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comparison PsiCLASS-1.0.2/samtools-0.1.19/bam2bcf_indel.c @ 0:903fc43d6227 draft default tip
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author | lsong10 |
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date | Fri, 26 Mar 2021 16:52:45 +0000 |
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1 #include <assert.h> | |
2 #include <ctype.h> | |
3 #include <string.h> | |
4 #include "bam.h" | |
5 #include "bam2bcf.h" | |
6 #include "kaln.h" | |
7 #include "kprobaln.h" | |
8 #include "khash.h" | |
9 KHASH_SET_INIT_STR(rg) | |
10 | |
11 #include "ksort.h" | |
12 KSORT_INIT_GENERIC(uint32_t) | |
13 | |
14 #define MINUS_CONST 0x10000000 | |
15 #define INDEL_WINDOW_SIZE 50 | |
16 | |
17 void *bcf_call_add_rg(void *_hash, const char *hdtext, const char *list) | |
18 { | |
19 const char *s, *p, *q, *r, *t; | |
20 khash_t(rg) *hash; | |
21 if (list == 0 || hdtext == 0) return _hash; | |
22 if (_hash == 0) _hash = kh_init(rg); | |
23 hash = (khash_t(rg)*)_hash; | |
24 if ((s = strstr(hdtext, "@RG\t")) == 0) return hash; | |
25 do { | |
26 t = strstr(s + 4, "@RG\t"); // the next @RG | |
27 if ((p = strstr(s, "\tID:")) != 0) p += 4; | |
28 if ((q = strstr(s, "\tPL:")) != 0) q += 4; | |
29 if (p && q && (t == 0 || (p < t && q < t))) { // ID and PL are both present | |
30 int lp, lq; | |
31 char *x; | |
32 for (r = p; *r && *r != '\t' && *r != '\n'; ++r); lp = r - p; | |
33 for (r = q; *r && *r != '\t' && *r != '\n'; ++r); lq = r - q; | |
34 x = calloc((lp > lq? lp : lq) + 1, 1); | |
35 for (r = q; *r && *r != '\t' && *r != '\n'; ++r) x[r-q] = *r; | |
36 if (strstr(list, x)) { // insert ID to the hash table | |
37 khint_t k; | |
38 int ret; | |
39 for (r = p; *r && *r != '\t' && *r != '\n'; ++r) x[r-p] = *r; | |
40 x[r-p] = 0; | |
41 k = kh_get(rg, hash, x); | |
42 if (k == kh_end(hash)) k = kh_put(rg, hash, x, &ret); | |
43 else free(x); | |
44 } else free(x); | |
45 } | |
46 s = t; | |
47 } while (s); | |
48 return hash; | |
49 } | |
50 | |
51 void bcf_call_del_rghash(void *_hash) | |
52 { | |
53 khint_t k; | |
54 khash_t(rg) *hash = (khash_t(rg)*)_hash; | |
55 if (hash == 0) return; | |
56 for (k = kh_begin(hash); k < kh_end(hash); ++k) | |
57 if (kh_exist(hash, k)) | |
58 free((char*)kh_key(hash, k)); | |
59 kh_destroy(rg, hash); | |
60 } | |
61 | |
62 static int tpos2qpos(const bam1_core_t *c, const uint32_t *cigar, int32_t tpos, int is_left, int32_t *_tpos) | |
63 { | |
64 int k, x = c->pos, y = 0, last_y = 0; | |
65 *_tpos = c->pos; | |
66 for (k = 0; k < c->n_cigar; ++k) { | |
67 int op = cigar[k] & BAM_CIGAR_MASK; | |
68 int l = cigar[k] >> BAM_CIGAR_SHIFT; | |
69 if (op == BAM_CMATCH || op == BAM_CEQUAL || op == BAM_CDIFF) { | |
70 if (c->pos > tpos) return y; | |
71 if (x + l > tpos) { | |
72 *_tpos = tpos; | |
73 return y + (tpos - x); | |
74 } | |
75 x += l; y += l; | |
76 last_y = y; | |
77 } else if (op == BAM_CINS || op == BAM_CSOFT_CLIP) y += l; | |
78 else if (op == BAM_CDEL || op == BAM_CREF_SKIP) { | |
79 if (x + l > tpos) { | |
80 *_tpos = is_left? x : x + l; | |
81 return y; | |
82 } | |
83 x += l; | |
84 } | |
85 } | |
86 *_tpos = x; | |
87 return last_y; | |
88 } | |
89 // FIXME: check if the inserted sequence is consistent with the homopolymer run | |
90 // l is the relative gap length and l_run is the length of the homopolymer on the reference | |
91 static inline int est_seqQ(const bcf_callaux_t *bca, int l, int l_run) | |
92 { | |
93 int q, qh; | |
94 q = bca->openQ + bca->extQ * (abs(l) - 1); | |
95 qh = l_run >= 3? (int)(bca->tandemQ * (double)abs(l) / l_run + .499) : 1000; | |
96 return q < qh? q : qh; | |
97 } | |
98 | |
99 static inline int est_indelreg(int pos, const char *ref, int l, char *ins4) | |
100 { | |
101 int i, j, max = 0, max_i = pos, score = 0; | |
102 l = abs(l); | |
103 for (i = pos + 1, j = 0; ref[i]; ++i, ++j) { | |
104 if (ins4) score += (toupper(ref[i]) != "ACGTN"[(int)ins4[j%l]])? -10 : 1; | |
105 else score += (toupper(ref[i]) != toupper(ref[pos+1+j%l]))? -10 : 1; | |
106 if (score < 0) break; | |
107 if (max < score) max = score, max_i = i; | |
108 } | |
109 return max_i - pos; | |
110 } | |
111 | |
112 /* | |
113 * @n: number of samples | |
114 */ | |
115 int bcf_call_gap_prep(int n, int *n_plp, bam_pileup1_t **plp, int pos, bcf_callaux_t *bca, const char *ref, | |
116 const void *rghash) | |
117 { | |
118 int i, s, j, k, t, n_types, *types, max_rd_len, left, right, max_ins, *score1, *score2, max_ref2; | |
119 int N, K, l_run, ref_type, n_alt; | |
120 char *inscns = 0, *ref2, *query, **ref_sample; | |
121 khash_t(rg) *hash = (khash_t(rg)*)rghash; | |
122 if (ref == 0 || bca == 0) return -1; | |
123 // mark filtered reads | |
124 if (rghash) { | |
125 N = 0; | |
126 for (s = N = 0; s < n; ++s) { | |
127 for (i = 0; i < n_plp[s]; ++i) { | |
128 bam_pileup1_t *p = plp[s] + i; | |
129 const uint8_t *rg = bam_aux_get(p->b, "RG"); | |
130 p->aux = 1; // filtered by default | |
131 if (rg) { | |
132 khint_t k = kh_get(rg, hash, (const char*)(rg + 1)); | |
133 if (k != kh_end(hash)) p->aux = 0, ++N; // not filtered | |
134 } | |
135 } | |
136 } | |
137 if (N == 0) return -1; // no reads left | |
138 } | |
139 // determine if there is a gap | |
140 for (s = N = 0; s < n; ++s) { | |
141 for (i = 0; i < n_plp[s]; ++i) | |
142 if (plp[s][i].indel != 0) break; | |
143 if (i < n_plp[s]) break; | |
144 } | |
145 if (s == n) return -1; // there is no indel at this position. | |
146 for (s = N = 0; s < n; ++s) N += n_plp[s]; // N is the total number of reads | |
147 { // find out how many types of indels are present | |
148 bca->max_support = bca->max_frac = 0; | |
149 int m, n_alt = 0, n_tot = 0, indel_support_ok = 0; | |
150 uint32_t *aux; | |
151 aux = calloc(N + 1, 4); | |
152 m = max_rd_len = 0; | |
153 aux[m++] = MINUS_CONST; // zero indel is always a type | |
154 for (s = 0; s < n; ++s) { | |
155 int na = 0, nt = 0; | |
156 for (i = 0; i < n_plp[s]; ++i) { | |
157 const bam_pileup1_t *p = plp[s] + i; | |
158 if (rghash == 0 || p->aux == 0) { | |
159 ++nt; | |
160 if (p->indel != 0) { | |
161 ++na; | |
162 aux[m++] = MINUS_CONST + p->indel; | |
163 } | |
164 } | |
165 j = bam_cigar2qlen(&p->b->core, bam1_cigar(p->b)); | |
166 if (j > max_rd_len) max_rd_len = j; | |
167 } | |
168 float frac = (float)na/nt; | |
169 if ( !indel_support_ok && na >= bca->min_support && frac >= bca->min_frac ) | |
170 indel_support_ok = 1; | |
171 if ( na > bca->max_support && frac > 0 ) bca->max_support = na, bca->max_frac = frac; | |
172 n_alt += na; | |
173 n_tot += nt; | |
174 } | |
175 // To prevent long stretches of N's to be mistaken for indels (sometimes thousands of bases), | |
176 // check the number of N's in the sequence and skip places where half or more reference bases are Ns. | |
177 int nN=0; for (i=pos; i-pos<max_rd_len && ref[i]; i++) if ( ref[i]=='N' ) nN++; | |
178 if ( nN*2>i ) { free(aux); return -1; } | |
179 | |
180 ks_introsort(uint32_t, m, aux); | |
181 // squeeze out identical types | |
182 for (i = 1, n_types = 1; i < m; ++i) | |
183 if (aux[i] != aux[i-1]) ++n_types; | |
184 // Taking totals makes it hard to call rare indels | |
185 if ( !bca->per_sample_flt ) | |
186 indel_support_ok = ( (float)n_alt / n_tot < bca->min_frac || n_alt < bca->min_support ) ? 0 : 1; | |
187 if ( n_types == 1 || !indel_support_ok ) { // then skip | |
188 free(aux); return -1; | |
189 } | |
190 if (n_types >= 64) { | |
191 free(aux); | |
192 if (bam_verbose >= 2) | |
193 fprintf(stderr, "[%s] excessive INDEL alleles at position %d. Skip the position.\n", __func__, pos + 1); | |
194 return -1; | |
195 } | |
196 types = (int*)calloc(n_types, sizeof(int)); | |
197 t = 0; | |
198 types[t++] = aux[0] - MINUS_CONST; | |
199 for (i = 1; i < m; ++i) | |
200 if (aux[i] != aux[i-1]) | |
201 types[t++] = aux[i] - MINUS_CONST; | |
202 free(aux); | |
203 for (t = 0; t < n_types; ++t) | |
204 if (types[t] == 0) break; | |
205 ref_type = t; // the index of the reference type (0) | |
206 } | |
207 { // calculate left and right boundary | |
208 left = pos > INDEL_WINDOW_SIZE? pos - INDEL_WINDOW_SIZE : 0; | |
209 right = pos + INDEL_WINDOW_SIZE; | |
210 if (types[0] < 0) right -= types[0]; | |
211 // in case the alignments stand out the reference | |
212 for (i = pos; i < right; ++i) | |
213 if (ref[i] == 0) break; | |
214 right = i; | |
215 } | |
216 /* The following block fixes a long-existing flaw in the INDEL | |
217 * calling model: the interference of nearby SNPs. However, it also | |
218 * reduces the power because sometimes, substitutions caused by | |
219 * indels are not distinguishable from true mutations. Multiple | |
220 * sequence realignment helps to increase the power. | |
221 * | |
222 * Masks mismatches present in at least 70% of the reads with 'N'. | |
223 */ | |
224 { // construct per-sample consensus | |
225 int L = right - left + 1, max_i, max2_i; | |
226 uint32_t *cns, max, max2; | |
227 char *ref0, *r; | |
228 ref_sample = calloc(n, sizeof(void*)); | |
229 cns = calloc(L, 4); | |
230 ref0 = calloc(L, 1); | |
231 for (i = 0; i < right - left; ++i) | |
232 ref0[i] = bam_nt16_table[(int)ref[i+left]]; | |
233 for (s = 0; s < n; ++s) { | |
234 r = ref_sample[s] = calloc(L, 1); | |
235 memset(cns, 0, sizeof(int) * L); | |
236 // collect ref and non-ref counts | |
237 for (i = 0; i < n_plp[s]; ++i) { | |
238 bam_pileup1_t *p = plp[s] + i; | |
239 bam1_t *b = p->b; | |
240 uint32_t *cigar = bam1_cigar(b); | |
241 uint8_t *seq = bam1_seq(b); | |
242 int x = b->core.pos, y = 0; | |
243 for (k = 0; k < b->core.n_cigar; ++k) { | |
244 int op = cigar[k]&0xf; | |
245 int j, l = cigar[k]>>4; | |
246 if (op == BAM_CMATCH || op == BAM_CEQUAL || op == BAM_CDIFF) { | |
247 for (j = 0; j < l; ++j) | |
248 if (x + j >= left && x + j < right) | |
249 cns[x+j-left] += (bam1_seqi(seq, y+j) == ref0[x+j-left])? 1 : 0x10000; | |
250 x += l; y += l; | |
251 } else if (op == BAM_CDEL || op == BAM_CREF_SKIP) x += l; | |
252 else if (op == BAM_CINS || op == BAM_CSOFT_CLIP) y += l; | |
253 } | |
254 } | |
255 // determine the consensus | |
256 for (i = 0; i < right - left; ++i) r[i] = ref0[i]; | |
257 max = max2 = 0; max_i = max2_i = -1; | |
258 for (i = 0; i < right - left; ++i) { | |
259 if (cns[i]>>16 >= max>>16) max2 = max, max2_i = max_i, max = cns[i], max_i = i; | |
260 else if (cns[i]>>16 >= max2>>16) max2 = cns[i], max2_i = i; | |
261 } | |
262 if ((double)(max&0xffff) / ((max&0xffff) + (max>>16)) >= 0.7) max_i = -1; | |
263 if ((double)(max2&0xffff) / ((max2&0xffff) + (max2>>16)) >= 0.7) max2_i = -1; | |
264 if (max_i >= 0) r[max_i] = 15; | |
265 if (max2_i >= 0) r[max2_i] = 15; | |
266 //for (i = 0; i < right - left; ++i) fputc("=ACMGRSVTWYHKDBN"[(int)r[i]], stderr); fputc('\n', stderr); | |
267 } | |
268 free(ref0); free(cns); | |
269 } | |
270 { // the length of the homopolymer run around the current position | |
271 int c = bam_nt16_table[(int)ref[pos + 1]]; | |
272 if (c == 15) l_run = 1; | |
273 else { | |
274 for (i = pos + 2; ref[i]; ++i) | |
275 if (bam_nt16_table[(int)ref[i]] != c) break; | |
276 l_run = i; | |
277 for (i = pos; i >= 0; --i) | |
278 if (bam_nt16_table[(int)ref[i]] != c) break; | |
279 l_run -= i + 1; | |
280 } | |
281 } | |
282 // construct the consensus sequence | |
283 max_ins = types[n_types - 1]; // max_ins is at least 0 | |
284 if (max_ins > 0) { | |
285 int *inscns_aux = calloc(5 * n_types * max_ins, sizeof(int)); | |
286 // count the number of occurrences of each base at each position for each type of insertion | |
287 for (t = 0; t < n_types; ++t) { | |
288 if (types[t] > 0) { | |
289 for (s = 0; s < n; ++s) { | |
290 for (i = 0; i < n_plp[s]; ++i) { | |
291 bam_pileup1_t *p = plp[s] + i; | |
292 if (p->indel == types[t]) { | |
293 uint8_t *seq = bam1_seq(p->b); | |
294 for (k = 1; k <= p->indel; ++k) { | |
295 int c = bam_nt16_nt4_table[bam1_seqi(seq, p->qpos + k)]; | |
296 assert(c<5); | |
297 ++inscns_aux[(t*max_ins+(k-1))*5 + c]; | |
298 } | |
299 } | |
300 } | |
301 } | |
302 } | |
303 } | |
304 // use the majority rule to construct the consensus | |
305 inscns = calloc(n_types * max_ins, 1); | |
306 for (t = 0; t < n_types; ++t) { | |
307 for (j = 0; j < types[t]; ++j) { | |
308 int max = 0, max_k = -1, *ia = &inscns_aux[(t*max_ins+j)*5]; | |
309 for (k = 0; k < 5; ++k) | |
310 if (ia[k] > max) | |
311 max = ia[k], max_k = k; | |
312 inscns[t*max_ins + j] = max? max_k : 4; | |
313 if ( max_k==4 ) { types[t] = 0; break; } // discard insertions which contain N's | |
314 } | |
315 } | |
316 free(inscns_aux); | |
317 } | |
318 // compute the likelihood given each type of indel for each read | |
319 max_ref2 = right - left + 2 + 2 * (max_ins > -types[0]? max_ins : -types[0]); | |
320 ref2 = calloc(max_ref2, 1); | |
321 query = calloc(right - left + max_rd_len + max_ins + 2, 1); | |
322 score1 = calloc(N * n_types, sizeof(int)); | |
323 score2 = calloc(N * n_types, sizeof(int)); | |
324 bca->indelreg = 0; | |
325 for (t = 0; t < n_types; ++t) { | |
326 int l, ir; | |
327 kpa_par_t apf1 = { 1e-4, 1e-2, 10 }, apf2 = { 1e-6, 1e-3, 10 }; | |
328 apf1.bw = apf2.bw = abs(types[t]) + 3; | |
329 // compute indelreg | |
330 if (types[t] == 0) ir = 0; | |
331 else if (types[t] > 0) ir = est_indelreg(pos, ref, types[t], &inscns[t*max_ins]); | |
332 else ir = est_indelreg(pos, ref, -types[t], 0); | |
333 if (ir > bca->indelreg) bca->indelreg = ir; | |
334 // fprintf(stderr, "%d, %d, %d\n", pos, types[t], ir); | |
335 // realignment | |
336 for (s = K = 0; s < n; ++s) { | |
337 // write ref2 | |
338 for (k = 0, j = left; j <= pos; ++j) | |
339 ref2[k++] = bam_nt16_nt4_table[(int)ref_sample[s][j-left]]; | |
340 if (types[t] <= 0) j += -types[t]; | |
341 else for (l = 0; l < types[t]; ++l) | |
342 ref2[k++] = inscns[t*max_ins + l]; | |
343 for (; j < right && ref[j]; ++j) | |
344 ref2[k++] = bam_nt16_nt4_table[(int)ref_sample[s][j-left]]; | |
345 for (; k < max_ref2; ++k) ref2[k] = 4; | |
346 if (j < right) right = j; | |
347 // align each read to ref2 | |
348 for (i = 0; i < n_plp[s]; ++i, ++K) { | |
349 bam_pileup1_t *p = plp[s] + i; | |
350 int qbeg, qend, tbeg, tend, sc, kk; | |
351 uint8_t *seq = bam1_seq(p->b); | |
352 uint32_t *cigar = bam1_cigar(p->b); | |
353 if (p->b->core.flag&4) continue; // unmapped reads | |
354 // FIXME: the following loop should be better moved outside; nonetheless, realignment should be much slower anyway. | |
355 for (kk = 0; kk < p->b->core.n_cigar; ++kk) | |
356 if ((cigar[kk]&BAM_CIGAR_MASK) == BAM_CREF_SKIP) break; | |
357 if (kk < p->b->core.n_cigar) continue; | |
358 // FIXME: the following skips soft clips, but using them may be more sensitive. | |
359 // determine the start and end of sequences for alignment | |
360 qbeg = tpos2qpos(&p->b->core, bam1_cigar(p->b), left, 0, &tbeg); | |
361 qend = tpos2qpos(&p->b->core, bam1_cigar(p->b), right, 1, &tend); | |
362 if (types[t] < 0) { | |
363 int l = -types[t]; | |
364 tbeg = tbeg - l > left? tbeg - l : left; | |
365 } | |
366 // write the query sequence | |
367 for (l = qbeg; l < qend; ++l) | |
368 query[l - qbeg] = bam_nt16_nt4_table[bam1_seqi(seq, l)]; | |
369 { // do realignment; this is the bottleneck | |
370 const uint8_t *qual = bam1_qual(p->b), *bq; | |
371 uint8_t *qq; | |
372 qq = calloc(qend - qbeg, 1); | |
373 bq = (uint8_t*)bam_aux_get(p->b, "ZQ"); | |
374 if (bq) ++bq; // skip type | |
375 for (l = qbeg; l < qend; ++l) { | |
376 qq[l - qbeg] = bq? qual[l] + (bq[l] - 64) : qual[l]; | |
377 if (qq[l - qbeg] > 30) qq[l - qbeg] = 30; | |
378 if (qq[l - qbeg] < 7) qq[l - qbeg] = 7; | |
379 } | |
380 sc = kpa_glocal((uint8_t*)ref2 + tbeg - left, tend - tbeg + abs(types[t]), | |
381 (uint8_t*)query, qend - qbeg, qq, &apf1, 0, 0); | |
382 l = (int)(100. * sc / (qend - qbeg) + .499); // used for adjusting indelQ below | |
383 if (l > 255) l = 255; | |
384 score1[K*n_types + t] = score2[K*n_types + t] = sc<<8 | l; | |
385 if (sc > 5) { | |
386 sc = kpa_glocal((uint8_t*)ref2 + tbeg - left, tend - tbeg + abs(types[t]), | |
387 (uint8_t*)query, qend - qbeg, qq, &apf2, 0, 0); | |
388 l = (int)(100. * sc / (qend - qbeg) + .499); | |
389 if (l > 255) l = 255; | |
390 score2[K*n_types + t] = sc<<8 | l; | |
391 } | |
392 free(qq); | |
393 } | |
394 /* | |
395 for (l = 0; l < tend - tbeg + abs(types[t]); ++l) | |
396 fputc("ACGTN"[(int)ref2[tbeg-left+l]], stderr); | |
397 fputc('\n', stderr); | |
398 for (l = 0; l < qend - qbeg; ++l) fputc("ACGTN"[(int)query[l]], stderr); | |
399 fputc('\n', stderr); | |
400 fprintf(stderr, "pos=%d type=%d read=%d:%d name=%s qbeg=%d tbeg=%d score=%d\n", pos, types[t], s, i, bam1_qname(p->b), qbeg, tbeg, sc); | |
401 */ | |
402 } | |
403 } | |
404 } | |
405 free(ref2); free(query); | |
406 { // compute indelQ | |
407 int *sc, tmp, *sumq; | |
408 sc = alloca(n_types * sizeof(int)); | |
409 sumq = alloca(n_types * sizeof(int)); | |
410 memset(sumq, 0, sizeof(int) * n_types); | |
411 for (s = K = 0; s < n; ++s) { | |
412 for (i = 0; i < n_plp[s]; ++i, ++K) { | |
413 bam_pileup1_t *p = plp[s] + i; | |
414 int *sct = &score1[K*n_types], indelQ1, indelQ2, seqQ, indelQ; | |
415 for (t = 0; t < n_types; ++t) sc[t] = sct[t]<<6 | t; | |
416 for (t = 1; t < n_types; ++t) // insertion sort | |
417 for (j = t; j > 0 && sc[j] < sc[j-1]; --j) | |
418 tmp = sc[j], sc[j] = sc[j-1], sc[j-1] = tmp; | |
419 /* errmod_cal() assumes that if the call is wrong, the | |
420 * likelihoods of other events are equal. This is about | |
421 * right for substitutions, but is not desired for | |
422 * indels. To reuse errmod_cal(), I have to make | |
423 * compromise for multi-allelic indels. | |
424 */ | |
425 if ((sc[0]&0x3f) == ref_type) { | |
426 indelQ1 = (sc[1]>>14) - (sc[0]>>14); | |
427 seqQ = est_seqQ(bca, types[sc[1]&0x3f], l_run); | |
428 } else { | |
429 for (t = 0; t < n_types; ++t) // look for the reference type | |
430 if ((sc[t]&0x3f) == ref_type) break; | |
431 indelQ1 = (sc[t]>>14) - (sc[0]>>14); | |
432 seqQ = est_seqQ(bca, types[sc[0]&0x3f], l_run); | |
433 } | |
434 tmp = sc[0]>>6 & 0xff; | |
435 indelQ1 = tmp > 111? 0 : (int)((1. - tmp/111.) * indelQ1 + .499); // reduce indelQ | |
436 sct = &score2[K*n_types]; | |
437 for (t = 0; t < n_types; ++t) sc[t] = sct[t]<<6 | t; | |
438 for (t = 1; t < n_types; ++t) // insertion sort | |
439 for (j = t; j > 0 && sc[j] < sc[j-1]; --j) | |
440 tmp = sc[j], sc[j] = sc[j-1], sc[j-1] = tmp; | |
441 if ((sc[0]&0x3f) == ref_type) { | |
442 indelQ2 = (sc[1]>>14) - (sc[0]>>14); | |
443 } else { | |
444 for (t = 0; t < n_types; ++t) // look for the reference type | |
445 if ((sc[t]&0x3f) == ref_type) break; | |
446 indelQ2 = (sc[t]>>14) - (sc[0]>>14); | |
447 } | |
448 tmp = sc[0]>>6 & 0xff; | |
449 indelQ2 = tmp > 111? 0 : (int)((1. - tmp/111.) * indelQ2 + .499); | |
450 // pick the smaller between indelQ1 and indelQ2 | |
451 indelQ = indelQ1 < indelQ2? indelQ1 : indelQ2; | |
452 if (indelQ > 255) indelQ = 255; | |
453 if (seqQ > 255) seqQ = 255; | |
454 p->aux = (sc[0]&0x3f)<<16 | seqQ<<8 | indelQ; // use 22 bits in total | |
455 sumq[sc[0]&0x3f] += indelQ < seqQ? indelQ : seqQ; | |
456 // fprintf(stderr, "pos=%d read=%d:%d name=%s call=%d indelQ=%d seqQ=%d\n", pos, s, i, bam1_qname(p->b), types[sc[0]&0x3f], indelQ, seqQ); | |
457 } | |
458 } | |
459 // determine bca->indel_types[] and bca->inscns | |
460 bca->maxins = max_ins; | |
461 bca->inscns = realloc(bca->inscns, bca->maxins * 4); | |
462 for (t = 0; t < n_types; ++t) | |
463 sumq[t] = sumq[t]<<6 | t; | |
464 for (t = 1; t < n_types; ++t) // insertion sort | |
465 for (j = t; j > 0 && sumq[j] > sumq[j-1]; --j) | |
466 tmp = sumq[j], sumq[j] = sumq[j-1], sumq[j-1] = tmp; | |
467 for (t = 0; t < n_types; ++t) // look for the reference type | |
468 if ((sumq[t]&0x3f) == ref_type) break; | |
469 if (t) { // then move the reference type to the first | |
470 tmp = sumq[t]; | |
471 for (; t > 0; --t) sumq[t] = sumq[t-1]; | |
472 sumq[0] = tmp; | |
473 } | |
474 for (t = 0; t < 4; ++t) bca->indel_types[t] = B2B_INDEL_NULL; | |
475 for (t = 0; t < 4 && t < n_types; ++t) { | |
476 bca->indel_types[t] = types[sumq[t]&0x3f]; | |
477 memcpy(&bca->inscns[t * bca->maxins], &inscns[(sumq[t]&0x3f) * max_ins], bca->maxins); | |
478 } | |
479 // update p->aux | |
480 for (s = n_alt = 0; s < n; ++s) { | |
481 for (i = 0; i < n_plp[s]; ++i) { | |
482 bam_pileup1_t *p = plp[s] + i; | |
483 int x = types[p->aux>>16&0x3f]; | |
484 for (j = 0; j < 4; ++j) | |
485 if (x == bca->indel_types[j]) break; | |
486 p->aux = j<<16 | (j == 4? 0 : (p->aux&0xffff)); | |
487 if ((p->aux>>16&0x3f) > 0) ++n_alt; | |
488 // fprintf(stderr, "X pos=%d read=%d:%d name=%s call=%d type=%d q=%d seqQ=%d\n", pos, s, i, bam1_qname(p->b), p->aux>>16&63, bca->indel_types[p->aux>>16&63], p->aux&0xff, p->aux>>8&0xff); | |
489 } | |
490 } | |
491 } | |
492 free(score1); free(score2); | |
493 // free | |
494 for (i = 0; i < n; ++i) free(ref_sample[i]); | |
495 free(ref_sample); | |
496 free(types); free(inscns); | |
497 return n_alt > 0? 0 : -1; | |
498 } |