gpio: rcar: Fix runtime PM imbalance on error
[linux/fpc-iii.git] / drivers / tty / n_hdlc.c
blob991f49ee402640e3bfd9e722595a797baa2d88f3
1 // SPDX-License-Identifier: GPL-1.0+
2 /* generic HDLC line discipline for Linux
4 * Written by Paul Fulghum paulkf@microgate.com
5 * for Microgate Corporation
7 * Microgate and SyncLink are registered trademarks of Microgate Corporation
9 * Adapted from ppp.c, written by Michael Callahan <callahan@maths.ox.ac.uk>,
10 * Al Longyear <longyear@netcom.com>,
11 * Paul Mackerras <Paul.Mackerras@cs.anu.edu.au>
13 * Original release 01/11/99
15 * This module implements the tty line discipline N_HDLC for use with
16 * tty device drivers that support bit-synchronous HDLC communications.
18 * All HDLC data is frame oriented which means:
20 * 1. tty write calls represent one complete transmit frame of data
21 * The device driver should accept the complete frame or none of
22 * the frame (busy) in the write method. Each write call should have
23 * a byte count in the range of 2-65535 bytes (2 is min HDLC frame
24 * with 1 addr byte and 1 ctrl byte). The max byte count of 65535
25 * should include any crc bytes required. For example, when using
26 * CCITT CRC32, 4 crc bytes are required, so the maximum size frame
27 * the application may transmit is limited to 65531 bytes. For CCITT
28 * CRC16, the maximum application frame size would be 65533.
31 * 2. receive callbacks from the device driver represents
32 * one received frame. The device driver should bypass
33 * the tty flip buffer and call the line discipline receive
34 * callback directly to avoid fragmenting or concatenating
35 * multiple frames into a single receive callback.
37 * The HDLC line discipline queues the receive frames in separate
38 * buffers so complete receive frames can be returned by the
39 * tty read calls.
41 * 3. tty read calls returns an entire frame of data or nothing.
43 * 4. all send and receive data is considered raw. No processing
44 * or translation is performed by the line discipline, regardless
45 * of the tty flags
47 * 5. When line discipline is queried for the amount of receive
48 * data available (FIOC), 0 is returned if no data available,
49 * otherwise the count of the next available frame is returned.
50 * (instead of the sum of all received frame counts).
52 * These conventions allow the standard tty programming interface
53 * to be used for synchronous HDLC applications when used with
54 * this line discipline (or another line discipline that is frame
55 * oriented such as N_PPP).
57 * The SyncLink driver (synclink.c) implements both asynchronous
58 * (using standard line discipline N_TTY) and synchronous HDLC
59 * (using N_HDLC) communications, with the latter using the above
60 * conventions.
62 * This implementation is very basic and does not maintain
63 * any statistics. The main point is to enforce the raw data
64 * and frame orientation of HDLC communications.
66 * THIS SOFTWARE IS PROVIDED ``AS IS'' AND ANY EXPRESS OR IMPLIED
67 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
68 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
69 * DISCLAIMED. IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT,
70 * INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
71 * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
72 * SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
73 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT,
74 * STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
75 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED
76 * OF THE POSSIBILITY OF SUCH DAMAGE.
79 #define HDLC_MAGIC 0x239e
81 #include <linux/module.h>
82 #include <linux/init.h>
83 #include <linux/kernel.h>
84 #include <linux/sched.h>
85 #include <linux/types.h>
86 #include <linux/fcntl.h>
87 #include <linux/interrupt.h>
88 #include <linux/ptrace.h>
90 #include <linux/poll.h>
91 #include <linux/in.h>
92 #include <linux/ioctl.h>
93 #include <linux/slab.h>
94 #include <linux/tty.h>
95 #include <linux/errno.h>
96 #include <linux/string.h> /* used in new tty drivers */
97 #include <linux/signal.h> /* used in new tty drivers */
98 #include <linux/if.h>
99 #include <linux/bitops.h>
101 #include <asm/termios.h>
102 #include <linux/uaccess.h>
105 * Buffers for individual HDLC frames
107 #define MAX_HDLC_FRAME_SIZE 65535
108 #define DEFAULT_RX_BUF_COUNT 10
109 #define MAX_RX_BUF_COUNT 60
110 #define DEFAULT_TX_BUF_COUNT 3
112 struct n_hdlc_buf {
113 struct list_head list_item;
114 int count;
115 char buf[];
118 struct n_hdlc_buf_list {
119 struct list_head list;
120 int count;
121 spinlock_t spinlock;
125 * struct n_hdlc - per device instance data structure
126 * @magic - magic value for structure
127 * @tbusy - reentrancy flag for tx wakeup code
128 * @woke_up - tx wakeup needs to be run again as it was called while @tbusy
129 * @tx_buf_list - list of pending transmit frame buffers
130 * @rx_buf_list - list of received frame buffers
131 * @tx_free_buf_list - list unused transmit frame buffers
132 * @rx_free_buf_list - list unused received frame buffers
134 struct n_hdlc {
135 int magic;
136 bool tbusy;
137 bool woke_up;
138 struct n_hdlc_buf_list tx_buf_list;
139 struct n_hdlc_buf_list rx_buf_list;
140 struct n_hdlc_buf_list tx_free_buf_list;
141 struct n_hdlc_buf_list rx_free_buf_list;
145 * HDLC buffer list manipulation functions
147 static void n_hdlc_buf_return(struct n_hdlc_buf_list *buf_list,
148 struct n_hdlc_buf *buf);
149 static void n_hdlc_buf_put(struct n_hdlc_buf_list *list,
150 struct n_hdlc_buf *buf);
151 static struct n_hdlc_buf *n_hdlc_buf_get(struct n_hdlc_buf_list *list);
153 /* Local functions */
155 static struct n_hdlc *n_hdlc_alloc(void);
157 /* max frame size for memory allocations */
158 static int maxframe = 4096;
160 static void flush_rx_queue(struct tty_struct *tty)
162 struct n_hdlc *n_hdlc = tty->disc_data;
163 struct n_hdlc_buf *buf;
165 while ((buf = n_hdlc_buf_get(&n_hdlc->rx_buf_list)))
166 n_hdlc_buf_put(&n_hdlc->rx_free_buf_list, buf);
169 static void flush_tx_queue(struct tty_struct *tty)
171 struct n_hdlc *n_hdlc = tty->disc_data;
172 struct n_hdlc_buf *buf;
174 while ((buf = n_hdlc_buf_get(&n_hdlc->tx_buf_list)))
175 n_hdlc_buf_put(&n_hdlc->tx_free_buf_list, buf);
178 static void n_hdlc_free_buf_list(struct n_hdlc_buf_list *list)
180 struct n_hdlc_buf *buf;
182 do {
183 buf = n_hdlc_buf_get(list);
184 kfree(buf);
185 } while (buf);
189 * n_hdlc_tty_close - line discipline close
190 * @tty - pointer to tty info structure
192 * Called when the line discipline is changed to something
193 * else, the tty is closed, or the tty detects a hangup.
195 static void n_hdlc_tty_close(struct tty_struct *tty)
197 struct n_hdlc *n_hdlc = tty->disc_data;
199 if (n_hdlc->magic != HDLC_MAGIC) {
200 pr_warn("n_hdlc: trying to close unopened tty!\n");
201 return;
203 #if defined(TTY_NO_WRITE_SPLIT)
204 clear_bit(TTY_NO_WRITE_SPLIT, &tty->flags);
205 #endif
206 tty->disc_data = NULL;
208 /* Ensure that the n_hdlcd process is not hanging on select()/poll() */
209 wake_up_interruptible(&tty->read_wait);
210 wake_up_interruptible(&tty->write_wait);
212 n_hdlc_free_buf_list(&n_hdlc->rx_free_buf_list);
213 n_hdlc_free_buf_list(&n_hdlc->tx_free_buf_list);
214 n_hdlc_free_buf_list(&n_hdlc->rx_buf_list);
215 n_hdlc_free_buf_list(&n_hdlc->tx_buf_list);
216 kfree(n_hdlc);
217 } /* end of n_hdlc_tty_close() */
220 * n_hdlc_tty_open - called when line discipline changed to n_hdlc
221 * @tty - pointer to tty info structure
223 * Returns 0 if success, otherwise error code
225 static int n_hdlc_tty_open(struct tty_struct *tty)
227 struct n_hdlc *n_hdlc = tty->disc_data;
229 pr_debug("%s() called (device=%s)\n", __func__, tty->name);
231 /* There should not be an existing table for this slot. */
232 if (n_hdlc) {
233 pr_err("%s: tty already associated!\n", __func__);
234 return -EEXIST;
237 n_hdlc = n_hdlc_alloc();
238 if (!n_hdlc) {
239 pr_err("%s: n_hdlc_alloc failed\n", __func__);
240 return -ENFILE;
243 tty->disc_data = n_hdlc;
244 tty->receive_room = 65536;
246 /* change tty_io write() to not split large writes into 8K chunks */
247 set_bit(TTY_NO_WRITE_SPLIT, &tty->flags);
249 /* flush receive data from driver */
250 tty_driver_flush_buffer(tty);
252 return 0;
254 } /* end of n_tty_hdlc_open() */
257 * n_hdlc_send_frames - send frames on pending send buffer list
258 * @n_hdlc - pointer to ldisc instance data
259 * @tty - pointer to tty instance data
261 * Send frames on pending send buffer list until the driver does not accept a
262 * frame (busy) this function is called after adding a frame to the send buffer
263 * list and by the tty wakeup callback.
265 static void n_hdlc_send_frames(struct n_hdlc *n_hdlc, struct tty_struct *tty)
267 register int actual;
268 unsigned long flags;
269 struct n_hdlc_buf *tbuf;
271 check_again:
273 spin_lock_irqsave(&n_hdlc->tx_buf_list.spinlock, flags);
274 if (n_hdlc->tbusy) {
275 n_hdlc->woke_up = true;
276 spin_unlock_irqrestore(&n_hdlc->tx_buf_list.spinlock, flags);
277 return;
279 n_hdlc->tbusy = true;
280 n_hdlc->woke_up = false;
281 spin_unlock_irqrestore(&n_hdlc->tx_buf_list.spinlock, flags);
283 tbuf = n_hdlc_buf_get(&n_hdlc->tx_buf_list);
284 while (tbuf) {
285 pr_debug("sending frame %p, count=%d\n", tbuf, tbuf->count);
287 /* Send the next block of data to device */
288 set_bit(TTY_DO_WRITE_WAKEUP, &tty->flags);
289 actual = tty->ops->write(tty, tbuf->buf, tbuf->count);
291 /* rollback was possible and has been done */
292 if (actual == -ERESTARTSYS) {
293 n_hdlc_buf_return(&n_hdlc->tx_buf_list, tbuf);
294 break;
296 /* if transmit error, throw frame away by */
297 /* pretending it was accepted by driver */
298 if (actual < 0)
299 actual = tbuf->count;
301 if (actual == tbuf->count) {
302 pr_debug("frame %p completed\n", tbuf);
304 /* free current transmit buffer */
305 n_hdlc_buf_put(&n_hdlc->tx_free_buf_list, tbuf);
307 /* wait up sleeping writers */
308 wake_up_interruptible(&tty->write_wait);
310 /* get next pending transmit buffer */
311 tbuf = n_hdlc_buf_get(&n_hdlc->tx_buf_list);
312 } else {
313 pr_debug("frame %p pending\n", tbuf);
316 * the buffer was not accepted by driver,
317 * return it back into tx queue
319 n_hdlc_buf_return(&n_hdlc->tx_buf_list, tbuf);
320 break;
324 if (!tbuf)
325 clear_bit(TTY_DO_WRITE_WAKEUP, &tty->flags);
327 /* Clear the re-entry flag */
328 spin_lock_irqsave(&n_hdlc->tx_buf_list.spinlock, flags);
329 n_hdlc->tbusy = false;
330 spin_unlock_irqrestore(&n_hdlc->tx_buf_list.spinlock, flags);
332 if (n_hdlc->woke_up)
333 goto check_again;
334 } /* end of n_hdlc_send_frames() */
337 * n_hdlc_tty_wakeup - Callback for transmit wakeup
338 * @tty - pointer to associated tty instance data
340 * Called when low level device driver can accept more send data.
342 static void n_hdlc_tty_wakeup(struct tty_struct *tty)
344 struct n_hdlc *n_hdlc = tty->disc_data;
346 n_hdlc_send_frames(n_hdlc, tty);
347 } /* end of n_hdlc_tty_wakeup() */
350 * n_hdlc_tty_receive - Called by tty driver when receive data is available
351 * @tty - pointer to tty instance data
352 * @data - pointer to received data
353 * @flags - pointer to flags for data
354 * @count - count of received data in bytes
356 * Called by tty low level driver when receive data is available. Data is
357 * interpreted as one HDLC frame.
359 static void n_hdlc_tty_receive(struct tty_struct *tty, const __u8 *data,
360 char *flags, int count)
362 register struct n_hdlc *n_hdlc = tty->disc_data;
363 register struct n_hdlc_buf *buf;
365 pr_debug("%s() called count=%d\n", __func__, count);
367 /* verify line is using HDLC discipline */
368 if (n_hdlc->magic != HDLC_MAGIC) {
369 pr_err("line not using HDLC discipline\n");
370 return;
373 if (count > maxframe) {
374 pr_debug("rx count>maxframesize, data discarded\n");
375 return;
378 /* get a free HDLC buffer */
379 buf = n_hdlc_buf_get(&n_hdlc->rx_free_buf_list);
380 if (!buf) {
382 * no buffers in free list, attempt to allocate another rx
383 * buffer unless the maximum count has been reached
385 if (n_hdlc->rx_buf_list.count < MAX_RX_BUF_COUNT)
386 buf = kmalloc(struct_size(buf, buf, maxframe),
387 GFP_ATOMIC);
390 if (!buf) {
391 pr_debug("no more rx buffers, data discarded\n");
392 return;
395 /* copy received data to HDLC buffer */
396 memcpy(buf->buf, data, count);
397 buf->count = count;
399 /* add HDLC buffer to list of received frames */
400 n_hdlc_buf_put(&n_hdlc->rx_buf_list, buf);
402 /* wake up any blocked reads and perform async signalling */
403 wake_up_interruptible(&tty->read_wait);
404 if (tty->fasync != NULL)
405 kill_fasync(&tty->fasync, SIGIO, POLL_IN);
407 } /* end of n_hdlc_tty_receive() */
410 * n_hdlc_tty_read - Called to retrieve one frame of data (if available)
411 * @tty - pointer to tty instance data
412 * @file - pointer to open file object
413 * @buf - pointer to returned data buffer
414 * @nr - size of returned data buffer
416 * Returns the number of bytes returned or error code.
418 static ssize_t n_hdlc_tty_read(struct tty_struct *tty, struct file *file,
419 __u8 __user *buf, size_t nr)
421 struct n_hdlc *n_hdlc = tty->disc_data;
422 int ret = 0;
423 struct n_hdlc_buf *rbuf;
424 DECLARE_WAITQUEUE(wait, current);
426 /* verify user access to buffer */
427 if (!access_ok(buf, nr)) {
428 pr_warn("%s(%d) %s() can't verify user buffer\n",
429 __FILE__, __LINE__, __func__);
430 return -EFAULT;
433 add_wait_queue(&tty->read_wait, &wait);
435 for (;;) {
436 if (test_bit(TTY_OTHER_CLOSED, &tty->flags)) {
437 ret = -EIO;
438 break;
440 if (tty_hung_up_p(file))
441 break;
443 set_current_state(TASK_INTERRUPTIBLE);
445 rbuf = n_hdlc_buf_get(&n_hdlc->rx_buf_list);
446 if (rbuf) {
447 if (rbuf->count > nr) {
448 /* too large for caller's buffer */
449 ret = -EOVERFLOW;
450 } else {
451 __set_current_state(TASK_RUNNING);
452 if (copy_to_user(buf, rbuf->buf, rbuf->count))
453 ret = -EFAULT;
454 else
455 ret = rbuf->count;
458 if (n_hdlc->rx_free_buf_list.count >
459 DEFAULT_RX_BUF_COUNT)
460 kfree(rbuf);
461 else
462 n_hdlc_buf_put(&n_hdlc->rx_free_buf_list, rbuf);
463 break;
466 /* no data */
467 if (tty_io_nonblock(tty, file)) {
468 ret = -EAGAIN;
469 break;
472 schedule();
474 if (signal_pending(current)) {
475 ret = -EINTR;
476 break;
480 remove_wait_queue(&tty->read_wait, &wait);
481 __set_current_state(TASK_RUNNING);
483 return ret;
485 } /* end of n_hdlc_tty_read() */
488 * n_hdlc_tty_write - write a single frame of data to device
489 * @tty - pointer to associated tty device instance data
490 * @file - pointer to file object data
491 * @data - pointer to transmit data (one frame)
492 * @count - size of transmit frame in bytes
494 * Returns the number of bytes written (or error code).
496 static ssize_t n_hdlc_tty_write(struct tty_struct *tty, struct file *file,
497 const unsigned char *data, size_t count)
499 struct n_hdlc *n_hdlc = tty->disc_data;
500 int error = 0;
501 DECLARE_WAITQUEUE(wait, current);
502 struct n_hdlc_buf *tbuf;
504 pr_debug("%s() called count=%zd\n", __func__, count);
506 if (n_hdlc->magic != HDLC_MAGIC)
507 return -EIO;
509 /* verify frame size */
510 if (count > maxframe) {
511 pr_debug("%s: truncating user packet from %zu to %d\n",
512 __func__, count, maxframe);
513 count = maxframe;
516 add_wait_queue(&tty->write_wait, &wait);
518 for (;;) {
519 set_current_state(TASK_INTERRUPTIBLE);
521 tbuf = n_hdlc_buf_get(&n_hdlc->tx_free_buf_list);
522 if (tbuf)
523 break;
525 if (tty_io_nonblock(tty, file)) {
526 error = -EAGAIN;
527 break;
529 schedule();
531 if (signal_pending(current)) {
532 error = -EINTR;
533 break;
537 __set_current_state(TASK_RUNNING);
538 remove_wait_queue(&tty->write_wait, &wait);
540 if (!error) {
541 /* Retrieve the user's buffer */
542 memcpy(tbuf->buf, data, count);
544 /* Send the data */
545 tbuf->count = error = count;
546 n_hdlc_buf_put(&n_hdlc->tx_buf_list, tbuf);
547 n_hdlc_send_frames(n_hdlc, tty);
550 return error;
552 } /* end of n_hdlc_tty_write() */
555 * n_hdlc_tty_ioctl - process IOCTL system call for the tty device.
556 * @tty - pointer to tty instance data
557 * @file - pointer to open file object for device
558 * @cmd - IOCTL command code
559 * @arg - argument for IOCTL call (cmd dependent)
561 * Returns command dependent result.
563 static int n_hdlc_tty_ioctl(struct tty_struct *tty, struct file *file,
564 unsigned int cmd, unsigned long arg)
566 struct n_hdlc *n_hdlc = tty->disc_data;
567 int error = 0;
568 int count;
569 unsigned long flags;
570 struct n_hdlc_buf *buf = NULL;
572 pr_debug("%s() called %d\n", __func__, cmd);
574 /* Verify the status of the device */
575 if (n_hdlc->magic != HDLC_MAGIC)
576 return -EBADF;
578 switch (cmd) {
579 case FIONREAD:
580 /* report count of read data available */
581 /* in next available frame (if any) */
582 spin_lock_irqsave(&n_hdlc->rx_buf_list.spinlock, flags);
583 buf = list_first_entry_or_null(&n_hdlc->rx_buf_list.list,
584 struct n_hdlc_buf, list_item);
585 if (buf)
586 count = buf->count;
587 else
588 count = 0;
589 spin_unlock_irqrestore(&n_hdlc->rx_buf_list.spinlock, flags);
590 error = put_user(count, (int __user *)arg);
591 break;
593 case TIOCOUTQ:
594 /* get the pending tx byte count in the driver */
595 count = tty_chars_in_buffer(tty);
596 /* add size of next output frame in queue */
597 spin_lock_irqsave(&n_hdlc->tx_buf_list.spinlock, flags);
598 buf = list_first_entry_or_null(&n_hdlc->tx_buf_list.list,
599 struct n_hdlc_buf, list_item);
600 if (buf)
601 count += buf->count;
602 spin_unlock_irqrestore(&n_hdlc->tx_buf_list.spinlock, flags);
603 error = put_user(count, (int __user *)arg);
604 break;
606 case TCFLSH:
607 switch (arg) {
608 case TCIOFLUSH:
609 case TCOFLUSH:
610 flush_tx_queue(tty);
612 /* fall through - to default */
614 default:
615 error = n_tty_ioctl_helper(tty, file, cmd, arg);
616 break;
618 return error;
620 } /* end of n_hdlc_tty_ioctl() */
623 * n_hdlc_tty_poll - TTY callback for poll system call
624 * @tty - pointer to tty instance data
625 * @filp - pointer to open file object for device
626 * @poll_table - wait queue for operations
628 * Determine which operations (read/write) will not block and return info
629 * to caller.
630 * Returns a bit mask containing info on which ops will not block.
632 static __poll_t n_hdlc_tty_poll(struct tty_struct *tty, struct file *filp,
633 poll_table *wait)
635 struct n_hdlc *n_hdlc = tty->disc_data;
636 __poll_t mask = 0;
638 if (n_hdlc->magic != HDLC_MAGIC)
639 return 0;
642 * queue the current process into any wait queue that may awaken in the
643 * future (read and write)
645 poll_wait(filp, &tty->read_wait, wait);
646 poll_wait(filp, &tty->write_wait, wait);
648 /* set bits for operations that won't block */
649 if (!list_empty(&n_hdlc->rx_buf_list.list))
650 mask |= EPOLLIN | EPOLLRDNORM; /* readable */
651 if (test_bit(TTY_OTHER_CLOSED, &tty->flags))
652 mask |= EPOLLHUP;
653 if (tty_hung_up_p(filp))
654 mask |= EPOLLHUP;
655 if (!tty_is_writelocked(tty) &&
656 !list_empty(&n_hdlc->tx_free_buf_list.list))
657 mask |= EPOLLOUT | EPOLLWRNORM; /* writable */
659 return mask;
660 } /* end of n_hdlc_tty_poll() */
662 static void n_hdlc_alloc_buf(struct n_hdlc_buf_list *list, unsigned int count,
663 const char *name)
665 struct n_hdlc_buf *buf;
666 unsigned int i;
668 for (i = 0; i < count; i++) {
669 buf = kmalloc(struct_size(buf, buf, maxframe), GFP_KERNEL);
670 if (!buf) {
671 pr_debug("%s(), kmalloc() failed for %s buffer %u\n",
672 __func__, name, i);
673 return;
675 n_hdlc_buf_put(list, buf);
680 * n_hdlc_alloc - allocate an n_hdlc instance data structure
682 * Returns a pointer to newly created structure if success, otherwise %NULL
684 static struct n_hdlc *n_hdlc_alloc(void)
686 struct n_hdlc *n_hdlc = kzalloc(sizeof(*n_hdlc), GFP_KERNEL);
688 if (!n_hdlc)
689 return NULL;
691 spin_lock_init(&n_hdlc->rx_free_buf_list.spinlock);
692 spin_lock_init(&n_hdlc->tx_free_buf_list.spinlock);
693 spin_lock_init(&n_hdlc->rx_buf_list.spinlock);
694 spin_lock_init(&n_hdlc->tx_buf_list.spinlock);
696 INIT_LIST_HEAD(&n_hdlc->rx_free_buf_list.list);
697 INIT_LIST_HEAD(&n_hdlc->tx_free_buf_list.list);
698 INIT_LIST_HEAD(&n_hdlc->rx_buf_list.list);
699 INIT_LIST_HEAD(&n_hdlc->tx_buf_list.list);
701 n_hdlc_alloc_buf(&n_hdlc->rx_free_buf_list, DEFAULT_RX_BUF_COUNT, "rx");
702 n_hdlc_alloc_buf(&n_hdlc->tx_free_buf_list, DEFAULT_TX_BUF_COUNT, "tx");
704 /* Initialize the control block */
705 n_hdlc->magic = HDLC_MAGIC;
707 return n_hdlc;
709 } /* end of n_hdlc_alloc() */
712 * n_hdlc_buf_return - put the HDLC buffer after the head of the specified list
713 * @buf_list - pointer to the buffer list
714 * @buf - pointer to the buffer
716 static void n_hdlc_buf_return(struct n_hdlc_buf_list *buf_list,
717 struct n_hdlc_buf *buf)
719 unsigned long flags;
721 spin_lock_irqsave(&buf_list->spinlock, flags);
723 list_add(&buf->list_item, &buf_list->list);
724 buf_list->count++;
726 spin_unlock_irqrestore(&buf_list->spinlock, flags);
730 * n_hdlc_buf_put - add specified HDLC buffer to tail of specified list
731 * @buf_list - pointer to buffer list
732 * @buf - pointer to buffer
734 static void n_hdlc_buf_put(struct n_hdlc_buf_list *buf_list,
735 struct n_hdlc_buf *buf)
737 unsigned long flags;
739 spin_lock_irqsave(&buf_list->spinlock, flags);
741 list_add_tail(&buf->list_item, &buf_list->list);
742 buf_list->count++;
744 spin_unlock_irqrestore(&buf_list->spinlock, flags);
745 } /* end of n_hdlc_buf_put() */
748 * n_hdlc_buf_get - remove and return an HDLC buffer from list
749 * @buf_list - pointer to HDLC buffer list
751 * Remove and return an HDLC buffer from the head of the specified HDLC buffer
752 * list.
753 * Returns a pointer to HDLC buffer if available, otherwise %NULL.
755 static struct n_hdlc_buf *n_hdlc_buf_get(struct n_hdlc_buf_list *buf_list)
757 unsigned long flags;
758 struct n_hdlc_buf *buf;
760 spin_lock_irqsave(&buf_list->spinlock, flags);
762 buf = list_first_entry_or_null(&buf_list->list,
763 struct n_hdlc_buf, list_item);
764 if (buf) {
765 list_del(&buf->list_item);
766 buf_list->count--;
769 spin_unlock_irqrestore(&buf_list->spinlock, flags);
770 return buf;
771 } /* end of n_hdlc_buf_get() */
773 static struct tty_ldisc_ops n_hdlc_ldisc = {
774 .owner = THIS_MODULE,
775 .magic = TTY_LDISC_MAGIC,
776 .name = "hdlc",
777 .open = n_hdlc_tty_open,
778 .close = n_hdlc_tty_close,
779 .read = n_hdlc_tty_read,
780 .write = n_hdlc_tty_write,
781 .ioctl = n_hdlc_tty_ioctl,
782 .poll = n_hdlc_tty_poll,
783 .receive_buf = n_hdlc_tty_receive,
784 .write_wakeup = n_hdlc_tty_wakeup,
785 .flush_buffer = flush_rx_queue,
788 static int __init n_hdlc_init(void)
790 int status;
792 /* range check maxframe arg */
793 maxframe = clamp(maxframe, 4096, MAX_HDLC_FRAME_SIZE);
795 status = tty_register_ldisc(N_HDLC, &n_hdlc_ldisc);
796 if (!status)
797 pr_info("N_HDLC line discipline registered with maxframe=%d\n",
798 maxframe);
799 else
800 pr_err("N_HDLC: error registering line discipline: %d\n",
801 status);
803 return status;
805 } /* end of init_module() */
807 static void __exit n_hdlc_exit(void)
809 /* Release tty registration of line discipline */
810 int status = tty_unregister_ldisc(N_HDLC);
812 if (status)
813 pr_err("N_HDLC: can't unregister line discipline (err = %d)\n",
814 status);
815 else
816 pr_info("N_HDLC: line discipline unregistered\n");
819 module_init(n_hdlc_init);
820 module_exit(n_hdlc_exit);
822 MODULE_LICENSE("GPL");
823 MODULE_AUTHOR("Paul Fulghum paulkf@microgate.com");
824 module_param(maxframe, int, 0);
825 MODULE_ALIAS_LDISC(N_HDLC);