npf_build.c revision 1.45.4.1 1 1.1 rmind /*-
2 1.45.4.1 christos * Copyright (c) 2011-2018 The NetBSD Foundation, Inc.
3 1.1 rmind * All rights reserved.
4 1.1 rmind *
5 1.1 rmind * This material is based upon work partially supported by The
6 1.1 rmind * NetBSD Foundation under a contract with Mindaugas Rasiukevicius.
7 1.1 rmind *
8 1.1 rmind * Redistribution and use in source and binary forms, with or without
9 1.1 rmind * modification, are permitted provided that the following conditions
10 1.1 rmind * are met:
11 1.1 rmind * 1. Redistributions of source code must retain the above copyright
12 1.1 rmind * notice, this list of conditions and the following disclaimer.
13 1.1 rmind * 2. Redistributions in binary form must reproduce the above copyright
14 1.1 rmind * notice, this list of conditions and the following disclaimer in the
15 1.1 rmind * documentation and/or other materials provided with the distribution.
16 1.1 rmind *
17 1.1 rmind * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
18 1.1 rmind * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
19 1.1 rmind * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
20 1.1 rmind * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
21 1.1 rmind * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
22 1.1 rmind * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
23 1.1 rmind * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
24 1.1 rmind * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
25 1.1 rmind * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
26 1.1 rmind * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
27 1.1 rmind * POSSIBILITY OF SUCH DAMAGE.
28 1.1 rmind */
29 1.1 rmind
30 1.1 rmind /*
31 1.1 rmind * npfctl(8) building of the configuration.
32 1.1 rmind */
33 1.1 rmind
34 1.1 rmind #include <sys/cdefs.h>
35 1.45.4.1 christos __RCSID("$NetBSD: npf_build.c,v 1.45.4.1 2019/06/10 22:10:34 christos Exp $");
36 1.1 rmind
37 1.1 rmind #include <sys/types.h>
38 1.41 christos #define __FAVOR_BSD
39 1.37 rmind #include <netinet/tcp.h>
40 1.1 rmind
41 1.1 rmind #include <stdlib.h>
42 1.1 rmind #include <inttypes.h>
43 1.1 rmind #include <string.h>
44 1.29 rmind #include <ctype.h>
45 1.33 rmind #include <unistd.h>
46 1.41 christos #include <fcntl.h>
47 1.14 rmind #include <errno.h>
48 1.1 rmind #include <err.h>
49 1.1 rmind
50 1.25 rmind #include <pcap/pcap.h>
51 1.25 rmind
52 1.1 rmind #include "npfctl.h"
53 1.1 rmind
54 1.18 rmind #define MAX_RULE_NESTING 16
55 1.18 rmind
56 1.1 rmind static nl_config_t * npf_conf = NULL;
57 1.1 rmind static bool npf_debug = false;
58 1.18 rmind static nl_rule_t * the_rule = NULL;
59 1.18 rmind
60 1.45.4.1 christos static bool defgroup = false;
61 1.18 rmind static nl_rule_t * current_group[MAX_RULE_NESTING];
62 1.18 rmind static unsigned rule_nesting_level = 0;
63 1.43 rmind static unsigned npfctl_tid_counter = 0;
64 1.1 rmind
65 1.27 rmind static void npfctl_dump_bpf(struct bpf_program *);
66 1.27 rmind
67 1.1 rmind void
68 1.1 rmind npfctl_config_init(bool debug)
69 1.1 rmind {
70 1.1 rmind npf_conf = npf_config_create();
71 1.1 rmind if (npf_conf == NULL) {
72 1.1 rmind errx(EXIT_FAILURE, "npf_config_create failed");
73 1.1 rmind }
74 1.1 rmind npf_debug = debug;
75 1.18 rmind memset(current_group, 0, sizeof(current_group));
76 1.1 rmind }
77 1.1 rmind
78 1.1 rmind int
79 1.45.4.1 christos npfctl_config_send(int fd)
80 1.1 rmind {
81 1.41 christos npf_error_t errinfo;
82 1.41 christos int error = 0;
83 1.1 rmind
84 1.18 rmind if (!defgroup) {
85 1.1 rmind errx(EXIT_FAILURE, "default group was not defined");
86 1.1 rmind }
87 1.45.4.1 christos error = npf_config_submit(npf_conf, fd, &errinfo);
88 1.39 rmind if (error == EEXIST) { /* XXX */
89 1.39 rmind errx(EXIT_FAILURE, "(re)load failed: "
90 1.39 rmind "some table has a duplicate entry?");
91 1.39 rmind }
92 1.3 rmind if (error) {
93 1.41 christos npfctl_print_error(&errinfo);
94 1.3 rmind }
95 1.41 christos npf_config_destroy(npf_conf);
96 1.41 christos return error;
97 1.41 christos }
98 1.41 christos
99 1.41 christos void
100 1.41 christos npfctl_config_save(nl_config_t *ncf, const char *outfile)
101 1.41 christos {
102 1.41 christos void *blob;
103 1.41 christos size_t len;
104 1.41 christos int fd;
105 1.41 christos
106 1.41 christos blob = npf_config_export(ncf, &len);
107 1.41 christos if (!blob)
108 1.41 christos err(EXIT_FAILURE, "npf_config_export");
109 1.41 christos if ((fd = open(outfile, O_CREAT | O_TRUNC | O_WRONLY, 0644)) == -1)
110 1.41 christos err(EXIT_FAILURE, "could not open %s", outfile);
111 1.41 christos if (write(fd, blob, len) != (ssize_t)len) {
112 1.41 christos err(EXIT_FAILURE, "write to %s failed", outfile);
113 1.25 rmind }
114 1.41 christos free(blob);
115 1.41 christos close(fd);
116 1.1 rmind }
117 1.1 rmind
118 1.45.4.1 christos void
119 1.45.4.1 christos npfctl_config_debug(const char *outfile)
120 1.45.4.1 christos {
121 1.45.4.1 christos printf("\nConfiguration:\n\n");
122 1.45.4.1 christos _npf_config_dump(npf_conf, STDOUT_FILENO);
123 1.45.4.1 christos
124 1.45.4.1 christos printf("\nSaving binary to %s\n", outfile);
125 1.45.4.1 christos npfctl_config_save(npf_conf, outfile);
126 1.45.4.1 christos npf_config_destroy(npf_conf);
127 1.45.4.1 christos }
128 1.45.4.1 christos
129 1.16 rmind nl_config_t *
130 1.16 rmind npfctl_config_ref(void)
131 1.16 rmind {
132 1.16 rmind return npf_conf;
133 1.16 rmind }
134 1.16 rmind
135 1.18 rmind nl_rule_t *
136 1.18 rmind npfctl_rule_ref(void)
137 1.18 rmind {
138 1.18 rmind return the_rule;
139 1.18 rmind }
140 1.18 rmind
141 1.28 rmind bool
142 1.13 rmind npfctl_debug_addif(const char *ifname)
143 1.13 rmind {
144 1.28 rmind const char tname[] = "npftest";
145 1.13 rmind const size_t tnamelen = sizeof(tname) - 1;
146 1.13 rmind
147 1.28 rmind if (npf_debug) {
148 1.28 rmind _npf_debug_addif(npf_conf, ifname);
149 1.28 rmind return strncmp(ifname, tname, tnamelen) == 0;
150 1.13 rmind }
151 1.28 rmind return 0;
152 1.13 rmind }
153 1.13 rmind
154 1.32 rmind unsigned
155 1.32 rmind npfctl_table_getid(const char *name)
156 1.1 rmind {
157 1.32 rmind unsigned tid = (unsigned)-1;
158 1.32 rmind nl_table_t *tl;
159 1.32 rmind
160 1.32 rmind /* XXX dynamic ruleset */
161 1.32 rmind if (!npf_conf) {
162 1.32 rmind return (unsigned)-1;
163 1.32 rmind }
164 1.32 rmind
165 1.32 rmind /* XXX: Iterating all as we need to rewind for the next call. */
166 1.32 rmind while ((tl = npf_table_iterate(npf_conf)) != NULL) {
167 1.32 rmind const char *tname = npf_table_getname(tl);
168 1.32 rmind if (strcmp(tname, name) == 0) {
169 1.32 rmind tid = npf_table_getid(tl);
170 1.32 rmind }
171 1.32 rmind }
172 1.32 rmind return tid;
173 1.1 rmind }
174 1.1 rmind
175 1.45.4.1 christos const char *
176 1.45.4.1 christos npfctl_table_getname(nl_config_t *ncf, unsigned tid, bool *ifaddr)
177 1.45.4.1 christos {
178 1.45.4.1 christos const char *name = NULL;
179 1.45.4.1 christos nl_table_t *tl;
180 1.45.4.1 christos
181 1.45.4.1 christos /* XXX: Iterating all as we need to rewind for the next call. */
182 1.45.4.1 christos while ((tl = npf_table_iterate(ncf)) != NULL) {
183 1.45.4.1 christos if (npf_table_getid(tl) == tid) {
184 1.45.4.1 christos name = npf_table_getname(tl);
185 1.45.4.1 christos }
186 1.45.4.1 christos }
187 1.45.4.1 christos if (!name) {
188 1.45.4.1 christos return NULL;
189 1.45.4.1 christos }
190 1.45.4.1 christos if (!strncmp(name, NPF_IFNET_TABLE_PREF, NPF_IFNET_TABLE_PREFLEN)) {
191 1.45.4.1 christos name += NPF_IFNET_TABLE_PREFLEN;
192 1.45.4.1 christos *ifaddr = true;
193 1.45.4.1 christos } else {
194 1.45.4.1 christos *ifaddr = false;
195 1.45.4.1 christos }
196 1.45.4.1 christos return name;
197 1.45.4.1 christos }
198 1.45.4.1 christos
199 1.7 rmind static in_port_t
200 1.1 rmind npfctl_get_singleport(const npfvar_t *vp)
201 1.1 rmind {
202 1.1 rmind port_range_t *pr;
203 1.7 rmind in_port_t *port;
204 1.1 rmind
205 1.1 rmind if (npfvar_get_count(vp) > 1) {
206 1.1 rmind yyerror("multiple ports are not valid");
207 1.1 rmind }
208 1.1 rmind pr = npfvar_get_data(vp, NPFVAR_PORT_RANGE, 0);
209 1.1 rmind if (pr->pr_start != pr->pr_end) {
210 1.1 rmind yyerror("port range is not valid");
211 1.1 rmind }
212 1.7 rmind port = &pr->pr_start;
213 1.7 rmind return *port;
214 1.1 rmind }
215 1.1 rmind
216 1.1 rmind static fam_addr_mask_t *
217 1.1 rmind npfctl_get_singlefam(const npfvar_t *vp)
218 1.1 rmind {
219 1.45.4.1 christos fam_addr_mask_t *am;
220 1.45.4.1 christos
221 1.45.4.1 christos if (npfvar_get_type(vp, 0) != NPFVAR_FAM) {
222 1.45.4.1 christos yyerror("map segment must be an address or network");
223 1.45.4.1 christos }
224 1.45.4.1 christos if (npfvar_get_count(vp) > 1) {
225 1.45.4.1 christos yyerror("map segment cannot have multiple static addresses");
226 1.45.4.1 christos }
227 1.45.4.1 christos am = npfvar_get_data(vp, NPFVAR_FAM, 0);
228 1.45.4.1 christos if (am == NULL) {
229 1.45.4.1 christos yyerror("invalid map segment");
230 1.45.4.1 christos }
231 1.45.4.1 christos return am;
232 1.45.4.1 christos }
233 1.45.4.1 christos
234 1.45.4.1 christos static unsigned
235 1.45.4.1 christos npfctl_get_singletable(const npfvar_t *vp)
236 1.45.4.1 christos {
237 1.45.4.1 christos unsigned *tid;
238 1.45.4.1 christos
239 1.1 rmind if (npfvar_get_count(vp) > 1) {
240 1.45.4.1 christos yyerror("multiple tables are not valid");
241 1.1 rmind }
242 1.45.4.1 christos tid = npfvar_get_data(vp, NPFVAR_TABLE, 0);
243 1.45.4.1 christos assert(tid != NULL);
244 1.45.4.1 christos return *tid;
245 1.1 rmind }
246 1.1 rmind
247 1.10 rmind static bool
248 1.25 rmind npfctl_build_fam(npf_bpf_t *ctx, sa_family_t family,
249 1.1 rmind fam_addr_mask_t *fam, int opts)
250 1.1 rmind {
251 1.1 rmind /*
252 1.1 rmind * If family is specified, address does not match it and the
253 1.1 rmind * address is extracted from the interface, then simply ignore.
254 1.1 rmind * Otherwise, address of invalid family was passed manually.
255 1.1 rmind */
256 1.1 rmind if (family != AF_UNSPEC && family != fam->fam_family) {
257 1.15 rmind if (!fam->fam_ifindex) {
258 1.1 rmind yyerror("specified address is not of the required "
259 1.1 rmind "family %d", family);
260 1.1 rmind }
261 1.10 rmind return false;
262 1.1 rmind }
263 1.30 rmind
264 1.25 rmind family = fam->fam_family;
265 1.30 rmind if (family != AF_INET && family != AF_INET6) {
266 1.30 rmind yyerror("family %d is not supported", family);
267 1.30 rmind }
268 1.1 rmind
269 1.1 rmind /*
270 1.1 rmind * Optimise 0.0.0.0/0 case to be NOP. Otherwise, address with
271 1.1 rmind * zero mask would never match and therefore is not valid.
272 1.1 rmind */
273 1.1 rmind if (fam->fam_mask == 0) {
274 1.30 rmind static const npf_addr_t zero; /* must be static */
275 1.10 rmind
276 1.1 rmind if (memcmp(&fam->fam_addr, &zero, sizeof(npf_addr_t))) {
277 1.1 rmind yyerror("filter criterion would never match");
278 1.1 rmind }
279 1.10 rmind return false;
280 1.1 rmind }
281 1.1 rmind
282 1.25 rmind npfctl_bpf_cidr(ctx, opts, family, &fam->fam_addr, fam->fam_mask);
283 1.10 rmind return true;
284 1.1 rmind }
285 1.1 rmind
286 1.1 rmind static void
287 1.25 rmind npfctl_build_vars(npf_bpf_t *ctx, sa_family_t family, npfvar_t *vars, int opts)
288 1.1 rmind {
289 1.6 christos const int type = npfvar_get_type(vars, 0);
290 1.1 rmind size_t i;
291 1.1 rmind
292 1.25 rmind npfctl_bpf_group(ctx);
293 1.1 rmind for (i = 0; i < npfvar_get_count(vars); i++) {
294 1.1 rmind void *data = npfvar_get_data(vars, type, i);
295 1.1 rmind assert(data != NULL);
296 1.1 rmind
297 1.1 rmind switch (type) {
298 1.1 rmind case NPFVAR_FAM: {
299 1.1 rmind fam_addr_mask_t *fam = data;
300 1.25 rmind npfctl_build_fam(ctx, family, fam, opts);
301 1.1 rmind break;
302 1.1 rmind }
303 1.1 rmind case NPFVAR_PORT_RANGE: {
304 1.1 rmind port_range_t *pr = data;
305 1.25 rmind npfctl_bpf_ports(ctx, opts, pr->pr_start, pr->pr_end);
306 1.1 rmind break;
307 1.1 rmind }
308 1.1 rmind case NPFVAR_TABLE: {
309 1.32 rmind u_int tid;
310 1.32 rmind memcpy(&tid, data, sizeof(u_int));
311 1.25 rmind npfctl_bpf_table(ctx, opts, tid);
312 1.1 rmind break;
313 1.1 rmind }
314 1.1 rmind default:
315 1.1 rmind assert(false);
316 1.1 rmind }
317 1.1 rmind }
318 1.42 rmind npfctl_bpf_endgroup(ctx, (opts & MATCH_INVERT) != 0);
319 1.1 rmind }
320 1.1 rmind
321 1.25 rmind static void
322 1.25 rmind npfctl_build_proto(npf_bpf_t *ctx, sa_family_t family, const opt_proto_t *op)
323 1.1 rmind {
324 1.1 rmind const npfvar_t *popts = op->op_opts;
325 1.10 rmind const int proto = op->op_proto;
326 1.25 rmind
327 1.25 rmind /* IP version and/or L4 protocol matching. */
328 1.25 rmind if (family != AF_UNSPEC || proto != -1) {
329 1.25 rmind npfctl_bpf_proto(ctx, family, proto);
330 1.25 rmind }
331 1.1 rmind
332 1.10 rmind switch (proto) {
333 1.1 rmind case IPPROTO_TCP:
334 1.25 rmind /* Build TCP flags matching (optional). */
335 1.25 rmind if (popts) {
336 1.25 rmind uint8_t *tf, *tf_mask;
337 1.25 rmind
338 1.25 rmind assert(npfvar_get_count(popts) == 2);
339 1.25 rmind tf = npfvar_get_data(popts, NPFVAR_TCPFLAG, 0);
340 1.25 rmind tf_mask = npfvar_get_data(popts, NPFVAR_TCPFLAG, 1);
341 1.37 rmind npfctl_bpf_tcpfl(ctx, *tf, *tf_mask, false);
342 1.1 rmind }
343 1.1 rmind break;
344 1.1 rmind case IPPROTO_ICMP:
345 1.12 spz case IPPROTO_ICMPV6:
346 1.25 rmind /* Build ICMP/ICMPv6 type and/or code matching. */
347 1.25 rmind if (popts) {
348 1.25 rmind int *icmp_type, *icmp_code;
349 1.25 rmind
350 1.25 rmind assert(npfvar_get_count(popts) == 2);
351 1.25 rmind icmp_type = npfvar_get_data(popts, NPFVAR_ICMP, 0);
352 1.25 rmind icmp_code = npfvar_get_data(popts, NPFVAR_ICMP, 1);
353 1.25 rmind npfctl_bpf_icmp(ctx, *icmp_type, *icmp_code);
354 1.12 spz }
355 1.12 spz break;
356 1.25 rmind default:
357 1.25 rmind /* No options for other protocols. */
358 1.1 rmind break;
359 1.10 rmind }
360 1.1 rmind }
361 1.1 rmind
362 1.1 rmind static bool
363 1.25 rmind npfctl_build_code(nl_rule_t *rl, sa_family_t family, const opt_proto_t *op,
364 1.27 rmind const filt_opts_t *fopts)
365 1.1 rmind {
366 1.45.4.1 christos bool noproto, noaddrs, noports, nostate, need_tcpudp = false;
367 1.7 rmind const addr_port_t *apfrom = &fopts->fo_from;
368 1.7 rmind const addr_port_t *apto = &fopts->fo_to;
369 1.10 rmind const int proto = op->op_proto;
370 1.25 rmind npf_bpf_t *bc;
371 1.42 rmind unsigned opts;
372 1.1 rmind size_t len;
373 1.1 rmind
374 1.25 rmind /* If none specified, then no byte-code. */
375 1.25 rmind noproto = family == AF_UNSPEC && proto == -1 && !op->op_opts;
376 1.20 rmind noaddrs = !apfrom->ap_netaddr && !apto->ap_netaddr;
377 1.20 rmind noports = !apfrom->ap_portrange && !apto->ap_portrange;
378 1.45.4.1 christos nostate = !(npf_rule_getattr(rl) & NPF_RULE_STATEFUL);
379 1.45.4.1 christos if (noproto && noaddrs && noports && nostate) {
380 1.1 rmind return false;
381 1.25 rmind }
382 1.1 rmind
383 1.25 rmind /*
384 1.25 rmind * Sanity check: ports can only be used with TCP or UDP protocol.
385 1.25 rmind * No filter options are supported for other protocols, only the
386 1.25 rmind * IP addresses are allowed.
387 1.25 rmind */
388 1.25 rmind if (!noports) {
389 1.25 rmind switch (proto) {
390 1.25 rmind case IPPROTO_TCP:
391 1.25 rmind case IPPROTO_UDP:
392 1.38 rmind break;
393 1.25 rmind case -1:
394 1.38 rmind need_tcpudp = true;
395 1.25 rmind break;
396 1.25 rmind default:
397 1.25 rmind yyerror("invalid filter options for protocol %d", proto);
398 1.25 rmind }
399 1.25 rmind }
400 1.1 rmind
401 1.25 rmind bc = npfctl_bpf_create();
402 1.1 rmind
403 1.10 rmind /* Build layer 4 protocol blocks. */
404 1.25 rmind npfctl_build_proto(bc, family, op);
405 1.10 rmind
406 1.37 rmind /*
407 1.37 rmind * If this is a stateful rule and TCP flags are not specified,
408 1.37 rmind * then add "flags S/SAFR" filter for TCP protocol case.
409 1.37 rmind */
410 1.37 rmind if ((npf_rule_getattr(rl) & NPF_RULE_STATEFUL) != 0 &&
411 1.37 rmind (proto == -1 || (proto == IPPROTO_TCP && !op->op_opts))) {
412 1.37 rmind npfctl_bpf_tcpfl(bc, TH_SYN,
413 1.37 rmind TH_SYN | TH_ACK | TH_FIN | TH_RST, proto == -1);
414 1.37 rmind }
415 1.37 rmind
416 1.1 rmind /* Build IP address blocks. */
417 1.42 rmind opts = MATCH_SRC | (fopts->fo_finvert ? MATCH_INVERT : 0);
418 1.42 rmind npfctl_build_vars(bc, family, apfrom->ap_netaddr, opts);
419 1.42 rmind opts = MATCH_DST | (fopts->fo_tinvert ? MATCH_INVERT : 0);
420 1.42 rmind npfctl_build_vars(bc, family, apto->ap_netaddr, opts);
421 1.1 rmind
422 1.1 rmind /* Build port-range blocks. */
423 1.38 rmind if (need_tcpudp) {
424 1.38 rmind /* TCP/UDP check for the ports. */
425 1.38 rmind npfctl_bpf_group(bc);
426 1.38 rmind npfctl_bpf_proto(bc, AF_UNSPEC, IPPROTO_TCP);
427 1.38 rmind npfctl_bpf_proto(bc, AF_UNSPEC, IPPROTO_UDP);
428 1.42 rmind npfctl_bpf_endgroup(bc, false);
429 1.38 rmind }
430 1.27 rmind npfctl_build_vars(bc, family, apfrom->ap_portrange, MATCH_SRC);
431 1.27 rmind npfctl_build_vars(bc, family, apto->ap_portrange, MATCH_DST);
432 1.25 rmind
433 1.25 rmind /* Set the byte-code marks, if any. */
434 1.25 rmind const void *bmarks = npfctl_bpf_bmarks(bc, &len);
435 1.25 rmind if (npf_rule_setinfo(rl, bmarks, len) == -1) {
436 1.25 rmind errx(EXIT_FAILURE, "npf_rule_setinfo failed");
437 1.25 rmind }
438 1.1 rmind
439 1.25 rmind /* Complete BPF byte-code and pass to the rule. */
440 1.25 rmind struct bpf_program *bf = npfctl_bpf_complete(bc);
441 1.40 rmind if (bf == NULL) {
442 1.40 rmind npfctl_bpf_destroy(bc);
443 1.40 rmind return true;
444 1.40 rmind }
445 1.25 rmind len = bf->bf_len * sizeof(struct bpf_insn);
446 1.10 rmind
447 1.25 rmind if (npf_rule_setcode(rl, NPF_CODE_BPF, bf->bf_insns, len) == -1) {
448 1.1 rmind errx(EXIT_FAILURE, "npf_rule_setcode failed");
449 1.1 rmind }
450 1.27 rmind npfctl_dump_bpf(bf);
451 1.25 rmind npfctl_bpf_destroy(bc);
452 1.25 rmind
453 1.1 rmind return true;
454 1.1 rmind }
455 1.1 rmind
456 1.4 rmind static void
457 1.27 rmind npfctl_build_pcap(nl_rule_t *rl, const char *filter)
458 1.27 rmind {
459 1.27 rmind const size_t maxsnaplen = 64 * 1024;
460 1.27 rmind struct bpf_program bf;
461 1.27 rmind size_t len;
462 1.27 rmind
463 1.27 rmind if (pcap_compile_nopcap(maxsnaplen, DLT_RAW, &bf,
464 1.27 rmind filter, 1, PCAP_NETMASK_UNKNOWN) == -1) {
465 1.27 rmind yyerror("invalid pcap-filter(7) syntax");
466 1.27 rmind }
467 1.27 rmind len = bf.bf_len * sizeof(struct bpf_insn);
468 1.27 rmind
469 1.27 rmind if (npf_rule_setcode(rl, NPF_CODE_BPF, bf.bf_insns, len) == -1) {
470 1.27 rmind errx(EXIT_FAILURE, "npf_rule_setcode failed");
471 1.27 rmind }
472 1.27 rmind npfctl_dump_bpf(&bf);
473 1.27 rmind pcap_freecode(&bf);
474 1.27 rmind }
475 1.27 rmind
476 1.27 rmind static void
477 1.4 rmind npfctl_build_rpcall(nl_rproc_t *rp, const char *name, npfvar_t *args)
478 1.4 rmind {
479 1.14 rmind npf_extmod_t *extmod;
480 1.14 rmind nl_ext_t *extcall;
481 1.14 rmind int error;
482 1.4 rmind
483 1.14 rmind extmod = npf_extmod_get(name, &extcall);
484 1.14 rmind if (extmod == NULL) {
485 1.4 rmind yyerror("unknown rule procedure '%s'", name);
486 1.4 rmind }
487 1.4 rmind
488 1.4 rmind for (size_t i = 0; i < npfvar_get_count(args); i++) {
489 1.14 rmind const char *param, *value;
490 1.14 rmind proc_param_t *p;
491 1.4 rmind
492 1.14 rmind p = npfvar_get_data(args, NPFVAR_PROC_PARAM, i);
493 1.14 rmind param = p->pp_param;
494 1.14 rmind value = p->pp_value;
495 1.14 rmind
496 1.14 rmind error = npf_extmod_param(extmod, extcall, param, value);
497 1.14 rmind switch (error) {
498 1.14 rmind case EINVAL:
499 1.14 rmind yyerror("invalid parameter '%s'", param);
500 1.14 rmind default:
501 1.14 rmind break;
502 1.4 rmind }
503 1.4 rmind }
504 1.14 rmind error = npf_rproc_extcall(rp, extcall);
505 1.14 rmind if (error) {
506 1.14 rmind yyerror(error == EEXIST ?
507 1.14 rmind "duplicate procedure call" : "unexpected error");
508 1.14 rmind }
509 1.4 rmind }
510 1.4 rmind
511 1.1 rmind /*
512 1.1 rmind * npfctl_build_rproc: create and insert a rule procedure.
513 1.1 rmind */
514 1.1 rmind void
515 1.4 rmind npfctl_build_rproc(const char *name, npfvar_t *procs)
516 1.1 rmind {
517 1.1 rmind nl_rproc_t *rp;
518 1.4 rmind size_t i;
519 1.1 rmind
520 1.1 rmind rp = npf_rproc_create(name);
521 1.1 rmind if (rp == NULL) {
522 1.23 christos errx(EXIT_FAILURE, "%s failed", __func__);
523 1.1 rmind }
524 1.4 rmind
525 1.4 rmind for (i = 0; i < npfvar_get_count(procs); i++) {
526 1.14 rmind proc_call_t *pc = npfvar_get_data(procs, NPFVAR_PROC, i);
527 1.14 rmind npfctl_build_rpcall(rp, pc->pc_name, pc->pc_opts);
528 1.4 rmind }
529 1.45.4.1 christos npf_rproc_insert(npf_conf, rp);
530 1.1 rmind }
531 1.1 rmind
532 1.22 rmind void
533 1.28 rmind npfctl_build_maprset(const char *name, int attr, const char *ifname)
534 1.22 rmind {
535 1.22 rmind const int attr_di = (NPF_RULE_IN | NPF_RULE_OUT);
536 1.22 rmind nl_rule_t *rl;
537 1.22 rmind
538 1.22 rmind /* If no direction is not specified, then both. */
539 1.22 rmind if ((attr & attr_di) == 0) {
540 1.22 rmind attr |= attr_di;
541 1.22 rmind }
542 1.22 rmind /* Allow only "in/out" attributes. */
543 1.45 rmind attr = NPF_RULE_GROUP | NPF_RULE_DYNAMIC | (attr & attr_di);
544 1.28 rmind rl = npf_rule_create(name, attr, ifname);
545 1.22 rmind npf_nat_insert(npf_conf, rl, NPF_PRI_LAST);
546 1.22 rmind }
547 1.22 rmind
548 1.1 rmind /*
549 1.45.4.1 christos * npfctl_build_group: create a group, update the current group pointer
550 1.45.4.1 christos * and increase the nesting level.
551 1.1 rmind */
552 1.1 rmind void
553 1.28 rmind npfctl_build_group(const char *name, int attr, const char *ifname, bool def)
554 1.1 rmind {
555 1.1 rmind const int attr_di = (NPF_RULE_IN | NPF_RULE_OUT);
556 1.1 rmind nl_rule_t *rl;
557 1.1 rmind
558 1.18 rmind if (def || (attr & attr_di) == 0) {
559 1.18 rmind attr |= attr_di;
560 1.18 rmind }
561 1.18 rmind
562 1.28 rmind rl = npf_rule_create(name, attr | NPF_RULE_GROUP, ifname);
563 1.18 rmind npf_rule_setprio(rl, NPF_PRI_LAST);
564 1.18 rmind if (def) {
565 1.18 rmind if (defgroup) {
566 1.1 rmind yyerror("multiple default groups are not valid");
567 1.1 rmind }
568 1.18 rmind if (rule_nesting_level) {
569 1.18 rmind yyerror("default group can only be at the top level");
570 1.18 rmind }
571 1.45.4.1 christos defgroup = true;
572 1.18 rmind }
573 1.1 rmind
574 1.18 rmind /* Set the current group and increase the nesting level. */
575 1.18 rmind if (rule_nesting_level >= MAX_RULE_NESTING) {
576 1.18 rmind yyerror("rule nesting limit reached");
577 1.1 rmind }
578 1.18 rmind current_group[++rule_nesting_level] = rl;
579 1.18 rmind }
580 1.1 rmind
581 1.18 rmind void
582 1.18 rmind npfctl_build_group_end(void)
583 1.18 rmind {
584 1.45.4.1 christos nl_rule_t *parent, *group;
585 1.45.4.1 christos
586 1.18 rmind assert(rule_nesting_level > 0);
587 1.45.4.1 christos parent = current_group[rule_nesting_level - 1];
588 1.45.4.1 christos group = current_group[rule_nesting_level];
589 1.18 rmind current_group[rule_nesting_level--] = NULL;
590 1.45.4.1 christos
591 1.45.4.1 christos /* Note: if the parent is NULL, then it is a global rule. */
592 1.45.4.1 christos npf_rule_insert(npf_conf, parent, group);
593 1.1 rmind }
594 1.1 rmind
595 1.1 rmind /*
596 1.26 rmind * npfctl_build_rule: create a rule, build byte-code from filter options,
597 1.18 rmind * if any, and insert into the ruleset of current group, or set the rule.
598 1.1 rmind */
599 1.1 rmind void
600 1.28 rmind npfctl_build_rule(uint32_t attr, const char *ifname, sa_family_t family,
601 1.27 rmind const opt_proto_t *op, const filt_opts_t *fopts,
602 1.27 rmind const char *pcap_filter, const char *rproc)
603 1.1 rmind {
604 1.1 rmind nl_rule_t *rl;
605 1.1 rmind
606 1.19 rmind attr |= (npf_conf ? 0 : NPF_RULE_DYNAMIC);
607 1.21 rmind
608 1.28 rmind rl = npf_rule_create(NULL, attr, ifname);
609 1.27 rmind if (pcap_filter) {
610 1.27 rmind npfctl_build_pcap(rl, pcap_filter);
611 1.27 rmind } else {
612 1.27 rmind npfctl_build_code(rl, family, op, fopts);
613 1.27 rmind }
614 1.27 rmind
615 1.18 rmind if (rproc) {
616 1.18 rmind npf_rule_setproc(rl, rproc);
617 1.18 rmind }
618 1.18 rmind
619 1.18 rmind if (npf_conf) {
620 1.18 rmind nl_rule_t *cg = current_group[rule_nesting_level];
621 1.18 rmind
622 1.18 rmind if (rproc && !npf_rproc_exists_p(npf_conf, rproc)) {
623 1.18 rmind yyerror("rule procedure '%s' is not defined", rproc);
624 1.18 rmind }
625 1.18 rmind assert(cg != NULL);
626 1.18 rmind npf_rule_setprio(rl, NPF_PRI_LAST);
627 1.18 rmind npf_rule_insert(npf_conf, cg, rl);
628 1.18 rmind } else {
629 1.18 rmind /* We have parsed a single rule - set it. */
630 1.18 rmind the_rule = rl;
631 1.1 rmind }
632 1.1 rmind }
633 1.1 rmind
634 1.1 rmind /*
635 1.14 rmind * npfctl_build_nat: create a single NAT policy of a specified
636 1.13 rmind * type with a given filter options.
637 1.13 rmind */
638 1.36 rmind static nl_nat_t *
639 1.36 rmind npfctl_build_nat(int type, const char *ifname, const addr_port_t *ap,
640 1.44 rmind const opt_proto_t *op, const filt_opts_t *fopts, u_int flags)
641 1.13 rmind {
642 1.44 rmind const opt_proto_t def_op = { .op_proto = -1, .op_opts = NULL };
643 1.45.4.1 christos fam_addr_mask_t *am;
644 1.45.4.1 christos sa_family_t family;
645 1.13 rmind in_port_t port;
646 1.13 rmind nl_nat_t *nat;
647 1.45.4.1 christos unsigned tid;
648 1.13 rmind
649 1.35 rmind if (ap->ap_portrange) {
650 1.45 rmind /*
651 1.45 rmind * The port forwarding case. In such case, there has to
652 1.45 rmind * be a single port used for translation; we keep the port
653 1.45 rmind * translation on, but disable the port map.
654 1.45 rmind */
655 1.35 rmind port = npfctl_get_singleport(ap->ap_portrange);
656 1.45.4.1 christos flags = (flags & ~NPF_NAT_PORTMAP) | NPF_NAT_PORTS;
657 1.35 rmind } else {
658 1.13 rmind port = 0;
659 1.13 rmind }
660 1.44 rmind if (!op) {
661 1.44 rmind op = &def_op;
662 1.44 rmind }
663 1.13 rmind
664 1.45.4.1 christos nat = npf_nat_create(type, flags, ifname);
665 1.45.4.1 christos
666 1.45.4.1 christos switch (npfvar_get_type(ap->ap_netaddr, 0)) {
667 1.45.4.1 christos case NPFVAR_FAM:
668 1.45.4.1 christos /* Translation address. */
669 1.45.4.1 christos am = npfctl_get_singlefam(ap->ap_netaddr);
670 1.45.4.1 christos family = am->fam_family;
671 1.45.4.1 christos npf_nat_setaddr(nat, family, &am->fam_addr, am->fam_mask);
672 1.45.4.1 christos break;
673 1.45.4.1 christos case NPFVAR_TABLE:
674 1.45.4.1 christos /* Translation table. */
675 1.45.4.1 christos family = AF_UNSPEC;
676 1.45.4.1 christos tid = npfctl_get_singletable(ap->ap_netaddr);
677 1.45.4.1 christos npf_nat_settable(nat, tid);
678 1.45.4.1 christos break;
679 1.45.4.1 christos default:
680 1.45.4.1 christos yyerror("map must have a valid translation address");
681 1.45.4.1 christos abort();
682 1.45.4.1 christos }
683 1.45.4.1 christos npf_nat_setport(nat, port);
684 1.45.4.1 christos npfctl_build_code(nat, family, op, fopts);
685 1.36 rmind return nat;
686 1.13 rmind }
687 1.13 rmind
688 1.13 rmind /*
689 1.14 rmind * npfctl_build_natseg: validate and create NAT policies.
690 1.1 rmind */
691 1.1 rmind void
692 1.45 rmind npfctl_build_natseg(int sd, int type, unsigned mflags, const char *ifname,
693 1.44 rmind const addr_port_t *ap1, const addr_port_t *ap2, const opt_proto_t *op,
694 1.45.4.1 christos const filt_opts_t *fopts, unsigned algo)
695 1.1 rmind {
696 1.36 rmind fam_addr_mask_t *am1 = NULL, *am2 = NULL;
697 1.36 rmind nl_nat_t *nt1 = NULL, *nt2 = NULL;
698 1.7 rmind filt_opts_t imfopts;
699 1.36 rmind uint16_t adj = 0;
700 1.45.4.1 christos unsigned flags;
701 1.13 rmind bool binat;
702 1.1 rmind
703 1.28 rmind assert(ifname != NULL);
704 1.7 rmind
705 1.13 rmind /*
706 1.45.4.1 christos * Validate that mapping has the translation address(es) set.
707 1.45.4.1 christos */
708 1.45.4.1 christos if ((type & NPF_NATIN) != 0 && ap1->ap_netaddr == NULL) {
709 1.45.4.1 christos yyerror("inbound network segment is not specified");
710 1.45.4.1 christos }
711 1.45.4.1 christos if ((type & NPF_NATOUT) != 0 && ap2->ap_netaddr == NULL) {
712 1.45.4.1 christos yyerror("outbound network segment is not specified");
713 1.45.4.1 christos }
714 1.45.4.1 christos
715 1.45.4.1 christos /*
716 1.13 rmind * Bi-directional NAT is a combination of inbound NAT and outbound
717 1.35 rmind * NAT policies with the translation segments inverted respectively.
718 1.13 rmind */
719 1.13 rmind binat = (NPF_NATIN | NPF_NATOUT) == type;
720 1.7 rmind
721 1.35 rmind switch (sd) {
722 1.35 rmind case NPFCTL_NAT_DYNAMIC:
723 1.35 rmind /*
724 1.45.4.1 christos * Dynamic NAT: stateful translation -- traditional NAPT
725 1.45.4.1 christos * is expected. Unless it is bi-directional NAT, perform
726 1.45.4.1 christos * the port mapping.
727 1.35 rmind */
728 1.35 rmind flags = !binat ? (NPF_NAT_PORTS | NPF_NAT_PORTMAP) : 0;
729 1.45.4.1 christos
730 1.45.4.1 christos switch (algo) {
731 1.45.4.1 christos case NPF_ALGO_IPHASH:
732 1.45.4.1 christos case NPF_ALGO_RR:
733 1.45.4.1 christos case NPF_ALGO_NONE:
734 1.45.4.1 christos break;
735 1.45.4.1 christos default:
736 1.45.4.1 christos yyerror("invalid algorithm specified for dynamic NAT");
737 1.45.4.1 christos }
738 1.35 rmind break;
739 1.35 rmind case NPFCTL_NAT_STATIC:
740 1.45.4.1 christos /*
741 1.45.4.1 christos * Static NAT: stateless translation.
742 1.45.4.1 christos */
743 1.35 rmind flags = NPF_NAT_STATIC;
744 1.45.4.1 christos
745 1.45.4.1 christos /* Note: translation address/network cannot be a table. */
746 1.45.4.1 christos am1 = npfctl_get_singlefam(ap1->ap_netaddr);
747 1.45.4.1 christos am2 = npfctl_get_singlefam(ap2->ap_netaddr);
748 1.45.4.1 christos
749 1.45.4.1 christos /* Validate the algorithm. */
750 1.45.4.1 christos switch (algo) {
751 1.45.4.1 christos case NPF_ALGO_NPT66:
752 1.45.4.1 christos if (am1->fam_mask != am2->fam_mask) {
753 1.45.4.1 christos yyerror("asymmetric NPTv6 is not supported");
754 1.45.4.1 christos }
755 1.45.4.1 christos adj = npfctl_npt66_calcadj(am1->fam_mask,
756 1.45.4.1 christos &am1->fam_addr, &am2->fam_addr);
757 1.45.4.1 christos break;
758 1.45.4.1 christos case NPF_ALGO_NETMAP:
759 1.45.4.1 christos if (am1->fam_mask != am2->fam_mask) {
760 1.45.4.1 christos yyerror("net-to-net mapping using the "
761 1.45.4.1 christos "NETMAP algorithm must be 1:1");
762 1.45.4.1 christos }
763 1.45.4.1 christos break;
764 1.45.4.1 christos case NPF_ALGO_NONE:
765 1.45.4.1 christos if (am1->fam_mask != NPF_NO_NETMASK ||
766 1.45.4.1 christos am2->fam_mask != NPF_NO_NETMASK) {
767 1.45.4.1 christos yyerror("static net-to-net translation "
768 1.45.4.1 christos "must have an algorithm specified");
769 1.45.4.1 christos }
770 1.45.4.1 christos break;
771 1.45.4.1 christos default:
772 1.45.4.1 christos yyerror("invalid algorithm specified for static NAT");
773 1.45.4.1 christos }
774 1.35 rmind break;
775 1.35 rmind default:
776 1.35 rmind abort();
777 1.35 rmind }
778 1.35 rmind
779 1.7 rmind /*
780 1.45 rmind * Apply the flag modifications.
781 1.45 rmind */
782 1.45 rmind if (mflags & NPF_NAT_PORTS) {
783 1.45 rmind flags &= ~(NPF_NAT_PORTS | NPF_NAT_PORTMAP);
784 1.45 rmind }
785 1.45 rmind
786 1.45 rmind /*
787 1.13 rmind * If the filter criteria is not specified explicitly, apply implicit
788 1.14 rmind * filtering according to the given network segments.
789 1.13 rmind *
790 1.13 rmind * Note: filled below, depending on the type.
791 1.7 rmind */
792 1.14 rmind if (__predict_true(!fopts)) {
793 1.7 rmind fopts = &imfopts;
794 1.1 rmind }
795 1.1 rmind
796 1.13 rmind if (type & NPF_NATIN) {
797 1.13 rmind memset(&imfopts, 0, sizeof(filt_opts_t));
798 1.13 rmind memcpy(&imfopts.fo_to, ap2, sizeof(addr_port_t));
799 1.44 rmind nt1 = npfctl_build_nat(NPF_NATIN, ifname, ap1, op, fopts, flags);
800 1.13 rmind }
801 1.13 rmind if (type & NPF_NATOUT) {
802 1.13 rmind memset(&imfopts, 0, sizeof(filt_opts_t));
803 1.13 rmind memcpy(&imfopts.fo_from, ap1, sizeof(addr_port_t));
804 1.44 rmind nt2 = npfctl_build_nat(NPF_NATOUT, ifname, ap2, op, fopts, flags);
805 1.36 rmind }
806 1.36 rmind
807 1.36 rmind if (algo == NPF_ALGO_NPT66) {
808 1.45.4.1 christos /*
809 1.45.4.1 christos * NPTv6 is a special case using special adjustment value.
810 1.45.4.1 christos * It is always bidirectional NAT.
811 1.45.4.1 christos */
812 1.45.4.1 christos assert(nt1 && nt2);
813 1.36 rmind npf_nat_setnpt66(nt1, ~adj);
814 1.36 rmind npf_nat_setnpt66(nt2, adj);
815 1.45.4.1 christos } else if (algo) {
816 1.45.4.1 christos /*
817 1.45.4.1 christos * Set the algorithm.
818 1.45.4.1 christos */
819 1.45.4.1 christos if (nt1) {
820 1.45.4.1 christos npf_nat_setalgo(nt1, algo);
821 1.45.4.1 christos }
822 1.45.4.1 christos if (nt2) {
823 1.45.4.1 christos npf_nat_setalgo(nt2, algo);
824 1.45.4.1 christos }
825 1.45.4.1 christos }
826 1.45.4.1 christos
827 1.45.4.1 christos if (nt1) {
828 1.45.4.1 christos npf_nat_insert(npf_conf, nt1, NPF_PRI_LAST);
829 1.45.4.1 christos }
830 1.45.4.1 christos if (nt2) {
831 1.45.4.1 christos npf_nat_insert(npf_conf, nt2, NPF_PRI_LAST);
832 1.1 rmind }
833 1.1 rmind }
834 1.1 rmind
835 1.1 rmind /*
836 1.1 rmind * npfctl_fill_table: fill NPF table with entries from a specified file.
837 1.1 rmind */
838 1.1 rmind static void
839 1.11 rmind npfctl_fill_table(nl_table_t *tl, u_int type, const char *fname)
840 1.1 rmind {
841 1.1 rmind char *buf = NULL;
842 1.1 rmind int l = 0;
843 1.1 rmind FILE *fp;
844 1.1 rmind size_t n;
845 1.1 rmind
846 1.1 rmind fp = fopen(fname, "r");
847 1.1 rmind if (fp == NULL) {
848 1.1 rmind err(EXIT_FAILURE, "open '%s'", fname);
849 1.1 rmind }
850 1.1 rmind while (l++, getline(&buf, &n, fp) != -1) {
851 1.11 rmind fam_addr_mask_t fam;
852 1.11 rmind int alen;
853 1.1 rmind
854 1.1 rmind if (*buf == '\n' || *buf == '#') {
855 1.1 rmind continue;
856 1.1 rmind }
857 1.11 rmind
858 1.11 rmind if (!npfctl_parse_cidr(buf, &fam, &alen)) {
859 1.11 rmind errx(EXIT_FAILURE,
860 1.11 rmind "%s:%d: invalid table entry", fname, l);
861 1.11 rmind }
862 1.45.4.1 christos if (type != NPF_TABLE_LPM && fam.fam_mask != NPF_NO_NETMASK) {
863 1.33 rmind errx(EXIT_FAILURE, "%s:%d: mask used with the "
864 1.45.4.1 christos "table type other than \"lpm\"", fname, l);
865 1.33 rmind }
866 1.33 rmind
867 1.45.4.1 christos npf_table_add_entry(tl, fam.fam_family,
868 1.45.4.1 christos &fam.fam_addr, fam.fam_mask);
869 1.33 rmind }
870 1.45.4.1 christos free(buf);
871 1.1 rmind }
872 1.1 rmind
873 1.1 rmind /*
874 1.1 rmind * npfctl_build_table: create an NPF table, add to the configuration and,
875 1.1 rmind * if required, fill with contents from a file.
876 1.1 rmind */
877 1.1 rmind void
878 1.29 rmind npfctl_build_table(const char *tname, u_int type, const char *fname)
879 1.1 rmind {
880 1.1 rmind nl_table_t *tl;
881 1.1 rmind
882 1.43 rmind tl = npf_table_create(tname, npfctl_tid_counter++, type);
883 1.1 rmind assert(tl != NULL);
884 1.1 rmind
885 1.1 rmind if (fname) {
886 1.11 rmind npfctl_fill_table(tl, type, fname);
887 1.45.4.1 christos } else if (type == NPF_TABLE_CONST) {
888 1.45.4.1 christos yyerror("table type 'const' must be loaded from a file");
889 1.45.4.1 christos }
890 1.45.4.1 christos
891 1.45.4.1 christos if (npf_table_insert(npf_conf, tl)) {
892 1.45.4.1 christos yyerror("table '%s' is already defined", tname);
893 1.1 rmind }
894 1.1 rmind }
895 1.23 christos
896 1.45.4.1 christos /*
897 1.45.4.1 christos * npfctl_ifnet_table: get a variable with ifaddr-table; auto-create
898 1.45.4.1 christos * the table on first reference.
899 1.45.4.1 christos */
900 1.43 rmind npfvar_t *
901 1.43 rmind npfctl_ifnet_table(const char *ifname)
902 1.43 rmind {
903 1.43 rmind char tname[NPF_TABLE_MAXNAMELEN];
904 1.43 rmind nl_table_t *tl;
905 1.43 rmind u_int tid;
906 1.43 rmind
907 1.45.4.1 christos snprintf(tname, sizeof(tname), NPF_IFNET_TABLE_PREF "%s", ifname);
908 1.43 rmind
909 1.43 rmind tid = npfctl_table_getid(tname);
910 1.43 rmind if (tid == (unsigned)-1) {
911 1.43 rmind tid = npfctl_tid_counter++;
912 1.45.4.1 christos tl = npf_table_create(tname, tid, NPF_TABLE_IFADDR);
913 1.43 rmind (void)npf_table_insert(npf_conf, tl);
914 1.43 rmind }
915 1.43 rmind return npfvar_create_element(NPFVAR_TABLE, &tid, sizeof(u_int));
916 1.43 rmind }
917 1.43 rmind
918 1.23 christos /*
919 1.25 rmind * npfctl_build_alg: create an NPF application level gateway and add it
920 1.23 christos * to the configuration.
921 1.23 christos */
922 1.23 christos void
923 1.23 christos npfctl_build_alg(const char *al_name)
924 1.23 christos {
925 1.23 christos if (_npf_alg_load(npf_conf, al_name) != 0) {
926 1.23 christos errx(EXIT_FAILURE, "ALG '%s' already loaded", al_name);
927 1.23 christos }
928 1.23 christos }
929 1.27 rmind
930 1.27 rmind static void
931 1.27 rmind npfctl_dump_bpf(struct bpf_program *bf)
932 1.27 rmind {
933 1.27 rmind if (npf_debug) {
934 1.27 rmind extern char *yytext;
935 1.27 rmind extern int yylineno;
936 1.27 rmind
937 1.27 rmind int rule_line = yylineno - (int)(*yytext == '\n');
938 1.27 rmind printf("\nRULE AT LINE %d\n", rule_line);
939 1.27 rmind bpf_dump(bf, 0);
940 1.27 rmind }
941 1.27 rmind }
942