ip_fw_pfil.c revision 274225
1/*-
2 * Copyright (c) 2004 Andre Oppermann, Internet Business Solutions AG
3 * All rights reserved.
4 *
5 * Redistribution and use in source and binary forms, with or without
6 * modification, are permitted provided that the following conditions
7 * are met:
8 * 1. Redistributions of source code must retain the above copyright
9 *    notice, this list of conditions and the following disclaimer.
10 * 2. Redistributions in binary form must reproduce the above copyright
11 *    notice, this list of conditions and the following disclaimer in the
12 *    documentation and/or other materials provided with the distribution.
13 *
14 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR AND CONTRIBUTORS ``AS IS'' AND
15 * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
16 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
17 * ARE DISCLAIMED.  IN NO EVENT SHALL THE AUTHOR OR CONTRIBUTORS BE LIABLE
18 * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
19 * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
20 * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
21 * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
22 * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
23 * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
24 * SUCH DAMAGE.
25 */
26
27#include <sys/cdefs.h>
28__FBSDID("$FreeBSD: head/sys/netpfil/ipfw/ip_fw_pfil.c 274225 2014-11-07 09:39:05Z glebius $");
29
30#include "opt_ipfw.h"
31#include "opt_inet.h"
32#include "opt_inet6.h"
33#ifndef INET
34#error IPFIREWALL requires INET.
35#endif /* INET */
36
37#include <sys/param.h>
38#include <sys/systm.h>
39#include <sys/malloc.h>
40#include <sys/mbuf.h>
41#include <sys/module.h>
42#include <sys/kernel.h>
43#include <sys/lock.h>
44#include <sys/rwlock.h>
45#include <sys/socket.h>
46#include <sys/sysctl.h>
47
48#include <net/if.h>
49#include <net/route.h>
50#include <net/ethernet.h>
51#include <net/pfil.h>
52#include <net/vnet.h>
53
54#include <netinet/in.h>
55#include <netinet/in_systm.h>
56#include <netinet/ip.h>
57#include <netinet/ip_var.h>
58#include <netinet/ip_fw.h>
59#ifdef INET6
60#include <netinet/ip6.h>
61#include <netinet6/ip6_var.h>
62#endif
63
64#include <netgraph/ng_ipfw.h>
65
66#include <netpfil/ipfw/ip_fw_private.h>
67
68#include <machine/in_cksum.h>
69
70static VNET_DEFINE(int, fw_enable) = 1;
71#define V_fw_enable	VNET(fw_enable)
72
73#ifdef INET6
74static VNET_DEFINE(int, fw6_enable) = 1;
75#define V_fw6_enable	VNET(fw6_enable)
76#endif
77
78static VNET_DEFINE(int, fwlink_enable) = 0;
79#define V_fwlink_enable	VNET(fwlink_enable)
80
81int ipfw_chg_hook(SYSCTL_HANDLER_ARGS);
82
83/* Forward declarations. */
84static int ipfw_divert(struct mbuf **, int, struct ipfw_rule_ref *, int);
85int ipfw_check_packet(void *, struct mbuf **, struct ifnet *, int,
86	struct inpcb *);
87int ipfw_check_frame(void *, struct mbuf **, struct ifnet *, int,
88	struct inpcb *);
89
90#ifdef SYSCTL_NODE
91
92SYSBEGIN(f1)
93
94SYSCTL_DECL(_net_inet_ip_fw);
95SYSCTL_PROC(_net_inet_ip_fw, OID_AUTO, enable,
96    CTLFLAG_VNET | CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_SECURE3,
97    &VNET_NAME(fw_enable), 0, ipfw_chg_hook, "I", "Enable ipfw");
98#ifdef INET6
99SYSCTL_DECL(_net_inet6_ip6_fw);
100SYSCTL_PROC(_net_inet6_ip6_fw, OID_AUTO, enable,
101    CTLFLAG_VNET | CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_SECURE3,
102    &VNET_NAME(fw6_enable), 0, ipfw_chg_hook, "I", "Enable ipfw+6");
103#endif /* INET6 */
104
105SYSCTL_DECL(_net_link_ether);
106SYSCTL_PROC(_net_link_ether, OID_AUTO, ipfw,
107    CTLFLAG_VNET | CTLTYPE_INT | CTLFLAG_RW | CTLFLAG_SECURE3,
108    &VNET_NAME(fwlink_enable), 0, ipfw_chg_hook, "I",
109    "Pass ether pkts through firewall");
110
111SYSEND
112
113#endif /* SYSCTL_NODE */
114
115/*
116 * The pfilter hook to pass packets to ipfw_chk and then to
117 * dummynet, divert, netgraph or other modules.
118 * The packet may be consumed.
119 */
120int
121ipfw_check_packet(void *arg, struct mbuf **m0, struct ifnet *ifp, int dir,
122    struct inpcb *inp)
123{
124	struct ip_fw_args args;
125	struct m_tag *tag;
126	int ipfw;
127	int ret;
128
129	/* convert dir to IPFW values */
130	dir = (dir == PFIL_IN) ? DIR_IN : DIR_OUT;
131	bzero(&args, sizeof(args));
132
133again:
134	/*
135	 * extract and remove the tag if present. If we are left
136	 * with onepass, optimize the outgoing path.
137	 */
138	tag = m_tag_locate(*m0, MTAG_IPFW_RULE, 0, NULL);
139	if (tag != NULL) {
140		args.rule = *((struct ipfw_rule_ref *)(tag+1));
141		m_tag_delete(*m0, tag);
142		if (args.rule.info & IPFW_ONEPASS)
143			return (0);
144	}
145
146	args.m = *m0;
147	args.oif = dir == DIR_OUT ? ifp : NULL;
148	args.inp = inp;
149
150	ipfw = ipfw_chk(&args);
151	*m0 = args.m;
152
153	KASSERT(*m0 != NULL || ipfw == IP_FW_DENY, ("%s: m0 is NULL",
154	    __func__));
155
156	/* breaking out of the switch means drop */
157	ret = 0;	/* default return value for pass */
158	switch (ipfw) {
159	case IP_FW_PASS:
160		/* next_hop may be set by ipfw_chk */
161		if (args.next_hop == NULL && args.next_hop6 == NULL)
162			break; /* pass */
163#if (!defined(INET6) && !defined(INET))
164		ret = EACCES;
165#else
166	    {
167		struct m_tag *fwd_tag;
168		size_t len;
169
170		KASSERT(args.next_hop == NULL || args.next_hop6 == NULL,
171		    ("%s: both next_hop=%p and next_hop6=%p not NULL", __func__,
172		     args.next_hop, args.next_hop6));
173#ifdef INET6
174		if (args.next_hop6 != NULL)
175			len = sizeof(struct sockaddr_in6);
176#endif
177#ifdef INET
178		if (args.next_hop != NULL)
179			len = sizeof(struct sockaddr_in);
180#endif
181
182		/* Incoming packets should not be tagged so we do not
183		 * m_tag_find. Outgoing packets may be tagged, so we
184		 * reuse the tag if present.
185		 */
186		fwd_tag = (dir == DIR_IN) ? NULL :
187			m_tag_find(*m0, PACKET_TAG_IPFORWARD, NULL);
188		if (fwd_tag != NULL) {
189			m_tag_unlink(*m0, fwd_tag);
190		} else {
191			fwd_tag = m_tag_get(PACKET_TAG_IPFORWARD, len,
192			    M_NOWAIT);
193			if (fwd_tag == NULL) {
194				ret = EACCES;
195				break; /* i.e. drop */
196			}
197		}
198#ifdef INET6
199		if (args.next_hop6 != NULL) {
200			bcopy(args.next_hop6, (fwd_tag+1), len);
201			if (in6_localip(&args.next_hop6->sin6_addr))
202				(*m0)->m_flags |= M_FASTFWD_OURS;
203			(*m0)->m_flags |= M_IP6_NEXTHOP;
204		}
205#endif
206#ifdef INET
207		if (args.next_hop != NULL) {
208			bcopy(args.next_hop, (fwd_tag+1), len);
209			if (in_localip(args.next_hop->sin_addr))
210				(*m0)->m_flags |= M_FASTFWD_OURS;
211			(*m0)->m_flags |= M_IP_NEXTHOP;
212		}
213#endif
214		m_tag_prepend(*m0, fwd_tag);
215	    }
216#endif /* INET || INET6 */
217		break;
218
219	case IP_FW_DENY:
220		ret = EACCES;
221		break; /* i.e. drop */
222
223	case IP_FW_DUMMYNET:
224		ret = EACCES;
225		if (ip_dn_io_ptr == NULL)
226			break; /* i.e. drop */
227		if (mtod(*m0, struct ip *)->ip_v == 4)
228			ret = ip_dn_io_ptr(m0, dir, &args);
229		else if (mtod(*m0, struct ip *)->ip_v == 6)
230			ret = ip_dn_io_ptr(m0, dir | PROTO_IPV6, &args);
231		else
232			break; /* drop it */
233		/*
234		 * XXX should read the return value.
235		 * dummynet normally eats the packet and sets *m0=NULL
236		 * unless the packet can be sent immediately. In this
237		 * case args is updated and we should re-run the
238		 * check without clearing args.
239		 */
240		if (*m0 != NULL)
241			goto again;
242		break;
243
244	case IP_FW_TEE:
245	case IP_FW_DIVERT:
246		if (ip_divert_ptr == NULL) {
247			ret = EACCES;
248			break; /* i.e. drop */
249		}
250		ret = ipfw_divert(m0, dir, &args.rule,
251			(ipfw == IP_FW_TEE) ? 1 : 0);
252		/* continue processing for the original packet (tee). */
253		if (*m0)
254			goto again;
255		break;
256
257	case IP_FW_NGTEE:
258	case IP_FW_NETGRAPH:
259		if (ng_ipfw_input_p == NULL) {
260			ret = EACCES;
261			break; /* i.e. drop */
262		}
263		ret = ng_ipfw_input_p(m0, dir, &args,
264			(ipfw == IP_FW_NGTEE) ? 1 : 0);
265		if (ipfw == IP_FW_NGTEE) /* ignore errors for NGTEE */
266			goto again;	/* continue with packet */
267		break;
268
269	case IP_FW_NAT:
270		/* honor one-pass in case of successful nat */
271		if (V_fw_one_pass)
272			break; /* ret is already 0 */
273		goto again;
274
275	case IP_FW_REASS:
276		goto again;		/* continue with packet */
277
278	default:
279		KASSERT(0, ("%s: unknown retval", __func__));
280	}
281
282	if (ret != 0) {
283		if (*m0)
284			FREE_PKT(*m0);
285		*m0 = NULL;
286	}
287
288	return ret;
289}
290
291/*
292 * ipfw processing for ethernet packets (in and out).
293 * Inteface is NULL from ether_demux, and ifp from
294 * ether_output_frame.
295 */
296int
297ipfw_check_frame(void *arg, struct mbuf **m0, struct ifnet *dst, int dir,
298    struct inpcb *inp)
299{
300	struct ether_header *eh;
301	struct ether_header save_eh;
302	struct mbuf *m;
303	int i, ret;
304	struct ip_fw_args args;
305	struct m_tag *mtag;
306
307	/* fetch start point from rule, if any */
308	mtag = m_tag_locate(*m0, MTAG_IPFW_RULE, 0, NULL);
309	if (mtag == NULL) {
310		args.rule.slot = 0;
311	} else {
312		/* dummynet packet, already partially processed */
313		struct ipfw_rule_ref *r;
314
315		/* XXX can we free it after use ? */
316		mtag->m_tag_id = PACKET_TAG_NONE;
317		r = (struct ipfw_rule_ref *)(mtag + 1);
318		if (r->info & IPFW_ONEPASS)
319			return (0);
320		args.rule = *r;
321	}
322
323	/* I need some amt of data to be contiguous */
324	m = *m0;
325	i = min(m->m_pkthdr.len, max_protohdr);
326	if (m->m_len < i) {
327		m = m_pullup(m, i);
328		if (m == NULL) {
329			*m0 = m;
330			return (0);
331		}
332	}
333	eh = mtod(m, struct ether_header *);
334	save_eh = *eh;			/* save copy for restore below */
335	m_adj(m, ETHER_HDR_LEN);	/* strip ethernet header */
336
337	args.m = m;		/* the packet we are looking at		*/
338	args.oif = dir == PFIL_OUT ? dst: NULL;	/* destination, if any	*/
339	args.next_hop = NULL;	/* we do not support forward yet	*/
340	args.next_hop6 = NULL;	/* we do not support forward yet	*/
341	args.eh = &save_eh;	/* MAC header for bridged/MAC packets	*/
342	args.inp = NULL;	/* used by ipfw uid/gid/jail rules	*/
343	i = ipfw_chk(&args);
344	m = args.m;
345	if (m != NULL) {
346		/*
347		 * Restore Ethernet header, as needed, in case the
348		 * mbuf chain was replaced by ipfw.
349		 */
350		M_PREPEND(m, ETHER_HDR_LEN, M_NOWAIT);
351		if (m == NULL) {
352			*m0 = NULL;
353			return (0);
354		}
355		if (eh != mtod(m, struct ether_header *))
356			bcopy(&save_eh, mtod(m, struct ether_header *),
357				ETHER_HDR_LEN);
358	}
359	*m0 = m;
360
361	ret = 0;
362	/* Check result of ipfw_chk() */
363	switch (i) {
364	case IP_FW_PASS:
365		break;
366
367	case IP_FW_DENY:
368		ret = EACCES;
369		break; /* i.e. drop */
370
371	case IP_FW_DUMMYNET:
372		ret = EACCES;
373		int dir;
374
375		if (ip_dn_io_ptr == NULL)
376			break; /* i.e. drop */
377
378		*m0 = NULL;
379		dir = PROTO_LAYER2 | (dst ? DIR_OUT : DIR_IN);
380		ip_dn_io_ptr(&m, dir, &args);
381		return 0;
382
383	default:
384		KASSERT(0, ("%s: unknown retval", __func__));
385	}
386
387	if (ret != 0) {
388		if (*m0)
389			FREE_PKT(*m0);
390		*m0 = NULL;
391	}
392
393	return ret;
394}
395
396/* do the divert, return 1 on error 0 on success */
397static int
398ipfw_divert(struct mbuf **m0, int incoming, struct ipfw_rule_ref *rule,
399	int tee)
400{
401	/*
402	 * ipfw_chk() has already tagged the packet with the divert tag.
403	 * If tee is set, copy packet and return original.
404	 * If not tee, consume packet and send it to divert socket.
405	 */
406	struct mbuf *clone;
407	struct ip *ip = mtod(*m0, struct ip *);
408	struct m_tag *tag;
409
410	/* Cloning needed for tee? */
411	if (tee == 0) {
412		clone = *m0;	/* use the original mbuf */
413		*m0 = NULL;
414	} else {
415		clone = m_dup(*m0, M_NOWAIT);
416		/* If we cannot duplicate the mbuf, we sacrifice the divert
417		 * chain and continue with the tee-ed packet.
418		 */
419		if (clone == NULL)
420			return 1;
421	}
422
423	/*
424	 * Divert listeners can normally handle non-fragmented packets,
425	 * but we can only reass in the non-tee case.
426	 * This means that listeners on a tee rule may get fragments,
427	 * and have to live with that.
428	 * Note that we now have the 'reass' ipfw option so if we care
429	 * we can do it before a 'tee'.
430	 */
431	if (!tee) switch (ip->ip_v) {
432	case IPVERSION:
433	    if (ntohs(ip->ip_off) & (IP_MF | IP_OFFMASK)) {
434		int hlen;
435		struct mbuf *reass;
436
437		reass = ip_reass(clone); /* Reassemble packet. */
438		if (reass == NULL)
439			return 0; /* not an error */
440		/* if reass = NULL then it was consumed by ip_reass */
441		/*
442		 * IP header checksum fixup after reassembly and leave header
443		 * in network byte order.
444		 */
445		ip = mtod(reass, struct ip *);
446		hlen = ip->ip_hl << 2;
447		ip->ip_sum = 0;
448		if (hlen == sizeof(struct ip))
449			ip->ip_sum = in_cksum_hdr(ip);
450		else
451			ip->ip_sum = in_cksum(reass, hlen);
452		clone = reass;
453	    }
454	    break;
455#ifdef INET6
456	case IPV6_VERSION >> 4:
457	    {
458	    struct ip6_hdr *const ip6 = mtod(clone, struct ip6_hdr *);
459
460		if (ip6->ip6_nxt == IPPROTO_FRAGMENT) {
461			int nxt, off;
462
463			off = sizeof(struct ip6_hdr);
464			nxt = frag6_input(&clone, &off, 0);
465			if (nxt == IPPROTO_DONE)
466				return (0);
467		}
468		break;
469	    }
470#endif
471	}
472
473	/* attach a tag to the packet with the reinject info */
474	tag = m_tag_alloc(MTAG_IPFW_RULE, 0,
475		    sizeof(struct ipfw_rule_ref), M_NOWAIT);
476	if (tag == NULL) {
477		FREE_PKT(clone);
478		return 1;
479	}
480	*((struct ipfw_rule_ref *)(tag+1)) = *rule;
481	m_tag_prepend(clone, tag);
482
483	/* Do the dirty job... */
484	ip_divert_ptr(clone, incoming);
485	return 0;
486}
487
488/*
489 * attach or detach hooks for a given protocol family
490 */
491static int
492ipfw_hook(int onoff, int pf)
493{
494	struct pfil_head *pfh;
495	void *hook_func;
496
497	pfh = pfil_head_get(PFIL_TYPE_AF, pf);
498	if (pfh == NULL)
499		return ENOENT;
500
501	hook_func = (pf == AF_LINK) ? ipfw_check_frame : ipfw_check_packet;
502
503	(void) (onoff ? pfil_add_hook : pfil_remove_hook)
504	    (hook_func, NULL, PFIL_IN | PFIL_OUT | PFIL_WAITOK, pfh);
505
506	return 0;
507}
508
509int
510ipfw_attach_hooks(int arg)
511{
512	int error = 0;
513
514	if (arg == 0) /* detach */
515		ipfw_hook(0, AF_INET);
516	else if (V_fw_enable && ipfw_hook(1, AF_INET) != 0) {
517                error = ENOENT; /* see ip_fw_pfil.c::ipfw_hook() */
518                printf("ipfw_hook() error\n");
519        }
520#ifdef INET6
521	if (arg == 0) /* detach */
522		ipfw_hook(0, AF_INET6);
523	else if (V_fw6_enable && ipfw_hook(1, AF_INET6) != 0) {
524                error = ENOENT;
525                printf("ipfw6_hook() error\n");
526        }
527#endif
528	if (arg == 0) /* detach */
529		ipfw_hook(0, AF_LINK);
530	else if (V_fwlink_enable && ipfw_hook(1, AF_LINK) != 0) {
531                error = ENOENT;
532                printf("ipfw_link_hook() error\n");
533        }
534	return error;
535}
536
537int
538ipfw_chg_hook(SYSCTL_HANDLER_ARGS)
539{
540	int newval;
541	int error;
542	int af;
543
544	if (arg1 == &V_fw_enable)
545		af = AF_INET;
546#ifdef INET6
547	else if (arg1 == &V_fw6_enable)
548		af = AF_INET6;
549#endif
550	else if (arg1 == &V_fwlink_enable)
551		af = AF_LINK;
552	else
553		return (EINVAL);
554
555	newval = *(int *)arg1;
556	/* Handle sysctl change */
557	error = sysctl_handle_int(oidp, &newval, 0, req);
558
559	if (error)
560		return (error);
561
562	/* Formalize new value */
563	newval = (newval) ? 1 : 0;
564
565	if (*(int *)arg1 == newval)
566		return (0);
567
568	error = ipfw_hook(newval, af);
569	if (error)
570		return (error);
571	*(int *)arg1 = newval;
572
573	return (0);
574}
575/* end of file */
576