Coverage Report

Created: 2025-07-23 06:45

/src/yara/libyara/hash.c
Line
Count
Source (jump to first uncovered line)
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/*
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Copyright (c) 2013. The YARA Authors. All Rights Reserved.
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Redistribution and use in source and binary forms, with or without modification,
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are permitted provided that the following conditions are met:
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1. Redistributions of source code must retain the above copyright notice, this
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list of conditions and the following disclaimer.
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2. Redistributions in binary form must reproduce the above copyright notice,
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this list of conditions and the following disclaimer in the documentation and/or
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other materials provided with the distribution.
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3. Neither the name of the copyright holder nor the names of its contributors
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may be used to endorse or promote products derived from this software without
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specific prior written permission.
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THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" AND
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ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
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WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
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DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR
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ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
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(INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
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LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON
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ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
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(INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS
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SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
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*/
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#include <assert.h>
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#include <string.h>
32
#include <yara/error.h>
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#include <yara/hash.h>
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#include <yara/integers.h>
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#include <yara/mem.h>
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#include <yara/utils.h>
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// Constant-time left rotate that does not invoke undefined behavior.
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// http://blog.regehr.org/archives/1063
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static uint32_t rotl32(uint32_t x, uint32_t shift)
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36
{
42
36
  assert(shift < 32);
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36
  return (x << shift) | (x >> (-shift & 31));
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36
}
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46
36
#define ROTATE_INT32(x, shift) rotl32(x, shift % 32)
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48
uint32_t byte_to_int32[] = {
49
    0xC3113E7F, 0x4C353C5F, 0x7423810B, 0x258D264E, 0xDAD39DED, 0x75D0B694,
50
    0x98CE1216, 0x93334482, 0xC5C48EA5, 0xF57E0E8B, 0x5D7F3723, 0x396B1B24,
51
    0xA8883D9F, 0xB2A74A00, 0xF8E171AE, 0x3F01FBAB, 0x5C1840CB, 0xDDD833C4,
52
    0x8D8CCA34, 0x32EF223A, 0x1A05B871, 0x9A9B6BFC, 0x50406A0C, 0xE7E1FC04,
53
    0x5E07D7F6, 0x80B83660, 0x20892A62, 0xB2C6FEA6, 0x6CEC7CAA, 0x182F764B,
54
    0x3B0353E7, 0x57FC2520, 0x4B6812D4, 0xACB654E4, 0x23C75C04, 0xB1DCD731,
55
    0xE3AF0733, 0xF2366D39, 0xC729671B, 0xFF3BE6F2, 0xABA37E34, 0x3CDAFA38,
56
    0xAAD18D03, 0xA8D35345, 0x08E9A92C, 0xF9324059, 0x42D821BE, 0x1BC152DD,
57
    0x5588811C, 0x874A1F9A, 0x6E83E9CD, 0xDA6F3AF8, 0x965D4670, 0xA7A565C0,
58
    0x68D8A9AF, 0xFC8FD8FD, 0x8FF99FF9, 0x4C9B42AE, 0x2D066A8D, 0x4D1802F7,
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    0x557032B2, 0x12BCF371, 0xDC29D5AE, 0x72EA361F, 0xE2835B0B, 0xDFC58966,
60
    0x13B0F34D, 0x3FA02BCD, 0xBF282E3D, 0x7DC877F5, 0xF4848A32, 0x861E35F5,
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    0x7FFA0D7F, 0x515F2E4E, 0x6B235D5C, 0x55F46E24, 0x35AD2C99, 0x072654A8,
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    0x05163F0F, 0x9317B11A, 0xAED1FC10, 0x989444F0, 0xDB3E1814, 0x446C0CF1,
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    0x660BF511, 0x2F227D3A, 0xFDBA0539, 0xC649E621, 0x5204D7CE, 0x5FA386D0,
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    0xE5F22005, 0x97B6C8A1, 0x4AB69EC2, 0x5C7CA70D, 0x39A48EC6, 0x7BACF378,
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    0x8D0ED3D1, 0xE39DE582, 0xC5FBE2AB, 0x37E3D2D0, 0x06F44724, 0x73144144,
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    0xBA57E905, 0xB05B4307, 0xAEED8D97, 0xA68CCAC4, 0xE30DA57E, 0xED0F194B,
67
    0x8C2B9B7A, 0x814575D5, 0x79588493, 0x81D3712A, 0x3FA892F2, 0x80F0BB94,
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    0x44EAF51A, 0x4E05F1D4, 0xFC69F858, 0x775E8D60, 0x22B20DD7, 0x170A87EA,
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    0x1077DE52, 0x3D5EC9FB, 0x0B6EB1E5, 0xF2F9CCAF, 0xA76C7DEB, 0xD8C2D873,
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    0xF438C592, 0x6239FEEC, 0x26D3D2A9, 0x30F6FADF, 0x4B2984CC, 0x6257F3DA,
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    0x0E0583E2, 0x143E5E61, 0xBB2732BF, 0x9653217A, 0x027A84EA, 0x95C9AE8B,
72
    0x89B8B82B, 0x9F286485, 0x29F622FE, 0x52A3196B, 0x8392D95F, 0x33A79167,
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    0xF5DEE92A, 0x6E397DB9, 0x11931C01, 0x8DD2CD3B, 0xF9E6003D, 0xAB955AF4,
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    0xD38725F9, 0xDCF6F8AE, 0x7667A958, 0xE67AD995, 0xB7CF979A, 0xD88EBE5B,
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    0x5BA889F0, 0x078BDD90, 0x447238F9, 0x3135F672, 0x187B95A8, 0x0B7D5751,
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    0xACD59D2A, 0x9C5D1929, 0x579E5022, 0xEA90499B, 0x59901800, 0x82237DB5,
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    0x7A375509, 0xACA9A22A, 0xEC96E649, 0x69339DB0, 0x081D0D9B, 0xD72FB8B9,
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    0xA4184653, 0xC057321D, 0xED19CAB9, 0xB48F1E3E, 0xB9DAC51E, 0xDAED2FC7,
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    0x7598CBBD, 0x208DF346, 0x044BE6EC, 0x1C63E6EB, 0xA15F64C1, 0xE024A061,
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    0x68309584, 0x0758A68D, 0xF274E9AE, 0x0ABEA0CC, 0xED4FB267, 0x63D6EC46,
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    0x9F28E026, 0xF0694A17, 0x9D6E9115, 0xC4600FAD, 0x5B121E99, 0xD6B4A13B,
82
    0xF5364B8A, 0x8514B254, 0x0182F8DD, 0xDB09F90B, 0x78C70B32, 0xD8EC3B02,
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    0x8CD7084D, 0xA4439838, 0x72F35A3D, 0x200B48A5, 0xE2351444, 0xA5552F5F,
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    0xD8C1E746, 0x0FE5EF3C, 0xB6A47063, 0x61F4E68B, 0x08FED99B, 0x7E461445,
85
    0x43CB8380, 0x28BA03C8, 0x21A7A2E2, 0x43437ED6, 0x2A9E6670, 0x89B4A106,
86
    0xC6C2F4EE, 0x9C4063CC, 0x2FA0DF6C, 0xB54DC409, 0xCF01538F, 0x616431D7,
87
    0x02CB0E4D, 0x44FFF425, 0xAAD5188E, 0x0742E9BC, 0xFFF41353, 0x130F0A15,
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    0x787BDC10, 0x4A327B72, 0x702989F7, 0x5F704798, 0x8156A1BB, 0x2BCA3E74,
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    0x1911A8C4, 0x5E1F27D3, 0x07949DC7, 0xF24C2056, 0xB4299EE6, 0x9C7045D9,
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    0xA8BF6307, 0x7454AAD2, 0x256425E5, 0xD87DEF67, 0xCFE95452, 0xE7548DF7,
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    0xA84956C7, 0xD8402C60, 0xCFBD0373, 0x6B6CDAFE};
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uint32_t yr_hash(uint32_t seed, const void* buffer, size_t len)
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8
{
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8
  const uint8_t* b = (uint8_t*) buffer;
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97
8
  uint32_t result = seed;
98
8
  size_t i;
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100
8
  if (len == 0)
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0
    return result;
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103
44
  for (i = len - 1; i > 0; i--)
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36
  {
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36
    result ^= ROTATE_INT32(byte_to_int32[*b], i);
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36
    b++;
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36
  }
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109
8
  result ^= byte_to_int32[*b];
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8
  return result;
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8
}
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////////////////////////////////////////////////////////////////////////////////
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// Return the value associated to a given key and optionally remove it from
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// the hash table. Key can be any byte sequence, namespace is a null-terminated
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// string, and remove is a boolean.
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//
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static void* _yr_hash_table_lookup(
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    YR_HASH_TABLE* table,
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    const void* key,
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    size_t key_length,
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    const char* ns,
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    int remove)
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3
{
125
3
  YR_HASH_TABLE_ENTRY* entry;
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3
  YR_HASH_TABLE_ENTRY* prev_entry;
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128
3
  void* result;
129
130
3
  uint32_t bucket_index = yr_hash(0, key, key_length);
131
132
3
  if (ns != NULL)
133
1
    bucket_index = yr_hash(bucket_index, (uint8_t*) ns, strlen(ns));
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135
3
  bucket_index = bucket_index % table->size;
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3
  prev_entry = NULL;
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3
  entry = table->buckets[bucket_index];
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139
3
  while (entry != NULL)
140
0
  {
141
0
    int key_match =
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0
        ((entry->key_length == key_length) &&
143
0
         (memcmp(entry->key, key, key_length) == 0));
144
145
0
    int ns_match =
146
0
        ((entry->ns == ns) ||
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0
         (entry->ns != NULL && ns != NULL && strcmp(entry->ns, ns) == 0));
148
149
0
    if (key_match && ns_match)
150
0
    {
151
0
      result = entry->value;
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153
0
      if (remove)
154
0
      {
155
0
        if (prev_entry == NULL)
156
0
          table->buckets[bucket_index] = entry->next;
157
0
        else
158
0
          prev_entry->next = entry->next;
159
160
0
        if (entry->ns != NULL)
161
0
          yr_free(entry->ns);
162
163
0
        yr_free(entry->key);
164
0
        yr_free(entry);
165
0
      }
166
167
0
      return result;
168
0
    }
169
170
0
    prev_entry = entry;
171
0
    entry = entry->next;
172
0
  }
173
174
3
  return NULL;
175
3
}
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YR_API int yr_hash_table_create(int size, YR_HASH_TABLE** table)
178
5
{
179
5
  YR_HASH_TABLE* new_table;
180
5
  int i;
181
182
5
  new_table = (YR_HASH_TABLE*) yr_malloc(
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5
      sizeof(YR_HASH_TABLE) + size * sizeof(YR_HASH_TABLE_ENTRY*));
184
185
5
  if (new_table == NULL)
186
0
    return ERROR_INSUFFICIENT_MEMORY;
187
188
5
  new_table->size = size;
189
190
27.0k
  for (i = 0; i < size; i++) new_table->buckets[i] = NULL;
191
192
5
  *table = new_table;
193
194
5
  return ERROR_SUCCESS;
195
5
}
196
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YR_API void yr_hash_table_clean(
198
    YR_HASH_TABLE* table,
199
    YR_HASH_TABLE_FREE_VALUE_FUNC free_value)
200
5
{
201
5
  YR_HASH_TABLE_ENTRY* entry;
202
5
  YR_HASH_TABLE_ENTRY* next_entry;
203
204
5
  int i;
205
206
5
  if (table == NULL)
207
0
    return;
208
209
27.0k
  for (i = 0; i < table->size; i++)
210
27.0k
  {
211
27.0k
    entry = table->buckets[i];
212
213
27.0k
    while (entry != NULL)
214
3
    {
215
3
      next_entry = entry->next;
216
217
3
      if (free_value != NULL)
218
1
        free_value(entry->value);
219
220
3
      if (entry->ns != NULL)
221
1
        yr_free(entry->ns);
222
223
3
      yr_free(entry->key);
224
3
      yr_free(entry);
225
226
3
      entry = next_entry;
227
3
    }
228
229
27.0k
    table->buckets[i] = NULL;
230
27.0k
  }
231
5
}
232
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YR_API void yr_hash_table_destroy(
234
    YR_HASH_TABLE* table,
235
    YR_HASH_TABLE_FREE_VALUE_FUNC free_value)
236
5
{
237
5
  yr_hash_table_clean(table, free_value);
238
5
  yr_free(table);
239
5
}
240
241
YR_API int yr_hash_table_iterate(
242
    YR_HASH_TABLE* table,
243
    const char* ns,
244
    YR_HASH_TABLE_ITERATE_FUNC iterate_func,
245
    void* data)
246
0
{
247
0
  int result;
248
0
  YR_HASH_TABLE_ENTRY* entry;
249
250
0
  if (table == NULL)
251
0
    return ERROR_INTERNAL_FATAL_ERROR;
252
253
0
  for (int i = 0; i < table->size; i++)
254
0
  {
255
0
    entry = table->buckets[i];
256
0
    while (entry != NULL)
257
0
    {
258
0
      if ((entry->ns == NULL && ns == NULL)
259
0
          || (entry->ns != NULL && ns != NULL && !strcmp(entry->ns, ns)))
260
0
      {
261
0
        result = iterate_func(
262
0
            entry->key, entry->key_length, entry->value, data);
263
264
0
        if (result != ERROR_SUCCESS)
265
0
          return result;
266
0
      }
267
0
      entry = entry->next;
268
0
    }
269
0
  }
270
0
  return ERROR_SUCCESS;
271
0
}
272
273
YR_API void* yr_hash_table_lookup_raw_key(
274
    YR_HASH_TABLE* table,
275
    const void* key,
276
    size_t key_length,
277
    const char* ns)
278
3
{
279
3
  return _yr_hash_table_lookup(table, key, key_length, ns, false);
280
3
}
281
282
YR_API void* yr_hash_table_remove_raw_key(
283
    YR_HASH_TABLE* table,
284
    const void* key,
285
    size_t key_length,
286
    const char* ns)
287
0
{
288
0
  return _yr_hash_table_lookup(table, key, key_length, ns, true);
289
0
}
290
291
YR_API int yr_hash_table_add_raw_key(
292
    YR_HASH_TABLE* table,
293
    const void* key,
294
    size_t key_length,
295
    const char* ns,
296
    void* value)
297
3
{
298
3
  YR_HASH_TABLE_ENTRY* entry;
299
3
  uint32_t bucket_index;
300
301
3
  entry = (YR_HASH_TABLE_ENTRY*) yr_malloc(sizeof(YR_HASH_TABLE_ENTRY));
302
303
3
  if (entry == NULL)
304
0
    return ERROR_INSUFFICIENT_MEMORY;
305
306
3
  entry->key = yr_malloc(key_length);
307
308
3
  if (entry->key == NULL)
309
0
  {
310
0
    yr_free(entry);
311
0
    return ERROR_INSUFFICIENT_MEMORY;
312
0
  }
313
314
3
  if (ns != NULL)
315
1
  {
316
1
    entry->ns = yr_strdup(ns);
317
318
1
    if (entry->ns == NULL)
319
0
    {
320
0
      yr_free(entry->key);
321
0
      yr_free(entry);
322
323
0
      return ERROR_INSUFFICIENT_MEMORY;
324
0
    }
325
1
  }
326
2
  else
327
2
  {
328
2
    entry->ns = NULL;
329
2
  }
330
331
3
  entry->key_length = key_length;
332
3
  entry->value = value;
333
334
3
  memcpy(entry->key, key, key_length);
335
336
3
  bucket_index = yr_hash(0, key, key_length);
337
338
3
  if (ns != NULL)
339
1
    bucket_index = yr_hash(bucket_index, (uint8_t*) ns, strlen(ns));
340
341
3
  bucket_index = bucket_index % table->size;
342
343
3
  entry->next = table->buckets[bucket_index];
344
3
  table->buckets[bucket_index] = entry;
345
346
3
  return ERROR_SUCCESS;
347
3
}
348
349
YR_API void* yr_hash_table_lookup(
350
    YR_HASH_TABLE* table,
351
    const char* key,
352
    const char* ns)
353
1
{
354
1
  return yr_hash_table_lookup_raw_key(table, (void*) key, strlen(key), ns);
355
1
}
356
357
YR_API void* yr_hash_table_remove(
358
    YR_HASH_TABLE* table,
359
    const char* key,
360
    const char* ns)
361
0
{
362
0
  return yr_hash_table_remove_raw_key(table, (void*) key, strlen(key), ns);
363
0
}
364
365
YR_API int yr_hash_table_add(
366
    YR_HASH_TABLE* table,
367
    const char* key,
368
    const char* ns,
369
    void* value)
370
1
{
371
1
  return yr_hash_table_add_raw_key(table, (void*) key, strlen(key), ns, value);
372
1
}
373
374
YR_API int yr_hash_table_add_uint32(
375
    YR_HASH_TABLE* table,
376
    const char* key,
377
    const char* ns,
378
    uint32_t value)
379
0
{
380
0
  return yr_hash_table_add_uint32_raw_key(
381
0
      table, (void*) key, strlen(key), ns, value);
382
0
}
383
384
YR_API uint32_t yr_hash_table_lookup_uint32(
385
    YR_HASH_TABLE* table,
386
    const char* key,
387
    const char* ns)
388
0
{
389
0
  return yr_hash_table_lookup_uint32_raw_key(
390
0
      table, (void*) key, strlen(key), ns);
391
0
}
392
393
YR_API int yr_hash_table_add_uint32_raw_key(
394
    YR_HASH_TABLE* table,
395
    const void* key,
396
    size_t key_length,
397
    const char* ns,
398
    uint32_t value)
399
2
{
400
  // Don't allow values equal to UINT32_MAX or UINT32_MAX - 1.
401
2
  if (value >= UINT32_MAX - 1)
402
0
    return ERROR_INVALID_ARGUMENT;
403
404
  // Add +1 to the value in order to avoid putting a NULL pointer in the
405
  // hash table once the integer is casted to a pointer. This is undone
406
  // by yr_hash_table_lookup_uint32.
407
2
  return yr_hash_table_add_raw_key(
408
2
      table, key, key_length, ns, (void*) (size_t) (value + 1));
409
2
}
410
411
YR_API uint32_t yr_hash_table_lookup_uint32_raw_key(
412
    YR_HASH_TABLE* table,
413
    const void* key,
414
    size_t key_length,
415
    const char* ns)
416
2
{
417
2
  void* ptr = yr_hash_table_lookup_raw_key(table, key, key_length, ns);
418
419
2
  if (ptr == NULL)
420
2
    return UINT32_MAX;
421
422
  // Remove one from the pointe in order to get the original value.
423
  // See comment in yr_hash_table_add_uint32_raw_key.
424
0
  return ((uint32_t) (size_t) (uint8_t*) ptr) - 1;
425
2
}