src/hash_map.c

Fri, 05 May 2023 19:07:56 +0200

author
Mike Becker <universe@uap-core.de>
date
Fri, 05 May 2023 19:07:56 +0200
changeset 702
3390b58ad15a
parent 691
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child 709
1e8ba59e7911
permissions
-rw-r--r--

fix cx_linked_list_sort() not working for empty lists

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1 /*
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2 * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS HEADER.
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3 *
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4 * Copyright 2021 Mike Becker, Olaf Wintermann All rights reserved.
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5 *
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6 * Redistribution and use in source and binary forms, with or without
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7 * modification, are permitted provided that the following conditions are met:
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8 *
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9 * 1. Redistributions of source code must retain the above copyright
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10 * notice, this list of conditions and the following disclaimer.
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11 *
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12 * 2. Redistributions in binary form must reproduce the above copyright
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13 * notice, this list of conditions and the following disclaimer in the
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14 * documentation and/or other materials provided with the distribution.
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15 *
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16 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
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17 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
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18 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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19 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE
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20 * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
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21 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
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22 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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23 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
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24 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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25 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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26 * POSSIBILITY OF SUCH DAMAGE.
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27 */
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28
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29 #include <string.h>
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30 #include "cx/hash_map.h"
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31 #include "cx/utils.h"
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32
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33 struct cx_hash_map_element_s {
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34 /** A pointer to the next element in the current bucket. */
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35 struct cx_hash_map_element_s *next;
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36
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37 /** The corresponding key. */
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38 CxHashKey key;
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39
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40 /** The value data. */
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41 char data[];
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42 };
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43
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44 static void cx_hash_map_clear(struct cx_map_s *map) {
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45 struct cx_hash_map_s *hash_map = (struct cx_hash_map_s *) map;
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46 cx_for_n(i, hash_map->bucket_count) {
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47 struct cx_hash_map_element_s *elem = hash_map->buckets[i];
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48 if (elem != NULL) {
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49 do {
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50 struct cx_hash_map_element_s *next = elem->next;
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51 // invoke the destructor
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52 cx_invoke_destructor(map, elem->data);
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53 // free the key data
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54 cxFree(map->allocator, (void *) elem->key.data);
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55 // free the node
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56 cxFree(map->allocator, elem);
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57 // proceed
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58 elem = next;
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59 } while (elem != NULL);
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60
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61 // do not leave a dangling pointer
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62 hash_map->buckets[i] = NULL;
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63 }
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64 }
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65 map->size = 0;
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66 }
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67
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68 static void cx_hash_map_destructor(struct cx_map_s *map) {
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69 struct cx_hash_map_s *hash_map = (struct cx_hash_map_s *) map;
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70
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71 // free the buckets
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72 cx_hash_map_clear(map);
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73 cxFree(map->allocator, hash_map->buckets);
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74
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75 // free the map structure
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76 cxFree(map->allocator, map);
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77 }
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78
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79 static int cx_hash_map_put(
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80 CxMap *map,
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81 CxHashKey key,
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82 void *value
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83 ) {
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84 struct cx_hash_map_s *hash_map = (struct cx_hash_map_s *) map;
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85 CxAllocator const *allocator = map->allocator;
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86
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87 unsigned hash = key.hash;
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88 if (hash == 0) {
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89 cx_hash_murmur(&key);
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90 hash = key.hash;
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91 }
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92
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93 size_t slot = hash % hash_map->bucket_count;
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94 struct cx_hash_map_element_s *elm = hash_map->buckets[slot];
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95 struct cx_hash_map_element_s *prev = NULL;
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96
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97 while (elm != NULL && elm->key.hash < hash) {
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98 prev = elm;
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99 elm = elm->next;
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100 }
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101
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102 if (elm != NULL && elm->key.hash == hash && elm->key.len == key.len &&
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103 memcmp(elm->key.data, key.data, key.len) == 0) {
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104 // overwrite existing element
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105 if (map->store_pointer) {
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106 memcpy(elm->data, &value, sizeof(void *));
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107 } else {
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108 memcpy(elm->data, value, map->item_size);
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109 }
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110 } else {
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111 // allocate new element
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112 struct cx_hash_map_element_s *e = cxMalloc(
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113 allocator,
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114 sizeof(struct cx_hash_map_element_s) + map->item_size
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115 );
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116 if (e == NULL) {
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117 return -1;
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118 }
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119
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120 // write the value
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121 if (map->store_pointer) {
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122 memcpy(e->data, &value, sizeof(void *));
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123 } else {
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124 memcpy(e->data, value, map->item_size);
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125 }
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126
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127 // copy the key
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128 void *kd = cxMalloc(allocator, key.len);
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129 if (kd == NULL) {
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130 return -1;
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131 }
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132 memcpy(kd, key.data, key.len);
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133 e->key.data = kd;
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134 e->key.len = key.len;
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135 e->key.hash = hash;
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136
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137 // insert the element into the linked list
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138 if (prev == NULL) {
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139 hash_map->buckets[slot] = e;
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140 } else {
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141 prev->next = e;
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142 }
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143 e->next = elm;
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144
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145 // increase the size
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146 map->size++;
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147 }
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148
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149 return 0;
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150 }
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151
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152 static void cx_hash_map_unlink(
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153 struct cx_hash_map_s *hash_map,
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154 size_t slot,
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155 struct cx_hash_map_element_s *prev,
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156 struct cx_hash_map_element_s *elm
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157 ) {
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158 // unlink
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159 if (prev == NULL) {
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160 hash_map->buckets[slot] = elm->next;
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161 } else {
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162 prev->next = elm->next;
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163 }
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164 // free element
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165 cxFree(hash_map->base.allocator, (void *) elm->key.data);
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166 cxFree(hash_map->base.allocator, elm);
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167 // decrease size
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168 hash_map->base.size--;
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169 }
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170
549
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171 /**
550
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172 * Helper function to avoid code duplication.
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173 *
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174 * @param map the map
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175 * @param key the key to look up
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176 * @param remove flag indicating whether the looked up entry shall be removed
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177 * @param destroy flag indicating whether the destructor shall be invoked
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178 * @return a pointer to the value corresponding to the key or \c NULL
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179 */
550
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180 static void *cx_hash_map_get_remove(
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181 CxMap *map,
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182 CxHashKey key,
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183 bool remove,
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184 bool destroy
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185 ) {
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186 struct cx_hash_map_s *hash_map = (struct cx_hash_map_s *) map;
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187
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188 unsigned hash = key.hash;
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189 if (hash == 0) {
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190 cx_hash_murmur(&key);
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191 hash = key.hash;
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192 }
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193
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194 size_t slot = hash % hash_map->bucket_count;
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195 struct cx_hash_map_element_s *elm = hash_map->buckets[slot];
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196 struct cx_hash_map_element_s *prev = NULL;
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197 while (elm && elm->key.hash <= hash) {
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198 if (elm->key.hash == hash && elm->key.len == key.len) {
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199 if (memcmp(elm->key.data, key.data, key.len) == 0) {
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200 void *data = NULL;
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201 if (destroy) {
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202 cx_invoke_destructor(map, elm->data);
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203 } else {
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204 if (map->store_pointer) {
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205 data = *(void **) elm->data;
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206 } else {
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207 data = elm->data;
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208 }
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209 }
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210 if (remove) {
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211 cx_hash_map_unlink(hash_map, slot, prev, elm);
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212 }
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213 return data;
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214 }
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215 }
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216 prev = elm;
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217 elm = prev->next;
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218 }
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219
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220 return NULL;
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221 }
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222
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223 static void *cx_hash_map_get(
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224 CxMap const *map,
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225 CxHashKey key
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226 ) {
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227 // we can safely cast, because we know the map stays untouched
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228 return cx_hash_map_get_remove((CxMap *) map, key, false, false);
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229 }
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230
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231 static void *cx_hash_map_remove(
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232 CxMap *map,
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233 CxHashKey key,
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234 bool destroy
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235 ) {
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236 return cx_hash_map_get_remove(map, key, true, destroy);
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237 }
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238
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239 static void *cx_hash_map_iter_current_entry(void const *it) {
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240 struct cx_iterator_s const *iter = it;
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241 // struct has to have a compatible signature
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242 return (struct cx_map_entry_s *) &(iter->kv_data);
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243 }
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244
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245 static void *cx_hash_map_iter_current_key(void const *it) {
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246 struct cx_iterator_s const *iter = it;
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247 struct cx_hash_map_element_s *elm = iter->elem_handle;
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248 return &elm->key;
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249 }
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250
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251 static void *cx_hash_map_iter_current_value(void const *it) {
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252 struct cx_iterator_s const *iter = it;
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253 struct cx_hash_map_s const *map = iter->src_handle;
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254 struct cx_hash_map_element_s *elm = iter->elem_handle;
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255 if (map->base.store_pointer) {
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256 return *(void **) elm->data;
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257 } else {
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258 return elm->data;
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259 }
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260 }
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261
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262 static bool cx_hash_map_iter_valid(void const *it) {
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263 struct cx_iterator_s const *iter = it;
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264 return iter->elem_handle != NULL;
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265 }
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266
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267 static void cx_hash_map_iter_next(void *it) {
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268 struct cx_iterator_s *iter = it;
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269 struct cx_hash_map_element_s *elm = iter->elem_handle;
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270
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271 // remove current element, if asked
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272 if (iter->base.remove) {
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273 // obtain mutable pointer to the map
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274 struct cx_mut_iterator_s *miter = it;
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275 struct cx_hash_map_s *map = miter->src_handle;
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276
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277 // clear the flag
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278 iter->base.remove = false;
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279
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280 // determine the next element
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281 struct cx_hash_map_element_s *next = elm->next;
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282
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283 // search the previous element
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284 struct cx_hash_map_element_s *prev = NULL;
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285 if (map->buckets[iter->slot] != elm) {
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286 prev = map->buckets[iter->slot];
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287 while (prev->next != elm) {
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288 prev = prev->next;
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289 }
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290 }
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291
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292 // destroy
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293 cx_invoke_destructor((struct cx_map_s *) map, elm->data);
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294
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295 // unlink
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296 cx_hash_map_unlink(map, iter->slot, prev, elm);
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297
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298 // advance
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299 elm = next;
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300 } else {
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301 // just advance
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302 elm = elm->next;
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303 iter->index++;
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304 }
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305
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306 // search the next bucket, if required
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307 struct cx_hash_map_s const *map = iter->src_handle;
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308 while (elm == NULL && ++iter->slot < map->bucket_count) {
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309 elm = map->buckets[iter->slot];
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310 }
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311
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312 // fill the struct with the next element
551
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313 iter->elem_handle = elm;
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314 if (elm == NULL) {
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315 iter->kv_data.key = NULL;
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316 iter->kv_data.value = NULL;
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317 } else {
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318 iter->kv_data.key = &elm->key;
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319 if (map->base.store_pointer) {
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320 iter->kv_data.value = *(void **) elm->data;
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321 } else {
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322 iter->kv_data.value = elm->data;
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323 }
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324 }
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325 }
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326
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327 static bool cx_hash_map_iter_flag_rm(void *it) {
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328 struct cx_iterator_base_s *iter = it;
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329 if (iter->mutating) {
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330 iter->remove = true;
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331 return true;
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332 } else {
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333 return false;
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334 }
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335 }
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336
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337 static CxIterator cx_hash_map_iterator(CxMap const *map) {
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338 CxIterator iter;
551
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339
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340 iter.src_handle = map;
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341 iter.base.valid = cx_hash_map_iter_valid;
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342 iter.base.next = cx_hash_map_iter_next;
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343 iter.base.current = cx_hash_map_iter_current_entry;
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344 iter.base.flag_removal = cx_hash_map_iter_flag_rm;
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345 iter.base.remove = false;
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346 iter.base.mutating = false;
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347
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348 iter.slot = 0;
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349 iter.index = 0;
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350
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351 if (map->size > 0) {
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352 struct cx_hash_map_s *hash_map = (struct cx_hash_map_s *) map;
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353 struct cx_hash_map_element_s *elm = hash_map->buckets[0];
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354 while (elm == NULL) {
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355 elm = hash_map->buckets[++iter.slot];
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356 }
554
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357 iter.elem_handle = elm;
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358 iter.kv_data.key = &elm->key;
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359 if (map->store_pointer) {
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360 iter.kv_data.value = *(void **) elm->data;
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361 } else {
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362 iter.kv_data.value = elm->data;
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363 }
551
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364 } else {
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365 iter.elem_handle = NULL;
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366 iter.kv_data.key = NULL;
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367 iter.kv_data.value = NULL;
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368 }
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369
550
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370 return iter;
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371 }
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372
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373 static CxIterator cx_hash_map_iterator_keys(CxMap const *map) {
551
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374 CxIterator iter = cx_hash_map_iterator(map);
630
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375 iter.base.current = cx_hash_map_iter_current_key;
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376 return iter;
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377 }
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378
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379 static CxIterator cx_hash_map_iterator_values(CxMap const *map) {
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380 CxIterator iter = cx_hash_map_iterator(map);
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381 iter.base.current = cx_hash_map_iter_current_value;
550
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382 return iter;
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383 }
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384
630
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385 static CxMutIterator cx_hash_map_mut_iterator(CxMap *map) {
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386 CxIterator it = cx_hash_map_iterator(map);
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387 it.base.mutating = true;
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388
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389 // we know the iterators share the same memory layout
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390 CxMutIterator iter;
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391 memcpy(&iter, &it, sizeof(CxMutIterator));
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392 return iter;
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393 }
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394
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395 static CxMutIterator cx_hash_map_mut_iterator_keys(CxMap *map) {
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396 CxMutIterator iter = cx_hash_map_mut_iterator(map);
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397 iter.base.current = cx_hash_map_iter_current_key;
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398 return iter;
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399 }
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400
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401 static CxMutIterator cx_hash_map_mut_iterator_values(CxMap *map) {
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402 CxMutIterator iter = cx_hash_map_mut_iterator(map);
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403 iter.base.current = cx_hash_map_iter_current_value;
550
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404 return iter;
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405 }
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diff changeset
406
89b2a83728b1 #189 basic map implementation
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diff changeset
407 static cx_map_class cx_hash_map_class = {
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diff changeset
408 cx_hash_map_destructor,
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diff changeset
409 cx_hash_map_clear,
89b2a83728b1 #189 basic map implementation
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diff changeset
410 cx_hash_map_put,
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diff changeset
411 cx_hash_map_get,
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diff changeset
412 cx_hash_map_remove,
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diff changeset
413 cx_hash_map_iterator,
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diff changeset
414 cx_hash_map_iterator_keys,
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diff changeset
415 cx_hash_map_iterator_values,
630
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diff changeset
416 cx_hash_map_mut_iterator,
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diff changeset
417 cx_hash_map_mut_iterator_keys,
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diff changeset
418 cx_hash_map_mut_iterator_values,
550
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419 };
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420
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diff changeset
421 CxMap *cxHashMapCreate(
691
65baf7f45ac8 bring a generic interface to CxMap
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diff changeset
422 CxAllocator const *allocator,
658
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423 size_t itemsize,
550
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diff changeset
424 size_t buckets
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diff changeset
425 ) {
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diff changeset
426 if (buckets == 0) {
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diff changeset
427 // implementation defined default
89b2a83728b1 #189 basic map implementation
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diff changeset
428 buckets = 16;
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diff changeset
429 }
89b2a83728b1 #189 basic map implementation
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diff changeset
430
688
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diff changeset
431 struct cx_hash_map_s *map = cxCalloc(allocator, 1,
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diff changeset
432 sizeof(struct cx_hash_map_s));
550
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433 if (map == NULL) return NULL;
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diff changeset
434
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diff changeset
435 // initialize hash map members
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diff changeset
436 map->bucket_count = buckets;
688
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diff changeset
437 map->buckets = cxCalloc(allocator, buckets,
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438 sizeof(struct cx_hash_map_element_s *));
550
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439 if (map->buckets == NULL) {
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440 cxFree(allocator, map);
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441 return NULL;
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442 }
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443
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444 // initialize base members
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diff changeset
445 map->base.cl = &cx_hash_map_class;
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diff changeset
446 map->base.allocator = allocator;
668
d7129285ac32 add CX_STORE_POINTERS special item size for maps
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diff changeset
447
d7129285ac32 add CX_STORE_POINTERS special item size for maps
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diff changeset
448 if (itemsize > 0) {
685
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diff changeset
449 map->base.store_pointer = false;
677
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diff changeset
450 map->base.item_size = itemsize;
668
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diff changeset
451 } else {
685
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diff changeset
452 map->base.store_pointer = true;
677
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453 map->base.item_size = sizeof(void *);
668
d7129285ac32 add CX_STORE_POINTERS special item size for maps
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454 }
550
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455
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456 return (CxMap *) map;
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457 }
562
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458
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459 int cxMapRehash(CxMap *map) {
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460 struct cx_hash_map_s *hash_map = (struct cx_hash_map_s *) map;
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461 if (map->size > ((hash_map->bucket_count * 3) >> 2)) {
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462
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463 size_t new_bucket_count = (map->size * 5) >> 1;
688
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Mike Becker <universe@uap-core.de>
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464 struct cx_hash_map_element_s **new_buckets = cxCalloc(
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465 map->allocator,
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466 new_bucket_count, sizeof(struct cx_hash_map_element_s *)
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467 );
562
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468
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469 if (new_buckets == NULL) {
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470 return 1;
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471 }
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472
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473 // iterate through the elements and assign them to their new slots
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474 cx_for_n(slot, hash_map->bucket_count) {
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475 struct cx_hash_map_element_s *elm = hash_map->buckets[slot];
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476 while (elm != NULL) {
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477 struct cx_hash_map_element_s *next = elm->next;
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478 size_t new_slot = elm->key.hash % new_bucket_count;
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479
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480 // find position where to insert
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481 struct cx_hash_map_element_s *bucket_next = new_buckets[new_slot];
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482 struct cx_hash_map_element_s *bucket_prev = NULL;
688
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483 while (bucket_next != NULL &&
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484 bucket_next->key.hash < elm->key.hash) {
562
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485 bucket_prev = bucket_next;
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486 bucket_next = bucket_next->next;
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487 }
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488
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489 // insert
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490 if (bucket_prev == NULL) {
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parents: 560
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491 elm->next = new_buckets[new_slot];
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492 new_buckets[new_slot] = elm;
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493 } else {
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494 bucket_prev->next = elm;
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495 elm->next = bucket_next;
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496 }
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497
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498 // advance
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499 elm = next;
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500 }
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parents: 560
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501 }
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502
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503 // assign result to the map
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parents: 560
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504 hash_map->bucket_count = new_bucket_count;
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parents: 560
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505 cxFree(map->allocator, hash_map->buckets);
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506 hash_map->buckets = new_buckets;
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507 }
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508 return 0;
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parents: 560
diff changeset
509 }

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