284 lines
7.1 KiB
Plaintext
284 lines
7.1 KiB
Plaintext
%{
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/* $NetBSD: grammar.y,v 1.3 1996/12/13 08:26:05 mikel Exp $ */
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/*
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* Copyright (c) 1988, 1989, 1990, 1991, 1992, 1993, 1994, 1995, 1996
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* The Regents of the University of California. All rights reserved.
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that: (1) source code distributions
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* retain the above copyright notice and this paragraph in its entirety, (2)
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* distributions including binary code include the above copyright notice and
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* this paragraph in its entirety in the documentation or other materials
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* provided with the distribution, and (3) all advertising materials mentioning
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* features or use of this software display the following acknowledgement:
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* ``This product includes software developed by the University of California,
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* Lawrence Berkeley Laboratory and its contributors.'' Neither the name of
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* the University nor the names of its contributors may be used to endorse
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* or promote products derived from this software without specific prior
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* written permission.
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* THIS SOFTWARE IS PROVIDED ``AS IS'' AND WITHOUT ANY EXPRESS OR IMPLIED
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* WARRANTIES, INCLUDING, WITHOUT LIMITATION, THE IMPLIED WARRANTIES OF
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* MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE.
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*
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*/
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#ifndef lint
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static char rcsid[] =
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"@(#) Header: grammar.y,v 1.54 96/07/17 00:11:34 leres Exp (LBL)";
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#endif
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#include <sys/types.h>
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#include <sys/time.h>
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#include <sys/socket.h>
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#if __STDC__
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struct mbuf;
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struct rtentry;
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#endif
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#include <net/if.h>
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#include <netinet/in.h>
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#include <netinet/if_ether.h>
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#include <stdio.h>
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#include "pcap-int.h"
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#include "gencode.h"
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#include <pcap-namedb.h>
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#include "gnuc.h"
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#ifdef HAVE_OS_PROTO_H
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#include "os-proto.h"
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#endif
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#define QSET(q, p, d, a) (q).proto = (p),\
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(q).dir = (d),\
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(q).addr = (a)
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int n_errors = 0;
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static struct qual qerr = { Q_UNDEF, Q_UNDEF, Q_UNDEF, Q_UNDEF };
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static void
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yyerror(char *msg)
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{
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++n_errors;
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bpf_error(msg);
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/* NOTREACHED */
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}
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#ifndef YYBISON
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int yyparse(void);
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int
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pcap_parse()
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{
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return (yyparse());
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}
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#endif
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%}
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%union {
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int i;
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bpf_u_int32 h;
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u_char *e;
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char *s;
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struct stmt *stmt;
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struct arth *a;
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struct {
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struct qual q;
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struct block *b;
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} blk;
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struct block *rblk;
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}
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%type <blk> expr id nid pid term rterm qid
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%type <blk> head
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%type <i> pqual dqual aqual ndaqual
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%type <a> arth narth
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%type <i> byteop pname pnum relop irelop
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%type <blk> and or paren not null prog
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%type <rblk> other
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%token DST SRC HOST GATEWAY
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%token NET MASK PORT LESS GREATER PROTO BYTE
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%token ARP RARP IP TCP UDP ICMP IGMP IGRP
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%token ATALK DECNET LAT SCA MOPRC MOPDL
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%token TK_BROADCAST TK_MULTICAST
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%token NUM INBOUND OUTBOUND
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%token LINK
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%token GEQ LEQ NEQ
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%token ID EID HID
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%token LSH RSH
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%token LEN
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%type <s> ID
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%type <e> EID
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%type <s> HID
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%type <i> NUM
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%left OR AND
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%nonassoc '!'
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%left '|'
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%left '&'
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%left LSH RSH
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%left '+' '-'
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%left '*' '/'
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%nonassoc UMINUS
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%%
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prog: null expr
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{
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finish_parse($2.b);
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}
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| null
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;
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null: /* null */ { $$.q = qerr; }
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;
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expr: term
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| expr and term { gen_and($1.b, $3.b); $$ = $3; }
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| expr and id { gen_and($1.b, $3.b); $$ = $3; }
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| expr or term { gen_or($1.b, $3.b); $$ = $3; }
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| expr or id { gen_or($1.b, $3.b); $$ = $3; }
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;
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and: AND { $$ = $<blk>0; }
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;
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or: OR { $$ = $<blk>0; }
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;
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id: nid
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| pnum { $$.b = gen_ncode(NULL, (bpf_u_int32)$1,
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$$.q = $<blk>0.q); }
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| paren pid ')' { $$ = $2; }
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;
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nid: ID { $$.b = gen_scode($1, $$.q = $<blk>0.q); }
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| HID '/' NUM { $$.b = gen_mcode($1, NULL, $3,
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$$.q = $<blk>0.q); }
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| HID MASK HID { $$.b = gen_mcode($1, $3, 0,
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$$.q = $<blk>0.q); }
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| HID {
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/* Decide how to parse HID based on proto */
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$$.q = $<blk>0.q;
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switch ($$.q.proto) {
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case Q_DECNET:
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$$.b = gen_ncode($1, 0, $$.q);
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break;
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default:
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$$.b = gen_ncode($1, 0, $$.q);
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break;
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}
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}
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| EID { $$.b = gen_ecode($1, $$.q = $<blk>0.q); }
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| not id { gen_not($2.b); $$ = $2; }
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;
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not: '!' { $$ = $<blk>0; }
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;
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paren: '(' { $$ = $<blk>0; }
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;
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pid: nid
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| qid and id { gen_and($1.b, $3.b); $$ = $3; }
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| qid or id { gen_or($1.b, $3.b); $$ = $3; }
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;
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qid: pnum { $$.b = gen_ncode(NULL, (bpf_u_int32)$1,
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$$.q = $<blk>0.q); }
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| pid
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;
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term: rterm
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| not term { gen_not($2.b); $$ = $2; }
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;
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head: pqual dqual aqual { QSET($$.q, $1, $2, $3); }
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| pqual dqual { QSET($$.q, $1, $2, Q_DEFAULT); }
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| pqual aqual { QSET($$.q, $1, Q_DEFAULT, $2); }
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| pqual PROTO { QSET($$.q, $1, Q_DEFAULT, Q_PROTO); }
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| pqual ndaqual { QSET($$.q, $1, Q_DEFAULT, $2); }
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;
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rterm: head id { $$ = $2; }
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| paren expr ')' { $$.b = $2.b; $$.q = $1.q; }
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| pname { $$.b = gen_proto_abbrev($1); $$.q = qerr; }
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| arth relop arth { $$.b = gen_relation($2, $1, $3, 0);
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$$.q = qerr; }
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| arth irelop arth { $$.b = gen_relation($2, $1, $3, 1);
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$$.q = qerr; }
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| other { $$.b = $1; $$.q = qerr; }
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;
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/* protocol level qualifiers */
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pqual: pname
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| { $$ = Q_DEFAULT; }
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;
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/* 'direction' qualifiers */
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dqual: SRC { $$ = Q_SRC; }
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| DST { $$ = Q_DST; }
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| SRC OR DST { $$ = Q_OR; }
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| DST OR SRC { $$ = Q_OR; }
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| SRC AND DST { $$ = Q_AND; }
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| DST AND SRC { $$ = Q_AND; }
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;
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/* address type qualifiers */
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aqual: HOST { $$ = Q_HOST; }
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| NET { $$ = Q_NET; }
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| PORT { $$ = Q_PORT; }
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;
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/* non-directional address type qualifiers */
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ndaqual: GATEWAY { $$ = Q_GATEWAY; }
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;
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pname: LINK { $$ = Q_LINK; }
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| IP { $$ = Q_IP; }
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| ARP { $$ = Q_ARP; }
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| RARP { $$ = Q_RARP; }
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| TCP { $$ = Q_TCP; }
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| UDP { $$ = Q_UDP; }
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| ICMP { $$ = Q_ICMP; }
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| IGMP { $$ = Q_IGMP; }
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| IGRP { $$ = Q_IGRP; }
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| ATALK { $$ = Q_ATALK; }
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| DECNET { $$ = Q_DECNET; }
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| LAT { $$ = Q_LAT; }
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| SCA { $$ = Q_SCA; }
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| MOPDL { $$ = Q_MOPDL; }
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| MOPRC { $$ = Q_MOPRC; }
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;
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other: pqual TK_BROADCAST { $$ = gen_broadcast($1); }
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| pqual TK_MULTICAST { $$ = gen_multicast($1); }
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| LESS NUM { $$ = gen_less($2); }
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| GREATER NUM { $$ = gen_greater($2); }
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| BYTE NUM byteop NUM { $$ = gen_byteop($3, $2, $4); }
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| INBOUND { $$ = gen_inbound(0); }
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| OUTBOUND { $$ = gen_inbound(1); }
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;
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relop: '>' { $$ = BPF_JGT; }
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| GEQ { $$ = BPF_JGE; }
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| '=' { $$ = BPF_JEQ; }
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;
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irelop: LEQ { $$ = BPF_JGT; }
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| '<' { $$ = BPF_JGE; }
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| NEQ { $$ = BPF_JEQ; }
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;
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arth: pnum { $$ = gen_loadi($1); }
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| narth
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;
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narth: pname '[' arth ']' { $$ = gen_load($1, $3, 1); }
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| pname '[' arth ':' NUM ']' { $$ = gen_load($1, $3, $5); }
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| arth '+' arth { $$ = gen_arth(BPF_ADD, $1, $3); }
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| arth '-' arth { $$ = gen_arth(BPF_SUB, $1, $3); }
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| arth '*' arth { $$ = gen_arth(BPF_MUL, $1, $3); }
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| arth '/' arth { $$ = gen_arth(BPF_DIV, $1, $3); }
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| arth '&' arth { $$ = gen_arth(BPF_AND, $1, $3); }
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| arth '|' arth { $$ = gen_arth(BPF_OR, $1, $3); }
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| arth LSH arth { $$ = gen_arth(BPF_LSH, $1, $3); }
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| arth RSH arth { $$ = gen_arth(BPF_RSH, $1, $3); }
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| '-' arth %prec UMINUS { $$ = gen_neg($2); }
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| paren narth ')' { $$ = $2; }
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| LEN { $$ = gen_loadlen(); }
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;
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byteop: '&' { $$ = '&'; }
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| '|' { $$ = '|'; }
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| '<' { $$ = '<'; }
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| '>' { $$ = '>'; }
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| '=' { $$ = '='; }
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;
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pnum: NUM
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| paren pnum ')' { $$ = $2; }
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;
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%%
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