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npf_build.c revision 1.4.2.2
      1  1.4.2.2    riz /*	$NetBSD: npf_build.c,v 1.4.2.2 2012/06/26 00:07:19 riz 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 material is based upon work partially supported by The
      8      1.1  rmind  * NetBSD Foundation under a contract with Mindaugas Rasiukevicius.
      9      1.1  rmind  *
     10      1.1  rmind  * Redistribution and use in source and binary forms, with or without
     11      1.1  rmind  * modification, are permitted provided that the following conditions
     12      1.1  rmind  * are met:
     13      1.1  rmind  * 1. Redistributions of source code must retain the above copyright
     14      1.1  rmind  *    notice, this list of conditions and the following disclaimer.
     15      1.1  rmind  * 2. Redistributions in binary form must reproduce the above copyright
     16      1.1  rmind  *    notice, this list of conditions and the following disclaimer in the
     17      1.1  rmind  *    documentation and/or other materials provided with the distribution.
     18      1.1  rmind  *
     19      1.1  rmind  * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
     20      1.1  rmind  * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
     21      1.1  rmind  * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
     22      1.1  rmind  * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
     23      1.1  rmind  * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
     24      1.1  rmind  * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
     25      1.1  rmind  * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
     26      1.1  rmind  * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
     27      1.1  rmind  * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
     28      1.1  rmind  * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
     29      1.1  rmind  * POSSIBILITY OF SUCH DAMAGE.
     30      1.1  rmind  */
     31      1.1  rmind 
     32      1.1  rmind /*
     33      1.1  rmind  * npfctl(8) building of the configuration.
     34      1.1  rmind  */
     35      1.1  rmind 
     36      1.1  rmind #include <sys/cdefs.h>
     37  1.4.2.2    riz __RCSID("$NetBSD: npf_build.c,v 1.4.2.2 2012/06/26 00:07:19 riz Exp $");
     38      1.1  rmind 
     39      1.1  rmind #include <sys/types.h>
     40      1.1  rmind #include <sys/ioctl.h>
     41      1.1  rmind 
     42      1.1  rmind #include <stdlib.h>
     43      1.1  rmind #include <inttypes.h>
     44      1.1  rmind #include <string.h>
     45      1.1  rmind #include <assert.h>
     46      1.1  rmind #include <err.h>
     47      1.1  rmind 
     48      1.1  rmind #include "npfctl.h"
     49      1.1  rmind 
     50      1.1  rmind static nl_config_t *		npf_conf = NULL;
     51      1.1  rmind static nl_rule_t *		current_group = NULL;
     52      1.1  rmind static bool			npf_debug = false;
     53      1.1  rmind static bool			defgroup_set = false;
     54      1.1  rmind 
     55      1.1  rmind void
     56      1.1  rmind npfctl_config_init(bool debug)
     57      1.1  rmind {
     58      1.1  rmind 
     59      1.1  rmind 	npf_conf = npf_config_create();
     60      1.1  rmind 	if (npf_conf == NULL) {
     61      1.1  rmind 		errx(EXIT_FAILURE, "npf_config_create failed");
     62      1.1  rmind 	}
     63      1.1  rmind 	npf_debug = debug;
     64      1.1  rmind }
     65      1.1  rmind 
     66      1.1  rmind int
     67      1.1  rmind npfctl_config_send(int fd)
     68      1.1  rmind {
     69      1.1  rmind 	int error;
     70      1.1  rmind 
     71      1.1  rmind 	if (!fd) {
     72      1.1  rmind 		_npf_config_setsubmit(npf_conf, "./npf.plist");
     73      1.1  rmind 	}
     74      1.1  rmind 	if (!defgroup_set) {
     75      1.1  rmind 		errx(EXIT_FAILURE, "default group was not defined");
     76      1.1  rmind 	}
     77      1.1  rmind 	error = npf_config_submit(npf_conf, fd);
     78      1.3  rmind 	if (error) {
     79      1.3  rmind 		nl_error_t ne;
     80      1.3  rmind 		_npf_config_error(npf_conf, &ne);
     81      1.3  rmind 		npfctl_print_error(&ne);
     82      1.3  rmind 	}
     83      1.1  rmind 	npf_config_destroy(npf_conf);
     84      1.1  rmind 	return error;
     85      1.1  rmind }
     86      1.1  rmind 
     87      1.1  rmind bool
     88      1.1  rmind npfctl_table_exists_p(const char *id)
     89      1.1  rmind {
     90      1.1  rmind 	return npf_table_exists_p(npf_conf, atoi(id));
     91      1.1  rmind }
     92      1.1  rmind 
     93  1.4.2.2    riz static in_port_t
     94      1.1  rmind npfctl_get_singleport(const npfvar_t *vp)
     95      1.1  rmind {
     96      1.1  rmind 	port_range_t *pr;
     97  1.4.2.2    riz 	in_port_t *port;
     98      1.1  rmind 
     99      1.1  rmind 	if (npfvar_get_count(vp) > 1) {
    100      1.1  rmind 		yyerror("multiple ports are not valid");
    101      1.1  rmind 	}
    102      1.1  rmind 	pr = npfvar_get_data(vp, NPFVAR_PORT_RANGE, 0);
    103      1.1  rmind 	if (pr->pr_start != pr->pr_end) {
    104      1.1  rmind 		yyerror("port range is not valid");
    105      1.1  rmind 	}
    106  1.4.2.2    riz 	port = &pr->pr_start;
    107  1.4.2.2    riz 	return *port;
    108      1.1  rmind }
    109      1.1  rmind 
    110      1.1  rmind static fam_addr_mask_t *
    111      1.1  rmind npfctl_get_singlefam(const npfvar_t *vp)
    112      1.1  rmind {
    113      1.1  rmind 	if (npfvar_get_count(vp) > 1) {
    114      1.1  rmind 		yyerror("multiple addresses are not valid");
    115      1.1  rmind 	}
    116      1.1  rmind 	return npfvar_get_data(vp, NPFVAR_FAM, 0);
    117      1.1  rmind }
    118      1.1  rmind 
    119      1.1  rmind static void
    120      1.1  rmind npfctl_build_fam(nc_ctx_t *nc, sa_family_t family,
    121      1.1  rmind     fam_addr_mask_t *fam, int opts)
    122      1.1  rmind {
    123      1.1  rmind 	/*
    124      1.1  rmind 	 * If family is specified, address does not match it and the
    125      1.1  rmind 	 * address is extracted from the interface, then simply ignore.
    126      1.1  rmind 	 * Otherwise, address of invalid family was passed manually.
    127      1.1  rmind 	 */
    128      1.1  rmind 	if (family != AF_UNSPEC && family != fam->fam_family) {
    129      1.1  rmind 		if (!fam->fam_interface) {
    130      1.1  rmind 			yyerror("specified address is not of the required "
    131      1.1  rmind 			    "family %d", family);
    132      1.1  rmind 		}
    133      1.1  rmind 		return;
    134      1.1  rmind 	}
    135      1.1  rmind 
    136      1.1  rmind 	/*
    137      1.1  rmind 	 * Optimise 0.0.0.0/0 case to be NOP.  Otherwise, address with
    138      1.1  rmind 	 * zero mask would never match and therefore is not valid.
    139      1.1  rmind 	 */
    140      1.1  rmind 	if (fam->fam_mask == 0) {
    141      1.1  rmind 		npf_addr_t zero;
    142      1.1  rmind 		memset(&zero, 0, sizeof(npf_addr_t));
    143      1.1  rmind 		if (memcmp(&fam->fam_addr, &zero, sizeof(npf_addr_t))) {
    144      1.1  rmind 			yyerror("filter criterion would never match");
    145      1.1  rmind 		}
    146      1.1  rmind 		return;
    147      1.1  rmind 	}
    148      1.1  rmind 
    149      1.1  rmind 	switch (fam->fam_family) {
    150      1.1  rmind 	case AF_INET:
    151      1.1  rmind 		npfctl_gennc_v4cidr(nc, opts,
    152      1.1  rmind 		    &fam->fam_addr, fam->fam_mask);
    153      1.1  rmind 		break;
    154      1.1  rmind 	case AF_INET6:
    155      1.1  rmind 		npfctl_gennc_v6cidr(nc, opts,
    156      1.1  rmind 		    &fam->fam_addr, fam->fam_mask);
    157      1.1  rmind 		break;
    158      1.1  rmind 	default:
    159      1.1  rmind 		yyerror("family %d is not supported", fam->fam_family);
    160      1.1  rmind 	}
    161      1.1  rmind }
    162      1.1  rmind 
    163      1.1  rmind static void
    164      1.1  rmind npfctl_build_vars(nc_ctx_t *nc, sa_family_t family, npfvar_t *vars, int opts)
    165      1.1  rmind {
    166  1.4.2.2    riz 	const int type = npfvar_get_type(vars, 0);
    167      1.1  rmind 	size_t i;
    168      1.1  rmind 
    169      1.1  rmind 	npfctl_ncgen_group(nc);
    170      1.1  rmind 	for (i = 0; i < npfvar_get_count(vars); i++) {
    171      1.1  rmind 		void *data = npfvar_get_data(vars, type, i);
    172      1.1  rmind 		assert(data != NULL);
    173      1.1  rmind 
    174      1.1  rmind 		switch (type) {
    175      1.1  rmind 		case NPFVAR_FAM: {
    176      1.1  rmind 			fam_addr_mask_t *fam = data;
    177      1.1  rmind 			npfctl_build_fam(nc, family, fam, opts);
    178      1.1  rmind 			break;
    179      1.1  rmind 		}
    180      1.1  rmind 		case NPFVAR_PORT_RANGE: {
    181      1.1  rmind 			port_range_t *pr = data;
    182      1.1  rmind 			if (opts & NC_MATCH_TCP) {
    183      1.1  rmind 				npfctl_gennc_ports(nc, opts & ~NC_MATCH_UDP,
    184      1.1  rmind 				    pr->pr_start, pr->pr_end);
    185      1.1  rmind 			}
    186      1.1  rmind 			if (opts & NC_MATCH_UDP) {
    187      1.1  rmind 				npfctl_gennc_ports(nc, opts & ~NC_MATCH_TCP,
    188      1.1  rmind 				    pr->pr_start, pr->pr_end);
    189      1.1  rmind 			}
    190      1.1  rmind 			break;
    191      1.1  rmind 		}
    192      1.1  rmind 		case NPFVAR_TABLE: {
    193      1.1  rmind 			u_int tid = atoi(data);
    194      1.1  rmind 			npfctl_gennc_tbl(nc, opts, tid);
    195      1.1  rmind 			break;
    196      1.1  rmind 		}
    197      1.1  rmind 		default:
    198      1.1  rmind 			assert(false);
    199      1.1  rmind 		}
    200      1.1  rmind 	}
    201      1.1  rmind 	npfctl_ncgen_endgroup(nc);
    202      1.1  rmind }
    203      1.1  rmind 
    204      1.1  rmind static int
    205      1.1  rmind npfctl_build_proto(nc_ctx_t *nc, const opt_proto_t *op)
    206      1.1  rmind {
    207      1.1  rmind 	const npfvar_t *popts = op->op_opts;
    208      1.1  rmind 	int pflag = 0;
    209      1.1  rmind 
    210      1.1  rmind 	switch (op->op_proto) {
    211      1.1  rmind 	case IPPROTO_TCP:
    212      1.1  rmind 		pflag = NC_MATCH_TCP;
    213      1.1  rmind 		if (!popts) {
    214      1.1  rmind 			break;
    215      1.1  rmind 		}
    216      1.1  rmind 		assert(npfvar_get_count(popts) == 2);
    217      1.1  rmind 
    218      1.1  rmind 		/* Build TCP flags block (optional). */
    219      1.1  rmind 		uint8_t *tf, *tf_mask;
    220      1.1  rmind 
    221      1.1  rmind 		tf = npfvar_get_data(popts, NPFVAR_TCPFLAG, 0);
    222      1.1  rmind 		tf_mask = npfvar_get_data(popts, NPFVAR_TCPFLAG, 1);
    223      1.1  rmind 		npfctl_gennc_tcpfl(nc, *tf, *tf_mask);
    224      1.1  rmind 		break;
    225      1.1  rmind 	case IPPROTO_UDP:
    226      1.1  rmind 		pflag = NC_MATCH_UDP;
    227      1.1  rmind 		break;
    228      1.1  rmind 	case IPPROTO_ICMP:
    229      1.1  rmind 		/*
    230      1.1  rmind 		 * Build ICMP block.
    231      1.1  rmind 		 */
    232      1.1  rmind 		assert(npfvar_get_count(popts) == 2);
    233      1.1  rmind 
    234      1.1  rmind 		int *icmp_type, *icmp_code;
    235      1.1  rmind 		icmp_type = npfvar_get_data(popts, NPFVAR_ICMP, 0);
    236      1.1  rmind 		icmp_code = npfvar_get_data(popts, NPFVAR_ICMP, 1);
    237      1.1  rmind 		npfctl_gennc_icmp(nc, *icmp_type, *icmp_code);
    238      1.1  rmind 		break;
    239      1.1  rmind 	case -1:
    240      1.1  rmind 		pflag = NC_MATCH_TCP | NC_MATCH_UDP;
    241      1.1  rmind 		break;
    242      1.1  rmind 	default:
    243      1.1  rmind 		yyerror("protocol %d is not supported", op->op_proto);
    244      1.1  rmind 	}
    245      1.1  rmind 	return pflag;
    246      1.1  rmind }
    247      1.1  rmind 
    248      1.1  rmind static bool
    249      1.1  rmind npfctl_build_ncode(nl_rule_t *rl, sa_family_t family, const opt_proto_t *op,
    250      1.1  rmind     const filt_opts_t *fopts, bool invert)
    251      1.1  rmind {
    252  1.4.2.2    riz 	const addr_port_t *apfrom = &fopts->fo_from;
    253  1.4.2.2    riz 	const addr_port_t *apto = &fopts->fo_to;
    254      1.1  rmind 	nc_ctx_t *nc;
    255      1.1  rmind 	void *code;
    256      1.1  rmind 	size_t len;
    257      1.1  rmind 
    258      1.1  rmind 	if (family == AF_UNSPEC && op->op_proto == -1 &&
    259  1.4.2.2    riz 	    op->op_opts == NULL && !apfrom->ap_netaddr && !apto->ap_netaddr &&
    260  1.4.2.2    riz 	    !apfrom->ap_portrange && !apto->ap_portrange)
    261      1.1  rmind 		return false;
    262      1.1  rmind 
    263      1.1  rmind 	int srcflag = NC_MATCH_SRC;
    264      1.1  rmind 	int dstflag = NC_MATCH_DST;
    265      1.1  rmind 
    266      1.1  rmind 	if (invert) {
    267      1.1  rmind 		srcflag = NC_MATCH_DST;
    268      1.1  rmind 		dstflag = NC_MATCH_SRC;
    269      1.1  rmind 	}
    270      1.1  rmind 
    271      1.1  rmind 	nc = npfctl_ncgen_create();
    272      1.1  rmind 
    273      1.1  rmind 	/* Build IP address blocks. */
    274  1.4.2.2    riz 	npfctl_build_vars(nc, family, apfrom->ap_netaddr, srcflag);
    275  1.4.2.2    riz 	npfctl_build_vars(nc, family, apto->ap_netaddr, dstflag);
    276      1.1  rmind 
    277      1.1  rmind 	/* Build layer 4 protocol blocks. */
    278      1.1  rmind 	int pflag = npfctl_build_proto(nc, op);
    279      1.1  rmind 
    280      1.1  rmind 	/* Build port-range blocks. */
    281  1.4.2.2    riz 	if (apfrom->ap_portrange) {
    282  1.4.2.2    riz 		npfctl_build_vars(nc, family, apfrom->ap_portrange,
    283      1.1  rmind 		    srcflag | pflag);
    284      1.1  rmind 	}
    285  1.4.2.2    riz 	if (apto->ap_portrange) {
    286  1.4.2.2    riz 		npfctl_build_vars(nc, family, apto->ap_portrange,
    287      1.1  rmind 		    dstflag | pflag);
    288      1.1  rmind 	}
    289      1.1  rmind 
    290      1.1  rmind 	/*
    291      1.1  rmind 	 * Complete n-code (destroys the context) and pass to the rule.
    292      1.1  rmind 	 */
    293      1.1  rmind 	code = npfctl_ncgen_complete(nc, &len);
    294      1.1  rmind 	if (npf_debug) {
    295      1.1  rmind 		extern int yylineno;
    296  1.4.2.2    riz 		printf("RULE AT LINE %d\n", yylineno);
    297      1.1  rmind 		npfctl_ncgen_print(code, len);
    298      1.1  rmind 	}
    299      1.1  rmind 	if (npf_rule_setcode(rl, NPF_CODE_NCODE, code, len) == -1) {
    300      1.1  rmind 		errx(EXIT_FAILURE, "npf_rule_setcode failed");
    301      1.1  rmind 	}
    302      1.1  rmind 	free(code);
    303      1.1  rmind 	return true;
    304      1.1  rmind }
    305      1.1  rmind 
    306      1.4  rmind static void
    307      1.4  rmind npfctl_build_rpcall(nl_rproc_t *rp, const char *name, npfvar_t *args)
    308      1.4  rmind {
    309      1.4  rmind 	/*
    310      1.4  rmind 	 * XXX/TODO: Hardcoded for the first release.  However,
    311      1.4  rmind 	 * rule procedures will become fully dynamic modules.
    312      1.4  rmind 	 */
    313      1.4  rmind 
    314      1.4  rmind 	bool log = false, norm = false;
    315      1.4  rmind 	bool rnd = false, no_df = false;
    316      1.4  rmind 	int minttl = 0, maxmss = 0;
    317      1.4  rmind 
    318      1.4  rmind 	if (strcmp(name, "log") == 0) {
    319      1.4  rmind 		log = true;
    320      1.4  rmind 	} else if (strcmp(name, "normalise") == 0) {
    321      1.4  rmind 		norm = true;
    322      1.4  rmind 	} else {
    323      1.4  rmind 		yyerror("unknown rule procedure '%s'", name);
    324      1.4  rmind 	}
    325      1.4  rmind 
    326      1.4  rmind 	for (size_t i = 0; i < npfvar_get_count(args); i++) {
    327      1.4  rmind 		module_arg_t *arg;
    328      1.4  rmind 		const char *aval;
    329      1.4  rmind 
    330      1.4  rmind 		arg = npfvar_get_data(args, NPFVAR_MODULE_ARG, i);
    331      1.4  rmind 		aval = arg->ma_name;
    332      1.4  rmind 
    333      1.4  rmind 		if (log) {
    334      1.4  rmind 			u_int if_idx = npfctl_find_ifindex(aval);
    335      1.4  rmind 			if (!if_idx) {
    336      1.4  rmind 				yyerror("unknown interface '%s'", aval);
    337      1.4  rmind 			}
    338      1.4  rmind 			_npf_rproc_setlog(rp, if_idx);
    339      1.4  rmind 			return;
    340      1.4  rmind 		}
    341      1.4  rmind 
    342  1.4.2.2    riz 		const int type = npfvar_get_type(arg->ma_opts, 0);
    343      1.4  rmind 		if (type != -1 && type != NPFVAR_NUM) {
    344      1.4  rmind 			yyerror("option '%s' is not numeric", aval);
    345      1.4  rmind 		}
    346      1.4  rmind 		unsigned long *opt;
    347      1.4  rmind 
    348      1.4  rmind 		if (strcmp(aval, "random-id") == 0) {
    349      1.4  rmind 			rnd = true;
    350      1.4  rmind 		} else if (strcmp(aval, "min-ttl") == 0) {
    351      1.4  rmind 			opt = npfvar_get_data(arg->ma_opts, NPFVAR_NUM, 0);
    352      1.4  rmind 			minttl = *opt;
    353      1.4  rmind 		} else if (strcmp(aval, "max-mss") == 0) {
    354      1.4  rmind 			opt = npfvar_get_data(arg->ma_opts, NPFVAR_NUM, 0);
    355      1.4  rmind 			maxmss = *opt;
    356      1.4  rmind 		} else if (strcmp(aval, "no-df") == 0) {
    357      1.4  rmind 			no_df = true;
    358      1.4  rmind 		} else {
    359      1.4  rmind 			yyerror("unknown argument '%s'", aval);
    360      1.4  rmind 		}
    361      1.4  rmind 	}
    362      1.4  rmind 	assert(norm == true);
    363      1.4  rmind 	_npf_rproc_setnorm(rp, rnd, no_df, minttl, maxmss);
    364      1.4  rmind }
    365      1.4  rmind 
    366      1.1  rmind /*
    367      1.1  rmind  * npfctl_build_rproc: create and insert a rule procedure.
    368      1.1  rmind  */
    369      1.1  rmind void
    370      1.4  rmind npfctl_build_rproc(const char *name, npfvar_t *procs)
    371      1.1  rmind {
    372      1.1  rmind 	nl_rproc_t *rp;
    373      1.4  rmind 	size_t i;
    374      1.1  rmind 
    375      1.1  rmind 	rp = npf_rproc_create(name);
    376      1.1  rmind 	if (rp == NULL) {
    377      1.1  rmind 		errx(EXIT_FAILURE, "npf_rproc_create failed");
    378      1.1  rmind 	}
    379      1.1  rmind 	npf_rproc_insert(npf_conf, rp);
    380      1.4  rmind 
    381      1.4  rmind 	for (i = 0; i < npfvar_get_count(procs); i++) {
    382      1.4  rmind 		proc_op_t *po = npfvar_get_data(procs, NPFVAR_PROC_OP, i);
    383      1.4  rmind 		npfctl_build_rpcall(rp, po->po_name, po->po_opts);
    384      1.4  rmind 	}
    385      1.1  rmind }
    386      1.1  rmind 
    387      1.1  rmind /*
    388      1.1  rmind  * npfctl_build_group: create a group, insert into the global ruleset
    389      1.1  rmind  * and update the current group pointer.
    390      1.1  rmind  */
    391      1.1  rmind void
    392      1.1  rmind npfctl_build_group(const char *name, int attr, u_int if_idx)
    393      1.1  rmind {
    394      1.1  rmind 	const int attr_di = (NPF_RULE_IN | NPF_RULE_OUT);
    395      1.1  rmind 	nl_rule_t *rl;
    396      1.1  rmind 
    397      1.1  rmind 	if (attr & NPF_RULE_DEFAULT) {
    398      1.1  rmind 		if (defgroup_set) {
    399      1.1  rmind 			yyerror("multiple default groups are not valid");
    400      1.1  rmind 		}
    401      1.1  rmind 		defgroup_set = true;
    402      1.1  rmind 		attr |= attr_di;
    403      1.1  rmind 
    404      1.1  rmind 	} else if ((attr & attr_di) == 0) {
    405      1.1  rmind 		attr |= attr_di;
    406      1.1  rmind 	}
    407      1.1  rmind 
    408  1.4.2.1    riz 	rl = npf_rule_create(name, attr | NPF_RULE_FINAL, if_idx);
    409      1.1  rmind 	npf_rule_insert(npf_conf, NULL, rl, NPF_PRI_NEXT);
    410      1.1  rmind 	current_group = rl;
    411      1.1  rmind }
    412      1.1  rmind 
    413      1.1  rmind /*
    414      1.1  rmind  * npfctl_build_rule: create a rule, build n-code from filter options,
    415      1.1  rmind  * if any, and insert into the ruleset of current group.
    416      1.1  rmind  */
    417      1.1  rmind void
    418      1.1  rmind npfctl_build_rule(int attr, u_int if_idx, sa_family_t family,
    419      1.1  rmind     const opt_proto_t *op, const filt_opts_t *fopts, const char *rproc)
    420      1.1  rmind {
    421      1.1  rmind 	nl_rule_t *rl;
    422      1.1  rmind 
    423      1.1  rmind 	rl = npf_rule_create(NULL, attr, if_idx);
    424      1.1  rmind 	npfctl_build_ncode(rl, family, op, fopts, false);
    425      1.1  rmind 	if (rproc && npf_rule_setproc(npf_conf, rl, rproc) != 0) {
    426      1.1  rmind 		yyerror("rule procedure '%s' is not defined", rproc);
    427      1.1  rmind 	}
    428      1.1  rmind 	assert(current_group != NULL);
    429      1.1  rmind 	npf_rule_insert(npf_conf, current_group, rl, NPF_PRI_NEXT);
    430      1.1  rmind }
    431      1.1  rmind 
    432      1.1  rmind /*
    433      1.1  rmind  * npfctl_build_nat: create a NAT policy of a specified type with a
    434      1.1  rmind  * given filter options.
    435      1.1  rmind  */
    436      1.1  rmind void
    437  1.4.2.2    riz npfctl_build_nat(int sd, int type, u_int if_idx, const addr_port_t *ap1,
    438  1.4.2.2    riz     const addr_port_t *ap2, const filt_opts_t *fopts)
    439      1.1  rmind {
    440  1.4.2.2    riz 	const opt_proto_t op = { .op_proto = -1, .op_opts = NULL };
    441  1.4.2.2    riz 	fam_addr_mask_t *am1, *am2;
    442  1.4.2.2    riz 	filt_opts_t imfopts;
    443  1.4.2.2    riz 	sa_family_t family;
    444      1.1  rmind 	nl_nat_t *nat;
    445      1.1  rmind 
    446  1.4.2.2    riz 	if (sd == NPFCTL_NAT_STATIC) {
    447  1.4.2.2    riz 		yyerror("static NAT is not yet supported");
    448  1.4.2.2    riz 	}
    449  1.4.2.2    riz 	assert(sd == NPFCTL_NAT_DYNAMIC);
    450  1.4.2.2    riz 	assert(if_idx != 0);
    451  1.4.2.2    riz 
    452  1.4.2.2    riz 	family = AF_INET;
    453      1.1  rmind 
    454  1.4.2.2    riz 	if (type & NPF_NATIN) {
    455  1.4.2.2    riz 		if (!ap1->ap_netaddr) {
    456  1.4.2.2    riz 			yyerror("inbound network segment is not specified");
    457  1.4.2.2    riz 		}
    458  1.4.2.2    riz 		am1 = npfctl_get_singlefam(ap1->ap_netaddr);
    459  1.4.2.2    riz 		if (am1->fam_family != AF_INET) {
    460  1.4.2.2    riz 			yyerror("IPv6 NAT is not supported");
    461  1.4.2.2    riz 		}
    462  1.4.2.2    riz 		assert(am1 != NULL);
    463  1.4.2.2    riz 	} else
    464  1.4.2.2    riz 		am1 = NULL;
    465  1.4.2.2    riz 
    466  1.4.2.2    riz 	if (type & NPF_NATOUT) {
    467  1.4.2.2    riz 		if (!ap2->ap_netaddr) {
    468  1.4.2.2    riz 			yyerror("outbound network segment is not specified");
    469  1.4.2.2    riz 		}
    470  1.4.2.2    riz 		am2 = npfctl_get_singlefam(ap2->ap_netaddr);
    471  1.4.2.2    riz 		if (am2->fam_family != family) {
    472  1.4.2.2    riz 			yyerror("IPv6 NAT is not supported");
    473  1.4.2.2    riz 		}
    474  1.4.2.2    riz 		assert(am2 != NULL);
    475  1.4.2.2    riz 	} else
    476  1.4.2.2    riz 		am2 = NULL;
    477  1.4.2.2    riz 
    478  1.4.2.2    riz 	/*
    479  1.4.2.2    riz 	 * If filter criteria is not specified explicitly, apply implicit
    480  1.4.2.2    riz 	 * filtering according to the given network segements.
    481  1.4.2.2    riz 	 */
    482  1.4.2.2    riz 	if (!fopts) {
    483  1.4.2.2    riz 		memset(&imfopts, 0, sizeof(filt_opts_t));
    484  1.4.2.2    riz 		if (type & NPF_NATOUT) {
    485  1.4.2.2    riz 			memcpy(&imfopts.fo_from, ap1, sizeof(addr_port_t));
    486  1.4.2.2    riz 		}
    487  1.4.2.2    riz 		if (type & NPF_NATIN) {
    488  1.4.2.2    riz 			memcpy(&imfopts.fo_to, ap2, sizeof(addr_port_t));
    489  1.4.2.2    riz 		}
    490  1.4.2.2    riz 		fopts = &imfopts;
    491      1.1  rmind 	}
    492      1.1  rmind 
    493      1.1  rmind 	switch (type) {
    494  1.4.2.2    riz 	case NPF_NATIN:
    495  1.4.2.2    riz 		assert(am1 != NULL);
    496      1.1  rmind 		/*
    497      1.1  rmind 		 * Redirection: an inbound NAT with a specific port.
    498      1.1  rmind 		 */
    499  1.4.2.2    riz 		if (!ap1->ap_portrange) {
    500  1.4.2.2    riz 			yyerror("inbound port is not specified");
    501  1.4.2.2    riz 		}
    502  1.4.2.2    riz 		in_port_t port = npfctl_get_singleport(ap1->ap_portrange);
    503      1.1  rmind 		nat = npf_nat_create(NPF_NATIN, NPF_NAT_PORTS,
    504  1.4.2.2    riz 		    if_idx, &am1->fam_addr, am1->fam_family, port);
    505      1.1  rmind 		break;
    506  1.4.2.2    riz 
    507  1.4.2.2    riz 	case (NPF_NATIN | NPF_NATOUT):
    508  1.4.2.2    riz 		assert(am1 != NULL);
    509      1.1  rmind 		/*
    510      1.1  rmind 		 * Bi-directional NAT: a combination of inbound NAT and
    511      1.1  rmind 		 * outbound NAT policies.  Note that the translation address
    512      1.1  rmind 		 * is local IP and filter criteria is inverted accordingly.
    513      1.1  rmind 		 */
    514      1.1  rmind 		nat = npf_nat_create(NPF_NATIN, 0, if_idx,
    515  1.4.2.2    riz 		    &am1->fam_addr, am1->fam_family, 0);
    516  1.4.2.2    riz 		npfctl_build_ncode(nat, family, &op, fopts, true);
    517      1.1  rmind 		npf_nat_insert(npf_conf, nat, NPF_PRI_NEXT);
    518      1.1  rmind 		/* FALLTHROUGH */
    519  1.4.2.2    riz 
    520  1.4.2.2    riz 	case NPF_NATOUT:
    521  1.4.2.2    riz 		assert(am2 != NULL);
    522      1.1  rmind 		/*
    523      1.1  rmind 		 * Traditional NAPT: an outbound NAT policy with port.
    524  1.4.2.2    riz 		 * If this is another half for bi-directional NAT, then
    525      1.1  rmind 		 * no port translation with mapping.
    526      1.1  rmind 		 */
    527  1.4.2.2    riz 		nat = npf_nat_create(NPF_NATOUT, type == NPF_NATOUT ?
    528      1.1  rmind 		    (NPF_NAT_PORTS | NPF_NAT_PORTMAP) : 0,
    529  1.4.2.2    riz 		    if_idx, &am2->fam_addr, am2->fam_family, 0);
    530      1.1  rmind 		break;
    531  1.4.2.2    riz 
    532      1.1  rmind 	default:
    533      1.1  rmind 		assert(false);
    534      1.1  rmind 	}
    535  1.4.2.2    riz 	npfctl_build_ncode(nat, family, &op, fopts, false);
    536      1.1  rmind 	npf_nat_insert(npf_conf, nat, NPF_PRI_NEXT);
    537      1.1  rmind }
    538      1.1  rmind 
    539      1.1  rmind /*
    540      1.1  rmind  * npfctl_fill_table: fill NPF table with entries from a specified file.
    541      1.1  rmind  */
    542      1.1  rmind static void
    543      1.1  rmind npfctl_fill_table(nl_table_t *tl, const char *fname)
    544      1.1  rmind {
    545      1.1  rmind 	char *buf = NULL;
    546      1.1  rmind 	int l = 0;
    547      1.1  rmind 	FILE *fp;
    548      1.1  rmind 	size_t n;
    549      1.1  rmind 
    550      1.1  rmind 	fp = fopen(fname, "r");
    551      1.1  rmind 	if (fp == NULL) {
    552      1.1  rmind 		err(EXIT_FAILURE, "open '%s'", fname);
    553      1.1  rmind 	}
    554      1.1  rmind 	while (l++, getline(&buf, &n, fp) != -1) {
    555      1.1  rmind 		fam_addr_mask_t *fam;
    556      1.1  rmind 
    557      1.1  rmind 		if (*buf == '\n' || *buf == '#') {
    558      1.1  rmind 			continue;
    559      1.1  rmind 		}
    560      1.1  rmind 		fam = npfctl_parse_cidr(buf);
    561      1.1  rmind 		if (fam == NULL) {
    562      1.1  rmind 			errx(EXIT_FAILURE, "%s:%d: invalid table entry",
    563      1.1  rmind 			    fname, l);
    564      1.1  rmind 		}
    565      1.1  rmind 
    566      1.1  rmind 		/* Create and add a table entry. */
    567      1.1  rmind 		npf_table_add_entry(tl, &fam->fam_addr, fam->fam_mask);
    568      1.1  rmind 	}
    569      1.1  rmind 	if (buf != NULL) {
    570      1.1  rmind 		free(buf);
    571      1.1  rmind 	}
    572      1.1  rmind }
    573      1.1  rmind 
    574      1.1  rmind /*
    575      1.1  rmind  * npfctl_build_table: create an NPF table, add to the configuration and,
    576      1.1  rmind  * if required, fill with contents from a file.
    577      1.1  rmind  */
    578      1.1  rmind void
    579      1.1  rmind npfctl_build_table(const char *tid, u_int type, const char *fname)
    580      1.1  rmind {
    581      1.1  rmind 	nl_table_t *tl;
    582      1.1  rmind 	u_int id;
    583      1.1  rmind 
    584      1.1  rmind 	id = atoi(tid);
    585      1.1  rmind 	tl = npf_table_create(id, type);
    586      1.1  rmind 	assert(tl != NULL);
    587      1.1  rmind 
    588      1.1  rmind 	if (npf_table_insert(npf_conf, tl)) {
    589      1.1  rmind 		errx(EXIT_FAILURE, "table '%d' is already defined\n", id);
    590      1.1  rmind 	}
    591      1.1  rmind 
    592      1.1  rmind 	if (fname) {
    593      1.1  rmind 		npfctl_fill_table(tl, fname);
    594      1.1  rmind 	}
    595      1.1  rmind }
    596