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1 /*
2 * Copyright (C) 1991, 1992 Linus Torvalds
3 *
4 * Added support for a Unix98-style ptmx device.
5 * -- C. Scott Ananian <cananian@alumni.princeton.edu>, 14-Jan-1998
6 *
7 */
8
9 #include <linux/module.h>
10 #include <linux/errno.h>
11 #include <linux/interrupt.h>
12 #include <linux/tty.h>
13 #include <linux/tty_flip.h>
14 #include <linux/fcntl.h>
15 #include <linux/sched/signal.h>
16 #include <linux/string.h>
17 #include <linux/major.h>
18 #include <linux/mm.h>
19 #include <linux/init.h>
20 #include <linux/device.h>
21 #include <linux/uaccess.h>
22 #include <linux/bitops.h>
23 #include <linux/devpts_fs.h>
24 #include <linux/slab.h>
25 #include <linux/mutex.h>
26 #include <linux/poll.h>
27 #include <linux/mount.h>
28 #include <linux/file.h>
29 #include <linux/ioctl.h>
30
31 #undef TTY_DEBUG_HANGUP
32 #ifdef TTY_DEBUG_HANGUP
33 # define tty_debug_hangup(tty, f, args...) tty_debug(tty, f, ##args)
34 #else
35 # define tty_debug_hangup(tty, f, args...) do {} while (0)
36 #endif
37
38 #ifdef CONFIG_UNIX98_PTYS
39 static struct tty_driver *ptm_driver;
40 static struct tty_driver *pts_driver;
41 static DEFINE_MUTEX(devpts_mutex);
42 #endif
43
44 static void pty_close(struct tty_struct *tty, struct file *filp)
45 {
46 BUG_ON(!tty);
47 if (tty->driver->subtype == PTY_TYPE_MASTER)
48 WARN_ON(tty->count > 1);
49 else {
50 if (tty_io_error(tty))
51 return;
52 if (tty->count > 2)
53 return;
54 }
55 set_bit(TTY_IO_ERROR, &tty->flags);
56 wake_up_interruptible(&tty->read_wait);
57 wake_up_interruptible(&tty->write_wait);
58 spin_lock_irq(&tty->ctrl_lock);
59 tty->packet = 0;
60 spin_unlock_irq(&tty->ctrl_lock);
61 /* Review - krefs on tty_link ?? */
62 if (!tty->link)
63 return;
64 set_bit(TTY_OTHER_CLOSED, &tty->link->flags);
65 wake_up_interruptible(&tty->link->read_wait);
66 wake_up_interruptible(&tty->link->write_wait);
67 if (tty->driver->subtype == PTY_TYPE_MASTER) {
68 set_bit(TTY_OTHER_CLOSED, &tty->flags);
69 #ifdef CONFIG_UNIX98_PTYS
70 if (tty->driver == ptm_driver) {
71 mutex_lock(&devpts_mutex);
72 if (tty->link->driver_data) {
73 struct path *path = tty->link->driver_data;
74
75 devpts_pty_kill(path->dentry);
76 path_put(path);
77 kfree(path);
78 }
79 mutex_unlock(&devpts_mutex);
80 }
81 #endif
82 tty_vhangup(tty->link);
83 }
84 }
85
86 /*
87 * The unthrottle routine is called by the line discipline to signal
88 * that it can receive more characters. For PTY's, the TTY_THROTTLED
89 * flag is always set, to force the line discipline to always call the
90 * unthrottle routine when there are fewer than TTY_THRESHOLD_UNTHROTTLE
91 * characters in the queue. This is necessary since each time this
92 * happens, we need to wake up any sleeping processes that could be
93 * (1) trying to send data to the pty, or (2) waiting in wait_until_sent()
94 * for the pty buffer to be drained.
95 */
96 static void pty_unthrottle(struct tty_struct *tty)
97 {
98 tty_wakeup(tty->link);
99 set_bit(TTY_THROTTLED, &tty->flags);
100 }
101
102 /**
103 * pty_write - write to a pty
104 * @tty: the tty we write from
105 * @buf: kernel buffer of data
106 * @count: bytes to write
107 *
108 * Our "hardware" write method. Data is coming from the ldisc which
109 * may be in a non sleeping state. We simply throw this at the other
110 * end of the link as if we were an IRQ handler receiving stuff for
111 * the other side of the pty/tty pair.
112 */
113
114 static int pty_write(struct tty_struct *tty, const unsigned char *buf, int c)
115 {
116 struct tty_struct *to = tty->link;
117
118 if (tty->stopped)
119 return 0;
120
121 if (c > 0) {
122 /* Stuff the data into the input queue of the other end */
123 c = tty_insert_flip_string(to->port, buf, c);
124 /* And shovel */
125 if (c)
126 tty_flip_buffer_push(to->port);
127 }
128 return c;
129 }
130
131 /**
132 * pty_write_room - write space
133 * @tty: tty we are writing from
134 *
135 * Report how many bytes the ldisc can send into the queue for
136 * the other device.
137 */
138
139 static int pty_write_room(struct tty_struct *tty)
140 {
141 if (tty->stopped)
142 return 0;
143 return tty_buffer_space_avail(tty->link->port);
144 }
145
146 /**
147 * pty_chars_in_buffer - characters currently in our tx queue
148 * @tty: our tty
149 *
150 * Report how much we have in the transmit queue. As everything is
151 * instantly at the other end this is easy to implement.
152 */
153
154 static int pty_chars_in_buffer(struct tty_struct *tty)
155 {
156 return 0;
157 }
158
159 /* Set the lock flag on a pty */
160 static int pty_set_lock(struct tty_struct *tty, int __user *arg)
161 {
162 int val;
163 if (get_user(val, arg))
164 return -EFAULT;
165 if (val)
166 set_bit(TTY_PTY_LOCK, &tty->flags);
167 else
168 clear_bit(TTY_PTY_LOCK, &tty->flags);
169 return 0;
170 }
171
172 static int pty_get_lock(struct tty_struct *tty, int __user *arg)
173 {
174 int locked = test_bit(TTY_PTY_LOCK, &tty->flags);
175 return put_user(locked, arg);
176 }
177
178 /* Set the packet mode on a pty */
179 static int pty_set_pktmode(struct tty_struct *tty, int __user *arg)
180 {
181 int pktmode;
182
183 if (get_user(pktmode, arg))
184 return -EFAULT;
185
186 spin_lock_irq(&tty->ctrl_lock);
187 if (pktmode) {
188 if (!tty->packet) {
189 tty->link->ctrl_status = 0;
190 smp_mb();
191 tty->packet = 1;
192 }
193 } else
194 tty->packet = 0;
195 spin_unlock_irq(&tty->ctrl_lock);
196
197 return 0;
198 }
199
200 /* Get the packet mode of a pty */
201 static int pty_get_pktmode(struct tty_struct *tty, int __user *arg)
202 {
203 int pktmode = tty->packet;
204 return put_user(pktmode, arg);
205 }
206
207 /* Send a signal to the slave */
208 static int pty_signal(struct tty_struct *tty, int sig)
209 {
210 struct pid *pgrp;
211
212 if (sig != SIGINT && sig != SIGQUIT && sig != SIGTSTP)
213 return -EINVAL;
214
215 if (tty->link) {
216 pgrp = tty_get_pgrp(tty->link);
217 if (pgrp)
218 kill_pgrp(pgrp, sig, 1);
219 put_pid(pgrp);
220 }
221 return 0;
222 }
223
224 static void pty_flush_buffer(struct tty_struct *tty)
225 {
226 struct tty_struct *to = tty->link;
227
228 if (!to)
229 return;
230
231 tty_buffer_flush(to, NULL);
232 if (to->packet) {
233 spin_lock_irq(&tty->ctrl_lock);
234 tty->ctrl_status |= TIOCPKT_FLUSHWRITE;
235 wake_up_interruptible(&to->read_wait);
236 spin_unlock_irq(&tty->ctrl_lock);
237 }
238 }
239
240 static int pty_open(struct tty_struct *tty, struct file *filp)
241 {
242 if (!tty || !tty->link)
243 return -ENODEV;
244
245 if (test_bit(TTY_OTHER_CLOSED, &tty->flags))
246 goto out;
247 if (test_bit(TTY_PTY_LOCK, &tty->link->flags))
248 goto out;
249 if (tty->driver->subtype == PTY_TYPE_SLAVE && tty->link->count != 1)
250 goto out;
251
252 clear_bit(TTY_IO_ERROR, &tty->flags);
253 clear_bit(TTY_OTHER_CLOSED, &tty->link->flags);
254 set_bit(TTY_THROTTLED, &tty->flags);
255 return 0;
256
257 out:
258 set_bit(TTY_IO_ERROR, &tty->flags);
259 return -EIO;
260 }
261
262 static void pty_set_termios(struct tty_struct *tty,
263 struct ktermios *old_termios)
264 {
265 /* See if packet mode change of state. */
266 if (tty->link && tty->link->packet) {
267 int extproc = (old_termios->c_lflag & EXTPROC) | L_EXTPROC(tty);
268 int old_flow = ((old_termios->c_iflag & IXON) &&
269 (old_termios->c_cc[VSTOP] == '\023') &&
270 (old_termios->c_cc[VSTART] == '\021'));
271 int new_flow = (I_IXON(tty) &&
272 STOP_CHAR(tty) == '\023' &&
273 START_CHAR(tty) == '\021');
274 if ((old_flow != new_flow) || extproc) {
275 spin_lock_irq(&tty->ctrl_lock);
276 if (old_flow != new_flow) {
277 tty->ctrl_status &= ~(TIOCPKT_DOSTOP | TIOCPKT_NOSTOP);
278 if (new_flow)
279 tty->ctrl_status |= TIOCPKT_DOSTOP;
280 else
281 tty->ctrl_status |= TIOCPKT_NOSTOP;
282 }
283 if (extproc)
284 tty->ctrl_status |= TIOCPKT_IOCTL;
285 spin_unlock_irq(&tty->ctrl_lock);
286 wake_up_interruptible(&tty->link->read_wait);
287 }
288 }
289
290 tty->termios.c_cflag &= ~(CSIZE | PARENB);
291 tty->termios.c_cflag |= (CS8 | CREAD);
292 }
293
294 /**
295 * pty_do_resize - resize event
296 * @tty: tty being resized
297 * @ws: window size being set.
298 *
299 * Update the termios variables and send the necessary signals to
300 * peform a terminal resize correctly
301 */
302
303 static int pty_resize(struct tty_struct *tty, struct winsize *ws)
304 {
305 struct pid *pgrp, *rpgrp;
306 struct tty_struct *pty = tty->link;
307
308 /* For a PTY we need to lock the tty side */
309 mutex_lock(&tty->winsize_mutex);
310 if (!memcmp(ws, &tty->winsize, sizeof(*ws)))
311 goto done;
312
313 /* Signal the foreground process group of both ptys */
314 pgrp = tty_get_pgrp(tty);
315 rpgrp = tty_get_pgrp(pty);
316
317 if (pgrp)
318 kill_pgrp(pgrp, SIGWINCH, 1);
319 if (rpgrp != pgrp && rpgrp)
320 kill_pgrp(rpgrp, SIGWINCH, 1);
321
322 put_pid(pgrp);
323 put_pid(rpgrp);
324
325 tty->winsize = *ws;
326 pty->winsize = *ws; /* Never used so will go away soon */
327 done:
328 mutex_unlock(&tty->winsize_mutex);
329 return 0;
330 }
331
332 /**
333 * pty_start - start() handler
334 * pty_stop - stop() handler
335 * @tty: tty being flow-controlled
336 *
337 * Propagates the TIOCPKT status to the master pty.
338 *
339 * NB: only the master pty can be in packet mode so only the slave
340 * needs start()/stop() handlers
341 */
342 static void pty_start(struct tty_struct *tty)
343 {
344 unsigned long flags;
345
346 if (tty->link && tty->link->packet) {
347 spin_lock_irqsave(&tty->ctrl_lock, flags);
348 tty->ctrl_status &= ~TIOCPKT_STOP;
349 tty->ctrl_status |= TIOCPKT_START;
350 spin_unlock_irqrestore(&tty->ctrl_lock, flags);
351 wake_up_interruptible_poll(&tty->link->read_wait, POLLIN);
352 }
353 }
354
355 static void pty_stop(struct tty_struct *tty)
356 {
357 unsigned long flags;
358
359 if (tty->link && tty->link->packet) {
360 spin_lock_irqsave(&tty->ctrl_lock, flags);
361 tty->ctrl_status &= ~TIOCPKT_START;
362 tty->ctrl_status |= TIOCPKT_STOP;
363 spin_unlock_irqrestore(&tty->ctrl_lock, flags);
364 wake_up_interruptible_poll(&tty->link->read_wait, POLLIN);
365 }
366 }
367
368 /**
369 * pty_common_install - set up the pty pair
370 * @driver: the pty driver
371 * @tty: the tty being instantiated
372 * @legacy: true if this is BSD style
373 *
374 * Perform the initial set up for the tty/pty pair. Called from the
375 * tty layer when the port is first opened.
376 *
377 * Locking: the caller must hold the tty_mutex
378 */
379 static int pty_common_install(struct tty_driver *driver, struct tty_struct *tty,
380 bool legacy)
381 {
382 struct tty_struct *o_tty;
383 struct tty_port *ports[2];
384 int idx = tty->index;
385 int retval = -ENOMEM;
386
387 /* Opening the slave first has always returned -EIO */
388 if (driver->subtype != PTY_TYPE_MASTER)
389 return -EIO;
390
391 ports[0] = kmalloc(sizeof **ports, GFP_KERNEL);
392 ports[1] = kmalloc(sizeof **ports, GFP_KERNEL);
393 if (!ports[0] || !ports[1])
394 goto err;
395 if (!try_module_get(driver->other->owner)) {
396 /* This cannot in fact currently happen */
397 goto err;
398 }
399 o_tty = alloc_tty_struct(driver->other, idx);
400 if (!o_tty)
401 goto err_put_module;
402
403 tty_set_lock_subclass(o_tty);
404 lockdep_set_subclass(&o_tty->termios_rwsem, TTY_LOCK_SLAVE);
405
406 if (legacy) {
407 /* We always use new tty termios data so we can do this
408 the easy way .. */
409 tty_init_termios(tty);
410 tty_init_termios(o_tty);
411
412 driver->other->ttys[idx] = o_tty;
413 driver->ttys[idx] = tty;
414 } else {
415 memset(&tty->termios_locked, 0, sizeof(tty->termios_locked));
416 tty->termios = driver->init_termios;
417 memset(&o_tty->termios_locked, 0, sizeof(tty->termios_locked));
418 o_tty->termios = driver->other->init_termios;
419 }
420
421 /*
422 * Everything allocated ... set up the o_tty structure.
423 */
424 tty_driver_kref_get(driver->other);
425 /* Establish the links in both directions */
426 tty->link = o_tty;
427 o_tty->link = tty;
428 tty_port_init(ports[0]);
429 tty_port_init(ports[1]);
430 tty_buffer_set_limit(ports[0], 8192);
431 tty_buffer_set_limit(ports[1], 8192);
432 o_tty->port = ports[0];
433 tty->port = ports[1];
434 o_tty->port->itty = o_tty;
435
436 tty_buffer_set_lock_subclass(o_tty->port);
437
438 tty_driver_kref_get(driver);
439 tty->count++;
440 o_tty->count++;
441 return 0;
442
443 err_put_module:
444 module_put(driver->other->owner);
445 err:
446 kfree(ports[0]);
447 kfree(ports[1]);
448 return retval;
449 }
450
451 /**
452 * pty_open_peer - open the peer of a pty
453 * @tty: the peer of the pty being opened
454 *
455 * Open the cached dentry in tty->link, providing a safe way for userspace
456 * to get the slave end of a pty (where they have the master fd and cannot
457 * access or trust the mount namespace /dev/pts was mounted inside).
458 */
459 static struct file *pty_open_peer(struct tty_struct *tty, int flags)
460 {
461 if (tty->driver->subtype != PTY_TYPE_MASTER)
462 return ERR_PTR(-EIO);
463 return dentry_open(tty->link->driver_data, flags, current_cred());
464 }
465
466 static int pty_get_peer(struct tty_struct *tty, int flags)
467 {
468 int fd = -1;
469 struct file *filp = NULL;
470 int retval = -EINVAL;
471
472 fd = get_unused_fd_flags(0);
473 if (fd < 0) {
474 retval = fd;
475 goto err;
476 }
477
478 filp = pty_open_peer(tty, flags);
479 if (IS_ERR(filp)) {
480 retval = PTR_ERR(filp);
481 goto err_put;
482 }
483
484 fd_install(fd, filp);
485 return fd;
486
487 err_put:
488 put_unused_fd(fd);
489 err:
490 return retval;
491 }
492
493 static void pty_cleanup(struct tty_struct *tty)
494 {
495 tty_port_put(tty->port);
496 }
497
498 /* Traditional BSD devices */
499 #ifdef CONFIG_LEGACY_PTYS
500
501 static int pty_install(struct tty_driver *driver, struct tty_struct *tty)
502 {
503 return pty_common_install(driver, tty, true);
504 }
505
506 static void pty_remove(struct tty_driver *driver, struct tty_struct *tty)
507 {
508 struct tty_struct *pair = tty->link;
509 driver->ttys[tty->index] = NULL;
510 if (pair)
511 pair->driver->ttys[pair->index] = NULL;
512 }
513
514 static int pty_bsd_ioctl(struct tty_struct *tty,
515 unsigned int cmd, unsigned long arg)
516 {
517 switch (cmd) {
518 case TIOCSPTLCK: /* Set PT Lock (disallow slave open) */
519 return pty_set_lock(tty, (int __user *) arg);
520 case TIOCGPTLCK: /* Get PT Lock status */
521 return pty_get_lock(tty, (int __user *)arg);
522 case TIOCPKT: /* Set PT packet mode */
523 return pty_set_pktmode(tty, (int __user *)arg);
524 case TIOCGPKT: /* Get PT packet mode */
525 return pty_get_pktmode(tty, (int __user *)arg);
526 case TIOCSIG: /* Send signal to other side of pty */
527 return pty_signal(tty, (int) arg);
528 case TIOCGPTN: /* TTY returns ENOTTY, but glibc expects EINVAL here */
529 return -EINVAL;
530 }
531 return -ENOIOCTLCMD;
532 }
533
534 static long pty_bsd_compat_ioctl(struct tty_struct *tty,
535 unsigned int cmd, unsigned long arg)
536 {
537 /*
538 * PTY ioctls don't require any special translation between 32-bit and
539 * 64-bit userspace, they are already compatible.
540 */
541 return pty_bsd_ioctl(tty, cmd, arg);
542 }
543
544 static int legacy_count = CONFIG_LEGACY_PTY_COUNT;
545 /*
546 * not really modular, but the easiest way to keep compat with existing
547 * bootargs behaviour is to continue using module_param here.
548 */
549 module_param(legacy_count, int, 0);
550
551 /*
552 * The master side of a pty can do TIOCSPTLCK and thus
553 * has pty_bsd_ioctl.
554 */
555 static const struct tty_operations master_pty_ops_bsd = {
556 .install = pty_install,
557 .open = pty_open,
558 .close = pty_close,
559 .write = pty_write,
560 .write_room = pty_write_room,
561 .flush_buffer = pty_flush_buffer,
562 .chars_in_buffer = pty_chars_in_buffer,
563 .unthrottle = pty_unthrottle,
564 .ioctl = pty_bsd_ioctl,
565 .compat_ioctl = pty_bsd_compat_ioctl,
566 .cleanup = pty_cleanup,
567 .resize = pty_resize,
568 .remove = pty_remove
569 };
570
571 static const struct tty_operations slave_pty_ops_bsd = {
572 .install = pty_install,
573 .open = pty_open,
574 .close = pty_close,
575 .write = pty_write,
576 .write_room = pty_write_room,
577 .flush_buffer = pty_flush_buffer,
578 .chars_in_buffer = pty_chars_in_buffer,
579 .unthrottle = pty_unthrottle,
580 .set_termios = pty_set_termios,
581 .cleanup = pty_cleanup,
582 .resize = pty_resize,
583 .start = pty_start,
584 .stop = pty_stop,
585 .remove = pty_remove
586 };
587
588 static void __init legacy_pty_init(void)
589 {
590 struct tty_driver *pty_driver, *pty_slave_driver;
591
592 if (legacy_count <= 0)
593 return;
594
595 pty_driver = tty_alloc_driver(legacy_count,
596 TTY_DRIVER_RESET_TERMIOS |
597 TTY_DRIVER_REAL_RAW |
598 TTY_DRIVER_DYNAMIC_ALLOC);
599 if (IS_ERR(pty_driver))
600 panic("Couldn't allocate pty driver");
601
602 pty_slave_driver = tty_alloc_driver(legacy_count,
603 TTY_DRIVER_RESET_TERMIOS |
604 TTY_DRIVER_REAL_RAW |
605 TTY_DRIVER_DYNAMIC_ALLOC);
606 if (IS_ERR(pty_slave_driver))
607 panic("Couldn't allocate pty slave driver");
608
609 pty_driver->driver_name = "pty_master";
610 pty_driver->name = "pty";
611 pty_driver->major = PTY_MASTER_MAJOR;
612 pty_driver->minor_start = 0;
613 pty_driver->type = TTY_DRIVER_TYPE_PTY;
614 pty_driver->subtype = PTY_TYPE_MASTER;
615 pty_driver->init_termios = tty_std_termios;
616 pty_driver->init_termios.c_iflag = 0;
617 pty_driver->init_termios.c_oflag = 0;
618 pty_driver->init_termios.c_cflag = B38400 | CS8 | CREAD;
619 pty_driver->init_termios.c_lflag = 0;
620 pty_driver->init_termios.c_ispeed = 38400;
621 pty_driver->init_termios.c_ospeed = 38400;
622 pty_driver->other = pty_slave_driver;
623 tty_set_operations(pty_driver, &master_pty_ops_bsd);
624
625 pty_slave_driver->driver_name = "pty_slave";
626 pty_slave_driver->name = "ttyp";
627 pty_slave_driver->major = PTY_SLAVE_MAJOR;
628 pty_slave_driver->minor_start = 0;
629 pty_slave_driver->type = TTY_DRIVER_TYPE_PTY;
630 pty_slave_driver->subtype = PTY_TYPE_SLAVE;
631 pty_slave_driver->init_termios = tty_std_termios;
632 pty_slave_driver->init_termios.c_cflag = B38400 | CS8 | CREAD;
633 pty_slave_driver->init_termios.c_ispeed = 38400;
634 pty_slave_driver->init_termios.c_ospeed = 38400;
635 pty_slave_driver->other = pty_driver;
636 tty_set_operations(pty_slave_driver, &slave_pty_ops_bsd);
637
638 if (tty_register_driver(pty_driver))
639 panic("Couldn't register pty driver");
640 if (tty_register_driver(pty_slave_driver))
641 panic("Couldn't register pty slave driver");
642 }
643 #else
644 static inline void legacy_pty_init(void) { }
645 #endif
646
647 /* Unix98 devices */
648 #ifdef CONFIG_UNIX98_PTYS
649
650 static struct cdev ptmx_cdev;
651
652 static int pty_unix98_ioctl(struct tty_struct *tty,
653 unsigned int cmd, unsigned long arg)
654 {
655 switch (cmd) {
656 case TIOCSPTLCK: /* Set PT Lock (disallow slave open) */
657 return pty_set_lock(tty, (int __user *)arg);
658 case TIOCGPTLCK: /* Get PT Lock status */
659 return pty_get_lock(tty, (int __user *)arg);
660 case TIOCPKT: /* Set PT packet mode */
661 return pty_set_pktmode(tty, (int __user *)arg);
662 case TIOCGPKT: /* Get PT packet mode */
663 return pty_get_pktmode(tty, (int __user *)arg);
664 case TIOCGPTN: /* Get PT Number */
665 return put_user(tty->index, (unsigned int __user *)arg);
666 case TIOCGPTPEER: /* Open the other end */
667 return pty_get_peer(tty, (int) arg);
668 case TIOCSIG: /* Send signal to other side of pty */
669 return pty_signal(tty, (int) arg);
670 }
671
672 return -ENOIOCTLCMD;
673 }
674
675 static long pty_unix98_compat_ioctl(struct tty_struct *tty,
676 unsigned int cmd, unsigned long arg)
677 {
678 /*
679 * PTY ioctls don't require any special translation between 32-bit and
680 * 64-bit userspace, they are already compatible.
681 */
682 return pty_unix98_ioctl(tty, cmd, arg);
683 }
684
685 /**
686 * ptm_unix98_lookup - find a pty master
687 * @driver: ptm driver
688 * @idx: tty index
689 *
690 * Look up a pty master device. Called under the tty_mutex for now.
691 * This provides our locking.
692 */
693
694 static struct tty_struct *ptm_unix98_lookup(struct tty_driver *driver,
695 struct file *file, int idx)
696 {
697 /* Master must be open via /dev/ptmx */
698 return ERR_PTR(-EIO);
699 }
700
701 /**
702 * pts_unix98_lookup - find a pty slave
703 * @driver: pts driver
704 * @idx: tty index
705 *
706 * Look up a pty master device. Called under the tty_mutex for now.
707 * This provides our locking for the tty pointer.
708 */
709
710 static struct tty_struct *pts_unix98_lookup(struct tty_driver *driver,
711 struct file *file, int idx)
712 {
713 struct tty_struct *tty;
714
715 mutex_lock(&devpts_mutex);
716 tty = devpts_get_priv(file->f_path.dentry);
717 mutex_unlock(&devpts_mutex);
718 /* Master must be open before slave */
719 if (!tty)
720 return ERR_PTR(-EIO);
721 return tty;
722 }
723
724 static int pty_unix98_install(struct tty_driver *driver, struct tty_struct *tty)
725 {
726 return pty_common_install(driver, tty, false);
727 }
728
729 /* this is called once with whichever end is closed last */
730 static void pty_unix98_remove(struct tty_driver *driver, struct tty_struct *tty)
731 {
732 struct pts_fs_info *fsi;
733
734 if (tty->driver->subtype == PTY_TYPE_MASTER)
735 fsi = tty->driver_data;
736 else
737 fsi = tty->link->driver_data;
738
739 if (fsi) {
740 devpts_kill_index(fsi, tty->index);
741 devpts_release(fsi);
742 }
743 }
744
745 static const struct tty_operations ptm_unix98_ops = {
746 .lookup = ptm_unix98_lookup,
747 .install = pty_unix98_install,
748 .remove = pty_unix98_remove,
749 .open = pty_open,
750 .close = pty_close,
751 .write = pty_write,
752 .write_room = pty_write_room,
753 .flush_buffer = pty_flush_buffer,
754 .chars_in_buffer = pty_chars_in_buffer,
755 .unthrottle = pty_unthrottle,
756 .ioctl = pty_unix98_ioctl,
757 .compat_ioctl = pty_unix98_compat_ioctl,
758 .resize = pty_resize,
759 .cleanup = pty_cleanup
760 };
761
762 static const struct tty_operations pty_unix98_ops = {
763 .lookup = pts_unix98_lookup,
764 .install = pty_unix98_install,
765 .remove = pty_unix98_remove,
766 .open = pty_open,
767 .close = pty_close,
768 .write = pty_write,
769 .write_room = pty_write_room,
770 .flush_buffer = pty_flush_buffer,
771 .chars_in_buffer = pty_chars_in_buffer,
772 .unthrottle = pty_unthrottle,
773 .set_termios = pty_set_termios,
774 .start = pty_start,
775 .stop = pty_stop,
776 .cleanup = pty_cleanup,
777 };
778
779 /**
780 * ptmx_open - open a unix 98 pty master
781 * @inode: inode of device file
782 * @filp: file pointer to tty
783 *
784 * Allocate a unix98 pty master device from the ptmx driver.
785 *
786 * Locking: tty_mutex protects the init_dev work. tty->count should
787 * protect the rest.
788 * allocated_ptys_lock handles the list of free pty numbers
789 */
790
791 static int ptmx_open(struct inode *inode, struct file *filp)
792 {
793 struct pts_fs_info *fsi;
794 struct tty_struct *tty;
795 struct path *pts_path;
796 struct dentry *dentry;
797 int retval;
798 int index;
799
800 nonseekable_open(inode, filp);
801
802 /* We refuse fsnotify events on ptmx, since it's a shared resource */
803 filp->f_mode |= FMODE_NONOTIFY;
804
805 retval = tty_alloc_file(filp);
806 if (retval)
807 return retval;
808
809 fsi = devpts_acquire(filp);
810 if (IS_ERR(fsi)) {
811 retval = PTR_ERR(fsi);
812 goto out_free_file;
813 }
814
815 /* find a device that is not in use. */
816 mutex_lock(&devpts_mutex);
817 index = devpts_new_index(fsi);
818 mutex_unlock(&devpts_mutex);
819
820 retval = index;
821 if (index < 0)
822 goto out_put_fsi;
823
824
825 mutex_lock(&tty_mutex);
826 tty = tty_init_dev(ptm_driver, index);
827 /* The tty returned here is locked so we can safely
828 drop the mutex */
829 mutex_unlock(&tty_mutex);
830
831 retval = PTR_ERR(tty);
832 if (IS_ERR(tty))
833 goto out;
834
835 /*
836 * From here on out, the tty is "live", and the index and
837 * fsi will be killed/put by the tty_release()
838 */
839 set_bit(TTY_PTY_LOCK, &tty->flags); /* LOCK THE SLAVE */
840 tty->driver_data = fsi;
841
842 tty_add_file(tty, filp);
843
844 dentry = devpts_pty_new(fsi, index, tty->link);
845 if (IS_ERR(dentry)) {
846 retval = PTR_ERR(dentry);
847 goto err_release;
848 }
849 /* We need to cache a fake path for TIOCGPTPEER. */
850 pts_path = kmalloc(sizeof(struct path), GFP_KERNEL);
851 if (!pts_path)
852 goto err_release;
853 pts_path->mnt = filp->f_path.mnt;
854 pts_path->dentry = dentry;
855 path_get(pts_path);
856 tty->link->driver_data = pts_path;
857
858 retval = ptm_driver->ops->open(tty, filp);
859 if (retval)
860 goto err_path_put;
861
862 tty_debug_hangup(tty, "opening (count=%d)\n", tty->count);
863
864 tty_unlock(tty);
865 return 0;
866 err_path_put:
867 path_put(pts_path);
868 kfree(pts_path);
869 err_release:
870 tty_unlock(tty);
871 // This will also put-ref the fsi
872 tty_release(inode, filp);
873 return retval;
874 out:
875 devpts_kill_index(fsi, index);
876 out_put_fsi:
877 devpts_release(fsi);
878 out_free_file:
879 tty_free_file(filp);
880 return retval;
881 }
882
883 static struct file_operations ptmx_fops __ro_after_init;
884
885 static void __init unix98_pty_init(void)
886 {
887 ptm_driver = tty_alloc_driver(NR_UNIX98_PTY_MAX,
888 TTY_DRIVER_RESET_TERMIOS |
889 TTY_DRIVER_REAL_RAW |
890 TTY_DRIVER_DYNAMIC_DEV |
891 TTY_DRIVER_DEVPTS_MEM |
892 TTY_DRIVER_DYNAMIC_ALLOC);
893 if (IS_ERR(ptm_driver))
894 panic("Couldn't allocate Unix98 ptm driver");
895 pts_driver = tty_alloc_driver(NR_UNIX98_PTY_MAX,
896 TTY_DRIVER_RESET_TERMIOS |
897 TTY_DRIVER_REAL_RAW |
898 TTY_DRIVER_DYNAMIC_DEV |
899 TTY_DRIVER_DEVPTS_MEM |
900 TTY_DRIVER_DYNAMIC_ALLOC);
901 if (IS_ERR(pts_driver))
902 panic("Couldn't allocate Unix98 pts driver");
903
904 ptm_driver->driver_name = "pty_master";
905 ptm_driver->name = "ptm";
906 ptm_driver->major = UNIX98_PTY_MASTER_MAJOR;
907 ptm_driver->minor_start = 0;
908 ptm_driver->type = TTY_DRIVER_TYPE_PTY;
909 ptm_driver->subtype = PTY_TYPE_MASTER;
910 ptm_driver->init_termios = tty_std_termios;
911 ptm_driver->init_termios.c_iflag = 0;
912 ptm_driver->init_termios.c_oflag = 0;
913 ptm_driver->init_termios.c_cflag = B38400 | CS8 | CREAD;
914 ptm_driver->init_termios.c_lflag = 0;
915 ptm_driver->init_termios.c_ispeed = 38400;
916 ptm_driver->init_termios.c_ospeed = 38400;
917 ptm_driver->other = pts_driver;
918 tty_set_operations(ptm_driver, &ptm_unix98_ops);
919
920 pts_driver->driver_name = "pty_slave";
921 pts_driver->name = "pts";
922 pts_driver->major = UNIX98_PTY_SLAVE_MAJOR;
923 pts_driver->minor_start = 0;
924 pts_driver->type = TTY_DRIVER_TYPE_PTY;
925 pts_driver->subtype = PTY_TYPE_SLAVE;
926 pts_driver->init_termios = tty_std_termios;
927 pts_driver->init_termios.c_cflag = B38400 | CS8 | CREAD;
928 pts_driver->init_termios.c_ispeed = 38400;
929 pts_driver->init_termios.c_ospeed = 38400;
930 pts_driver->other = ptm_driver;
931 tty_set_operations(pts_driver, &pty_unix98_ops);
932
933 if (tty_register_driver(ptm_driver))
934 panic("Couldn't register Unix98 ptm driver");
935 if (tty_register_driver(pts_driver))
936 panic("Couldn't register Unix98 pts driver");
937
938 /* Now create the /dev/ptmx special device */
939 tty_default_fops(&ptmx_fops);
940 ptmx_fops.open = ptmx_open;
941
942 cdev_init(&ptmx_cdev, &ptmx_fops);
943 if (cdev_add(&ptmx_cdev, MKDEV(TTYAUX_MAJOR, 2), 1) ||
944 register_chrdev_region(MKDEV(TTYAUX_MAJOR, 2), 1, "/dev/ptmx") < 0)
945 panic("Couldn't register /dev/ptmx driver");
946 device_create(tty_class, NULL, MKDEV(TTYAUX_MAJOR, 2), NULL, "ptmx");
947 }
948
949 #else
950 static inline void unix98_pty_init(void) { }
951 #endif
952
953 static int __init pty_init(void)
954 {
955 legacy_pty_init();
956 unix98_pty_init();
957 return 0;
958 }
959 device_initcall(pty_init);