npf_handler.c revision 1.43 1 1.43 maxv /* $NetBSD: npf_handler.c,v 1.43 2018/07/10 15:46:58 maxv Exp $ */
2 1.1 rmind
3 1.1 rmind /*-
4 1.26 rmind * Copyright (c) 2009-2013 The NetBSD Foundation, Inc.
5 1.1 rmind * All rights reserved.
6 1.1 rmind *
7 1.1 rmind * This material is based upon work partially supported by The
8 1.1 rmind * NetBSD Foundation under a contract with Mindaugas Rasiukevicius.
9 1.1 rmind *
10 1.1 rmind * Redistribution and use in source and binary forms, with or without
11 1.1 rmind * modification, are permitted provided that the following conditions
12 1.1 rmind * are met:
13 1.1 rmind * 1. Redistributions of source code must retain the above copyright
14 1.1 rmind * notice, this list of conditions and the following disclaimer.
15 1.1 rmind * 2. Redistributions in binary form must reproduce the above copyright
16 1.1 rmind * notice, this list of conditions and the following disclaimer in the
17 1.1 rmind * documentation and/or other materials provided with the distribution.
18 1.1 rmind *
19 1.1 rmind * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.1 rmind * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.1 rmind * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.1 rmind * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.1 rmind * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.1 rmind * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.1 rmind * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.1 rmind * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.1 rmind * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.1 rmind * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.1 rmind * POSSIBILITY OF SUCH DAMAGE.
30 1.1 rmind */
31 1.1 rmind
32 1.1 rmind /*
33 1.1 rmind * NPF packet handler.
34 1.28 rmind *
35 1.28 rmind * Note: pfil(9) hooks are currently locked by softnet_lock and kernel-lock.
36 1.1 rmind */
37 1.1 rmind
38 1.35 christos #ifdef _KERNEL
39 1.1 rmind #include <sys/cdefs.h>
40 1.43 maxv __KERNEL_RCSID(0, "$NetBSD: npf_handler.c,v 1.43 2018/07/10 15:46:58 maxv Exp $");
41 1.1 rmind
42 1.14 rmind #include <sys/types.h>
43 1.1 rmind #include <sys/param.h>
44 1.1 rmind
45 1.1 rmind #include <sys/mbuf.h>
46 1.1 rmind #include <sys/mutex.h>
47 1.1 rmind #include <net/if.h>
48 1.1 rmind #include <net/pfil.h>
49 1.1 rmind #include <sys/socketvar.h>
50 1.1 rmind
51 1.4 rmind #include <netinet/in_systm.h>
52 1.4 rmind #include <netinet/in.h>
53 1.4 rmind #include <netinet/ip_var.h>
54 1.8 zoltan #include <netinet/ip6.h>
55 1.8 zoltan #include <netinet6/ip6_var.h>
56 1.35 christos #endif
57 1.4 rmind
58 1.1 rmind #include "npf_impl.h"
59 1.31 rmind #include "npf_conn.h"
60 1.1 rmind
61 1.35 christos #if defined(_NPF_STANDALONE)
62 1.35 christos #define m_freem(m) npf->mbufops->free(m)
63 1.35 christos #define m_clear_flag(m,f)
64 1.35 christos #else
65 1.35 christos #define m_clear_flag(m,f) (m)->m_flags &= ~(f)
66 1.35 christos #endif
67 1.1 rmind
68 1.26 rmind #ifndef INET6
69 1.26 rmind #define ip6_reass_packet(x, y) ENOTSUP
70 1.26 rmind #endif
71 1.26 rmind
72 1.24 rmind static int
73 1.42 maxv npf_reassembly(npf_t *npf, npf_cache_t *npc, bool *mff)
74 1.24 rmind {
75 1.32 rmind nbuf_t *nbuf = npc->npc_nbuf;
76 1.24 rmind int error = EINVAL;
77 1.42 maxv struct mbuf *m;
78 1.42 maxv
79 1.42 maxv *mff = false;
80 1.42 maxv m = nbuf_head_mbuf(nbuf);
81 1.24 rmind
82 1.24 rmind /* Reset the mbuf as it may have changed. */
83 1.24 rmind nbuf_reset(nbuf);
84 1.24 rmind
85 1.24 rmind if (npf_iscached(npc, NPC_IP4)) {
86 1.43 maxv error = ip_reass_packet(&m);
87 1.42 maxv KASSERT(!error || (m != NULL));
88 1.24 rmind } else if (npf_iscached(npc, NPC_IP6)) {
89 1.42 maxv error = ip6_reass_packet(&m, npc->npc_hlen);
90 1.42 maxv if (error && m == NULL) {
91 1.25 rmind memset(nbuf, 0, sizeof(nbuf_t));
92 1.25 rmind }
93 1.24 rmind }
94 1.24 rmind if (error) {
95 1.35 christos npf_stats_inc(npf, NPF_STAT_REASSFAIL);
96 1.24 rmind return error;
97 1.24 rmind }
98 1.42 maxv if (m == NULL) {
99 1.24 rmind /* More fragments should come. */
100 1.35 christos npf_stats_inc(npf, NPF_STAT_FRAGMENTS);
101 1.42 maxv *mff = true;
102 1.24 rmind return 0;
103 1.24 rmind }
104 1.24 rmind
105 1.24 rmind /*
106 1.24 rmind * Reassembly is complete, we have the final packet.
107 1.24 rmind * Cache again, since layer 4 data is accessible now.
108 1.24 rmind */
109 1.42 maxv nbuf_init(npf, nbuf, m, nbuf->nb_ifp);
110 1.24 rmind npc->npc_info = 0;
111 1.24 rmind
112 1.38 maxv if (npf_cache_all(npc) & (NPC_IPFRAG|NPC_FMTERR)) {
113 1.24 rmind return EINVAL;
114 1.24 rmind }
115 1.35 christos npf_stats_inc(npf, NPF_STAT_REASSEMBLY);
116 1.24 rmind return 0;
117 1.24 rmind }
118 1.24 rmind
119 1.1 rmind /*
120 1.2 rmind * npf_packet_handler: main packet handling routine for layer 3.
121 1.1 rmind *
122 1.1 rmind * Note: packet flow and inspection logic is in strict order.
123 1.1 rmind */
124 1.35 christos __dso_public int
125 1.35 christos npf_packet_handler(npf_t *npf, struct mbuf **mp, ifnet_t *ifp, int di)
126 1.1 rmind {
127 1.24 rmind nbuf_t nbuf;
128 1.1 rmind npf_cache_t npc;
129 1.31 rmind npf_conn_t *con;
130 1.1 rmind npf_rule_t *rl;
131 1.5 rmind npf_rproc_t *rp;
132 1.37 christos int error, decision, flags;
133 1.34 rmind uint32_t ntag;
134 1.36 christos npf_match_info_t mi;
135 1.42 maxv bool mff;
136 1.1 rmind
137 1.35 christos /* QSBR checkpoint. */
138 1.35 christos pserialize_checkpoint(npf->qsbr);
139 1.35 christos KASSERT(ifp != NULL);
140 1.35 christos
141 1.1 rmind /*
142 1.1 rmind * Initialise packet information cache.
143 1.1 rmind * Note: it is enough to clear the info bits.
144 1.1 rmind */
145 1.35 christos npc.npc_ctx = npf;
146 1.35 christos nbuf_init(npf, &nbuf, *mp, ifp);
147 1.32 rmind npc.npc_nbuf = &nbuf;
148 1.1 rmind npc.npc_info = 0;
149 1.32 rmind
150 1.36 christos mi.mi_di = di;
151 1.36 christos mi.mi_rid = 0;
152 1.36 christos mi.mi_retfl = 0;
153 1.36 christos
154 1.42 maxv *mp = NULL;
155 1.14 rmind decision = NPF_DECISION_BLOCK;
156 1.2 rmind error = 0;
157 1.5 rmind rp = NULL;
158 1.40 maxv con = NULL;
159 1.1 rmind
160 1.38 maxv /* Cache everything. */
161 1.37 christos flags = npf_cache_all(&npc);
162 1.38 maxv
163 1.38 maxv /* If error on the format, leave quickly. */
164 1.38 maxv if (flags & NPC_FMTERR) {
165 1.38 maxv error = EINVAL;
166 1.42 maxv goto out;
167 1.38 maxv }
168 1.38 maxv
169 1.38 maxv /* Determine whether it is an IP fragment. */
170 1.37 christos if (__predict_false(flags & NPC_IPFRAG)) {
171 1.42 maxv /* Pass to IPv4/IPv6 reassembly mechanism. */
172 1.42 maxv error = npf_reassembly(npf, &npc, &mff);
173 1.18 rmind if (error) {
174 1.4 rmind goto out;
175 1.4 rmind }
176 1.42 maxv if (mff) {
177 1.42 maxv /* More fragments should come. */
178 1.4 rmind return 0;
179 1.4 rmind }
180 1.4 rmind }
181 1.4 rmind
182 1.34 rmind /* Just pass-through if specially tagged. */
183 1.34 rmind if (nbuf_find_tag(&nbuf, &ntag) == 0 && (ntag & NPF_NTAG_PASS) != 0) {
184 1.34 rmind goto pass;
185 1.34 rmind }
186 1.34 rmind
187 1.31 rmind /* Inspect the list of connections (if found, acquires a reference). */
188 1.32 rmind con = npf_conn_inspect(&npc, di, &error);
189 1.2 rmind
190 1.31 rmind /* If "passing" connection found - skip the ruleset inspection. */
191 1.36 christos if (con && npf_conn_pass(con, &mi, &rp)) {
192 1.35 christos npf_stats_inc(npf, NPF_STAT_PASS_CONN);
193 1.14 rmind KASSERT(error == 0);
194 1.2 rmind goto pass;
195 1.14 rmind }
196 1.32 rmind if (__predict_false(error)) {
197 1.24 rmind if (error == ENETUNREACH)
198 1.24 rmind goto block;
199 1.24 rmind goto out;
200 1.2 rmind }
201 1.1 rmind
202 1.7 rmind /* Acquire the lock, inspect the ruleset using this packet. */
203 1.26 rmind int slock = npf_config_read_enter();
204 1.35 christos npf_ruleset_t *rlset = npf_config_ruleset(npf);
205 1.26 rmind
206 1.32 rmind rl = npf_ruleset_inspect(&npc, rlset, di, NPF_LAYER_3);
207 1.32 rmind if (__predict_false(rl == NULL)) {
208 1.35 christos const bool pass = npf_default_pass(npf);
209 1.26 rmind npf_config_read_exit(slock);
210 1.14 rmind
211 1.26 rmind if (pass) {
212 1.35 christos npf_stats_inc(npf, NPF_STAT_PASS_DEFAULT);
213 1.2 rmind goto pass;
214 1.2 rmind }
215 1.35 christos npf_stats_inc(npf, NPF_STAT_BLOCK_DEFAULT);
216 1.6 rmind goto block;
217 1.1 rmind }
218 1.1 rmind
219 1.13 rmind /*
220 1.24 rmind * Get the rule procedure (acquires a reference) for association
221 1.31 rmind * with a connection (if any) and execution.
222 1.13 rmind */
223 1.6 rmind KASSERT(rp == NULL);
224 1.13 rmind rp = npf_rule_getrproc(rl);
225 1.6 rmind
226 1.26 rmind /* Conclude with the rule and release the lock. */
227 1.36 christos error = npf_rule_conclude(rl, &mi);
228 1.26 rmind npf_config_read_exit(slock);
229 1.26 rmind
230 1.2 rmind if (error) {
231 1.35 christos npf_stats_inc(npf, NPF_STAT_BLOCK_RULESET);
232 1.6 rmind goto block;
233 1.1 rmind }
234 1.35 christos npf_stats_inc(npf, NPF_STAT_PASS_RULESET);
235 1.1 rmind
236 1.14 rmind /*
237 1.31 rmind * Establish a "pass" connection, if required. Just proceed if
238 1.31 rmind * connection creation fails (e.g. due to unsupported protocol).
239 1.14 rmind */
240 1.36 christos if ((mi.mi_retfl & NPF_RULE_STATEFUL) != 0 && !con) {
241 1.32 rmind con = npf_conn_establish(&npc, di,
242 1.36 christos (mi.mi_retfl & NPF_RULE_MULTIENDS) == 0);
243 1.31 rmind if (con) {
244 1.26 rmind /*
245 1.26 rmind * Note: the reference on the rule procedure is
246 1.31 rmind * transfered to the connection. It will be
247 1.31 rmind * released on connection destruction.
248 1.26 rmind */
249 1.36 christos npf_conn_setpass(con, &mi, rp);
250 1.2 rmind }
251 1.1 rmind }
252 1.42 maxv
253 1.2 rmind pass:
254 1.14 rmind decision = NPF_DECISION_PASS;
255 1.2 rmind KASSERT(error == 0);
256 1.5 rmind /*
257 1.6 rmind * Perform NAT.
258 1.6 rmind */
259 1.32 rmind error = npf_do_nat(&npc, con, di);
260 1.42 maxv
261 1.6 rmind block:
262 1.6 rmind /*
263 1.22 rmind * Execute the rule procedure, if any is associated.
264 1.22 rmind * It may reverse the decision from pass to block.
265 1.5 rmind */
266 1.36 christos if (rp && !npf_rproc_run(&npc, rp, &mi, &decision)) {
267 1.31 rmind if (con) {
268 1.31 rmind npf_conn_release(con);
269 1.30 jakllsch }
270 1.30 jakllsch npf_rproc_release(rp);
271 1.42 maxv /* mbuf already freed */
272 1.30 jakllsch return 0;
273 1.5 rmind }
274 1.42 maxv
275 1.1 rmind out:
276 1.13 rmind /*
277 1.31 rmind * Release the reference on a connection. Release the reference
278 1.31 rmind * on a rule procedure only if there was no association.
279 1.13 rmind */
280 1.31 rmind if (con) {
281 1.31 rmind npf_conn_release(con);
282 1.6 rmind } else if (rp) {
283 1.13 rmind npf_rproc_release(rp);
284 1.1 rmind }
285 1.1 rmind
286 1.42 maxv /* Get the new mbuf pointer. */
287 1.24 rmind if ((*mp = nbuf_head_mbuf(&nbuf)) == NULL) {
288 1.25 rmind return error ? error : ENOMEM;
289 1.24 rmind }
290 1.24 rmind
291 1.14 rmind /* Pass the packet if decided and there is no error. */
292 1.14 rmind if (decision == NPF_DECISION_PASS && !error) {
293 1.3 rmind /*
294 1.3 rmind * XXX: Disable for now, it will be set accordingly later,
295 1.3 rmind * for optimisations (to reduce inspection).
296 1.3 rmind */
297 1.35 christos m_clear_flag(*mp, M_CANFASTFWD);
298 1.13 rmind return 0;
299 1.1 rmind }
300 1.13 rmind
301 1.13 rmind /*
302 1.13 rmind * Block the packet. ENETUNREACH is used to indicate blocking.
303 1.13 rmind * Depending on the flags and protocol, return TCP reset (RST) or
304 1.13 rmind * ICMP destination unreachable.
305 1.13 rmind */
306 1.36 christos if (mi.mi_retfl && npf_return_block(&npc, mi.mi_retfl)) {
307 1.16 rmind *mp = NULL;
308 1.13 rmind }
309 1.16 rmind
310 1.20 rmind if (!error) {
311 1.14 rmind error = ENETUNREACH;
312 1.13 rmind }
313 1.13 rmind
314 1.16 rmind if (*mp) {
315 1.35 christos /* Free the mbuf chain. */
316 1.16 rmind m_freem(*mp);
317 1.16 rmind *mp = NULL;
318 1.16 rmind }
319 1.1 rmind return error;
320 1.1 rmind }
321