| [0b990d] | 1 | // | 
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|  | 2 | // ipv2_karray.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 keyword arrays.  A keyword | 
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|  | 29 | * array differs from a data array in that its indices are indicated | 
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|  | 30 | * by a keyword segment.  For example: array:0:1 = 6 is a keyword | 
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|  | 31 | * array element.  The count is the upper bound plus 1. */ | 
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|  | 32 |  | 
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|  | 33 | /* NOTE: If these routines are used to access keyword arrays, then | 
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|  | 34 | * only the first place in the cwk in which a keyword array name is | 
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|  | 35 | * found will be used. */ | 
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|  | 36 |  | 
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|  | 37 | #include <stdio.h> | 
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|  | 38 | #include <stdlib.h> | 
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|  | 39 | #include <stdarg.h> | 
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|  | 40 | #include <string.h> | 
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|  | 41 | #include <util/keyval/ipv2.h> | 
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|  | 42 |  | 
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|  | 43 | using namespace sc; | 
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|  | 44 |  | 
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|  | 45 | void | 
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|  | 46 | IPV2::ip_cwk_karray_add_v(int n,int*v) | 
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|  | 47 | { | 
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|  | 48 | int i; | 
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|  | 49 | char indices[110],index[10]; | 
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|  | 50 |  | 
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|  | 51 | if (n>10) { | 
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|  | 52 | warn("ip_cwk_karray_add_v: too many indices"); | 
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|  | 53 | return; | 
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|  | 54 | } | 
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|  | 55 | indices[0] = '\0'; | 
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|  | 56 | for (i=0; i<n; i++) { | 
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|  | 57 | if (v[i] > 999999999 || v[i] < 0) { | 
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|  | 58 | warn("ip_cwk_karray_add_v: an index is too large or small"); | 
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|  | 59 | return; | 
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|  | 60 | } | 
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|  | 61 | sprintf(index,"%d",v[i]); | 
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|  | 62 | strcpy(indices,index); | 
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|  | 63 | if (i!=n-1) strcpy(indices,":"); | 
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|  | 64 | } | 
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|  | 65 | cwk_add(indices); | 
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|  | 66 | return; | 
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|  | 67 | } | 
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|  | 68 |  | 
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|  | 69 | void | 
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|  | 70 | IPV2::ip_cwk_karray_add(int n,...) | 
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|  | 71 | { | 
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|  | 72 | va_list args; | 
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|  | 73 | int i; | 
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|  | 74 | int *v; | 
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|  | 75 |  | 
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|  | 76 | if (n==0) { | 
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|  | 77 | ip_cwk_karray_add_v(n,NULL); | 
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|  | 78 | return; | 
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|  | 79 | } | 
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|  | 80 | else { | 
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|  | 81 | v = (int *) malloc(sizeof(int)*n); | 
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|  | 82 | if (!v) { | 
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|  | 83 | warn("ip_cwk_karray_add: problem with malloc"); | 
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|  | 84 | return; | 
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|  | 85 | } | 
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|  | 86 | va_start(args, n); | 
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|  | 87 | for (i=0; i<n; i++) { | 
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|  | 88 | v[i] = va_arg(args,int); | 
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|  | 89 | } | 
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|  | 90 | va_end(args); | 
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|  | 91 | free(v); | 
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|  | 92 | ip_cwk_karray_add_v(n,v); | 
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|  | 93 | return; | 
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|  | 94 | } | 
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|  | 95 | } | 
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|  | 96 |  | 
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|  | 97 | ip_keyword_tree_t* | 
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|  | 98 | IPV2::ip_karray_descend_v(ip_keyword_tree_t*kt,int n,int*v) | 
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|  | 99 | { | 
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|  | 100 | ip_keyword_tree_t *r; | 
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|  | 101 | int i; | 
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|  | 102 | char index[10]; | 
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|  | 103 |  | 
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|  | 104 | if (!kt) return NULL; | 
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|  | 105 |  | 
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|  | 106 | /* kt starts off at the array so we must first descend to the first | 
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|  | 107 | * level of indices. */ | 
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|  | 108 | r = kt->down; | 
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|  | 109 | if (!r) return NULL; | 
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|  | 110 |  | 
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|  | 111 | for (i=0; i<n; i++) { | 
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|  | 112 | if (!r) return r; | 
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|  | 113 | if (v[i] > 999999999 || v[i] < 0) { | 
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|  | 114 | warn("ip_karray_descend_v: an index is too large or small"); | 
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|  | 115 | return NULL; | 
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|  | 116 | } | 
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|  | 117 | sprintf(index,"%d",v[i]); | 
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|  | 118 | r = ip_descend_tree(r,index); | 
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|  | 119 | if (r) r=r->down; | 
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|  | 120 | } | 
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|  | 121 | return r; | 
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|  | 122 | } | 
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|  | 123 |  | 
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|  | 124 | ip_keyword_tree_t* | 
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|  | 125 | IPV2::ip_karray_descend(ip_keyword_tree_t*kt,int n,...) | 
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|  | 126 | { | 
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|  | 127 | va_list args; | 
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|  | 128 | int i; | 
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|  | 129 | int *v; | 
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|  | 130 |  | 
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|  | 131 | if (n==0) { | 
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|  | 132 | return ip_karray_descend_v(kt,n,NULL); | 
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|  | 133 | } | 
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|  | 134 | else { | 
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|  | 135 | v = (int *) malloc(sizeof(int)*n); | 
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|  | 136 | if (!v) { | 
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|  | 137 | warn("ip_karray_descend: problem with malloc"); | 
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|  | 138 | return NULL; | 
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|  | 139 | } | 
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|  | 140 | va_start(args, n); | 
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|  | 141 | for (i=0; i<n; i++) { | 
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|  | 142 | v[i] = va_arg(args,int); | 
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|  | 143 | } | 
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|  | 144 | va_end(args); | 
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|  | 145 | free(v); | 
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|  | 146 | return ip_karray_descend_v(kt,n,v); | 
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|  | 147 | } | 
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|  | 148 | } | 
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|  | 149 |  | 
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|  | 150 | IPV2::Status | 
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|  | 151 | IPV2::count_v(const char* keyword,int*karray_count,int n,int*v) | 
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|  | 152 | { | 
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|  | 153 | ip_keyword_tree_t *kt,*I; | 
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|  | 154 | int index; | 
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|  | 155 | int max; | 
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|  | 156 |  | 
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|  | 157 | /* Descend the keyword tree to keyword. */ | 
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|  | 158 | kt = ip_cwk_descend_tree(keyword); | 
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|  | 159 | if (kt == NULL) return KeyNotFound; | 
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|  | 160 |  | 
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|  | 161 | /* Descend the tree to the indices. */ | 
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|  | 162 | kt = ip_karray_descend_v(kt,n,v); | 
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|  | 163 | if (kt == NULL) return NotAnArray; | 
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|  | 164 |  | 
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|  | 165 | /* Go thru the keyword array and examine the indices. */ | 
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|  | 166 | I = kt; | 
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|  | 167 | max = 0; | 
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|  | 168 | do { | 
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|  | 169 | if (sscanf(I->keyword,"%d",&index) != 1) return OutOfBounds; | 
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|  | 170 | if (index<0) return OutOfBounds; | 
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|  | 171 | if (index+1 > max) max = index + 1; | 
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|  | 172 | } while ((I = I->across) != kt); | 
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|  | 173 |  | 
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|  | 174 | *karray_count = max; | 
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|  | 175 | return OK; | 
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|  | 176 | } | 
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|  | 177 |  | 
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|  | 178 | /* This counts the number of elements in a keyword array. */ | 
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|  | 179 | IPV2::Status | 
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|  | 180 | IPV2::count(const char *keyword,int *karray_count,int n,...) | 
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|  | 181 | { | 
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|  | 182 | va_list args; | 
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|  | 183 | int i; | 
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|  | 184 | int *v; | 
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|  | 185 | Status r; | 
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|  | 186 |  | 
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|  | 187 | if (n==0) { | 
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|  | 188 | return count_v(keyword,karray_count,n,NULL); | 
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|  | 189 | } | 
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|  | 190 | else { | 
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|  | 191 | v = (int *) malloc(sizeof(int)*n); | 
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|  | 192 | if (!v) return Malloc; | 
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|  | 193 | va_start(args, n); | 
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|  | 194 | for (i=0; i<n; i++) { | 
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|  | 195 | v[i] = va_arg(args,int); | 
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|  | 196 | } | 
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|  | 197 | va_end(args); | 
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|  | 198 | r = count_v(keyword,karray_count,n,v); | 
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|  | 199 | free(v); | 
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|  | 200 | return r; | 
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|  | 201 | } | 
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|  | 202 | } | 
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