2 * IPWireless 3G PCMCIA Network Driver
8 * Copyrighted as follows:
9 * Copyright (C) 2004 by Symmetric Systems Ltd (NZ)
11 * Various driver changes and rewrites, port to new kernels
12 * Copyright (C) 2006-2007 Jiri Kosina
14 * Misc code cleanups and updates
15 * Copyright (C) 2007 David Sterba
18 #include <linux/kernel.h>
19 #include <linux/module.h>
20 #include <linux/mutex.h>
21 #include <linux/ppp_defs.h>
23 #include <linux/ppp-ioctl.h>
24 #include <linux/sched.h>
25 #include <linux/serial.h>
26 #include <linux/slab.h>
27 #include <linux/tty.h>
28 #include <linux/tty_driver.h>
29 #include <linux/tty_flip.h>
30 #include <linux/uaccess.h>
37 #define IPWIRELESS_PCMCIA_START (0)
38 #define IPWIRELESS_PCMCIA_MINORS (24)
39 #define IPWIRELESS_PCMCIA_MINOR_RANGE (8)
41 #define TTYTYPE_MODEM (0)
42 #define TTYTYPE_MONITOR (1)
43 #define TTYTYPE_RAS_RAW (2)
48 struct ipw_hardware *hardware;
49 unsigned int channel_idx;
50 unsigned int secondary_channel_idx;
52 struct ipw_network *network;
53 unsigned int control_lines;
54 struct mutex ipw_tty_mutex;
59 static struct ipw_tty *ttys[IPWIRELESS_PCMCIA_MINORS];
61 static struct tty_driver *ipw_tty_driver;
63 static char *tty_type_name(int tty_type)
65 static char *channel_names[] = {
71 return channel_names[tty_type];
74 static struct ipw_tty *get_tty(int index)
77 * The 'ras_raw' channel is only available when 'loopback' mode
79 * Number of minor starts with 16 (_RANGE * _RAS_RAW).
81 if (!ipwireless_loopback && index >=
82 IPWIRELESS_PCMCIA_MINOR_RANGE * TTYTYPE_RAS_RAW)
88 static int ipw_open(struct tty_struct *linux_tty, struct file *filp)
90 struct ipw_tty *tty = get_tty(linux_tty->index);
95 mutex_lock(&tty->ipw_tty_mutex);
96 if (tty->port.count == 0)
97 tty->tx_bytes_queued = 0;
101 tty->port.tty = linux_tty;
102 linux_tty->driver_data = tty;
103 tty->port.low_latency = 1;
105 if (tty->tty_type == TTYTYPE_MODEM)
106 ipwireless_ppp_open(tty->network);
108 mutex_unlock(&tty->ipw_tty_mutex);
113 static void do_ipw_close(struct ipw_tty *tty)
117 if (tty->port.count == 0) {
118 struct tty_struct *linux_tty = tty->port.tty;
120 if (linux_tty != NULL) {
121 tty->port.tty = NULL;
122 linux_tty->driver_data = NULL;
124 if (tty->tty_type == TTYTYPE_MODEM)
125 ipwireless_ppp_close(tty->network);
130 static void ipw_hangup(struct tty_struct *linux_tty)
132 struct ipw_tty *tty = linux_tty->driver_data;
137 mutex_lock(&tty->ipw_tty_mutex);
138 if (tty->port.count == 0) {
139 mutex_unlock(&tty->ipw_tty_mutex);
145 mutex_unlock(&tty->ipw_tty_mutex);
148 static void ipw_close(struct tty_struct *linux_tty, struct file *filp)
150 ipw_hangup(linux_tty);
153 /* Take data received from hardware, and send it out the tty */
154 void ipwireless_tty_received(struct ipw_tty *tty, unsigned char *data,
159 mutex_lock(&tty->ipw_tty_mutex);
161 if (!tty->port.count) {
162 mutex_unlock(&tty->ipw_tty_mutex);
165 mutex_unlock(&tty->ipw_tty_mutex);
167 work = tty_insert_flip_string(&tty->port, data, length);
170 printk(KERN_DEBUG IPWIRELESS_PCCARD_NAME
171 ": %d chars not inserted to flip buffer!\n",
175 tty_flip_buffer_push(&tty->port);
178 static void ipw_write_packet_sent_callback(void *callback_data,
179 unsigned int packet_length)
181 struct ipw_tty *tty = callback_data;
184 * Packet has been sent, so we subtract the number of bytes from our
185 * tally of outstanding TX bytes.
187 tty->tx_bytes_queued -= packet_length;
190 static int ipw_write(struct tty_struct *linux_tty,
191 const unsigned char *buf, int count)
193 struct ipw_tty *tty = linux_tty->driver_data;
199 mutex_lock(&tty->ipw_tty_mutex);
200 if (!tty->port.count) {
201 mutex_unlock(&tty->ipw_tty_mutex);
205 room = IPWIRELESS_TX_QUEUE_SIZE - tty->tx_bytes_queued;
208 /* Don't allow caller to write any more than we have room for */
213 mutex_unlock(&tty->ipw_tty_mutex);
217 ret = ipwireless_send_packet(tty->hardware, IPW_CHANNEL_RAS,
219 ipw_write_packet_sent_callback, tty);
221 mutex_unlock(&tty->ipw_tty_mutex);
225 tty->tx_bytes_queued += count;
226 mutex_unlock(&tty->ipw_tty_mutex);
231 static int ipw_write_room(struct tty_struct *linux_tty)
233 struct ipw_tty *tty = linux_tty->driver_data;
236 /* FIXME: Exactly how is the tty object locked here .. */
240 if (!tty->port.count)
243 room = IPWIRELESS_TX_QUEUE_SIZE - tty->tx_bytes_queued;
250 static int ipwireless_get_serial_info(struct ipw_tty *tty,
251 struct serial_struct __user *retinfo)
253 struct serial_struct tmp;
255 memset(&tmp, 0, sizeof(tmp));
256 tmp.type = PORT_UNKNOWN;
257 tmp.line = tty->index;
258 tmp.baud_base = 115200;
260 if (copy_to_user(retinfo, &tmp, sizeof(*retinfo)))
266 static int ipw_chars_in_buffer(struct tty_struct *linux_tty)
268 struct ipw_tty *tty = linux_tty->driver_data;
273 if (!tty->port.count)
276 return tty->tx_bytes_queued;
279 static int get_control_lines(struct ipw_tty *tty)
281 unsigned int my = tty->control_lines;
282 unsigned int out = 0;
284 if (my & IPW_CONTROL_LINE_RTS)
286 if (my & IPW_CONTROL_LINE_DTR)
288 if (my & IPW_CONTROL_LINE_CTS)
290 if (my & IPW_CONTROL_LINE_DSR)
292 if (my & IPW_CONTROL_LINE_DCD)
298 static int set_control_lines(struct ipw_tty *tty, unsigned int set,
303 if (set & TIOCM_RTS) {
304 ret = ipwireless_set_RTS(tty->hardware, tty->channel_idx, 1);
307 if (tty->secondary_channel_idx != -1) {
308 ret = ipwireless_set_RTS(tty->hardware,
309 tty->secondary_channel_idx, 1);
314 if (set & TIOCM_DTR) {
315 ret = ipwireless_set_DTR(tty->hardware, tty->channel_idx, 1);
318 if (tty->secondary_channel_idx != -1) {
319 ret = ipwireless_set_DTR(tty->hardware,
320 tty->secondary_channel_idx, 1);
325 if (clear & TIOCM_RTS) {
326 ret = ipwireless_set_RTS(tty->hardware, tty->channel_idx, 0);
327 if (tty->secondary_channel_idx != -1) {
328 ret = ipwireless_set_RTS(tty->hardware,
329 tty->secondary_channel_idx, 0);
334 if (clear & TIOCM_DTR) {
335 ret = ipwireless_set_DTR(tty->hardware, tty->channel_idx, 0);
336 if (tty->secondary_channel_idx != -1) {
337 ret = ipwireless_set_DTR(tty->hardware,
338 tty->secondary_channel_idx, 0);
346 static int ipw_tiocmget(struct tty_struct *linux_tty)
348 struct ipw_tty *tty = linux_tty->driver_data;
349 /* FIXME: Exactly how is the tty object locked here .. */
354 if (!tty->port.count)
357 return get_control_lines(tty);
361 ipw_tiocmset(struct tty_struct *linux_tty,
362 unsigned int set, unsigned int clear)
364 struct ipw_tty *tty = linux_tty->driver_data;
365 /* FIXME: Exactly how is the tty object locked here .. */
370 if (!tty->port.count)
373 return set_control_lines(tty, set, clear);
376 static int ipw_ioctl(struct tty_struct *linux_tty,
377 unsigned int cmd, unsigned long arg)
379 struct ipw_tty *tty = linux_tty->driver_data;
384 if (!tty->port.count)
387 /* FIXME: Exactly how is the tty object locked here .. */
391 return ipwireless_get_serial_info(tty, (void __user *) arg);
394 return 0; /* Keeps the PCMCIA scripts happy. */
397 if (tty->tty_type == TTYTYPE_MODEM) {
401 int chan = ipwireless_ppp_channel_index(
406 if (put_user(chan, (int __user *) arg))
413 int unit = ipwireless_ppp_unit_number(
418 if (put_user(unit, (int __user *) arg))
427 if (put_user(val, (int __user *) arg))
432 return tty_perform_flush(linux_tty, arg);
438 static int add_tty(int j,
439 struct ipw_hardware *hardware,
440 struct ipw_network *network, int channel_idx,
441 int secondary_channel_idx, int tty_type)
443 ttys[j] = kzalloc(sizeof(struct ipw_tty), GFP_KERNEL);
447 ttys[j]->hardware = hardware;
448 ttys[j]->channel_idx = channel_idx;
449 ttys[j]->secondary_channel_idx = secondary_channel_idx;
450 ttys[j]->network = network;
451 ttys[j]->tty_type = tty_type;
452 mutex_init(&ttys[j]->ipw_tty_mutex);
453 tty_port_init(&ttys[j]->port);
455 tty_port_register_device(&ttys[j]->port, ipw_tty_driver, j, NULL);
456 ipwireless_associate_network_tty(network, channel_idx, ttys[j]);
458 if (secondary_channel_idx != -1)
459 ipwireless_associate_network_tty(network,
460 secondary_channel_idx,
462 /* check if we provide raw device (if loopback is enabled) */
464 printk(KERN_INFO IPWIRELESS_PCCARD_NAME
465 ": registering %s device ttyIPWp%d\n",
466 tty_type_name(tty_type), j);
471 struct ipw_tty *ipwireless_tty_create(struct ipw_hardware *hardware,
472 struct ipw_network *network)
476 for (i = 0; i < IPWIRELESS_PCMCIA_MINOR_RANGE; i++) {
479 for (j = i; j < IPWIRELESS_PCMCIA_MINORS;
480 j += IPWIRELESS_PCMCIA_MINOR_RANGE)
481 if (ttys[j] != NULL) {
489 if (add_tty(j, hardware, network,
490 IPW_CHANNEL_DIALLER, IPW_CHANNEL_RAS,
494 j += IPWIRELESS_PCMCIA_MINOR_RANGE;
495 if (add_tty(j, hardware, network,
496 IPW_CHANNEL_DIALLER, -1,
500 j += IPWIRELESS_PCMCIA_MINOR_RANGE;
501 if (add_tty(j, hardware, network,
513 * Must be called before ipwireless_network_free().
515 void ipwireless_tty_free(struct ipw_tty *tty)
518 struct ipw_network *network = ttys[tty->index]->network;
520 for (j = tty->index; j < IPWIRELESS_PCMCIA_MINORS;
521 j += IPWIRELESS_PCMCIA_MINOR_RANGE) {
522 struct ipw_tty *ttyj = ttys[j];
525 mutex_lock(&ttyj->ipw_tty_mutex);
527 printk(KERN_INFO IPWIRELESS_PCCARD_NAME
528 ": deregistering %s device ttyIPWp%d\n",
529 tty_type_name(ttyj->tty_type), j);
531 if (ttyj->port.tty != NULL) {
532 mutex_unlock(&ttyj->ipw_tty_mutex);
533 tty_vhangup(ttyj->port.tty);
534 /* FIXME: Exactly how is the tty object locked here
535 against a parallel ioctl etc */
536 /* FIXME2: hangup does not mean all processes
538 mutex_lock(&ttyj->ipw_tty_mutex);
540 while (ttyj->port.count)
542 ipwireless_disassociate_network_ttys(network,
544 tty_unregister_device(ipw_tty_driver, j);
545 tty_port_destroy(&ttyj->port);
547 mutex_unlock(&ttyj->ipw_tty_mutex);
553 static const struct tty_operations tty_ops = {
556 .hangup = ipw_hangup,
558 .write_room = ipw_write_room,
560 .chars_in_buffer = ipw_chars_in_buffer,
561 .tiocmget = ipw_tiocmget,
562 .tiocmset = ipw_tiocmset,
565 int ipwireless_tty_init(void)
569 ipw_tty_driver = alloc_tty_driver(IPWIRELESS_PCMCIA_MINORS);
573 ipw_tty_driver->driver_name = IPWIRELESS_PCCARD_NAME;
574 ipw_tty_driver->name = "ttyIPWp";
575 ipw_tty_driver->major = 0;
576 ipw_tty_driver->minor_start = IPWIRELESS_PCMCIA_START;
577 ipw_tty_driver->type = TTY_DRIVER_TYPE_SERIAL;
578 ipw_tty_driver->subtype = SERIAL_TYPE_NORMAL;
579 ipw_tty_driver->flags = TTY_DRIVER_REAL_RAW | TTY_DRIVER_DYNAMIC_DEV;
580 ipw_tty_driver->init_termios = tty_std_termios;
581 ipw_tty_driver->init_termios.c_cflag =
582 B9600 | CS8 | CREAD | HUPCL | CLOCAL;
583 ipw_tty_driver->init_termios.c_ispeed = 9600;
584 ipw_tty_driver->init_termios.c_ospeed = 9600;
585 tty_set_operations(ipw_tty_driver, &tty_ops);
586 result = tty_register_driver(ipw_tty_driver);
588 printk(KERN_ERR IPWIRELESS_PCCARD_NAME
589 ": failed to register tty driver\n");
590 put_tty_driver(ipw_tty_driver);
597 void ipwireless_tty_release(void)
601 ret = tty_unregister_driver(ipw_tty_driver);
602 put_tty_driver(ipw_tty_driver);
604 printk(KERN_ERR IPWIRELESS_PCCARD_NAME
605 ": tty_unregister_driver failed with code %d\n", ret);
608 int ipwireless_tty_is_modem(struct ipw_tty *tty)
610 return tty->tty_type == TTYTYPE_MODEM;
614 ipwireless_tty_notify_control_line_change(struct ipw_tty *tty,
615 unsigned int channel_idx,
616 unsigned int control_lines,
617 unsigned int changed_mask)
619 unsigned int old_control_lines = tty->control_lines;
621 tty->control_lines = (tty->control_lines & ~changed_mask)
622 | (control_lines & changed_mask);
625 * If DCD is de-asserted, we close the tty so pppd can tell that we
628 if ((old_control_lines & IPW_CONTROL_LINE_DCD)
629 && !(tty->control_lines & IPW_CONTROL_LINE_DCD)
631 tty_hangup(tty->port.tty);