version 1.10, 2005/08/02 07:16:42 |
version 1.13, 2006/01/05 00:21:20 |
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/* |
/* |
* $OpenXM: OpenXM_contrib2/asir2000/engine/dalg.c,v 1.9 2005/07/11 00:24:02 noro Exp $ |
* $OpenXM: OpenXM_contrib2/asir2000/engine/dalg.c,v 1.12 2005/10/12 14:43:36 noro Exp $ |
*/ |
*/ |
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#include "ca.h" |
#include "ca.h" |
Line 651 NODE inv_or_split_dalg(DAlg a,DAlg *c) |
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Line 651 NODE inv_or_split_dalg(DAlg a,DAlg *c) |
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struct order_spec *current_spec; |
struct order_spec *current_spec; |
struct oEGT eg0,eg1; |
struct oEGT eg0,eg1; |
extern struct oEGT eg_le; |
extern struct oEGT eg_le; |
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extern int DP_Print; |
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if ( !(nf=current_numberfield) ) |
if ( !(nf=current_numberfield) ) |
error("invdalg : current_numberfield is not set"); |
error("invdalg : current_numberfield is not set"); |
Line 669 NODE inv_or_split_dalg(DAlg a,DAlg *c) |
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Line 670 NODE inv_or_split_dalg(DAlg a,DAlg *c) |
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simp = (DAlg *)ALLOCA(dim*sizeof(DAlg)); |
simp = (DAlg *)ALLOCA(dim*sizeof(DAlg)); |
current_spec = dp_current_spec; initd(nf->spec); |
current_spec = dp_current_spec; initd(nf->spec); |
for ( i = 0; i < dim; i++ ) { |
for ( i = 0; i < dim; i++ ) { |
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if ( DP_Print ) { fprintf(asir_out,"."); fflush(asir_out); } |
m = mb[i]; |
m = mb[i]; |
for ( j = i-1; j >= 0; j-- ) |
for ( j = i-1; j >= 0; j-- ) |
if ( dp_redble(m,mb[j]) ) |
if ( dp_redble(m,mb[j]) ) |
break; |
break; |
if ( j >= 0 ) { |
if ( j >= 0 ) { |
dp_subd(m,mb[j],&d); |
dp_subd(m,mb[j],&d); |
muld(CO,d,simp[j]->nm,&u); |
if ( simp[j] ) { |
MKDAlg(u,simp[j]->dn,t); |
muld(CO,d,simp[j]->nm,&u); |
simpdalg(t,&simp[i]); |
MKDAlg(u,simp[j]->dn,t); |
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simpdalg(t,&simp[i]); |
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} else |
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simp[i] = 0; |
} else { |
} else { |
MKDAlg(m,ONE,t); |
MKDAlg(m,ONE,t); |
muldalg(t,a0,&simp[i]); |
muldalg(t,a0,&simp[i]); |
} |
} |
gcdn(NM(simp[i]->dn),ln,&gn); divsn(ln,gn,&qn); |
if ( simp[i] ) { |
muln(NM(simp[i]->dn),qn,&ln); |
gcdn(NM(simp[i]->dn),ln,&gn); divsn(ln,gn,&qn); |
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muln(NM(simp[i]->dn),qn,&ln); |
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} |
} |
} |
initd(current_spec); |
initd(current_spec); |
NTOQ(ln,1,dn); |
NTOQ(ln,1,dn); |
Line 691 NODE inv_or_split_dalg(DAlg a,DAlg *c) |
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Line 698 NODE inv_or_split_dalg(DAlg a,DAlg *c) |
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mat = (Q **)BDY(mobj); |
mat = (Q **)BDY(mobj); |
mulq(dn,a->dn,&mat[0][dim]); |
mulq(dn,a->dn,&mat[0][dim]); |
for ( j = 0; j < dim; j++ ) { |
for ( j = 0; j < dim; j++ ) { |
divq(dn,simp[j]->dn,&mul); |
if ( simp[j] ) { |
for ( i = dim-1, mp = BDY(simp[j]->nm); mp && i >= 0; i-- ) |
divq(dn,simp[j]->dn,&mul); |
if ( dl_equal(n,BDY(mb[i])->dl,mp->dl) ) { |
for ( i = dim-1, mp = BDY(simp[j]->nm); mp && i >= 0; i-- ) |
mulq(mul,(Q)mp->c,&mat[i][j]); |
if ( dl_equal(n,BDY(mb[i])->dl,mp->dl) ) { |
mp = NEXT(mp); |
mulq(mul,(Q)mp->c,&mat[i][j]); |
} |
mp = NEXT(mp); |
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} |
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} |
} |
} |
get_eg(&eg0); |
get_eg(&eg0); |
rank = generic_gauss_elim_hensel(mobj,&sol,&dnsol,&rinfo,&cinfo); |
rank = generic_gauss_elim_hensel_dalg(mobj,&sol,&dnsol,&rinfo,&cinfo); |
get_eg(&eg1); add_eg(&eg_le,&eg0,&eg1); |
get_eg(&eg1); add_eg(&eg_le,&eg0,&eg1); |
if ( cinfo[0] == dim ) { |
if ( cinfo[0] == dim ) { |
/* the input is invertible */ |
/* the input is invertible */ |
Line 717 NODE inv_or_split_dalg(DAlg a,DAlg *c) |
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Line 726 NODE inv_or_split_dalg(DAlg a,DAlg *c) |
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return 0; |
return 0; |
} else { |
} else { |
/* the input is not invertible */ |
/* the input is not invertible */ |
nparam = (dim+1)-rank; |
nparam = sol->col; |
/* the index 'dim' should not be in cinfo[] */ |
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solmat = (Q **)BDY(sol); |
solmat = (Q **)BDY(sol); |
for ( k = 0; k < nparam; k++ ) |
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if ( cinfo[k] == dim ) |
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error("invdalg : cannot happen"); |
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nd0 = 0; |
nd0 = 0; |
for ( k = 0; k < nparam; k++ ) { |
for ( k = 0; k < nparam; k++ ) { |
m = mb[cinfo[k]]; |
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for ( ndt = nd0; ndt; ndt = NEXT(ndt) ) { |
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if ( dp_redble(m,(DP)BDY(ndt)) ) break; |
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} |
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/* skip a redundunt basis element */ |
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if ( ndt ) continue; |
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/* construct a new basis element */ |
/* construct a new basis element */ |
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m = mb[cinfo[k]]; |
mp0 = 0; |
mp0 = 0; |
NEXTMP(mp0,mp); |
NEXTMP(mp0,mp); |
chsgnq(dnsol,&dn1); mp->c = (P)dn1; |
chsgnq(dnsol,&dn1); mp->c = (P)dn1; |