bc2fb68098
we want to allow filter and similar complex constructs to be used in commands and we should avoid code duplication), only with CLI_MARKER token prepended before the whole input. Defined macro CF_CLI(cmd, args, help) for defining CLI commands in .Y files. The first argument specifies the command itself, the remaining two arguments are copied to the help file (er, will be copied after the help file starts to exist). This macro automatically creates a skeleton rule for the command, you only need to append arguments as in: CF_CLI(STEAL MONEY, <$>, [[Steal <$> US dollars or equivalent in any other currency]]): NUM { cli_msg(0, "%d$ stolen", $3); } ; Also don't forget to reset lexer state between inputs.
259 lines
4.5 KiB
Text
259 lines
4.5 KiB
Text
/*
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* BIRD -- Configuration Lexer
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*
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* (c) 1998--1999 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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%{
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#undef REJECT /* Avoid name clashes */
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#include "filter/filter.h"
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#include <errno.h>
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#include <stdlib.h>
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#include <string.h>
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#include <stdarg.h>
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#include "nest/bird.h"
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#include "conf/conf.h"
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#include "conf/cf-parse.tab.h"
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static struct keyword {
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byte *name;
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int value;
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struct keyword *next;
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} keyword_list[] = {
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#include "conf/keywords.h"
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{ NULL, -1 } };
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#define KW_HASH_SIZE 64
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#define SYM_HASH_SIZE 128
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#define SYM_MAX_LEN 32
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static struct keyword *kw_hash[KW_HASH_SIZE];
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static struct symbol **sym_hash;
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int conf_lino;
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static int cf_hash(byte *c);
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static struct symbol *cf_find_sym(byte *c, unsigned int h0);
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linpool *cfg_mem;
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int (*cf_read_hook)(byte *buf, unsigned int max);
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#define YY_INPUT(buf,result,max) result = cf_read_hook(buf, max);
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#define YY_NO_UNPUT
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#define YY_FATAL_ERROR(msg) cf_error(msg)
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%}
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%option noyywrap
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%x COMMENT CCOMM CLI
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ALPHA [a-zA-Z_]
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DIGIT [0-9]
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XIGIT [0-9a-fA-F]
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ALNUM [a-zA-Z_0-9]
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WHITE [ \t]
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%%
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{DIGIT}+\.{DIGIT}+\.{DIGIT}+\.{DIGIT}+ {
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#ifdef IPV6
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if (ipv4_pton_u32(yytext, &cf_lval.i32))
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return RTRID;
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cf_error("Invalid IPv4 address %s", yytext);
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#else
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if (ip_pton(yytext, &cf_lval.a))
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return IPA;
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cf_error("Invalid IP address %s", yytext);
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#endif
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}
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({XIGIT}*::|({XIGIT}*:){3,})({XIGIT}*|{DIGIT}+\.{DIGIT}+\.{DIGIT}+\.{DIGIT}+) {
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#ifdef IPV6
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if (ip_pton(yytext, &cf_lval.a))
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return IPA;
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cf_error("Invalid IP address %s", yytext);
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#else
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cf_error("This is an IPv4 router, therefore IPv6 addresses are not supported");
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#endif
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}
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0x{DIGIT}+ {
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char *e;
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long int l;
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errno = 0;
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l = strtoul(yytext+2, &e, 16);
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if (e && *e || errno == ERANGE || (long int)(int) l != l)
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cf_error("Number out of range");
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cf_lval.i = l;
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return NUM;
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}
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{DIGIT}+ {
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char *e;
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long int l;
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errno = 0;
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l = strtoul(yytext, &e, 10);
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if (e && *e || errno == ERANGE || (long int)(int) l != l)
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cf_error("Number out of range");
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cf_lval.i = l;
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return NUM;
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}
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{ALPHA}{ALNUM}* {
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unsigned int h = cf_hash(yytext);
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struct keyword *k = kw_hash[h & (KW_HASH_SIZE-1)];
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while (k)
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{
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if (!strcmp(k->name, yytext))
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return k->value;
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k=k->next;
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}
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cf_lval.s = cf_find_sym(yytext, h);
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return SYM;
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}
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<CLI>! {
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BEGIN(INITIAL);
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return CLI_MARKER;
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}
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[={}:;,()+*/%-<>~\[\]] {
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return yytext[0];
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}
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["][^"\n]*["] {
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cf_lval.t = yytext+1;
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yytext[yyleng-1] = 0;
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return TEXT;
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}
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["][^"\n]*\n cf_error("Unterminated string");
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<INITIAL,COMMENT><<EOF>> return END;
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{WHITE}+
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\n conf_lino++;
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# BEGIN(COMMENT);
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\/\* BEGIN(CCOMM);
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. cf_error("Unknown character");
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<COMMENT>\n {
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conf_lino++;
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BEGIN(INITIAL);
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}
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<COMMENT>.
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<CCOMM>\*\/ BEGIN(INITIAL);
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<CCOMM>\n conf_lino++;
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<CCOMM>\/\* cf_error("Comment nesting not supported");
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<CCOMM><<EOF>> cf_error("Unterminated comment");
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<CCOMM>.
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%%
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static int
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cf_hash(byte *c)
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{
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unsigned int h = 13;
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while (*c)
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h = (h * 37) + *c++;
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return h;
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}
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static struct symbol *
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cf_find_sym(byte *c, unsigned int h0)
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{
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unsigned int h = h0 & (SYM_HASH_SIZE-1);
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struct symbol *s;
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int l;
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if (!sym_hash)
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sym_hash = cfg_allocz(SYM_HASH_SIZE * sizeof(struct keyword *));
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else
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for(s = sym_hash[h]; s; s=s->next)
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{
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if (!strcmp(s->name, c))
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return s;
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s = s->next;
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}
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l = strlen(c);
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if (l > SYM_MAX_LEN)
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cf_error("Symbol too long");
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s = cfg_alloc(sizeof(struct symbol) + l);
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s->next = sym_hash[h];
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sym_hash[h] = s;
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s->class = SYM_VOID;
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s->def = NULL;
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s->aux = 0;
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strcpy(s->name, c);
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return s;
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}
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struct symbol *
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cf_find_symbol(byte *c)
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{
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return cf_find_sym(c, cf_hash(c));
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}
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struct symbol *
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cf_default_name(char *prefix, int *counter)
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{
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char buf[32];
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struct symbol *s;
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do
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{
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sprintf(buf, "%s%d", prefix, ++(*counter));
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s = cf_find_sym(buf, cf_hash(buf));
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if (!s) cf_error("Unable to generate default name");
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}
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while (s->class != SYM_VOID);
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return s;
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}
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void
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cf_define_symbol(struct symbol *sym, int type, void *def)
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{
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if (sym->class)
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cf_error("Symbol already defined");
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sym->class = type;
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sym->def = def;
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}
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void
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cf_lex_init(int is_cli)
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{
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sym_hash = NULL;
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conf_lino = 1;
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yyrestart(NULL);
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if (is_cli)
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BEGIN(CLI);
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else
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BEGIN(INITIAL);
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}
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void
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cf_lex_init_tables(void)
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{
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struct keyword *k;
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for(k=keyword_list; k->name; k++)
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{
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unsigned h = cf_hash(k->name) & (KW_HASH_SIZE-1);
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k->next = kw_hash[h];
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kw_hash[h] = k;
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}
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}
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