xref: /openbmc/linux/drivers/tty/n_tty.c (revision 827634ad)
1 /*
2  * n_tty.c --- implements the N_TTY line discipline.
3  *
4  * This code used to be in tty_io.c, but things are getting hairy
5  * enough that it made sense to split things off.  (The N_TTY
6  * processing has changed so much that it's hardly recognizable,
7  * anyway...)
8  *
9  * Note that the open routine for N_TTY is guaranteed never to return
10  * an error.  This is because Linux will fall back to setting a line
11  * to N_TTY if it can not switch to any other line discipline.
12  *
13  * Written by Theodore Ts'o, Copyright 1994.
14  *
15  * This file also contains code originally written by Linus Torvalds,
16  * Copyright 1991, 1992, 1993, and by Julian Cowley, Copyright 1994.
17  *
18  * This file may be redistributed under the terms of the GNU General Public
19  * License.
20  *
21  * Reduced memory usage for older ARM systems  - Russell King.
22  *
23  * 2000/01/20   Fixed SMP locking on put_tty_queue using bits of
24  *		the patch by Andrew J. Kroll <ag784@freenet.buffalo.edu>
25  *		who actually finally proved there really was a race.
26  *
27  * 2002/03/18   Implemented n_tty_wakeup to send SIGIO POLL_OUTs to
28  *		waiting writing processes-Sapan Bhatia <sapan@corewars.org>.
29  *		Also fixed a bug in BLOCKING mode where n_tty_write returns
30  *		EAGAIN
31  */
32 
33 #include <linux/types.h>
34 #include <linux/major.h>
35 #include <linux/errno.h>
36 #include <linux/signal.h>
37 #include <linux/fcntl.h>
38 #include <linux/sched.h>
39 #include <linux/interrupt.h>
40 #include <linux/tty.h>
41 #include <linux/timer.h>
42 #include <linux/ctype.h>
43 #include <linux/mm.h>
44 #include <linux/string.h>
45 #include <linux/slab.h>
46 #include <linux/poll.h>
47 #include <linux/bitops.h>
48 #include <linux/audit.h>
49 #include <linux/file.h>
50 #include <linux/uaccess.h>
51 #include <linux/module.h>
52 #include <linux/ratelimit.h>
53 #include <linux/vmalloc.h>
54 
55 
56 /* number of characters left in xmit buffer before select has we have room */
57 #define WAKEUP_CHARS 256
58 
59 /*
60  * This defines the low- and high-watermarks for throttling and
61  * unthrottling the TTY driver.  These watermarks are used for
62  * controlling the space in the read buffer.
63  */
64 #define TTY_THRESHOLD_THROTTLE		128 /* now based on remaining room */
65 #define TTY_THRESHOLD_UNTHROTTLE	128
66 
67 /*
68  * Special byte codes used in the echo buffer to represent operations
69  * or special handling of characters.  Bytes in the echo buffer that
70  * are not part of such special blocks are treated as normal character
71  * codes.
72  */
73 #define ECHO_OP_START 0xff
74 #define ECHO_OP_MOVE_BACK_COL 0x80
75 #define ECHO_OP_SET_CANON_COL 0x81
76 #define ECHO_OP_ERASE_TAB 0x82
77 
78 #define ECHO_COMMIT_WATERMARK	256
79 #define ECHO_BLOCK		256
80 #define ECHO_DISCARD_WATERMARK	N_TTY_BUF_SIZE - (ECHO_BLOCK + 32)
81 
82 
83 #undef N_TTY_TRACE
84 #ifdef N_TTY_TRACE
85 # define n_tty_trace(f, args...)	trace_printk(f, ##args)
86 #else
87 # define n_tty_trace(f, args...)
88 #endif
89 
90 struct n_tty_data {
91 	/* producer-published */
92 	size_t read_head;
93 	size_t commit_head;
94 	size_t canon_head;
95 	size_t echo_head;
96 	size_t echo_commit;
97 	size_t echo_mark;
98 	DECLARE_BITMAP(char_map, 256);
99 
100 	/* private to n_tty_receive_overrun (single-threaded) */
101 	unsigned long overrun_time;
102 	int num_overrun;
103 
104 	/* non-atomic */
105 	bool no_room;
106 
107 	/* must hold exclusive termios_rwsem to reset these */
108 	unsigned char lnext:1, erasing:1, raw:1, real_raw:1, icanon:1;
109 	unsigned char push:1;
110 
111 	/* shared by producer and consumer */
112 	char read_buf[N_TTY_BUF_SIZE];
113 	DECLARE_BITMAP(read_flags, N_TTY_BUF_SIZE);
114 	unsigned char echo_buf[N_TTY_BUF_SIZE];
115 
116 	int minimum_to_wake;
117 
118 	/* consumer-published */
119 	size_t read_tail;
120 	size_t line_start;
121 
122 	/* protected by output lock */
123 	unsigned int column;
124 	unsigned int canon_column;
125 	size_t echo_tail;
126 
127 	struct mutex atomic_read_lock;
128 	struct mutex output_lock;
129 };
130 
131 static inline size_t read_cnt(struct n_tty_data *ldata)
132 {
133 	return ldata->read_head - ldata->read_tail;
134 }
135 
136 static inline unsigned char read_buf(struct n_tty_data *ldata, size_t i)
137 {
138 	return ldata->read_buf[i & (N_TTY_BUF_SIZE - 1)];
139 }
140 
141 static inline unsigned char *read_buf_addr(struct n_tty_data *ldata, size_t i)
142 {
143 	return &ldata->read_buf[i & (N_TTY_BUF_SIZE - 1)];
144 }
145 
146 static inline unsigned char echo_buf(struct n_tty_data *ldata, size_t i)
147 {
148 	return ldata->echo_buf[i & (N_TTY_BUF_SIZE - 1)];
149 }
150 
151 static inline unsigned char *echo_buf_addr(struct n_tty_data *ldata, size_t i)
152 {
153 	return &ldata->echo_buf[i & (N_TTY_BUF_SIZE - 1)];
154 }
155 
156 static inline int tty_put_user(struct tty_struct *tty, unsigned char x,
157 			       unsigned char __user *ptr)
158 {
159 	struct n_tty_data *ldata = tty->disc_data;
160 
161 	tty_audit_add_data(tty, &x, 1, ldata->icanon);
162 	return put_user(x, ptr);
163 }
164 
165 /**
166  *	n_tty_kick_worker - start input worker (if required)
167  *	@tty: terminal
168  *
169  *	Re-schedules the flip buffer work if it may have stopped
170  *
171  *	Caller holds exclusive termios_rwsem
172  *	   or
173  *	n_tty_read()/consumer path:
174  *		holds non-exclusive termios_rwsem
175  */
176 
177 static void n_tty_kick_worker(struct tty_struct *tty)
178 {
179 	struct n_tty_data *ldata = tty->disc_data;
180 
181 	/* Did the input worker stop? Restart it */
182 	if (unlikely(ldata->no_room)) {
183 		ldata->no_room = 0;
184 
185 		WARN_RATELIMIT(tty->port->itty == NULL,
186 				"scheduling with invalid itty\n");
187 		/* see if ldisc has been killed - if so, this means that
188 		 * even though the ldisc has been halted and ->buf.work
189 		 * cancelled, ->buf.work is about to be rescheduled
190 		 */
191 		WARN_RATELIMIT(test_bit(TTY_LDISC_HALTED, &tty->flags),
192 			       "scheduling buffer work for halted ldisc\n");
193 		queue_work(system_unbound_wq, &tty->port->buf.work);
194 	}
195 }
196 
197 static ssize_t chars_in_buffer(struct tty_struct *tty)
198 {
199 	struct n_tty_data *ldata = tty->disc_data;
200 	ssize_t n = 0;
201 
202 	if (!ldata->icanon)
203 		n = ldata->commit_head - ldata->read_tail;
204 	else
205 		n = ldata->canon_head - ldata->read_tail;
206 	return n;
207 }
208 
209 /**
210  *	n_tty_write_wakeup	-	asynchronous I/O notifier
211  *	@tty: tty device
212  *
213  *	Required for the ptys, serial driver etc. since processes
214  *	that attach themselves to the master and rely on ASYNC
215  *	IO must be woken up
216  */
217 
218 static void n_tty_write_wakeup(struct tty_struct *tty)
219 {
220 	if (tty->fasync && test_and_clear_bit(TTY_DO_WRITE_WAKEUP, &tty->flags))
221 		kill_fasync(&tty->fasync, SIGIO, POLL_OUT);
222 }
223 
224 static void n_tty_check_throttle(struct tty_struct *tty)
225 {
226 	struct n_tty_data *ldata = tty->disc_data;
227 
228 	/*
229 	 * Check the remaining room for the input canonicalization
230 	 * mode.  We don't want to throttle the driver if we're in
231 	 * canonical mode and don't have a newline yet!
232 	 */
233 	if (ldata->icanon && ldata->canon_head == ldata->read_tail)
234 		return;
235 
236 	while (1) {
237 		int throttled;
238 		tty_set_flow_change(tty, TTY_THROTTLE_SAFE);
239 		if (N_TTY_BUF_SIZE - read_cnt(ldata) >= TTY_THRESHOLD_THROTTLE)
240 			break;
241 		throttled = tty_throttle_safe(tty);
242 		if (!throttled)
243 			break;
244 	}
245 	__tty_set_flow_change(tty, 0);
246 }
247 
248 static void n_tty_check_unthrottle(struct tty_struct *tty)
249 {
250 	if (tty->driver->type == TTY_DRIVER_TYPE_PTY &&
251 	    tty->link->ldisc->ops->write_wakeup == n_tty_write_wakeup) {
252 		if (chars_in_buffer(tty) > TTY_THRESHOLD_UNTHROTTLE)
253 			return;
254 		if (!tty->count)
255 			return;
256 		n_tty_kick_worker(tty);
257 		n_tty_write_wakeup(tty->link);
258 		if (waitqueue_active(&tty->link->write_wait))
259 			wake_up_interruptible_poll(&tty->link->write_wait, POLLOUT);
260 		return;
261 	}
262 
263 	/* If there is enough space in the read buffer now, let the
264 	 * low-level driver know. We use chars_in_buffer() to
265 	 * check the buffer, as it now knows about canonical mode.
266 	 * Otherwise, if the driver is throttled and the line is
267 	 * longer than TTY_THRESHOLD_UNTHROTTLE in canonical mode,
268 	 * we won't get any more characters.
269 	 */
270 
271 	while (1) {
272 		int unthrottled;
273 		tty_set_flow_change(tty, TTY_UNTHROTTLE_SAFE);
274 		if (chars_in_buffer(tty) > TTY_THRESHOLD_UNTHROTTLE)
275 			break;
276 		if (!tty->count)
277 			break;
278 		n_tty_kick_worker(tty);
279 		unthrottled = tty_unthrottle_safe(tty);
280 		if (!unthrottled)
281 			break;
282 	}
283 	__tty_set_flow_change(tty, 0);
284 }
285 
286 /**
287  *	put_tty_queue		-	add character to tty
288  *	@c: character
289  *	@ldata: n_tty data
290  *
291  *	Add a character to the tty read_buf queue.
292  *
293  *	n_tty_receive_buf()/producer path:
294  *		caller holds non-exclusive termios_rwsem
295  */
296 
297 static inline void put_tty_queue(unsigned char c, struct n_tty_data *ldata)
298 {
299 	*read_buf_addr(ldata, ldata->read_head) = c;
300 	ldata->read_head++;
301 }
302 
303 /**
304  *	reset_buffer_flags	-	reset buffer state
305  *	@tty: terminal to reset
306  *
307  *	Reset the read buffer counters and clear the flags.
308  *	Called from n_tty_open() and n_tty_flush_buffer().
309  *
310  *	Locking: caller holds exclusive termios_rwsem
311  *		 (or locking is not required)
312  */
313 
314 static void reset_buffer_flags(struct n_tty_data *ldata)
315 {
316 	ldata->read_head = ldata->canon_head = ldata->read_tail = 0;
317 	ldata->echo_head = ldata->echo_tail = ldata->echo_commit = 0;
318 	ldata->commit_head = 0;
319 	ldata->echo_mark = 0;
320 	ldata->line_start = 0;
321 
322 	ldata->erasing = 0;
323 	bitmap_zero(ldata->read_flags, N_TTY_BUF_SIZE);
324 	ldata->push = 0;
325 }
326 
327 static void n_tty_packet_mode_flush(struct tty_struct *tty)
328 {
329 	unsigned long flags;
330 
331 	if (tty->link->packet) {
332 		spin_lock_irqsave(&tty->ctrl_lock, flags);
333 		tty->ctrl_status |= TIOCPKT_FLUSHREAD;
334 		spin_unlock_irqrestore(&tty->ctrl_lock, flags);
335 		if (waitqueue_active(&tty->link->read_wait))
336 			wake_up_interruptible(&tty->link->read_wait);
337 	}
338 }
339 
340 /**
341  *	n_tty_flush_buffer	-	clean input queue
342  *	@tty:	terminal device
343  *
344  *	Flush the input buffer. Called when the tty layer wants the
345  *	buffer flushed (eg at hangup) or when the N_TTY line discipline
346  *	internally has to clean the pending queue (for example some signals).
347  *
348  *	Holds termios_rwsem to exclude producer/consumer while
349  *	buffer indices are reset.
350  *
351  *	Locking: ctrl_lock, exclusive termios_rwsem
352  */
353 
354 static void n_tty_flush_buffer(struct tty_struct *tty)
355 {
356 	down_write(&tty->termios_rwsem);
357 	reset_buffer_flags(tty->disc_data);
358 	n_tty_kick_worker(tty);
359 
360 	if (tty->link)
361 		n_tty_packet_mode_flush(tty);
362 	up_write(&tty->termios_rwsem);
363 }
364 
365 /**
366  *	n_tty_chars_in_buffer	-	report available bytes
367  *	@tty: tty device
368  *
369  *	Report the number of characters buffered to be delivered to user
370  *	at this instant in time.
371  *
372  *	Locking: exclusive termios_rwsem
373  */
374 
375 static ssize_t n_tty_chars_in_buffer(struct tty_struct *tty)
376 {
377 	ssize_t n;
378 
379 	WARN_ONCE(1, "%s is deprecated and scheduled for removal.", __func__);
380 
381 	down_write(&tty->termios_rwsem);
382 	n = chars_in_buffer(tty);
383 	up_write(&tty->termios_rwsem);
384 	return n;
385 }
386 
387 /**
388  *	is_utf8_continuation	-	utf8 multibyte check
389  *	@c: byte to check
390  *
391  *	Returns true if the utf8 character 'c' is a multibyte continuation
392  *	character. We use this to correctly compute the on screen size
393  *	of the character when printing
394  */
395 
396 static inline int is_utf8_continuation(unsigned char c)
397 {
398 	return (c & 0xc0) == 0x80;
399 }
400 
401 /**
402  *	is_continuation		-	multibyte check
403  *	@c: byte to check
404  *
405  *	Returns true if the utf8 character 'c' is a multibyte continuation
406  *	character and the terminal is in unicode mode.
407  */
408 
409 static inline int is_continuation(unsigned char c, struct tty_struct *tty)
410 {
411 	return I_IUTF8(tty) && is_utf8_continuation(c);
412 }
413 
414 /**
415  *	do_output_char			-	output one character
416  *	@c: character (or partial unicode symbol)
417  *	@tty: terminal device
418  *	@space: space available in tty driver write buffer
419  *
420  *	This is a helper function that handles one output character
421  *	(including special characters like TAB, CR, LF, etc.),
422  *	doing OPOST processing and putting the results in the
423  *	tty driver's write buffer.
424  *
425  *	Note that Linux currently ignores TABDLY, CRDLY, VTDLY, FFDLY
426  *	and NLDLY.  They simply aren't relevant in the world today.
427  *	If you ever need them, add them here.
428  *
429  *	Returns the number of bytes of buffer space used or -1 if
430  *	no space left.
431  *
432  *	Locking: should be called under the output_lock to protect
433  *		 the column state and space left in the buffer
434  */
435 
436 static int do_output_char(unsigned char c, struct tty_struct *tty, int space)
437 {
438 	struct n_tty_data *ldata = tty->disc_data;
439 	int	spaces;
440 
441 	if (!space)
442 		return -1;
443 
444 	switch (c) {
445 	case '\n':
446 		if (O_ONLRET(tty))
447 			ldata->column = 0;
448 		if (O_ONLCR(tty)) {
449 			if (space < 2)
450 				return -1;
451 			ldata->canon_column = ldata->column = 0;
452 			tty->ops->write(tty, "\r\n", 2);
453 			return 2;
454 		}
455 		ldata->canon_column = ldata->column;
456 		break;
457 	case '\r':
458 		if (O_ONOCR(tty) && ldata->column == 0)
459 			return 0;
460 		if (O_OCRNL(tty)) {
461 			c = '\n';
462 			if (O_ONLRET(tty))
463 				ldata->canon_column = ldata->column = 0;
464 			break;
465 		}
466 		ldata->canon_column = ldata->column = 0;
467 		break;
468 	case '\t':
469 		spaces = 8 - (ldata->column & 7);
470 		if (O_TABDLY(tty) == XTABS) {
471 			if (space < spaces)
472 				return -1;
473 			ldata->column += spaces;
474 			tty->ops->write(tty, "        ", spaces);
475 			return spaces;
476 		}
477 		ldata->column += spaces;
478 		break;
479 	case '\b':
480 		if (ldata->column > 0)
481 			ldata->column--;
482 		break;
483 	default:
484 		if (!iscntrl(c)) {
485 			if (O_OLCUC(tty))
486 				c = toupper(c);
487 			if (!is_continuation(c, tty))
488 				ldata->column++;
489 		}
490 		break;
491 	}
492 
493 	tty_put_char(tty, c);
494 	return 1;
495 }
496 
497 /**
498  *	process_output			-	output post processor
499  *	@c: character (or partial unicode symbol)
500  *	@tty: terminal device
501  *
502  *	Output one character with OPOST processing.
503  *	Returns -1 when the output device is full and the character
504  *	must be retried.
505  *
506  *	Locking: output_lock to protect column state and space left
507  *		 (also, this is called from n_tty_write under the
508  *		  tty layer write lock)
509  */
510 
511 static int process_output(unsigned char c, struct tty_struct *tty)
512 {
513 	struct n_tty_data *ldata = tty->disc_data;
514 	int	space, retval;
515 
516 	mutex_lock(&ldata->output_lock);
517 
518 	space = tty_write_room(tty);
519 	retval = do_output_char(c, tty, space);
520 
521 	mutex_unlock(&ldata->output_lock);
522 	if (retval < 0)
523 		return -1;
524 	else
525 		return 0;
526 }
527 
528 /**
529  *	process_output_block		-	block post processor
530  *	@tty: terminal device
531  *	@buf: character buffer
532  *	@nr: number of bytes to output
533  *
534  *	Output a block of characters with OPOST processing.
535  *	Returns the number of characters output.
536  *
537  *	This path is used to speed up block console writes, among other
538  *	things when processing blocks of output data. It handles only
539  *	the simple cases normally found and helps to generate blocks of
540  *	symbols for the console driver and thus improve performance.
541  *
542  *	Locking: output_lock to protect column state and space left
543  *		 (also, this is called from n_tty_write under the
544  *		  tty layer write lock)
545  */
546 
547 static ssize_t process_output_block(struct tty_struct *tty,
548 				    const unsigned char *buf, unsigned int nr)
549 {
550 	struct n_tty_data *ldata = tty->disc_data;
551 	int	space;
552 	int	i;
553 	const unsigned char *cp;
554 
555 	mutex_lock(&ldata->output_lock);
556 
557 	space = tty_write_room(tty);
558 	if (!space) {
559 		mutex_unlock(&ldata->output_lock);
560 		return 0;
561 	}
562 	if (nr > space)
563 		nr = space;
564 
565 	for (i = 0, cp = buf; i < nr; i++, cp++) {
566 		unsigned char c = *cp;
567 
568 		switch (c) {
569 		case '\n':
570 			if (O_ONLRET(tty))
571 				ldata->column = 0;
572 			if (O_ONLCR(tty))
573 				goto break_out;
574 			ldata->canon_column = ldata->column;
575 			break;
576 		case '\r':
577 			if (O_ONOCR(tty) && ldata->column == 0)
578 				goto break_out;
579 			if (O_OCRNL(tty))
580 				goto break_out;
581 			ldata->canon_column = ldata->column = 0;
582 			break;
583 		case '\t':
584 			goto break_out;
585 		case '\b':
586 			if (ldata->column > 0)
587 				ldata->column--;
588 			break;
589 		default:
590 			if (!iscntrl(c)) {
591 				if (O_OLCUC(tty))
592 					goto break_out;
593 				if (!is_continuation(c, tty))
594 					ldata->column++;
595 			}
596 			break;
597 		}
598 	}
599 break_out:
600 	i = tty->ops->write(tty, buf, i);
601 
602 	mutex_unlock(&ldata->output_lock);
603 	return i;
604 }
605 
606 /**
607  *	process_echoes	-	write pending echo characters
608  *	@tty: terminal device
609  *
610  *	Write previously buffered echo (and other ldisc-generated)
611  *	characters to the tty.
612  *
613  *	Characters generated by the ldisc (including echoes) need to
614  *	be buffered because the driver's write buffer can fill during
615  *	heavy program output.  Echoing straight to the driver will
616  *	often fail under these conditions, causing lost characters and
617  *	resulting mismatches of ldisc state information.
618  *
619  *	Since the ldisc state must represent the characters actually sent
620  *	to the driver at the time of the write, operations like certain
621  *	changes in column state are also saved in the buffer and executed
622  *	here.
623  *
624  *	A circular fifo buffer is used so that the most recent characters
625  *	are prioritized.  Also, when control characters are echoed with a
626  *	prefixed "^", the pair is treated atomically and thus not separated.
627  *
628  *	Locking: callers must hold output_lock
629  */
630 
631 static size_t __process_echoes(struct tty_struct *tty)
632 {
633 	struct n_tty_data *ldata = tty->disc_data;
634 	int	space, old_space;
635 	size_t tail;
636 	unsigned char c;
637 
638 	old_space = space = tty_write_room(tty);
639 
640 	tail = ldata->echo_tail;
641 	while (ldata->echo_commit != tail) {
642 		c = echo_buf(ldata, tail);
643 		if (c == ECHO_OP_START) {
644 			unsigned char op;
645 			int no_space_left = 0;
646 
647 			/*
648 			 * If the buffer byte is the start of a multi-byte
649 			 * operation, get the next byte, which is either the
650 			 * op code or a control character value.
651 			 */
652 			op = echo_buf(ldata, tail + 1);
653 
654 			switch (op) {
655 				unsigned int num_chars, num_bs;
656 
657 			case ECHO_OP_ERASE_TAB:
658 				num_chars = echo_buf(ldata, tail + 2);
659 
660 				/*
661 				 * Determine how many columns to go back
662 				 * in order to erase the tab.
663 				 * This depends on the number of columns
664 				 * used by other characters within the tab
665 				 * area.  If this (modulo 8) count is from
666 				 * the start of input rather than from a
667 				 * previous tab, we offset by canon column.
668 				 * Otherwise, tab spacing is normal.
669 				 */
670 				if (!(num_chars & 0x80))
671 					num_chars += ldata->canon_column;
672 				num_bs = 8 - (num_chars & 7);
673 
674 				if (num_bs > space) {
675 					no_space_left = 1;
676 					break;
677 				}
678 				space -= num_bs;
679 				while (num_bs--) {
680 					tty_put_char(tty, '\b');
681 					if (ldata->column > 0)
682 						ldata->column--;
683 				}
684 				tail += 3;
685 				break;
686 
687 			case ECHO_OP_SET_CANON_COL:
688 				ldata->canon_column = ldata->column;
689 				tail += 2;
690 				break;
691 
692 			case ECHO_OP_MOVE_BACK_COL:
693 				if (ldata->column > 0)
694 					ldata->column--;
695 				tail += 2;
696 				break;
697 
698 			case ECHO_OP_START:
699 				/* This is an escaped echo op start code */
700 				if (!space) {
701 					no_space_left = 1;
702 					break;
703 				}
704 				tty_put_char(tty, ECHO_OP_START);
705 				ldata->column++;
706 				space--;
707 				tail += 2;
708 				break;
709 
710 			default:
711 				/*
712 				 * If the op is not a special byte code,
713 				 * it is a ctrl char tagged to be echoed
714 				 * as "^X" (where X is the letter
715 				 * representing the control char).
716 				 * Note that we must ensure there is
717 				 * enough space for the whole ctrl pair.
718 				 *
719 				 */
720 				if (space < 2) {
721 					no_space_left = 1;
722 					break;
723 				}
724 				tty_put_char(tty, '^');
725 				tty_put_char(tty, op ^ 0100);
726 				ldata->column += 2;
727 				space -= 2;
728 				tail += 2;
729 			}
730 
731 			if (no_space_left)
732 				break;
733 		} else {
734 			if (O_OPOST(tty)) {
735 				int retval = do_output_char(c, tty, space);
736 				if (retval < 0)
737 					break;
738 				space -= retval;
739 			} else {
740 				if (!space)
741 					break;
742 				tty_put_char(tty, c);
743 				space -= 1;
744 			}
745 			tail += 1;
746 		}
747 	}
748 
749 	/* If the echo buffer is nearly full (so that the possibility exists
750 	 * of echo overrun before the next commit), then discard enough
751 	 * data at the tail to prevent a subsequent overrun */
752 	while (ldata->echo_commit - tail >= ECHO_DISCARD_WATERMARK) {
753 		if (echo_buf(ldata, tail) == ECHO_OP_START) {
754 			if (echo_buf(ldata, tail + 1) == ECHO_OP_ERASE_TAB)
755 				tail += 3;
756 			else
757 				tail += 2;
758 		} else
759 			tail++;
760 	}
761 
762 	ldata->echo_tail = tail;
763 	return old_space - space;
764 }
765 
766 static void commit_echoes(struct tty_struct *tty)
767 {
768 	struct n_tty_data *ldata = tty->disc_data;
769 	size_t nr, old, echoed;
770 	size_t head;
771 
772 	head = ldata->echo_head;
773 	ldata->echo_mark = head;
774 	old = ldata->echo_commit - ldata->echo_tail;
775 
776 	/* Process committed echoes if the accumulated # of bytes
777 	 * is over the threshold (and try again each time another
778 	 * block is accumulated) */
779 	nr = head - ldata->echo_tail;
780 	if (nr < ECHO_COMMIT_WATERMARK || (nr % ECHO_BLOCK > old % ECHO_BLOCK))
781 		return;
782 
783 	mutex_lock(&ldata->output_lock);
784 	ldata->echo_commit = head;
785 	echoed = __process_echoes(tty);
786 	mutex_unlock(&ldata->output_lock);
787 
788 	if (echoed && tty->ops->flush_chars)
789 		tty->ops->flush_chars(tty);
790 }
791 
792 static void process_echoes(struct tty_struct *tty)
793 {
794 	struct n_tty_data *ldata = tty->disc_data;
795 	size_t echoed;
796 
797 	if (ldata->echo_mark == ldata->echo_tail)
798 		return;
799 
800 	mutex_lock(&ldata->output_lock);
801 	ldata->echo_commit = ldata->echo_mark;
802 	echoed = __process_echoes(tty);
803 	mutex_unlock(&ldata->output_lock);
804 
805 	if (echoed && tty->ops->flush_chars)
806 		tty->ops->flush_chars(tty);
807 }
808 
809 /* NB: echo_mark and echo_head should be equivalent here */
810 static void flush_echoes(struct tty_struct *tty)
811 {
812 	struct n_tty_data *ldata = tty->disc_data;
813 
814 	if ((!L_ECHO(tty) && !L_ECHONL(tty)) ||
815 	    ldata->echo_commit == ldata->echo_head)
816 		return;
817 
818 	mutex_lock(&ldata->output_lock);
819 	ldata->echo_commit = ldata->echo_head;
820 	__process_echoes(tty);
821 	mutex_unlock(&ldata->output_lock);
822 }
823 
824 /**
825  *	add_echo_byte	-	add a byte to the echo buffer
826  *	@c: unicode byte to echo
827  *	@ldata: n_tty data
828  *
829  *	Add a character or operation byte to the echo buffer.
830  */
831 
832 static inline void add_echo_byte(unsigned char c, struct n_tty_data *ldata)
833 {
834 	*echo_buf_addr(ldata, ldata->echo_head++) = c;
835 }
836 
837 /**
838  *	echo_move_back_col	-	add operation to move back a column
839  *	@ldata: n_tty data
840  *
841  *	Add an operation to the echo buffer to move back one column.
842  */
843 
844 static void echo_move_back_col(struct n_tty_data *ldata)
845 {
846 	add_echo_byte(ECHO_OP_START, ldata);
847 	add_echo_byte(ECHO_OP_MOVE_BACK_COL, ldata);
848 }
849 
850 /**
851  *	echo_set_canon_col	-	add operation to set the canon column
852  *	@ldata: n_tty data
853  *
854  *	Add an operation to the echo buffer to set the canon column
855  *	to the current column.
856  */
857 
858 static void echo_set_canon_col(struct n_tty_data *ldata)
859 {
860 	add_echo_byte(ECHO_OP_START, ldata);
861 	add_echo_byte(ECHO_OP_SET_CANON_COL, ldata);
862 }
863 
864 /**
865  *	echo_erase_tab	-	add operation to erase a tab
866  *	@num_chars: number of character columns already used
867  *	@after_tab: true if num_chars starts after a previous tab
868  *	@ldata: n_tty data
869  *
870  *	Add an operation to the echo buffer to erase a tab.
871  *
872  *	Called by the eraser function, which knows how many character
873  *	columns have been used since either a previous tab or the start
874  *	of input.  This information will be used later, along with
875  *	canon column (if applicable), to go back the correct number
876  *	of columns.
877  */
878 
879 static void echo_erase_tab(unsigned int num_chars, int after_tab,
880 			   struct n_tty_data *ldata)
881 {
882 	add_echo_byte(ECHO_OP_START, ldata);
883 	add_echo_byte(ECHO_OP_ERASE_TAB, ldata);
884 
885 	/* We only need to know this modulo 8 (tab spacing) */
886 	num_chars &= 7;
887 
888 	/* Set the high bit as a flag if num_chars is after a previous tab */
889 	if (after_tab)
890 		num_chars |= 0x80;
891 
892 	add_echo_byte(num_chars, ldata);
893 }
894 
895 /**
896  *	echo_char_raw	-	echo a character raw
897  *	@c: unicode byte to echo
898  *	@tty: terminal device
899  *
900  *	Echo user input back onto the screen. This must be called only when
901  *	L_ECHO(tty) is true. Called from the driver receive_buf path.
902  *
903  *	This variant does not treat control characters specially.
904  */
905 
906 static void echo_char_raw(unsigned char c, struct n_tty_data *ldata)
907 {
908 	if (c == ECHO_OP_START) {
909 		add_echo_byte(ECHO_OP_START, ldata);
910 		add_echo_byte(ECHO_OP_START, ldata);
911 	} else {
912 		add_echo_byte(c, ldata);
913 	}
914 }
915 
916 /**
917  *	echo_char	-	echo a character
918  *	@c: unicode byte to echo
919  *	@tty: terminal device
920  *
921  *	Echo user input back onto the screen. This must be called only when
922  *	L_ECHO(tty) is true. Called from the driver receive_buf path.
923  *
924  *	This variant tags control characters to be echoed as "^X"
925  *	(where X is the letter representing the control char).
926  */
927 
928 static void echo_char(unsigned char c, struct tty_struct *tty)
929 {
930 	struct n_tty_data *ldata = tty->disc_data;
931 
932 	if (c == ECHO_OP_START) {
933 		add_echo_byte(ECHO_OP_START, ldata);
934 		add_echo_byte(ECHO_OP_START, ldata);
935 	} else {
936 		if (L_ECHOCTL(tty) && iscntrl(c) && c != '\t')
937 			add_echo_byte(ECHO_OP_START, ldata);
938 		add_echo_byte(c, ldata);
939 	}
940 }
941 
942 /**
943  *	finish_erasing		-	complete erase
944  *	@ldata: n_tty data
945  */
946 
947 static inline void finish_erasing(struct n_tty_data *ldata)
948 {
949 	if (ldata->erasing) {
950 		echo_char_raw('/', ldata);
951 		ldata->erasing = 0;
952 	}
953 }
954 
955 /**
956  *	eraser		-	handle erase function
957  *	@c: character input
958  *	@tty: terminal device
959  *
960  *	Perform erase and necessary output when an erase character is
961  *	present in the stream from the driver layer. Handles the complexities
962  *	of UTF-8 multibyte symbols.
963  *
964  *	n_tty_receive_buf()/producer path:
965  *		caller holds non-exclusive termios_rwsem
966  */
967 
968 static void eraser(unsigned char c, struct tty_struct *tty)
969 {
970 	struct n_tty_data *ldata = tty->disc_data;
971 	enum { ERASE, WERASE, KILL } kill_type;
972 	size_t head;
973 	size_t cnt;
974 	int seen_alnums;
975 
976 	if (ldata->read_head == ldata->canon_head) {
977 		/* process_output('\a', tty); */ /* what do you think? */
978 		return;
979 	}
980 	if (c == ERASE_CHAR(tty))
981 		kill_type = ERASE;
982 	else if (c == WERASE_CHAR(tty))
983 		kill_type = WERASE;
984 	else {
985 		if (!L_ECHO(tty)) {
986 			ldata->read_head = ldata->canon_head;
987 			return;
988 		}
989 		if (!L_ECHOK(tty) || !L_ECHOKE(tty) || !L_ECHOE(tty)) {
990 			ldata->read_head = ldata->canon_head;
991 			finish_erasing(ldata);
992 			echo_char(KILL_CHAR(tty), tty);
993 			/* Add a newline if ECHOK is on and ECHOKE is off. */
994 			if (L_ECHOK(tty))
995 				echo_char_raw('\n', ldata);
996 			return;
997 		}
998 		kill_type = KILL;
999 	}
1000 
1001 	seen_alnums = 0;
1002 	while (ldata->read_head != ldata->canon_head) {
1003 		head = ldata->read_head;
1004 
1005 		/* erase a single possibly multibyte character */
1006 		do {
1007 			head--;
1008 			c = read_buf(ldata, head);
1009 		} while (is_continuation(c, tty) && head != ldata->canon_head);
1010 
1011 		/* do not partially erase */
1012 		if (is_continuation(c, tty))
1013 			break;
1014 
1015 		if (kill_type == WERASE) {
1016 			/* Equivalent to BSD's ALTWERASE. */
1017 			if (isalnum(c) || c == '_')
1018 				seen_alnums++;
1019 			else if (seen_alnums)
1020 				break;
1021 		}
1022 		cnt = ldata->read_head - head;
1023 		ldata->read_head = head;
1024 		if (L_ECHO(tty)) {
1025 			if (L_ECHOPRT(tty)) {
1026 				if (!ldata->erasing) {
1027 					echo_char_raw('\\', ldata);
1028 					ldata->erasing = 1;
1029 				}
1030 				/* if cnt > 1, output a multi-byte character */
1031 				echo_char(c, tty);
1032 				while (--cnt > 0) {
1033 					head++;
1034 					echo_char_raw(read_buf(ldata, head), ldata);
1035 					echo_move_back_col(ldata);
1036 				}
1037 			} else if (kill_type == ERASE && !L_ECHOE(tty)) {
1038 				echo_char(ERASE_CHAR(tty), tty);
1039 			} else if (c == '\t') {
1040 				unsigned int num_chars = 0;
1041 				int after_tab = 0;
1042 				size_t tail = ldata->read_head;
1043 
1044 				/*
1045 				 * Count the columns used for characters
1046 				 * since the start of input or after a
1047 				 * previous tab.
1048 				 * This info is used to go back the correct
1049 				 * number of columns.
1050 				 */
1051 				while (tail != ldata->canon_head) {
1052 					tail--;
1053 					c = read_buf(ldata, tail);
1054 					if (c == '\t') {
1055 						after_tab = 1;
1056 						break;
1057 					} else if (iscntrl(c)) {
1058 						if (L_ECHOCTL(tty))
1059 							num_chars += 2;
1060 					} else if (!is_continuation(c, tty)) {
1061 						num_chars++;
1062 					}
1063 				}
1064 				echo_erase_tab(num_chars, after_tab, ldata);
1065 			} else {
1066 				if (iscntrl(c) && L_ECHOCTL(tty)) {
1067 					echo_char_raw('\b', ldata);
1068 					echo_char_raw(' ', ldata);
1069 					echo_char_raw('\b', ldata);
1070 				}
1071 				if (!iscntrl(c) || L_ECHOCTL(tty)) {
1072 					echo_char_raw('\b', ldata);
1073 					echo_char_raw(' ', ldata);
1074 					echo_char_raw('\b', ldata);
1075 				}
1076 			}
1077 		}
1078 		if (kill_type == ERASE)
1079 			break;
1080 	}
1081 	if (ldata->read_head == ldata->canon_head && L_ECHO(tty))
1082 		finish_erasing(ldata);
1083 }
1084 
1085 /**
1086  *	isig		-	handle the ISIG optio
1087  *	@sig: signal
1088  *	@tty: terminal
1089  *
1090  *	Called when a signal is being sent due to terminal input.
1091  *	Called from the driver receive_buf path so serialized.
1092  *
1093  *	Performs input and output flush if !NOFLSH. In this context, the echo
1094  *	buffer is 'output'. The signal is processed first to alert any current
1095  *	readers or writers to discontinue and exit their i/o loops.
1096  *
1097  *	Locking: ctrl_lock
1098  */
1099 
1100 static void isig(int sig, struct tty_struct *tty)
1101 {
1102 	struct n_tty_data *ldata = tty->disc_data;
1103 	struct pid *tty_pgrp = tty_get_pgrp(tty);
1104 	if (tty_pgrp) {
1105 		kill_pgrp(tty_pgrp, sig, 1);
1106 		put_pid(tty_pgrp);
1107 	}
1108 
1109 	if (!L_NOFLSH(tty)) {
1110 		up_read(&tty->termios_rwsem);
1111 		down_write(&tty->termios_rwsem);
1112 
1113 		/* clear echo buffer */
1114 		mutex_lock(&ldata->output_lock);
1115 		ldata->echo_head = ldata->echo_tail = 0;
1116 		ldata->echo_mark = ldata->echo_commit = 0;
1117 		mutex_unlock(&ldata->output_lock);
1118 
1119 		/* clear output buffer */
1120 		tty_driver_flush_buffer(tty);
1121 
1122 		/* clear input buffer */
1123 		reset_buffer_flags(tty->disc_data);
1124 
1125 		/* notify pty master of flush */
1126 		if (tty->link)
1127 			n_tty_packet_mode_flush(tty);
1128 
1129 		up_write(&tty->termios_rwsem);
1130 		down_read(&tty->termios_rwsem);
1131 	}
1132 }
1133 
1134 /**
1135  *	n_tty_receive_break	-	handle break
1136  *	@tty: terminal
1137  *
1138  *	An RS232 break event has been hit in the incoming bitstream. This
1139  *	can cause a variety of events depending upon the termios settings.
1140  *
1141  *	n_tty_receive_buf()/producer path:
1142  *		caller holds non-exclusive termios_rwsem
1143  *
1144  *	Note: may get exclusive termios_rwsem if flushing input buffer
1145  */
1146 
1147 static void n_tty_receive_break(struct tty_struct *tty)
1148 {
1149 	struct n_tty_data *ldata = tty->disc_data;
1150 
1151 	if (I_IGNBRK(tty))
1152 		return;
1153 	if (I_BRKINT(tty)) {
1154 		isig(SIGINT, tty);
1155 		return;
1156 	}
1157 	if (I_PARMRK(tty)) {
1158 		put_tty_queue('\377', ldata);
1159 		put_tty_queue('\0', ldata);
1160 	}
1161 	put_tty_queue('\0', ldata);
1162 	if (waitqueue_active(&tty->read_wait))
1163 		wake_up_interruptible_poll(&tty->read_wait, POLLIN);
1164 }
1165 
1166 /**
1167  *	n_tty_receive_overrun	-	handle overrun reporting
1168  *	@tty: terminal
1169  *
1170  *	Data arrived faster than we could process it. While the tty
1171  *	driver has flagged this the bits that were missed are gone
1172  *	forever.
1173  *
1174  *	Called from the receive_buf path so single threaded. Does not
1175  *	need locking as num_overrun and overrun_time are function
1176  *	private.
1177  */
1178 
1179 static void n_tty_receive_overrun(struct tty_struct *tty)
1180 {
1181 	struct n_tty_data *ldata = tty->disc_data;
1182 	char buf[64];
1183 
1184 	ldata->num_overrun++;
1185 	if (time_after(jiffies, ldata->overrun_time + HZ) ||
1186 			time_after(ldata->overrun_time, jiffies)) {
1187 		printk(KERN_WARNING "%s: %d input overrun(s)\n",
1188 			tty_name(tty, buf),
1189 			ldata->num_overrun);
1190 		ldata->overrun_time = jiffies;
1191 		ldata->num_overrun = 0;
1192 	}
1193 }
1194 
1195 /**
1196  *	n_tty_receive_parity_error	-	error notifier
1197  *	@tty: terminal device
1198  *	@c: character
1199  *
1200  *	Process a parity error and queue the right data to indicate
1201  *	the error case if necessary.
1202  *
1203  *	n_tty_receive_buf()/producer path:
1204  *		caller holds non-exclusive termios_rwsem
1205  */
1206 static void n_tty_receive_parity_error(struct tty_struct *tty, unsigned char c)
1207 {
1208 	struct n_tty_data *ldata = tty->disc_data;
1209 
1210 	if (I_INPCK(tty)) {
1211 		if (I_IGNPAR(tty))
1212 			return;
1213 		if (I_PARMRK(tty)) {
1214 			put_tty_queue('\377', ldata);
1215 			put_tty_queue('\0', ldata);
1216 			put_tty_queue(c, ldata);
1217 		} else
1218 			put_tty_queue('\0', ldata);
1219 	} else
1220 		put_tty_queue(c, ldata);
1221 	if (waitqueue_active(&tty->read_wait))
1222 		wake_up_interruptible_poll(&tty->read_wait, POLLIN);
1223 }
1224 
1225 static void
1226 n_tty_receive_signal_char(struct tty_struct *tty, int signal, unsigned char c)
1227 {
1228 	isig(signal, tty);
1229 	if (I_IXON(tty))
1230 		start_tty(tty);
1231 	if (L_ECHO(tty)) {
1232 		echo_char(c, tty);
1233 		commit_echoes(tty);
1234 	} else
1235 		process_echoes(tty);
1236 	return;
1237 }
1238 
1239 /**
1240  *	n_tty_receive_char	-	perform processing
1241  *	@tty: terminal device
1242  *	@c: character
1243  *
1244  *	Process an individual character of input received from the driver.
1245  *	This is serialized with respect to itself by the rules for the
1246  *	driver above.
1247  *
1248  *	n_tty_receive_buf()/producer path:
1249  *		caller holds non-exclusive termios_rwsem
1250  *		publishes canon_head if canonical mode is active
1251  *
1252  *	Returns 1 if LNEXT was received, else returns 0
1253  */
1254 
1255 static int
1256 n_tty_receive_char_special(struct tty_struct *tty, unsigned char c)
1257 {
1258 	struct n_tty_data *ldata = tty->disc_data;
1259 
1260 	if (I_IXON(tty)) {
1261 		if (c == START_CHAR(tty)) {
1262 			start_tty(tty);
1263 			process_echoes(tty);
1264 			return 0;
1265 		}
1266 		if (c == STOP_CHAR(tty)) {
1267 			stop_tty(tty);
1268 			return 0;
1269 		}
1270 	}
1271 
1272 	if (L_ISIG(tty)) {
1273 		if (c == INTR_CHAR(tty)) {
1274 			n_tty_receive_signal_char(tty, SIGINT, c);
1275 			return 0;
1276 		} else if (c == QUIT_CHAR(tty)) {
1277 			n_tty_receive_signal_char(tty, SIGQUIT, c);
1278 			return 0;
1279 		} else if (c == SUSP_CHAR(tty)) {
1280 			n_tty_receive_signal_char(tty, SIGTSTP, c);
1281 			return 0;
1282 		}
1283 	}
1284 
1285 	if (tty->stopped && !tty->flow_stopped && I_IXON(tty) && I_IXANY(tty)) {
1286 		start_tty(tty);
1287 		process_echoes(tty);
1288 	}
1289 
1290 	if (c == '\r') {
1291 		if (I_IGNCR(tty))
1292 			return 0;
1293 		if (I_ICRNL(tty))
1294 			c = '\n';
1295 	} else if (c == '\n' && I_INLCR(tty))
1296 		c = '\r';
1297 
1298 	if (ldata->icanon) {
1299 		if (c == ERASE_CHAR(tty) || c == KILL_CHAR(tty) ||
1300 		    (c == WERASE_CHAR(tty) && L_IEXTEN(tty))) {
1301 			eraser(c, tty);
1302 			commit_echoes(tty);
1303 			return 0;
1304 		}
1305 		if (c == LNEXT_CHAR(tty) && L_IEXTEN(tty)) {
1306 			ldata->lnext = 1;
1307 			if (L_ECHO(tty)) {
1308 				finish_erasing(ldata);
1309 				if (L_ECHOCTL(tty)) {
1310 					echo_char_raw('^', ldata);
1311 					echo_char_raw('\b', ldata);
1312 					commit_echoes(tty);
1313 				}
1314 			}
1315 			return 1;
1316 		}
1317 		if (c == REPRINT_CHAR(tty) && L_ECHO(tty) && L_IEXTEN(tty)) {
1318 			size_t tail = ldata->canon_head;
1319 
1320 			finish_erasing(ldata);
1321 			echo_char(c, tty);
1322 			echo_char_raw('\n', ldata);
1323 			while (tail != ldata->read_head) {
1324 				echo_char(read_buf(ldata, tail), tty);
1325 				tail++;
1326 			}
1327 			commit_echoes(tty);
1328 			return 0;
1329 		}
1330 		if (c == '\n') {
1331 			if (L_ECHO(tty) || L_ECHONL(tty)) {
1332 				echo_char_raw('\n', ldata);
1333 				commit_echoes(tty);
1334 			}
1335 			goto handle_newline;
1336 		}
1337 		if (c == EOF_CHAR(tty)) {
1338 			c = __DISABLED_CHAR;
1339 			goto handle_newline;
1340 		}
1341 		if ((c == EOL_CHAR(tty)) ||
1342 		    (c == EOL2_CHAR(tty) && L_IEXTEN(tty))) {
1343 			/*
1344 			 * XXX are EOL_CHAR and EOL2_CHAR echoed?!?
1345 			 */
1346 			if (L_ECHO(tty)) {
1347 				/* Record the column of first canon char. */
1348 				if (ldata->canon_head == ldata->read_head)
1349 					echo_set_canon_col(ldata);
1350 				echo_char(c, tty);
1351 				commit_echoes(tty);
1352 			}
1353 			/*
1354 			 * XXX does PARMRK doubling happen for
1355 			 * EOL_CHAR and EOL2_CHAR?
1356 			 */
1357 			if (c == (unsigned char) '\377' && I_PARMRK(tty))
1358 				put_tty_queue(c, ldata);
1359 
1360 handle_newline:
1361 			set_bit(ldata->read_head & (N_TTY_BUF_SIZE - 1), ldata->read_flags);
1362 			put_tty_queue(c, ldata);
1363 			smp_store_release(&ldata->canon_head, ldata->read_head);
1364 			kill_fasync(&tty->fasync, SIGIO, POLL_IN);
1365 			if (waitqueue_active(&tty->read_wait))
1366 				wake_up_interruptible_poll(&tty->read_wait, POLLIN);
1367 			return 0;
1368 		}
1369 	}
1370 
1371 	if (L_ECHO(tty)) {
1372 		finish_erasing(ldata);
1373 		if (c == '\n')
1374 			echo_char_raw('\n', ldata);
1375 		else {
1376 			/* Record the column of first canon char. */
1377 			if (ldata->canon_head == ldata->read_head)
1378 				echo_set_canon_col(ldata);
1379 			echo_char(c, tty);
1380 		}
1381 		commit_echoes(tty);
1382 	}
1383 
1384 	/* PARMRK doubling check */
1385 	if (c == (unsigned char) '\377' && I_PARMRK(tty))
1386 		put_tty_queue(c, ldata);
1387 
1388 	put_tty_queue(c, ldata);
1389 	return 0;
1390 }
1391 
1392 static inline void
1393 n_tty_receive_char_inline(struct tty_struct *tty, unsigned char c)
1394 {
1395 	struct n_tty_data *ldata = tty->disc_data;
1396 
1397 	if (tty->stopped && !tty->flow_stopped && I_IXON(tty) && I_IXANY(tty)) {
1398 		start_tty(tty);
1399 		process_echoes(tty);
1400 	}
1401 	if (L_ECHO(tty)) {
1402 		finish_erasing(ldata);
1403 		/* Record the column of first canon char. */
1404 		if (ldata->canon_head == ldata->read_head)
1405 			echo_set_canon_col(ldata);
1406 		echo_char(c, tty);
1407 		commit_echoes(tty);
1408 	}
1409 	/* PARMRK doubling check */
1410 	if (c == (unsigned char) '\377' && I_PARMRK(tty))
1411 		put_tty_queue(c, ldata);
1412 	put_tty_queue(c, ldata);
1413 }
1414 
1415 static void n_tty_receive_char(struct tty_struct *tty, unsigned char c)
1416 {
1417 	n_tty_receive_char_inline(tty, c);
1418 }
1419 
1420 static inline void
1421 n_tty_receive_char_fast(struct tty_struct *tty, unsigned char c)
1422 {
1423 	struct n_tty_data *ldata = tty->disc_data;
1424 
1425 	if (tty->stopped && !tty->flow_stopped && I_IXON(tty) && I_IXANY(tty)) {
1426 		start_tty(tty);
1427 		process_echoes(tty);
1428 	}
1429 	if (L_ECHO(tty)) {
1430 		finish_erasing(ldata);
1431 		/* Record the column of first canon char. */
1432 		if (ldata->canon_head == ldata->read_head)
1433 			echo_set_canon_col(ldata);
1434 		echo_char(c, tty);
1435 		commit_echoes(tty);
1436 	}
1437 	put_tty_queue(c, ldata);
1438 }
1439 
1440 static void n_tty_receive_char_closing(struct tty_struct *tty, unsigned char c)
1441 {
1442 	if (I_ISTRIP(tty))
1443 		c &= 0x7f;
1444 	if (I_IUCLC(tty) && L_IEXTEN(tty))
1445 		c = tolower(c);
1446 
1447 	if (I_IXON(tty)) {
1448 		if (c == STOP_CHAR(tty))
1449 			stop_tty(tty);
1450 		else if (c == START_CHAR(tty) ||
1451 			 (tty->stopped && !tty->flow_stopped && I_IXANY(tty) &&
1452 			  c != INTR_CHAR(tty) && c != QUIT_CHAR(tty) &&
1453 			  c != SUSP_CHAR(tty))) {
1454 			start_tty(tty);
1455 			process_echoes(tty);
1456 		}
1457 	}
1458 }
1459 
1460 static void
1461 n_tty_receive_char_flagged(struct tty_struct *tty, unsigned char c, char flag)
1462 {
1463 	char buf[64];
1464 
1465 	switch (flag) {
1466 	case TTY_BREAK:
1467 		n_tty_receive_break(tty);
1468 		break;
1469 	case TTY_PARITY:
1470 	case TTY_FRAME:
1471 		n_tty_receive_parity_error(tty, c);
1472 		break;
1473 	case TTY_OVERRUN:
1474 		n_tty_receive_overrun(tty);
1475 		break;
1476 	default:
1477 		printk(KERN_ERR "%s: unknown flag %d\n",
1478 		       tty_name(tty, buf), flag);
1479 		break;
1480 	}
1481 }
1482 
1483 static void
1484 n_tty_receive_char_lnext(struct tty_struct *tty, unsigned char c, char flag)
1485 {
1486 	struct n_tty_data *ldata = tty->disc_data;
1487 
1488 	ldata->lnext = 0;
1489 	if (likely(flag == TTY_NORMAL)) {
1490 		if (I_ISTRIP(tty))
1491 			c &= 0x7f;
1492 		if (I_IUCLC(tty) && L_IEXTEN(tty))
1493 			c = tolower(c);
1494 		n_tty_receive_char(tty, c);
1495 	} else
1496 		n_tty_receive_char_flagged(tty, c, flag);
1497 }
1498 
1499 static void
1500 n_tty_receive_buf_real_raw(struct tty_struct *tty, const unsigned char *cp,
1501 			   char *fp, int count)
1502 {
1503 	struct n_tty_data *ldata = tty->disc_data;
1504 	size_t n, head;
1505 
1506 	head = ldata->read_head & (N_TTY_BUF_SIZE - 1);
1507 	n = min_t(size_t, count, N_TTY_BUF_SIZE - head);
1508 	memcpy(read_buf_addr(ldata, head), cp, n);
1509 	ldata->read_head += n;
1510 	cp += n;
1511 	count -= n;
1512 
1513 	head = ldata->read_head & (N_TTY_BUF_SIZE - 1);
1514 	n = min_t(size_t, count, N_TTY_BUF_SIZE - head);
1515 	memcpy(read_buf_addr(ldata, head), cp, n);
1516 	ldata->read_head += n;
1517 }
1518 
1519 static void
1520 n_tty_receive_buf_raw(struct tty_struct *tty, const unsigned char *cp,
1521 		      char *fp, int count)
1522 {
1523 	struct n_tty_data *ldata = tty->disc_data;
1524 	char flag = TTY_NORMAL;
1525 
1526 	while (count--) {
1527 		if (fp)
1528 			flag = *fp++;
1529 		if (likely(flag == TTY_NORMAL))
1530 			put_tty_queue(*cp++, ldata);
1531 		else
1532 			n_tty_receive_char_flagged(tty, *cp++, flag);
1533 	}
1534 }
1535 
1536 static void
1537 n_tty_receive_buf_closing(struct tty_struct *tty, const unsigned char *cp,
1538 			  char *fp, int count)
1539 {
1540 	char flag = TTY_NORMAL;
1541 
1542 	while (count--) {
1543 		if (fp)
1544 			flag = *fp++;
1545 		if (likely(flag == TTY_NORMAL))
1546 			n_tty_receive_char_closing(tty, *cp++);
1547 		else
1548 			n_tty_receive_char_flagged(tty, *cp++, flag);
1549 	}
1550 }
1551 
1552 static void
1553 n_tty_receive_buf_standard(struct tty_struct *tty, const unsigned char *cp,
1554 			  char *fp, int count)
1555 {
1556 	struct n_tty_data *ldata = tty->disc_data;
1557 	char flag = TTY_NORMAL;
1558 
1559 	while (count--) {
1560 		if (fp)
1561 			flag = *fp++;
1562 		if (likely(flag == TTY_NORMAL)) {
1563 			unsigned char c = *cp++;
1564 
1565 			if (I_ISTRIP(tty))
1566 				c &= 0x7f;
1567 			if (I_IUCLC(tty) && L_IEXTEN(tty))
1568 				c = tolower(c);
1569 			if (L_EXTPROC(tty)) {
1570 				put_tty_queue(c, ldata);
1571 				continue;
1572 			}
1573 			if (!test_bit(c, ldata->char_map))
1574 				n_tty_receive_char_inline(tty, c);
1575 			else if (n_tty_receive_char_special(tty, c) && count) {
1576 				if (fp)
1577 					flag = *fp++;
1578 				n_tty_receive_char_lnext(tty, *cp++, flag);
1579 				count--;
1580 			}
1581 		} else
1582 			n_tty_receive_char_flagged(tty, *cp++, flag);
1583 	}
1584 }
1585 
1586 static void
1587 n_tty_receive_buf_fast(struct tty_struct *tty, const unsigned char *cp,
1588 		       char *fp, int count)
1589 {
1590 	struct n_tty_data *ldata = tty->disc_data;
1591 	char flag = TTY_NORMAL;
1592 
1593 	while (count--) {
1594 		if (fp)
1595 			flag = *fp++;
1596 		if (likely(flag == TTY_NORMAL)) {
1597 			unsigned char c = *cp++;
1598 
1599 			if (!test_bit(c, ldata->char_map))
1600 				n_tty_receive_char_fast(tty, c);
1601 			else if (n_tty_receive_char_special(tty, c) && count) {
1602 				if (fp)
1603 					flag = *fp++;
1604 				n_tty_receive_char_lnext(tty, *cp++, flag);
1605 				count--;
1606 			}
1607 		} else
1608 			n_tty_receive_char_flagged(tty, *cp++, flag);
1609 	}
1610 }
1611 
1612 static void __receive_buf(struct tty_struct *tty, const unsigned char *cp,
1613 			  char *fp, int count)
1614 {
1615 	struct n_tty_data *ldata = tty->disc_data;
1616 	bool preops = I_ISTRIP(tty) || (I_IUCLC(tty) && L_IEXTEN(tty));
1617 
1618 	if (ldata->real_raw)
1619 		n_tty_receive_buf_real_raw(tty, cp, fp, count);
1620 	else if (ldata->raw || (L_EXTPROC(tty) && !preops))
1621 		n_tty_receive_buf_raw(tty, cp, fp, count);
1622 	else if (tty->closing && !L_EXTPROC(tty))
1623 		n_tty_receive_buf_closing(tty, cp, fp, count);
1624 	else {
1625 		if (ldata->lnext) {
1626 			char flag = TTY_NORMAL;
1627 
1628 			if (fp)
1629 				flag = *fp++;
1630 			n_tty_receive_char_lnext(tty, *cp++, flag);
1631 			count--;
1632 		}
1633 
1634 		if (!preops && !I_PARMRK(tty))
1635 			n_tty_receive_buf_fast(tty, cp, fp, count);
1636 		else
1637 			n_tty_receive_buf_standard(tty, cp, fp, count);
1638 
1639 		flush_echoes(tty);
1640 		if (tty->ops->flush_chars)
1641 			tty->ops->flush_chars(tty);
1642 	}
1643 
1644 	if (ldata->icanon && !L_EXTPROC(tty))
1645 		return;
1646 
1647 	/* publish read_head to consumer */
1648 	smp_store_release(&ldata->commit_head, ldata->read_head);
1649 
1650 	if ((read_cnt(ldata) >= ldata->minimum_to_wake) || L_EXTPROC(tty)) {
1651 		kill_fasync(&tty->fasync, SIGIO, POLL_IN);
1652 		if (waitqueue_active(&tty->read_wait))
1653 			wake_up_interruptible_poll(&tty->read_wait, POLLIN);
1654 	}
1655 }
1656 
1657 /**
1658  *	n_tty_receive_buf_common	-	process input
1659  *	@tty: device to receive input
1660  *	@cp: input chars
1661  *	@fp: flags for each char (if NULL, all chars are TTY_NORMAL)
1662  *	@count: number of input chars in @cp
1663  *
1664  *	Called by the terminal driver when a block of characters has
1665  *	been received. This function must be called from soft contexts
1666  *	not from interrupt context. The driver is responsible for making
1667  *	calls one at a time and in order (or using flush_to_ldisc)
1668  *
1669  *	Returns the # of input chars from @cp which were processed.
1670  *
1671  *	In canonical mode, the maximum line length is 4096 chars (including
1672  *	the line termination char); lines longer than 4096 chars are
1673  *	truncated. After 4095 chars, input data is still processed but
1674  *	not stored. Overflow processing ensures the tty can always
1675  *	receive more input until at least one line can be read.
1676  *
1677  *	In non-canonical mode, the read buffer will only accept 4095 chars;
1678  *	this provides the necessary space for a newline char if the input
1679  *	mode is switched to canonical.
1680  *
1681  *	Note it is possible for the read buffer to _contain_ 4096 chars
1682  *	in non-canonical mode: the read buffer could already contain the
1683  *	maximum canon line of 4096 chars when the mode is switched to
1684  *	non-canonical.
1685  *
1686  *	n_tty_receive_buf()/producer path:
1687  *		claims non-exclusive termios_rwsem
1688  *		publishes commit_head or canon_head
1689  */
1690 static int
1691 n_tty_receive_buf_common(struct tty_struct *tty, const unsigned char *cp,
1692 			 char *fp, int count, int flow)
1693 {
1694 	struct n_tty_data *ldata = tty->disc_data;
1695 	int room, n, rcvd = 0, overflow;
1696 
1697 	down_read(&tty->termios_rwsem);
1698 
1699 	while (1) {
1700 		/*
1701 		 * When PARMRK is set, each input char may take up to 3 chars
1702 		 * in the read buf; reduce the buffer space avail by 3x
1703 		 *
1704 		 * If we are doing input canonicalization, and there are no
1705 		 * pending newlines, let characters through without limit, so
1706 		 * that erase characters will be handled.  Other excess
1707 		 * characters will be beeped.
1708 		 *
1709 		 * paired with store in *_copy_from_read_buf() -- guarantees
1710 		 * the consumer has loaded the data in read_buf up to the new
1711 		 * read_tail (so this producer will not overwrite unread data)
1712 		 */
1713 		size_t tail = smp_load_acquire(&ldata->read_tail);
1714 
1715 		room = N_TTY_BUF_SIZE - (ldata->read_head - tail);
1716 		if (I_PARMRK(tty))
1717 			room = (room + 2) / 3;
1718 		room--;
1719 		if (room <= 0) {
1720 			overflow = ldata->icanon && ldata->canon_head == tail;
1721 			if (overflow && room < 0)
1722 				ldata->read_head--;
1723 			room = overflow;
1724 			ldata->no_room = flow && !room;
1725 		} else
1726 			overflow = 0;
1727 
1728 		n = min(count, room);
1729 		if (!n)
1730 			break;
1731 
1732 		/* ignore parity errors if handling overflow */
1733 		if (!overflow || !fp || *fp != TTY_PARITY)
1734 			__receive_buf(tty, cp, fp, n);
1735 
1736 		cp += n;
1737 		if (fp)
1738 			fp += n;
1739 		count -= n;
1740 		rcvd += n;
1741 	}
1742 
1743 	tty->receive_room = room;
1744 
1745 	/* Unthrottle if handling overflow on pty */
1746 	if (tty->driver->type == TTY_DRIVER_TYPE_PTY) {
1747 		if (overflow) {
1748 			tty_set_flow_change(tty, TTY_UNTHROTTLE_SAFE);
1749 			tty_unthrottle_safe(tty);
1750 			__tty_set_flow_change(tty, 0);
1751 		}
1752 	} else
1753 		n_tty_check_throttle(tty);
1754 
1755 	up_read(&tty->termios_rwsem);
1756 
1757 	return rcvd;
1758 }
1759 
1760 static void n_tty_receive_buf(struct tty_struct *tty, const unsigned char *cp,
1761 			      char *fp, int count)
1762 {
1763 	n_tty_receive_buf_common(tty, cp, fp, count, 0);
1764 }
1765 
1766 static int n_tty_receive_buf2(struct tty_struct *tty, const unsigned char *cp,
1767 			      char *fp, int count)
1768 {
1769 	return n_tty_receive_buf_common(tty, cp, fp, count, 1);
1770 }
1771 
1772 int is_ignored(int sig)
1773 {
1774 	return (sigismember(&current->blocked, sig) ||
1775 		current->sighand->action[sig-1].sa.sa_handler == SIG_IGN);
1776 }
1777 
1778 /**
1779  *	n_tty_set_termios	-	termios data changed
1780  *	@tty: terminal
1781  *	@old: previous data
1782  *
1783  *	Called by the tty layer when the user changes termios flags so
1784  *	that the line discipline can plan ahead. This function cannot sleep
1785  *	and is protected from re-entry by the tty layer. The user is
1786  *	guaranteed that this function will not be re-entered or in progress
1787  *	when the ldisc is closed.
1788  *
1789  *	Locking: Caller holds tty->termios_rwsem
1790  */
1791 
1792 static void n_tty_set_termios(struct tty_struct *tty, struct ktermios *old)
1793 {
1794 	struct n_tty_data *ldata = tty->disc_data;
1795 
1796 	if (!old || (old->c_lflag ^ tty->termios.c_lflag) & ICANON) {
1797 		bitmap_zero(ldata->read_flags, N_TTY_BUF_SIZE);
1798 		ldata->line_start = ldata->read_tail;
1799 		if (!L_ICANON(tty) || !read_cnt(ldata)) {
1800 			ldata->canon_head = ldata->read_tail;
1801 			ldata->push = 0;
1802 		} else {
1803 			set_bit((ldata->read_head - 1) & (N_TTY_BUF_SIZE - 1),
1804 				ldata->read_flags);
1805 			ldata->canon_head = ldata->read_head;
1806 			ldata->push = 1;
1807 		}
1808 		ldata->commit_head = ldata->read_head;
1809 		ldata->erasing = 0;
1810 		ldata->lnext = 0;
1811 	}
1812 
1813 	ldata->icanon = (L_ICANON(tty) != 0);
1814 
1815 	if (I_ISTRIP(tty) || I_IUCLC(tty) || I_IGNCR(tty) ||
1816 	    I_ICRNL(tty) || I_INLCR(tty) || L_ICANON(tty) ||
1817 	    I_IXON(tty) || L_ISIG(tty) || L_ECHO(tty) ||
1818 	    I_PARMRK(tty)) {
1819 		bitmap_zero(ldata->char_map, 256);
1820 
1821 		if (I_IGNCR(tty) || I_ICRNL(tty))
1822 			set_bit('\r', ldata->char_map);
1823 		if (I_INLCR(tty))
1824 			set_bit('\n', ldata->char_map);
1825 
1826 		if (L_ICANON(tty)) {
1827 			set_bit(ERASE_CHAR(tty), ldata->char_map);
1828 			set_bit(KILL_CHAR(tty), ldata->char_map);
1829 			set_bit(EOF_CHAR(tty), ldata->char_map);
1830 			set_bit('\n', ldata->char_map);
1831 			set_bit(EOL_CHAR(tty), ldata->char_map);
1832 			if (L_IEXTEN(tty)) {
1833 				set_bit(WERASE_CHAR(tty), ldata->char_map);
1834 				set_bit(LNEXT_CHAR(tty), ldata->char_map);
1835 				set_bit(EOL2_CHAR(tty), ldata->char_map);
1836 				if (L_ECHO(tty))
1837 					set_bit(REPRINT_CHAR(tty),
1838 						ldata->char_map);
1839 			}
1840 		}
1841 		if (I_IXON(tty)) {
1842 			set_bit(START_CHAR(tty), ldata->char_map);
1843 			set_bit(STOP_CHAR(tty), ldata->char_map);
1844 		}
1845 		if (L_ISIG(tty)) {
1846 			set_bit(INTR_CHAR(tty), ldata->char_map);
1847 			set_bit(QUIT_CHAR(tty), ldata->char_map);
1848 			set_bit(SUSP_CHAR(tty), ldata->char_map);
1849 		}
1850 		clear_bit(__DISABLED_CHAR, ldata->char_map);
1851 		ldata->raw = 0;
1852 		ldata->real_raw = 0;
1853 	} else {
1854 		ldata->raw = 1;
1855 		if ((I_IGNBRK(tty) || (!I_BRKINT(tty) && !I_PARMRK(tty))) &&
1856 		    (I_IGNPAR(tty) || !I_INPCK(tty)) &&
1857 		    (tty->driver->flags & TTY_DRIVER_REAL_RAW))
1858 			ldata->real_raw = 1;
1859 		else
1860 			ldata->real_raw = 0;
1861 	}
1862 	/*
1863 	 * Fix tty hang when I_IXON(tty) is cleared, but the tty
1864 	 * been stopped by STOP_CHAR(tty) before it.
1865 	 */
1866 	if (!I_IXON(tty) && old && (old->c_iflag & IXON) && !tty->flow_stopped) {
1867 		start_tty(tty);
1868 		process_echoes(tty);
1869 	}
1870 
1871 	/* The termios change make the tty ready for I/O */
1872 	if (waitqueue_active(&tty->write_wait))
1873 		wake_up_interruptible(&tty->write_wait);
1874 	if (waitqueue_active(&tty->read_wait))
1875 		wake_up_interruptible(&tty->read_wait);
1876 }
1877 
1878 /**
1879  *	n_tty_close		-	close the ldisc for this tty
1880  *	@tty: device
1881  *
1882  *	Called from the terminal layer when this line discipline is
1883  *	being shut down, either because of a close or becsuse of a
1884  *	discipline change. The function will not be called while other
1885  *	ldisc methods are in progress.
1886  */
1887 
1888 static void n_tty_close(struct tty_struct *tty)
1889 {
1890 	struct n_tty_data *ldata = tty->disc_data;
1891 
1892 	if (tty->link)
1893 		n_tty_packet_mode_flush(tty);
1894 
1895 	vfree(ldata);
1896 	tty->disc_data = NULL;
1897 }
1898 
1899 /**
1900  *	n_tty_open		-	open an ldisc
1901  *	@tty: terminal to open
1902  *
1903  *	Called when this line discipline is being attached to the
1904  *	terminal device. Can sleep. Called serialized so that no
1905  *	other events will occur in parallel. No further open will occur
1906  *	until a close.
1907  */
1908 
1909 static int n_tty_open(struct tty_struct *tty)
1910 {
1911 	struct n_tty_data *ldata;
1912 
1913 	/* Currently a malloc failure here can panic */
1914 	ldata = vmalloc(sizeof(*ldata));
1915 	if (!ldata)
1916 		goto err;
1917 
1918 	ldata->overrun_time = jiffies;
1919 	mutex_init(&ldata->atomic_read_lock);
1920 	mutex_init(&ldata->output_lock);
1921 
1922 	tty->disc_data = ldata;
1923 	reset_buffer_flags(tty->disc_data);
1924 	ldata->column = 0;
1925 	ldata->canon_column = 0;
1926 	ldata->minimum_to_wake = 1;
1927 	ldata->num_overrun = 0;
1928 	ldata->no_room = 0;
1929 	ldata->lnext = 0;
1930 	tty->closing = 0;
1931 	/* indicate buffer work may resume */
1932 	clear_bit(TTY_LDISC_HALTED, &tty->flags);
1933 	n_tty_set_termios(tty, NULL);
1934 	tty_unthrottle(tty);
1935 
1936 	return 0;
1937 err:
1938 	return -ENOMEM;
1939 }
1940 
1941 static inline int input_available_p(struct tty_struct *tty, int poll)
1942 {
1943 	struct n_tty_data *ldata = tty->disc_data;
1944 	int amt = poll && !TIME_CHAR(tty) && MIN_CHAR(tty) ? MIN_CHAR(tty) : 1;
1945 
1946 	if (ldata->icanon && !L_EXTPROC(tty))
1947 		return ldata->canon_head != ldata->read_tail;
1948 	else
1949 		return ldata->commit_head - ldata->read_tail >= amt;
1950 }
1951 
1952 /**
1953  *	copy_from_read_buf	-	copy read data directly
1954  *	@tty: terminal device
1955  *	@b: user data
1956  *	@nr: size of data
1957  *
1958  *	Helper function to speed up n_tty_read.  It is only called when
1959  *	ICANON is off; it copies characters straight from the tty queue to
1960  *	user space directly.  It can be profitably called twice; once to
1961  *	drain the space from the tail pointer to the (physical) end of the
1962  *	buffer, and once to drain the space from the (physical) beginning of
1963  *	the buffer to head pointer.
1964  *
1965  *	Called under the ldata->atomic_read_lock sem
1966  *
1967  *	n_tty_read()/consumer path:
1968  *		caller holds non-exclusive termios_rwsem
1969  *		read_tail published
1970  */
1971 
1972 static int copy_from_read_buf(struct tty_struct *tty,
1973 				      unsigned char __user **b,
1974 				      size_t *nr)
1975 
1976 {
1977 	struct n_tty_data *ldata = tty->disc_data;
1978 	int retval;
1979 	size_t n;
1980 	bool is_eof;
1981 	size_t head = smp_load_acquire(&ldata->commit_head);
1982 	size_t tail = ldata->read_tail & (N_TTY_BUF_SIZE - 1);
1983 
1984 	retval = 0;
1985 	n = min(head - ldata->read_tail, N_TTY_BUF_SIZE - tail);
1986 	n = min(*nr, n);
1987 	if (n) {
1988 		retval = copy_to_user(*b, read_buf_addr(ldata, tail), n);
1989 		n -= retval;
1990 		is_eof = n == 1 && read_buf(ldata, tail) == EOF_CHAR(tty);
1991 		tty_audit_add_data(tty, read_buf_addr(ldata, tail), n,
1992 				ldata->icanon);
1993 		smp_store_release(&ldata->read_tail, ldata->read_tail + n);
1994 		/* Turn single EOF into zero-length read */
1995 		if (L_EXTPROC(tty) && ldata->icanon && is_eof &&
1996 		    (head == ldata->read_tail))
1997 			n = 0;
1998 		*b += n;
1999 		*nr -= n;
2000 	}
2001 	return retval;
2002 }
2003 
2004 /**
2005  *	canon_copy_from_read_buf	-	copy read data in canonical mode
2006  *	@tty: terminal device
2007  *	@b: user data
2008  *	@nr: size of data
2009  *
2010  *	Helper function for n_tty_read.  It is only called when ICANON is on;
2011  *	it copies one line of input up to and including the line-delimiting
2012  *	character into the user-space buffer.
2013  *
2014  *	NB: When termios is changed from non-canonical to canonical mode and
2015  *	the read buffer contains data, n_tty_set_termios() simulates an EOF
2016  *	push (as if C-d were input) _without_ the DISABLED_CHAR in the buffer.
2017  *	This causes data already processed as input to be immediately available
2018  *	as input although a newline has not been received.
2019  *
2020  *	Called under the atomic_read_lock mutex
2021  *
2022  *	n_tty_read()/consumer path:
2023  *		caller holds non-exclusive termios_rwsem
2024  *		read_tail published
2025  */
2026 
2027 static int canon_copy_from_read_buf(struct tty_struct *tty,
2028 				    unsigned char __user **b,
2029 				    size_t *nr)
2030 {
2031 	struct n_tty_data *ldata = tty->disc_data;
2032 	size_t n, size, more, c;
2033 	size_t eol;
2034 	size_t tail;
2035 	int ret, found = 0;
2036 	bool eof_push = 0;
2037 
2038 	/* N.B. avoid overrun if nr == 0 */
2039 	n = min(*nr, smp_load_acquire(&ldata->canon_head) - ldata->read_tail);
2040 	if (!n)
2041 		return 0;
2042 
2043 	tail = ldata->read_tail & (N_TTY_BUF_SIZE - 1);
2044 	size = min_t(size_t, tail + n, N_TTY_BUF_SIZE);
2045 
2046 	n_tty_trace("%s: nr:%zu tail:%zu n:%zu size:%zu\n",
2047 		    __func__, *nr, tail, n, size);
2048 
2049 	eol = find_next_bit(ldata->read_flags, size, tail);
2050 	more = n - (size - tail);
2051 	if (eol == N_TTY_BUF_SIZE && more) {
2052 		/* scan wrapped without finding set bit */
2053 		eol = find_next_bit(ldata->read_flags, more, 0);
2054 		if (eol != more)
2055 			found = 1;
2056 	} else if (eol != size)
2057 		found = 1;
2058 
2059 	size = N_TTY_BUF_SIZE - tail;
2060 	n = eol - tail;
2061 	if (n > 4096)
2062 		n += 4096;
2063 	n += found;
2064 	c = n;
2065 
2066 	if (found && !ldata->push && read_buf(ldata, eol) == __DISABLED_CHAR) {
2067 		n--;
2068 		eof_push = !n && ldata->read_tail != ldata->line_start;
2069 	}
2070 
2071 	n_tty_trace("%s: eol:%zu found:%d n:%zu c:%zu size:%zu more:%zu\n",
2072 		    __func__, eol, found, n, c, size, more);
2073 
2074 	if (n > size) {
2075 		ret = copy_to_user(*b, read_buf_addr(ldata, tail), size);
2076 		if (ret)
2077 			return -EFAULT;
2078 		ret = copy_to_user(*b + size, ldata->read_buf, n - size);
2079 	} else
2080 		ret = copy_to_user(*b, read_buf_addr(ldata, tail), n);
2081 
2082 	if (ret)
2083 		return -EFAULT;
2084 	*b += n;
2085 	*nr -= n;
2086 
2087 	if (found)
2088 		clear_bit(eol, ldata->read_flags);
2089 	smp_store_release(&ldata->read_tail, ldata->read_tail + c);
2090 
2091 	if (found) {
2092 		if (!ldata->push)
2093 			ldata->line_start = ldata->read_tail;
2094 		else
2095 			ldata->push = 0;
2096 		tty_audit_push(tty);
2097 	}
2098 	return eof_push ? -EAGAIN : 0;
2099 }
2100 
2101 extern ssize_t redirected_tty_write(struct file *, const char __user *,
2102 							size_t, loff_t *);
2103 
2104 /**
2105  *	job_control		-	check job control
2106  *	@tty: tty
2107  *	@file: file handle
2108  *
2109  *	Perform job control management checks on this file/tty descriptor
2110  *	and if appropriate send any needed signals and return a negative
2111  *	error code if action should be taken.
2112  *
2113  *	Locking: redirected write test is safe
2114  *		 current->signal->tty check is safe
2115  *		 ctrl_lock to safely reference tty->pgrp
2116  */
2117 
2118 static int job_control(struct tty_struct *tty, struct file *file)
2119 {
2120 	/* Job control check -- must be done at start and after
2121 	   every sleep (POSIX.1 7.1.1.4). */
2122 	/* NOTE: not yet done after every sleep pending a thorough
2123 	   check of the logic of this change. -- jlc */
2124 	/* don't stop on /dev/console */
2125 	if (file->f_op->write == redirected_tty_write ||
2126 	    current->signal->tty != tty)
2127 		return 0;
2128 
2129 	spin_lock_irq(&tty->ctrl_lock);
2130 	if (!tty->pgrp)
2131 		printk(KERN_ERR "n_tty_read: no tty->pgrp!\n");
2132 	else if (task_pgrp(current) != tty->pgrp) {
2133 		spin_unlock_irq(&tty->ctrl_lock);
2134 		if (is_ignored(SIGTTIN) || is_current_pgrp_orphaned())
2135 			return -EIO;
2136 		kill_pgrp(task_pgrp(current), SIGTTIN, 1);
2137 		set_thread_flag(TIF_SIGPENDING);
2138 		return -ERESTARTSYS;
2139 	}
2140 	spin_unlock_irq(&tty->ctrl_lock);
2141 	return 0;
2142 }
2143 
2144 
2145 /**
2146  *	n_tty_read		-	read function for tty
2147  *	@tty: tty device
2148  *	@file: file object
2149  *	@buf: userspace buffer pointer
2150  *	@nr: size of I/O
2151  *
2152  *	Perform reads for the line discipline. We are guaranteed that the
2153  *	line discipline will not be closed under us but we may get multiple
2154  *	parallel readers and must handle this ourselves. We may also get
2155  *	a hangup. Always called in user context, may sleep.
2156  *
2157  *	This code must be sure never to sleep through a hangup.
2158  *
2159  *	n_tty_read()/consumer path:
2160  *		claims non-exclusive termios_rwsem
2161  *		publishes read_tail
2162  */
2163 
2164 static ssize_t n_tty_read(struct tty_struct *tty, struct file *file,
2165 			 unsigned char __user *buf, size_t nr)
2166 {
2167 	struct n_tty_data *ldata = tty->disc_data;
2168 	unsigned char __user *b = buf;
2169 	DEFINE_WAIT_FUNC(wait, woken_wake_function);
2170 	int c;
2171 	int minimum, time;
2172 	ssize_t retval = 0;
2173 	long timeout;
2174 	int packet;
2175 	size_t tail;
2176 
2177 	c = job_control(tty, file);
2178 	if (c < 0)
2179 		return c;
2180 
2181 	/*
2182 	 *	Internal serialization of reads.
2183 	 */
2184 	if (file->f_flags & O_NONBLOCK) {
2185 		if (!mutex_trylock(&ldata->atomic_read_lock))
2186 			return -EAGAIN;
2187 	} else {
2188 		if (mutex_lock_interruptible(&ldata->atomic_read_lock))
2189 			return -ERESTARTSYS;
2190 	}
2191 
2192 	down_read(&tty->termios_rwsem);
2193 
2194 	minimum = time = 0;
2195 	timeout = MAX_SCHEDULE_TIMEOUT;
2196 	if (!ldata->icanon) {
2197 		minimum = MIN_CHAR(tty);
2198 		if (minimum) {
2199 			time = (HZ / 10) * TIME_CHAR(tty);
2200 			if (time)
2201 				ldata->minimum_to_wake = 1;
2202 			else if (!waitqueue_active(&tty->read_wait) ||
2203 				 (ldata->minimum_to_wake > minimum))
2204 				ldata->minimum_to_wake = minimum;
2205 		} else {
2206 			timeout = (HZ / 10) * TIME_CHAR(tty);
2207 			ldata->minimum_to_wake = minimum = 1;
2208 		}
2209 	}
2210 
2211 	packet = tty->packet;
2212 	tail = ldata->read_tail;
2213 
2214 	add_wait_queue(&tty->read_wait, &wait);
2215 	while (nr) {
2216 		/* First test for status change. */
2217 		if (packet && tty->link->ctrl_status) {
2218 			unsigned char cs;
2219 			if (b != buf)
2220 				break;
2221 			spin_lock_irq(&tty->link->ctrl_lock);
2222 			cs = tty->link->ctrl_status;
2223 			tty->link->ctrl_status = 0;
2224 			spin_unlock_irq(&tty->link->ctrl_lock);
2225 			if (tty_put_user(tty, cs, b++)) {
2226 				retval = -EFAULT;
2227 				b--;
2228 				break;
2229 			}
2230 			nr--;
2231 			break;
2232 		}
2233 
2234 		if (((minimum - (b - buf)) < ldata->minimum_to_wake) &&
2235 		    ((minimum - (b - buf)) >= 1))
2236 			ldata->minimum_to_wake = (minimum - (b - buf));
2237 
2238 		if (!input_available_p(tty, 0)) {
2239 			if (test_bit(TTY_OTHER_CLOSED, &tty->flags)) {
2240 				retval = -EIO;
2241 				break;
2242 			}
2243 			if (tty_hung_up_p(file))
2244 				break;
2245 			if (!timeout)
2246 				break;
2247 			if (file->f_flags & O_NONBLOCK) {
2248 				retval = -EAGAIN;
2249 				break;
2250 			}
2251 			if (signal_pending(current)) {
2252 				retval = -ERESTARTSYS;
2253 				break;
2254 			}
2255 			up_read(&tty->termios_rwsem);
2256 
2257 			timeout = wait_woken(&wait, TASK_INTERRUPTIBLE,
2258 					     timeout);
2259 
2260 			down_read(&tty->termios_rwsem);
2261 			continue;
2262 		}
2263 
2264 		if (ldata->icanon && !L_EXTPROC(tty)) {
2265 			retval = canon_copy_from_read_buf(tty, &b, &nr);
2266 			if (retval == -EAGAIN) {
2267 				retval = 0;
2268 				continue;
2269 			} else if (retval)
2270 				break;
2271 		} else {
2272 			int uncopied;
2273 
2274 			/* Deal with packet mode. */
2275 			if (packet && b == buf) {
2276 				if (tty_put_user(tty, TIOCPKT_DATA, b++)) {
2277 					retval = -EFAULT;
2278 					b--;
2279 					break;
2280 				}
2281 				nr--;
2282 			}
2283 
2284 			uncopied = copy_from_read_buf(tty, &b, &nr);
2285 			uncopied += copy_from_read_buf(tty, &b, &nr);
2286 			if (uncopied) {
2287 				retval = -EFAULT;
2288 				break;
2289 			}
2290 		}
2291 
2292 		n_tty_check_unthrottle(tty);
2293 
2294 		if (b - buf >= minimum)
2295 			break;
2296 		if (time)
2297 			timeout = time;
2298 	}
2299 	if (tail != ldata->read_tail)
2300 		n_tty_kick_worker(tty);
2301 	up_read(&tty->termios_rwsem);
2302 
2303 	remove_wait_queue(&tty->read_wait, &wait);
2304 	if (!waitqueue_active(&tty->read_wait))
2305 		ldata->minimum_to_wake = minimum;
2306 
2307 	mutex_unlock(&ldata->atomic_read_lock);
2308 
2309 	if (b - buf)
2310 		retval = b - buf;
2311 
2312 	return retval;
2313 }
2314 
2315 /**
2316  *	n_tty_write		-	write function for tty
2317  *	@tty: tty device
2318  *	@file: file object
2319  *	@buf: userspace buffer pointer
2320  *	@nr: size of I/O
2321  *
2322  *	Write function of the terminal device.  This is serialized with
2323  *	respect to other write callers but not to termios changes, reads
2324  *	and other such events.  Since the receive code will echo characters,
2325  *	thus calling driver write methods, the output_lock is used in
2326  *	the output processing functions called here as well as in the
2327  *	echo processing function to protect the column state and space
2328  *	left in the buffer.
2329  *
2330  *	This code must be sure never to sleep through a hangup.
2331  *
2332  *	Locking: output_lock to protect column state and space left
2333  *		 (note that the process_output*() functions take this
2334  *		  lock themselves)
2335  */
2336 
2337 static ssize_t n_tty_write(struct tty_struct *tty, struct file *file,
2338 			   const unsigned char *buf, size_t nr)
2339 {
2340 	const unsigned char *b = buf;
2341 	DEFINE_WAIT_FUNC(wait, woken_wake_function);
2342 	int c;
2343 	ssize_t retval = 0;
2344 
2345 	/* Job control check -- must be done at start (POSIX.1 7.1.1.4). */
2346 	if (L_TOSTOP(tty) && file->f_op->write != redirected_tty_write) {
2347 		retval = tty_check_change(tty);
2348 		if (retval)
2349 			return retval;
2350 	}
2351 
2352 	down_read(&tty->termios_rwsem);
2353 
2354 	/* Write out any echoed characters that are still pending */
2355 	process_echoes(tty);
2356 
2357 	add_wait_queue(&tty->write_wait, &wait);
2358 	while (1) {
2359 		if (signal_pending(current)) {
2360 			retval = -ERESTARTSYS;
2361 			break;
2362 		}
2363 		if (tty_hung_up_p(file) || (tty->link && !tty->link->count)) {
2364 			retval = -EIO;
2365 			break;
2366 		}
2367 		if (O_OPOST(tty)) {
2368 			while (nr > 0) {
2369 				ssize_t num = process_output_block(tty, b, nr);
2370 				if (num < 0) {
2371 					if (num == -EAGAIN)
2372 						break;
2373 					retval = num;
2374 					goto break_out;
2375 				}
2376 				b += num;
2377 				nr -= num;
2378 				if (nr == 0)
2379 					break;
2380 				c = *b;
2381 				if (process_output(c, tty) < 0)
2382 					break;
2383 				b++; nr--;
2384 			}
2385 			if (tty->ops->flush_chars)
2386 				tty->ops->flush_chars(tty);
2387 		} else {
2388 			struct n_tty_data *ldata = tty->disc_data;
2389 
2390 			while (nr > 0) {
2391 				mutex_lock(&ldata->output_lock);
2392 				c = tty->ops->write(tty, b, nr);
2393 				mutex_unlock(&ldata->output_lock);
2394 				if (c < 0) {
2395 					retval = c;
2396 					goto break_out;
2397 				}
2398 				if (!c)
2399 					break;
2400 				b += c;
2401 				nr -= c;
2402 			}
2403 		}
2404 		if (!nr)
2405 			break;
2406 		if (file->f_flags & O_NONBLOCK) {
2407 			retval = -EAGAIN;
2408 			break;
2409 		}
2410 		up_read(&tty->termios_rwsem);
2411 
2412 		wait_woken(&wait, TASK_INTERRUPTIBLE, MAX_SCHEDULE_TIMEOUT);
2413 
2414 		down_read(&tty->termios_rwsem);
2415 	}
2416 break_out:
2417 	remove_wait_queue(&tty->write_wait, &wait);
2418 	if (b - buf != nr && tty->fasync)
2419 		set_bit(TTY_DO_WRITE_WAKEUP, &tty->flags);
2420 	up_read(&tty->termios_rwsem);
2421 	return (b - buf) ? b - buf : retval;
2422 }
2423 
2424 /**
2425  *	n_tty_poll		-	poll method for N_TTY
2426  *	@tty: terminal device
2427  *	@file: file accessing it
2428  *	@wait: poll table
2429  *
2430  *	Called when the line discipline is asked to poll() for data or
2431  *	for special events. This code is not serialized with respect to
2432  *	other events save open/close.
2433  *
2434  *	This code must be sure never to sleep through a hangup.
2435  *	Called without the kernel lock held - fine
2436  */
2437 
2438 static unsigned int n_tty_poll(struct tty_struct *tty, struct file *file,
2439 							poll_table *wait)
2440 {
2441 	struct n_tty_data *ldata = tty->disc_data;
2442 	unsigned int mask = 0;
2443 
2444 	poll_wait(file, &tty->read_wait, wait);
2445 	poll_wait(file, &tty->write_wait, wait);
2446 	if (input_available_p(tty, 1))
2447 		mask |= POLLIN | POLLRDNORM;
2448 	if (tty->packet && tty->link->ctrl_status)
2449 		mask |= POLLPRI | POLLIN | POLLRDNORM;
2450 	if (test_bit(TTY_OTHER_CLOSED, &tty->flags))
2451 		mask |= POLLHUP;
2452 	if (tty_hung_up_p(file))
2453 		mask |= POLLHUP;
2454 	if (!(mask & (POLLHUP | POLLIN | POLLRDNORM))) {
2455 		if (MIN_CHAR(tty) && !TIME_CHAR(tty))
2456 			ldata->minimum_to_wake = MIN_CHAR(tty);
2457 		else
2458 			ldata->minimum_to_wake = 1;
2459 	}
2460 	if (tty->ops->write && !tty_is_writelocked(tty) &&
2461 			tty_chars_in_buffer(tty) < WAKEUP_CHARS &&
2462 			tty_write_room(tty) > 0)
2463 		mask |= POLLOUT | POLLWRNORM;
2464 	return mask;
2465 }
2466 
2467 static unsigned long inq_canon(struct n_tty_data *ldata)
2468 {
2469 	size_t nr, head, tail;
2470 
2471 	if (ldata->canon_head == ldata->read_tail)
2472 		return 0;
2473 	head = ldata->canon_head;
2474 	tail = ldata->read_tail;
2475 	nr = head - tail;
2476 	/* Skip EOF-chars.. */
2477 	while (head != tail) {
2478 		if (test_bit(tail & (N_TTY_BUF_SIZE - 1), ldata->read_flags) &&
2479 		    read_buf(ldata, tail) == __DISABLED_CHAR)
2480 			nr--;
2481 		tail++;
2482 	}
2483 	return nr;
2484 }
2485 
2486 static int n_tty_ioctl(struct tty_struct *tty, struct file *file,
2487 		       unsigned int cmd, unsigned long arg)
2488 {
2489 	struct n_tty_data *ldata = tty->disc_data;
2490 	int retval;
2491 
2492 	switch (cmd) {
2493 	case TIOCOUTQ:
2494 		return put_user(tty_chars_in_buffer(tty), (int __user *) arg);
2495 	case TIOCINQ:
2496 		down_write(&tty->termios_rwsem);
2497 		if (L_ICANON(tty))
2498 			retval = inq_canon(ldata);
2499 		else
2500 			retval = read_cnt(ldata);
2501 		up_write(&tty->termios_rwsem);
2502 		return put_user(retval, (unsigned int __user *) arg);
2503 	default:
2504 		return n_tty_ioctl_helper(tty, file, cmd, arg);
2505 	}
2506 }
2507 
2508 static void n_tty_fasync(struct tty_struct *tty, int on)
2509 {
2510 	struct n_tty_data *ldata = tty->disc_data;
2511 
2512 	if (!waitqueue_active(&tty->read_wait)) {
2513 		if (on)
2514 			ldata->minimum_to_wake = 1;
2515 		else if (!tty->fasync)
2516 			ldata->minimum_to_wake = N_TTY_BUF_SIZE;
2517 	}
2518 }
2519 
2520 struct tty_ldisc_ops tty_ldisc_N_TTY = {
2521 	.magic           = TTY_LDISC_MAGIC,
2522 	.name            = "n_tty",
2523 	.open            = n_tty_open,
2524 	.close           = n_tty_close,
2525 	.flush_buffer    = n_tty_flush_buffer,
2526 	.chars_in_buffer = n_tty_chars_in_buffer,
2527 	.read            = n_tty_read,
2528 	.write           = n_tty_write,
2529 	.ioctl           = n_tty_ioctl,
2530 	.set_termios     = n_tty_set_termios,
2531 	.poll            = n_tty_poll,
2532 	.receive_buf     = n_tty_receive_buf,
2533 	.write_wakeup    = n_tty_write_wakeup,
2534 	.fasync		 = n_tty_fasync,
2535 	.receive_buf2	 = n_tty_receive_buf2,
2536 };
2537 
2538 /**
2539  *	n_tty_inherit_ops	-	inherit N_TTY methods
2540  *	@ops: struct tty_ldisc_ops where to save N_TTY methods
2541  *
2542  *	Enables a 'subclass' line discipline to 'inherit' N_TTY
2543  *	methods.
2544  */
2545 
2546 void n_tty_inherit_ops(struct tty_ldisc_ops *ops)
2547 {
2548 	*ops = tty_ldisc_N_TTY;
2549 	ops->owner = NULL;
2550 	ops->refcount = ops->flags = 0;
2551 }
2552 EXPORT_SYMBOL_GPL(n_tty_inherit_ops);
2553