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863ecfc785
The new MRT protocol is responsible for periodic RIB table dumps in the MRT format (RFC 6396). Also the existing code for BGP4MP MRT dumps is refactored and splitted between BGP to MRT protocols, will be more integrated into MRT in the future. Example: protocol mrt { table "*"; filename "%N_%F_%T.mrt"; period 60; } It is partially based on the old MRT code from Pavel Tvrdik.
362 lines
7.4 KiB
Plaintext
362 lines
7.4 KiB
Plaintext
/*
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* BIRD -- Configuration Parser Top
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*
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* (c) 1998--2000 Martin Mares <mj@ucw.cz>
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*
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* Can be freely distributed and used under the terms of the GNU GPL.
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*/
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CF_HDR
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#define PARSER 1
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#include "nest/bird.h"
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#include "conf/conf.h"
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#include "lib/resource.h"
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#include "lib/socket.h"
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#include "lib/timer.h"
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#include "lib/string.h"
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#include "nest/protocol.h"
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#include "nest/iface.h"
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#include "nest/route.h"
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#include "nest/cli.h"
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#include "filter/filter.h"
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/* FIXME: Turn on YYERROR_VERBOSE and work around lots of bison bugs? */
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CF_DEFINES
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static void
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check_u16(uint val)
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{
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if (val > 0xFFFF)
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cf_error("Value %u out of range (0-65535)", val);
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}
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CF_DECLS
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%union {
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uint i;
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u32 i32;
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u64 i64;
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ip_addr a;
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ip4_addr ip4;
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ip6_addr ip6;
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net_addr net;
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net_addr *net_ptr;
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struct symbol *s;
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char *t;
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struct rtable_config *r;
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struct channel_config *cc;
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struct f_inst *x;
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struct f_dynamic_attr fda;
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struct f_static_attr fsa;
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struct filter *f;
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struct f_tree *e;
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struct f_trie *trie;
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struct f_val v;
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struct f_path_mask *h;
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struct password_item *p;
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struct rt_show_data *ra;
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struct sym_show_data *sd;
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struct lsadb_show_data *ld;
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struct mrt_dump_data *md;
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struct iface *iface;
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void *g;
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btime time;
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struct f_prefix px;
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struct proto_spec ps;
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struct channel_limit cl;
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struct timeformat *tf;
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mpls_label_stack *mls;
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}
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%token END CLI_MARKER INVALID_TOKEN ELSECOL DDOT
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%token GEQ LEQ NEQ AND OR
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%token PO PC
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%token <i> NUM ENUM
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%token <ip4> IP4
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%token <ip6> IP6
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%token <i64> VPN_RD
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%token <s> SYM
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%token <t> TEXT
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%type <iface> ipa_scope
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%type <i> expr bool pxlen4
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%type <time> expr_us time
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%type <a> ipa
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%type <net> net_ip4_ net_ip6_ net_ip6 net_ip_ net_ip net_or_ipa
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%type <net_ptr> net_ net_any net_vpn4_ net_vpn6_ net_vpn_ net_roa4_ net_roa6_ net_roa_ net_ip6_sadr_ net_mpls_
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%type <mls> label_stack_start label_stack
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%type <t> text opttext
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%nonassoc PREFIX_DUMMY
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%left AND OR
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%nonassoc '=' '<' '>' '~' GEQ LEQ NEQ NMA PO PC
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%left '+' '-'
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%left '*' '/' '%'
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%left '!'
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%nonassoc '.'
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CF_KEYWORDS(DEFINE, ON, OFF, YES, NO, S, MS, US, PORT, VPN, MPLS, FROM)
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CF_GRAMMAR
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/* Basic config file structure */
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config: conf_entries END { return 0; }
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| CLI_MARKER cli_cmd { return 0; }
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;
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conf_entries:
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/* EMPTY */
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| conf_entries conf
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;
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conf: ';' ;
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/* Constant expressions */
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conf: definition ;
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definition:
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DEFINE SYM '=' term ';' {
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struct f_val *val = cfg_alloc(sizeof(struct f_val));
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*val = f_eval($4, cfg_mem);
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if (val->type == T_RETURN) cf_error("Runtime error");
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cf_define_symbol($2, SYM_CONSTANT | val->type, val);
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}
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;
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expr:
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NUM
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| '(' term ')' { $$ = f_eval_int($2); }
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| SYM {
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if ($1->class != (SYM_CONSTANT | T_INT)) cf_error("Number expected");
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$$ = SYM_VAL($1).i; }
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;
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expr_us:
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expr S { $$ = $1 S_; }
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| expr MS { $$ = $1 MS_; }
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| expr US { $$ = $1 US_; }
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;
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/* Switches */
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bool:
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expr { $$ = !!$1; }
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| ON { $$ = 1; }
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| YES { $$ = 1; }
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| OFF { $$ = 0; }
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| NO { $$ = 0; }
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| /* Silence means agreement */ { $$ = 1; }
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;
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/* Addresses */
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ipa:
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IP4 { $$ = ipa_from_ip4($1); }
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| IP6 { $$ = ipa_from_ip6($1); }
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| SYM {
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if ($1->class != (SYM_CONSTANT | T_IP)) cf_error("IP address expected");
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$$ = SYM_VAL($1).ip;
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}
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;
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ipa_scope:
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/* empty */ { $$ = NULL; }
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| '%' SYM { $$ = if_get_by_name($2->name); }
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;
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/* Networks - internal */
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pxlen4:
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'/' NUM {
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if ($2 > IP4_MAX_PREFIX_LENGTH) cf_error("Invalid prefix length %u", $2);
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$$ = $2;
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}
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;
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net_ip4_: IP4 pxlen4
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{
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net_fill_ip4(&($$), $1, $2);
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net_addr_ip4 *n = (void *) &($$);
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if (!net_validate_ip4(n))
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cf_error("Invalid IPv4 prefix %I4/%d, maybe you wanted %I4/%d",
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n->prefix, n->pxlen, ip4_and(n->prefix, ip4_mkmask(n->pxlen)), n->pxlen);
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};
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net_ip6_: IP6 '/' NUM
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{
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if ($3 > IP6_MAX_PREFIX_LENGTH)
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cf_error("Invalid prefix length %u", $3);
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net_fill_ip6(&($$), $1, $3);
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net_addr_ip6 *n = (void *) &($$);
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if (!net_validate_ip6(n))
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cf_error("Invalid IPv6 prefix %I6/%d, maybe you wanted %I6/%d",
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n->prefix, n->pxlen, ip6_and(n->prefix, ip6_mkmask(n->pxlen)), n->pxlen);
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};
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net_ip6_sadr_: IP6 '/' NUM FROM IP6 '/' NUM
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{
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if ($3 > IP6_MAX_PREFIX_LENGTH)
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cf_error("Invalid prefix length %u", $3);
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if ($7 > IP6_MAX_PREFIX_LENGTH)
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cf_error("Invalid prefix length %u", $7);
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$$ = cfg_alloc(sizeof(net_addr_ip6_sadr));
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net_fill_ip6_sadr($$, $1, $3, $5, $7);
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net_addr_ip6_sadr *n = (void *) $$;
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if (!net_validate_ip6_sadr(n))
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cf_error("Invalid SADR IPv6 prefix %I6/%d from %I6/%d, maybe you wanted %I6/%d from %I6/%d",
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n->dst_prefix, n->dst_pxlen, n->src_prefix, n->src_pxlen,
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ip6_and(n->dst_prefix, ip6_mkmask(n->dst_pxlen)), n->dst_pxlen,
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ip6_and(n->src_prefix, ip6_mkmask(n->src_pxlen)), n->src_pxlen);
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};
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net_vpn4_: VPN_RD net_ip4_
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{
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$$ = cfg_alloc(sizeof(net_addr_vpn4));
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net_fill_vpn4($$, net4_prefix(&$2), net4_pxlen(&$2), $1);
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}
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net_vpn6_: VPN_RD net_ip6_
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{
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$$ = cfg_alloc(sizeof(net_addr_vpn6));
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net_fill_vpn6($$, net6_prefix(&$2), net6_pxlen(&$2), $1);
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}
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net_roa4_: net_ip4_ MAX NUM AS NUM
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{
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$$ = cfg_alloc(sizeof(net_addr_roa4));
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net_fill_roa4($$, net4_prefix(&$1), net4_pxlen(&$1), $3, $5);
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if ($3 < net4_pxlen(&$1) || $3 > IP4_MAX_PREFIX_LENGTH)
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cf_error("Invalid max prefix length %u", $3);
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};
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net_roa6_: net_ip6_ MAX NUM AS NUM
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{
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$$ = cfg_alloc(sizeof(net_addr_roa6));
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net_fill_roa6($$, net6_prefix(&$1), net6_pxlen(&$1), $3, $5);
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if ($3 < net6_pxlen(&$1) || $3 > IP6_MAX_PREFIX_LENGTH)
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cf_error("Invalid max prefix length %u", $3);
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};
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net_mpls_: MPLS NUM
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{
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$$ = cfg_alloc(sizeof(net_addr_roa6));
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net_fill_mpls($$, $2);
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}
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net_ip_: net_ip4_ | net_ip6_ ;
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net_vpn_: net_vpn4_ | net_vpn6_ ;
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net_roa_: net_roa4_ | net_roa6_ ;
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net_:
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net_ip_ { $$ = cfg_alloc($1.length); net_copy($$, &($1)); }
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| net_vpn_
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| net_roa_
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| net_flow_
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| net_ip6_sadr_
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| net_mpls_
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;
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/* Networks - regular */
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net_ip6:
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net_ip6_
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| SYM {
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if (($1->class != (SYM_CONSTANT | T_NET)) || (SYM_VAL($1).net->type != NET_IP6))
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cf_error("IPv6 network expected");
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$$ = * SYM_VAL($1).net;
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}
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;
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net_ip:
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net_ip_
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| SYM {
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if (($1->class != (SYM_CONSTANT | T_NET)) || !net_is_ip(SYM_VAL($1).net))
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cf_error("IP network expected");
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$$ = * SYM_VAL($1).net;
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}
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;
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net_any:
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net_
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| SYM {
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if ($1->class != (SYM_CONSTANT | T_NET))
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cf_error("Network expected");
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$$ = (net_addr *) SYM_VAL($1).net; /* Avoid const warning */
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}
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;
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net_or_ipa:
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net_ip4_
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| net_ip6_
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| IP4 { net_fill_ip4(&($$), $1, IP4_MAX_PREFIX_LENGTH); }
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| IP6 { net_fill_ip6(&($$), $1, IP6_MAX_PREFIX_LENGTH); }
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| SYM {
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if ($1->class == (SYM_CONSTANT | T_IP))
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net_fill_ip_host(&($$), SYM_VAL($1).ip);
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else if (($1->class == (SYM_CONSTANT | T_NET)) && net_is_ip(SYM_VAL($1).net))
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$$ = * SYM_VAL($1).net;
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else
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cf_error("IP address or network expected");
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}
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;
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label_stack_start: NUM
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{
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$$ = cfg_allocz(sizeof(mpls_label_stack));
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$$->len = 1;
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$$->stack[0] = $1;
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};
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label_stack:
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label_stack_start
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| label_stack '/' NUM {
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if ($1->len >= MPLS_MAX_LABEL_STACK)
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cf_error("Too many labels in stack");
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$1->stack[$1->len++] = $3;
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$$ = $1;
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}
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;
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time:
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TEXT {
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$$ = tm_parse_time($1);
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if (!$$)
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cf_error("Invalid date/time");
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}
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;
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text:
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TEXT
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| SYM {
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if ($1->class != (SYM_CONSTANT | T_STRING)) cf_error("String expected");
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$$ = SYM_VAL($1).s;
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}
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;
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opttext:
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TEXT
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| /* empty */ { $$ = NULL; }
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;
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CF_CODE
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CF_END
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