Coverage Report

Created: 2025-08-28 06:38

/src/zlib/inftrees.c
Line
Count
Source (jump to first uncovered line)
1
/* inftrees.c -- generate Huffman trees for efficient decoding
2
 * Copyright (C) 1995-2024 Mark Adler
3
 * For conditions of distribution and use, see copyright notice in zlib.h
4
 */
5
6
#include "zutil.h"
7
#include "inftrees.h"
8
9
11.6M
#define MAXBITS 15
10
11
const char inflate_copyright[] =
12
   " inflate 1.3.1.1 Copyright 1995-2024 Mark Adler ";
13
/*
14
  If you use the zlib library in a product, an acknowledgment is welcome
15
  in the documentation of your product. If for some reason you cannot
16
  include such an acknowledgment, I would appreciate that you keep this
17
  copyright string in the executable of your product.
18
 */
19
20
/*
21
   Build a set of tables to decode the provided canonical Huffman code.
22
   The code lengths are lens[0..codes-1].  The result starts at *table,
23
   whose indices are 0..2^bits-1.  work is a writable array of at least
24
   lens shorts, which is used as a work area.  type is the type of code
25
   to be generated, CODES, LENS, or DISTS.  On return, zero is success,
26
   -1 is an invalid code, and +1 means that ENOUGH isn't enough.  table
27
   on return points to the next available entry's address.  bits is the
28
   requested root table index bits, and on return it is the actual root
29
   table index bits.  It will differ if the request is greater than the
30
   longest code or if it is less than the shortest code.
31
 */
32
int ZLIB_INTERNAL inflate_table(codetype type, unsigned short FAR *lens,
33
                                unsigned codes, code FAR * FAR *table,
34
238k
                                unsigned FAR *bits, unsigned short FAR *work) {
35
238k
    unsigned len;               /* a code's length in bits */
36
238k
    unsigned sym;               /* index of code symbols */
37
238k
    unsigned min, max;          /* minimum and maximum code lengths */
38
238k
    unsigned root;              /* number of index bits for root table */
39
238k
    unsigned curr;              /* number of index bits for current table */
40
238k
    unsigned drop;              /* code bits to drop for sub-table */
41
238k
    int left;                   /* number of prefix codes available */
42
238k
    unsigned used;              /* code entries in table used */
43
238k
    unsigned huff;              /* Huffman code */
44
238k
    unsigned incr;              /* for incrementing code, index */
45
238k
    unsigned fill;              /* index for replicating entries */
46
238k
    unsigned low;               /* low bits for current root entry */
47
238k
    unsigned mask;              /* mask for low root bits */
48
238k
    code here;                  /* table entry for duplication */
49
238k
    code FAR *next;             /* next available space in table */
50
238k
    const unsigned short FAR *base;     /* base value table to use */
51
238k
    const unsigned short FAR *extra;    /* extra bits table to use */
52
238k
    unsigned match;             /* use base and extra for symbol >= match */
53
238k
    unsigned short count[MAXBITS+1];    /* number of codes of each length */
54
238k
    unsigned short offs[MAXBITS+1];     /* offsets in table for each length */
55
238k
    static const unsigned short lbase[31] = { /* Length codes 257..285 base */
56
238k
        3, 4, 5, 6, 7, 8, 9, 10, 11, 13, 15, 17, 19, 23, 27, 31,
57
238k
        35, 43, 51, 59, 67, 83, 99, 115, 131, 163, 195, 227, 258, 0, 0};
58
238k
    static const unsigned short lext[31] = { /* Length codes 257..285 extra */
59
238k
        16, 16, 16, 16, 16, 16, 16, 16, 17, 17, 17, 17, 18, 18, 18, 18,
60
238k
        19, 19, 19, 19, 20, 20, 20, 20, 21, 21, 21, 21, 16, 73, 200};
61
238k
    static const unsigned short dbase[32] = { /* Distance codes 0..29 base */
62
238k
        1, 2, 3, 4, 5, 7, 9, 13, 17, 25, 33, 49, 65, 97, 129, 193,
63
238k
        257, 385, 513, 769, 1025, 1537, 2049, 3073, 4097, 6145,
64
238k
        8193, 12289, 16385, 24577, 0, 0};
65
238k
    static const unsigned short dext[32] = { /* Distance codes 0..29 extra */
66
238k
        16, 16, 16, 16, 17, 17, 18, 18, 19, 19, 20, 20, 21, 21, 22, 22,
67
238k
        23, 23, 24, 24, 25, 25, 26, 26, 27, 27,
68
238k
        28, 28, 29, 29, 64, 64};
69
70
    /*
71
       Process a set of code lengths to create a canonical Huffman code.  The
72
       code lengths are lens[0..codes-1].  Each length corresponds to the
73
       symbols 0..codes-1.  The Huffman code is generated by first sorting the
74
       symbols by length from short to long, and retaining the symbol order
75
       for codes with equal lengths.  Then the code starts with all zero bits
76
       for the first code of the shortest length, and the codes are integer
77
       increments for the same length, and zeros are appended as the length
78
       increases.  For the deflate format, these bits are stored backwards
79
       from their more natural integer increment ordering, and so when the
80
       decoding tables are built in the large loop below, the integer codes
81
       are incremented backwards.
82
83
       This routine assumes, but does not check, that all of the entries in
84
       lens[] are in the range 0..MAXBITS.  The caller must assure this.
85
       1..MAXBITS is interpreted as that code length.  zero means that that
86
       symbol does not occur in this code.
87
88
       The codes are sorted by computing a count of codes for each length,
89
       creating from that a table of starting indices for each length in the
90
       sorted table, and then entering the symbols in order in the sorted
91
       table.  The sorted table is work[], with that space being provided by
92
       the caller.
93
94
       The length counts are used for other purposes as well, i.e. finding
95
       the minimum and maximum length codes, determining if there are any
96
       codes at all, checking for a valid set of lengths, and looking ahead
97
       at length counts to determine sub-table sizes when building the
98
       decoding tables.
99
     */
100
101
    /* accumulate lengths for codes (assumes lens[] all in 0..MAXBITS) */
102
4.06M
    for (len = 0; len <= MAXBITS; len++)
103
3.82M
        count[len] = 0;
104
25.1M
    for (sym = 0; sym < codes; sym++)
105
24.8M
        count[lens[sym]]++;
106
107
    /* bound code lengths, force root to be within code lengths */
108
238k
    root = *bits;
109
2.31M
    for (max = MAXBITS; max >= 1; max--)
110
2.31M
        if (count[max] != 0) break;
111
238k
    if (root > max) root = max;
112
238k
    if (max == 0) {                     /* no symbols to code at all */
113
320
        here.op = (unsigned char)64;    /* invalid code marker */
114
320
        here.bits = (unsigned char)1;
115
320
        here.val = (unsigned short)0;
116
320
        *(*table)++ = here;             /* make a table to force an error */
117
320
        *(*table)++ = here;
118
320
        *bits = 1;
119
320
        return 0;     /* no symbols, but wait for decoding to report error */
120
320
    }
121
540k
    for (min = 1; min < max; min++)
122
533k
        if (count[min] != 0) break;
123
238k
    if (root < min) root = min;
124
125
    /* check for an over-subscribed or incomplete set of lengths */
126
238k
    left = 1;
127
3.79M
    for (len = 1; len <= MAXBITS; len++) {
128
3.55M
        left <<= 1;
129
3.55M
        left -= count[len];
130
3.55M
        if (left < 0) return -1;        /* over-subscribed */
131
3.55M
    }
132
236k
    if (left > 0 && (type == CODES || max != 1))
133
1.66k
        return -1;                      /* incomplete set */
134
135
    /* generate offsets into symbol table for each length for sorting */
136
234k
    offs[1] = 0;
137
3.52M
    for (len = 1; len < MAXBITS; len++)
138
3.28M
        offs[len + 1] = offs[len] + count[len];
139
140
    /* sort symbols by length, by symbol order within each length */
141
24.7M
    for (sym = 0; sym < codes; sym++)
142
24.5M
        if (lens[sym] != 0) work[offs[lens[sym]]++] = (unsigned short)sym;
143
144
    /*
145
       Create and fill in decoding tables.  In this loop, the table being
146
       filled is at next and has curr index bits.  The code being used is huff
147
       with length len.  That code is converted to an index by dropping drop
148
       bits off of the bottom.  For codes where len is less than drop + curr,
149
       those top drop + curr - len bits are incremented through all values to
150
       fill the table with replicated entries.
151
152
       root is the number of index bits for the root table.  When len exceeds
153
       root, sub-tables are created pointed to by the root entry with an index
154
       of the low root bits of huff.  This is saved in low to check for when a
155
       new sub-table should be started.  drop is zero when the root table is
156
       being filled, and drop is root when sub-tables are being filled.
157
158
       When a new sub-table is needed, it is necessary to look ahead in the
159
       code lengths to determine what size sub-table is needed.  The length
160
       counts are used for this, and so count[] is decremented as codes are
161
       entered in the tables.
162
163
       used keeps track of how many table entries have been allocated from the
164
       provided *table space.  It is checked for LENS and DIST tables against
165
       the constants ENOUGH_LENS and ENOUGH_DISTS to guard against changes in
166
       the initial root table size constants.  See the comments in inftrees.h
167
       for more information.
168
169
       sym increments through all symbols, and the loop terminates when
170
       all codes of length max, i.e. all codes, have been processed.  This
171
       routine permits incomplete codes, so another loop after this one fills
172
       in the rest of the decoding tables with invalid code markers.
173
     */
174
175
    /* set up for code type */
176
234k
    switch (type) {
177
81.3k
    case CODES:
178
81.3k
        base = extra = work;    /* dummy value--not used */
179
81.3k
        match = 20;
180
81.3k
        break;
181
77.0k
    case LENS:
182
77.0k
        base = lbase;
183
77.0k
        extra = lext;
184
77.0k
        match = 257;
185
77.0k
        break;
186
76.4k
    default:    /* DISTS */
187
76.4k
        base = dbase;
188
76.4k
        extra = dext;
189
76.4k
        match = 0;
190
234k
    }
191
192
    /* initialize state for loop */
193
234k
    huff = 0;                   /* starting code */
194
234k
    sym = 0;                    /* starting code symbol */
195
234k
    len = min;                  /* starting code length */
196
234k
    next = *table;              /* current table to fill in */
197
234k
    curr = root;                /* current table index bits */
198
234k
    drop = 0;                   /* current bits to drop from code for index */
199
234k
    low = (unsigned)(-1);       /* trigger new sub-table when len > root */
200
234k
    used = 1U << root;          /* use root table entries */
201
234k
    mask = used - 1;            /* mask for comparing low */
202
203
    /* check available table space */
204
234k
    if ((type == LENS && used > ENOUGH_LENS) ||
205
234k
        (type == DISTS && used > ENOUGH_DISTS))
206
0
        return 1;
207
208
    /* process all codes and make table entries */
209
7.60M
    for (;;) {
210
        /* create table entry */
211
7.60M
        here.bits = (unsigned char)(len - drop);
212
7.60M
        if (work[sym] + 1U < match) {
213
5.70M
            here.op = (unsigned char)0;
214
5.70M
            here.val = work[sym];
215
5.70M
        }
216
1.89M
        else if (work[sym] >= match) {
217
1.82M
            here.op = (unsigned char)(extra[work[sym] - match]);
218
1.82M
            here.val = base[work[sym] - match];
219
1.82M
        }
220
77.0k
        else {
221
77.0k
            here.op = (unsigned char)(32 + 64);         /* end of block */
222
77.0k
            here.val = 0;
223
77.0k
        }
224
225
        /* replicate for those indices with low len bits equal to huff */
226
7.60M
        incr = 1U << (len - drop);
227
7.60M
        fill = 1U << curr;
228
7.60M
        min = fill;                 /* save offset to next table */
229
30.3M
        do {
230
30.3M
            fill -= incr;
231
30.3M
            next[(huff >> drop) + fill] = here;
232
30.3M
        } while (fill != 0);
233
234
        /* backwards increment the len-bit code huff */
235
7.60M
        incr = 1U << (len - 1);
236
14.9M
        while (huff & incr)
237
7.37M
            incr >>= 1;
238
7.60M
        if (incr != 0) {
239
7.37M
            huff &= incr - 1;
240
7.37M
            huff += incr;
241
7.37M
        }
242
234k
        else
243
234k
            huff = 0;
244
245
        /* go to next symbol, update count, len */
246
7.60M
        sym++;
247
7.60M
        if (--(count[len]) == 0) {
248
1.11M
            if (len == max) break;
249
877k
            len = lens[work[sym]];
250
877k
        }
251
252
        /* create new sub-table if needed */
253
7.37M
        if (len > root && (huff & mask) != low) {
254
            /* if first time, transition to sub-tables */
255
451k
            if (drop == 0)
256
57.5k
                drop = root;
257
258
            /* increment past last table */
259
451k
            next += min;            /* here min is 1 << curr */
260
261
            /* determine length of next table */
262
451k
            curr = len - drop;
263
451k
            left = (int)(1 << curr);
264
499k
            while (curr + drop < max) {
265
229k
                left -= count[curr + drop];
266
229k
                if (left <= 0) break;
267
47.3k
                curr++;
268
47.3k
                left <<= 1;
269
47.3k
            }
270
271
            /* check for enough space */
272
451k
            used += 1U << curr;
273
451k
            if ((type == LENS && used > ENOUGH_LENS) ||
274
451k
                (type == DISTS && used > ENOUGH_DISTS))
275
0
                return 1;
276
277
            /* point entry in root table to sub-table */
278
451k
            low = huff & mask;
279
451k
            (*table)[low].op = (unsigned char)curr;
280
451k
            (*table)[low].bits = (unsigned char)root;
281
451k
            (*table)[low].val = (unsigned short)(next - *table);
282
451k
        }
283
7.37M
    }
284
285
    /* fill in remaining table entry if code is incomplete (guaranteed to have
286
       at most one remaining entry, since if the code is incomplete, the
287
       maximum code length that was allowed to get this far is one bit) */
288
234k
    if (huff != 0) {
289
71
        here.op = (unsigned char)64;            /* invalid code marker */
290
71
        here.bits = (unsigned char)(len - drop);
291
71
        here.val = (unsigned short)0;
292
71
        next[huff] = here;
293
71
    }
294
295
    /* set return parameters */
296
234k
    *table += used;
297
234k
    *bits = root;
298
234k
    return 0;
299
234k
}