Coverage Report

Created: 2026-05-16 07:02

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/htslib/header.c
Line
Count
Source
1
/*
2
Copyright (c) 2018-2020, 2023, 2025 Genome Research Ltd.
3
Authors: James Bonfield <jkb@sanger.ac.uk>, Valeriu Ohan <vo2@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 <string.h>
35
#include <assert.h>
36
#include <errno.h>
37
#include "textutils_internal.h"
38
#include "header.h"
39
#include "htslib/bgzf.h"
40
#include "htslib/hfile.h"
41
#include "htslib/kseq.h"
42
43
// Hash table for removing multiple lines from the header
44
KHASH_SET_INIT_STR(rm)
45
// Used for long refs in SAM files
46
KHASH_DECLARE(s2i, kh_cstr_t, int64_t)
47
48
typedef khash_t(rm) rmhash_t;
49
50
static int sam_hdr_link_pg(sam_hdr_t *bh);
51
52
static int sam_hrecs_vupdate(sam_hrecs_t *hrecs, sam_hrec_type_t *type, va_list ap);
53
static int sam_hrecs_update(sam_hrecs_t *hrecs, sam_hrec_type_t *type, ...);
54
55
56
744
#define MAX_ERROR_QUOTE 320 // Prevent over-long error messages
57
580
static void sam_hrecs_error(const char *msg, const char *line, size_t len, size_t lno) {
58
580
    int j;
59
60
580
    if (len > MAX_ERROR_QUOTE)
61
164
        len = MAX_ERROR_QUOTE;
62
63.4k
    for (j = 0; j < len && line[j] != '\n'; j++)
63
62.8k
        ;
64
580
    hts_log_error("%s at line %zd: \"%.*s\"", msg, lno, j, line);
65
580
}
66
67
/* ==== Static methods ==== */
68
69
39.8k
static int sam_hrecs_init_type_order(sam_hrecs_t *hrecs, char *type_list) {
70
39.8k
    if (!hrecs)
71
0
        return -1;
72
73
39.8k
    if (!type_list) {
74
39.8k
        hrecs->type_count = 5;
75
39.8k
        hrecs->type_order = calloc(hrecs->type_count, 3);
76
39.8k
        if (!hrecs->type_order)
77
0
            return -1;
78
39.8k
        memcpy(hrecs->type_order[0], "HD", 2);
79
39.8k
        memcpy(hrecs->type_order[1], "SQ", 2);
80
39.8k
        memcpy(hrecs->type_order[2], "RG", 2);
81
39.8k
        memcpy(hrecs->type_order[3], "PG", 2);
82
39.8k
        memcpy(hrecs->type_order[4], "CO", 2);
83
39.8k
    }
84
85
39.8k
    return 0;
86
39.8k
}
87
88
2.43k
static int sam_hrecs_add_ref_altnames(sam_hrecs_t *hrecs, int nref, const char *list) {
89
2.43k
    const char *token;
90
2.43k
    ks_tokaux_t aux;
91
92
2.43k
    if (!list)
93
2.39k
        return 0;
94
95
262
    for (token = kstrtok(list, ",", &aux); token; token = kstrtok(NULL, NULL, &aux)) {
96
216
        if (aux.p == token)
97
9
            continue;
98
99
207
        char *name = string_ndup(hrecs->str_pool, token, aux.p - token);
100
207
        if (!name)
101
0
            return -1;
102
207
        int r;
103
207
        khint_t k = kh_put(m_s2i, hrecs->ref_hash, name, &r);
104
207
        if (r < 0) return -1;
105
106
207
        if (r > 0)
107
153
            kh_val(hrecs->ref_hash, k) = nref;
108
54
        else if (kh_val(hrecs->ref_hash, k) != nref)
109
50
            hts_log_warning("Duplicate entry AN:\"%s\" in sam header", name);
110
207
    }
111
112
46
    return 0;
113
46
}
114
115
0
static void sam_hrecs_remove_ref_altnames(sam_hrecs_t *hrecs, int expected, const char *list) {
116
0
    const char *token, *sn;
117
0
    ks_tokaux_t aux;
118
0
    kstring_t str = KS_INITIALIZE;
119
120
0
    if (expected < 0 || expected >= hrecs->nref)
121
0
        return;
122
0
    sn = hrecs->ref[expected].name;
123
124
0
    for (token = kstrtok(list, ",", &aux); token; token = kstrtok(NULL, NULL, &aux)) {
125
0
        kputsn(token, aux.p - token, ks_clear(&str));
126
0
        khint_t k = kh_get(m_s2i, hrecs->ref_hash, str.s);
127
0
        if (k != kh_end(hrecs->ref_hash)
128
0
            && kh_val(hrecs->ref_hash, k) == expected
129
0
            && strcmp(sn, str.s) != 0)
130
0
            kh_del(m_s2i, hrecs->ref_hash, k);
131
0
    }
132
133
0
    free(str.s);
134
0
}
135
136
/* Updates the hash tables in the sam_hrecs_t structure.
137
 *
138
 * Returns 0 on success;
139
 *        -1 on failure
140
 */
141
static int sam_hrecs_update_hashes(sam_hrecs_t *hrecs,
142
                                   khint32_t type,
143
25.8k
                                   sam_hrec_type_t *h_type) {
144
    /* Add to reference hash? */
145
25.8k
    if (type == TYPEKEY("SQ")) {
146
11.3k
        sam_hrec_tag_t *tag = h_type->tag;
147
11.3k
        int nref = hrecs->nref;
148
11.3k
        const char *name = NULL;
149
11.3k
        const char *altnames = NULL;
150
11.3k
        hts_pos_t len = -1;
151
11.3k
        int r, invLN = 0;
152
11.3k
        khint_t k;
153
154
321k
        while (tag) {
155
310k
            if (tag->str[0] == 'S' && tag->str[1] == 'N') {
156
106k
                assert(tag->len >= 3);
157
106k
                name = tag->str+3;
158
204k
            } else if (tag->str[0] == 'L' && tag->str[1] == 'N') {
159
106k
                assert(tag->len >= 3);
160
106k
                hts_pos_t tmp = len;
161
106k
                len = strtoll(tag->str+3, NULL, 10);
162
106k
                if (tmp != -1 && tmp != len) {  //duplicate and different LN
163
339
                    invLN = 1;
164
339
                }
165
106k
            } else if (tag->str[0] == 'A' && tag->str[1] == 'N') {
166
78.0k
                assert(tag->len >= 3);
167
78.0k
                altnames = tag->str+3;
168
78.0k
            }
169
310k
            tag = tag->next;
170
310k
        }
171
172
11.3k
        if (!name) {
173
93
            hts_log_error("Header includes @SQ line with no SN: tag");
174
93
            return -1; // SN should be present, according to spec.
175
93
        }
176
177
11.2k
        if (len <= 0) {
178
8.74k
            hts_log_error("Header includes @SQ line \"%s\" with invalid or no LN: tag",
179
8.74k
                          name);
180
8.74k
            return -1; // LN should be present, according to spec.
181
8.74k
        }
182
183
2.49k
        if (invLN) {
184
47
            hts_log_error("Header includes @SQ line \"%s\" with multiple LN:"
185
47
            " tag with different values.", name);
186
47
            return -1; // LN should not be duplicated or be same
187
47
        }
188
189
        // Seen already?
190
2.45k
        k = kh_get(m_s2i, hrecs->ref_hash, name);
191
2.45k
        if (k < kh_end(hrecs->ref_hash)) {
192
1.23k
            nref = kh_val(hrecs->ref_hash, k);
193
1.23k
            int ref_changed_flag = 0;
194
195
            // Check for hash entry added by sam_hrecs_refs_from_targets_array()
196
1.23k
            if (hrecs->ref[nref].ty == NULL) {
197
                // Attach header line to existing stub entry.
198
1.22k
                hrecs->ref[nref].ty = h_type;
199
                // Check lengths match; correct if not.
200
1.22k
                if (len != hrecs->ref[nref].len) {
201
0
                    char tmp[32];
202
0
                    snprintf(tmp, sizeof(tmp), "%" PRIhts_pos,
203
0
                             hrecs->ref[nref].len);
204
0
                    if (sam_hrecs_update(hrecs, h_type, "LN", tmp, NULL) < 0)
205
0
                        return -1;
206
0
                    ref_changed_flag = 1;
207
0
                }
208
1.22k
                if (sam_hrecs_add_ref_altnames(hrecs, nref, altnames) < 0)
209
0
                    return -1;
210
211
1.22k
                if (ref_changed_flag && (hrecs->refs_changed < 0 || hrecs->refs_changed > nref))
212
0
                    hrecs->refs_changed = nref;
213
1.22k
                return 0;
214
1.22k
            }
215
216
            // Check to see if an existing entry is being updated
217
16
            if (hrecs->ref[nref].ty == h_type) {
218
0
                if (hrecs->ref[nref].len != len) {
219
0
                    hrecs->ref[nref].len = len;
220
0
                    ref_changed_flag = 1;
221
0
                }
222
0
                if (!hrecs->ref[nref].name || strcmp(hrecs->ref[nref].name, name)) {
223
0
                    hrecs->ref[nref].name = name;
224
0
                    ref_changed_flag = 1;
225
0
                }
226
0
                if (sam_hrecs_add_ref_altnames(hrecs, nref, altnames) < 0)
227
0
                    return -1;
228
229
0
                if (ref_changed_flag && (hrecs->refs_changed < 0 || hrecs->refs_changed > nref))
230
0
                    hrecs->refs_changed = nref;
231
0
                return 0;
232
0
            }
233
234
            // If here, the name is a duplicate.
235
            // Check to see if it matches the SN: tag from the earlier record.
236
16
            if (strcmp(hrecs->ref[nref].name, name) == 0) {
237
16
                hts_log_error("Duplicate entry \"%s\" in sam header",
238
16
                                name);
239
16
                return -1;
240
16
            }
241
242
            // Clash with an already-seen altname
243
            // As SN: should be preferred to AN: add this as a new
244
            // record and update the hash entry to point to it.
245
0
            hts_log_warning("Ref name SN:\"%s\" is a duplicate of an existing AN key", name);
246
0
            nref = hrecs->nref;
247
0
        }
248
249
1.21k
        if (nref == hrecs->ref_sz) {
250
17
            size_t new_sz = hrecs->ref_sz >= 4 ? hrecs->ref_sz + (hrecs->ref_sz / 4) : 32;
251
17
            sam_hrec_sq_t *new_ref = realloc(hrecs->ref, sizeof(*hrecs->ref) * new_sz);
252
17
            if (!new_ref)
253
0
                return -1;
254
17
            hrecs->ref = new_ref;
255
17
            hrecs->ref_sz = new_sz;
256
17
        }
257
258
1.21k
        hrecs->ref[nref].name = name;
259
1.21k
        hrecs->ref[nref].len  = len;
260
1.21k
        hrecs->ref[nref].ty = h_type;
261
262
1.21k
        k = kh_put(m_s2i, hrecs->ref_hash, hrecs->ref[nref].name, &r);
263
1.21k
        if (-1 == r) return -1;
264
1.21k
        kh_val(hrecs->ref_hash, k) = nref;
265
266
1.21k
        if (sam_hrecs_add_ref_altnames(hrecs, nref, altnames) < 0)
267
0
            return -1;
268
269
1.21k
        if (hrecs->refs_changed < 0 || hrecs->refs_changed > hrecs->nref)
270
571
            hrecs->refs_changed = hrecs->nref;
271
1.21k
        hrecs->nref++;
272
1.21k
    }
273
274
    /* Add to read-group hash? */
275
15.7k
    if (type == TYPEKEY("RG")) {
276
3.02k
        sam_hrec_tag_t *tag = sam_hrecs_find_key(h_type, "ID", NULL);
277
3.02k
        int nrg = hrecs->nrg, r;
278
3.02k
        khint_t k;
279
280
3.02k
        if (!tag) {
281
61
            hts_log_error("Header includes @RG line with no ID: tag");
282
61
            return -1;  // ID should be present, according to spec.
283
61
        }
284
3.02k
        assert(tag->str && tag->len >= 3);
285
286
        // Seen already?
287
2.96k
        k = kh_get(m_s2i, hrecs->rg_hash, tag->str + 3);
288
2.96k
        if (k < kh_end(hrecs->rg_hash)) {
289
1.28k
            nrg = kh_val(hrecs->rg_hash, k);
290
1.28k
            assert(hrecs->rg[nrg].ty != NULL);
291
1.28k
            if (hrecs->rg[nrg].ty != h_type) {
292
1.28k
                hts_log_warning("Duplicate entry \"%s\" in sam header",
293
1.28k
                                tag->str + 3);
294
1.28k
            } else {
295
0
                hrecs->rg[nrg].name = tag->str + 3;
296
0
                hrecs->rg[nrg].name_len = tag->len - 3;
297
0
            }
298
1.28k
            return 0;
299
1.28k
        }
300
301
1.68k
        if (nrg == hrecs->rg_sz) {
302
883
            size_t new_sz = hrecs->rg_sz >= 4 ? hrecs->rg_sz + hrecs->rg_sz / 4 : 4;
303
883
            sam_hrec_rg_t *new_rg = realloc(hrecs->rg, sizeof(*hrecs->rg) * new_sz);
304
883
            if (!new_rg)
305
0
                return -1;
306
883
            hrecs->rg = new_rg;
307
883
            hrecs->rg_sz = new_sz;
308
883
        }
309
310
1.68k
        hrecs->rg[nrg].name = tag->str + 3;
311
1.68k
        hrecs->rg[nrg].name_len = tag->len - 3;
312
1.68k
        hrecs->rg[nrg].ty   = h_type;
313
1.68k
        hrecs->rg[nrg].id   = nrg;
314
315
1.68k
        k = kh_put(m_s2i, hrecs->rg_hash, hrecs->rg[nrg].name, &r);
316
1.68k
        if (-1 == r) return -1;
317
1.68k
        kh_val(hrecs->rg_hash, k) = nrg;
318
319
1.68k
        hrecs->nrg++;
320
1.68k
    }
321
322
    /* Add to program hash? */
323
14.4k
    if (type == TYPEKEY("PG")) {
324
3.82k
        sam_hrec_tag_t *tag;
325
3.82k
        sam_hrec_pg_t *new_pg;
326
3.82k
        int npg = hrecs->npg;
327
328
3.82k
        if (npg == hrecs->pg_sz) {
329
1.38k
            size_t new_sz = hrecs->pg_sz >= 4 ? hrecs->pg_sz + hrecs->pg_sz / 4 : 4;
330
1.38k
            new_pg = realloc(hrecs->pg, sizeof(*hrecs->pg) * new_sz);
331
1.38k
            if (!new_pg)
332
0
                return -1;
333
1.38k
            hrecs->pg = new_pg;
334
1.38k
            hrecs->pg_sz = new_sz;
335
1.38k
        }
336
337
3.82k
        tag = h_type->tag;
338
3.82k
        hrecs->pg[npg].name = NULL;
339
3.82k
        hrecs->pg[npg].name_len = 0;
340
3.82k
        hrecs->pg[npg].ty  = h_type;
341
3.82k
        hrecs->pg[npg].id   = npg;
342
3.82k
        hrecs->pg[npg].prev_id = -1;
343
344
12.7k
        while (tag) {
345
8.88k
            if (tag->str[0] == 'I' && tag->str[1] == 'D') {
346
                /* Avoid duplicate ID tags coming from other applications */
347
4.90k
                if (!hrecs->pg[npg].name) {
348
3.70k
                    assert(tag->len >= 3);
349
3.70k
                    hrecs->pg[npg].name = tag->str + 3;
350
3.70k
                    hrecs->pg[npg].name_len = tag->len - 3;
351
3.70k
                } else {
352
1.20k
                    hts_log_warning("PG line with multiple ID tags. The first encountered was preferred - ID:%s", hrecs->pg[npg].name);
353
1.20k
                }
354
4.90k
            } else if (tag->str[0] == 'P' && tag->str[1] == 'P') {
355
                // Resolve later if needed
356
2.31k
                khint_t k;
357
2.31k
                k = kh_get(m_s2i, hrecs->pg_hash, tag->str+3);
358
359
2.31k
                if (k != kh_end(hrecs->pg_hash)) {
360
1.43k
                    int p_id = kh_val(hrecs->pg_hash, k);
361
1.43k
                    hrecs->pg[npg].prev_id = hrecs->pg[p_id].id;
362
363
                    /* Unmark previous entry as a PG termination */
364
1.43k
                    if (hrecs->npg_end > 0 &&
365
1.38k
                        hrecs->pg_end[hrecs->npg_end-1] == p_id) {
366
178
                        hrecs->npg_end--;
367
1.25k
                    } else {
368
1.25k
                        int i;
369
13.1k
                        for (i = 0; i < hrecs->npg_end; i++) {
370
11.8k
                            if (hrecs->pg_end[i] == p_id) {
371
205
                                memmove(&hrecs->pg_end[i], &hrecs->pg_end[i+1],
372
205
                                        (hrecs->npg_end-i-1)*sizeof(*hrecs->pg_end));
373
205
                                hrecs->npg_end--;
374
205
                            }
375
11.8k
                        }
376
1.25k
                    }
377
1.43k
                } else {
378
878
                    hrecs->pg[npg].prev_id = -1;
379
878
                }
380
2.31k
            }
381
8.88k
            tag = tag->next;
382
8.88k
        }
383
384
3.82k
        if (hrecs->pg[npg].name) {
385
3.70k
            khint_t k;
386
3.70k
            int r;
387
3.70k
            k = kh_put(m_s2i, hrecs->pg_hash, hrecs->pg[npg].name, &r);
388
3.70k
            if (-1 == r) return -1;
389
3.70k
            kh_val(hrecs->pg_hash, k) = npg;
390
3.70k
        } else {
391
123
            return -1; // ID should be present, according to spec.
392
123
        }
393
394
        /* Add to npg_end[] array. Remove later if we find a PP line */
395
3.70k
        if (hrecs->npg_end >= hrecs->npg_end_alloc) {
396
651
            int *new_pg_end;
397
651
            int  new_alloc = hrecs->npg_end_alloc ? hrecs->npg_end_alloc*2 : 4;
398
399
651
            new_pg_end = realloc(hrecs->pg_end, new_alloc * sizeof(int));
400
651
            if (!new_pg_end)
401
0
                return -1;
402
651
            hrecs->npg_end_alloc = new_alloc;
403
651
            hrecs->pg_end = new_pg_end;
404
651
        }
405
3.70k
        hrecs->pg_end[hrecs->npg_end++] = npg;
406
407
3.70k
        hrecs->npg++;
408
3.70k
    }
409
410
14.3k
    return 0;
411
14.4k
}
412
413
0
static int sam_hrecs_remove_hash_entry(sam_hrecs_t *hrecs, khint32_t type, sam_hrec_type_t *h_type) {
414
0
    if (!hrecs || !h_type)
415
0
        return -1;
416
417
0
    sam_hrec_tag_t *tag;
418
0
    const char *key = NULL;
419
0
    khint_t k;
420
421
    /* Remove name and any alternative names from reference hash */
422
0
    if (type == TYPEKEY("SQ")) {
423
0
        const char *altnames = NULL;
424
425
0
        tag = h_type->tag;
426
427
0
        while (tag) {
428
0
            if (tag->str[0] == 'S' && tag->str[1] == 'N') {
429
0
                assert(tag->len >= 3);
430
0
                key = tag->str + 3;
431
0
            } else if (tag->str[0] == 'A' && tag->str[1] == 'N') {
432
0
                assert(tag->len >= 3);
433
0
                altnames = tag->str + 3;
434
0
            }
435
0
            tag = tag->next;
436
0
        }
437
438
0
        if (key) {
439
0
            k = kh_get(m_s2i, hrecs->ref_hash, key);
440
0
            if (k != kh_end(hrecs->ref_hash)) {
441
0
                int idx = kh_val(hrecs->ref_hash, k);
442
0
                if (idx + 1 < hrecs->nref)
443
0
                    memmove(&hrecs->ref[idx], &hrecs->ref[idx+1],
444
0
                            sizeof(sam_hrec_sq_t)*(hrecs->nref - idx - 1));
445
0
                if (altnames)
446
0
                    sam_hrecs_remove_ref_altnames(hrecs, idx, altnames);
447
0
                kh_del(m_s2i, hrecs->ref_hash, k);
448
0
                hrecs->nref--;
449
0
                if (hrecs->refs_changed < 0 || hrecs->refs_changed > idx)
450
0
                    hrecs->refs_changed = idx;
451
0
                for (k = 0; k < kh_end(hrecs->ref_hash); k++) {
452
0
                    if (kh_exist(hrecs->ref_hash, k)
453
0
                        && kh_value(hrecs->ref_hash, k) > idx) {
454
0
                        kh_value(hrecs->ref_hash, k)--;
455
0
                    }
456
0
                }
457
0
            }
458
0
        }
459
0
    }
460
461
    /* Remove from read-group hash */
462
0
    if (type == TYPEKEY("RG")) {
463
0
        tag = h_type->tag;
464
465
0
        while (tag) {
466
0
            if (tag->str[0] == 'I' && tag->str[1] == 'D') {
467
0
                assert(tag->len >= 3);
468
0
                key = tag->str + 3;
469
0
                k = kh_get(m_s2i, hrecs->rg_hash, key);
470
0
                if (k != kh_end(hrecs->rg_hash)) {
471
0
                    int idx = kh_val(hrecs->rg_hash, k);
472
0
                    if (idx + 1 < hrecs->nrg)
473
0
                        memmove(&hrecs->rg[idx], &hrecs->rg[idx+1], sizeof(sam_hrec_rg_t)*(hrecs->nrg - idx - 1));
474
0
                    kh_del(m_s2i, hrecs->rg_hash, k);
475
0
                    hrecs->nrg--;
476
0
                    for (k = 0; k < kh_end(hrecs->rg_hash); k++) {
477
0
                        if (kh_exist(hrecs->rg_hash, k)
478
0
                            && kh_value(hrecs->rg_hash, k) > idx) {
479
0
                            kh_value(hrecs->rg_hash, k)--;
480
0
                        }
481
0
                    }
482
0
                }
483
0
                break;
484
0
            }
485
0
            tag = tag->next;
486
0
        }
487
0
    }
488
489
0
    return 0;
490
0
}
491
492
/** Add a header record to the global line ordering
493
 *
494
 * If @p after is not NULL, the new record will be inserted after this one,
495
 * otherwise it will go at the end.
496
 *
497
 * An exception is an HD record, which will always be put first unless
498
 * one is already present.
499
 */
500
static void sam_hrecs_global_list_add(sam_hrecs_t *hrecs,
501
                                      sam_hrec_type_t *h_type,
502
2.25M
                                      sam_hrec_type_t *after) {
503
2.25M
    const khint32_t hd_type = TYPEKEY("HD");
504
2.25M
    int update_first_line = 0;
505
506
    // First line seen
507
2.25M
    if (!hrecs->first_line) {
508
16.2k
        hrecs->first_line = h_type->global_next = h_type->global_prev = h_type;
509
16.2k
        return;
510
16.2k
    }
511
512
    // @HD goes at the top (unless there's one already)
513
2.24M
    if (h_type->type == hd_type && hrecs->first_line->type != hd_type) {
514
38
        after = hrecs->first_line->global_prev;
515
38
        update_first_line = 1;
516
38
    }
517
518
    // If no instructions given, put it at the end
519
2.24M
    if (!after)
520
2.24M
        after = hrecs->first_line->global_prev;
521
522
2.24M
    h_type->global_prev = after;
523
2.24M
    h_type->global_next = after->global_next;
524
2.24M
    h_type->global_prev->global_next = h_type;
525
2.24M
    h_type->global_next->global_prev = h_type;
526
527
2.24M
    if (update_first_line)
528
38
        hrecs->first_line = h_type;
529
2.24M
}
530
531
/*! Add header record with a va_list interface.
532
 *
533
 * Adds a single record to a SAM header.
534
 *
535
 * This takes a header record type, a va_list argument and one or more
536
 * key,value pairs, ending with the NULL key.
537
 *
538
 * Eg. sam_hrecs_vadd(h, "SQ", args, "ID", "foo", "LN", "100", NULL).
539
 *
540
 * The purpose of the additional va_list parameter is to permit other
541
 * varargs functions to call this while including their own additional
542
 * parameters; an example is in sam_hdr_add_pg().
543
 *
544
 * Note: this function invokes va_arg at least once, making the value
545
 * of ap indeterminate after the return. The caller should call
546
 * va_start/va_end before/after calling this function or use va_copy.
547
 *
548
 * @return
549
 * Returns >= 0 on success;
550
 *        -1 on failure
551
 */
552
619
static int sam_hrecs_vadd(sam_hrecs_t *hrecs, const char *type, va_list ap, ...) {
553
619
    va_list args;
554
619
    sam_hrec_type_t *h_type;
555
619
    sam_hrec_tag_t *h_tag, *last=NULL;
556
619
    int new;
557
619
    khint32_t type_i = TYPEKEY(type), k;
558
559
619
    if (!strncmp(type, "HD", 2) && (h_type = sam_hrecs_find_type_id(hrecs, "HD", NULL, NULL)))
560
0
        return sam_hrecs_vupdate(hrecs, h_type, ap);
561
562
619
    if (!(h_type = pool_alloc(hrecs->type_pool)))
563
0
        return -1;
564
619
    k = kh_put(sam_hrecs_t, hrecs->h, type_i, &new);
565
619
    if (new < 0)
566
0
        return -1;
567
568
619
    h_type->type = type_i;
569
570
    // Form the ring, either with self or other lines of this type
571
619
    if (!new) {
572
41
        sam_hrec_type_t *t = kh_val(hrecs->h, k), *p;
573
41
        p = t->prev;
574
575
41
        assert(p->next == t);
576
41
        p->next = h_type;
577
41
        h_type->prev = p;
578
579
41
        t->prev = h_type;
580
41
        h_type->next = t;
581
578
    } else {
582
578
        kh_val(hrecs->h, k) = h_type;
583
578
        h_type->prev = h_type->next = h_type;
584
578
    }
585
619
    h_type->tag = NULL;
586
587
    // Add to global line ordering after any existing line of the same type,
588
    // or at the end if no line of this type exists yet.
589
619
    sam_hrecs_global_list_add(hrecs, h_type, !new ? h_type->prev : NULL);
590
591
    // Check linked-list invariants
592
619
    assert(h_type->prev->next == h_type);
593
619
    assert(h_type->next->prev == h_type);
594
619
    assert(h_type->global_prev->global_next == h_type);
595
619
    assert(h_type->global_next->global_prev == h_type);
596
597
    // Any ... varargs
598
619
    va_start(args, ap);
599
619
    for (;;) {
600
619
        char *key, *val = NULL, *str;
601
602
619
        if (!(key = (char *)va_arg(args, char *)))
603
619
            break;
604
0
        if (strncmp(type, "CO", 2) && !(val = (char *)va_arg(args, char *)))
605
0
            break;
606
0
        if (*val == '\0')
607
0
            continue;
608
609
0
        if (!(h_tag = pool_alloc(hrecs->tag_pool)))
610
0
            return -1;
611
612
0
        if (strncmp(type, "CO", 2)) {
613
0
            h_tag->len = 3 + strlen(val);
614
0
            str = string_alloc(hrecs->str_pool, h_tag->len+1);
615
0
            if (!str || snprintf(str, h_tag->len+1, "%2.2s:%s", key, val) < 0)
616
0
                return -1;
617
0
            h_tag->str = str;
618
0
        } else {
619
0
            h_tag->len = strlen(key);
620
0
            h_tag->str = string_ndup(hrecs->str_pool, key, h_tag->len);
621
0
            if (!h_tag->str)
622
0
                return -1;
623
0
        }
624
625
0
        h_tag->next = NULL;
626
0
        if (last)
627
0
            last->next = h_tag;
628
0
        else
629
0
            h_type->tag = h_tag;
630
631
0
        last = h_tag;
632
0
    }
633
619
    va_end(args);
634
635
    // Plus the specified va_list params
636
1.85k
    for (;;) {
637
1.85k
        char *key, *val = NULL, *str;
638
639
1.85k
        if (!(key = (char *)va_arg(ap, char *)))
640
619
            break;
641
1.23k
        if (strncmp(type, "CO", 2) && !(val = (char *)va_arg(ap, char *)))
642
0
            break;
643
644
1.23k
        if (!(h_tag = pool_alloc(hrecs->tag_pool)))
645
0
            return -1;
646
647
1.23k
        if (strncmp(type, "CO", 2)) {
648
1.23k
            h_tag->len = 3 + strlen(val);
649
1.23k
            str = string_alloc(hrecs->str_pool, h_tag->len+1);
650
1.23k
            if (!str || snprintf(str, h_tag->len+1, "%2.2s:%s", key, val) < 0)
651
0
                return -1;
652
1.23k
            h_tag->str = str;
653
1.23k
        } else {
654
0
            h_tag->len = strlen(key);
655
0
            h_tag->str = string_ndup(hrecs->str_pool, key, h_tag->len);
656
0
            if (!h_tag->str)
657
0
                return -1;
658
0
        }
659
660
1.23k
        h_tag->next = NULL;
661
1.23k
        if (last)
662
619
            last->next = h_tag;
663
619
        else
664
619
            h_type->tag = h_tag;
665
666
1.23k
        last = h_tag;
667
1.23k
    }
668
669
619
    if (-1 == sam_hrecs_update_hashes(hrecs, TYPEKEY(type), h_type))
670
8
        return -1;
671
672
611
    if (!strncmp(type, "PG", 2))
673
0
        hrecs->pgs_changed = 1;
674
675
611
    hrecs->dirty = 1;
676
677
611
    return 0;
678
619
}
679
680
// As sam_hrecs_vadd(), but without the extra va_list parameter
681
619
static int sam_hrecs_add(sam_hrecs_t *hrecs, const char *type, ...) {
682
619
    va_list args;
683
619
    int res;
684
619
    va_start(args, type);
685
619
    res = sam_hrecs_vadd(hrecs, type, args, NULL);
686
619
    va_end(args);
687
619
    return res;
688
619
}
689
690
/*
691
 * Function for deallocating a list of tags
692
 */
693
694
796k
static void sam_hrecs_free_tags(sam_hrecs_t *hrecs, sam_hrec_tag_t *tag) {
695
796k
    if (!hrecs || !tag)
696
192
        return;
697
796k
    if (tag->next)
698
796k
        sam_hrecs_free_tags(hrecs, tag->next);
699
700
796k
    pool_free(hrecs->tag_pool, tag);
701
796k
}
702
703
0
static int sam_hrecs_remove_line(sam_hrecs_t *hrecs, const char *type_name, sam_hrec_type_t *type_found, int remove_hash) {
704
0
    if (!hrecs || !type_name || !type_found)
705
0
        return -1;
706
707
0
    khint32_t itype = TYPEKEY(type_name);
708
0
    khint_t k = kh_get(sam_hrecs_t, hrecs->h, itype);
709
0
    if (k == kh_end(hrecs->h))
710
0
        return -1;
711
712
    // Remove from global list (remembering it could be the only line)
713
0
    if (hrecs->first_line == type_found) {
714
0
        hrecs->first_line = (type_found->global_next != type_found
715
0
                             ? type_found->global_next : NULL);
716
0
    }
717
0
    type_found->global_next->global_prev = type_found->global_prev;
718
0
    type_found->global_prev->global_next = type_found->global_next;
719
720
    /* single element in the list */
721
0
    if (type_found->prev == type_found || type_found->next == type_found) {
722
0
        kh_del(sam_hrecs_t, hrecs->h, k);
723
0
    } else {
724
0
        type_found->prev->next = type_found->next;
725
0
        type_found->next->prev = type_found->prev;
726
0
        if (kh_val(hrecs->h, k) == type_found) { //first element
727
0
            kh_val(hrecs->h, k) = type_found->next;
728
0
        }
729
0
    }
730
731
0
    if (remove_hash && (!strncmp(type_name, "SQ", 2) || !strncmp(type_name, "RG", 2)))
732
0
        sam_hrecs_remove_hash_entry(hrecs, itype, type_found);
733
734
0
    sam_hrecs_free_tags(hrecs, type_found->tag);
735
0
    pool_free(hrecs->type_pool, type_found);
736
737
0
    hrecs->dirty = 1;
738
739
0
    return 0;
740
0
}
741
742
// Paste together a line from the parsed data structures
743
23.9k
static int build_header_line(const sam_hrec_type_t *ty, kstring_t *ks) {
744
23.9k
    sam_hrec_tag_t *tag;
745
23.9k
    int r = 0;
746
23.9k
    char c[2]= { ty->type >> 8, ty->type & 0xff };
747
748
23.9k
    r |= (kputc_('@', ks) == EOF);
749
23.9k
    r |= (kputsn(c, 2, ks) == EOF);
750
63.3k
    for (tag = ty->tag; tag; tag = tag->next) {
751
39.4k
        r |= (kputc_('\t', ks) == EOF);
752
39.4k
        r |= (kputsn(tag->str, tag->len, ks) == EOF);
753
39.4k
    }
754
755
23.9k
    return r;
756
23.9k
}
757
758
10.3k
static int sam_hrecs_rebuild_lines(const sam_hrecs_t *hrecs, kstring_t *ks) {
759
10.3k
    const sam_hrec_type_t *t1, *t2;
760
761
10.3k
    if (!hrecs->first_line)
762
0
        return kputsn("", 0, ks) >= 0 ? 0 : -1;
763
764
10.3k
    t1 = t2 = hrecs->first_line;
765
23.9k
    do {
766
23.9k
        if (build_header_line(t1, ks) != 0)
767
0
            return -1;
768
23.9k
        if (kputc('\n', ks) < 0)
769
0
            return -1;
770
771
23.9k
        t1 = t1->global_next;
772
23.9k
    } while (t1 != t2);
773
774
10.3k
    return 0;
775
10.3k
}
776
777
// Print warnings about known log messages that may have been inadvertently
778
// merged into SAM files.
779
780
15
static void known_stderr(const char *tool, const char *advice) {
781
15
    hts_log_warning("SAM file corrupted by embedded %s error/log message", tool);
782
15
    hts_log_warning("%s", advice);
783
15
}
784
785
// Look for known log messages that may have been inadvertently merged into SAM
786
// files, and print advice on how to avoid the problem if one is spotted.
787
788
445
static void warn_if_known_stderr(const char *line, size_t len) {
789
445
    int ilen = len < INT_MAX ? len : INT_MAX;
790
445
    if (kmemmem(line, ilen, "M::bwa_idx_load_from_disk", 25, NULL) != NULL)
791
4
        known_stderr("bwa", "Use `bwa mem -o file.sam ...` or `bwa sampe -f file.sam ...` instead of `bwa ... > file.sam`");
792
441
    else if (kmemmem(line, ilen, "M::mem_pestat", 13, NULL) != NULL)
793
7
        known_stderr("bwa", "Use `bwa mem -o file.sam ...` instead of `bwa mem ... > file.sam`");
794
434
    else if (kmemmem(line, ilen, "loaded/built the index", 22, NULL) != NULL)
795
4
        known_stderr("minimap2", "Use `minimap2 -o file.sam ...` instead of `minimap2 ... > file.sam`");
796
445
}
797
798
// Parse a CO line
799
// Returns 0 on failure; line length (>= 1) on success
800
static size_t parse_comment_line(const char *hdr, size_t len, size_t lno,
801
8.52k
                                 sam_hrecs_t *hrecs, sam_hrec_type_t *h_type) {
802
8.52k
    size_t j;
803
8.52k
    sam_hrec_tag_t *h_tag;
804
805
8.52k
    if (len == 0 || hdr[0] != '\t') {
806
43
        sam_hrecs_error("Missing tab", hdr, len, lno);
807
43
        warn_if_known_stderr(hdr, len);
808
43
        return 0;
809
43
    }
810
811
336k
    for (j = 1; j < len && hdr[j] != '\0' && hdr[j] != '\n'; j++)
812
327k
        ;
813
814
8.48k
    if (!(h_type->tag = h_tag = pool_alloc(hrecs->tag_pool)))
815
0
        return -1;
816
8.48k
    h_tag->str = string_ndup(hrecs->str_pool, hdr + 1, j - 1);
817
8.48k
    h_tag->len = j - 1;
818
8.48k
    h_tag->next = NULL;
819
8.48k
    if (!h_tag->str)
820
0
        return 0;
821
8.48k
    return j;
822
8.48k
}
823
824
// Parse header lines other than CO
825
// Returns 0 on failure; line length (>= 1) on success
826
static size_t parse_noncomment_line(const char *hdr, size_t len, size_t lno,
827
                                    sam_hrecs_t *hrecs, sam_hrec_type_t *h_type,
828
2.25M
                                    khint_t *sq_count, khint_t *an_count) {
829
2.25M
    size_t i = 0;
830
2.25M
    sam_hrec_tag_t *h_tag, *last = NULL;
831
2.25M
    int is_sq = h_type->type == TYPEKEY("SQ");
832
833
    // Count reference name
834
2.25M
    if (is_sq)
835
13.4k
        (*sq_count)++;
836
837
4.12M
    do {
838
4.12M
        size_t j;
839
840
4.12M
        if (i == len || hdr[i] != '\t') {
841
38
            sam_hrecs_error("Missing tab", hdr, len, lno);
842
38
            warn_if_known_stderr(hdr, len);
843
38
            return 0;
844
38
        }
845
846
4.12M
        for (j = ++i;
847
322M
             j < len && hdr[j] != '\0' && hdr[j] != '\n' && hdr[j] != '\t';
848
318M
             j++)
849
318M
            ;
850
851
4.12M
        if (j - i < 3 || hdr[i + 2] != ':') {
852
331
            sam_hrecs_error("Malformed key:value pair", hdr, len, lno);
853
331
            warn_if_known_stderr(hdr, len);
854
331
            return 0;
855
331
        }
856
857
        // Count alternate names
858
4.12M
        if (is_sq && hdr[i] == 'A' && hdr[i + 1] == 'N') {
859
333k
            size_t k;
860
333k
            (*an_count)++;
861
2.99M
            for (k = i + 2; k < j; k++)
862
2.66M
                (*an_count) += hdr[k] == ',';
863
333k
        }
864
865
4.12M
        if (!(h_tag = pool_alloc(hrecs->tag_pool)))
866
0
            return 0;
867
4.12M
        h_tag->str = string_ndup(hrecs->str_pool, &hdr[i], j-i);
868
4.12M
        h_tag->len = j-i;
869
4.12M
        h_tag->next = NULL;
870
4.12M
        if (!h_tag->str)
871
0
            return 0;
872
873
4.12M
        if (last)
874
1.87M
            last->next = h_tag;
875
2.24M
        else
876
2.24M
            h_type->tag = h_tag;
877
878
4.12M
        last = h_tag;
879
4.12M
        i = j;
880
4.12M
    } while (i < len && hdr[i] != '\0' && hdr[i] != '\n');
881
882
2.24M
    return i;
883
2.25M
}
884
885
/** Parse a single header line.
886
 * @param         hrecs        Destination sam_hrecs_t struct
887
 * @param         hdr          Data to parse
888
 * @param         len          Size of @p hdr
889
 * @param         lno          Line number, for error / warning messages
890
 * @param[out]    line_len_out Returned length of parsed line
891
 * @param[in,out] sq_count     Count of SQ lines seen so far
892
 * @param[in,out] an_count     Count of alternate names seen so far
893
 *
894
 * Used by sam_hrecs_parse_lines() and sam_hdr_build_from_sam_file(),
895
 * so has to be able to deal with lines that are not NUL terminated.
896
 * A single line pointed to by @ph hdr will be parsed into @p hrecs.
897
 * @p len gives the size of @p hdr, which may include more than one line
898
 * if called from sam_hrecs_parse_lines(). The length of the parsed line
899
 * is returned in @p line_len_out.
900
 * @p sq_count and @p an_count are pointers to the number of SQ lines
901
 * (i.e. references), and the number of alternate names.  These are used
902
 * by the caller to set the sizes of the sam_hrecs_t::ref array and
903
 * sam_hrecs_t::ref_hash table once all the lines have been parsed.
904
 */
905
906
static sam_hrec_type_t * sam_hrecs_parse_single_line(sam_hrecs_t *hrecs,
907
                                                     const char *hdr,
908
                                                     size_t len, size_t lno,
909
                                                     size_t *line_len_out,
910
                                                     khint_t *sq_count,
911
2.25M
                                                     khint_t *an_count) {
912
2.25M
    int new;
913
2.25M
    khint32_t type;
914
2.25M
    khint_t k;
915
2.25M
    sam_hrec_type_t *h_type;
916
2.25M
    size_t line_len = 0;
917
918
2.25M
    if (hdr[0] != '@') {
919
28
        sam_hrecs_error("Header line does not start with '@'",
920
28
                        hdr, len, lno);
921
28
        return NULL;
922
28
    }
923
924
2.25M
    if (!isalpha_c(hdr[1]) || !isalpha_c(hdr[2])) {
925
49
        sam_hrecs_error("Header line does not have a two character key",
926
49
                        hdr, len, lno);
927
49
        return NULL;
928
49
    }
929
2.25M
    type = TYPEKEY(&hdr[1]);
930
931
2.25M
    if (len < 3 || hdr[3] == '\n')
932
37
        return NULL;
933
934
    // Add the header line type
935
2.25M
    if (!(h_type = pool_alloc(hrecs->type_pool)))
936
0
        return NULL;
937
938
2.25M
    h_type->tag = NULL;
939
940
2.25M
    k = kh_put(sam_hrecs_t, hrecs->h, type, &new);
941
2.25M
    if (new < 0)
942
0
        goto error;
943
944
2.25M
    h_type->type = type;
945
946
    // Parse the tags on this line
947
2.25M
    if (type == TYPEKEY("CO")) {
948
949
8.52k
        line_len = parse_comment_line(hdr + 3, len - 3, lno,
950
8.52k
                                      hrecs, h_type);
951
8.52k
        if (line_len == 0) // Failed
952
43
            goto error;
953
954
2.25M
    } else {
955
956
2.25M
        line_len = parse_noncomment_line(hdr + 3, len - 3, lno,
957
2.25M
                                         hrecs, h_type,
958
2.25M
                                         sq_count, an_count);
959
2.25M
        if (line_len == 0) // Failed
960
369
            goto error;
961
2.25M
    }
962
963
    // Add to end of global list
964
2.25M
    sam_hrecs_global_list_add(hrecs, h_type, NULL);
965
966
    // Form the ring, either with self or other lines of this type
967
2.25M
    if (!new) {
968
2.24M
        sam_hrec_type_t *t = kh_val(hrecs->h, k), *p;
969
2.24M
        p = t->prev;
970
971
2.24M
        assert(p->next == t);
972
2.24M
        p->next = h_type;
973
2.24M
        h_type->prev = p;
974
975
2.24M
        t->prev = h_type;
976
2.24M
        h_type->next = t;
977
2.24M
    } else {
978
17.4k
        kh_val(hrecs->h, k) = h_type;
979
17.4k
        h_type->prev = h_type->next = h_type;
980
17.4k
    }
981
982
2.25M
    if (line_len_out)
983
6.05k
        *line_len_out = line_len + 3;
984
2.25M
    return h_type;
985
986
412
 error:
987
    // Tidy up as best we can
988
412
    sam_hrecs_free_tags(hrecs, h_type->tag);
989
412
    pool_free(hrecs->type_pool, h_type);
990
412
    return NULL;
991
2.25M
}
992
993
// Parse complete header into a sam_hrecs_t structure
994
995
2.79k
static int sam_hrecs_parse_lines(sam_hrecs_t *hrecs, const char *hdr, size_t len) {
996
2.79k
    size_t i, lno;
997
998
2.79k
    if (!hrecs || len > SSIZE_MAX)
999
0
        return -1;
1000
1001
2.79k
    if (!len)
1002
0
        len = strlen(hdr);
1003
1004
2.79k
    if (len < 3) {
1005
364
        if (len == 0 || *hdr == '\0') return 0;
1006
28
        sam_hrecs_error("Header line too short", hdr, len, 1);
1007
28
        return -1;
1008
364
    }
1009
1010
2.43k
    sam_hrec_type_t *first_h_type = NULL;
1011
2.43k
    sam_hrec_type_t *last_h_type = NULL;
1012
2.43k
    khint_t sq_count = 0, an_count = 0;
1013
2.43k
    size_t line_len = 0;
1014
1015
8.49k
    for (i = 0, lno = 1; i < len - 3 && hdr[i] != '\0'; lno++) {
1016
6.25k
        sam_hrec_type_t *h_type;
1017
6.25k
        h_type = sam_hrecs_parse_single_line(hrecs, &hdr[i], len - i,
1018
6.25k
                                             lno, &line_len,
1019
6.25k
                                             &sq_count, &an_count);
1020
6.25k
        if (!h_type)
1021
193
            return -1;
1022
1023
6.05k
        i += line_len + 1;
1024
1025
        // Keep track of first / last new record so they can be passed to
1026
        // sam_hrecs_update_hashes() below.  Ignore HD as it may be stored
1027
        // out of order (it always goes at the start) and
1028
        // sam_hrecs_update_hashes() does nothing with HD.
1029
6.05k
        if (h_type->type != TYPEKEY("HD")) {
1030
5.74k
            if (!first_h_type)
1031
2.13k
                first_h_type = h_type;
1032
5.74k
            last_h_type = h_type;
1033
5.74k
        }
1034
6.05k
    }
1035
1036
    // Reserve space in hash tables and refs array
1037
2.24k
    if (sq_count) {
1038
        // It's possible that some entries are already in the hash table,
1039
        // e.g. via sam_hrecs_refs_from_targets_array(), so only reserve
1040
        // space beyond what's already there.
1041
603
        khint_t ref_name_count = sq_count + an_count;
1042
603
        khint_t sz = kh_size(hrecs->ref_hash);
1043
603
        if (ref_name_count > sz
1044
292
            && kh_grow_to_fit(m_s2i, hrecs->ref_hash, ref_name_count - sz) < 0)
1045
0
            return -1;
1046
1047
603
        if (hrecs->ref_sz < sq_count) {
1048
272
            sam_hrec_sq_t *new_ref = realloc(hrecs->ref,
1049
272
                                             sizeof(*hrecs->ref) * sq_count);
1050
272
            if (!new_ref)
1051
0
                return -1;
1052
272
            hrecs->ref = new_ref;
1053
272
            hrecs->ref_sz = sq_count;
1054
272
        }
1055
603
    }
1056
1057
    // Update RG/SQ/PG hashes
1058
2.24k
    if (first_h_type) {
1059
2.09k
        sam_hrec_type_t *h_type = first_h_type->global_prev;
1060
5.14k
        do {
1061
5.14k
            h_type = h_type->global_next;
1062
5.14k
            if (-1 == sam_hrecs_update_hashes(hrecs, h_type->type, h_type))
1063
240
                return -1;
1064
5.14k
        } while (h_type != last_h_type);
1065
2.09k
    }
1066
2.00k
    return 0;
1067
2.24k
}
1068
1069
/*! Update sam_hdr_t target_name and target_len arrays
1070
 *
1071
 *  @return 0 on success; -1 on failure
1072
 */
1073
int sam_hdr_update_target_arrays(sam_hdr_t *bh, const sam_hrecs_t *hrecs,
1074
32.7k
                                 int refs_changed) {
1075
32.7k
    if (!bh || !hrecs)
1076
0
        return -1;
1077
1078
32.7k
    if (refs_changed < 0)
1079
0
        return 0;
1080
1081
    // Grow arrays if necessary
1082
32.7k
    if (bh->n_targets < hrecs->nref) {
1083
1.64k
        char **new_names = realloc(bh->target_name,
1084
1.64k
                                   hrecs->nref * sizeof(*new_names));
1085
1.64k
        if (!new_names)
1086
0
            return -1;
1087
1.64k
        bh->target_name = new_names;
1088
1.64k
        uint32_t *new_lens = realloc(bh->target_len,
1089
1.64k
                                     hrecs->nref * sizeof(*new_lens));
1090
1.64k
        if (!new_lens)
1091
0
            return -1;
1092
1.64k
        bh->target_len = new_lens;
1093
1.64k
    }
1094
1095
    // Update names and lengths where changed
1096
    // hrecs->refs_changed is the first ref that has been updated, so ones
1097
    // before that can be skipped.
1098
32.7k
    int i;
1099
32.7k
    khint_t k;
1100
32.7k
    khash_t(s2i) *long_refs = (khash_t(s2i) *) bh->sdict;
1101
35.8k
    for (i = refs_changed; i < hrecs->nref; i++) {
1102
3.10k
        if (i >= bh->n_targets
1103
3.10k
            || strcmp(bh->target_name[i], hrecs->ref[i].name) != 0) {
1104
3.10k
            if (i < bh->n_targets)
1105
0
                free(bh->target_name[i]);
1106
3.10k
            bh->target_name[i] = strdup(hrecs->ref[i].name);
1107
3.10k
            if (!bh->target_name[i])
1108
0
                return -1;
1109
3.10k
        }
1110
3.10k
        if (hrecs->ref[i].len < UINT32_MAX) {
1111
1.52k
            bh->target_len[i] = hrecs->ref[i].len;
1112
1113
1.52k
            if (!long_refs)
1114
1.44k
                continue;
1115
1116
            // Check if we have an old length, if so remove it.
1117
83
            k = kh_get(s2i, long_refs, bh->target_name[i]);
1118
83
            if (k < kh_end(long_refs))
1119
0
                kh_del(s2i, long_refs, k);
1120
1.57k
        } else {
1121
1.57k
            bh->target_len[i] = UINT32_MAX;
1122
1.57k
            if (bh->hrecs != hrecs) {
1123
                // Called from sam_hdr_dup; need to add sdict entries
1124
936
                if (!long_refs) {
1125
260
                    if (!(bh->sdict = long_refs = kh_init(s2i)))
1126
0
                        return -1;
1127
260
                }
1128
1129
                // Add / update length
1130
936
                int absent;
1131
936
                k = kh_put(s2i, long_refs, bh->target_name[i], &absent);
1132
936
                if (absent < 0)
1133
0
                    return -1;
1134
936
                kh_val(long_refs, k) = hrecs->ref[i].len;
1135
936
            }
1136
1.57k
        }
1137
3.10k
    }
1138
1139
    // Free up any names that have been removed
1140
32.7k
    for (; i < bh->n_targets; i++) {
1141
0
        if (long_refs) {
1142
0
            k = kh_get(s2i, long_refs, bh->target_name[i]);
1143
0
            if (k < kh_end(long_refs))
1144
0
                kh_del(s2i, long_refs, k);
1145
0
        }
1146
0
        free(bh->target_name[i]);
1147
0
    }
1148
1149
32.7k
    bh->n_targets = hrecs->nref;
1150
32.7k
    return 0;
1151
32.7k
}
1152
1153
65
static int rebuild_target_arrays(sam_hdr_t *bh) {
1154
65
    if (!bh || !bh->hrecs)
1155
0
        return -1;
1156
1157
65
    sam_hrecs_t *hrecs = bh->hrecs;
1158
65
    if (hrecs->refs_changed < 0)
1159
0
        return 0;
1160
1161
65
    if (sam_hdr_update_target_arrays(bh, hrecs, hrecs->refs_changed) != 0)
1162
0
        return -1;
1163
1164
65
    hrecs->refs_changed = -1;
1165
65
    return 0;
1166
65
}
1167
1168
/// Populate hrecs refs array from header target_name, target_len arrays
1169
/**
1170
 * @return 0 on success; -1 on failure
1171
 *
1172
 * Pre-fills the refs hash from the target arrays.  For BAM files this
1173
 * will ensure that they are in the correct order as the target arrays
1174
 * are the canonical source for converting target ids to names and lengths.
1175
 *
1176
 * The added entries do not link to a header line. sam_hrecs_update_hashes()
1177
 * will add the links later for lines found in the text header.
1178
 *
1179
 * This should be called before the text header is parsed.
1180
 */
1181
static int sam_hrecs_refs_from_targets_array(sam_hrecs_t *hrecs,
1182
1.02k
                                             const sam_hdr_t *bh) {
1183
1.02k
    int32_t tid = 0;
1184
1185
1.02k
    if (!hrecs || !bh)
1186
0
        return -1;
1187
1188
    // This should always be called before parsing the text header
1189
    // so the ref array should start off empty, and we don't have to try
1190
    // to reconcile any existing data.
1191
1.02k
    if (hrecs->nref > 0) {
1192
0
        hts_log_error("Called with non-empty ref array");
1193
0
        return -1;
1194
0
    }
1195
1196
1.02k
    if (hrecs->ref_sz < bh->n_targets) {
1197
1.02k
        sam_hrec_sq_t *new_ref = realloc(hrecs->ref,
1198
1.02k
                                         bh->n_targets * sizeof(*new_ref));
1199
1.02k
        if (!new_ref)
1200
0
            return -1;
1201
1202
1.02k
        hrecs->ref = new_ref;
1203
1.02k
        hrecs->ref_sz = bh->n_targets;
1204
1.02k
    }
1205
1206
1.02k
    if (kh_grow_to_fit(m_s2i, hrecs->ref_hash, bh->n_targets) != 0)
1207
0
        goto fail;
1208
1209
2.38k
    for (tid = 0; tid < bh->n_targets; tid++) {
1210
1.42k
        khint_t k;
1211
1.42k
        int r;
1212
1.42k
        hrecs->ref[tid].name = string_dup(hrecs->str_pool, bh->target_name[tid]);
1213
1.42k
        if (!hrecs->ref[tid].name) goto fail;
1214
1.42k
        if (bh->target_len[tid] < UINT32_MAX || !bh->sdict) {
1215
1.09k
            hrecs->ref[tid].len  = bh->target_len[tid];
1216
1.09k
        } else {
1217
331
            khash_t(s2i) *long_refs = (khash_t(s2i) *) bh->sdict;
1218
331
            k = kh_get(s2i, long_refs, hrecs->ref[tid].name);
1219
331
            if (k < kh_end(long_refs)) {
1220
331
                hrecs->ref[tid].len = kh_val(long_refs, k);
1221
331
            } else {
1222
0
                hrecs->ref[tid].len = UINT32_MAX;
1223
0
            }
1224
331
        }
1225
1.42k
        hrecs->ref[tid].ty   = NULL;
1226
1.42k
        k = kh_put(m_s2i, hrecs->ref_hash, hrecs->ref[tid].name, &r);
1227
1.42k
        if (r < 0) goto fail;
1228
1.42k
        if (r == 0) {
1229
60
            hts_log_error("Duplicate entry \"%s\" in target list",
1230
60
                            hrecs->ref[tid].name);
1231
60
            return -1;
1232
1.36k
        } else {
1233
1.36k
            kh_val(hrecs->ref_hash, k) = tid;
1234
1.36k
        }
1235
1.42k
    }
1236
964
    hrecs->nref = bh->n_targets;
1237
964
    return 0;
1238
1239
0
 fail: {
1240
0
        int32_t i;
1241
0
        hts_log_error("%s", strerror(errno));
1242
0
        for (i = 0; i < tid; i++) {
1243
0
            khint_t k;
1244
0
            if (!hrecs->ref[i].name) continue;
1245
0
            k = kh_get(m_s2i, hrecs->ref_hash, hrecs->ref[tid].name);
1246
0
            if (k < kh_end(hrecs->ref_hash)) kh_del(m_s2i, hrecs->ref_hash, k);
1247
0
        }
1248
0
        hrecs->nref = 0;
1249
0
        return -1;
1250
1.02k
    }
1251
1.02k
}
1252
1253
/*
1254
 * Add SQ header records for any references in the hrecs->ref array that
1255
 * were added by sam_hrecs_refs_from_targets_array() but have not
1256
 * been linked to an @SQ line by sam_hrecs_update_hashes() yet.
1257
 *
1258
 * This may be needed either because:
1259
 *
1260
 *   - A bam file was read that had entries in its refs list with no
1261
 *     corresponding @SQ line.
1262
 *
1263
 *   - A program constructed a sam_hdr_t which has target_name and target_len
1264
 *     array entries with no corresponding @SQ line in text.
1265
 */
1266
25.7k
static int add_stub_ref_sq_lines(sam_hrecs_t *hrecs) {
1267
25.7k
    int tid;
1268
25.7k
    char len[32];
1269
1270
26.9k
    for (tid = 0; tid < hrecs->nref; tid++) {
1271
1.24k
        if (hrecs->ref[tid].ty == NULL) {
1272
619
            snprintf(len, sizeof(len), "%"PRIhts_pos, hrecs->ref[tid].len);
1273
619
            if (sam_hrecs_add(hrecs, "SQ",
1274
619
                              "SN", hrecs->ref[tid].name,
1275
619
                              "LN", len, NULL) != 0)
1276
8
                return -1;
1277
1278
            // Check that the stub has actually been filled
1279
611
            if(hrecs->ref[tid].ty == NULL) {
1280
0
                hts_log_error("Reference stub with tid=%d, name=\"%s\", len=%"PRIhts_pos" could not be filled",
1281
0
                        tid, hrecs->ref[tid].name, hrecs->ref[tid].len);
1282
0
                return -1;
1283
0
            }
1284
611
        }
1285
1.24k
    }
1286
25.6k
    return 0;
1287
25.7k
}
1288
1289
25.9k
int sam_hdr_fill_hrecs(sam_hdr_t *bh) {
1290
25.9k
    sam_hrecs_t *hrecs = sam_hrecs_new();
1291
1292
25.9k
    if (!hrecs)
1293
0
        return -1;
1294
1295
25.9k
    if (bh->target_name && bh->target_len && bh->n_targets > 0) {
1296
1.02k
        if (sam_hrecs_refs_from_targets_array(hrecs, bh) != 0) {
1297
60
            sam_hrecs_free(hrecs);
1298
60
            return -1;
1299
60
        }
1300
1.02k
    }
1301
1302
    // Parse existing header text
1303
25.8k
    if (bh->text && bh->l_text > 0) {
1304
2.11k
        if (sam_hrecs_parse_lines(hrecs, bh->text, bh->l_text) != 0) {
1305
186
            sam_hrecs_free(hrecs);
1306
186
            return -1;
1307
186
        }
1308
2.11k
    }
1309
1310
25.7k
    if (add_stub_ref_sq_lines(hrecs) < 0) {
1311
8
        sam_hrecs_free(hrecs);
1312
8
        return -1;
1313
8
    }
1314
1315
25.6k
    bh->hrecs = hrecs;
1316
1317
25.6k
    if (hrecs->refs_changed >= 0 && rebuild_target_arrays(bh) != 0)
1318
0
        return -1;
1319
1320
25.6k
    return 0;
1321
25.6k
}
1322
1323
// Check header type is valid according to the SAM specification
1324
1325
2.25M
static int valid_sam_header_type(const char *s) {
1326
2.25M
    if (s[0] != '@') return 0;
1327
2.25M
    switch (s[1]) {
1328
963
    case 'H':
1329
963
        return s[2] == 'D' && s[3] == '\t';
1330
11.8k
    case 'S':
1331
11.8k
        return s[2] == 'Q' && s[3] == '\t';
1332
2.22M
    case 'R':
1333
2.23M
    case 'P':
1334
2.23M
        return s[2] == 'G' && s[3] == '\t';
1335
6.66k
    case 'C':
1336
6.66k
        return s[2] == 'O';
1337
2.25M
    }
1338
6
    return 0;
1339
2.25M
}
1340
1341
/** Populate sam_hdr_t from SAM file content
1342
 *
1343
 * @param hdr empty header struct to be filled
1344
 * @param fp  File to read from
1345
 * @return 0 on success
1346
 *        -1 on failure
1347
 *
1348
 * This function is used to build the header structure when reading SAM files.
1349
 * The lines read from the file are used to create sam_hrecs_t structures.
1350
 * The function also populates sam_hdr_t::text, sam_hdr_t::l_text,
1351
 * sam_hdr_t::target_name and sam_hdr_t::target_len.
1352
 */
1353
13.8k
int sam_hdr_build_from_sam_file(sam_hdr_t *hdr, htsFile* fp) {
1354
13.8k
    kstring_t str = { 0, 0, NULL };
1355
13.8k
    int ret;
1356
13.8k
    int next_c = '@';
1357
13.8k
    sam_hrec_type_t *first_h_type = NULL;
1358
13.8k
    sam_hrec_type_t *last_h_type = NULL;
1359
13.8k
    sam_hrecs_t *hrecs = sam_hrecs_new();
1360
13.8k
    size_t lno = 0;
1361
13.8k
    khint_t sq_count = 0, an_count = 0;
1362
1363
13.8k
    if (!hrecs)
1364
0
        return -1;
1365
1366
13.8k
    hdr->hrecs = hrecs;
1367
1368
2.26M
    while (next_c == '@' && (ret = hts_getline(fp, KS_SEP_LINE, &fp->line)) >= 0) {
1369
2.25M
        sam_hrec_type_t *h_type;
1370
1371
2.25M
        lno++;
1372
2.25M
        if (!fp->line.s || fp->line.s[0] != '@')
1373
57
            break;
1374
1375
2.25M
        if (fp->line.l < 3
1376
2.25M
            || !isalpha_c(fp->line.s[1]) || !isalpha_c(fp->line.s[2])) {
1377
63
            sam_hrecs_error("Header line does not have a two character key",
1378
63
                            fp->line.s, fp->line.l, lno);
1379
63
            goto error;
1380
63
        }
1381
1382
2.25M
        if (fp->line.l == 3 && strncmp(fp->line.s, "@CO", 3) == 0) {
1383
            // HTSlib's original SAM reader let you get away with an untabbed
1384
            // @CO line
1385
246
            kputc('\t', &fp->line);
1386
246
        }
1387
1388
2.25M
        if (!valid_sam_header_type(fp->line.s)) {
1389
33
            hts_log_error("Invalid header line: must start with @HD/@SQ/@RG/@PG/@CO");
1390
33
            warn_if_known_stderr(fp->line.s, fp->line.l);
1391
33
            goto error;
1392
33
        }
1393
1394
2.25M
        h_type = sam_hrecs_parse_single_line(hrecs, fp->line.s, fp->line.l,
1395
2.25M
                                             lno, NULL, &sq_count, &an_count);
1396
2.25M
        if (!h_type)
1397
333
            goto error;
1398
1399
2.25M
        if (h_type->type != TYPEKEY("HD")) {
1400
2.25M
            if (!first_h_type)
1401
13.4k
                first_h_type = h_type;
1402
2.25M
            last_h_type = h_type;
1403
2.25M
        }
1404
1405
2.25M
        if (kputsn(fp->line.s, fp->line.l, &str) < 0)
1406
0
            goto error;
1407
1408
2.25M
        if (kputc('\n', &str) < 0)
1409
0
            goto error;
1410
1411
2.25M
        if (fp->is_bgzf) {
1412
2.21M
            next_c = bgzf_peek(fp->fp.bgzf);
1413
2.21M
        } else {
1414
32.6k
            unsigned char nc;
1415
32.6k
            ssize_t pret = hpeek(fp->fp.hfile, &nc, 1);
1416
32.6k
            next_c = pret > 0 ? nc : pret - 1;
1417
32.6k
        }
1418
2.25M
        if (next_c < -1)
1419
3
            goto error;
1420
2.25M
    }
1421
13.4k
    if (next_c != '@')
1422
13.3k
        fp->line.l = 0;
1423
1424
13.4k
    if (ret < -1)
1425
36
        goto error;
1426
1427
13.4k
    if (sq_count == 0 && fp->fn_aux) {
1428
        // No @SQ lines found.  Try to get them from the fasta index.
1429
0
        kstring_t line = { 0, 0, NULL };
1430
1431
        /* The reference index (.fai) is actually needed here */
1432
0
        char *fai_fn = fp->fn_aux;
1433
0
        char *fn_delim = strstr(fp->fn_aux, HTS_IDX_DELIM);
1434
0
        if (fn_delim)
1435
0
            fai_fn = fn_delim + strlen(HTS_IDX_DELIM);
1436
1437
0
        hFILE* f = hopen(fai_fn, "r");
1438
0
        int e = 0;
1439
0
        if (f == NULL)
1440
0
            goto error;
1441
1442
0
        while (line.l = 0, khgetline(&line, f) >= 0) {
1443
0
            char* tab = strchr(line.s, '\t');
1444
0
            size_t l_start = str.l;
1445
0
            sam_hrec_type_t *h_type;
1446
0
            hts_pos_t ln;
1447
1448
0
            if (tab == NULL)
1449
0
                continue;
1450
1451
0
            ln = strtoll(tab, NULL, 10);
1452
1453
0
            e |= kputs("@SQ\tSN:", &str) < 0;
1454
0
            e |= kputsn(line.s, tab - line.s, &str) < 0;
1455
0
            e |= kputs("\tLN:", &str) < 0;
1456
0
            e |= kputll(ln, &str) < 0;
1457
0
            e |= kputc('\n', &str) < 0;
1458
0
            if (e)
1459
0
                break;
1460
1461
0
            h_type = sam_hrecs_parse_single_line(hrecs, &str.s[l_start],
1462
0
                                                 str.l - l_start,
1463
0
                                                 lno, NULL,
1464
0
                                                 &sq_count, &an_count);
1465
0
            if (!h_type)
1466
0
                goto error;
1467
1468
0
            if (!first_h_type)
1469
0
                first_h_type = h_type;
1470
0
            last_h_type = h_type;
1471
0
        }
1472
1473
0
        ks_free(&line);
1474
0
        if (hclose(f) != 0) {
1475
0
            hts_log_error("Error on closing %s", fai_fn);
1476
0
            e = 1;
1477
0
        }
1478
0
        if (e)
1479
0
            goto error;
1480
0
    }
1481
1482
    // Reserve space in hash tables
1483
13.4k
    if (sq_count) {
1484
        // Hash table should be empty at the moment
1485
8.99k
        if (kh_grow_to_fit(m_s2i, hrecs->ref_hash, sq_count + an_count) < 0)
1486
0
            goto error;
1487
1488
8.99k
        if (hrecs->ref_sz < sq_count) {
1489
8.99k
            sam_hrec_sq_t *new_ref = realloc(hrecs->ref,
1490
8.99k
                                             sizeof(*hrecs->ref) * sq_count);
1491
8.99k
            if (!new_ref)
1492
0
                goto error;
1493
8.99k
            hrecs->ref = new_ref;
1494
8.99k
            hrecs->ref_sz = sq_count;
1495
8.99k
        }
1496
8.99k
    }
1497
1498
    // Update RG/SQ/PG hashes
1499
13.4k
    if (first_h_type) {
1500
13.3k
        sam_hrec_type_t *h_type = first_h_type->global_prev;
1501
20.1k
        do {
1502
20.1k
            h_type = h_type->global_next;
1503
20.1k
            if (-1 == sam_hrecs_update_hashes(hrecs, h_type->type, h_type))
1504
8.84k
                goto error;
1505
20.1k
        } while (h_type != last_h_type);
1506
13.3k
    }
1507
1508
4.57k
    if (str.l == 0)
1509
57
        kputsn("", 0, &str);
1510
4.57k
    hdr->l_text = str.l;
1511
4.57k
    hdr->text = ks_release(&str);
1512
1513
4.57k
    if (sam_hdr_update_target_arrays(hdr, hrecs, 0) < 0)
1514
0
        goto error;
1515
1516
4.57k
    return 0;
1517
1518
9.30k
 error:
1519
9.30k
    ks_free(&str);
1520
9.30k
    return -1;
1521
4.57k
}
1522
1523
/** Remove outdated header text
1524
1525
    @param bh     BAM header
1526
1527
    This is called when API functions have changed the header so that the
1528
    text version is no longer valid.
1529
 */
1530
408
static void redact_header_text(sam_hdr_t *bh) {
1531
408
    assert(bh->hrecs && bh->hrecs->dirty);
1532
408
    bh->l_text = 0;
1533
408
    free(bh->text);
1534
408
    bh->text = NULL;
1535
408
}
1536
1537
/** Find nth header record of a given type
1538
1539
    @param type   Header type (SQ, RG etc.)
1540
    @param idx    0-based index
1541
1542
    @return sam_hrec_type_t pointer to the record on success
1543
            NULL if no record exists with the given type and index
1544
 */
1545
1546
static sam_hrec_type_t *sam_hrecs_find_type_pos(sam_hrecs_t *hrecs,
1547
0
                                                const char *type, int idx) {
1548
0
    sam_hrec_type_t *first, *itr;
1549
1550
0
    if (idx < 0)
1551
0
        return NULL;
1552
1553
0
    if (type[0] == 'S' && type[1] == 'Q')
1554
0
        return idx < hrecs->nref ? hrecs->ref[idx].ty : NULL;
1555
1556
0
    if (type[0] == 'R' && type[1] == 'G')
1557
0
        return idx < hrecs->nrg ? hrecs->rg[idx].ty : NULL;
1558
1559
0
    if (type[0] == 'P' && type[1] == 'G')
1560
0
        return idx < hrecs->npg ? hrecs->pg[idx].ty : NULL;
1561
1562
0
    first = itr = sam_hrecs_find_type_id(hrecs, type, NULL, NULL);
1563
0
    if (!first)
1564
0
        return NULL;
1565
1566
0
    while (idx > 0) {
1567
0
        itr = itr->next;
1568
0
        if (itr == first)
1569
0
            break;
1570
0
        --idx;
1571
0
    }
1572
1573
0
    return idx == 0 ? itr : NULL;
1574
0
}
1575
1576
/* ==== Public methods ==== */
1577
1578
5.55k
size_t sam_hdr_length(sam_hdr_t *bh) {
1579
5.55k
    if (!bh || -1 == sam_hdr_rebuild(bh))
1580
0
        return SIZE_MAX;
1581
1582
5.55k
    return bh->l_text;
1583
5.55k
}
1584
1585
1.70k
const char *sam_hdr_str(sam_hdr_t *bh) {
1586
1.70k
    if (!bh || -1 == sam_hdr_rebuild(bh))
1587
0
        return NULL;
1588
1589
1.70k
    return bh->text;
1590
1.70k
}
1591
1592
0
int sam_hdr_nref(const sam_hdr_t *bh) {
1593
0
    if (!bh)
1594
0
        return -1;
1595
1596
0
    return bh->hrecs ? bh->hrecs->nref : bh->n_targets;
1597
0
}
1598
1599
/*
1600
 * Reconstructs the text representation from the header hash table.
1601
 * Returns 0 on success
1602
 *        -1 on failure
1603
 */
1604
7.25k
int sam_hdr_rebuild(sam_hdr_t *bh) {
1605
7.25k
    sam_hrecs_t *hrecs;
1606
7.25k
    if (!bh)
1607
0
        return -1;
1608
1609
7.25k
    if (!(hrecs = bh->hrecs))
1610
0
        return bh->text ? 0 : -1;
1611
1612
7.25k
    if (hrecs->refs_changed >= 0) {
1613
0
        if (rebuild_target_arrays(bh) < 0) {
1614
0
            hts_log_error("Header target array rebuild has failed");
1615
0
            return -1;
1616
0
        }
1617
0
    }
1618
1619
    /* If header text wasn't changed or header is empty, don't rebuild it. */
1620
7.25k
    if (!hrecs->dirty)
1621
7.24k
        return 0;
1622
1623
17
    if (hrecs->pgs_changed && sam_hdr_link_pg(bh) < 0) {
1624
0
        hts_log_error("Linking @PG lines has failed");
1625
0
        return -1;
1626
0
    }
1627
1628
17
    kstring_t ks = KS_INITIALIZE;
1629
17
    if (sam_hrecs_rebuild_text(hrecs, &ks) != 0) {
1630
0
        ks_free(&ks);
1631
0
        hts_log_error("Header text rebuild has failed");
1632
0
        return -1;
1633
0
    }
1634
1635
17
    hrecs->dirty = 0;
1636
1637
    /* Sync */
1638
17
    free(bh->text);
1639
17
    bh->l_text = ks_len(&ks);
1640
17
    bh->text = ks_release(&ks);
1641
1642
17
    return 0;
1643
17
}
1644
1645
/*
1646
 * Appends a formatted line to an existing SAM header.
1647
 * Line is a full SAM header record, eg "@SQ\tSN:foo\tLN:100", with
1648
 * optional new-line. If it contains more than 1 line then multiple lines
1649
 * will be added in order.
1650
 *
1651
 * Input text is of maximum length len or as terminated earlier by a NUL.
1652
 * len may be 0 if unknown, in which case lines must be NUL-terminated.
1653
 *
1654
 * Returns 0 on success
1655
 *        -1 on failure
1656
 */
1657
7.99k
int sam_hdr_add_lines(sam_hdr_t *bh, const char *lines, size_t len) {
1658
7.99k
    sam_hrecs_t *hrecs;
1659
1660
7.99k
    if (!bh || !lines)
1661
0
        return -1;
1662
1663
7.99k
    if (len == 0 && *lines == '\0')
1664
7.30k
        return 0;
1665
1666
683
    if (!(hrecs = bh->hrecs)) {
1667
683
        if (sam_hdr_fill_hrecs(bh) != 0)
1668
0
            return -1;
1669
683
        hrecs = bh->hrecs;
1670
683
    }
1671
1672
683
    if (sam_hrecs_parse_lines(hrecs, lines, len) != 0)
1673
275
        return -1;
1674
1675
408
    if (hrecs->refs_changed >= 0 && rebuild_target_arrays(bh) != 0)
1676
0
        return -1;
1677
1678
408
    hrecs->dirty = 1;
1679
408
    redact_header_text(bh);
1680
1681
408
    return 0;
1682
408
}
1683
1684
/*
1685
 * Adds a single line to a SAM header.
1686
 * Specify type and one or more key,value pairs, ending with the NULL key.
1687
 * Eg. sam_hdr_add_line(h, "SQ", "ID", "foo", "LN", "100", NULL).
1688
 *
1689
 * Returns 0 on success
1690
 *        -1 on failure
1691
 */
1692
0
int sam_hdr_add_line(sam_hdr_t *bh, const char *type, ...) {
1693
0
    va_list args;
1694
0
    sam_hrecs_t *hrecs;
1695
1696
0
    if (!bh || !type)
1697
0
        return -1;
1698
1699
0
    if (!(hrecs = bh->hrecs)) {
1700
0
        if (sam_hdr_fill_hrecs(bh) != 0)
1701
0
            return -1;
1702
0
        hrecs = bh->hrecs;
1703
0
    }
1704
1705
0
    va_start(args, type);
1706
0
    int ret = sam_hrecs_vadd(hrecs, type, args, NULL);
1707
0
    va_end(args);
1708
1709
0
    if (ret == 0) {
1710
0
        if (hrecs->refs_changed >= 0 && rebuild_target_arrays(bh) != 0)
1711
0
            return -1;
1712
1713
0
        if (hrecs->dirty)
1714
0
            redact_header_text(bh);
1715
0
    }
1716
1717
0
    return ret;
1718
0
}
1719
1720
/*
1721
 * Returns a complete line of formatted text for a specific head type/ID
1722
 * combination. If ID_key is NULL then it returns the first line of the specified
1723
 * type.
1724
 */
1725
int sam_hdr_find_line_id(sam_hdr_t *bh, const char *type,
1726
0
                      const char *ID_key, const char *ID_val, kstring_t *ks) {
1727
0
    sam_hrecs_t *hrecs;
1728
0
    if (!bh || !type)
1729
0
        return -2;
1730
1731
0
    if (!(hrecs = bh->hrecs)) {
1732
0
        if (sam_hdr_fill_hrecs(bh) != 0)
1733
0
            return -2;
1734
0
        hrecs = bh->hrecs;
1735
0
    }
1736
1737
0
    sam_hrec_type_t *ty = sam_hrecs_find_type_id(hrecs, type, ID_key, ID_val);
1738
0
    if (!ty)
1739
0
        return -1;
1740
1741
0
    ks->l = 0;
1742
0
    if (build_header_line(ty, ks) < 0) {
1743
0
        return -2;
1744
0
    }
1745
1746
0
    return 0;
1747
0
}
1748
1749
int sam_hdr_find_line_pos(sam_hdr_t *bh, const char *type,
1750
0
                          int pos, kstring_t *ks) {
1751
0
    sam_hrecs_t *hrecs;
1752
0
    if (!bh || !type)
1753
0
        return -2;
1754
1755
0
    if (!(hrecs = bh->hrecs)) {
1756
0
        if (sam_hdr_fill_hrecs(bh) != 0)
1757
0
            return -2;
1758
0
        hrecs = bh->hrecs;
1759
0
    }
1760
1761
0
    sam_hrec_type_t *ty = sam_hrecs_find_type_pos(hrecs, type, pos);
1762
0
    if (!ty)
1763
0
        return -1;
1764
1765
0
    ks->l = 0;
1766
0
    if (build_header_line(ty, ks) < 0) {
1767
0
        return -2;
1768
0
    }
1769
1770
0
    return 0;
1771
0
}
1772
1773
/*
1774
 * Remove a line from the header by specifying a tag:value that uniquely
1775
 * identifies a line, i.e. the @SQ line containing "SN:ref1".
1776
 * @SQ line is uniquely identified by SN tag.
1777
 * @RG line is uniquely identified by ID tag.
1778
 * @PG line is uniquely identified by ID tag.
1779
 *
1780
 * Returns 0 on success and -1 on error
1781
 */
1782
1783
0
int sam_hdr_remove_line_id(sam_hdr_t *bh, const char *type, const char *ID_key, const char *ID_value) {
1784
0
    sam_hrecs_t *hrecs;
1785
0
    if (!bh || !type)
1786
0
        return -1;
1787
1788
0
    if (!(hrecs = bh->hrecs)) {
1789
0
        if (sam_hdr_fill_hrecs(bh) != 0)
1790
0
            return -1;
1791
0
        hrecs = bh->hrecs;
1792
0
    }
1793
1794
0
    if (!strncmp(type, "PG", 2)) {
1795
0
        hts_log_warning("Removing PG lines is not supported!");
1796
0
        return -1;
1797
0
    }
1798
1799
0
    sam_hrec_type_t *type_found = sam_hrecs_find_type_id(hrecs, type, ID_key, ID_value);
1800
0
    if (!type_found)
1801
0
        return 0;
1802
1803
0
    int ret = sam_hrecs_remove_line(hrecs, type, type_found, 1);
1804
0
    if (ret == 0) {
1805
0
        if (hrecs->refs_changed >= 0 && rebuild_target_arrays(bh) != 0)
1806
0
            return -1;
1807
1808
0
        if (hrecs->dirty)
1809
0
            redact_header_text(bh);
1810
0
    }
1811
1812
0
    return ret;
1813
0
}
1814
1815
/*
1816
 * Remove a line from the header by specifying the position in the type
1817
 * group, i.e. 3rd @SQ line.
1818
 *
1819
 * Returns 0 on success and -1 on error
1820
 */
1821
1822
0
int sam_hdr_remove_line_pos(sam_hdr_t *bh, const char *type, int position) {
1823
0
    sam_hrecs_t *hrecs;
1824
0
    if (!bh || !type || position < 0)
1825
0
        return -1;
1826
1827
0
    if (!(hrecs = bh->hrecs)) {
1828
0
        if (sam_hdr_fill_hrecs(bh) != 0)
1829
0
            return -1;
1830
0
        hrecs = bh->hrecs;
1831
0
    }
1832
1833
0
    if (!strncmp(type, "PG", 2)) {
1834
0
        hts_log_warning("Removing PG lines is not supported!");
1835
0
        return -1;
1836
0
    }
1837
1838
0
    sam_hrec_type_t *type_found = sam_hrecs_find_type_pos(hrecs, type,
1839
0
                                                          position);
1840
0
    if (!type_found)
1841
0
        return -1;
1842
1843
0
    int ret = sam_hrecs_remove_line(hrecs, type, type_found, 1);
1844
0
    if (ret == 0) {
1845
0
        if (hrecs->refs_changed >= 0 && rebuild_target_arrays(bh) != 0)
1846
0
            return -1;
1847
1848
0
        if (hrecs->dirty)
1849
0
            redact_header_text(bh);
1850
0
    }
1851
1852
0
    return ret;
1853
0
}
1854
1855
/*
1856
 * Check if sam_hdr_update_line() is being used to change the name of
1857
 * a record, and if the new name is going to clash with an existing one.
1858
 *
1859
 * If ap includes repeated keys, we go with the last one as sam_hrecs_vupdate()
1860
 * will go through them all and leave the final one in place.
1861
 *
1862
 * Returns 0 if the name does not change
1863
 *         1 if the name changes but does not clash
1864
 *        -1 if the name changes and the new one is already in use
1865
 */
1866
static int check_for_name_update(sam_hrecs_t *hrecs, sam_hrec_type_t *rec,
1867
                                 va_list ap, const char **old_name,
1868
                                 const char **new_name,
1869
                                 char id_tag_out[3],
1870
0
                                 khash_t(m_s2i) **hash_out) {
1871
0
    char *key, *val;
1872
0
    const char *id_tag;
1873
0
    sam_hrec_tag_t *tag, *prev;
1874
0
    khash_t(m_s2i) *hash;
1875
0
    khint_t k;
1876
0
    int ret = 0;
1877
1878
0
    if        (rec->type == TYPEKEY("SQ")) {
1879
0
        id_tag = "SN"; hash = hrecs->ref_hash;
1880
0
    } else if (rec->type == TYPEKEY("RG")) {
1881
0
        id_tag = "ID"; hash = hrecs->rg_hash;
1882
0
    } else if (rec->type == TYPEKEY("PG")) {
1883
0
        id_tag = "ID"; hash = hrecs->pg_hash;
1884
0
    } else {
1885
0
        return 0;
1886
0
    }
1887
1888
0
    memcpy(id_tag_out, id_tag, 3);
1889
0
    *hash_out = hash;
1890
1891
0
    tag = sam_hrecs_find_key(rec, id_tag, &prev);
1892
0
    if (!tag)
1893
0
        return 0;
1894
0
    assert(tag->len >= 3);
1895
0
    *old_name = tag->str + 3;
1896
1897
0
    while ((key = va_arg(ap, char *)) != NULL) {
1898
0
        val = va_arg(ap, char *);
1899
0
        if (!val) val = "";
1900
0
        if (strcmp(key, id_tag) != 0) continue;
1901
0
        if (strcmp(val, tag->str + 3) == 0) { ret = 0; continue; }
1902
0
        k = kh_get(m_s2i, hash, val);
1903
0
        ret = k < kh_end(hash) ? -1 : 1;
1904
0
        *new_name = val;
1905
0
    }
1906
0
    return ret;
1907
0
}
1908
1909
int sam_hdr_update_line(sam_hdr_t *bh, const char *type,
1910
0
        const char *ID_key, const char *ID_value, ...) {
1911
0
    sam_hrecs_t *hrecs;
1912
0
    if (!bh)
1913
0
        return -1;
1914
1915
0
    if (!(hrecs = bh->hrecs)) {
1916
0
        if (sam_hdr_fill_hrecs(bh) != 0)
1917
0
            return -1;
1918
0
        hrecs = bh->hrecs;
1919
0
    }
1920
1921
0
    int ret, rename;
1922
0
    sam_hrec_type_t *ty = sam_hrecs_find_type_id(hrecs, type, ID_key, ID_value);
1923
0
    if (!ty)
1924
0
        return -1;
1925
1926
0
    va_list args;
1927
0
    const char *old_name = "?", *new_name = "?";
1928
0
    char id_tag[3];
1929
0
    khash_t(m_s2i) *hash = NULL;
1930
0
    va_start(args, ID_value);
1931
0
    rename = check_for_name_update(hrecs, ty, args,
1932
0
                                   &old_name, &new_name, id_tag, &hash);
1933
0
    va_end(args);
1934
0
    if (rename < 0) {
1935
0
        hts_log_error("Cannot rename @%s \"%s\" to \"%s\" : already exists",
1936
0
                      type, old_name, new_name);
1937
0
        return -1;
1938
0
    }
1939
0
    if (rename > 0 && TYPEKEY(type) == TYPEKEY("PG")) {
1940
        // This is just too complicated
1941
0
        hts_log_error("Renaming @PG records is not supported");
1942
0
        return -1;
1943
0
    }
1944
0
    va_start(args, ID_value);
1945
0
    ret = sam_hrecs_vupdate(hrecs, ty, args);
1946
0
    va_end(args);
1947
1948
0
    if (ret)
1949
0
        return ret;
1950
1951
    // TODO Account for @SQ-AN altnames
1952
1953
0
    if (rename) {
1954
        // Adjust the hash table to point to the new name
1955
        // sam_hrecs_update_hashes() should sort out everything else
1956
0
        khint_t k = kh_get(m_s2i, hash, old_name);
1957
0
        sam_hrec_tag_t *new_tag = sam_hrecs_find_key(ty, id_tag, NULL);
1958
0
        int r, pos;
1959
0
        assert(k < kh_end(hash));        // Or we wouldn't have found it earlier
1960
0
        assert(new_tag && new_tag->str); // id_tag should exist
1961
0
        assert(new_tag->len > 3);
1962
0
        pos = kh_val(hash, k);
1963
0
        kh_del(m_s2i, hash, k);
1964
0
        k = kh_put(m_s2i, hash, new_tag->str + 3, &r);
1965
0
        if (r < 1) {
1966
0
            hts_log_error("Failed to rename item in hash table");
1967
0
            return -1;
1968
0
        }
1969
0
        kh_val(hash, k) = pos;
1970
0
    }
1971
1972
0
    ret = sam_hrecs_update_hashes(hrecs, TYPEKEY(type), ty);
1973
1974
0
    if (!ret && hrecs->refs_changed >= 0)
1975
0
        ret = rebuild_target_arrays(bh);
1976
1977
0
    if (!ret && hrecs->dirty)
1978
0
        redact_header_text(bh);
1979
1980
0
    return ret;
1981
0
}
1982
1983
0
static int rebuild_hash(sam_hrecs_t *hrecs, const char *type) {
1984
0
    sam_hrec_type_t *head, *step;
1985
0
    khiter_t k;
1986
1987
0
    if (strncmp(type, "SQ", 2) == 0) {
1988
0
        hrecs->nref = 0;
1989
0
        kh_clear(m_s2i, hrecs->ref_hash);
1990
0
    } else if (strncmp(type, "RG", 2) == 0) {
1991
0
        hrecs->nrg = 0;
1992
0
        kh_clear(m_s2i, hrecs->rg_hash);
1993
0
    }
1994
1995
0
    k = kh_get(sam_hrecs_t, hrecs->h, TYPEKEY(type));
1996
1997
0
    if (k != kh_end(hrecs->h)) { // something to rebuild
1998
0
        head = kh_val(hrecs->h, k);
1999
0
        step = head;
2000
2001
0
        do {
2002
0
            if (sam_hrecs_update_hashes(hrecs, TYPEKEY(type), step) == -1) {
2003
0
                hts_log_error("Unable to rebuild hashes");
2004
0
                return -1;
2005
0
            }
2006
2007
0
            step = step->next;
2008
0
        } while (step != head);
2009
0
    }
2010
2011
0
    return 0;
2012
0
}
2013
2014
0
int sam_hdr_remove_except(sam_hdr_t *bh, const char *type, const char *ID_key, const char *ID_value) {
2015
0
    sam_hrecs_t *hrecs;
2016
0
    if (!bh || !type)
2017
0
        return -1;
2018
2019
0
    if (!(hrecs = bh->hrecs)) {
2020
0
        if (sam_hdr_fill_hrecs(bh) != 0)
2021
0
            return -1;
2022
0
        hrecs = bh->hrecs;
2023
0
    }
2024
2025
0
    sam_hrec_type_t *step;
2026
0
    int ret = 1, remove_all = (ID_key == NULL);
2027
2028
0
    if (!strncmp(type, "PG", 2) || !strncmp(type, "CO", 2)) {
2029
0
        hts_log_warning("Removing PG or CO lines is not supported!");
2030
0
        return -1;
2031
0
    }
2032
2033
0
    sam_hrec_type_t *type_found = sam_hrecs_find_type_id(hrecs, type, ID_key, ID_value);
2034
0
    if (!type_found) { // remove all line of this type
2035
0
        khint_t k = kh_get(sam_hrecs_t, hrecs->h, TYPEKEY(type));
2036
0
        if (k == kh_end(hrecs->h))
2037
0
            return 0;
2038
0
        type_found =  kh_val(hrecs->h, k);
2039
0
        if (!type_found)
2040
0
            return 0;
2041
0
        remove_all = 1;
2042
0
    }
2043
2044
0
    step = type_found->next;
2045
0
    while (step != type_found) {
2046
0
        sam_hrec_type_t *to_remove = step;
2047
0
        step = step->next;
2048
0
        ret &= sam_hrecs_remove_line(hrecs, type, to_remove, 0);
2049
0
    }
2050
2051
0
    if (remove_all)
2052
0
        ret &= sam_hrecs_remove_line(hrecs, type, type_found, 0);
2053
2054
    /* if RG or SQ, delete then rebuild the hashes (as it is faster
2055
       to rebuild than delete one by one).
2056
    */
2057
2058
0
    if ((strncmp(type, "SQ", 2) == 0) || (strncmp(type, "RG", 2) == 0)) {
2059
0
        if (rebuild_hash(hrecs, type)) {
2060
0
            return -1;
2061
0
        }
2062
0
    }
2063
2064
0
    if (!ret && hrecs->dirty)
2065
0
        redact_header_text(bh);
2066
2067
0
    return 0;
2068
0
}
2069
2070
0
int sam_hdr_remove_lines(sam_hdr_t *bh, const char *type, const char *id, void *vrh) {
2071
0
    sam_hrecs_t *hrecs;
2072
0
    rmhash_t *rh = (rmhash_t *)vrh;
2073
2074
0
    if (!bh || !type)
2075
0
        return -1;
2076
0
    if (!rh) // remove all lines
2077
0
        return sam_hdr_remove_except(bh, type, NULL, NULL);
2078
0
    if (!id)
2079
0
        return -1;
2080
2081
0
    if (!(hrecs = bh->hrecs)) {
2082
0
        if (sam_hdr_fill_hrecs(bh) != 0)
2083
0
            return -1;
2084
0
        hrecs = bh->hrecs;
2085
0
    }
2086
2087
0
    khint_t k = kh_get(sam_hrecs_t, hrecs->h, TYPEKEY(type));
2088
0
    if (k == kh_end(hrecs->h)) // nothing to remove from
2089
0
        return 0;
2090
2091
0
    sam_hrec_type_t *head = kh_val(hrecs->h, k);
2092
0
    if (!head) {
2093
0
        hts_log_error("Header inconsistency");
2094
0
        return -1;
2095
0
    }
2096
2097
0
    int ret = 0;
2098
0
    sam_hrec_type_t *step = head->next;
2099
0
    while (step != head) {
2100
0
        sam_hrec_tag_t *tag = sam_hrecs_find_key(step, id, NULL);
2101
0
        if (tag && tag->str && tag->len >= 3) {
2102
0
           k = kh_get(rm, rh, tag->str+3);
2103
0
           if (k == kh_end(rh)) { // value is not in the hash table, so remove
2104
0
               sam_hrec_type_t *to_remove = step;
2105
0
               step = step->next;
2106
0
               ret |= sam_hrecs_remove_line(hrecs, type, to_remove, 0);
2107
0
           } else {
2108
0
               step = step->next;
2109
0
           }
2110
0
        } else { // tag is not on the line, so skip to next line
2111
0
            step = step->next;
2112
0
        }
2113
0
    }
2114
2115
    // process the first line
2116
0
    sam_hrec_tag_t * tag = sam_hrecs_find_key(head, id, NULL);
2117
0
    if (tag && tag->str && tag->len >= 3) {
2118
0
       k = kh_get(rm, rh, tag->str+3);
2119
0
       if (k == kh_end(rh)) { // value is not in the hash table, so remove
2120
0
           sam_hrec_type_t *to_remove = head;
2121
0
           head = head->next;
2122
0
           ret |= sam_hrecs_remove_line(hrecs, type, to_remove, 0);
2123
0
       }
2124
0
    }
2125
2126
    /* if RG or SQ, delete then rebuild the hashes (as it is faster
2127
       to rebuild than delete one by one).
2128
    */
2129
2130
0
    if ((strncmp(type, "SQ", 2) == 0) || (strncmp(type, "RG", 2) == 0)) {
2131
0
        if (rebuild_hash(hrecs, type)) {
2132
0
            return -1;
2133
0
        }
2134
0
    }
2135
2136
0
    if (!ret && hrecs->dirty)
2137
0
        redact_header_text(bh);
2138
2139
0
    return ret;
2140
0
}
2141
2142
16.9k
int sam_hdr_count_lines(sam_hdr_t *bh, const char *type) {
2143
16.9k
    int count;
2144
16.9k
    sam_hrec_type_t *first_ty, *itr_ty;
2145
2146
16.9k
    if (!bh || !type)
2147
0
        return -1;
2148
2149
16.9k
    if (!bh->hrecs) {
2150
12.3k
        if (sam_hdr_fill_hrecs(bh) != 0)
2151
177
            return -1;
2152
12.3k
    }
2153
2154
    // Deal with types that have counts
2155
16.7k
    switch (type[0]) {
2156
16.7k
    case 'S':
2157
16.7k
        if (type[1] == 'Q')
2158
16.7k
            return bh->hrecs->nref;
2159
0
        break;
2160
0
    case 'R':
2161
0
        if (type[1] == 'G')
2162
0
            return bh->hrecs->nrg;
2163
0
        break;
2164
0
    case 'P':
2165
0
        if (type[1] == 'G')
2166
0
            return bh->hrecs->npg;
2167
0
        break;
2168
0
    default:
2169
0
        break;
2170
16.7k
    }
2171
2172
0
    first_ty = sam_hrecs_find_type_id(bh->hrecs, type, NULL, NULL);
2173
0
    if (!first_ty)
2174
0
        return 0;
2175
2176
0
    count = 1;
2177
0
    for (itr_ty = first_ty->next;
2178
0
         itr_ty && itr_ty != first_ty; itr_ty = itr_ty->next) {
2179
0
        count++;
2180
0
    }
2181
2182
0
    return count;
2183
0
}
2184
2185
int sam_hdr_line_index(sam_hdr_t *bh,
2186
                       const char *type,
2187
0
                       const char *key) {
2188
0
    sam_hrecs_t *hrecs;
2189
0
    if (!bh || !type || !key)
2190
0
        return -2;
2191
2192
0
    if (!(hrecs = bh->hrecs)) {
2193
0
        if (sam_hdr_fill_hrecs(bh) != 0)
2194
0
            return -2;
2195
0
        hrecs = bh->hrecs;
2196
0
    }
2197
2198
0
    khint_t k;
2199
0
    int idx = -1;
2200
0
    switch (type[0]) {
2201
0
    case 'S':
2202
0
        if (type[1] == 'Q') {
2203
0
            k = kh_get(m_s2i, hrecs->ref_hash, key);
2204
0
            if (k != kh_end(hrecs->ref_hash))
2205
0
                idx = kh_val(hrecs->ref_hash, k);
2206
0
        } else {
2207
0
            hts_log_warning("Type '%s' not supported. Only @SQ, @RG and @PG lines are indexed", type);
2208
0
        }
2209
0
        break;
2210
0
    case 'R':
2211
0
        if (type[1] == 'G') {
2212
0
            k = kh_get(m_s2i, hrecs->rg_hash, key);
2213
0
            if (k != kh_end(hrecs->rg_hash))
2214
0
                idx = kh_val(hrecs->rg_hash, k);
2215
0
        } else {
2216
0
            hts_log_warning("Type '%s' not supported. Only @SQ, @RG and @PG lines are indexed", type);
2217
0
        }
2218
0
        break;
2219
0
    case 'P':
2220
0
        if (type[1] == 'G') {
2221
0
            k = kh_get(m_s2i, hrecs->pg_hash, key);
2222
0
            if (k != kh_end(hrecs->pg_hash))
2223
0
                idx = kh_val(hrecs->pg_hash, k);
2224
0
        } else {
2225
0
            hts_log_warning("Type '%s' not supported. Only @SQ, @RG and @PG lines are indexed", type);
2226
0
        }
2227
0
        break;
2228
0
    default:
2229
0
        hts_log_warning("Type '%s' not supported. Only @SQ, @RG and @PG lines are indexed", type);
2230
0
    }
2231
2232
0
    return idx;
2233
0
}
2234
2235
const char *sam_hdr_line_name(sam_hdr_t *bh,
2236
                              const char *type,
2237
0
                              int pos) {
2238
0
    sam_hrecs_t *hrecs;
2239
0
    if (!bh || !type || pos < 0)
2240
0
        return NULL;
2241
2242
0
    if (!(hrecs = bh->hrecs)) {
2243
0
        if (sam_hdr_fill_hrecs(bh) != 0)
2244
0
            return NULL;
2245
0
        hrecs = bh->hrecs;
2246
0
    }
2247
2248
0
    switch (type[0]) {
2249
0
    case 'S':
2250
0
        if (type[1] == 'Q') {
2251
0
            if (pos < hrecs->nref)
2252
0
                return hrecs->ref[pos].name;
2253
0
        } else {
2254
0
            hts_log_warning("Type '%s' not supported. Only @SQ, @RG and @PG lines are indexed", type);
2255
0
        }
2256
0
        break;
2257
0
    case 'R':
2258
0
        if (type[1] == 'G') {
2259
0
            if (pos < hrecs->nrg)
2260
0
                return hrecs->rg[pos].name;
2261
0
        } else {
2262
0
            hts_log_warning("Type '%s' not supported. Only @SQ, @RG and @PG lines are indexed", type);
2263
0
        }
2264
0
        break;
2265
0
    case 'P':
2266
0
        if (type[1] == 'G') {
2267
0
            if (pos < hrecs->npg)
2268
0
                return hrecs->pg[pos].name;
2269
0
        } else {
2270
0
            hts_log_warning("Type '%s' not supported. Only @SQ, @RG and @PG lines are indexed", type);
2271
0
        }
2272
0
        break;
2273
0
    default:
2274
0
        hts_log_warning("Type '%s' not supported. Only @SQ, @RG and @PG lines are indexed", type);
2275
0
    }
2276
2277
0
    return NULL;
2278
0
}
2279
2280
/* ==== Key:val level methods ==== */
2281
2282
int sam_hdr_find_tag_id(sam_hdr_t *bh,
2283
                     const char *type,
2284
                     const char *ID_key,
2285
                     const char *ID_value,
2286
                     const char *key,
2287
0
                     kstring_t *ks) {
2288
0
    sam_hrecs_t *hrecs;
2289
0
    if (!bh || !type || !key)
2290
0
        return -2;
2291
2292
0
    if (!(hrecs = bh->hrecs)) {
2293
0
        if (sam_hdr_fill_hrecs(bh) != 0)
2294
0
            return -2;
2295
0
        hrecs = bh->hrecs;
2296
0
    }
2297
2298
0
    sam_hrec_type_t *ty = sam_hrecs_find_type_id(hrecs, type, ID_key, ID_value);
2299
0
    if (!ty)
2300
0
        return -1;
2301
2302
0
    sam_hrec_tag_t *tag = sam_hrecs_find_key(ty, key, NULL);
2303
0
    if (!tag || !tag->str || tag->len < 4)
2304
0
        return -1;
2305
2306
0
    ks->l = 0;
2307
0
    if (kputsn(tag->str+3, tag->len-3, ks) == EOF) {
2308
0
        return -2;
2309
0
    }
2310
2311
0
    return 0;
2312
0
}
2313
2314
int sam_hdr_find_tag_pos(sam_hdr_t *bh,
2315
                     const char *type,
2316
                     int pos,
2317
                     const char *key,
2318
0
                     kstring_t *ks) {
2319
0
    sam_hrecs_t *hrecs;
2320
0
    if (!bh || !type || !key)
2321
0
        return -2;
2322
2323
0
    if (!(hrecs = bh->hrecs)) {
2324
0
        if (sam_hdr_fill_hrecs(bh) != 0)
2325
0
            return -2;
2326
0
        hrecs = bh->hrecs;
2327
0
    }
2328
2329
0
    sam_hrec_type_t *ty = sam_hrecs_find_type_pos(hrecs, type, pos);
2330
0
    if (!ty)
2331
0
        return -1;
2332
2333
0
    sam_hrec_tag_t *tag = sam_hrecs_find_key(ty, key, NULL);
2334
0
    if (!tag || !tag->str || tag->len < 4)
2335
0
        return -1;
2336
2337
0
    ks->l = 0;
2338
0
    if (kputsn(tag->str+3, tag->len-3, ks) == EOF) {
2339
0
        return -2;
2340
0
    }
2341
2342
0
    return 0;
2343
0
}
2344
2345
int sam_hdr_remove_tag_id(sam_hdr_t *bh,
2346
        const char *type,
2347
        const char *ID_key,
2348
        const char *ID_value,
2349
0
        const char *key) {
2350
0
    sam_hrecs_t *hrecs;
2351
0
    if (!bh || !type || !key)
2352
0
        return -1;
2353
2354
0
    if (!(hrecs = bh->hrecs)) {
2355
0
        if (sam_hdr_fill_hrecs(bh) != 0)
2356
0
            return -1;
2357
0
        hrecs = bh->hrecs;
2358
0
    }
2359
2360
0
    sam_hrec_type_t *ty = sam_hrecs_find_type_id(hrecs, type, ID_key, ID_value);
2361
0
    if (!ty)
2362
0
        return -1;
2363
2364
0
    int ret = sam_hrecs_remove_key(hrecs, ty, key);
2365
0
    if (!ret && hrecs->dirty)
2366
0
        redact_header_text(bh);
2367
2368
0
    return ret;
2369
0
}
2370
2371
/*
2372
 * Reconstructs a kstring from the header hash table.
2373
 * Returns 0 on success
2374
 *        -1 on failure
2375
 */
2376
39.2k
int sam_hrecs_rebuild_text(const sam_hrecs_t *hrecs, kstring_t *ks) {
2377
39.2k
    ks->l = 0;
2378
2379
39.2k
    if (!hrecs->h || !hrecs->h->size) {
2380
28.8k
        return kputsn("", 0, ks) >= 0 ? 0 : -1;
2381
28.8k
    }
2382
10.3k
    if (sam_hrecs_rebuild_lines(hrecs, ks) != 0)
2383
0
        return -1;
2384
2385
10.3k
    return 0;
2386
10.3k
}
2387
2388
/*
2389
 * Looks up a reference sequence by name and returns the numerical ID.
2390
 * Returns -1 if unknown reference; -2 if header could not be parsed.
2391
 */
2392
9.61k
int sam_hdr_name2tid(sam_hdr_t *bh, const char *ref) {
2393
9.61k
    sam_hrecs_t *hrecs;
2394
9.61k
    khint_t k;
2395
2396
9.61k
    if (!bh)
2397
0
        return -1;
2398
2399
9.61k
    if (!(hrecs = bh->hrecs)) {
2400
0
        if (sam_hdr_fill_hrecs(bh) != 0)
2401
0
            return -2;
2402
0
        hrecs = bh->hrecs;
2403
0
    }
2404
2405
9.61k
    if (!hrecs->ref_hash)
2406
0
        return -1;
2407
2408
9.61k
    k = kh_get(m_s2i, hrecs->ref_hash, ref);
2409
9.61k
    return k == kh_end(hrecs->ref_hash) ? -1 : kh_val(hrecs->ref_hash, k);
2410
9.61k
}
2411
2412
0
const char *sam_hdr_tid2name(const sam_hdr_t *h, int tid) {
2413
0
    sam_hrecs_t *hrecs;
2414
2415
0
    if (!h || tid < 0)
2416
0
        return NULL;
2417
2418
0
    if ((hrecs = h->hrecs) != NULL && tid < hrecs->nref) {
2419
0
        return hrecs->ref[tid].name;
2420
0
    } else {
2421
0
        if (tid < h->n_targets)
2422
0
            return h->target_name[tid];
2423
0
    }
2424
2425
0
    return NULL;
2426
0
}
2427
2428
0
hts_pos_t sam_hdr_tid2len(const sam_hdr_t *h, int tid) {
2429
0
    sam_hrecs_t *hrecs;
2430
2431
0
    if (!h || tid < 0)
2432
0
        return 0;
2433
2434
0
    if ((hrecs = h->hrecs) != NULL && tid < hrecs->nref) {
2435
0
        return hrecs->ref[tid].len;
2436
0
    } else {
2437
0
        if (tid < h->n_targets) {
2438
0
            if (h->target_len[tid] < UINT32_MAX || !h->sdict) {
2439
0
                return h->target_len[tid];
2440
0
            } else {
2441
0
                khash_t(s2i) *long_refs = (khash_t(s2i) *) h->sdict;
2442
0
                khint_t k = kh_get(s2i, long_refs, h->target_name[tid]);
2443
0
                if (k < kh_end(long_refs)) {
2444
0
                    return kh_val(long_refs, k);
2445
0
                } else {
2446
0
                    return UINT32_MAX;
2447
0
                }
2448
0
            }
2449
0
        }
2450
0
    }
2451
2452
0
    return 0;
2453
0
}
2454
2455
/*
2456
 * Fixes any PP links in @PG headers.
2457
 * If the entries are in order then this doesn't need doing, but in case
2458
 * our header is out of order this goes through the hrecs->pg[] array
2459
 * setting the prev_id field.
2460
 *
2461
 * Note we can have multiple complete chains. This code should identify the
2462
 * tails of these chains as these are the entries we have to link to in
2463
 * subsequent PP records.
2464
 *
2465
 * Returns 0 on success
2466
 *        -1 on failure (indicating broken PG/PP records)
2467
 */
2468
0
static int sam_hdr_link_pg(sam_hdr_t *bh) {
2469
0
    sam_hrecs_t *hrecs;
2470
0
    int i, j, ret = 0, *new_pg_end;
2471
2472
0
    if (!bh)
2473
0
        return -1;
2474
2475
0
    if (!(hrecs = bh->hrecs)) {
2476
0
        if (sam_hdr_fill_hrecs(bh) != 0)
2477
0
            return -1;
2478
0
        hrecs = bh->hrecs;
2479
0
    }
2480
2481
0
    if (!hrecs->pgs_changed || !hrecs->npg)
2482
0
        return 0;
2483
2484
0
    hrecs->npg_end_alloc = hrecs->npg;
2485
0
    new_pg_end = realloc(hrecs->pg_end, hrecs->npg * sizeof(*new_pg_end));
2486
0
    if (!new_pg_end)
2487
0
        return -1;
2488
0
    hrecs->pg_end = new_pg_end;
2489
0
    int *chain_size = calloc(hrecs->npg, sizeof(int));
2490
0
    if (!chain_size)
2491
0
        return -1;
2492
2493
0
    for (i = 0; i < hrecs->npg; i++)
2494
0
        hrecs->pg_end[i] = i;
2495
2496
0
    for (i = 0; i < hrecs->npg; i++) {
2497
0
        khint_t k;
2498
0
        sam_hrec_tag_t *tag;
2499
2500
0
        assert(hrecs->pg[i].ty != NULL);
2501
0
        for (tag = hrecs->pg[i].ty->tag; tag; tag = tag->next) {
2502
0
            if (tag->str[0] == 'P' && tag->str[1] == 'P')
2503
0
                break;
2504
0
        }
2505
0
        if (!tag) {
2506
            /* Chain start points */
2507
0
            continue;
2508
0
        }
2509
2510
0
        k = kh_get(m_s2i, hrecs->pg_hash, tag->str+3);
2511
2512
0
        if (k == kh_end(hrecs->pg_hash)) {
2513
0
            hts_log_warning("PG line with ID:%s has a PP link to missing program '%s'",
2514
0
                    hrecs->pg[i].name, tag->str+3);
2515
0
            continue;
2516
0
        }
2517
2518
0
        int pp_idx = kh_val(hrecs->pg_hash, k);
2519
0
        if (pp_idx == i) {
2520
0
            hts_log_warning("PG line with ID:%s has a PP link to itself",
2521
0
                            hrecs->pg[i].name);
2522
0
            continue;
2523
0
        }
2524
2525
0
        hrecs->pg[i].prev_id = hrecs->pg[pp_idx].id;
2526
0
        hrecs->pg_end[pp_idx] = -1;
2527
0
        chain_size[i] = chain_size[pp_idx]+1;
2528
0
    }
2529
2530
0
    int last_end = -1;
2531
0
    for (i = j = 0; i < hrecs->npg; i++) {
2532
0
        if (hrecs->pg_end[i] != -1) {
2533
0
            last_end = hrecs->pg_end[i];
2534
0
            if (chain_size[i] > 0)
2535
0
                hrecs->pg_end[j++] = hrecs->pg_end[i];
2536
0
        }
2537
0
    }
2538
    /* Only leafs? Choose the last one! */
2539
0
    if (!j && hrecs->npg_end > 0 && last_end >= 0) {
2540
0
        hrecs->pg_end[0] = last_end;
2541
0
        j = 1;
2542
0
    }
2543
2544
0
    hrecs->npg_end = j;
2545
0
    hrecs->pgs_changed = 0;
2546
2547
    /* mark as dirty or empty for rebuild */
2548
0
    hrecs->dirty = 1;
2549
0
    redact_header_text(bh);
2550
0
    free(chain_size);
2551
2552
0
    return ret;
2553
0
}
2554
2555
/*
2556
 * Returns a unique ID from a base name.
2557
 *
2558
 * The value returned is valid until the next call to
2559
 * this function.
2560
 */
2561
0
const char *sam_hdr_pg_id(sam_hdr_t *bh, const char *name) {
2562
0
    sam_hrecs_t *hrecs;
2563
0
    size_t name_len;
2564
0
    const size_t name_extra = 17;
2565
0
    if (!bh || !name)
2566
0
        return NULL;
2567
2568
0
    if (!(hrecs = bh->hrecs)) {
2569
0
        if (sam_hdr_fill_hrecs(bh) != 0)
2570
0
            return NULL;
2571
0
        hrecs = bh->hrecs;
2572
0
    }
2573
2574
0
    khint_t k = kh_get(m_s2i, hrecs->pg_hash, name);
2575
0
    if (k == kh_end(hrecs->pg_hash))
2576
0
        return name;
2577
2578
0
    name_len = strlen(name);
2579
0
    if (name_len > 1000) name_len = 1000;
2580
0
    if (hrecs->ID_buf_sz < name_len + name_extra) {
2581
0
        char *new_ID_buf = realloc(hrecs->ID_buf, name_len + name_extra);
2582
0
        if (new_ID_buf == NULL)
2583
0
            return NULL;
2584
0
        hrecs->ID_buf = new_ID_buf;
2585
0
        hrecs->ID_buf_sz = name_len + name_extra;
2586
0
    }
2587
2588
0
    do {
2589
0
        snprintf(hrecs->ID_buf, hrecs->ID_buf_sz, "%.1000s.%d", name, hrecs->ID_cnt++);
2590
0
        k = kh_get(m_s2i, hrecs->pg_hash, hrecs->ID_buf);
2591
0
    } while (k != kh_end(hrecs->pg_hash));
2592
2593
0
    return hrecs->ID_buf;
2594
0
}
2595
2596
/*
2597
 * Add an @PG line.
2598
 *
2599
 * If we wish complete control over this use sam_hdr_add_line() directly. This
2600
 * function uses that, but attempts to do a lot of tedious house work for
2601
 * you too.
2602
 *
2603
 * - It will generate a suitable ID if the supplied one clashes.
2604
 * - It will generate multiple @PG records if we have multiple PG chains.
2605
 *
2606
 * Call it as per sam_hdr_add_line() with a series of key,value pairs ending
2607
 * in NULL.
2608
 *
2609
 * Returns 0 on success
2610
 *        -1 on failure
2611
 */
2612
0
int sam_hdr_add_pg(sam_hdr_t *bh, const char *name, ...) {
2613
0
    sam_hrecs_t *hrecs;
2614
0
    const char *specified_id = NULL, *specified_pn = NULL, *specified_pp = NULL;
2615
0
    const char *key, *val;
2616
0
    if (!bh)
2617
0
        return -1;
2618
2619
0
    if (!(hrecs = bh->hrecs)) {
2620
0
        if (sam_hdr_fill_hrecs(bh) != 0)
2621
0
            return -1;
2622
0
        hrecs = bh->hrecs;
2623
0
    }
2624
2625
0
    bh->hrecs->pgs_changed = 1;
2626
0
    if (sam_hdr_link_pg(bh) < 0) {
2627
0
        hts_log_error("Error linking @PG lines");
2628
0
        return -1;
2629
0
    }
2630
2631
0
    va_list args;
2632
    // Check for ID / PN / PP tags in varargs list
2633
0
    va_start(args, name);
2634
0
    while ((key = va_arg(args, const char *)) != NULL) {
2635
0
        val = va_arg(args, const char *);
2636
0
        if (!val) break;
2637
0
        if (strcmp(key, "PN") == 0 && *val != '\0')
2638
0
            specified_pn = val;
2639
0
        else if (strcmp(key, "PP") == 0 && *val != '\0')
2640
0
            specified_pp = val;
2641
0
        else if (strcmp(key, "ID") == 0 && *val != '\0')
2642
0
            specified_id = val;
2643
0
    }
2644
0
    va_end(args);
2645
2646
0
    if (specified_id && hrecs->pg_hash) {
2647
0
        khint_t k = kh_get(m_s2i, hrecs->pg_hash, specified_id);
2648
0
        if (k != kh_end(hrecs->pg_hash)) {
2649
0
            hts_log_error("Header @PG ID:%s already present", specified_id);
2650
0
            return -1;
2651
0
        }
2652
0
    }
2653
2654
0
    if (specified_pp && hrecs->pg_hash) {
2655
0
        khint_t k = kh_get(m_s2i, hrecs->pg_hash, specified_pp);
2656
0
        if (k == kh_end(hrecs->pg_hash)) {
2657
0
            hts_log_error("Header @PG ID:%s referred to by PP tag not present",
2658
0
                          specified_pp);
2659
0
            return -1;
2660
0
        }
2661
0
    }
2662
2663
0
    if (!specified_pp && hrecs->npg_end) {
2664
        /* Copy ends array to avoid us looping while modifying it */
2665
0
        int *end = malloc(hrecs->npg_end * sizeof(int));
2666
0
        int i, nends = hrecs->npg_end;
2667
2668
0
        if (!end)
2669
0
            return -1;
2670
2671
0
        memcpy(end, hrecs->pg_end, nends * sizeof(*end));
2672
2673
0
        for (i = 0; i < nends; i++) {
2674
0
            const char *id = !specified_id ? sam_hdr_pg_id(bh, name) : "";
2675
0
            if (!id) {
2676
0
                free(end);
2677
0
                return -1;
2678
0
            }
2679
0
            assert(end[i] >= 0 && end[i] < hrecs->npg);
2680
0
            va_start(args, name);
2681
0
            if (-1 == sam_hrecs_vadd(hrecs, "PG", args,
2682
0
                                     "ID", id,
2683
0
                                     "PN", !specified_pn ? name : "",
2684
0
                                     "PP", hrecs->pg[end[i]].name,
2685
0
                                     NULL)) {
2686
0
                free(end);
2687
0
                return  -1;
2688
0
            }
2689
0
            va_end(args);
2690
0
        }
2691
2692
0
        free(end);
2693
0
    } else {
2694
0
        const char *id = !specified_id ? sam_hdr_pg_id(bh, name) : "";
2695
0
        if (!id)
2696
0
            return -1;
2697
0
        va_start(args, name);
2698
0
        if (-1 == sam_hrecs_vadd(hrecs, "PG", args,
2699
0
                                 "ID", id,
2700
0
                                 "PN", !specified_pn ? name : "",
2701
0
                                 NULL))
2702
0
            return -1;
2703
0
        va_end(args);
2704
0
    }
2705
2706
0
    hrecs->dirty = 1;
2707
0
    redact_header_text(bh);
2708
2709
0
    return 0;
2710
0
}
2711
2712
/*! Increments a reference count on bh.
2713
 *
2714
 * This permits multiple files to share the same header, all calling
2715
 * sam_hdr_destroy when done, without causing errors for other open files.
2716
 */
2717
7.47k
void sam_hdr_incr_ref(sam_hdr_t *bh) {
2718
7.47k
    if (!bh)
2719
0
        return;
2720
7.47k
    bh->ref_count++;
2721
7.47k
}
2722
2723
/* ==== Internal methods ==== */
2724
2725
/*
2726
 * Creates an empty SAM header.  Allocates space for the SAM header
2727
 * structures (hash tables) ready to be populated.
2728
 *
2729
 * Returns a sam_hrecs_t struct on success (free with sam_hrecs_free())
2730
 *         NULL on failure
2731
 */
2732
39.8k
sam_hrecs_t *sam_hrecs_new(void) {
2733
39.8k
    sam_hrecs_t *hrecs = calloc(1, sizeof(*hrecs));
2734
2735
39.8k
    if (!hrecs)
2736
0
        return NULL;
2737
2738
39.8k
    hrecs->h = kh_init(sam_hrecs_t);
2739
39.8k
    if (!hrecs->h)
2740
0
        goto err;
2741
2742
39.8k
    hrecs->ID_cnt = 1;
2743
2744
39.8k
    hrecs->nref = 0;
2745
39.8k
    hrecs->ref_sz = 0;
2746
39.8k
    hrecs->ref  = NULL;
2747
39.8k
    if (!(hrecs->ref_hash = kh_init(m_s2i)))
2748
0
        goto err;
2749
39.8k
    hrecs->refs_changed = -1;
2750
2751
39.8k
    hrecs->nrg = 0;
2752
39.8k
    hrecs->rg_sz = 0;
2753
39.8k
    hrecs->rg  = NULL;
2754
39.8k
    if (!(hrecs->rg_hash = kh_init(m_s2i)))
2755
0
        goto err;
2756
2757
39.8k
    hrecs->npg = 0;
2758
39.8k
    hrecs->pg_sz = 0;
2759
39.8k
    hrecs->pg  = NULL;
2760
39.8k
    hrecs->npg_end = hrecs->npg_end_alloc = 0;
2761
39.8k
    hrecs->pg_end = NULL;
2762
39.8k
    if (!(hrecs->pg_hash = kh_init(m_s2i)))
2763
0
        goto err;
2764
2765
39.8k
    if (!(hrecs->tag_pool = pool_create(sizeof(sam_hrec_tag_t))))
2766
0
        goto err;
2767
2768
39.8k
    if (!(hrecs->type_pool = pool_create(sizeof(sam_hrec_type_t))))
2769
0
        goto err;
2770
2771
39.8k
    if (!(hrecs->str_pool = string_pool_create(65536)))
2772
0
        goto err;
2773
2774
39.8k
    if (sam_hrecs_init_type_order(hrecs, NULL))
2775
0
        goto err;
2776
2777
39.8k
    return hrecs;
2778
2779
0
err:
2780
0
    if (hrecs->h)
2781
0
        kh_destroy(sam_hrecs_t, hrecs->h);
2782
2783
0
    if (hrecs->tag_pool)
2784
0
        pool_destroy(hrecs->tag_pool);
2785
2786
0
    if (hrecs->type_pool)
2787
0
        pool_destroy(hrecs->type_pool);
2788
2789
0
    if (hrecs->str_pool)
2790
0
        string_pool_destroy(hrecs->str_pool);
2791
2792
0
    free(hrecs);
2793
2794
0
    return NULL;
2795
39.8k
}
2796
#if 0
2797
/*
2798
 * Produces a duplicate copy of source and returns it.
2799
 * Returns NULL on failure
2800
 */
2801
sam_hrecs_t *sam_hrecs_dup(sam_hrecs_t *source) {
2802
        return NULL;
2803
}
2804
#endif
2805
/*! Deallocates all storage used by a sam_hrecs_t struct.
2806
 *
2807
 * This also decrements the header reference count. If after decrementing
2808
 * it is still non-zero then the header is assumed to be in use by another
2809
 * caller and the free is not done.
2810
 *
2811
 */
2812
39.8k
void sam_hrecs_free(sam_hrecs_t *hrecs) {
2813
39.8k
    if (!hrecs)
2814
0
        return;
2815
2816
39.8k
    if (hrecs->h)
2817
39.8k
        kh_destroy(sam_hrecs_t, hrecs->h);
2818
2819
39.8k
    if (hrecs->ref_hash)
2820
39.8k
        kh_destroy(m_s2i, hrecs->ref_hash);
2821
2822
39.8k
    if (hrecs->ref)
2823
10.2k
        free(hrecs->ref);
2824
2825
39.8k
    if (hrecs->rg_hash)
2826
39.8k
        kh_destroy(m_s2i, hrecs->rg_hash);
2827
2828
39.8k
    if (hrecs->rg)
2829
549
        free(hrecs->rg);
2830
2831
39.8k
    if (hrecs->pg_hash)
2832
39.8k
        kh_destroy(m_s2i, hrecs->pg_hash);
2833
2834
39.8k
    if (hrecs->pg)
2835
413
        free(hrecs->pg);
2836
2837
39.8k
    if (hrecs->pg_end)
2838
369
        free(hrecs->pg_end);
2839
2840
39.8k
    if (hrecs->type_pool)
2841
39.8k
        pool_destroy(hrecs->type_pool);
2842
2843
39.8k
    if (hrecs->tag_pool)
2844
39.8k
        pool_destroy(hrecs->tag_pool);
2845
2846
39.8k
    if (hrecs->str_pool)
2847
39.8k
        string_pool_destroy(hrecs->str_pool);
2848
2849
39.8k
    if (hrecs->type_order)
2850
39.8k
        free(hrecs->type_order);
2851
2852
39.8k
    if (hrecs->ID_buf)
2853
0
        free(hrecs->ID_buf);
2854
2855
39.8k
    free(hrecs);
2856
39.8k
}
2857
2858
/*
2859
 * Internal method already used by the CRAM code
2860
 * Returns the first header item matching 'type'. If ID is non-NULL it checks
2861
 * for the tag ID: and compares against the specified ID.
2862
 *
2863
 * Returns NULL if no type/ID is found
2864
 */
2865
sam_hrec_type_t *sam_hrecs_find_type_id(sam_hrecs_t *hrecs, const char *type,
2866
1.33k
                                     const char *ID_key, const char *ID_value) {
2867
1.33k
    if (!hrecs || !type)
2868
0
        return NULL;
2869
1.33k
    sam_hrec_type_t *t1, *t2;
2870
1.33k
    khint_t k;
2871
2872
    /* Special case for types we have prebuilt hashes on */
2873
1.33k
    if (ID_key) {
2874
1.33k
        if (!ID_value)
2875
0
            return NULL;
2876
2877
1.33k
        if (type[0]   == 'S' && type[1]   == 'Q' &&
2878
1.33k
            ID_key[0] == 'S' && ID_key[1] == 'N') {
2879
1.33k
            k = kh_get(m_s2i, hrecs->ref_hash, ID_value);
2880
1.33k
            return k != kh_end(hrecs->ref_hash)
2881
1.33k
                ? hrecs->ref[kh_val(hrecs->ref_hash, k)].ty
2882
1.33k
                : NULL;
2883
1.33k
        }
2884
2885
0
        if (type[0]   == 'R' && type[1]   == 'G' &&
2886
0
            ID_key[0] == 'I' && ID_key[1] == 'D') {
2887
0
            k = kh_get(m_s2i, hrecs->rg_hash, ID_value);
2888
0
            return k != kh_end(hrecs->rg_hash)
2889
0
                ? hrecs->rg[kh_val(hrecs->rg_hash, k)].ty
2890
0
                : NULL;
2891
0
        }
2892
2893
0
        if (type[0]   == 'P' && type[1]   == 'G' &&
2894
0
            ID_key[0] == 'I' && ID_key[1] == 'D') {
2895
0
            k = kh_get(m_s2i, hrecs->pg_hash, ID_value);
2896
0
            return k != kh_end(hrecs->pg_hash)
2897
0
                ? hrecs->pg[kh_val(hrecs->pg_hash, k)].ty
2898
0
                : NULL;
2899
0
        }
2900
0
    }
2901
2902
0
    k = kh_get(sam_hrecs_t, hrecs->h, TYPEKEY(type));
2903
0
    if (k == kh_end(hrecs->h))
2904
0
        return NULL;
2905
2906
0
    if (!ID_key)
2907
0
        return kh_val(hrecs->h, k);
2908
2909
0
    t1 = t2 = kh_val(hrecs->h, k);
2910
0
    do {
2911
0
        sam_hrec_tag_t *tag;
2912
0
        for (tag = t1->tag; tag; tag = tag->next) {
2913
0
            if (tag->str[0] == ID_key[0] && tag->str[1] == ID_key[1]) {
2914
0
                const char *cp1 = tag->str+3;
2915
0
                const char *cp2 = ID_value;
2916
0
                while (*cp1 && *cp1 == *cp2)
2917
0
                    cp1++, cp2++;
2918
0
                if (*cp2 || *cp1)
2919
0
                    continue;
2920
0
                return t1;
2921
0
            }
2922
0
        }
2923
0
        t1 = t1->next;
2924
0
    } while (t1 != t2);
2925
2926
0
    return NULL;
2927
0
}
2928
2929
/*
2930
 * Adds or updates tag key,value pairs in a header line.
2931
 * Eg for adding M5 tags to @SQ lines or updating sort order for the
2932
 * @HD line.
2933
 *
2934
 * va_list contains multiple key,value pairs ending in NULL.
2935
 *
2936
 * Returns 0 on success
2937
 *        -1 on failure
2938
 */
2939
0
int sam_hrecs_vupdate(sam_hrecs_t *hrecs, sam_hrec_type_t *type, va_list ap) {
2940
0
    if (!hrecs)
2941
0
        return -1;
2942
2943
0
    for (;;) {
2944
0
        char *k, *v, *str;
2945
0
        sam_hrec_tag_t *tag, *prev = NULL;
2946
2947
0
        if (!(k = (char *)va_arg(ap, char *)))
2948
0
            break;
2949
0
        if (!(v = va_arg(ap, char *)))
2950
0
            v = "";
2951
2952
0
        tag = sam_hrecs_find_key(type, k, &prev);
2953
0
        if (!tag) {
2954
0
            if (!(tag = pool_alloc(hrecs->tag_pool)))
2955
0
                return -1;
2956
0
            if (prev)
2957
0
                prev->next = tag;
2958
0
            else
2959
0
                type->tag = tag;
2960
2961
0
            tag->next = NULL;
2962
0
        }
2963
2964
0
        tag->len = 3 + strlen(v);
2965
0
        str = string_alloc(hrecs->str_pool, tag->len+1);
2966
0
        if (!str)
2967
0
            return -1;
2968
2969
0
        if (snprintf(str, tag->len+1, "%2.2s:%s", k, v) < 0)
2970
0
            return -1;
2971
2972
0
        tag->str = str;
2973
0
    }
2974
2975
0
    hrecs->dirty = 1; //mark text as dirty and force a rebuild
2976
2977
0
    return 0;
2978
0
}
2979
2980
/*
2981
 * Adds or updates tag key,value pairs in a header line.
2982
 * Eg for adding M5 tags to @SQ lines or updating sort order for the
2983
 * @HD line.
2984
 *
2985
 * Specify multiple key,value pairs ending in NULL.
2986
 *
2987
 * Returns 0 on success
2988
 *        -1 on failure
2989
 */
2990
0
static int sam_hrecs_update(sam_hrecs_t *hrecs, sam_hrec_type_t *type, ...) {
2991
0
    va_list args;
2992
0
    int res;
2993
0
    va_start(args, type);
2994
0
    res = sam_hrecs_vupdate(hrecs, type, args);
2995
0
    va_end(args);
2996
0
    return res;
2997
0
}
2998
2999
/*
3000
 * Looks for a specific key in a single sam header line identified by *type.
3001
 * If prev is non-NULL it also fills this out with the previous tag, to
3002
 * permit use in key removal. *prev is set to NULL when the tag is the first
3003
 * key in the list. When a tag isn't found, prev (if non NULL) will be the last
3004
 * tag in the existing list.
3005
 *
3006
 * Returns the tag pointer on success
3007
 *         NULL on failure
3008
 */
3009
sam_hrec_tag_t *sam_hrecs_find_key(sam_hrec_type_t *type,
3010
                                   const char *key,
3011
5.32k
                                   sam_hrec_tag_t **prev) {
3012
5.32k
    sam_hrec_tag_t *tag, *p = NULL;
3013
5.32k
    if (!type)
3014
0
        return NULL;
3015
3016
11.1k
    for (tag = type->tag; tag; p = tag, tag = tag->next) {
3017
9.67k
        if (tag->str[0] == key[0] && tag->str[1] == key[1]) {
3018
3.85k
            if (prev)
3019
0
                *prev = p;
3020
3.85k
            return tag;
3021
3.85k
        }
3022
9.67k
    }
3023
3024
1.47k
    if (prev)
3025
0
        *prev = p;
3026
3027
1.47k
    return NULL;
3028
5.32k
}
3029
3030
int sam_hrecs_remove_key(sam_hrecs_t *hrecs,
3031
                         sam_hrec_type_t *type,
3032
0
                         const char *key) {
3033
0
    sam_hrec_tag_t *tag, *prev;
3034
0
    if (!hrecs)
3035
0
        return -1;
3036
0
    tag = sam_hrecs_find_key(type, key, &prev);
3037
0
    if (!tag)
3038
0
        return 0; // Not there anyway
3039
3040
0
    if (type->type == TYPEKEY("SQ") && tag->str[0] == 'A' && tag->str[1] == 'N') {
3041
0
        assert(tag->len >= 3);
3042
0
        sam_hrec_tag_t *sn_tag = sam_hrecs_find_key(type, "SN", NULL);
3043
0
        if (sn_tag) {
3044
0
            assert(sn_tag->len >= 3);
3045
0
            khint_t k = kh_get(m_s2i, hrecs->ref_hash, sn_tag->str + 3);
3046
0
            if (k != kh_end(hrecs->ref_hash))
3047
0
                sam_hrecs_remove_ref_altnames(hrecs, kh_val(hrecs->ref_hash, k), tag->str + 3);
3048
0
        }
3049
0
    }
3050
3051
0
    if (!prev) { //first tag
3052
0
        type->tag = tag->next;
3053
0
    } else {
3054
0
        prev->next = tag->next;
3055
0
    }
3056
0
    pool_free(hrecs->tag_pool, tag);
3057
0
    hrecs->dirty = 1; //mark text as dirty and force a rebuild
3058
3059
0
    return 1;
3060
0
}
3061
3062
/*
3063
 * Looks up a read-group by name and returns a pointer to the start of the
3064
 * associated tag list.
3065
 *
3066
 * Returns NULL on failure
3067
 */
3068
544
sam_hrec_rg_t *sam_hrecs_find_rg(sam_hrecs_t *hrecs, const char *rg) {
3069
544
    khint_t k = kh_get(m_s2i, hrecs->rg_hash, rg);
3070
544
    return k == kh_end(hrecs->rg_hash)
3071
544
        ? NULL
3072
544
        : &hrecs->rg[kh_val(hrecs->rg_hash, k)];
3073
544
}
3074
3075
#if DEBUG_HEADER
3076
void sam_hrecs_dump(sam_hrecs_t *hrecs) {
3077
    khint_t k;
3078
    int i;
3079
3080
    printf("===DUMP===\n");
3081
    for (k = kh_begin(hrecs->h); k != kh_end(hrecs->h); k++) {
3082
        sam_hrec_type_t *t1, *t2;
3083
        char c[2];
3084
        int idx = 0;
3085
3086
        if (!kh_exist(hrecs->h, k))
3087
            continue;
3088
3089
        t1 = t2 = kh_val(hrecs->h, k);
3090
        c[0] = kh_key(hrecs->h, k)>>8;
3091
        c[1] = kh_key(hrecs->h, k)&0xff;
3092
        printf("Type %.2s\n", c);
3093
3094
        do {
3095
            sam_hrec_tag_t *tag;
3096
            printf(">>>%d ", idx++);
3097
            for (tag = t1->tag; tag; tag=tag->next) {
3098
                if (strncmp(c, "CO", 2))
3099
                    printf("\"%.2s\":\"%.*s\"\t", tag->str, tag->len-3, tag->str+3);
3100
                else
3101
                    printf("%s", tag->str);
3102
            }
3103
            putchar('\n');
3104
            t1 = t1->next;
3105
        } while (t1 != t2);
3106
    }
3107
3108
    /* Dump out PG chains */
3109
    printf("\n@PG chains:\n");
3110
    for (i = 0; i < hrecs->npg_end; i++) {
3111
        int j;
3112
        printf("  %d:", i);
3113
        for (j = hrecs->pg_end[i]; j != -1; j = hrecs->pg[j].prev_id) {
3114
            printf("%s%d(%.*s)",
3115
                   j == hrecs->pg_end[i] ? " " : "->",
3116
                   j, hrecs->pg[j].name_len, hrecs->pg[j].name);
3117
        }
3118
        printf("\n");
3119
    }
3120
3121
    puts("===END DUMP===");
3122
}
3123
#endif
3124
3125
/*
3126
 * Returns the sort order:
3127
 */
3128
0
enum sam_sort_order sam_hrecs_sort_order(sam_hrecs_t *hrecs) {
3129
0
    khint_t k;
3130
0
    enum sam_sort_order so;
3131
3132
0
    so = ORDER_UNKNOWN;
3133
0
    k = kh_get(sam_hrecs_t, hrecs->h, TYPEKEY("HD"));
3134
0
    if (k != kh_end(hrecs->h)) {
3135
0
        sam_hrec_type_t *ty = kh_val(hrecs->h, k);
3136
0
        sam_hrec_tag_t *tag;
3137
0
        for (tag = ty->tag; tag; tag = tag->next) {
3138
0
            if (tag->str[0] == 'S' && tag->str[1] == 'O') {
3139
0
                if (strcmp(tag->str+3, "unsorted") == 0)
3140
0
                    so = ORDER_UNSORTED;
3141
0
                else if (strcmp(tag->str+3, "queryname") == 0)
3142
0
                    so = ORDER_NAME;
3143
0
                else if (strcmp(tag->str+3, "coordinate") == 0)
3144
0
                    so = ORDER_COORD;
3145
0
                else if (strcmp(tag->str+3, "unknown") != 0)
3146
0
                    hts_log_error("Unknown sort order field: %s", tag->str+3);
3147
0
            }
3148
0
        }
3149
0
    }
3150
3151
0
    return so;
3152
0
}
3153
3154
0
enum sam_group_order sam_hrecs_group_order(sam_hrecs_t *hrecs) {
3155
0
    khint_t k;
3156
0
    enum sam_group_order go;
3157
3158
0
    go = ORDER_NONE;
3159
0
    k = kh_get(sam_hrecs_t, hrecs->h, TYPEKEY("HD"));
3160
0
    if (k != kh_end(hrecs->h)) {
3161
0
        sam_hrec_type_t *ty = kh_val(hrecs->h, k);
3162
0
        sam_hrec_tag_t *tag;
3163
0
        for (tag = ty->tag; tag; tag = tag->next) {
3164
0
            if (tag->str[0] == 'G' && tag->str[1] == 'O') {
3165
0
                if (strcmp(tag->str+3, "query") == 0)
3166
0
                    go = ORDER_QUERY;
3167
0
                else if (strcmp(tag->str+3, "reference") == 0)
3168
0
                    go = ORDER_REFERENCE;
3169
0
            }
3170
0
        }
3171
0
    }
3172
3173
0
    return go;
3174
0
}