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1 /*
2 * This is a module which is used for queueing IPv4 packets and
3 * communicating with userspace via netlink.
4 *
5 * (C) 2000-2002 James Morris <jmorris@intercode.com.au>
6 * (C) 2003-2005 Netfilter Core Team <coreteam@netfilter.org>
7 *
8 * This program is free software; you can redistribute it and/or modify
9 * it under the terms of the GNU General Public License version 2 as
10 * published by the Free Software Foundation.
11 */
12 #include <linux/module.h>
13 #include <linux/skbuff.h>
14 #include <linux/init.h>
15 #include <linux/ip.h>
16 #include <linux/notifier.h>
17 #include <linux/netdevice.h>
18 #include <linux/netfilter.h>
19 #include <linux/netfilter_ipv4/ip_queue.h>
20 #include <linux/netfilter_ipv4/ip_tables.h>
21 #include <linux/netlink.h>
22 #include <linux/spinlock.h>
23 #include <linux/sysctl.h>
24 #include <linux/proc_fs.h>
25 #include <linux/seq_file.h>
26 #include <linux/security.h>
27 #include <linux/net.h>
28 #include <linux/mutex.h>
29 #include <net/net_namespace.h>
30 #include <net/sock.h>
31 #include <net/route.h>
32 #include <net/netfilter/nf_queue.h>
33 #include <net/ip.h>
34
35 #define IPQ_QMAX_DEFAULT 1024
36 #define IPQ_PROC_FS_NAME "ip_queue"
37 #define NET_IPQ_QMAX 2088
38 #define NET_IPQ_QMAX_NAME "ip_queue_maxlen"
39
40 typedef int (*ipq_cmpfn)(struct nf_queue_entry *, unsigned long);
41
42 static unsigned char copy_mode __read_mostly = IPQ_COPY_NONE;
43 static unsigned int queue_maxlen __read_mostly = IPQ_QMAX_DEFAULT;
44 static DEFINE_RWLOCK(queue_lock);
45 static int peer_pid __read_mostly;
46 static unsigned int copy_range __read_mostly;
47 static unsigned int queue_total;
48 static unsigned int queue_dropped = 0;
49 static unsigned int queue_user_dropped = 0;
50 static struct sock *ipqnl __read_mostly;
51 static LIST_HEAD(queue_list);
52 static DEFINE_MUTEX(ipqnl_mutex);
53
54 static inline void
55 __ipq_enqueue_entry(struct nf_queue_entry *entry)
56 {
57 list_add_tail(&entry->list, &queue_list);
58 queue_total++;
59 }
60
61 static inline int
62 __ipq_set_mode(unsigned char mode, unsigned int range)
63 {
64 int status = 0;
65
66 switch(mode) {
67 case IPQ_COPY_NONE:
68 case IPQ_COPY_META:
69 copy_mode = mode;
70 copy_range = 0;
71 break;
72
73 case IPQ_COPY_PACKET:
74 copy_mode = mode;
75 copy_range = range;
76 if (copy_range > 0xFFFF)
77 copy_range = 0xFFFF;
78 break;
79
80 default:
81 status = -EINVAL;
82
83 }
84 return status;
85 }
86
87 static void __ipq_flush(ipq_cmpfn cmpfn, unsigned long data);
88
89 static inline void
90 __ipq_reset(void)
91 {
92 peer_pid = 0;
93 net_disable_timestamp();
94 __ipq_set_mode(IPQ_COPY_NONE, 0);
95 __ipq_flush(NULL, 0);
96 }
97
98 static struct nf_queue_entry *
99 ipq_find_dequeue_entry(unsigned long id)
100 {
101 struct nf_queue_entry *entry = NULL, *i;
102
103 write_lock_bh(&queue_lock);
104
105 list_for_each_entry(i, &queue_list, list) {
106 if ((unsigned long)i == id) {
107 entry = i;
108 break;
109 }
110 }
111
112 if (entry) {
113 list_del(&entry->list);
114 queue_total--;
115 }
116
117 write_unlock_bh(&queue_lock);
118 return entry;
119 }
120
121 static void
122 __ipq_flush(ipq_cmpfn cmpfn, unsigned long data)
123 {
124 struct nf_queue_entry *entry, *next;
125
126 list_for_each_entry_safe(entry, next, &queue_list, list) {
127 if (!cmpfn || cmpfn(entry, data)) {
128 list_del(&entry->list);
129 queue_total--;
130 nf_reinject(entry, NF_DROP);
131 }
132 }
133 }
134
135 static void
136 ipq_flush(ipq_cmpfn cmpfn, unsigned long data)
137 {
138 write_lock_bh(&queue_lock);
139 __ipq_flush(cmpfn, data);
140 write_unlock_bh(&queue_lock);
141 }
142
143 static struct sk_buff *
144 ipq_build_packet_message(struct nf_queue_entry *entry, int *errp)
145 {
146 sk_buff_data_t old_tail;
147 size_t size = 0;
148 size_t data_len = 0;
149 struct sk_buff *skb;
150 struct ipq_packet_msg *pmsg;
151 struct nlmsghdr *nlh;
152 struct timeval tv;
153
154 read_lock_bh(&queue_lock);
155
156 switch (copy_mode) {
157 case IPQ_COPY_META:
158 case IPQ_COPY_NONE:
159 size = NLMSG_SPACE(sizeof(*pmsg));
160 break;
161
162 case IPQ_COPY_PACKET:
163 if ((entry->skb->ip_summed == CHECKSUM_PARTIAL ||
164 entry->skb->ip_summed == CHECKSUM_COMPLETE) &&
165 (*errp = skb_checksum_help(entry->skb))) {
166 read_unlock_bh(&queue_lock);
167 return NULL;
168 }
169 if (copy_range == 0 || copy_range > entry->skb->len)
170 data_len = entry->skb->len;
171 else
172 data_len = copy_range;
173
174 size = NLMSG_SPACE(sizeof(*pmsg) + data_len);
175 break;
176
177 default:
178 *errp = -EINVAL;
179 read_unlock_bh(&queue_lock);
180 return NULL;
181 }
182
183 read_unlock_bh(&queue_lock);
184
185 skb = alloc_skb(size, GFP_ATOMIC);
186 if (!skb)
187 goto nlmsg_failure;
188
189 old_tail = skb->tail;
190 nlh = NLMSG_PUT(skb, 0, 0, IPQM_PACKET, size - sizeof(*nlh));
191 pmsg = NLMSG_DATA(nlh);
192 memset(pmsg, 0, sizeof(*pmsg));
193
194 pmsg->packet_id = (unsigned long )entry;
195 pmsg->data_len = data_len;
196 tv = ktime_to_timeval(entry->skb->tstamp);
197 pmsg->timestamp_sec = tv.tv_sec;
198 pmsg->timestamp_usec = tv.tv_usec;
199 pmsg->mark = entry->skb->mark;
200 pmsg->hook = entry->hook;
201 pmsg->hw_protocol = entry->skb->protocol;
202
203 if (entry->indev)
204 strcpy(pmsg->indev_name, entry->indev->name);
205 else
206 pmsg->indev_name[0] = '\0';
207
208 if (entry->outdev)
209 strcpy(pmsg->outdev_name, entry->outdev->name);
210 else
211 pmsg->outdev_name[0] = '\0';
212
213 if (entry->indev && entry->skb->dev) {
214 pmsg->hw_type = entry->skb->dev->type;
215 pmsg->hw_addrlen = dev_parse_header(entry->skb,
216 pmsg->hw_addr);
217 }
218
219 if (data_len)
220 if (skb_copy_bits(entry->skb, 0, pmsg->payload, data_len))
221 BUG();
222
223 nlh->nlmsg_len = skb->tail - old_tail;
224 return skb;
225
226 nlmsg_failure:
227 *errp = -EINVAL;
228 printk(KERN_ERR "ip_queue: error creating packet message\n");
229 return NULL;
230 }
231
232 static int
233 ipq_enqueue_packet(struct nf_queue_entry *entry, unsigned int queuenum)
234 {
235 int status = -EINVAL;
236 struct sk_buff *nskb;
237
238 if (copy_mode == IPQ_COPY_NONE)
239 return -EAGAIN;
240
241 nskb = ipq_build_packet_message(entry, &status);
242 if (nskb == NULL)
243 return status;
244
245 write_lock_bh(&queue_lock);
246
247 if (!peer_pid)
248 goto err_out_free_nskb;
249
250 if (queue_total >= queue_maxlen) {
251 queue_dropped++;
252 status = -ENOSPC;
253 if (net_ratelimit())
254 printk (KERN_WARNING "ip_queue: full at %d entries, "
255 "dropping packets(s). Dropped: %d\n", queue_total,
256 queue_dropped);
257 goto err_out_free_nskb;
258 }
259
260 /* netlink_unicast will either free the nskb or attach it to a socket */
261 status = netlink_unicast(ipqnl, nskb, peer_pid, MSG_DONTWAIT);
262 if (status < 0) {
263 queue_user_dropped++;
264 goto err_out_unlock;
265 }
266
267 __ipq_enqueue_entry(entry);
268
269 write_unlock_bh(&queue_lock);
270 return status;
271
272 err_out_free_nskb:
273 kfree_skb(nskb);
274
275 err_out_unlock:
276 write_unlock_bh(&queue_lock);
277 return status;
278 }
279
280 static int
281 ipq_mangle_ipv4(ipq_verdict_msg_t *v, struct nf_queue_entry *e)
282 {
283 int diff;
284 struct iphdr *user_iph = (struct iphdr *)v->payload;
285 struct sk_buff *nskb;
286
287 if (v->data_len < sizeof(*user_iph))
288 return 0;
289 diff = v->data_len - e->skb->len;
290 if (diff < 0) {
291 if (pskb_trim(e->skb, v->data_len))
292 return -ENOMEM;
293 } else if (diff > 0) {
294 if (v->data_len > 0xFFFF)
295 return -EINVAL;
296 if (diff > skb_tailroom(e->skb)) {
297 nskb = skb_copy_expand(e->skb, skb_headroom(e->skb),
298 diff, GFP_ATOMIC);
299 if (!nskb) {
300 printk(KERN_WARNING "ip_queue: error "
301 "in mangle, dropping packet\n");
302 return -ENOMEM;
303 }
304 kfree_skb(e->skb);
305 e->skb = nskb;
306 }
307 skb_put(e->skb, diff);
308 }
309 if (!skb_make_writable(e->skb, v->data_len))
310 return -ENOMEM;
311 skb_copy_to_linear_data(e->skb, v->payload, v->data_len);
312 e->skb->ip_summed = CHECKSUM_NONE;
313
314 return 0;
315 }
316
317 static int
318 ipq_set_verdict(struct ipq_verdict_msg *vmsg, unsigned int len)
319 {
320 struct nf_queue_entry *entry;
321
322 if (vmsg->value > NF_MAX_VERDICT)
323 return -EINVAL;
324
325 entry = ipq_find_dequeue_entry(vmsg->id);
326 if (entry == NULL)
327 return -ENOENT;
328 else {
329 int verdict = vmsg->value;
330
331 if (vmsg->data_len && vmsg->data_len == len)
332 if (ipq_mangle_ipv4(vmsg, entry) < 0)
333 verdict = NF_DROP;
334
335 nf_reinject(entry, verdict);
336 return 0;
337 }
338 }
339
340 static int
341 ipq_set_mode(unsigned char mode, unsigned int range)
342 {
343 int status;
344
345 write_lock_bh(&queue_lock);
346 status = __ipq_set_mode(mode, range);
347 write_unlock_bh(&queue_lock);
348 return status;
349 }
350
351 static int
352 ipq_receive_peer(struct ipq_peer_msg *pmsg,
353 unsigned char type, unsigned int len)
354 {
355 int status = 0;
356
357 if (len < sizeof(*pmsg))
358 return -EINVAL;
359
360 switch (type) {
361 case IPQM_MODE:
362 status = ipq_set_mode(pmsg->msg.mode.value,
363 pmsg->msg.mode.range);
364 break;
365
366 case IPQM_VERDICT:
367 if (pmsg->msg.verdict.value > NF_MAX_VERDICT)
368 status = -EINVAL;
369 else
370 status = ipq_set_verdict(&pmsg->msg.verdict,
371 len - sizeof(*pmsg));
372 break;
373 default:
374 status = -EINVAL;
375 }
376 return status;
377 }
378
379 static int
380 dev_cmp(struct nf_queue_entry *entry, unsigned long ifindex)
381 {
382 if (entry->indev)
383 if (entry->indev->ifindex == ifindex)
384 return 1;
385 if (entry->outdev)
386 if (entry->outdev->ifindex == ifindex)
387 return 1;
388 #ifdef CONFIG_BRIDGE_NETFILTER
389 if (entry->skb->nf_bridge) {
390 if (entry->skb->nf_bridge->physindev &&
391 entry->skb->nf_bridge->physindev->ifindex == ifindex)
392 return 1;
393 if (entry->skb->nf_bridge->physoutdev &&
394 entry->skb->nf_bridge->physoutdev->ifindex == ifindex)
395 return 1;
396 }
397 #endif
398 return 0;
399 }
400
401 static void
402 ipq_dev_drop(int ifindex)
403 {
404 ipq_flush(dev_cmp, ifindex);
405 }
406
407 #define RCV_SKB_FAIL(err) do { netlink_ack(skb, nlh, (err)); return; } while (0)
408
409 static inline void
410 __ipq_rcv_skb(struct sk_buff *skb)
411 {
412 int status, type, pid, flags, nlmsglen, skblen;
413 struct nlmsghdr *nlh;
414
415 skblen = skb->len;
416 if (skblen < sizeof(*nlh))
417 return;
418
419 nlh = nlmsg_hdr(skb);
420 nlmsglen = nlh->nlmsg_len;
421 if (nlmsglen < sizeof(*nlh) || skblen < nlmsglen)
422 return;
423
424 pid = nlh->nlmsg_pid;
425 flags = nlh->nlmsg_flags;
426
427 if(pid <= 0 || !(flags & NLM_F_REQUEST) || flags & NLM_F_MULTI)
428 RCV_SKB_FAIL(-EINVAL);
429
430 if (flags & MSG_TRUNC)
431 RCV_SKB_FAIL(-ECOMM);
432
433 type = nlh->nlmsg_type;
434 if (type < NLMSG_NOOP || type >= IPQM_MAX)
435 RCV_SKB_FAIL(-EINVAL);
436
437 if (type <= IPQM_BASE)
438 return;
439
440 if (security_netlink_recv(skb, CAP_NET_ADMIN))
441 RCV_SKB_FAIL(-EPERM);
442
443 write_lock_bh(&queue_lock);
444
445 if (peer_pid) {
446 if (peer_pid != pid) {
447 write_unlock_bh(&queue_lock);
448 RCV_SKB_FAIL(-EBUSY);
449 }
450 } else {
451 net_enable_timestamp();
452 peer_pid = pid;
453 }
454
455 write_unlock_bh(&queue_lock);
456
457 status = ipq_receive_peer(NLMSG_DATA(nlh), type,
458 nlmsglen - NLMSG_LENGTH(0));
459 if (status < 0)
460 RCV_SKB_FAIL(status);
461
462 if (flags & NLM_F_ACK)
463 netlink_ack(skb, nlh, 0);
464 return;
465 }
466
467 static void
468 ipq_rcv_skb(struct sk_buff *skb)
469 {
470 mutex_lock(&ipqnl_mutex);
471 __ipq_rcv_skb(skb);
472 mutex_unlock(&ipqnl_mutex);
473 }
474
475 static int
476 ipq_rcv_dev_event(struct notifier_block *this,
477 unsigned long event, void *ptr)
478 {
479 struct net_device *dev = ptr;
480
481 if (!net_eq(dev_net(dev), &init_net))
482 return NOTIFY_DONE;
483
484 /* Drop any packets associated with the downed device */
485 if (event == NETDEV_DOWN)
486 ipq_dev_drop(dev->ifindex);
487 return NOTIFY_DONE;
488 }
489
490 static struct notifier_block ipq_dev_notifier = {
491 .notifier_call = ipq_rcv_dev_event,
492 };
493
494 static int
495 ipq_rcv_nl_event(struct notifier_block *this,
496 unsigned long event, void *ptr)
497 {
498 struct netlink_notify *n = ptr;
499
500 if (event == NETLINK_URELEASE && n->protocol == NETLINK_FIREWALL) {
501 write_lock_bh(&queue_lock);
502 if ((net_eq(n->net, &init_net)) && (n->pid == peer_pid))
503 __ipq_reset();
504 write_unlock_bh(&queue_lock);
505 }
506 return NOTIFY_DONE;
507 }
508
509 static struct notifier_block ipq_nl_notifier = {
510 .notifier_call = ipq_rcv_nl_event,
511 };
512
513 #ifdef CONFIG_SYSCTL
514 static struct ctl_table_header *ipq_sysctl_header;
515
516 static ctl_table ipq_table[] = {
517 {
518 .procname = NET_IPQ_QMAX_NAME,
519 .data = &queue_maxlen,
520 .maxlen = sizeof(queue_maxlen),
521 .mode = 0644,
522 .proc_handler = proc_dointvec
523 },
524 { }
525 };
526 #endif
527
528 #ifdef CONFIG_PROC_FS
529 static int ip_queue_show(struct seq_file *m, void *v)
530 {
531 read_lock_bh(&queue_lock);
532
533 seq_printf(m,
534 "Peer PID : %d\n"
535 "Copy mode : %hu\n"
536 "Copy range : %u\n"
537 "Queue length : %u\n"
538 "Queue max. length : %u\n"
539 "Queue dropped : %u\n"
540 "Netlink dropped : %u\n",
541 peer_pid,
542 copy_mode,
543 copy_range,
544 queue_total,
545 queue_maxlen,
546 queue_dropped,
547 queue_user_dropped);
548
549 read_unlock_bh(&queue_lock);
550 return 0;
551 }
552
553 static int ip_queue_open(struct inode *inode, struct file *file)
554 {
555 return single_open(file, ip_queue_show, NULL);
556 }
557
558 static const struct file_operations ip_queue_proc_fops = {
559 .open = ip_queue_open,
560 .read = seq_read,
561 .llseek = seq_lseek,
562 .release = single_release,
563 .owner = THIS_MODULE,
564 };
565 #endif
566
567 static const struct nf_queue_handler nfqh = {
568 .name = "ip_queue",
569 .outfn = &ipq_enqueue_packet,
570 };
571
572 static int __init ip_queue_init(void)
573 {
574 int status = -ENOMEM;
575 struct proc_dir_entry *proc __maybe_unused;
576
577 netlink_register_notifier(&ipq_nl_notifier);
578 ipqnl = netlink_kernel_create(&init_net, NETLINK_FIREWALL, 0,
579 ipq_rcv_skb, NULL, THIS_MODULE);
580 if (ipqnl == NULL) {
581 printk(KERN_ERR "ip_queue: failed to create netlink socket\n");
582 goto cleanup_netlink_notifier;
583 }
584
585 #ifdef CONFIG_PROC_FS
586 proc = proc_create(IPQ_PROC_FS_NAME, 0, init_net.proc_net,
587 &ip_queue_proc_fops);
588 if (!proc) {
589 printk(KERN_ERR "ip_queue: failed to create proc entry\n");
590 goto cleanup_ipqnl;
591 }
592 #endif
593 register_netdevice_notifier(&ipq_dev_notifier);
594 #ifdef CONFIG_SYSCTL
595 ipq_sysctl_header = register_sysctl_paths(net_ipv4_ctl_path, ipq_table);
596 #endif
597 status = nf_register_queue_handler(NFPROTO_IPV4, &nfqh);
598 if (status < 0) {
599 printk(KERN_ERR "ip_queue: failed to register queue handler\n");
600 goto cleanup_sysctl;
601 }
602 return status;
603
604 cleanup_sysctl:
605 #ifdef CONFIG_SYSCTL
606 unregister_sysctl_table(ipq_sysctl_header);
607 #endif
608 unregister_netdevice_notifier(&ipq_dev_notifier);
609 proc_net_remove(&init_net, IPQ_PROC_FS_NAME);
610 cleanup_ipqnl: __maybe_unused
611 netlink_kernel_release(ipqnl);
612 mutex_lock(&ipqnl_mutex);
613 mutex_unlock(&ipqnl_mutex);
614
615 cleanup_netlink_notifier:
616 netlink_unregister_notifier(&ipq_nl_notifier);
617 return status;
618 }
619
620 static void __exit ip_queue_fini(void)
621 {
622 nf_unregister_queue_handlers(&nfqh);
623
624 ipq_flush(NULL, 0);
625
626 #ifdef CONFIG_SYSCTL
627 unregister_sysctl_table(ipq_sysctl_header);
628 #endif
629 unregister_netdevice_notifier(&ipq_dev_notifier);
630 proc_net_remove(&init_net, IPQ_PROC_FS_NAME);
631
632 netlink_kernel_release(ipqnl);
633 mutex_lock(&ipqnl_mutex);
634 mutex_unlock(&ipqnl_mutex);
635
636 netlink_unregister_notifier(&ipq_nl_notifier);
637 }
638
639 MODULE_DESCRIPTION("IPv4 packet queue handler");
640 MODULE_AUTHOR("James Morris <jmorris@intercode.com.au>");
641 MODULE_LICENSE("GPL");
642 MODULE_ALIAS_NET_PF_PROTO(PF_NETLINK, NETLINK_FIREWALL);
643
644 module_init(ip_queue_init);
645 module_exit(ip_queue_fini);