version 1.4, 2019/09/04 01:12:02 |
version 1.8, 2019/09/13 02:04:42 |
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* DEVELOPER SHALL HAVE NO LIABILITY IN CONNECTION WITH THE USE, |
* DEVELOPER SHALL HAVE NO LIABILITY IN CONNECTION WITH THE USE, |
* PERFORMANCE OR NON-PERFORMANCE OF THE SOFTWARE. |
* PERFORMANCE OR NON-PERFORMANCE OF THE SOFTWARE. |
* |
* |
* $OpenXM: OpenXM_contrib2/asir2018/engine/dist.c,v 1.3 2019/08/21 00:37:47 noro Exp $ |
* $OpenXM: OpenXM_contrib2/asir2018/engine/dist.c,v 1.7 2019/09/06 00:11:59 noro Exp $ |
*/ |
*/ |
#include "ca.h" |
#include "ca.h" |
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Line 2635 NBP harmonic_mul_nbm(NBM a,NBM b) |
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Line 2635 NBP harmonic_mul_nbm(NBM a,NBM b) |
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/* DPM functions */ |
/* DPM functions */ |
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DMMstack dmm_stack; |
DMMstack dmm_stack; |
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extern LIST schreyer_obj; |
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void push_schreyer_order(LIST data) |
void push_schreyer_order(LIST data) |
{ |
{ |
DMMstack t; |
DMMstack t; |
int len,i; |
int len,i; |
NODE in; |
NODE in,t1; |
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/* data = [DPM,...,DPM] */ |
/* data = [DPM,...,DPM] */ |
in = BDY(data); |
in = BDY(data); |
Line 2655 void push_schreyer_order(LIST data) |
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Line 2656 void push_schreyer_order(LIST data) |
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t->next = dmm_stack; |
t->next = dmm_stack; |
dmm_stack = t; |
dmm_stack = t; |
dpm_ordtype = 2; |
dpm_ordtype = 2; |
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MKNODE(t1,data,schreyer_obj?BDY(schreyer_obj):0); |
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MKLIST(schreyer_obj,t1); |
} |
} |
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// data=[Ink,...,In0] |
// data=[Ink,...,In0] |
// Ini = a list of module monomials |
// Ini = a list of module monomials |
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Line 2714 NODE dpm_reduceall(NODE in) |
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Line 2716 NODE dpm_reduceall(NODE in) |
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for ( i = 0, t = in; i < n; i++, t = NEXT(t) ) ps[i] = BDY(t); |
for ( i = 0, t = in; i < n; i++, t = NEXT(t) ) ps[i] = BDY(t); |
for ( i = 0; i < n; i++ ) { |
for ( i = 0; i < n; i++ ) { |
g = ps[i]; ps[i] = 0; |
g = ps[i]; ps[i] = 0; |
dpm_nf_z(0,g,psv,1,DP_Multiple,&r); |
// dpm_nf_z(0,g,psv,1,DP_Multiple,&ps[i]); |
ps[i] = r; |
dpm_nf_z(0,g,psv,1,0,&ps[i]); |
} |
} |
t = 0; |
t = 0; |
for ( i = n-1; i >= 0; i-- ) { |
for ( i = n-1; i >= 0; i-- ) { |
Line 2725 NODE dpm_reduceall(NODE in) |
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Line 2727 NODE dpm_reduceall(NODE in) |
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return t; |
return t; |
} |
} |
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struct oEGT egra; |
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void dpm_schreyer_base(LIST g,LIST *s) |
void dpm_schreyer_base(LIST g,LIST *s) |
{ |
{ |
NODE nd,t,b0,b; |
NODE nd,t,b0,b; |
Line 2738 void dpm_schreyer_base(LIST g,LIST *s) |
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Line 2742 void dpm_schreyer_base(LIST g,LIST *s) |
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DPM *ps; |
DPM *ps; |
VECT psv; |
VECT psv; |
DP **m,*quo; |
DP **m,*quo; |
struct oEGT eg_nf,eg0,eg1; |
struct oEGT eg0,eg1; |
extern struct oEGT egc,egcomp; |
extern struct oEGT egred; |
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// init_eg(&eg_nf); |
init_eg(&egra); |
// init_eg(&egcomp); |
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nd = BDY(g); |
nd = BDY(g); |
n = length(nd); |
n = length(nd); |
MKVECT(psv,n); |
MKVECT(psv,n); |
Line 2751 void dpm_schreyer_base(LIST g,LIST *s) |
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Line 2754 void dpm_schreyer_base(LIST g,LIST *s) |
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nv = ps[0]->nv; |
nv = ps[0]->nv; |
m = (DP **)almat_pointer(n,n); |
m = (DP **)almat_pointer(n,n); |
b0 = 0; |
b0 = 0; |
// init_eg(&egc); |
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for ( i = 0; i < n; i++ ) { |
for ( i = 0; i < n; i++ ) { |
// sp(ps[i],ps[j]) = ti*ps[i]-tj*ps[j] => m[i][j] = ti |
// sp(ps[i],ps[j]) = ti*ps[i]-tj*ps[j] => m[i][j] = ti |
for ( j = i+1; j < n; j++ ) m[i][j] = dpm_sp_hm(ps[i],ps[j]); |
for ( j = i+1; j < n; j++ ) m[i][j] = dpm_sp_hm(ps[i],ps[j]); |
for ( j = i+1; j < n; j++ ) { |
for ( j = i+1; j < n; j++ ) { |
// for ( j = n-1; j > i; j-- ) { |
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if ( !m[i][j] ) continue; |
if ( !m[i][j] ) continue; |
for ( h = m[i][j], k = i+1; k < n; k++ ) |
for ( h = m[i][j], k = i+1; k < n; k++ ) |
if ( k != j && m[i][k] && dp_redble(m[i][k],h) ) m[i][k] = 0; |
if ( k != j && m[i][k] && dp_redble(m[i][k],h) ) m[i][k] = 0; |
Line 2764 void dpm_schreyer_base(LIST g,LIST *s) |
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Line 2765 void dpm_schreyer_base(LIST g,LIST *s) |
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for ( j = i+1; j < n; j++ ) { |
for ( j = i+1; j < n; j++ ) { |
if ( m[i][j] ) { |
if ( m[i][j] ) { |
dpm_sp(ps[i],ps[j],&sp,&t1,&t2); |
dpm_sp(ps[i],ps[j],&sp,&t1,&t2); |
// get_eg(&eg0); |
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quo = dpm_nf_and_quotient(0,sp,psv,&nf,&dn); |
quo = dpm_nf_and_quotient(0,sp,psv,&nf,&dn); |
// get_eg(&eg1); add_eg(&eg_nf,&eg0,&eg1); |
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if ( nf ) |
if ( nf ) |
error("dpm_schreyer_base : cannot happen"); |
error("dpm_schreyer_base : cannot happen"); |
NEWDMM(r0); r = r0; |
NEWDMM(r0); r = r0; |
Line 2795 void dpm_schreyer_base(LIST g,LIST *s) |
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Line 2794 void dpm_schreyer_base(LIST g,LIST *s) |
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BDY(t) = (pointer)dpm; |
BDY(t) = (pointer)dpm; |
} |
} |
b0 = dpm_sort_list(b0); |
b0 = dpm_sort_list(b0); |
// b0 = dpm_reduceall(b0); |
// get_eg(&eg0); |
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b0 = dpm_reduceall(b0); |
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// get_eg(&eg1); add_eg(&egra,&eg0,&eg1); print_eg("RA",&egra); |
MKLIST(*s,b0); |
MKLIST(*s,b0); |
// print_eg("nf",&eg_nf); printf("\n"); |
// print_eg("red",&egred); printf("\n"); |
// print_eg("coef",&egc); printf("\n"); |
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} |
} |
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int compdmm_schreyer(int n,DMM m1,DMM m2) |
int compdmm_schreyer(int n,DMM m1,DMM m2) |
Line 2965 void chsgndpm(DPM p,DPM *pr) |
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Line 2965 void chsgndpm(DPM p,DPM *pr) |
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} |
} |
} |
} |
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void mulcmp(Obj c,MP m) |
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{ |
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MP t; |
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Obj c1; |
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for ( t = m; t; t = NEXT(t) ) { |
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arf_mul(CO,c,C(t),&c1); C(t) = c1; |
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} |
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} |
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void mulcdmm(Obj c,DMM m) |
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{ |
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DMM t; |
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Obj c1; |
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for ( t = m; t; t = NEXT(t) ) { |
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arf_mul(CO,c,C(t),&c1); C(t) = c1; |
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} |
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} |
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void mulcdpm(VL vl,Obj c,DPM p,DPM *pr) |
void mulcdpm(VL vl,Obj c,DPM p,DPM *pr) |
{ |
{ |
DMM m,mr=0,mr0; |
DMM m,mr=0,mr0; |
Line 3119 int compdpm(VL vl,DPM p1,DPM p2) |
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Line 3139 int compdpm(VL vl,DPM p1,DPM p2) |
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} |
} |
} |
} |
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// p = ...+c*<<0,...0:pos>>+... |
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DPM dpm_eliminate_term(DPM a,DPM p,Obj c,int pos) |
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{ |
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MP d0,d; |
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DMM m; |
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DP f; |
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DPM a1,p1,r; |
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if ( !a ) return 0; |
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d0 = 0; |
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for ( m = BDY(a); m; m = NEXT(m) ) |
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if ( m->pos == pos ) { |
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NEXTMP(d0,d); d->dl = m->dl; arf_chsgn(m->c,&d->c); |
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} |
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if ( d0 ) { |
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NEXT(d) = 0; MKDP(NV(a),d0,f); |
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mulcdpm(CO,c,a,&a1); |
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mulobjdpm(CO,(Obj)f,p,&p1); |
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adddpm(CO,a1,p1,&r); |
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return r; |
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} else |
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return a; |
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} |
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// <<...:i>> -> <<...:tab[i]>> |
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DPM dpm_compress(DPM p,int *tab) |
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{ |
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DMM m,mr0,mr; |
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DPM t; |
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if ( !p ) return 0; |
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else { |
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for ( m = BDY(p), mr0 = 0; m; m = NEXT(m) ) { |
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NEXTDMM(mr0,mr); |
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mr->dl = m->dl; mr->c = m->c; mr->pos = tab[m->pos]; |
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if ( mr->pos <= 0 ) |
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error("dpm_compress : invalid position"); |
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} |
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NEXT(mr) = 0; |
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MKDPM(p->nv,mr0,t); t->sugar = p->sugar; |
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return t; |
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} |
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} |
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// input : s, s = syz(m) output simplified s, m |
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void dpm_simplify_syz(LIST s,LIST m,LIST *s1,LIST *m1) |
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{ |
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int lm,ls,i,j,pos; |
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DPM *am,*as; |
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DPM p; |
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DMM d; |
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Obj c; |
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int *tab; |
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NODE t,t1; |
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lm = length(BDY(m)); |
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am = (DPM *)MALLOC((lm+1)*sizeof(DPM)); |
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ls = length(BDY(s)); |
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as = (DPM *)MALLOC(ls*sizeof(DPM)); |
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for ( i = 1, t = BDY(m); i <= lm; i++, t = NEXT(t) ) am[i] = (DPM)BDY(t); |
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for ( i = 0, t = BDY(s); i < ls; i++, t = NEXT(t) ) as[i] = (DPM)BDY(t); |
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for ( i = 0; i < ls; i++ ) { |
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p = as[i]; |
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if ( p == 0 ) continue; |
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for ( d = BDY(p); d; d = NEXT(d) ) if ( d->dl->td == 0 ) break; |
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if ( d ) { |
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c = d->c; pos = d->pos; |
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for ( j = 0; j < ls; j++ ) |
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if ( j != i ) { |
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as[j] = dpm_eliminate_term(as[j],p,c,pos); |
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} |
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// remove m[i] |
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am[pos] = 0; |
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as[i] = 0; |
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} |
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} |
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// compress s |
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// create index table from am[] |
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// (0 0 * 0 * ...) -> (0 0 1 0 2 ... ) which means 2->1, 4->2, ... |
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tab = (int *)MALLOC((lm+1)*sizeof(int)); |
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for ( j = 0, i = 1; i <= lm; i++ ) { |
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if ( am[i] ) { j++; tab[i] = j; } |
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else tab[i] = 0; |
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} |
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t = 0; |
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for ( i = ls-1; i >= 0; i-- ) |
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if ( as[i] ) { |
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p = dpm_compress(as[i],tab); |
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MKNODE(t1,(pointer)p,t); t = t1; |
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} |
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MKLIST(*s1,t); |
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t = 0; |
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for ( i = lm; i >= 1; i-- ) |
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if ( am[i] ) { |
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MKNODE(t1,(pointer)am[i],t); t = t1; |
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} |
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MKLIST(*m1,t); |
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} |