npfctl.c revision 1.38 1 1.38 rmind /* $NetBSD: npfctl.c,v 1.38 2013/09/19 01:04:45 rmind Exp $ */
2 1.1 rmind
3 1.1 rmind /*-
4 1.29 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 1.2 rmind #include <sys/cdefs.h>
33 1.38 rmind __RCSID("$NetBSD: npfctl.c,v 1.38 2013/09/19 01:04:45 rmind Exp $");
34 1.2 rmind
35 1.1 rmind #include <sys/ioctl.h>
36 1.1 rmind #include <sys/stat.h>
37 1.1 rmind #include <sys/types.h>
38 1.1 rmind
39 1.1 rmind #include <stdio.h>
40 1.1 rmind #include <stdlib.h>
41 1.1 rmind #include <string.h>
42 1.1 rmind #include <err.h>
43 1.1 rmind #include <fcntl.h>
44 1.1 rmind #include <unistd.h>
45 1.15 rmind #include <errno.h>
46 1.1 rmind
47 1.29 rmind #include <openssl/sha.h>
48 1.29 rmind
49 1.1 rmind #include "npfctl.h"
50 1.1 rmind
51 1.29 rmind extern void npf_yyparse_string(const char *);
52 1.8 rmind
53 1.11 rmind enum {
54 1.11 rmind NPFCTL_START,
55 1.11 rmind NPFCTL_STOP,
56 1.11 rmind NPFCTL_RELOAD,
57 1.11 rmind NPFCTL_SHOWCONF,
58 1.11 rmind NPFCTL_FLUSH,
59 1.25 rmind NPFCTL_VALIDATE,
60 1.11 rmind NPFCTL_TABLE,
61 1.29 rmind NPFCTL_RULE,
62 1.11 rmind NPFCTL_STATS,
63 1.11 rmind NPFCTL_SESSIONS_SAVE,
64 1.11 rmind NPFCTL_SESSIONS_LOAD,
65 1.11 rmind };
66 1.1 rmind
67 1.15 rmind static const struct operations_s {
68 1.1 rmind const char * cmd;
69 1.1 rmind int action;
70 1.1 rmind } operations[] = {
71 1.1 rmind /* Start, stop, reload */
72 1.3 rmind { "start", NPFCTL_START },
73 1.3 rmind { "stop", NPFCTL_STOP },
74 1.3 rmind { "reload", NPFCTL_RELOAD },
75 1.11 rmind { "show", NPFCTL_SHOWCONF, },
76 1.3 rmind { "flush", NPFCTL_FLUSH },
77 1.25 rmind { "valid", NPFCTL_VALIDATE },
78 1.1 rmind /* Table */
79 1.3 rmind { "table", NPFCTL_TABLE },
80 1.29 rmind /* Rule */
81 1.29 rmind { "rule", NPFCTL_RULE },
82 1.3 rmind /* Stats */
83 1.3 rmind { "stats", NPFCTL_STATS },
84 1.3 rmind /* Sessions */
85 1.3 rmind { "sess-save", NPFCTL_SESSIONS_SAVE },
86 1.3 rmind { "sess-load", NPFCTL_SESSIONS_LOAD },
87 1.1 rmind /* --- */
88 1.3 rmind { NULL, 0 }
89 1.1 rmind };
90 1.1 rmind
91 1.38 rmind bool
92 1.38 rmind join(char *buf, size_t buflen, int count, char **args, const char *sep)
93 1.29 rmind {
94 1.38 rmind const u_int seplen = strlen(sep);
95 1.29 rmind char *s = buf, *p = NULL;
96 1.29 rmind
97 1.29 rmind for (int i = 0; i < count; i++) {
98 1.29 rmind size_t len;
99 1.29 rmind
100 1.29 rmind p = stpncpy(s, args[i], buflen);
101 1.38 rmind len = p - s + seplen;
102 1.29 rmind if (len >= buflen) {
103 1.29 rmind return false;
104 1.29 rmind }
105 1.29 rmind buflen -= len;
106 1.38 rmind strcpy(p, sep);
107 1.38 rmind s = p + seplen;
108 1.29 rmind }
109 1.29 rmind *p = '\0';
110 1.29 rmind return true;
111 1.29 rmind }
112 1.29 rmind
113 1.6 joerg __dead static void
114 1.1 rmind usage(void)
115 1.1 rmind {
116 1.1 rmind const char *progname = getprogname();
117 1.1 rmind
118 1.1 rmind fprintf(stderr,
119 1.37 rmind "Usage:\t%s start | stop | flush | show | stats\n",
120 1.33 christos progname);
121 1.33 christos fprintf(stderr,
122 1.33 christos "\t%s validate | reload [<rule-file>]\n",
123 1.3 rmind progname);
124 1.3 rmind fprintf(stderr,
125 1.29 rmind "\t%s rule \"rule-name\" { add | rem } <rule-syntax>\n",
126 1.29 rmind progname);
127 1.29 rmind fprintf(stderr,
128 1.29 rmind "\t%s rule \"rule-name\" rem-id <rule-id>\n",
129 1.1 rmind progname);
130 1.1 rmind fprintf(stderr,
131 1.31 rmind "\t%s rule \"rule-name\" { list | flush }\n",
132 1.31 rmind progname);
133 1.31 rmind fprintf(stderr,
134 1.21 rmind "\t%s table <tid> { add | rem | test } <address/mask>\n",
135 1.1 rmind progname);
136 1.1 rmind fprintf(stderr,
137 1.21 rmind "\t%s table <tid> { list | flush }\n",
138 1.1 rmind progname);
139 1.37 rmind fprintf(stderr,
140 1.37 rmind "\t%s sess-load | sess-save\n",
141 1.37 rmind progname);
142 1.1 rmind exit(EXIT_FAILURE);
143 1.1 rmind }
144 1.1 rmind
145 1.3 rmind static int
146 1.3 rmind npfctl_print_stats(int fd)
147 1.3 rmind {
148 1.17 rmind static const struct stats_s {
149 1.17 rmind /* Note: -1 indicates a new section. */
150 1.17 rmind int index;
151 1.17 rmind const char * name;
152 1.17 rmind } stats[] = {
153 1.17 rmind { -1, "Packets passed" },
154 1.17 rmind { NPF_STAT_PASS_DEFAULT, "default pass" },
155 1.17 rmind { NPF_STAT_PASS_RULESET, "ruleset pass" },
156 1.17 rmind { NPF_STAT_PASS_SESSION, "session pass" },
157 1.17 rmind
158 1.17 rmind { -1, "Packets blocked" },
159 1.17 rmind { NPF_STAT_BLOCK_DEFAULT, "default block" },
160 1.17 rmind { NPF_STAT_BLOCK_RULESET, "ruleset block" },
161 1.17 rmind
162 1.17 rmind { -1, "Session and NAT entries" },
163 1.17 rmind { NPF_STAT_SESSION_CREATE, "session allocations" },
164 1.17 rmind { NPF_STAT_SESSION_DESTROY, "session destructions" },
165 1.17 rmind { NPF_STAT_NAT_CREATE, "NAT entry allocations" },
166 1.17 rmind { NPF_STAT_NAT_DESTROY, "NAT entry destructions"},
167 1.17 rmind
168 1.27 rmind { -1, "Network buffers" },
169 1.27 rmind { NPF_STAT_NBUF_NONCONTIG, "non-contiguous cases" },
170 1.27 rmind { NPF_STAT_NBUF_CONTIG_FAIL, "contig alloc failures" },
171 1.27 rmind
172 1.17 rmind { -1, "Invalid packet state cases" },
173 1.17 rmind { NPF_STAT_INVALID_STATE, "cases in total" },
174 1.17 rmind { NPF_STAT_INVALID_STATE_TCP1, "TCP case I" },
175 1.17 rmind { NPF_STAT_INVALID_STATE_TCP2, "TCP case II" },
176 1.17 rmind { NPF_STAT_INVALID_STATE_TCP3, "TCP case III" },
177 1.17 rmind
178 1.17 rmind { -1, "Packet race cases" },
179 1.17 rmind { NPF_STAT_RACE_NAT, "NAT association race" },
180 1.17 rmind { NPF_STAT_RACE_SESSION, "duplicate session race"},
181 1.17 rmind
182 1.17 rmind { -1, "Fragmentation" },
183 1.17 rmind { NPF_STAT_FRAGMENTS, "fragments" },
184 1.17 rmind { NPF_STAT_REASSEMBLY, "reassembled" },
185 1.17 rmind { NPF_STAT_REASSFAIL, "failed reassembly" },
186 1.17 rmind
187 1.17 rmind { -1, "Other" },
188 1.17 rmind { NPF_STAT_ERROR, "unexpected errors" },
189 1.17 rmind };
190 1.24 rmind uint64_t *st = ecalloc(1, NPF_STATS_SIZE);
191 1.3 rmind
192 1.3 rmind if (ioctl(fd, IOC_NPF_STATS, &st) != 0) {
193 1.3 rmind err(EXIT_FAILURE, "ioctl(IOC_NPF_STATS)");
194 1.3 rmind }
195 1.3 rmind
196 1.17 rmind for (unsigned i = 0; i < __arraycount(stats); i++) {
197 1.17 rmind const char *sname = stats[i].name;
198 1.17 rmind int sidx = stats[i].index;
199 1.17 rmind
200 1.17 rmind if (sidx == -1) {
201 1.17 rmind printf("%s:\n", sname);
202 1.17 rmind } else {
203 1.17 rmind printf("\t%"PRIu64" %s\n", st[sidx], sname);
204 1.17 rmind }
205 1.17 rmind }
206 1.4 rmind
207 1.3 rmind free(st);
208 1.3 rmind return 0;
209 1.3 rmind }
210 1.3 rmind
211 1.10 rmind void
212 1.10 rmind npfctl_print_error(const nl_error_t *ne)
213 1.10 rmind {
214 1.10 rmind static const char *ncode_errors[] = {
215 1.10 rmind [-NPF_ERR_OPCODE] = "invalid instruction",
216 1.10 rmind [-NPF_ERR_JUMP] = "invalid jump",
217 1.10 rmind [-NPF_ERR_REG] = "invalid register",
218 1.10 rmind [-NPF_ERR_INVAL] = "invalid argument value",
219 1.10 rmind [-NPF_ERR_RANGE] = "processing out of range"
220 1.10 rmind };
221 1.10 rmind const int nc_err = ne->ne_ncode_error;
222 1.10 rmind const char *srcfile = ne->ne_source_file;
223 1.10 rmind
224 1.10 rmind if (srcfile) {
225 1.10 rmind warnx("source %s line %d", srcfile, ne->ne_source_line);
226 1.10 rmind }
227 1.10 rmind if (nc_err) {
228 1.10 rmind warnx("n-code error (%d): %s at offset 0x%x",
229 1.10 rmind nc_err, ncode_errors[-nc_err], ne->ne_ncode_errat);
230 1.10 rmind }
231 1.10 rmind if (ne->ne_id) {
232 1.10 rmind warnx("object: %d", ne->ne_id);
233 1.10 rmind }
234 1.10 rmind }
235 1.10 rmind
236 1.21 rmind char *
237 1.38 rmind npfctl_print_addrmask(int alen, const npf_addr_t *addr, npf_netmask_t mask)
238 1.21 rmind {
239 1.21 rmind struct sockaddr_storage ss;
240 1.24 rmind char *buf = ecalloc(1, 64);
241 1.21 rmind int len;
242 1.21 rmind
243 1.21 rmind switch (alen) {
244 1.21 rmind case 4: {
245 1.21 rmind struct sockaddr_in *sin = (void *)&ss;
246 1.21 rmind sin->sin_len = sizeof(*sin);
247 1.21 rmind sin->sin_family = AF_INET;
248 1.21 rmind sin->sin_port = 0;
249 1.21 rmind memcpy(&sin->sin_addr, addr, sizeof(sin->sin_addr));
250 1.21 rmind break;
251 1.21 rmind }
252 1.21 rmind case 16: {
253 1.21 rmind struct sockaddr_in6 *sin6 = (void *)&ss;
254 1.21 rmind sin6->sin6_len = sizeof(*sin6);
255 1.21 rmind sin6->sin6_family = AF_INET6;
256 1.21 rmind sin6->sin6_port = 0;
257 1.28 spz sin6->sin6_scope_id = 0;
258 1.21 rmind memcpy(&sin6->sin6_addr, addr, sizeof(sin6->sin6_addr));
259 1.21 rmind break;
260 1.21 rmind }
261 1.21 rmind default:
262 1.21 rmind assert(false);
263 1.21 rmind }
264 1.21 rmind len = sockaddr_snprintf(buf, 64, "%a", (struct sockaddr *)&ss);
265 1.38 rmind if (mask && mask != NPF_NO_NETMASK) {
266 1.21 rmind snprintf(&buf[len], 64 - len, "/%u", mask);
267 1.21 rmind }
268 1.21 rmind return buf;
269 1.21 rmind }
270 1.21 rmind
271 1.16 joerg __dead static void
272 1.21 rmind npfctl_table(int fd, int argc, char **argv)
273 1.15 rmind {
274 1.15 rmind static const struct tblops_s {
275 1.15 rmind const char * cmd;
276 1.15 rmind int action;
277 1.15 rmind } tblops[] = {
278 1.29 rmind { "add", NPF_CMD_TABLE_ADD },
279 1.29 rmind { "rem", NPF_CMD_TABLE_REMOVE },
280 1.29 rmind { "del", NPF_CMD_TABLE_REMOVE },
281 1.29 rmind { "test", NPF_CMD_TABLE_LOOKUP },
282 1.29 rmind { "list", NPF_CMD_TABLE_LIST },
283 1.37 rmind { "flush", NPF_CMD_TABLE_FLUSH },
284 1.21 rmind { NULL, 0 }
285 1.15 rmind };
286 1.15 rmind npf_ioctl_table_t nct;
287 1.15 rmind fam_addr_mask_t fam;
288 1.21 rmind size_t buflen = 512;
289 1.22 martin char *cmd, *arg = NULL; /* XXX gcc */
290 1.15 rmind int n, alen;
291 1.15 rmind
292 1.21 rmind /* Default action is list. */
293 1.15 rmind memset(&nct, 0, sizeof(npf_ioctl_table_t));
294 1.21 rmind nct.nct_tid = atoi(argv[0]);
295 1.21 rmind cmd = argv[1];
296 1.15 rmind
297 1.15 rmind for (n = 0; tblops[n].cmd != NULL; n++) {
298 1.21 rmind if (strcmp(cmd, tblops[n].cmd) != 0) {
299 1.21 rmind continue;
300 1.21 rmind }
301 1.29 rmind nct.nct_cmd = tblops[n].action;
302 1.21 rmind break;
303 1.21 rmind }
304 1.21 rmind if (tblops[n].cmd == NULL) {
305 1.21 rmind errx(EXIT_FAILURE, "invalid command '%s'", cmd);
306 1.21 rmind }
307 1.37 rmind
308 1.37 rmind switch (nct.nct_cmd) {
309 1.37 rmind case NPF_CMD_TABLE_LIST:
310 1.37 rmind case NPF_CMD_TABLE_FLUSH:
311 1.37 rmind break;
312 1.37 rmind default:
313 1.21 rmind if (argc < 3) {
314 1.21 rmind usage();
315 1.15 rmind }
316 1.21 rmind arg = argv[2];
317 1.15 rmind }
318 1.37 rmind
319 1.21 rmind again:
320 1.37 rmind switch (nct.nct_cmd) {
321 1.37 rmind case NPF_CMD_TABLE_LIST:
322 1.24 rmind nct.nct_data.buf.buf = ecalloc(1, buflen);
323 1.21 rmind nct.nct_data.buf.len = buflen;
324 1.37 rmind break;
325 1.37 rmind case NPF_CMD_TABLE_FLUSH:
326 1.37 rmind break;
327 1.37 rmind default:
328 1.21 rmind if (!npfctl_parse_cidr(arg, &fam, &alen)) {
329 1.21 rmind errx(EXIT_FAILURE, "invalid CIDR '%s'", arg);
330 1.21 rmind }
331 1.21 rmind nct.nct_data.ent.alen = alen;
332 1.26 rmind memcpy(&nct.nct_data.ent.addr, &fam.fam_addr, alen);
333 1.21 rmind nct.nct_data.ent.mask = fam.fam_mask;
334 1.15 rmind }
335 1.15 rmind
336 1.15 rmind if (ioctl(fd, IOC_NPF_TABLE, &nct) != -1) {
337 1.15 rmind errno = 0;
338 1.15 rmind }
339 1.15 rmind switch (errno) {
340 1.21 rmind case 0:
341 1.21 rmind break;
342 1.15 rmind case EEXIST:
343 1.21 rmind errx(EXIT_FAILURE, "entry already exists or is conflicting");
344 1.15 rmind case ENOENT:
345 1.21 rmind errx(EXIT_FAILURE, "no matching entry was not found");
346 1.15 rmind case EINVAL:
347 1.21 rmind errx(EXIT_FAILURE, "invalid address, mask or table ID");
348 1.21 rmind case ENOMEM:
349 1.29 rmind if (nct.nct_cmd == NPF_CMD_TABLE_LIST) {
350 1.21 rmind /* XXX */
351 1.21 rmind free(nct.nct_data.buf.buf);
352 1.21 rmind buflen <<= 1;
353 1.21 rmind goto again;
354 1.21 rmind }
355 1.21 rmind /* FALLTHROUGH */
356 1.21 rmind default:
357 1.32 christos err(EXIT_FAILURE, "ioctl(IOC_NPF_TABLE)");
358 1.21 rmind }
359 1.21 rmind
360 1.29 rmind if (nct.nct_cmd == NPF_CMD_TABLE_LIST) {
361 1.21 rmind npf_ioctl_ent_t *ent = nct.nct_data.buf.buf;
362 1.21 rmind char *buf;
363 1.21 rmind
364 1.21 rmind while (nct.nct_data.buf.len--) {
365 1.21 rmind if (!ent->alen)
366 1.21 rmind break;
367 1.21 rmind buf = npfctl_print_addrmask(ent->alen,
368 1.21 rmind &ent->addr, ent->mask);
369 1.21 rmind puts(buf);
370 1.21 rmind ent++;
371 1.21 rmind }
372 1.21 rmind free(nct.nct_data.buf.buf);
373 1.21 rmind } else {
374 1.21 rmind printf("%s: %s\n", getprogname(),
375 1.29 rmind nct.nct_cmd == NPF_CMD_TABLE_LOOKUP ?
376 1.15 rmind "matching entry found" : "success");
377 1.15 rmind }
378 1.21 rmind exit(EXIT_SUCCESS);
379 1.15 rmind }
380 1.15 rmind
381 1.29 rmind static nl_rule_t *
382 1.29 rmind npfctl_parse_rule(int argc, char **argv)
383 1.29 rmind {
384 1.29 rmind char rule_string[1024];
385 1.29 rmind nl_rule_t *rl;
386 1.29 rmind
387 1.29 rmind /* Get the rule string and parse it. */
388 1.38 rmind if (!join(rule_string, sizeof(rule_string), argc, argv, " ")) {
389 1.29 rmind errx(EXIT_FAILURE, "command too long");
390 1.29 rmind }
391 1.29 rmind npfctl_parse_string(rule_string);
392 1.29 rmind if ((rl = npfctl_rule_ref()) == NULL) {
393 1.29 rmind errx(EXIT_FAILURE, "could not parse the rule");
394 1.29 rmind }
395 1.29 rmind return rl;
396 1.29 rmind }
397 1.29 rmind
398 1.29 rmind static void
399 1.29 rmind npfctl_generate_key(nl_rule_t *rl, void *key)
400 1.29 rmind {
401 1.29 rmind void *meta;
402 1.29 rmind size_t len;
403 1.29 rmind
404 1.29 rmind if ((meta = npf_rule_export(rl, &len)) == NULL) {
405 1.29 rmind errx(EXIT_FAILURE, "error generating rule key");
406 1.29 rmind }
407 1.29 rmind __CTASSERT(NPF_RULE_MAXKEYLEN >= SHA_DIGEST_LENGTH);
408 1.29 rmind memset(key, 0, NPF_RULE_MAXKEYLEN);
409 1.29 rmind SHA1(meta, len, key);
410 1.29 rmind free(meta);
411 1.29 rmind }
412 1.29 rmind
413 1.29 rmind __dead static void
414 1.29 rmind npfctl_rule(int fd, int argc, char **argv)
415 1.29 rmind {
416 1.29 rmind static const struct ruleops_s {
417 1.29 rmind const char * cmd;
418 1.29 rmind int action;
419 1.36 rmind bool extra_arg;
420 1.29 rmind } ruleops[] = {
421 1.36 rmind { "add", NPF_CMD_RULE_ADD, true },
422 1.36 rmind { "rem", NPF_CMD_RULE_REMKEY, true },
423 1.36 rmind { "del", NPF_CMD_RULE_REMKEY, true },
424 1.36 rmind { "rem-id", NPF_CMD_RULE_REMOVE, true },
425 1.36 rmind { "list", NPF_CMD_RULE_LIST, false },
426 1.36 rmind { "flush", NPF_CMD_RULE_FLUSH, false },
427 1.36 rmind { NULL, 0, 0 }
428 1.29 rmind };
429 1.29 rmind uint8_t key[NPF_RULE_MAXKEYLEN];
430 1.29 rmind const char *ruleset_name = argv[0];
431 1.29 rmind const char *cmd = argv[1];
432 1.29 rmind int error, action = 0;
433 1.31 rmind uint64_t rule_id;
434 1.36 rmind bool extra_arg;
435 1.29 rmind nl_rule_t *rl;
436 1.29 rmind
437 1.29 rmind for (int n = 0; ruleops[n].cmd != NULL; n++) {
438 1.29 rmind if (strcmp(cmd, ruleops[n].cmd) == 0) {
439 1.29 rmind action = ruleops[n].action;
440 1.36 rmind extra_arg = ruleops[n].extra_arg;
441 1.29 rmind break;
442 1.29 rmind }
443 1.29 rmind }
444 1.36 rmind argc -= 2;
445 1.36 rmind argv += 2;
446 1.29 rmind
447 1.36 rmind if (!action || (extra_arg && argc == 0)) {
448 1.29 rmind usage();
449 1.29 rmind }
450 1.29 rmind
451 1.29 rmind switch (action) {
452 1.29 rmind case NPF_CMD_RULE_ADD:
453 1.29 rmind rl = npfctl_parse_rule(argc, argv);
454 1.29 rmind npfctl_generate_key(rl, key);
455 1.29 rmind npf_rule_setkey(rl, key, sizeof(key));
456 1.29 rmind error = npf_ruleset_add(fd, ruleset_name, rl, &rule_id);
457 1.29 rmind break;
458 1.29 rmind case NPF_CMD_RULE_REMKEY:
459 1.29 rmind rl = npfctl_parse_rule(argc, argv);
460 1.29 rmind npfctl_generate_key(rl, key);
461 1.29 rmind error = npf_ruleset_remkey(fd, ruleset_name, key, sizeof(key));
462 1.29 rmind break;
463 1.29 rmind case NPF_CMD_RULE_REMOVE:
464 1.31 rmind rule_id = strtoull(argv[0], NULL, 16);
465 1.29 rmind error = npf_ruleset_remove(fd, ruleset_name, rule_id);
466 1.29 rmind break;
467 1.30 rmind case NPF_CMD_RULE_LIST:
468 1.30 rmind error = npfctl_ruleset_show(fd, ruleset_name);
469 1.30 rmind break;
470 1.30 rmind case NPF_CMD_RULE_FLUSH:
471 1.30 rmind error = npf_ruleset_flush(fd, ruleset_name);
472 1.30 rmind break;
473 1.29 rmind default:
474 1.29 rmind assert(false);
475 1.29 rmind }
476 1.29 rmind
477 1.29 rmind switch (error) {
478 1.29 rmind case 0:
479 1.29 rmind /* Success. */
480 1.29 rmind break;
481 1.31 rmind case ESRCH:
482 1.31 rmind errx(EXIT_FAILURE, "ruleset \"%s\" not found", ruleset_name);
483 1.29 rmind case ENOENT:
484 1.31 rmind errx(EXIT_FAILURE, "rule was not found");
485 1.29 rmind default:
486 1.29 rmind errx(EXIT_FAILURE, "rule operation: %s", strerror(error));
487 1.29 rmind }
488 1.29 rmind if (action == NPF_CMD_RULE_ADD) {
489 1.31 rmind printf("OK %" PRIx64 "\n", rule_id);
490 1.29 rmind }
491 1.29 rmind exit(EXIT_SUCCESS);
492 1.29 rmind }
493 1.29 rmind
494 1.15 rmind static void
495 1.1 rmind npfctl(int action, int argc, char **argv)
496 1.1 rmind {
497 1.29 rmind int fd, ver, boolval, ret = 0;
498 1.1 rmind
499 1.1 rmind fd = open(NPF_DEV_PATH, O_RDONLY);
500 1.1 rmind if (fd == -1) {
501 1.4 rmind err(EXIT_FAILURE, "cannot open '%s'", NPF_DEV_PATH);
502 1.1 rmind }
503 1.29 rmind if (ioctl(fd, IOC_NPF_VERSION, &ver) == -1) {
504 1.32 christos err(EXIT_FAILURE, "ioctl(IOC_NPF_VERSION)");
505 1.15 rmind }
506 1.1 rmind if (ver != NPF_VERSION) {
507 1.4 rmind errx(EXIT_FAILURE,
508 1.14 rmind "incompatible NPF interface version (%d, kernel %d)\n"
509 1.14 rmind "Hint: update userland?", NPF_VERSION, ver);
510 1.1 rmind }
511 1.29 rmind
512 1.32 christos const char *fun = "";
513 1.1 rmind switch (action) {
514 1.1 rmind case NPFCTL_START:
515 1.1 rmind boolval = true;
516 1.1 rmind ret = ioctl(fd, IOC_NPF_SWITCH, &boolval);
517 1.32 christos fun = "ioctl(IOC_NPF_SWITCH)";
518 1.1 rmind break;
519 1.1 rmind case NPFCTL_STOP:
520 1.1 rmind boolval = false;
521 1.1 rmind ret = ioctl(fd, IOC_NPF_SWITCH, &boolval);
522 1.32 christos fun = "ioctl(IOC_NPF_SWITCH)";
523 1.1 rmind break;
524 1.1 rmind case NPFCTL_RELOAD:
525 1.8 rmind npfctl_config_init(false);
526 1.29 rmind npfctl_parse_file(argc < 3 ? NPF_CONF_PATH : argv[2]);
527 1.32 christos errno = ret = npfctl_config_send(fd, NULL);
528 1.32 christos fun = "npfctl_config_send";
529 1.1 rmind break;
530 1.11 rmind case NPFCTL_SHOWCONF:
531 1.11 rmind ret = npfctl_config_show(fd);
532 1.32 christos fun = "npfctl_config_show";
533 1.11 rmind break;
534 1.1 rmind case NPFCTL_FLUSH:
535 1.9 rmind ret = npf_config_flush(fd);
536 1.32 christos fun = "npf_config_flush";
537 1.1 rmind break;
538 1.25 rmind case NPFCTL_VALIDATE:
539 1.25 rmind npfctl_config_init(false);
540 1.29 rmind npfctl_parse_file(argc < 3 ? NPF_CONF_PATH : argv[2]);
541 1.25 rmind ret = npfctl_config_show(0);
542 1.32 christos fun = "npfctl_config_show";
543 1.25 rmind break;
544 1.1 rmind case NPFCTL_TABLE:
545 1.21 rmind if ((argc -= 2) < 2) {
546 1.1 rmind usage();
547 1.1 rmind }
548 1.21 rmind argv += 2;
549 1.21 rmind npfctl_table(fd, argc, argv);
550 1.1 rmind break;
551 1.29 rmind case NPFCTL_RULE:
552 1.29 rmind if ((argc -= 2) < 2) {
553 1.29 rmind usage();
554 1.29 rmind }
555 1.29 rmind argv += 2;
556 1.29 rmind npfctl_rule(fd, argc, argv);
557 1.29 rmind break;
558 1.3 rmind case NPFCTL_STATS:
559 1.3 rmind ret = npfctl_print_stats(fd);
560 1.32 christos fun = "npfctl_print_stats";
561 1.3 rmind break;
562 1.3 rmind case NPFCTL_SESSIONS_SAVE:
563 1.15 rmind if (npf_sessions_recv(fd, NPF_SESSDB_PATH) != 0) {
564 1.5 rmind errx(EXIT_FAILURE, "could not save sessions to '%s'",
565 1.5 rmind NPF_SESSDB_PATH);
566 1.5 rmind }
567 1.3 rmind break;
568 1.3 rmind case NPFCTL_SESSIONS_LOAD:
569 1.15 rmind if (npf_sessions_send(fd, NPF_SESSDB_PATH) != 0) {
570 1.5 rmind errx(EXIT_FAILURE, "no sessions loaded from '%s'",
571 1.5 rmind NPF_SESSDB_PATH);
572 1.5 rmind }
573 1.3 rmind break;
574 1.1 rmind }
575 1.7 zoltan if (ret) {
576 1.32 christos err(EXIT_FAILURE, "%s", fun);
577 1.1 rmind }
578 1.1 rmind close(fd);
579 1.1 rmind }
580 1.1 rmind
581 1.1 rmind int
582 1.1 rmind main(int argc, char **argv)
583 1.1 rmind {
584 1.1 rmind char *cmd;
585 1.1 rmind
586 1.1 rmind if (argc < 2) {
587 1.1 rmind usage();
588 1.1 rmind }
589 1.1 rmind cmd = argv[1];
590 1.1 rmind
591 1.8 rmind if (strcmp(cmd, "debug") == 0) {
592 1.14 rmind const char *cfg = argc > 2 ? argv[2] : "/etc/npf.conf";
593 1.18 rmind const char *out = argc > 3 ? argv[3] : "/tmp/npf.plist";
594 1.18 rmind
595 1.8 rmind npfctl_config_init(true);
596 1.29 rmind npfctl_parse_file(cfg);
597 1.18 rmind npfctl_config_send(0, out);
598 1.8 rmind return EXIT_SUCCESS;
599 1.8 rmind }
600 1.4 rmind
601 1.12 rmind /* Find and call the subroutine. */
602 1.8 rmind for (int n = 0; operations[n].cmd != NULL; n++) {
603 1.25 rmind const char *opcmd = operations[n].cmd;
604 1.25 rmind if (strncmp(cmd, opcmd, strlen(opcmd)) != 0)
605 1.1 rmind continue;
606 1.1 rmind npfctl(operations[n].action, argc, argv);
607 1.8 rmind return EXIT_SUCCESS;
608 1.1 rmind }
609 1.3 rmind usage();
610 1.1 rmind }
611