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60 * @(#)tty_pty.c 8.4 (Berkeley) 2/20/95
64 * Pseudo-teletype Driver
65 * (Actually two drivers, requiring two entries in 'cdevsw')
67 #include "pty.h" /* XXX */
69 #include <sys/param.h>
70 #include <sys/systm.h>
71 #include <sys/ioctl.h>
72 #include <sys/proc_internal.h>
73 #include <sys/kauth.h>
76 #include <sys/file_internal.h>
77 #include <sys/uio_internal.h>
78 #include <sys/kernel.h>
79 #include <sys/vnode.h>
81 #include <sys/signalvar.h>
82 #include <sys/sysctl.h>
83 #include <miscfs/devfs/devfs.h>
84 #include <miscfs/devfs/devfsdefs.h> /* DEVFS_LOCK()/DEVFS_UNLOCK() */
85 #include <libkern/section_keywords.h>
88 #include <security/mac_framework.h>
94 * Forward declarations
96 int ptmx_init(int n_ptys
);
97 static struct ptmx_ioctl
*ptmx_get_ioctl(int minor
, int open_flag
);
98 static int ptmx_free_ioctl(int minor
, int open_flag
);
99 static int ptmx_get_name(int minor
, char *buffer
, size_t size
);
100 static void ptsd_revoke_knotes(int minor
, struct tty
*tp
);
102 extern d_open_t ptsopen
;
103 extern d_close_t ptsclose
;
104 extern d_read_t ptsread
;
105 extern d_write_t ptswrite
;
106 extern d_ioctl_t ptyioctl
;
107 extern d_stop_t ptsstop
;
108 extern d_reset_t ptsreset
;
109 extern d_select_t ptsselect
;
111 extern d_open_t ptcopen
;
112 extern d_close_t ptcclose
;
113 extern d_read_t ptcread
;
114 extern d_write_t ptcwrite
;
115 extern d_stop_t ptcstop
;
116 extern d_reset_t ptcreset
;
117 extern d_select_t ptcselect
;
119 static int ptmx_major
; /* dynamically assigned major number */
120 static struct cdevsw ptmx_cdev
= {
129 .d_select
= ptcselect
,
131 .d_strategy
= eno_strat
,
132 .d_reserved_1
= eno_getc
,
133 .d_reserved_2
= eno_putc
,
137 static int ptsd_major
; /* dynamically assigned major number */
138 static struct cdevsw ptsd_cdev
= {
147 .d_select
= ptsselect
,
149 .d_strategy
= eno_strat
,
150 .d_reserved_1
= eno_getc
,
151 .d_reserved_2
= eno_putc
,
157 * ptsd == /dev/pts[0123456789]{3}
159 #define PTMX_TEMPLATE "ptmx"
160 #define PTSD_TEMPLATE "ttys%03d"
163 * System-wide limit on the max number of cloned ptys
165 #define PTMX_MAX_DEFAULT 511 /* 512 entries */
166 #define PTMX_MAX_HARD 999 /* 1000 entries, due to PTSD_TEMPLATE */
168 static int ptmx_max
= PTMX_MAX_DEFAULT
; /* default # of clones we allow */
170 /* Range enforcement for the sysctl */
172 sysctl_ptmx_max(__unused
struct sysctl_oid
*oidp
, __unused
void *arg1
,
173 __unused
int arg2
, struct sysctl_req
*req
)
175 int new_value
, changed
;
176 int error
= sysctl_io_number(req
, ptmx_max
, sizeof(int), &new_value
, &changed
);
178 if (new_value
> 0 && new_value
<= PTMX_MAX_HARD
) {
179 ptmx_max
= new_value
;
187 SYSCTL_NODE(_kern
, KERN_TTY
, tty
, CTLFLAG_RW
| CTLFLAG_LOCKED
, 0, "TTY");
188 SYSCTL_PROC(_kern_tty
, OID_AUTO
, ptmx_max
,
189 CTLTYPE_INT
| CTLFLAG_RW
| CTLFLAG_LOCKED
,
190 &ptmx_max
, 0, &sysctl_ptmx_max
, "I", "ptmx_max");
192 static int ptmx_clone(dev_t dev
, int minor
);
194 static struct tty_dev_t _ptmx_driver
;
197 ptmx_init( __unused
int config_count
)
200 * We start looking at slot 10, since there are inits that will
201 * stomp explicit slots (e.g. vndevice stomps 1) below that.
204 /* Get a major number for /dev/ptmx */
205 if ((ptmx_major
= cdevsw_add(-15, &ptmx_cdev
)) == -1) {
206 printf("ptmx_init: failed to obtain /dev/ptmx major number\n");
210 if (cdevsw_setkqueueok(ptmx_major
, &ptmx_cdev
, CDEVSW_IS_PTC
) == -1) {
211 panic("Failed to set flags on ptmx cdevsw entry.");
214 /* Get a major number for /dev/pts/nnn */
215 if ((ptsd_major
= cdevsw_add(-15, &ptsd_cdev
)) == -1) {
216 (void)cdevsw_remove(ptmx_major
, &ptmx_cdev
);
217 printf("ptmx_init: failed to obtain /dev/ptmx major number\n");
221 if (cdevsw_setkqueueok(ptsd_major
, &ptsd_cdev
, CDEVSW_IS_PTS
) == -1) {
222 panic("Failed to set flags on ptmx cdevsw entry.");
225 /* Create the /dev/ptmx device {<major>,0} */
226 (void)devfs_make_node_clone(makedev(ptmx_major
, 0),
227 DEVFS_CHAR
, UID_ROOT
, GID_TTY
, 0666,
228 ptmx_clone
, PTMX_TEMPLATE
);
230 _ptmx_driver
.master
= ptmx_major
;
231 _ptmx_driver
.slave
= ptsd_major
;
232 _ptmx_driver
.fix_7828447
= 1;
233 _ptmx_driver
.fix_7070978
= 1;
235 _ptmx_driver
.mac_notify
= 1;
237 _ptmx_driver
.open
= &ptmx_get_ioctl
;
238 _ptmx_driver
.free
= &ptmx_free_ioctl
;
239 _ptmx_driver
.name
= &ptmx_get_name
;
240 _ptmx_driver
.revoke
= &ptsd_revoke_knotes
;
241 tty_dev_register(&_ptmx_driver
);
247 static struct _ptmx_ioctl_state
{
248 struct ptmx_ioctl
**pis_ioctl_list
; /* pointer vector */
249 int pis_total
; /* total slots */
250 int pis_free
; /* free slots */
252 #define PTMX_GROW_VECTOR 16 /* Grow by this many slots at a time */
255 * Given a minor number, return the corresponding structure for that minor
256 * number. If there isn't one, and the create flag is specified, we create
259 * Parameters: minor Minor number of ptmx device
260 * open_flag PF_OPEN_M First open of master
261 * PF_OPEN_S First open of slave
262 * 0 Just want ioctl struct
264 * Returns: NULL Did not exist/could not create
265 * !NULL structure corresponding minor number
267 * Locks: tty_lock() on ptmx_ioctl->pt_tty NOT held on entry or exit.
269 static struct ptmx_ioctl
*
270 ptmx_get_ioctl(int minor
, int open_flag
)
272 struct ptmx_ioctl
*new_ptmx_ioctl
;
274 if (open_flag
& PF_OPEN_M
) {
276 * If we are about to allocate more memory, but we have
277 * already hit the administrative limit, then fail the
280 * Note: Subtract free from total when making this
281 * check to allow unit increments, rather than
282 * snapping to the nearest PTMX_GROW_VECTOR...
284 if ((_state
.pis_total
- _state
.pis_free
) >= ptmx_max
) {
288 MALLOC(new_ptmx_ioctl
, struct ptmx_ioctl
*, sizeof(struct ptmx_ioctl
), M_TTYS
, M_WAITOK
| M_ZERO
);
289 if (new_ptmx_ioctl
== NULL
) {
293 if ((new_ptmx_ioctl
->pt_tty
= ttymalloc()) == NULL
) {
294 FREE(new_ptmx_ioctl
, M_TTYS
);
299 * Hold the DEVFS_LOCK() over this whole operation; devfs
300 * itself does this over malloc/free as well, so this should
301 * be safe to do. We hold it longer than we want to, but
302 * doing so avoids a reallocation race on the minor number.
305 /* Need to allocate a larger vector? */
306 if (_state
.pis_free
== 0) {
307 struct ptmx_ioctl
**new_pis_ioctl_list
;
308 struct ptmx_ioctl
**old_pis_ioctl_list
= NULL
;
311 MALLOC(new_pis_ioctl_list
, struct ptmx_ioctl
**, sizeof(struct ptmx_ioctl
*) * (_state
.pis_total
+ PTMX_GROW_VECTOR
), M_TTYS
, M_WAITOK
| M_ZERO
);
312 if (new_pis_ioctl_list
== NULL
) {
313 ttyfree(new_ptmx_ioctl
->pt_tty
);
315 FREE(new_ptmx_ioctl
, M_TTYS
);
319 /* If this is not the first time, copy the old over */
320 bcopy(_state
.pis_ioctl_list
, new_pis_ioctl_list
, sizeof(struct ptmx_ioctl
*) * _state
.pis_total
);
321 old_pis_ioctl_list
= _state
.pis_ioctl_list
;
322 _state
.pis_ioctl_list
= new_pis_ioctl_list
;
323 _state
.pis_free
+= PTMX_GROW_VECTOR
;
324 _state
.pis_total
+= PTMX_GROW_VECTOR
;
325 if (old_pis_ioctl_list
) {
326 FREE(old_pis_ioctl_list
, M_TTYS
);
330 /* is minor in range now? */
331 if (minor
< 0 || minor
>= _state
.pis_total
) {
332 ttyfree(new_ptmx_ioctl
->pt_tty
);
334 FREE(new_ptmx_ioctl
, M_TTYS
);
338 if (_state
.pis_ioctl_list
[minor
] != NULL
) {
339 ttyfree(new_ptmx_ioctl
->pt_tty
);
341 FREE(new_ptmx_ioctl
, M_TTYS
);
343 /* Special error value so we know to redrive the open, we've been raced */
344 return (struct ptmx_ioctl
*)-1;
347 /* Vector is large enough; grab a new ptmx_ioctl */
349 /* Now grab a free slot... */
350 _state
.pis_ioctl_list
[minor
] = new_ptmx_ioctl
;
352 /* reduce free count */
355 _state
.pis_ioctl_list
[minor
]->pt_flags
|= PF_OPEN_M
;
358 /* Create the /dev/ttysXXX device {<major>,XXX} */
359 _state
.pis_ioctl_list
[minor
]->pt_devhandle
= devfs_make_node(
360 makedev(ptsd_major
, minor
),
361 DEVFS_CHAR
, UID_ROOT
, GID_TTY
, 0620,
362 PTSD_TEMPLATE
, minor
);
363 if (_state
.pis_ioctl_list
[minor
]->pt_devhandle
== NULL
) {
364 printf("devfs_make_node() call failed for ptmx_get_ioctl()!!!!\n");
368 if (minor
< 0 || minor
>= _state
.pis_total
) {
372 return _state
.pis_ioctl_list
[minor
];
376 * Locks: tty_lock() of old_ptmx_ioctl->pt_tty NOT held for this call.
379 ptmx_free_ioctl(int minor
, int open_flag
)
381 struct ptmx_ioctl
*old_ptmx_ioctl
= NULL
;
385 if (minor
< 0 || minor
>= _state
.pis_total
) {
390 _state
.pis_ioctl_list
[minor
]->pt_flags
&= ~(open_flag
);
393 * Was this the last close? We will recognize it because we only get
394 * a notification on the last close of a device, and we will have
395 * cleared both the master and the slave open bits in the flags.
397 if (!(_state
.pis_ioctl_list
[minor
]->pt_flags
& (PF_OPEN_M
| PF_OPEN_S
))) {
398 /* Mark as free so it can be reallocated later */
399 old_ptmx_ioctl
= _state
.pis_ioctl_list
[minor
];
400 _state
.pis_ioctl_list
[minor
] = NULL
;
405 /* Free old after dropping lock */
406 if (old_ptmx_ioctl
!= NULL
) {
408 * XXX See <rdar://5348651> and <rdar://4854638>
410 * XXX Conditional to be removed when/if tty/pty reference
411 * XXX counting and mutex implemented.
413 if (old_ptmx_ioctl
->pt_devhandle
!= NULL
) {
414 devfs_remove(old_ptmx_ioctl
->pt_devhandle
);
416 ttyfree(old_ptmx_ioctl
->pt_tty
);
417 FREE(old_ptmx_ioctl
, M_TTYS
);
420 return 0; /* Success */
424 ptmx_get_name(int minor
, char *buffer
, size_t size
)
426 return snprintf(buffer
, size
, "/dev/" PTSD_TEMPLATE
, minor
);
432 * Given the dev entry that's being opened, we clone the device. This driver
433 * doesn't actually use the dev entry, since we alreaqdy know who we are by
434 * being called from this code. This routine is a callback registered from
435 * devfs_make_node_clone() in ptmx_init(); it's purpose is to provide a new
436 * minor number, or to return -1, if one can't be provided.
438 * Parameters: dev The device we are cloning from
440 * Returns: >= 0 A new minor device number
441 * -1 Error: ENOMEM ("Can't alloc device")
443 * NOTE: Called with DEVFS_LOCK() held
446 ptmx_clone(__unused dev_t dev
, int action
)
450 if (action
== DEVFS_CLONE_ALLOC
) {
452 if (_state
.pis_total
== 0) {
457 * Note: We can add hinting on free slots, if this linear search
458 * ends up being a performance bottleneck...
460 for (i
= 0; i
< _state
.pis_total
; i
++) {
461 if (_state
.pis_ioctl_list
[i
] == NULL
) {
467 * XXX We fall off the end here; if we did this twice at the
468 * XXX same time, we could return the same minor to two
469 * XXX callers; we should probably exand the pointer vector
470 * XXX here, but I need more information on the MALLOC/FREE
471 * XXX locking to ensure against a deadlock. Maybe we can
472 * XXX just high watermark it at 1/2 of PTMX_GROW_VECTOR?
473 * XXX That would require returning &minor as implict return
474 * XXX and an error code ("EAGAIN/ERESTART") or 0 as our
475 * XXX explicit return.
478 return i
; /* empty slot or next slot */
487 int ptsd_kqfilter(dev_t dev
, struct knote
*kn
);
488 static void ptsd_kqops_detach(struct knote
*);
489 static int ptsd_kqops_event(struct knote
*, long);
490 static int ptsd_kqops_touch(struct knote
*kn
, struct kevent_qos_s
*kev
);
491 static int ptsd_kqops_process(struct knote
*kn
, struct kevent_qos_s
*kev
);
493 SECURITY_READ_ONLY_EARLY(struct filterops
) ptsd_kqops
= {
495 /* attach is handled by ptsd_kqfilter -- the dev node must be passed in */
496 .f_detach
= ptsd_kqops_detach
,
497 .f_event
= ptsd_kqops_event
,
498 .f_touch
= ptsd_kqops_touch
,
499 .f_process
= ptsd_kqops_process
,
503 * In the normal case, by the time the driver_close() routine is called
504 * on the slave, all knotes have been detached. However in the revoke(2)
505 * case, the driver's close routine is called while there are knotes active
506 * that reference the handlers below. And we have no obvious means to
507 * reach from the driver out to the kqueue's that reference them to get
512 ptsd_kqops_detach(struct knote
*kn
)
514 struct tty
*tp
= kn
->kn_hook
;
519 * Only detach knotes from open ttys -- ttyclose detaches all knotes
520 * under the lock and unsets TS_ISOPEN.
522 if (tp
->t_state
& TS_ISOPEN
) {
523 switch (kn
->kn_filter
) {
525 KNOTE_DETACH(&tp
->t_rsel
.si_note
, kn
);
528 KNOTE_DETACH(&tp
->t_wsel
.si_note
, kn
);
531 panic("invalid knote %p detach, filter: %d", kn
, kn
->kn_filter
);
541 ptsd_kqops_common(struct knote
*kn
, struct kevent_qos_s
*kev
, struct tty
*tp
)
548 switch (kn
->kn_filter
) {
551 * ttnread can change the tty state,
552 * hence must be done upfront, before any other check.
559 if ((tp
->t_outq
.c_cc
<= tp
->t_lowat
) &&
560 (tp
->t_state
& TS_CONNECTED
)) {
561 data
= tp
->t_outq
.c_cn
- tp
->t_outq
.c_cc
;
567 panic("ptsd kevent: unexpected filter: %d, kn = %p, tty = %p",
568 kn
->kn_filter
, kn
, tp
);
572 if (tp
->t_state
& TS_ZOMBIE
) {
573 kn
->kn_flags
|= EV_EOF
;
575 if (kn
->kn_flags
& EV_EOF
) {
579 knote_fill_kevent(kn
, kev
, data
);
585 ptsd_kqops_event(struct knote
*kn
, long hint
)
587 struct tty
*tp
= kn
->kn_hook
;
592 if (hint
& NOTE_REVOKE
) {
593 kn
->kn_flags
|= EV_EOF
| EV_ONESHOT
;
596 ret
= ptsd_kqops_common(kn
, NULL
, tp
);
603 ptsd_kqops_touch(struct knote
*kn
, struct kevent_qos_s
*kev
)
605 struct tty
*tp
= kn
->kn_hook
;
610 /* accept new kevent state */
611 kn
->kn_sfflags
= kev
->fflags
;
612 kn
->kn_sdata
= kev
->data
;
614 /* recapture fired state of knote */
615 ret
= ptsd_kqops_common(kn
, NULL
, tp
);
623 ptsd_kqops_process(struct knote
*kn
, struct kevent_qos_s
*kev
)
625 struct tty
*tp
= kn
->kn_hook
;
629 ret
= ptsd_kqops_common(kn
, kev
, tp
);
636 ptsd_kqfilter(dev_t dev
, struct knote
*kn
)
638 struct tty
*tp
= NULL
;
639 struct ptmx_ioctl
*pti
= NULL
;
642 /* make sure we're talking about the right device type */
643 if (cdevsw
[major(dev
)].d_open
!= ptsopen
) {
644 knote_set_error(kn
, ENODEV
);
648 if ((pti
= ptmx_get_ioctl(minor(dev
), 0)) == NULL
) {
649 knote_set_error(kn
, ENXIO
);
656 assert(tp
->t_state
& TS_ISOPEN
);
658 kn
->kn_filtid
= EVFILTID_PTSD
;
659 /* the tty will be freed when detaching the knote */
663 switch (kn
->kn_filter
) {
665 KNOTE_ATTACH(&tp
->t_rsel
.si_note
, kn
);
668 KNOTE_ATTACH(&tp
->t_wsel
.si_note
, kn
);
671 panic("ptsd kevent: unexpected filter: %d, kn = %p, tty = %p",
672 kn
->kn_filter
, kn
, tp
);
676 /* capture current event state */
677 ret
= ptsd_kqops_common(kn
, NULL
, tp
);
685 * Support for revoke(2).
688 ptsd_revoke_knotes(__unused
int minor
, struct tty
*tp
)
693 assert((tp
->t_rsel
.si_flags
& SI_KNPOSTING
) == 0);
694 KNOTE(&tp
->t_rsel
.si_note
, NOTE_REVOKE
);
697 assert((tp
->t_wsel
.si_flags
& SI_KNPOSTING
) == 0);
698 KNOTE(&tp
->t_wsel
.si_note
, NOTE_REVOKE
);
704 * kevent filter routines for the master side of a pty, a ptmx.
706 * Stuff the ptmx_ioctl structure into the hook for ptmx knotes. Use the
707 * embedded tty's lock for synchronization.
710 int ptmx_kqfilter(dev_t dev
, struct knote
*kn
);
711 static void ptmx_kqops_detach(struct knote
*);
712 static int ptmx_kqops_event(struct knote
*, long);
713 static int ptmx_kqops_touch(struct knote
*kn
, struct kevent_qos_s
*kev
);
714 static int ptmx_kqops_process(struct knote
*kn
, struct kevent_qos_s
*kev
);
715 static int ptmx_kqops_common(struct knote
*kn
, struct kevent_qos_s
*kev
,
716 struct ptmx_ioctl
*pti
, struct tty
*tp
);
718 SECURITY_READ_ONLY_EARLY(struct filterops
) ptmx_kqops
= {
720 /* attach is handled by ptmx_kqfilter -- the dev node must be passed in */
721 .f_detach
= ptmx_kqops_detach
,
722 .f_event
= ptmx_kqops_event
,
723 .f_touch
= ptmx_kqops_touch
,
724 .f_process
= ptmx_kqops_process
,
727 static struct ptmx_ioctl
*
728 ptmx_knote_ioctl(struct knote
*kn
)
730 return (struct ptmx_ioctl
*)kn
->kn_hook
;
734 ptmx_knote_tty(struct knote
*kn
)
736 return ptmx_knote_ioctl(kn
)->pt_tty
;
740 ptmx_kqfilter(dev_t dev
, struct knote
*kn
)
742 struct tty
*tp
= NULL
;
743 struct ptmx_ioctl
*pti
= NULL
;
746 /* make sure we're talking about the right device type */
747 if (cdevsw
[major(dev
)].d_open
!= ptcopen
) {
748 knote_set_error(kn
, ENODEV
);
752 if ((pti
= ptmx_get_ioctl(minor(dev
), 0)) == NULL
) {
753 knote_set_error(kn
, ENXIO
);
760 kn
->kn_filtid
= EVFILTID_PTMX
;
761 /* the tty will be freed when detaching the knote */
766 * Attach to the ptmx's selinfo structures. This is the major difference
767 * to the ptsd filtops, which use the selinfo structures in the tty
770 switch (kn
->kn_filter
) {
772 KNOTE_ATTACH(&pti
->pt_selr
.si_note
, kn
);
775 KNOTE_ATTACH(&pti
->pt_selw
.si_note
, kn
);
778 panic("ptmx kevent: unexpected filter: %d, kn = %p, tty = %p",
779 kn
->kn_filter
, kn
, tp
);
783 /* capture current event state */
784 ret
= ptmx_kqops_common(kn
, NULL
, pti
, tp
);
792 ptmx_kqops_detach(struct knote
*kn
)
794 struct ptmx_ioctl
*pti
= kn
->kn_hook
;
795 struct tty
*tp
= pti
->pt_tty
;
799 switch (kn
->kn_filter
) {
801 KNOTE_DETACH(&pti
->pt_selr
.si_note
, kn
);
804 KNOTE_DETACH(&pti
->pt_selw
.si_note
, kn
);
807 panic("invalid knote %p detach, filter: %d", kn
, kn
->kn_filter
);
816 ptmx_kqops_common(struct knote
*kn
, struct kevent_qos_s
*kev
,
817 struct ptmx_ioctl
*pti
, struct tty
*tp
)
824 switch (kn
->kn_filter
) {
826 /* there's data on the TTY and it's not stopped */
827 if (tp
->t_outq
.c_cc
&& !(tp
->t_state
& TS_TTSTOP
)) {
828 data
= tp
->t_outq
.c_cc
;
830 } else if (((pti
->pt_flags
& PF_PKT
) && pti
->pt_send
) ||
831 ((pti
->pt_flags
& PF_UCNTL
) && pti
->pt_ucntl
)) {
837 if (pti
->pt_flags
& PF_REMOTE
) {
838 if (tp
->t_canq
.c_cc
== 0) {
842 retval
= (TTYHOG
- 2) - (tp
->t_rawq
.c_cc
+ tp
->t_canq
.c_cc
);
843 if (tp
->t_canq
.c_cc
== 0 && (tp
->t_lflag
& ICANON
)) {
853 panic("ptmx kevent: unexpected filter: %d, kn = %p, tty = %p",
854 kn
->kn_filter
, kn
, tp
);
858 /* disconnects should force a wakeup (EOF) */
859 if (!(tp
->t_state
& TS_CONNECTED
) || (tp
->t_state
& TS_ZOMBIE
)) {
860 kn
->kn_flags
|= EV_EOF
;
862 if (kn
->kn_flags
& EV_EOF
) {
866 knote_fill_kevent(kn
, kev
, data
);
872 ptmx_kqops_event(struct knote
*kn
, long hint
)
874 struct ptmx_ioctl
*pti
= ptmx_knote_ioctl(kn
);
875 struct tty
*tp
= ptmx_knote_tty(kn
);
880 if (hint
& NOTE_REVOKE
) {
881 kn
->kn_flags
|= EV_EOF
| EV_ONESHOT
;
884 ret
= ptmx_kqops_common(kn
, NULL
, pti
, tp
);
891 ptmx_kqops_touch(struct knote
*kn
, struct kevent_qos_s
*kev
)
893 struct ptmx_ioctl
*pti
= ptmx_knote_ioctl(kn
);
894 struct tty
*tp
= ptmx_knote_tty(kn
);
899 /* accept new kevent state */
900 kn
->kn_sfflags
= kev
->fflags
;
901 kn
->kn_sdata
= kev
->data
;
903 /* recapture fired state of knote */
904 ret
= ptmx_kqops_common(kn
, NULL
, pti
, tp
);
912 ptmx_kqops_process(struct knote
*kn
, struct kevent_qos_s
*kev
)
914 struct ptmx_ioctl
*pti
= ptmx_knote_ioctl(kn
);
915 struct tty
*tp
= ptmx_knote_tty(kn
);
919 ret
= ptmx_kqops_common(kn
, kev
, pti
, tp
);