npf_parse.y revision 1.25 1 1.25 rmind /* $NetBSD: npf_parse.y,v 1.25 2013/09/19 01:04:45 rmind Exp $ */
2 1.1 rmind
3 1.1 rmind /*-
4 1.1 rmind * Copyright (c) 2011-2012 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 Martin Husemann and Christos Zoulas.
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
34 1.1 rmind #include <stdio.h>
35 1.1 rmind #include <err.h>
36 1.1 rmind #include <vis.h>
37 1.1 rmind #include <netdb.h>
38 1.1 rmind
39 1.1 rmind #include "npfctl.h"
40 1.1 rmind
41 1.12 rmind #define YYSTACKSIZE 4096
42 1.12 rmind
43 1.18 rmind int yyparsetarget;
44 1.1 rmind const char * yyfilename;
45 1.1 rmind
46 1.1 rmind extern int yylineno, yycolumn;
47 1.1 rmind extern int yylex(void);
48 1.1 rmind
49 1.1 rmind /* Variable under construction (bottom up). */
50 1.1 rmind static npfvar_t * cvar;
51 1.1 rmind
52 1.1 rmind void
53 1.1 rmind yyerror(const char *fmt, ...)
54 1.1 rmind {
55 1.1 rmind extern int yyleng;
56 1.1 rmind extern char *yytext;
57 1.1 rmind
58 1.15 rmind char *msg, *context = estrndup(yytext, yyleng);
59 1.14 rmind bool eol = (*context == '\n');
60 1.1 rmind va_list ap;
61 1.1 rmind
62 1.1 rmind va_start(ap, fmt);
63 1.1 rmind vasprintf(&msg, fmt, ap);
64 1.1 rmind va_end(ap);
65 1.1 rmind
66 1.14 rmind fprintf(stderr, "%s:%d:%d: %s", yyfilename,
67 1.14 rmind yylineno - (int)eol, yycolumn, msg);
68 1.14 rmind if (!eol) {
69 1.14 rmind size_t len = strlen(context);
70 1.16 rmind char *dst = ecalloc(1, len * 4 + 1);
71 1.14 rmind
72 1.14 rmind strvisx(dst, context, len, VIS_WHITE|VIS_CSTYLE);
73 1.14 rmind fprintf(stderr, " near '%s'", dst);
74 1.14 rmind }
75 1.14 rmind fprintf(stderr, "\n");
76 1.1 rmind exit(EXIT_FAILURE);
77 1.1 rmind }
78 1.1 rmind
79 1.18 rmind #define CHECK_PARSER_FILE \
80 1.18 rmind if (yyparsetarget != NPFCTL_PARSE_FILE) \
81 1.18 rmind yyerror("rule must be in the group");
82 1.18 rmind
83 1.18 rmind #define CHECK_PARSER_STRING \
84 1.18 rmind if (yyparsetarget != NPFCTL_PARSE_STRING) \
85 1.18 rmind yyerror("invalid rule syntax");
86 1.18 rmind
87 1.1 rmind %}
88 1.1 rmind
89 1.22 christos %token ALG
90 1.1 rmind %token ALL
91 1.1 rmind %token ANY
92 1.1 rmind %token APPLY
93 1.8 rmind %token ARROWBOTH
94 1.8 rmind %token ARROWLEFT
95 1.8 rmind %token ARROWRIGHT
96 1.1 rmind %token BLOCK
97 1.1 rmind %token CURLY_CLOSE
98 1.1 rmind %token CURLY_OPEN
99 1.1 rmind %token CODE
100 1.1 rmind %token COLON
101 1.1 rmind %token COMMA
102 1.1 rmind %token DEFAULT
103 1.1 rmind %token TDYNAMIC
104 1.8 rmind %token TSTATIC
105 1.1 rmind %token EQ
106 1.1 rmind %token TFILE
107 1.1 rmind %token FLAGS
108 1.1 rmind %token FROM
109 1.1 rmind %token GROUP
110 1.1 rmind %token HASH
111 1.1 rmind %token ICMPTYPE
112 1.1 rmind %token ID
113 1.17 rmind %token IFNET
114 1.1 rmind %token IN
115 1.1 rmind %token INET
116 1.1 rmind %token INET6
117 1.1 rmind %token INTERFACE
118 1.8 rmind %token MAP
119 1.1 rmind %token MINUS
120 1.1 rmind %token NAME
121 1.1 rmind %token ON
122 1.1 rmind %token OUT
123 1.1 rmind %token PAR_CLOSE
124 1.1 rmind %token PAR_OPEN
125 1.1 rmind %token PASS
126 1.1 rmind %token PORT
127 1.1 rmind %token PROCEDURE
128 1.1 rmind %token PROTO
129 1.1 rmind %token FAMILY
130 1.7 rmind %token FINAL
131 1.18 rmind %token FORW
132 1.1 rmind %token RETURN
133 1.1 rmind %token RETURNICMP
134 1.1 rmind %token RETURNRST
135 1.21 rmind %token RULESET
136 1.1 rmind %token SEPLINE
137 1.1 rmind %token SLASH
138 1.7 rmind %token STATEFUL
139 1.1 rmind %token TABLE
140 1.1 rmind %token TCP
141 1.1 rmind %token TO
142 1.1 rmind %token TREE
143 1.1 rmind %token TYPE
144 1.11 spz %token <num> ICMP
145 1.11 spz %token <num> ICMP6
146 1.1 rmind
147 1.1 rmind %token <num> HEX
148 1.1 rmind %token <str> IDENTIFIER
149 1.1 rmind %token <str> IPV4ADDR
150 1.1 rmind %token <str> IPV6ADDR
151 1.1 rmind %token <num> NUM
152 1.13 rmind %token <fpnum> FPNUM
153 1.1 rmind %token <str> STRING
154 1.1 rmind %token <str> TABLE_ID
155 1.1 rmind %token <str> VAR_ID
156 1.1 rmind
157 1.19 christos %type <str> addr, some_name, list_elem, table_store, string
158 1.13 rmind %type <str> proc_param_val, opt_apply
159 1.23 christos %type <num> ifindex, port, opt_final, on_ifindex, number
160 1.17 rmind %type <num> afamily, opt_family
161 1.17 rmind %type <num> block_or_pass, rule_dir, block_opts
162 1.8 rmind %type <num> opt_stateful, icmp_type, table_type, map_sd, map_type
163 1.17 rmind %type <var> ifnet, addr_or_ifnet, port_range, icmp_type_and_code
164 1.1 rmind %type <var> filt_addr, addr_and_mask, tcp_flags, tcp_flags_and_mask
165 1.13 rmind %type <var> procs, proc_call, proc_param_list, proc_param
166 1.8 rmind %type <addrport> mapseg
167 1.1 rmind %type <filtopts> filt_opts, all_or_filt_opts
168 1.1 rmind %type <optproto> opt_proto
169 1.1 rmind %type <rulegroup> group_attr, group_opt
170 1.1 rmind
171 1.1 rmind %union {
172 1.1 rmind char * str;
173 1.1 rmind unsigned long num;
174 1.13 rmind double fpnum;
175 1.17 rmind npfvar_t * var;
176 1.8 rmind addr_port_t addrport;
177 1.1 rmind filt_opts_t filtopts;
178 1.1 rmind opt_proto_t optproto;
179 1.1 rmind rule_group_t rulegroup;
180 1.1 rmind }
181 1.1 rmind
182 1.1 rmind %%
183 1.1 rmind
184 1.1 rmind input
185 1.18 rmind : { CHECK_PARSER_FILE } lines
186 1.18 rmind | { CHECK_PARSER_STRING } rule
187 1.1 rmind ;
188 1.1 rmind
189 1.1 rmind lines
190 1.1 rmind : line SEPLINE lines
191 1.1 rmind | line
192 1.1 rmind ;
193 1.1 rmind
194 1.1 rmind line
195 1.1 rmind : def
196 1.1 rmind | table
197 1.8 rmind | map
198 1.1 rmind | group
199 1.1 rmind | rproc
200 1.22 christos | alg
201 1.1 rmind |
202 1.1 rmind ;
203 1.1 rmind
204 1.1 rmind def
205 1.1 rmind : VAR_ID
206 1.1 rmind {
207 1.1 rmind cvar = npfvar_create($1);
208 1.1 rmind npfvar_add(cvar);
209 1.1 rmind }
210 1.1 rmind EQ definition
211 1.1 rmind {
212 1.1 rmind cvar = NULL;
213 1.1 rmind }
214 1.1 rmind ;
215 1.1 rmind
216 1.1 rmind definition
217 1.1 rmind : list_elem
218 1.1 rmind | listdef
219 1.1 rmind ;
220 1.1 rmind
221 1.1 rmind listdef
222 1.1 rmind : CURLY_OPEN list_elems CURLY_CLOSE
223 1.1 rmind ;
224 1.1 rmind
225 1.1 rmind list_elems
226 1.1 rmind : list_elem COMMA list_elems
227 1.1 rmind | list_elem
228 1.1 rmind ;
229 1.1 rmind
230 1.1 rmind list_elem
231 1.1 rmind : IDENTIFIER
232 1.1 rmind {
233 1.1 rmind npfvar_t *vp = npfvar_create(".identifier");
234 1.1 rmind npfvar_add_element(vp, NPFVAR_IDENTIFIER, $1, strlen($1) + 1);
235 1.1 rmind npfvar_add_elements(cvar, vp);
236 1.1 rmind }
237 1.1 rmind | STRING
238 1.1 rmind {
239 1.1 rmind npfvar_t *vp = npfvar_create(".string");
240 1.1 rmind npfvar_add_element(vp, NPFVAR_STRING, $1, strlen($1) + 1);
241 1.1 rmind npfvar_add_elements(cvar, vp);
242 1.1 rmind }
243 1.23 christos | number MINUS number
244 1.5 christos {
245 1.5 christos npfvar_t *vp = npfctl_parse_port_range($1, $3);
246 1.5 christos npfvar_add_elements(cvar, vp);
247 1.5 christos }
248 1.23 christos | number
249 1.1 rmind {
250 1.1 rmind npfvar_t *vp = npfvar_create(".num");
251 1.1 rmind npfvar_add_element(vp, NPFVAR_NUM, &$1, sizeof($1));
252 1.1 rmind npfvar_add_elements(cvar, vp);
253 1.1 rmind }
254 1.1 rmind | VAR_ID
255 1.1 rmind {
256 1.1 rmind npfvar_t *vp = npfvar_create(".var_id");
257 1.1 rmind npfvar_add_element(vp, NPFVAR_VAR_ID, $1, strlen($1) + 1);
258 1.1 rmind npfvar_add_elements(cvar, vp);
259 1.1 rmind }
260 1.17 rmind | ifnet
261 1.17 rmind {
262 1.17 rmind npfvar_add_elements(cvar, $1);
263 1.17 rmind }
264 1.1 rmind | addr_and_mask
265 1.1 rmind {
266 1.1 rmind npfvar_add_elements(cvar, $1);
267 1.1 rmind }
268 1.1 rmind ;
269 1.1 rmind
270 1.1 rmind table
271 1.1 rmind : TABLE TABLE_ID TYPE table_type table_store
272 1.1 rmind {
273 1.1 rmind npfctl_build_table($2, $4, $5);
274 1.1 rmind }
275 1.1 rmind ;
276 1.1 rmind
277 1.1 rmind table_type
278 1.1 rmind : HASH { $$ = NPF_TABLE_HASH; }
279 1.3 rmind | TREE { $$ = NPF_TABLE_TREE; }
280 1.1 rmind ;
281 1.1 rmind
282 1.1 rmind table_store
283 1.1 rmind : TDYNAMIC { $$ = NULL; }
284 1.1 rmind | TFILE STRING { $$ = $2; }
285 1.1 rmind ;
286 1.1 rmind
287 1.8 rmind map_sd
288 1.8 rmind : TSTATIC { $$ = NPFCTL_NAT_STATIC; }
289 1.8 rmind | TDYNAMIC { $$ = NPFCTL_NAT_DYNAMIC; }
290 1.8 rmind | { $$ = NPFCTL_NAT_DYNAMIC; }
291 1.1 rmind ;
292 1.1 rmind
293 1.8 rmind map_type
294 1.8 rmind : ARROWBOTH { $$ = NPF_NATIN | NPF_NATOUT; }
295 1.8 rmind | ARROWLEFT { $$ = NPF_NATIN; }
296 1.8 rmind | ARROWRIGHT { $$ = NPF_NATOUT; }
297 1.8 rmind ;
298 1.8 rmind
299 1.8 rmind mapseg
300 1.17 rmind : addr_or_ifnet port_range
301 1.1 rmind {
302 1.8 rmind $$.ap_netaddr = $1;
303 1.8 rmind $$.ap_portrange = $2;
304 1.1 rmind }
305 1.1 rmind ;
306 1.1 rmind
307 1.8 rmind map
308 1.8 rmind : MAP ifindex map_sd mapseg map_type mapseg PASS filt_opts
309 1.1 rmind {
310 1.12 rmind npfctl_build_natseg($3, $5, $2, &$4, &$6, &$8);
311 1.1 rmind }
312 1.8 rmind | MAP ifindex map_sd mapseg map_type mapseg
313 1.1 rmind {
314 1.12 rmind npfctl_build_natseg($3, $5, $2, &$4, &$6, NULL);
315 1.1 rmind }
316 1.21 rmind | MAP RULESET PAR_OPEN group_attr PAR_CLOSE
317 1.21 rmind {
318 1.21 rmind npfctl_build_maprset($4.rg_name, $4.rg_attr, $4.rg_ifnum);
319 1.21 rmind }
320 1.1 rmind ;
321 1.1 rmind
322 1.1 rmind rproc
323 1.1 rmind : PROCEDURE STRING CURLY_OPEN procs CURLY_CLOSE
324 1.1 rmind {
325 1.1 rmind npfctl_build_rproc($2, $4);
326 1.1 rmind }
327 1.1 rmind ;
328 1.1 rmind
329 1.24 rmind alg
330 1.22 christos : ALG STRING
331 1.22 christos {
332 1.22 christos npfctl_build_alg($2);
333 1.22 christos }
334 1.22 christos ;
335 1.24 rmind
336 1.1 rmind procs
337 1.13 rmind : proc_call SEPLINE procs
338 1.13 rmind {
339 1.13 rmind $$ = npfvar_add_elements($1, $3);
340 1.13 rmind }
341 1.13 rmind | proc_call { $$ = $1; }
342 1.1 rmind ;
343 1.1 rmind
344 1.13 rmind proc_call
345 1.13 rmind : IDENTIFIER COLON proc_param_list
346 1.1 rmind {
347 1.13 rmind proc_call_t pc;
348 1.1 rmind
349 1.15 rmind pc.pc_name = estrdup($1);
350 1.13 rmind pc.pc_opts = $3;
351 1.13 rmind $$ = npfvar_create(".proc_call");
352 1.13 rmind npfvar_add_element($$, NPFVAR_PROC, &pc, sizeof(pc));
353 1.1 rmind }
354 1.1 rmind | { $$ = NULL; }
355 1.1 rmind ;
356 1.1 rmind
357 1.13 rmind proc_param_list
358 1.13 rmind : proc_param COMMA proc_param_list
359 1.1 rmind {
360 1.1 rmind $$ = npfvar_add_elements($1, $3);
361 1.1 rmind }
362 1.13 rmind | proc_param { $$ = $1; }
363 1.1 rmind | { $$ = NULL; }
364 1.1 rmind ;
365 1.1 rmind
366 1.13 rmind proc_param
367 1.13 rmind /* Key and value pair. */
368 1.13 rmind : some_name proc_param_val
369 1.1 rmind {
370 1.13 rmind proc_param_t pp;
371 1.1 rmind
372 1.15 rmind pp.pp_param = estrdup($1);
373 1.15 rmind pp.pp_value = $2 ? estrdup($2) : NULL;
374 1.13 rmind $$ = npfvar_create(".proc_param");
375 1.13 rmind npfvar_add_element($$, NPFVAR_PROC_PARAM, &pp, sizeof(pp));
376 1.1 rmind }
377 1.1 rmind ;
378 1.1 rmind
379 1.13 rmind proc_param_val
380 1.13 rmind : some_name { $$ = $1; }
381 1.23 christos | number { (void)asprintf(&$$, "%ld", $1); }
382 1.13 rmind | FPNUM { (void)asprintf(&$$, "%lf", $1); }
383 1.13 rmind | { $$ = NULL; }
384 1.1 rmind ;
385 1.1 rmind
386 1.1 rmind group
387 1.1 rmind : GROUP PAR_OPEN group_attr PAR_CLOSE
388 1.1 rmind {
389 1.18 rmind /* Build a group. Increases the nesting level. */
390 1.18 rmind npfctl_build_group($3.rg_name, $3.rg_attr,
391 1.18 rmind $3.rg_ifnum, $3.rg_default);
392 1.18 rmind }
393 1.18 rmind ruleset_block
394 1.18 rmind {
395 1.18 rmind /* Decrease the nesting level. */
396 1.18 rmind npfctl_build_group_end();
397 1.1 rmind }
398 1.1 rmind ;
399 1.1 rmind
400 1.21 rmind ruleset
401 1.21 rmind : RULESET PAR_OPEN group_attr PAR_CLOSE
402 1.21 rmind {
403 1.21 rmind /* Ruleset is a dynamic group. */
404 1.21 rmind npfctl_build_group($3.rg_name, $3.rg_attr | NPF_RULE_DYNAMIC,
405 1.21 rmind $3.rg_ifnum, $3.rg_default);
406 1.21 rmind npfctl_build_group_end();
407 1.21 rmind }
408 1.21 rmind
409 1.1 rmind group_attr
410 1.1 rmind : group_opt COMMA group_attr
411 1.1 rmind {
412 1.1 rmind $$ = $3;
413 1.1 rmind
414 1.1 rmind if (($1.rg_name && $$.rg_name) ||
415 1.1 rmind ($1.rg_ifnum && $$.rg_ifnum) ||
416 1.1 rmind ($1.rg_attr & $$.rg_attr) != 0)
417 1.1 rmind yyerror("duplicate group option");
418 1.1 rmind
419 1.1 rmind if ($1.rg_name) {
420 1.1 rmind $$.rg_name = $1.rg_name;
421 1.1 rmind }
422 1.1 rmind if ($1.rg_attr) {
423 1.1 rmind $$.rg_attr |= $1.rg_attr;
424 1.1 rmind }
425 1.1 rmind if ($1.rg_ifnum) {
426 1.1 rmind $$.rg_ifnum = $1.rg_ifnum;
427 1.1 rmind }
428 1.18 rmind if ($1.rg_default) {
429 1.18 rmind $$.rg_default = $1.rg_default;
430 1.18 rmind }
431 1.1 rmind }
432 1.1 rmind | group_opt { $$ = $1; }
433 1.1 rmind ;
434 1.1 rmind
435 1.1 rmind group_opt
436 1.1 rmind : DEFAULT
437 1.1 rmind {
438 1.18 rmind memset(&$$, 0, sizeof(rule_group_t));
439 1.18 rmind $$.rg_default = true;
440 1.1 rmind }
441 1.1 rmind | NAME STRING
442 1.1 rmind {
443 1.18 rmind memset(&$$, 0, sizeof(rule_group_t));
444 1.1 rmind $$.rg_name = $2;
445 1.1 rmind }
446 1.1 rmind | INTERFACE ifindex
447 1.1 rmind {
448 1.18 rmind memset(&$$, 0, sizeof(rule_group_t));
449 1.1 rmind $$.rg_ifnum = $2;
450 1.18 rmind }
451 1.18 rmind | TDYNAMIC
452 1.18 rmind {
453 1.18 rmind memset(&$$, 0, sizeof(rule_group_t));
454 1.18 rmind $$.rg_attr = NPF_RULE_DYNAMIC;
455 1.18 rmind }
456 1.18 rmind | FORW
457 1.18 rmind {
458 1.18 rmind memset(&$$, 0, sizeof(rule_group_t));
459 1.18 rmind $$.rg_attr = NPF_RULE_FORW;
460 1.1 rmind }
461 1.1 rmind | rule_dir
462 1.1 rmind {
463 1.18 rmind memset(&$$, 0, sizeof(rule_group_t));
464 1.1 rmind $$.rg_attr = $1;
465 1.1 rmind }
466 1.1 rmind ;
467 1.1 rmind
468 1.18 rmind ruleset_block
469 1.21 rmind : CURLY_OPEN ruleset_def CURLY_CLOSE
470 1.18 rmind ;
471 1.18 rmind
472 1.21 rmind ruleset_def
473 1.21 rmind : rule_group SEPLINE ruleset_def
474 1.18 rmind | rule_group
475 1.1 rmind ;
476 1.1 rmind
477 1.18 rmind rule_group
478 1.18 rmind : rule
479 1.18 rmind | group
480 1.21 rmind | ruleset
481 1.18 rmind |
482 1.24 rmind ;
483 1.1 rmind
484 1.1 rmind rule
485 1.17 rmind : block_or_pass opt_stateful rule_dir opt_final on_ifindex
486 1.17 rmind opt_family opt_proto all_or_filt_opts opt_apply
487 1.1 rmind {
488 1.7 rmind npfctl_build_rule($1 | $2 | $3 | $4, $5,
489 1.7 rmind $6, &$7, &$8, $9);
490 1.1 rmind }
491 1.1 rmind ;
492 1.1 rmind
493 1.1 rmind block_or_pass
494 1.1 rmind : BLOCK block_opts { $$ = $2; }
495 1.1 rmind | PASS { $$ = NPF_RULE_PASS; }
496 1.1 rmind ;
497 1.1 rmind
498 1.1 rmind rule_dir
499 1.1 rmind : IN { $$ = NPF_RULE_IN; }
500 1.1 rmind | OUT { $$ = NPF_RULE_OUT; }
501 1.1 rmind | { $$ = NPF_RULE_IN | NPF_RULE_OUT; }
502 1.1 rmind ;
503 1.1 rmind
504 1.7 rmind opt_final
505 1.7 rmind : FINAL { $$ = NPF_RULE_FINAL; }
506 1.1 rmind | { $$ = 0; }
507 1.1 rmind ;
508 1.1 rmind
509 1.17 rmind on_ifindex
510 1.1 rmind : ON ifindex { $$ = $2; }
511 1.1 rmind | { $$ = 0; }
512 1.1 rmind ;
513 1.1 rmind
514 1.17 rmind afamily
515 1.17 rmind : INET { $$ = AF_INET; }
516 1.17 rmind | INET6 { $$ = AF_INET6; }
517 1.17 rmind ;
518 1.17 rmind
519 1.9 rmind opt_family
520 1.17 rmind : FAMILY afamily { $$ = $2; }
521 1.9 rmind | { $$ = AF_UNSPEC; }
522 1.1 rmind ;
523 1.1 rmind
524 1.1 rmind opt_proto
525 1.1 rmind : PROTO TCP tcp_flags_and_mask
526 1.1 rmind {
527 1.1 rmind $$.op_proto = IPPROTO_TCP;
528 1.1 rmind $$.op_opts = $3;
529 1.1 rmind }
530 1.1 rmind | PROTO ICMP icmp_type_and_code
531 1.1 rmind {
532 1.1 rmind $$.op_proto = IPPROTO_ICMP;
533 1.1 rmind $$.op_opts = $3;
534 1.1 rmind }
535 1.11 spz | PROTO ICMP6 icmp_type_and_code
536 1.11 spz {
537 1.11 spz $$.op_proto = IPPROTO_ICMPV6;
538 1.11 spz $$.op_opts = $3;
539 1.11 spz }
540 1.9 rmind | PROTO some_name
541 1.9 rmind {
542 1.9 rmind $$.op_proto = npfctl_protono($2);
543 1.9 rmind $$.op_opts = NULL;
544 1.9 rmind }
545 1.23 christos | PROTO number
546 1.1 rmind {
547 1.9 rmind $$.op_proto = $2;
548 1.1 rmind $$.op_opts = NULL;
549 1.1 rmind }
550 1.1 rmind |
551 1.1 rmind {
552 1.1 rmind $$.op_proto = -1;
553 1.1 rmind $$.op_opts = NULL;
554 1.1 rmind }
555 1.1 rmind ;
556 1.1 rmind
557 1.1 rmind all_or_filt_opts
558 1.1 rmind : ALL
559 1.1 rmind {
560 1.8 rmind $$.fo_from.ap_netaddr = NULL;
561 1.8 rmind $$.fo_from.ap_portrange = NULL;
562 1.8 rmind $$.fo_to.ap_netaddr = NULL;
563 1.8 rmind $$.fo_to.ap_portrange = NULL;
564 1.1 rmind }
565 1.1 rmind | filt_opts { $$ = $1; }
566 1.1 rmind ;
567 1.1 rmind
568 1.7 rmind opt_stateful
569 1.9 rmind : STATEFUL { $$ = NPF_RULE_STATEFUL; }
570 1.1 rmind | { $$ = 0; }
571 1.1 rmind ;
572 1.1 rmind
573 1.1 rmind opt_apply
574 1.1 rmind : APPLY STRING { $$ = $2; }
575 1.1 rmind | { $$ = NULL; }
576 1.1 rmind ;
577 1.1 rmind
578 1.1 rmind block_opts
579 1.1 rmind : RETURNRST { $$ = NPF_RULE_RETRST; }
580 1.1 rmind | RETURNICMP { $$ = NPF_RULE_RETICMP; }
581 1.1 rmind | RETURN { $$ = NPF_RULE_RETRST | NPF_RULE_RETICMP; }
582 1.1 rmind | { $$ = 0; }
583 1.1 rmind ;
584 1.1 rmind
585 1.1 rmind filt_opts
586 1.1 rmind : FROM filt_addr port_range TO filt_addr port_range
587 1.1 rmind {
588 1.8 rmind $$.fo_from.ap_netaddr = $2;
589 1.8 rmind $$.fo_from.ap_portrange = $3;
590 1.8 rmind $$.fo_to.ap_netaddr = $5;
591 1.8 rmind $$.fo_to.ap_portrange = $6;
592 1.1 rmind }
593 1.1 rmind | FROM filt_addr port_range
594 1.1 rmind {
595 1.8 rmind $$.fo_from.ap_netaddr = $2;
596 1.8 rmind $$.fo_from.ap_portrange = $3;
597 1.8 rmind $$.fo_to.ap_netaddr = NULL;
598 1.8 rmind $$.fo_to.ap_portrange = NULL;
599 1.1 rmind }
600 1.1 rmind | TO filt_addr port_range
601 1.1 rmind {
602 1.8 rmind $$.fo_from.ap_netaddr = NULL;
603 1.8 rmind $$.fo_from.ap_portrange = NULL;
604 1.8 rmind $$.fo_to.ap_netaddr = $2;
605 1.8 rmind $$.fo_to.ap_portrange = $3;
606 1.1 rmind }
607 1.1 rmind ;
608 1.1 rmind
609 1.1 rmind filt_addr
610 1.17 rmind : addr_or_ifnet { $$ = $1; }
611 1.4 rmind | TABLE_ID { $$ = npfctl_parse_table_id($1); }
612 1.4 rmind | ANY { $$ = NULL; }
613 1.1 rmind ;
614 1.1 rmind
615 1.1 rmind addr_and_mask
616 1.23 christos : addr SLASH number
617 1.1 rmind {
618 1.1 rmind $$ = npfctl_parse_fam_addr_mask($1, NULL, &$3);
619 1.1 rmind }
620 1.1 rmind | addr SLASH addr
621 1.1 rmind {
622 1.1 rmind $$ = npfctl_parse_fam_addr_mask($1, $3, NULL);
623 1.1 rmind }
624 1.1 rmind | addr
625 1.1 rmind {
626 1.1 rmind $$ = npfctl_parse_fam_addr_mask($1, NULL, NULL);
627 1.1 rmind }
628 1.1 rmind ;
629 1.1 rmind
630 1.17 rmind addr_or_ifnet
631 1.9 rmind : addr_and_mask
632 1.9 rmind {
633 1.9 rmind assert($1 != NULL);
634 1.9 rmind $$ = $1;
635 1.9 rmind }
636 1.17 rmind | ifnet
637 1.4 rmind {
638 1.17 rmind ifnet_addr_t *ifna = npfvar_get_data($1, NPFVAR_INTERFACE, 0);
639 1.17 rmind $$ = ifna->ifna_addrs;
640 1.4 rmind }
641 1.4 rmind | VAR_ID
642 1.4 rmind {
643 1.4 rmind npfvar_t *vp = npfvar_lookup($1);
644 1.19 christos int type = npfvar_get_type(vp, 0);
645 1.17 rmind ifnet_addr_t *ifna;
646 1.4 rmind
647 1.19 christos again:
648 1.4 rmind switch (type) {
649 1.19 christos case NPFVAR_IDENTIFIER:
650 1.19 christos case NPFVAR_STRING:
651 1.19 christos vp = npfctl_parse_ifnet(npfvar_expand_string(vp),
652 1.19 christos AF_UNSPEC);
653 1.19 christos type = npfvar_get_type(vp, 0);
654 1.19 christos goto again;
655 1.4 rmind case NPFVAR_FAM:
656 1.4 rmind $$ = vp;
657 1.4 rmind break;
658 1.17 rmind case NPFVAR_INTERFACE:
659 1.17 rmind ifna = npfvar_get_data(vp, type, 0);
660 1.17 rmind $$ = ifna->ifna_addrs;
661 1.17 rmind break;
662 1.4 rmind case -1:
663 1.17 rmind yyerror("undefined variable '%s'", $1);
664 1.4 rmind break;
665 1.4 rmind default:
666 1.17 rmind yyerror("wrong variable '%s' type '%s' for address "
667 1.17 rmind "or interface", $1, npfvar_type(type));
668 1.4 rmind break;
669 1.4 rmind }
670 1.4 rmind }
671 1.1 rmind ;
672 1.1 rmind
673 1.1 rmind addr
674 1.1 rmind : IPV4ADDR { $$ = $1; }
675 1.1 rmind | IPV6ADDR { $$ = $1; }
676 1.1 rmind ;
677 1.1 rmind
678 1.1 rmind port_range
679 1.1 rmind : PORT port /* just port */
680 1.1 rmind {
681 1.1 rmind $$ = npfctl_parse_port_range($2, $2);
682 1.1 rmind }
683 1.8 rmind | PORT port MINUS port /* port from-to */
684 1.1 rmind {
685 1.1 rmind $$ = npfctl_parse_port_range($2, $4);
686 1.1 rmind }
687 1.8 rmind | PORT VAR_ID
688 1.8 rmind {
689 1.5 christos $$ = npfctl_parse_port_range_variable($2);
690 1.5 christos }
691 1.1 rmind |
692 1.1 rmind {
693 1.1 rmind $$ = NULL;
694 1.1 rmind }
695 1.1 rmind ;
696 1.1 rmind
697 1.1 rmind port
698 1.23 christos : number { $$ = $1; }
699 1.1 rmind | IDENTIFIER { $$ = npfctl_portno($1); }
700 1.20 christos | STRING { $$ = npfctl_portno($1); }
701 1.1 rmind ;
702 1.1 rmind
703 1.1 rmind icmp_type_and_code
704 1.1 rmind : ICMPTYPE icmp_type
705 1.1 rmind {
706 1.11 spz $$ = npfctl_parse_icmp($<num>0, $2, -1);
707 1.1 rmind }
708 1.23 christos | ICMPTYPE icmp_type CODE number
709 1.1 rmind {
710 1.11 spz $$ = npfctl_parse_icmp($<num>0, $2, $4);
711 1.1 rmind }
712 1.1 rmind | ICMPTYPE icmp_type CODE IDENTIFIER
713 1.1 rmind {
714 1.17 rmind $$ = npfctl_parse_icmp($<num>0, $2,
715 1.17 rmind npfctl_icmpcode($<num>0, $2, $4));
716 1.1 rmind }
717 1.1 rmind | ICMPTYPE icmp_type CODE VAR_ID
718 1.1 rmind {
719 1.1 rmind char *s = npfvar_expand_string(npfvar_lookup($4));
720 1.17 rmind $$ = npfctl_parse_icmp($<num>0, $2,
721 1.17 rmind npfctl_icmpcode($<num>0, $2, s));
722 1.1 rmind }
723 1.25 rmind | { $$ = NULL; }
724 1.1 rmind ;
725 1.1 rmind
726 1.1 rmind tcp_flags_and_mask
727 1.1 rmind : FLAGS tcp_flags SLASH tcp_flags
728 1.1 rmind {
729 1.1 rmind npfvar_add_elements($2, $4);
730 1.1 rmind $$ = $2;
731 1.1 rmind }
732 1.1 rmind | FLAGS tcp_flags
733 1.1 rmind {
734 1.1 rmind char *s = npfvar_get_data($2, NPFVAR_TCPFLAG, 0);
735 1.1 rmind npfvar_add_elements($2, npfctl_parse_tcpflag(s));
736 1.1 rmind $$ = $2;
737 1.1 rmind }
738 1.1 rmind | { $$ = NULL; }
739 1.1 rmind ;
740 1.1 rmind
741 1.1 rmind tcp_flags
742 1.1 rmind : IDENTIFIER { $$ = npfctl_parse_tcpflag($1); }
743 1.1 rmind ;
744 1.1 rmind
745 1.1 rmind icmp_type
746 1.23 christos : number { $$ = $1; }
747 1.11 spz | IDENTIFIER { $$ = npfctl_icmptype($<num>-1, $1); }
748 1.1 rmind | VAR_ID
749 1.1 rmind {
750 1.1 rmind char *s = npfvar_expand_string(npfvar_lookup($1));
751 1.11 spz $$ = npfctl_icmptype($<num>-1, s);
752 1.1 rmind }
753 1.1 rmind ;
754 1.1 rmind
755 1.19 christos string
756 1.19 christos : IDENTIFIER
757 1.19 christos {
758 1.19 christos $$ = $1;
759 1.19 christos }
760 1.19 christos | VAR_ID
761 1.19 christos {
762 1.19 christos npfvar_t *vp = npfvar_lookup($1);
763 1.19 christos const int type = npfvar_get_type(vp, 0);
764 1.19 christos
765 1.19 christos switch (type) {
766 1.19 christos case NPFVAR_STRING:
767 1.19 christos case NPFVAR_IDENTIFIER:
768 1.19 christos $$ = npfvar_expand_string(vp);
769 1.19 christos break;
770 1.19 christos case -1:
771 1.19 christos yyerror("undefined variable '%s' for interface", $1);
772 1.19 christos break;
773 1.19 christos default:
774 1.19 christos yyerror("wrong variable '%s' type '%s' for string",
775 1.19 christos $1, npfvar_type(type));
776 1.19 christos break;
777 1.19 christos }
778 1.19 christos }
779 1.19 christos ;
780 1.19 christos
781 1.17 rmind ifnet
782 1.19 christos : IFNET PAR_OPEN string PAR_CLOSE
783 1.17 rmind {
784 1.17 rmind $$ = npfctl_parse_ifnet($3, AF_UNSPEC);
785 1.17 rmind }
786 1.19 christos | afamily PAR_OPEN string PAR_CLOSE
787 1.17 rmind {
788 1.17 rmind $$ = npfctl_parse_ifnet($3, $1);
789 1.17 rmind }
790 1.19 christos ;
791 1.17 rmind
792 1.1 rmind ifindex
793 1.9 rmind : some_name
794 1.1 rmind {
795 1.1 rmind $$ = npfctl_find_ifindex($1);
796 1.1 rmind }
797 1.17 rmind | ifnet
798 1.17 rmind {
799 1.17 rmind ifnet_addr_t *ifna = npfvar_get_data($1, NPFVAR_INTERFACE, 0);
800 1.17 rmind $$ = ifna->ifna_index;
801 1.17 rmind }
802 1.1 rmind | VAR_ID
803 1.1 rmind {
804 1.1 rmind npfvar_t *vp = npfvar_lookup($1);
805 1.5 christos const int type = npfvar_get_type(vp, 0);
806 1.17 rmind ifnet_addr_t *ifna;
807 1.1 rmind
808 1.1 rmind switch (type) {
809 1.1 rmind case NPFVAR_STRING:
810 1.17 rmind case NPFVAR_IDENTIFIER:
811 1.1 rmind $$ = npfctl_find_ifindex(npfvar_expand_string(vp));
812 1.1 rmind break;
813 1.17 rmind case NPFVAR_INTERFACE:
814 1.17 rmind ifna = npfvar_get_data(vp, type, 0);
815 1.17 rmind $$ = ifna->ifna_index;
816 1.17 rmind break;
817 1.1 rmind case -1:
818 1.1 rmind yyerror("undefined variable '%s' for interface", $1);
819 1.1 rmind break;
820 1.1 rmind default:
821 1.1 rmind yyerror("wrong variable '%s' type '%s' for interface",
822 1.1 rmind $1, npfvar_type(type));
823 1.1 rmind break;
824 1.1 rmind }
825 1.1 rmind }
826 1.1 rmind ;
827 1.1 rmind
828 1.23 christos number
829 1.23 christos : HEX { $$ = $1; }
830 1.23 christos | NUM { $$ = $1; }
831 1.23 christos ;
832 1.23 christos
833 1.9 rmind some_name
834 1.1 rmind : IDENTIFIER { $$ = $1; }
835 1.1 rmind | STRING { $$ = $1; }
836 1.1 rmind ;
837 1.1 rmind
838 1.1 rmind %%
839