tp->t_inpoll.si_note, kn, 0);
711 }
712
713 static int
714 tty_kqops_read_event(struct knote *kn, long hint __unused)
715 {
716         struct tty *tp = kn->kn_hook;
717
718         tty_assert_locked(tp);
719
720         if (tty_gone(tp) || tp->t_flags & TF_ZOMBIE) {
721                 kn->kn_flags |= EV_EOF;
722                 return (1);
723         } else {
724                 kn->kn_data = ttydisc_read_poll(tp);
725                 return (kn->kn_data > 0);
726         }
727 }
728
729 static void
730 tty_kqops_write_detach(struct knote *kn)
731 {
732         struct tty *tp = kn->kn_hook;
733
734         knlist_remove(&tp->t_outpoll.si_note, kn, 0);
735 }
736
737 static int
738 tty_kqops_write_event(struct knote *kn, long hint __unused)
739 {
740         struct tty *tp = kn->kn_hook;
741
742         tty_assert_locked(tp);
743
744         if (tty_gone(tp)) {
745                 kn->kn_flags |= EV_EOF;
746                 return (1);
747         } else {
748                 kn->kn_data = ttydisc_write_poll(tp);
749                 return (kn->kn_data > 0);
750         }
751 }
752
753 static struct filterops tty_kqops_read = {
754         .f_isfd = 1,
755         .f_detach = tty_kqops_read_detach,
756         .f_event = tty_kqops_read_event,
757 };
758
759 static struct filterops tty_kqops_write = {
760         .f_isfd = 1,
761         .f_detach = tty_kqops_write_detach,
762         .f_event = tty_kqops_write_event,
763 };
764
765 static int
766 ttydev_kqfilter(struct cdev *dev, struct knote *kn)
767 {
768         struct tty *tp = dev->si_drv1;
769         int error;
770
771         error = ttydev_enter(tp);
772         if (error)
773                 return (error);
774
775         switch (kn->kn_filter) {
776         case EVFILT_READ:
777                 kn->kn_hook = tp;
778                 kn->kn_fop = &tty_kqops_read;
779                 knlist_add(&tp->t_inpoll.si_note, kn, 1);
780                 break;
781         case EVFILT_WRITE:
782                 kn->kn_hook = tp;
783                 kn->kn_fop = &tty_kqops_write;
784                 knlist_add(&tp->t_outpoll.si_note, kn, 1);
785                 break;
786         default:
787                 error = EINVAL;
788                 break;
789         }
790
791         tty_unlock(tp);
792         return (error);
793 }
794
795 static struct cdevsw ttydev_cdevsw = {
796         .d_version      = D_VERSION,
797         .d_open         = ttydev_open,
798         .d_close        = ttydev_close,
799         .d_read         = ttydev_read,
800         .d_write        = ttydev_write,
801         .d_ioctl        = ttydev_ioctl,
802         .d_kqfilter     = ttydev_kqfilter,
803         .d_poll         = ttydev_poll,
804         .d_mmap         = ttydev_mmap,
805         .d_name         = "ttydev",
806         .d_flags        = D_TTY,
807 };
808
809 /*
810  * Init/lock-state devices
811  */
812
813 static int
814 ttyil_open(struct cdev *dev, int oflags __unused, int devtype __unused,
815     struct thread *td)
816 {
817         struct tty *tp;
818         int error;
819
820         tp = dev->si_drv1;
821         error = 0;
822         tty_lock(tp);
823         if (tty_gone(tp))
824                 error = ENODEV;
825         tty_unlock(tp);
826
827         return (error);
828 }
829
830 static int
831 ttyil_close(struct cdev *dev __unused, int flag __unused, int mode __unused,
832     struct thread *td __unused)
833 {
834
835         return (0);
836 }
837
838 static int
839 ttyil_rdwr(struct cdev *dev __unused, struct uio *uio __unused,
840     int ioflag __unused)
841 {
842
843         return (ENODEV);
844 }
845
846 static int
847 ttyil_ioctl(struct cdev *dev, u_long cmd, caddr_t data, int fflag,
848     struct thread *td)
849 {
850         struct tty *tp = dev->si_drv1;
851         int error;
852
853         tty_lock(tp);
854         if (tty_gone(tp)) {
855                 error = ENODEV;
856                 goto done;
857         }
858
859         error = ttydevsw_cioctl(tp, dev2unit(dev), cmd, data, td);
860         if (error != ENOIOCTL)
861                 goto done;
862         error = 0;
863
864         switch (cmd) {
865         case TIOCGETA:
866                 /* Obtain terminal flags through tcgetattr(). */
867                 *(struct termios*)data = *(struct termios*)dev->si_drv2;
868                 break;
869         case TIOCSETA:
870                 /* Set terminal flags through tcsetattr(). */
871                 error = priv_check(td, PRIV_TTY_SETA);
872                 if (error)
873                         break;
874                 *(struct termios*)dev->si_drv2 = *(struct termios*)data;
875                 break;
876         case TIOCGETD:
877                 *(int *)data = TTYDISC;
878                 break;
879         case TIOCGWINSZ:
880                 bzero(data, sizeof(struct winsize));
881                 break;
882         default:
883                 error = ENOTTY;
884         }
885
886 done:   tty_unlock(tp);
887         return (error);
888 }
889
890 static struct cdevsw ttyil_cdevsw = {
891         .d_version      = D_VERSION,
892         .d_open         = ttyil_open,
893         .d_close        = ttyil_close,
894         .d_read         = ttyil_rdwr,
895         .d_write        = ttyil_rdwr,
896         .d_ioctl        = ttyil_ioctl,
897         .d_name         = "ttyil",
898         .d_flags        = D_TTY,
899 };
900
901 static void
902 tty_init_termios(struct tty *tp)
903 {
904         struct termios *t = &tp->t_termios_init_in;
905
906         t->c_cflag = TTYDEF_CFLAG;
907         t->c_iflag = TTYDEF_IFLAG;
908         t->c_lflag = TTYDEF_LFLAG;
909         t->c_oflag = TTYDEF_OFLAG;
910         t->c_ispeed = TTYDEF_SPEED;
911         t->c_ospeed = TTYDEF_SPEED;
912         memcpy(&t->c_cc, ttydefchars, sizeof ttydefchars);
913
914         tp->t_termios_init_out = *t;
915 }
916
917 void
918 tty_init_console(struct tty *tp, speed_t s)
919 {
920         struct termios *ti = &tp->t_termios_init_in;
921         struct termios *to = &tp->t_termios_init_out;
922
923         if (s != 0) {
924                 ti->c_ispeed = ti->c_ospeed = s;
925                 to->c_ispeed = to->c_ospeed = s;
926         }
927
928         ti->c_cflag |= CLOCAL;
929         to->c_cflag |= CLOCAL;
930 }
931
932 /*
933  * Standard device routine implementations, mostly meant for
934  * pseudo-terminal device drivers. When a driver creates a new terminal
935  * device class, missing routines are patched.
936  */
937
938 static int
939 ttydevsw_defopen(struct tty *tp __unused)
940 {
941
942         return (0);
943 }
944
945 static void
946 ttydevsw_defclose(struct tty *tp __unused)
947 {
948
949 }
950
951 static void
952 ttydevsw_defoutwakeup(struct tty *tp __unused)
953 {
954
955         panic("Terminal device has output, while not implemented");
956 }
957
958 static void
959 ttydevsw_definwakeup(struct tty *tp __unused)
960 {
961
962 }
963
964 static int
965 ttydevsw_defioctl(struct tty *tp __unused, u_long cmd __unused,
966     caddr_t data __unused, struct thread *td __unused)
967 {
968
969         return (ENOIOCTL);
970 }
971
972 static int
973 ttydevsw_defcioctl(struct tty *tp __unused, int unit __unused,
974     u_long cmd __unused, caddr_t data __unused, struct thread *td __unused)
975 {
976
977         return (ENOIOCTL);
978 }
979
980 static int
981 ttydevsw_defparam(struct tty *tp __unused, struct termios *t)
982 {
983
984         /*
985          * Allow the baud rate to be adjusted for pseudo-devices, but at
986          * least restrict it to 115200 to prevent excessive buffer
987          * usage.  Also disallow 0, to prevent foot shooting.
988          */
989         if (t->c_ispeed < B50)
990                 t->c_ispeed = B50;
991         else if (t->c_ispeed > B115200)
992                 t->c_ispeed = B115200;
993         if (t->c_ospeed < B50)
994                 t->c_ospeed = B50;
995         else if (t->c_ospeed > B115200)
996                 t->c_ospeed = B115200;
997         t->c_cflag |= CREAD;
998
999         return (0);
1000 }
1001
1002 static int
1003 ttydevsw_defmodem(struct tty *tp __unused, int sigon __unused,
1004     int sigoff __unused)
1005 {
1006
1007         /* Simulate a carrier to make the TTY layer happy. */
1008         return (SER_DCD);
1009 }
1010
1011 static int
1012 ttydevsw_defmmap(struct tty *tp __unused, vm_ooffset_t offset __unused,
1013     vm_paddr_t *paddr __unused, int nprot __unused,
1014     vm_memattr_t *memattr __unused)
1015 {
1016
1017         return (-1);
1018 }
1019
1020 static void
1021 ttydevsw_defpktnotify(struct tty *tp __unused, char event __unused)
1022 {
1023
1024 }
1025
1026 static void
1027 ttydevsw_deffree(void *softc __unused)
1028 {
1029
1030         panic("Terminal device freed without a free-handler");
1031 }
1032
1033 static bool
1034 ttydevsw_defbusy(struct tty *tp __unused)
1035 {
1036
1037         return (FALSE);
1038 }
1039
1040 /*
1041  * TTY allocation and deallocation. TTY devices can be deallocated when
1042  * the driver doesn't use it anymore, when the TTY isn't a session's
1043  * controlling TTY and when the device node isn't opened through devfs.
1044  */
1045
1046 struct tty *
1047 tty_alloc(struct ttydevsw *tsw, void *sc)
1048 {
1049
1050         return (tty_alloc_mutex(tsw, sc, NULL));
1051 }
1052
1053 struct tty *
1054 tty_alloc_mutex(struct ttydevsw *tsw, void *sc, struct mtx *mutex)
1055 {
1056         struct tty *tp;
1057
1058         /* Make sure the driver defines all routines. */
1059 #define PATCH_FUNC(x) do {                              \
1060         if (tsw->tsw_ ## x == NULL)                     \
1061                 tsw->tsw_ ## x = ttydevsw_def ## x;     \
1062 } while (0)
1063         PATCH_FUNC(open);
1064         PATCH_FUNC(close);
1065         PATCH_FUNC(outwakeup);
1066         PATCH_FUNC(inwakeup);
1067         PATCH_FUNC(ioctl);
1068         PATCH_FUNC(cioctl);
1069         PATCH_FUNC(param);
1070         PATCH_FUNC(modem);
1071         PATCH_FUNC(mmap);
1072         PATCH_FUNC(pktnotify);
1073         PATCH_FUNC(free);
1074         PATCH_FUNC(busy);
1075 #undef PATCH_FUNC
1076
1077         tp = malloc(sizeof(struct tty) + TTY_PRBUF_SIZE, M_TTY,
1078             M_WAITOK | M_ZERO);
1079         tp->t_prbufsz = TTY_PRBUF_SIZE;
1080         tp->t_devsw = tsw;
1081         tp->t_devswsoftc = sc;
1082         tp->t_flags = tsw->tsw_flags;
1083         tp->t_drainwait = tty_drainwait;
1084
1085         tty_init_termios(tp);
1086
1087         cv_init(&tp->t_inwait, "ttyin");
1088         cv_init(&tp->t_outwait, "ttyout");
1089         cv_init(&tp->t_outserwait, "ttyosr");
1090         cv_init(&tp->t_bgwait, "ttybg");
1091         cv_init(&tp->t_dcdwait, "ttydcd");
1092
1093         /* Allow drivers to use a custom mutex to lock the TTY. */
1094         if (mutex != NULL) {
1095                 tp->t_mtx = mutex;
1096         } else {
1097                 tp->t_mtx = &tp->t_mtxobj;
1098                 mtx_init(&tp->t_mtxobj, "ttymtx", NULL, MTX_DEF);
1099         }
1100
1101         knlist_init_mtx(&tp->t_inpoll.si_note, tp->t_mtx);
1102         knlist_init_mtx(&tp->t_outpoll.si_note, tp->t_mtx);
1103
1104         return (tp);
1105 }
1106
1107 static void
1108 tty_dealloc(void *arg)
1109 {
1110         struct tty *tp = arg;
1111
1112         /*
1113          * ttyydev_leave() usually frees the i/o queues earlier, but it is
1114          * not always called between queue allocation and here.  The queues
1115          * may be allocated by ioctls on a pty control device without the
1116          * corresponding pty slave device ever being open, or after it is
1117          * closed.
1118          */
1119         ttyinq_free(&tp->t_inq);
1120         ttyoutq_free(&tp->t_outq);
1121         seldrain(&tp->t_inpoll);
1122         seldrain(&tp->t_outpoll);
1123         knlist_destroy(&tp->t_inpoll.si_note);
1124         knlist_destroy(&tp->t_outpoll.si_note);
1125
1126         cv_destroy(&tp->t_inwait);
1127         cv_destroy(&tp->t_outwait);
1128         cv_destroy(&tp->t_bgwait);
1129         cv_destroy(&tp->t_dcdwait);
1130         cv_destroy(&tp->t_outserwait);
1131
1132         if (tp->t_mtx == &tp->t_mtxobj)
1133                 mtx_destroy(&tp->t_mtxobj);
1134         ttydevsw_free(tp);
1135         free(tp, M_TTY);
1136 }
1137
1138 static void
1139 tty_rel_free(struct tty *tp)
1140 {
1141         struct cdev *dev;
1142
1143         tty_assert_locked(tp);
1144
1145 #define TF_ACTIVITY     (TF_GONE|TF_OPENED|TF_HOOK|TF_OPENCLOSE)
1146         if (tp->t_sessioncnt != 0 || (tp->t_flags & TF_ACTIVITY) != TF_GONE) {
1147                 /* TTY is still in use. */
1148                 tty_unlock(tp);
1149                 return;
1150         }
1151
1152         /* Stop asynchronous I/O. */
1153         funsetown(&tp->t_sigio);
1154
1155         /* TTY can be deallocated. */
1156         dev = tp->t_dev;
1157         tp->t_dev = NULL;
1158         tty_unlock(tp);
1159
1160         if (dev != NULL) {
1161                 sx_xlock(&tty_list_sx);
1162                 TAILQ_REMOVE(&tty_list, tp, t_list);
1163                 tty_list_count--;
1164                 sx_xunlock(&tty_list_sx);
1165                 destroy_dev_sched_cb(dev, tty_dealloc, tp);
1166         }
1167 }
1168
1169 void
1170 tty_rel_pgrp(struct tty *tp, struct pgrp *pg)
1171 {
1172
1173         MPASS(tp->t_sessioncnt > 0);
1174         tty_assert_locked(tp);
1175
1176         if (tp->t_pgrp == pg)
1177                 tp->t_pgrp = NULL;
1178
1179         tty_unlock(tp);
1180 }
1181
1182 void
1183 tty_rel_sess(struct tty *tp, struct session *sess)
1184 {
1185
1186         MPASS(tp->t_sessioncnt > 0);
1187
1188         /* Current session has left. */
1189         if (tp->t_session == sess) {
1190                 tp->t_session = NULL;
1191                 MPASS(tp->t_pgrp == NULL);
1192         }
1193         tp->t_sessioncnt--;
1194         tty_rel_free(tp);
1195 }
1196
1197 void
1198 tty_rel_gone(struct tty *tp)
1199 {
1200
1201         tty_assert_locked(tp);
1202         MPASS(!tty_gone(tp));
1203
1204         /* Simulate carrier removal. */
1205         ttydisc_modem(tp, 0);
1206
1207         /* Wake up all blocked threads. */
1208         tty_wakeup(tp, FREAD|FWRITE);
1209         cv_broadcast(&tp->t_bgwait);
1210         cv_broadcast(&tp->t_dcdwait);
1211
1212         tp->t_flags |= TF_GONE;
1213         tty_rel_free(tp);
1214 }
1215
1216 static int
1217 tty_drop_ctty(struct tty *tp, struct proc *p)
1218 {
1219         struct session *session;
1220         struct vnode *vp;
1221
1222         /*
1223          * This looks terrible, but it's generally safe as long as the tty
1224          * hasn't gone away while we had the lock dropped.  All of our sanity
1225          * checking that this operation is OK happens after we've picked it back
1226          * up, so other state changes are generally not fatal and the potential
1227          * for this particular operation to happen out-of-order in a
1228          * multithreaded scenario is likely a non-issue.
1229          */
1230         tty_unlock(tp);
1231         sx_xlock(&proctree_lock);
1232         tty_lock(tp);
1233         if (tty_gone(tp)) {
1234                 sx_xunlock(&proctree_lock);
1235                 return (ENODEV);
1236         }
1237
1238         /*
1239          * If the session doesn't have a controlling TTY, or if we weren't
1240          * invoked on the controlling TTY, we'll return ENOIOCTL as we've
1241          * historically done.
1242          */
1243         session = p->p_session;
1244         if (session->s_ttyp == NULL || session->s_ttyp != tp) {
1245                 sx_xunlock(&proctree_lock);
1246                 return (ENOTTY);
1247         }
1248
1249         if (!SESS_LEADER(p)) {
1250                 sx_xunlock(&proctree_lock);
1251                 return (EPERM);
1252         }
1253
1254         PROC_LOCK(p);
1255         SESS_LOCK(session);
1256         vp = session->s_ttyvp;
1257         session->s_ttyp = NULL;
1258         session->s_ttyvp = NULL;
1259         session->s_ttydp = NULL;
1260         SESS_UNLOCK(session);
1261
1262         tp->t_sessioncnt--;
1263         p->p_flag &= ~P_CONTROLT;
1264         PROC_UNLOCK(p);
1265         sx_xunlock(&proctree_lock);
1266
1267         /*
1268          * If we did have a vnode, release our reference.  Ordinarily we manage
1269          * these at the devfs layer, but we can't necessarily know that we were
1270          * invoked on the vnode referenced in the session (i.e. the vnode we
1271          * hold a reference to).  We explicitly don't check VBAD/VIRF_DOOMED here
1272          * to avoid a vnode leak -- in circumstances elsewhere where we'd hit a
1273          * VIRF_DOOMED vnode, release has been deferred until the controlling TTY
1274          * is either changed or released.
1275          */
1276         if (vp != NULL)
1277                 devfs_ctty_unref(vp);
1278         return (0);
1279 }
1280
1281 /*
1282  * Exposing information about current TTY's through sysctl
1283  */
1284
1285 static void
1286 tty_to_xtty(struct tty *tp, struct xtty *xt)
1287 {
1288
1289         tty_assert_locked(tp);
1290
1291         memset(xt, 0, sizeof(*xt));
1292         xt->xt_size = sizeof(struct xtty);
1293         xt->xt_insize = ttyinq_getsize(&tp->t_inq);
1294         xt->xt_incc = ttyinq_bytescanonicalized(&tp->t_inq);
1295         xt->xt_inlc = ttyinq_bytesline(&tp->t_inq);
1296         xt->xt_inlow = tp->t_inlow;
1297         xt->xt_outsize = ttyoutq_getsize(&tp->t_outq);
1298         xt->xt_outcc = ttyoutq_bytesused(&tp->t_outq);
1299         xt->xt_outlow = tp->t_outlow;
1300         xt->xt_column = tp->t_column;
1301         xt->xt_pgid = tp->t_pgrp ? tp->t_pgrp->pg_id : 0;
1302         xt->xt_sid = tp->t_session ? tp->t_session->s_sid : 0;
1303         xt->xt_flags = tp->t_flags;
1304         xt->xt_dev = tp->t_dev ? dev2udev(tp->t_dev) : (uint32_t)NODEV;
1305 }
1306
1307 static int
1308 sysctl_kern_ttys(SYSCTL_HANDLER_ARGS)
1309 {
1310         unsigned long lsize;
1311         struct xtty *xtlist, *xt;
1312         struct tty *tp;
1313         int error;
1314
1315         sx_slock(&tty_list_sx);
1316         lsize = tty_list_count * sizeof(struct xtty);
1317         if (lsize == 0) {
1318                 sx_sunlock(&tty_list_sx);
1319                 return (0);
1320         }
1321
1322         xtlist = xt = malloc(lsize, M_TTY, M_WAITOK);
1323
1324         TAILQ_FOREACH(tp, &tty_list, t_list) {
1325                 tty_lock(tp);
1326                 tty_to_xtty(tp, xt);
1327                 tty_unlock(tp);
1328                 xt++;
1329         }
1330         sx_sunlock(&tty_list_sx);
1331
1332         error = SYSCTL_OUT(req, xtlist, lsize);
1333         free(xtlist, M_TTY);
1334         return (error);
1335 }
1336
1337 SYSCTL_PROC(_kern, OID_AUTO, ttys, CTLTYPE_OPAQUE|CTLFLAG_RD|CTLFLAG_MPSAFE,
1338         0, 0, sysctl_kern_ttys, "S,xtty", "List of TTYs");
1339
1340 /*
1341  * Device node creation. Device has been set up, now we can expose it to
1342  * the user.
1343  */
1344
1345 int
1346 tty_makedevf(struct tty *tp, struct ucred *cred, int flags,
1347     const char *fmt, ...)
1348 {
1349         va_list ap;
1350         struct make_dev_args args;
1351         struct cdev *dev, *init, *lock, *cua, *cinit, *clock;
1352         const char *prefix = "tty";
1353         char name[SPECNAMELEN - 3]; /* for "tty" and "cua". */
1354         uid_t uid;
1355         gid_t gid;
1356         mode_t mode;
1357         int error;
1358
1359         /* Remove "tty" prefix from devices like PTY's. */
1360         if (tp->t_flags & TF_NOPREFIX)
1361                 prefix = "";
1362
1363         va_start(ap, fmt);
1364         vsnrprintf(name, sizeof name, 32, fmt, ap);
1365         va_end(ap);
1366
1367         if (cred == NULL) {
1368                 /* System device. */
1369                 uid = UID_ROOT;
1370                 gid = GID_WHEEL;
1371                 mode = S_IRUSR|S_IWUSR;
1372         } else {
1373                 /* User device. */
1374                 uid = cred->cr_ruid;
1375                 gid = GID_TTY;
1376                 mode = S_IRUSR|S_IWUSR|S_IWGRP;
1377         }
1378
1379         flags = flags & TTYMK_CLONING ? MAKEDEV_REF : 0;
1380         flags |= MAKEDEV_CHECKNAME;
1381
1382         /* Master call-in device. */
1383         make_dev_args_init(&args);
1384         args.mda_flags = flags;
1385         args.mda_devsw = &ttydev_cdevsw;
1386         args.mda_cr = cred;
1387         args.mda_uid = uid;
1388         args.mda_gid = gid;
1389         args.mda_mode = mode;
1390         args.mda_si_drv1 = tp;
1391         error = make_dev_s(&args, &dev, "%s%s", prefix, name);
1392         if (error != 0)
1393                 return (error);
1394         tp->t_dev = dev;
1395
1396         init = lock = cua = cinit = clock = NULL;
1397
1398         /* Slave call-in devices. */
1399         if (tp->t_flags & TF_INITLOCK) {
1400                 args.mda_devsw = &ttyil_cdevsw;
1401                 args.mda_unit = TTYUNIT_INIT;
1402                 args.mda_si_drv1 = tp;
1403                 args.mda_si_drv2 = &tp->t_termios_init_in;
1404                 error = make_dev_s(&args, &init, "%s%s.init", prefix, name);
1405                 if (error != 0)
1406                         goto fail;
1407                 dev_depends(dev, init);
1408
1409                 args.mda_unit = TTYUNIT_LOCK;
1410                 args.mda_si_drv2 = &tp->t_termios_lock_in;
1411                 error = make_dev_s(&args, &lock, "%s%s.lock", prefix, name);
1412                 if (error != 0)
1413                         goto fail;
1414                 dev_depends(dev, lock);
1415         }
1416
1417         /* Call-out devices. */
1418         if (tp->t_flags & TF_CALLOUT) {
1419                 make_dev_args_init(&args);
1420                 args.mda_flags = flags;
1421                 args.mda_devsw = &ttydev_cdevsw;
1422                 args.mda_cr = cred;
1423                 args.mda_uid = UID_UUCP;
1424                 args.mda_gid = GID_DIALER;
1425                 args.mda_mode = 0660;
1426                 args.mda_unit = TTYUNIT_CALLOUT;
1427                 args.mda_si_drv1 = tp;
1428                 error = make_dev_s(&args, &cua, "cua%s", name);
1429                 if (error != 0)
1430                         goto fail;
1431                 dev_depends(dev, cua);
1432
1433                 /* Slave call-out devices. */
1434                 if (tp->t_flags & TF_INITLOCK) {
1435                         args.mda_devsw = &ttyil_cdevsw;
1436                         args.mda_unit = TTYUNIT_CALLOUT | TTYUNIT_INIT;
1437                         args.mda_si_drv2 = &tp->t_termios_init_out;
1438                         error = make_dev_s(&args, &cinit, "cua%s.init", name);
1439                         if (error != 0)
1440                                 goto fail;
1441                         dev_depends(dev, cinit);
1442
1443                         args.mda_unit = TTYUNIT_CALLOUT | TTYUNIT_LOCK;
1444                         args.mda_si_drv2 = &tp->t_termios_lock_out;
1445                         error = make_dev_s(&args, &clock, "cua%s.lock", name);
1446                         if (error != 0)
1447                                 goto fail;
1448                         dev_depends(dev, clock);
1449                 }
1450         }
1451
1452         sx_xlock(&tty_list_sx);
1453         TAILQ_INSERT_TAIL(&tty_list, tp, t_list);
1454         tty_list_count++;
1455         sx_xunlock(&tty_list_sx);
1456
1457         return (0);
1458
1459 fail:
1460         destroy_dev(dev);
1461         if (init)
1462                 destroy_dev(init);
1463         if (lock)
1464                 destroy_dev(lock);
1465         if (cinit)
1466                 destroy_dev(cinit);
1467         if (clock)
1468                 destroy_dev(clock);
1469
1470         return (error);
1471 }
1472
1473 /*
1474  * Signalling processes.
1475  */
1476
1477 void
1478 tty_signal_sessleader(struct tty *tp, int sig)
1479 {
1480         struct proc *p;
1481         struct session *s;
1482
1483         tty_assert_locked(tp);
1484         MPASS(sig >= 1 && sig < NSIG);
1485
1486         /* Make signals start output again. */
1487         tp->t_flags &= ~TF_STOPPED;
1488         tp->t_termios.c_lflag &= ~FLUSHO;
1489
1490         /*
1491          * Load s_leader exactly once to avoid race where s_leader is
1492          * set to NULL by a concurrent invocation of killjobc() by the
1493          * session leader.  Note that we are not holding t_session's
1494          * lock for the read.
1495          */
1496         if ((s = tp->t_session) != NULL &&
1497             (p = atomic_load_ptr(&s->s_leader)) != NULL) {
1498                 PROC_LOCK(p);
1499                 kern_psignal(p, sig);
1500                 PROC_UNLOCK(p);
1501         }
1502 }
1503
1504 void
1505 tty_signal_pgrp(struct tty *tp, int sig)
1506 {
1507         ksiginfo_t ksi;
1508
1509         tty_assert_locked(tp);
1510         MPASS(sig >= 1 && sig < NSIG);
1511
1512         /* Make signals start output again. */
1513         tp->t_flags &= ~TF_STOPPED;
1514         tp->t_termios.c_lflag &= ~FLUSHO;
1515
1516         if (sig == SIGINFO && !(tp->t_termios.c_lflag & NOKERNINFO))
1517                 tty_info(tp);
1518         if (tp->t_pgrp != NULL) {
1519                 ksiginfo_init(&ksi);
1520                 ksi.ksi_signo = sig;
1521                 ksi.ksi_code = SI_KERNEL;
1522                 PGRP_LOCK(tp->t_pgrp);
1523                 pgsignal(tp->t_pgrp, sig, 1, &ksi);
1524                 PGRP_UNLOCK(tp->t_pgrp);
1525         }
1526 }
1527
1528 void
1529 tty_wakeup(struct tty *tp, int flags)
1530 {
1531
1532         if (tp->t_flags & TF_ASYNC && tp->t_sigio != NULL)
1533                 pgsigio(&tp->t_sigio, SIGIO, (tp->t_session != NULL));
1534
1535         if (flags & FWRITE) {
1536                 cv_broadcast(&tp->t_outwait);
1537                 selwakeup(&tp->t_outpoll);
1538                 KNOTE_LOCKED(&tp->t_outpoll.si_note, 0);
1539         }
1540         if (flags & FREAD) {
1541                 cv_broadcast(&tp->t_inwait);
1542                 selwakeup(&tp->t_inpoll);
1543                 KNOTE_LOCKED(&tp->t_inpoll.si_note, 0);
1544         }
1545 }
1546
1547 int
1548 tty_wait(struct tty *tp, struct cv *cv)
1549 {
1550         int error;
1551         int revokecnt = tp->t_revokecnt;
1552
1553         tty_lock_assert(tp, MA_OWNED|MA_NOTRECURSED);
1554         MPASS(!tty_gone(tp));
1555
1556         error = cv_wait_sig(cv, tp->t_mtx);
1557
1558         /* Bail out when the device slipped away. */
1559         if (tty_gone(tp))
1560                 return (ENXIO);
1561
1562         /* Restart the system call when we may have been revoked. */
1563         if (tp->t_revokecnt != revokecnt)
1564                 return (ERESTART);
1565
1566         return (error);
1567 }
1568
1569 int
1570 tty_timedwait(struct tty *tp, struct cv *cv, int hz)
1571 {
1572         int error;
1573         int revokecnt = tp->t_revokecnt;
1574
1575         tty_lock_assert(tp, MA_OWNED|MA_NOTRECURSED);
1576         MPASS(!tty_gone(tp));
1577
1578         error = cv_timedwait_sig(cv, tp->t_mtx, hz);
1579
1580         /* Bail out when the device slipped away. */
1581         if (tty_gone(tp))
1582                 return (ENXIO);
1583
1584         /* Restart the system call when we may have been revoked. */
1585         if (tp->t_revokecnt != revokecnt)
1586                 return (ERESTART);
1587
1588         return (error);
1589 }
1590
1591 void
1592 tty_flush(struct tty *tp, int flags)
1593 {
1594
1595         if (flags & FWRITE) {
1596                 tp->t_flags &= ~TF_HIWAT_OUT;
1597                 ttyoutq_flush(&tp->t_outq);
1598                 tty_wakeup(tp, FWRITE);
1599                 if (!tty_gone(tp)) {
1600                         ttydevsw_outwakeup(tp);
1601                         ttydevsw_pktnotify(tp, TIOCPKT_FLUSHWRITE);
1602                 }
1603         }
1604         if (flags & FREAD) {
1605                 tty_hiwat_in_unblock(tp);
1606                 ttyinq_flush(&tp->t_inq);
1607                 tty_wakeup(tp, FREAD);
1608                 if (!tty_gone(tp)) {
1609                         ttydevsw_inwakeup(tp);
1610                         ttydevsw_pktnotify(tp, TIOCPKT_FLUSHREAD);
1611                 }
1612         }
1613 }
1614
1615 void
1616 tty_set_winsize(struct tty *tp, const struct winsize *wsz)
1617 {
1618
1619         if (memcmp(&tp->t_winsize, wsz, sizeof(*wsz)) == 0)
1620                 return;
1621         tp->t_winsize = *wsz;
1622         tty_signal_pgrp(tp, SIGWINCH);
1623 }
1624
1625 static int
1626 tty_generic_ioctl(struct tty *tp, u_long cmd, void *data, int fflag,
1627     struct thread *td)
1628 {
1629         int error;
1630
1631         switch (cmd) {
1632         /*
1633          * Modem commands.
1634          * The SER_* and TIOCM_* flags are the same, but one bit
1635          * shifted. I don't know why.
1636          */
1637         case TIOCSDTR:
1638                 ttydevsw_modem(tp, SER_DTR, 0);
1639                 return (0);
1640         case TIOCCDTR:
1641                 ttydevsw_modem(tp, 0, SER_DTR);
1642                 return (0);
1643         case TIOCMSET: {
1644                 int bits = *(int *)data;
1645                 ttydevsw_modem(tp,
1646                     (bits & (TIOCM_DTR | TIOCM_RTS)) >> 1,
1647                     ((~bits) & (TIOCM_DTR | TIOCM_RTS)) >> 1);
1648                 return (0);
1649         }
1650         case TIOCMBIS: {
1651                 int bits = *(int *)data;
1652                 ttydevsw_modem(tp, (bits & (TIOCM_DTR | TIOCM_RTS)) >> 1, 0);
1653                 return (0);
1654         }
1655         case TIOCMBIC: {
1656                 int bits = *(int *)data;
1657                 ttydevsw_modem(tp, 0, (bits & (TIOCM_DTR | TIOCM_RTS)) >> 1);
1658                 return (0);
1659         }
1660         case TIOCMGET:
1661                 *(int *)data = TIOCM_LE + (ttydevsw_modem(tp, 0, 0) << 1);
1662                 return (0);
1663
1664         case FIOASYNC:
1665                 if (*(int *)data)
1666                         tp->t_flags |= TF_ASYNC;
1667                 else
1668                         tp->t_flags &= ~TF_ASYNC;
1669                 return (0);
1670         case FIONBIO:
1671                 /* This device supports non-blocking operation. */
1672                 return (0);
1673         case FIONREAD:
1674                 *(int *)data = ttydisc_bytesavail(tp);
1675                 return (0);
1676         case FIONWRITE:
1677         case TIOCOUTQ:
1678                 *(int *)data = ttyoutq_bytesused(&tp->t_outq);
1679                 return (0);
1680         case FIOSETOWN:
1681                 if (tp->t_session != NULL && !tty_is_ctty(tp, td->td_proc))
1682                         /* Not allowed to set ownership. */
1683                         return (ENOTTY);
1684
1685                 /* Temporarily unlock the TTY to set ownership. */
1686                 tty_unlock(tp);
1687                 error = fsetown(*(int *)data, &tp->t_sigio);
1688                 tty_lock(tp);
1689                 return (error);
1690         case FIOGETOWN:
1691                 if (tp->t_session != NULL && !tty_is_ctty(tp, td->td_proc))
1692                         /* Not allowed to set ownership. */
1693                         return (ENOTTY);
1694
1695                 /* Get ownership. */
1696                 *(int *)data = fgetown(&tp->t_sigio);
1697                 return (0);
1698         case TIOCGETA:
1699                 /* Obtain terminal flags through tcgetattr(). */
1700                 *(struct termios*)data = tp->t_termios;
1701                 return (0);
1702         case TIOCSETA:
1703         case TIOCSETAW:
1704         case TIOCSETAF: {
1705                 struct termios *t = data;
1706                 bool canonicalize = false;
1707
1708                 /*
1709                  * Who makes up these funny rules? According to POSIX,
1710                  * input baud rate is set equal to the output baud rate
1711                  * when zero.
1712                  */
1713                 if (t->c_ispeed == 0)
1714                         t->c_ispeed = t->c_ospeed;
1715
1716                 /* Discard any unsupported bits. */
1717                 t->c_iflag &= TTYSUP_IFLAG;
1718                 t->c_oflag &= TTYSUP_OFLAG;
1719                 t->c_lflag &= TTYSUP_LFLAG;
1720                 t->c_cflag &= TTYSUP_CFLAG;
1721
1722                 /* Set terminal flags through tcsetattr(). */
1723                 if (cmd == TIOCSETAW || cmd == TIOCSETAF) {
1724                         error = tty_drain(tp, 0);
1725                         if (error)
1726                                 return (error);
1727                         if (cmd == TIOCSETAF)
1728                                 tty_flush(tp, FREAD);
1729                 }
1730
1731                 /*
1732                  * Only call param() when the flags really change.
1733                  */
1734                 if ((t->c_cflag & CIGNORE) == 0 &&
1735                     (tp->t_termios.c_cflag != t->c_cflag ||
1736                     ((tp->t_termios.c_iflag ^ t->c_iflag) &
1737                     (IXON|IXOFF|IXANY)) ||
1738                     tp->t_termios.c_ispeed != t->c_ispeed ||
1739                     tp->t_termios.c_ospeed != t->c_ospeed)) {
1740                         error = ttydevsw_param(tp, t);
1741                         if (error)
1742                                 return (error);
1743
1744                         /* XXX: CLOCAL? */
1745
1746                         tp->t_termios.c_cflag = t->c_cflag & ~CIGNORE;
1747                         tp->t_termios.c_ispeed = t->c_ispeed;
1748                         tp->t_termios.c_ospeed = t->c_ospeed;
1749
1750                         /* Baud rate has changed - update watermarks. */
1751                         error = tty_watermarks(tp);
1752                         if (error)
1753                                 return (error);
1754                 }
1755
1756                 /*
1757                  * We'll canonicalize any partial input if we're transitioning
1758                  * ICANON one way or the other.  If we're going from -ICANON ->
1759                  * ICANON, then in the worst case scenario we're in the middle
1760                  * of a line but both ttydisc_read() and FIONREAD will search
1761                  * for one of our line terminals.
1762                  */
1763                 if ((t->c_lflag & ICANON) != (tp->t_termios.c_lflag & ICANON))
1764                         canonicalize = true;
1765                 else if (tp->t_termios.c_cc[VEOF] != t->c_cc[VEOF] ||
1766                     tp->t_termios.c_cc[VEOL] != t->c_cc[VEOL])
1767                         canonicalize = true;
1768
1769                 /* Copy new non-device driver parameters. */
1770                 tp->t_termios.c_iflag = t->c_iflag;
1771                 tp->t_termios.c_oflag = t->c_oflag;
1772                 tp->t_termios.c_lflag = t->c_lflag;
1773                 memcpy(&tp->t_termios.c_cc, t->c_cc, sizeof t->c_cc);
1774
1775                 ttydisc_optimize(tp);
1776
1777                 if (canonicalize)
1778                         ttydisc_canonicalize(tp);
1779                 if ((t->c_lflag & ICANON) == 0) {
1780                         /*
1781                          * When in non-canonical mode, wake up all
1782                          * readers. Any partial input has already been
1783                          * canonicalized above if we were in canonical mode.
1784                          * VMIN and VTIME could also be adjusted.
1785                          */
1786                         tty_wakeup(tp, FREAD);
1787                 }
1788
1789                 /*
1790                  * For packet mode: notify the PTY consumer that VSTOP
1791                  * and VSTART may have been changed.
1792                  */
1793                 if (tp->t_termios.c_iflag & IXON &&
1794                     tp->t_termios.c_cc[VSTOP] == CTRL('S') &&
1795                     tp->t_termios.c_cc[VSTART] == CTRL('Q'))
1796                         ttydevsw_pktnotify(tp, TIOCPKT_DOSTOP);
1797                 else
1798                         ttydevsw_pktnotify(tp, TIOCPKT_NOSTOP);
1799                 return (0);
1800         }
1801         case TIOCGETD:
1802                 /* For compatibility - we only support TTYDISC. */
1803                 *(int *)data = TTYDISC;
1804                 return (0);
1805         case TIOCGPGRP:
1806                 if (!tty_is_ctty(tp, td->td_proc))
1807                         return (ENOTTY);
1808
1809                 if (tp->t_pgrp != NULL)
1810                         *(int *)data = tp->t_pgrp->pg_id;
1811                 else
1812                         *(int *)data = NO_PID;
1813                 return (0);
1814         case TIOCGSID:
1815                 if (!tty_is_ctty(tp, td->td_proc))
1816                         return (ENOTTY);
1817
1818                 MPASS(tp->t_session);
1819                 *(int *)data = tp->t_session->s_sid;
1820                 return (0);
1821         case TIOCNOTTY:
1822                 return (tty_drop_ctty(tp, td->td_proc));
1823         case TIOCSCTTY: {
1824                 struct proc *p = td->td_proc;
1825
1826                 /* XXX: This looks awful. */
1827                 tty_unlock(tp);
1828                 sx_xlock(&proctree_lock);
1829                 tty_lock(tp);
1830
1831                 if (!SESS_LEADER(p)) {
1832                         /* Only the session leader may do this. */
1833                         sx_xunlock(&proctree_lock);
1834                         return (EPERM);
1835                 }
1836
1837                 if (tp->t_session != NULL && tp->t_session == p->p_session) {
1838                         /* This is already our controlling TTY. */
1839                         sx_xunlock(&proctree_lock);
1840                         return (0);
1841                 }
1842
1843                 if (p->p_session->s_ttyp != NULL ||
1844                     (tp->t_session != NULL && tp->t_session->s_ttyvp != NULL &&
1845                     tp->t_session->s_ttyvp->v_type != VBAD)) {
1846                         /*
1847                          * There is already a relation between a TTY and
1848                          * a session, or the caller is not the session
1849                          * leader.
1850                          *
1851                          * Allow the TTY to be stolen when the vnode is
1852                          * invalid, but the reference to the TTY is
1853                          * still active.  This allows immediate reuse of
1854                          * TTYs of which the session leader has been
1855                          * killed or the TTY revoked.
1856                          */
1857                         sx_xunlock(&proctree_lock);
1858                         return (EPERM);
1859                 }
1860
1861                 /* Connect the session to the TTY. */
1862                 tp->t_session = p->p_session;
1863                 tp->t_session->s_ttyp = tp;
1864                 tp->t_sessioncnt++;
1865
1866                 /* Assign foreground process group. */
1867                 tp->t_pgrp = p->p_pgrp;
1868                 PROC_LOCK(p);
1869                 p->p_flag |= P_CONTROLT;
1870                 PROC_UNLOCK(p);
1871
1872                 sx_xunlock(&proctree_lock);
1873                 return (0);
1874         }
1875         case TIOCSPGRP: {
1876                 struct pgrp *pg;
1877
1878                 /*
1879                  * XXX: Temporarily unlock the TTY to locate the process
1880                  * group. This code would be lot nicer if we would ever
1881                  * decompose proctree_lock.
1882                  */
1883                 tty_unlock(tp);
1884                 sx_slock(&proctree_lock);
1885                 pg = pgfind(*(int *)data);
1886                 if (pg != NULL)
1887                         PGRP_UNLOCK(pg);
1888                 if (pg == NULL || pg->pg_session != td->td_proc->p_session) {
1889                         sx_sunlock(&proctree_lock);
1890                         tty_lock(tp);
1891                         return (EPERM);
1892                 }
1893                 tty_lock(tp);
1894
1895                 /*
1896                  * Determine if this TTY is the controlling TTY after
1897                  * relocking the TTY.
1898                  */
1899                 if (!tty_is_ctty(tp, td->td_proc)) {
1900                         sx_sunlock(&proctree_lock);
1901                         return (ENOTTY);
1902                 }
1903                 tp->t_pgrp = pg;
1904                 sx_sunlock(&proctree_lock);
1905
1906                 /* Wake up the background process groups. */
1907                 cv_broadcast(&tp->t_bgwait);
1908                 return (0);
1909         }
1910         case TIOCFLUSH: {
1911                 int flags = *(int *)data;
1912
1913                 if (flags == 0)
1914                         flags = (FREAD|FWRITE);
1915                 else
1916                         flags &= (FREAD|FWRITE);
1917                 tty_flush(tp, flags);
1918                 return (0);
1919         }
1920         case TIOCDRAIN:
1921                 /* Drain TTY output. */
1922                 return tty_drain(tp, 0);
1923         case TIOCGDRAINWAIT:
1924                 *(int *)data = tp->t_drainwait;
1925                 return (0);
1926         case TIOCSDRAINWAIT:
1927                 error = priv_check(td, PRIV_TTY_DRAINWAIT);
1928                 if (error == 0)
1929                         tp->t_drainwait = *(int *)data;
1930                 return (error);
1931         case TIOCCONS:
1932                 /* Set terminal as console TTY. */
1933                 if (*(int *)data) {
1934                         error = priv_check(td, PRIV_TTY_CONSOLE);
1935                         if (error)
1936                                 return (error);
1937                         error = constty_set(tp);
1938                 } else {
1939                         error = constty_clear(tp);
1940                 }
1941                 return (error);
1942         case TIOCGWINSZ:
1943                 /* Obtain window size. */
1944                 *(struct winsize*)data = tp->t_winsize;
1945                 return (0);
1946         case TIOCSWINSZ:
1947                 /* Set window size. */
1948                 tty_set_winsize(tp, data);
1949                 return (0);
1950         case TIOCEXCL:
1951                 tp->t_flags |= TF_EXCLUDE;
1952                 return (0);
1953         case TIOCNXCL:
1954                 tp->t_flags &= ~TF_EXCLUDE;
1955                 return (0);
1956         case TIOCSTOP:
1957                 tp->t_flags |= TF_STOPPED;
1958                 ttydevsw_pktnotify(tp, TIOCPKT_STOP);
1959                 return (0);
1960         case TIOCSTART:
1961                 tp->t_flags &= ~TF_STOPPED;
1962                 tp->t_termios.c_lflag &= ~FLUSHO;
1963                 ttydevsw_outwakeup(tp);
1964                 ttydevsw_pktnotify(tp, TIOCPKT_START);
1965                 return (0);
1966         case TIOCSTAT:
1967                 tty_info(tp);
1968                 return (0);
1969         case TIOCSTI:
1970                 if ((fflag & FREAD) == 0 && priv_check(td, PRIV_TTY_STI))
1971                         return (EPERM);
1972                 if (!tty_is_ctty(tp, td->td_proc) &&
1973                     priv_check(td, PRIV_TTY_STI))
1974                         return (EACCES);
1975                 ttydisc_rint(tp, *(char *)data, 0);
1976                 ttydisc_rint_done(tp);
1977                 return (0);
1978         }
1979
1980 #ifdef COMPAT_43TTY
1981         return tty_ioctl_compat(tp, cmd, data, fflag, td);
1982 #else /* !COMPAT_43TTY */
1983         return (ENOIOCTL);
1984 #endif /* COMPAT_43TTY */
1985 }
1986
1987 int
1988 tty_ioctl(struct tty *tp, u_long cmd, void *data, int fflag, struct thread *td)
1989 {
1990         int error;
1991
1992         tty_assert_locked(tp);
1993
1994         if (tty_gone(tp))
1995                 return (ENXIO);
1996
1997         error = ttydevsw_ioctl(tp, cmd, data, td);
1998         if (error == ENOIOCTL)
1999                 error = tty_generic_ioctl(tp, cmd, data, fflag, td);
2000
2001         return (error);
2002 }
2003
2004 dev_t
2005 tty_udev(struct tty *tp)
2006 {
2007
2008         if (tp->t_dev)
2009                 return (dev2udev(tp->t_dev));
2010         else
2011                 return (NODEV);
2012 }
2013
2014 int
2015 tty_checkoutq(struct tty *tp)
2016 {
2017
2018         /* 256 bytes should be enough to print a log message. */
2019         return (ttyoutq_bytesleft(&tp->t_outq) >= 256);
2020 }
2021
2022 void
2023 tty_hiwat_in_block(struct tty *tp)
2024 {
2025
2026         if ((tp->t_flags & TF_HIWAT_IN) == 0 &&
2027             tp->t_termios.c_iflag & IXOFF &&
2028             tp->t_termios.c_cc[VSTOP] != _POSIX_VDISABLE) {
2029                 /*
2030                  * Input flow control. Only enter the high watermark when we
2031                  * can successfully store the VSTOP character.
2032                  */
2033                 if (ttyoutq_write_nofrag(&tp->t_outq,
2034                     &tp->t_termios.c_cc[VSTOP], 1) == 0)
2035                         tp->t_flags |= TF_HIWAT_IN;
2036         } else {
2037                 /* No input flow control. */
2038                 tp->t_flags |= TF_HIWAT_IN;
2039         }
2040 }
2041
2042 void
2043 tty_hiwat_in_unblock(struct tty *tp)
2044 {
2045
2046         if (tp->t_flags & TF_HIWAT_IN &&
2047             tp->t_termios.c_iflag & IXOFF &&
2048             tp->t_termios.c_cc[VSTART] != _POSIX_VDISABLE) {
2049                 /*
2050                  * Input flow control. Only leave the high watermark when we
2051                  * can successfully store the VSTART character.
2052                  */
2053                 if (ttyoutq_write_nofrag(&tp->t_outq,
2054                     &tp->t_termios.c_cc[VSTART], 1) == 0)
2055                         tp->t_flags &= ~TF_HIWAT_IN;
2056         } else {
2057                 /* No input flow control. */
2058                 tp->t_flags &= ~TF_HIWAT_IN;
2059         }
2060
2061         if (!tty_gone(tp))
2062                 ttydevsw_inwakeup(tp);
2063 }
2064
2065 /*
2066  * TTY hooks interface.
2067  */
2068
2069 static int
2070 ttyhook_defrint(struct tty *tp, char c, int flags)
2071 {
2072
2073         if (ttyhook_rint_bypass(tp, &c, 1) != 1)
2074                 return (-1);
2075
2076         return (0);
2077 }
2078
2079 int
2080 ttyhook_register(struct tty **rtp, struct proc *p, int fd, struct ttyhook *th,
2081     void *softc)
2082 {
2083         struct tty *tp;
2084         struct file *fp;
2085         struct cdev *dev;
2086         struct cdevsw *cdp;
2087         struct filedesc *fdp;
2088         cap_rights_t rights;
2089         int error, ref;
2090
2091         /* Validate the file descriptor. */
2092         fdp = p->p_fd;
2093         error = fget_unlocked(fdp, fd, cap_rights_init_one(&rights, CAP_TTYHOOK),
2094             &fp);
2095         if (error != 0)
2096                 return (error);
2097         if (fp->f_ops == &badfileops) {
2098                 error = EBADF;
2099                 goto done1;
2100         }
2101
2102         /*
2103          * Make sure the vnode is bound to a character device.
2104          * Unlocked check for the vnode type is ok there, because we
2105          * only shall prevent calling devvn_refthread on the file that
2106          * never has been opened over a character device.
2107          */
2108         if (fp->f_type != DTYPE_VNODE || fp->f_vnode->v_type != VCHR) {
2109                 error = EINVAL;
2110                 goto done1;
2111         }
2112
2113         /* Make sure it is a TTY. */
2114         cdp = devvn_refthread(fp->f_vnode, &dev, &ref);
2115         if (cdp == NULL) {
2116                 error = ENXIO;
2117                 goto done1;
2118         }
2119         if (dev != fp->f_data) {
2120                 error = ENXIO;
2121                 goto done2;
2122         }
2123         if (cdp != &ttydev_cdevsw) {
2124                 error = ENOTTY;
2125                 goto done2;
2126         }
2127         tp = dev->si_drv1;
2128
2129         /* Try to attach the hook to the TTY. */
2130         error = EBUSY;
2131         tty_lock(tp);
2132         MPASS((tp->t_hook == NULL) == ((tp->t_flags & TF_HOOK) == 0));
2133         if (tp->t_flags & TF_HOOK)
2134                 goto done3;
2135
2136         tp->t_flags |= TF_HOOK;
2137         tp->t_hook = th;
2138         tp->t_hooksoftc = softc;
2139         *rtp = tp;
2140         error = 0;
2141
2142         /* Maybe we can switch into bypass mode now. */
2143         ttydisc_optimize(tp);
2144
2145         /* Silently convert rint() calls to rint_bypass() when possible. */
2146         if (!ttyhook_hashook(tp, rint) && ttyhook_hashook(tp, rint_bypass))
2147                 th->th_rint = ttyhook_defrint;
2148
2149 done3:  tty_unlock(tp);
2150 done2:  dev_relthread(dev, ref);
2151 done1:  fdrop(fp, curthread);
2152         return (error);
2153 }
2154
2155 void
2156 ttyhook_unregister(struct tty *tp)
2157 {
2158
2159         tty_assert_locked(tp);
2160         MPASS(tp->t_flags & TF_HOOK);
2161
2162         /* Disconnect the hook. */
2163         tp->t_flags &= ~TF_HOOK;
2164         tp->t_hook = NULL;
2165
2166         /* Maybe we need to leave bypass mode. */
2167         ttydisc_optimize(tp);
2168
2169         /* Maybe deallocate the TTY as well. */
2170         tty_rel_free(tp);
2171 }
2172
2173 /*
2174  * /dev/console handling.
2175  */
2176
2177 static int
2178 ttyconsdev_open(struct cdev *dev, int oflags, int devtype, struct thread *td)
2179 {
2180         struct tty *tp;
2181
2182         /* System has no console device. */
2183         if (dev_console_filename == NULL)
2184                 return (ENXIO);
2185
2186         /* Look up corresponding TTY by device name. */
2187         sx_slock(&tty_list_sx);
2188         TAILQ_FOREACH(tp, &tty_list, t_list) {
2189                 if (strcmp(dev_console_filename, tty_devname(tp)) == 0) {
2190                         dev_console->si_drv1 = tp;
2191                         break;
2192                 }
2193         }
2194         sx_sunlock(&tty_list_sx);
2195
2196         /* System console has no TTY associated. */
2197         if (dev_console->si_drv1 == NULL)
2198                 return (ENXIO);
2199
2200         return (ttydev_open(dev, oflags, devtype, td));
2201 }
2202
2203 static int
2204 ttyconsdev_write(struct cdev *dev, struct uio *uio, int ioflag)
2205 {
2206
2207         log_console(uio);
2208
2209         return (ttydev_write(dev, uio, ioflag));
2210 }
2211
2212 /*
2213  * /dev/console is a little different than normal TTY's.  When opened,
2214  * it determines which TTY to use.  When data gets written to it, it
2215  * will be logged in the kernel message buffer.
2216  */
2217 static struct cdevsw ttyconsdev_cdevsw = {
2218         .d_version      = D_VERSION,
2219         .d_open         = ttyconsdev_open,
2220         .d_close        = ttydev_close,
2221         .d_read         = ttydev_read,
2222         .d_write        = ttyconsdev_write,
2223         .d_ioctl        = ttydev_ioctl,
2224         .d_kqfilter     = ttydev_kqfilter,
2225         .d_poll         = ttydev_poll,
2226         .d_mmap         = ttydev_mmap,
2227         .d_name         = "ttyconsdev",
2228         .d_flags        = D_TTY,
2229 };
2230
2231 static void
2232 ttyconsdev_init(void *unused __unused)
2233 {
2234
2235         dev_console = make_dev_credf(MAKEDEV_ETERNAL, &ttyconsdev_cdevsw, 0,
2236             NULL, UID_ROOT, GID_WHEEL, 0600, "console");
2237 }
2238
2239 SYSINIT(tty, SI_SUB_DRIVERS, SI_ORDER_FIRST, ttyconsdev_init, NULL);
2240
2241 void
2242 ttyconsdev_select(const char *name)
2243 {
2244
2245         dev_console_filename = name;
2246 }
2247
2248 /*
2249  * Debugging routines.
2250  */
2251
2252 #include "opt_ddb.h"
2253 #ifdef DDB
2254 #include <ddb/ddb.h>
2255 #include <ddb/db_sym.h>
2256
2257 static const struct {
2258         int flag;
2259         char val;
2260 } ttystates[] = {
2261 #if 0
2262         { TF_NOPREFIX,          'N' },
2263 #endif
2264         { TF_INITLOCK,          'I' },
2265         { TF_CALLOUT,           'C' },
2266
2267         /* Keep these together -> 'Oi' and 'Oo'. */
2268         { TF_OPENED,            'O' },
2269         { TF_OPENED_IN,         'i' },
2270         { TF_OPENED_OUT,        'o' },
2271         { TF_OPENED_CONS,       'c' },
2272
2273         { TF_GONE,              'G' },
2274         { TF_OPENCLOSE,         'B' },
2275         { TF_ASYNC,             'Y' },
2276         { TF_LITERAL,           'L' },
2277
2278         /* Keep these together -> 'Hi' and 'Ho'. */
2279         { TF_HIWAT,             'H' },
2280         { TF_HIWAT_IN,          'i' },
2281         { TF_HIWAT_OUT,         'o' },
2282
2283         { TF_STOPPED,           'S' },
2284         { TF_EXCLUDE,           'X' },
2285         { TF_BYPASS,            'l' },
2286         { TF_ZOMBIE,            'Z' },
2287         { TF_HOOK,              's' },
2288
2289         /* Keep these together -> 'bi' and 'bo'. */
2290         { TF_BUSY,              'b' },
2291         { TF_BUSY_IN,           'i' },
2292         { TF_BUSY_OUT,          'o' },
2293
2294         { 0,                    '\0'},
2295 };
2296
2297 #define TTY_FLAG_BITS \
2298         "\20\1NOPREFIX\2INITLOCK\3CALLOUT\4OPENED_IN" \
2299         "\5OPENED_OUT\6OPENED_CONS\7GONE\10OPENCLOSE" \
2300         "\11ASYNC\12LITERAL\13HIWAT_IN\14HIWAT_OUT" \
2301         "\15STOPPED\16EXCLUDE\17BYPASS\20ZOMBIE" \
2302         "\21HOOK\22BUSY_IN\23BUSY_OUT"
2303
2304 #define DB_PRINTSYM(name, addr) \
2305         db_printf("%s  " #name ": ", sep); \
2306         db_printsym((db_addr_t) addr, DB_STGY_ANY); \
2307         db_printf("\n");
2308
2309 static void
2310 _db_show_devsw(const char *sep, const struct ttydevsw *tsw)
2311 {
2312
2313         db_printf("%sdevsw: ", sep);
2314         db_printsym((db_addr_t)tsw, DB_STGY_ANY);
2315         db_printf(" (%p)\n", tsw);
2316         DB_PRINTSYM(open, tsw->tsw_open);
2317         DB_PRINTSYM(close, tsw->tsw_close);
2318         DB_PRINTSYM(outwakeup, tsw->tsw_outwakeup);
2319         DB_PRINTSYM(inwakeup, tsw->tsw_inwakeup);
2320         DB_PRINTSYM(ioctl, tsw->tsw_ioctl);
2321         DB_PRINTSYM(param, tsw->tsw_param);
2322         DB_PRINTSYM(modem, tsw->tsw_modem);
2323         DB_PRINTSYM(mmap, tsw->tsw_mmap);
2324         DB_PRINTSYM(pktnotify, tsw->tsw_pktnotify);
2325         DB_PRINTSYM(free, tsw->tsw_free);
2326 }
2327
2328 static void
2329 _db_show_hooks(const char *sep, const struct ttyhook *th)
2330 {
2331
2332         db_printf("%shook: ", sep);
2333         db_printsym((db_addr_t)th, DB_STGY_ANY);
2334         db_printf(" (%p)\n", th);
2335         if (th == NULL)
2336                 return;
2337         DB_PRINTSYM(rint, th->th_rint);
2338         DB_PRINTSYM(rint_bypass, th->th_rint_bypass);
2339         DB_PRINTSYM(rint_done, th->th_rint_done);
2340         DB_PRINTSYM(rint_poll, th->th_rint_poll);
2341         DB_PRINTSYM(getc_inject, th->th_getc_inject);
2342         DB_PRINTSYM(getc_capture, th->th_getc_capture);
2343         DB_PRINTSYM(getc_poll, th->th_getc_poll);
2344         DB_PRINTSYM(close, th->th_close);
2345 }
2346
2347 static void
2348 _db_show_termios(const char *name, const struct termios *t)
2349 {
2350
2351         db_printf("%s: iflag 0x%x oflag 0x%x cflag 0x%x "
2352             "lflag 0x%x ispeed %u ospeed %u\n", name,
2353             t->c_iflag, t->c_oflag, t->c_cflag, t->c_lflag,
2354             t->c_ispeed, t->c_ospeed);
2355 }
2356
2357 /* DDB command to show TTY statistics. */
2358 DB_SHOW_COMMAND(tty, db_show_tty)
2359 {
2360         struct tty *tp;
2361
2362         if (!have_addr) {
2363                 db_printf("usage: show tty <addr>\n");
2364                 return;
2365         }
2366         tp = (struct tty *)addr;
2367
2368         db_printf("%p: %s\n", tp, tty_devname(tp));
2369         db_printf("\tmtx: %p\n", tp->t_mtx);
2370         db_printf("\tflags: 0x%b\n", tp->t_flags, TTY_FLAG_BITS);
2371         db_printf("\trevokecnt: %u\n", tp->t_revokecnt);
2372
2373         /* Buffering mechanisms. */
2374         db_printf("\tinq: %p begin %u linestart %u reprint %u end %u "
2375             "nblocks %u quota %u\n", &tp->t_inq, tp->t_inq.ti_begin,
2376             tp->t_inq.ti_linestart, tp->t_inq.ti_reprint, tp->t_inq.ti_end,
2377             tp->t_inq.ti_nblocks, tp->t_inq.ti_quota);
2378         db_printf("\toutq: %p begin %u end %u nblocks %u quota %u\n",
2379             &tp->t_outq, tp->t_outq.to_begin, tp->t_outq.to_end,
2380             tp->t_outq.to_nblocks, tp->t_outq.to_quota);
2381         db_printf("\tinlow: %zu\n", tp->t_inlow);
2382         db_printf("\toutlow: %zu\n", tp->t_outlow);
2383         _db_show_termios("\ttermios", &tp->t_termios);
2384         db_printf("\twinsize: row %u col %u xpixel %u ypixel %u\n",
2385             tp->t_winsize.ws_row, tp->t_winsize.ws_col,
2386             tp->t_winsize.ws_xpixel, tp->t_winsize.ws_ypixel);
2387         db_printf("\tcolumn: %u\n", tp->t_column);
2388         db_printf("\twritepos: %u\n", tp->t_writepos);
2389         db_printf("\tcompatflags: 0x%x\n", tp->t_compatflags);
2390
2391         /* Init/lock-state devices. */
2392         _db_show_termios("\ttermios_init_in", &tp->t_termios_init_in);
2393         _db_show_termios("\ttermios_init_out", &tp->t_termios_init_out);
2394         _db_show_termios("\ttermios_lock_in", &tp->t_termios_lock_in);
2395         _db_show_termios("\ttermios_lock_out", &tp->t_termios_lock_out);
2396
2397         /* Hooks */
2398         _db_show_devsw("\t", tp->t_devsw);
2399         _db_show_hooks("\t", tp->t_hook);
2400
2401         /* Process info. */
2402         db_printf("\tpgrp: %p gid %d\n", tp->t_pgrp,
2403             tp->t_pgrp ? tp->t_pgrp->pg_id : 0);
2404         db_printf("\tsession: %p", tp->t_session);
2405         if (tp->t_session != NULL)
2406             db_printf(" count %u leader %p tty %p sid %d login %s",
2407                 tp->t_session->s_count, tp->t_session->s_leader,
2408                 tp->t_session->s_ttyp, tp->t_session->s_sid,
2409                 tp->t_session->s_login);
2410         db_printf("\n");
2411         db_printf("\tsessioncnt: %u\n", tp->t_sessioncnt);
2412         db_printf("\tdevswsoftc: %p\n", tp->t_devswsoftc);
2413         db_printf("\thooksoftc: %p\n", tp->t_hooksoftc);
2414         db_printf("\tdev: %p\n", tp->t_dev);
2415 }
2416
2417 /* DDB command to list TTYs. */
2418 DB_SHOW_ALL_COMMAND(ttys, db_show_all_ttys)
2419 {
2420         struct tty *tp;
2421         size_t isiz, osiz;
2422         int i, j;
2423
2424         /* Make the output look like `pstat -t'. */
2425         db_printf("PTR        ");
2426 #if defined(__LP64__)
2427         db_printf("        ");
2428 #endif
2429         db_printf("      LINE   INQ  CAN  LIN  LOW  OUTQ  USE  LOW   "
2430             "COL  SESS  PGID STATE\n");
2431
2432         TAILQ_FOREACH(tp, &tty_list, t_list) {
2433                 isiz = tp->t_inq.ti_nblocks * TTYINQ_DATASIZE;
2434                 osiz = tp->t_outq.to_nblocks * TTYOUTQ_DATASIZE;
2435
2436                 db_printf("%p %10s %5zu %4u %4u %4zu %5zu %4u %4zu %5u %5d "
2437                     "%5d ", tp, tty_devname(tp), isiz,
2438                     tp->t_inq.ti_linestart - tp->t_inq.ti_begin,
2439                     tp->t_inq.ti_end - tp->t_inq.ti_linestart,
2440                     isiz - tp->t_inlow, osiz,
2441                     tp->t_outq.to_end - tp->t_outq.to_begin,
2442                     osiz - tp->t_outlow, MIN(tp->t_column, 99999),
2443                     tp->t_session ? tp->t_session->s_sid : 0,
2444                     tp->t_pgrp ? tp->t_pgrp->pg_id : 0);
2445
2446                 /* Flag bits. */
2447                 for (i = j = 0; ttystates[i].flag; i++)
2448                         if (tp->t_flags & ttystates[i].flag) {
2449                                 db_printf("%c", ttystates[i].val);
2450                                 j++;
2451                         }
2452                 if (j == 0)
2453                         db_printf("-");
2454                 db_printf("\n");
2455         }
2456 }
2457 #endif /* DDB */