xref: /openbmc/linux/net/atm/lec.c (revision 50dc9a85)
1 // SPDX-License-Identifier: GPL-2.0-only
2 /*
3  * lec.c: Lan Emulation driver
4  *
5  * Marko Kiiskila <mkiiskila@yahoo.com>
6  */
7 
8 #define pr_fmt(fmt) KBUILD_MODNAME ":%s: " fmt, __func__
9 
10 #include <linux/slab.h>
11 #include <linux/kernel.h>
12 #include <linux/bitops.h>
13 #include <linux/capability.h>
14 
15 /* We are ethernet device */
16 #include <linux/if_ether.h>
17 #include <linux/netdevice.h>
18 #include <linux/etherdevice.h>
19 #include <net/sock.h>
20 #include <linux/skbuff.h>
21 #include <linux/ip.h>
22 #include <asm/byteorder.h>
23 #include <linux/uaccess.h>
24 #include <net/arp.h>
25 #include <net/dst.h>
26 #include <linux/proc_fs.h>
27 #include <linux/spinlock.h>
28 #include <linux/seq_file.h>
29 
30 /* And atm device */
31 #include <linux/atmdev.h>
32 #include <linux/atmlec.h>
33 
34 /* Proxy LEC knows about bridging */
35 #if IS_ENABLED(CONFIG_BRIDGE)
36 #include "../bridge/br_private.h"
37 
38 static unsigned char bridge_ula_lec[] = { 0x01, 0x80, 0xc2, 0x00, 0x00 };
39 #endif
40 
41 /* Modular too */
42 #include <linux/module.h>
43 #include <linux/init.h>
44 
45 /* Hardening for Spectre-v1 */
46 #include <linux/nospec.h>
47 
48 #include "lec.h"
49 #include "lec_arpc.h"
50 #include "resources.h"
51 
52 #define DUMP_PACKETS 0		/*
53 				 * 0 = None,
54 				 * 1 = 30 first bytes
55 				 * 2 = Whole packet
56 				 */
57 
58 #define LEC_UNRES_QUE_LEN 8	/*
59 				 * number of tx packets to queue for a
60 				 * single destination while waiting for SVC
61 				 */
62 
63 static int lec_open(struct net_device *dev);
64 static netdev_tx_t lec_start_xmit(struct sk_buff *skb,
65 				  struct net_device *dev);
66 static int lec_close(struct net_device *dev);
67 static struct lec_arp_table *lec_arp_find(struct lec_priv *priv,
68 					  const unsigned char *mac_addr);
69 static int lec_arp_remove(struct lec_priv *priv,
70 			  struct lec_arp_table *to_remove);
71 /* LANE2 functions */
72 static void lane2_associate_ind(struct net_device *dev, const u8 *mac_address,
73 				const u8 *tlvs, u32 sizeoftlvs);
74 static int lane2_resolve(struct net_device *dev, const u8 *dst_mac, int force,
75 			 u8 **tlvs, u32 *sizeoftlvs);
76 static int lane2_associate_req(struct net_device *dev, const u8 *lan_dst,
77 			       const u8 *tlvs, u32 sizeoftlvs);
78 
79 static int lec_addr_delete(struct lec_priv *priv, const unsigned char *atm_addr,
80 			   unsigned long permanent);
81 static void lec_arp_check_empties(struct lec_priv *priv,
82 				  struct atm_vcc *vcc, struct sk_buff *skb);
83 static void lec_arp_destroy(struct lec_priv *priv);
84 static void lec_arp_init(struct lec_priv *priv);
85 static struct atm_vcc *lec_arp_resolve(struct lec_priv *priv,
86 				       const unsigned char *mac_to_find,
87 				       int is_rdesc,
88 				       struct lec_arp_table **ret_entry);
89 static void lec_arp_update(struct lec_priv *priv, const unsigned char *mac_addr,
90 			   const unsigned char *atm_addr,
91 			   unsigned long remoteflag,
92 			   unsigned int targetless_le_arp);
93 static void lec_flush_complete(struct lec_priv *priv, unsigned long tran_id);
94 static int lec_mcast_make(struct lec_priv *priv, struct atm_vcc *vcc);
95 static void lec_set_flush_tran_id(struct lec_priv *priv,
96 				  const unsigned char *atm_addr,
97 				  unsigned long tran_id);
98 static void lec_vcc_added(struct lec_priv *priv,
99 			  const struct atmlec_ioc *ioc_data,
100 			  struct atm_vcc *vcc,
101 			  void (*old_push)(struct atm_vcc *vcc,
102 					   struct sk_buff *skb));
103 static void lec_vcc_close(struct lec_priv *priv, struct atm_vcc *vcc);
104 
105 /* must be done under lec_arp_lock */
106 static inline void lec_arp_hold(struct lec_arp_table *entry)
107 {
108 	refcount_inc(&entry->usage);
109 }
110 
111 static inline void lec_arp_put(struct lec_arp_table *entry)
112 {
113 	if (refcount_dec_and_test(&entry->usage))
114 		kfree(entry);
115 }
116 
117 static struct lane2_ops lane2_ops = {
118 	.resolve = lane2_resolve,		/* spec 3.1.3 */
119 	.associate_req = lane2_associate_req,	/* spec 3.1.4 */
120 	.associate_indicator = NULL             /* spec 3.1.5 */
121 };
122 
123 static unsigned char bus_mac[ETH_ALEN] = { 0xff, 0xff, 0xff, 0xff, 0xff, 0xff };
124 
125 /* Device structures */
126 static struct net_device *dev_lec[MAX_LEC_ITF];
127 
128 #if IS_ENABLED(CONFIG_BRIDGE)
129 static void lec_handle_bridge(struct sk_buff *skb, struct net_device *dev)
130 {
131 	char *buff;
132 	struct lec_priv *priv;
133 
134 	/*
135 	 * Check if this is a BPDU. If so, ask zeppelin to send
136 	 * LE_TOPOLOGY_REQUEST with the same value of Topology Change bit
137 	 * as the Config BPDU has
138 	 */
139 	buff = skb->data + skb->dev->hard_header_len;
140 	if (*buff++ == 0x42 && *buff++ == 0x42 && *buff++ == 0x03) {
141 		struct sock *sk;
142 		struct sk_buff *skb2;
143 		struct atmlec_msg *mesg;
144 
145 		skb2 = alloc_skb(sizeof(struct atmlec_msg), GFP_ATOMIC);
146 		if (skb2 == NULL)
147 			return;
148 		skb2->len = sizeof(struct atmlec_msg);
149 		mesg = (struct atmlec_msg *)skb2->data;
150 		mesg->type = l_topology_change;
151 		buff += 4;
152 		mesg->content.normal.flag = *buff & 0x01;
153 					/* 0x01 is topology change */
154 
155 		priv = netdev_priv(dev);
156 		atm_force_charge(priv->lecd, skb2->truesize);
157 		sk = sk_atm(priv->lecd);
158 		skb_queue_tail(&sk->sk_receive_queue, skb2);
159 		sk->sk_data_ready(sk);
160 	}
161 }
162 #endif /* IS_ENABLED(CONFIG_BRIDGE) */
163 
164 /*
165  * Open/initialize the netdevice. This is called (in the current kernel)
166  * sometime after booting when the 'ifconfig' program is run.
167  *
168  * This routine should set everything up anew at each open, even
169  * registers that "should" only need to be set once at boot, so that
170  * there is non-reboot way to recover if something goes wrong.
171  */
172 
173 static int lec_open(struct net_device *dev)
174 {
175 	netif_start_queue(dev);
176 
177 	return 0;
178 }
179 
180 static void
181 lec_send(struct atm_vcc *vcc, struct sk_buff *skb)
182 {
183 	struct net_device *dev = skb->dev;
184 
185 	ATM_SKB(skb)->vcc = vcc;
186 	atm_account_tx(vcc, skb);
187 
188 	if (vcc->send(vcc, skb) < 0) {
189 		dev->stats.tx_dropped++;
190 		return;
191 	}
192 
193 	dev->stats.tx_packets++;
194 	dev->stats.tx_bytes += skb->len;
195 }
196 
197 static void lec_tx_timeout(struct net_device *dev, unsigned int txqueue)
198 {
199 	pr_info("%s\n", dev->name);
200 	netif_trans_update(dev);
201 	netif_wake_queue(dev);
202 }
203 
204 static netdev_tx_t lec_start_xmit(struct sk_buff *skb,
205 				  struct net_device *dev)
206 {
207 	struct sk_buff *skb2;
208 	struct lec_priv *priv = netdev_priv(dev);
209 	struct lecdatahdr_8023 *lec_h;
210 	struct atm_vcc *vcc;
211 	struct lec_arp_table *entry;
212 	unsigned char *dst;
213 	int min_frame_size;
214 	int is_rdesc;
215 
216 	pr_debug("called\n");
217 	if (!priv->lecd) {
218 		pr_info("%s:No lecd attached\n", dev->name);
219 		dev->stats.tx_errors++;
220 		netif_stop_queue(dev);
221 		kfree_skb(skb);
222 		return NETDEV_TX_OK;
223 	}
224 
225 	pr_debug("skbuff head:%lx data:%lx tail:%lx end:%lx\n",
226 		 (long)skb->head, (long)skb->data, (long)skb_tail_pointer(skb),
227 		 (long)skb_end_pointer(skb));
228 #if IS_ENABLED(CONFIG_BRIDGE)
229 	if (memcmp(skb->data, bridge_ula_lec, sizeof(bridge_ula_lec)) == 0)
230 		lec_handle_bridge(skb, dev);
231 #endif
232 
233 	/* Make sure we have room for lec_id */
234 	if (skb_headroom(skb) < 2) {
235 		pr_debug("reallocating skb\n");
236 		skb2 = skb_realloc_headroom(skb, LEC_HEADER_LEN);
237 		if (unlikely(!skb2)) {
238 			kfree_skb(skb);
239 			return NETDEV_TX_OK;
240 		}
241 		consume_skb(skb);
242 		skb = skb2;
243 	}
244 	skb_push(skb, 2);
245 
246 	/* Put le header to place */
247 	lec_h = (struct lecdatahdr_8023 *)skb->data;
248 	lec_h->le_header = htons(priv->lecid);
249 
250 #if DUMP_PACKETS >= 2
251 #define MAX_DUMP_SKB 99
252 #elif DUMP_PACKETS >= 1
253 #define MAX_DUMP_SKB 30
254 #endif
255 #if DUMP_PACKETS >= 1
256 	printk(KERN_DEBUG "%s: send datalen:%ld lecid:%4.4x\n",
257 	       dev->name, skb->len, priv->lecid);
258 	print_hex_dump(KERN_DEBUG, "", DUMP_OFFSET, 16, 1,
259 		       skb->data, min(skb->len, MAX_DUMP_SKB), true);
260 #endif /* DUMP_PACKETS >= 1 */
261 
262 	/* Minimum ethernet-frame size */
263 	min_frame_size = LEC_MINIMUM_8023_SIZE;
264 	if (skb->len < min_frame_size) {
265 		if ((skb->len + skb_tailroom(skb)) < min_frame_size) {
266 			skb2 = skb_copy_expand(skb, 0,
267 					       min_frame_size - skb->truesize,
268 					       GFP_ATOMIC);
269 			dev_kfree_skb(skb);
270 			if (skb2 == NULL) {
271 				dev->stats.tx_dropped++;
272 				return NETDEV_TX_OK;
273 			}
274 			skb = skb2;
275 		}
276 		skb_put(skb, min_frame_size - skb->len);
277 	}
278 
279 	/* Send to right vcc */
280 	is_rdesc = 0;
281 	dst = lec_h->h_dest;
282 	entry = NULL;
283 	vcc = lec_arp_resolve(priv, dst, is_rdesc, &entry);
284 	pr_debug("%s:vcc:%p vcc_flags:%lx, entry:%p\n",
285 		 dev->name, vcc, vcc ? vcc->flags : 0, entry);
286 	if (!vcc || !test_bit(ATM_VF_READY, &vcc->flags)) {
287 		if (entry && (entry->tx_wait.qlen < LEC_UNRES_QUE_LEN)) {
288 			pr_debug("%s:queuing packet, MAC address %pM\n",
289 				 dev->name, lec_h->h_dest);
290 			skb_queue_tail(&entry->tx_wait, skb);
291 		} else {
292 			pr_debug("%s:tx queue full or no arp entry, dropping, MAC address: %pM\n",
293 				 dev->name, lec_h->h_dest);
294 			dev->stats.tx_dropped++;
295 			dev_kfree_skb(skb);
296 		}
297 		goto out;
298 	}
299 #if DUMP_PACKETS > 0
300 	printk(KERN_DEBUG "%s:sending to vpi:%d vci:%d\n",
301 	       dev->name, vcc->vpi, vcc->vci);
302 #endif /* DUMP_PACKETS > 0 */
303 
304 	while (entry && (skb2 = skb_dequeue(&entry->tx_wait))) {
305 		pr_debug("emptying tx queue, MAC address %pM\n", lec_h->h_dest);
306 		lec_send(vcc, skb2);
307 	}
308 
309 	lec_send(vcc, skb);
310 
311 	if (!atm_may_send(vcc, 0)) {
312 		struct lec_vcc_priv *vpriv = LEC_VCC_PRIV(vcc);
313 
314 		vpriv->xoff = 1;
315 		netif_stop_queue(dev);
316 
317 		/*
318 		 * vcc->pop() might have occurred in between, making
319 		 * the vcc usuable again.  Since xmit is serialized,
320 		 * this is the only situation we have to re-test.
321 		 */
322 
323 		if (atm_may_send(vcc, 0))
324 			netif_wake_queue(dev);
325 	}
326 
327 out:
328 	if (entry)
329 		lec_arp_put(entry);
330 	netif_trans_update(dev);
331 	return NETDEV_TX_OK;
332 }
333 
334 /* The inverse routine to net_open(). */
335 static int lec_close(struct net_device *dev)
336 {
337 	netif_stop_queue(dev);
338 	return 0;
339 }
340 
341 static int lec_atm_send(struct atm_vcc *vcc, struct sk_buff *skb)
342 {
343 	unsigned long flags;
344 	struct net_device *dev = (struct net_device *)vcc->proto_data;
345 	struct lec_priv *priv = netdev_priv(dev);
346 	struct atmlec_msg *mesg;
347 	struct lec_arp_table *entry;
348 	int i;
349 	char *tmp;		/* FIXME */
350 
351 	WARN_ON(refcount_sub_and_test(skb->truesize, &sk_atm(vcc)->sk_wmem_alloc));
352 	mesg = (struct atmlec_msg *)skb->data;
353 	tmp = skb->data;
354 	tmp += sizeof(struct atmlec_msg);
355 	pr_debug("%s: msg from zeppelin:%d\n", dev->name, mesg->type);
356 	switch (mesg->type) {
357 	case l_set_mac_addr:
358 		eth_hw_addr_set(dev, mesg->content.normal.mac_addr);
359 		break;
360 	case l_del_mac_addr:
361 		for (i = 0; i < 6; i++)
362 			dev->dev_addr[i] = 0;
363 		break;
364 	case l_addr_delete:
365 		lec_addr_delete(priv, mesg->content.normal.atm_addr,
366 				mesg->content.normal.flag);
367 		break;
368 	case l_topology_change:
369 		priv->topology_change = mesg->content.normal.flag;
370 		break;
371 	case l_flush_complete:
372 		lec_flush_complete(priv, mesg->content.normal.flag);
373 		break;
374 	case l_narp_req:	/* LANE2: see 7.1.35 in the lane2 spec */
375 		spin_lock_irqsave(&priv->lec_arp_lock, flags);
376 		entry = lec_arp_find(priv, mesg->content.normal.mac_addr);
377 		lec_arp_remove(priv, entry);
378 		spin_unlock_irqrestore(&priv->lec_arp_lock, flags);
379 
380 		if (mesg->content.normal.no_source_le_narp)
381 			break;
382 		fallthrough;
383 	case l_arp_update:
384 		lec_arp_update(priv, mesg->content.normal.mac_addr,
385 			       mesg->content.normal.atm_addr,
386 			       mesg->content.normal.flag,
387 			       mesg->content.normal.targetless_le_arp);
388 		pr_debug("in l_arp_update\n");
389 		if (mesg->sizeoftlvs != 0) {	/* LANE2 3.1.5 */
390 			pr_debug("LANE2 3.1.5, got tlvs, size %d\n",
391 				 mesg->sizeoftlvs);
392 			lane2_associate_ind(dev, mesg->content.normal.mac_addr,
393 					    tmp, mesg->sizeoftlvs);
394 		}
395 		break;
396 	case l_config:
397 		priv->maximum_unknown_frame_count =
398 		    mesg->content.config.maximum_unknown_frame_count;
399 		priv->max_unknown_frame_time =
400 		    (mesg->content.config.max_unknown_frame_time * HZ);
401 		priv->max_retry_count = mesg->content.config.max_retry_count;
402 		priv->aging_time = (mesg->content.config.aging_time * HZ);
403 		priv->forward_delay_time =
404 		    (mesg->content.config.forward_delay_time * HZ);
405 		priv->arp_response_time =
406 		    (mesg->content.config.arp_response_time * HZ);
407 		priv->flush_timeout = (mesg->content.config.flush_timeout * HZ);
408 		priv->path_switching_delay =
409 		    (mesg->content.config.path_switching_delay * HZ);
410 		priv->lane_version = mesg->content.config.lane_version;
411 					/* LANE2 */
412 		priv->lane2_ops = NULL;
413 		if (priv->lane_version > 1)
414 			priv->lane2_ops = &lane2_ops;
415 		rtnl_lock();
416 		if (dev_set_mtu(dev, mesg->content.config.mtu))
417 			pr_info("%s: change_mtu to %d failed\n",
418 				dev->name, mesg->content.config.mtu);
419 		rtnl_unlock();
420 		priv->is_proxy = mesg->content.config.is_proxy;
421 		break;
422 	case l_flush_tran_id:
423 		lec_set_flush_tran_id(priv, mesg->content.normal.atm_addr,
424 				      mesg->content.normal.flag);
425 		break;
426 	case l_set_lecid:
427 		priv->lecid =
428 		    (unsigned short)(0xffff & mesg->content.normal.flag);
429 		break;
430 	case l_should_bridge:
431 #if IS_ENABLED(CONFIG_BRIDGE)
432 	{
433 		pr_debug("%s: bridge zeppelin asks about %pM\n",
434 			 dev->name, mesg->content.proxy.mac_addr);
435 
436 		if (br_fdb_test_addr_hook == NULL)
437 			break;
438 
439 		if (br_fdb_test_addr_hook(dev, mesg->content.proxy.mac_addr)) {
440 			/* hit from bridge table, send LE_ARP_RESPONSE */
441 			struct sk_buff *skb2;
442 			struct sock *sk;
443 
444 			pr_debug("%s: entry found, responding to zeppelin\n",
445 				 dev->name);
446 			skb2 = alloc_skb(sizeof(struct atmlec_msg), GFP_ATOMIC);
447 			if (skb2 == NULL)
448 				break;
449 			skb2->len = sizeof(struct atmlec_msg);
450 			skb_copy_to_linear_data(skb2, mesg, sizeof(*mesg));
451 			atm_force_charge(priv->lecd, skb2->truesize);
452 			sk = sk_atm(priv->lecd);
453 			skb_queue_tail(&sk->sk_receive_queue, skb2);
454 			sk->sk_data_ready(sk);
455 		}
456 	}
457 #endif /* IS_ENABLED(CONFIG_BRIDGE) */
458 		break;
459 	default:
460 		pr_info("%s: Unknown message type %d\n", dev->name, mesg->type);
461 		dev_kfree_skb(skb);
462 		return -EINVAL;
463 	}
464 	dev_kfree_skb(skb);
465 	return 0;
466 }
467 
468 static void lec_atm_close(struct atm_vcc *vcc)
469 {
470 	struct sk_buff *skb;
471 	struct net_device *dev = (struct net_device *)vcc->proto_data;
472 	struct lec_priv *priv = netdev_priv(dev);
473 
474 	priv->lecd = NULL;
475 	/* Do something needful? */
476 
477 	netif_stop_queue(dev);
478 	lec_arp_destroy(priv);
479 
480 	if (skb_peek(&sk_atm(vcc)->sk_receive_queue))
481 		pr_info("%s closing with messages pending\n", dev->name);
482 	while ((skb = skb_dequeue(&sk_atm(vcc)->sk_receive_queue))) {
483 		atm_return(vcc, skb->truesize);
484 		dev_kfree_skb(skb);
485 	}
486 
487 	pr_info("%s: Shut down!\n", dev->name);
488 	module_put(THIS_MODULE);
489 }
490 
491 static const struct atmdev_ops lecdev_ops = {
492 	.close = lec_atm_close,
493 	.send = lec_atm_send
494 };
495 
496 static struct atm_dev lecatm_dev = {
497 	.ops = &lecdev_ops,
498 	.type = "lec",
499 	.number = 999,		/* dummy device number */
500 	.lock = __SPIN_LOCK_UNLOCKED(lecatm_dev.lock)
501 };
502 
503 /*
504  * LANE2: new argument struct sk_buff *data contains
505  * the LE_ARP based TLVs introduced in the LANE2 spec
506  */
507 static int
508 send_to_lecd(struct lec_priv *priv, atmlec_msg_type type,
509 	     const unsigned char *mac_addr, const unsigned char *atm_addr,
510 	     struct sk_buff *data)
511 {
512 	struct sock *sk;
513 	struct sk_buff *skb;
514 	struct atmlec_msg *mesg;
515 
516 	if (!priv || !priv->lecd)
517 		return -1;
518 	skb = alloc_skb(sizeof(struct atmlec_msg), GFP_ATOMIC);
519 	if (!skb)
520 		return -1;
521 	skb->len = sizeof(struct atmlec_msg);
522 	mesg = (struct atmlec_msg *)skb->data;
523 	memset(mesg, 0, sizeof(struct atmlec_msg));
524 	mesg->type = type;
525 	if (data != NULL)
526 		mesg->sizeoftlvs = data->len;
527 	if (mac_addr)
528 		ether_addr_copy(mesg->content.normal.mac_addr, mac_addr);
529 	else
530 		mesg->content.normal.targetless_le_arp = 1;
531 	if (atm_addr)
532 		memcpy(&mesg->content.normal.atm_addr, atm_addr, ATM_ESA_LEN);
533 
534 	atm_force_charge(priv->lecd, skb->truesize);
535 	sk = sk_atm(priv->lecd);
536 	skb_queue_tail(&sk->sk_receive_queue, skb);
537 	sk->sk_data_ready(sk);
538 
539 	if (data != NULL) {
540 		pr_debug("about to send %d bytes of data\n", data->len);
541 		atm_force_charge(priv->lecd, data->truesize);
542 		skb_queue_tail(&sk->sk_receive_queue, data);
543 		sk->sk_data_ready(sk);
544 	}
545 
546 	return 0;
547 }
548 
549 static void lec_set_multicast_list(struct net_device *dev)
550 {
551 	/*
552 	 * by default, all multicast frames arrive over the bus.
553 	 * eventually support selective multicast service
554 	 */
555 }
556 
557 static const struct net_device_ops lec_netdev_ops = {
558 	.ndo_open		= lec_open,
559 	.ndo_stop		= lec_close,
560 	.ndo_start_xmit		= lec_start_xmit,
561 	.ndo_tx_timeout		= lec_tx_timeout,
562 	.ndo_set_rx_mode	= lec_set_multicast_list,
563 };
564 
565 static const unsigned char lec_ctrl_magic[] = {
566 	0xff,
567 	0x00,
568 	0x01,
569 	0x01
570 };
571 
572 #define LEC_DATA_DIRECT_8023  2
573 #define LEC_DATA_DIRECT_8025  3
574 
575 static int lec_is_data_direct(struct atm_vcc *vcc)
576 {
577 	return ((vcc->sap.blli[0].l3.tr9577.snap[4] == LEC_DATA_DIRECT_8023) ||
578 		(vcc->sap.blli[0].l3.tr9577.snap[4] == LEC_DATA_DIRECT_8025));
579 }
580 
581 static void lec_push(struct atm_vcc *vcc, struct sk_buff *skb)
582 {
583 	unsigned long flags;
584 	struct net_device *dev = (struct net_device *)vcc->proto_data;
585 	struct lec_priv *priv = netdev_priv(dev);
586 
587 #if DUMP_PACKETS > 0
588 	printk(KERN_DEBUG "%s: vcc vpi:%d vci:%d\n",
589 	       dev->name, vcc->vpi, vcc->vci);
590 #endif
591 	if (!skb) {
592 		pr_debug("%s: null skb\n", dev->name);
593 		lec_vcc_close(priv, vcc);
594 		return;
595 	}
596 #if DUMP_PACKETS >= 2
597 #define MAX_SKB_DUMP 99
598 #elif DUMP_PACKETS >= 1
599 #define MAX_SKB_DUMP 30
600 #endif
601 #if DUMP_PACKETS > 0
602 	printk(KERN_DEBUG "%s: rcv datalen:%ld lecid:%4.4x\n",
603 	       dev->name, skb->len, priv->lecid);
604 	print_hex_dump(KERN_DEBUG, "", DUMP_OFFSET, 16, 1,
605 		       skb->data, min(MAX_SKB_DUMP, skb->len), true);
606 #endif /* DUMP_PACKETS > 0 */
607 	if (memcmp(skb->data, lec_ctrl_magic, 4) == 0) {
608 				/* Control frame, to daemon */
609 		struct sock *sk = sk_atm(vcc);
610 
611 		pr_debug("%s: To daemon\n", dev->name);
612 		skb_queue_tail(&sk->sk_receive_queue, skb);
613 		sk->sk_data_ready(sk);
614 	} else {		/* Data frame, queue to protocol handlers */
615 		struct lec_arp_table *entry;
616 		unsigned char *src, *dst;
617 
618 		atm_return(vcc, skb->truesize);
619 		if (*(__be16 *) skb->data == htons(priv->lecid) ||
620 		    !priv->lecd || !(dev->flags & IFF_UP)) {
621 			/*
622 			 * Probably looping back, or if lecd is missing,
623 			 * lecd has gone down
624 			 */
625 			pr_debug("Ignoring frame...\n");
626 			dev_kfree_skb(skb);
627 			return;
628 		}
629 		dst = ((struct lecdatahdr_8023 *)skb->data)->h_dest;
630 
631 		/*
632 		 * If this is a Data Direct VCC, and the VCC does not match
633 		 * the LE_ARP cache entry, delete the LE_ARP cache entry.
634 		 */
635 		spin_lock_irqsave(&priv->lec_arp_lock, flags);
636 		if (lec_is_data_direct(vcc)) {
637 			src = ((struct lecdatahdr_8023 *)skb->data)->h_source;
638 			entry = lec_arp_find(priv, src);
639 			if (entry && entry->vcc != vcc) {
640 				lec_arp_remove(priv, entry);
641 				lec_arp_put(entry);
642 			}
643 		}
644 		spin_unlock_irqrestore(&priv->lec_arp_lock, flags);
645 
646 		if (!(dst[0] & 0x01) &&	/* Never filter Multi/Broadcast */
647 		    !priv->is_proxy &&	/* Proxy wants all the packets */
648 		    memcmp(dst, dev->dev_addr, dev->addr_len)) {
649 			dev_kfree_skb(skb);
650 			return;
651 		}
652 		if (!hlist_empty(&priv->lec_arp_empty_ones))
653 			lec_arp_check_empties(priv, vcc, skb);
654 		skb_pull(skb, 2);	/* skip lec_id */
655 		skb->protocol = eth_type_trans(skb, dev);
656 		dev->stats.rx_packets++;
657 		dev->stats.rx_bytes += skb->len;
658 		memset(ATM_SKB(skb), 0, sizeof(struct atm_skb_data));
659 		netif_rx(skb);
660 	}
661 }
662 
663 static void lec_pop(struct atm_vcc *vcc, struct sk_buff *skb)
664 {
665 	struct lec_vcc_priv *vpriv = LEC_VCC_PRIV(vcc);
666 	struct net_device *dev = skb->dev;
667 
668 	if (vpriv == NULL) {
669 		pr_info("vpriv = NULL!?!?!?\n");
670 		return;
671 	}
672 
673 	vpriv->old_pop(vcc, skb);
674 
675 	if (vpriv->xoff && atm_may_send(vcc, 0)) {
676 		vpriv->xoff = 0;
677 		if (netif_running(dev) && netif_queue_stopped(dev))
678 			netif_wake_queue(dev);
679 	}
680 }
681 
682 static int lec_vcc_attach(struct atm_vcc *vcc, void __user *arg)
683 {
684 	struct lec_vcc_priv *vpriv;
685 	int bytes_left;
686 	struct atmlec_ioc ioc_data;
687 
688 	/* Lecd must be up in this case */
689 	bytes_left = copy_from_user(&ioc_data, arg, sizeof(struct atmlec_ioc));
690 	if (bytes_left != 0)
691 		pr_info("copy from user failed for %d bytes\n", bytes_left);
692 	if (ioc_data.dev_num < 0 || ioc_data.dev_num >= MAX_LEC_ITF)
693 		return -EINVAL;
694 	ioc_data.dev_num = array_index_nospec(ioc_data.dev_num, MAX_LEC_ITF);
695 	if (!dev_lec[ioc_data.dev_num])
696 		return -EINVAL;
697 	vpriv = kmalloc(sizeof(struct lec_vcc_priv), GFP_KERNEL);
698 	if (!vpriv)
699 		return -ENOMEM;
700 	vpriv->xoff = 0;
701 	vpriv->old_pop = vcc->pop;
702 	vcc->user_back = vpriv;
703 	vcc->pop = lec_pop;
704 	lec_vcc_added(netdev_priv(dev_lec[ioc_data.dev_num]),
705 		      &ioc_data, vcc, vcc->push);
706 	vcc->proto_data = dev_lec[ioc_data.dev_num];
707 	vcc->push = lec_push;
708 	return 0;
709 }
710 
711 static int lec_mcast_attach(struct atm_vcc *vcc, int arg)
712 {
713 	if (arg < 0 || arg >= MAX_LEC_ITF)
714 		return -EINVAL;
715 	arg = array_index_nospec(arg, MAX_LEC_ITF);
716 	if (!dev_lec[arg])
717 		return -EINVAL;
718 	vcc->proto_data = dev_lec[arg];
719 	return lec_mcast_make(netdev_priv(dev_lec[arg]), vcc);
720 }
721 
722 /* Initialize device. */
723 static int lecd_attach(struct atm_vcc *vcc, int arg)
724 {
725 	int i;
726 	struct lec_priv *priv;
727 
728 	if (arg < 0)
729 		arg = 0;
730 	if (arg >= MAX_LEC_ITF)
731 		return -EINVAL;
732 	i = array_index_nospec(arg, MAX_LEC_ITF);
733 	if (!dev_lec[i]) {
734 		int size;
735 
736 		size = sizeof(struct lec_priv);
737 		dev_lec[i] = alloc_etherdev(size);
738 		if (!dev_lec[i])
739 			return -ENOMEM;
740 		dev_lec[i]->netdev_ops = &lec_netdev_ops;
741 		dev_lec[i]->max_mtu = 18190;
742 		snprintf(dev_lec[i]->name, IFNAMSIZ, "lec%d", i);
743 		if (register_netdev(dev_lec[i])) {
744 			free_netdev(dev_lec[i]);
745 			return -EINVAL;
746 		}
747 
748 		priv = netdev_priv(dev_lec[i]);
749 	} else {
750 		priv = netdev_priv(dev_lec[i]);
751 		if (priv->lecd)
752 			return -EADDRINUSE;
753 	}
754 	lec_arp_init(priv);
755 	priv->itfnum = i;	/* LANE2 addition */
756 	priv->lecd = vcc;
757 	vcc->dev = &lecatm_dev;
758 	vcc_insert_socket(sk_atm(vcc));
759 
760 	vcc->proto_data = dev_lec[i];
761 	set_bit(ATM_VF_META, &vcc->flags);
762 	set_bit(ATM_VF_READY, &vcc->flags);
763 
764 	/* Set default values to these variables */
765 	priv->maximum_unknown_frame_count = 1;
766 	priv->max_unknown_frame_time = (1 * HZ);
767 	priv->vcc_timeout_period = (1200 * HZ);
768 	priv->max_retry_count = 1;
769 	priv->aging_time = (300 * HZ);
770 	priv->forward_delay_time = (15 * HZ);
771 	priv->topology_change = 0;
772 	priv->arp_response_time = (1 * HZ);
773 	priv->flush_timeout = (4 * HZ);
774 	priv->path_switching_delay = (6 * HZ);
775 
776 	if (dev_lec[i]->flags & IFF_UP)
777 		netif_start_queue(dev_lec[i]);
778 	__module_get(THIS_MODULE);
779 	return i;
780 }
781 
782 #ifdef CONFIG_PROC_FS
783 static const char *lec_arp_get_status_string(unsigned char status)
784 {
785 	static const char *const lec_arp_status_string[] = {
786 		"ESI_UNKNOWN       ",
787 		"ESI_ARP_PENDING   ",
788 		"ESI_VC_PENDING    ",
789 		"<Undefined>       ",
790 		"ESI_FLUSH_PENDING ",
791 		"ESI_FORWARD_DIRECT"
792 	};
793 
794 	if (status > ESI_FORWARD_DIRECT)
795 		status = 3;	/* ESI_UNDEFINED */
796 	return lec_arp_status_string[status];
797 }
798 
799 static void lec_info(struct seq_file *seq, struct lec_arp_table *entry)
800 {
801 	seq_printf(seq, "%pM ", entry->mac_addr);
802 	seq_printf(seq, "%*phN ", ATM_ESA_LEN, entry->atm_addr);
803 	seq_printf(seq, "%s %4.4x", lec_arp_get_status_string(entry->status),
804 		   entry->flags & 0xffff);
805 	if (entry->vcc)
806 		seq_printf(seq, "%3d %3d ", entry->vcc->vpi, entry->vcc->vci);
807 	else
808 		seq_printf(seq, "        ");
809 	if (entry->recv_vcc) {
810 		seq_printf(seq, "     %3d %3d", entry->recv_vcc->vpi,
811 			   entry->recv_vcc->vci);
812 	}
813 	seq_putc(seq, '\n');
814 }
815 
816 struct lec_state {
817 	unsigned long flags;
818 	struct lec_priv *locked;
819 	struct hlist_node *node;
820 	struct net_device *dev;
821 	int itf;
822 	int arp_table;
823 	int misc_table;
824 };
825 
826 static void *lec_tbl_walk(struct lec_state *state, struct hlist_head *tbl,
827 			  loff_t *l)
828 {
829 	struct hlist_node *e = state->node;
830 
831 	if (!e)
832 		e = tbl->first;
833 	if (e == SEQ_START_TOKEN) {
834 		e = tbl->first;
835 		--*l;
836 	}
837 
838 	for (; e; e = e->next) {
839 		if (--*l < 0)
840 			break;
841 	}
842 	state->node = e;
843 
844 	return (*l < 0) ? state : NULL;
845 }
846 
847 static void *lec_arp_walk(struct lec_state *state, loff_t *l,
848 			  struct lec_priv *priv)
849 {
850 	void *v = NULL;
851 	int p;
852 
853 	for (p = state->arp_table; p < LEC_ARP_TABLE_SIZE; p++) {
854 		v = lec_tbl_walk(state, &priv->lec_arp_tables[p], l);
855 		if (v)
856 			break;
857 	}
858 	state->arp_table = p;
859 	return v;
860 }
861 
862 static void *lec_misc_walk(struct lec_state *state, loff_t *l,
863 			   struct lec_priv *priv)
864 {
865 	struct hlist_head *lec_misc_tables[] = {
866 		&priv->lec_arp_empty_ones,
867 		&priv->lec_no_forward,
868 		&priv->mcast_fwds
869 	};
870 	void *v = NULL;
871 	int q;
872 
873 	for (q = state->misc_table; q < ARRAY_SIZE(lec_misc_tables); q++) {
874 		v = lec_tbl_walk(state, lec_misc_tables[q], l);
875 		if (v)
876 			break;
877 	}
878 	state->misc_table = q;
879 	return v;
880 }
881 
882 static void *lec_priv_walk(struct lec_state *state, loff_t *l,
883 			   struct lec_priv *priv)
884 {
885 	if (!state->locked) {
886 		state->locked = priv;
887 		spin_lock_irqsave(&priv->lec_arp_lock, state->flags);
888 	}
889 	if (!lec_arp_walk(state, l, priv) && !lec_misc_walk(state, l, priv)) {
890 		spin_unlock_irqrestore(&priv->lec_arp_lock, state->flags);
891 		state->locked = NULL;
892 		/* Partial state reset for the next time we get called */
893 		state->arp_table = state->misc_table = 0;
894 	}
895 	return state->locked;
896 }
897 
898 static void *lec_itf_walk(struct lec_state *state, loff_t *l)
899 {
900 	struct net_device *dev;
901 	void *v;
902 
903 	dev = state->dev ? state->dev : dev_lec[state->itf];
904 	v = (dev && netdev_priv(dev)) ?
905 		lec_priv_walk(state, l, netdev_priv(dev)) : NULL;
906 	if (!v && dev) {
907 		dev_put(dev);
908 		/* Partial state reset for the next time we get called */
909 		dev = NULL;
910 	}
911 	state->dev = dev;
912 	return v;
913 }
914 
915 static void *lec_get_idx(struct lec_state *state, loff_t l)
916 {
917 	void *v = NULL;
918 
919 	for (; state->itf < MAX_LEC_ITF; state->itf++) {
920 		v = lec_itf_walk(state, &l);
921 		if (v)
922 			break;
923 	}
924 	return v;
925 }
926 
927 static void *lec_seq_start(struct seq_file *seq, loff_t *pos)
928 {
929 	struct lec_state *state = seq->private;
930 
931 	state->itf = 0;
932 	state->dev = NULL;
933 	state->locked = NULL;
934 	state->arp_table = 0;
935 	state->misc_table = 0;
936 	state->node = SEQ_START_TOKEN;
937 
938 	return *pos ? lec_get_idx(state, *pos) : SEQ_START_TOKEN;
939 }
940 
941 static void lec_seq_stop(struct seq_file *seq, void *v)
942 {
943 	struct lec_state *state = seq->private;
944 
945 	if (state->dev) {
946 		spin_unlock_irqrestore(&state->locked->lec_arp_lock,
947 				       state->flags);
948 		dev_put(state->dev);
949 	}
950 }
951 
952 static void *lec_seq_next(struct seq_file *seq, void *v, loff_t *pos)
953 {
954 	struct lec_state *state = seq->private;
955 
956 	++*pos;
957 	return lec_get_idx(state, 1);
958 }
959 
960 static int lec_seq_show(struct seq_file *seq, void *v)
961 {
962 	static const char lec_banner[] =
963 	    "Itf  MAC          ATM destination"
964 	    "                          Status            Flags "
965 	    "VPI/VCI Recv VPI/VCI\n";
966 
967 	if (v == SEQ_START_TOKEN)
968 		seq_puts(seq, lec_banner);
969 	else {
970 		struct lec_state *state = seq->private;
971 		struct net_device *dev = state->dev;
972 		struct lec_arp_table *entry = hlist_entry(state->node,
973 							  struct lec_arp_table,
974 							  next);
975 
976 		seq_printf(seq, "%s ", dev->name);
977 		lec_info(seq, entry);
978 	}
979 	return 0;
980 }
981 
982 static const struct seq_operations lec_seq_ops = {
983 	.start = lec_seq_start,
984 	.next = lec_seq_next,
985 	.stop = lec_seq_stop,
986 	.show = lec_seq_show,
987 };
988 #endif
989 
990 static int lane_ioctl(struct socket *sock, unsigned int cmd, unsigned long arg)
991 {
992 	struct atm_vcc *vcc = ATM_SD(sock);
993 	int err = 0;
994 
995 	switch (cmd) {
996 	case ATMLEC_CTRL:
997 	case ATMLEC_MCAST:
998 	case ATMLEC_DATA:
999 		if (!capable(CAP_NET_ADMIN))
1000 			return -EPERM;
1001 		break;
1002 	default:
1003 		return -ENOIOCTLCMD;
1004 	}
1005 
1006 	switch (cmd) {
1007 	case ATMLEC_CTRL:
1008 		err = lecd_attach(vcc, (int)arg);
1009 		if (err >= 0)
1010 			sock->state = SS_CONNECTED;
1011 		break;
1012 	case ATMLEC_MCAST:
1013 		err = lec_mcast_attach(vcc, (int)arg);
1014 		break;
1015 	case ATMLEC_DATA:
1016 		err = lec_vcc_attach(vcc, (void __user *)arg);
1017 		break;
1018 	}
1019 
1020 	return err;
1021 }
1022 
1023 static struct atm_ioctl lane_ioctl_ops = {
1024 	.owner = THIS_MODULE,
1025 	.ioctl = lane_ioctl,
1026 };
1027 
1028 static int __init lane_module_init(void)
1029 {
1030 #ifdef CONFIG_PROC_FS
1031 	struct proc_dir_entry *p;
1032 
1033 	p = proc_create_seq_private("lec", 0444, atm_proc_root, &lec_seq_ops,
1034 			sizeof(struct lec_state), NULL);
1035 	if (!p) {
1036 		pr_err("Unable to initialize /proc/net/atm/lec\n");
1037 		return -ENOMEM;
1038 	}
1039 #endif
1040 
1041 	register_atm_ioctl(&lane_ioctl_ops);
1042 	pr_info("lec.c: initialized\n");
1043 	return 0;
1044 }
1045 
1046 static void __exit lane_module_cleanup(void)
1047 {
1048 	int i;
1049 
1050 #ifdef CONFIG_PROC_FS
1051 	remove_proc_entry("lec", atm_proc_root);
1052 #endif
1053 
1054 	deregister_atm_ioctl(&lane_ioctl_ops);
1055 
1056 	for (i = 0; i < MAX_LEC_ITF; i++) {
1057 		if (dev_lec[i] != NULL) {
1058 			unregister_netdev(dev_lec[i]);
1059 			free_netdev(dev_lec[i]);
1060 			dev_lec[i] = NULL;
1061 		}
1062 	}
1063 }
1064 
1065 module_init(lane_module_init);
1066 module_exit(lane_module_cleanup);
1067 
1068 /*
1069  * LANE2: 3.1.3, LE_RESOLVE.request
1070  * Non force allocates memory and fills in *tlvs, fills in *sizeoftlvs.
1071  * If sizeoftlvs == NULL the default TLVs associated with this
1072  * lec will be used.
1073  * If dst_mac == NULL, targetless LE_ARP will be sent
1074  */
1075 static int lane2_resolve(struct net_device *dev, const u8 *dst_mac, int force,
1076 			 u8 **tlvs, u32 *sizeoftlvs)
1077 {
1078 	unsigned long flags;
1079 	struct lec_priv *priv = netdev_priv(dev);
1080 	struct lec_arp_table *table;
1081 	struct sk_buff *skb;
1082 	int retval;
1083 
1084 	if (force == 0) {
1085 		spin_lock_irqsave(&priv->lec_arp_lock, flags);
1086 		table = lec_arp_find(priv, dst_mac);
1087 		spin_unlock_irqrestore(&priv->lec_arp_lock, flags);
1088 		if (table == NULL)
1089 			return -1;
1090 
1091 		*tlvs = kmemdup(table->tlvs, table->sizeoftlvs, GFP_ATOMIC);
1092 		if (*tlvs == NULL)
1093 			return -1;
1094 
1095 		*sizeoftlvs = table->sizeoftlvs;
1096 
1097 		return 0;
1098 	}
1099 
1100 	if (sizeoftlvs == NULL)
1101 		retval = send_to_lecd(priv, l_arp_xmt, dst_mac, NULL, NULL);
1102 
1103 	else {
1104 		skb = alloc_skb(*sizeoftlvs, GFP_ATOMIC);
1105 		if (skb == NULL)
1106 			return -1;
1107 		skb->len = *sizeoftlvs;
1108 		skb_copy_to_linear_data(skb, *tlvs, *sizeoftlvs);
1109 		retval = send_to_lecd(priv, l_arp_xmt, dst_mac, NULL, skb);
1110 	}
1111 	return retval;
1112 }
1113 
1114 /*
1115  * LANE2: 3.1.4, LE_ASSOCIATE.request
1116  * Associate the *tlvs with the *lan_dst address.
1117  * Will overwrite any previous association
1118  * Returns 1 for success, 0 for failure (out of memory)
1119  *
1120  */
1121 static int lane2_associate_req(struct net_device *dev, const u8 *lan_dst,
1122 			       const u8 *tlvs, u32 sizeoftlvs)
1123 {
1124 	int retval;
1125 	struct sk_buff *skb;
1126 	struct lec_priv *priv = netdev_priv(dev);
1127 
1128 	if (!ether_addr_equal(lan_dst, dev->dev_addr))
1129 		return 0;	/* not our mac address */
1130 
1131 	kfree(priv->tlvs);	/* NULL if there was no previous association */
1132 
1133 	priv->tlvs = kmemdup(tlvs, sizeoftlvs, GFP_KERNEL);
1134 	if (priv->tlvs == NULL)
1135 		return 0;
1136 	priv->sizeoftlvs = sizeoftlvs;
1137 
1138 	skb = alloc_skb(sizeoftlvs, GFP_ATOMIC);
1139 	if (skb == NULL)
1140 		return 0;
1141 	skb->len = sizeoftlvs;
1142 	skb_copy_to_linear_data(skb, tlvs, sizeoftlvs);
1143 	retval = send_to_lecd(priv, l_associate_req, NULL, NULL, skb);
1144 	if (retval != 0)
1145 		pr_info("lec.c: lane2_associate_req() failed\n");
1146 	/*
1147 	 * If the previous association has changed we must
1148 	 * somehow notify other LANE entities about the change
1149 	 */
1150 	return 1;
1151 }
1152 
1153 /*
1154  * LANE2: 3.1.5, LE_ASSOCIATE.indication
1155  *
1156  */
1157 static void lane2_associate_ind(struct net_device *dev, const u8 *mac_addr,
1158 				const u8 *tlvs, u32 sizeoftlvs)
1159 {
1160 #if 0
1161 	int i = 0;
1162 #endif
1163 	struct lec_priv *priv = netdev_priv(dev);
1164 #if 0				/*
1165 				 * Why have the TLVs in LE_ARP entries
1166 				 * since we do not use them? When you
1167 				 * uncomment this code, make sure the
1168 				 * TLVs get freed when entry is killed
1169 				 */
1170 	struct lec_arp_table *entry = lec_arp_find(priv, mac_addr);
1171 
1172 	if (entry == NULL)
1173 		return;		/* should not happen */
1174 
1175 	kfree(entry->tlvs);
1176 
1177 	entry->tlvs = kmemdup(tlvs, sizeoftlvs, GFP_KERNEL);
1178 	if (entry->tlvs == NULL)
1179 		return;
1180 	entry->sizeoftlvs = sizeoftlvs;
1181 #endif
1182 #if 0
1183 	pr_info("\n");
1184 	pr_info("dump of tlvs, sizeoftlvs=%d\n", sizeoftlvs);
1185 	while (i < sizeoftlvs)
1186 		pr_cont("%02x ", tlvs[i++]);
1187 
1188 	pr_cont("\n");
1189 #endif
1190 
1191 	/* tell MPOA about the TLVs we saw */
1192 	if (priv->lane2_ops && priv->lane2_ops->associate_indicator) {
1193 		priv->lane2_ops->associate_indicator(dev, mac_addr,
1194 						     tlvs, sizeoftlvs);
1195 	}
1196 }
1197 
1198 /*
1199  * Here starts what used to lec_arpc.c
1200  *
1201  * lec_arpc.c was added here when making
1202  * lane client modular. October 1997
1203  */
1204 
1205 #include <linux/types.h>
1206 #include <linux/timer.h>
1207 #include <linux/param.h>
1208 #include <linux/atomic.h>
1209 #include <linux/inetdevice.h>
1210 #include <net/route.h>
1211 
1212 #if 0
1213 #define pr_debug(format, args...)
1214 /*
1215   #define pr_debug printk
1216 */
1217 #endif
1218 #define DEBUG_ARP_TABLE 0
1219 
1220 #define LEC_ARP_REFRESH_INTERVAL (3*HZ)
1221 
1222 static void lec_arp_check_expire(struct work_struct *work);
1223 static void lec_arp_expire_arp(struct timer_list *t);
1224 
1225 /*
1226  * Arp table funcs
1227  */
1228 
1229 #define HASH(ch) (ch & (LEC_ARP_TABLE_SIZE - 1))
1230 
1231 /*
1232  * Initialization of arp-cache
1233  */
1234 static void lec_arp_init(struct lec_priv *priv)
1235 {
1236 	unsigned short i;
1237 
1238 	for (i = 0; i < LEC_ARP_TABLE_SIZE; i++)
1239 		INIT_HLIST_HEAD(&priv->lec_arp_tables[i]);
1240 	INIT_HLIST_HEAD(&priv->lec_arp_empty_ones);
1241 	INIT_HLIST_HEAD(&priv->lec_no_forward);
1242 	INIT_HLIST_HEAD(&priv->mcast_fwds);
1243 	spin_lock_init(&priv->lec_arp_lock);
1244 	INIT_DELAYED_WORK(&priv->lec_arp_work, lec_arp_check_expire);
1245 	schedule_delayed_work(&priv->lec_arp_work, LEC_ARP_REFRESH_INTERVAL);
1246 }
1247 
1248 static void lec_arp_clear_vccs(struct lec_arp_table *entry)
1249 {
1250 	if (entry->vcc) {
1251 		struct atm_vcc *vcc = entry->vcc;
1252 		struct lec_vcc_priv *vpriv = LEC_VCC_PRIV(vcc);
1253 		struct net_device *dev = (struct net_device *)vcc->proto_data;
1254 
1255 		vcc->pop = vpriv->old_pop;
1256 		if (vpriv->xoff)
1257 			netif_wake_queue(dev);
1258 		kfree(vpriv);
1259 		vcc->user_back = NULL;
1260 		vcc->push = entry->old_push;
1261 		vcc_release_async(vcc, -EPIPE);
1262 		entry->vcc = NULL;
1263 	}
1264 	if (entry->recv_vcc) {
1265 		struct atm_vcc *vcc = entry->recv_vcc;
1266 		struct lec_vcc_priv *vpriv = LEC_VCC_PRIV(vcc);
1267 
1268 		kfree(vpriv);
1269 		vcc->user_back = NULL;
1270 
1271 		entry->recv_vcc->push = entry->old_recv_push;
1272 		vcc_release_async(entry->recv_vcc, -EPIPE);
1273 		entry->recv_vcc = NULL;
1274 	}
1275 }
1276 
1277 /*
1278  * Insert entry to lec_arp_table
1279  * LANE2: Add to the end of the list to satisfy 8.1.13
1280  */
1281 static inline void
1282 lec_arp_add(struct lec_priv *priv, struct lec_arp_table *entry)
1283 {
1284 	struct hlist_head *tmp;
1285 
1286 	tmp = &priv->lec_arp_tables[HASH(entry->mac_addr[ETH_ALEN - 1])];
1287 	hlist_add_head(&entry->next, tmp);
1288 
1289 	pr_debug("Added entry:%pM\n", entry->mac_addr);
1290 }
1291 
1292 /*
1293  * Remove entry from lec_arp_table
1294  */
1295 static int
1296 lec_arp_remove(struct lec_priv *priv, struct lec_arp_table *to_remove)
1297 {
1298 	struct lec_arp_table *entry;
1299 	int i, remove_vcc = 1;
1300 
1301 	if (!to_remove)
1302 		return -1;
1303 
1304 	hlist_del(&to_remove->next);
1305 	del_timer(&to_remove->timer);
1306 
1307 	/*
1308 	 * If this is the only MAC connected to this VCC,
1309 	 * also tear down the VCC
1310 	 */
1311 	if (to_remove->status >= ESI_FLUSH_PENDING) {
1312 		/*
1313 		 * ESI_FLUSH_PENDING, ESI_FORWARD_DIRECT
1314 		 */
1315 		for (i = 0; i < LEC_ARP_TABLE_SIZE; i++) {
1316 			hlist_for_each_entry(entry,
1317 					     &priv->lec_arp_tables[i], next) {
1318 				if (memcmp(to_remove->atm_addr,
1319 					   entry->atm_addr, ATM_ESA_LEN) == 0) {
1320 					remove_vcc = 0;
1321 					break;
1322 				}
1323 			}
1324 		}
1325 		if (remove_vcc)
1326 			lec_arp_clear_vccs(to_remove);
1327 	}
1328 	skb_queue_purge(&to_remove->tx_wait);	/* FIXME: good place for this? */
1329 
1330 	pr_debug("Removed entry:%pM\n", to_remove->mac_addr);
1331 	return 0;
1332 }
1333 
1334 #if DEBUG_ARP_TABLE
1335 static const char *get_status_string(unsigned char st)
1336 {
1337 	switch (st) {
1338 	case ESI_UNKNOWN:
1339 		return "ESI_UNKNOWN";
1340 	case ESI_ARP_PENDING:
1341 		return "ESI_ARP_PENDING";
1342 	case ESI_VC_PENDING:
1343 		return "ESI_VC_PENDING";
1344 	case ESI_FLUSH_PENDING:
1345 		return "ESI_FLUSH_PENDING";
1346 	case ESI_FORWARD_DIRECT:
1347 		return "ESI_FORWARD_DIRECT";
1348 	}
1349 	return "<UNKNOWN>";
1350 }
1351 
1352 static void dump_arp_table(struct lec_priv *priv)
1353 {
1354 	struct lec_arp_table *rulla;
1355 	char buf[256];
1356 	int i, offset;
1357 
1358 	pr_info("Dump %p:\n", priv);
1359 	for (i = 0; i < LEC_ARP_TABLE_SIZE; i++) {
1360 		hlist_for_each_entry(rulla,
1361 				     &priv->lec_arp_tables[i], next) {
1362 			offset = 0;
1363 			offset += sprintf(buf, "%d: %p\n", i, rulla);
1364 			offset += sprintf(buf + offset, "Mac: %pM ",
1365 					  rulla->mac_addr);
1366 			offset += sprintf(buf + offset, "Atm: %*ph ", ATM_ESA_LEN,
1367 					  rulla->atm_addr);
1368 			offset += sprintf(buf + offset,
1369 					  "Vcc vpi:%d vci:%d, Recv_vcc vpi:%d vci:%d Last_used:%lx, Timestamp:%lx, No_tries:%d ",
1370 					  rulla->vcc ? rulla->vcc->vpi : 0,
1371 					  rulla->vcc ? rulla->vcc->vci : 0,
1372 					  rulla->recv_vcc ? rulla->recv_vcc->
1373 					  vpi : 0,
1374 					  rulla->recv_vcc ? rulla->recv_vcc->
1375 					  vci : 0, rulla->last_used,
1376 					  rulla->timestamp, rulla->no_tries);
1377 			offset +=
1378 			    sprintf(buf + offset,
1379 				    "Flags:%x, Packets_flooded:%x, Status: %s ",
1380 				    rulla->flags, rulla->packets_flooded,
1381 				    get_status_string(rulla->status));
1382 			pr_info("%s\n", buf);
1383 		}
1384 	}
1385 
1386 	if (!hlist_empty(&priv->lec_no_forward))
1387 		pr_info("No forward\n");
1388 	hlist_for_each_entry(rulla, &priv->lec_no_forward, next) {
1389 		offset = 0;
1390 		offset += sprintf(buf + offset, "Mac: %pM ", rulla->mac_addr);
1391 		offset += sprintf(buf + offset, "Atm: %*ph ", ATM_ESA_LEN,
1392 				  rulla->atm_addr);
1393 		offset += sprintf(buf + offset,
1394 				  "Vcc vpi:%d vci:%d, Recv_vcc vpi:%d vci:%d Last_used:%lx, Timestamp:%lx, No_tries:%d ",
1395 				  rulla->vcc ? rulla->vcc->vpi : 0,
1396 				  rulla->vcc ? rulla->vcc->vci : 0,
1397 				  rulla->recv_vcc ? rulla->recv_vcc->vpi : 0,
1398 				  rulla->recv_vcc ? rulla->recv_vcc->vci : 0,
1399 				  rulla->last_used,
1400 				  rulla->timestamp, rulla->no_tries);
1401 		offset += sprintf(buf + offset,
1402 				  "Flags:%x, Packets_flooded:%x, Status: %s ",
1403 				  rulla->flags, rulla->packets_flooded,
1404 				  get_status_string(rulla->status));
1405 		pr_info("%s\n", buf);
1406 	}
1407 
1408 	if (!hlist_empty(&priv->lec_arp_empty_ones))
1409 		pr_info("Empty ones\n");
1410 	hlist_for_each_entry(rulla, &priv->lec_arp_empty_ones, next) {
1411 		offset = 0;
1412 		offset += sprintf(buf + offset, "Mac: %pM ", rulla->mac_addr);
1413 		offset += sprintf(buf + offset, "Atm: %*ph ", ATM_ESA_LEN,
1414 				  rulla->atm_addr);
1415 		offset += sprintf(buf + offset,
1416 				  "Vcc vpi:%d vci:%d, Recv_vcc vpi:%d vci:%d Last_used:%lx, Timestamp:%lx, No_tries:%d ",
1417 				  rulla->vcc ? rulla->vcc->vpi : 0,
1418 				  rulla->vcc ? rulla->vcc->vci : 0,
1419 				  rulla->recv_vcc ? rulla->recv_vcc->vpi : 0,
1420 				  rulla->recv_vcc ? rulla->recv_vcc->vci : 0,
1421 				  rulla->last_used,
1422 				  rulla->timestamp, rulla->no_tries);
1423 		offset += sprintf(buf + offset,
1424 				  "Flags:%x, Packets_flooded:%x, Status: %s ",
1425 				  rulla->flags, rulla->packets_flooded,
1426 				  get_status_string(rulla->status));
1427 		pr_info("%s", buf);
1428 	}
1429 
1430 	if (!hlist_empty(&priv->mcast_fwds))
1431 		pr_info("Multicast Forward VCCs\n");
1432 	hlist_for_each_entry(rulla, &priv->mcast_fwds, next) {
1433 		offset = 0;
1434 		offset += sprintf(buf + offset, "Mac: %pM ", rulla->mac_addr);
1435 		offset += sprintf(buf + offset, "Atm: %*ph ", ATM_ESA_LEN,
1436 				  rulla->atm_addr);
1437 		offset += sprintf(buf + offset,
1438 				  "Vcc vpi:%d vci:%d, Recv_vcc vpi:%d vci:%d Last_used:%lx, Timestamp:%lx, No_tries:%d ",
1439 				  rulla->vcc ? rulla->vcc->vpi : 0,
1440 				  rulla->vcc ? rulla->vcc->vci : 0,
1441 				  rulla->recv_vcc ? rulla->recv_vcc->vpi : 0,
1442 				  rulla->recv_vcc ? rulla->recv_vcc->vci : 0,
1443 				  rulla->last_used,
1444 				  rulla->timestamp, rulla->no_tries);
1445 		offset += sprintf(buf + offset,
1446 				  "Flags:%x, Packets_flooded:%x, Status: %s ",
1447 				  rulla->flags, rulla->packets_flooded,
1448 				  get_status_string(rulla->status));
1449 		pr_info("%s\n", buf);
1450 	}
1451 
1452 }
1453 #else
1454 #define dump_arp_table(priv) do { } while (0)
1455 #endif
1456 
1457 /*
1458  * Destruction of arp-cache
1459  */
1460 static void lec_arp_destroy(struct lec_priv *priv)
1461 {
1462 	unsigned long flags;
1463 	struct hlist_node *next;
1464 	struct lec_arp_table *entry;
1465 	int i;
1466 
1467 	cancel_delayed_work_sync(&priv->lec_arp_work);
1468 
1469 	/*
1470 	 * Remove all entries
1471 	 */
1472 
1473 	spin_lock_irqsave(&priv->lec_arp_lock, flags);
1474 	for (i = 0; i < LEC_ARP_TABLE_SIZE; i++) {
1475 		hlist_for_each_entry_safe(entry, next,
1476 					  &priv->lec_arp_tables[i], next) {
1477 			lec_arp_remove(priv, entry);
1478 			lec_arp_put(entry);
1479 		}
1480 		INIT_HLIST_HEAD(&priv->lec_arp_tables[i]);
1481 	}
1482 
1483 	hlist_for_each_entry_safe(entry, next,
1484 				  &priv->lec_arp_empty_ones, next) {
1485 		del_timer_sync(&entry->timer);
1486 		lec_arp_clear_vccs(entry);
1487 		hlist_del(&entry->next);
1488 		lec_arp_put(entry);
1489 	}
1490 	INIT_HLIST_HEAD(&priv->lec_arp_empty_ones);
1491 
1492 	hlist_for_each_entry_safe(entry, next,
1493 				  &priv->lec_no_forward, next) {
1494 		del_timer_sync(&entry->timer);
1495 		lec_arp_clear_vccs(entry);
1496 		hlist_del(&entry->next);
1497 		lec_arp_put(entry);
1498 	}
1499 	INIT_HLIST_HEAD(&priv->lec_no_forward);
1500 
1501 	hlist_for_each_entry_safe(entry, next, &priv->mcast_fwds, next) {
1502 		/* No timer, LANEv2 7.1.20 and 2.3.5.3 */
1503 		lec_arp_clear_vccs(entry);
1504 		hlist_del(&entry->next);
1505 		lec_arp_put(entry);
1506 	}
1507 	INIT_HLIST_HEAD(&priv->mcast_fwds);
1508 	priv->mcast_vcc = NULL;
1509 	spin_unlock_irqrestore(&priv->lec_arp_lock, flags);
1510 }
1511 
1512 /*
1513  * Find entry by mac_address
1514  */
1515 static struct lec_arp_table *lec_arp_find(struct lec_priv *priv,
1516 					  const unsigned char *mac_addr)
1517 {
1518 	struct hlist_head *head;
1519 	struct lec_arp_table *entry;
1520 
1521 	pr_debug("%pM\n", mac_addr);
1522 
1523 	head = &priv->lec_arp_tables[HASH(mac_addr[ETH_ALEN - 1])];
1524 	hlist_for_each_entry(entry, head, next) {
1525 		if (ether_addr_equal(mac_addr, entry->mac_addr))
1526 			return entry;
1527 	}
1528 	return NULL;
1529 }
1530 
1531 static struct lec_arp_table *make_entry(struct lec_priv *priv,
1532 					const unsigned char *mac_addr)
1533 {
1534 	struct lec_arp_table *to_return;
1535 
1536 	to_return = kzalloc(sizeof(struct lec_arp_table), GFP_ATOMIC);
1537 	if (!to_return)
1538 		return NULL;
1539 	ether_addr_copy(to_return->mac_addr, mac_addr);
1540 	INIT_HLIST_NODE(&to_return->next);
1541 	timer_setup(&to_return->timer, lec_arp_expire_arp, 0);
1542 	to_return->last_used = jiffies;
1543 	to_return->priv = priv;
1544 	skb_queue_head_init(&to_return->tx_wait);
1545 	refcount_set(&to_return->usage, 1);
1546 	return to_return;
1547 }
1548 
1549 /* Arp sent timer expired */
1550 static void lec_arp_expire_arp(struct timer_list *t)
1551 {
1552 	struct lec_arp_table *entry;
1553 
1554 	entry = from_timer(entry, t, timer);
1555 
1556 	pr_debug("\n");
1557 	if (entry->status == ESI_ARP_PENDING) {
1558 		if (entry->no_tries <= entry->priv->max_retry_count) {
1559 			if (entry->is_rdesc)
1560 				send_to_lecd(entry->priv, l_rdesc_arp_xmt,
1561 					     entry->mac_addr, NULL, NULL);
1562 			else
1563 				send_to_lecd(entry->priv, l_arp_xmt,
1564 					     entry->mac_addr, NULL, NULL);
1565 			entry->no_tries++;
1566 		}
1567 		mod_timer(&entry->timer, jiffies + (1 * HZ));
1568 	}
1569 }
1570 
1571 /* Unknown/unused vcc expire, remove associated entry */
1572 static void lec_arp_expire_vcc(struct timer_list *t)
1573 {
1574 	unsigned long flags;
1575 	struct lec_arp_table *to_remove = from_timer(to_remove, t, timer);
1576 	struct lec_priv *priv = to_remove->priv;
1577 
1578 	del_timer(&to_remove->timer);
1579 
1580 	pr_debug("%p %p: vpi:%d vci:%d\n",
1581 		 to_remove, priv,
1582 		 to_remove->vcc ? to_remove->recv_vcc->vpi : 0,
1583 		 to_remove->vcc ? to_remove->recv_vcc->vci : 0);
1584 
1585 	spin_lock_irqsave(&priv->lec_arp_lock, flags);
1586 	hlist_del(&to_remove->next);
1587 	spin_unlock_irqrestore(&priv->lec_arp_lock, flags);
1588 
1589 	lec_arp_clear_vccs(to_remove);
1590 	lec_arp_put(to_remove);
1591 }
1592 
1593 static bool __lec_arp_check_expire(struct lec_arp_table *entry,
1594 				   unsigned long now,
1595 				   struct lec_priv *priv)
1596 {
1597 	unsigned long time_to_check;
1598 
1599 	if ((entry->flags) & LEC_REMOTE_FLAG && priv->topology_change)
1600 		time_to_check = priv->forward_delay_time;
1601 	else
1602 		time_to_check = priv->aging_time;
1603 
1604 	pr_debug("About to expire: %lx - %lx > %lx\n",
1605 		 now, entry->last_used, time_to_check);
1606 	if (time_after(now, entry->last_used + time_to_check) &&
1607 	    !(entry->flags & LEC_PERMANENT_FLAG) &&
1608 	    !(entry->mac_addr[0] & 0x01)) {	/* LANE2: 7.1.20 */
1609 		/* Remove entry */
1610 		pr_debug("Entry timed out\n");
1611 		lec_arp_remove(priv, entry);
1612 		lec_arp_put(entry);
1613 	} else {
1614 		/* Something else */
1615 		if ((entry->status == ESI_VC_PENDING ||
1616 		     entry->status == ESI_ARP_PENDING) &&
1617 		    time_after_eq(now, entry->timestamp +
1618 				       priv->max_unknown_frame_time)) {
1619 			entry->timestamp = jiffies;
1620 			entry->packets_flooded = 0;
1621 			if (entry->status == ESI_VC_PENDING)
1622 				send_to_lecd(priv, l_svc_setup,
1623 					     entry->mac_addr,
1624 					     entry->atm_addr,
1625 					     NULL);
1626 		}
1627 		if (entry->status == ESI_FLUSH_PENDING &&
1628 		    time_after_eq(now, entry->timestamp +
1629 				       priv->path_switching_delay)) {
1630 			lec_arp_hold(entry);
1631 			return true;
1632 		}
1633 	}
1634 
1635 	return false;
1636 }
1637 /*
1638  * Expire entries.
1639  * 1. Re-set timer
1640  * 2. For each entry, delete entries that have aged past the age limit.
1641  * 3. For each entry, depending on the status of the entry, perform
1642  *    the following maintenance.
1643  *    a. If status is ESI_VC_PENDING or ESI_ARP_PENDING then if the
1644  *       tick_count is above the max_unknown_frame_time, clear
1645  *       the tick_count to zero and clear the packets_flooded counter
1646  *       to zero. This supports the packet rate limit per address
1647  *       while flooding unknowns.
1648  *    b. If the status is ESI_FLUSH_PENDING and the tick_count is greater
1649  *       than or equal to the path_switching_delay, change the status
1650  *       to ESI_FORWARD_DIRECT. This causes the flush period to end
1651  *       regardless of the progress of the flush protocol.
1652  */
1653 static void lec_arp_check_expire(struct work_struct *work)
1654 {
1655 	unsigned long flags;
1656 	struct lec_priv *priv =
1657 		container_of(work, struct lec_priv, lec_arp_work.work);
1658 	struct hlist_node *next;
1659 	struct lec_arp_table *entry;
1660 	unsigned long now;
1661 	int i;
1662 
1663 	pr_debug("%p\n", priv);
1664 	now = jiffies;
1665 restart:
1666 	spin_lock_irqsave(&priv->lec_arp_lock, flags);
1667 	for (i = 0; i < LEC_ARP_TABLE_SIZE; i++) {
1668 		hlist_for_each_entry_safe(entry, next,
1669 					  &priv->lec_arp_tables[i], next) {
1670 			if (__lec_arp_check_expire(entry, now, priv)) {
1671 				struct sk_buff *skb;
1672 				struct atm_vcc *vcc = entry->vcc;
1673 
1674 				spin_unlock_irqrestore(&priv->lec_arp_lock,
1675 						       flags);
1676 				while ((skb = skb_dequeue(&entry->tx_wait)))
1677 					lec_send(vcc, skb);
1678 				entry->last_used = jiffies;
1679 				entry->status = ESI_FORWARD_DIRECT;
1680 				lec_arp_put(entry);
1681 
1682 				goto restart;
1683 			}
1684 		}
1685 	}
1686 	spin_unlock_irqrestore(&priv->lec_arp_lock, flags);
1687 
1688 	schedule_delayed_work(&priv->lec_arp_work, LEC_ARP_REFRESH_INTERVAL);
1689 }
1690 
1691 /*
1692  * Try to find vcc where mac_address is attached.
1693  *
1694  */
1695 static struct atm_vcc *lec_arp_resolve(struct lec_priv *priv,
1696 				       const unsigned char *mac_to_find,
1697 				       int is_rdesc,
1698 				       struct lec_arp_table **ret_entry)
1699 {
1700 	unsigned long flags;
1701 	struct lec_arp_table *entry;
1702 	struct atm_vcc *found;
1703 
1704 	if (mac_to_find[0] & 0x01) {
1705 		switch (priv->lane_version) {
1706 		case 1:
1707 			return priv->mcast_vcc;
1708 		case 2:	/* LANE2 wants arp for multicast addresses */
1709 			if (ether_addr_equal(mac_to_find, bus_mac))
1710 				return priv->mcast_vcc;
1711 			break;
1712 		default:
1713 			break;
1714 		}
1715 	}
1716 
1717 	spin_lock_irqsave(&priv->lec_arp_lock, flags);
1718 	entry = lec_arp_find(priv, mac_to_find);
1719 
1720 	if (entry) {
1721 		if (entry->status == ESI_FORWARD_DIRECT) {
1722 			/* Connection Ok */
1723 			entry->last_used = jiffies;
1724 			lec_arp_hold(entry);
1725 			*ret_entry = entry;
1726 			found = entry->vcc;
1727 			goto out;
1728 		}
1729 		/*
1730 		 * If the LE_ARP cache entry is still pending, reset count to 0
1731 		 * so another LE_ARP request can be made for this frame.
1732 		 */
1733 		if (entry->status == ESI_ARP_PENDING)
1734 			entry->no_tries = 0;
1735 		/*
1736 		 * Data direct VC not yet set up, check to see if the unknown
1737 		 * frame count is greater than the limit. If the limit has
1738 		 * not been reached, allow the caller to send packet to
1739 		 * BUS.
1740 		 */
1741 		if (entry->status != ESI_FLUSH_PENDING &&
1742 		    entry->packets_flooded <
1743 		    priv->maximum_unknown_frame_count) {
1744 			entry->packets_flooded++;
1745 			pr_debug("Flooding..\n");
1746 			found = priv->mcast_vcc;
1747 			goto out;
1748 		}
1749 		/*
1750 		 * We got here because entry->status == ESI_FLUSH_PENDING
1751 		 * or BUS flood limit was reached for an entry which is
1752 		 * in ESI_ARP_PENDING or ESI_VC_PENDING state.
1753 		 */
1754 		lec_arp_hold(entry);
1755 		*ret_entry = entry;
1756 		pr_debug("entry->status %d entry->vcc %p\n", entry->status,
1757 			 entry->vcc);
1758 		found = NULL;
1759 	} else {
1760 		/* No matching entry was found */
1761 		entry = make_entry(priv, mac_to_find);
1762 		pr_debug("Making entry\n");
1763 		if (!entry) {
1764 			found = priv->mcast_vcc;
1765 			goto out;
1766 		}
1767 		lec_arp_add(priv, entry);
1768 		/* We want arp-request(s) to be sent */
1769 		entry->packets_flooded = 1;
1770 		entry->status = ESI_ARP_PENDING;
1771 		entry->no_tries = 1;
1772 		entry->last_used = entry->timestamp = jiffies;
1773 		entry->is_rdesc = is_rdesc;
1774 		if (entry->is_rdesc)
1775 			send_to_lecd(priv, l_rdesc_arp_xmt, mac_to_find, NULL,
1776 				     NULL);
1777 		else
1778 			send_to_lecd(priv, l_arp_xmt, mac_to_find, NULL, NULL);
1779 		entry->timer.expires = jiffies + (1 * HZ);
1780 		entry->timer.function = lec_arp_expire_arp;
1781 		add_timer(&entry->timer);
1782 		found = priv->mcast_vcc;
1783 	}
1784 
1785 out:
1786 	spin_unlock_irqrestore(&priv->lec_arp_lock, flags);
1787 	return found;
1788 }
1789 
1790 static int
1791 lec_addr_delete(struct lec_priv *priv, const unsigned char *atm_addr,
1792 		unsigned long permanent)
1793 {
1794 	unsigned long flags;
1795 	struct hlist_node *next;
1796 	struct lec_arp_table *entry;
1797 	int i;
1798 
1799 	pr_debug("\n");
1800 	spin_lock_irqsave(&priv->lec_arp_lock, flags);
1801 	for (i = 0; i < LEC_ARP_TABLE_SIZE; i++) {
1802 		hlist_for_each_entry_safe(entry, next,
1803 					  &priv->lec_arp_tables[i], next) {
1804 			if (!memcmp(atm_addr, entry->atm_addr, ATM_ESA_LEN) &&
1805 			    (permanent ||
1806 			     !(entry->flags & LEC_PERMANENT_FLAG))) {
1807 				lec_arp_remove(priv, entry);
1808 				lec_arp_put(entry);
1809 			}
1810 			spin_unlock_irqrestore(&priv->lec_arp_lock, flags);
1811 			return 0;
1812 		}
1813 	}
1814 	spin_unlock_irqrestore(&priv->lec_arp_lock, flags);
1815 	return -1;
1816 }
1817 
1818 /*
1819  * Notifies:  Response to arp_request (atm_addr != NULL)
1820  */
1821 static void
1822 lec_arp_update(struct lec_priv *priv, const unsigned char *mac_addr,
1823 	       const unsigned char *atm_addr, unsigned long remoteflag,
1824 	       unsigned int targetless_le_arp)
1825 {
1826 	unsigned long flags;
1827 	struct hlist_node *next;
1828 	struct lec_arp_table *entry, *tmp;
1829 	int i;
1830 
1831 	pr_debug("%smac:%pM\n",
1832 		 (targetless_le_arp) ? "targetless " : "", mac_addr);
1833 
1834 	spin_lock_irqsave(&priv->lec_arp_lock, flags);
1835 	entry = lec_arp_find(priv, mac_addr);
1836 	if (entry == NULL && targetless_le_arp)
1837 		goto out;	/*
1838 				 * LANE2: ignore targetless LE_ARPs for which
1839 				 * we have no entry in the cache. 7.1.30
1840 				 */
1841 	if (!hlist_empty(&priv->lec_arp_empty_ones)) {
1842 		hlist_for_each_entry_safe(entry, next,
1843 					  &priv->lec_arp_empty_ones, next) {
1844 			if (memcmp(entry->atm_addr, atm_addr, ATM_ESA_LEN) == 0) {
1845 				hlist_del(&entry->next);
1846 				del_timer(&entry->timer);
1847 				tmp = lec_arp_find(priv, mac_addr);
1848 				if (tmp) {
1849 					del_timer(&tmp->timer);
1850 					tmp->status = ESI_FORWARD_DIRECT;
1851 					memcpy(tmp->atm_addr, atm_addr, ATM_ESA_LEN);
1852 					tmp->vcc = entry->vcc;
1853 					tmp->old_push = entry->old_push;
1854 					tmp->last_used = jiffies;
1855 					del_timer(&entry->timer);
1856 					lec_arp_put(entry);
1857 					entry = tmp;
1858 				} else {
1859 					entry->status = ESI_FORWARD_DIRECT;
1860 					ether_addr_copy(entry->mac_addr,
1861 							mac_addr);
1862 					entry->last_used = jiffies;
1863 					lec_arp_add(priv, entry);
1864 				}
1865 				if (remoteflag)
1866 					entry->flags |= LEC_REMOTE_FLAG;
1867 				else
1868 					entry->flags &= ~LEC_REMOTE_FLAG;
1869 				pr_debug("After update\n");
1870 				dump_arp_table(priv);
1871 				goto out;
1872 			}
1873 		}
1874 	}
1875 
1876 	entry = lec_arp_find(priv, mac_addr);
1877 	if (!entry) {
1878 		entry = make_entry(priv, mac_addr);
1879 		if (!entry)
1880 			goto out;
1881 		entry->status = ESI_UNKNOWN;
1882 		lec_arp_add(priv, entry);
1883 		/* Temporary, changes before end of function */
1884 	}
1885 	memcpy(entry->atm_addr, atm_addr, ATM_ESA_LEN);
1886 	del_timer(&entry->timer);
1887 	for (i = 0; i < LEC_ARP_TABLE_SIZE; i++) {
1888 		hlist_for_each_entry(tmp,
1889 				     &priv->lec_arp_tables[i], next) {
1890 			if (entry != tmp &&
1891 			    !memcmp(tmp->atm_addr, atm_addr, ATM_ESA_LEN)) {
1892 				/* Vcc to this host exists */
1893 				if (tmp->status > ESI_VC_PENDING) {
1894 					/*
1895 					 * ESI_FLUSH_PENDING,
1896 					 * ESI_FORWARD_DIRECT
1897 					 */
1898 					entry->vcc = tmp->vcc;
1899 					entry->old_push = tmp->old_push;
1900 				}
1901 				entry->status = tmp->status;
1902 				break;
1903 			}
1904 		}
1905 	}
1906 	if (remoteflag)
1907 		entry->flags |= LEC_REMOTE_FLAG;
1908 	else
1909 		entry->flags &= ~LEC_REMOTE_FLAG;
1910 	if (entry->status == ESI_ARP_PENDING || entry->status == ESI_UNKNOWN) {
1911 		entry->status = ESI_VC_PENDING;
1912 		send_to_lecd(priv, l_svc_setup, entry->mac_addr, atm_addr, NULL);
1913 	}
1914 	pr_debug("After update2\n");
1915 	dump_arp_table(priv);
1916 out:
1917 	spin_unlock_irqrestore(&priv->lec_arp_lock, flags);
1918 }
1919 
1920 /*
1921  * Notifies: Vcc setup ready
1922  */
1923 static void
1924 lec_vcc_added(struct lec_priv *priv, const struct atmlec_ioc *ioc_data,
1925 	      struct atm_vcc *vcc,
1926 	      void (*old_push) (struct atm_vcc *vcc, struct sk_buff *skb))
1927 {
1928 	unsigned long flags;
1929 	struct lec_arp_table *entry;
1930 	int i, found_entry = 0;
1931 
1932 	spin_lock_irqsave(&priv->lec_arp_lock, flags);
1933 	/* Vcc for Multicast Forward. No timer, LANEv2 7.1.20 and 2.3.5.3 */
1934 	if (ioc_data->receive == 2) {
1935 		pr_debug("LEC_ARP: Attaching mcast forward\n");
1936 #if 0
1937 		entry = lec_arp_find(priv, bus_mac);
1938 		if (!entry) {
1939 			pr_info("LEC_ARP: Multicast entry not found!\n");
1940 			goto out;
1941 		}
1942 		memcpy(entry->atm_addr, ioc_data->atm_addr, ATM_ESA_LEN);
1943 		entry->recv_vcc = vcc;
1944 		entry->old_recv_push = old_push;
1945 #endif
1946 		entry = make_entry(priv, bus_mac);
1947 		if (entry == NULL)
1948 			goto out;
1949 		del_timer(&entry->timer);
1950 		memcpy(entry->atm_addr, ioc_data->atm_addr, ATM_ESA_LEN);
1951 		entry->recv_vcc = vcc;
1952 		entry->old_recv_push = old_push;
1953 		hlist_add_head(&entry->next, &priv->mcast_fwds);
1954 		goto out;
1955 	} else if (ioc_data->receive == 1) {
1956 		/*
1957 		 * Vcc which we don't want to make default vcc,
1958 		 * attach it anyway.
1959 		 */
1960 		pr_debug("LEC_ARP:Attaching data direct, not default: %*phN\n",
1961 			 ATM_ESA_LEN, ioc_data->atm_addr);
1962 		entry = make_entry(priv, bus_mac);
1963 		if (entry == NULL)
1964 			goto out;
1965 		memcpy(entry->atm_addr, ioc_data->atm_addr, ATM_ESA_LEN);
1966 		eth_zero_addr(entry->mac_addr);
1967 		entry->recv_vcc = vcc;
1968 		entry->old_recv_push = old_push;
1969 		entry->status = ESI_UNKNOWN;
1970 		entry->timer.expires = jiffies + priv->vcc_timeout_period;
1971 		entry->timer.function = lec_arp_expire_vcc;
1972 		hlist_add_head(&entry->next, &priv->lec_no_forward);
1973 		add_timer(&entry->timer);
1974 		dump_arp_table(priv);
1975 		goto out;
1976 	}
1977 	pr_debug("LEC_ARP:Attaching data direct, default: %*phN\n",
1978 		 ATM_ESA_LEN, ioc_data->atm_addr);
1979 	for (i = 0; i < LEC_ARP_TABLE_SIZE; i++) {
1980 		hlist_for_each_entry(entry,
1981 				     &priv->lec_arp_tables[i], next) {
1982 			if (memcmp
1983 			    (ioc_data->atm_addr, entry->atm_addr,
1984 			     ATM_ESA_LEN) == 0) {
1985 				pr_debug("LEC_ARP: Attaching data direct\n");
1986 				pr_debug("Currently -> Vcc: %d, Rvcc:%d\n",
1987 					 entry->vcc ? entry->vcc->vci : 0,
1988 					 entry->recv_vcc ? entry->recv_vcc->
1989 					 vci : 0);
1990 				found_entry = 1;
1991 				del_timer(&entry->timer);
1992 				entry->vcc = vcc;
1993 				entry->old_push = old_push;
1994 				if (entry->status == ESI_VC_PENDING) {
1995 					if (priv->maximum_unknown_frame_count
1996 					    == 0)
1997 						entry->status =
1998 						    ESI_FORWARD_DIRECT;
1999 					else {
2000 						entry->timestamp = jiffies;
2001 						entry->status =
2002 						    ESI_FLUSH_PENDING;
2003 #if 0
2004 						send_to_lecd(priv, l_flush_xmt,
2005 							     NULL,
2006 							     entry->atm_addr,
2007 							     NULL);
2008 #endif
2009 					}
2010 				} else {
2011 					/*
2012 					 * They were forming a connection
2013 					 * to us, and we to them. Our
2014 					 * ATM address is numerically lower
2015 					 * than theirs, so we make connection
2016 					 * we formed into default VCC (8.1.11).
2017 					 * Connection they made gets torn
2018 					 * down. This might confuse some
2019 					 * clients. Can be changed if
2020 					 * someone reports trouble...
2021 					 */
2022 					;
2023 				}
2024 			}
2025 		}
2026 	}
2027 	if (found_entry) {
2028 		pr_debug("After vcc was added\n");
2029 		dump_arp_table(priv);
2030 		goto out;
2031 	}
2032 	/*
2033 	 * Not found, snatch address from first data packet that arrives
2034 	 * from this vcc
2035 	 */
2036 	entry = make_entry(priv, bus_mac);
2037 	if (!entry)
2038 		goto out;
2039 	entry->vcc = vcc;
2040 	entry->old_push = old_push;
2041 	memcpy(entry->atm_addr, ioc_data->atm_addr, ATM_ESA_LEN);
2042 	eth_zero_addr(entry->mac_addr);
2043 	entry->status = ESI_UNKNOWN;
2044 	hlist_add_head(&entry->next, &priv->lec_arp_empty_ones);
2045 	entry->timer.expires = jiffies + priv->vcc_timeout_period;
2046 	entry->timer.function = lec_arp_expire_vcc;
2047 	add_timer(&entry->timer);
2048 	pr_debug("After vcc was added\n");
2049 	dump_arp_table(priv);
2050 out:
2051 	spin_unlock_irqrestore(&priv->lec_arp_lock, flags);
2052 }
2053 
2054 static void lec_flush_complete(struct lec_priv *priv, unsigned long tran_id)
2055 {
2056 	unsigned long flags;
2057 	struct lec_arp_table *entry;
2058 	int i;
2059 
2060 	pr_debug("%lx\n", tran_id);
2061 restart:
2062 	spin_lock_irqsave(&priv->lec_arp_lock, flags);
2063 	for (i = 0; i < LEC_ARP_TABLE_SIZE; i++) {
2064 		hlist_for_each_entry(entry,
2065 				     &priv->lec_arp_tables[i], next) {
2066 			if (entry->flush_tran_id == tran_id &&
2067 			    entry->status == ESI_FLUSH_PENDING) {
2068 				struct sk_buff *skb;
2069 				struct atm_vcc *vcc = entry->vcc;
2070 
2071 				lec_arp_hold(entry);
2072 				spin_unlock_irqrestore(&priv->lec_arp_lock,
2073 						       flags);
2074 				while ((skb = skb_dequeue(&entry->tx_wait)))
2075 					lec_send(vcc, skb);
2076 				entry->last_used = jiffies;
2077 				entry->status = ESI_FORWARD_DIRECT;
2078 				lec_arp_put(entry);
2079 				pr_debug("LEC_ARP: Flushed\n");
2080 				goto restart;
2081 			}
2082 		}
2083 	}
2084 	spin_unlock_irqrestore(&priv->lec_arp_lock, flags);
2085 	dump_arp_table(priv);
2086 }
2087 
2088 static void
2089 lec_set_flush_tran_id(struct lec_priv *priv,
2090 		      const unsigned char *atm_addr, unsigned long tran_id)
2091 {
2092 	unsigned long flags;
2093 	struct lec_arp_table *entry;
2094 	int i;
2095 
2096 	spin_lock_irqsave(&priv->lec_arp_lock, flags);
2097 	for (i = 0; i < LEC_ARP_TABLE_SIZE; i++)
2098 		hlist_for_each_entry(entry,
2099 				     &priv->lec_arp_tables[i], next) {
2100 			if (!memcmp(atm_addr, entry->atm_addr, ATM_ESA_LEN)) {
2101 				entry->flush_tran_id = tran_id;
2102 				pr_debug("Set flush transaction id to %lx for %p\n",
2103 					 tran_id, entry);
2104 			}
2105 		}
2106 	spin_unlock_irqrestore(&priv->lec_arp_lock, flags);
2107 }
2108 
2109 static int lec_mcast_make(struct lec_priv *priv, struct atm_vcc *vcc)
2110 {
2111 	unsigned long flags;
2112 	unsigned char mac_addr[] = {
2113 		0xff, 0xff, 0xff, 0xff, 0xff, 0xff
2114 	};
2115 	struct lec_arp_table *to_add;
2116 	struct lec_vcc_priv *vpriv;
2117 	int err = 0;
2118 
2119 	vpriv = kmalloc(sizeof(struct lec_vcc_priv), GFP_KERNEL);
2120 	if (!vpriv)
2121 		return -ENOMEM;
2122 	vpriv->xoff = 0;
2123 	vpriv->old_pop = vcc->pop;
2124 	vcc->user_back = vpriv;
2125 	vcc->pop = lec_pop;
2126 	spin_lock_irqsave(&priv->lec_arp_lock, flags);
2127 	to_add = make_entry(priv, mac_addr);
2128 	if (!to_add) {
2129 		vcc->pop = vpriv->old_pop;
2130 		kfree(vpriv);
2131 		err = -ENOMEM;
2132 		goto out;
2133 	}
2134 	memcpy(to_add->atm_addr, vcc->remote.sas_addr.prv, ATM_ESA_LEN);
2135 	to_add->status = ESI_FORWARD_DIRECT;
2136 	to_add->flags |= LEC_PERMANENT_FLAG;
2137 	to_add->vcc = vcc;
2138 	to_add->old_push = vcc->push;
2139 	vcc->push = lec_push;
2140 	priv->mcast_vcc = vcc;
2141 	lec_arp_add(priv, to_add);
2142 out:
2143 	spin_unlock_irqrestore(&priv->lec_arp_lock, flags);
2144 	return err;
2145 }
2146 
2147 static void lec_vcc_close(struct lec_priv *priv, struct atm_vcc *vcc)
2148 {
2149 	unsigned long flags;
2150 	struct hlist_node *next;
2151 	struct lec_arp_table *entry;
2152 	int i;
2153 
2154 	pr_debug("LEC_ARP: lec_vcc_close vpi:%d vci:%d\n", vcc->vpi, vcc->vci);
2155 	dump_arp_table(priv);
2156 
2157 	spin_lock_irqsave(&priv->lec_arp_lock, flags);
2158 
2159 	for (i = 0; i < LEC_ARP_TABLE_SIZE; i++) {
2160 		hlist_for_each_entry_safe(entry, next,
2161 					  &priv->lec_arp_tables[i], next) {
2162 			if (vcc == entry->vcc) {
2163 				lec_arp_remove(priv, entry);
2164 				lec_arp_put(entry);
2165 				if (priv->mcast_vcc == vcc)
2166 					priv->mcast_vcc = NULL;
2167 			}
2168 		}
2169 	}
2170 
2171 	hlist_for_each_entry_safe(entry, next,
2172 				  &priv->lec_arp_empty_ones, next) {
2173 		if (entry->vcc == vcc) {
2174 			lec_arp_clear_vccs(entry);
2175 			del_timer(&entry->timer);
2176 			hlist_del(&entry->next);
2177 			lec_arp_put(entry);
2178 		}
2179 	}
2180 
2181 	hlist_for_each_entry_safe(entry, next,
2182 				  &priv->lec_no_forward, next) {
2183 		if (entry->recv_vcc == vcc) {
2184 			lec_arp_clear_vccs(entry);
2185 			del_timer(&entry->timer);
2186 			hlist_del(&entry->next);
2187 			lec_arp_put(entry);
2188 		}
2189 	}
2190 
2191 	hlist_for_each_entry_safe(entry, next, &priv->mcast_fwds, next) {
2192 		if (entry->recv_vcc == vcc) {
2193 			lec_arp_clear_vccs(entry);
2194 			/* No timer, LANEv2 7.1.20 and 2.3.5.3 */
2195 			hlist_del(&entry->next);
2196 			lec_arp_put(entry);
2197 		}
2198 	}
2199 
2200 	spin_unlock_irqrestore(&priv->lec_arp_lock, flags);
2201 	dump_arp_table(priv);
2202 }
2203 
2204 static void
2205 lec_arp_check_empties(struct lec_priv *priv,
2206 		      struct atm_vcc *vcc, struct sk_buff *skb)
2207 {
2208 	unsigned long flags;
2209 	struct hlist_node *next;
2210 	struct lec_arp_table *entry, *tmp;
2211 	struct lecdatahdr_8023 *hdr = (struct lecdatahdr_8023 *)skb->data;
2212 	unsigned char *src = hdr->h_source;
2213 
2214 	spin_lock_irqsave(&priv->lec_arp_lock, flags);
2215 	hlist_for_each_entry_safe(entry, next,
2216 				  &priv->lec_arp_empty_ones, next) {
2217 		if (vcc == entry->vcc) {
2218 			del_timer(&entry->timer);
2219 			ether_addr_copy(entry->mac_addr, src);
2220 			entry->status = ESI_FORWARD_DIRECT;
2221 			entry->last_used = jiffies;
2222 			/* We might have got an entry */
2223 			tmp = lec_arp_find(priv, src);
2224 			if (tmp) {
2225 				lec_arp_remove(priv, tmp);
2226 				lec_arp_put(tmp);
2227 			}
2228 			hlist_del(&entry->next);
2229 			lec_arp_add(priv, entry);
2230 			goto out;
2231 		}
2232 	}
2233 	pr_debug("LEC_ARP: Arp_check_empties: entry not found!\n");
2234 out:
2235 	spin_unlock_irqrestore(&priv->lec_arp_lock, flags);
2236 }
2237 
2238 MODULE_LICENSE("GPL");
2239