[NET]: Turn nfmark into generic mark
[safe/jmp/linux-2.6] / net / netfilter / nfnetlink_log.c
1 /*
2  * This is a module which is used for logging packets to userspace via
3  * nfetlink.
4  *
5  * (C) 2005 by Harald Welte <laforge@netfilter.org>
6  *
7  * Based on the old ipv4-only ipt_ULOG.c:
8  * (C) 2000-2004 by Harald Welte <laforge@netfilter.org>
9  *
10  * This program is free software; you can redistribute it and/or modify
11  * it under the terms of the GNU General Public License version 2 as
12  * published by the Free Software Foundation.
13  *
14  * 2006-01-26 Harald Welte <laforge@netfilter.org>
15  *      - Add optional local and global sequence number to detect lost
16  *        events from userspace
17  *
18  */
19 #include <linux/module.h>
20 #include <linux/skbuff.h>
21 #include <linux/init.h>
22 #include <linux/ip.h>
23 #include <linux/ipv6.h>
24 #include <linux/netdevice.h>
25 #include <linux/netfilter.h>
26 #include <linux/netlink.h>
27 #include <linux/netfilter/nfnetlink.h>
28 #include <linux/netfilter/nfnetlink_log.h>
29 #include <linux/spinlock.h>
30 #include <linux/sysctl.h>
31 #include <linux/proc_fs.h>
32 #include <linux/security.h>
33 #include <linux/list.h>
34 #include <linux/jhash.h>
35 #include <linux/random.h>
36 #include <net/sock.h>
37
38 #include <asm/atomic.h>
39
40 #ifdef CONFIG_BRIDGE_NETFILTER
41 #include "../bridge/br_private.h"
42 #endif
43
44 #define NFULNL_NLBUFSIZ_DEFAULT NLMSG_GOODSIZE
45 #define NFULNL_TIMEOUT_DEFAULT  100     /* every second */
46 #define NFULNL_QTHRESH_DEFAULT  100     /* 100 packets */
47
48 #define PRINTR(x, args...)      do { if (net_ratelimit()) \
49                                      printk(x, ## args); } while (0);
50
51 #if 0
52 #define UDEBUG(x, args ...)     printk(KERN_DEBUG "%s(%d):%s(): " x,       \
53                                         __FILE__, __LINE__, __FUNCTION__,  \
54                                         ## args)
55 #else
56 #define UDEBUG(x, ...)
57 #endif
58
59 struct nfulnl_instance {
60         struct hlist_node hlist;        /* global list of instances */
61         spinlock_t lock;
62         atomic_t use;                   /* use count */
63
64         unsigned int qlen;              /* number of nlmsgs in skb */
65         struct sk_buff *skb;            /* pre-allocatd skb */
66         struct nlmsghdr *lastnlh;       /* netlink header of last msg in skb */
67         struct timer_list timer;
68         int peer_pid;                   /* PID of the peer process */
69
70         /* configurable parameters */
71         unsigned int flushtimeout;      /* timeout until queue flush */
72         unsigned int nlbufsiz;          /* netlink buffer allocation size */
73         unsigned int qthreshold;        /* threshold of the queue */
74         u_int32_t copy_range;
75         u_int32_t seq;                  /* instance-local sequential counter */
76         u_int16_t group_num;            /* number of this queue */
77         u_int16_t flags;
78         u_int8_t copy_mode;     
79 };
80
81 static DEFINE_RWLOCK(instances_lock);
82 static atomic_t global_seq;
83
84 #define INSTANCE_BUCKETS        16
85 static struct hlist_head instance_table[INSTANCE_BUCKETS];
86 static unsigned int hash_init;
87
88 static inline u_int8_t instance_hashfn(u_int16_t group_num)
89 {
90         return ((group_num & 0xff) % INSTANCE_BUCKETS);
91 }
92
93 static struct nfulnl_instance *
94 __instance_lookup(u_int16_t group_num)
95 {
96         struct hlist_head *head;
97         struct hlist_node *pos;
98         struct nfulnl_instance *inst;
99
100         UDEBUG("entering (group_num=%u)\n", group_num);
101
102         head = &instance_table[instance_hashfn(group_num)];
103         hlist_for_each_entry(inst, pos, head, hlist) {
104                 if (inst->group_num == group_num)
105                         return inst;
106         }
107         return NULL;
108 }
109
110 static inline void
111 instance_get(struct nfulnl_instance *inst)
112 {
113         atomic_inc(&inst->use);
114 }
115
116 static struct nfulnl_instance *
117 instance_lookup_get(u_int16_t group_num)
118 {
119         struct nfulnl_instance *inst;
120
121         read_lock_bh(&instances_lock);
122         inst = __instance_lookup(group_num);
123         if (inst)
124                 instance_get(inst);
125         read_unlock_bh(&instances_lock);
126
127         return inst;
128 }
129
130 static void
131 instance_put(struct nfulnl_instance *inst)
132 {
133         if (inst && atomic_dec_and_test(&inst->use)) {
134                 UDEBUG("kfree(inst=%p)\n", inst);
135                 kfree(inst);
136         }
137 }
138
139 static void nfulnl_timer(unsigned long data);
140
141 static struct nfulnl_instance *
142 instance_create(u_int16_t group_num, int pid)
143 {
144         struct nfulnl_instance *inst;
145
146         UDEBUG("entering (group_num=%u, pid=%d)\n", group_num,
147                 pid);
148
149         write_lock_bh(&instances_lock); 
150         if (__instance_lookup(group_num)) {
151                 inst = NULL;
152                 UDEBUG("aborting, instance already exists\n");
153                 goto out_unlock;
154         }
155
156         inst = kzalloc(sizeof(*inst), GFP_ATOMIC);
157         if (!inst)
158                 goto out_unlock;
159
160         INIT_HLIST_NODE(&inst->hlist);
161         spin_lock_init(&inst->lock);
162         /* needs to be two, since we _put() after creation */
163         atomic_set(&inst->use, 2);
164
165         init_timer(&inst->timer);
166         inst->timer.function = nfulnl_timer;
167         inst->timer.data = (unsigned long)inst;
168         /* don't start timer yet. (re)start it  with every packet */
169
170         inst->peer_pid = pid;
171         inst->group_num = group_num;
172
173         inst->qthreshold        = NFULNL_QTHRESH_DEFAULT;
174         inst->flushtimeout      = NFULNL_TIMEOUT_DEFAULT;
175         inst->nlbufsiz          = NFULNL_NLBUFSIZ_DEFAULT;
176         inst->copy_mode         = NFULNL_COPY_PACKET;
177         inst->copy_range        = 0xffff;
178
179         if (!try_module_get(THIS_MODULE))
180                 goto out_free;
181
182         hlist_add_head(&inst->hlist, 
183                        &instance_table[instance_hashfn(group_num)]);
184
185         UDEBUG("newly added node: %p, next=%p\n", &inst->hlist, 
186                 inst->hlist.next);
187
188         write_unlock_bh(&instances_lock);
189
190         return inst;
191
192 out_free:
193         instance_put(inst);
194 out_unlock:
195         write_unlock_bh(&instances_lock);
196         return NULL;
197 }
198
199 static int __nfulnl_send(struct nfulnl_instance *inst);
200
201 static void
202 _instance_destroy2(struct nfulnl_instance *inst, int lock)
203 {
204         /* first pull it out of the global list */
205         if (lock)
206                 write_lock_bh(&instances_lock);
207
208         UDEBUG("removing instance %p (queuenum=%u) from hash\n",
209                 inst, inst->group_num);
210
211         hlist_del(&inst->hlist);
212
213         if (lock)
214                 write_unlock_bh(&instances_lock);
215
216         /* then flush all pending packets from skb */
217
218         spin_lock_bh(&inst->lock);
219         if (inst->skb) {
220                 if (inst->qlen)
221                         __nfulnl_send(inst);
222                 if (inst->skb) {
223                         kfree_skb(inst->skb);
224                         inst->skb = NULL;
225                 }
226         }
227         spin_unlock_bh(&inst->lock);
228
229         /* and finally put the refcount */
230         instance_put(inst);
231
232         module_put(THIS_MODULE);
233 }
234
235 static inline void
236 __instance_destroy(struct nfulnl_instance *inst)
237 {
238         _instance_destroy2(inst, 0);
239 }
240
241 static inline void
242 instance_destroy(struct nfulnl_instance *inst)
243 {
244         _instance_destroy2(inst, 1);
245 }
246
247 static int
248 nfulnl_set_mode(struct nfulnl_instance *inst, u_int8_t mode,
249                   unsigned int range)
250 {
251         int status = 0;
252
253         spin_lock_bh(&inst->lock);
254         
255         switch (mode) {
256         case NFULNL_COPY_NONE:
257         case NFULNL_COPY_META:
258                 inst->copy_mode = mode;
259                 inst->copy_range = 0;
260                 break;
261                 
262         case NFULNL_COPY_PACKET:
263                 inst->copy_mode = mode;
264                 /* we're using struct nfattr which has 16bit nfa_len */
265                 if (range > 0xffff)
266                         inst->copy_range = 0xffff;
267                 else
268                         inst->copy_range = range;
269                 break;
270                 
271         default:
272                 status = -EINVAL;
273                 break;
274         }
275
276         spin_unlock_bh(&inst->lock);
277
278         return status;
279 }
280
281 static int
282 nfulnl_set_nlbufsiz(struct nfulnl_instance *inst, u_int32_t nlbufsiz)
283 {
284         int status;
285
286         spin_lock_bh(&inst->lock);
287         if (nlbufsiz < NFULNL_NLBUFSIZ_DEFAULT)
288                 status = -ERANGE;
289         else if (nlbufsiz > 131072)
290                 status = -ERANGE;
291         else {
292                 inst->nlbufsiz = nlbufsiz;
293                 status = 0;
294         }
295         spin_unlock_bh(&inst->lock);
296
297         return status;
298 }
299
300 static int
301 nfulnl_set_timeout(struct nfulnl_instance *inst, u_int32_t timeout)
302 {
303         spin_lock_bh(&inst->lock);
304         inst->flushtimeout = timeout;
305         spin_unlock_bh(&inst->lock);
306
307         return 0;
308 }
309
310 static int
311 nfulnl_set_qthresh(struct nfulnl_instance *inst, u_int32_t qthresh)
312 {
313         spin_lock_bh(&inst->lock);
314         inst->qthreshold = qthresh;
315         spin_unlock_bh(&inst->lock);
316
317         return 0;
318 }
319
320 static int
321 nfulnl_set_flags(struct nfulnl_instance *inst, u_int16_t flags)
322 {
323         spin_lock_bh(&inst->lock);
324         inst->flags = flags;
325         spin_unlock_bh(&inst->lock);
326
327         return 0;
328 }
329
330 static struct sk_buff *nfulnl_alloc_skb(unsigned int inst_size, 
331                                         unsigned int pkt_size)
332 {
333         struct sk_buff *skb;
334         unsigned int n;
335
336         UDEBUG("entered (%u, %u)\n", inst_size, pkt_size);
337
338         /* alloc skb which should be big enough for a whole multipart
339          * message.  WARNING: has to be <= 128k due to slab restrictions */
340
341         n = max(inst_size, pkt_size);
342         skb = alloc_skb(n, GFP_ATOMIC);
343         if (!skb) {
344                 PRINTR("nfnetlink_log: can't alloc whole buffer (%u bytes)\n",
345                         inst_size);
346
347                 if (n > pkt_size) {
348                         /* try to allocate only as much as we need for current
349                          * packet */
350
351                         skb = alloc_skb(pkt_size, GFP_ATOMIC);
352                         if (!skb)
353                                 PRINTR("nfnetlink_log: can't even alloc %u "
354                                        "bytes\n", pkt_size);
355                 }
356         }
357
358         return skb;
359 }
360
361 static int
362 __nfulnl_send(struct nfulnl_instance *inst)
363 {
364         int status;
365
366         if (timer_pending(&inst->timer))
367                 del_timer(&inst->timer);
368
369         if (!inst->skb)
370                 return 0;
371
372         if (inst->qlen > 1)
373                 inst->lastnlh->nlmsg_type = NLMSG_DONE;
374
375         status = nfnetlink_unicast(inst->skb, inst->peer_pid, MSG_DONTWAIT);
376         if (status < 0) {
377                 UDEBUG("netlink_unicast() failed\n");
378                 /* FIXME: statistics */
379         }
380
381         inst->qlen = 0;
382         inst->skb = NULL;
383         inst->lastnlh = NULL;
384
385         return status;
386 }
387
388 static void nfulnl_timer(unsigned long data)
389 {
390         struct nfulnl_instance *inst = (struct nfulnl_instance *)data; 
391
392         UDEBUG("timer function called, flushing buffer\n");
393
394         spin_lock_bh(&inst->lock);
395         __nfulnl_send(inst);
396         instance_put(inst);
397         spin_unlock_bh(&inst->lock);
398 }
399
400 /* This is an inline function, we don't really care about a long
401  * list of arguments */
402 static inline int 
403 __build_packet_message(struct nfulnl_instance *inst,
404                         const struct sk_buff *skb, 
405                         unsigned int data_len,
406                         unsigned int pf,
407                         unsigned int hooknum,
408                         const struct net_device *indev,
409                         const struct net_device *outdev,
410                         const struct nf_loginfo *li,
411                         const char *prefix)
412 {
413         unsigned char *old_tail;
414         struct nfulnl_msg_packet_hdr pmsg;
415         struct nlmsghdr *nlh;
416         struct nfgenmsg *nfmsg;
417         __be32 tmp_uint;
418
419         UDEBUG("entered\n");
420                 
421         old_tail = inst->skb->tail;
422         nlh = NLMSG_PUT(inst->skb, 0, 0, 
423                         NFNL_SUBSYS_ULOG << 8 | NFULNL_MSG_PACKET,
424                         sizeof(struct nfgenmsg));
425         nfmsg = NLMSG_DATA(nlh);
426         nfmsg->nfgen_family = pf;
427         nfmsg->version = NFNETLINK_V0;
428         nfmsg->res_id = htons(inst->group_num);
429
430         pmsg.hw_protocol        = skb->protocol;
431         pmsg.hook               = hooknum;
432
433         NFA_PUT(inst->skb, NFULA_PACKET_HDR, sizeof(pmsg), &pmsg);
434
435         if (prefix) {
436                 int slen = strlen(prefix);
437                 if (slen > NFULNL_PREFIXLEN)
438                         slen = NFULNL_PREFIXLEN;
439                 NFA_PUT(inst->skb, NFULA_PREFIX, slen, prefix);
440         }
441
442         if (indev) {
443                 tmp_uint = htonl(indev->ifindex);
444 #ifndef CONFIG_BRIDGE_NETFILTER
445                 NFA_PUT(inst->skb, NFULA_IFINDEX_INDEV, sizeof(tmp_uint),
446                         &tmp_uint);
447 #else
448                 if (pf == PF_BRIDGE) {
449                         /* Case 1: outdev is physical input device, we need to
450                          * look for bridge group (when called from
451                          * netfilter_bridge) */
452                         NFA_PUT(inst->skb, NFULA_IFINDEX_PHYSINDEV,
453                                 sizeof(tmp_uint), &tmp_uint);
454                         /* this is the bridge group "brX" */
455                         tmp_uint = htonl(indev->br_port->br->dev->ifindex);
456                         NFA_PUT(inst->skb, NFULA_IFINDEX_INDEV,
457                                 sizeof(tmp_uint), &tmp_uint);
458                 } else {
459                         /* Case 2: indev is bridge group, we need to look for
460                          * physical device (when called from ipv4) */
461                         NFA_PUT(inst->skb, NFULA_IFINDEX_INDEV,
462                                 sizeof(tmp_uint), &tmp_uint);
463                         if (skb->nf_bridge && skb->nf_bridge->physindev) {
464                                 tmp_uint = 
465                                     htonl(skb->nf_bridge->physindev->ifindex);
466                                 NFA_PUT(inst->skb, NFULA_IFINDEX_PHYSINDEV,
467                                         sizeof(tmp_uint), &tmp_uint);
468                         }
469                 }
470 #endif
471         }
472
473         if (outdev) {
474                 tmp_uint = htonl(outdev->ifindex);
475 #ifndef CONFIG_BRIDGE_NETFILTER
476                 NFA_PUT(inst->skb, NFULA_IFINDEX_OUTDEV, sizeof(tmp_uint),
477                         &tmp_uint);
478 #else
479                 if (pf == PF_BRIDGE) {
480                         /* Case 1: outdev is physical output device, we need to
481                          * look for bridge group (when called from
482                          * netfilter_bridge) */
483                         NFA_PUT(inst->skb, NFULA_IFINDEX_PHYSOUTDEV,
484                                 sizeof(tmp_uint), &tmp_uint);
485                         /* this is the bridge group "brX" */
486                         tmp_uint = htonl(outdev->br_port->br->dev->ifindex);
487                         NFA_PUT(inst->skb, NFULA_IFINDEX_OUTDEV,
488                                 sizeof(tmp_uint), &tmp_uint);
489                 } else {
490                         /* Case 2: indev is a bridge group, we need to look
491                          * for physical device (when called from ipv4) */
492                         NFA_PUT(inst->skb, NFULA_IFINDEX_OUTDEV,
493                                 sizeof(tmp_uint), &tmp_uint);
494                         if (skb->nf_bridge) {
495                                 tmp_uint = 
496                                     htonl(skb->nf_bridge->physoutdev->ifindex);
497                                 NFA_PUT(inst->skb, NFULA_IFINDEX_PHYSOUTDEV,
498                                         sizeof(tmp_uint), &tmp_uint);
499                         }
500                 }
501 #endif
502         }
503
504         if (skb->mark) {
505                 tmp_uint = htonl(skb->mark);
506                 NFA_PUT(inst->skb, NFULA_MARK, sizeof(tmp_uint), &tmp_uint);
507         }
508
509         if (indev && skb->dev && skb->dev->hard_header_parse) {
510                 struct nfulnl_msg_packet_hw phw;
511                 int len = skb->dev->hard_header_parse((struct sk_buff *)skb,
512                                                     phw.hw_addr);
513                 phw.hw_addrlen = htons(len);
514                 NFA_PUT(inst->skb, NFULA_HWADDR, sizeof(phw), &phw);
515         }
516
517         if (skb->tstamp.off_sec) {
518                 struct nfulnl_msg_packet_timestamp ts;
519
520                 ts.sec = cpu_to_be64(skb->tstamp.off_sec);
521                 ts.usec = cpu_to_be64(skb->tstamp.off_usec);
522
523                 NFA_PUT(inst->skb, NFULA_TIMESTAMP, sizeof(ts), &ts);
524         }
525
526         /* UID */
527         if (skb->sk) {
528                 read_lock_bh(&skb->sk->sk_callback_lock);
529                 if (skb->sk->sk_socket && skb->sk->sk_socket->file) {
530                         __be32 uid = htonl(skb->sk->sk_socket->file->f_uid);
531                         /* need to unlock here since NFA_PUT may goto */
532                         read_unlock_bh(&skb->sk->sk_callback_lock);
533                         NFA_PUT(inst->skb, NFULA_UID, sizeof(uid), &uid);
534                 } else
535                         read_unlock_bh(&skb->sk->sk_callback_lock);
536         }
537
538         /* local sequence number */
539         if (inst->flags & NFULNL_CFG_F_SEQ) {
540                 tmp_uint = htonl(inst->seq++);
541                 NFA_PUT(inst->skb, NFULA_SEQ, sizeof(tmp_uint), &tmp_uint);
542         }
543         /* global sequence number */
544         if (inst->flags & NFULNL_CFG_F_SEQ_GLOBAL) {
545                 tmp_uint = htonl(atomic_inc_return(&global_seq));
546                 NFA_PUT(inst->skb, NFULA_SEQ_GLOBAL, sizeof(tmp_uint), &tmp_uint);
547         }
548
549         if (data_len) {
550                 struct nfattr *nfa;
551                 int size = NFA_LENGTH(data_len);
552
553                 if (skb_tailroom(inst->skb) < (int)NFA_SPACE(data_len)) {
554                         printk(KERN_WARNING "nfnetlink_log: no tailroom!\n");
555                         goto nlmsg_failure;
556                 }
557
558                 nfa = (struct nfattr *)skb_put(inst->skb, NFA_ALIGN(size));
559                 nfa->nfa_type = NFULA_PAYLOAD;
560                 nfa->nfa_len = size;
561
562                 if (skb_copy_bits(skb, 0, NFA_DATA(nfa), data_len))
563                         BUG();
564         }
565                 
566         nlh->nlmsg_len = inst->skb->tail - old_tail;
567         return 0;
568
569 nlmsg_failure:
570         UDEBUG("nlmsg_failure\n");
571 nfattr_failure:
572         PRINTR(KERN_ERR "nfnetlink_log: error creating log nlmsg\n");
573         return -1;
574 }
575
576 #define RCV_SKB_FAIL(err) do { netlink_ack(skb, nlh, (err)); return; } while (0)
577
578 static struct nf_loginfo default_loginfo = {
579         .type =         NF_LOG_TYPE_ULOG,
580         .u = {
581                 .ulog = {
582                         .copy_len       = 0xffff,
583                         .group          = 0,
584                         .qthreshold     = 1,
585                 },
586         },
587 };
588
589 /* log handler for internal netfilter logging api */
590 static void
591 nfulnl_log_packet(unsigned int pf,
592                   unsigned int hooknum,
593                   const struct sk_buff *skb,
594                   const struct net_device *in,
595                   const struct net_device *out,
596                   const struct nf_loginfo *li_user,
597                   const char *prefix)
598 {
599         unsigned int size, data_len;
600         struct nfulnl_instance *inst;
601         const struct nf_loginfo *li;
602         unsigned int qthreshold;
603         unsigned int nlbufsiz;
604
605         if (li_user && li_user->type == NF_LOG_TYPE_ULOG) 
606                 li = li_user;
607         else
608                 li = &default_loginfo;
609
610         inst = instance_lookup_get(li->u.ulog.group);
611         if (!inst)
612                 inst = instance_lookup_get(0);
613         if (!inst) {
614                 PRINTR("nfnetlink_log: trying to log packet, "
615                         "but no instance for group %u\n", li->u.ulog.group);
616                 return;
617         }
618
619         /* all macros expand to constant values at compile time */
620         /* FIXME: do we want to make the size calculation conditional based on
621          * what is actually present?  way more branches and checks, but more
622          * memory efficient... */
623         size =    NLMSG_SPACE(sizeof(struct nfgenmsg))
624                 + NFA_SPACE(sizeof(struct nfulnl_msg_packet_hdr))
625                 + NFA_SPACE(sizeof(u_int32_t))  /* ifindex */
626                 + NFA_SPACE(sizeof(u_int32_t))  /* ifindex */
627 #ifdef CONFIG_BRIDGE_NETFILTER
628                 + NFA_SPACE(sizeof(u_int32_t))  /* ifindex */
629                 + NFA_SPACE(sizeof(u_int32_t))  /* ifindex */
630 #endif
631                 + NFA_SPACE(sizeof(u_int32_t))  /* mark */
632                 + NFA_SPACE(sizeof(u_int32_t))  /* uid */
633                 + NFA_SPACE(NFULNL_PREFIXLEN)   /* prefix */
634                 + NFA_SPACE(sizeof(struct nfulnl_msg_packet_hw))
635                 + NFA_SPACE(sizeof(struct nfulnl_msg_packet_timestamp));
636
637         UDEBUG("initial size=%u\n", size);
638
639         spin_lock_bh(&inst->lock);
640
641         if (inst->flags & NFULNL_CFG_F_SEQ)
642                 size += NFA_SPACE(sizeof(u_int32_t));
643         if (inst->flags & NFULNL_CFG_F_SEQ_GLOBAL)
644                 size += NFA_SPACE(sizeof(u_int32_t));
645
646         qthreshold = inst->qthreshold;
647         /* per-rule qthreshold overrides per-instance */
648         if (qthreshold > li->u.ulog.qthreshold)
649                 qthreshold = li->u.ulog.qthreshold;
650         
651         switch (inst->copy_mode) {
652         case NFULNL_COPY_META:
653         case NFULNL_COPY_NONE:
654                 data_len = 0;
655                 break;
656         
657         case NFULNL_COPY_PACKET:
658                 if (inst->copy_range == 0 
659                     || inst->copy_range > skb->len)
660                         data_len = skb->len;
661                 else
662                         data_len = inst->copy_range;
663                 
664                 size += NFA_SPACE(data_len);
665                 UDEBUG("copy_packet, therefore size now %u\n", size);
666                 break;
667         
668         default:
669                 spin_unlock_bh(&inst->lock);
670                 instance_put(inst);
671                 return;
672         }
673
674         if (size > inst->nlbufsiz)
675                 nlbufsiz = size;
676         else
677                 nlbufsiz = inst->nlbufsiz;
678
679         if (!inst->skb) {
680                 if (!(inst->skb = nfulnl_alloc_skb(nlbufsiz, size))) {
681                         UDEBUG("error in nfulnl_alloc_skb(%u, %u)\n",
682                                 inst->nlbufsiz, size);
683                         goto alloc_failure;
684                 }
685         } else if (inst->qlen >= qthreshold ||
686                    size > skb_tailroom(inst->skb)) {
687                 /* either the queue len is too high or we don't have
688                  * enough room in the skb left. flush to userspace. */
689                 UDEBUG("flushing old skb\n");
690
691                 __nfulnl_send(inst);
692
693                 if (!(inst->skb = nfulnl_alloc_skb(nlbufsiz, size))) {
694                         UDEBUG("error in nfulnl_alloc_skb(%u, %u)\n",
695                                 inst->nlbufsiz, size);
696                         goto alloc_failure;
697                 }
698         }
699
700         UDEBUG("qlen %d, qthreshold %d\n", inst->qlen, qthreshold);
701         inst->qlen++;
702
703         __build_packet_message(inst, skb, data_len, pf,
704                                 hooknum, in, out, li, prefix);
705
706         /* timer_pending always called within inst->lock, so there
707          * is no chance of a race here */
708         if (!timer_pending(&inst->timer)) {
709                 instance_get(inst);
710                 inst->timer.expires = jiffies + (inst->flushtimeout*HZ/100);
711                 add_timer(&inst->timer);
712         }
713         spin_unlock_bh(&inst->lock);
714
715         return;
716
717 alloc_failure:
718         spin_unlock_bh(&inst->lock);
719         instance_put(inst);
720         UDEBUG("error allocating skb\n");
721         /* FIXME: statistics */
722 }
723
724 static int
725 nfulnl_rcv_nl_event(struct notifier_block *this,
726                    unsigned long event, void *ptr)
727 {
728         struct netlink_notify *n = ptr;
729
730         if (event == NETLINK_URELEASE &&
731             n->protocol == NETLINK_NETFILTER && n->pid) {
732                 int i;
733
734                 /* destroy all instances for this pid */
735                 write_lock_bh(&instances_lock);
736                 for  (i = 0; i < INSTANCE_BUCKETS; i++) {
737                         struct hlist_node *tmp, *t2;
738                         struct nfulnl_instance *inst;
739                         struct hlist_head *head = &instance_table[i];
740
741                         hlist_for_each_entry_safe(inst, tmp, t2, head, hlist) {
742                                 UDEBUG("node = %p\n", inst);
743                                 if (n->pid == inst->peer_pid)
744                                         __instance_destroy(inst);
745                         }
746                 }
747                 write_unlock_bh(&instances_lock);
748         }
749         return NOTIFY_DONE;
750 }
751
752 static struct notifier_block nfulnl_rtnl_notifier = {
753         .notifier_call  = nfulnl_rcv_nl_event,
754 };
755
756 static int
757 nfulnl_recv_unsupp(struct sock *ctnl, struct sk_buff *skb,
758                   struct nlmsghdr *nlh, struct nfattr *nfqa[], int *errp)
759 {
760         return -ENOTSUPP;
761 }
762
763 static struct nf_logger nfulnl_logger = {
764         .name   = "nfnetlink_log",
765         .logfn  = &nfulnl_log_packet,
766         .me     = THIS_MODULE,
767 };
768
769 static const int nfula_min[NFULA_MAX] = {
770         [NFULA_PACKET_HDR-1]    = sizeof(struct nfulnl_msg_packet_hdr),
771         [NFULA_MARK-1]          = sizeof(u_int32_t),
772         [NFULA_TIMESTAMP-1]     = sizeof(struct nfulnl_msg_packet_timestamp),
773         [NFULA_IFINDEX_INDEV-1] = sizeof(u_int32_t),
774         [NFULA_IFINDEX_OUTDEV-1]= sizeof(u_int32_t),
775         [NFULA_IFINDEX_PHYSINDEV-1]     = sizeof(u_int32_t),
776         [NFULA_IFINDEX_PHYSOUTDEV-1]    = sizeof(u_int32_t),
777         [NFULA_HWADDR-1]        = sizeof(struct nfulnl_msg_packet_hw),
778         [NFULA_PAYLOAD-1]       = 0,
779         [NFULA_PREFIX-1]        = 0,
780         [NFULA_UID-1]           = sizeof(u_int32_t),
781         [NFULA_SEQ-1]           = sizeof(u_int32_t),
782         [NFULA_SEQ_GLOBAL-1]    = sizeof(u_int32_t),
783 };
784
785 static const int nfula_cfg_min[NFULA_CFG_MAX] = {
786         [NFULA_CFG_CMD-1]       = sizeof(struct nfulnl_msg_config_cmd),
787         [NFULA_CFG_MODE-1]      = sizeof(struct nfulnl_msg_config_mode),
788         [NFULA_CFG_TIMEOUT-1]   = sizeof(u_int32_t),
789         [NFULA_CFG_QTHRESH-1]   = sizeof(u_int32_t),
790         [NFULA_CFG_NLBUFSIZ-1]  = sizeof(u_int32_t),
791         [NFULA_CFG_FLAGS-1]     = sizeof(u_int16_t),
792 };
793
794 static int
795 nfulnl_recv_config(struct sock *ctnl, struct sk_buff *skb,
796                    struct nlmsghdr *nlh, struct nfattr *nfula[], int *errp)
797 {
798         struct nfgenmsg *nfmsg = NLMSG_DATA(nlh);
799         u_int16_t group_num = ntohs(nfmsg->res_id);
800         struct nfulnl_instance *inst;
801         int ret = 0;
802
803         UDEBUG("entering for msg %u\n", NFNL_MSG_TYPE(nlh->nlmsg_type));
804
805         if (nfattr_bad_size(nfula, NFULA_CFG_MAX, nfula_cfg_min)) {
806                 UDEBUG("bad attribute size\n");
807                 return -EINVAL;
808         }
809
810         inst = instance_lookup_get(group_num);
811         if (nfula[NFULA_CFG_CMD-1]) {
812                 u_int8_t pf = nfmsg->nfgen_family;
813                 struct nfulnl_msg_config_cmd *cmd;
814                 cmd = NFA_DATA(nfula[NFULA_CFG_CMD-1]);
815                 UDEBUG("found CFG_CMD for\n");
816
817                 switch (cmd->command) {
818                 case NFULNL_CFG_CMD_BIND:
819                         if (inst) {
820                                 ret = -EBUSY;
821                                 goto out_put;
822                         }
823
824                         inst = instance_create(group_num,
825                                                NETLINK_CB(skb).pid);
826                         if (!inst) {
827                                 ret = -EINVAL;
828                                 goto out_put;
829                         }
830                         break;
831                 case NFULNL_CFG_CMD_UNBIND:
832                         if (!inst) {
833                                 ret = -ENODEV;
834                                 goto out_put;
835                         }
836
837                         if (inst->peer_pid != NETLINK_CB(skb).pid) {
838                                 ret = -EPERM;
839                                 goto out_put;
840                         }
841
842                         instance_destroy(inst);
843                         break;
844                 case NFULNL_CFG_CMD_PF_BIND:
845                         UDEBUG("registering log handler for pf=%u\n", pf);
846                         ret = nf_log_register(pf, &nfulnl_logger);
847                         break;
848                 case NFULNL_CFG_CMD_PF_UNBIND:
849                         UDEBUG("unregistering log handler for pf=%u\n", pf);
850                         /* This is a bug and a feature.  We cannot unregister
851                          * other handlers, like nfnetlink_inst can */
852                         nf_log_unregister_pf(pf);
853                         break;
854                 default:
855                         ret = -EINVAL;
856                         break;
857                 }
858         } else {
859                 if (!inst) {
860                         UDEBUG("no config command, and no instance for "
861                                 "group=%u pid=%u =>ENOENT\n",
862                                 group_num, NETLINK_CB(skb).pid);
863                         ret = -ENOENT;
864                         goto out_put;
865                 }
866
867                 if (inst->peer_pid != NETLINK_CB(skb).pid) {
868                         UDEBUG("no config command, and wrong pid\n");
869                         ret = -EPERM;
870                         goto out_put;
871                 }
872         }
873
874         if (nfula[NFULA_CFG_MODE-1]) {
875                 struct nfulnl_msg_config_mode *params;
876                 params = NFA_DATA(nfula[NFULA_CFG_MODE-1]);
877
878                 nfulnl_set_mode(inst, params->copy_mode,
879                                 ntohl(params->copy_range));
880         }
881
882         if (nfula[NFULA_CFG_TIMEOUT-1]) {
883                 __be32 timeout =
884                         *(__be32 *)NFA_DATA(nfula[NFULA_CFG_TIMEOUT-1]);
885
886                 nfulnl_set_timeout(inst, ntohl(timeout));
887         }
888
889         if (nfula[NFULA_CFG_NLBUFSIZ-1]) {
890                 __be32 nlbufsiz =
891                         *(__be32 *)NFA_DATA(nfula[NFULA_CFG_NLBUFSIZ-1]);
892
893                 nfulnl_set_nlbufsiz(inst, ntohl(nlbufsiz));
894         }
895
896         if (nfula[NFULA_CFG_QTHRESH-1]) {
897                 __be32 qthresh =
898                         *(__be32 *)NFA_DATA(nfula[NFULA_CFG_QTHRESH-1]);
899
900                 nfulnl_set_qthresh(inst, ntohl(qthresh));
901         }
902
903         if (nfula[NFULA_CFG_FLAGS-1]) {
904                 __be16 flags =
905                         *(__be16 *)NFA_DATA(nfula[NFULA_CFG_FLAGS-1]);
906                 nfulnl_set_flags(inst, ntohs(flags));
907         }
908
909 out_put:
910         instance_put(inst);
911         return ret;
912 }
913
914 static struct nfnl_callback nfulnl_cb[NFULNL_MSG_MAX] = {
915         [NFULNL_MSG_PACKET]     = { .call = nfulnl_recv_unsupp,
916                                     .attr_count = NFULA_MAX, },
917         [NFULNL_MSG_CONFIG]     = { .call = nfulnl_recv_config,
918                                     .attr_count = NFULA_CFG_MAX, },
919 };
920
921 static struct nfnetlink_subsystem nfulnl_subsys = {
922         .name           = "log",
923         .subsys_id      = NFNL_SUBSYS_ULOG,
924         .cb_count       = NFULNL_MSG_MAX,
925         .cb             = nfulnl_cb,
926 };
927
928 #ifdef CONFIG_PROC_FS
929 struct iter_state {
930         unsigned int bucket;
931 };
932
933 static struct hlist_node *get_first(struct seq_file *seq)
934 {
935         struct iter_state *st = seq->private;
936
937         if (!st)
938                 return NULL;
939
940         for (st->bucket = 0; st->bucket < INSTANCE_BUCKETS; st->bucket++) {
941                 if (!hlist_empty(&instance_table[st->bucket]))
942                         return instance_table[st->bucket].first;
943         }
944         return NULL;
945 }
946
947 static struct hlist_node *get_next(struct seq_file *seq, struct hlist_node *h)
948 {
949         struct iter_state *st = seq->private;
950
951         h = h->next;
952         while (!h) {
953                 if (++st->bucket >= INSTANCE_BUCKETS)
954                         return NULL;
955
956                 h = instance_table[st->bucket].first;
957         }
958         return h;
959 }
960
961 static struct hlist_node *get_idx(struct seq_file *seq, loff_t pos)
962 {
963         struct hlist_node *head;
964         head = get_first(seq);
965
966         if (head)
967                 while (pos && (head = get_next(seq, head)))
968                         pos--;
969         return pos ? NULL : head;
970 }
971
972 static void *seq_start(struct seq_file *seq, loff_t *pos)
973 {
974         read_lock_bh(&instances_lock);
975         return get_idx(seq, *pos);
976 }
977
978 static void *seq_next(struct seq_file *s, void *v, loff_t *pos)
979 {
980         (*pos)++;
981         return get_next(s, v);
982 }
983
984 static void seq_stop(struct seq_file *s, void *v)
985 {
986         read_unlock_bh(&instances_lock);
987 }
988
989 static int seq_show(struct seq_file *s, void *v)
990 {
991         const struct nfulnl_instance *inst = v;
992
993         return seq_printf(s, "%5d %6d %5d %1d %5d %6d %2d\n", 
994                           inst->group_num,
995                           inst->peer_pid, inst->qlen, 
996                           inst->copy_mode, inst->copy_range,
997                           inst->flushtimeout, atomic_read(&inst->use));
998 }
999
1000 static struct seq_operations nful_seq_ops = {
1001         .start  = seq_start,
1002         .next   = seq_next,
1003         .stop   = seq_stop,
1004         .show   = seq_show,
1005 };
1006
1007 static int nful_open(struct inode *inode, struct file *file)
1008 {
1009         struct seq_file *seq;
1010         struct iter_state *is;
1011         int ret;
1012
1013         is = kzalloc(sizeof(*is), GFP_KERNEL);
1014         if (!is)
1015                 return -ENOMEM;
1016         ret = seq_open(file, &nful_seq_ops);
1017         if (ret < 0)
1018                 goto out_free;
1019         seq = file->private_data;
1020         seq->private = is;
1021         return ret;
1022 out_free:
1023         kfree(is);
1024         return ret;
1025 }
1026
1027 static struct file_operations nful_file_ops = {
1028         .owner   = THIS_MODULE,
1029         .open    = nful_open,
1030         .read    = seq_read,
1031         .llseek  = seq_lseek,
1032         .release = seq_release_private,
1033 };
1034
1035 #endif /* PROC_FS */
1036
1037 static int __init nfnetlink_log_init(void)
1038 {
1039         int i, status = -ENOMEM;
1040 #ifdef CONFIG_PROC_FS
1041         struct proc_dir_entry *proc_nful;
1042 #endif
1043         
1044         for (i = 0; i < INSTANCE_BUCKETS; i++)
1045                 INIT_HLIST_HEAD(&instance_table[i]);
1046         
1047         /* it's not really all that important to have a random value, so
1048          * we can do this from the init function, even if there hasn't
1049          * been that much entropy yet */
1050         get_random_bytes(&hash_init, sizeof(hash_init));
1051
1052         netlink_register_notifier(&nfulnl_rtnl_notifier);
1053         status = nfnetlink_subsys_register(&nfulnl_subsys);
1054         if (status < 0) {
1055                 printk(KERN_ERR "log: failed to create netlink socket\n");
1056                 goto cleanup_netlink_notifier;
1057         }
1058
1059 #ifdef CONFIG_PROC_FS
1060         proc_nful = create_proc_entry("nfnetlink_log", 0440,
1061                                       proc_net_netfilter);
1062         if (!proc_nful)
1063                 goto cleanup_subsys;
1064         proc_nful->proc_fops = &nful_file_ops;
1065 #endif
1066         return status;
1067
1068 #ifdef CONFIG_PROC_FS
1069 cleanup_subsys:
1070         nfnetlink_subsys_unregister(&nfulnl_subsys);
1071 #endif
1072 cleanup_netlink_notifier:
1073         netlink_unregister_notifier(&nfulnl_rtnl_notifier);
1074         return status;
1075 }
1076
1077 static void __exit nfnetlink_log_fini(void)
1078 {
1079         nf_log_unregister_logger(&nfulnl_logger);
1080 #ifdef CONFIG_PROC_FS
1081         remove_proc_entry("nfnetlink_log", proc_net_netfilter);
1082 #endif
1083         nfnetlink_subsys_unregister(&nfulnl_subsys);
1084         netlink_unregister_notifier(&nfulnl_rtnl_notifier);
1085 }
1086
1087 MODULE_DESCRIPTION("netfilter userspace logging");
1088 MODULE_AUTHOR("Harald Welte <laforge@netfilter.org>");
1089 MODULE_LICENSE("GPL");
1090 MODULE_ALIAS_NFNL_SUBSYS(NFNL_SUBSYS_ULOG);
1091
1092 module_init(nfnetlink_log_init);
1093 module_exit(nfnetlink_log_fini);