| [0b990d] | 1 | //
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 | 2 | // ipv2_cwk.cc
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 | 3 | //
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 | 4 | // Copyright (C) 1996 Limit Point Systems, Inc.
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 | 5 | //
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 | 6 | // Author: Curtis Janssen <cljanss@limitpt.com>
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 | 7 | // Maintainer: LPS
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 | 8 | //
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 | 9 | // This file is part of the SC Toolkit.
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 | 10 | //
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 | 11 | // The SC Toolkit is free software; you can redistribute it and/or modify
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 | 12 | // it under the terms of the GNU Library General Public License as published by
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 | 13 | // the Free Software Foundation; either version 2, or (at your option)
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 | 14 | // any later version.
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 | 15 | //
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 | 16 | // The SC Toolkit is distributed in the hope that it will be useful,
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 | 17 | // but WITHOUT ANY WARRANTY; without even the implied warranty of
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 | 18 | // MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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 | 19 | // GNU Library General Public License for more details.
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 | 20 | //
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 | 21 | // You should have received a copy of the GNU Library General Public License
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 | 22 | // along with the SC Toolkit; see the file COPYING.LIB.  If not, write to
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 | 23 | // the Free Software Foundation, 675 Mass Ave, Cambridge, MA 02139, USA.
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 | 24 | //
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 | 25 | // The U.S. Government is granted a limited license as per AL 91-7.
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 | 26 | //
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 | 27 | 
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 | 28 | /* These routines manipulate the current working keyword.  This
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 | 29 |  * is an ordered list of keyword_tree's.  When a relative
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 | 30 |  * keyword is searched for we start looking under the first keyword
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 | 31 |  * tree in the current working keyword list and if it is not found
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 | 32 |  * continue looking under successive members of the list. */
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 | 33 | 
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 | 34 | #include <stdlib.h>
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 | 35 | #include <string.h>
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 | 36 | #include <util/keyval/ipv2.h>
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 | 37 | 
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 | 38 | using namespace std;
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 | 39 | using namespace sc;
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 | 40 | 
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 | 41 | /* This sets up the current working keyword path to the declaration
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 | 42 |  * list. */
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 | 43 | void
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 | 44 | IPV2::cwk_root()
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 | 45 | {
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 | 46 |   free_keyword_tree_list(ip_cwk);
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 | 47 |   ip_cwk = splice_keyword_tree_list(ip_tree,NULL);
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 | 48 |   }
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 | 49 | 
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 | 50 | /* This sets up the current working keyword path to NULL
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 | 51 |  * list. */
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 | 52 | void
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 | 53 | IPV2::cwk_clear()
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 | 54 | {
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 | 55 |   free_keyword_tree_list(ip_cwk);
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 | 56 |   ip_cwk = NULL;
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 | 57 |   }
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 | 58 | 
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 | 59 | /* This adds a keyword tree to the keyword path. */
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 | 60 | void
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 | 61 | IPV2::ip_cwk_add_kt(ip_keyword_tree_t *kt)
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 | 62 | {
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 | 63 |   ip_cwk = splice_keyword_tree_list(kt,ip_cwk);
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 | 64 |   }
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 | 65 | 
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 | 66 | /* This adds a keyword to the keyword path. */
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 | 67 | /* NOTE: the last path to be searched must be added first. */
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 | 68 | void
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 | 69 | IPV2::cwk_add(const char* keyword)
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 | 70 | {
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 | 71 |   ip_keyword_tree_t *kt;
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 | 72 |   ip_keyword_tree_list_t *I,*old_cwk;
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 | 73 | 
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 | 74 |   old_cwk = ip_cwk;
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 | 75 | 
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 | 76 |   /* Initialize the new cwk list. */
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 | 77 |   ip_cwk = NULL;
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 | 78 | 
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 | 79 |   /* See if the keyword we were given is NULL.
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 | 80 |    * If so, just copy the cwk. */
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 | 81 |   if (!keyword) {
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 | 82 |     ip_cwk = old_cwk;
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 | 83 |     }
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 | 84 |   /* See if we have been given an absolute path. */
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 | 85 |   else if (keyword[0] == ':') {
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 | 86 |     /* Copy the old keyword tree list to the new ip_cwk global. */
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 | 87 |     for (I=old_cwk; I!=NULL; I=I->p) {
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 | 88 |       ip_cwk = splice_keyword_tree_list(I->kt,ip_cwk);
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 | 89 |       }
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 | 90 |     /* Add the keyword into the keyword list. */
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 | 91 |     kt = ip_descend_tree(ip_tree,&(keyword[1]));
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 | 92 |     if (kt) ip_cwk = splice_keyword_tree_list(kt->down,ip_cwk);
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 | 93 |     free_keyword_tree_list(old_cwk);
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 | 94 |     }
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 | 95 |   else {
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 | 96 |     /* For an relative path append the keyword to each of the keyword
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 | 97 |      * paths in the current working keyword list. */
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 | 98 |     ip_keyword_tree_t *kt;
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 | 99 |     for (I=old_cwk; I!=NULL; I=I->p) {
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 | 100 |       kt = ip_descend_tree(I->kt,keyword);
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 | 101 |       if (kt) {
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 | 102 |         kt = ip_descend_tree(I->kt,keyword);
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 | 103 |         ip_cwk = splice_keyword_tree_list(kt->down,ip_cwk);
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 | 104 |         }
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 | 105 |       }
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 | 106 |     free_keyword_tree_list(old_cwk);
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 | 107 |     }
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 | 108 | 
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 | 109 |   if (ip_keyword) {
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 | 110 |     *ip_out << "IP_KEYWORDS from IPV2::cwk_add (" << keyword << "): {"
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 | 111 |             << endl;
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 | 112 |     for (I=ip_cwk; I!=NULL; I=I->p) {
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 | 113 |         *ip_out << "  ";
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 | 114 |         print_keyword(*ip_out,I->kt);
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 | 115 |         *ip_out << endl;
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 | 116 |       }
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 | 117 |     *ip_out << "  }" << endl;
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 | 118 |     }
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 | 119 | 
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 | 120 |   }
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 | 121 | 
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 | 122 | /* This pushes the old cwk list without modifying the current cwk list. */
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 | 123 | void
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 | 124 | IPV2::cwk_push()
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 | 125 | {
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 | 126 |   ip_keyword_tree_list_t *I;
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 | 127 | 
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 | 128 |   /* Allocate a stack slot to hold the old cwk. */
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 | 129 |   if (!cwkstack) {
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 | 130 |     cwkstack = (ip_cwk_stack_t *) malloc(sizeof(ip_cwk_stack_t));
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 | 131 |     cwkstack->p = NULL;
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 | 132 |     }
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 | 133 |   else {
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 | 134 |     ip_cwk_stack_t *tmp = cwkstack;
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 | 135 |     cwkstack = (ip_cwk_stack_t *) malloc(sizeof(ip_cwk_stack_t));
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 | 136 |     cwkstack->p = tmp;
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 | 137 |     }
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 | 138 | 
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 | 139 |   /* Push the previous cwk list onto the stack. */
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 | 140 |   cwkstack->ktl = ip_cwk;
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 | 141 | 
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 | 142 |   /* Copy the old keyword tree list to the ip_cwk global. */
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 | 143 |   ip_cwk = NULL;
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 | 144 |   for (I=cwkstack->ktl; I!=NULL; I=I->p) {
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 | 145 |     ip_cwk = splice_keyword_tree_list(I->kt,ip_cwk);
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 | 146 |     }
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 | 147 |   }
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 | 148 | 
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 | 149 | /* This moves up the keyword tree for each member of the cwk list.
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 | 150 |  * If a cwk is already at the top of the tree, then that cwk list entry
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 | 151 |  * will be deleted. */
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 | 152 | void
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 | 153 | IPV2::cwk_pop()
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 | 154 | {
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 | 155 |   ip_cwk_stack_t *tmp;
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 | 156 |   if (!cwkstack) {
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 | 157 |     error("IPV2::cwk_pop: tried to pop above the top");
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 | 158 |     }
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 | 159 |   free_keyword_tree_list(ip_cwk);
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 | 160 |   ip_cwk = cwkstack->ktl;
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 | 161 |   tmp = cwkstack;
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 | 162 |   cwkstack = tmp->p;
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 | 163 |   free(tmp);
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 | 164 |   }
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 | 165 | 
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 | 166 | /* Descend the keyword tree using the cwk and obtain a new keyword tree. */
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 | 167 | ip_keyword_tree_t *
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 | 168 | IPV2::ip_cwk_descend_tree(const char* keyword)
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 | 169 | {
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 | 170 |   ip_keyword_tree_list_t *I;
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 | 171 |   ip_keyword_tree_t *kt=NULL;
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 | 172 | 
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 | 173 |   /* If the keyword is NULL, then the first value in the cwk list is returned.*/
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 | 174 |   if (keyword[0] == '\0') {
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 | 175 |     if (ip_cwk) kt = ip_cwk->kt;
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 | 176 |     else kt = NULL;
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 | 177 |     }
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 | 178 |   /* Is the keyword an absolute path? */
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 | 179 |   else if (keyword[0] != ':') {
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 | 180 |     /* See if we can descend to this keyword in any of the cwk's */
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 | 181 |     for (I=ip_cwk; I!=NULL; I=I->p) {
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 | 182 |       if ((kt = ip_descend_tree(I->kt,keyword)) != NULL) break;
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 | 183 |       }
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 | 184 |     }
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 | 185 |   else {
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 | 186 |     kt = ip_descend_tree(ip_tree,&(keyword[1]));
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 | 187 |     }
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 | 188 | 
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 | 189 |   return kt;
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 | 190 |   }
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 | 191 | 
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 | 192 | ////////////////////////////////////////////////////////////////////////
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 | 193 | // IPV2StrTok provides strtok functionality, but allows multiple strings
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 | 194 | // to be processed at a time.
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 | 195 | 
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 | 196 | class IPV2StrTok {
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 | 197 |   private:
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 | 198 |     char* str;
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 | 199 |     const char* delim;
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 | 200 |     int ndelim;
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 | 201 |   public:
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 | 202 |     IPV2StrTok(char* s, const char*d): str(s), delim(d), ndelim(strlen(d)) {}
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 | 203 |     char* tok();
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 | 204 |     int is_white(char c);
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 | 205 | };
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 | 206 | 
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 | 207 | int
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 | 208 | IPV2StrTok::is_white(char c)
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 | 209 | {
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 | 210 |   for (int i=0; i<ndelim; i++) {
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 | 211 |       if (c == delim[i]) {
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 | 212 |           return 1;
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 | 213 |         }
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 | 214 |     }
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 | 215 |   return 0;
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 | 216 | }
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 | 217 | 
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 | 218 | char*
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 | 219 | IPV2StrTok::tok()
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 | 220 | {
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 | 221 |   // move str past the white space
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 | 222 |   while (*str && is_white(*str)) str++;
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 | 223 |   char *ret = str;
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 | 224 | 
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 | 225 |   // put 0 at the end of the string and advance str
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 | 226 |   while (*str && !is_white(*str)) str++;
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 | 227 |   if (*str) {
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 | 228 |       *str = '\0';
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 | 229 |       str++;
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 | 230 |     }
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 | 231 | 
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 | 232 |   if (*ret) return ret;
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 | 233 |   else return NULL;
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 | 234 | }
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 | 235 | 
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 | 236 | ////////////////////////////////////////////////////////////////////////
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 | 237 | 
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 | 238 | /* Descend the given keyword tree using the info in the passed string.
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 | 239 |  * The new keyword tree or NULL, if it is not found, will be returned. */
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 | 240 | ip_keyword_tree_t *
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 | 241 | IPV2::ip_descend_tree(ip_keyword_tree_t* kt,const char* keyword)
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 | 242 | {
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 | 243 |   ip_keyword_tree_t *I,*r;
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 | 244 |   char ch[KEYWORD_LENGTH];
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 | 245 |   char *token;
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 | 246 |   int found;
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 | 247 | 
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 | 248 |   if (!keyword) return kt;
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 | 249 | 
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 | 250 |   if (strlen(keyword)+1 > KEYWORD_LENGTH) {
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 | 251 |       error("ip_descend_tree: maximum KEYWORD_LENGTH has been exceeded");
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 | 252 |       }
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 | 253 | 
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 | 254 |   if (keyword[0] == ':') {
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 | 255 |       kt = ip_tree;
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 | 256 |       strcpy(ch,&keyword[1]);
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 | 257 |     }
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 | 258 |   else {
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 | 259 |       strcpy(ch,keyword);
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 | 260 |     }
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 | 261 | 
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 | 262 |   r = kt;
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 | 263 |   //IPV2StrTok tok(ch, ": \t");
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 | 264 |   IPV2StrTok tok(ch, ":");
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 | 265 |   token = tok.tok();
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 | 266 |   while ((r != NULL) && (token != NULL)) {
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 | 267 |     /* Transverse the circular list. */
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 | 268 |     found = 0;
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 | 269 |     I = r;
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 | 270 |     do {
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 | 271 |       if (!strcmp(token,"..")) {
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 | 272 |         r = I->up;
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 | 273 |         token = tok.tok();
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 | 274 |         if (token == NULL) return I;
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 | 275 |         found = 1;
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 | 276 |         break;
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 | 277 |         }
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 | 278 |       else if (! I->keyword) {
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 | 279 |           return NULL;
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 | 280 |         }
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 | 281 |       else if (!strcmp(token,I->keyword)) {
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 | 282 |         I->seen = 1;
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 | 283 |         if (I->variable) I = ip_descend_tree(I,I->variable);
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 | 284 |         token = tok.tok();
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 | 285 |         if (token == NULL) return I;
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 | 286 |         r = I->down;
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 | 287 |         if (!r) {
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 | 288 |             return NULL;
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 | 289 |           }
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 | 290 |         found = 1;
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 | 291 |         break;
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 | 292 |         }
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 | 293 |       } while ((I = I->across) != r);
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 | 294 |     if (!found) {
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 | 295 |         return NULL;
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 | 296 |       }
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 | 297 |     }
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 | 298 | 
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 | 299 |   if (r && ip_keyword) {
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 | 300 |     *ip_out << "IP_KEYWORD from ip_descend_tree: ";
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 | 301 |     print_keyword(*ip_out,r);
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 | 302 |     *ip_out << endl;
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 | 303 |     }
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 | 304 | 
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 | 305 |   return r;
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 | 306 |   }
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 | 307 | 
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 | 308 | /* Return the value of the given keyword. */
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 | 309 | char *
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 | 310 | IPV2::ip_key_value(const char* keyword)
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 | 311 | {
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 | 312 |   ip_keyword_tree_t *kt;
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 | 313 | 
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 | 314 |   kt = ip_cwk_descend_tree(keyword);
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 | 315 | 
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 | 316 |   if (kt && ip_keyword) {
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 | 317 |     *ip_out << "IP_KEYWORD from ip_key_value: ";
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 | 318 |     print_keyword(*ip_out,kt);
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 | 319 |     *ip_out << endl;
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 | 320 |     }
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 | 321 | 
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 | 322 |   if (kt) return kt->value;
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 | 323 |   else return NULL;
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 | 324 |   }
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 | 325 | 
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 | 326 | /* Free memory for a keyword tree list. */
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 | 327 | void
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 | 328 | IPV2::free_keyword_tree_list(ip_keyword_tree_list_t *ktl)
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 | 329 | {
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 | 330 |   if (!ktl) return;
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 | 331 |   free_keyword_tree_list(ktl->p);
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 | 332 |   free(ktl);
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 | 333 |   }
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 | 334 | 
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 | 335 | /* Splice a new keyword tree into a keyword tree list. */
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 | 336 | ip_keyword_tree_list_t*
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 | 337 | IPV2::splice_keyword_tree_list(ip_keyword_tree_t*kt,ip_keyword_tree_list_t*p)
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 | 338 | {
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 | 339 |   ip_keyword_tree_list_t *r;
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 | 340 | 
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 | 341 |   if (kt==NULL) return p;
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 | 342 |   r = (ip_keyword_tree_list_t *) malloc(sizeof(ip_keyword_tree_list_t));
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 | 343 |   r->kt = kt;
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 | 344 |   r->p = p;
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 | 345 |   return r;
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 | 346 |   }
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