1 | /* |
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2 | * $Id: array.c,v 1.6 2002/08/27 06:26:29 fabio Exp $ |
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3 | * |
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4 | */ |
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5 | /* LINTLIBRARY */ |
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6 | |
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7 | #include <stdio.h> |
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8 | #include "util.h" |
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9 | #include "array.h" |
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10 | |
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11 | #define INIT_SIZE 3 |
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12 | |
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13 | int unsigned array_global_index; |
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14 | int array_global_insert; |
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15 | |
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16 | array_t * |
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17 | array_do_alloc(int size, int number) |
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18 | { |
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19 | array_t *array; |
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20 | |
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21 | array = ALLOC(array_t, 1); |
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22 | if (array == NIL(array_t)) { |
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23 | return NIL(array_t); |
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24 | } |
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25 | array->num = 0; |
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26 | array->n_size = MAX(number, INIT_SIZE); |
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27 | array->obj_size = size; |
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28 | array->index = -size; |
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29 | array->space = ALLOC(char, array->n_size * array->obj_size); |
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30 | if (array->space == NIL(char)) { |
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31 | return NIL(array_t); |
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32 | } |
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33 | (void) memset(array->space, 0, array->n_size * array->obj_size); |
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34 | return array; |
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35 | } |
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36 | |
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37 | |
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38 | void |
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39 | array_free(array_t *array) |
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40 | { |
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41 | if (array == NIL(array_t)) return; |
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42 | if (array->index >= 0) array_abort(array,4); |
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43 | FREE(array->space); |
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44 | FREE(array); |
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45 | } |
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46 | |
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47 | |
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48 | array_t * |
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49 | array_dup(array_t *old) |
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50 | { |
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51 | array_t *newa; |
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52 | |
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53 | newa = ALLOC(array_t, 1); |
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54 | if (newa == NIL(array_t)) { |
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55 | return NIL(array_t); |
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56 | } |
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57 | newa->num = old->num; |
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58 | newa->n_size = old->num; |
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59 | newa->obj_size = old->obj_size; |
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60 | newa->index = -newa->obj_size; |
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61 | newa->space = ALLOC(char, newa->n_size * newa->obj_size); |
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62 | if (newa->space == NIL(char)) { |
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63 | FREE(newa); |
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64 | return NIL(array_t); |
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65 | } |
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66 | (void) memcpy(newa->space, old->space, old->num * old->obj_size); |
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67 | return newa; |
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68 | } |
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69 | |
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70 | array_t * |
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71 | array_partial_dup(array_t *old, int i) |
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72 | { |
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73 | array_t *newa; |
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74 | |
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75 | newa = ALLOC(array_t, 1); |
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76 | if (newa == NIL(array_t)) { |
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77 | return NIL(array_t); |
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78 | } |
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79 | newa->num = old->num - 1; |
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80 | newa->n_size = old->num - 1; |
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81 | newa->obj_size = old->obj_size; |
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82 | newa->index = -newa->obj_size; |
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83 | newa->space = ALLOC(char, newa->n_size * newa->obj_size); |
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84 | if (newa->space == NIL(char)) { |
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85 | FREE(newa); |
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86 | return NIL(array_t); |
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87 | } |
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88 | if (i > 0) |
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89 | (void) memcpy(newa->space, old->space, i * old->obj_size); |
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90 | if (i < old->num - 1) |
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91 | (void) memcpy(newa->space + ((i) * old->obj_size), |
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92 | old->space + ((i+1) * old->obj_size), (old->num - (i + 1)) * old->obj_size); |
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93 | return newa; |
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94 | } |
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95 | |
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96 | |
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97 | /* append the elements of array2 to the end of array1 */ |
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98 | int |
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99 | array_append(array_t *array1, array_t *array2) |
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100 | { |
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101 | char *pos; |
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102 | |
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103 | if (array1->index >= 0) array_abort(array1,4); |
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104 | if (array1->obj_size != array2->obj_size) { |
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105 | array_abort(array1,2); |
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106 | /* NOTREACHED */ |
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107 | } |
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108 | |
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109 | /* make sure array1 has enough room */ |
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110 | if (array1->n_size < array1->num + array2->num) { |
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111 | if (array_resize(array1, array1->num + array2->num) == ARRAY_OUT_OF_MEM) { |
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112 | return ARRAY_OUT_OF_MEM; |
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113 | } |
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114 | } |
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115 | pos = array1->space + array1->num * array1->obj_size; |
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116 | (void) memcpy(pos, array2->space, array2->num * array2->obj_size); |
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117 | array1->num += array2->num; |
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118 | |
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119 | return 1; |
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120 | } |
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121 | |
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122 | |
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123 | /* join array1 and array2, returning a new array */ |
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124 | array_t * |
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125 | array_join(array_t *array1, array_t *array2) |
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126 | { |
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127 | array_t *array; |
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128 | char *pos; |
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129 | |
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130 | if (array1->obj_size != array2->obj_size) { |
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131 | array_abort(array1,3); |
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132 | fail("array: join not defined for arrays of different sizes\n"); |
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133 | /* NOTREACHED */ |
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134 | } |
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135 | array = ALLOC(array_t, 1); |
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136 | if (array == NIL(array_t)) { |
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137 | return NIL(array_t); |
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138 | } |
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139 | array->num = array1->num + array2->num; |
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140 | array->n_size = array->num; |
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141 | array->obj_size = array1->obj_size; |
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142 | array->index = -array->obj_size; |
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143 | array->space = ALLOC(char, array->n_size * array->obj_size); |
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144 | if (array->space == NIL(char)) { |
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145 | FREE(array); |
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146 | return NIL(array_t); |
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147 | } |
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148 | (void) memcpy(array->space, array1->space, array1->num * array1->obj_size); |
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149 | pos = array->space + array1->num * array1->obj_size; |
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150 | (void) memcpy(pos, array2->space, array2->num * array2->obj_size); |
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151 | return array; |
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152 | } |
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153 | |
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154 | char * |
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155 | array_do_data(array_t *array) |
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156 | { |
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157 | char *data; |
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158 | |
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159 | data = ALLOC(char, array->num * array->obj_size); |
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160 | if (data == NIL(char)) { |
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161 | return NIL(char); |
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162 | } |
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163 | (void) memcpy(data, array->space, array->num * array->obj_size); |
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164 | return data; |
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165 | } |
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166 | |
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167 | |
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168 | int /* would like to be void, except for macro's */ |
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169 | array_resize(array_t *array, int new_size) |
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170 | { |
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171 | int old_size; |
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172 | char *pos, *newspace; |
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173 | |
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174 | /* Note that this is not an exported function, and does not check if |
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175 | the array is locked since that is already done by the caller. */ |
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176 | old_size = array->n_size; |
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177 | array->n_size = MAX(array->n_size * 2, new_size); |
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178 | newspace = REALLOC(char, array->space, array->n_size * array->obj_size); |
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179 | if (newspace == NIL(char)) { |
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180 | array->n_size = old_size; |
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181 | return ARRAY_OUT_OF_MEM; |
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182 | } else { |
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183 | array->space = newspace; |
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184 | } |
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185 | pos = array->space + old_size * array->obj_size; |
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186 | (void) memset(pos, 0, (array->n_size - old_size)*array->obj_size); |
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187 | return 1; |
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188 | } |
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189 | |
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190 | void |
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191 | array_sort(array_t *array, int (*compare)(const void *, const void *)) |
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192 | { |
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193 | qsort((void *)array->space, array->num, array->obj_size, compare); |
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194 | } |
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195 | |
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196 | |
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197 | void |
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198 | array_uniq(array_t *array, int (*compare)(char **, char **), void (*free_func)(char *)) |
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199 | { |
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200 | int i, last; |
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201 | char *dest, *obj1, *obj2; |
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202 | |
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203 | dest = array->space; |
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204 | obj1 = array->space; |
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205 | obj2 = array->space + array->obj_size; |
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206 | last = array->num; |
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207 | |
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208 | for(i = 1; i < last; i++) { |
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209 | if ((*compare)((char **) obj1, (char **) obj2) != 0) { |
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210 | if (dest != obj1) { |
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211 | (void) memcpy(dest, obj1, array->obj_size); |
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212 | } |
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213 | dest += array->obj_size; |
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214 | } else { |
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215 | if (free_func != 0) (*free_func)(obj1); |
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216 | array->num--; |
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217 | } |
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218 | obj1 += array->obj_size; |
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219 | obj2 += array->obj_size; |
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220 | } |
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221 | if (dest != obj1) { |
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222 | (void) memcpy(dest, obj1, array->obj_size); |
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223 | } |
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224 | } |
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225 | |
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226 | int /* would like to be void, except for macro's */ |
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227 | array_abort(array_t *a, int i) |
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228 | { |
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229 | fputs("array: ",stderr); |
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230 | |
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231 | switch (i) { |
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232 | |
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233 | case 0: /* index error on insert */ |
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234 | fprintf(stderr,"insert of %d\n",a->index); |
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235 | break; |
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236 | |
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237 | case 1: /* index error on fetch */ |
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238 | fprintf(stderr,"fetch index %d not in [0,%d]\n", |
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239 | array_global_index,a->num-1); |
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240 | break; |
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241 | |
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242 | case 2: /* append with different element sizes */ |
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243 | fprintf(stderr,"append undefined for arrays of different sizes\n"); |
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244 | break; |
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245 | |
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246 | case 3: /* join with different element sizes */ |
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247 | fprintf(stderr,"join not defined for arrays of different sizes\n"); |
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248 | break; |
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249 | |
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250 | case 4: /* size error or locked error */ |
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251 | if (a->index >= 0) { |
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252 | /* Since array_insert is a macro, it is not allowed to nest a |
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253 | call to any routine which might move the array space through |
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254 | a realloc or free inside an array_insert call. */ |
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255 | fprintf(stderr,"nested insert, append, remove, or free operations\n"); |
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256 | } else { |
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257 | fprintf(stderr,"object size mismatch\n"); |
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258 | } |
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259 | break; |
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260 | case 5: /* attempt to remove last item from empty array */ |
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261 | fprintf(stderr, "attempt to remove from empty array"); |
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262 | break; |
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263 | default: |
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264 | fputs("unknown error\n", stderr); |
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265 | break; |
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266 | } |
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267 | |
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268 | fail("array package error"); |
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269 | return 0; /* never reached */ |
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270 | } |
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