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e0495736
AC
1/*
2 * Tty buffer allocation management
3 */
4
5#include <linux/types.h>
6#include <linux/errno.h>
7#include <linux/tty.h>
8#include <linux/tty_driver.h>
9#include <linux/tty_flip.h>
10#include <linux/timer.h>
11#include <linux/string.h>
12#include <linux/slab.h>
13#include <linux/sched.h>
e0495736
AC
14#include <linux/wait.h>
15#include <linux/bitops.h>
16#include <linux/delay.h>
17#include <linux/module.h>
593fb1ae 18#include <linux/ratelimit.h>
e0495736 19
1cef50e3
PH
20
21#define MIN_TTYB_SIZE 256
22#define TTYB_ALIGN_MASK 255
23
7bfe0b71
PH
24/*
25 * Byte threshold to limit memory consumption for flip buffers.
26 * The actual memory limit is > 2x this amount.
27 */
4d18e6ef 28#define TTYB_DEFAULT_MEM_LIMIT 65536
7bfe0b71 29
9114fe8c
PH
30/*
31 * We default to dicing tty buffer allocations to this many characters
32 * in order to avoid multiple page allocations. We know the size of
33 * tty_buffer itself but it must also be taken into account that the
34 * the buffer is 256 byte aligned. See tty_buffer_find for the allocation
35 * logic this must match
36 */
37
38#define TTY_BUFFER_PAGE (((PAGE_SIZE - sizeof(struct tty_buffer)) / 2) & ~0xFF)
39
a7c8d58c
PH
40/**
41 * tty_buffer_lock_exclusive - gain exclusive access to buffer
42 * tty_buffer_unlock_exclusive - release exclusive access
43 *
44 * @port - tty_port owning the flip buffer
45 *
46 * Guarantees safe use of the line discipline's receive_buf() method by
47 * excluding the buffer work and any pending flush from using the flip
48 * buffer. Data can continue to be added concurrently to the flip buffer
49 * from the driver side.
50 *
51 * On release, the buffer work is restarted if there is data in the
52 * flip buffer
53 */
54
55void tty_buffer_lock_exclusive(struct tty_port *port)
56{
57 struct tty_bufhead *buf = &port->buf;
58
59 atomic_inc(&buf->priority);
60 mutex_lock(&buf->lock);
61}
28a821c3 62EXPORT_SYMBOL_GPL(tty_buffer_lock_exclusive);
a7c8d58c
PH
63
64void tty_buffer_unlock_exclusive(struct tty_port *port)
65{
66 struct tty_bufhead *buf = &port->buf;
67 int restart;
68
69 restart = buf->head->commit != buf->head->read;
70
71 atomic_dec(&buf->priority);
72 mutex_unlock(&buf->lock);
73 if (restart)
74 queue_work(system_unbound_wq, &buf->work);
75}
28a821c3 76EXPORT_SYMBOL_GPL(tty_buffer_unlock_exclusive);
a7c8d58c 77
7bfe0b71
PH
78/**
79 * tty_buffer_space_avail - return unused buffer space
80 * @port - tty_port owning the flip buffer
81 *
82 * Returns the # of bytes which can be written by the driver without
83 * reaching the buffer limit.
84 *
85 * Note: this does not guarantee that memory is available to write
86 * the returned # of bytes (use tty_prepare_flip_string_xxx() to
87 * pre-allocate if memory guarantee is required).
88 */
89
90int tty_buffer_space_avail(struct tty_port *port)
91{
5dda4ca5 92 int space = port->buf.mem_limit - atomic_read(&port->buf.mem_used);
7bfe0b71
PH
93 return max(space, 0);
94}
c4a8dab5 95EXPORT_SYMBOL_GPL(tty_buffer_space_avail);
7bfe0b71 96
9dd5139f
PH
97static void tty_buffer_reset(struct tty_buffer *p, size_t size)
98{
99 p->used = 0;
100 p->size = size;
101 p->next = NULL;
102 p->commit = 0;
103 p->read = 0;
acc0f67f 104 p->flags = 0;
9dd5139f
PH
105}
106
e0495736
AC
107/**
108 * tty_buffer_free_all - free buffers used by a tty
109 * @tty: tty to free from
110 *
111 * Remove all the buffers pending on a tty whether queued with data
112 * or in the free ring. Must be called when the tty is no longer in use
e0495736
AC
113 */
114
ecbbfd44 115void tty_buffer_free_all(struct tty_port *port)
e0495736 116{
ecbbfd44 117 struct tty_bufhead *buf = &port->buf;
809850b7
PH
118 struct tty_buffer *p, *next;
119 struct llist_node *llist;
5cff39c6 120
2cf7b67e
PH
121 while ((p = buf->head) != NULL) {
122 buf->head = p->next;
7391ee16
PH
123 if (p->size > 0)
124 kfree(p);
e0495736 125 }
809850b7
PH
126 llist = llist_del_all(&buf->free);
127 llist_for_each_entry_safe(p, next, llist, free)
2cf7b67e 128 kfree(p);
809850b7 129
7391ee16
PH
130 tty_buffer_reset(&buf->sentinel, 0);
131 buf->head = &buf->sentinel;
132 buf->tail = &buf->sentinel;
7bfe0b71 133
5dda4ca5 134 atomic_set(&buf->mem_used, 0);
e0495736
AC
135}
136
137/**
138 * tty_buffer_alloc - allocate a tty buffer
139 * @tty: tty device
140 * @size: desired size (characters)
141 *
142 * Allocate a new tty buffer to hold the desired number of characters.
11b9faa4
PH
143 * We round our buffers off in 256 character chunks to get better
144 * allocation behaviour.
e0495736
AC
145 * Return NULL if out of memory or the allocation would exceed the
146 * per device queue
e0495736
AC
147 */
148
ecbbfd44 149static struct tty_buffer *tty_buffer_alloc(struct tty_port *port, size_t size)
e0495736 150{
809850b7 151 struct llist_node *free;
e0495736
AC
152 struct tty_buffer *p;
153
11b9faa4
PH
154 /* Round the buffer size out */
155 size = __ALIGN_MASK(size, TTYB_ALIGN_MASK);
156
157 if (size <= MIN_TTYB_SIZE) {
809850b7
PH
158 free = llist_del_first(&port->buf.free);
159 if (free) {
160 p = llist_entry(free, struct tty_buffer, free);
11b9faa4
PH
161 goto found;
162 }
163 }
164
165 /* Should possibly check if this fails for the largest buffer we
166 have queued and recycle that ? */
5dda4ca5 167 if (atomic_read(&port->buf.mem_used) > port->buf.mem_limit)
e0495736
AC
168 return NULL;
169 p = kmalloc(sizeof(struct tty_buffer) + 2 * size, GFP_ATOMIC);
170 if (p == NULL)
171 return NULL;
9dd5139f 172
11b9faa4 173found:
9dd5139f 174 tty_buffer_reset(p, size);
5dda4ca5 175 atomic_add(size, &port->buf.mem_used);
e0495736
AC
176 return p;
177}
178
179/**
180 * tty_buffer_free - free a tty buffer
181 * @tty: tty owning the buffer
182 * @b: the buffer to free
183 *
184 * Free a tty buffer, or add it to the free list according to our
185 * internal strategy
e0495736
AC
186 */
187
ecbbfd44 188static void tty_buffer_free(struct tty_port *port, struct tty_buffer *b)
e0495736 189{
ecbbfd44 190 struct tty_bufhead *buf = &port->buf;
5cff39c6 191
e0495736 192 /* Dumb strategy for now - should keep some stats */
5dda4ca5 193 WARN_ON(atomic_sub_return(b->size, &buf->mem_used) < 0);
e0495736 194
1cef50e3 195 if (b->size > MIN_TTYB_SIZE)
e0495736 196 kfree(b);
7391ee16 197 else if (b->size > 0)
809850b7 198 llist_add(&b->free, &buf->free);
e0495736
AC
199}
200
e0495736
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201/**
202 * tty_buffer_flush - flush full tty buffers
203 * @tty: tty to flush
86c80a8e 204 * @ld: optional ldisc ptr (must be referenced)
e0495736 205 *
86c80a8e
PH
206 * flush all the buffers containing receive data. If ld != NULL,
207 * flush the ldisc input buffer.
e0495736 208 *
a7c8d58c 209 * Locking: takes buffer lock to ensure single-threaded flip buffer
e9975fde 210 * 'consumer'
e0495736
AC
211 */
212
86c80a8e 213void tty_buffer_flush(struct tty_struct *tty, struct tty_ldisc *ld)
e0495736 214{
2fc20661 215 struct tty_port *port = tty->port;
ecbbfd44 216 struct tty_bufhead *buf = &port->buf;
47aa658a 217 struct tty_buffer *next;
e0495736 218
a7c8d58c 219 atomic_inc(&buf->priority);
e9975fde 220
a7c8d58c 221 mutex_lock(&buf->lock);
9e6b7cd7
DV
222 /* paired w/ release in __tty_buffer_request_room; ensures there are
223 * no pending memory accesses to the freed buffer
224 */
225 while ((next = smp_load_acquire(&buf->head->next)) != NULL) {
47aa658a
PH
226 tty_buffer_free(port, buf->head);
227 buf->head = next;
228 }
229 buf->head->read = buf->head->commit;
86c80a8e
PH
230
231 if (ld && ld->ops->flush_buffer)
232 ld->ops->flush_buffer(tty);
233
a7c8d58c
PH
234 atomic_dec(&buf->priority);
235 mutex_unlock(&buf->lock);
e0495736
AC
236}
237
e0495736 238/**
64325a3b 239 * tty_buffer_request_room - grow tty buffer if needed
e0495736
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240 * @tty: tty structure
241 * @size: size desired
acc0f67f 242 * @flags: buffer flags if new buffer allocated (default = 0)
e0495736
AC
243 *
244 * Make at least size bytes of linear space available for the tty
245 * buffer. If we fail return the size we managed to find.
acc0f67f
PH
246 *
247 * Will change over to a new buffer if the current buffer is encoded as
248 * TTY_NORMAL (so has no flags buffer) and the new buffer requires
249 * a flags buffer.
e0495736 250 */
acc0f67f
PH
251static int __tty_buffer_request_room(struct tty_port *port, size_t size,
252 int flags)
e0495736 253{
ecbbfd44 254 struct tty_bufhead *buf = &port->buf;
e0495736 255 struct tty_buffer *b, *n;
acc0f67f 256 int left, change;
e8437d7e 257
5cff39c6 258 b = buf->tail;
acc0f67f
PH
259 if (b->flags & TTYB_NORMAL)
260 left = 2 * b->size - b->used;
261 else
262 left = b->size - b->used;
e0495736 263
acc0f67f
PH
264 change = (b->flags & TTYB_NORMAL) && (~flags & TTYB_NORMAL);
265 if (change || left < size) {
e0495736 266 /* This is the slow path - looking for new buffers to use */
e16cb0a7
GKH
267 n = tty_buffer_alloc(port, size);
268 if (n != NULL) {
acc0f67f 269 n->flags = flags;
5cff39c6 270 buf->tail = n;
facd885c
DV
271 /* paired w/ acquire in flush_to_ldisc(); ensures
272 * flush_to_ldisc() sees buffer data.
273 */
274 smp_store_release(&b->commit, b->used);
069f38b4 275 /* paired w/ acquire in flush_to_ldisc(); ensures the
62a0d8d7
PH
276 * latest commit value can be read before the head is
277 * advanced to the next buffer
278 */
069f38b4 279 smp_store_release(&b->next, n);
acc0f67f
PH
280 } else if (change)
281 size = 0;
282 else
e0495736
AC
283 size = left;
284 }
e0495736
AC
285 return size;
286}
acc0f67f
PH
287
288int tty_buffer_request_room(struct tty_port *port, size_t size)
289{
290 return __tty_buffer_request_room(port, size, 0);
291}
e0495736
AC
292EXPORT_SYMBOL_GPL(tty_buffer_request_room);
293
294/**
2832fc11 295 * tty_insert_flip_string_fixed_flag - Add characters to the tty buffer
2f693357 296 * @port: tty port
e0495736 297 * @chars: characters
2832fc11 298 * @flag: flag value for each character
e0495736
AC
299 * @size: size
300 *
301 * Queue a series of bytes to the tty buffering. All the characters
ccc5ca8d 302 * passed are marked with the supplied flag. Returns the number added.
e0495736
AC
303 */
304
2f693357 305int tty_insert_flip_string_fixed_flag(struct tty_port *port,
2832fc11 306 const unsigned char *chars, char flag, size_t size)
e0495736
AC
307{
308 int copied = 0;
309 do {
d4bee0a6 310 int goal = min_t(size_t, size - copied, TTY_BUFFER_PAGE);
acc0f67f
PH
311 int flags = (flag == TTY_NORMAL) ? TTYB_NORMAL : 0;
312 int space = __tty_buffer_request_room(port, goal, flags);
64325a3b 313 struct tty_buffer *tb = port->buf.tail;
7391ee16 314 if (unlikely(space == 0))
e0495736 315 break;
1fc359fc 316 memcpy(char_buf_ptr(tb, tb->used), chars, space);
acc0f67f
PH
317 if (~tb->flags & TTYB_NORMAL)
318 memset(flag_buf_ptr(tb, tb->used), flag, space);
e0495736
AC
319 tb->used += space;
320 copied += space;
321 chars += space;
322 /* There is a small chance that we need to split the data over
323 several buffers. If this is the case we must loop */
324 } while (unlikely(size > copied));
325 return copied;
326}
2832fc11 327EXPORT_SYMBOL(tty_insert_flip_string_fixed_flag);
e0495736
AC
328
329/**
330 * tty_insert_flip_string_flags - Add characters to the tty buffer
2f693357 331 * @port: tty port
e0495736
AC
332 * @chars: characters
333 * @flags: flag bytes
334 * @size: size
335 *
336 * Queue a series of bytes to the tty buffering. For each character
337 * the flags array indicates the status of the character. Returns the
338 * number added.
e0495736
AC
339 */
340
2f693357 341int tty_insert_flip_string_flags(struct tty_port *port,
e0495736
AC
342 const unsigned char *chars, const char *flags, size_t size)
343{
344 int copied = 0;
345 do {
d4bee0a6 346 int goal = min_t(size_t, size - copied, TTY_BUFFER_PAGE);
64325a3b
IZ
347 int space = tty_buffer_request_room(port, goal);
348 struct tty_buffer *tb = port->buf.tail;
7391ee16 349 if (unlikely(space == 0))
e0495736 350 break;
1fc359fc
PH
351 memcpy(char_buf_ptr(tb, tb->used), chars, space);
352 memcpy(flag_buf_ptr(tb, tb->used), flags, space);
e0495736
AC
353 tb->used += space;
354 copied += space;
355 chars += space;
356 flags += space;
357 /* There is a small chance that we need to split the data over
358 several buffers. If this is the case we must loop */
359 } while (unlikely(size > copied));
360 return copied;
361}
362EXPORT_SYMBOL(tty_insert_flip_string_flags);
363
364/**
365 * tty_schedule_flip - push characters to ldisc
6732c8bb 366 * @port: tty port to push from
e0495736
AC
367 *
368 * Takes any pending buffers and transfers their ownership to the
369 * ldisc side of the queue. It then schedules those characters for
370 * processing by the line discipline.
e0495736
AC
371 */
372
6732c8bb 373void tty_schedule_flip(struct tty_port *port)
e0495736 374{
6732c8bb 375 struct tty_bufhead *buf = &port->buf;
5cff39c6 376
facd885c
DV
377 /* paired w/ acquire in flush_to_ldisc(); ensures
378 * flush_to_ldisc() sees buffer data.
379 */
380 smp_store_release(&buf->tail->commit, buf->tail->used);
e052c6d1 381 queue_work(system_unbound_wq, &buf->work);
e0495736
AC
382}
383EXPORT_SYMBOL(tty_schedule_flip);
384
385/**
386 * tty_prepare_flip_string - make room for characters
2f693357 387 * @port: tty port
e0495736
AC
388 * @chars: return pointer for character write area
389 * @size: desired size
390 *
391 * Prepare a block of space in the buffer for data. Returns the length
392 * available and buffer pointer to the space which is now allocated and
393 * accounted for as ready for normal characters. This is used for drivers
394 * that need their own block copy routines into the buffer. There is no
395 * guarantee the buffer is a DMA target!
e0495736
AC
396 */
397
2f693357 398int tty_prepare_flip_string(struct tty_port *port, unsigned char **chars,
ecbbfd44 399 size_t size)
e0495736 400{
acc0f67f 401 int space = __tty_buffer_request_room(port, size, TTYB_NORMAL);
e0495736 402 if (likely(space)) {
64325a3b 403 struct tty_buffer *tb = port->buf.tail;
1fc359fc 404 *chars = char_buf_ptr(tb, tb->used);
acc0f67f
PH
405 if (~tb->flags & TTYB_NORMAL)
406 memset(flag_buf_ptr(tb, tb->used), TTY_NORMAL, space);
e0495736
AC
407 tb->used += space;
408 }
409 return space;
410}
411EXPORT_SYMBOL_GPL(tty_prepare_flip_string);
412
8d082cd3
PH
413/**
414 * tty_ldisc_receive_buf - forward data to line discipline
415 * @ld: line discipline to process input
416 * @p: char buffer
417 * @f: TTY_* flags buffer
418 * @count: number of bytes to process
419 *
420 * Callers other than flush_to_ldisc() need to exclude the kworker
421 * from concurrent use of the line discipline, see paste_selection().
422 *
423 * Returns the number of bytes not processed
424 */
425int tty_ldisc_receive_buf(struct tty_ldisc *ld, unsigned char *p,
426 char *f, int count)
427{
428 if (ld->ops->receive_buf2)
429 count = ld->ops->receive_buf2(ld->tty, p, f, count);
430 else {
431 count = min_t(int, count, ld->tty->receive_room);
432 if (count && ld->ops->receive_buf)
433 ld->ops->receive_buf(ld->tty, p, f, count);
434 }
435 return count;
436}
437EXPORT_SYMBOL_GPL(tty_ldisc_receive_buf);
e0495736 438
da261e7f 439static int
8d082cd3 440receive_buf(struct tty_ldisc *ld, struct tty_buffer *head, int count)
da261e7f 441{
1fc359fc 442 unsigned char *p = char_buf_ptr(head, head->read);
acc0f67f
PH
443 char *f = NULL;
444
445 if (~head->flags & TTYB_NORMAL)
446 f = flag_buf_ptr(head, head->read);
da261e7f 447
8d082cd3 448 return tty_ldisc_receive_buf(ld, p, f, count);
da261e7f 449}
e0495736
AC
450
451/**
452 * flush_to_ldisc
453 * @work: tty structure passed from work queue.
454 *
455 * This routine is called out of the software interrupt to flush data
456 * from the buffer chain to the line discipline.
457 *
e9975fde
PH
458 * The receive_buf method is single threaded for each tty instance.
459 *
a7c8d58c 460 * Locking: takes buffer lock to ensure single-threaded flip buffer
e9975fde 461 * 'consumer'
e0495736
AC
462 */
463
464static void flush_to_ldisc(struct work_struct *work)
465{
ecbbfd44
JS
466 struct tty_port *port = container_of(work, struct tty_port, buf.work);
467 struct tty_bufhead *buf = &port->buf;
468 struct tty_struct *tty;
e0495736 469 struct tty_ldisc *disc;
e0495736 470
7098296a 471 tty = READ_ONCE(port->itty);
34dcfb84 472 if (tty == NULL)
ecbbfd44
JS
473 return;
474
e0495736 475 disc = tty_ldisc_ref(tty);
36697529 476 if (disc == NULL)
e0495736
AC
477 return;
478
a7c8d58c 479 mutex_lock(&buf->lock);
45242006 480
d7a68be4
PH
481 while (1) {
482 struct tty_buffer *head = buf->head;
62a0d8d7 483 struct tty_buffer *next;
d7a68be4
PH
484 int count;
485
a7c8d58c
PH
486 /* Ldisc or user is trying to gain exclusive access */
487 if (atomic_read(&buf->priority))
d7a68be4
PH
488 break;
489
069f38b4 490 /* paired w/ release in __tty_buffer_request_room();
62a0d8d7
PH
491 * ensures commit value read is not stale if the head
492 * is advancing to the next buffer
493 */
069f38b4 494 next = smp_load_acquire(&head->next);
facd885c
DV
495 /* paired w/ release in __tty_buffer_request_room() or in
496 * tty_buffer_flush(); ensures we see the committed buffer data
497 */
498 count = smp_load_acquire(&head->commit) - head->read;
d7a68be4 499 if (!count) {
0f40fbbc 500 if (next == NULL)
da261e7f 501 break;
62a0d8d7 502 buf->head = next;
d7a68be4
PH
503 tty_buffer_free(port, head);
504 continue;
e0495736 505 }
d7a68be4 506
8d082cd3 507 count = receive_buf(disc, head, count);
d7a68be4
PH
508 if (!count)
509 break;
af5554f9 510 head->read += count;
e0495736 511 }
45242006 512
a7c8d58c 513 mutex_unlock(&buf->lock);
e0495736
AC
514
515 tty_ldisc_deref(disc);
516}
517
518/**
519 * tty_flip_buffer_push - terminal
2e124b4a 520 * @port: tty port to push
e0495736 521 *
a9c3f68f
PH
522 * Queue a push of the terminal flip buffers to the line discipline.
523 * Can be called from IRQ/atomic context.
e0495736
AC
524 *
525 * In the event of the queue being busy for flipping the work will be
526 * held off and retried later.
e0495736
AC
527 */
528
2e124b4a 529void tty_flip_buffer_push(struct tty_port *port)
e0495736 530{
a9c3f68f 531 tty_schedule_flip(port);
e0495736
AC
532}
533EXPORT_SYMBOL(tty_flip_buffer_push);
534
535/**
536 * tty_buffer_init - prepare a tty buffer structure
537 * @tty: tty to initialise
538 *
539 * Set up the initial state of the buffer management for a tty device.
540 * Must be called before the other tty buffer functions are used.
e0495736
AC
541 */
542
ecbbfd44 543void tty_buffer_init(struct tty_port *port)
e0495736 544{
ecbbfd44 545 struct tty_bufhead *buf = &port->buf;
5cff39c6 546
a7c8d58c 547 mutex_init(&buf->lock);
7391ee16
PH
548 tty_buffer_reset(&buf->sentinel, 0);
549 buf->head = &buf->sentinel;
550 buf->tail = &buf->sentinel;
809850b7 551 init_llist_head(&buf->free);
5dda4ca5 552 atomic_set(&buf->mem_used, 0);
a7c8d58c 553 atomic_set(&buf->priority, 0);
5cff39c6 554 INIT_WORK(&buf->work, flush_to_ldisc);
4d18e6ef 555 buf->mem_limit = TTYB_DEFAULT_MEM_LIMIT;
e0495736 556}
4d18e6ef
PH
557
558/**
559 * tty_buffer_set_limit - change the tty buffer memory limit
560 * @port: tty port to change
561 *
562 * Change the tty buffer memory limit.
563 * Must be called before the other tty buffer functions are used.
564 */
565
566int tty_buffer_set_limit(struct tty_port *port, int limit)
567{
568 if (limit < MIN_TTYB_SIZE)
569 return -EINVAL;
570 port->buf.mem_limit = limit;
571 return 0;
572}
573EXPORT_SYMBOL_GPL(tty_buffer_set_limit);
1d1d14da
PH
574
575/* slave ptys can claim nested buffer lock when handling BRK and INTR */
576void tty_buffer_set_lock_subclass(struct tty_port *port)
577{
578 lockdep_set_subclass(&port->buf.lock, TTY_LOCK_SLAVE);
579}
e176058f
PH
580
581bool tty_buffer_restart_work(struct tty_port *port)
582{
583 return queue_work(system_unbound_wq, &port->buf.work);
584}
585
586bool tty_buffer_cancel_work(struct tty_port *port)
587{
588 return cancel_work_sync(&port->buf.work);
589}
0f40fbbc
BB
590
591void tty_buffer_flush_work(struct tty_port *port)
592{
593 flush_work(&port->buf.work);
594}