File: /usr/src/linux/net/ax25/ax25_ds_timer.c

1     /*
2      *	AX.25 release 037
3      *
4      *	This code REQUIRES 2.1.15 or higher/ NET3.038
5      *
6      *	This module:
7      *		This module is free software; you can redistribute it and/or
8      *		modify it under the terms of the GNU General Public License
9      *		as published by the Free Software Foundation; either version
10      *		2 of the License, or (at your option) any later version.
11      *
12      *	History
13      *	AX.25 036	Jonathan(G4KLX)	Cloned from ax25_timer.c.
14      *			Joerg(DL1BKE)	Added DAMA Slave Timeout timer
15      *	AX.25 037	Jonathan(G4KLX)	New timer architecture.
16      */
17     
18     #include <linux/errno.h>
19     #include <linux/types.h>
20     #include <linux/socket.h>
21     #include <linux/in.h>
22     #include <linux/kernel.h>
23     #include <linux/sched.h>
24     #include <linux/timer.h>
25     #include <linux/string.h>
26     #include <linux/sockios.h>
27     #include <linux/net.h>
28     #include <net/ax25.h>
29     #include <linux/inet.h>
30     #include <linux/netdevice.h>
31     #include <linux/skbuff.h>
32     #include <net/sock.h>
33     #include <asm/uaccess.h>
34     #include <asm/system.h>
35     #include <linux/fcntl.h>
36     #include <linux/mm.h>
37     #include <linux/interrupt.h>
38     
39     static void ax25_ds_timeout(unsigned long);
40     
41     /*
42      *	Add DAMA slave timeout timer to timer list.
43      *	Unlike the connection based timers the timeout function gets 
44      *	triggered every second. Please note that NET_AX25_DAMA_SLAVE_TIMEOUT
45      *	(aka /proc/sys/net/ax25/{dev}/dama_slave_timeout) is still in
46      *	1/10th of a second.
47      */
48     
49     static void ax25_ds_add_timer(ax25_dev *ax25_dev)
50     {
51     	struct timer_list *t = &ax25_dev->dama.slave_timer;
52     	t->data		= (unsigned long) ax25_dev;
53     	t->function	= &ax25_ds_timeout;
54     	t->expires	= jiffies + HZ;
55     	add_timer(t);
56     }
57     
58     void ax25_ds_del_timer(ax25_dev *ax25_dev)
59     {
60     	if (ax25_dev) del_timer(&ax25_dev->dama.slave_timer);
61     }
62     
63     void ax25_ds_set_timer(ax25_dev *ax25_dev)
64     {
65     	if (ax25_dev == NULL)		/* paranoia */
66     		return;
67     
68     	del_timer(&ax25_dev->dama.slave_timer);
69     	ax25_dev->dama.slave_timeout = ax25_dev->values[AX25_VALUES_DS_TIMEOUT] / 10;
70     	ax25_ds_add_timer(ax25_dev);
71     }
72     
73     /*
74      *	DAMA Slave Timeout
75      *	Silently discard all (slave) connections in case our master forgot us...
76      */
77     
78     static void ax25_ds_timeout(unsigned long arg)
79     {
80     	ax25_dev *ax25_dev = (struct ax25_dev *) arg;
81     	ax25_cb *ax25;
82     	
83     	if (ax25_dev == NULL || !ax25_dev->dama.slave)
84     		return;			/* Yikes! */
85     	
86     	if (!ax25_dev->dama.slave_timeout || --ax25_dev->dama.slave_timeout) {
87     		ax25_ds_set_timer(ax25_dev);
88     		return;
89     	}
90     	
91     	for (ax25=ax25_list; ax25 != NULL; ax25 = ax25->next) {
92     		if (ax25->ax25_dev != ax25_dev || !(ax25->condition & AX25_COND_DAMA_MODE))
93     			continue;
94     
95     		ax25_send_control(ax25, AX25_DISC, AX25_POLLON, AX25_COMMAND);
96     		ax25_disconnect(ax25, ETIMEDOUT);
97     	}
98     	
99     	ax25_dev_dama_off(ax25_dev);
100     }
101     
102     void ax25_ds_heartbeat_expiry(ax25_cb *ax25)
103     {
104     	switch (ax25->state) {
105     
106     		case AX25_STATE_0:
107     			/* Magic here: If we listen() and a new link dies before it
108     			   is accepted() it isn't 'dead' so doesn't get removed. */
109     			if (ax25->sk == NULL || ax25->sk->destroy || (ax25->sk->state == TCP_LISTEN && ax25->sk->dead)) {
110     				ax25_destroy_socket(ax25);
111     				return;
112     			}
113     			break;
114     
115     		case AX25_STATE_3:
116     			/*
117     			 * Check the state of the receive buffer.
118     			 */
119     			if (ax25->sk != NULL) {
120     				if (atomic_read(&ax25->sk->rmem_alloc) < (ax25->sk->rcvbuf / 2) && 
121     				    (ax25->condition & AX25_COND_OWN_RX_BUSY)) {
122     					ax25->condition &= ~AX25_COND_OWN_RX_BUSY;
123     					ax25->condition &= ~AX25_COND_ACK_PENDING;
124     					break;
125     				}
126     			}
127     			break;
128     	}
129     
130     	ax25_start_heartbeat(ax25);
131     }
132     	
133     /* dl1bke 960114: T3 works much like the IDLE timeout, but
134      *                gets reloaded with every frame for this
135      *		  connection.
136      */
137     void ax25_ds_t3timer_expiry(ax25_cb *ax25)
138     {
139     	ax25_send_control(ax25, AX25_DISC, AX25_POLLON, AX25_COMMAND);
140     	ax25_dama_off(ax25);
141     	ax25_disconnect(ax25, ETIMEDOUT);
142     }
143     
144     /* dl1bke 960228: close the connection when IDLE expires.
145      *		  unlike T3 this timer gets reloaded only on
146      *		  I frames.
147      */
148     void ax25_ds_idletimer_expiry(ax25_cb *ax25)
149     {
150     	ax25_clear_queues(ax25);
151     
152     	ax25->n2count = 0;
153     	ax25->state = AX25_STATE_2;
154     
155     	ax25_calculate_t1(ax25);
156     	ax25_start_t1timer(ax25);
157     	ax25_stop_t3timer(ax25);
158     
159     	if (ax25->sk != NULL) {
160     		ax25->sk->state     = TCP_CLOSE;
161     		ax25->sk->err       = 0;
162     		ax25->sk->shutdown |= SEND_SHUTDOWN;
163     		if (!ax25->sk->dead)
164     			ax25->sk->state_change(ax25->sk);
165     		ax25->sk->dead      = 1;
166     	}
167     }
168     
169     /* dl1bke 960114: The DAMA protocol requires to send data and SABM/DISC
170      *                within the poll of any connected channel. Remember 
171      *                that we are not allowed to send anything unless we
172      *                get polled by the Master.
173      *
174      *                Thus we'll have to do parts of our T1 handling in
175      *                ax25_enquiry_response().
176      */
177     void ax25_ds_t1_timeout(ax25_cb *ax25)
178     {	
179     	switch (ax25->state) {
180     
181     		case AX25_STATE_1: 
182     			if (ax25->n2count == ax25->n2) {
183     				if (ax25->modulus == AX25_MODULUS) {
184     					ax25_disconnect(ax25, ETIMEDOUT);
185     					return;
186     				} else {
187     					ax25->modulus = AX25_MODULUS;
188     					ax25->window  = ax25->ax25_dev->values[AX25_VALUES_WINDOW];
189     					ax25->n2count = 0;
190     					ax25_send_control(ax25, AX25_SABM, AX25_POLLOFF, AX25_COMMAND);
191     				}
192     			} else {
193     				ax25->n2count++;
194     				if (ax25->modulus == AX25_MODULUS)
195     					ax25_send_control(ax25, AX25_SABM, AX25_POLLOFF, AX25_COMMAND);
196     				else
197     					ax25_send_control(ax25, AX25_SABME, AX25_POLLOFF, AX25_COMMAND);
198     			}
199     			break;
200     
201     		case AX25_STATE_2:
202     			if (ax25->n2count == ax25->n2) {
203     				ax25_send_control(ax25, AX25_DISC, AX25_POLLON, AX25_COMMAND);
204     				ax25_disconnect(ax25, ETIMEDOUT);
205     				return;
206     			} else {
207     				ax25->n2count++;
208     			}
209     			break;
210     
211     		case AX25_STATE_3:
212     			if (ax25->n2count == ax25->n2) {
213     				ax25_send_control(ax25, AX25_DM, AX25_POLLON, AX25_RESPONSE);
214     				ax25_disconnect(ax25, ETIMEDOUT);
215     				return;
216     			} else {
217     				ax25->n2count++;
218     			}
219     			break;
220     	}
221     
222     	ax25_calculate_t1(ax25);
223     	ax25_start_t1timer(ax25);
224     }
225