npf_show.c revision 1.21 1 1.21 christos /* $NetBSD: npf_show.c,v 1.21 2016/12/27 20:14:35 christos Exp $ */
2 1.1 rmind
3 1.1 rmind /*-
4 1.1 rmind * Copyright (c) 2013 The NetBSD Foundation, Inc.
5 1.1 rmind * All rights reserved.
6 1.1 rmind *
7 1.1 rmind * This code is derived from software contributed to The NetBSD Foundation
8 1.1 rmind * by 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 configuration printing.
34 1.1 rmind *
35 1.1 rmind * Each rule having BPF byte-code has a binary description.
36 1.1 rmind */
37 1.1 rmind
38 1.1 rmind #include <sys/cdefs.h>
39 1.21 christos __RCSID("$NetBSD: npf_show.c,v 1.21 2016/12/27 20:14:35 christos Exp $");
40 1.1 rmind
41 1.1 rmind #include <sys/socket.h>
42 1.20 christos #define __FAVOR_BSD
43 1.1 rmind #include <netinet/in.h>
44 1.1 rmind #include <netinet/tcp.h>
45 1.1 rmind #include <net/if.h>
46 1.1 rmind
47 1.1 rmind #include <stdio.h>
48 1.1 rmind #include <stdlib.h>
49 1.1 rmind #include <string.h>
50 1.1 rmind #include <stdbool.h>
51 1.1 rmind #include <inttypes.h>
52 1.1 rmind #include <errno.h>
53 1.1 rmind #include <err.h>
54 1.1 rmind
55 1.1 rmind #include "npfctl.h"
56 1.1 rmind
57 1.18 rmind #define SEEN_SRC 0x01
58 1.18 rmind #define SEEN_DST 0x02
59 1.18 rmind
60 1.1 rmind typedef struct {
61 1.4 rmind nl_config_t * conf;
62 1.1 rmind FILE * fp;
63 1.1 rmind long fpos;
64 1.18 rmind u_int flags;
65 1.18 rmind uint32_t curmark;
66 1.1 rmind } npf_conf_info_t;
67 1.1 rmind
68 1.20 christos static npf_conf_info_t stdout_ctx;
69 1.1 rmind
70 1.1 rmind static void print_indent(npf_conf_info_t *, u_int);
71 1.1 rmind static void print_linesep(npf_conf_info_t *);
72 1.1 rmind
73 1.20 christos void
74 1.20 christos npfctl_show_init(void)
75 1.20 christos {
76 1.20 christos stdout_ctx.fp = stdout;
77 1.20 christos stdout_ctx.fpos = 0;
78 1.20 christos stdout_ctx.flags = 0;
79 1.20 christos }
80 1.20 christos
81 1.1 rmind /*
82 1.1 rmind * Helper routines to print various pieces of information.
83 1.1 rmind */
84 1.1 rmind
85 1.1 rmind static void
86 1.1 rmind print_indent(npf_conf_info_t *ctx, u_int level)
87 1.1 rmind {
88 1.1 rmind if (level == 0) { /* XXX */
89 1.1 rmind print_linesep(ctx);
90 1.1 rmind }
91 1.1 rmind while (level--)
92 1.1 rmind fprintf(ctx->fp, "\t");
93 1.1 rmind }
94 1.1 rmind
95 1.1 rmind static void
96 1.1 rmind print_linesep(npf_conf_info_t *ctx)
97 1.1 rmind {
98 1.1 rmind if (ftell(ctx->fp) != ctx->fpos) {
99 1.1 rmind fputs("\n", ctx->fp);
100 1.1 rmind ctx->fpos = ftell(ctx->fp);
101 1.1 rmind }
102 1.1 rmind }
103 1.1 rmind
104 1.1 rmind static size_t
105 1.1 rmind tcpflags2string(char *buf, u_int tfl)
106 1.1 rmind {
107 1.1 rmind u_int i = 0;
108 1.1 rmind
109 1.1 rmind if (tfl & TH_FIN) buf[i++] = 'F';
110 1.1 rmind if (tfl & TH_SYN) buf[i++] = 'S';
111 1.1 rmind if (tfl & TH_RST) buf[i++] = 'R';
112 1.1 rmind if (tfl & TH_PUSH) buf[i++] = 'P';
113 1.1 rmind if (tfl & TH_ACK) buf[i++] = 'A';
114 1.1 rmind if (tfl & TH_URG) buf[i++] = 'U';
115 1.1 rmind if (tfl & TH_ECE) buf[i++] = 'E';
116 1.1 rmind if (tfl & TH_CWR) buf[i++] = 'C';
117 1.1 rmind buf[i] = '\0';
118 1.1 rmind return i;
119 1.1 rmind }
120 1.1 rmind
121 1.1 rmind static char *
122 1.4 rmind print_family(npf_conf_info_t *ctx, const uint32_t *words)
123 1.1 rmind {
124 1.1 rmind const int af = words[0];
125 1.1 rmind
126 1.1 rmind switch (af) {
127 1.1 rmind case AF_INET:
128 1.10 rmind return estrdup("inet4");
129 1.1 rmind case AF_INET6:
130 1.1 rmind return estrdup("inet6");
131 1.1 rmind default:
132 1.1 rmind errx(EXIT_FAILURE, "invalid byte-code mark (family)");
133 1.1 rmind }
134 1.1 rmind return NULL;
135 1.1 rmind }
136 1.1 rmind
137 1.1 rmind static char *
138 1.4 rmind print_address(npf_conf_info_t *ctx, const uint32_t *words)
139 1.1 rmind {
140 1.1 rmind const int af = *words++;
141 1.1 rmind const u_int mask = *words++;
142 1.1 rmind const npf_addr_t *addr;
143 1.1 rmind int alen = 0;
144 1.1 rmind
145 1.1 rmind switch (af) {
146 1.1 rmind case AF_INET:
147 1.1 rmind alen = 4;
148 1.1 rmind break;
149 1.1 rmind case AF_INET6:
150 1.1 rmind alen = 16;
151 1.1 rmind break;
152 1.1 rmind default:
153 1.1 rmind errx(EXIT_FAILURE, "invalid byte-code mark (address)");
154 1.1 rmind }
155 1.1 rmind addr = (const npf_addr_t *)words;
156 1.21 christos return npfctl_print_addrmask(alen, "%a", addr, mask);
157 1.1 rmind }
158 1.1 rmind
159 1.1 rmind static char *
160 1.4 rmind print_number(npf_conf_info_t *ctx, const uint32_t *words)
161 1.1 rmind {
162 1.1 rmind char *p;
163 1.1 rmind easprintf(&p, "%u", words[0]);
164 1.1 rmind return p;
165 1.1 rmind }
166 1.1 rmind
167 1.1 rmind static char *
168 1.4 rmind print_table(npf_conf_info_t *ctx, const uint32_t *words)
169 1.4 rmind {
170 1.4 rmind unsigned tid = words[0];
171 1.4 rmind nl_table_t *tl;
172 1.8 rmind char *p = NULL;
173 1.4 rmind
174 1.8 rmind /* XXX: Iterating all as we need to rewind for the next call. */
175 1.4 rmind while ((tl = npf_table_iterate(ctx->conf)) != NULL) {
176 1.8 rmind if (!p && npf_table_getid(tl) == tid) {
177 1.7 rmind easprintf(&p, "%s", npf_table_getname(tl));
178 1.7 rmind }
179 1.4 rmind }
180 1.8 rmind assert(p != NULL);
181 1.8 rmind return p;
182 1.4 rmind }
183 1.4 rmind
184 1.4 rmind static char *
185 1.4 rmind print_proto(npf_conf_info_t *ctx, const uint32_t *words)
186 1.1 rmind {
187 1.1 rmind switch (words[0]) {
188 1.1 rmind case IPPROTO_TCP:
189 1.1 rmind return estrdup("tcp");
190 1.1 rmind case IPPROTO_UDP:
191 1.1 rmind return estrdup("udp");
192 1.1 rmind case IPPROTO_ICMP:
193 1.1 rmind return estrdup("icmp");
194 1.1 rmind case IPPROTO_ICMPV6:
195 1.1 rmind return estrdup("ipv6-icmp");
196 1.1 rmind }
197 1.4 rmind return print_number(ctx, words);
198 1.1 rmind }
199 1.1 rmind
200 1.1 rmind static char *
201 1.4 rmind print_tcpflags(npf_conf_info_t *ctx, const uint32_t *words)
202 1.1 rmind {
203 1.1 rmind const u_int tf = words[0], tf_mask = words[1];
204 1.1 rmind char buf[16];
205 1.1 rmind
206 1.1 rmind size_t n = tcpflags2string(buf, tf);
207 1.1 rmind if (tf != tf_mask) {
208 1.1 rmind buf[n++] = '/';
209 1.1 rmind tcpflags2string(buf + n, tf_mask);
210 1.1 rmind }
211 1.1 rmind return estrdup(buf);
212 1.1 rmind }
213 1.1 rmind
214 1.1 rmind static char *
215 1.4 rmind print_portrange(npf_conf_info_t *ctx, const uint32_t *words)
216 1.1 rmind {
217 1.1 rmind u_int fport = words[0], tport = words[1];
218 1.18 rmind const char *any_str = "";
219 1.1 rmind char *p;
220 1.1 rmind
221 1.18 rmind if (ctx->curmark == BM_SRC_PORTS && (ctx->flags & SEEN_SRC) == 0)
222 1.19 rmind any_str = "from any ";
223 1.19 rmind if (ctx->curmark == BM_DST_PORTS && (ctx->flags & SEEN_DST) == 0)
224 1.18 rmind any_str = "to any ";
225 1.18 rmind
226 1.1 rmind if (fport != tport) {
227 1.19 rmind easprintf(&p, "%sport %u:%u", any_str, fport, tport);
228 1.1 rmind } else {
229 1.19 rmind easprintf(&p, "%sport %u", any_str, fport);
230 1.1 rmind }
231 1.1 rmind return p;
232 1.1 rmind }
233 1.1 rmind
234 1.1 rmind /*
235 1.1 rmind * The main keyword mapping tables defining the syntax:
236 1.1 rmind * - Mapping of rule attributes (flags) to the keywords.
237 1.1 rmind * - Mapping of the byte-code marks to the keywords.
238 1.1 rmind */
239 1.1 rmind
240 1.1 rmind #define F(name) __CONCAT(NPF_RULE_, name)
241 1.13 rmind #define STATEFUL_ENDS (NPF_RULE_STATEFUL | NPF_RULE_MULTIENDS)
242 1.1 rmind #define NAME_AT 2
243 1.1 rmind
244 1.1 rmind static const struct attr_keyword_mapent {
245 1.1 rmind uint32_t mask;
246 1.1 rmind uint32_t flags;
247 1.1 rmind const char * val;
248 1.1 rmind } attr_keyword_map[] = {
249 1.1 rmind { F(GROUP)|F(DYNAMIC), F(GROUP), "group" },
250 1.1 rmind { F(DYNAMIC), F(DYNAMIC), "ruleset" },
251 1.1 rmind { F(GROUP)|F(PASS), 0, "block" },
252 1.1 rmind { F(GROUP)|F(PASS), F(PASS), "pass" },
253 1.1 rmind { F(RETRST)|F(RETICMP), F(RETRST)|F(RETICMP), "return" },
254 1.1 rmind { F(RETRST)|F(RETICMP), F(RETRST), "return-rst" },
255 1.1 rmind { F(RETRST)|F(RETICMP), F(RETICMP), "return-icmp" },
256 1.13 rmind { STATEFUL_ENDS, F(STATEFUL), "stateful" },
257 1.13 rmind { STATEFUL_ENDS, STATEFUL_ENDS, "stateful-ends" },
258 1.1 rmind { F(DIMASK), F(IN), "in" },
259 1.1 rmind { F(DIMASK), F(OUT), "out" },
260 1.1 rmind { F(FINAL), F(FINAL), "final" },
261 1.1 rmind };
262 1.1 rmind
263 1.1 rmind static const struct mark_keyword_mapent {
264 1.1 rmind u_int mark;
265 1.1 rmind const char * token;
266 1.1 rmind const char * sep;
267 1.18 rmind u_int set_flags;
268 1.4 rmind char * (*printfn)(npf_conf_info_t *, const uint32_t *);
269 1.1 rmind u_int fwords;
270 1.1 rmind } mark_keyword_map[] = {
271 1.18 rmind { BM_IPVER, "family %s", NULL, 0, print_family, 1 },
272 1.18 rmind { BM_PROTO, "proto %s", ", ", 0, print_proto, 1 },
273 1.18 rmind { BM_TCPFL, "flags %s", NULL, 0, print_tcpflags, 2 },
274 1.18 rmind { BM_ICMP_TYPE, "icmp-type %s", NULL, 0, print_number, 1 },
275 1.18 rmind { BM_ICMP_CODE, "code %s", NULL, 0, print_number, 1 },
276 1.18 rmind
277 1.18 rmind { BM_SRC_CIDR, "from %s", ", ", SEEN_SRC, print_address, 6 },
278 1.18 rmind { BM_SRC_TABLE, "from <%s>", NULL, SEEN_SRC, print_table, 1 },
279 1.19 rmind { BM_SRC_PORTS, "%s", ", ", 0, print_portrange,2 },
280 1.18 rmind
281 1.18 rmind { BM_DST_CIDR, "to %s", ", ", SEEN_DST, print_address, 6 },
282 1.18 rmind { BM_DST_TABLE, "to <%s>", NULL, SEEN_DST, print_table, 1 },
283 1.19 rmind { BM_DST_PORTS, "%s", ", ", 0, print_portrange,2 },
284 1.1 rmind };
285 1.1 rmind
286 1.1 rmind static const char * __attribute__((format_arg(2)))
287 1.1 rmind verified_fmt(const char *fmt, const char *t __unused)
288 1.1 rmind {
289 1.1 rmind return fmt;
290 1.1 rmind }
291 1.1 rmind
292 1.1 rmind static char *
293 1.1 rmind scan_marks(npf_conf_info_t *ctx, const struct mark_keyword_mapent *mk,
294 1.1 rmind const uint32_t *marks, size_t mlen)
295 1.1 rmind {
296 1.1 rmind char buf[2048], *vals[256], *p;
297 1.1 rmind size_t nvals = 0;
298 1.1 rmind
299 1.1 rmind /* Scan for the marks and extract the values. */
300 1.1 rmind mlen /= sizeof(uint32_t);
301 1.1 rmind while (mlen > 2) {
302 1.1 rmind const uint32_t m = *marks++;
303 1.1 rmind const u_int nwords = *marks++;
304 1.1 rmind
305 1.1 rmind if ((mlen -= 2) < nwords) {
306 1.1 rmind errx(EXIT_FAILURE, "byte-code marking inconsistency");
307 1.1 rmind }
308 1.1 rmind if (m == mk->mark) {
309 1.18 rmind /* Set the current mark and the flags. */
310 1.18 rmind ctx->flags |= mk->set_flags;
311 1.18 rmind ctx->curmark = m;
312 1.18 rmind
313 1.1 rmind /* Value is processed by the print function. */
314 1.1 rmind assert(mk->fwords == nwords);
315 1.4 rmind vals[nvals++] = mk->printfn(ctx, marks);
316 1.1 rmind }
317 1.1 rmind marks += nwords;
318 1.1 rmind mlen -= nwords;
319 1.1 rmind }
320 1.1 rmind if (nvals == 0) {
321 1.1 rmind return NULL;
322 1.1 rmind }
323 1.1 rmind assert(nvals == 1 || mk->sep != NULL);
324 1.1 rmind
325 1.1 rmind /*
326 1.1 rmind * Join all the values and print. Add curly brackets if there
327 1.1 rmind * is more than value and it can be a set.
328 1.1 rmind */
329 1.1 rmind if (!join(buf, sizeof(buf), nvals, vals, mk->sep ? mk->sep : "")) {
330 1.1 rmind errx(EXIT_FAILURE, "out of memory while parsing the rule");
331 1.1 rmind }
332 1.1 rmind easprintf(&p, nvals > 1 ? "{ %s }" : "%s", buf);
333 1.1 rmind
334 1.1 rmind for (u_int i = 0; i < nvals; i++) {
335 1.1 rmind free(vals[i]);
336 1.1 rmind }
337 1.1 rmind return p;
338 1.1 rmind }
339 1.1 rmind
340 1.1 rmind static void
341 1.1 rmind npfctl_print_filter(npf_conf_info_t *ctx, nl_rule_t *rl)
342 1.1 rmind {
343 1.1 rmind const void *marks;
344 1.16 rmind size_t mlen, len;
345 1.16 rmind const void *code;
346 1.16 rmind int type;
347 1.1 rmind
348 1.1 rmind marks = npf_rule_getinfo(rl, &mlen);
349 1.16 rmind if (!marks && (code = npf_rule_getcode(rl, &type, &len)) != NULL) {
350 1.16 rmind /*
351 1.16 rmind * No marks, but the byte-code is present. This must
352 1.16 rmind * have been filled by libpcap(3) or possibly an unknown
353 1.16 rmind * to us byte-code.
354 1.16 rmind */
355 1.16 rmind fprintf(ctx->fp, "%s ", type == NPF_CODE_BPF ?
356 1.16 rmind "pcap-filter \"...\"" : "unrecognized-bytecode");
357 1.16 rmind return;
358 1.16 rmind }
359 1.19 rmind ctx->flags = 0;
360 1.16 rmind
361 1.16 rmind /*
362 1.16 rmind * BPF filter criteria described by the byte-code marks.
363 1.16 rmind */
364 1.1 rmind for (u_int i = 0; i < __arraycount(mark_keyword_map); i++) {
365 1.1 rmind const struct mark_keyword_mapent *mk = &mark_keyword_map[i];
366 1.1 rmind char *val;
367 1.1 rmind
368 1.1 rmind if ((val = scan_marks(ctx, mk, marks, mlen)) != NULL) {
369 1.1 rmind fprintf(ctx->fp, verified_fmt(mk->token, "%s"), val);
370 1.1 rmind fputs(" ", ctx->fp);
371 1.1 rmind free(val);
372 1.1 rmind }
373 1.1 rmind }
374 1.1 rmind if (!mlen) {
375 1.1 rmind fputs("all ", ctx->fp);
376 1.1 rmind }
377 1.1 rmind }
378 1.1 rmind
379 1.1 rmind static void
380 1.1 rmind npfctl_print_rule(npf_conf_info_t *ctx, nl_rule_t *rl)
381 1.1 rmind {
382 1.1 rmind const uint32_t attr = npf_rule_getattr(rl);
383 1.3 rmind const char *rproc, *ifname, *name;
384 1.1 rmind
385 1.1 rmind /* Rule attributes/flags. */
386 1.1 rmind for (u_int i = 0; i < __arraycount(attr_keyword_map); i++) {
387 1.1 rmind const struct attr_keyword_mapent *ak = &attr_keyword_map[i];
388 1.1 rmind
389 1.1 rmind if (i == NAME_AT && (name = npf_rule_getname(rl)) != NULL) {
390 1.1 rmind fprintf(ctx->fp, "\"%s\" ", name);
391 1.1 rmind }
392 1.1 rmind if ((attr & ak->mask) == ak->flags) {
393 1.1 rmind fprintf(ctx->fp, "%s ", ak->val);
394 1.1 rmind }
395 1.1 rmind }
396 1.3 rmind if ((ifname = npf_rule_getinterface(rl)) != NULL) {
397 1.1 rmind fprintf(ctx->fp, "on %s ", ifname);
398 1.1 rmind }
399 1.1 rmind
400 1.16 rmind if ((attr & NPF_DYNAMIC_GROUP) == NPF_RULE_GROUP) {
401 1.1 rmind /* Group; done. */
402 1.1 rmind fputs("\n", ctx->fp);
403 1.1 rmind return;
404 1.1 rmind }
405 1.1 rmind
406 1.1 rmind /* Print filter criteria. */
407 1.1 rmind npfctl_print_filter(ctx, rl);
408 1.1 rmind
409 1.1 rmind /* Rule procedure. */
410 1.1 rmind if ((rproc = npf_rule_getproc(rl)) != NULL) {
411 1.16 rmind fprintf(ctx->fp, "apply \"%s\" ", rproc);
412 1.16 rmind }
413 1.16 rmind
414 1.16 rmind /* If dynamic rule - print its ID. */
415 1.16 rmind if ((attr & NPF_DYNAMIC_GROUP) == NPF_RULE_DYNAMIC) {
416 1.16 rmind uint64_t id = npf_rule_getid(rl);
417 1.17 rmind fprintf(ctx->fp, "# id = \"%" PRIx64 "\" ", id);
418 1.1 rmind }
419 1.16 rmind
420 1.1 rmind fputs("\n", ctx->fp);
421 1.1 rmind }
422 1.1 rmind
423 1.1 rmind static void
424 1.1 rmind npfctl_print_nat(npf_conf_info_t *ctx, nl_nat_t *nt)
425 1.1 rmind {
426 1.1 rmind nl_rule_t *rl = (nl_nat_t *)nt;
427 1.1 rmind const char *ifname, *seg1, *seg2, *arrow;
428 1.1 rmind npf_addr_t addr;
429 1.1 rmind in_port_t port;
430 1.3 rmind size_t alen;
431 1.9 rmind u_int flags;
432 1.3 rmind char *seg;
433 1.1 rmind
434 1.1 rmind /* Get the interface. */
435 1.3 rmind ifname = npf_rule_getinterface(rl);
436 1.3 rmind assert(ifname != NULL);
437 1.1 rmind
438 1.1 rmind /* Get the translation address (and port, if used). */
439 1.1 rmind npf_nat_getmap(nt, &addr, &alen, &port);
440 1.21 christos seg = npfctl_print_addrmask(alen, "%a", &addr, NPF_NO_NETMASK);
441 1.1 rmind if (port) {
442 1.1 rmind char *p;
443 1.12 rmind easprintf(&p, "%s port %u", seg, ntohs(port));
444 1.1 rmind free(seg), seg = p;
445 1.1 rmind }
446 1.1 rmind seg1 = seg2 = "any";
447 1.1 rmind
448 1.1 rmind /* Get the NAT type and determine the translation segment. */
449 1.1 rmind switch (npf_nat_gettype(nt)) {
450 1.1 rmind case NPF_NATIN:
451 1.1 rmind arrow = "<-";
452 1.1 rmind seg1 = seg;
453 1.1 rmind break;
454 1.1 rmind case NPF_NATOUT:
455 1.1 rmind arrow = "->";
456 1.1 rmind seg2 = seg;
457 1.1 rmind break;
458 1.1 rmind default:
459 1.9 rmind abort();
460 1.1 rmind }
461 1.9 rmind flags = npf_nat_getflags(nt);
462 1.1 rmind
463 1.1 rmind /* Print out the NAT policy with the filter criteria. */
464 1.9 rmind fprintf(ctx->fp, "map %s %s %s %s %s pass ",
465 1.9 rmind ifname, (flags & NPF_NAT_STATIC) ? "static" : "dynamic",
466 1.9 rmind seg1, arrow, seg2);
467 1.1 rmind npfctl_print_filter(ctx, rl);
468 1.1 rmind fputs("\n", ctx->fp);
469 1.1 rmind free(seg);
470 1.1 rmind }
471 1.1 rmind
472 1.1 rmind static void
473 1.1 rmind npfctl_print_table(npf_conf_info_t *ctx, nl_table_t *tl)
474 1.1 rmind {
475 1.4 rmind const char *name = npf_table_getname(tl);
476 1.11 rmind const unsigned type = npf_table_gettype(tl);
477 1.11 rmind const char *table_types[] = {
478 1.11 rmind [NPF_TABLE_HASH] = "hash",
479 1.11 rmind [NPF_TABLE_TREE] = "tree",
480 1.11 rmind [NPF_TABLE_CDB] = "cdb",
481 1.11 rmind };
482 1.1 rmind
483 1.5 rmind if (name[0] == '.') {
484 1.5 rmind /* Internal tables use dot and are hidden. */
485 1.5 rmind return;
486 1.5 rmind }
487 1.11 rmind assert(type < __arraycount(table_types));
488 1.11 rmind fprintf(ctx->fp, "table <%s> type %s\n", name, table_types[type]);
489 1.1 rmind }
490 1.1 rmind
491 1.1 rmind int
492 1.1 rmind npfctl_config_show(int fd)
493 1.1 rmind {
494 1.1 rmind npf_conf_info_t *ctx = &stdout_ctx;
495 1.1 rmind nl_config_t *ncf;
496 1.20 christos bool loaded;
497 1.1 rmind
498 1.1 rmind if (fd) {
499 1.20 christos ncf = npf_config_retrieve(fd);
500 1.1 rmind if (ncf == NULL) {
501 1.1 rmind return errno;
502 1.1 rmind }
503 1.20 christos loaded = npf_config_loaded_p(ncf);
504 1.15 rmind fprintf(ctx->fp, "# filtering:\t%s\n# config:\t%s\n",
505 1.20 christos npf_config_active_p(ncf) ? "active" : "inactive",
506 1.1 rmind loaded ? "loaded" : "empty");
507 1.1 rmind print_linesep(ctx);
508 1.1 rmind } else {
509 1.1 rmind npfctl_config_send(0, NULL);
510 1.1 rmind ncf = npfctl_config_ref();
511 1.1 rmind loaded = true;
512 1.1 rmind }
513 1.4 rmind ctx->conf = ncf;
514 1.1 rmind
515 1.1 rmind if (loaded) {
516 1.1 rmind nl_rule_t *rl;
517 1.1 rmind nl_rproc_t *rp;
518 1.1 rmind nl_nat_t *nt;
519 1.1 rmind nl_table_t *tl;
520 1.1 rmind u_int level;
521 1.1 rmind
522 1.1 rmind while ((tl = npf_table_iterate(ncf)) != NULL) {
523 1.1 rmind npfctl_print_table(ctx, tl);
524 1.1 rmind }
525 1.1 rmind print_linesep(ctx);
526 1.1 rmind
527 1.1 rmind while ((rp = npf_rproc_iterate(ncf)) != NULL) {
528 1.1 rmind const char *rpname = npf_rproc_getname(rp);
529 1.1 rmind fprintf(ctx->fp, "procedure \"%s\"\n", rpname);
530 1.1 rmind }
531 1.1 rmind print_linesep(ctx);
532 1.1 rmind
533 1.1 rmind while ((nt = npf_nat_iterate(ncf)) != NULL) {
534 1.1 rmind npfctl_print_nat(ctx, nt);
535 1.1 rmind }
536 1.1 rmind print_linesep(ctx);
537 1.1 rmind
538 1.1 rmind while ((rl = npf_rule_iterate(ncf, &level)) != NULL) {
539 1.1 rmind print_indent(ctx, level);
540 1.1 rmind npfctl_print_rule(ctx, rl);
541 1.1 rmind }
542 1.1 rmind print_linesep(ctx);
543 1.1 rmind }
544 1.1 rmind npf_config_destroy(ncf);
545 1.1 rmind return 0;
546 1.1 rmind }
547 1.1 rmind
548 1.1 rmind int
549 1.1 rmind npfctl_ruleset_show(int fd, const char *ruleset_name)
550 1.1 rmind {
551 1.1 rmind npf_conf_info_t *ctx = &stdout_ctx;
552 1.1 rmind nl_config_t *ncf;
553 1.1 rmind nl_rule_t *rl;
554 1.1 rmind u_int level;
555 1.1 rmind int error;
556 1.1 rmind
557 1.1 rmind ncf = npf_config_create();
558 1.4 rmind ctx->conf = ncf;
559 1.4 rmind
560 1.1 rmind if ((error = _npf_ruleset_list(fd, ruleset_name, ncf)) != 0) {
561 1.1 rmind return error;
562 1.1 rmind }
563 1.1 rmind while ((rl = npf_rule_iterate(ncf, &level)) != NULL) {
564 1.1 rmind npfctl_print_rule(ctx, rl);
565 1.1 rmind }
566 1.1 rmind npf_config_destroy(ncf);
567 1.1 rmind return error;
568 1.1 rmind }
569