Coverage Report

Created: 2025-11-11 06:39

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/htslib/cram/cram_stats.c
Line
Count
Source
1
/*
2
Copyright (c) 2012-2014, 2016, 2018, 2020 Genome Research Ltd.
3
Author: James Bonfield <jkb@sanger.ac.uk>
4
5
Redistribution and use in source and binary forms, with or without
6
modification, are permitted provided that the following conditions are met:
7
8
   1. Redistributions of source code must retain the above copyright notice,
9
this list of conditions and the following disclaimer.
10
11
   2. Redistributions in binary form must reproduce the above copyright notice,
12
this list of conditions and the following disclaimer in the documentation
13
and/or other materials provided with the distribution.
14
15
   3. Neither the names Genome Research Ltd and Wellcome Trust Sanger
16
Institute nor the names of its contributors may be used to endorse or promote
17
products derived from this software without specific prior written permission.
18
19
THIS SOFTWARE IS PROVIDED BY GENOME RESEARCH LTD AND CONTRIBUTORS "AS IS" AND
20
ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED
21
WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE
22
DISCLAIMED. IN NO EVENT SHALL GENOME RESEARCH LTD OR CONTRIBUTORS BE LIABLE
23
FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
24
DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR
25
SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER
26
CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
27
OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE
28
OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
29
*/
30
31
#define HTS_BUILDING_LIBRARY // Enables HTSLIB_EXPORT, see htslib/hts_defs.h
32
#include <config.h>
33
34
#include <stdio.h>
35
#include <errno.h>
36
#include <assert.h>
37
#include <stdlib.h>
38
#include <string.h>
39
#include <zlib.h>
40
#include <sys/types.h>
41
#include <sys/stat.h>
42
#include <math.h>
43
#include <inttypes.h>
44
45
#include "cram.h"
46
#include "os.h"
47
48
1.34M
cram_stats *cram_stats_create(void) {
49
1.34M
    return calloc(1, sizeof(cram_stats));
50
1.34M
}
51
52
412M
int cram_stats_add(cram_stats *st, int64_t val) {
53
412M
    st->nsamp++;
54
55
    //assert(val >= 0);
56
57
412M
    if (val < MAX_STAT_VAL && val >= 0) {
58
389M
        st->freqs[val]++;
59
389M
    } else {
60
22.3M
        khint_t k;
61
22.3M
        int r;
62
63
22.3M
        if (!st->h) {
64
104k
            st->h = kh_init(m_i2i);
65
104k
            if (!st->h)
66
0
                return -1;
67
104k
        }
68
69
22.3M
        k = kh_put(m_i2i, st->h, val, &r);
70
22.3M
        if (r == 0)
71
22.2M
            kh_val(st->h, k)++;
72
114k
        else if (r != -1)
73
114k
            kh_val(st->h, k) = 1;
74
0
        else
75
0
            return -1;
76
22.3M
    }
77
412M
    return 0;
78
412M
}
79
80
45
void cram_stats_del(cram_stats *st, int64_t val) {
81
45
    st->nsamp--;
82
83
    //assert(val >= 0);
84
85
45
    if (val < MAX_STAT_VAL && val >= 0) {
86
32
        st->freqs[val]--;
87
32
        assert(st->freqs[val] >= 0);
88
32
    } else if (st->h) {
89
13
        khint_t k = kh_get(m_i2i, st->h, val);
90
91
13
        if (k != kh_end(st->h)) {
92
13
            if (--kh_val(st->h, k) == 0)
93
8
                kh_del(m_i2i, st->h, k);
94
13
        } else {
95
0
            hts_log_warning("Failed to remove val %"PRId64" from cram_stats", val);
96
0
            st->nsamp++;
97
0
        }
98
13
    } else {
99
0
        hts_log_warning("Failed to remove val %"PRId64" from cram_stats", val);
100
0
        st->nsamp++;
101
0
    }
102
45
}
103
104
#if DEBUG_CRAM_STATS
105
void cram_stats_dump(cram_stats *st) {
106
    int i;
107
    fprintf(stderr, "cram_stats:\n");
108
    for (i = 0; i < MAX_STAT_VAL; i++) {
109
        if (!st->freqs[i])
110
            continue;
111
        fprintf(stderr, "\t%d\t%d\n", i, st->freqs[i]);
112
    }
113
    if (st->h) {
114
        khint_t k;
115
        for (k = kh_begin(st->h); k != kh_end(st->h); k++) {
116
            if (!kh_exist(st->h, k))
117
                continue;
118
119
            fprintf(stderr, "\t%d\t%d\n", kh_key(st->h, k), kh_val(st->h, k));
120
        }
121
    }
122
}
123
#endif
124
125
/*
126
 * Computes entropy from integer frequencies for various encoding methods and
127
 * picks the best encoding.
128
 *
129
 * FIXME: we could reuse some of the code here for the actual encoding
130
 * parameters too. Eg the best 'k' for SUBEXP or the code lengths for huffman.
131
 *
132
 * Returns the best codec to use.
133
 */
134
936k
enum cram_encoding cram_stats_encoding(cram_fd *fd, cram_stats *st) {
135
936k
    int nvals, i, max_val = 0, min_val = INT_MAX;
136
936k
    int *vals = NULL, *freqs = NULL, vals_alloc = 0;
137
936k
    int ntot HTS_UNUSED = 0;
138
139
#if DEBUG_CRAM_STATS
140
    cram_stats_dump(st);
141
#endif
142
143
    /* Count number of unique symbols */
144
959M
    for (nvals = i = 0; i < MAX_STAT_VAL; i++) {
145
958M
        if (!st->freqs[i])
146
958M
            continue;
147
565k
        if (nvals >= vals_alloc) {
148
505k
            vals_alloc = vals_alloc ? vals_alloc*2 : 1024;
149
505k
            int *vals_tmp  = realloc(vals,  vals_alloc * sizeof(int));
150
505k
            int *freqs_tmp = realloc(freqs, vals_alloc * sizeof(int));
151
505k
            if (!vals_tmp || !freqs_tmp) {
152
0
                free(vals_tmp  ? vals_tmp  : vals);
153
0
                free(freqs_tmp ? freqs_tmp : freqs);
154
0
                return E_HUFFMAN; // Cannot do much else atm
155
0
            }
156
505k
            vals = vals_tmp;
157
505k
            freqs = freqs_tmp;
158
505k
        }
159
565k
        vals[nvals] = i;
160
565k
        freqs[nvals] = st->freqs[i];
161
565k
        ntot += freqs[nvals];
162
565k
        if (max_val < i) max_val = i;
163
565k
        if (min_val > i) min_val = i;
164
565k
        nvals++;
165
565k
    }
166
936k
    if (st->h) {
167
123k
        khint_t k;
168
123k
        int i;
169
170
630k
        for (k = kh_begin(st->h); k != kh_end(st->h); k++) {
171
506k
            if (!kh_exist(st->h, k))
172
373k
                continue;
173
174
133k
            if (nvals >= vals_alloc) {
175
117k
                vals_alloc = vals_alloc ? vals_alloc*2 : 1024;
176
117k
                int *vals_tmp  = realloc(vals,  vals_alloc * sizeof(int));
177
117k
                int *freqs_tmp = realloc(freqs, vals_alloc * sizeof(int));
178
117k
                if (!vals_tmp || !freqs_tmp) {
179
0
                    free(vals_tmp  ? vals_tmp  : vals);
180
0
                    free(freqs_tmp ? freqs_tmp : freqs);
181
0
                    return E_HUFFMAN; // Cannot do much else atm
182
0
                }
183
117k
                vals = vals_tmp;
184
117k
                freqs = freqs_tmp;
185
117k
            }
186
133k
            i = kh_key(st->h, k);
187
133k
            vals[nvals]=i;
188
133k
            freqs[nvals] = kh_val(st->h, k);
189
133k
            ntot += freqs[nvals];
190
133k
            if (max_val < i) max_val = i;
191
133k
            if (min_val > i) min_val = i;
192
133k
            nvals++;
193
133k
        }
194
123k
    }
195
196
936k
    st->nvals = nvals;
197
936k
    st->min_val = min_val;
198
936k
    st->max_val = max_val;
199
936k
    assert(ntot == st->nsamp);
200
201
936k
    free(vals);
202
936k
    free(freqs);
203
204
    /*
205
     * Simple policy that everything is external unless it can be
206
     * encoded using zero bits as a unary item huffman table.
207
     */
208
936k
    if (CRAM_MAJOR_VERS(fd->version) >= 4) {
209
        // Note, we're assuming integer data here as we don't have the
210
        // type passed in.  Cram_encoder_init does know the type and
211
        // will convert to E_CONST_BYTE or E_EXTERNAL as appropriate.
212
0
        if (nvals == 1)
213
0
            return E_CONST_INT;
214
0
        else if (nvals == 0 || min_val < 0)
215
0
            return E_VARINT_SIGNED;
216
0
        else
217
0
            return E_VARINT_UNSIGNED;
218
936k
    } else {
219
936k
        return nvals <= 1 ? E_HUFFMAN : E_EXTERNAL;
220
936k
    }
221
936k
}
222
223
1.34M
void cram_stats_free(cram_stats *st) {
224
1.34M
    if (st->h)
225
104k
        kh_destroy(m_i2i, st->h);
226
1.34M
    free(st);
227
1.34M
}