1 /*********************************************************************
3 * Filename: irlan_common.c
5 * Description: IrDA LAN Access Protocol Implementation
6 * Status: Experimental.
7 * Author: Dag Brattli <dagb@cs.uit.no>
8 * Created at: Sun Aug 31 20:14:37 1997
9 * Modified at: Sun Dec 26 21:53:10 1999
10 * Modified by: Dag Brattli <dagb@cs.uit.no>
12 * Copyright (c) 1997, 1999 Dag Brattli <dagb@cs.uit.no>,
13 * All Rights Reserved.
15 * This program is free software; you can redistribute it and/or
16 * modify it under the terms of the GNU General Public License as
17 * published by the Free Software Foundation; either version 2 of
18 * the License, or (at your option) any later version.
20 * Neither Dag Brattli nor University of Tromsø admit liability nor
21 * provide warranty for any of this software. This material is
22 * provided "AS-IS" and at no charge.
24 ********************************************************************/
26 #include <linux/config.h>
27 #include <linux/module.h>
29 #include <linux/kernel.h>
30 #include <linux/string.h>
31 #include <linux/init.h>
32 #include <linux/errno.h>
33 #include <linux/proc_fs.h>
34 #include <linux/seq_file.h>
35 #include <linux/random.h>
36 #include <linux/netdevice.h>
37 #include <linux/etherdevice.h>
38 #include <linux/rtnetlink.h>
39 #include <linux/moduleparam.h>
40 #include <linux/bitops.h>
42 #include <asm/system.h>
43 #include <asm/byteorder.h>
45 #include <net/irda/irda.h>
46 #include <net/irda/irttp.h>
47 #include <net/irda/irlmp.h>
48 #include <net/irda/iriap.h>
49 #include <net/irda/timer.h>
51 #include <net/irda/irlan_common.h>
52 #include <net/irda/irlan_client.h>
53 #include <net/irda/irlan_provider.h>
54 #include <net/irda/irlan_eth.h>
55 #include <net/irda/irlan_filter.h>
59 * Send gratuitous ARP when connected to a new AP or not. May be a clever
60 * thing to do, but for some reason the machine crashes if you use DHCP. So
61 * lets not use it by default.
63 #undef CONFIG_IRLAN_SEND_GRATUITOUS_ARP
65 /* extern char sysctl_devname[]; */
70 static LIST_HEAD(irlans
);
75 /* Module parameters */
76 static int eth
; /* Use "eth" or "irlan" name for devices */
77 static int access
= ACCESS_PEER
; /* PEER, DIRECT or HOSTED */
80 static const char *irlan_access
[] = {
87 static const char *irlan_media
[] = {
93 extern struct proc_dir_entry
*proc_irda
;
95 static int irlan_seq_open(struct inode
*inode
, struct file
*file
);
97 static struct file_operations irlan_fops
= {
99 .open
= irlan_seq_open
,
102 .release
= seq_release
,
105 extern struct proc_dir_entry
*proc_irda
;
106 #endif /* CONFIG_PROC_FS */
108 static struct irlan_cb
*irlan_open(__u32 saddr
, __u32 daddr
);
109 static void __irlan_close(struct irlan_cb
*self
);
110 static int __irlan_insert_param(struct sk_buff
*skb
, char *param
, int type
,
111 __u8 value_byte
, __u16 value_short
,
112 __u8
*value_array
, __u16 value_len
);
113 static void irlan_open_unicast_addr(struct irlan_cb
*self
);
114 static void irlan_get_unicast_addr(struct irlan_cb
*self
);
115 void irlan_close_tsaps(struct irlan_cb
*self
);
118 * Function irlan_init (void)
120 * Initialize IrLAN layer
123 static int __init
irlan_init(void)
125 struct irlan_cb
*new;
128 IRDA_DEBUG(2, "%s()\n", __FUNCTION__
);
130 #ifdef CONFIG_PROC_FS
131 { struct proc_dir_entry
*proc
;
132 proc
= create_proc_entry("irlan", 0, proc_irda
);
134 printk(KERN_ERR
"irlan_init: can't create /proc entry!\n");
138 proc
->proc_fops
= &irlan_fops
;
140 #endif /* CONFIG_PROC_FS */
142 IRDA_DEBUG(4, "%s()\n", __FUNCTION__
);
143 hints
= irlmp_service_to_hint(S_LAN
);
145 /* Register with IrLMP as a client */
146 ckey
= irlmp_register_client(hints
, &irlan_client_discovery_indication
,
149 /* Register with IrLMP as a service */
150 skey
= irlmp_register_service(hints
);
152 /* Start the master IrLAN instance (the only one for now) */
153 new = irlan_open(DEV_ADDR_ANY
, DEV_ADDR_ANY
);
155 /* The master will only open its (listen) control TSAP */
156 irlan_provider_open_ctrl_tsap(new);
158 /* Do some fast discovery! */
159 irlmp_discovery_request(DISCOVERY_DEFAULT_SLOTS
);
164 static void __exit
irlan_cleanup(void)
166 struct irlan_cb
*self
, *next
;
168 IRDA_DEBUG(4, "%s()\n", __FUNCTION__
);
170 irlmp_unregister_client(ckey
);
171 irlmp_unregister_service(skey
);
173 #ifdef CONFIG_PROC_FS
174 remove_proc_entry("irlan", proc_irda
);
175 #endif /* CONFIG_PROC_FS */
177 /* Cleanup any leftover network devices */
179 list_for_each_entry_safe(self
, next
, &irlans
, dev_list
) {
186 * Function irlan_open (void)
188 * Open new instance of a client/provider, we should only register the
189 * network device if this instance is ment for a particular client/provider
191 static struct irlan_cb
*irlan_open(__u32 saddr
, __u32 daddr
)
193 struct net_device
*dev
;
194 struct irlan_cb
*self
;
196 IRDA_DEBUG(2, "%s()\n", __FUNCTION__
);
198 /* Create network device with irlan */
199 dev
= alloc_irlandev(eth
? "eth%d" : "irlan%d");
207 * Initialize local device structure
209 self
->magic
= IRLAN_MAGIC
;
213 /* Provider access can only be PEER, DIRECT, or HOSTED */
214 self
->provider
.access_type
= access
;
215 if (access
== ACCESS_DIRECT
) {
217 * Since we are emulating an IrLAN sever we will have to
218 * give ourself an ethernet address!
220 dev
->dev_addr
[0] = 0x40;
221 dev
->dev_addr
[1] = 0x00;
222 dev
->dev_addr
[2] = 0x00;
223 dev
->dev_addr
[3] = 0x00;
224 get_random_bytes(dev
->dev_addr
+4, 1);
225 get_random_bytes(dev
->dev_addr
+5, 1);
228 self
->media
= MEDIA_802_3
;
229 self
->disconnect_reason
= LM_USER_REQUEST
;
230 init_timer(&self
->watchdog_timer
);
231 init_timer(&self
->client
.kick_timer
);
232 init_waitqueue_head(&self
->open_wait
);
234 skb_queue_head_init(&self
->client
.txq
);
236 irlan_next_client_state(self
, IRLAN_IDLE
);
237 irlan_next_provider_state(self
, IRLAN_IDLE
);
239 if (register_netdev(dev
)) {
240 IRDA_DEBUG(2, "%s(), register_netdev() failed!\n",
246 list_add_rcu(&self
->dev_list
, &irlans
);
253 * Function __irlan_close (self)
255 * This function closes and deallocates the IrLAN client instances. Be
256 * aware that other functions which calls client_close() must
257 * remove self from irlans list first.
259 static void __irlan_close(struct irlan_cb
*self
)
261 IRDA_DEBUG(2, "%s()\n", __FUNCTION__
);
264 IRDA_ASSERT(self
!= NULL
, return;);
265 IRDA_ASSERT(self
->magic
== IRLAN_MAGIC
, return;);
267 del_timer_sync(&self
->watchdog_timer
);
268 del_timer_sync(&self
->client
.kick_timer
);
270 /* Close all open connections and remove TSAPs */
271 irlan_close_tsaps(self
);
273 if (self
->client
.iriap
)
274 iriap_close(self
->client
.iriap
);
276 /* Remove frames queued on the control channel */
277 skb_queue_purge(&self
->client
.txq
);
279 /* Unregister and free self via destructor */
280 unregister_netdevice(self
->dev
);
283 /* Find any instance of irlan, used for client discovery wakeup */
284 struct irlan_cb
*irlan_get_any(void)
286 struct irlan_cb
*self
;
288 list_for_each_entry_rcu(self
, &irlans
, dev_list
) {
295 * Function irlan_connect_indication (instance, sap, qos, max_sdu_size, skb)
297 * Here we receive the connect indication for the data channel
300 static void irlan_connect_indication(void *instance
, void *sap
,
301 struct qos_info
*qos
,
303 __u8 max_header_size
,
306 struct irlan_cb
*self
;
307 struct tsap_cb
*tsap
;
309 IRDA_DEBUG(2, "%s()\n", __FUNCTION__
);
311 self
= (struct irlan_cb
*) instance
;
312 tsap
= (struct tsap_cb
*) sap
;
314 IRDA_ASSERT(self
!= NULL
, return;);
315 IRDA_ASSERT(self
->magic
== IRLAN_MAGIC
, return;);
316 IRDA_ASSERT(tsap
== self
->tsap_data
,return;);
318 self
->max_sdu_size
= max_sdu_size
;
319 self
->max_header_size
= max_header_size
;
321 IRDA_DEBUG(0, "%s: We are now connected!\n", __FUNCTION__
);
323 del_timer(&self
->watchdog_timer
);
325 /* If you want to pass the skb to *both* state machines, you will
326 * need to skb_clone() it, so that you don't free it twice.
327 * As the state machines don't need it, git rid of it here...
332 irlan_do_provider_event(self
, IRLAN_DATA_CONNECT_INDICATION
, NULL
);
333 irlan_do_client_event(self
, IRLAN_DATA_CONNECT_INDICATION
, NULL
);
335 if (self
->provider
.access_type
== ACCESS_PEER
) {
337 * Data channel is open, so we are now allowed to
338 * configure the remote filter
340 irlan_get_unicast_addr(self
);
341 irlan_open_unicast_addr(self
);
343 /* Ready to transfer Ethernet frames (at last) */
344 netif_start_queue(self
->dev
); /* Clear reason */
347 static void irlan_connect_confirm(void *instance
, void *sap
,
348 struct qos_info
*qos
,
350 __u8 max_header_size
,
353 struct irlan_cb
*self
;
355 self
= (struct irlan_cb
*) instance
;
357 IRDA_ASSERT(self
!= NULL
, return;);
358 IRDA_ASSERT(self
->magic
== IRLAN_MAGIC
, return;);
360 self
->max_sdu_size
= max_sdu_size
;
361 self
->max_header_size
= max_header_size
;
363 /* TODO: we could set the MTU depending on the max_sdu_size */
365 IRDA_DEBUG(0, "%s: We are now connected!\n", __FUNCTION__
);
366 del_timer(&self
->watchdog_timer
);
369 * Data channel is open, so we are now allowed to configure the remote
372 irlan_get_unicast_addr(self
);
373 irlan_open_unicast_addr(self
);
375 /* Open broadcast and multicast filter by default */
376 irlan_set_broadcast_filter(self
, TRUE
);
377 irlan_set_multicast_filter(self
, TRUE
);
379 /* Ready to transfer Ethernet frames */
380 netif_start_queue(self
->dev
);
381 self
->disconnect_reason
= 0; /* Clear reason */
382 #ifdef CONFIG_IRLAN_SEND_GRATUITOUS_ARP
383 irlan_eth_send_gratuitous_arp(&self
->dev
);
385 wake_up_interruptible(&self
->open_wait
);
389 * Function irlan_client_disconnect_indication (handle)
391 * Callback function for the IrTTP layer. Indicates a disconnection of
392 * the specified connection (handle)
394 static void irlan_disconnect_indication(void *instance
,
395 void *sap
, LM_REASON reason
,
396 struct sk_buff
*userdata
)
398 struct irlan_cb
*self
;
399 struct tsap_cb
*tsap
;
401 IRDA_DEBUG(0, "%s(), reason=%d\n", __FUNCTION__
, reason
);
403 self
= (struct irlan_cb
*) instance
;
404 tsap
= (struct tsap_cb
*) sap
;
406 IRDA_ASSERT(self
!= NULL
, return;);
407 IRDA_ASSERT(self
->magic
== IRLAN_MAGIC
, return;);
408 IRDA_ASSERT(tsap
!= NULL
, return;);
409 IRDA_ASSERT(tsap
->magic
== TTP_TSAP_MAGIC
, return;);
411 IRDA_ASSERT(tsap
== self
->tsap_data
, return;);
413 IRDA_DEBUG(2, "IrLAN, data channel disconnected by peer!\n");
415 /* Save reason so we know if we should try to reconnect or not */
416 self
->disconnect_reason
= reason
;
419 case LM_USER_REQUEST
: /* User request */
420 IRDA_DEBUG(2, "%s(), User requested\n", __FUNCTION__
);
422 case LM_LAP_DISCONNECT
: /* Unexpected IrLAP disconnect */
423 IRDA_DEBUG(2, "%s(), Unexpected IrLAP disconnect\n", __FUNCTION__
);
425 case LM_CONNECT_FAILURE
: /* Failed to establish IrLAP connection */
426 IRDA_DEBUG(2, "%s(), IrLAP connect failed\n", __FUNCTION__
);
428 case LM_LAP_RESET
: /* IrLAP reset */
429 IRDA_DEBUG(2, "%s(), IrLAP reset\n", __FUNCTION__
);
431 case LM_INIT_DISCONNECT
:
432 IRDA_DEBUG(2, "%s(), IrLMP connect failed\n", __FUNCTION__
);
435 IRDA_ERROR("%s(), Unknown disconnect reason\n", __FUNCTION__
);
439 /* If you want to pass the skb to *both* state machines, you will
440 * need to skb_clone() it, so that you don't free it twice.
441 * As the state machines don't need it, git rid of it here...
444 dev_kfree_skb(userdata
);
446 irlan_do_client_event(self
, IRLAN_LMP_DISCONNECT
, NULL
);
447 irlan_do_provider_event(self
, IRLAN_LMP_DISCONNECT
, NULL
);
449 wake_up_interruptible(&self
->open_wait
);
452 void irlan_open_data_tsap(struct irlan_cb
*self
)
454 struct tsap_cb
*tsap
;
457 IRDA_DEBUG(2, "%s()\n", __FUNCTION__
);
459 IRDA_ASSERT(self
!= NULL
, return;);
460 IRDA_ASSERT(self
->magic
== IRLAN_MAGIC
, return;);
462 /* Check if already open */
466 irda_notify_init(¬ify
);
468 notify
.data_indication
= irlan_eth_receive
;
469 notify
.udata_indication
= irlan_eth_receive
;
470 notify
.connect_indication
= irlan_connect_indication
;
471 notify
.connect_confirm
= irlan_connect_confirm
;
472 notify
.flow_indication
= irlan_eth_flow_indication
;
473 notify
.disconnect_indication
= irlan_disconnect_indication
;
474 notify
.instance
= self
;
475 strlcpy(notify
.name
, "IrLAN data", sizeof(notify
.name
));
477 tsap
= irttp_open_tsap(LSAP_ANY
, DEFAULT_INITIAL_CREDIT
, ¬ify
);
479 IRDA_DEBUG(2, "%s(), Got no tsap!\n", __FUNCTION__
);
482 self
->tsap_data
= tsap
;
485 * This is the data TSAP selector which we will pass to the client
486 * when the client ask for it.
488 self
->stsap_sel_data
= self
->tsap_data
->stsap_sel
;
491 void irlan_close_tsaps(struct irlan_cb
*self
)
493 IRDA_DEBUG(4, "%s()\n", __FUNCTION__
);
495 IRDA_ASSERT(self
!= NULL
, return;);
496 IRDA_ASSERT(self
->magic
== IRLAN_MAGIC
, return;);
498 /* Disconnect and close all open TSAP connections */
499 if (self
->tsap_data
) {
500 irttp_disconnect_request(self
->tsap_data
, NULL
, P_NORMAL
);
501 irttp_close_tsap(self
->tsap_data
);
502 self
->tsap_data
= NULL
;
504 if (self
->client
.tsap_ctrl
) {
505 irttp_disconnect_request(self
->client
.tsap_ctrl
, NULL
,
507 irttp_close_tsap(self
->client
.tsap_ctrl
);
508 self
->client
.tsap_ctrl
= NULL
;
510 if (self
->provider
.tsap_ctrl
) {
511 irttp_disconnect_request(self
->provider
.tsap_ctrl
, NULL
,
513 irttp_close_tsap(self
->provider
.tsap_ctrl
);
514 self
->provider
.tsap_ctrl
= NULL
;
516 self
->disconnect_reason
= LM_USER_REQUEST
;
520 * Function irlan_ias_register (self, tsap_sel)
522 * Register with LM-IAS
525 void irlan_ias_register(struct irlan_cb
*self
, __u8 tsap_sel
)
527 struct ias_object
*obj
;
528 struct ias_value
*new_value
;
530 IRDA_ASSERT(self
!= NULL
, return;);
531 IRDA_ASSERT(self
->magic
== IRLAN_MAGIC
, return;);
534 * Check if object has already been registered by a previous provider.
535 * If that is the case, we just change the value of the attribute
537 if (!irias_find_object("IrLAN")) {
538 obj
= irias_new_object("IrLAN", IAS_IRLAN_ID
);
539 irias_add_integer_attrib(obj
, "IrDA:TinyTP:LsapSel", tsap_sel
,
541 irias_insert_object(obj
);
543 new_value
= irias_new_integer_value(tsap_sel
);
544 irias_object_change_attribute("IrLAN", "IrDA:TinyTP:LsapSel",
548 /* Register PnP object only if not registered before */
549 if (!irias_find_object("PnP")) {
550 obj
= irias_new_object("PnP", IAS_PNP_ID
);
552 irias_add_string_attrib(obj
, "Name", sysctl_devname
,
555 irias_add_string_attrib(obj
, "Name", "Linux", IAS_KERNEL_ATTR
);
557 irias_add_string_attrib(obj
, "DeviceID", "HWP19F0",
559 irias_add_integer_attrib(obj
, "CompCnt", 1, IAS_KERNEL_ATTR
);
560 if (self
->provider
.access_type
== ACCESS_PEER
)
561 irias_add_string_attrib(obj
, "Comp#01", "PNP8389",
564 irias_add_string_attrib(obj
, "Comp#01", "PNP8294",
567 irias_add_string_attrib(obj
, "Manufacturer",
568 "Linux-IrDA Project", IAS_KERNEL_ATTR
);
569 irias_insert_object(obj
);
574 * Function irlan_run_ctrl_tx_queue (self)
576 * Try to send the next command in the control transmit queue
579 int irlan_run_ctrl_tx_queue(struct irlan_cb
*self
)
583 IRDA_DEBUG(2, "%s()\n", __FUNCTION__
);
585 if (irda_lock(&self
->client
.tx_busy
) == FALSE
)
588 skb
= skb_dequeue(&self
->client
.txq
);
590 self
->client
.tx_busy
= FALSE
;
594 /* Check that it's really possible to send commands */
595 if ((self
->client
.tsap_ctrl
== NULL
) ||
596 (self
->client
.state
== IRLAN_IDLE
))
598 self
->client
.tx_busy
= FALSE
;
602 IRDA_DEBUG(2, "%s(), sending ...\n", __FUNCTION__
);
604 return irttp_data_request(self
->client
.tsap_ctrl
, skb
);
608 * Function irlan_ctrl_data_request (self, skb)
610 * This function makes sure that commands on the control channel is being
611 * sent in a command/response fashion
613 static void irlan_ctrl_data_request(struct irlan_cb
*self
, struct sk_buff
*skb
)
615 IRDA_DEBUG(2, "%s()\n", __FUNCTION__
);
618 skb_queue_tail(&self
->client
.txq
, skb
);
620 /* Try to send command */
621 irlan_run_ctrl_tx_queue(self
);
625 * Function irlan_get_provider_info (self)
627 * Send Get Provider Information command to peer IrLAN layer
630 void irlan_get_provider_info(struct irlan_cb
*self
)
635 IRDA_DEBUG(4, "%s()\n", __FUNCTION__
);
637 IRDA_ASSERT(self
!= NULL
, return;);
638 IRDA_ASSERT(self
->magic
== IRLAN_MAGIC
, return;);
640 skb
= dev_alloc_skb(64);
644 /* Reserve space for TTP, LMP, and LAP header */
645 skb_reserve(skb
, self
->client
.max_header_size
);
650 frame
[0] = CMD_GET_PROVIDER_INFO
;
651 frame
[1] = 0x00; /* Zero parameters */
653 irlan_ctrl_data_request(self
, skb
);
657 * Function irlan_open_data_channel (self)
659 * Send an Open Data Command to provider
662 void irlan_open_data_channel(struct irlan_cb
*self
)
667 IRDA_DEBUG(4, "%s()\n", __FUNCTION__
);
669 IRDA_ASSERT(self
!= NULL
, return;);
670 IRDA_ASSERT(self
->magic
== IRLAN_MAGIC
, return;);
672 skb
= dev_alloc_skb(64);
676 skb_reserve(skb
, self
->client
.max_header_size
);
682 frame
[0] = CMD_OPEN_DATA_CHANNEL
;
683 frame
[1] = 0x02; /* Two parameters */
685 irlan_insert_string_param(skb
, "MEDIA", "802.3");
686 irlan_insert_string_param(skb
, "ACCESS_TYPE", "DIRECT");
687 /* irlan_insert_string_param(skb, "MODE", "UNRELIABLE"); */
689 /* self->use_udata = TRUE; */
691 irlan_ctrl_data_request(self
, skb
);
694 void irlan_close_data_channel(struct irlan_cb
*self
)
699 IRDA_DEBUG(4, "%s()\n", __FUNCTION__
);
701 IRDA_ASSERT(self
!= NULL
, return;);
702 IRDA_ASSERT(self
->magic
== IRLAN_MAGIC
, return;);
704 /* Check if the TSAP is still there */
705 if (self
->client
.tsap_ctrl
== NULL
)
708 skb
= dev_alloc_skb(64);
712 skb_reserve(skb
, self
->client
.max_header_size
);
718 frame
[0] = CMD_CLOSE_DATA_CHAN
;
719 frame
[1] = 0x01; /* Two parameters */
721 irlan_insert_byte_param(skb
, "DATA_CHAN", self
->dtsap_sel_data
);
723 irlan_ctrl_data_request(self
, skb
);
727 * Function irlan_open_unicast_addr (self)
729 * Make IrLAN provider accept ethernet frames addressed to the unicast
733 static void irlan_open_unicast_addr(struct irlan_cb
*self
)
738 IRDA_DEBUG(4, "%s()\n", __FUNCTION__
);
740 IRDA_ASSERT(self
!= NULL
, return;);
741 IRDA_ASSERT(self
->magic
== IRLAN_MAGIC
, return;);
743 skb
= dev_alloc_skb(128);
747 /* Reserve space for TTP, LMP, and LAP header */
748 skb_reserve(skb
, self
->max_header_size
);
753 frame
[0] = CMD_FILTER_OPERATION
;
754 frame
[1] = 0x03; /* Three parameters */
755 irlan_insert_byte_param(skb
, "DATA_CHAN" , self
->dtsap_sel_data
);
756 irlan_insert_string_param(skb
, "FILTER_TYPE", "DIRECTED");
757 irlan_insert_string_param(skb
, "FILTER_MODE", "FILTER");
759 irlan_ctrl_data_request(self
, skb
);
763 * Function irlan_set_broadcast_filter (self, status)
765 * Make IrLAN provider accept ethernet frames addressed to the broadcast
766 * address. Be careful with the use of this one, since there may be a lot
767 * of broadcast traffic out there. We can still function without this
768 * one but then _we_ have to initiate all communication with other
769 * hosts, since ARP request for this host will not be answered.
771 void irlan_set_broadcast_filter(struct irlan_cb
*self
, int status
)
776 IRDA_DEBUG(2, "%s()\n", __FUNCTION__
);
778 IRDA_ASSERT(self
!= NULL
, return;);
779 IRDA_ASSERT(self
->magic
== IRLAN_MAGIC
, return;);
781 skb
= dev_alloc_skb(128);
785 /* Reserve space for TTP, LMP, and LAP header */
786 skb_reserve(skb
, self
->client
.max_header_size
);
791 frame
[0] = CMD_FILTER_OPERATION
;
792 frame
[1] = 0x03; /* Three parameters */
793 irlan_insert_byte_param(skb
, "DATA_CHAN", self
->dtsap_sel_data
);
794 irlan_insert_string_param(skb
, "FILTER_TYPE", "BROADCAST");
796 irlan_insert_string_param(skb
, "FILTER_MODE", "FILTER");
798 irlan_insert_string_param(skb
, "FILTER_MODE", "NONE");
800 irlan_ctrl_data_request(self
, skb
);
804 * Function irlan_set_multicast_filter (self, status)
806 * Make IrLAN provider accept ethernet frames addressed to the multicast
810 void irlan_set_multicast_filter(struct irlan_cb
*self
, int status
)
815 IRDA_DEBUG(2, "%s()\n", __FUNCTION__
);
817 IRDA_ASSERT(self
!= NULL
, return;);
818 IRDA_ASSERT(self
->magic
== IRLAN_MAGIC
, return;);
820 skb
= dev_alloc_skb(128);
824 /* Reserve space for TTP, LMP, and LAP header */
825 skb_reserve(skb
, self
->client
.max_header_size
);
830 frame
[0] = CMD_FILTER_OPERATION
;
831 frame
[1] = 0x03; /* Three parameters */
832 irlan_insert_byte_param(skb
, "DATA_CHAN", self
->dtsap_sel_data
);
833 irlan_insert_string_param(skb
, "FILTER_TYPE", "MULTICAST");
835 irlan_insert_string_param(skb
, "FILTER_MODE", "ALL");
837 irlan_insert_string_param(skb
, "FILTER_MODE", "NONE");
839 irlan_ctrl_data_request(self
, skb
);
843 * Function irlan_get_unicast_addr (self)
845 * Retrieves the unicast address from the IrLAN provider. This address
846 * will be inserted into the devices structure, so the ethernet layer
847 * can construct its packets.
850 static void irlan_get_unicast_addr(struct irlan_cb
*self
)
855 IRDA_DEBUG(2, "%s()\n", __FUNCTION__
);
857 IRDA_ASSERT(self
!= NULL
, return;);
858 IRDA_ASSERT(self
->magic
== IRLAN_MAGIC
, return;);
860 skb
= dev_alloc_skb(128);
864 /* Reserve space for TTP, LMP, and LAP header */
865 skb_reserve(skb
, self
->client
.max_header_size
);
870 frame
[0] = CMD_FILTER_OPERATION
;
871 frame
[1] = 0x03; /* Three parameters */
872 irlan_insert_byte_param(skb
, "DATA_CHAN", self
->dtsap_sel_data
);
873 irlan_insert_string_param(skb
, "FILTER_TYPE", "DIRECTED");
874 irlan_insert_string_param(skb
, "FILTER_OPERATION", "DYNAMIC");
876 irlan_ctrl_data_request(self
, skb
);
880 * Function irlan_get_media_char (self)
885 void irlan_get_media_char(struct irlan_cb
*self
)
890 IRDA_DEBUG(4, "%s()\n", __FUNCTION__
);
892 IRDA_ASSERT(self
!= NULL
, return;);
893 IRDA_ASSERT(self
->magic
== IRLAN_MAGIC
, return;);
895 skb
= dev_alloc_skb(64);
899 /* Reserve space for TTP, LMP, and LAP header */
900 skb_reserve(skb
, self
->client
.max_header_size
);
906 frame
[0] = CMD_GET_MEDIA_CHAR
;
907 frame
[1] = 0x01; /* One parameter */
909 irlan_insert_string_param(skb
, "MEDIA", "802.3");
910 irlan_ctrl_data_request(self
, skb
);
914 * Function insert_byte_param (skb, param, value)
916 * Insert byte parameter into frame
919 int irlan_insert_byte_param(struct sk_buff
*skb
, char *param
, __u8 value
)
921 return __irlan_insert_param(skb
, param
, IRLAN_BYTE
, value
, 0, NULL
, 0);
924 int irlan_insert_short_param(struct sk_buff
*skb
, char *param
, __u16 value
)
926 return __irlan_insert_param(skb
, param
, IRLAN_SHORT
, 0, value
, NULL
, 0);
930 * Function insert_string (skb, param, value)
932 * Insert string parameter into frame
935 int irlan_insert_string_param(struct sk_buff
*skb
, char *param
, char *string
)
937 int string_len
= strlen(string
);
939 return __irlan_insert_param(skb
, param
, IRLAN_ARRAY
, 0, 0, string
,
944 * Function insert_array_param(skb, param, value, len_value)
946 * Insert array parameter into frame
949 int irlan_insert_array_param(struct sk_buff
*skb
, char *name
, __u8
*array
,
952 return __irlan_insert_param(skb
, name
, IRLAN_ARRAY
, 0, 0, array
,
957 * Function insert_param (skb, param, value, byte)
959 * Insert parameter at end of buffer, structure of a parameter is:
961 * -----------------------------------------------------------------------
962 * | Name Length[1] | Param Name[1..255] | Val Length[2] | Value[0..1016]|
963 * -----------------------------------------------------------------------
965 static int __irlan_insert_param(struct sk_buff
*skb
, char *param
, int type
,
966 __u8 value_byte
, __u16 value_short
,
967 __u8
*value_array
, __u16 value_len
)
971 __u16 tmp_le
; /* Temporary value in little endian format */
975 IRDA_DEBUG(2, "%s(), Got NULL skb\n", __FUNCTION__
);
979 param_len
= strlen(param
);
988 IRDA_ASSERT(value_array
!= NULL
, return 0;);
989 IRDA_ASSERT(value_len
> 0, return 0;);
992 IRDA_DEBUG(2, "%s(), Unknown parameter type!\n", __FUNCTION__
);
997 /* Insert at end of sk-buffer */
1000 /* Make space for data */
1001 if (skb_tailroom(skb
) < (param_len
+value_len
+3)) {
1002 IRDA_DEBUG(2, "%s(), No more space at end of skb\n", __FUNCTION__
);
1005 skb_put(skb
, param_len
+value_len
+3);
1007 /* Insert parameter length */
1008 frame
[n
++] = param_len
;
1010 /* Insert parameter */
1011 memcpy(frame
+n
, param
, param_len
); n
+= param_len
;
1013 /* Insert value length (2 byte little endian format, LSB first) */
1014 tmp_le
= cpu_to_le16(value_len
);
1015 memcpy(frame
+n
, &tmp_le
, 2); n
+= 2; /* To avoid alignment problems */
1020 frame
[n
++] = value_byte
;
1023 tmp_le
= cpu_to_le16(value_short
);
1024 memcpy(frame
+n
, &tmp_le
, 2); n
+= 2;
1027 memcpy(frame
+n
, value_array
, value_len
); n
+=value_len
;
1032 IRDA_ASSERT(n
== (param_len
+value_len
+3), return 0;);
1034 return param_len
+value_len
+3;
1038 * Function irlan_extract_param (buf, name, value, len)
1040 * Extracts a single parameter name/value pair from buffer and updates
1041 * the buffer pointer to point to the next name/value pair.
1043 int irlan_extract_param(__u8
*buf
, char *name
, char *value
, __u16
*len
)
1049 IRDA_DEBUG(4, "%s()\n", __FUNCTION__
);
1051 /* get length of parameter name (1 byte) */
1052 name_len
= buf
[n
++];
1054 if (name_len
> 254) {
1055 IRDA_DEBUG(2, "%s(), name_len > 254\n", __FUNCTION__
);
1056 return -RSP_INVALID_COMMAND_FORMAT
;
1059 /* get parameter name */
1060 memcpy(name
, buf
+n
, name_len
);
1061 name
[name_len
] = '\0';
1065 * Get length of parameter value (2 bytes in little endian
1068 memcpy(&val_len
, buf
+n
, 2); /* To avoid alignment problems */
1069 le16_to_cpus(&val_len
); n
+=2;
1071 if (val_len
> 1016) {
1072 IRDA_DEBUG(2, "%s(), parameter length to long\n", __FUNCTION__
);
1073 return -RSP_INVALID_COMMAND_FORMAT
;
1077 /* get parameter value */
1078 memcpy(value
, buf
+n
, val_len
);
1079 value
[val_len
] = '\0';
1082 IRDA_DEBUG(4, "Parameter: %s ", name
);
1083 IRDA_DEBUG(4, "Value: %s\n", value
);
1088 #ifdef CONFIG_PROC_FS
1091 * Start of reading /proc entries.
1092 * Return entry at pos,
1093 * or start_token to indicate print header line
1094 * or NULL if end of file
1096 static void *irlan_seq_start(struct seq_file
*seq
, loff_t
*pos
)
1099 struct irlan_cb
*self
;
1103 return SEQ_START_TOKEN
;
1105 list_for_each_entry(self
, &irlans
, dev_list
) {
1113 /* Return entry after v, and increment pos */
1114 static void *irlan_seq_next(struct seq_file
*seq
, void *v
, loff_t
*pos
)
1116 struct list_head
*nxt
;
1119 if (v
== SEQ_START_TOKEN
)
1122 nxt
= ((struct irlan_cb
*)v
)->dev_list
.next
;
1124 return (nxt
== &irlans
) ? NULL
1125 : list_entry(nxt
, struct irlan_cb
, dev_list
);
1128 /* End of reading /proc file */
1129 static void irlan_seq_stop(struct seq_file
*seq
, void *v
)
1136 * Show one entry in /proc file.
1138 static int irlan_seq_show(struct seq_file
*seq
, void *v
)
1140 if (v
== SEQ_START_TOKEN
)
1141 seq_puts(seq
, "IrLAN instances:\n");
1143 struct irlan_cb
*self
= v
;
1145 IRDA_ASSERT(self
!= NULL
, return -1;);
1146 IRDA_ASSERT(self
->magic
== IRLAN_MAGIC
, return -1;);
1148 seq_printf(seq
,"ifname: %s,\n",
1150 seq_printf(seq
,"client state: %s, ",
1151 irlan_state
[ self
->client
.state
]);
1152 seq_printf(seq
,"provider state: %s,\n",
1153 irlan_state
[ self
->provider
.state
]);
1154 seq_printf(seq
,"saddr: %#08x, ",
1156 seq_printf(seq
,"daddr: %#08x\n",
1158 seq_printf(seq
,"version: %d.%d,\n",
1159 self
->version
[1], self
->version
[0]);
1160 seq_printf(seq
,"access type: %s\n",
1161 irlan_access
[self
->client
.access_type
]);
1162 seq_printf(seq
,"media: %s\n",
1163 irlan_media
[self
->media
]);
1165 seq_printf(seq
,"local filter:\n");
1166 seq_printf(seq
,"remote filter: ");
1167 irlan_print_filter(seq
, self
->client
.filter_type
);
1168 seq_printf(seq
,"tx busy: %s\n",
1169 netif_queue_stopped(self
->dev
) ? "TRUE" : "FALSE");
1176 static struct seq_operations irlan_seq_ops
= {
1177 .start
= irlan_seq_start
,
1178 .next
= irlan_seq_next
,
1179 .stop
= irlan_seq_stop
,
1180 .show
= irlan_seq_show
,
1183 static int irlan_seq_open(struct inode
*inode
, struct file
*file
)
1185 return seq_open(file
, &irlan_seq_ops
);
1189 MODULE_AUTHOR("Dag Brattli <dagb@cs.uit.no>");
1190 MODULE_DESCRIPTION("The Linux IrDA LAN protocol");
1191 MODULE_LICENSE("GPL");
1193 module_param(eth
, bool, 0);
1194 MODULE_PARM_DESC(eth
, "Name devices ethX (0) or irlanX (1)");
1195 module_param(access
, int, 0);
1196 MODULE_PARM_DESC(access
, "Access type DIRECT=1, PEER=2, HOSTED=3");
1198 module_init(irlan_init
);
1199 module_exit(irlan_cleanup
);