Coverage Report

Created: 2026-07-25 07:03

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libjxl/lib/jxl/huffman_table.cc
Line
Count
Source
1
// Copyright (c) the JPEG XL Project Authors. All rights reserved.
2
//
3
// Use of this source code is governed by a BSD-style
4
// license that can be found in the LICENSE file.
5
6
#include "lib/jxl/huffman_table.h"
7
8
#include <cstdint>
9
#include <cstring> /* for memcpy */
10
#include <vector>
11
12
#include "lib/jxl/ans_params.h"
13
14
namespace jxl {
15
16
/* Returns reverse(reverse(key, len) + 1, len), where reverse(key, len) is the
17
   bit-wise reversal of the len least significant bits of key. */
18
84.2k
static inline int GetNextKey(int key, int len) {
19
84.2k
  int step = 1u << (len - 1);
20
157k
  while (key & step) {
21
73.7k
    step >>= 1;
22
73.7k
  }
23
84.2k
  return (key & (step - 1)) + step;
24
84.2k
}
25
26
/* Stores code in table[0], table[step], table[2*step], ..., table[end] */
27
/* Assumes that end is an integer multiple of step */
28
static inline void ReplicateValue(HuffmanCode* table, int step, int end,
29
84.2k
                                  HuffmanCode code) {
30
406k
  do {
31
406k
    end -= step;
32
406k
    table[end] = code;
33
406k
  } while (end > 0);
34
84.2k
}
35
36
/* Returns the table width of the next 2nd level table. count is the histogram
37
   of bit lengths for the remaining symbols, len is the code length of the next
38
   processed symbol */
39
static inline size_t NextTableBitSize(const uint16_t* const count, size_t len,
40
865
                                      int root_bits) {
41
865
  size_t left = 1u << (len - root_bits);
42
1.15k
  while (len < PREFIX_MAX_BITS) {
43
1.12k
    if (left <= count[len]) break;
44
285
    left -= count[len];
45
285
    ++len;
46
285
    left <<= 1;
47
285
  }
48
865
  return len - root_bits;
49
865
}
50
51
uint32_t BuildHuffmanTable(HuffmanCode* root_table, int root_bits,
52
                           const uint8_t* const code_lengths,
53
10.4k
                           size_t code_lengths_size, uint16_t* count) {
54
10.4k
  HuffmanCode code;   /* current table entry */
55
10.4k
  HuffmanCode* table; /* next available space in table */
56
10.4k
  size_t len;         /* current code length */
57
10.4k
  size_t symbol;      /* symbol index in original or sorted table */
58
10.4k
  int key;            /* reversed prefix code */
59
10.4k
  int step;           /* step size to replicate values in current table */
60
10.4k
  int low;            /* low bits for current root entry */
61
10.4k
  int mask;           /* mask for low bits */
62
10.4k
  size_t table_bits;  /* key length of current table */
63
10.4k
  int table_size;     /* size of current table */
64
10.4k
  int total_size;     /* sum of root table size and 2nd level table sizes */
65
  /* offsets in sorted table for each length */
66
10.4k
  uint16_t offset[PREFIX_MAX_BITS + 1];
67
10.4k
  size_t max_length = 1;
68
69
10.4k
  if (code_lengths_size > 1u << PREFIX_MAX_BITS) return 0;
70
71
  /* symbols sorted by code length */
72
10.4k
  std::vector<uint16_t> sorted_storage(code_lengths_size);
73
10.4k
  uint16_t* sorted = sorted_storage.data();
74
75
  /* generate offsets into sorted symbol table by code length */
76
10.4k
  {
77
10.4k
    uint16_t sum = 0;
78
166k
    for (len = 1; len <= PREFIX_MAX_BITS; len++) {
79
156k
      offset[len] = sum;
80
156k
      if (count[len]) {
81
37.1k
        sum = static_cast<uint16_t>(sum + count[len]);
82
37.1k
        max_length = len;
83
37.1k
      }
84
156k
    }
85
10.4k
  }
86
87
  /* sort symbols by length, by symbol order within each length */
88
1.35M
  for (symbol = 0; symbol < code_lengths_size; symbol++) {
89
1.34M
    if (code_lengths[symbol] != 0) {
90
84.2k
      sorted[offset[code_lengths[symbol]]++] = symbol;
91
84.2k
    }
92
1.34M
  }
93
94
10.4k
  table = root_table;
95
10.4k
  table_bits = root_bits;
96
10.4k
  table_size = 1u << table_bits;
97
10.4k
  total_size = table_size;
98
99
  /* special case code with only one value */
100
10.4k
  if (offset[PREFIX_MAX_BITS] == 1) {
101
0
    code.bits = 0;
102
0
    code.value = static_cast<uint16_t>(sorted[0]);
103
0
    for (key = 0; key < total_size; ++key) {
104
0
      table[key] = code;
105
0
    }
106
0
    return total_size;
107
0
  }
108
109
  /* fill in root table */
110
  /* let's reduce the table size to a smaller size if possible, and */
111
  /* create the repetitions by memcpy if possible in the coming loop */
112
10.4k
  if (table_bits > max_length) {
113
9.46k
    table_bits = max_length;
114
9.46k
    table_size = 1u << table_bits;
115
9.46k
  }
116
10.4k
  key = 0;
117
10.4k
  symbol = 0;
118
10.4k
  code.bits = 1;
119
10.4k
  step = 2;
120
43.2k
  do {
121
123k
    for (; count[code.bits] != 0; --count[code.bits]) {
122
80.0k
      code.value = static_cast<uint16_t>(sorted[symbol++]);
123
80.0k
      ReplicateValue(&table[key], step, table_size, code);
124
80.0k
      key = GetNextKey(key, code.bits);
125
80.0k
    }
126
43.2k
    step <<= 1;
127
43.2k
  } while (++code.bits <= table_bits);
128
129
  /* if root_bits != table_bits we only created one fraction of the */
130
  /* table, and we need to replicate it now. */
131
34.9k
  while (total_size != table_size) {
132
24.5k
    memcpy(&table[table_size], &table[0], table_size * sizeof(table[0]));
133
24.5k
    table_size <<= 1;
134
24.5k
  }
135
136
  /* fill in 2nd level tables and add pointers to root table */
137
10.4k
  mask = total_size - 1;
138
10.4k
  low = -1;
139
10.8k
  for (len = root_bits + 1, step = 2; len <= max_length; ++len, step <<= 1) {
140
4.60k
    for (; count[len] != 0; --count[len]) {
141
4.14k
      if ((key & mask) != low) {
142
865
        table += table_size;
143
865
        table_bits = NextTableBitSize(count, len, root_bits);
144
865
        table_size = 1u << table_bits;
145
865
        total_size += table_size;
146
865
        low = key & mask;
147
865
        root_table[low].bits = static_cast<uint8_t>(table_bits + root_bits);
148
865
        root_table[low].value =
149
865
            static_cast<uint16_t>((table - root_table) - low);
150
865
      }
151
4.14k
      code.bits = static_cast<uint8_t>(len - root_bits);
152
4.14k
      code.value = static_cast<uint16_t>(sorted[symbol++]);
153
4.14k
      ReplicateValue(&table[key >> root_bits], step, table_size, code);
154
4.14k
      key = GetNextKey(key, len);
155
4.14k
    }
156
460
  }
157
158
10.4k
  return total_size;
159
10.4k
}
160
161
}  // namespace jxl