Coverage Report

Created: 2026-09-04 07:16

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/curl/lib/uint-hashset.c
Line
Count
Source
1
/***************************************************************************
2
 *                                  _   _ ____  _
3
 *  Project                     ___| | | |  _ \| |
4
 *                             / __| | | | |_) | |
5
 *                            | (__| |_| |  _ <| |___
6
 *                             \___|\___/|_| \_\_____|
7
 *
8
 * Copyright (C) Daniel Stenberg, <daniel@haxx.se>, et al.
9
 *
10
 * This software is licensed as described in the file COPYING, which
11
 * you should have received as part of this distribution. The terms
12
 * are also available at https://curl.se/docs/copyright.html.
13
 *
14
 * You may opt to use, copy, modify, merge, publish, distribute and/or sell
15
 * copies of the Software, and permit persons to whom the Software is
16
 * furnished to do so, under the terms of the COPYING file.
17
 *
18
 * This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
19
 * KIND, either express or implied.
20
 *
21
 * SPDX-License-Identifier: curl
22
 *
23
 ***************************************************************************/
24
#include "curl_setup.h"
25
26
#include "uint-hashset.h"
27
#include "curlx/strdup.h"
28
29
/* random patterns for API verification */
30
#ifdef DEBUGBUILD
31
123k
#define CURL_U8_STRSET_MAGIC 0x7117e783
32
#endif
33
34
#define CURL_U8_STRSET_DEBUG      0
35
36
52.2k
#define CURL_SWAP(a, b) (((a) ^= (b)), ((b) ^= (a)), ((a) ^= (b)))
37
38
static const uint8_t u8_smask[] = {
39
  0x00U,
40
  0x01U,
41
  0x03U,
42
  0x07U,
43
  0x0FU,
44
  0x1FU,
45
  0x3FU,
46
  0x7FU,
47
  0xFFU,
48
};
49
50
5.76M
#define CURL_U8_SET_SLOT_IDX(s, i)    (uint8_t)((i) & u8_smask[(s)->slotbits])
51
509k
#define CURL_U8_SLOT_CNT(i)           ((uint16_t)u8_smask[(i)] + 1)
52
506k
#define CURL_U8_SET_SLOT_CNT(s)       CURL_U8_SLOT_CNT((s)->slotbits)
53
54
/* A hashset for tuples (id, string) using Robin Hood Hashing.
55
 * <https://www.cs.cornell.edu/courses/JavaAndDS/files/hashing_RobinHood.pdf>
56
 * The basic idea here to handle collisions by robbing "rich" entries and
57
 * giving to the "poor":
58
 * - We have an array: (id, string) are ideally placed at index "id % size".
59
 * - If slot at index is already occupied, we have a collision.
60
 * - A simple collision strategy would look at the next index, and the
61
 *   next until finding an empty slot.
62
 * - The drawback is that this may lead to many checks on lookups, as it
63
 *   will need to also look at subsequent slots until it finds the match.
64
 *   The amount of lookups is the "probe sequence length" (psl) and this
65
 *   may vary greatly between entries.
66
 * - Robin Hood Hashing balances the 'psl's of all entries more evenly:
67
 *   - psl == 0 means an entry is in exactly the right slot
68
 *   - psl == 1 means it is in the slot right after. psl == 2 is the slot
69
 *     after that, etc.
70
 *   - when inserting a new entry, track its psl. Finding a slot where
71
 *     the existing entry has a lower psl makes a swap. Put the new entry
72
 *     and its psl there, take the previous entry and its psl and find
73
 *     the next best slot for the previous entry. */
74
void Curl_u8_strset_init(struct u8_strset *set)
75
123k
{
76
#if defined(__GNUC__) && __GNUC__ >= 13
77
#pragma GCC diagnostic push
78
#pragma GCC diagnostic ignored "-Warray-bounds"
79
#endif
80
123k
  memset(set, 0, sizeof(*set));
81
#if defined(__GNUC__) && __GNUC__ >= 13
82
#pragma GCC diagnostic pop
83
#endif
84
123k
  set->data = set->sdata;
85
123k
  set->ids = set->sids;
86
123k
  set->psl = set->spsl;
87
123k
  set->slotbits = CURL_U8_STRSET_START_BITS;
88
123k
  set->count = 0;
89
123k
#ifdef DEBUGBUILD
90
123k
  set->init = CURL_U8_STRSET_MAGIC;
91
123k
#endif
92
123k
}
93
94
void Curl_u8_strset_clear(struct u8_strset *set)
95
41.2k
{
96
41.2k
  uint16_t i;
97
41.2k
  DEBUGASSERT(set->init == CURL_U8_STRSET_MAGIC);
98
373k
  for(i = 0; i < CURL_U8_SET_SLOT_CNT(set); ++i)
99
332k
    curlx_safefree(set->data[i]);
100
101
41.2k
  if(set->data != set->sdata)
102
294
    curlx_safefree(set->data);
103
41.2k
  Curl_u8_strset_init(set);
104
41.2k
}
105
106
static void u8_strset_addn(struct u8_strset *set, uint8_t id, char *val)
107
134k
{
108
134k
  uint8_t i = CURL_U8_SET_SLOT_IDX(set, id);
109
134k
  uint8_t psl = 0;
110
188k
  while(set->data[i]) {
111
53.9k
    if(psl > set->psl[i]) { /* SWAP */
112
26.1k
      char *tmpdata;
113
26.1k
      tmpdata = set->data[i];
114
26.1k
      set->data[i] = val;
115
26.1k
      val = tmpdata;
116
26.1k
      CURL_SWAP(set->psl[i], psl);
117
26.1k
      CURL_SWAP(set->ids[i], id);
118
26.1k
    }
119
53.9k
    i = CURL_U8_SET_SLOT_IDX(set, i + 1);
120
53.9k
    ++psl;
121
53.9k
  }
122
134k
  set->ids[i] = id;
123
134k
  set->data[i] = val;
124
134k
  set->psl[i] = psl;
125
134k
  ++set->count;
126
134k
}
127
128
static bool u8_strset_grow(struct u8_strset *set)
129
294
{
130
294
  uint8_t i, *prev_ids, nslotbits;
131
294
  uint16_t prev_slots;
132
294
  char **prev_data;
133
294
  size_t nslots;
134
294
  void *d;
135
136
294
  if(set->slotbits >= 8)
137
0
    return FALSE;
138
294
  nslotbits = (uint8_t)(set->slotbits + 1);
139
#if CURL_U8_STRSET_DEBUG
140
  curl_mfprintf(stderr, "u8_strset_grow from %d to %d\n",
141
                set->slotbits, nslotbits);
142
#endif
143
294
  nslots = CURL_U8_SLOT_CNT(nslotbits);
144
294
  d = curlx_calloc(1, (nslots * sizeof(char *)) + (2 * nslots));
145
294
  if(!d)
146
0
    return FALSE;
147
148
294
  prev_data = set->data;
149
294
  prev_ids = set->ids;
150
294
  prev_slots = set->slotbits;
151
#if defined(__GNUC__) && __GNUC__ >= 13
152
#pragma GCC diagnostic push
153
#pragma GCC diagnostic ignored "-Wanalyzer-allocation-size"
154
#endif
155
294
  set->data = (char **)d;
156
#if defined(__GNUC__) && __GNUC__ >= 13
157
#pragma GCC diagnostic pop
158
#endif
159
294
  set->ids = (uint8_t *)d + (nslots * sizeof(char *));
160
294
  set->psl = set->ids + nslots;
161
294
  set->slotbits = nslotbits;
162
294
  set->count = 0;
163
  /* re-add previous entries */
164
2.64k
  for(i = 0; i < CURL_U8_SLOT_CNT(prev_slots); ++i) {
165
2.35k
    if(prev_data[i])
166
2.35k
      u8_strset_addn(set, prev_ids[i], prev_data[i]);
167
2.35k
  }
168
294
  if(prev_data != set->sdata)
169
0
    curlx_free(prev_data);
170
294
  return TRUE;
171
294
}
172
173
static bool u8_strset_get_index(struct u8_strset *set,
174
                                uint8_t id, uint8_t *pindex)
175
2.82M
{
176
2.82M
  uint8_t i = CURL_U8_SET_SLOT_IDX(set, id);
177
2.82M
  uint8_t psl = 0;
178
5.58M
  while(set->data[i] && (psl <= set->psl[i])) {
179
2.98M
    if(set->ids[i] == id) {
180
221k
      *pindex = i;
181
#if CURL_U8_STRSET_DEBUG
182
      curl_mfprintf(stderr, "u8_strset_index %d=%s\n", id, set->data[i]);
183
#endif
184
221k
      return TRUE;
185
221k
    }
186
2.75M
    i = CURL_U8_SET_SLOT_IDX(set, i + 1);
187
2.75M
    ++psl;
188
2.75M
  }
189
#if CURL_U8_STRSET_DEBUG
190
  curl_mfprintf(stderr, "u8_strset_index %d not found\n", id);
191
#endif
192
2.59M
  *pindex = 0;
193
2.59M
  return FALSE;
194
2.82M
}
195
196
uint16_t Curl_u8_strset_count(struct u8_strset *set)
197
0
{
198
0
  return set->count;
199
0
}
200
201
const char *Curl_u8_strset_get(struct u8_strset *set, uint8_t id)
202
2.47M
{
203
2.47M
  uint8_t i;
204
2.47M
  DEBUGASSERT(set->init == CURL_U8_STRSET_MAGIC);
205
2.47M
  if(u8_strset_get_index(set, id, &i))
206
219k
    return set->data[i];
207
2.26M
  return NULL;
208
2.47M
}
209
210
CURLcode Curl_u8_strset_setn(struct u8_strset *set,
211
                             uint8_t id, char *str)
212
134k
{
213
134k
  uint8_t i;
214
215
134k
  DEBUGASSERT(set->init == CURL_U8_STRSET_MAGIC);
216
#if CURL_U8_STRSET_DEBUG
217
  curl_mfprintf(stderr, "u8_strset_setn %d=%s\n", id, str);
218
#endif
219
134k
  if(!str) {
220
868
    Curl_u8_strset_unset(set, id);
221
868
    return CURLE_OK;
222
868
  }
223
224
134k
  if(u8_strset_get_index(set, id, &i)) {
225
    /* `id` is in set, replace value */
226
1.72k
    curlx_free(set->data[i]);
227
1.72k
    set->data[i] = str;
228
1.72k
    return CURLE_OK;
229
1.72k
  }
230
  /* `id` not in set yet, grow if full */
231
132k
  if((set->count >= CURL_U8_SET_SLOT_CNT(set)) && !u8_strset_grow(set)) {
232
0
    curlx_free(str);
233
0
    return CURLE_OUT_OF_MEMORY;
234
0
  }
235
236
132k
  u8_strset_addn(set, id, str);
237
132k
  return CURLE_OK;
238
132k
}
239
240
CURLcode Curl_u8_strset_setx(struct u8_strset *set,
241
                             uint8_t id, const char *str, size_t slen)
242
129k
{
243
129k
  char *val;
244
245
129k
  DEBUGASSERT(set->init == CURL_U8_STRSET_MAGIC);
246
129k
  if(!str) {
247
0
    Curl_u8_strset_unset(set, id);
248
0
    return CURLE_OK;
249
0
  }
250
251
129k
  val = curlx_memdup0(str, slen);
252
129k
  if(!val)
253
0
    return CURLE_OUT_OF_MEMORY;
254
129k
  return Curl_u8_strset_setn(set, id, val);
255
129k
}
256
257
CURLcode Curl_u8_strset_set(struct u8_strset *set,
258
                            uint8_t id, const char *str)
259
0
{
260
0
  return Curl_u8_strset_setx(set, id, str, str ? strlen(str) : 0);
261
0
}
262
263
static void u8_strset_unset(struct u8_strset *set, uint8_t id, bool zero)
264
207k
{
265
207k
  uint8_t i, j;
266
267
207k
  DEBUGASSERT(set->init == CURL_U8_STRSET_MAGIC);
268
207k
  if(u8_strset_get_index(set, id, &i)) {
269
    /* `id` is in set */
270
509
    if(zero)
271
448
      curlx_strzero(set->data[i]);
272
509
    curlx_safefree(set->data[i]);
273
509
    set->ids[i] = set->psl[i] = 0;
274
509
    --set->count;
275
509
    j = CURL_U8_SET_SLOT_IDX(set, i + 1);
276
    /* shift all entries with positive psl "down" */
277
617
    while(set->data[j] && set->psl[j]) {
278
108
      set->data[i] = set->data[j];
279
108
      set->ids[i] = set->ids[j];
280
108
      set->psl[i] = (uint8_t)(set->psl[j] - 1);
281
108
      set->data[j] = NULL;
282
108
      set->ids[j] = set->psl[j] = 0;
283
108
      i = j;
284
108
      j = CURL_U8_SET_SLOT_IDX(set, i + 1);
285
108
    }
286
509
  }
287
207k
}
288
289
void Curl_u8_strset_unset(struct u8_strset *set, uint8_t id)
290
868
{
291
868
  u8_strset_unset(set, id, FALSE);
292
868
}
293
294
void Curl_u8_strset_unset0(struct u8_strset *set, uint8_t id)
295
206k
{
296
206k
  u8_strset_unset(set, id, TRUE);
297
206k
}
298
299
CURLcode Curl_u8_strset_copy(struct u8_strset *dest, struct u8_strset *src)
300
0
{
301
0
  CURLcode result = CURLE_OK;
302
0
  uint16_t i;
303
304
0
  DEBUGASSERT(src->init == CURL_U8_STRSET_MAGIC);
305
0
  Curl_u8_strset_clear(dest);
306
0
  for(i = 0; !result && (i < CURL_U8_SET_SLOT_CNT(src)); ++i) {
307
0
    if(src->data[i])
308
0
      result = Curl_u8_strset_set(dest, src->ids[i], src->data[i]);
309
0
  }
310
0
  return result;
311
0
}