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https://github.com/lh3/minimap2.git
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r159: use two-piece gap penalty
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@@ -10,7 +10,6 @@
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#define KSW_EZ_GENERIC_SC 0x04 // without this flag: match/mismatch only; last symbol is a wildcard
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#define KSW_EZ_APPROX_MAX 0x08 // approximate max; this is faster with sse
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#define KSW_EZ_APPROX_DROP 0x10 // approximate Z-drop; faster with sse
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#define KSW_EZ_DYN_BAND 0x20 // once used, ksw_extz_t::{mqe,mte} may be wrong
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#define KSW_EZ_EXTZ_ONLY 0x40 // only perform extension
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#define KSW_EZ_REV_CIGAR 0x80 // reverse CIGAR in the output
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@@ -48,6 +47,12 @@ extern "C" {
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void ksw_extz(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat, int8_t q, int8_t e, int w, int zdrop, int flag, ksw_extz_t *ez);
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void ksw_extz2_sse(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat, int8_t q, int8_t e, int w, int zdrop, int flag, ksw_extz_t *ez);
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void ksw_extd(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat,
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int8_t gapo, int8_t gape, int8_t gapo2, int8_t gape2, int w, int zdrop, int flag, ksw_extz_t *ez);
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void ksw_extd2_sse(void *km, int qlen, const uint8_t *query, int tlen, const uint8_t *target, int8_t m, const int8_t *mat,
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int8_t gapo, int8_t gape, int8_t gapo2, int8_t gape2, int w, int zdrop, int flag, ksw_extz_t *ez);
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/**
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* Global alignment
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*
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@@ -92,18 +97,23 @@ static inline uint32_t *ksw_push_cigar(void *km, int *n_cigar, int *m_cigar, uin
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return cigar;
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}
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// In the backtrack matrix, value p[] has the following structure:
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// bit 0-2: which type gets the max - 0 for H, 1 for E, 2 for F, 3 for \tilde{E} and 4 for \tilde{F}
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// bit 3/0x08: 1 if a continuation on the E state (bit 5/0x20 for a continuation on \tilde{E})
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// bit 4/0x10: 1 if a continuation on the F state (bit 6/0x40 for a continuation on \tilde{F})
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static inline void ksw_backtrack(void *km, int is_rot, int is_rev, const uint8_t *p, const int *off, int n_col, int i0, int j0, int *m_cigar_, int *n_cigar_, uint32_t **cigar_)
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{
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int n_cigar = 0, m_cigar = *m_cigar_, which = 0, i = i0, j = j0, r;
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{ // p[] - lower 3 bits: which type gets the max; bit
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int n_cigar = 0, m_cigar = *m_cigar_, i = i0, j = j0, r, state = 0;
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uint32_t *cigar = *cigar_, tmp;
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while (i >= 0 && j >= 0) {
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while (i >= 0 && j >= 0) { // at the beginning of the loop, _state_ tells us which state to check
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if (is_rot) r = i + j, tmp = p[r * n_col + i - off[r]];
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else tmp = p[i * n_col + j - off[i]];
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which = tmp >> (which << 1) & 3;
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if (which == 0) which = tmp & 3;
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if (which == 0) cigar = ksw_push_cigar(km, &n_cigar, &m_cigar, cigar, 0, 1), --i, --j; // match
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else if (which == 1) cigar = ksw_push_cigar(km, &n_cigar, &m_cigar, cigar, 2, 1), --i; // deletion
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else cigar = ksw_push_cigar(km, &n_cigar, &m_cigar, cigar, 1, 1), --j; // insertion
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if (state == 0) state = tmp & 7; // if requesting the H state, find state one maximizes it.
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else if (!(tmp >> (state + 2) & 1)) state = 0; // if requesting other states, _state_ stays the same if it is a continuation; otherwise, set to H
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if (state == 0) state = tmp & 7; // TODO: probably this line can be merged into the "else if" line right above; not 100% sure
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if (state == 0) cigar = ksw_push_cigar(km, &n_cigar, &m_cigar, cigar, 0, 1), --i, --j; // match
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else if (state == 1 || state == 3) cigar = ksw_push_cigar(km, &n_cigar, &m_cigar, cigar, 2, 1), --i; // deletion
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else cigar = ksw_push_cigar(km, &n_cigar, &m_cigar, cigar, 1, 1), --j; // insertion
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}
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if (i >= 0) cigar = ksw_push_cigar(km, &n_cigar, &m_cigar, cigar, 2, i + 1); // first deletion
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if (j >= 0) cigar = ksw_push_cigar(km, &n_cigar, &m_cigar, cigar, 1, j + 1); // first insertion
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@@ -120,4 +130,22 @@ static inline void ksw_reset_extz(ksw_extz_t *ez)
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ez->n_cigar = 0, ez->zdropped = 0;
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}
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static inline int ksw_apply_zdrop(ksw_extz_t *ez, int is_rot, int32_t H, int a, int b, int zdrop, int8_t e)
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{
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int r, t;
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if (is_rot) r = a, t = b;
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else r = a + b, t = a;
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if (H > (int32_t)ez->max) {
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ez->max = H, ez->max_t = t, ez->max_q = r - t;
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} else if (t >= ez->max_t && r - t >= ez->max_q) {
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int tl = t - ez->max_t, ql = (r - t) - ez->max_q, l;
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l = tl > ql? tl - ql : ql - tl;
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if (zdrop >= 0 && ez->max - H > zdrop + l * e) {
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ez->zdropped = 1;
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return 1;
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}
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}
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return 0;
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}
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#endif
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