dense minimizer apparently works

This commit is contained in:
Heng Li
2020-03-24 23:05:38 -04:00
parent 3341cf20ba
commit 84361ba6dd
6 changed files with 46 additions and 33 deletions
+1 -1
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@@ -8,7 +8,7 @@
#define Get_Cigar_Type(RECORD) (RECORD&3) #define Get_Cigar_Type(RECORD) (RECORD&3)
#define Get_Cigar_Length(RECORD) (RECORD>>2) #define Get_Cigar_Length(RECORD) (RECORD>>2)
void ha_count_high(const hifiasm_opt_t *asm_opt); void *ha_gen_flt_tab(const hifiasm_opt_t *asm_opt);
void Counting_multiple_thr(); void Counting_multiple_thr();
void Build_hash_table_multiple_thr(); void Build_hash_table_multiple_thr();
void Overlap_calculate_multipe_thr(); void Overlap_calculate_multipe_thr();
+1 -1
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@@ -98,7 +98,7 @@ static yak_ch_t *yak_ch_restore_core(yak_ch_t *ch0, const char *fn, int mode, ..
yak_ht_t *h = ch->h[i].h; yak_ht_t *h = ch->h[i].h;
fread(t, 4, 2, fp); fread(t, 4, 2, fp);
if (ch0 == 0) yak_ht_resize(h, t[0]); if (ch0 == 0) yak_ht_resize(h, t[0]);
for (j = 0; j < t[1]; ++j) { for (j = 0; j < (int)t[1]; ++j) {
uint64_t key; uint64_t key;
fread(&key, 8, 1, fp); fread(&key, 8, 1, fp);
if (mode == YAK_LOAD_ALL) { if (mode == YAK_LOAD_ALL) {
+3 -1
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@@ -9,13 +9,15 @@
int main(int argc, char *argv[]) int main(int argc, char *argv[])
{ {
int i; int i;
void *flt_tab;
init_opt(&asm_opt); init_opt(&asm_opt);
if (!CommandLine_process(argc, argv, &asm_opt)) return 1; if (!CommandLine_process(argc, argv, &asm_opt)) return 1;
yak_reset_realtime(); yak_reset_realtime();
ha_count_high(&asm_opt); flt_tab = ha_gen_flt_tab(&asm_opt);
ha_hf_destroy(flt_tab);
if (0) { if (0) {
Correct_Reads(asm_opt.number_of_round); Correct_Reads(asm_opt.number_of_round);
} }
+1 -1
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@@ -36,7 +36,7 @@ static inline int tq_shift(tiny_queue_t *q)
* @param is_hpc homopolymer-compressed or not * @param is_hpc homopolymer-compressed or not
* @param p minimizers * @param p minimizers
*/ */
void ha_sketch(const char *str, int len, int w, int k, uint32_t rid, int is_hpc, ha_mz1_v *p, void *hf) void ha_sketch(const char *str, int len, int w, int k, uint32_t rid, int is_hpc, ha_mz1_v *p, const void *hf)
{ {
static const ha_mz1_t dummy = { UINT64_MAX, 0, 0, 0 }; static const ha_mz1_t dummy = { UINT64_MAX, 0, 0, 0 };
uint64_t shift1 = k - 1, mask = (1ULL<<k) - 1, kmer[4] = {0,0,0,0}; uint64_t shift1 = k - 1, mask = (1ULL<<k) - 1, kmer[4] = {0,0,0,0};
+39 -28
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@@ -15,7 +15,7 @@ KHASHL_SET_INIT(static klib_unused, yak_hh_t, yak_hh, uint64_t, kh_hash_dummy, k
typedef struct { typedef struct {
int32_t bf_shift, bf_n_hash; int32_t bf_shift, bf_n_hash;
int32_t k, is_HPC; int32_t k, w, is_HPC;
int32_t pre; int32_t pre;
int32_t n_thread; int32_t n_thread;
int64_t chunk_size; int64_t chunk_size;
@@ -218,6 +218,7 @@ void yak_copt_init(yak_copt_t *o)
o->bf_shift = 0; o->bf_shift = 0;
o->bf_n_hash = 4; o->bf_n_hash = 4;
o->k = 31; o->k = 31;
o->w = 1;
o->pre = YAK_COUNTER_BITS; o->pre = YAK_COUNTER_BITS;
o->n_thread = 4; o->n_thread = 4;
o->chunk_size = 10000000; o->chunk_size = 10000000;
@@ -283,10 +284,10 @@ static void count_seq_buf_HPC(ch_buf_t *buf, int k, int p, int len, const char *
typedef struct { // global data structure for kt_pipeline() typedef struct { // global data structure for kt_pipeline()
const yak_copt_t *opt; const yak_copt_t *opt;
int create_new, is_mz, is_store, mz_win; const void *flt_tab;
int create_new, is_store;
kseq_t *ks; kseq_t *ks;
yak_ch_t *h; yak_ch_t *h;
void *hf;
} pl_data_t; } pl_data_t;
typedef struct { // data structure for each step in kt_pipeline() typedef struct { // data structure for each step in kt_pipeline()
@@ -312,9 +313,9 @@ static void worker_for_mz(void *data, long i, int tid)
st_data_t *s = (st_data_t*)data; st_data_t *s = (st_data_t*)data;
ha_mz1_v *b = &s->mz_buf[tid]; ha_mz1_v *b = &s->mz_buf[tid];
s->mz_buf[tid].n = 0; s->mz_buf[tid].n = 0;
ha_sketch(s->seq[i], s->len[i], s->p->mz_win, s->p->opt->k, 0, s->p->opt->is_HPC, b, s->p->hf); ha_sketch(s->seq[i], s->len[i], s->p->opt->w, s->p->opt->k, 0, s->p->opt->is_HPC, b, s->p->flt_tab);
s->mz[i].n = s->mz[i].m = b->n; s->mz[i].n = s->mz[i].m = b->n;
MALLOC(s->mz[i].a, s->mz[i].n); MALLOC(s->mz[i].a, b->n);
memcpy(s->mz[i].a, b->a, b->n * sizeof(ha_mz1_t)); memcpy(s->mz[i].a, b->a, b->n * sizeof(ha_mz1_t));
} }
@@ -346,33 +347,42 @@ static void *worker_count(void *data, int step, void *in) // callback for kt_pip
else return s; else return s;
} else if (step == 1) { // step 2: extract k-mers } else if (step == 1) { // step 2: extract k-mers
st_data_t *s = (st_data_t*)in; st_data_t *s = (st_data_t*)in;
int i, n = 1<<p->opt->pre, m; int i, n_pre = 1<<p->opt->pre, m;
if (!p->is_mz) { // enumerate all k-mers // allocate the k-mer buffer
CALLOC(s->buf, n); CALLOC(s->buf, n_pre);
m = (int)(s->nk * 1.2 / n) + 1; m = (int)(s->nk * 1.2 / n_pre) + 1;
for (i = 0; i < n; ++i) { for (i = 0; i < n_pre; ++i) {
s->buf[i].m = m; s->buf[i].m = m;
MALLOC(s->buf[i].a, m); MALLOC(s->buf[i].a, m);
} }
// fill the buffer
if (p->opt->w == 1) { // enumerate all k-mers
for (i = 0; i < s->n_seq; ++i) { for (i = 0; i < s->n_seq; ++i) {
if (p->opt->is_HPC) if (p->opt->is_HPC)
count_seq_buf_HPC(s->buf, p->opt->k, p->opt->pre, s->len[i], s->seq[i]); count_seq_buf_HPC(s->buf, p->opt->k, p->opt->pre, s->len[i], s->seq[i]);
else else
count_seq_buf(s->buf, p->opt->k, p->opt->pre, s->len[i], s->seq[i]); count_seq_buf(s->buf, p->opt->k, p->opt->pre, s->len[i], s->seq[i]);
if (!p->is_store) if (!p->is_store) free(s->seq[i]);
free(s->seq[i]);
} }
} else { // minimizers only } else { // minimizers only
CALLOC(s->mz_buf, p->opt->n_thread); // compute minimizers
CALLOC(s->mz, s->n_seq); CALLOC(s->mz, s->n_seq);
CALLOC(s->mz_buf, p->opt->n_thread);
kt_for(p->opt->n_thread, worker_for_mz, s, s->n_seq); kt_for(p->opt->n_thread, worker_for_mz, s, s->n_seq);
for (i = 0; i < p->opt->n_thread; ++i) for (i = 0; i < p->opt->n_thread; ++i)
free(s->mz_buf[i].a); free(s->mz_buf[i].a);
free(s->mz_buf); free(s->mz_buf);
if (!p->is_store) { // insert minimizers
for (i = 0; i < s->n_seq; ++i) for (i = 0; i < s->n_seq; ++i) {
free(s->seq[i]); uint32_t j;
for (j = 0; j < s->mz[i].n; ++j)
ch_insert_buf(s->buf, p->opt->pre, s->mz[i].a[j].x);
} }
for (i = 0; i < s->n_seq; ++i) {
free(s->mz[i].a);
if (!p->is_store) free(s->seq[i]);
}
free(s->mz);
} }
free(s->seq); free(s->len); free(s->seq); free(s->len);
s->seq = 0, s->len = 0; s->seq = 0, s->len = 0;
@@ -395,13 +405,14 @@ static void *worker_count(void *data, int step, void *in) // callback for kt_pip
return 0; return 0;
} }
static yak_ch_t *yak_count(const char *fn, const yak_copt_t *opt, yak_ch_t *h0) static yak_ch_t *yak_count(const char *fn, const yak_copt_t *opt, yak_ch_t *h0, const void *flt_tab)
{ {
pl_data_t pl; pl_data_t pl;
gzFile fp; gzFile fp;
if ((fp = gzopen(fn, "r")) == 0) return 0; if ((fp = gzopen(fn, "r")) == 0) return 0;
memset(&pl, 0, sizeof(pl_data_t)); memset(&pl, 0, sizeof(pl_data_t));
pl.ks = kseq_init(fp); pl.ks = kseq_init(fp);
pl.flt_tab = flt_tab;
pl.opt = opt; pl.opt = opt;
if (h0) { if (h0) {
pl.h = h0, pl.create_new = 0; pl.h = h0, pl.create_new = 0;
@@ -416,12 +427,12 @@ static yak_ch_t *yak_count(const char *fn, const yak_copt_t *opt, yak_ch_t *h0)
return pl.h; return pl.h;
} }
static yak_ch_t *yak_count_file(const yak_copt_t *opt, int n_fn, char **fn) static yak_ch_t *yak_count_file(const yak_copt_t *opt, int n_fn, char **fn, const void *flt_tab)
{ {
int i; int i;
yak_ch_t *h = 0; yak_ch_t *h = 0;
for (i = 0; i < n_fn; ++i) for (i = 0; i < n_fn; ++i)
h = yak_count(fn[i], opt, h); h = yak_count(fn[i], opt, h, flt_tab);
if (opt->bf_shift > 0) if (opt->bf_shift > 0)
yak_ch_destroy_bf(h); yak_ch_destroy_bf(h);
return h; return h;
@@ -447,9 +458,9 @@ static yak_hh_t *gen_hh(const yak_ch_t *h)
return hh; return hh;
} }
void *ha_count_high(const hifiasm_opt_t *asm_opt) void *ha_gen_flt_tab(const hifiasm_opt_t *asm_opt)
{ {
yak_hh_t *high_ht; yak_hh_t *flt_tab;
int64_t cnt[YAK_N_COUNTS]; int64_t cnt[YAK_N_COUNTS];
int peak_hom, peak_het, cutoff; int peak_hom, peak_het, cutoff;
yak_copt_t opt; yak_copt_t opt;
@@ -459,18 +470,18 @@ void *ha_count_high(const hifiasm_opt_t *asm_opt)
opt.k = asm_opt->k_mer_length; opt.k = asm_opt->k_mer_length;
opt.n_thread = asm_opt->thread_num; opt.n_thread = asm_opt->thread_num;
opt.bf_shift = asm_opt->bf_shift; opt.bf_shift = asm_opt->bf_shift;
h = yak_count_file(&opt, asm_opt->num_reads, asm_opt->read_file_names); h = yak_count_file(&opt, asm_opt->num_reads, asm_opt->read_file_names, 0);
yak_ch_hist(h, cnt, opt.n_thread); yak_ch_hist(h, cnt, opt.n_thread);
peak_hom = yak_analyze_count(YAK_N_COUNTS, cnt, &peak_het); peak_hom = yak_analyze_count(YAK_N_COUNTS, cnt, &peak_het);
if (peak_hom > 0) fprintf(stderr, "[M::%s] peak_hom: %d; peak_het: %d\n", __func__, peak_hom, peak_het); if (peak_hom > 0) fprintf(stderr, "[M::%s] peak_hom: %d; peak_het: %d\n", __func__, peak_hom, peak_het);
cutoff = (int)(peak_hom * asm_opt->high_factor); cutoff = (int)(peak_hom * asm_opt->high_factor);
if (cutoff > YAK_MAX_COUNT - 1) cutoff = YAK_MAX_COUNT - 1; if (cutoff > YAK_MAX_COUNT - 1) cutoff = YAK_MAX_COUNT - 1;
yak_ch_shrink(h, cutoff, YAK_MAX_COUNT, opt.n_thread); yak_ch_shrink(h, cutoff, YAK_MAX_COUNT, opt.n_thread);
high_ht = gen_hh(h); flt_tab = gen_hh(h);
yak_ch_destroy(h); yak_ch_destroy(h);
fprintf(stderr, "[M::%s] filtered out %ld k-mers occurring %d or more times\n", fprintf(stderr, "[M::%s] filtered out %ld k-mers occurring %d or more times\n",
__func__, (long)kh_size(high_ht), cutoff); __func__, (long)kh_size(flt_tab), cutoff);
return (void*)high_ht; return (void*)flt_tab;
} }
int ha_hf_isflt(const void *hh, uint64_t y) int ha_hf_isflt(const void *hh, uint64_t y)
+1 -1
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@@ -30,7 +30,7 @@ void yak_reset_realtime(void);
double yak_realtime(void); double yak_realtime(void);
long yak_peakrss(void); long yak_peakrss(void);
void ha_sketch(const char *str, int len, int w, int k, uint32_t rid, int is_hpc, ha_mz1_v *p, void *hf); void ha_sketch(const char *str, int len, int w, int k, uint32_t rid, int is_hpc, ha_mz1_v *p, const void *hf);
int yak_analyze_count(int n_cnt, const int64_t *cnt, int *peak_het); int yak_analyze_count(int n_cnt, const int64_t *cnt, int *peak_het);
yak_bf_t *yak_bf_init(int n_shift, int n_hashes); yak_bf_t *yak_bf_init(int n_shift, int n_hashes);