version 1.17, 2003/07/31 05:30:38 |
version 1.18, 2003/07/31 05:42:22 |
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/* $OpenXM: OpenXM_contrib2/asir2000/engine/nd.c,v 1.16 2003/07/31 02:56:13 noro Exp $ */ |
/* $OpenXM: OpenXM_contrib2/asir2000/engine/nd.c,v 1.17 2003/07/31 05:30:38 noro Exp $ */ |
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#include "ca.h" |
#include "ca.h" |
#include "inline.h" |
#include "inline.h" |
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#define USE_NDV 1 |
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#if defined(__GNUC__) |
#if defined(__GNUC__) |
#define INLINE inline |
#define INLINE inline |
#elif defined(VISUAL) |
#elif defined(VISUAL) |
Line 170 void nd_realloc(ND p,int obpe); |
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Line 168 void nd_realloc(ND p,int obpe); |
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ND nd_copy(ND p); |
ND nd_copy(ND p); |
void ndl_dup(int obpe,unsigned int *d,unsigned int *r); |
void ndl_dup(int obpe,unsigned int *d,unsigned int *r); |
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#if USE_NDV |
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static NDV *nd_ps; |
static NDV *nd_ps; |
#else |
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static ND *nd_ps; |
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#endif |
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#define NMV_ADV(m) (m = (NMV)(((char *)m)+nmv_adv)) |
#define NMV_ADV(m) (m = (NMV)(((char *)m)+nmv_adv)) |
#define NEWNDV(d) ((d)=(NDV)MALLOC(sizeof(struct oNDV))) |
#define NEWNDV(d) ((d)=(NDV)MALLOC(sizeof(struct oNDV))) |
Line 550 int ndl_disjoint(unsigned int *d1,unsigned int *d2) |
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Line 544 int ndl_disjoint(unsigned int *d1,unsigned int *d2) |
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} |
} |
} |
} |
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ND nd_reduce(ND p1,ND p2) |
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{ |
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int c,c1,c2,t,td,td2,mul; |
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NM m2,prev,head,cur,new; |
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unsigned int *d; |
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if ( !p1 ) |
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return 0; |
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else { |
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c2 = invm(HCM(p2),nd_mod); |
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c1 = nd_mod-HCM(p1); |
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DMAR(c1,c2,0,nd_mod,mul); |
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td = HTD(p1)-HTD(p2); |
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d = (unsigned int *)ALLOCA(nd_wpd*sizeof(unsigned int)); |
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ndl_sub(HDL(p1),HDL(p2),d); |
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prev = 0; head = cur = BDY(p1); |
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NEWNM(new); |
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for ( m2 = BDY(p2); m2; ) { |
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td2 = TD(new) = TD(m2)+td; |
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ndl_add(DL(m2),d,DL(new)); |
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if ( !cur ) { |
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c1 = CM(m2); |
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DMAR(c1,mul,0,nd_mod,c2); |
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CM(new) = c2; |
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if ( !prev ) { |
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prev = new; |
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NEXT(prev) = 0; |
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head = prev; |
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} else { |
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NEXT(prev) = new; |
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NEXT(new) = 0; |
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prev = new; |
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} |
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m2 = NEXT(m2); |
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NEWNM(new); |
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continue; |
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} |
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if ( TD(cur) > td2 ) |
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c = 1; |
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else if ( TD(cur) < td2 ) |
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c = -1; |
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else |
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c = ndl_compare(DL(cur),DL(new)); |
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switch ( c ) { |
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case 0: |
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c2 = CM(m2); |
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c1 = CM(cur); |
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DMAR(c2,mul,c1,nd_mod,t); |
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if ( t ) |
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CM(cur) = t; |
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else if ( !prev ) { |
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head = NEXT(cur); |
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FREENM(cur); |
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cur = head; |
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} else { |
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NEXT(prev) = NEXT(cur); |
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FREENM(cur); |
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cur = NEXT(prev); |
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} |
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m2 = NEXT(m2); |
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break; |
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case 1: |
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prev = cur; |
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cur = NEXT(cur); |
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break; |
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case -1: |
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if ( !prev ) { |
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/* cur = head */ |
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prev = new; |
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c2 = CM(m2); |
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DMAR(c2,mul,0,nd_mod,c1); |
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CM(prev) = c1; |
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NEXT(prev) = head; |
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head = prev; |
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} else { |
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c2 = CM(m2); |
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DMAR(c2,mul,0,nd_mod,c1); |
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CM(new) = c1; |
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NEXT(prev) = new; |
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NEXT(new) = cur; |
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prev = new; |
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} |
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NEWNM(new); |
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m2 = NEXT(m2); |
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break; |
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} |
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} |
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FREENM(new); |
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if ( head ) { |
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BDY(p1) = head; |
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SG(p1) = MAX(SG(p1),SG(p2)+td); |
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return p1; |
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} else { |
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FREEND(p1); |
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return 0; |
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} |
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} |
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} |
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/* HDL(p1) = HDL(p2) */ |
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ND nd_reduce_special(ND p1,ND p2) |
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{ |
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int c,c1,c2,t,td,td2,mul; |
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NM m2,prev,head,cur,new; |
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if ( !p1 ) |
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return 0; |
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else { |
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c2 = invm(HCM(p2),nd_mod); |
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c1 = nd_mod-HCM(p1); |
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DMAR(c1,c2,0,nd_mod,mul); |
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prev = 0; head = cur = BDY(p1); |
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NEWNM(new); |
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for ( m2 = BDY(p2); m2; ) { |
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td2 = TD(new) = TD(m2); |
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if ( !cur ) { |
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c1 = CM(m2); |
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DMAR(c1,mul,0,nd_mod,c2); |
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CM(new) = c2; |
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bcopy(DL(m2),DL(new),nd_wpd*sizeof(unsigned int)); |
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if ( !prev ) { |
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prev = new; |
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NEXT(prev) = 0; |
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head = prev; |
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} else { |
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NEXT(prev) = new; |
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NEXT(new) = 0; |
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prev = new; |
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} |
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m2 = NEXT(m2); |
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NEWNM(new); |
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continue; |
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} |
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if ( TD(cur) > td2 ) |
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c = 1; |
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else if ( TD(cur) < td2 ) |
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c = -1; |
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else |
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c = ndl_compare(DL(cur),DL(m2)); |
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switch ( c ) { |
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case 0: |
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c2 = CM(m2); |
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c1 = CM(cur); |
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DMAR(c2,mul,c1,nd_mod,t); |
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if ( t ) |
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CM(cur) = t; |
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else if ( !prev ) { |
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head = NEXT(cur); |
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FREENM(cur); |
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cur = head; |
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} else { |
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NEXT(prev) = NEXT(cur); |
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FREENM(cur); |
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cur = NEXT(prev); |
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} |
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m2 = NEXT(m2); |
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break; |
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case 1: |
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prev = cur; |
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cur = NEXT(cur); |
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break; |
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case -1: |
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bcopy(DL(m2),DL(new),nd_wpd*sizeof(unsigned int)); |
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if ( !prev ) { |
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/* cur = head */ |
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prev = new; |
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c2 = CM(m2); |
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DMAR(c2,mul,0,nd_mod,c1); |
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CM(prev) = c1; |
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NEXT(prev) = head; |
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head = prev; |
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} else { |
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c2 = CM(m2); |
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DMAR(c2,mul,0,nd_mod,c1); |
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CM(new) = c1; |
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NEXT(prev) = new; |
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NEXT(new) = cur; |
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prev = new; |
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} |
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NEWNM(new); |
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m2 = NEXT(m2); |
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break; |
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} |
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} |
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FREENM(new); |
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if ( head ) { |
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BDY(p1) = head; |
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SG(p1)= MAX(SG(p1),SG(p2)+td); |
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return p1; |
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} else { |
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FREEND(p1); |
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return 0; |
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} |
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} |
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} |
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int ndl_check_bound2(int index,unsigned int *d2) |
int ndl_check_bound2(int index,unsigned int *d2) |
{ |
{ |
unsigned int u2; |
unsigned int u2; |
Line 992 int nd_nf(int mod,ND g,int full,ND *rp) |
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Line 787 int nd_nf(int mod,ND g,int full,ND *rp) |
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int n,sugar,psugar,sugar0,stat,index; |
int n,sugar,psugar,sugar0,stat,index; |
int c,c1,c2; |
int c,c1,c2; |
RHist h; |
RHist h; |
#if USE_NDV |
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NDV p,red; |
NDV p,red; |
#else |
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ND p,red; |
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#endif |
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Q cg,cred,gcd; |
Q cg,cred,gcd; |
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if ( !g ) { |
if ( !g ) { |
Line 1021 int nd_nf(int mod,ND g,int full,ND *rp) |
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Line 812 int nd_nf(int mod,ND g,int full,ND *rp) |
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nd_free(g); nd_free(d); |
nd_free(g); nd_free(d); |
return 0; |
return 0; |
} |
} |
#if USE_NDV |
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if ( mod ) { |
if ( mod ) { |
p = nd_ps[index]; |
p = nd_ps[index]; |
c1 = invm(HCM(p),nd_mod); c2 = nd_mod-HCM(g); |
c1 = invm(HCM(p),nd_mod); c2 = nd_mod-HCM(g); |
Line 1038 int nd_nf(int mod,ND g,int full,ND *rp) |
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Line 828 int nd_nf(int mod,ND g,int full,ND *rp) |
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g = ndv_add_q(g,ndv_red); |
g = ndv_add_q(g,ndv_red); |
} |
} |
sugar = MAX(sugar,SG(ndv_red)); |
sugar = MAX(sugar,SG(ndv_red)); |
#else |
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if ( mod ) { |
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p = nd_ps[index]; |
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c1 = invm(HCM(p),nd_mod); c2 = nd_mod-HCM(g); |
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DMAR(c1,c2,0,nd_mod,c); CM(mul) = c; |
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red = nd_mul_ind_nm(mod,index,mul); |
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g = nd_add(g,red); |
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} else { |
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p = nd_ps[index]; |
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igcd_cofactor(HCQ(g),HCQ(p),&gcd,&cg,&cred); |
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chsgnq(cg,&CQ(mul)); |
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nd_mul_c_q(d,cred); |
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nd_mul_c_q(g,cred); |
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red = nd_mul_ind_nm(mod,index,mul); |
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g = nd_add_q(g,red); |
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} |
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sugar = MAX(sugar,SG(red)); |
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#endif |
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} else if ( !full ) { |
} else if ( !full ) { |
*rp = g; |
*rp = g; |
return 1; |
return 1; |
Line 1578 int nd_newps(int mod,ND a) |
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Line 1350 int nd_newps(int mod,ND a) |
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if ( nd_psn == nd_pslen ) { |
if ( nd_psn == nd_pslen ) { |
nd_pslen *= 2; |
nd_pslen *= 2; |
nd_psl = (int *)REALLOC((char *)nd_psl,nd_pslen*sizeof(int)); |
nd_psl = (int *)REALLOC((char *)nd_psl,nd_pslen*sizeof(int)); |
#if USE_NDV |
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nd_ps = (NDV *)REALLOC((char *)nd_ps,nd_pslen*sizeof(NDV)); |
nd_ps = (NDV *)REALLOC((char *)nd_ps,nd_pslen*sizeof(NDV)); |
#else |
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nd_ps = (ND *)REALLOC((char *)nd_ps,nd_pslen*sizeof(ND)); |
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#endif |
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nd_psh = (RHist *)REALLOC((char *)nd_psh,nd_pslen*sizeof(RHist)); |
nd_psh = (RHist *)REALLOC((char *)nd_psh,nd_pslen*sizeof(RHist)); |
nd_bound = (unsigned int **) |
nd_bound = (unsigned int **) |
REALLOC((char *)nd_bound,nd_pslen*sizeof(unsigned int *)); |
REALLOC((char *)nd_bound,nd_pslen*sizeof(unsigned int *)); |
Line 1593 int nd_newps(int mod,ND a) |
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Line 1361 int nd_newps(int mod,ND a) |
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nd_removecont(a); |
nd_removecont(a); |
nd_bound[nd_psn] = nd_compute_bound(a); |
nd_bound[nd_psn] = nd_compute_bound(a); |
NEWRHist(r); TD(r) = HTD(a); ndl_copy(HDL(a),DL(r)); nd_psh[nd_psn] = r; |
NEWRHist(r); TD(r) = HTD(a); ndl_copy(HDL(a),DL(r)); nd_psh[nd_psn] = r; |
#if USE_NDV |
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nd_ps[nd_psn]= ndtondv(mod,a); |
nd_ps[nd_psn]= ndtondv(mod,a); |
nd_free(a); |
nd_free(a); |
nd_psl[nd_psn] = len = LEN(nd_ps[nd_psn]); |
nd_psl[nd_psn] = len = LEN(nd_ps[nd_psn]); |
Line 1601 int nd_newps(int mod,ND a) |
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Line 1368 int nd_newps(int mod,ND a) |
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nmv_len = 2*len; |
nmv_len = 2*len; |
BDY(ndv_red) = (NMV)REALLOC(BDY(ndv_red),nmv_len*nmv_adv); |
BDY(ndv_red) = (NMV)REALLOC(BDY(ndv_red),nmv_len*nmv_adv); |
} |
} |
#else |
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nd_ps[nd_psn] = a; |
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nd_psl[nd_psn] = nd_length(a); |
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#endif |
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return nd_psn++; |
return nd_psn++; |
} |
} |
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Line 1619 NODE nd_setup(int mod,NODE f) |
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Line 1382 NODE nd_setup(int mod,NODE f) |
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nd_psn = length(f); nd_pslen = 2*nd_psn; |
nd_psn = length(f); nd_pslen = 2*nd_psn; |
nd_psl = (int *)MALLOC(nd_pslen*sizeof(int)); |
nd_psl = (int *)MALLOC(nd_pslen*sizeof(int)); |
#if USE_NDV |
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nd_ps = (NDV *)MALLOC(nd_pslen*sizeof(NDV)); |
nd_ps = (NDV *)MALLOC(nd_pslen*sizeof(NDV)); |
#else |
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nd_ps = (ND *)MALLOC(nd_pslen*sizeof(ND)); |
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#endif |
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nd_psh = (RHist *)MALLOC(nd_pslen*sizeof(RHist)); |
nd_psh = (RHist *)MALLOC(nd_pslen*sizeof(RHist)); |
nd_bound = (unsigned int **)MALLOC(nd_pslen*sizeof(unsigned int *)); |
nd_bound = (unsigned int **)MALLOC(nd_pslen*sizeof(unsigned int *)); |
for ( max = 0, i = 0, s = f; i < nd_psn; i++, s = NEXT(s) ) { |
for ( max = 0, i = 0, s = f; i < nd_psn; i++, s = NEXT(s) ) { |
Line 1652 NODE nd_setup(int mod,NODE f) |
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Line 1411 NODE nd_setup(int mod,NODE f) |
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nd_free_private_storage(); |
nd_free_private_storage(); |
len = 0; |
len = 0; |
for ( i = 0; i < nd_psn; i++, f = NEXT(f) ) { |
for ( i = 0; i < nd_psn; i++, f = NEXT(f) ) { |
#if USE_NDV |
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nd_ps[i] = dptondv(mod,(DP)BDY(f)); |
nd_ps[i] = dptondv(mod,(DP)BDY(f)); |
if ( mod ) |
if ( mod ) |
ndv_mul_c(nd_ps[i],invm(HCM(nd_ps[i]),nd_mod)); |
ndv_mul_c(nd_ps[i],invm(HCM(nd_ps[i]),nd_mod)); |
else |
else |
ndv_removecont(nd_ps[i]); |
ndv_removecont(nd_ps[i]); |
len = MAX(len,LEN(nd_ps[i])); |
len = MAX(len,LEN(nd_ps[i])); |
#else |
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nd_ps[i] = dptond(mod,(DP)BDY(f)); |
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if ( mod ) |
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nd_mul_c(nd_ps[i],invm(HCM(nd_ps[i]),nd_mod)); |
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else |
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nd_removecont(nd_ps[i]); |
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nd_psl[i] = nd_length(nd_ps[i]); |
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#endif |
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NEWRHist(r); TD(r) = HTD(nd_ps[i]); ndl_copy(HDL(nd_ps[i]),DL(r)); |
NEWRHist(r); TD(r) = HTD(nd_ps[i]); ndl_copy(HDL(nd_ps[i]),DL(r)); |
nd_psh[i] = r; |
nd_psh[i] = r; |
} |
} |
#if USE_NDV |
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nmv_len = 16*len; |
nmv_len = 16*len; |
NEWNDV(ndv_red); |
NEWNDV(ndv_red); |
if ( mod ) |
if ( mod ) |
BDY(ndv_red) = (NMV)MALLOC_ATOMIC(nmv_len*nmv_adv); |
BDY(ndv_red) = (NMV)MALLOC_ATOMIC(nmv_len*nmv_adv); |
else |
else |
BDY(ndv_red) = (NMV)MALLOC(nmv_len*nmv_adv); |
BDY(ndv_red) = (NMV)MALLOC(nmv_len*nmv_adv); |
#endif |
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for ( s0 = 0, i = 0; i < nd_psn; i++ ) { |
for ( s0 = 0, i = 0; i < nd_psn; i++ ) { |
NEXTNODE(s0,s); BDY(s) = (pointer)i; |
NEXTNODE(s0,s); BDY(s) = (pointer)i; |
} |
} |
Line 1726 void nd_gr(LIST f,LIST v,int m,struct order_spec *ord, |
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Line 1474 void nd_gr(LIST f,LIST v,int m,struct order_spec *ord, |
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#endif |
#endif |
for ( r0 = 0; x; x = NEXT(x) ) { |
for ( r0 = 0; x; x = NEXT(x) ) { |
NEXTNODE(r0,r); |
NEXTNODE(r0,r); |
#if USE_NDV |
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a = ndvtodp(m,nd_ps[(int)BDY(x)]); |
a = ndvtodp(m,nd_ps[(int)BDY(x)]); |
#else |
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a = ndtodp(m,nd_ps[(int)BDY(x)]); |
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#endif |
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if ( m ) |
if ( m ) |
_dtop_mod(CO,vv,a,(P *)&BDY(r)); |
_dtop_mod(CO,vv,a,(P *)&BDY(r)); |
else |
else |
Line 2055 void nd_setup_parameters() { |
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Line 1799 void nd_setup_parameters() { |
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nd_mask1 |= (1<<(nd_bpe-1))<<(i*nd_bpe); |
nd_mask1 |= (1<<(nd_bpe-1))<<(i*nd_bpe); |
} |
} |
nm_adv = sizeof(struct oNM)+(nd_wpd-1)*sizeof(unsigned int); |
nm_adv = sizeof(struct oNM)+(nd_wpd-1)*sizeof(unsigned int); |
#if USE_NDV |
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nmv_adv = sizeof(struct oNMV)+(nd_wpd-1)*sizeof(unsigned int); |
nmv_adv = sizeof(struct oNMV)+(nd_wpd-1)*sizeof(unsigned int); |
#endif |
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} |
} |
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ND_pairs nd_reconstruct(ND_pairs d) |
ND_pairs nd_reconstruct(ND_pairs d) |
Line 2069 ND_pairs nd_reconstruct(ND_pairs d) |
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Line 1811 ND_pairs nd_reconstruct(ND_pairs d) |
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ND_pairs s0,s,t,prev_ndp_free_list; |
ND_pairs s0,s,t,prev_ndp_free_list; |
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obpe = nd_bpe; |
obpe = nd_bpe; |
#if USE_NDV |
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oadv = nmv_adv; |
oadv = nmv_adv; |
#endif |
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if ( obpe < 4 ) |
if ( obpe < 4 ) |
nd_bpe = 4; |
nd_bpe = 4; |
else if ( obpe < 6 ) |
else if ( obpe < 6 ) |
Line 2091 ND_pairs nd_reconstruct(ND_pairs d) |
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Line 1831 ND_pairs nd_reconstruct(ND_pairs d) |
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_nm_free_list = 0; |
_nm_free_list = 0; |
_ndp_free_list = 0; |
_ndp_free_list = 0; |
for ( i = nd_psn-1; i >= 0; i-- ) { |
for ( i = nd_psn-1; i >= 0; i-- ) { |
#if USE_NDV |
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ndv_realloc(nd_ps[i],obpe,oadv); |
ndv_realloc(nd_ps[i],obpe,oadv); |
#else |
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nd_realloc(nd_ps[i],obpe); |
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#endif |
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} |
} |
s0 = 0; |
s0 = 0; |
for ( t = d; t; t = NEXT(t) ) { |
for ( t = d; t; t = NEXT(t) ) { |
Line 2123 ND_pairs nd_reconstruct(ND_pairs d) |
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Line 1859 ND_pairs nd_reconstruct(ND_pairs d) |
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if ( s0 ) NEXT(s) = 0; |
if ( s0 ) NEXT(s) = 0; |
prev_nm_free_list = 0; |
prev_nm_free_list = 0; |
prev_ndp_free_list = 0; |
prev_ndp_free_list = 0; |
#if USE_NDV |
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BDY(ndv_red) = (NMV)REALLOC(BDY(ndv_red),nmv_len*nmv_adv); |
BDY(ndv_red) = (NMV)REALLOC(BDY(ndv_red),nmv_len*nmv_adv); |
#endif |
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GC_gcollect(); |
GC_gcollect(); |
return s0; |
return s0; |
} |
} |
Line 2194 ND nd_copy(ND p) |
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Line 1928 ND nd_copy(ND p) |
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} |
} |
} |
} |
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#if USE_NDV |
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int nd_sp(int mod,ND_pairs p,ND *rp) |
int nd_sp(int mod,ND_pairs p,ND *rp) |
{ |
{ |
NM m; |
NM m; |
Line 2629 void ndv_print_q(NDV p) |
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Line 2362 void ndv_print_q(NDV p) |
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printf("\n"); |
printf("\n"); |
} |
} |
} |
} |
#else |
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int nd_sp(int mod,ND_pairs p,ND *rp) |
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{ |
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NM m; |
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ND p1,p2; |
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ND t1,t2; |
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unsigned int *lcm; |
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int td; |
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p1 = nd_ps[p->i1]; |
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p2 = nd_ps[p->i2]; |
|
lcm = p->lcm; |
|
td = TD(p); |
|
NEWNM(m); |
|
if ( mod ) CM(m) = HCM(p2); |
|
else CQ(m) = HCQ(p2); |
|
TD(m) = td-HTD(p1); ndl_sub(lcm,HDL(p1),DL(m)); |
|
if ( ndl_check_bound2(p->i1,DL(m)) ) |
|
return 0; |
|
t1 = nd_mul_ind_nm(mod,p->i1,m); |
|
if ( mod ) |
|
CM(m) = mod-HCM(p1); |
|
else |
|
chsgnq(HCQ(p1),&CQ(m)); |
|
TD(m) = td-HTD(p2); ndl_sub(lcm,HDL(p2),DL(m)); |
|
if ( ndl_check_bound2(p->i2,DL(m)) ) { |
|
nd_free(t1); |
|
return 0; |
|
} |
|
t2 = nd_mul_ind_nm(mod,p->i2,m); |
|
FREENM(m); |
|
if ( mod ) |
|
*rp = nd_add(t1,t2); |
|
else |
|
*rp = nd_add_q(t1,t2); |
|
return 1; |
|
} |
|
|
|
ND nd_mul_nm(int mod,ND p,NM m0) |
|
{ |
|
NM m,mr,mr0; |
|
unsigned int *d,*dt,*dm; |
|
int c,n,td,i,c1,c2; |
|
int *pt,*p1,*p2; |
|
ND r; |
|
Q q; |
|
|
|
if ( !p ) |
|
return 0; |
|
else { |
|
n = NV(p); m = BDY(p); |
|
d = DL(m0); td = TD(m0); |
|
mr0 = 0; |
|
if ( mod ) { |
|
c = CM(m0); |
|
for ( ; m; m = NEXT(m) ) { |
|
NEXTNM(mr0,mr); |
|
c1 = CM(m); |
|
DMAR(c1,c,0,nd_mod,c2); |
|
CM(mr) = c2; |
|
TD(mr) = TD(m)+td; |
|
ndl_add(DL(m),d,DL(mr)); |
|
} |
|
} else { |
|
q = CQ(m0); |
|
for ( ; m; m = NEXT(m) ) { |
|
NEXTNM(mr0,mr); |
|
mulq(CQ(m),q,&CQ(mr)); |
|
TD(mr) = TD(m)+td; |
|
ndl_add(DL(m),d,DL(mr)); |
|
} |
|
} |
|
NEXT(mr) = 0; |
|
MKND(NV(p),mr0,r); |
|
SG(r) = SG(p) + td; |
|
return r; |
|
} |
|
} |
|
|
|
ND nd_mul_ind_nm(int mod,int index,NM m0) |
|
{ |
|
register int c1,c2,c; |
|
register NM m,mr,mr0; |
|
unsigned int *d; |
|
int n,td,i,len,d0,d1; |
|
ND p,r; |
|
Q q; |
|
|
|
p = nd_ps[index]; |
|
len = nd_psl[index]; |
|
n = NV(p); m = BDY(p); |
|
d = DL(m0); td = TD(m0); |
|
if ( mod ) { |
|
c = CM(m0); |
|
mr0 = 0; |
|
for ( i = 0; i < len; i++, m = NEXT(m) ) { |
|
NEXTNM(mr0,mr); |
|
c1 = CM(m); DMAR(c1,c,0,nd_mod,c2); |
|
CM(mr) = c2; TD(mr) = TD(m)+td; ndl_add(DL(m),d,DL(mr)); |
|
} |
|
} else { |
|
q = CQ(m0); |
|
mr0 = 0; |
|
for ( i = 0; i < len; i++, m = NEXT(m) ) { |
|
NEXTNM(mr0,mr); |
|
mulq(CQ(m),q,&CQ(mr)); TD(mr) = TD(m)+td; ndl_add(DL(m),d,DL(mr)); |
|
} |
|
} |
|
NEXT(mr) = 0; |
|
MKND(NV(p),mr0,r); |
|
SG(r) = SG(p) + td; |
|
return r; |
|
} |
|
#endif |
|